a from scale-rotated-ellipse

Time bar (total: 28.2s)

start0.0ms (0%)

Memory
0.4MiB live, 0.4MiB allocated; 0ms collecting garbage

analyze2.1s (7.4%)

Memory
-7.9MiB live, 1 369.0MiB allocated; 174ms collecting garbage
Algorithm
search
Search
ProbabilityValidUnknownPreconditionInfiniteDomainCan'tIter
0%0%99.8%0.2%0%0%0%0
0%0%99.8%0.2%0%0%0%1
0%0%99.8%0.2%0%0%0%2
0%0%99.8%0.2%0%0%0%3
0%0%99.8%0.2%0%0%0%4
0%0%99.8%0.2%0%0%0%5
0%0%99.8%0.2%0%0%0%6
0%0%99.8%0.2%0%0%0%7
0%0%99.8%0.2%0%0%0%8
0%0%99.8%0.2%0%0%0%9
0%0%99.8%0.2%0%0%0%10
3.5%3.5%96.2%0.2%0%0%0%11
4.1%4.1%95.7%0.2%0%0%0%12
Compiler

Compiled 185 to 54 computations (70.8% saved)

sample5.6s (19.9%)

Memory
111.6MiB live, 7 985.4MiB allocated; 2.0s collecting garbage
Samples
4.8s8 256×0valid
Precisions
Click to see histograms. Total time spent on operations: 4.4s
ival-mult: 1.1s (24.9% of total)
ival-pow2: 1.1s (24.4% of total)
ival-div: 1.0s (23.6% of total)
ival-sinu: 274.0ms (6.3% of total)
ival-cosu: 263.0ms (6% of total)
ival-add: 241.0ms (5.5% of total)
ival-sqrt: 167.0ms (3.8% of total)
ival-sub: 141.0ms (3.2% of total)
ival-neg: 81.0ms (1.9% of total)
exact: 8.0ms (0.2% of total)
ival-true: 7.0ms (0.2% of total)
adjust: 3.0ms (0.1% of total)
ival-assert: 3.0ms (0.1% of total)
Bogosity

explain1.9s (6.6%)

Memory
4.5MiB live, 2 164.9MiB allocated; 223ms collecting garbage
FPErrors
Click to see full error table
Ground TruthOverpredictionsExampleUnderpredictionsExampleSubexpression
1651(-8.927579211880758e-256 -4.1877190427015775e-201 1179617244.62151 8.001838760335571e-123 -2.33706375262546e-242)1(4.193224263475932e-288 -1.6155095963081485e-17 4.92000950991402e-11 5.298059893656798e-160 66308251742.833015)(/.f64 (neg.f64 (sqrt.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64)))) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (+.f64 (+.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) (sqrt.f64 (+.f64 (pow.f64 (-.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) #s(literal 2 binary64)) (pow.f64 (/.f64 (/.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (-.f64 (pow.f64 b #s(literal 2 binary64)) (pow.f64 a #s(literal 2 binary64)))) (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) x-scale) y-scale) #s(literal 2 binary64)))))))) (/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64))))
1410-0-(cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))
1400-0-(sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))
670-1(-1.6915980008920396e+100 1.9981722147754283e-203 7.119670784279236e+77 -1.1629959773904515e-153 5.847334027505059e-5)(/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64)))
520-0-(sqrt.f64 (+.f64 (pow.f64 (-.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) #s(literal 2 binary64)) (pow.f64 (/.f64 (/.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (-.f64 (pow.f64 b #s(literal 2 binary64)) (pow.f64 a #s(literal 2 binary64)))) (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) x-scale) y-scale) #s(literal 2 binary64))))
451(107015.40051737973 2.3678671761649616e-151 -3.4830502601275463e-34 -3.3617488654865855e-153 -2.2621221693668858e+306)3(1.8153924920865538e+51 9.623316421164583e-39 -2.0755751623145184e+58 9.330817384103479e+120 4.6585295763724047e+55)(sqrt.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64)))) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (+.f64 (+.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) (sqrt.f64 (+.f64 (pow.f64 (-.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) #s(literal 2 binary64)) (pow.f64 (/.f64 (/.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (-.f64 (pow.f64 b #s(literal 2 binary64)) (pow.f64 a #s(literal 2 binary64)))) (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) x-scale) y-scale) #s(literal 2 binary64)))))))
450-0-(-.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale))
350-1(2.0449688483976248e-88 2.503732162282011e-67 1.0592878970643246e-54 2.187532150570048e-39 3.9856229640279105e-114)(*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64)))) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (+.f64 (+.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) (sqrt.f64 (+.f64 (pow.f64 (-.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) #s(literal 2 binary64)) (pow.f64 (/.f64 (/.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (-.f64 (pow.f64 b #s(literal 2 binary64)) (pow.f64 a #s(literal 2 binary64)))) (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) x-scale) y-scale) #s(literal 2 binary64))))))
350-0-(/.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (-.f64 (pow.f64 b #s(literal 2 binary64)) (pow.f64 a #s(literal 2 binary64)))) (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) x-scale)
320-0-(/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale)
270-0-(/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale)
270-3(-5.213685007594542e+217 -1.4566730036388739e-69 -7.964261203630576e-52 -3.982894114603623e+307 0.0006677314047701195)(*.f64 (*.f64 #s(literal 2 binary64) (/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64)))) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a))))
190-1(-1.7847691041608732e-188 1.4711547684256536e-202 9.191223179816626e-70 3.2910606775309013e-137 -1.7425112623205946e-201)(/.f64 (/.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (-.f64 (pow.f64 b #s(literal 2 binary64)) (pow.f64 a #s(literal 2 binary64)))) (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) x-scale) y-scale)
180-0-(*.f64 (*.f64 #s(literal 2 binary64) (-.f64 (pow.f64 b #s(literal 2 binary64)) (pow.f64 a #s(literal 2 binary64)))) (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64))))
130-0-(/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale)
120-0-(-.f64 (pow.f64 b #s(literal 2 binary64)) (pow.f64 a #s(literal 2 binary64)))
100-0-(/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)
00-0-x-scale
00-0-(*.f64 b a)
00-0-(pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))
00-0-(pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))
00-0-(+.f64 (+.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) (sqrt.f64 (+.f64 (pow.f64 (-.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) #s(literal 2 binary64)) (pow.f64 (/.f64 (/.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (-.f64 (pow.f64 b #s(literal 2 binary64)) (pow.f64 a #s(literal 2 binary64)))) (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) x-scale) y-scale) #s(literal 2 binary64)))))
00-0-(*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64))))
00-0-(*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64))
00-0-(*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))
00-0-(*.f64 x-scale y-scale)
00-0-(pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64))
00-0-(*.f64 b (neg.f64 a))
00-0-(pow.f64 b #s(literal 2 binary64))
00-0-(*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64))))
00-0-(+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)))
00-0-(neg.f64 a)
00-0-(*.f64 #s(literal 2 binary64) (-.f64 (pow.f64 b #s(literal 2 binary64)) (pow.f64 a #s(literal 2 binary64))))
00-0-(+.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale))
00-0-(*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (-.f64 (pow.f64 b #s(literal 2 binary64)) (pow.f64 a #s(literal 2 binary64)))) (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64))))
00-0-#s(literal 180 binary64)
00-0-(*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64))))
00-0-angle
00-0-#s(literal 2 binary64)
00-0-(pow.f64 (-.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) #s(literal 2 binary64))
00-0-(*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64))))
00-0-b
00-0-a
00-0-(*.f64 #s(literal 2 binary64) (/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64))))
00-0-(+.f64 (pow.f64 (-.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) #s(literal 2 binary64)) (pow.f64 (/.f64 (/.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (-.f64 (pow.f64 b #s(literal 2 binary64)) (pow.f64 a #s(literal 2 binary64)))) (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) x-scale) y-scale) #s(literal 2 binary64)))
00-0-(pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))
00-0-(pow.f64 a #s(literal 2 binary64))
00-0-(neg.f64 (sqrt.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64)))) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (+.f64 (+.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) (sqrt.f64 (+.f64 (pow.f64 (-.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) #s(literal 2 binary64)) (pow.f64 (/.f64 (/.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (-.f64 (pow.f64 b #s(literal 2 binary64)) (pow.f64 a #s(literal 2 binary64)))) (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) x-scale) y-scale) #s(literal 2 binary64))))))))
00-0-(pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))
00-0-(PI.f64)
00-0-(+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)))
00-0-(/.f64 angle #s(literal 180 binary64))
00-0-(pow.f64 (/.f64 (/.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (-.f64 (pow.f64 b #s(literal 2 binary64)) (pow.f64 a #s(literal 2 binary64)))) (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) x-scale) y-scale) #s(literal 2 binary64))
00-0-#s(literal 4 binary64)
00-0-y-scale
00-0-(*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a))))
Explanations
Click to see full explanations table
OperatorSubexpressionExplanationCount
cos.f64(cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))sensitivity1410
sin.f64(sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))sensitivity1401
/.f64(/.f64 (neg.f64 (sqrt.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64)))) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (+.f64 (+.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) (sqrt.f64 (+.f64 (pow.f64 (-.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) #s(literal 2 binary64)) (pow.f64 (/.f64 (/.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (-.f64 (pow.f64 b #s(literal 2 binary64)) (pow.f64 a #s(literal 2 binary64)))) (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) x-scale) y-scale) #s(literal 2 binary64)))))))) (/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64))))o/o800
(+.f64 (+.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) (sqrt.f64 (+.f64 (pow.f64 (-.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) #s(literal 2 binary64)) (pow.f64 (/.f64 (/.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (-.f64 (pow.f64 b #s(literal 2 binary64)) (pow.f64 a #s(literal 2 binary64)))) (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) x-scale) y-scale) #s(literal 2 binary64)))))overflow143
(pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))overflow78
(*.f64 b a)overflow48
(*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (-.f64 (pow.f64 b #s(literal 2 binary64)) (pow.f64 a #s(literal 2 binary64)))) (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64))))overflow79
(-.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale))overflow143
(*.f64 b (neg.f64 a))overflow48
(/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale)overflow202
(*.f64 (*.f64 #s(literal 2 binary64) (/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64)))) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a))))overflow95
(/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)overflow174
(pow.f64 (-.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) #s(literal 2 binary64))overflow184
(/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale)overflow164
(*.f64 #s(literal 2 binary64) (-.f64 (pow.f64 b #s(literal 2 binary64)) (pow.f64 a #s(literal 2 binary64))))overflow97
(/.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (-.f64 (pow.f64 b #s(literal 2 binary64)) (pow.f64 a #s(literal 2 binary64)))) (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) x-scale)overflow79
(+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)))overflow162
(+.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale))overflow143
(-.f64 (pow.f64 b #s(literal 2 binary64)) (pow.f64 a #s(literal 2 binary64)))overflow97
(pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))overflow110
(pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64))overflow64
(pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))overflow108
(sqrt.f64 (+.f64 (pow.f64 (-.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) #s(literal 2 binary64)) (pow.f64 (/.f64 (/.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (-.f64 (pow.f64 b #s(literal 2 binary64)) (pow.f64 a #s(literal 2 binary64)))) (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) x-scale) y-scale) #s(literal 2 binary64))))overflow143
(/.f64 (/.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (-.f64 (pow.f64 b #s(literal 2 binary64)) (pow.f64 a #s(literal 2 binary64)))) (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) x-scale) y-scale)overflow84
(neg.f64 (sqrt.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64)))) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (+.f64 (+.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) (sqrt.f64 (+.f64 (pow.f64 (-.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) #s(literal 2 binary64)) (pow.f64 (/.f64 (/.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (-.f64 (pow.f64 b #s(literal 2 binary64)) (pow.f64 a #s(literal 2 binary64)))) (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) x-scale) y-scale) #s(literal 2 binary64))))))))overflow110
(*.f64 (*.f64 #s(literal 2 binary64) (-.f64 (pow.f64 b #s(literal 2 binary64)) (pow.f64 a #s(literal 2 binary64)))) (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64))))overflow79
(sqrt.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64)))) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (+.f64 (+.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) (sqrt.f64 (+.f64 (pow.f64 (-.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) #s(literal 2 binary64)) (pow.f64 (/.f64 (/.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (-.f64 (pow.f64 b #s(literal 2 binary64)) (pow.f64 a #s(literal 2 binary64)))) (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) x-scale) y-scale) #s(literal 2 binary64)))))))overflow110
(pow.f64 b #s(literal 2 binary64))overflow54
(*.f64 x-scale y-scale)overflow25
(pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))overflow68
(pow.f64 (/.f64 (/.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (-.f64 (pow.f64 b #s(literal 2 binary64)) (pow.f64 a #s(literal 2 binary64)))) (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) x-scale) y-scale) #s(literal 2 binary64))overflow122
(+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)))overflow170
(*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))overflow124
(*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a))))overflow62
(*.f64 #s(literal 2 binary64) (/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64))))overflow84
(/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale)overflow170
(pow.f64 a #s(literal 2 binary64))overflow55
(/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64)))overflow84
(+.f64 (pow.f64 (-.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) #s(literal 2 binary64)) (pow.f64 (/.f64 (/.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (-.f64 (pow.f64 b #s(literal 2 binary64)) (pow.f64 a #s(literal 2 binary64)))) (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) x-scale) y-scale) #s(literal 2 binary64)))overflow184
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(*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))underflow67
(*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a))))underflow67
(/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64)))underflow80
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(/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale)overflow101
(pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))overflow54
(+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)))overflow85
(pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))overflow39
(/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale)overflow85
(/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)overflow87
(pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))overflow55
(pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))overflow34
(/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale)overflow82
(+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)))overflow81
sqrt.f64(sqrt.f64 (+.f64 (pow.f64 (-.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) #s(literal 2 binary64)) (pow.f64 (/.f64 (/.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (-.f64 (pow.f64 b #s(literal 2 binary64)) (pow.f64 a #s(literal 2 binary64)))) (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) x-scale) y-scale) #s(literal 2 binary64))))oflow-rescue410
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(/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)overflow87
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(pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))overflow39
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(/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale)overflow101
(pow.f64 (-.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) #s(literal 2 binary64))overflow184
(/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale)overflow82
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(/.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (-.f64 (pow.f64 b #s(literal 2 binary64)) (pow.f64 a #s(literal 2 binary64)))) (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) x-scale)overflow79
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(-.f64 (pow.f64 b #s(literal 2 binary64)) (pow.f64 a #s(literal 2 binary64)))overflow97
(pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))overflow55
(pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))overflow54
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(/.f64 (/.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (-.f64 (pow.f64 b #s(literal 2 binary64)) (pow.f64 a #s(literal 2 binary64)))) (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) x-scale) y-scale)overflow84
(pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))overflow34
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(pow.f64 (/.f64 (/.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (-.f64 (pow.f64 b #s(literal 2 binary64)) (pow.f64 a #s(literal 2 binary64)))) (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) x-scale) y-scale) #s(literal 2 binary64))overflow122
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(/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale)overflow85
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(*.f64 b a)overflow48
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(pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64))overflow64
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(pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))overflow34
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(*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))overflow62
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(pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64))overflow64
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(neg.f64 (sqrt.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64)))) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (+.f64 (+.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) (sqrt.f64 (+.f64 (pow.f64 (-.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) #s(literal 2 binary64)) (pow.f64 (/.f64 (/.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (-.f64 (pow.f64 b #s(literal 2 binary64)) (pow.f64 a #s(literal 2 binary64)))) (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) x-scale) y-scale) #s(literal 2 binary64))))))))underflow58
(*.f64 (*.f64 #s(literal 2 binary64) (-.f64 (pow.f64 b #s(literal 2 binary64)) (pow.f64 a #s(literal 2 binary64)))) (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64))))underflow22
(sqrt.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64)))) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (+.f64 (+.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) (sqrt.f64 (+.f64 (pow.f64 (-.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) #s(literal 2 binary64)) (pow.f64 (/.f64 (/.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (-.f64 (pow.f64 b #s(literal 2 binary64)) (pow.f64 a #s(literal 2 binary64)))) (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) x-scale) y-scale) #s(literal 2 binary64)))))))underflow58
(pow.f64 b #s(literal 2 binary64))underflow71
(*.f64 x-scale y-scale)underflow32
(pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))underflow196
(pow.f64 (/.f64 (/.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (-.f64 (pow.f64 b #s(literal 2 binary64)) (pow.f64 a #s(literal 2 binary64)))) (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) x-scale) y-scale) #s(literal 2 binary64))underflow50
(+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)))underflow42
(*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))underflow134
(*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a))))underflow67
(*.f64 #s(literal 2 binary64) (/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64))))underflow80
(pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))underflow148
(*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64))))underflow32
(/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale)underflow28
(pow.f64 a #s(literal 2 binary64))underflow47
(/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64)))underflow80
(+.f64 (pow.f64 (-.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) #s(literal 2 binary64)) (pow.f64 (/.f64 (/.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (-.f64 (pow.f64 b #s(literal 2 binary64)) (pow.f64 a #s(literal 2 binary64)))) (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) x-scale) y-scale) #s(literal 2 binary64)))underflow21
(*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64)))) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (+.f64 (+.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) (sqrt.f64 (+.f64 (pow.f64 (-.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) #s(literal 2 binary64)) (pow.f64 (/.f64 (/.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (-.f64 (pow.f64 b #s(literal 2 binary64)) (pow.f64 a #s(literal 2 binary64)))) (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) x-scale) y-scale) #s(literal 2 binary64))))))underflow80
/.f64(/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale)u/n50
(+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)))underflow16
(pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))underflow47
(pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))underflow98
(*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64))))underflow16
*.f64(*.f64 (*.f64 #s(literal 2 binary64) (/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64)))) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a))))n*o50
/.f64(/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64)))o/n40
(*.f64 b a)overflow24
(*.f64 b (neg.f64 a))overflow24
(*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))overflow62
(*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a))))overflow62
/.f64(/.f64 (neg.f64 (sqrt.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64)))) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (+.f64 (+.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) (sqrt.f64 (+.f64 (pow.f64 (-.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) #s(literal 2 binary64)) (pow.f64 (/.f64 (/.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (-.f64 (pow.f64 b #s(literal 2 binary64)) (pow.f64 a #s(literal 2 binary64)))) (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) x-scale) y-scale) #s(literal 2 binary64)))))))) (/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64))))n/o40
(*.f64 b a)overflow24
(*.f64 b (neg.f64 a))overflow24
(pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64))overflow64
(*.f64 x-scale y-scale)overflow25
(*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))overflow62
(*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a))))overflow62
(/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64)))overflow84
/.f64(/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64)))n/u40
(pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64))underflow74
(*.f64 x-scale y-scale)underflow32
/.f64(/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64)))u/n30
(*.f64 b a)underflow30
(*.f64 b (neg.f64 a))underflow30
(*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))underflow67
(*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a))))underflow67
*.f64(*.f64 (*.f64 #s(literal 2 binary64) (/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64)))) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a))))u*o20
(*.f64 b a)underflow30
(*.f64 b (neg.f64 a))underflow30
(pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64))underflow74
(*.f64 x-scale y-scale)underflow32
(*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))underflow67
(/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64)))underflow80
(*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a))))underflow67
(*.f64 #s(literal 2 binary64) (/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64))))underflow80
(*.f64 b a)overflow24
(*.f64 b (neg.f64 a))overflow24
(*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))overflow62
Confusion
Predicted +Predicted -
+2511
-13
Precision
0.996031746031746
Recall
0.996031746031746
Confusion?
Predicted +Predicted MaybePredicted -
+25101
-103
Precision?
0.996031746031746
Recall?
0.996031746031746
Freqs
test
numberfreq
04
131
234
364
477
528
69
76
82
91
Total Confusion?
Predicted +Predicted MaybePredicted -
+100
-000
Precision?
1.0
Recall?
1.0
Samples
262.0ms512×0valid
Compiler

Compiled 3 413 to 172 computations (95% saved)

Precisions
Click to see histograms. Total time spent on operations: 204.0ms
ival-mult: 48.0ms (23.6% of total)
ival-pow2: 41.0ms (20.1% of total)
ival-cosu: 37.0ms (18.2% of total)
ival-div: 32.0ms (15.7% of total)
ival-add: 14.0ms (6.9% of total)
ival-sinu: 14.0ms (6.9% of total)
ival-sqrt: 6.0ms (2.9% of total)
ival-sub: 4.0ms (2% of total)
ival-neg: 4.0ms (2% of total)
ival-pi: 2.0ms (1% of total)
ival-true: 1.0ms (0.5% of total)
exact: 1.0ms (0.5% of total)
adjust: 0.0ms (0% of total)
ival-assert: 0.0ms (0% of total)

preprocess236.0ms (0.8%)

Memory
5.5MiB live, 236.0MiB allocated; 43ms collecting garbage
Iterations

Useful iterations: 0 (0.0ms)

IterNodesCost
05443725
116213584
279123584
056183
0104183
1191181
2720180
37199178
08672173
Stop Event
iter limit
node limit
iter limit
node limit
Calls
Call 1
Inputs
(/.f64 (neg.f64 (sqrt.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64)))) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (+.f64 (+.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) (sqrt.f64 (+.f64 (pow.f64 (-.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) #s(literal 2 binary64)) (pow.f64 (/.f64 (/.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (-.f64 (pow.f64 b #s(literal 2 binary64)) (pow.f64 a #s(literal 2 binary64)))) (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) x-scale) y-scale) #s(literal 2 binary64)))))))) (/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64))))
Outputs
(/.f64 (neg.f64 (sqrt.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64)))) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (+.f64 (+.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) (sqrt.f64 (+.f64 (pow.f64 (-.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) #s(literal 2 binary64)) (pow.f64 (/.f64 (/.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (-.f64 (pow.f64 b #s(literal 2 binary64)) (pow.f64 a #s(literal 2 binary64)))) (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) x-scale) y-scale) #s(literal 2 binary64)))))))) (/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64))))
(/.f64 (sqrt.f64 (*.f64 (+.f64 (hypot.f64 (-.f64 (/.f64 (+.f64 (pow.f64 (*.f64 (sin.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64)))) b) #s(literal 2 binary64)) (pow.f64 (*.f64 (cos.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64)))) a) #s(literal 2 binary64))) (*.f64 y-scale y-scale)) (/.f64 (+.f64 (pow.f64 (*.f64 (cos.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64)))) b) #s(literal 2 binary64)) (pow.f64 (*.f64 (sin.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64)))) a) #s(literal 2 binary64))) (*.f64 x-scale x-scale))) (*.f64 (/.f64 (cos.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64)))) (*.f64 y-scale x-scale)) (*.f64 (*.f64 (fma.f64 (neg.f64 a) a (*.f64 b b)) #s(literal 2 binary64)) (sin.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64))))))) (+.f64 (/.f64 (+.f64 (pow.f64 (*.f64 (sin.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64)))) b) #s(literal 2 binary64)) (pow.f64 (*.f64 (cos.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64)))) a) #s(literal 2 binary64))) (*.f64 y-scale y-scale)) (/.f64 (+.f64 (pow.f64 (*.f64 (cos.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64)))) b) #s(literal 2 binary64)) (pow.f64 (*.f64 (sin.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64)))) a) #s(literal 2 binary64))) (*.f64 x-scale x-scale)))) (*.f64 (/.f64 (*.f64 (*.f64 (*.f64 (*.f64 b b) a) a) (*.f64 (*.f64 (*.f64 b b) a) a)) (pow.f64 (*.f64 y-scale x-scale) #s(literal 2 binary64))) #s(literal 8 binary64)))) (*.f64 (*.f64 #s(literal -4 binary64) (*.f64 (*.f64 b b) a)) (/.f64 (neg.f64 a) (pow.f64 (*.f64 y-scale x-scale) #s(literal 2 binary64)))))
Symmetry

(abs y-scale)

(abs x-scale)

(abs b)

(abs a)

Compiler

Compiled 183 to 56 computations (69.4% saved)

eval0.0ms (0%)

Memory
0.1MiB live, 0.1MiB allocated; 0ms collecting garbage
Compiler

Compiled 0 to 5 computations (-∞% saved)

prune1.0ms (0%)

Memory
1.7MiB live, 1.7MiB allocated; 0ms collecting garbage
Alt Table
Click to see full alt table
StatusAccuracyProgram
2.2%
(/.f64 (neg.f64 (sqrt.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64)))) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (+.f64 (+.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) (sqrt.f64 (+.f64 (pow.f64 (-.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) #s(literal 2 binary64)) (pow.f64 (/.f64 (/.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (-.f64 (pow.f64 b #s(literal 2 binary64)) (pow.f64 a #s(literal 2 binary64)))) (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) x-scale) y-scale) #s(literal 2 binary64)))))))) (/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64))))
Compiler

Compiled 183 to 56 computations (69.4% saved)

simplify214.0ms (0.8%)

Memory
38.3MiB live, 223.3MiB allocated; 15ms collecting garbage
Localize:

Found 4 expressions of interest:

NewMetricScoreProgram
cost-diff1
(/.f64 (neg.f64 (sqrt.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64)))) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (+.f64 (+.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) (sqrt.f64 (+.f64 (pow.f64 (-.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) #s(literal 2 binary64)) (pow.f64 (/.f64 (/.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (-.f64 (pow.f64 b #s(literal 2 binary64)) (pow.f64 a #s(literal 2 binary64)))) (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) x-scale) y-scale) #s(literal 2 binary64)))))))) (/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64))))
cost-diff2
(*.f64 #s(literal 2 binary64) (/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64))))
cost-diff2
(*.f64 (*.f64 #s(literal 2 binary64) (/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64)))) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a))))
cost-diff5
(sqrt.f64 (+.f64 (pow.f64 (-.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) #s(literal 2 binary64)) (pow.f64 (/.f64 (/.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (-.f64 (pow.f64 b #s(literal 2 binary64)) (pow.f64 a #s(literal 2 binary64)))) (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) x-scale) y-scale) #s(literal 2 binary64))))
Iterations

Useful iterations: 0 (0.0ms)

IterNodesCost
0561613
01041613
11911601
27201600
371991590
086721560
Stop Event
iter limit
node limit
iter limit
Calls
Call 1
Inputs
(/.f64 (neg.f64 (sqrt.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64)))) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (+.f64 (+.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) (sqrt.f64 (+.f64 (pow.f64 (-.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) #s(literal 2 binary64)) (pow.f64 (/.f64 (/.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (-.f64 (pow.f64 b #s(literal 2 binary64)) (pow.f64 a #s(literal 2 binary64)))) (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) x-scale) y-scale) #s(literal 2 binary64)))))))) (/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64))))
(neg.f64 (sqrt.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64)))) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (+.f64 (+.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) (sqrt.f64 (+.f64 (pow.f64 (-.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) #s(literal 2 binary64)) (pow.f64 (/.f64 (/.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (-.f64 (pow.f64 b #s(literal 2 binary64)) (pow.f64 a #s(literal 2 binary64)))) (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) x-scale) y-scale) #s(literal 2 binary64))))))))
(sqrt.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64)))) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (+.f64 (+.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) (sqrt.f64 (+.f64 (pow.f64 (-.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) #s(literal 2 binary64)) (pow.f64 (/.f64 (/.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (-.f64 (pow.f64 b #s(literal 2 binary64)) (pow.f64 a #s(literal 2 binary64)))) (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) x-scale) y-scale) #s(literal 2 binary64)))))))
(*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64)))) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (+.f64 (+.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) (sqrt.f64 (+.f64 (pow.f64 (-.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) #s(literal 2 binary64)) (pow.f64 (/.f64 (/.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (-.f64 (pow.f64 b #s(literal 2 binary64)) (pow.f64 a #s(literal 2 binary64)))) (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) x-scale) y-scale) #s(literal 2 binary64))))))
(*.f64 (*.f64 #s(literal 2 binary64) (/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64)))) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a))))
(*.f64 #s(literal 2 binary64) (/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64))))
#s(literal 2 binary64)
(/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64)))
(*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a))))
#s(literal 4 binary64)
(*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))
(*.f64 b a)
b
a
(*.f64 b (neg.f64 a))
(neg.f64 a)
(pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64))
(*.f64 x-scale y-scale)
x-scale
y-scale
(+.f64 (+.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) (sqrt.f64 (+.f64 (pow.f64 (-.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) #s(literal 2 binary64)) (pow.f64 (/.f64 (/.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (-.f64 (pow.f64 b #s(literal 2 binary64)) (pow.f64 a #s(literal 2 binary64)))) (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) x-scale) y-scale) #s(literal 2 binary64)))))
(+.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale))
(/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale)
(/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale)
(+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)))
(pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))
(*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64))))
(sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))
(*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64))
(/.f64 angle #s(literal 180 binary64))
angle
#s(literal 180 binary64)
(PI.f64)
(pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))
(*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64))))
(cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))
(/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)
(/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale)
(+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)))
(pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))
(*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64))))
(pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))
(*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64))))
(sqrt.f64 (+.f64 (pow.f64 (-.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) #s(literal 2 binary64)) (pow.f64 (/.f64 (/.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (-.f64 (pow.f64 b #s(literal 2 binary64)) (pow.f64 a #s(literal 2 binary64)))) (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) x-scale) y-scale) #s(literal 2 binary64))))
(+.f64 (pow.f64 (-.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) #s(literal 2 binary64)) (pow.f64 (/.f64 (/.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (-.f64 (pow.f64 b #s(literal 2 binary64)) (pow.f64 a #s(literal 2 binary64)))) (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) x-scale) y-scale) #s(literal 2 binary64)))
(pow.f64 (-.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) #s(literal 2 binary64))
(-.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale))
(pow.f64 (/.f64 (/.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (-.f64 (pow.f64 b #s(literal 2 binary64)) (pow.f64 a #s(literal 2 binary64)))) (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) x-scale) y-scale) #s(literal 2 binary64))
(/.f64 (/.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (-.f64 (pow.f64 b #s(literal 2 binary64)) (pow.f64 a #s(literal 2 binary64)))) (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) x-scale) y-scale)
(/.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (-.f64 (pow.f64 b #s(literal 2 binary64)) (pow.f64 a #s(literal 2 binary64)))) (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) x-scale)
(*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (-.f64 (pow.f64 b #s(literal 2 binary64)) (pow.f64 a #s(literal 2 binary64)))) (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64))))
(*.f64 (*.f64 #s(literal 2 binary64) (-.f64 (pow.f64 b #s(literal 2 binary64)) (pow.f64 a #s(literal 2 binary64)))) (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64))))
(*.f64 #s(literal 2 binary64) (-.f64 (pow.f64 b #s(literal 2 binary64)) (pow.f64 a #s(literal 2 binary64))))
(-.f64 (pow.f64 b #s(literal 2 binary64)) (pow.f64 a #s(literal 2 binary64)))
(pow.f64 b #s(literal 2 binary64))
(pow.f64 a #s(literal 2 binary64))
Outputs
(/.f64 (neg.f64 (sqrt.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64)))) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (+.f64 (+.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) (sqrt.f64 (+.f64 (pow.f64 (-.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) #s(literal 2 binary64)) (pow.f64 (/.f64 (/.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (-.f64 (pow.f64 b #s(literal 2 binary64)) (pow.f64 a #s(literal 2 binary64)))) (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) x-scale) y-scale) #s(literal 2 binary64)))))))) (/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64))))
(/.f64 (sqrt.f64 (*.f64 (+.f64 (hypot.f64 (-.f64 (/.f64 (+.f64 (pow.f64 (*.f64 (sin.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64)))) b) #s(literal 2 binary64)) (pow.f64 (*.f64 (cos.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64)))) a) #s(literal 2 binary64))) (*.f64 y-scale y-scale)) (/.f64 (+.f64 (pow.f64 (*.f64 (cos.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64)))) b) #s(literal 2 binary64)) (pow.f64 (*.f64 (sin.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64)))) a) #s(literal 2 binary64))) (*.f64 x-scale x-scale))) (*.f64 (/.f64 (cos.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64)))) (*.f64 y-scale x-scale)) (*.f64 (*.f64 (fma.f64 (neg.f64 a) a (*.f64 b b)) #s(literal 2 binary64)) (sin.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64))))))) (+.f64 (/.f64 (+.f64 (pow.f64 (*.f64 (sin.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64)))) b) #s(literal 2 binary64)) (pow.f64 (*.f64 (cos.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64)))) a) #s(literal 2 binary64))) (*.f64 y-scale y-scale)) (/.f64 (+.f64 (pow.f64 (*.f64 (cos.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64)))) b) #s(literal 2 binary64)) (pow.f64 (*.f64 (sin.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64)))) a) #s(literal 2 binary64))) (*.f64 x-scale x-scale)))) (*.f64 (/.f64 (*.f64 (*.f64 (*.f64 (*.f64 b b) a) a) (*.f64 (*.f64 (*.f64 b b) a) a)) (pow.f64 (*.f64 y-scale x-scale) #s(literal 2 binary64))) #s(literal 8 binary64)))) (*.f64 (*.f64 #s(literal -4 binary64) (*.f64 (*.f64 b b) a)) (/.f64 (neg.f64 a) (pow.f64 (*.f64 y-scale x-scale) #s(literal 2 binary64)))))
(neg.f64 (sqrt.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64)))) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (+.f64 (+.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) (sqrt.f64 (+.f64 (pow.f64 (-.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) #s(literal 2 binary64)) (pow.f64 (/.f64 (/.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (-.f64 (pow.f64 b #s(literal 2 binary64)) (pow.f64 a #s(literal 2 binary64)))) (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) x-scale) y-scale) #s(literal 2 binary64))))))))
(neg.f64 (sqrt.f64 (*.f64 (+.f64 (hypot.f64 (-.f64 (/.f64 (+.f64 (pow.f64 (*.f64 (sin.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64)))) b) #s(literal 2 binary64)) (pow.f64 (*.f64 (cos.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64)))) a) #s(literal 2 binary64))) (*.f64 y-scale y-scale)) (/.f64 (+.f64 (pow.f64 (*.f64 (cos.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64)))) b) #s(literal 2 binary64)) (pow.f64 (*.f64 (sin.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64)))) a) #s(literal 2 binary64))) (*.f64 x-scale x-scale))) (*.f64 (/.f64 (cos.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64)))) (*.f64 y-scale x-scale)) (*.f64 (*.f64 (fma.f64 (neg.f64 a) a (*.f64 b b)) #s(literal 2 binary64)) (sin.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64))))))) (+.f64 (/.f64 (+.f64 (pow.f64 (*.f64 (sin.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64)))) b) #s(literal 2 binary64)) (pow.f64 (*.f64 (cos.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64)))) a) #s(literal 2 binary64))) (*.f64 y-scale y-scale)) (/.f64 (+.f64 (pow.f64 (*.f64 (cos.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64)))) b) #s(literal 2 binary64)) (pow.f64 (*.f64 (sin.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64)))) a) #s(literal 2 binary64))) (*.f64 x-scale x-scale)))) (*.f64 (/.f64 (*.f64 (*.f64 (*.f64 (*.f64 b b) a) a) (*.f64 (*.f64 (*.f64 b b) a) a)) (pow.f64 (*.f64 y-scale x-scale) #s(literal 2 binary64))) #s(literal 8 binary64)))))
(sqrt.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64)))) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (+.f64 (+.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) (sqrt.f64 (+.f64 (pow.f64 (-.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) #s(literal 2 binary64)) (pow.f64 (/.f64 (/.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (-.f64 (pow.f64 b #s(literal 2 binary64)) (pow.f64 a #s(literal 2 binary64)))) (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) x-scale) y-scale) #s(literal 2 binary64)))))))
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#s(literal 2 binary64)
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(*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a))))
(*.f64 (*.f64 (*.f64 (*.f64 (neg.f64 a) b) #s(literal 4 binary64)) a) b)
#s(literal 4 binary64)
(*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))
(*.f64 (*.f64 (neg.f64 a) a) (*.f64 b b))
(*.f64 b a)
(*.f64 a b)
b
a
(*.f64 b (neg.f64 a))
(*.f64 (neg.f64 a) b)
(neg.f64 a)
(pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64))
(pow.f64 (*.f64 y-scale x-scale) #s(literal 2 binary64))
(*.f64 x-scale y-scale)
(*.f64 y-scale x-scale)
x-scale
y-scale
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(*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64))
(*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64)))
(/.f64 angle #s(literal 180 binary64))
angle
#s(literal 180 binary64)
(PI.f64)
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(pow.f64 (*.f64 (cos.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64)))) a) #s(literal 2 binary64))
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(*.f64 (cos.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64)))) a)
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(*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64))))
(*.f64 (sin.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64)))) b)
(sqrt.f64 (+.f64 (pow.f64 (-.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) #s(literal 2 binary64)) (pow.f64 (/.f64 (/.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (-.f64 (pow.f64 b #s(literal 2 binary64)) (pow.f64 a #s(literal 2 binary64)))) (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) x-scale) y-scale) #s(literal 2 binary64))))
(hypot.f64 (-.f64 (/.f64 (+.f64 (pow.f64 (*.f64 (sin.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64)))) b) #s(literal 2 binary64)) (pow.f64 (*.f64 (cos.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64)))) a) #s(literal 2 binary64))) (*.f64 y-scale y-scale)) (/.f64 (+.f64 (pow.f64 (*.f64 (cos.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64)))) b) #s(literal 2 binary64)) (pow.f64 (*.f64 (sin.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64)))) a) #s(literal 2 binary64))) (*.f64 x-scale x-scale))) (*.f64 (/.f64 (cos.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64)))) (*.f64 y-scale x-scale)) (*.f64 (*.f64 (fma.f64 (neg.f64 a) a (*.f64 b b)) #s(literal 2 binary64)) (sin.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64)))))))
(+.f64 (pow.f64 (-.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) #s(literal 2 binary64)) (pow.f64 (/.f64 (/.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (-.f64 (pow.f64 b #s(literal 2 binary64)) (pow.f64 a #s(literal 2 binary64)))) (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) x-scale) y-scale) #s(literal 2 binary64)))
(+.f64 (pow.f64 (*.f64 (/.f64 (cos.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64)))) (*.f64 y-scale x-scale)) (*.f64 (*.f64 (fma.f64 (neg.f64 a) a (*.f64 b b)) #s(literal 2 binary64)) (sin.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64)))))) #s(literal 2 binary64)) (pow.f64 (-.f64 (/.f64 (+.f64 (pow.f64 (*.f64 (cos.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64)))) b) #s(literal 2 binary64)) (pow.f64 (*.f64 (sin.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64)))) a) #s(literal 2 binary64))) (*.f64 x-scale x-scale)) (/.f64 (+.f64 (pow.f64 (*.f64 (sin.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64)))) b) #s(literal 2 binary64)) (pow.f64 (*.f64 (cos.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64)))) a) #s(literal 2 binary64))) (*.f64 y-scale y-scale))) #s(literal 2 binary64)))
(pow.f64 (-.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) #s(literal 2 binary64))
(pow.f64 (-.f64 (/.f64 (+.f64 (pow.f64 (*.f64 (cos.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64)))) b) #s(literal 2 binary64)) (pow.f64 (*.f64 (sin.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64)))) a) #s(literal 2 binary64))) (*.f64 x-scale x-scale)) (/.f64 (+.f64 (pow.f64 (*.f64 (sin.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64)))) b) #s(literal 2 binary64)) (pow.f64 (*.f64 (cos.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64)))) a) #s(literal 2 binary64))) (*.f64 y-scale y-scale))) #s(literal 2 binary64))
(-.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale))
(-.f64 (/.f64 (+.f64 (pow.f64 (*.f64 (cos.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64)))) b) #s(literal 2 binary64)) (pow.f64 (*.f64 (sin.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64)))) a) #s(literal 2 binary64))) (*.f64 x-scale x-scale)) (/.f64 (+.f64 (pow.f64 (*.f64 (sin.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64)))) b) #s(literal 2 binary64)) (pow.f64 (*.f64 (cos.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64)))) a) #s(literal 2 binary64))) (*.f64 y-scale y-scale)))
(pow.f64 (/.f64 (/.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (-.f64 (pow.f64 b #s(literal 2 binary64)) (pow.f64 a #s(literal 2 binary64)))) (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) x-scale) y-scale) #s(literal 2 binary64))
(pow.f64 (*.f64 (/.f64 (cos.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64)))) (*.f64 y-scale x-scale)) (*.f64 (*.f64 (fma.f64 (neg.f64 a) a (*.f64 b b)) #s(literal 2 binary64)) (sin.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64)))))) #s(literal 2 binary64))
(/.f64 (/.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (-.f64 (pow.f64 b #s(literal 2 binary64)) (pow.f64 a #s(literal 2 binary64)))) (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) x-scale) y-scale)
(*.f64 (/.f64 (cos.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64)))) (*.f64 y-scale x-scale)) (*.f64 (*.f64 (fma.f64 (neg.f64 a) a (*.f64 b b)) #s(literal 2 binary64)) (sin.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64))))))
(/.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (-.f64 (pow.f64 b #s(literal 2 binary64)) (pow.f64 a #s(literal 2 binary64)))) (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) x-scale)
(*.f64 (*.f64 (*.f64 (fma.f64 (neg.f64 a) a (*.f64 b b)) (sin.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64))))) (/.f64 #s(literal 2 binary64) x-scale)) (cos.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64)))))
(*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (-.f64 (pow.f64 b #s(literal 2 binary64)) (pow.f64 a #s(literal 2 binary64)))) (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64))))
(*.f64 (*.f64 (*.f64 (fma.f64 (neg.f64 a) a (*.f64 b b)) #s(literal 2 binary64)) (cos.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64))))) (sin.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64)))))
(*.f64 (*.f64 #s(literal 2 binary64) (-.f64 (pow.f64 b #s(literal 2 binary64)) (pow.f64 a #s(literal 2 binary64)))) (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64))))
(*.f64 (*.f64 (fma.f64 (neg.f64 a) a (*.f64 b b)) #s(literal 2 binary64)) (sin.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64)))))
(*.f64 #s(literal 2 binary64) (-.f64 (pow.f64 b #s(literal 2 binary64)) (pow.f64 a #s(literal 2 binary64))))
(*.f64 (fma.f64 (neg.f64 a) a (*.f64 b b)) #s(literal 2 binary64))
(-.f64 (pow.f64 b #s(literal 2 binary64)) (pow.f64 a #s(literal 2 binary64)))
(fma.f64 (neg.f64 a) a (*.f64 b b))
(pow.f64 b #s(literal 2 binary64))
(*.f64 b b)
(pow.f64 a #s(literal 2 binary64))
(*.f64 a a)

localize217.0ms (0.8%)

Memory
28.5MiB live, 347.0MiB allocated; 79ms collecting garbage
Localize:

Found 4 expressions of interest:

NewMetricScoreProgram
accuracy16.012500816247897
(/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64)))
accuracy30.46514388629209
(sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))
accuracy30.66031287291737
(cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))
accuracy38.01807582313309
(/.f64 (neg.f64 (sqrt.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64)))) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (+.f64 (+.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) (sqrt.f64 (+.f64 (pow.f64 (-.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) #s(literal 2 binary64)) (pow.f64 (/.f64 (/.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (-.f64 (pow.f64 b #s(literal 2 binary64)) (pow.f64 a #s(literal 2 binary64)))) (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) x-scale) y-scale) #s(literal 2 binary64)))))))) (/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64))))
Samples
152.0ms256×0valid
Compiler

Compiled 1 615 to 58 computations (96.4% saved)

Precisions
Click to see histograms. Total time spent on operations: 100.0ms
ival-mult: 36.0ms (35.9% of total)
ival-pow2: 22.0ms (21.9% of total)
ival-div: 15.0ms (15% of total)
ival-sinu: 7.0ms (7% of total)
ival-cosu: 6.0ms (6% of total)
ival-add: 5.0ms (5% of total)
ival-sqrt: 3.0ms (3% of total)
ival-sub: 2.0ms (2% of total)
ival-neg: 2.0ms (2% of total)
ival-pi: 1.0ms (1% of total)
adjust: 0.0ms (0% of total)
ival-assert: 0.0ms (0% of total)
ival-true: 0.0ms (0% of total)
exact: 0.0ms (0% of total)

series302.0ms (1.1%)

Memory
0.6MiB live, 426.9MiB allocated; 68ms collecting garbage
Counts
7 → 103
Calls
Call 1
Inputs
(sqrt.f64 (+.f64 (pow.f64 (-.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) #s(literal 2 binary64)) (pow.f64 (/.f64 (/.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (-.f64 (pow.f64 b #s(literal 2 binary64)) (pow.f64 a #s(literal 2 binary64)))) (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) x-scale) y-scale) #s(literal 2 binary64))))
(*.f64 (*.f64 #s(literal 2 binary64) (/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64)))) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a))))
(*.f64 #s(literal 2 binary64) (/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64))))
(/.f64 (neg.f64 (sqrt.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64)))) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (+.f64 (+.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) (sqrt.f64 (+.f64 (pow.f64 (-.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) #s(literal 2 binary64)) (pow.f64 (/.f64 (/.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (-.f64 (pow.f64 b #s(literal 2 binary64)) (pow.f64 a #s(literal 2 binary64)))) (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) x-scale) y-scale) #s(literal 2 binary64)))))))) (/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64))))
(cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))
(sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))
(/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64)))
Outputs
#s(approx (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))) #s(hole binary64 (sqrt (+ (* 4 (/ (* (pow b 4) (* (pow (cos (* 1/180 (* angle (PI)))) 2) (pow (sin (* 1/180 (* angle (PI)))) 2))) (* (pow x-scale 2) (pow y-scale 2)))) (pow (- (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)) (/ (* (pow b 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow y-scale 2))) 2)))))
#s(approx (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))) #s(hole binary64 (+ (sqrt (+ (* 4 (/ (* (pow b 4) (* (pow (cos (* 1/180 (* angle (PI)))) 2) (pow (sin (* 1/180 (* angle (PI)))) 2))) (* (pow x-scale 2) (pow y-scale 2)))) (pow (- (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)) (/ (* (pow b 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow y-scale 2))) 2))) (* 1/2 (* (* (pow a 2) (+ (* -8 (/ (* (pow b 2) (* (pow (cos (* 1/180 (* angle (PI)))) 2) (pow (sin (* 1/180 (* angle (PI)))) 2))) (* (pow x-scale 2) (pow y-scale 2)))) (* 2 (* (- (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)) (/ (* (pow b 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow y-scale 2))) (- (/ (pow (sin (* 1/180 (* angle (PI)))) 2) (pow x-scale 2)) (/ (pow (cos (* 1/180 (* angle (PI)))) 2) (pow y-scale 2))))))) (sqrt (/ 1 (+ (* 4 (/ (* (pow b 4) (* (pow (cos (* 1/180 (* angle (PI)))) 2) (pow (sin (* 1/180 (* angle (PI)))) 2))) (* (pow x-scale 2) (pow y-scale 2)))) (pow (- (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)) (/ (* (pow b 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow y-scale 2))) 2)))))))))
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(- (* 1/2 (/ (- (pow (+ (* (pow a 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (* (pow b 2) (pow (sin (* 1/180 (* angle (PI)))) 2))) 2) (* 1/4 (/ (pow (+ (* -2 (* (+ (* (pow a 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (* (pow b 2) (pow (sin (* 1/180 (* angle (PI)))) 2))) (+ (/ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)) (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))))) (* 4 (/ (* (pow (cos (* 1/180 (* angle (PI)))) 2) (* (pow (sin (* 1/180 (* angle (PI)))) 2) (pow (- (pow b 2) (pow a 2)) 2))) (pow x-scale 2)))) 2) (pow (+ (/ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)) (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))) 2)))) (+ (/ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)) (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))))) (* 1/4 (/ (pow (+ (* 1/2 (/ (+ (* -2 (* (+ (* (pow a 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (* (pow b 2) (pow (sin (* 1/180 (* angle (PI)))) 2))) (+ (/ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)) (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))))) (* 4 (/ (* (pow (cos (* 1/180 (* angle (PI)))) 2) (* (pow (sin (* 1/180 (* angle (PI)))) 2) (pow (- (pow b 2) (pow a 2)) 2))) (pow x-scale 2)))) (+ (/ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)) (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))))) (+ (* (pow a 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (* (pow b 2) (pow (sin (* 1/180 (* angle (PI)))) 2)))) 2) (+ (* 2 (/ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))) (* 2 (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))))))))) (pow y-scale 4)) (sqrt (/ 1 (+ (* 2 (/ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))) (* 2 (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)))))))) (* 1/4 (* (* x-scale (sqrt 8)) (sqrt (+ (* 2 (/ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))) (* 2 (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))))))))))))))
Calls

15 calls:

TimeVariablePointExpression
71.0ms
b
@inf
((sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))) (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (cos (* (/ angle 180) (PI))) (sin (* (/ angle 180) (PI))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2)))
21.0ms
angle
@inf
((sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))) (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (cos (* (/ angle 180) (PI))) (sin (* (/ angle 180) (PI))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2)))
20.0ms
a
@0
((sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))) (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (cos (* (/ angle 180) (PI))) (sin (* (/ angle 180) (PI))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2)))
20.0ms
b
@0
((sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))) (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (cos (* (/ angle 180) (PI))) (sin (* (/ angle 180) (PI))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2)))
17.0ms
angle
@0
((sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))) (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (cos (* (/ angle 180) (PI))) (sin (* (/ angle 180) (PI))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2)))

simplify356.0ms (1.3%)

Memory
-5.1MiB live, 403.1MiB allocated; 36ms collecting garbage
Iterations

Useful iterations: 0 (0.0ms)

IterNodesCost
0115868540
1379167244
0919565361
Stop Event
iter limit
node limit
Counts
103 → 103
Calls
Call 1
Inputs
#s(approx (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))) #s(hole binary64 (sqrt (+ (* 4 (/ (* (pow b 4) (* (pow (cos (* 1/180 (* angle (PI)))) 2) (pow (sin (* 1/180 (* angle (PI)))) 2))) (* (pow x-scale 2) (pow y-scale 2)))) (pow (- (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)) (/ (* (pow b 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow y-scale 2))) 2)))))
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Outputs
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(*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 b b) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 a a)))) (/.f64 (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b))) (*.f64 x-scale x-scale)))) (/.f64 (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b))) (*.f64 x-scale x-scale))) #s(literal 1/2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 b b) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 a a))))) (/.f64 (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b))) (*.f64 x-scale x-scale)))))) (pow.f64 y-scale #s(literal 6 binary64)))) (sqrt.f64 (/.f64 #s(literal 1 binary64) (/.f64 (*.f64 #s(literal 2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b)))) (*.f64 x-scale x-scale)))) (fma.f64 (*.f64 #s(literal 1/8 binary64) (/.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) x-scale) (-.f64 (*.f64 (/.f64 (-.f64 (pow.f64 (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 b b) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 a a))) #s(literal 2 binary64)) (*.f64 (/.f64 (pow.f64 (fma.f64 (/.f64 #s(literal 4 binary64) x-scale) (/.f64 (*.f64 (*.f64 (pow.f64 (*.f64 (+.f64 b a) (-.f64 b a)) #s(literal 2 binary64)) (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64))) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64))) x-scale) (*.f64 (*.f64 #s(literal -2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 b b) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 a a)))) (/.f64 (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b))) (*.f64 x-scale x-scale)))) #s(literal 2 binary64)) (pow.f64 (/.f64 (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b))) (*.f64 x-scale x-scale)) #s(literal 2 binary64))) #s(literal 1/4 binary64))) (/.f64 (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b))) (*.f64 x-scale x-scale))) #s(literal 1/2 binary64)) (*.f64 #s(literal 1/8 binary64) (/.f64 (pow.f64 (fma.f64 (/.f64 (fma.f64 (/.f64 #s(literal 4 binary64) x-scale) (/.f64 (*.f64 (*.f64 (pow.f64 (*.f64 (+.f64 b a) (-.f64 b a)) #s(literal 2 binary64)) (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64))) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64))) x-scale) (*.f64 (*.f64 #s(literal -2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 b b) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 a a)))) (/.f64 (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b))) (*.f64 x-scale x-scale)))) (/.f64 (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b))) (*.f64 x-scale x-scale))) #s(literal 1/2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 b b) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 a a)))) #s(literal 2 binary64)) (/.f64 (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b))) (*.f64 x-scale x-scale)))))) (pow.f64 y-scale #s(literal 4 binary64)))) (sqrt.f64 (/.f64 #s(literal 1 binary64) (/.f64 (*.f64 #s(literal 2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b)))) (*.f64 x-scale x-scale)))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) x-scale)) (sqrt.f64 (/.f64 (*.f64 #s(literal 2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b)))) (*.f64 x-scale x-scale)))))))))

rewrite192.0ms (0.7%)

Memory
38.9MiB live, 222.2MiB allocated; 46ms collecting garbage
Iterations

Useful iterations: 0 (0.0ms)

IterNodesCost
056340
0104340
1372319
22997305
08774295
Stop Event
iter limit
node limit
iter limit
Counts
7 → 178
Calls
Call 1
Inputs
(sqrt.f64 (+.f64 (pow.f64 (-.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) #s(literal 2 binary64)) (pow.f64 (/.f64 (/.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (-.f64 (pow.f64 b #s(literal 2 binary64)) (pow.f64 a #s(literal 2 binary64)))) (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) x-scale) y-scale) #s(literal 2 binary64))))
(*.f64 (*.f64 #s(literal 2 binary64) (/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64)))) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a))))
(*.f64 #s(literal 2 binary64) (/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64))))
(/.f64 (neg.f64 (sqrt.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64)))) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (+.f64 (+.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) (sqrt.f64 (+.f64 (pow.f64 (-.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) #s(literal 2 binary64)) (pow.f64 (/.f64 (/.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (-.f64 (pow.f64 b #s(literal 2 binary64)) (pow.f64 a #s(literal 2 binary64)))) (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) x-scale) y-scale) #s(literal 2 binary64)))))))) (/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64))))
(cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))
(sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))
(/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64)))
Outputs
(*.f64 (pow.f64 (neg.f64 (hypot.f64 (/.f64 (*.f64 (*.f64 (+.f64 b a) (-.f64 b a)) (sin.f64 (*.f64 #s(literal 2 binary64) (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64)))))) (*.f64 y-scale x-scale)) (-.f64 (/.f64 (+.f64 (pow.f64 (*.f64 (cos.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64)))) b) #s(literal 2 binary64)) (pow.f64 (*.f64 (sin.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64)))) a) #s(literal 2 binary64))) (*.f64 x-scale x-scale)) (/.f64 (+.f64 (pow.f64 (*.f64 b (sin.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64))))) #s(literal 2 binary64)) (pow.f64 (*.f64 (cos.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64)))) a) #s(literal 2 binary64))) (*.f64 y-scale y-scale))))) #s(literal 1/2 binary64)) (pow.f64 (neg.f64 (hypot.f64 (/.f64 (*.f64 (*.f64 (+.f64 b a) (-.f64 b a)) (sin.f64 (*.f64 #s(literal 2 binary64) (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64)))))) (*.f64 y-scale x-scale)) (-.f64 (/.f64 (+.f64 (pow.f64 (*.f64 (cos.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64)))) b) #s(literal 2 binary64)) (pow.f64 (*.f64 (sin.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64)))) a) #s(literal 2 binary64))) (*.f64 x-scale x-scale)) (/.f64 (+.f64 (pow.f64 (*.f64 b (sin.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64))))) #s(literal 2 binary64)) (pow.f64 (*.f64 (cos.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64)))) a) #s(literal 2 binary64))) (*.f64 y-scale y-scale))))) #s(literal 1/2 binary64)))
(*.f64 (pow.f64 (fabs.f64 (hypot.f64 (/.f64 (*.f64 (*.f64 (+.f64 b a) (-.f64 b a)) (sin.f64 (*.f64 #s(literal 2 binary64) (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64)))))) (*.f64 y-scale x-scale)) (-.f64 (/.f64 (+.f64 (pow.f64 (*.f64 (cos.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64)))) b) #s(literal 2 binary64)) (pow.f64 (*.f64 (sin.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64)))) a) #s(literal 2 binary64))) (*.f64 x-scale x-scale)) (/.f64 (+.f64 (pow.f64 (*.f64 b (sin.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64))))) #s(literal 2 binary64)) (pow.f64 (*.f64 (cos.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64)))) a) #s(literal 2 binary64))) (*.f64 y-scale y-scale))))) #s(literal 1/2 binary64)) (pow.f64 (fabs.f64 (hypot.f64 (/.f64 (*.f64 (*.f64 (+.f64 b a) (-.f64 b a)) (sin.f64 (*.f64 #s(literal 2 binary64) (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64)))))) (*.f64 y-scale x-scale)) (-.f64 (/.f64 (+.f64 (pow.f64 (*.f64 (cos.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64)))) b) #s(literal 2 binary64)) (pow.f64 (*.f64 (sin.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64)))) a) #s(literal 2 binary64))) (*.f64 x-scale x-scale)) (/.f64 (+.f64 (pow.f64 (*.f64 b (sin.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64))))) #s(literal 2 binary64)) (pow.f64 (*.f64 (cos.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64)))) a) #s(literal 2 binary64))) (*.f64 y-scale y-scale))))) #s(literal 1/2 binary64)))
(*.f64 (pow.f64 (hypot.f64 (/.f64 (*.f64 (*.f64 (+.f64 b a) (-.f64 b a)) (sin.f64 (*.f64 #s(literal 2 binary64) (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64)))))) (*.f64 y-scale x-scale)) (-.f64 (/.f64 (+.f64 (pow.f64 (*.f64 (cos.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64)))) b) #s(literal 2 binary64)) (pow.f64 (*.f64 (sin.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64)))) a) #s(literal 2 binary64))) (*.f64 x-scale x-scale)) (/.f64 (+.f64 (pow.f64 (*.f64 b (sin.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64))))) #s(literal 2 binary64)) (pow.f64 (*.f64 (cos.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64)))) a) #s(literal 2 binary64))) (*.f64 y-scale y-scale)))) #s(literal 1/2 binary64)) (pow.f64 (hypot.f64 (/.f64 (*.f64 (*.f64 (+.f64 b a) (-.f64 b a)) (sin.f64 (*.f64 #s(literal 2 binary64) (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64)))))) (*.f64 y-scale x-scale)) (-.f64 (/.f64 (+.f64 (pow.f64 (*.f64 (cos.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64)))) b) #s(literal 2 binary64)) (pow.f64 (*.f64 (sin.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64)))) a) #s(literal 2 binary64))) (*.f64 x-scale x-scale)) (/.f64 (+.f64 (pow.f64 (*.f64 b (sin.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64))))) #s(literal 2 binary64)) (pow.f64 (*.f64 (cos.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64)))) a) #s(literal 2 binary64))) (*.f64 y-scale y-scale)))) #s(literal 1/2 binary64)))
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(sin.f64 (+.f64 (neg.f64 (/.f64 (*.f64 (PI.f64) angle) #s(literal -180 binary64))) (/.f64 (PI.f64) #s(literal 2 binary64))))
(sin.f64 (fma.f64 (neg.f64 (PI.f64)) (/.f64 angle #s(literal 180 binary64)) (/.f64 (PI.f64) #s(literal 2 binary64))))
(sin.f64 (fma.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64)) (/.f64 (PI.f64) #s(literal 2 binary64))))
(cos.f64 (neg.f64 (neg.f64 (/.f64 (*.f64 (PI.f64) angle) #s(literal -180 binary64)))))
(cos.f64 (neg.f64 (/.f64 (*.f64 (PI.f64) angle) #s(literal -180 binary64))))
(cos.f64 (/.f64 (*.f64 (PI.f64) angle) #s(literal -180 binary64)))
(cos.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64))))
(exp.f64 (*.f64 (log.f64 (cos.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64))))) #s(literal 1 binary64)))
(+.f64 (*.f64 (sin.f64 (/.f64 (*.f64 (PI.f64) angle) #s(literal -180 binary64))) #s(literal 0 binary64)) (cos.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64)))))
(+.f64 (*.f64 #s(literal 1 binary64) (cos.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64))))) (*.f64 #s(literal 0 binary64) (sin.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64))))))
(+.f64 (*.f64 (sin.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64)))) #s(literal 0 binary64)) (cos.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64)))))
(*.f64 (pow.f64 (sin.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64)))) #s(literal 1/2 binary64)) (pow.f64 (sin.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64)))) #s(literal 1/2 binary64)))
(*.f64 (sin.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64)))) #s(literal 1 binary64))
(pow.f64 (pow.f64 (sin.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64)))) #s(literal 2 binary64)) #s(literal 1/2 binary64))
(pow.f64 (sin.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64)))) #s(literal 1 binary64))
(sin.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64))))
(exp.f64 (*.f64 (log.f64 (sin.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64))))) #s(literal 1 binary64)))
(*.f64 (/.f64 (*.f64 (*.f64 b a) #s(literal 4 binary64)) (*.f64 x-scale x-scale)) (/.f64 (*.f64 (neg.f64 a) b) (*.f64 y-scale y-scale)))
(*.f64 (/.f64 (*.f64 (*.f64 b a) #s(literal 4 binary64)) (*.f64 y-scale x-scale)) (/.f64 (*.f64 (neg.f64 a) b) (*.f64 y-scale x-scale)))
(*.f64 (/.f64 (neg.f64 (pow.f64 (*.f64 b a) #s(literal 2 binary64))) (*.f64 x-scale x-scale)) (/.f64 #s(literal 4 binary64) (*.f64 y-scale y-scale)))
(*.f64 (/.f64 #s(literal 4 binary64) (*.f64 x-scale x-scale)) (/.f64 (neg.f64 (pow.f64 (*.f64 b a) #s(literal 2 binary64))) (*.f64 y-scale y-scale)))
(*.f64 (/.f64 (neg.f64 (pow.f64 (*.f64 b a) #s(literal 2 binary64))) (*.f64 y-scale x-scale)) (/.f64 #s(literal 4 binary64) (*.f64 y-scale x-scale)))
(*.f64 (/.f64 #s(literal 4 binary64) (*.f64 y-scale x-scale)) (/.f64 (neg.f64 (pow.f64 (*.f64 b a) #s(literal 2 binary64))) (*.f64 y-scale x-scale)))
(*.f64 (/.f64 (neg.f64 (pow.f64 (*.f64 b a) #s(literal 2 binary64))) (pow.f64 (*.f64 y-scale x-scale) #s(literal 2 binary64))) #s(literal 4 binary64))
(*.f64 (*.f64 (*.f64 b a) #s(literal 4 binary64)) (/.f64 (*.f64 (neg.f64 a) b) (pow.f64 (*.f64 y-scale x-scale) #s(literal 2 binary64))))
(*.f64 (neg.f64 (pow.f64 (*.f64 b a) #s(literal 2 binary64))) (/.f64 #s(literal 4 binary64) (pow.f64 (*.f64 y-scale x-scale) #s(literal 2 binary64))))
(*.f64 #s(literal 4 binary64) (/.f64 (neg.f64 (pow.f64 (*.f64 b a) #s(literal 2 binary64))) (pow.f64 (*.f64 y-scale x-scale) #s(literal 2 binary64))))
(/.f64 (/.f64 (*.f64 (neg.f64 (pow.f64 (*.f64 b a) #s(literal 2 binary64))) #s(literal 4 binary64)) (*.f64 x-scale x-scale)) (*.f64 y-scale y-scale))
(/.f64 (/.f64 (*.f64 (neg.f64 (pow.f64 (*.f64 b a) #s(literal 2 binary64))) #s(literal 4 binary64)) (*.f64 y-scale x-scale)) (*.f64 y-scale x-scale))
(/.f64 (neg.f64 (*.f64 #s(literal -4 binary64) (neg.f64 (pow.f64 (*.f64 b a) #s(literal 2 binary64))))) (neg.f64 (neg.f64 (pow.f64 (*.f64 y-scale x-scale) #s(literal 2 binary64)))))
(/.f64 (*.f64 #s(literal -4 binary64) (neg.f64 (pow.f64 (*.f64 b a) #s(literal 2 binary64)))) (neg.f64 (pow.f64 (*.f64 y-scale x-scale) #s(literal 2 binary64))))
(/.f64 (*.f64 (neg.f64 (pow.f64 (*.f64 b a) #s(literal 2 binary64))) #s(literal 4 binary64)) (pow.f64 (*.f64 y-scale x-scale) #s(literal 2 binary64)))
(neg.f64 (*.f64 #s(literal -4 binary64) (/.f64 (neg.f64 (pow.f64 (*.f64 b a) #s(literal 2 binary64))) (pow.f64 (*.f64 y-scale x-scale) #s(literal 2 binary64)))))

eval121.0ms (0.4%)

Memory
-6.9MiB live, 228.1MiB allocated; 24ms collecting garbage
Compiler

Compiled 134 935 to 4 163 computations (96.9% saved)

prune68.0ms (0.2%)

Memory
12.2MiB live, 156.5MiB allocated; 7ms collecting garbage
Pruning

14 alts after pruning (14 fresh and 0 done)

PrunedKeptTotal
New42614440
Fresh000
Picked101
Done000
Total42714441
Accuracy
65.1%
Counts
441 → 14
Alt Table
Click to see full alt table
StatusAccuracyProgram
5.0%
(/.f64 (neg.f64 (sqrt.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64)))) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (+.f64 (+.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) #s(approx (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))) (/.f64 (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 b b) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 a a))) (*.f64 y-scale y-scale))))))) (/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64))))
6.9%
(*.f64 (*.f64 (/.f64 (sqrt.f64 (*.f64 (+.f64 (+.f64 (/.f64 (+.f64 (pow.f64 (*.f64 b (sin.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64))))) #s(literal 2 binary64)) (pow.f64 (*.f64 (cos.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64)))) a) #s(literal 2 binary64))) (*.f64 y-scale y-scale)) (/.f64 (+.f64 (pow.f64 (*.f64 (cos.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64)))) b) #s(literal 2 binary64)) (pow.f64 (*.f64 (sin.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64)))) a) #s(literal 2 binary64))) (*.f64 x-scale x-scale))) (hypot.f64 (/.f64 (*.f64 (*.f64 (+.f64 b a) (-.f64 b a)) (sin.f64 (*.f64 #s(literal 2 binary64) (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64)))))) (*.f64 y-scale x-scale)) (-.f64 (/.f64 (+.f64 (pow.f64 (*.f64 (cos.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64)))) b) #s(literal 2 binary64)) (pow.f64 (*.f64 (sin.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64)))) a) #s(literal 2 binary64))) (*.f64 x-scale x-scale)) (/.f64 (+.f64 (pow.f64 (*.f64 b (sin.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64))))) #s(literal 2 binary64)) (pow.f64 (*.f64 (cos.f64 (*.f64 (PI.f64) (/.f64 angle #s(literal 180 binary64)))) a) #s(literal 2 binary64))) (*.f64 y-scale y-scale))))) (*.f64 (*.f64 #s(literal 8 binary64) (/.f64 (neg.f64 (pow.f64 (*.f64 b a) #s(literal 2 binary64))) (pow.f64 (*.f64 y-scale x-scale) #s(literal 2 binary64)))) (neg.f64 (pow.f64 (*.f64 b a) #s(literal 2 binary64)))))) (*.f64 #s(literal -4 binary64) (neg.f64 (pow.f64 (*.f64 b a) #s(literal 2 binary64))))) (*.f64 y-scale x-scale)) (*.f64 y-scale x-scale))
7.8%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (fma.f64 (/.f64 (*.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) (fma.f64 (/.f64 (fma.f64 (/.f64 #s(literal 4 binary64) y-scale) (/.f64 (*.f64 (*.f64 (pow.f64 (*.f64 (+.f64 b a) (-.f64 b a)) #s(literal 2 binary64)) (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64))) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64))) y-scale) (*.f64 (*.f64 #s(literal -2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b)))) (/.f64 (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 b b) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 a a))) (*.f64 y-scale y-scale)))) (/.f64 (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 b b) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 a a))) (*.f64 y-scale y-scale))) #s(literal 1/2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b))))) (sqrt.f64 (/.f64 #s(literal 1 binary64) (*.f64 #s(literal 2 binary64) (/.f64 (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 b b) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 a a))) (*.f64 y-scale y-scale)))))) (*.f64 x-scale x-scale)) #s(literal 1/8 binary64) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (sqrt.f64 (*.f64 #s(literal 2 binary64) (/.f64 (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 b b) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 a a))) (*.f64 y-scale y-scale)))))) x-scale))
6.6%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (fma.f64 (/.f64 (*.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) x-scale) (fma.f64 (/.f64 (fma.f64 (/.f64 #s(literal 4 binary64) x-scale) (/.f64 (*.f64 (*.f64 (pow.f64 (*.f64 (+.f64 b a) (-.f64 b a)) #s(literal 2 binary64)) (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64))) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64))) x-scale) (*.f64 (*.f64 #s(literal -2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 b b) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 a a)))) (/.f64 (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b))) (*.f64 x-scale x-scale)))) (/.f64 (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b))) (*.f64 x-scale x-scale))) #s(literal 1/2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 b b) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 a a))))) (sqrt.f64 (/.f64 #s(literal 1 binary64) (/.f64 (*.f64 #s(literal 2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b)))) (*.f64 x-scale x-scale))))) (*.f64 y-scale y-scale)) #s(literal 1/8 binary64) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) x-scale)) (sqrt.f64 (/.f64 (*.f64 #s(literal 2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b)))) (*.f64 x-scale x-scale))))) y-scale))
10.5%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (fma.f64 (*.f64 (sqrt.f64 (/.f64 #s(literal 1 binary64) (+.f64 (sqrt.f64 (fma.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (pow.f64 (*.f64 y-scale x-scale) #s(literal 2 binary64)))) #s(literal 4 binary64) (pow.f64 (-.f64 (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 x-scale x-scale)) (/.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 y-scale y-scale))) #s(literal 2 binary64)))) (+.f64 (/.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 y-scale y-scale)) (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 x-scale x-scale)))))) (*.f64 (/.f64 (*.f64 y-scale x-scale) a) (/.f64 (*.f64 (fma.f64 (*.f64 #s(literal 1/2 binary64) (fma.f64 (*.f64 (-.f64 (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 x-scale x-scale)) (/.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 y-scale y-scale))) (fma.f64 (/.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) x-scale) (/.f64 (*.f64 b b) x-scale) (*.f64 (*.f64 (neg.f64 b) b) (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 y-scale y-scale))))) #s(literal 2 binary64) (*.f64 (*.f64 (*.f64 b b) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (pow.f64 (*.f64 y-scale x-scale) #s(literal 2 binary64))))) #s(literal -8 binary64)))) (sqrt.f64 (/.f64 #s(literal 1 binary64) (fma.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (pow.f64 (*.f64 y-scale x-scale) #s(literal 2 binary64)))) #s(literal 4 binary64) (pow.f64 (-.f64 (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 x-scale x-scale)) (/.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 y-scale y-scale))) #s(literal 2 binary64))))) (fma.f64 (/.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) x-scale) (/.f64 (*.f64 b b) x-scale) (*.f64 (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) y-scale) (/.f64 (*.f64 b b) y-scale)))) (sqrt.f64 #s(literal 8 binary64))) a))) #s(literal 1/8 binary64) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale)) (sqrt.f64 (+.f64 (sqrt.f64 (fma.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (pow.f64 (*.f64 y-scale x-scale) #s(literal 2 binary64)))) #s(literal 4 binary64) (pow.f64 (-.f64 (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 x-scale x-scale)) (/.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 y-scale y-scale))) #s(literal 2 binary64)))) (+.f64 (/.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 y-scale y-scale)) (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 x-scale x-scale))))))) a))
12.3%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (fma.f64 (*.f64 (sqrt.f64 (/.f64 #s(literal 1 binary64) (+.f64 (sqrt.f64 (fma.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (pow.f64 (*.f64 y-scale x-scale) #s(literal 2 binary64)))) #s(literal 4 binary64) (pow.f64 (-.f64 (/.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 x-scale x-scale)) (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 y-scale y-scale))) #s(literal 2 binary64)))) (+.f64 (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 y-scale y-scale)) (/.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 x-scale x-scale)))))) (*.f64 (/.f64 (*.f64 y-scale x-scale) b) (/.f64 (*.f64 (fma.f64 (*.f64 #s(literal 1/2 binary64) (fma.f64 (*.f64 (-.f64 (/.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 x-scale x-scale)) (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 y-scale y-scale))) (fma.f64 (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) x-scale) (/.f64 (*.f64 a a) x-scale) (*.f64 (*.f64 (neg.f64 a) a) (/.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 y-scale y-scale))))) #s(literal 2 binary64) (*.f64 (*.f64 (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (pow.f64 (*.f64 y-scale x-scale) #s(literal 2 binary64))))) #s(literal -8 binary64)))) (sqrt.f64 (/.f64 #s(literal 1 binary64) (fma.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (pow.f64 (*.f64 y-scale x-scale) #s(literal 2 binary64)))) #s(literal 4 binary64) (pow.f64 (-.f64 (/.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 x-scale x-scale)) (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 y-scale y-scale))) #s(literal 2 binary64))))) (fma.f64 (/.f64 (*.f64 a a) y-scale) (/.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) y-scale) (*.f64 (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) x-scale) (/.f64 (*.f64 a a) x-scale)))) (sqrt.f64 #s(literal 8 binary64))) b))) #s(literal 1/8 binary64) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale)) (sqrt.f64 (+.f64 (sqrt.f64 (fma.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (pow.f64 (*.f64 y-scale x-scale) #s(literal 2 binary64)))) #s(literal 4 binary64) (pow.f64 (-.f64 (/.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 x-scale x-scale)) (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 y-scale y-scale))) #s(literal 2 binary64)))) (+.f64 (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 y-scale y-scale)) (/.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 x-scale x-scale))))))) b))
24.3%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale) b)) (sqrt.f64 (+.f64 (sqrt.f64 (fma.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (pow.f64 (*.f64 y-scale x-scale) #s(literal 2 binary64)))) #s(literal 4 binary64) (pow.f64 (-.f64 (/.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 x-scale x-scale)) (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 y-scale y-scale))) #s(literal 2 binary64)))) (+.f64 (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 y-scale y-scale)) (/.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 x-scale x-scale)))))))
25.9%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale) a)) (sqrt.f64 (+.f64 (sqrt.f64 (fma.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (pow.f64 (*.f64 y-scale x-scale) #s(literal 2 binary64)))) #s(literal 4 binary64) (pow.f64 (-.f64 (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 x-scale x-scale)) (/.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 y-scale y-scale))) #s(literal 2 binary64)))) (+.f64 (/.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 y-scale y-scale)) (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 x-scale x-scale)))))))
25.2%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale)) (sqrt.f64 (/.f64 (*.f64 #s(literal 2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b)))) (*.f64 x-scale x-scale)))))
9.4%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale)) (sqrt.f64 (+.f64 (fma.f64 (/.f64 (*.f64 a a) y-scale) (/.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) y-scale) (*.f64 (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) x-scale) (/.f64 (*.f64 a a) x-scale))) (sqrt.f64 (fma.f64 (*.f64 (pow.f64 a #s(literal 4 binary64)) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (pow.f64 (*.f64 y-scale x-scale) #s(literal 2 binary64))))) #s(literal 4 binary64) (pow.f64 (fma.f64 (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) x-scale) (/.f64 (*.f64 a a) x-scale) (*.f64 (*.f64 (neg.f64 a) a) (/.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 y-scale y-scale)))) #s(literal 2 binary64))))))))
22.6%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale)) (sqrt.f64 (*.f64 #s(literal 2 binary64) (/.f64 (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 b b) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 a a))) (*.f64 y-scale y-scale))))))
42.4%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (sqrt.f64 (*.f64 #s(literal 2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b)))))))
41.8%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) x-scale)) (sqrt.f64 (*.f64 #s(literal 2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 b b) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 a a)))))))
28.1%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) b) (*.f64 (*.f64 y-scale (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64)))))
Compiler

Compiled 8 446 to 2 582 computations (69.4% saved)

simplify154.0ms (0.5%)

Memory
-4.8MiB live, 227.1MiB allocated; 12ms collecting garbage
Localize:

Found 20 expressions of interest:

NewMetricScoreProgram
cost-diff0
(*.f64 (fma.f64 (/.f64 (*.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) x-scale) (fma.f64 (/.f64 (fma.f64 (/.f64 #s(literal 4 binary64) x-scale) (/.f64 (*.f64 (*.f64 (pow.f64 (*.f64 (+.f64 b a) (-.f64 b a)) #s(literal 2 binary64)) (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64))) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64))) x-scale) (*.f64 (*.f64 #s(literal -2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 b b) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 a a)))) (/.f64 (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b))) (*.f64 x-scale x-scale)))) (/.f64 (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b))) (*.f64 x-scale x-scale))) #s(literal 1/2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 b b) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 a a))))) (sqrt.f64 (/.f64 #s(literal 1 binary64) (/.f64 (*.f64 #s(literal 2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b)))) (*.f64 x-scale x-scale))))) (*.f64 y-scale y-scale)) #s(literal 1/8 binary64) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) x-scale)) (sqrt.f64 (/.f64 (*.f64 #s(literal 2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b)))) (*.f64 x-scale x-scale))))) y-scale)
cost-diff0
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (fma.f64 (/.f64 (*.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) x-scale) (fma.f64 (/.f64 (fma.f64 (/.f64 #s(literal 4 binary64) x-scale) (/.f64 (*.f64 (*.f64 (pow.f64 (*.f64 (+.f64 b a) (-.f64 b a)) #s(literal 2 binary64)) (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64))) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64))) x-scale) (*.f64 (*.f64 #s(literal -2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 b b) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 a a)))) (/.f64 (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b))) (*.f64 x-scale x-scale)))) (/.f64 (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b))) (*.f64 x-scale x-scale))) #s(literal 1/2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 b b) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 a a))))) (sqrt.f64 (/.f64 #s(literal 1 binary64) (/.f64 (*.f64 #s(literal 2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b)))) (*.f64 x-scale x-scale))))) (*.f64 y-scale y-scale)) #s(literal 1/8 binary64) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) x-scale)) (sqrt.f64 (/.f64 (*.f64 #s(literal 2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b)))) (*.f64 x-scale x-scale))))) y-scale))
cost-diff2
(/.f64 #s(literal 1 binary64) (/.f64 (*.f64 #s(literal 2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b)))) (*.f64 x-scale x-scale)))
cost-diff2
(fma.f64 (/.f64 #s(literal 4 binary64) x-scale) (/.f64 (*.f64 (*.f64 (pow.f64 (*.f64 (+.f64 b a) (-.f64 b a)) #s(literal 2 binary64)) (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64))) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64))) x-scale) (*.f64 (*.f64 #s(literal -2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 b b) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 a a)))) (/.f64 (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b))) (*.f64 x-scale x-scale))))
cost-diff0
(sqrt.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64)))) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (+.f64 (+.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) #s(approx (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))) (/.f64 (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 b b) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 a a))) (*.f64 y-scale y-scale))))))
cost-diff0
(neg.f64 (sqrt.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64)))) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (+.f64 (+.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) #s(approx (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))) (/.f64 (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 b b) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 a a))) (*.f64 y-scale y-scale)))))))
cost-diff1
(/.f64 (neg.f64 (sqrt.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64)))) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (+.f64 (+.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) #s(approx (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))) (/.f64 (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 b b) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 a a))) (*.f64 y-scale y-scale))))))) (/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64))))
cost-diff2
(*.f64 #s(literal 2 binary64) (/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64))))
cost-diff0
(*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale)
cost-diff0
(*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale))
cost-diff0
(*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale)) (sqrt.f64 (/.f64 (*.f64 #s(literal 2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b)))) (*.f64 x-scale x-scale))))
cost-diff0
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale)) (sqrt.f64 (/.f64 (*.f64 #s(literal 2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b)))) (*.f64 x-scale x-scale)))))
cost-diff0
(*.f64 (*.f64 y-scale (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64)))
cost-diff0
(*.f64 #s(literal 1/4 binary64) b)
cost-diff0
(*.f64 (*.f64 #s(literal 1/4 binary64) b) (*.f64 (*.f64 y-scale (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64))))
cost-diff0
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) b) (*.f64 (*.f64 y-scale (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64)))))
cost-diff0
(*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)
cost-diff0
(*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale))
cost-diff0
(*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (sqrt.f64 (*.f64 #s(literal 2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b))))))
cost-diff0
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (sqrt.f64 (*.f64 #s(literal 2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b)))))))
Iterations

Useful iterations: 0 (0.0ms)

IterNodesCost
01604962
02644962
15374928
223454914
085904855
Stop Event
iter limit
node limit
iter limit
Calls
Call 1
Inputs
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (sqrt.f64 (*.f64 #s(literal 2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b)))))))
(*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (sqrt.f64 (*.f64 #s(literal 2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b))))))
(*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale))
#s(literal 1/4 binary64)
(*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)
(sqrt.f64 #s(literal 8 binary64))
#s(literal 8 binary64)
y-scale
(sqrt.f64 (*.f64 #s(literal 2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b)))))
(*.f64 #s(literal 2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b))))
#s(literal 2 binary64)
(fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b)))
(pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64))
(sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))
(*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))
(*.f64 (PI.f64) angle)
(PI.f64)
angle
#s(literal 1/180 binary64)
(*.f64 a a)
a
(*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b))
(pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64))
(cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle)))
(*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))
#s(literal -1/180 binary64)
(*.f64 b b)
b
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) b) (*.f64 (*.f64 y-scale (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64)))))
(*.f64 (*.f64 #s(literal 1/4 binary64) b) (*.f64 (*.f64 y-scale (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64))))
(*.f64 #s(literal 1/4 binary64) b)
#s(literal 1/4 binary64)
b
(*.f64 (*.f64 y-scale (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64)))
(*.f64 y-scale (sqrt.f64 #s(literal 2 binary64)))
y-scale
(sqrt.f64 #s(literal 2 binary64))
#s(literal 2 binary64)
(sqrt.f64 #s(literal 8 binary64))
#s(literal 8 binary64)
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale)) (sqrt.f64 (/.f64 (*.f64 #s(literal 2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b)))) (*.f64 x-scale x-scale)))))
(*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale)) (sqrt.f64 (/.f64 (*.f64 #s(literal 2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b)))) (*.f64 x-scale x-scale))))
(*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale))
#s(literal 1/4 binary64)
(*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale)
(*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)
(sqrt.f64 #s(literal 8 binary64))
#s(literal 8 binary64)
y-scale
x-scale
(sqrt.f64 (/.f64 (*.f64 #s(literal 2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b)))) (*.f64 x-scale x-scale)))
(/.f64 (*.f64 #s(literal 2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b)))) (*.f64 x-scale x-scale))
(*.f64 #s(literal 2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b))))
#s(literal 2 binary64)
(fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b)))
(pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64))
(sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))
(*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))
(*.f64 (PI.f64) angle)
(PI.f64)
angle
#s(literal 1/180 binary64)
(*.f64 a a)
a
(*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b))
(pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64))
(cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle)))
(*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))
#s(literal -1/180 binary64)
(*.f64 b b)
b
(*.f64 x-scale x-scale)
(/.f64 (neg.f64 (sqrt.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64)))) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (+.f64 (+.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) #s(approx (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))) (/.f64 (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 b b) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 a a))) (*.f64 y-scale y-scale))))))) (/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64))))
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#s(literal 2 binary64)
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(*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a))))
#s(literal 4 binary64)
(*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))
(*.f64 b a)
b
a
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(neg.f64 a)
(pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64))
(*.f64 x-scale y-scale)
x-scale
y-scale
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(*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64))))
(sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))
(*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64))
(/.f64 angle #s(literal 180 binary64))
angle
#s(literal 180 binary64)
(PI.f64)
(pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))
(*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64))))
(cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))
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(pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))
(*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64))))
(pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))
(*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64))))
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(pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64))
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(*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))
(*.f64 (PI.f64) angle)
#s(literal 1/180 binary64)
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(pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64))
(cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle)))
(*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))
#s(literal -1/180 binary64)
(*.f64 a a)
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a
(-.f64 b a)
#s(literal 2 binary64)
(pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64))
(sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))
(*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))
(*.f64 (PI.f64) angle)
(PI.f64)
angle
#s(literal 1/180 binary64)
(pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64))
(cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle)))
(*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))
#s(literal -1/180 binary64)
(*.f64 (*.f64 #s(literal -2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 b b) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 a a)))) (/.f64 (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b))) (*.f64 x-scale x-scale)))
(*.f64 #s(literal -2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 b b) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 a a))))
#s(literal -2 binary64)
(fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 b b) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 a a)))
(*.f64 b b)
(*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 a a))
(*.f64 a a)
(/.f64 (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b))) (*.f64 x-scale x-scale))
(fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b)))
(*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b))
(*.f64 x-scale x-scale)
#s(literal 1/2 binary64)
(sqrt.f64 (/.f64 #s(literal 1 binary64) (/.f64 (*.f64 #s(literal 2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b)))) (*.f64 x-scale x-scale))))
(/.f64 #s(literal 1 binary64) (/.f64 (*.f64 #s(literal 2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b)))) (*.f64 x-scale x-scale)))
#s(literal 1 binary64)
(/.f64 (*.f64 #s(literal 2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b)))) (*.f64 x-scale x-scale))
(*.f64 #s(literal 2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b))))
(*.f64 y-scale y-scale)
y-scale
#s(literal 1/8 binary64)
(*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) x-scale)) (sqrt.f64 (/.f64 (*.f64 #s(literal 2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b)))) (*.f64 x-scale x-scale))))
(*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) x-scale))
#s(literal 1/4 binary64)
(sqrt.f64 (/.f64 (*.f64 #s(literal 2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b)))) (*.f64 x-scale x-scale)))
Outputs
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (sqrt.f64 (*.f64 #s(literal 2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b)))))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (sqrt.f64 (*.f64 (fma.f64 (*.f64 a a) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 (*.f64 b b) (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)))) #s(literal 2 binary64))) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) #s(literal 1/4 binary64))))
(*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (sqrt.f64 (*.f64 #s(literal 2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b))))))
(*.f64 (sqrt.f64 (*.f64 (fma.f64 (*.f64 a a) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 (*.f64 b b) (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)))) #s(literal 2 binary64))) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) #s(literal 1/4 binary64)))
(*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale))
(*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) #s(literal 1/4 binary64))
#s(literal 1/4 binary64)
(*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)
(sqrt.f64 #s(literal 8 binary64))
#s(literal 8 binary64)
y-scale
(sqrt.f64 (*.f64 #s(literal 2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b)))))
(sqrt.f64 (*.f64 (fma.f64 (*.f64 a a) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 (*.f64 b b) (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)))) #s(literal 2 binary64)))
(*.f64 #s(literal 2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b))))
(*.f64 (fma.f64 (*.f64 a a) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 (*.f64 b b) (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)))) #s(literal 2 binary64))
#s(literal 2 binary64)
(fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b)))
(fma.f64 (*.f64 a a) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 (*.f64 b b) (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64))))
(pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64))
(pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64))
(sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))
(sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))
(*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))
(*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))
(*.f64 (PI.f64) angle)
(PI.f64)
angle
#s(literal 1/180 binary64)
(*.f64 a a)
a
(*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b))
(*.f64 (*.f64 b b) (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)))
(pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64))
(pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64))
(cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle)))
(cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))
(*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))
#s(literal -1/180 binary64)
(*.f64 b b)
b
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) b) (*.f64 (*.f64 y-scale (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64)))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) y-scale) (sqrt.f64 #s(literal 8 binary64))) (*.f64 #s(literal 1/4 binary64) b)))
(*.f64 (*.f64 #s(literal 1/4 binary64) b) (*.f64 (*.f64 y-scale (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64))))
(*.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) y-scale) (sqrt.f64 #s(literal 8 binary64))) (*.f64 #s(literal 1/4 binary64) b))
(*.f64 #s(literal 1/4 binary64) b)
#s(literal 1/4 binary64)
b
(*.f64 (*.f64 y-scale (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64)))
(*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) y-scale) (sqrt.f64 #s(literal 8 binary64)))
(*.f64 y-scale (sqrt.f64 #s(literal 2 binary64)))
(*.f64 (sqrt.f64 #s(literal 2 binary64)) y-scale)
y-scale
(sqrt.f64 #s(literal 2 binary64))
#s(literal 2 binary64)
(sqrt.f64 #s(literal 8 binary64))
#s(literal 8 binary64)
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale)) (sqrt.f64 (/.f64 (*.f64 #s(literal 2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b)))) (*.f64 x-scale x-scale)))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (sqrt.f64 (*.f64 (fma.f64 (*.f64 a a) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 (*.f64 b b) (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)))) (/.f64 #s(literal 2 binary64) (*.f64 x-scale x-scale)))) (*.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale) #s(literal 1/4 binary64))))
(*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale)) (sqrt.f64 (/.f64 (*.f64 #s(literal 2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b)))) (*.f64 x-scale x-scale))))
(*.f64 (sqrt.f64 (*.f64 (fma.f64 (*.f64 a a) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 (*.f64 b b) (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)))) (/.f64 #s(literal 2 binary64) (*.f64 x-scale x-scale)))) (*.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale) #s(literal 1/4 binary64)))
(*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale))
(*.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale) #s(literal 1/4 binary64))
#s(literal 1/4 binary64)
(*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale)
(*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)
(sqrt.f64 #s(literal 8 binary64))
#s(literal 8 binary64)
y-scale
x-scale
(sqrt.f64 (/.f64 (*.f64 #s(literal 2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b)))) (*.f64 x-scale x-scale)))
(sqrt.f64 (*.f64 (fma.f64 (*.f64 a a) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 (*.f64 b b) (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)))) (/.f64 #s(literal 2 binary64) (*.f64 x-scale x-scale))))
(/.f64 (*.f64 #s(literal 2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b)))) (*.f64 x-scale x-scale))
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(+.f64 (+.f64 #s(approx (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))) (/.f64 (fma.f64 (*.f64 b b) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 a a))) (*.f64 y-scale y-scale))) (/.f64 (+.f64 (pow.f64 (*.f64 (cos.f64 (/.f64 (*.f64 (PI.f64) angle) #s(literal -180 binary64))) b) #s(literal 2 binary64)) (pow.f64 (*.f64 (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64))) a) #s(literal 2 binary64))) (*.f64 x-scale x-scale))) (/.f64 (+.f64 (pow.f64 (*.f64 (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64))) b) #s(literal 2 binary64)) (pow.f64 (*.f64 (cos.f64 (/.f64 (*.f64 (PI.f64) angle) #s(literal -180 binary64))) a) #s(literal 2 binary64))) (*.f64 y-scale y-scale)))
(+.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale))
(+.f64 (/.f64 (+.f64 (pow.f64 (*.f64 (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64))) b) #s(literal 2 binary64)) (pow.f64 (*.f64 (cos.f64 (/.f64 (*.f64 (PI.f64) angle) #s(literal -180 binary64))) a) #s(literal 2 binary64))) (*.f64 y-scale y-scale)) (/.f64 (+.f64 (pow.f64 (*.f64 (cos.f64 (/.f64 (*.f64 (PI.f64) angle) #s(literal -180 binary64))) b) #s(literal 2 binary64)) (pow.f64 (*.f64 (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64))) a) #s(literal 2 binary64))) (*.f64 x-scale x-scale)))
(/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale)
(/.f64 (+.f64 (pow.f64 (*.f64 (cos.f64 (/.f64 (*.f64 (PI.f64) angle) #s(literal -180 binary64))) b) #s(literal 2 binary64)) (pow.f64 (*.f64 (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64))) a) #s(literal 2 binary64))) (*.f64 x-scale x-scale))
(/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale)
(/.f64 (+.f64 (pow.f64 (*.f64 (cos.f64 (/.f64 (*.f64 (PI.f64) angle) #s(literal -180 binary64))) b) #s(literal 2 binary64)) (pow.f64 (*.f64 (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64))) a) #s(literal 2 binary64))) x-scale)
(+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)))
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(pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))
(pow.f64 (*.f64 (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64))) a) #s(literal 2 binary64))
(*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64))))
(*.f64 (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64))) a)
(sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))
(*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64))
(/.f64 angle #s(literal 180 binary64))
angle
#s(literal 180 binary64)
(PI.f64)
(pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))
(pow.f64 (*.f64 (cos.f64 (/.f64 (*.f64 (PI.f64) angle) #s(literal -180 binary64))) b) #s(literal 2 binary64))
(*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64))))
(*.f64 (cos.f64 (/.f64 (*.f64 (PI.f64) angle) #s(literal -180 binary64))) b)
(cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))
(cos.f64 (/.f64 (*.f64 (PI.f64) angle) #s(literal -180 binary64)))
(/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)
(/.f64 (+.f64 (pow.f64 (*.f64 (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64))) b) #s(literal 2 binary64)) (pow.f64 (*.f64 (cos.f64 (/.f64 (*.f64 (PI.f64) angle) #s(literal -180 binary64))) a) #s(literal 2 binary64))) (*.f64 y-scale y-scale))
(/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale)
(/.f64 (+.f64 (pow.f64 (*.f64 (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64))) b) #s(literal 2 binary64)) (pow.f64 (*.f64 (cos.f64 (/.f64 (*.f64 (PI.f64) angle) #s(literal -180 binary64))) a) #s(literal 2 binary64))) y-scale)
(+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)))
(+.f64 (pow.f64 (*.f64 (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64))) b) #s(literal 2 binary64)) (pow.f64 (*.f64 (cos.f64 (/.f64 (*.f64 (PI.f64) angle) #s(literal -180 binary64))) a) #s(literal 2 binary64)))
(pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))
(pow.f64 (*.f64 (cos.f64 (/.f64 (*.f64 (PI.f64) angle) #s(literal -180 binary64))) a) #s(literal 2 binary64))
(*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64))))
(*.f64 (cos.f64 (/.f64 (*.f64 (PI.f64) angle) #s(literal -180 binary64))) a)
(pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))
(pow.f64 (*.f64 (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64))) b) #s(literal 2 binary64))
(*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64))))
(*.f64 (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64))) b)
#s(approx (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))) (/.f64 (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 b b) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 a a))) (*.f64 y-scale y-scale)))
#s(approx (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))) (/.f64 (fma.f64 (*.f64 b b) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 a a))) (*.f64 y-scale y-scale)))
(/.f64 (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 b b) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 a a))) (*.f64 y-scale y-scale))
(/.f64 (fma.f64 (*.f64 b b) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 a a))) (*.f64 y-scale y-scale))
(fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 b b) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 a a)))
(fma.f64 (*.f64 b b) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 a a)))
(pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64))
(pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64))
(sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))
(sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))
(*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))
(*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))
(*.f64 (PI.f64) angle)
#s(literal 1/180 binary64)
(*.f64 b b)
(*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 a a))
(*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 a a))
(pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64))
(pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64))
(cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle)))
(cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))
(*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))
#s(literal -1/180 binary64)
(*.f64 a a)
(*.f64 y-scale y-scale)
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(/.f64 (/.f64 (fma.f64 (*.f64 #s(literal 4 binary64) (*.f64 (pow.f64 (*.f64 (-.f64 b a) (+.f64 a b)) #s(literal 2 binary64)) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)))) (/.f64 (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) x-scale) (/.f64 (*.f64 (*.f64 #s(literal -2 binary64) (fma.f64 (*.f64 b b) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 a a)))) (fma.f64 (*.f64 a a) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 (*.f64 b b) (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64))))) x-scale)) x-scale) (/.f64 (fma.f64 (*.f64 a a) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 (*.f64 b b) (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)))) (*.f64 x-scale x-scale)))
(fma.f64 (/.f64 #s(literal 4 binary64) x-scale) (/.f64 (*.f64 (*.f64 (pow.f64 (*.f64 (+.f64 b a) (-.f64 b a)) #s(literal 2 binary64)) (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64))) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64))) x-scale) (*.f64 (*.f64 #s(literal -2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 b b) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 a a)))) (/.f64 (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b))) (*.f64 x-scale x-scale))))
(/.f64 (fma.f64 (*.f64 #s(literal 4 binary64) (*.f64 (pow.f64 (*.f64 (-.f64 b a) (+.f64 a b)) #s(literal 2 binary64)) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)))) (/.f64 (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) x-scale) (/.f64 (*.f64 (*.f64 #s(literal -2 binary64) (fma.f64 (*.f64 b b) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 a a)))) (fma.f64 (*.f64 a a) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 (*.f64 b b) (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64))))) x-scale)) x-scale)
(/.f64 #s(literal 4 binary64) x-scale)
#s(literal 4 binary64)
(/.f64 (*.f64 (*.f64 (pow.f64 (*.f64 (+.f64 b a) (-.f64 b a)) #s(literal 2 binary64)) (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64))) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64))) x-scale)
(*.f64 (/.f64 (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) x-scale) (*.f64 (pow.f64 (*.f64 (-.f64 b a) (+.f64 a b)) #s(literal 2 binary64)) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64))))
(*.f64 (*.f64 (pow.f64 (*.f64 (+.f64 b a) (-.f64 b a)) #s(literal 2 binary64)) (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64))) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)))
(*.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (pow.f64 (*.f64 (-.f64 b a) (+.f64 a b)) #s(literal 2 binary64))) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)))
(*.f64 (pow.f64 (*.f64 (+.f64 b a) (-.f64 b a)) #s(literal 2 binary64)) (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)))
(*.f64 (pow.f64 (*.f64 (-.f64 b a) (+.f64 a b)) #s(literal 2 binary64)) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)))
(pow.f64 (*.f64 (+.f64 b a) (-.f64 b a)) #s(literal 2 binary64))
(pow.f64 (*.f64 (-.f64 b a) (+.f64 a b)) #s(literal 2 binary64))
(*.f64 (+.f64 b a) (-.f64 b a))
(*.f64 (-.f64 b a) (+.f64 a b))
(+.f64 b a)
(+.f64 a b)
b
a
(-.f64 b a)
#s(literal 2 binary64)
(pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64))
(pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64))
(sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))
(sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))
(*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))
(*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))
(*.f64 (PI.f64) angle)
(PI.f64)
angle
#s(literal 1/180 binary64)
(pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64))
(pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64))
(cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle)))
(cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))
(*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))
#s(literal -1/180 binary64)
(*.f64 (*.f64 #s(literal -2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 b b) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 a a)))) (/.f64 (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b))) (*.f64 x-scale x-scale)))
(*.f64 (*.f64 (/.f64 (fma.f64 (*.f64 a a) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 (*.f64 b b) (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)))) (*.f64 x-scale x-scale)) (fma.f64 (*.f64 b b) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 a a)))) #s(literal -2 binary64))
(*.f64 #s(literal -2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 b b) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 a a))))
(*.f64 #s(literal -2 binary64) (fma.f64 (*.f64 b b) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 a a))))
#s(literal -2 binary64)
(fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 b b) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 a a)))
(fma.f64 (*.f64 b b) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 a a)))
(*.f64 b b)
(*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 a a))
(*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 a a))
(*.f64 a a)
(/.f64 (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b))) (*.f64 x-scale x-scale))
(/.f64 (fma.f64 (*.f64 a a) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 (*.f64 b b) (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)))) (*.f64 x-scale x-scale))
(fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b)))
(fma.f64 (*.f64 a a) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 (*.f64 b b) (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64))))
(*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b))
(*.f64 (*.f64 b b) (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)))
(*.f64 x-scale x-scale)
#s(literal 1/2 binary64)
(sqrt.f64 (/.f64 #s(literal 1 binary64) (/.f64 (*.f64 #s(literal 2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b)))) (*.f64 x-scale x-scale))))
(sqrt.f64 (*.f64 (/.f64 #s(literal 1/2 binary64) (fma.f64 (*.f64 a a) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 (*.f64 b b) (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64))))) (*.f64 x-scale x-scale)))
(/.f64 #s(literal 1 binary64) (/.f64 (*.f64 #s(literal 2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b)))) (*.f64 x-scale x-scale)))
(*.f64 (/.f64 #s(literal 1/2 binary64) (fma.f64 (*.f64 a a) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 (*.f64 b b) (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64))))) (*.f64 x-scale x-scale))
#s(literal 1 binary64)
(/.f64 (*.f64 #s(literal 2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b)))) (*.f64 x-scale x-scale))
(*.f64 (fma.f64 (*.f64 a a) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 (*.f64 b b) (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)))) (/.f64 #s(literal 2 binary64) (*.f64 x-scale x-scale)))
(*.f64 #s(literal 2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b))))
(*.f64 (fma.f64 (*.f64 a a) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 (*.f64 b b) (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)))) #s(literal 2 binary64))
(*.f64 y-scale y-scale)
y-scale
#s(literal 1/8 binary64)
(*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) x-scale)) (sqrt.f64 (/.f64 (*.f64 #s(literal 2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b)))) (*.f64 x-scale x-scale))))
(*.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) x-scale) #s(literal 1/4 binary64)) (sqrt.f64 (*.f64 (fma.f64 (*.f64 a a) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 (*.f64 b b) (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)))) (/.f64 #s(literal 2 binary64) (*.f64 x-scale x-scale)))))
(*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) x-scale))
(*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) x-scale) #s(literal 1/4 binary64))
#s(literal 1/4 binary64)
(sqrt.f64 (/.f64 (*.f64 #s(literal 2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b)))) (*.f64 x-scale x-scale)))
(sqrt.f64 (*.f64 (fma.f64 (*.f64 a a) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 (*.f64 b b) (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)))) (/.f64 #s(literal 2 binary64) (*.f64 x-scale x-scale))))

localize838.0ms (3%)

Memory
-13.3MiB live, 934.3MiB allocated; 174ms collecting garbage
Localize:

Found 20 expressions of interest:

NewMetricScoreProgram
accuracy30.286429780025294
(fma.f64 (/.f64 #s(literal 4 binary64) x-scale) (/.f64 (*.f64 (*.f64 (pow.f64 (*.f64 (+.f64 b a) (-.f64 b a)) #s(literal 2 binary64)) (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64))) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64))) x-scale) (*.f64 (*.f64 #s(literal -2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 b b) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 a a)))) (/.f64 (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b))) (*.f64 x-scale x-scale))))
accuracy30.46514388629209
(sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))
accuracy30.66031287291737
(cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle)))
accuracy33.59470529619429
(/.f64 (fma.f64 (/.f64 #s(literal 4 binary64) x-scale) (/.f64 (*.f64 (*.f64 (pow.f64 (*.f64 (+.f64 b a) (-.f64 b a)) #s(literal 2 binary64)) (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64))) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64))) x-scale) (*.f64 (*.f64 #s(literal -2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 b b) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 a a)))) (/.f64 (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b))) (*.f64 x-scale x-scale)))) (/.f64 (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b))) (*.f64 x-scale x-scale)))
accuracy30.46514388629209
(sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))
accuracy30.66031287291737
(cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))
accuracy30.66031287291737
(cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle)))
accuracy38.01807582313309
(/.f64 (neg.f64 (sqrt.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64)))) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (+.f64 (+.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) #s(approx (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))) (/.f64 (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 b b) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 a a))) (*.f64 y-scale y-scale))))))) (/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64))))
accuracy19.599230154968694
(sqrt.f64 (/.f64 (*.f64 #s(literal 2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b)))) (*.f64 x-scale x-scale)))
accuracy26.789927625992473
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale)) (sqrt.f64 (/.f64 (*.f64 #s(literal 2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b)))) (*.f64 x-scale x-scale)))))
accuracy30.46514388629209
(sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))
accuracy30.66031287291737
(cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle)))
accuracy0.0
(sqrt.f64 #s(literal 2 binary64))
accuracy0.4140625
(*.f64 (*.f64 y-scale (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64)))
accuracy0.4296875
(*.f64 y-scale (sqrt.f64 #s(literal 2 binary64)))
accuracy45.91492549090528
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) b) (*.f64 (*.f64 y-scale (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64)))))
accuracy24.875505631829796
(sqrt.f64 (*.f64 #s(literal 2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b)))))
accuracy26.789927625992473
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (sqrt.f64 (*.f64 #s(literal 2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b)))))))
accuracy30.46514388629209
(sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))
accuracy30.66031287291737
(cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle)))
Samples
527.0ms172×1valid
72.0ms77×0valid
18.0ms2valid
Compiler

Compiled 4 547 to 127 computations (97.2% saved)

Precisions
Click to see histograms. Total time spent on operations: 509.0ms
ival-mult: 149.0ms (29.3% of total)
ival-cos: 63.0ms (12.4% of total)
ival-sin: 60.0ms (11.8% of total)
ival-pow2: 51.0ms (10% of total)
ival-div: 43.0ms (8.5% of total)
adjust: 39.0ms (7.7% of total)
const: 23.0ms (4.5% of total)
ival-sqrt: 21.0ms (4.1% of total)
ival-add: 21.0ms (4.1% of total)
ival-sinu: 14.0ms (2.8% of total)
ival-cosu: 11.0ms (2.2% of total)
ival-sub: 7.0ms (1.4% of total)
ival-neg: 3.0ms (0.6% of total)
ival-pi: 2.0ms (0.4% of total)
exact: 1.0ms (0.2% of total)
ival-assert: 0.0ms (0% of total)
ival-true: 0.0ms (0% of total)

series608.0ms (2.2%)

Memory
49.3MiB live, 602.3MiB allocated; 49ms collecting garbage
Counts
28 → 406
Calls
Call 1
Inputs
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (sqrt.f64 (*.f64 #s(literal 2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b)))))))
(*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (sqrt.f64 (*.f64 #s(literal 2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b))))))
(*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale))
(*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) b) (*.f64 (*.f64 y-scale (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64)))))
(*.f64 (*.f64 #s(literal 1/4 binary64) b) (*.f64 (*.f64 y-scale (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64))))
(*.f64 #s(literal 1/4 binary64) b)
(*.f64 (*.f64 y-scale (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64)))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale)) (sqrt.f64 (/.f64 (*.f64 #s(literal 2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b)))) (*.f64 x-scale x-scale)))))
(*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale)) (sqrt.f64 (/.f64 (*.f64 #s(literal 2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b)))) (*.f64 x-scale x-scale))))
(*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale))
(*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale)
(*.f64 #s(literal 2 binary64) (/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64))))
(/.f64 (neg.f64 (sqrt.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64)))) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (+.f64 (+.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) #s(approx (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))) (/.f64 (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 b b) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 a a))) (*.f64 y-scale y-scale))))))) (/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64))))
(neg.f64 (sqrt.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64)))) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (+.f64 (+.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) #s(approx (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))) (/.f64 (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 b b) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 a a))) (*.f64 y-scale y-scale)))))))
(sqrt.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64)))) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (+.f64 (+.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) #s(approx (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))) (/.f64 (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 b b) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 a a))) (*.f64 y-scale y-scale))))))
(fma.f64 (/.f64 #s(literal 4 binary64) x-scale) (/.f64 (*.f64 (*.f64 (pow.f64 (*.f64 (+.f64 b a) (-.f64 b a)) #s(literal 2 binary64)) (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64))) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64))) x-scale) (*.f64 (*.f64 #s(literal -2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 b b) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 a a)))) (/.f64 (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b))) (*.f64 x-scale x-scale))))
(/.f64 #s(literal 1 binary64) (/.f64 (*.f64 #s(literal 2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b)))) (*.f64 x-scale x-scale)))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (fma.f64 (/.f64 (*.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) x-scale) (fma.f64 (/.f64 (fma.f64 (/.f64 #s(literal 4 binary64) x-scale) (/.f64 (*.f64 (*.f64 (pow.f64 (*.f64 (+.f64 b a) (-.f64 b a)) #s(literal 2 binary64)) (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64))) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64))) x-scale) (*.f64 (*.f64 #s(literal -2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 b b) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 a a)))) (/.f64 (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b))) (*.f64 x-scale x-scale)))) (/.f64 (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b))) (*.f64 x-scale x-scale))) #s(literal 1/2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 b b) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 a a))))) (sqrt.f64 (/.f64 #s(literal 1 binary64) (/.f64 (*.f64 #s(literal 2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b)))) (*.f64 x-scale x-scale))))) (*.f64 y-scale y-scale)) #s(literal 1/8 binary64) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) x-scale)) (sqrt.f64 (/.f64 (*.f64 #s(literal 2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b)))) (*.f64 x-scale x-scale))))) y-scale))
(*.f64 (fma.f64 (/.f64 (*.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) x-scale) (fma.f64 (/.f64 (fma.f64 (/.f64 #s(literal 4 binary64) x-scale) (/.f64 (*.f64 (*.f64 (pow.f64 (*.f64 (+.f64 b a) (-.f64 b a)) #s(literal 2 binary64)) (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64))) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64))) x-scale) (*.f64 (*.f64 #s(literal -2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 b b) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 a a)))) (/.f64 (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b))) (*.f64 x-scale x-scale)))) (/.f64 (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b))) (*.f64 x-scale x-scale))) #s(literal 1/2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 b b) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 a a))))) (sqrt.f64 (/.f64 #s(literal 1 binary64) (/.f64 (*.f64 #s(literal 2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b)))) (*.f64 x-scale x-scale))))) (*.f64 y-scale y-scale)) #s(literal 1/8 binary64) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) x-scale)) (sqrt.f64 (/.f64 (*.f64 #s(literal 2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b)))) (*.f64 x-scale x-scale))))) y-scale)
(cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle)))
(sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))
(sqrt.f64 (*.f64 #s(literal 2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b)))))
(*.f64 y-scale (sqrt.f64 #s(literal 2 binary64)))
(sqrt.f64 #s(literal 2 binary64))
(sqrt.f64 (/.f64 (*.f64 #s(literal 2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b)))) (*.f64 x-scale x-scale)))
(cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))
(/.f64 (fma.f64 (/.f64 #s(literal 4 binary64) x-scale) (/.f64 (*.f64 (*.f64 (pow.f64 (*.f64 (+.f64 b a) (-.f64 b a)) #s(literal 2 binary64)) (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64))) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64))) x-scale) (*.f64 (*.f64 #s(literal -2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 b b) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 a a)))) (/.f64 (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b))) (*.f64 x-scale x-scale)))) (/.f64 (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b))) (*.f64 x-scale x-scale)))
Outputs
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(hole binary64 (* 1/4 (* (* x-scale (* y-scale (sqrt 8))) (sqrt (+ (sqrt (+ (* 4 (/ (* (pow b 4) (* (pow (cos (* 1/180 (* angle (PI)))) 2) (pow (sin (* 1/180 (* angle (PI)))) 2))) (* (pow x-scale 2) (pow y-scale 2)))) (pow (- (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)) (/ (* (pow b 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow y-scale 2))) 2))) (+ (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)) (/ (* (pow b 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow y-scale 2)))))))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(hole binary64 (+ (* 1/8 (* (* (pow a 2) (* x-scale (* y-scale (* (sqrt 8) (+ (* 1/2 (* (+ (* -8 (/ (* (pow b 2) (* (pow (cos (* 1/180 (* angle (PI)))) 2) (pow (sin (* 1/180 (* angle (PI)))) 2))) (* (pow x-scale 2) (pow y-scale 2)))) (* 2 (* (- (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)) (/ (* (pow b 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow y-scale 2))) (- (/ (pow (sin (* 1/180 (* angle (PI)))) 2) (pow x-scale 2)) (/ (pow (cos (* 1/180 (* angle (PI)))) 2) (pow y-scale 2)))))) (sqrt (/ 1 (+ (* 4 (/ (* (pow b 4) (* (pow (cos (* 1/180 (* angle (PI)))) 2) (pow (sin (* 1/180 (* angle (PI)))) 2))) (* (pow x-scale 2) (pow y-scale 2)))) (pow (- (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)) (/ (* (pow b 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow y-scale 2))) 2)))))) (+ (/ (pow (cos (* 1/180 (* angle (PI)))) 2) (pow y-scale 2)) (/ (pow (sin (* 1/180 (* angle (PI)))) 2) (pow x-scale 2)))))))) (sqrt (/ 1 (+ (sqrt (+ (* 4 (/ (* (pow b 4) (* (pow (cos (* 1/180 (* angle (PI)))) 2) (pow (sin (* 1/180 (* angle (PI)))) 2))) (* (pow x-scale 2) (pow y-scale 2)))) (pow (- (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)) (/ (* (pow b 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow y-scale 2))) 2))) (+ (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)) (/ (* (pow b 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow y-scale 2)))))))) (* 1/4 (* (* x-scale (* y-scale (sqrt 8))) (sqrt (+ (sqrt (+ (* 4 (/ (* (pow b 4) (* (pow (cos (* 1/180 (* angle (PI)))) 2) (pow (sin (* 1/180 (* angle (PI)))) 2))) (* (pow x-scale 2) (pow y-scale 2)))) (pow (- (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)) (/ (* (pow b 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow y-scale 2))) 2))) (+ (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)) (/ (* (pow b 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow y-scale 2))))))))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(hole binary64 (+ (* 1/4 (* (* x-scale (* y-scale (sqrt 8))) (sqrt (+ (sqrt (+ (* 4 (/ (* (pow b 4) (* (pow (cos (* 1/180 (* angle (PI)))) 2) (pow (sin (* 1/180 (* angle (PI)))) 2))) (* (pow x-scale 2) (pow y-scale 2)))) (pow (- (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)) (/ (* (pow b 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow y-scale 2))) 2))) (+ (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)) (/ (* (pow b 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow y-scale 2))))))) (* (pow a 2) (+ (* 1/8 (* (* x-scale (* y-scale (* (sqrt 8) (+ (* 1/2 (* (+ (* -8 (/ (* (pow b 2) (* (pow (cos (* 1/180 (* angle (PI)))) 2) (pow (sin (* 1/180 (* angle (PI)))) 2))) (* (pow x-scale 2) (pow y-scale 2)))) (* 2 (* (- (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)) (/ (* (pow b 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow y-scale 2))) (- (/ (pow (sin (* 1/180 (* angle (PI)))) 2) (pow x-scale 2)) (/ (pow (cos (* 1/180 (* angle (PI)))) 2) (pow y-scale 2)))))) (sqrt (/ 1 (+ (* 4 (/ (* (pow b 4) (* (pow (cos (* 1/180 (* angle (PI)))) 2) (pow (sin (* 1/180 (* angle (PI)))) 2))) (* (pow x-scale 2) (pow y-scale 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#s(approx (+ (* (/ 4 x-scale) (/ (* (* (pow (* (+ b a) (- b a)) 2) (pow (sin (* (* (PI) angle) 1/180)) 2)) (pow (cos (* -1/180 (* (PI) angle))) 2)) x-scale)) (* (* -2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale)))) #s(hole binary64 (+ (* -2 (/ (* (pow a 4) (* (pow (cos (* -1/180 (* angle (PI)))) 2) (pow (sin (* 1/180 (* angle (PI)))) 2))) (pow x-scale 2))) (+ (* 4 (/ (* b (* (pow (cos (* -1/180 (* angle (PI)))) 2) (* (pow (sin (* 1/180 (* angle (PI)))) 2) (+ (* -2 (pow a 3)) (* 2 (pow a 3)))))) (pow x-scale 2))) (* 4 (/ (* (pow a 4) (* (pow (cos (* -1/180 (* angle (PI)))) 2) (pow (sin (* 1/180 (* angle (PI)))) 2))) (pow x-scale 2)))))))
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#s(approx (+ (* (/ 4 x-scale) (/ (* (* (pow (* (+ b a) (- b a)) 2) (pow (sin (* (* (PI) angle) 1/180)) 2)) (pow (cos (* -1/180 (* (PI) angle))) 2)) x-scale)) (* (* -2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale)))) #s(hole binary64 (* -2 (/ (* (pow a 2) (pow b 2)) (pow x-scale 2)))))
#s(approx (+ (* (/ 4 x-scale) (/ (* (* (pow (* (+ b a) (- b a)) 2) (pow (sin (* (* (PI) angle) 1/180)) 2)) (pow (cos (* -1/180 (* (PI) angle))) 2)) x-scale)) (* (* -2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale)))) #s(hole binary64 (+ (* -2 (/ (* (pow a 2) (pow b 2)) (pow x-scale 2))) (* (pow angle 2) (+ (* -2 (+ (/ (* (pow a 2) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2))))) (pow x-scale 2)) (/ (* (pow b 2) (+ (* -1/32400 (* (pow a 2) (pow (PI) 2))) (* 1/32400 (* (pow b 2) (pow (PI) 2))))) (pow x-scale 2)))) (* 1/8100 (/ (* (pow (PI) 2) (* (pow (+ a b) 2) (pow (- b a) 2))) (pow x-scale 2))))))))
#s(approx (+ (* (/ 4 x-scale) (/ (* (* (pow (* (+ b a) (- b a)) 2) (pow (sin (* (* (PI) angle) 1/180)) 2)) (pow (cos (* -1/180 (* (PI) angle))) 2)) x-scale)) (* (* -2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale)))) #s(hole binary64 (+ (* -2 (/ (* (pow a 2) (pow b 2)) (pow x-scale 2))) (* (pow angle 2) (+ (* -2 (+ (/ (* (pow a 2) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2))))) (pow x-scale 2)) (/ (* (pow b 2) (+ (* -1/32400 (* (pow a 2) (pow (PI) 2))) (* 1/32400 (* (pow b 2) (pow (PI) 2))))) (pow x-scale 2)))) (+ (* 1/8100 (/ (* (pow (PI) 2) (* (pow (+ a b) 2) (pow (- b a) 2))) (pow x-scale 2))) (* (pow angle 2) (+ (* -2 (+ (/ (* (+ (* -1/32400 (* (pow a 2) (pow (PI) 2))) (* 1/32400 (* (pow b 2) (pow (PI) 2)))) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2))))) (pow x-scale 2)) (+ (/ (* (pow a 2) (+ (* -1/3149280000 (* (pow a 2) (pow (PI) 4))) (* (pow b 2) (+ (* 1/12597120000 (pow (PI) 4)) (* 1/4199040000 (pow (PI) 4)))))) (pow x-scale 2)) (/ (* (pow b 2) (+ (* -1/3149280000 (* (pow b 2) (pow (PI) 4))) (* (pow a 2) (+ (* 1/12597120000 (pow (PI) 4)) (* 1/4199040000 (pow (PI) 4)))))) (pow x-scale 2))))) (* 4 (+ (* -1/1049760000 (/ (* (pow (PI) 4) (* (pow (+ a b) 2) (pow (- b a) 2))) (pow x-scale 2))) (* -1/3149280000 (/ (* (pow (PI) 4) (* (pow (+ a b) 2) (pow (- b a) 2))) (pow x-scale 2)))))))))))))
#s(approx (+ (* (/ 4 x-scale) (/ (* (* (pow (* (+ b a) (- b a)) 2) (pow (sin (* (* (PI) angle) 1/180)) 2)) (pow (cos (* -1/180 (* (PI) angle))) 2)) x-scale)) (* (* -2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale)))) #s(hole binary64 (+ (* -2 (/ (* (pow a 2) (pow b 2)) (pow x-scale 2))) (* (pow angle 2) (+ (* -2 (+ (/ (* (pow a 2) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2))))) (pow x-scale 2)) (/ (* (pow b 2) (+ (* -1/32400 (* (pow a 2) (pow (PI) 2))) (* 1/32400 (* (pow b 2) (pow (PI) 2))))) (pow x-scale 2)))) (+ (* 1/8100 (/ (* (pow (PI) 2) (* (pow (+ a b) 2) (pow (- b a) 2))) (pow x-scale 2))) (* (pow angle 2) (+ (* -2 (+ (/ (* (+ (* -1/32400 (* (pow a 2) (pow (PI) 2))) (* 1/32400 (* (pow b 2) (pow (PI) 2)))) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2))))) (pow x-scale 2)) (+ (/ (* (pow a 2) (+ (* -1/3149280000 (* (pow a 2) (pow (PI) 4))) (* (pow b 2) (+ (* 1/12597120000 (pow (PI) 4)) (* 1/4199040000 (pow (PI) 4)))))) (pow x-scale 2)) (/ (* (pow b 2) (+ (* -1/3149280000 (* (pow b 2) (pow (PI) 4))) (* (pow a 2) (+ (* 1/12597120000 (pow (PI) 4)) (* 1/4199040000 (pow (PI) 4)))))) (pow x-scale 2))))) (+ (* 4 (+ (* -1/1049760000 (/ (* (pow (PI) 4) (* (pow (+ a b) 2) (pow (- b a) 2))) (pow x-scale 2))) (* -1/3149280000 (/ (* (pow (PI) 4) (* (pow (+ a b) 2) (pow (- b a) 2))) (pow x-scale 2))))) (* (pow angle 2) (+ (* -2 (+ (/ (* (+ (* -1/32400 (* (pow a 2) (pow (PI) 2))) (* 1/32400 (* (pow b 2) (pow (PI) 2)))) (+ (* -1/3149280000 (* (pow a 2) (pow (PI) 4))) (* (pow b 2) (+ (* 1/12597120000 (pow (PI) 4)) (* 1/4199040000 (pow (PI) 4)))))) (pow x-scale 2)) (+ (/ (* (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))) (+ (* -1/3149280000 (* (pow b 2) (pow (PI) 4))) (* (pow a 2) (+ (* 1/12597120000 (pow (PI) 4)) (* 1/4199040000 (pow (PI) 4)))))) (pow x-scale 2)) (+ (/ (* (pow a 2) (+ (* (pow a 2) (+ (* 1/2040733440000000 (pow (PI) 6)) (* 1/1224440064000000 (pow (PI) 6)))) (* (pow b 2) (+ (* -1/816293376000000 (pow (PI) 6)) (* -1/12244400640000000 (pow (PI) 6)))))) (pow x-scale 2)) (/ (* (pow b 2) (+ (* (pow a 2) (+ (* -1/816293376000000 (pow (PI) 6)) (* -1/12244400640000000 (pow (PI) 6)))) (* (pow b 2) (+ (* 1/2040733440000000 (pow (PI) 6)) (* 1/1224440064000000 (pow (PI) 6)))))) (pow x-scale 2)))))) (* 4 (+ (* 1/102036672000000 (/ (* (pow (PI) 6) (* (pow (+ a b) 2) (pow (- b a) 2))) (pow x-scale 2))) (+ (* 1/32400 (/ (* (pow (PI) 2) (* (pow (+ a b) 2) (* (+ (* 1/12597120000 (pow (PI) 4)) (* 1/4199040000 (pow (PI) 4))) (pow (- b a) 2)))) (pow x-scale 2))) (/ (* (pow (+ a b) 2) (* (+ (* 1/2040733440000000 (pow (PI) 6)) (* 1/1224440064000000 (pow (PI) 6))) (pow (- b a) 2))) (pow x-scale 2))))))))))))))))
#s(approx (/ 1 (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))) #s(hole binary64 (* 1/2 (/ (pow x-scale 2) (pow b 2)))))
#s(approx (/ 1 (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))) #s(hole binary64 (+ (* -1/2 (/ (* (pow angle 2) (* (pow x-scale 2) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))))) (pow b 4))) (* 1/2 (/ (pow x-scale 2) (pow b 2))))))
#s(approx (/ 1 (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))) #s(hole binary64 (+ (* 1/2 (/ (pow x-scale 2) (pow b 2))) (* (pow angle 2) (+ (* -1/2 (* (pow angle 2) (+ (* -1 (/ (* (pow x-scale 2) (pow (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))) 2)) (pow b 6))) (/ (* (pow x-scale 2) (+ (* -1/3149280000 (* (pow a 2) (pow (PI) 4))) (* (pow b 2) (+ (* 1/12597120000 (pow (PI) 4)) (* 1/4199040000 (pow (PI) 4)))))) (pow b 4))))) (* -1/2 (/ (* (pow x-scale 2) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2))))) (pow b 4))))))))
#s(approx (/ 1 (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))) #s(hole binary64 (+ (* 1/2 (/ (pow x-scale 2) (pow b 2))) (* (pow angle 2) (+ (* -1/2 (/ (* (pow x-scale 2) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2))))) (pow b 4))) (* (pow angle 2) (+ (* -1/2 (* (pow angle 2) (+ (* -1 (/ (* (+ (* -1 (/ (* (pow x-scale 2) (pow (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))) 2)) (pow b 6))) (/ (* (pow x-scale 2) (+ (* -1/3149280000 (* (pow a 2) (pow (PI) 4))) (* (pow b 2) (+ (* 1/12597120000 (pow (PI) 4)) (* 1/4199040000 (pow (PI) 4)))))) (pow b 4))) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2))))) (pow b 2))) (+ (* -1 (/ (* (pow x-scale 2) (* (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))) (+ (* -1/3149280000 (* (pow a 2) (pow (PI) 4))) (* (pow b 2) (+ (* 1/12597120000 (pow (PI) 4)) (* 1/4199040000 (pow (PI) 4))))))) (pow b 6))) (/ (* (pow x-scale 2) (+ (* (pow a 2) (+ (* 1/2040733440000000 (pow (PI) 6)) (* 1/1224440064000000 (pow (PI) 6)))) (* (pow b 2) (+ (* -1/816293376000000 (pow (PI) 6)) (* -1/12244400640000000 (pow (PI) 6)))))) (pow b 4)))))) (* -1/2 (+ (* -1 (/ (* (pow x-scale 2) (pow (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))) 2)) (pow b 6))) (/ (* (pow x-scale 2) (+ (* -1/3149280000 (* (pow a 2) (pow (PI) 4))) (* (pow b 2) (+ (* 1/12597120000 (pow (PI) 4)) (* 1/4199040000 (pow (PI) 4)))))) (pow b 4)))))))))))
#s(approx (* (+ (* (/ (* (* (* (sqrt 8) x-scale) (+ (* (/ (+ (* (/ 4 x-scale) (/ (* (* (pow (* (+ b a) (- b a)) 2) (pow (sin (* (* (PI) angle) 1/180)) 2)) (pow (cos (* -1/180 (* (PI) angle))) 2)) x-scale)) (* (* -2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale))) 1/2) (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a))))) (sqrt (/ 1 (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))))) (* y-scale y-scale)) 1/8) (* (* 1/4 (* (sqrt 8) x-scale)) (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))))) y-scale) #s(hole binary64 (* y-scale (+ (* 1/8 (/ (* (pow x-scale 2) (* (sqrt 1/2) (* (sqrt 8) (+ (* -1 (pow a 2)) (pow a 2))))) (* b (pow y-scale 2)))) (* 1/4 (* b (* (sqrt 2) (sqrt 8))))))))
#s(approx (* (+ (* (/ (* (* (* (sqrt 8) x-scale) (+ (* (/ (+ (* (/ 4 x-scale) (/ (* (* (pow (* (+ b a) (- b a)) 2) (pow (sin (* (* (PI) angle) 1/180)) 2)) (pow (cos (* -1/180 (* (PI) angle))) 2)) x-scale)) (* (* -2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale))) 1/2) (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a))))) (sqrt (/ 1 (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))))) (* y-scale y-scale)) 1/8) (* (* 1/4 (* (sqrt 8) x-scale)) (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))))) y-scale) #s(hole binary64 (+ (* y-scale (+ (* 1/8 (/ (* (pow x-scale 2) (* (sqrt 1/2) (* (sqrt 8) (+ (* -1 (pow a 2)) (pow a 2))))) (* b (pow y-scale 2)))) (* 1/4 (* b (* (sqrt 2) (sqrt 8)))))) (* (pow angle 2) (* y-scale (+ (* 1/8 (+ (* -1/2 (/ (* b (* (pow x-scale 2) (* (sqrt 1/2) (* (sqrt 8) (* (+ (* -1 (pow a 2)) (pow a 2)) (+ (* -1/32400 (/ (pow (PI) 2) (pow b 2))) (* 1/32400 (/ (* (pow a 2) (pow (PI) 2)) (pow b 4))))))))) (pow y-scale 2))) (/ (* (pow x-scale 2) (* (sqrt 1/2) (* (sqrt 8) (+ (* -1/32400 (* (pow a 2) (pow (PI) 2))) (+ (* 1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/2 (- (/ (* (pow x-scale 2) (+ (* -2 (+ (/ (* (pow a 2) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2))))) (pow x-scale 2)) (/ (* (pow b 2) (+ (* -1/32400 (* (pow a 2) (pow (PI) 2))) (* 1/32400 (* (pow b 2) (pow (PI) 2))))) (pow x-scale 2)))) (* 1/8100 (/ (* (pow (PI) 2) (* (pow (+ a b) 2) (pow (- b a) 2))) (pow x-scale 2))))) (pow b 2)) (* -2 (/ (* (pow a 2) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2))))) (pow b 2)))))))))) (* b (pow y-scale 2))))) (* 1/8 (/ (* (sqrt 2) (* (sqrt 8) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))))) b))))))))
#s(approx (* (+ (* (/ (* (* (* (sqrt 8) x-scale) (+ (* (/ (+ (* (/ 4 x-scale) (/ (* (* (pow (* (+ b a) (- b a)) 2) (pow (sin (* (* (PI) angle) 1/180)) 2)) (pow (cos (* -1/180 (* (PI) angle))) 2)) x-scale)) (* (* -2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale))) 1/2) (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a))))) (sqrt (/ 1 (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))))) (* y-scale y-scale)) 1/8) (* (* 1/4 (* (sqrt 8) x-scale)) (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))))) y-scale) #s(hole binary64 (+ (* y-scale (+ (* 1/8 (/ (* (pow x-scale 2) (* (sqrt 1/2) (* (sqrt 8) (+ (* -1 (pow a 2)) (pow a 2))))) (* b (pow y-scale 2)))) (* 1/4 (* b (* (sqrt 2) (sqrt 8)))))) (* (pow angle 2) (+ (* y-scale (+ (* 1/8 (+ (* -1/2 (/ (* b (* (pow x-scale 2) (* (sqrt 1/2) (* (sqrt 8) (* (+ (* -1 (pow a 2)) (pow a 2)) (+ (* -1/32400 (/ (pow (PI) 2) (pow b 2))) (* 1/32400 (/ (* (pow a 2) (pow (PI) 2)) (pow b 4))))))))) (pow y-scale 2))) (/ (* (pow x-scale 2) (* (sqrt 1/2) (* (sqrt 8) (+ (* -1/32400 (* (pow a 2) (pow (PI) 2))) (+ (* 1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/2 (- (/ (* (pow x-scale 2) (+ (* -2 (+ (/ (* (pow a 2) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2))))) (pow x-scale 2)) (/ (* (pow b 2) (+ (* -1/32400 (* (pow a 2) (pow (PI) 2))) (* 1/32400 (* (pow b 2) (pow (PI) 2))))) (pow x-scale 2)))) (* 1/8100 (/ (* (pow (PI) 2) (* (pow (+ a b) 2) (pow (- b a) 2))) (pow x-scale 2))))) (pow b 2)) (* -2 (/ (* (pow a 2) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2))))) (pow b 2)))))))))) (* b (pow y-scale 2))))) (* 1/8 (/ (* (sqrt 2) (* (sqrt 8) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))))) b)))) (* (pow angle 2) (* y-scale (+ (* 1/8 (+ (* -1/2 (/ (* b (* (pow x-scale 2) (* (sqrt 1/2) (* (sqrt 8) (* (+ (* -1 (/ (* (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))) (+ (* -1/32400 (/ (pow (PI) 2) (pow b 2))) (* 1/32400 (/ (* (pow a 2) (pow (PI) 2)) (pow b 4))))) (pow b 2))) (+ (* -1/3149280000 (/ (* (pow a 2) (pow (PI) 4)) (pow b 4))) (+ (* 1/12597120000 (/ (pow (PI) 4) (pow b 2))) (+ (* 1/4199040000 (/ (pow (PI) 4) (pow b 2))) (* 1/4 (* (pow b 2) (pow (+ (* -1/32400 (/ (pow (PI) 2) (pow b 2))) (* 1/32400 (/ (* (pow a 2) (pow (PI) 2)) (pow b 4)))) 2))))))) (+ (* -1 (pow a 2)) (pow a 2))))))) (pow y-scale 2))) (+ (* -1/2 (/ (* b (* (pow x-scale 2) (* 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x-scale 2)) (/ (* (pow b 2) (+ (* -1/32400 (* (pow a 2) (pow (PI) 2))) (* 1/32400 (* (pow b 2) (pow (PI) 2))))) (pow x-scale 2)))) (* 1/8100 (/ (* (pow (PI) 2) (* (pow (+ a b) 2) (pow (- b a) 2))) (pow x-scale 2))))) (pow b 2)) (* -2 (/ (* (pow a 2) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2))))) (pow b 2))))) (pow b 2))))) (* (pow a 2) (+ (* 1/12597120000 (pow (PI) 4)) (* 1/4199040000 (pow (PI) 4))))))))) (* b (pow y-scale 2)))))) (* 1/8 (/ (* (sqrt 2) (* (sqrt 8) (- (+ (* -1/3149280000 (* (pow a 2) (pow (PI) 4))) (* (pow b 2) (+ (* 1/12597120000 (pow (PI) 4)) (* 1/4199040000 (pow (PI) 4))))) (* 1/4 (/ (pow (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))) 2) (pow b 2)))))) b))))))))))
#s(approx (* (+ (* (/ (* (* (* (sqrt 8) x-scale) (+ (* (/ (+ (* (/ 4 x-scale) (/ (* (* (pow (* (+ b a) (- b a)) 2) (pow (sin (* (* (PI) angle) 1/180)) 2)) (pow (cos (* -1/180 (* (PI) angle))) 2)) x-scale)) (* (* -2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale))) 1/2) (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a))))) (sqrt (/ 1 (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))))) (* y-scale y-scale)) 1/8) (* (* 1/4 (* (sqrt 8) x-scale)) (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))))) y-scale) #s(hole binary64 (+ (* y-scale (+ (* 1/8 (/ (* (pow x-scale 2) (* (sqrt 1/2) (* (sqrt 8) (+ (* -1 (pow a 2)) (pow a 2))))) (* b (pow y-scale 2)))) (* 1/4 (* b (* (sqrt 2) (sqrt 8)))))) (* (pow angle 2) (+ (* y-scale (+ (* 1/8 (+ (* -1/2 (/ (* b (* (pow x-scale 2) (* (sqrt 1/2) (* (sqrt 8) (* (+ (* -1 (pow a 2)) (pow a 2)) (+ (* -1/32400 (/ (pow (PI) 2) (pow b 2))) (* 1/32400 (/ (* (pow a 2) (pow (PI) 2)) (pow b 4))))))))) (pow y-scale 2))) (/ (* (pow x-scale 2) (* (sqrt 1/2) (* (sqrt 8) (+ (* -1/32400 (* (pow a 2) (pow (PI) 2))) (+ (* 1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/2 (- (/ (* (pow x-scale 2) (+ (* -2 (+ (/ (* (pow a 2) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2))))) (pow x-scale 2)) (/ (* (pow b 2) (+ (* -1/32400 (* (pow a 2) (pow (PI) 2))) (* 1/32400 (* (pow b 2) (pow (PI) 2))))) (pow x-scale 2)))) (* 1/8100 (/ (* (pow (PI) 2) (* (pow (+ a b) 2) (pow (- b a) 2))) (pow x-scale 2))))) (pow b 2)) (* -2 (/ (* (pow a 2) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2))))) (pow b 2)))))))))) (* b (pow y-scale 2))))) (* 1/8 (/ (* (sqrt 2) (* (sqrt 8) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))))) b)))) (* (pow angle 2) (+ (* y-scale (+ (* 1/8 (+ (* -1/2 (/ (* b (* (pow x-scale 2) (* (sqrt 1/2) (* (sqrt 8) (* (+ (* -1 (/ (* (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))) (+ (* -1/32400 (/ (pow (PI) 2) (pow b 2))) (* 1/32400 (/ (* (pow a 2) (pow (PI) 2)) (pow b 4))))) (pow b 2))) (+ (* -1/3149280000 (/ (* (pow a 2) (pow (PI) 4)) (pow b 4))) (+ (* 1/12597120000 (/ (pow (PI) 4) (pow b 2))) (+ (* 1/4199040000 (/ (pow (PI) 4) (pow b 2))) (* 1/4 (* (pow b 2) (pow (+ (* -1/32400 (/ (pow (PI) 2) (pow b 2))) (* 1/32400 (/ (* (pow a 2) (pow (PI) 2)) (pow b 4)))) 2))))))) (+ (* -1 (pow a 2)) (pow a 2))))))) (pow y-scale 2))) (+ (* -1/2 (/ (* b (* (pow x-scale 2) (* 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(* (pow a 2) (pow (PI) 2)) (pow b 4)))) 2))))))) (+ (* -1/32400 (* (pow a 2) (pow (PI) 2))) (+ (* 1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/2 (- (/ (* (pow x-scale 2) (+ (* -2 (+ (/ (* (pow a 2) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2))))) (pow x-scale 2)) (/ (* (pow b 2) (+ (* -1/32400 (* (pow a 2) (pow (PI) 2))) (* 1/32400 (* (pow b 2) (pow (PI) 2))))) (pow x-scale 2)))) (* 1/8100 (/ (* (pow (PI) 2) (* (pow (+ a b) 2) (pow (- b a) 2))) (pow x-scale 2))))) (pow b 2)) (* -2 (/ (* (pow a 2) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2))))) (pow b 2)))))))))))) (pow y-scale 2))) (+ (* -1/2 (/ (* b (* (pow x-scale 2) (* (sqrt 1/2) (* (sqrt 8) (* (+ (* -1/32400 (/ (pow (PI) 2) (pow b 2))) (* 1/32400 (/ (* (pow a 2) (pow (PI) 2)) (pow b 4)))) (+ (* -1/3149280000 (* (pow b 2) (pow (PI) 4))) (+ (* 1/2 (- (/ (* (pow x-scale 2) (+ (* -2 (+ (/ (* (+ (* -1/32400 (* (pow a 2) (pow (PI) 2))) (* 1/32400 (* (pow b 2) (pow (PI) 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#s(approx (cos (* -1/180 (* (PI) angle))) #s(hole binary64 1))
#s(approx (cos (* -1/180 (* (PI) angle))) #s(hole binary64 (+ 1 (* -1/64800 (* (pow angle 2) (pow (PI) 2))))))
#s(approx (cos (* -1/180 (* (PI) angle))) #s(hole binary64 (+ 1 (* (pow angle 2) (+ (* -1/64800 (pow (PI) 2)) (* 1/25194240000 (* (pow angle 2) (pow (PI) 4))))))))
#s(approx (cos (* -1/180 (* (PI) angle))) #s(hole binary64 (+ 1 (* (pow angle 2) (+ (* -1/64800 (pow (PI) 2)) (* (pow angle 2) (+ (* -1/24488801280000000 (* (pow angle 2) (pow (PI) 6))) (* 1/25194240000 (pow (PI) 4)))))))))
#s(approx (sin (* (* (PI) angle) 1/180)) #s(hole binary64 (* 1/180 (* angle (PI)))))
#s(approx (sin (* (* (PI) angle) 1/180)) #s(hole binary64 (* angle (+ (* -1/34992000 (* (pow angle 2) (pow (PI) 3))) (* 1/180 (PI))))))
#s(approx (sin (* (* (PI) angle) 1/180)) #s(hole binary64 (* angle (+ (* 1/180 (PI)) (* (pow angle 2) (+ (* -1/34992000 (pow (PI) 3)) (* 1/22674816000000 (* (pow angle 2) (pow (PI) 5)))))))))
#s(approx (sin (* (* (PI) angle) 1/180)) #s(hole binary64 (* angle (+ (* 1/180 (PI)) (* (pow angle 2) (+ (* -1/34992000 (pow (PI) 3)) (* (pow angle 2) (+ (* -1/30855889612800000000 (* (pow angle 2) (pow (PI) 7))) (* 1/22674816000000 (pow (PI) 5))))))))))
#s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) #s(hole binary64 (* b (sqrt 2))))
#s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) #s(hole binary64 (+ (* 1/2 (/ (* (pow angle 2) (* (sqrt 2) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))))) b)) (* b (sqrt 2)))))
#s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) #s(hole binary64 (+ (* b (sqrt 2)) (* (pow angle 2) (+ (* 1/2 (/ (* (sqrt 2) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2))))) b)) (* 1/2 (/ (* (pow angle 2) (* (sqrt 2) (- (+ (* -1/3149280000 (* (pow a 2) (pow (PI) 4))) (* (pow b 2) (+ (* 1/12597120000 (pow (PI) 4)) (* 1/4199040000 (pow (PI) 4))))) (* 1/4 (/ (pow (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))) 2) (pow b 2)))))) b)))))))
#s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) #s(hole binary64 (+ (* b (sqrt 2)) (* (pow angle 2) (+ (* 1/2 (/ (* (sqrt 2) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2))))) b)) (* (pow angle 2) (+ (* 1/2 (/ (* (sqrt 2) (- (+ (* -1/3149280000 (* (pow a 2) (pow (PI) 4))) (* (pow b 2) (+ (* 1/12597120000 (pow (PI) 4)) (* 1/4199040000 (pow (PI) 4))))) (* 1/4 (/ (pow (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))) 2) (pow b 2))))) b)) (* 1/2 (/ (* (pow angle 2) (* (sqrt 2) (- (+ (* (pow a 2) (+ (* 1/2040733440000000 (pow (PI) 6)) (* 1/1224440064000000 (pow (PI) 6)))) (* (pow b 2) (+ (* -1/816293376000000 (pow (PI) 6)) (* -1/12244400640000000 (pow (PI) 6))))) (* 1/2 (/ (* (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))) (- (+ (* -1/3149280000 (* (pow a 2) (pow (PI) 4))) (* (pow b 2) (+ (* 1/12597120000 (pow (PI) 4)) (* 1/4199040000 (pow (PI) 4))))) (* 1/4 (/ (pow (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))) 2) (pow b 2))))) (pow b 2)))))) b)))))))))
#s(approx (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))) #s(hole binary64 (/ (* b (sqrt 2)) x-scale)))
#s(approx (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))) #s(hole binary64 (+ (* 1/2 (/ (* (pow angle 2) (* (sqrt 2) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))))) (* b x-scale))) (/ (* b (sqrt 2)) x-scale))))
#s(approx (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))) #s(hole binary64 (+ (* (pow angle 2) (+ (* 1/2 (/ (* (sqrt 2) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2))))) (* b x-scale))) (* 1/2 (/ (* (pow angle 2) (* (sqrt 2) (- (+ (* -1/3149280000 (* (pow a 2) (pow (PI) 4))) (* (pow b 2) (+ (* 1/12597120000 (pow (PI) 4)) (* 1/4199040000 (pow (PI) 4))))) (* 1/4 (/ (pow (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))) 2) (pow b 2)))))) (* b x-scale))))) (/ (* b (sqrt 2)) x-scale))))
#s(approx (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))) #s(hole binary64 (+ (* (pow angle 2) (+ (* 1/2 (/ (* (sqrt 2) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2))))) (* b x-scale))) (* (pow angle 2) (+ (* 1/2 (/ (* (sqrt 2) (- (+ (* -1/3149280000 (* (pow a 2) (pow (PI) 4))) (* (pow b 2) (+ (* 1/12597120000 (pow (PI) 4)) (* 1/4199040000 (pow (PI) 4))))) (* 1/4 (/ (pow (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))) 2) (pow b 2))))) (* b x-scale))) (* 1/2 (/ (* (pow angle 2) (* (sqrt 2) (- (+ (* (pow a 2) (+ (* 1/2040733440000000 (pow (PI) 6)) (* 1/1224440064000000 (pow (PI) 6)))) (* (pow b 2) (+ (* -1/816293376000000 (pow (PI) 6)) (* -1/12244400640000000 (pow (PI) 6))))) (* 1/2 (/ (* (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))) (- (+ (* -1/3149280000 (* (pow a 2) (pow (PI) 4))) (* (pow b 2) (+ (* 1/12597120000 (pow (PI) 4)) (* 1/4199040000 (pow (PI) 4))))) (* 1/4 (/ (pow (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))) 2) (pow b 2))))) (pow b 2)))))) (* b x-scale))))))) (/ (* b (sqrt 2)) x-scale))))
#s(approx (cos (* (/ angle 180) (PI))) #s(hole binary64 1))
#s(approx (cos (* (/ angle 180) (PI))) #s(hole binary64 (+ 1 (* -1/64800 (* (pow angle 2) (pow (PI) 2))))))
#s(approx (cos (* (/ angle 180) (PI))) #s(hole binary64 (+ 1 (* (pow angle 2) (+ (* -1/64800 (pow (PI) 2)) (* 1/25194240000 (* (pow angle 2) (pow (PI) 4))))))))
#s(approx (cos (* (/ angle 180) (PI))) #s(hole binary64 (+ 1 (* (pow angle 2) (+ (* -1/64800 (pow (PI) 2)) (* (pow angle 2) (+ (* -1/24488801280000000 (* (pow angle 2) (pow (PI) 6))) (* 1/25194240000 (pow (PI) 4)))))))))
#s(approx (/ (+ (* (/ 4 x-scale) (/ (* (* (pow (* (+ b a) (- b a)) 2) (pow (sin (* (* (PI) angle) 1/180)) 2)) (pow (cos (* -1/180 (* (PI) angle))) 2)) x-scale)) (* (* -2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale))) #s(hole binary64 (* -2 (pow a 2))))
#s(approx (/ (+ (* (/ 4 x-scale) (/ (* (* (pow (* (+ b a) (- b a)) 2) (pow (sin (* (* (PI) angle) 1/180)) 2)) (pow (cos (* -1/180 (* (PI) angle))) 2)) x-scale)) (* (* -2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale))) #s(hole binary64 (+ (* -2 (pow a 2)) (* (pow angle 2) (- (/ (* (pow x-scale 2) (+ (* -2 (+ (/ (* (pow a 2) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2))))) (pow x-scale 2)) (/ (* (pow b 2) (+ (* -1/32400 (* (pow a 2) (pow (PI) 2))) (* 1/32400 (* (pow b 2) (pow (PI) 2))))) (pow x-scale 2)))) (* 1/8100 (/ (* (pow (PI) 2) (* (pow (+ a b) 2) (pow (- b a) 2))) (pow x-scale 2))))) (pow b 2)) (* -2 (/ (* (pow a 2) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2))))) (pow b 2))))))))
#s(approx (/ (+ (* (/ 4 x-scale) (/ (* (* (pow (* (+ b a) (- b a)) 2) (pow (sin (* (* (PI) angle) 1/180)) 2)) (pow (cos (* -1/180 (* (PI) angle))) 2)) x-scale)) (* (* -2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale))) #s(hole binary64 (+ (* -2 (pow a 2)) (* (pow angle 2) (- (+ (* (pow angle 2) (- (/ (* (pow x-scale 2) (+ (* -2 (+ (/ (* (+ (* -1/32400 (* (pow a 2) (pow (PI) 2))) (* 1/32400 (* (pow b 2) (pow (PI) 2)))) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2))))) (pow x-scale 2)) (+ (/ (* (pow a 2) (+ (* -1/3149280000 (* (pow a 2) (pow (PI) 4))) (* (pow b 2) (+ (* 1/12597120000 (pow (PI) 4)) (* 1/4199040000 (pow (PI) 4)))))) (pow x-scale 2)) (/ (* (pow b 2) (+ (* -1/3149280000 (* (pow b 2) (pow (PI) 4))) (* (pow a 2) (+ (* 1/12597120000 (pow (PI) 4)) (* 1/4199040000 (pow (PI) 4)))))) (pow x-scale 2))))) (* 4 (+ (* -1/1049760000 (/ (* (pow (PI) 4) (* (pow (+ a b) 2) (pow (- b a) 2))) (pow x-scale 2))) (* -1/3149280000 (/ (* (pow (PI) 4) (* (pow (+ a b) 2) (pow (- b a) 2))) (pow x-scale 2))))))) (pow b 2)) (+ (* -2 (/ (* (pow a 2) (+ (* -1/3149280000 (* (pow a 2) (pow (PI) 4))) (* (pow b 2) (+ (* 1/12597120000 (pow (PI) 4)) (* 1/4199040000 (pow (PI) 4)))))) (pow b 2))) (/ (* (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))) (- (/ (* (pow x-scale 2) (+ (* -2 (+ (/ (* (pow a 2) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2))))) (pow x-scale 2)) (/ (* (pow b 2) (+ (* -1/32400 (* (pow a 2) (pow (PI) 2))) (* 1/32400 (* (pow b 2) (pow (PI) 2))))) (pow x-scale 2)))) (* 1/8100 (/ (* (pow (PI) 2) (* (pow (+ a b) 2) (pow (- b a) 2))) (pow x-scale 2))))) (pow b 2)) (* -2 (/ (* (pow a 2) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2))))) (pow b 2))))) (pow b 2))))) (/ (* (pow x-scale 2) (+ (* -2 (+ (/ (* (pow a 2) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2))))) (pow x-scale 2)) (/ (* (pow b 2) (+ (* -1/32400 (* (pow a 2) (pow (PI) 2))) (* 1/32400 (* (pow b 2) (pow (PI) 2))))) (pow x-scale 2)))) (* 1/8100 (/ (* (pow (PI) 2) (* (pow (+ a b) 2) (pow (- b a) 2))) (pow x-scale 2))))) (pow b 2))) (* -2 (/ (* (pow a 2) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2))))) (pow b 2))))))))
#s(approx (/ (+ (* (/ 4 x-scale) (/ (* (* (pow (* (+ b a) (- b a)) 2) (pow (sin (* (* (PI) angle) 1/180)) 2)) (pow (cos (* -1/180 (* (PI) angle))) 2)) x-scale)) (* (* -2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale))) #s(hole binary64 (+ (* -2 (pow a 2)) (* (pow angle 2) (- (+ (* (pow angle 2) (- (+ (* (pow angle 2) (- (/ (* (pow x-scale 2) (+ (* -2 (+ (/ (* (+ (* -1/32400 (* (pow a 2) (pow (PI) 2))) (* 1/32400 (* (pow b 2) (pow (PI) 2)))) (+ (* -1/3149280000 (* (pow a 2) (pow (PI) 4))) (* (pow b 2) (+ (* 1/12597120000 (pow (PI) 4)) (* 1/4199040000 (pow (PI) 4)))))) (pow x-scale 2)) (+ (/ (* (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 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#s(approx (* (sqrt 8) y-scale) #s(hole binary64 (* y-scale (sqrt 8))))
#s(approx (* (* y-scale (sqrt 2)) (sqrt 8)) #s(hole binary64 (* y-scale (* (sqrt 2) (sqrt 8)))))
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#s(approx (* y-scale (sqrt 2)) #s(hole binary64 (* y-scale (sqrt 2))))
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Calls

15 calls:

TimeVariablePointExpression
69.0ms
y-scale
@inf
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51.0ms
a
@inf
((/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) (* 1/4 (* (sqrt 8) y-scale)) (* (sqrt 8) 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-1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))) (cos (* (/ angle 180) (PI))) (/ (+ (* (/ 4 x-scale) (/ (* (* (pow (* (+ b a) (- b a)) 2) (pow (sin (* (* (PI) angle) 1/180)) 2)) (pow (cos (* -1/180 (* (PI) angle))) 2)) x-scale)) (* (* -2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale))))
41.0ms
b
@0
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2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale))) 1/2) (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a))))) (sqrt (/ 1 (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))))) (* y-scale y-scale)) 1/8) (* (* 1/4 (* (sqrt 8) x-scale)) (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))))) y-scale) (cos (* -1/180 (* (PI) angle))) (sin (* (* (PI) angle) 1/180)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) (* y-scale (sqrt 2)) (sqrt 2) (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))) (cos (* (/ angle 180) (PI))) (/ (+ (* (/ 4 x-scale) (/ (* (* (pow (* (+ b a) (- b a)) 2) (pow (sin (* (* (PI) angle) 1/180)) 2)) (pow (cos (* -1/180 (* (PI) angle))) 2)) x-scale)) (* (* -2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale))))
37.0ms
angle
@0
((/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) (* 1/4 (* (sqrt 8) y-scale)) (* (sqrt 8) y-scale) (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* 1/4 b) (* (* y-scale (sqrt 2)) (sqrt 8))) (* 1/4 b) (* (* y-scale (sqrt 2)) (sqrt 8)) (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b 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-1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))) (cos (* (/ angle 180) (PI))) (/ (+ (* (/ 4 x-scale) (/ (* (* (pow (* (+ b a) (- b a)) 2) (pow (sin (* (* (PI) angle) 1/180)) 2)) (pow (cos (* -1/180 (* (PI) angle))) 2)) x-scale)) (* (* -2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale))))
32.0ms
a
@0
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simplify963.0ms (3.4%)

Memory
-99.7MiB live, 622.4MiB allocated; 1.0s collecting garbage
Iterations

Useful iterations: 0 (0.0ms)

IterNodesCost
03394205605
08086200113
Stop Event
iter limit
node limit
Counts
406 → 406
Calls
Call 1
Inputs
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#s(approx (+ (* (/ 4 x-scale) (/ (* (* (pow (* (+ b a) (- b a)) 2) (pow (sin (* (* (PI) angle) 1/180)) 2)) (pow (cos (* -1/180 (* (PI) angle))) 2)) x-scale)) (* (* -2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale)))) #s(hole binary64 (+ (* -2 (/ (* (pow a 4) (* (pow (cos (* -1/180 (* angle (PI)))) 2) (pow (sin (* 1/180 (* angle (PI)))) 2))) (pow x-scale 2))) (+ (* 4 (/ (* b (* (pow (cos (* -1/180 (* angle (PI)))) 2) (* (pow (sin (* 1/180 (* angle (PI)))) 2) (+ (* -2 (pow a 3)) (* 2 (pow a 3)))))) (pow x-scale 2))) (* 4 (/ (* (pow a 4) (* (pow (cos (* -1/180 (* angle (PI)))) 2) (pow (sin (* 1/180 (* angle (PI)))) 2))) (pow x-scale 2)))))))
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#s(approx (+ (* (/ 4 x-scale) (/ (* (* (pow (* (+ b a) (- b a)) 2) (pow (sin (* (* (PI) angle) 1/180)) 2)) (pow (cos (* -1/180 (* (PI) angle))) 2)) x-scale)) (* (* -2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale)))) #s(hole binary64 (* -2 (/ (* (pow a 2) (pow b 2)) (pow x-scale 2)))))
#s(approx (+ (* (/ 4 x-scale) (/ (* (* (pow (* (+ b a) (- b a)) 2) (pow (sin (* (* (PI) angle) 1/180)) 2)) (pow (cos (* -1/180 (* (PI) angle))) 2)) x-scale)) (* (* -2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale)))) #s(hole binary64 (+ (* -2 (/ (* (pow a 2) (pow b 2)) (pow x-scale 2))) (* (pow angle 2) (+ (* -2 (+ (/ (* (pow a 2) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2))))) (pow x-scale 2)) (/ (* (pow b 2) (+ (* -1/32400 (* (pow a 2) (pow (PI) 2))) (* 1/32400 (* (pow b 2) (pow (PI) 2))))) (pow x-scale 2)))) (* 1/8100 (/ (* (pow (PI) 2) (* (pow (+ a b) 2) (pow (- b a) 2))) (pow x-scale 2))))))))
#s(approx (+ (* (/ 4 x-scale) (/ (* (* (pow (* (+ b a) (- b a)) 2) (pow (sin (* (* (PI) angle) 1/180)) 2)) (pow (cos (* -1/180 (* (PI) angle))) 2)) x-scale)) (* (* -2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale)))) #s(hole binary64 (+ (* -2 (/ (* (pow a 2) (pow b 2)) (pow x-scale 2))) (* (pow angle 2) (+ (* -2 (+ (/ (* (pow a 2) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2))))) (pow x-scale 2)) (/ (* (pow b 2) (+ (* -1/32400 (* (pow a 2) (pow (PI) 2))) (* 1/32400 (* (pow b 2) (pow (PI) 2))))) (pow x-scale 2)))) (+ (* 1/8100 (/ (* (pow (PI) 2) (* (pow (+ a b) 2) (pow (- b a) 2))) (pow x-scale 2))) (* (pow angle 2) (+ (* -2 (+ (/ (* (+ (* -1/32400 (* (pow a 2) (pow (PI) 2))) (* 1/32400 (* (pow b 2) (pow (PI) 2)))) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2))))) (pow x-scale 2)) (+ (/ (* (pow a 2) (+ (* -1/3149280000 (* (pow a 2) (pow (PI) 4))) (* (pow b 2) (+ (* 1/12597120000 (pow (PI) 4)) (* 1/4199040000 (pow (PI) 4)))))) (pow x-scale 2)) (/ (* (pow b 2) (+ (* -1/3149280000 (* (pow b 2) (pow (PI) 4))) (* (pow a 2) (+ (* 1/12597120000 (pow (PI) 4)) (* 1/4199040000 (pow (PI) 4)))))) (pow x-scale 2))))) (* 4 (+ (* -1/1049760000 (/ (* (pow (PI) 4) (* (pow (+ a b) 2) (pow (- b a) 2))) (pow x-scale 2))) (* -1/3149280000 (/ (* (pow (PI) 4) (* (pow (+ a b) 2) (pow (- b a) 2))) (pow x-scale 2)))))))))))))
#s(approx (+ (* (/ 4 x-scale) (/ (* (* (pow (* (+ b a) (- b a)) 2) (pow (sin (* (* (PI) angle) 1/180)) 2)) (pow (cos (* -1/180 (* (PI) angle))) 2)) x-scale)) (* (* -2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale)))) #s(hole binary64 (+ (* -2 (/ (* (pow a 2) (pow b 2)) (pow x-scale 2))) (* (pow angle 2) (+ (* -2 (+ (/ (* (pow a 2) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2))))) (pow x-scale 2)) (/ (* (pow b 2) (+ (* -1/32400 (* (pow a 2) (pow (PI) 2))) (* 1/32400 (* (pow b 2) (pow (PI) 2))))) (pow x-scale 2)))) (+ (* 1/8100 (/ (* (pow (PI) 2) (* (pow (+ a b) 2) (pow (- b a) 2))) (pow x-scale 2))) (* (pow angle 2) (+ (* -2 (+ (/ (* (+ (* -1/32400 (* (pow a 2) (pow (PI) 2))) (* 1/32400 (* (pow b 2) (pow (PI) 2)))) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2))))) (pow x-scale 2)) (+ (/ (* (pow a 2) (+ (* -1/3149280000 (* (pow a 2) (pow (PI) 4))) (* (pow b 2) (+ (* 1/12597120000 (pow (PI) 4)) (* 1/4199040000 (pow (PI) 4)))))) (pow x-scale 2)) (/ (* (pow b 2) (+ (* -1/3149280000 (* (pow b 2) (pow (PI) 4))) (* (pow a 2) (+ (* 1/12597120000 (pow (PI) 4)) (* 1/4199040000 (pow (PI) 4)))))) (pow x-scale 2))))) (+ (* 4 (+ (* -1/1049760000 (/ (* (pow (PI) 4) (* (pow (+ a b) 2) (pow (- b a) 2))) (pow x-scale 2))) (* -1/3149280000 (/ (* (pow (PI) 4) (* (pow (+ a b) 2) (pow (- b a) 2))) (pow x-scale 2))))) (* (pow angle 2) (+ (* -2 (+ (/ (* (+ (* -1/32400 (* (pow a 2) (pow (PI) 2))) (* 1/32400 (* (pow b 2) (pow (PI) 2)))) (+ (* -1/3149280000 (* (pow a 2) (pow (PI) 4))) (* (pow b 2) (+ (* 1/12597120000 (pow (PI) 4)) (* 1/4199040000 (pow (PI) 4)))))) (pow x-scale 2)) (+ (/ (* (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))) (+ (* -1/3149280000 (* (pow b 2) (pow (PI) 4))) (* (pow a 2) (+ (* 1/12597120000 (pow (PI) 4)) (* 1/4199040000 (pow (PI) 4)))))) (pow x-scale 2)) (+ (/ (* (pow a 2) (+ (* (pow a 2) (+ (* 1/2040733440000000 (pow (PI) 6)) (* 1/1224440064000000 (pow (PI) 6)))) (* (pow b 2) (+ (* -1/816293376000000 (pow (PI) 6)) (* -1/12244400640000000 (pow (PI) 6)))))) (pow x-scale 2)) (/ (* (pow b 2) (+ (* (pow a 2) (+ (* -1/816293376000000 (pow (PI) 6)) (* -1/12244400640000000 (pow (PI) 6)))) (* (pow b 2) (+ (* 1/2040733440000000 (pow (PI) 6)) (* 1/1224440064000000 (pow (PI) 6)))))) (pow x-scale 2)))))) (* 4 (+ (* 1/102036672000000 (/ (* (pow (PI) 6) (* (pow (+ a b) 2) (pow (- b a) 2))) (pow x-scale 2))) (+ (* 1/32400 (/ (* (pow (PI) 2) (* (pow (+ a b) 2) (* (+ (* 1/12597120000 (pow (PI) 4)) (* 1/4199040000 (pow (PI) 4))) (pow (- b a) 2)))) (pow x-scale 2))) (/ (* (pow (+ a b) 2) (* (+ (* 1/2040733440000000 (pow (PI) 6)) (* 1/1224440064000000 (pow (PI) 6))) (pow (- b a) 2))) (pow x-scale 2))))))))))))))))
#s(approx (/ 1 (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))) #s(hole binary64 (* 1/2 (/ (pow x-scale 2) (pow b 2)))))
#s(approx (/ 1 (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))) #s(hole binary64 (+ (* -1/2 (/ (* (pow angle 2) (* (pow x-scale 2) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))))) (pow b 4))) (* 1/2 (/ (pow x-scale 2) (pow b 2))))))
#s(approx (/ 1 (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))) #s(hole binary64 (+ (* 1/2 (/ (pow x-scale 2) (pow b 2))) (* (pow angle 2) (+ (* -1/2 (* (pow angle 2) (+ (* -1 (/ (* (pow x-scale 2) (pow (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))) 2)) (pow b 6))) (/ (* (pow x-scale 2) (+ (* -1/3149280000 (* (pow a 2) (pow (PI) 4))) (* (pow b 2) (+ (* 1/12597120000 (pow (PI) 4)) (* 1/4199040000 (pow (PI) 4)))))) (pow b 4))))) (* -1/2 (/ (* (pow x-scale 2) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2))))) (pow b 4))))))))
#s(approx (/ 1 (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))) #s(hole binary64 (+ (* 1/2 (/ (pow x-scale 2) (pow b 2))) (* (pow angle 2) (+ (* -1/2 (/ (* (pow x-scale 2) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2))))) (pow b 4))) (* (pow angle 2) (+ (* -1/2 (* (pow angle 2) (+ (* -1 (/ (* (+ (* -1 (/ (* (pow x-scale 2) (pow (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))) 2)) (pow b 6))) (/ (* (pow x-scale 2) (+ (* -1/3149280000 (* (pow a 2) (pow (PI) 4))) (* (pow b 2) (+ (* 1/12597120000 (pow (PI) 4)) (* 1/4199040000 (pow (PI) 4)))))) (pow b 4))) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2))))) (pow b 2))) (+ (* -1 (/ (* (pow x-scale 2) (* (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))) (+ (* -1/3149280000 (* (pow a 2) (pow (PI) 4))) (* (pow b 2) (+ (* 1/12597120000 (pow (PI) 4)) (* 1/4199040000 (pow (PI) 4))))))) (pow b 6))) (/ (* (pow x-scale 2) (+ (* (pow a 2) (+ (* 1/2040733440000000 (pow (PI) 6)) (* 1/1224440064000000 (pow (PI) 6)))) (* (pow b 2) (+ (* -1/816293376000000 (pow (PI) 6)) (* -1/12244400640000000 (pow (PI) 6)))))) (pow b 4)))))) (* -1/2 (+ (* -1 (/ (* (pow x-scale 2) (pow (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))) 2)) (pow b 6))) (/ (* (pow x-scale 2) (+ (* -1/3149280000 (* (pow a 2) (pow (PI) 4))) (* (pow b 2) (+ (* 1/12597120000 (pow (PI) 4)) (* 1/4199040000 (pow (PI) 4)))))) (pow b 4)))))))))))
#s(approx (* (+ (* (/ (* (* (* (sqrt 8) x-scale) (+ (* (/ (+ (* (/ 4 x-scale) (/ (* (* (pow (* (+ b a) (- b a)) 2) (pow (sin (* (* (PI) angle) 1/180)) 2)) (pow (cos (* -1/180 (* (PI) angle))) 2)) x-scale)) (* (* -2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale))) 1/2) (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a))))) (sqrt (/ 1 (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))))) (* y-scale y-scale)) 1/8) (* (* 1/4 (* (sqrt 8) x-scale)) (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))))) y-scale) #s(hole binary64 (* y-scale (+ (* 1/8 (/ (* (pow x-scale 2) (* (sqrt 1/2) (* (sqrt 8) (+ (* -1 (pow a 2)) (pow a 2))))) (* b (pow y-scale 2)))) (* 1/4 (* b (* (sqrt 2) (sqrt 8))))))))
#s(approx (* (+ (* (/ (* (* (* (sqrt 8) x-scale) (+ (* (/ (+ (* (/ 4 x-scale) (/ (* (* (pow (* (+ b a) (- b a)) 2) (pow (sin (* (* (PI) angle) 1/180)) 2)) (pow (cos (* -1/180 (* (PI) angle))) 2)) x-scale)) (* (* -2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale))) 1/2) (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a))))) (sqrt (/ 1 (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))))) (* y-scale y-scale)) 1/8) (* (* 1/4 (* (sqrt 8) x-scale)) (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))))) y-scale) #s(hole binary64 (+ (* y-scale (+ (* 1/8 (/ (* (pow x-scale 2) (* (sqrt 1/2) (* (sqrt 8) (+ (* -1 (pow a 2)) (pow a 2))))) (* b (pow y-scale 2)))) (* 1/4 (* b (* (sqrt 2) (sqrt 8)))))) (* (pow angle 2) (* y-scale (+ (* 1/8 (+ (* -1/2 (/ (* b (* (pow x-scale 2) (* (sqrt 1/2) (* (sqrt 8) (* (+ (* -1 (pow a 2)) (pow a 2)) (+ (* -1/32400 (/ (pow (PI) 2) (pow b 2))) (* 1/32400 (/ (* (pow a 2) (pow (PI) 2)) (pow b 4))))))))) (pow y-scale 2))) (/ (* (pow x-scale 2) (* (sqrt 1/2) (* (sqrt 8) (+ (* -1/32400 (* (pow a 2) (pow (PI) 2))) (+ (* 1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/2 (- (/ (* (pow x-scale 2) (+ (* -2 (+ (/ (* (pow a 2) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2))))) (pow x-scale 2)) (/ (* (pow b 2) (+ (* -1/32400 (* (pow a 2) (pow (PI) 2))) (* 1/32400 (* (pow b 2) (pow (PI) 2))))) (pow x-scale 2)))) (* 1/8100 (/ (* (pow (PI) 2) (* (pow (+ a b) 2) (pow (- b a) 2))) (pow x-scale 2))))) (pow b 2)) (* -2 (/ (* (pow a 2) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2))))) (pow b 2)))))))))) (* b (pow y-scale 2))))) (* 1/8 (/ (* (sqrt 2) (* (sqrt 8) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))))) b))))))))
#s(approx (* (+ (* (/ (* (* (* (sqrt 8) x-scale) (+ (* (/ (+ (* (/ 4 x-scale) (/ (* (* (pow (* (+ b a) (- b a)) 2) (pow (sin (* (* (PI) angle) 1/180)) 2)) (pow (cos (* -1/180 (* (PI) angle))) 2)) x-scale)) (* (* -2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale))) 1/2) (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a))))) (sqrt (/ 1 (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))))) (* y-scale y-scale)) 1/8) (* (* 1/4 (* (sqrt 8) x-scale)) (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))))) y-scale) #s(hole binary64 (+ (* y-scale (+ (* 1/8 (/ (* (pow x-scale 2) (* (sqrt 1/2) (* (sqrt 8) (+ (* -1 (pow a 2)) (pow a 2))))) (* b (pow y-scale 2)))) (* 1/4 (* b (* (sqrt 2) (sqrt 8)))))) (* (pow angle 2) (+ (* y-scale (+ (* 1/8 (+ (* -1/2 (/ (* b (* (pow x-scale 2) (* (sqrt 1/2) (* (sqrt 8) (* (+ (* -1 (pow a 2)) (pow a 2)) (+ (* -1/32400 (/ (pow (PI) 2) (pow b 2))) (* 1/32400 (/ (* (pow a 2) (pow (PI) 2)) (pow b 4))))))))) (pow y-scale 2))) (/ (* (pow x-scale 2) (* (sqrt 1/2) (* (sqrt 8) (+ (* -1/32400 (* (pow a 2) (pow (PI) 2))) (+ (* 1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/2 (- (/ (* (pow x-scale 2) (+ (* -2 (+ (/ (* (pow a 2) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2))))) (pow x-scale 2)) (/ (* (pow b 2) (+ (* -1/32400 (* (pow a 2) (pow (PI) 2))) (* 1/32400 (* (pow b 2) (pow (PI) 2))))) (pow x-scale 2)))) (* 1/8100 (/ (* (pow (PI) 2) (* (pow (+ a b) 2) (pow (- b a) 2))) (pow x-scale 2))))) (pow b 2)) (* -2 (/ (* (pow a 2) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2))))) (pow b 2)))))))))) (* b (pow y-scale 2))))) (* 1/8 (/ (* (sqrt 2) (* (sqrt 8) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))))) b)))) (* (pow angle 2) (* y-scale (+ (* 1/8 (+ (* -1/2 (/ (* b (* (pow x-scale 2) (* (sqrt 1/2) (* (sqrt 8) (* (+ (* -1 (/ (* (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))) (+ (* -1/32400 (/ (pow (PI) 2) (pow b 2))) (* 1/32400 (/ (* (pow a 2) (pow (PI) 2)) (pow b 4))))) (pow b 2))) (+ (* -1/3149280000 (/ (* (pow a 2) (pow (PI) 4)) (pow b 4))) (+ (* 1/12597120000 (/ (pow (PI) 4) (pow b 2))) (+ (* 1/4199040000 (/ (pow (PI) 4) (pow b 2))) (* 1/4 (* (pow b 2) (pow (+ (* -1/32400 (/ (pow (PI) 2) (pow b 2))) (* 1/32400 (/ (* (pow a 2) (pow (PI) 2)) (pow b 4)))) 2))))))) (+ (* -1 (pow a 2)) (pow a 2))))))) (pow y-scale 2))) (+ (* -1/2 (/ (* b (* (pow x-scale 2) (* 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x-scale 2)) (/ (* (pow b 2) (+ (* -1/32400 (* (pow a 2) (pow (PI) 2))) (* 1/32400 (* (pow b 2) (pow (PI) 2))))) (pow x-scale 2)))) (* 1/8100 (/ (* (pow (PI) 2) (* (pow (+ a b) 2) (pow (- b a) 2))) (pow x-scale 2))))) (pow b 2)) (* -2 (/ (* (pow a 2) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2))))) (pow b 2))))) (pow b 2))))) (* (pow a 2) (+ (* 1/12597120000 (pow (PI) 4)) (* 1/4199040000 (pow (PI) 4))))))))) (* b (pow y-scale 2)))))) (* 1/8 (/ (* (sqrt 2) (* (sqrt 8) (- (+ (* -1/3149280000 (* (pow a 2) (pow (PI) 4))) (* (pow b 2) (+ (* 1/12597120000 (pow (PI) 4)) (* 1/4199040000 (pow (PI) 4))))) (* 1/4 (/ (pow (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))) 2) (pow b 2)))))) b))))))))))
#s(approx (* (+ (* (/ (* (* (* (sqrt 8) x-scale) (+ (* (/ (+ (* (/ 4 x-scale) (/ (* (* (pow (* (+ b a) (- b a)) 2) (pow (sin (* (* (PI) angle) 1/180)) 2)) (pow (cos (* -1/180 (* (PI) angle))) 2)) x-scale)) (* (* -2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale))) 1/2) (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a))))) (sqrt (/ 1 (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))))) (* y-scale y-scale)) 1/8) (* (* 1/4 (* (sqrt 8) x-scale)) (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))))) y-scale) #s(hole binary64 (+ (* y-scale (+ (* 1/8 (/ (* (pow x-scale 2) (* (sqrt 1/2) (* (sqrt 8) (+ (* -1 (pow a 2)) (pow a 2))))) (* b (pow y-scale 2)))) (* 1/4 (* b (* (sqrt 2) (sqrt 8)))))) (* (pow angle 2) (+ (* y-scale (+ (* 1/8 (+ (* -1/2 (/ (* b (* (pow x-scale 2) (* (sqrt 1/2) (* (sqrt 8) (* (+ (* -1 (pow a 2)) (pow a 2)) (+ (* -1/32400 (/ (pow (PI) 2) (pow b 2))) (* 1/32400 (/ (* (pow a 2) (pow (PI) 2)) (pow b 4))))))))) (pow y-scale 2))) (/ (* (pow x-scale 2) (* (sqrt 1/2) (* (sqrt 8) (+ (* -1/32400 (* (pow a 2) (pow (PI) 2))) (+ (* 1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/2 (- (/ (* (pow x-scale 2) (+ (* -2 (+ (/ (* (pow a 2) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2))))) (pow x-scale 2)) (/ (* (pow b 2) (+ (* -1/32400 (* (pow a 2) (pow (PI) 2))) (* 1/32400 (* (pow b 2) (pow (PI) 2))))) (pow x-scale 2)))) (* 1/8100 (/ (* (pow (PI) 2) (* (pow (+ a b) 2) (pow (- b a) 2))) (pow x-scale 2))))) (pow b 2)) (* -2 (/ (* (pow a 2) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2))))) (pow b 2)))))))))) (* b (pow y-scale 2))))) (* 1/8 (/ (* (sqrt 2) (* (sqrt 8) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))))) b)))) (* (pow angle 2) (+ (* y-scale (+ (* 1/8 (+ (* -1/2 (/ (* b (* (pow x-scale 2) (* (sqrt 1/2) (* (sqrt 8) (* (+ (* -1 (/ (* (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))) (+ (* -1/32400 (/ (pow (PI) 2) (pow b 2))) (* 1/32400 (/ (* (pow a 2) (pow (PI) 2)) (pow b 4))))) (pow b 2))) (+ (* -1/3149280000 (/ (* (pow a 2) (pow (PI) 4)) (pow b 4))) (+ (* 1/12597120000 (/ (pow (PI) 4) (pow b 2))) (+ (* 1/4199040000 (/ (pow (PI) 4) (pow b 2))) (* 1/4 (* (pow b 2) (pow (+ (* -1/32400 (/ (pow (PI) 2) (pow b 2))) (* 1/32400 (/ (* (pow a 2) (pow (PI) 2)) (pow b 4)))) 2))))))) (+ (* -1 (pow a 2)) (pow a 2))))))) (pow y-scale 2))) (+ (* -1/2 (/ (* b (* (pow x-scale 2) (* 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(* (pow a 2) (pow (PI) 2)) (pow b 4)))) 2))))))) (+ (* -1/32400 (* (pow a 2) (pow (PI) 2))) (+ (* 1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/2 (- (/ (* (pow x-scale 2) (+ (* -2 (+ (/ (* (pow a 2) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2))))) (pow x-scale 2)) (/ (* (pow b 2) (+ (* -1/32400 (* (pow a 2) (pow (PI) 2))) (* 1/32400 (* (pow b 2) (pow (PI) 2))))) (pow x-scale 2)))) (* 1/8100 (/ (* (pow (PI) 2) (* (pow (+ a b) 2) (pow (- b a) 2))) (pow x-scale 2))))) (pow b 2)) (* -2 (/ (* (pow a 2) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2))))) (pow b 2)))))))))))) (pow y-scale 2))) (+ (* -1/2 (/ (* b (* (pow x-scale 2) (* (sqrt 1/2) (* (sqrt 8) (* (+ (* -1/32400 (/ (pow (PI) 2) (pow b 2))) (* 1/32400 (/ (* (pow a 2) (pow (PI) 2)) (pow b 4)))) (+ (* -1/3149280000 (* (pow b 2) (pow (PI) 4))) (+ (* 1/2 (- (/ (* (pow x-scale 2) (+ (* -2 (+ (/ (* (+ (* -1/32400 (* (pow a 2) (pow (PI) 2))) (* 1/32400 (* (pow b 2) (pow (PI) 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#s(approx (cos (* -1/180 (* (PI) angle))) #s(hole binary64 1))
#s(approx (cos (* -1/180 (* (PI) angle))) #s(hole binary64 (+ 1 (* -1/64800 (* (pow angle 2) (pow (PI) 2))))))
#s(approx (cos (* -1/180 (* (PI) angle))) #s(hole binary64 (+ 1 (* (pow angle 2) (+ (* -1/64800 (pow (PI) 2)) (* 1/25194240000 (* (pow angle 2) (pow (PI) 4))))))))
#s(approx (cos (* -1/180 (* (PI) angle))) #s(hole binary64 (+ 1 (* (pow angle 2) (+ (* -1/64800 (pow (PI) 2)) (* (pow angle 2) (+ (* -1/24488801280000000 (* (pow angle 2) (pow (PI) 6))) (* 1/25194240000 (pow (PI) 4)))))))))
#s(approx (sin (* (* (PI) angle) 1/180)) #s(hole binary64 (* 1/180 (* angle (PI)))))
#s(approx (sin (* (* (PI) angle) 1/180)) #s(hole binary64 (* angle (+ (* -1/34992000 (* (pow angle 2) (pow (PI) 3))) (* 1/180 (PI))))))
#s(approx (sin (* (* (PI) angle) 1/180)) #s(hole binary64 (* angle (+ (* 1/180 (PI)) (* (pow angle 2) (+ (* -1/34992000 (pow (PI) 3)) (* 1/22674816000000 (* (pow angle 2) (pow (PI) 5)))))))))
#s(approx (sin (* (* (PI) angle) 1/180)) #s(hole binary64 (* angle (+ (* 1/180 (PI)) (* (pow angle 2) (+ (* -1/34992000 (pow (PI) 3)) (* (pow angle 2) (+ (* -1/30855889612800000000 (* (pow angle 2) (pow (PI) 7))) (* 1/22674816000000 (pow (PI) 5))))))))))
#s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) #s(hole binary64 (* b (sqrt 2))))
#s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) #s(hole binary64 (+ (* 1/2 (/ (* (pow angle 2) (* (sqrt 2) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))))) b)) (* b (sqrt 2)))))
#s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) #s(hole binary64 (+ (* b (sqrt 2)) (* (pow angle 2) (+ (* 1/2 (/ (* (sqrt 2) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2))))) b)) (* 1/2 (/ (* (pow angle 2) (* (sqrt 2) (- (+ (* -1/3149280000 (* (pow a 2) (pow (PI) 4))) (* (pow b 2) (+ (* 1/12597120000 (pow (PI) 4)) (* 1/4199040000 (pow (PI) 4))))) (* 1/4 (/ (pow (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))) 2) (pow b 2)))))) b)))))))
#s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) #s(hole binary64 (+ (* b (sqrt 2)) (* (pow angle 2) (+ (* 1/2 (/ (* (sqrt 2) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2))))) b)) (* (pow angle 2) (+ (* 1/2 (/ (* (sqrt 2) (- (+ (* -1/3149280000 (* (pow a 2) (pow (PI) 4))) (* (pow b 2) (+ (* 1/12597120000 (pow (PI) 4)) (* 1/4199040000 (pow (PI) 4))))) (* 1/4 (/ (pow (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))) 2) (pow b 2))))) b)) (* 1/2 (/ (* (pow angle 2) (* (sqrt 2) (- (+ (* (pow a 2) (+ (* 1/2040733440000000 (pow (PI) 6)) (* 1/1224440064000000 (pow (PI) 6)))) (* (pow b 2) (+ (* -1/816293376000000 (pow (PI) 6)) (* -1/12244400640000000 (pow (PI) 6))))) (* 1/2 (/ (* (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))) (- (+ (* -1/3149280000 (* (pow a 2) (pow (PI) 4))) (* (pow b 2) (+ (* 1/12597120000 (pow (PI) 4)) (* 1/4199040000 (pow (PI) 4))))) (* 1/4 (/ (pow (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))) 2) (pow b 2))))) (pow b 2)))))) b)))))))))
#s(approx (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))) #s(hole binary64 (/ (* b (sqrt 2)) x-scale)))
#s(approx (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))) #s(hole binary64 (+ (* 1/2 (/ (* (pow angle 2) (* (sqrt 2) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))))) (* b x-scale))) (/ (* b (sqrt 2)) x-scale))))
#s(approx (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))) #s(hole binary64 (+ (* (pow angle 2) (+ (* 1/2 (/ (* (sqrt 2) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2))))) (* b x-scale))) (* 1/2 (/ (* (pow angle 2) (* (sqrt 2) (- (+ (* -1/3149280000 (* (pow a 2) (pow (PI) 4))) (* (pow b 2) (+ (* 1/12597120000 (pow (PI) 4)) (* 1/4199040000 (pow (PI) 4))))) (* 1/4 (/ (pow (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))) 2) (pow b 2)))))) (* b x-scale))))) (/ (* b (sqrt 2)) x-scale))))
#s(approx (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))) #s(hole binary64 (+ (* (pow angle 2) (+ (* 1/2 (/ (* (sqrt 2) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2))))) (* b x-scale))) (* (pow angle 2) (+ (* 1/2 (/ (* (sqrt 2) (- (+ (* -1/3149280000 (* (pow a 2) (pow (PI) 4))) (* (pow b 2) (+ (* 1/12597120000 (pow (PI) 4)) (* 1/4199040000 (pow (PI) 4))))) (* 1/4 (/ (pow (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))) 2) (pow b 2))))) (* b x-scale))) (* 1/2 (/ (* (pow angle 2) (* (sqrt 2) (- (+ (* (pow a 2) (+ (* 1/2040733440000000 (pow (PI) 6)) (* 1/1224440064000000 (pow (PI) 6)))) (* (pow b 2) (+ (* -1/816293376000000 (pow (PI) 6)) (* -1/12244400640000000 (pow (PI) 6))))) (* 1/2 (/ (* (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))) (- (+ (* -1/3149280000 (* (pow a 2) (pow (PI) 4))) (* (pow b 2) (+ (* 1/12597120000 (pow (PI) 4)) (* 1/4199040000 (pow (PI) 4))))) (* 1/4 (/ (pow (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))) 2) (pow b 2))))) (pow b 2)))))) (* b x-scale))))))) (/ (* b (sqrt 2)) x-scale))))
#s(approx (cos (* (/ angle 180) (PI))) #s(hole binary64 1))
#s(approx (cos (* (/ angle 180) (PI))) #s(hole binary64 (+ 1 (* -1/64800 (* (pow angle 2) (pow (PI) 2))))))
#s(approx (cos (* (/ angle 180) (PI))) #s(hole binary64 (+ 1 (* (pow angle 2) (+ (* -1/64800 (pow (PI) 2)) (* 1/25194240000 (* (pow angle 2) (pow (PI) 4))))))))
#s(approx (cos (* (/ angle 180) (PI))) #s(hole binary64 (+ 1 (* (pow angle 2) (+ (* -1/64800 (pow (PI) 2)) (* (pow angle 2) (+ (* -1/24488801280000000 (* (pow angle 2) (pow (PI) 6))) (* 1/25194240000 (pow (PI) 4)))))))))
#s(approx (/ (+ (* (/ 4 x-scale) (/ (* (* (pow (* (+ b a) (- b a)) 2) (pow (sin (* (* (PI) angle) 1/180)) 2)) (pow (cos (* -1/180 (* (PI) angle))) 2)) x-scale)) (* (* -2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale))) #s(hole binary64 (* -2 (pow a 2))))
#s(approx (/ (+ (* (/ 4 x-scale) (/ (* (* (pow (* (+ b a) (- b a)) 2) (pow (sin (* (* (PI) angle) 1/180)) 2)) (pow (cos (* -1/180 (* (PI) angle))) 2)) x-scale)) (* (* -2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale))) #s(hole binary64 (+ (* -2 (pow a 2)) (* (pow angle 2) (- (/ (* (pow x-scale 2) (+ (* -2 (+ (/ (* (pow a 2) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2))))) (pow x-scale 2)) (/ (* (pow b 2) (+ (* -1/32400 (* (pow a 2) (pow (PI) 2))) (* 1/32400 (* (pow b 2) (pow (PI) 2))))) (pow x-scale 2)))) (* 1/8100 (/ (* (pow (PI) 2) (* (pow (+ a b) 2) (pow (- b a) 2))) (pow x-scale 2))))) (pow b 2)) (* -2 (/ (* (pow a 2) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2))))) (pow b 2))))))))
#s(approx (/ (+ (* (/ 4 x-scale) (/ (* (* (pow (* (+ b a) (- b a)) 2) (pow (sin (* (* (PI) angle) 1/180)) 2)) (pow (cos (* -1/180 (* (PI) angle))) 2)) x-scale)) (* (* -2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale))) #s(hole binary64 (+ (* -2 (pow a 2)) (* (pow angle 2) (- (+ (* (pow angle 2) (- (/ (* (pow x-scale 2) (+ (* -2 (+ (/ (* (+ (* -1/32400 (* (pow a 2) (pow (PI) 2))) (* 1/32400 (* (pow b 2) (pow (PI) 2)))) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2))))) (pow x-scale 2)) (+ (/ (* (pow a 2) (+ (* -1/3149280000 (* (pow a 2) (pow (PI) 4))) (* (pow b 2) (+ (* 1/12597120000 (pow (PI) 4)) (* 1/4199040000 (pow (PI) 4)))))) (pow x-scale 2)) (/ (* (pow b 2) (+ (* -1/3149280000 (* (pow b 2) (pow (PI) 4))) (* (pow a 2) (+ (* 1/12597120000 (pow (PI) 4)) (* 1/4199040000 (pow (PI) 4)))))) (pow x-scale 2))))) (* 4 (+ (* -1/1049760000 (/ (* (pow (PI) 4) (* (pow (+ a b) 2) (pow (- b a) 2))) (pow x-scale 2))) (* -1/3149280000 (/ (* (pow (PI) 4) (* (pow (+ a b) 2) (pow (- b a) 2))) (pow x-scale 2))))))) (pow b 2)) (+ (* -2 (/ (* (pow a 2) (+ (* -1/3149280000 (* (pow a 2) (pow (PI) 4))) (* (pow b 2) (+ (* 1/12597120000 (pow (PI) 4)) (* 1/4199040000 (pow (PI) 4)))))) (pow b 2))) (/ (* (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))) (- (/ (* (pow x-scale 2) (+ (* -2 (+ (/ (* (pow a 2) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2))))) (pow x-scale 2)) (/ (* (pow b 2) (+ (* -1/32400 (* (pow a 2) (pow (PI) 2))) (* 1/32400 (* (pow b 2) (pow (PI) 2))))) (pow x-scale 2)))) (* 1/8100 (/ (* (pow (PI) 2) (* (pow (+ a b) 2) (pow (- b a) 2))) (pow x-scale 2))))) (pow b 2)) (* -2 (/ (* (pow a 2) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2))))) (pow b 2))))) (pow b 2))))) (/ (* (pow x-scale 2) (+ (* -2 (+ (/ (* (pow a 2) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2))))) (pow x-scale 2)) (/ (* (pow b 2) (+ (* -1/32400 (* (pow a 2) (pow (PI) 2))) (* 1/32400 (* (pow b 2) (pow (PI) 2))))) (pow x-scale 2)))) (* 1/8100 (/ (* (pow (PI) 2) (* (pow (+ a b) 2) (pow (- b a) 2))) (pow x-scale 2))))) (pow b 2))) (* -2 (/ (* (pow a 2) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2))))) (pow b 2))))))))
#s(approx (/ (+ (* (/ 4 x-scale) (/ (* (* (pow (* (+ b a) (- b a)) 2) (pow (sin (* (* (PI) angle) 1/180)) 2)) (pow (cos (* -1/180 (* (PI) angle))) 2)) x-scale)) (* (* -2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale))) #s(hole binary64 (+ (* -2 (pow a 2)) (* (pow angle 2) (- (+ (* (pow angle 2) (- (+ (* (pow angle 2) (- (/ (* (pow x-scale 2) (+ (* -2 (+ (/ (* (+ (* -1/32400 (* (pow a 2) (pow (PI) 2))) (* 1/32400 (* (pow b 2) (pow (PI) 2)))) (+ (* -1/3149280000 (* (pow a 2) (pow (PI) 4))) (* (pow b 2) (+ (* 1/12597120000 (pow (PI) 4)) (* 1/4199040000 (pow (PI) 4)))))) (pow x-scale 2)) (+ (/ (* (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 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#s(approx (* (sqrt 8) y-scale) #s(hole binary64 (* y-scale (sqrt 8))))
#s(approx (* (* y-scale (sqrt 2)) (sqrt 8)) #s(hole binary64 (* y-scale (* (sqrt 2) (sqrt 8)))))
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#s(approx (* y-scale (sqrt 2)) #s(hole binary64 (* y-scale (sqrt 2))))
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(pow (cos (* 1/180 (* angle (PI)))) 2) (* (pow (sin (* 1/180 (* angle (PI)))) 2) (pow (- (pow b 2) (pow a 2)) 2))) (pow x-scale 2)))) (+ (/ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)) (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))))) (+ (* (pow a 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (* (pow b 2) (pow (sin (* 1/180 (* angle (PI)))) 2)))) 2) (+ (* 2 (/ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))) (* 2 (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)))))))) (+ (* 2 (/ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))) (* 2 (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)))))))))) (* x-scale (pow y-scale 6))) (sqrt (/ 1 (+ (* 2 (/ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))) (* 2 (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)))))))) (+ (* 1/2 (* (/ (* (pow a 2) (* (pow b 2) (* (sqrt 8) (- (* 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#s(approx (* (+ (* (/ (* (* (* (sqrt 8) x-scale) (+ (* (/ (+ (* (/ 4 x-scale) (/ (* (* (pow (* (+ b a) (- b a)) 2) (pow (sin (* (* (PI) angle) 1/180)) 2)) (pow (cos (* -1/180 (* (PI) angle))) 2)) x-scale)) (* (* -2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale))) 1/2) (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a))))) (sqrt (/ 1 (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))))) (* y-scale y-scale)) 1/8) (* (* 1/4 (* (sqrt 8) x-scale)) (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))))) y-scale) #s(hole binary64 (* -1 (* y-scale (+ (* -1/4 (* (* (sqrt 2) (sqrt 8)) (sqrt (+ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (* (pow b 2) (pow (cos (* -1/180 (* angle (PI)))) 2)))))) (* -1/8 (* (/ (* (pow x-scale 2) (* (sqrt 1/2) (* (sqrt 8) (+ (* 1/2 (/ (* (pow x-scale 2) (+ (* -2 (/ (* (+ (* (pow a 2) (pow (cos (* -1/180 (* angle (PI)))) 2)) (* (pow b 2) (pow (sin (* 1/180 (* angle (PI)))) 2))) (+ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (* (pow b 2) (pow (cos (* -1/180 (* angle (PI)))) 2)))) (pow x-scale 2))) (* 4 (/ (* (pow (cos (* -1/180 (* angle (PI)))) 2) (* (pow (sin (* 1/180 (* angle (PI)))) 2) (* (pow (+ a b) 2) (pow (- b a) 2)))) (pow x-scale 2))))) (+ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (* (pow b 2) (pow (cos (* -1/180 (* angle (PI)))) 2))))) (+ (* (pow a 2) (pow (cos (* -1/180 (* angle (PI)))) 2)) (* (pow b 2) (pow (sin (* 1/180 (* angle (PI)))) 2))))))) (pow y-scale 2)) (sqrt (/ 1 (+ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (* (pow b 2) (pow (cos (* -1/180 (* angle (PI)))) 2))))))))))))
Outputs
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#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) (*.f64 (*.f64 #s(literal 1/4 binary64) b) (*.f64 (*.f64 y-scale (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64))))) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) #s(hole binary64 (+ (* 1/8 (/ (* (pow a 2) (* y-scale (* (pow (sin (* 1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8))))) (* b (cos (* -1/180 (* angle (PI))))))) (* 1/4 (* b (* y-scale (* (cos (* -1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8)))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) (fma.f64 #s(literal 1/8 binary64) (/.f64 (*.f64 (*.f64 (*.f64 a a) y-scale) (*.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))) (*.f64 b (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))))) (*.f64 (*.f64 #s(literal 1/4 binary64) b) (*.f64 (*.f64 y-scale (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64))))) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64)))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) #s(hole binary64 (+ (* 1/4 (* b (* y-scale (* (cos (* -1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8)))))) (* (pow a 2) (+ (* -1/32 (/ (* (pow a 2) (* y-scale (* (pow (sin (* 1/180 (* angle (PI)))) 4) (* (sqrt 2) (sqrt 8))))) (* (pow b 3) (pow (cos (* -1/180 (* angle (PI)))) 3)))) (* 1/8 (/ (* y-scale (* (pow (sin (* 1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8)))) (* b (cos (* -1/180 (* angle (PI))))))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) (fma.f64 (*.f64 #s(literal 1/4 binary64) b) (*.f64 (*.f64 y-scale (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64))))) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64)))) (*.f64 (*.f64 a a) (fma.f64 #s(literal -1/32 binary64) (/.f64 (*.f64 (*.f64 (*.f64 a a) y-scale) (*.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 4 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))) (pow.f64 (*.f64 b (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64))))) #s(literal 3 binary64))) (*.f64 #s(literal 1/8 binary64) (*.f64 (/.f64 y-scale b) (/.f64 (*.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64)))) (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) #s(hole binary64 (+ (* 1/4 (* b (* y-scale (* (cos (* -1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8)))))) (* (pow a 2) (+ (* 1/8 (/ (* y-scale (* (pow (sin (* 1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8)))) (* b (cos (* -1/180 (* angle (PI))))))) (* (pow a 2) (+ (* -1/32 (/ (* y-scale (* (pow (sin (* 1/180 (* angle (PI)))) 4) (* (sqrt 2) (sqrt 8)))) (* (pow b 3) (pow (cos (* -1/180 (* angle (PI)))) 3)))) (* 1/64 (/ (* (pow a 2) (* y-scale (* (pow (sin (* 1/180 (* angle (PI)))) 6) (* (sqrt 2) (sqrt 8))))) (* (pow b 5) (pow (cos (* -1/180 (* angle (PI)))) 5)))))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) (fma.f64 (*.f64 #s(literal 1/4 binary64) b) (*.f64 (*.f64 y-scale (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64))))) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64)))) (*.f64 (*.f64 a a) (fma.f64 #s(literal 1/8 binary64) (*.f64 (/.f64 y-scale b) (/.f64 (*.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64)))) (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))))) (*.f64 (*.f64 a a) (fma.f64 #s(literal -1/32 binary64) (/.f64 (*.f64 y-scale (*.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 4 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))) (pow.f64 (*.f64 b (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64))))) #s(literal 3 binary64))) (*.f64 #s(literal 1/64 binary64) (*.f64 (/.f64 (*.f64 a a) (pow.f64 b #s(literal 5 binary64))) (/.f64 (*.f64 y-scale (*.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 6 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 5 binary64)))))))))))
#s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale)))) #s(hole binary64 (* 1/4 (* b (* y-scale (* (cos (* -1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8))))))))
#s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale)))) (*.f64 (*.f64 #s(literal 1/4 binary64) b) (*.f64 (*.f64 y-scale (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64))))) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))))
#s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale)))) #s(hole binary64 (+ (* 1/8 (/ (* (pow a 2) (* y-scale (* (pow (sin (* 1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8))))) (* b (cos (* -1/180 (* angle (PI))))))) (* 1/4 (* b (* y-scale (* (cos (* -1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8)))))))))
#s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale)))) (fma.f64 #s(literal 1/8 binary64) (/.f64 (*.f64 (*.f64 (*.f64 a a) y-scale) (*.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))) (*.f64 b (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))))) (*.f64 (*.f64 #s(literal 1/4 binary64) b) (*.f64 (*.f64 y-scale (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64))))) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64)))))))
#s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale)))) #s(hole binary64 (+ (* 1/4 (* b (* y-scale (* (cos (* -1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8)))))) (* (pow a 2) (+ (* -1/32 (/ (* (pow a 2) (* y-scale (* (pow (sin (* 1/180 (* angle (PI)))) 4) (* (sqrt 2) (sqrt 8))))) (* (pow b 3) (pow (cos (* -1/180 (* angle (PI)))) 3)))) (* 1/8 (/ (* y-scale (* (pow (sin (* 1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8)))) (* b (cos (* -1/180 (* angle (PI))))))))))))
#s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale)))) (fma.f64 (*.f64 #s(literal 1/4 binary64) b) (*.f64 (*.f64 y-scale (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64))))) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64)))) (*.f64 (*.f64 a a) (fma.f64 #s(literal -1/32 binary64) (/.f64 (*.f64 (*.f64 (*.f64 a a) y-scale) (*.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 4 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))) (pow.f64 (*.f64 b (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64))))) #s(literal 3 binary64))) (*.f64 #s(literal 1/8 binary64) (*.f64 (/.f64 y-scale b) (/.f64 (*.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64)))) (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))))))))))
#s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale)))) #s(hole binary64 (+ (* 1/4 (* b (* y-scale (* (cos (* -1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8)))))) (* (pow a 2) (+ (* 1/8 (/ (* y-scale (* (pow (sin (* 1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8)))) (* b (cos (* -1/180 (* angle (PI))))))) (* (pow a 2) (+ (* -1/32 (/ (* y-scale (* (pow (sin (* 1/180 (* angle (PI)))) 4) (* (sqrt 2) (sqrt 8)))) (* (pow b 3) (pow (cos (* -1/180 (* angle (PI)))) 3)))) (* 1/64 (/ (* (pow a 2) (* y-scale (* (pow (sin (* 1/180 (* angle (PI)))) 6) (* (sqrt 2) (sqrt 8))))) (* (pow b 5) (pow (cos (* -1/180 (* angle (PI)))) 5)))))))))))
#s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale)))) (fma.f64 (*.f64 #s(literal 1/4 binary64) b) (*.f64 (*.f64 y-scale (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64))))) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64)))) (*.f64 (*.f64 a a) (fma.f64 #s(literal 1/8 binary64) (*.f64 (/.f64 y-scale b) (/.f64 (*.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64)))) (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))))) (*.f64 (*.f64 a a) (fma.f64 #s(literal -1/32 binary64) (/.f64 (*.f64 y-scale (*.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 4 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))) (pow.f64 (*.f64 b (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64))))) #s(literal 3 binary64))) (*.f64 #s(literal 1/64 binary64) (*.f64 (/.f64 (*.f64 a a) (pow.f64 b #s(literal 5 binary64))) (/.f64 (*.f64 y-scale (*.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 6 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 5 binary64)))))))))))
#s(approx (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(hole binary64 (* -8 (/ (* (pow a 2) (pow b 2)) (* (pow x-scale 2) (pow y-scale 2))))))
#s(approx (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 #s(literal -8 binary64) (*.f64 (/.f64 (*.f64 a a) (*.f64 x-scale x-scale)) (/.f64 (*.f64 b b) (*.f64 y-scale y-scale)))))
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#s(approx (+ (* (/ 4 x-scale) (/ (* (* (pow (* (+ b a) (- b a)) 2) (pow (sin (* (* (PI) angle) 1/180)) 2)) (pow (cos (* -1/180 (* (PI) angle))) 2)) x-scale)) (* (* -2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale)))) #s(hole binary64 (+ (* -2 (/ (* (pow b 4) (* (pow (cos (* -1/180 (* angle (PI)))) 2) (pow (sin (* 1/180 (* angle (PI)))) 2))) (pow x-scale 2))) (+ (* 4 (/ (* (pow b 4) (* (pow (cos (* -1/180 (* angle (PI)))) 2) (pow (sin (* 1/180 (* angle (PI)))) 2))) (pow x-scale 2))) (* a (+ (* 4 (/ (* (pow (cos (* -1/180 (* angle (PI)))) 2) (* (pow (sin (* 1/180 (* angle (PI)))) 2) (+ (* -2 (pow b 3)) (* 2 (pow b 3))))) (pow x-scale 2))) (* a (+ (* -2 (+ (/ (* (pow b 2) (pow (cos (* -1/180 (* angle (PI)))) 4)) (pow x-scale 2)) (/ (* (pow b 2) (pow (sin (* 1/180 (* angle (PI)))) 4)) (pow x-scale 2)))) (+ (* 4 (/ (* a (* (pow (cos (* -1/180 (* angle (PI)))) 2) (* (pow (sin (* 1/180 (* angle (PI)))) 2) (+ (* -2 b) (* 2 b))))) (pow x-scale 2))) (* 4 (/ (* (pow (cos (* -1/180 (* angle (PI)))) 2) (* (pow (sin (* 1/180 (* angle (PI)))) 2) (+ (* -4 (pow b 2)) (* 2 (pow b 2))))) (pow x-scale 2))))))))))))
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#s(approx (/ 1 (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))) #s(hole binary64 (* 1/2 (/ (pow x-scale 2) (* (pow b 2) (pow (cos (* -1/180 (* angle (PI)))) 2))))))
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#s(approx (/ 1 (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))) #s(hole binary64 (+ (* -1/2 (/ (* (pow a 2) (* (pow x-scale 2) (pow (sin (* 1/180 (* angle (PI)))) 2))) (* (pow b 4) (pow (cos (* -1/180 (* angle (PI)))) 4)))) (* 1/2 (/ (pow x-scale 2) (* (pow b 2) (pow (cos (* -1/180 (* angle (PI)))) 2)))))))
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#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) #s(hole binary64 (* 1/4 (* a (* y-scale (* (sin (* 1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) (*.f64 (*.f64 #s(literal 1/4 binary64) a) (*.f64 (*.f64 y-scale (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) #s(hole binary64 (* a (+ (* 1/8 (/ (* (pow b 2) (* y-scale (* (pow (cos (* -1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8))))) (* (pow a 2) (sin (* 1/180 (* angle (PI))))))) (* 1/4 (* y-scale (* (sin (* 1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8)))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) (*.f64 a (fma.f64 #s(literal 1/8 binary64) (/.f64 (*.f64 (*.f64 (*.f64 b b) y-scale) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))) (*.f64 (*.f64 a a) (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))))) (*.f64 (*.f64 #s(literal 1/4 binary64) y-scale) (*.f64 (*.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64)))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) #s(hole binary64 (* a (+ (* -1/32 (/ (* (pow b 4) (* y-scale (* (pow (cos (* -1/180 (* angle (PI)))) 4) (* (sqrt 2) (sqrt 8))))) (* (pow a 4) (pow (sin (* 1/180 (* angle (PI)))) 3)))) (+ (* 1/8 (/ (* (pow b 2) (* y-scale (* (pow (cos (* -1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8))))) (* (pow a 2) (sin (* 1/180 (* angle (PI))))))) (* 1/4 (* y-scale (* (sin (* 1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8))))))))))
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#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) #s(hole binary64 (* a (+ (* -1/32 (/ (* (pow b 4) (* y-scale (* (pow (cos (* -1/180 (* angle (PI)))) 4) (* (sqrt 2) (sqrt 8))))) (* (pow a 4) (pow (sin (* 1/180 (* angle (PI)))) 3)))) (+ (* 1/64 (/ (* (pow b 6) (* y-scale (* (pow (cos (* -1/180 (* angle (PI)))) 6) (* (sqrt 2) (sqrt 8))))) (* (pow a 6) (pow (sin (* 1/180 (* angle (PI)))) 5)))) (+ (* 1/8 (/ (* (pow b 2) (* y-scale (* (pow (cos (* -1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8))))) (* (pow a 2) (sin (* 1/180 (* angle (PI))))))) (* 1/4 (* y-scale (* (sin (* 1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8)))))))))))
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#s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale)))) #s(hole binary64 (* 1/4 (* a (* y-scale (* (sin (* 1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8))))))))
#s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale)))) (*.f64 (*.f64 #s(literal 1/4 binary64) a) (*.f64 (*.f64 y-scale (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))))
#s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale)))) #s(hole binary64 (* a (+ (* 1/8 (/ (* (pow b 2) (* y-scale (* (pow (cos (* -1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8))))) (* (pow a 2) (sin (* 1/180 (* angle (PI))))))) (* 1/4 (* y-scale (* (sin (* 1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8)))))))))
#s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale)))) (*.f64 a (fma.f64 #s(literal 1/8 binary64) (/.f64 (*.f64 (*.f64 (*.f64 b b) y-scale) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))) (*.f64 (*.f64 a a) (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))))) (*.f64 (*.f64 #s(literal 1/4 binary64) y-scale) (*.f64 (*.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64)))))))
#s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale)))) #s(hole binary64 (* a (+ (* -1/32 (/ (* (pow b 4) (* y-scale (* (pow (cos (* -1/180 (* angle (PI)))) 4) (* (sqrt 2) (sqrt 8))))) (* (pow a 4) (pow (sin (* 1/180 (* angle (PI)))) 3)))) (+ (* 1/8 (/ (* (pow b 2) (* y-scale (* (pow (cos (* -1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8))))) (* (pow a 2) (sin (* 1/180 (* angle (PI))))))) (* 1/4 (* y-scale (* (sin (* 1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8))))))))))
#s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale)))) (*.f64 a (fma.f64 #s(literal -1/32 binary64) (*.f64 (/.f64 (pow.f64 b #s(literal 4 binary64)) (pow.f64 a #s(literal 4 binary64))) (/.f64 (*.f64 y-scale (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 4 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 3 binary64)))) (fma.f64 #s(literal 1/8 binary64) (/.f64 (*.f64 (*.f64 (*.f64 b b) y-scale) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))) (*.f64 (*.f64 a a) (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))))) (*.f64 (*.f64 #s(literal 1/4 binary64) y-scale) (*.f64 (*.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64))))))))
#s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale)))) #s(hole binary64 (* a (+ (* -1/32 (/ (* (pow b 4) (* y-scale (* (pow (cos (* -1/180 (* angle (PI)))) 4) (* (sqrt 2) (sqrt 8))))) (* (pow a 4) (pow (sin (* 1/180 (* angle (PI)))) 3)))) (+ (* 1/64 (/ (* (pow b 6) (* y-scale (* (pow (cos (* -1/180 (* angle (PI)))) 6) (* (sqrt 2) (sqrt 8))))) (* (pow a 6) (pow (sin (* 1/180 (* angle (PI)))) 5)))) (+ (* 1/8 (/ (* (pow b 2) (* y-scale (* (pow (cos (* -1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8))))) (* (pow a 2) (sin (* 1/180 (* angle (PI))))))) (* 1/4 (* y-scale (* (sin (* 1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8)))))))))))
#s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale)))) (*.f64 a (fma.f64 #s(literal -1/32 binary64) (*.f64 (/.f64 (pow.f64 b #s(literal 4 binary64)) (pow.f64 a #s(literal 4 binary64))) (/.f64 (*.f64 y-scale (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 4 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 3 binary64)))) (fma.f64 #s(literal 1/64 binary64) (*.f64 (/.f64 (pow.f64 b #s(literal 6 binary64)) (pow.f64 a #s(literal 6 binary64))) (/.f64 (*.f64 y-scale (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 6 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 5 binary64)))) (fma.f64 #s(literal 1/8 binary64) (/.f64 (*.f64 (*.f64 (*.f64 b b) y-scale) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))) (*.f64 (*.f64 a a) (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))))) (*.f64 (*.f64 #s(literal 1/4 binary64) y-scale) (*.f64 (*.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64)))))))))
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#s(approx (+ (* (/ 4 x-scale) (/ (* (* (pow (* (+ b a) (- b a)) 2) (pow (sin (* (* (PI) angle) 1/180)) 2)) (pow (cos (* -1/180 (* (PI) angle))) 2)) x-scale)) (* (* -2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale)))) #s(hole binary64 (* (pow a 4) (+ (* -2 (/ (* (pow (cos (* -1/180 (* angle (PI)))) 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))) (+ (* -2 (/ (+ (/ (* (pow b 2) (pow (cos (* -1/180 (* angle (PI)))) 4)) (pow x-scale 2)) (/ (* (pow b 2) (pow (sin (* 1/180 (* angle (PI)))) 4)) (pow x-scale 2))) (pow a 2))) (+ (* 4 (/ (* (pow (cos (* -1/180 (* angle (PI)))) 2) (* (pow (sin (* 1/180 (* angle (PI)))) 2) (+ (* -4 (pow b 2)) (* 2 (pow b 2))))) (* (pow a 2) (pow x-scale 2)))) (+ (* 4 (/ (* (pow (cos (* -1/180 (* angle (PI)))) 2) (* (pow (sin (* 1/180 (* angle (PI)))) 2) (+ (* -2 b) (* 2 b)))) (* a (pow x-scale 2)))) (* 4 (/ (* (pow (cos (* -1/180 (* angle (PI)))) 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))))))))))
#s(approx (+ (* (/ 4 x-scale) (/ (* (* (pow (* (+ b a) (- b a)) 2) (pow (sin (* (* (PI) angle) 1/180)) 2)) (pow (cos (* -1/180 (* (PI) angle))) 2)) x-scale)) (* (* -2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale)))) (*.f64 (pow.f64 a #s(literal 4 binary64)) (fma.f64 #s(literal -2 binary64) (/.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))) (*.f64 x-scale x-scale)) (fma.f64 #s(literal -2 binary64) (/.f64 (/.f64 (fma.f64 (*.f64 b b) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 4 binary64)) (*.f64 (*.f64 b b) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 4 binary64)))) (*.f64 x-scale x-scale)) (*.f64 a a)) (fma.f64 #s(literal 4 binary64) (/.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (*.f64 b b) #s(literal -2 binary64)))) (*.f64 (*.f64 a a) (*.f64 x-scale x-scale))) (*.f64 #s(literal 4 binary64) (fma.f64 (/.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) a) (/.f64 (*.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 b #s(literal 0 binary64))) (*.f64 x-scale x-scale)) (/.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))) (*.f64 x-scale x-scale)))))))))
#s(approx (+ (* (/ 4 x-scale) (/ (* (* (pow (* (+ b a) (- b a)) 2) (pow (sin (* (* (PI) angle) 1/180)) 2)) (pow (cos (* -1/180 (* (PI) angle))) 2)) x-scale)) (* (* -2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale)))) #s(hole binary64 (* (pow a 4) (+ (* -2 (/ (* (pow (cos (* -1/180 (* angle (PI)))) 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))) (+ (* -2 (/ (+ (/ (* (pow b 2) (pow (cos (* -1/180 (* angle (PI)))) 4)) (pow x-scale 2)) (/ (* (pow b 2) (pow (sin (* 1/180 (* angle (PI)))) 4)) (pow x-scale 2))) (pow a 2))) (+ (* 4 (/ (* (pow (cos (* -1/180 (* angle (PI)))) 2) (* (pow (sin (* 1/180 (* angle (PI)))) 2) (+ (* -4 (pow b 2)) (* 2 (pow b 2))))) (* (pow a 2) (pow x-scale 2)))) (+ (* 4 (/ (* (pow (cos (* -1/180 (* angle (PI)))) 2) (* (pow (sin (* 1/180 (* angle (PI)))) 2) (+ (* -2 b) (* 2 b)))) (* a (pow x-scale 2)))) (+ (* 4 (/ (* (pow (cos (* -1/180 (* angle (PI)))) 2) (* (pow (sin (* 1/180 (* angle (PI)))) 2) (+ (* -2 (pow b 3)) (* 2 (pow b 3))))) (* (pow a 3) (pow x-scale 2)))) (* 4 (/ (* (pow (cos (* -1/180 (* angle (PI)))) 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)))))))))))
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#s(approx (/ 1 (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))) #s(hole binary64 (* 1/2 (/ (pow x-scale 2) (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2))))))
#s(approx (/ 1 (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))) (*.f64 #s(literal 1/2 binary64) (/.f64 (*.f64 x-scale x-scale) (*.f64 (*.f64 a a) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))))))
#s(approx (/ 1 (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))) #s(hole binary64 (/ (+ (* -1/2 (/ (* (pow b 2) (* (pow x-scale 2) (pow (cos (* -1/180 (* angle (PI)))) 2))) (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 4)))) (* 1/2 (/ (pow x-scale 2) (pow (sin (* 1/180 (* angle (PI)))) 2)))) (pow a 2))))
#s(approx (/ 1 (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))) (/.f64 (fma.f64 #s(literal -1/2 binary64) (/.f64 (*.f64 (*.f64 (*.f64 b b) (*.f64 x-scale x-scale)) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))) (*.f64 (*.f64 a a) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 4 binary64)))) (*.f64 #s(literal 1/2 binary64) (/.f64 (*.f64 x-scale x-scale) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))))) (*.f64 a a)))
#s(approx (/ 1 (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))) #s(hole binary64 (/ (+ (* -1/2 (/ (* (pow b 2) (* (pow x-scale 2) (pow (cos (* -1/180 (* angle (PI)))) 2))) (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 4)))) (+ (* 1/2 (/ (* (pow b 4) (* (pow x-scale 2) (pow (cos (* -1/180 (* angle (PI)))) 4))) (* (pow a 4) (pow (sin (* 1/180 (* angle (PI)))) 6)))) (* 1/2 (/ (pow x-scale 2) (pow (sin (* 1/180 (* angle (PI)))) 2))))) (pow a 2))))
#s(approx (/ 1 (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))) (/.f64 (fma.f64 #s(literal -1/2 binary64) (/.f64 (*.f64 (*.f64 (*.f64 b b) (*.f64 x-scale x-scale)) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))) (*.f64 (*.f64 a a) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 4 binary64)))) (*.f64 #s(literal 1/2 binary64) (fma.f64 (/.f64 (pow.f64 b #s(literal 4 binary64)) (pow.f64 a #s(literal 4 binary64))) (/.f64 (*.f64 (*.f64 x-scale x-scale) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 4 binary64))) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 6 binary64))) (/.f64 (*.f64 x-scale x-scale) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)))))) (*.f64 a a)))
#s(approx (/ 1 (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))) #s(hole binary64 (/ (+ (* -1/2 (/ (* (pow b 2) (* (pow x-scale 2) (pow (cos (* -1/180 (* angle (PI)))) 2))) (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 4)))) (+ (* -1/2 (/ (* (pow b 6) (* (pow x-scale 2) (pow (cos (* -1/180 (* angle (PI)))) 6))) (* (pow a 6) (pow (sin (* 1/180 (* angle (PI)))) 8)))) (+ (* 1/2 (/ (* (pow b 4) (* (pow x-scale 2) (pow (cos (* -1/180 (* angle (PI)))) 4))) (* (pow a 4) (pow (sin (* 1/180 (* angle (PI)))) 6)))) (* 1/2 (/ (pow x-scale 2) (pow (sin (* 1/180 (* angle (PI)))) 2)))))) (pow a 2))))
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#s(approx (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))) #s(hole binary64 (* a (+ (* -1/8 (/ (* (pow b 4) (* (pow (cos (* -1/180 (* angle (PI)))) 4) (sqrt 2))) (* (pow a 4) (* x-scale (pow (sin (* 1/180 (* angle (PI)))) 3))))) (+ (* 1/16 (/ (* (pow b 6) (* (pow (cos (* -1/180 (* angle (PI)))) 6) (sqrt 2))) (* (pow a 6) (* x-scale (pow (sin (* 1/180 (* angle (PI)))) 5))))) (+ (* 1/2 (/ (* (pow b 2) (* (pow (cos (* -1/180 (* angle (PI)))) 2) (sqrt 2))) (* (pow a 2) (* x-scale (sin (* 1/180 (* angle (PI)))))))) (/ (* (sin (* 1/180 (* angle (PI)))) (sqrt 2)) x-scale)))))))
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#s(approx (/ (+ (* (/ 4 x-scale) (/ (* (* (pow (* (+ b a) (- b a)) 2) (pow (sin (* (* (PI) angle) 1/180)) 2)) (pow (cos (* -1/180 (* (PI) angle))) 2)) x-scale)) (* (* -2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale))) #s(hole binary64 (* (pow a 2) (+ (* 4 (/ (* (pow (cos (* -1/180 (* angle (PI)))) 2) (+ (* -2 b) (* 2 b))) a)) (/ (* (pow x-scale 2) (+ (* -2 (/ (* (pow (cos (* -1/180 (* angle (PI)))) 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))) (* 4 (/ (* (pow (cos (* -1/180 (* angle (PI)))) 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))))) (pow (sin (* 1/180 (* angle (PI)))) 2))))))
#s(approx (/ (+ (* (/ 4 x-scale) (/ (* (* (pow (* (+ b a) (- b a)) 2) (pow (sin (* (* (PI) angle) 1/180)) 2)) (pow (cos (* -1/180 (* (PI) angle))) 2)) x-scale)) (* (* -2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale))) (*.f64 (*.f64 a a) (fma.f64 #s(literal 4 binary64) (/.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 b #s(literal 0 binary64))) a) (/.f64 (*.f64 (*.f64 x-scale x-scale) (*.f64 (/.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))) (*.f64 x-scale x-scale)) #s(literal 2 binary64))) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))))))
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#s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale)))) #s(hole binary64 (* -1 (* a (+ (* 1/8 (/ (* (pow b 2) (* y-scale (* (pow (cos (* -1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8))))) (* (pow a 2) (sin (* 1/180 (* angle (PI))))))) (* 1/4 (* y-scale (* (sin (* 1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8))))))))))
#s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale)))) (neg.f64 (*.f64 a (fma.f64 #s(literal 1/8 binary64) (/.f64 (*.f64 (*.f64 (*.f64 b b) y-scale) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))) (*.f64 (*.f64 a a) (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))))) (*.f64 (*.f64 #s(literal 1/4 binary64) y-scale) (*.f64 (*.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64))))))))
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#s(approx (+ (* (/ 4 x-scale) (/ (* (* (pow (* (+ b a) (- b a)) 2) (pow (sin (* (* (PI) angle) 1/180)) 2)) (pow (cos (* -1/180 (* (PI) angle))) 2)) x-scale)) (* (* -2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale)))) #s(hole binary64 (* (pow a 4) (+ (* -2 (/ (* (pow (cos (* -1/180 (* angle (PI)))) 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))) (+ (* -1 (/ (+ (* -1 (/ (+ (* -2 (+ (/ (* (pow b 2) (pow (cos (* -1/180 (* angle (PI)))) 4)) (pow x-scale 2)) (/ (* (pow b 2) (pow (sin (* 1/180 (* angle (PI)))) 4)) (pow x-scale 2)))) (* 4 (/ (* (pow (cos (* -1/180 (* angle (PI)))) 2) (* (pow (sin (* 1/180 (* angle (PI)))) 2) (+ (* -4 (pow b 2)) (* 2 (pow b 2))))) (pow x-scale 2)))) a)) (* 4 (/ (* (pow (cos (* -1/180 (* angle (PI)))) 2) (* (pow (sin (* 1/180 (* angle (PI)))) 2) (+ (* -2 b) (* 2 b)))) (pow x-scale 2)))) a)) (* 4 (/ (* (pow (cos (* -1/180 (* angle (PI)))) 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))))))))
#s(approx (+ (* (/ 4 x-scale) (/ (* (* (pow (* (+ b a) (- b a)) 2) (pow (sin (* (* (PI) angle) 1/180)) 2)) (pow (cos (* -1/180 (* (PI) angle))) 2)) x-scale)) (* (* -2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale)))) (*.f64 (pow.f64 a #s(literal 4 binary64)) (fma.f64 #s(literal -2 binary64) (/.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))) (*.f64 x-scale x-scale)) (fma.f64 #s(literal -1 binary64) (/.f64 (fma.f64 #s(literal -1 binary64) (/.f64 (fma.f64 #s(literal -2 binary64) (/.f64 (fma.f64 (*.f64 b b) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 4 binary64)) (*.f64 (*.f64 b b) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 4 binary64)))) (*.f64 x-scale x-scale)) (*.f64 #s(literal 4 binary64) (/.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (*.f64 b b) #s(literal -2 binary64)))) (*.f64 x-scale x-scale)))) a) (*.f64 #s(literal 4 binary64) (/.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 b #s(literal 0 binary64)))) (*.f64 x-scale x-scale)))) a) (*.f64 #s(literal 4 binary64) (/.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))) (*.f64 x-scale x-scale)))))))
#s(approx (+ (* (/ 4 x-scale) (/ (* (* (pow (* (+ b a) (- b a)) 2) (pow (sin (* (* (PI) angle) 1/180)) 2)) (pow (cos (* -1/180 (* (PI) angle))) 2)) x-scale)) (* (* -2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale)))) #s(hole binary64 (* (pow a 4) (+ (* -2 (/ (* (pow (cos (* -1/180 (* angle (PI)))) 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))) (+ (* -1 (/ (+ (* -1 (/ (+ (* -4 (/ (* (pow (cos (* -1/180 (* angle (PI)))) 2) (* (pow (sin (* 1/180 (* angle (PI)))) 2) (+ (* -2 (pow b 3)) (* 2 (pow b 3))))) (* a (pow x-scale 2)))) (+ (* -2 (+ (/ (* (pow b 2) (pow (cos (* -1/180 (* angle (PI)))) 4)) (pow x-scale 2)) (/ (* (pow b 2) (pow (sin (* 1/180 (* angle (PI)))) 4)) (pow x-scale 2)))) (* 4 (/ (* (pow (cos (* -1/180 (* angle (PI)))) 2) (* (pow (sin (* 1/180 (* angle (PI)))) 2) (+ (* -4 (pow b 2)) (* 2 (pow b 2))))) (pow x-scale 2))))) a)) (* 4 (/ (* (pow (cos (* -1/180 (* angle (PI)))) 2) (* (pow (sin (* 1/180 (* angle (PI)))) 2) (+ (* -2 b) (* 2 b)))) (pow x-scale 2)))) a)) (* 4 (/ (* (pow (cos (* -1/180 (* angle (PI)))) 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))))))))
#s(approx (+ (* (/ 4 x-scale) (/ (* (* (pow (* (+ b a) (- b a)) 2) (pow (sin (* (* (PI) angle) 1/180)) 2)) (pow (cos (* -1/180 (* (PI) angle))) 2)) x-scale)) (* (* -2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale)))) (*.f64 (pow.f64 a #s(literal 4 binary64)) (fma.f64 #s(literal -2 binary64) (/.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))) (*.f64 x-scale x-scale)) (fma.f64 #s(literal -1 binary64) (/.f64 (fma.f64 #s(literal -1 binary64) (/.f64 (fma.f64 #s(literal -4 binary64) (/.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (pow.f64 b #s(literal 3 binary64)) #s(literal 0 binary64)))) (*.f64 a (*.f64 x-scale x-scale))) (fma.f64 #s(literal -2 binary64) (/.f64 (fma.f64 (*.f64 b b) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 4 binary64)) (*.f64 (*.f64 b b) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 4 binary64)))) (*.f64 x-scale x-scale)) (*.f64 #s(literal 4 binary64) (/.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (*.f64 b b) #s(literal -2 binary64)))) (*.f64 x-scale x-scale))))) a) (*.f64 #s(literal 4 binary64) (/.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 b #s(literal 0 binary64)))) (*.f64 x-scale x-scale)))) a) (*.f64 #s(literal 4 binary64) (/.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))) (*.f64 x-scale x-scale)))))))
#s(approx (* (+ (* (/ (* (* (* (sqrt 8) x-scale) (+ (* (/ (+ (* (/ 4 x-scale) (/ (* (* (pow (* (+ b a) (- b a)) 2) (pow (sin (* (* (PI) angle) 1/180)) 2)) (pow (cos (* -1/180 (* (PI) angle))) 2)) x-scale)) (* (* -2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale))) 1/2) (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a))))) (sqrt (/ 1 (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))))) (* y-scale y-scale)) 1/8) (* (* 1/4 (* (sqrt 8) x-scale)) (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))))) y-scale) #s(hole binary64 (* -1 (* a (* y-scale (+ (* 1/8 (/ (* (pow x-scale 2) (* (sqrt 1/2) (* (sqrt 8) (+ (* 1/2 (/ (* (pow x-scale 2) (+ (* -2 (/ (* (pow (cos (* -1/180 (* angle (PI)))) 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))) (* 4 (/ (* (pow (cos (* -1/180 (* angle (PI)))) 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))))) (pow (sin (* 1/180 (* angle (PI)))) 2))) (pow (cos (* -1/180 (* angle (PI)))) 2))))) (* (pow y-scale 2) (sin (* 1/180 (* angle (PI))))))) (* 1/4 (* (sin (* 1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8))))))))))
#s(approx (* (+ (* (/ (* (* (* (sqrt 8) x-scale) (+ (* (/ (+ (* (/ 4 x-scale) (/ (* (* (pow (* (+ b a) (- b a)) 2) (pow (sin (* (* (PI) angle) 1/180)) 2)) (pow (cos (* -1/180 (* (PI) angle))) 2)) x-scale)) (* (* -2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale))) 1/2) (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a))))) (sqrt (/ 1 (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))))) (* y-scale y-scale)) 1/8) (* (* 1/4 (* (sqrt 8) x-scale)) (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))))) y-scale) (neg.f64 (*.f64 (*.f64 a y-scale) (fma.f64 #s(literal 1/8 binary64) (*.f64 (/.f64 (*.f64 x-scale x-scale) (*.f64 y-scale y-scale)) (/.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 1/2 binary64)) (sqrt.f64 #s(literal 8 binary64))) (fma.f64 #s(literal 1/2 binary64) (/.f64 (*.f64 (*.f64 x-scale x-scale) (*.f64 (/.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))) (*.f64 x-scale x-scale)) #s(literal 2 binary64))) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)))) (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))))) (*.f64 (*.f64 #s(literal 1/4 binary64) (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))))))
#s(approx (* (+ (* (/ (* (* (* (sqrt 8) x-scale) (+ (* (/ (+ (* (/ 4 x-scale) (/ (* (* (pow (* (+ b a) (- b a)) 2) (pow (sin (* (* (PI) angle) 1/180)) 2)) (pow (cos (* -1/180 (* (PI) angle))) 2)) x-scale)) (* (* -2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale))) 1/2) (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a))))) (sqrt (/ 1 (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))))) (* y-scale y-scale)) 1/8) (* (* 1/4 (* (sqrt 8) x-scale)) (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))))) y-scale) #s(hole binary64 (* -1 (* a (+ (* -1/4 (/ (* (pow x-scale 2) (* (pow (cos (* -1/180 (* angle (PI)))) 2) (* (sqrt 1/2) (* (sqrt 8) (+ (* -2 b) (* 2 b)))))) (* a (* y-scale (sin (* 1/180 (* angle (PI)))))))) (* y-scale (+ (* 1/8 (/ (* (pow x-scale 2) (* (sqrt 1/2) (* (sqrt 8) (+ (* 1/2 (/ (* (pow x-scale 2) (+ (* -2 (/ (* (pow (cos (* -1/180 (* angle (PI)))) 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))) (* 4 (/ (* (pow (cos (* -1/180 (* angle (PI)))) 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))))) (pow (sin (* 1/180 (* angle (PI)))) 2))) (pow (cos (* -1/180 (* angle (PI)))) 2))))) (* (pow y-scale 2) (sin (* 1/180 (* angle (PI))))))) (* 1/4 (* (sin (* 1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8)))))))))))
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#s(approx (* (* 1/4 b) (* (* y-scale (sqrt 2)) (sqrt 8))) #s(hole binary64 (* 1/4 (* b (* y-scale (* (sqrt 2) (sqrt 8)))))))
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#s(approx (+ (* (/ 4 x-scale) (/ (* (* (pow (* (+ b a) (- b a)) 2) (pow (sin (* (* (PI) angle) 1/180)) 2)) (pow (cos (* -1/180 (* (PI) angle))) 2)) x-scale)) (* (* -2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale)))) #s(hole binary64 (+ (* -2 (/ (* (pow a 4) (* (pow (cos (* -1/180 (* angle (PI)))) 2) (pow (sin (* 1/180 (* angle (PI)))) 2))) (pow x-scale 2))) (* 4 (/ (* (pow a 4) (* (pow (cos (* -1/180 (* angle (PI)))) 2) (pow (sin (* 1/180 (* angle (PI)))) 2))) (pow x-scale 2))))))
#s(approx (+ (* (/ 4 x-scale) (/ (* (* (pow (* (+ b a) (- b a)) 2) (pow (sin (* (* (PI) angle) 1/180)) 2)) (pow (cos (* -1/180 (* (PI) angle))) 2)) x-scale)) (* (* -2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale)))) (*.f64 (/.f64 (*.f64 (*.f64 (pow.f64 a #s(literal 4 binary64)) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))) (*.f64 x-scale x-scale)) #s(literal 2 binary64)))
#s(approx (+ (* (/ 4 x-scale) (/ (* (* (pow (* (+ b a) (- b a)) 2) (pow (sin (* (* (PI) angle) 1/180)) 2)) (pow (cos (* -1/180 (* (PI) angle))) 2)) x-scale)) (* (* -2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale)))) #s(hole binary64 (+ (* -2 (/ (* (pow a 4) (* (pow (cos (* -1/180 (* angle (PI)))) 2) (pow (sin (* 1/180 (* angle (PI)))) 2))) (pow x-scale 2))) (+ (* 4 (/ (* b (* (pow (cos (* -1/180 (* angle (PI)))) 2) (* (pow (sin (* 1/180 (* angle (PI)))) 2) (+ (* -2 (pow a 3)) (* 2 (pow a 3)))))) (pow x-scale 2))) (* 4 (/ (* (pow a 4) (* (pow (cos (* -1/180 (* angle (PI)))) 2) (pow (sin (* 1/180 (* angle (PI)))) 2))) (pow x-scale 2)))))))
#s(approx (+ (* (/ 4 x-scale) (/ (* (* (pow (* (+ b a) (- b a)) 2) (pow (sin (* (* (PI) angle) 1/180)) 2)) (pow (cos (* -1/180 (* (PI) angle))) 2)) x-scale)) (* (* -2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale)))) (fma.f64 #s(literal -2 binary64) (/.f64 (*.f64 (*.f64 (pow.f64 a #s(literal 4 binary64)) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))) (*.f64 x-scale x-scale)) (*.f64 #s(literal 4 binary64) (+.f64 (/.f64 (*.f64 (*.f64 b (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))) (*.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (pow.f64 a #s(literal 3 binary64)) #s(literal 0 binary64)))) (*.f64 x-scale x-scale)) (/.f64 (*.f64 (*.f64 (pow.f64 a #s(literal 4 binary64)) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))) (*.f64 x-scale x-scale))))))
#s(approx (+ (* (/ 4 x-scale) (/ (* (* (pow (* (+ b a) (- b a)) 2) (pow (sin (* (* (PI) angle) 1/180)) 2)) (pow (cos (* -1/180 (* (PI) angle))) 2)) x-scale)) (* (* -2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale)))) #s(hole binary64 (+ (* -2 (/ (* (pow a 4) (* (pow (cos (* -1/180 (* angle (PI)))) 2) (pow (sin (* 1/180 (* angle (PI)))) 2))) (pow x-scale 2))) (+ (* 4 (/ (* (pow a 4) (* (pow (cos (* -1/180 (* angle (PI)))) 2) (pow (sin (* 1/180 (* angle (PI)))) 2))) (pow x-scale 2))) (* b (+ (* 4 (/ (* (pow (cos (* -1/180 (* angle (PI)))) 2) (* (pow (sin (* 1/180 (* angle (PI)))) 2) (+ (* -2 (pow a 3)) (* 2 (pow a 3))))) (pow x-scale 2))) (* b (+ (* -2 (+ (/ (* (pow a 2) (pow (cos (* -1/180 (* angle (PI)))) 4)) (pow x-scale 2)) (/ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 4)) (pow x-scale 2)))) (* 4 (/ (* (pow (cos (* -1/180 (* angle (PI)))) 2) (* (pow (sin (* 1/180 (* angle (PI)))) 2) (+ (* -4 (pow a 2)) (* 2 (pow a 2))))) (pow x-scale 2)))))))))))
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#s(approx (+ (* (/ 4 x-scale) (/ (* (* (pow (* (+ b a) (- b a)) 2) (pow (sin (* (* (PI) angle) 1/180)) 2)) (pow (cos (* -1/180 (* (PI) angle))) 2)) x-scale)) (* (* -2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale)))) #s(hole binary64 (+ (* -2 (/ (* (pow a 4) (* (pow (cos (* -1/180 (* angle (PI)))) 2) (pow (sin (* 1/180 (* angle (PI)))) 2))) (pow x-scale 2))) (+ (* 4 (/ (* (pow a 4) (* (pow (cos (* -1/180 (* angle (PI)))) 2) (pow (sin (* 1/180 (* angle (PI)))) 2))) (pow x-scale 2))) (* b (+ (* 4 (/ (* (pow (cos (* -1/180 (* angle (PI)))) 2) (* (pow (sin (* 1/180 (* angle (PI)))) 2) (+ (* -2 (pow a 3)) (* 2 (pow a 3))))) (pow x-scale 2))) (* b (+ (* -2 (+ (/ (* (pow a 2) (pow (cos (* -1/180 (* angle (PI)))) 4)) (pow x-scale 2)) (/ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 4)) (pow x-scale 2)))) (+ (* 4 (/ (* b (* (pow (cos (* -1/180 (* angle (PI)))) 2) (* (pow (sin (* 1/180 (* angle (PI)))) 2) (+ (* -2 a) (* 2 a))))) (pow x-scale 2))) (* 4 (/ (* (pow (cos (* -1/180 (* angle (PI)))) 2) (* (pow (sin (* 1/180 (* angle (PI)))) 2) (+ (* -4 (pow a 2)) (* 2 (pow a 2))))) (pow x-scale 2))))))))))))
#s(approx (+ (* (/ 4 x-scale) (/ (* (* (pow (* (+ b a) (- b a)) 2) (pow (sin (* (* (PI) angle) 1/180)) 2)) (pow (cos (* -1/180 (* (PI) angle))) 2)) x-scale)) (* (* -2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale)))) (fma.f64 (/.f64 (*.f64 (*.f64 (pow.f64 a #s(literal 4 binary64)) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))) (*.f64 x-scale x-scale)) #s(literal 2 binary64) (*.f64 b (fma.f64 #s(literal 4 binary64) (/.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (pow.f64 a #s(literal 3 binary64)) #s(literal 0 binary64)))) (*.f64 x-scale x-scale)) (*.f64 b (fma.f64 #s(literal -2 binary64) (/.f64 (fma.f64 (*.f64 a a) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 4 binary64)) (*.f64 (*.f64 a a) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 4 binary64)))) (*.f64 x-scale x-scale)) (*.f64 #s(literal 4 binary64) (+.f64 (/.f64 (*.f64 (*.f64 b (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))) (*.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 a #s(literal 0 binary64)))) (*.f64 x-scale x-scale)) (/.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (*.f64 a a) #s(literal -2 binary64)))) (*.f64 x-scale x-scale))))))))))
#s(approx (/ 1 (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))) #s(hole binary64 (+ (* -1/2 (/ (* (pow b 2) (* (pow x-scale 2) (pow (cos (* -1/180 (* angle (PI)))) 2))) (* (pow a 4) (pow (sin (* 1/180 (* angle (PI)))) 4)))) (* 1/2 (/ (pow x-scale 2) (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)))))))
#s(approx (/ 1 (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))) (fma.f64 #s(literal -1/2 binary64) (/.f64 (*.f64 (*.f64 (*.f64 b b) (*.f64 x-scale x-scale)) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))) (*.f64 (pow.f64 a #s(literal 4 binary64)) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 4 binary64)))) (*.f64 #s(literal 1/2 binary64) (/.f64 (*.f64 x-scale x-scale) (*.f64 (*.f64 a a) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)))))))
#s(approx (/ 1 (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))) #s(hole binary64 (+ (* 1/2 (/ (pow x-scale 2) (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)))) (* (pow b 2) (+ (* -1/2 (/ (* (pow x-scale 2) (pow (cos (* -1/180 (* angle (PI)))) 2)) (* (pow a 4) (pow (sin (* 1/180 (* angle (PI)))) 4)))) (* 1/2 (/ (* (pow b 2) (* (pow x-scale 2) (pow (cos (* -1/180 (* angle (PI)))) 4))) (* (pow a 6) (pow (sin (* 1/180 (* angle (PI)))) 6)))))))))
#s(approx (/ 1 (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))) (fma.f64 #s(literal 1/2 binary64) (/.f64 (*.f64 x-scale x-scale) (*.f64 (*.f64 a a) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)))) (*.f64 (*.f64 b b) (fma.f64 #s(literal -1/2 binary64) (*.f64 (/.f64 (*.f64 x-scale x-scale) (pow.f64 a #s(literal 4 binary64))) (/.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 4 binary64)))) (*.f64 #s(literal 1/2 binary64) (/.f64 (*.f64 (*.f64 (*.f64 b b) (*.f64 x-scale x-scale)) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 4 binary64))) (*.f64 (pow.f64 a #s(literal 6 binary64)) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 6 binary64)))))))))
#s(approx (/ 1 (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))) #s(hole binary64 (+ (* 1/2 (/ (pow x-scale 2) (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)))) (* (pow b 2) (+ (* -1/2 (/ (* (pow x-scale 2) (pow (cos (* -1/180 (* angle (PI)))) 2)) (* (pow a 4) (pow (sin (* 1/180 (* angle (PI)))) 4)))) (* (pow b 2) (+ (* -1/2 (/ (* (pow b 2) (* (pow x-scale 2) (pow (cos (* -1/180 (* angle (PI)))) 6))) (* (pow a 8) (pow (sin (* 1/180 (* angle (PI)))) 8)))) (* 1/2 (/ (* (pow x-scale 2) (pow (cos (* -1/180 (* angle (PI)))) 4)) (* (pow a 6) (pow (sin (* 1/180 (* angle (PI)))) 6)))))))))))
#s(approx (/ 1 (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))) (fma.f64 #s(literal 1/2 binary64) (/.f64 (*.f64 x-scale x-scale) (*.f64 (*.f64 a a) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)))) (*.f64 (*.f64 b b) (fma.f64 #s(literal -1/2 binary64) (*.f64 (/.f64 (*.f64 x-scale x-scale) (pow.f64 a #s(literal 4 binary64))) (/.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 4 binary64)))) (*.f64 (*.f64 b b) (fma.f64 #s(literal -1/2 binary64) (/.f64 (*.f64 (*.f64 (*.f64 b b) (*.f64 x-scale x-scale)) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 6 binary64))) (*.f64 (pow.f64 a #s(literal 8 binary64)) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 8 binary64)))) (*.f64 #s(literal 1/2 binary64) (*.f64 (/.f64 (*.f64 x-scale x-scale) (pow.f64 a #s(literal 6 binary64))) (/.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 4 binary64)) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 6 binary64)))))))))))
#s(approx (* (+ (* (/ (* (* (* (sqrt 8) x-scale) (+ (* (/ (+ (* (/ 4 x-scale) (/ (* (* (pow (* (+ b a) (- b a)) 2) (pow (sin (* (* (PI) angle) 1/180)) 2)) (pow (cos (* -1/180 (* (PI) angle))) 2)) x-scale)) (* (* -2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale))) 1/2) (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a))))) (sqrt (/ 1 (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))))) (* y-scale y-scale)) 1/8) (* (* 1/4 (* (sqrt 8) x-scale)) (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))))) y-scale) #s(hole binary64 (* y-scale (+ (* 1/8 (/ (* (pow x-scale 2) (* (sqrt 1/2) (* (sqrt 8) (+ (* 1/2 (/ (* (pow x-scale 2) (+ (* -2 (/ (* (pow a 4) (* (pow (cos (* -1/180 (* angle (PI)))) 2) (pow (sin (* 1/180 (* angle (PI)))) 2))) (pow x-scale 2))) (* 4 (/ (* (pow a 4) (* (pow (cos (* -1/180 (* angle (PI)))) 2) (pow (sin (* 1/180 (* angle (PI)))) 2))) (pow x-scale 2))))) (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)))) (* (pow a 2) (pow (cos (* -1/180 (* angle (PI)))) 2)))))) (* a (* (pow y-scale 2) (sin (* 1/180 (* angle (PI)))))))) (* 1/4 (* a (* (sin (* 1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8)))))))))
#s(approx (* (+ (* (/ (* (* (* (sqrt 8) x-scale) (+ (* (/ (+ (* (/ 4 x-scale) (/ (* (* (pow (* (+ b a) (- b a)) 2) (pow (sin (* (* (PI) angle) 1/180)) 2)) (pow (cos (* -1/180 (* (PI) angle))) 2)) x-scale)) (* (* -2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale))) 1/2) (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a))))) (sqrt (/ 1 (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))))) (* y-scale y-scale)) 1/8) (* (* 1/4 (* (sqrt 8) x-scale)) (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))))) y-scale) (*.f64 y-scale (fma.f64 #s(literal 1/8 binary64) (*.f64 (/.f64 (*.f64 x-scale x-scale) a) (/.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 1/2 binary64)) (sqrt.f64 #s(literal 8 binary64))) (fma.f64 #s(literal 1/2 binary64) (*.f64 (/.f64 (*.f64 x-scale x-scale) (*.f64 a a)) (/.f64 (*.f64 (/.f64 (*.f64 (*.f64 (pow.f64 a #s(literal 4 binary64)) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))) (*.f64 x-scale x-scale)) #s(literal 2 binary64)) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)))) (*.f64 (*.f64 a a) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))))) (*.f64 (*.f64 y-scale y-scale) (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))))) (*.f64 (*.f64 #s(literal 1/4 binary64) a) (*.f64 (*.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64)))))))
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#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) (*.f64 b (fma.f64 #s(literal 1/8 binary64) (/.f64 (*.f64 (*.f64 (*.f64 a a) y-scale) (*.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))) (*.f64 (*.f64 b b) (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))))) (*.f64 (*.f64 #s(literal 1/4 binary64) y-scale) (*.f64 (*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64)))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) #s(hole binary64 (* b (+ (* -1/32 (/ (* (pow a 4) (* y-scale (* (pow (sin (* 1/180 (* angle (PI)))) 4) (* (sqrt 2) (sqrt 8))))) (* (pow b 4) (pow (cos (* -1/180 (* angle (PI)))) 3)))) (+ (* 1/8 (/ (* (pow a 2) (* y-scale (* (pow (sin (* 1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8))))) (* (pow b 2) (cos (* -1/180 (* angle (PI))))))) (* 1/4 (* y-scale (* (cos (* -1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8))))))))))
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#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) #s(hole binary64 (* b (+ (* -1/32 (/ (* (pow a 4) (* y-scale (* (pow (sin (* 1/180 (* angle (PI)))) 4) (* (sqrt 2) (sqrt 8))))) (* (pow b 4) (pow (cos (* -1/180 (* angle (PI)))) 3)))) (+ (* 1/64 (/ (* (pow a 6) (* y-scale (* (pow (sin (* 1/180 (* angle (PI)))) 6) (* (sqrt 2) (sqrt 8))))) (* (pow b 6) (pow (cos (* -1/180 (* angle (PI)))) 5)))) (+ (* 1/8 (/ (* (pow a 2) (* y-scale (* (pow (sin (* 1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8))))) (* (pow b 2) (cos (* -1/180 (* angle (PI))))))) (* 1/4 (* y-scale (* (cos (* -1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8)))))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) (*.f64 b (fma.f64 #s(literal -1/32 binary64) (*.f64 (/.f64 (pow.f64 a #s(literal 4 binary64)) (pow.f64 b #s(literal 4 binary64))) (/.f64 (*.f64 y-scale (*.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 4 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 3 binary64)))) (fma.f64 #s(literal 1/64 binary64) (*.f64 (/.f64 (pow.f64 a #s(literal 6 binary64)) (pow.f64 b #s(literal 6 binary64))) (/.f64 (*.f64 y-scale (*.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 6 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 5 binary64)))) (fma.f64 #s(literal 1/8 binary64) (/.f64 (*.f64 (*.f64 (*.f64 a a) y-scale) (*.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))) (*.f64 (*.f64 b b) (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))))) (*.f64 (*.f64 #s(literal 1/4 binary64) y-scale) (*.f64 (*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64)))))))))
#s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale)))) #s(hole binary64 (* b (+ (* 1/8 (/ (* (pow a 2) (* y-scale (* (pow (sin (* 1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8))))) (* (pow b 2) (cos (* -1/180 (* angle (PI))))))) (* 1/4 (* y-scale (* (cos (* -1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8)))))))))
#s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale)))) (*.f64 b (fma.f64 #s(literal 1/8 binary64) (/.f64 (*.f64 (*.f64 (*.f64 a a) y-scale) (*.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))) (*.f64 (*.f64 b b) (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))))) (*.f64 (*.f64 #s(literal 1/4 binary64) y-scale) (*.f64 (*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64)))))))
#s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale)))) #s(hole binary64 (* b (+ (* -1/32 (/ (* (pow a 4) (* y-scale (* (pow (sin (* 1/180 (* angle (PI)))) 4) (* (sqrt 2) (sqrt 8))))) (* (pow b 4) (pow (cos (* -1/180 (* angle (PI)))) 3)))) (+ (* 1/8 (/ (* (pow a 2) (* y-scale (* (pow (sin (* 1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8))))) (* (pow b 2) (cos (* -1/180 (* angle (PI))))))) (* 1/4 (* y-scale (* (cos (* -1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8))))))))))
#s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale)))) (*.f64 b (fma.f64 #s(literal -1/32 binary64) (*.f64 (/.f64 (pow.f64 a #s(literal 4 binary64)) (pow.f64 b #s(literal 4 binary64))) (/.f64 (*.f64 y-scale (*.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 4 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 3 binary64)))) (fma.f64 #s(literal 1/8 binary64) (/.f64 (*.f64 (*.f64 (*.f64 a a) y-scale) (*.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))) (*.f64 (*.f64 b b) (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))))) (*.f64 (*.f64 #s(literal 1/4 binary64) y-scale) (*.f64 (*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64))))))))
#s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale)))) #s(hole binary64 (* b (+ (* -1/32 (/ (* (pow a 4) (* y-scale (* (pow (sin (* 1/180 (* angle (PI)))) 4) (* (sqrt 2) (sqrt 8))))) (* (pow b 4) (pow (cos (* -1/180 (* angle (PI)))) 3)))) (+ (* 1/64 (/ (* (pow a 6) (* y-scale (* (pow (sin (* 1/180 (* angle (PI)))) 6) (* (sqrt 2) (sqrt 8))))) (* (pow b 6) (pow (cos (* -1/180 (* angle (PI)))) 5)))) (+ (* 1/8 (/ (* (pow a 2) (* y-scale (* (pow (sin (* 1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8))))) (* (pow b 2) (cos (* -1/180 (* angle (PI))))))) (* 1/4 (* y-scale (* (cos (* -1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8)))))))))))
#s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale)))) (*.f64 b (fma.f64 #s(literal -1/32 binary64) (*.f64 (/.f64 (pow.f64 a #s(literal 4 binary64)) (pow.f64 b #s(literal 4 binary64))) (/.f64 (*.f64 y-scale (*.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 4 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 3 binary64)))) (fma.f64 #s(literal 1/64 binary64) (*.f64 (/.f64 (pow.f64 a #s(literal 6 binary64)) (pow.f64 b #s(literal 6 binary64))) (/.f64 (*.f64 y-scale (*.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 6 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 5 binary64)))) (fma.f64 #s(literal 1/8 binary64) (/.f64 (*.f64 (*.f64 (*.f64 a a) y-scale) (*.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))) (*.f64 (*.f64 b b) (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))))) (*.f64 (*.f64 #s(literal 1/4 binary64) y-scale) (*.f64 (*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64)))))))))
#s(approx (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) #s(hole binary64 (* -1 (* (/ (* (pow a 2) (* (pow b 3) (sqrt 8))) (* x-scale y-scale)) (sqrt (+ (sqrt (+ (* 4 (/ (* (pow (cos (* 1/180 (* angle (PI)))) 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (* (pow x-scale 2) (pow y-scale 2)))) (pow (- (/ (pow (cos (* 1/180 (* angle (PI)))) 2) (pow x-scale 2)) (/ (pow (sin (* 1/180 (* angle (PI)))) 2) (pow y-scale 2))) 2))) (+ (/ (pow (cos (* 1/180 (* angle (PI)))) 2) (pow x-scale 2)) (/ (pow (sin (* 1/180 (* angle (PI)))) 2) (pow y-scale 2)))))))))
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#s(approx (+ (* (/ 4 x-scale) (/ (* (* (pow (* (+ b a) (- b a)) 2) (pow (sin (* (* (PI) angle) 1/180)) 2)) (pow (cos (* -1/180 (* (PI) angle))) 2)) x-scale)) (* (* -2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale)))) #s(hole binary64 (* (pow b 4) (+ (* -2 (/ (* (pow (cos (* -1/180 (* angle (PI)))) 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))) (+ (* -2 (/ (+ (/ (* (pow a 2) (pow (cos (* -1/180 (* angle (PI)))) 4)) (pow x-scale 2)) (/ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 4)) (pow x-scale 2))) (pow b 2))) (+ (* 4 (/ (* (pow (cos (* -1/180 (* angle (PI)))) 2) (* (pow (sin (* 1/180 (* angle (PI)))) 2) (+ (* -4 (pow a 2)) (* 2 (pow a 2))))) (* (pow b 2) (pow x-scale 2)))) (+ (* 4 (/ (* (pow (cos (* -1/180 (* angle (PI)))) 2) (* (pow (sin (* 1/180 (* angle (PI)))) 2) (+ (* -2 a) (* 2 a)))) (* b (pow x-scale 2)))) (* 4 (/ (* (pow (cos (* -1/180 (* angle (PI)))) 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))))))))))
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#s(approx (+ (* (/ 4 x-scale) (/ (* (* (pow (* (+ b a) (- b a)) 2) (pow (sin (* (* (PI) angle) 1/180)) 2)) (pow (cos (* -1/180 (* (PI) angle))) 2)) x-scale)) (* (* -2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale)))) #s(hole binary64 (* (pow b 4) (+ (* -2 (/ (* (pow (cos (* -1/180 (* angle (PI)))) 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))) (+ (* -2 (/ (+ (/ (* (pow a 2) (pow (cos (* -1/180 (* angle (PI)))) 4)) (pow x-scale 2)) (/ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 4)) (pow x-scale 2))) (pow b 2))) (+ (* 4 (/ (* (pow (cos (* -1/180 (* angle (PI)))) 2) (* (pow (sin (* 1/180 (* angle (PI)))) 2) (+ (* -4 (pow a 2)) (* 2 (pow a 2))))) (* (pow b 2) (pow x-scale 2)))) (+ (* 4 (/ (* (pow (cos (* -1/180 (* angle (PI)))) 2) (* (pow (sin (* 1/180 (* angle (PI)))) 2) (+ (* -2 a) (* 2 a)))) (* b (pow x-scale 2)))) (+ (* 4 (/ (* (pow (cos (* -1/180 (* angle (PI)))) 2) (* (pow (sin (* 1/180 (* angle (PI)))) 2) (+ (* -2 (pow a 3)) (* 2 (pow a 3))))) (* (pow b 3) (pow x-scale 2)))) (* 4 (/ (* (pow (cos (* -1/180 (* angle (PI)))) 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)))))))))))
#s(approx (+ (* (/ 4 x-scale) (/ (* (* (pow (* (+ b a) (- b a)) 2) (pow (sin (* (* (PI) angle) 1/180)) 2)) (pow (cos (* -1/180 (* (PI) angle))) 2)) x-scale)) (* (* -2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale)))) (*.f64 (pow.f64 b #s(literal 4 binary64)) (fma.f64 #s(literal -2 binary64) (/.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))) (*.f64 x-scale x-scale)) (fma.f64 #s(literal -2 binary64) (/.f64 (/.f64 (fma.f64 (*.f64 a a) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 4 binary64)) (*.f64 (*.f64 a a) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 4 binary64)))) (*.f64 x-scale x-scale)) (*.f64 b b)) (fma.f64 #s(literal 4 binary64) (/.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (*.f64 a a) #s(literal -2 binary64)))) (*.f64 (*.f64 b b) (*.f64 x-scale x-scale))) (fma.f64 #s(literal 4 binary64) (/.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 a #s(literal 0 binary64)))) (*.f64 b (*.f64 x-scale x-scale))) (*.f64 #s(literal 4 binary64) (fma.f64 (/.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (pow.f64 b #s(literal 3 binary64))) (/.f64 (*.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (pow.f64 a #s(literal 3 binary64)) #s(literal 0 binary64))) (*.f64 x-scale x-scale)) (/.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))) (*.f64 x-scale x-scale))))))))))
#s(approx (/ 1 (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))) #s(hole binary64 (/ (+ (* -1/2 (/ (* (pow a 2) (* (pow x-scale 2) (pow (sin (* 1/180 (* angle (PI)))) 2))) (* (pow b 2) (pow (cos (* -1/180 (* angle (PI)))) 4)))) (* 1/2 (/ (pow x-scale 2) (pow (cos (* -1/180 (* angle (PI)))) 2)))) (pow b 2))))
#s(approx (/ 1 (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))) (/.f64 (fma.f64 #s(literal -1/2 binary64) (/.f64 (*.f64 (*.f64 (*.f64 a a) (*.f64 x-scale x-scale)) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))) (*.f64 (*.f64 b b) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 4 binary64)))) (*.f64 #s(literal 1/2 binary64) (/.f64 (*.f64 x-scale x-scale) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))))) (*.f64 b b)))
#s(approx (/ 1 (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))) #s(hole binary64 (/ (+ (* -1/2 (/ (* (pow a 2) (* (pow x-scale 2) (pow (sin (* 1/180 (* angle (PI)))) 2))) (* (pow b 2) (pow (cos (* -1/180 (* angle (PI)))) 4)))) (+ (* 1/2 (/ (* (pow a 4) (* (pow x-scale 2) (pow (sin (* 1/180 (* angle (PI)))) 4))) (* (pow b 4) (pow (cos (* -1/180 (* angle (PI)))) 6)))) (* 1/2 (/ (pow x-scale 2) (pow (cos (* -1/180 (* angle (PI)))) 2))))) (pow b 2))))
#s(approx (/ 1 (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))) (/.f64 (fma.f64 #s(literal -1/2 binary64) (/.f64 (*.f64 (*.f64 (*.f64 a a) (*.f64 x-scale x-scale)) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))) (*.f64 (*.f64 b b) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 4 binary64)))) (*.f64 #s(literal 1/2 binary64) (fma.f64 (/.f64 (pow.f64 a #s(literal 4 binary64)) (pow.f64 b #s(literal 4 binary64))) (/.f64 (*.f64 (*.f64 x-scale x-scale) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 4 binary64))) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 6 binary64))) (/.f64 (*.f64 x-scale x-scale) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)))))) (*.f64 b b)))
#s(approx (/ 1 (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))) #s(hole binary64 (/ (+ (* -1/2 (/ (* (pow a 2) (* (pow x-scale 2) (pow (sin (* 1/180 (* angle (PI)))) 2))) (* (pow b 2) (pow (cos (* -1/180 (* angle (PI)))) 4)))) (+ (* -1/2 (/ (* (pow a 6) (* (pow x-scale 2) (pow (sin (* 1/180 (* angle (PI)))) 6))) (* (pow b 6) (pow (cos (* -1/180 (* angle (PI)))) 8)))) (+ (* 1/2 (/ (* (pow a 4) (* (pow x-scale 2) (pow (sin (* 1/180 (* angle (PI)))) 4))) (* (pow b 4) (pow (cos (* -1/180 (* angle (PI)))) 6)))) (* 1/2 (/ (pow x-scale 2) (pow (cos (* -1/180 (* angle (PI)))) 2)))))) (pow b 2))))
#s(approx (/ 1 (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))) (/.f64 (fma.f64 #s(literal -1/2 binary64) (/.f64 (*.f64 (*.f64 (*.f64 a a) (*.f64 x-scale x-scale)) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))) (*.f64 (*.f64 b b) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 4 binary64)))) (fma.f64 #s(literal -1/2 binary64) (/.f64 (*.f64 (*.f64 (pow.f64 a #s(literal 6 binary64)) (*.f64 x-scale x-scale)) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 6 binary64))) (*.f64 (pow.f64 b #s(literal 6 binary64)) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 8 binary64)))) (*.f64 #s(literal 1/2 binary64) (fma.f64 (/.f64 (pow.f64 a #s(literal 4 binary64)) (pow.f64 b #s(literal 4 binary64))) (/.f64 (*.f64 (*.f64 x-scale x-scale) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 4 binary64))) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 6 binary64))) (/.f64 (*.f64 x-scale x-scale) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))))))) (*.f64 b b)))
#s(approx (* (+ (* (/ (* (* (* (sqrt 8) x-scale) (+ (* (/ (+ (* (/ 4 x-scale) (/ (* (* (pow (* (+ b a) (- b a)) 2) (pow (sin (* (* (PI) angle) 1/180)) 2)) (pow (cos (* -1/180 (* (PI) angle))) 2)) x-scale)) (* (* -2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale))) 1/2) (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a))))) (sqrt (/ 1 (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))))) (* y-scale y-scale)) 1/8) (* (* 1/4 (* (sqrt 8) x-scale)) (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))))) y-scale) #s(hole binary64 (* b (* y-scale (+ (* 1/8 (/ (* (pow x-scale 2) (* (sqrt 1/2) (* (sqrt 8) (+ (* 1/2 (/ (* (pow x-scale 2) (+ (* -2 (/ (* (pow (cos (* -1/180 (* angle (PI)))) 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))) (* 4 (/ (* (pow (cos (* -1/180 (* angle (PI)))) 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))))) (pow (cos (* -1/180 (* angle (PI)))) 2))) (pow (sin (* 1/180 (* angle (PI)))) 2))))) (* (pow y-scale 2) (cos (* -1/180 (* angle (PI))))))) (* 1/4 (* (cos (* -1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8)))))))))
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#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) #s(hole binary64 (* -1 (* b (+ (* -1/32 (/ (* (pow a 4) (* y-scale (* (pow (sin (* 1/180 (* angle (PI)))) 4) (* (sqrt 2) (sqrt 8))))) (* (pow b 4) (pow (cos (* -1/180 (* angle (PI)))) 3)))) (+ (* 1/64 (/ (* (pow a 6) (* y-scale (* (pow (sin (* 1/180 (* angle (PI)))) 6) (* (sqrt 2) (sqrt 8))))) (* (pow b 6) (pow (cos (* -1/180 (* angle (PI)))) 5)))) (+ (* 1/8 (/ (* (pow a 2) (* y-scale (* (pow (sin (* 1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8))))) (* (pow b 2) (cos (* -1/180 (* angle (PI))))))) (* 1/4 (* y-scale (* (cos (* -1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8))))))))))))
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#s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale)))) (*.f64 (*.f64 #s(literal -1/4 binary64) b) (*.f64 (*.f64 y-scale (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64))))) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))))
#s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale)))) #s(hole binary64 (* -1 (* b (+ (* 1/8 (/ (* (pow a 2) (* y-scale (* (pow (sin (* 1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8))))) (* (pow b 2) (cos (* -1/180 (* angle (PI))))))) (* 1/4 (* y-scale (* (cos (* -1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8))))))))))
#s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale)))) (neg.f64 (*.f64 b (fma.f64 #s(literal 1/8 binary64) (/.f64 (*.f64 (*.f64 (*.f64 a a) y-scale) (*.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))) (*.f64 (*.f64 b b) (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))))) (*.f64 (*.f64 #s(literal 1/4 binary64) y-scale) (*.f64 (*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64))))))))
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#s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale)))) (neg.f64 (*.f64 b (fma.f64 #s(literal -1/32 binary64) (*.f64 (/.f64 (pow.f64 a #s(literal 4 binary64)) (pow.f64 b #s(literal 4 binary64))) (/.f64 (*.f64 y-scale (*.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 4 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 3 binary64)))) (fma.f64 #s(literal 1/8 binary64) (/.f64 (*.f64 (*.f64 (*.f64 a a) y-scale) (*.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))) (*.f64 (*.f64 b b) (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))))) (*.f64 (*.f64 #s(literal 1/4 binary64) y-scale) (*.f64 (*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64)))))))))
#s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale)))) #s(hole binary64 (* -1 (* b (+ (* -1/32 (/ (* (pow a 4) (* y-scale (* (pow (sin (* 1/180 (* angle (PI)))) 4) (* (sqrt 2) (sqrt 8))))) (* (pow b 4) (pow (cos (* -1/180 (* angle (PI)))) 3)))) (+ (* 1/64 (/ (* (pow a 6) (* y-scale (* (pow (sin (* 1/180 (* angle (PI)))) 6) (* (sqrt 2) (sqrt 8))))) (* (pow b 6) (pow (cos (* -1/180 (* angle (PI)))) 5)))) (+ (* 1/8 (/ (* (pow a 2) (* y-scale (* (pow (sin (* 1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8))))) (* (pow b 2) (cos (* -1/180 (* angle (PI))))))) (* 1/4 (* y-scale (* (cos (* -1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8))))))))))))
#s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale)))) (neg.f64 (*.f64 b (fma.f64 #s(literal -1/32 binary64) (*.f64 (/.f64 (pow.f64 a #s(literal 4 binary64)) (pow.f64 b #s(literal 4 binary64))) (/.f64 (*.f64 y-scale (*.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 4 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 3 binary64)))) (fma.f64 #s(literal 1/64 binary64) (*.f64 (/.f64 (pow.f64 a #s(literal 6 binary64)) (pow.f64 b #s(literal 6 binary64))) (/.f64 (*.f64 y-scale (*.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 6 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 5 binary64)))) (fma.f64 #s(literal 1/8 binary64) (/.f64 (*.f64 (*.f64 (*.f64 a a) y-scale) (*.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))) (*.f64 (*.f64 b b) (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))))) (*.f64 (*.f64 #s(literal 1/4 binary64) y-scale) (*.f64 (*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64))))))))))
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#s(approx (+ (* (/ 4 x-scale) (/ (* (* (pow (* (+ b a) (- b a)) 2) (pow (sin (* (* (PI) angle) 1/180)) 2)) (pow (cos (* -1/180 (* (PI) angle))) 2)) x-scale)) (* (* -2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale)))) #s(hole binary64 (* (pow b 4) (+ (* -2 (/ (* (pow (cos (* -1/180 (* angle (PI)))) 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))) (+ (* -1 (/ (+ (* -1 (/ (+ (* -2 (+ (/ (* (pow a 2) (pow (cos (* -1/180 (* angle (PI)))) 4)) (pow x-scale 2)) (/ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 4)) (pow x-scale 2)))) (* 4 (/ (* (pow (cos (* -1/180 (* angle (PI)))) 2) (* (pow (sin (* 1/180 (* angle (PI)))) 2) (+ (* -4 (pow a 2)) (* 2 (pow a 2))))) (pow x-scale 2)))) b)) (* 4 (/ (* (pow (cos (* -1/180 (* angle (PI)))) 2) (* (pow (sin (* 1/180 (* angle (PI)))) 2) (+ (* -2 a) (* 2 a)))) (pow x-scale 2)))) b)) (* 4 (/ (* (pow (cos (* -1/180 (* angle (PI)))) 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))))))))
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#s(approx (+ (* (/ 4 x-scale) (/ (* (* (pow (* (+ b a) (- b a)) 2) (pow (sin (* (* (PI) angle) 1/180)) 2)) (pow (cos (* -1/180 (* (PI) angle))) 2)) x-scale)) (* (* -2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale)))) #s(hole binary64 (* (pow b 4) (+ (* -2 (/ (* (pow (cos (* -1/180 (* angle (PI)))) 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))) (+ (* -1 (/ (+ (* -1 (/ (+ (* -4 (/ (* (pow (cos (* -1/180 (* angle (PI)))) 2) (* (pow (sin (* 1/180 (* angle (PI)))) 2) (+ (* -2 (pow a 3)) (* 2 (pow a 3))))) (* b (pow x-scale 2)))) (+ (* -2 (+ (/ (* (pow a 2) (pow (cos (* -1/180 (* angle (PI)))) 4)) (pow x-scale 2)) (/ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 4)) (pow x-scale 2)))) (* 4 (/ (* (pow (cos (* -1/180 (* angle (PI)))) 2) (* (pow (sin (* 1/180 (* angle (PI)))) 2) (+ (* -4 (pow a 2)) (* 2 (pow a 2))))) (pow x-scale 2))))) b)) (* 4 (/ (* (pow (cos (* -1/180 (* angle (PI)))) 2) (* (pow (sin (* 1/180 (* angle (PI)))) 2) (+ (* -2 a) (* 2 a)))) (pow x-scale 2)))) b)) (* 4 (/ (* (pow (cos (* -1/180 (* angle (PI)))) 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))))))))
#s(approx (+ (* (/ 4 x-scale) (/ (* (* (pow (* (+ b a) (- b a)) 2) (pow (sin (* (* (PI) angle) 1/180)) 2)) (pow (cos (* -1/180 (* (PI) angle))) 2)) x-scale)) (* (* -2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale)))) (*.f64 (pow.f64 b #s(literal 4 binary64)) (fma.f64 #s(literal -2 binary64) (/.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))) (*.f64 x-scale x-scale)) (fma.f64 #s(literal -1 binary64) (/.f64 (fma.f64 #s(literal -1 binary64) (/.f64 (fma.f64 #s(literal -4 binary64) (/.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (pow.f64 a #s(literal 3 binary64)) #s(literal 0 binary64)))) (*.f64 b (*.f64 x-scale x-scale))) (fma.f64 #s(literal -2 binary64) (/.f64 (fma.f64 (*.f64 a a) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 4 binary64)) (*.f64 (*.f64 a a) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 4 binary64)))) (*.f64 x-scale x-scale)) (*.f64 #s(literal 4 binary64) (/.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (*.f64 a a) #s(literal -2 binary64)))) (*.f64 x-scale x-scale))))) b) (*.f64 #s(literal 4 binary64) (/.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 a #s(literal 0 binary64)))) (*.f64 x-scale x-scale)))) b) (*.f64 #s(literal 4 binary64) (/.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))) (*.f64 x-scale x-scale)))))))
#s(approx (* (+ (* (/ (* (* (* (sqrt 8) x-scale) (+ (* (/ (+ (* (/ 4 x-scale) (/ (* (* (pow (* (+ b a) (- b a)) 2) (pow (sin (* (* (PI) angle) 1/180)) 2)) (pow (cos (* -1/180 (* (PI) angle))) 2)) x-scale)) (* (* -2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale))) 1/2) (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a))))) (sqrt (/ 1 (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))))) (* y-scale y-scale)) 1/8) (* (* 1/4 (* (sqrt 8) x-scale)) (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))))) y-scale) #s(hole binary64 (* -1 (* b (* y-scale (+ (* 1/8 (/ (* (pow x-scale 2) (* (sqrt 1/2) (* (sqrt 8) (+ (* 1/2 (/ (* (pow x-scale 2) (+ (* -2 (/ (* (pow (cos (* -1/180 (* angle (PI)))) 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))) (* 4 (/ (* (pow (cos (* -1/180 (* angle (PI)))) 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))))) (pow (cos (* -1/180 (* angle (PI)))) 2))) (pow (sin (* 1/180 (* angle (PI)))) 2))))) (* (pow y-scale 2) (cos (* -1/180 (* angle (PI))))))) (* 1/4 (* (cos (* -1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8))))))))))
#s(approx (* (+ (* (/ (* (* (* (sqrt 8) x-scale) (+ (* (/ (+ (* (/ 4 x-scale) (/ (* (* (pow (* (+ b a) (- b a)) 2) (pow (sin (* (* (PI) angle) 1/180)) 2)) (pow (cos (* -1/180 (* (PI) angle))) 2)) x-scale)) (* (* -2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale))) 1/2) (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a))))) (sqrt (/ 1 (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))))) (* y-scale y-scale)) 1/8) (* (* 1/4 (* (sqrt 8) x-scale)) (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))))) y-scale) (neg.f64 (*.f64 (*.f64 b y-scale) (fma.f64 #s(literal 1/8 binary64) (*.f64 (/.f64 (*.f64 x-scale x-scale) (*.f64 y-scale y-scale)) (/.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 1/2 binary64)) (sqrt.f64 #s(literal 8 binary64))) (fma.f64 #s(literal 1/2 binary64) (/.f64 (*.f64 (*.f64 x-scale x-scale) (*.f64 (/.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))) (*.f64 x-scale x-scale)) #s(literal 2 binary64))) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)))) (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))))) (*.f64 (*.f64 #s(literal 1/4 binary64) (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64))))) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))))))
#s(approx (* (+ (* (/ (* (* (* (sqrt 8) x-scale) (+ (* (/ (+ (* (/ 4 x-scale) (/ (* (* (pow (* (+ b a) (- b a)) 2) (pow (sin (* (* (PI) angle) 1/180)) 2)) (pow (cos (* -1/180 (* (PI) angle))) 2)) x-scale)) (* (* -2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale))) 1/2) (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a))))) (sqrt (/ 1 (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))))) (* y-scale y-scale)) 1/8) (* (* 1/4 (* (sqrt 8) x-scale)) (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))))) y-scale) #s(hole binary64 (* -1 (* b (+ (* -1/4 (/ (* (pow x-scale 2) (* (pow (sin (* 1/180 (* angle (PI)))) 2) (* (sqrt 1/2) (* (sqrt 8) (+ (* -2 a) (* 2 a)))))) (* b (* y-scale (cos (* -1/180 (* angle (PI)))))))) (* y-scale (+ (* 1/8 (/ (* (pow x-scale 2) (* (sqrt 1/2) (* (sqrt 8) (+ (* 1/2 (/ (* (pow x-scale 2) (+ (* -2 (/ (* (pow (cos (* -1/180 (* angle (PI)))) 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))) (* 4 (/ (* (pow (cos (* -1/180 (* angle (PI)))) 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))))) (pow (cos (* -1/180 (* angle (PI)))) 2))) (pow (sin (* 1/180 (* angle (PI)))) 2))))) (* (pow y-scale 2) (cos (* -1/180 (* angle (PI))))))) (* 1/4 (* (cos (* -1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8)))))))))))
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#s(approx (/ (+ (* (/ 4 x-scale) (/ (* (* (pow (* (+ b a) (- b a)) 2) (pow (sin (* (* (PI) angle) 1/180)) 2)) (pow (cos (* -1/180 (* (PI) angle))) 2)) x-scale)) (* (* -2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale))) (*.f64 (*.f64 b b) (fma.f64 #s(literal -1 binary64) (/.f64 (fma.f64 #s(literal -1 binary64) (/.f64 (fma.f64 #s(literal -1 binary64) (/.f64 (*.f64 #s(literal 4 binary64) (-.f64 (*.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (pow.f64 a #s(literal 3 binary64)) #s(literal 0 binary64))) (/.f64 (*.f64 (*.f64 (*.f64 a a) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 4 binary64))) (*.f64 a #s(literal 0 binary64))) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))))) b) (-.f64 (/.f64 (*.f64 (*.f64 x-scale x-scale) (fma.f64 #s(literal -2 binary64) (/.f64 (fma.f64 (*.f64 a a) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 4 binary64)) (*.f64 (*.f64 a a) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 4 binary64)))) (*.f64 x-scale x-scale)) (*.f64 #s(literal 4 binary64) (/.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (*.f64 a a) #s(literal -2 binary64)))) (*.f64 x-scale x-scale))))) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))) (/.f64 (*.f64 (*.f64 (*.f64 a a) (*.f64 x-scale x-scale)) (*.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (/.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))) (*.f64 x-scale x-scale)) #s(literal 2 binary64)))) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 4 binary64))))) b) (*.f64 (*.f64 #s(literal 4 binary64) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))) (*.f64 a #s(literal 0 binary64)))) b) (/.f64 (*.f64 (*.f64 x-scale x-scale) (*.f64 (/.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))) (*.f64 x-scale x-scale)) #s(literal 2 binary64))) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))))))
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#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) b) (*.f64 (*.f64 y-scale (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64)))))
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#s(approx (+ (* (/ 4 x-scale) (/ (* (* (pow (* (+ b a) (- b a)) 2) (pow (sin (* (* (PI) angle) 1/180)) 2)) (pow (cos (* -1/180 (* (PI) angle))) 2)) x-scale)) (* (* -2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale)))) (*.f64 #s(literal -2 binary64) (/.f64 (*.f64 (*.f64 a a) (*.f64 b b)) (*.f64 x-scale x-scale))))
#s(approx (+ (* (/ 4 x-scale) (/ (* (* (pow (* (+ b a) (- b a)) 2) (pow (sin (* (* (PI) angle) 1/180)) 2)) (pow (cos (* -1/180 (* (PI) angle))) 2)) x-scale)) (* (* -2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale)))) #s(hole binary64 (+ (* -2 (/ (* (pow a 2) (pow b 2)) (pow x-scale 2))) (* (pow angle 2) (+ (* -2 (+ (/ (* (pow a 2) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2))))) (pow x-scale 2)) (/ (* (pow b 2) (+ (* -1/32400 (* (pow a 2) (pow (PI) 2))) (* 1/32400 (* (pow b 2) (pow (PI) 2))))) (pow x-scale 2)))) (* 1/8100 (/ (* (pow (PI) 2) (* (pow (+ a b) 2) (pow (- b a) 2))) (pow x-scale 2))))))))
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#s(approx (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2)))))) (*.f64 (/.f64 (*.f64 (*.f64 (*.f64 a a) (*.f64 b b)) (sqrt.f64 #s(literal 8 binary64))) (*.f64 x-scale y-scale)) (sqrt.f64 (+.f64 (sqrt.f64 (fma.f64 #s(literal 4 binary64) (/.f64 (*.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))) (pow.f64 (*.f64 (+.f64 b a) (-.f64 b a)) #s(literal 2 binary64))) (*.f64 (*.f64 x-scale x-scale) (*.f64 y-scale y-scale))) (pow.f64 (-.f64 (/.f64 (fma.f64 (*.f64 a a) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (*.f64 b b) (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)))) (*.f64 x-scale x-scale)) (/.f64 (fma.f64 (*.f64 a a) (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (*.f64 b b) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)))) (*.f64 y-scale y-scale))) #s(literal 2 binary64)))) (+.f64 (/.f64 (*.f64 (*.f64 a a) (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))) (*.f64 y-scale y-scale)) (+.f64 (/.f64 (fma.f64 (*.f64 a a) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (*.f64 b b) (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)))) (*.f64 x-scale x-scale)) (/.f64 (*.f64 (*.f64 b b) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))) (*.f64 y-scale y-scale))))))))
#s(approx (+ (* (/ 4 x-scale) (/ (* (* (pow (* (+ b a) (- b a)) 2) (pow (sin (* (* (PI) angle) 1/180)) 2)) (pow (cos (* -1/180 (* (PI) angle))) 2)) x-scale)) (* (* -2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale)))) #s(hole binary64 (+ (* -2 (/ (* (+ (* (pow a 2) (pow (cos (* -1/180 (* angle (PI)))) 2)) (* (pow b 2) (pow (sin (* 1/180 (* angle (PI)))) 2))) (+ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (* (pow b 2) (pow (cos (* -1/180 (* angle (PI)))) 2)))) (pow x-scale 2))) (* 4 (/ (* (pow (cos (* -1/180 (* angle (PI)))) 2) (* (pow (sin (* 1/180 (* angle (PI)))) 2) (* (pow (+ a b) 2) (pow (- b a) 2)))) (pow x-scale 2))))))
#s(approx (+ (* (/ 4 x-scale) (/ (* (* (pow (* (+ b a) (- b a)) 2) (pow (sin (* (* (PI) angle) 1/180)) 2)) (pow (cos (* -1/180 (* (PI) angle))) 2)) x-scale)) (* (* -2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale)))) (fma.f64 #s(literal -2 binary64) (/.f64 (*.f64 (fma.f64 (*.f64 a a) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (*.f64 b b) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)))) (fma.f64 (*.f64 a a) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (*.f64 b b) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))))) (*.f64 x-scale x-scale)) (*.f64 #s(literal 4 binary64) (/.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (pow.f64 (+.f64 a b) #s(literal 2 binary64)) (pow.f64 (-.f64 b a) #s(literal 2 binary64))))) (*.f64 x-scale x-scale)))))
#s(approx (/ 1 (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))) #s(hole binary64 (* 1/2 (/ (pow x-scale 2) (+ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (* (pow b 2) (pow (cos (* -1/180 (* angle (PI)))) 2)))))))
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#s(approx (* (+ (* (/ (* (* (* (sqrt 8) x-scale) (+ (* (/ (+ (* (/ 4 x-scale) (/ (* (* (pow (* (+ b a) (- b a)) 2) (pow (sin (* (* (PI) angle) 1/180)) 2)) (pow (cos (* -1/180 (* (PI) angle))) 2)) x-scale)) (* (* -2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale))) 1/2) (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a))))) (sqrt (/ 1 (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))))) (* y-scale y-scale)) 1/8) (* (* 1/4 (* (sqrt 8) x-scale)) (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))))) y-scale) #s(hole binary64 (* y-scale (+ (* 1/8 (* (/ (* (pow x-scale 2) (* (sqrt 1/2) (* (sqrt 8) (+ (* 1/2 (/ (* (pow x-scale 2) (+ (* -2 (/ (* (+ (* (pow a 2) (pow (cos (* -1/180 (* angle (PI)))) 2)) (* (pow b 2) (pow (sin (* 1/180 (* angle (PI)))) 2))) (+ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (* (pow b 2) (pow (cos (* -1/180 (* angle (PI)))) 2)))) (pow x-scale 2))) (* 4 (/ (* (pow (cos (* -1/180 (* angle (PI)))) 2) (* (pow (sin (* 1/180 (* angle (PI)))) 2) (* (pow (+ a b) 2) (pow (- b a) 2)))) (pow x-scale 2))))) (+ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (* (pow b 2) (pow (cos (* -1/180 (* angle (PI)))) 2))))) (+ (* (pow a 2) (pow (cos (* -1/180 (* angle (PI)))) 2)) (* (pow b 2) (pow (sin (* 1/180 (* angle (PI)))) 2))))))) (pow y-scale 2)) (sqrt (/ 1 (+ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (* (pow b 2) (pow (cos (* -1/180 (* angle (PI)))) 2))))))) (* 1/4 (* (* (sqrt 2) (sqrt 8)) (sqrt (+ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (* (pow b 2) (pow (cos (* -1/180 (* angle (PI)))) 2))))))))))
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#s(approx (cos (* -1/180 (* (PI) angle))) #s(hole binary64 (cos (* -1/180 (* angle (PI))))))
#s(approx (cos (* -1/180 (* (PI) angle))) (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))))
#s(approx (sin (* (* (PI) angle) 1/180)) #s(hole binary64 (sin (* 1/180 (* angle (PI))))))
#s(approx (sin (* (* (PI) angle) 1/180)) (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))))
#s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) #s(hole binary64 (* (sqrt 2) (sqrt (+ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (* (pow b 2) (pow (cos (* -1/180 (* angle (PI)))) 2)))))))
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#s(approx (+ (* (/ 4 x-scale) (/ (* (* (pow (* (+ b a) (- b a)) 2) (pow (sin (* (* (PI) angle) 1/180)) 2)) (pow (cos (* -1/180 (* (PI) angle))) 2)) x-scale)) (* (* -2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale)))) #s(hole binary64 (/ (+ (* -2 (* (+ (* (pow a 2) (pow (cos (* -1/180 (* angle (PI)))) 2)) (* (pow b 2) (pow (sin (* 1/180 (* angle (PI)))) 2))) (+ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (* (pow b 2) (pow (cos (* -1/180 (* angle (PI)))) 2))))) (* 4 (* (pow (cos (* -1/180 (* angle (PI)))) 2) (* (pow (sin (* 1/180 (* angle (PI)))) 2) (* (pow (+ a b) 2) (pow (- b a) 2)))))) (pow x-scale 2))))
#s(approx (+ (* (/ 4 x-scale) (/ (* (* (pow (* (+ b a) (- b a)) 2) (pow (sin (* (* (PI) angle) 1/180)) 2)) (pow (cos (* -1/180 (* (PI) angle))) 2)) x-scale)) (* (* -2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale)))) (/.f64 (fma.f64 (*.f64 #s(literal -2 binary64) (fma.f64 (*.f64 a a) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (*.f64 b b) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))))) (fma.f64 (*.f64 a a) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (*.f64 b b) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)))) (*.f64 (*.f64 #s(literal 4 binary64) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))) (*.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (pow.f64 (+.f64 a b) #s(literal 2 binary64)) (pow.f64 (-.f64 b a) #s(literal 2 binary64)))))) (*.f64 x-scale x-scale)))
#s(approx (* (+ (* (/ (* (* (* (sqrt 8) x-scale) (+ (* (/ (+ (* (/ 4 x-scale) (/ (* (* (pow (* (+ b a) (- b a)) 2) (pow (sin (* (* (PI) angle) 1/180)) 2)) (pow (cos (* -1/180 (* (PI) angle))) 2)) x-scale)) (* (* -2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale))) 1/2) (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a))))) (sqrt (/ 1 (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))))) (* y-scale y-scale)) 1/8) (* (* 1/4 (* (sqrt 8) x-scale)) (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))))) y-scale) #s(hole binary64 (* 1/4 (* (* y-scale (* (sqrt 2) (sqrt 8))) (sqrt (+ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (* (pow b 2) (pow (cos (* -1/180 (* angle (PI)))) 2))))))))
#s(approx (* (+ (* (/ (* (* (* (sqrt 8) x-scale) (+ (* (/ (+ (* (/ 4 x-scale) (/ (* (* (pow (* (+ b a) (- b a)) 2) (pow (sin (* (* (PI) angle) 1/180)) 2)) (pow (cos (* -1/180 (* (PI) angle))) 2)) x-scale)) (* (* -2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale))) 1/2) (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a))))) (sqrt (/ 1 (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))))) (* y-scale y-scale)) 1/8) (* (* 1/4 (* (sqrt 8) x-scale)) (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))))) y-scale) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 y-scale (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64)))) (sqrt.f64 (fma.f64 (*.f64 a a) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (*.f64 b b) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)))))))
#s(approx (* (+ (* (/ (* (* (* (sqrt 8) x-scale) (+ (* (/ (+ (* (/ 4 x-scale) (/ (* (* (pow (* (+ b a) (- b a)) 2) (pow (sin (* (* (PI) angle) 1/180)) 2)) (pow (cos (* -1/180 (* (PI) angle))) 2)) x-scale)) (* (* -2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale))) 1/2) (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a))))) (sqrt (/ 1 (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))))) (* y-scale y-scale)) 1/8) (* (* 1/4 (* (sqrt 8) x-scale)) (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))))) y-scale) #s(hole binary64 (+ (* 1/8 (* (/ (* (pow x-scale 2) (* (sqrt 1/2) (* (sqrt 8) (+ (* 1/2 (/ (+ (* -2 (* (+ (* (pow a 2) (pow (cos (* -1/180 (* angle (PI)))) 2)) (* (pow b 2) (pow (sin (* 1/180 (* angle (PI)))) 2))) (+ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (* (pow b 2) (pow (cos (* -1/180 (* angle (PI)))) 2))))) (* 4 (* (pow (cos (* -1/180 (* angle (PI)))) 2) (* (pow (sin (* 1/180 (* angle (PI)))) 2) (* (pow (+ a b) 2) (pow (- b a) 2)))))) (+ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (* (pow b 2) (pow (cos (* -1/180 (* angle (PI)))) 2))))) (+ (* (pow a 2) (pow (cos (* -1/180 (* angle (PI)))) 2)) (* (pow b 2) (pow (sin (* 1/180 (* angle (PI)))) 2))))))) y-scale) (sqrt (/ 1 (+ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (* (pow b 2) (pow (cos (* -1/180 (* angle (PI)))) 2))))))) (* 1/4 (* (* y-scale (* (sqrt 2) (sqrt 8))) (sqrt (+ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (* (pow b 2) (pow (cos (* -1/180 (* angle (PI)))) 2)))))))))
#s(approx (* (+ (* (/ (* (* (* (sqrt 8) x-scale) (+ (* (/ (+ (* (/ 4 x-scale) (/ (* (* (pow (* (+ b a) (- b a)) 2) (pow (sin (* (* (PI) angle) 1/180)) 2)) (pow (cos (* -1/180 (* (PI) angle))) 2)) x-scale)) (* (* -2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale))) 1/2) (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a))))) (sqrt (/ 1 (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))))) (* y-scale y-scale)) 1/8) (* (* 1/4 (* (sqrt 8) x-scale)) (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))))) y-scale) (fma.f64 (*.f64 #s(literal 1/8 binary64) (/.f64 (*.f64 (*.f64 (*.f64 x-scale x-scale) (sqrt.f64 #s(literal 1/2 binary64))) (*.f64 (sqrt.f64 #s(literal 8 binary64)) (fma.f64 #s(literal 1/2 binary64) (/.f64 (fma.f64 (*.f64 #s(literal -2 binary64) (fma.f64 (*.f64 a a) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (*.f64 b b) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))))) (fma.f64 (*.f64 a a) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (*.f64 b b) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)))) (*.f64 (*.f64 #s(literal 4 binary64) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))) (*.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (pow.f64 (+.f64 a b) #s(literal 2 binary64)) (pow.f64 (-.f64 b a) #s(literal 2 binary64)))))) (fma.f64 (*.f64 a a) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (*.f64 b b) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))))) (fma.f64 (*.f64 a a) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (*.f64 b b) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))))))) y-scale)) (sqrt.f64 (/.f64 #s(literal 1 binary64) (fma.f64 (*.f64 a a) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (*.f64 b b) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)))))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 y-scale (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64)))) (sqrt.f64 (fma.f64 (*.f64 a a) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (*.f64 b b) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))))))))
#s(approx (/ (+ (* (/ 4 x-scale) (/ (* (* (pow (* (+ b a) (- b a)) 2) (pow (sin (* (* (PI) angle) 1/180)) 2)) (pow (cos (* -1/180 (* (PI) angle))) 2)) x-scale)) (* (* -2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale))) #s(hole binary64 (/ (+ (* -2 (* (+ (* (pow a 2) (pow (cos (* -1/180 (* angle (PI)))) 2)) (* (pow b 2) (pow (sin (* 1/180 (* angle (PI)))) 2))) (+ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (* (pow b 2) (pow (cos (* -1/180 (* angle (PI)))) 2))))) (* 4 (* (pow (cos (* -1/180 (* angle (PI)))) 2) (* (pow (sin (* 1/180 (* angle (PI)))) 2) (* (pow (+ a b) 2) (pow (- b a) 2)))))) (+ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (* (pow b 2) (pow (cos (* -1/180 (* angle (PI)))) 2))))))
#s(approx (/ (+ (* (/ 4 x-scale) (/ (* (* (pow (* (+ b a) (- b a)) 2) (pow (sin (* (* (PI) angle) 1/180)) 2)) (pow (cos (* -1/180 (* (PI) angle))) 2)) x-scale)) (* (* -2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale))) (/.f64 (fma.f64 (*.f64 #s(literal -2 binary64) (fma.f64 (*.f64 a a) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (*.f64 b b) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))))) (fma.f64 (*.f64 a a) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (*.f64 b b) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)))) (*.f64 (*.f64 #s(literal 4 binary64) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))) (*.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (pow.f64 (+.f64 a b) #s(literal 2 binary64)) (pow.f64 (-.f64 b a) #s(literal 2 binary64)))))) (fma.f64 (*.f64 a a) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (*.f64 b b) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(hole binary64 (* 1/4 (* (* x-scale (* y-scale (sqrt 8))) (sqrt (+ (* 2 (/ (* (pow a 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow y-scale 2))) (* 2 (/ (* (pow b 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow y-scale 2)))))))))
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#s(approx (* (+ (* (/ (* (* (* (sqrt 8) x-scale) (+ (* (/ (+ (* (/ 4 x-scale) (/ (* (* (pow (* (+ b a) (- b a)) 2) (pow (sin (* (* (PI) angle) 1/180)) 2)) (pow (cos (* -1/180 (* (PI) angle))) 2)) x-scale)) (* (* -2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale))) 1/2) (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a))))) (sqrt (/ 1 (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))))) (* y-scale y-scale)) 1/8) (* (* 1/4 (* (sqrt 8) x-scale)) (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))))) y-scale) #s(hole binary64 (/ (+ (* 1/8 (* (* (pow x-scale 2) (* (sqrt 1/2) (* (sqrt 8) (+ (* 1/2 (/ (* (pow x-scale 2) (+ (* -2 (/ (* (+ (* (pow a 2) (pow (cos (* -1/180 (* angle (PI)))) 2)) (* (pow b 2) (pow (sin (* 1/180 (* angle (PI)))) 2))) (+ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (* (pow b 2) (pow (cos (* -1/180 (* angle (PI)))) 2)))) (pow x-scale 2))) (* 4 (/ (* (pow (cos (* -1/180 (* angle (PI)))) 2) (* (pow (sin (* 1/180 (* angle (PI)))) 2) (* (pow (+ a b) 2) (pow (- b a) 2)))) (pow x-scale 2))))) (+ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (* (pow b 2) (pow (cos (* -1/180 (* angle (PI)))) 2))))) (+ (* (pow a 2) (pow (cos (* -1/180 (* angle (PI)))) 2)) (* (pow b 2) (pow (sin (* 1/180 (* angle (PI)))) 2))))))) (sqrt (/ 1 (+ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (* (pow b 2) (pow (cos (* -1/180 (* angle (PI)))) 2))))))) (* 1/4 (* (* (pow y-scale 2) (* (sqrt 2) (sqrt 8))) (sqrt (+ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (* (pow b 2) (pow (cos (* -1/180 (* angle (PI)))) 2))))))) y-scale)))
#s(approx (* (+ (* (/ (* (* (* (sqrt 8) x-scale) (+ (* (/ (+ (* (/ 4 x-scale) (/ (* (* (pow (* (+ b a) (- b a)) 2) (pow (sin (* (* (PI) angle) 1/180)) 2)) (pow (cos (* -1/180 (* (PI) angle))) 2)) x-scale)) (* (* -2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale))) 1/2) (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a))))) (sqrt (/ 1 (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))))) (* y-scale y-scale)) 1/8) (* (* 1/4 (* (sqrt 8) x-scale)) (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))))) y-scale) (/.f64 (fma.f64 (*.f64 #s(literal 1/8 binary64) (*.f64 (*.f64 (*.f64 x-scale x-scale) (sqrt.f64 #s(literal 1/2 binary64))) (*.f64 (sqrt.f64 #s(literal 8 binary64)) (fma.f64 #s(literal 1/2 binary64) (/.f64 (*.f64 (*.f64 x-scale x-scale) (fma.f64 #s(literal -2 binary64) (/.f64 (*.f64 (fma.f64 (*.f64 a a) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (*.f64 b b) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)))) (fma.f64 (*.f64 a a) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (*.f64 b b) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))))) (*.f64 x-scale x-scale)) (*.f64 #s(literal 4 binary64) (/.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (pow.f64 (+.f64 a b) #s(literal 2 binary64)) (pow.f64 (-.f64 b a) #s(literal 2 binary64))))) (*.f64 x-scale x-scale))))) (fma.f64 (*.f64 a a) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (*.f64 b b) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))))) (fma.f64 (*.f64 a a) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (*.f64 b b) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)))))))) (sqrt.f64 (/.f64 #s(literal 1 binary64) (fma.f64 (*.f64 a a) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (*.f64 b b) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)))))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 y-scale y-scale) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))) (sqrt.f64 (fma.f64 (*.f64 a a) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (*.f64 b b) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))))))) y-scale))
#s(approx (* y-scale (sqrt 2)) #s(hole binary64 (* y-scale (sqrt 2))))
#s(approx (* y-scale (sqrt 2)) (*.f64 y-scale (sqrt.f64 #s(literal 2 binary64))))
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#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 x-scale (*.f64 y-scale (sqrt.f64 #s(literal 8 binary64))))) (sqrt.f64 (*.f64 #s(literal 2 binary64) (/.f64 (fma.f64 (*.f64 a a) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (*.f64 b b) (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)))) (*.f64 x-scale x-scale))))))
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#s(approx (* (+ (* (/ (* (* (* (sqrt 8) x-scale) (+ (* (/ (+ (* (/ 4 x-scale) (/ (* (* (pow (* (+ b a) (- b a)) 2) (pow (sin (* (* (PI) angle) 1/180)) 2)) (pow (cos (* -1/180 (* (PI) angle))) 2)) x-scale)) (* (* -2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale))) 1/2) (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a))))) (sqrt (/ 1 (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))))) (* y-scale y-scale)) 1/8) (* (* 1/4 (* (sqrt 8) x-scale)) (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))))) y-scale) #s(hole binary64 (* -1 (* y-scale (+ (* -1/4 (* (* (sqrt 2) (sqrt 8)) (sqrt (+ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (* (pow b 2) (pow (cos (* -1/180 (* angle (PI)))) 2)))))) (* -1/8 (* (/ (* (pow x-scale 2) (* (sqrt 1/2) (* (sqrt 8) (+ (* 1/2 (/ (* (pow x-scale 2) (+ (* -2 (/ (* (+ (* (pow a 2) (pow (cos (* -1/180 (* angle (PI)))) 2)) (* (pow b 2) (pow (sin (* 1/180 (* angle (PI)))) 2))) (+ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (* (pow b 2) (pow (cos (* -1/180 (* angle (PI)))) 2)))) (pow x-scale 2))) (* 4 (/ (* (pow (cos (* -1/180 (* angle (PI)))) 2) (* (pow (sin (* 1/180 (* angle (PI)))) 2) (* (pow (+ a b) 2) (pow (- b a) 2)))) (pow x-scale 2))))) (+ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (* (pow b 2) (pow (cos (* -1/180 (* angle (PI)))) 2))))) (+ (* (pow a 2) (pow (cos (* -1/180 (* angle (PI)))) 2)) (* (pow b 2) (pow (sin (* 1/180 (* angle (PI)))) 2))))))) (pow y-scale 2)) (sqrt (/ 1 (+ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (* (pow b 2) (pow (cos (* -1/180 (* angle (PI)))) 2))))))))))))
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rewrite276.0ms (1%)

Memory
-3.8MiB live, 264.2MiB allocated; 58ms collecting garbage
Iterations

Useful iterations: 0 (0.0ms)

IterNodesCost
01602334
02642326
18672133
070622056
Stop Event
iter limit
iter limit
node limit
iter limit
Counts
28 → 287
Calls
Call 1
Inputs
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (sqrt.f64 (*.f64 #s(literal 2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b)))))))
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(*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale))
(*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)
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(*.f64 (*.f64 #s(literal 1/4 binary64) b) (*.f64 (*.f64 y-scale (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64))))
(*.f64 #s(literal 1/4 binary64) b)
(*.f64 (*.f64 y-scale (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64)))
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(*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale))
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(*.f64 #s(literal 2 binary64) (/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64))))
(/.f64 (neg.f64 (sqrt.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64)))) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (+.f64 (+.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) #s(approx (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))) (/.f64 (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 b b) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 a a))) (*.f64 y-scale y-scale))))))) (/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64))))
(neg.f64 (sqrt.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64)))) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (+.f64 (+.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) #s(approx (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))) (/.f64 (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 b b) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 a a))) (*.f64 y-scale y-scale)))))))
(sqrt.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64)))) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (+.f64 (+.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) #s(approx (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))) (/.f64 (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 b b) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 a a))) (*.f64 y-scale y-scale))))))
(fma.f64 (/.f64 #s(literal 4 binary64) x-scale) (/.f64 (*.f64 (*.f64 (pow.f64 (*.f64 (+.f64 b a) (-.f64 b a)) #s(literal 2 binary64)) (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64))) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64))) x-scale) (*.f64 (*.f64 #s(literal -2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 b b) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 a a)))) (/.f64 (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b))) (*.f64 x-scale x-scale))))
(/.f64 #s(literal 1 binary64) (/.f64 (*.f64 #s(literal 2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b)))) (*.f64 x-scale x-scale)))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (fma.f64 (/.f64 (*.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) x-scale) (fma.f64 (/.f64 (fma.f64 (/.f64 #s(literal 4 binary64) x-scale) (/.f64 (*.f64 (*.f64 (pow.f64 (*.f64 (+.f64 b a) (-.f64 b a)) #s(literal 2 binary64)) (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64))) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64))) x-scale) (*.f64 (*.f64 #s(literal -2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 b b) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 a a)))) (/.f64 (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b))) (*.f64 x-scale x-scale)))) (/.f64 (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b))) (*.f64 x-scale x-scale))) #s(literal 1/2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 b b) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 a a))))) (sqrt.f64 (/.f64 #s(literal 1 binary64) (/.f64 (*.f64 #s(literal 2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b)))) (*.f64 x-scale x-scale))))) (*.f64 y-scale y-scale)) #s(literal 1/8 binary64) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) x-scale)) (sqrt.f64 (/.f64 (*.f64 #s(literal 2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b)))) (*.f64 x-scale x-scale))))) y-scale))
(*.f64 (fma.f64 (/.f64 (*.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) x-scale) (fma.f64 (/.f64 (fma.f64 (/.f64 #s(literal 4 binary64) x-scale) (/.f64 (*.f64 (*.f64 (pow.f64 (*.f64 (+.f64 b a) (-.f64 b a)) #s(literal 2 binary64)) (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64))) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64))) x-scale) (*.f64 (*.f64 #s(literal -2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 b b) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 a a)))) (/.f64 (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b))) (*.f64 x-scale x-scale)))) (/.f64 (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b))) (*.f64 x-scale x-scale))) #s(literal 1/2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 b b) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 a a))))) (sqrt.f64 (/.f64 #s(literal 1 binary64) (/.f64 (*.f64 #s(literal 2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b)))) (*.f64 x-scale x-scale))))) (*.f64 y-scale y-scale)) #s(literal 1/8 binary64) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) x-scale)) (sqrt.f64 (/.f64 (*.f64 #s(literal 2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b)))) (*.f64 x-scale x-scale))))) y-scale)
(cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle)))
(sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))
(sqrt.f64 (*.f64 #s(literal 2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b)))))
(*.f64 y-scale (sqrt.f64 #s(literal 2 binary64)))
(sqrt.f64 #s(literal 2 binary64))
(sqrt.f64 (/.f64 (*.f64 #s(literal 2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b)))) (*.f64 x-scale x-scale)))
(cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))
(/.f64 (fma.f64 (/.f64 #s(literal 4 binary64) x-scale) (/.f64 (*.f64 (*.f64 (pow.f64 (*.f64 (+.f64 b a) (-.f64 b a)) #s(literal 2 binary64)) (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64))) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64))) x-scale) (*.f64 (*.f64 #s(literal -2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 b b) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 a a)))) (/.f64 (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b))) (*.f64 x-scale x-scale)))) (/.f64 (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b))) (*.f64 x-scale x-scale)))
Outputs
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (*.f64 y-scale #s(literal 4 binary64)) (hypot.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))))) #s(literal 1/4 binary64)))
(*.f64 (*.f64 (*.f64 (hypot.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))))) (sqrt.f64 #s(literal 2 binary64))) (*.f64 (sqrt.f64 #s(literal 8 binary64)) #s(literal 1/4 binary64))) y-scale)
(*.f64 (*.f64 (*.f64 (hypot.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))))) (sqrt.f64 #s(literal 2 binary64))) #s(literal 1/4 binary64)) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale))
(*.f64 (*.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) #s(literal 1/4 binary64)) (sqrt.f64 #s(literal 2 binary64))) (hypot.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))))))
(*.f64 (*.f64 (*.f64 y-scale #s(literal 4 binary64)) (hypot.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))))) #s(literal 1/4 binary64))
(*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) #s(literal 1/4 binary64)) (*.f64 y-scale (*.f64 (hypot.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))))) (sqrt.f64 #s(literal 2 binary64)))))
(*.f64 (sqrt.f64 #s(literal 2 binary64)) (*.f64 (hypot.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))))) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) #s(literal 1/4 binary64))))
(*.f64 (*.f64 (hypot.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))))) (sqrt.f64 #s(literal 2 binary64))) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) #s(literal 1/4 binary64)))
(*.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) #s(literal 1/4 binary64)) (*.f64 (hypot.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))))) (sqrt.f64 #s(literal 2 binary64))))
(*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) (*.f64 #s(literal 1/4 binary64) (*.f64 (hypot.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))))) (sqrt.f64 #s(literal 2 binary64)))))
(*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 y-scale #s(literal 4 binary64)) (hypot.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))))))
(*.f64 (*.f64 #s(literal 1/4 binary64) y-scale) (sqrt.f64 #s(literal 8 binary64)))
(*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) #s(literal 1/4 binary64)) y-scale)
(*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) #s(literal 1/4 binary64))
(*.f64 (sqrt.f64 #s(literal 8 binary64)) (*.f64 y-scale #s(literal 1/4 binary64)))
(*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale))
(*.f64 y-scale (*.f64 (sqrt.f64 #s(literal 8 binary64)) #s(literal 1/4 binary64)))
(*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)
(*.f64 y-scale (sqrt.f64 #s(literal 8 binary64)))
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(fma.f64 (/.f64 (*.f64 (/.f64 (pow.f64 (*.f64 (*.f64 (*.f64 (-.f64 b a) (+.f64 a b)) (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) x-scale) (/.f64 #s(literal 4 binary64) x-scale)) (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)))) (*.f64 x-scale x-scale) (/.f64 (*.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64))) (*.f64 x-scale x-scale)) (*.f64 #s(literal -2 binary64) (+.f64 (pow.f64 (*.f64 b (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))) a) #s(literal 2 binary64))))) (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64))) (*.f64 x-scale x-scale))))
(fma.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64))) (*.f64 x-scale x-scale)) (/.f64 (*.f64 #s(literal -2 binary64) (+.f64 (pow.f64 (*.f64 b (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))) a) #s(literal 2 binary64)))) (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64))) (*.f64 x-scale x-scale))) (*.f64 (/.f64 (pow.f64 (*.f64 (*.f64 (*.f64 (-.f64 b a) (+.f64 a b)) (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) x-scale) (/.f64 (/.f64 #s(literal 4 binary64) x-scale) (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64))) (*.f64 x-scale x-scale)))))
(fma.f64 (*.f64 #s(literal -2 binary64) (+.f64 (pow.f64 (*.f64 b (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))) a) #s(literal 2 binary64)))) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64))) (*.f64 x-scale x-scale)) (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64))) (*.f64 x-scale x-scale))) (*.f64 (/.f64 (pow.f64 (*.f64 (*.f64 (*.f64 (-.f64 b a) (+.f64 a b)) (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) x-scale) (/.f64 (/.f64 #s(literal 4 binary64) x-scale) (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64))) (*.f64 x-scale x-scale)))))
(fma.f64 #s(literal -2 binary64) (/.f64 (*.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64))) (*.f64 x-scale x-scale)) (+.f64 (pow.f64 (*.f64 b (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))) a) #s(literal 2 binary64)))) (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64))) (*.f64 x-scale x-scale))) (*.f64 (/.f64 (pow.f64 (*.f64 (*.f64 (*.f64 (-.f64 b a) (+.f64 a b)) (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) x-scale) (/.f64 (/.f64 #s(literal 4 binary64) x-scale) (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64))) (*.f64 x-scale x-scale)))))
(fma.f64 (/.f64 (pow.f64 (*.f64 (*.f64 (*.f64 (-.f64 b a) (+.f64 a b)) (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) x-scale) (/.f64 (/.f64 #s(literal 4 binary64) x-scale) (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64))) (*.f64 x-scale x-scale))) (/.f64 (*.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64))) (*.f64 x-scale x-scale)) (*.f64 #s(literal -2 binary64) (+.f64 (pow.f64 (*.f64 b (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))) a) #s(literal 2 binary64))))) (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64))) (*.f64 x-scale x-scale))))
(fma.f64 (/.f64 #s(literal 4 binary64) x-scale) (/.f64 (/.f64 (pow.f64 (*.f64 (*.f64 (*.f64 (-.f64 b a) (+.f64 a b)) (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) x-scale) (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64))) (*.f64 x-scale x-scale))) (/.f64 (*.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64))) (*.f64 x-scale x-scale)) (*.f64 #s(literal -2 binary64) (+.f64 (pow.f64 (*.f64 b (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))) a) #s(literal 2 binary64))))) (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64))) (*.f64 x-scale x-scale))))
(-.f64 (*.f64 (/.f64 (pow.f64 (*.f64 (*.f64 (*.f64 (-.f64 b a) (+.f64 a b)) (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) x-scale) (/.f64 (/.f64 #s(literal 4 binary64) x-scale) (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64))) (*.f64 x-scale x-scale)))) (/.f64 (*.f64 (*.f64 (+.f64 (pow.f64 (*.f64 b (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))) a) #s(literal 2 binary64))) #s(literal 2 binary64)) (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64))) (*.f64 x-scale x-scale))) (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64))) (*.f64 x-scale x-scale))))
(+.f64 (/.f64 (*.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64))) (*.f64 x-scale x-scale)) (*.f64 #s(literal -2 binary64) (+.f64 (pow.f64 (*.f64 b (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))) a) #s(literal 2 binary64))))) (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64))) (*.f64 x-scale x-scale))) (*.f64 (/.f64 (pow.f64 (*.f64 (*.f64 (*.f64 (-.f64 b a) (+.f64 a b)) (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) x-scale) (/.f64 (/.f64 #s(literal 4 binary64) x-scale) (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64))) (*.f64 x-scale x-scale)))))
(+.f64 (*.f64 (/.f64 (pow.f64 (*.f64 (*.f64 (*.f64 (-.f64 b a) (+.f64 a b)) (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) x-scale) (/.f64 (/.f64 #s(literal 4 binary64) x-scale) (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64))) (*.f64 x-scale x-scale)))) (/.f64 (*.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64))) (*.f64 x-scale x-scale)) (*.f64 #s(literal -2 binary64) (+.f64 (pow.f64 (*.f64 b (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))) a) #s(literal 2 binary64))))) (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64))) (*.f64 x-scale x-scale))))

eval286.0ms (1%)

Memory
31.1MiB live, 410.9MiB allocated; 39ms collecting garbage
Compiler

Compiled 451 619 to 7 992 computations (98.2% saved)

prune1.3s (4.6%)

Memory
26.5MiB live, 1 983.2MiB allocated; 125ms collecting garbage
Pruning

64 alts after pruning (63 fresh and 1 done)

PrunedKeptTotal
New90659965
Fresh549
Picked415
Done000
Total91564979
Accuracy
67.6%
Counts
979 → 64
Alt Table
Click to see full alt table
StatusAccuracyProgram
5.0%
(/.f64 (neg.f64 (sqrt.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64)))) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (+.f64 (+.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a #s(approx (cos (* (/ angle 180) (PI))) #s(literal 1 binary64))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) #s(approx (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))) (/.f64 (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 b b) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 a a))) (*.f64 y-scale y-scale))))))) (/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64))))
4.9%
(/.f64 (neg.f64 #s(approx (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2)))))) (/.f64 (*.f64 (*.f64 a a) (*.f64 (pow.f64 b #s(literal 3 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))) (*.f64 (*.f64 x-scale x-scale) y-scale)))) (/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64))))
4.5%
(/.f64 (neg.f64 #s(approx (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2)))))) (*.f64 (/.f64 (*.f64 (*.f64 (*.f64 a a) (*.f64 b b)) (sqrt.f64 #s(literal 8 binary64))) (*.f64 x-scale (*.f64 y-scale y-scale))) (sqrt.f64 (*.f64 #s(literal 2 binary64) (fma.f64 (*.f64 a a) (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (*.f64 b b) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))))))))) (/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64))))
42.0%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (/.f64 (*.f64 (*.f64 (hypot.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))))) (sqrt.f64 #s(literal 2 binary64))) (*.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale) #s(literal 1/4 binary64))) (fabs.f64 x-scale)))
6.2%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (fma.f64 (/.f64 (*.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) x-scale) (fma.f64 (/.f64 (fma.f64 (/.f64 #s(literal 4 binary64) x-scale) (/.f64 (*.f64 (*.f64 (pow.f64 (*.f64 (+.f64 b a) (-.f64 b a)) #s(literal 2 binary64)) (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64))) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64))) x-scale) (*.f64 (*.f64 #s(literal -2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 b b) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 a a)))) (/.f64 (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b))) (*.f64 x-scale x-scale)))) (/.f64 (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b))) (*.f64 x-scale x-scale))) #s(literal 1/2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 b b) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 a a))))) (sqrt.f64 (/.f64 #s(literal 1 binary64) (/.f64 (*.f64 #s(literal 2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b)))) (*.f64 x-scale x-scale))))) (*.f64 y-scale y-scale)) #s(literal 1/8 binary64) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) x-scale)) (exp.f64 (*.f64 (log.f64 (*.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64))) (/.f64 #s(literal 2 binary64) (*.f64 x-scale x-scale)))) #s(literal 1/2 binary64))))) y-scale))
5.0%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (fma.f64 (/.f64 (*.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) x-scale) (fma.f64 (/.f64 (fma.f64 (/.f64 #s(literal 4 binary64) x-scale) (/.f64 (*.f64 (*.f64 (pow.f64 (*.f64 (+.f64 b a) (-.f64 b a)) #s(literal 2 binary64)) (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64))) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64))) x-scale) (*.f64 (*.f64 #s(literal -2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 b b) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 a a)))) (/.f64 (fma.f64 (pow.f64 #s(approx (sin (* (* (PI) angle) 1/180)) (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b))) (*.f64 x-scale x-scale)))) (/.f64 (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b))) (*.f64 x-scale x-scale))) #s(literal 1/2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 b b) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 a a))))) (sqrt.f64 (/.f64 #s(literal 1 binary64) (/.f64 (*.f64 #s(literal 2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b)))) (*.f64 x-scale x-scale))))) (*.f64 y-scale y-scale)) #s(literal 1/8 binary64) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) x-scale)) (sqrt.f64 (/.f64 (*.f64 #s(literal 2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b)))) (*.f64 x-scale x-scale))))) y-scale))
4.3%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (fma.f64 (/.f64 (*.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) x-scale) (fma.f64 (/.f64 (fma.f64 (/.f64 #s(literal 4 binary64) x-scale) (/.f64 (*.f64 (*.f64 (pow.f64 (*.f64 (+.f64 b a) (-.f64 b a)) #s(literal 2 binary64)) (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64))) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64))) x-scale) (*.f64 (*.f64 #s(literal -2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 b b) (*.f64 (pow.f64 #s(approx (cos (* -1/180 (* (PI) angle))) (+.f64 #s(literal 1 binary64) (*.f64 (*.f64 #s(literal -1/64800 binary64) (*.f64 angle angle)) (*.f64 (PI.f64) (PI.f64))))) #s(literal 2 binary64)) (*.f64 a a)))) (/.f64 (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b))) (*.f64 x-scale x-scale)))) (/.f64 (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b))) (*.f64 x-scale x-scale))) #s(literal 1/2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 b b) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 a a))))) (sqrt.f64 (/.f64 #s(literal 1 binary64) (/.f64 (*.f64 #s(literal 2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b)))) (*.f64 x-scale x-scale))))) (*.f64 y-scale y-scale)) #s(literal 1/8 binary64) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) x-scale)) (sqrt.f64 (/.f64 (*.f64 #s(literal 2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b)))) (*.f64 x-scale x-scale))))) y-scale))
12.3%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (fma.f64 (*.f64 (sqrt.f64 (/.f64 #s(literal 1 binary64) (+.f64 (sqrt.f64 (fma.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (pow.f64 (*.f64 y-scale x-scale) #s(literal 2 binary64)))) #s(literal 4 binary64) (pow.f64 (-.f64 (/.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 x-scale x-scale)) (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 y-scale y-scale))) #s(literal 2 binary64)))) (+.f64 (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 y-scale y-scale)) (/.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 x-scale x-scale)))))) (*.f64 (/.f64 (*.f64 y-scale x-scale) b) (/.f64 (*.f64 (fma.f64 (*.f64 #s(literal 1/2 binary64) (fma.f64 (*.f64 (-.f64 (/.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 x-scale x-scale)) (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 y-scale y-scale))) (fma.f64 (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) x-scale) (/.f64 (*.f64 a a) x-scale) (*.f64 (*.f64 (neg.f64 a) a) (/.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 y-scale y-scale))))) #s(literal 2 binary64) (*.f64 (*.f64 (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (pow.f64 (*.f64 y-scale x-scale) #s(literal 2 binary64))))) #s(literal -8 binary64)))) (sqrt.f64 (/.f64 #s(literal 1 binary64) (fma.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (pow.f64 (*.f64 y-scale x-scale) #s(literal 2 binary64)))) #s(literal 4 binary64) (pow.f64 (-.f64 (/.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 x-scale x-scale)) (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 y-scale y-scale))) #s(literal 2 binary64))))) (fma.f64 (/.f64 (*.f64 a a) y-scale) (/.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) y-scale) (*.f64 (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) x-scale) (/.f64 (*.f64 a a) x-scale)))) (sqrt.f64 #s(literal 8 binary64))) b))) #s(literal 1/8 binary64) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale)) (sqrt.f64 (+.f64 (sqrt.f64 (fma.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (pow.f64 (*.f64 y-scale x-scale) #s(literal 2 binary64)))) #s(literal 4 binary64) (pow.f64 (-.f64 (/.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 x-scale x-scale)) (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 y-scale y-scale))) #s(literal 2 binary64)))) (+.f64 (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 y-scale y-scale)) (/.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 x-scale x-scale))))))) b))
41.6%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (hypot.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))))) (sqrt.f64 #s(literal 2 binary64))) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) #s(literal 1/4 binary64))))
41.6%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (*.f64 (hypot.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))))) (sqrt.f64 #s(literal 2 binary64))) (*.f64 (sqrt.f64 #s(literal 8 binary64)) #s(literal 1/4 binary64))) y-scale))
41.6%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) #s(literal 1/4 binary64)) (sqrt.f64 #s(literal 2 binary64))) (hypot.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))))))
28.1%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (*.f64 (*.f64 #s(literal 1/4 binary64) b) y-scale) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64))))
37.1%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) #s(literal 1/4 binary64)) (*.f64 x-scale (*.f64 (sqrt.f64 #s(literal 2 binary64)) (/.f64 (hypot.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))))) (fabs.f64 x-scale))))))
41.8%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (*.f64 y-scale #s(literal 4 binary64)) (hypot.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))))) #s(literal 1/4 binary64)))
28.3%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (*.f64 y-scale #s(literal 4 binary64)) b) #s(literal 1/4 binary64)))
28.1%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (*.f64 #s(literal 1/4 binary64) b) (sqrt.f64 #s(literal 8 binary64))) (*.f64 (sqrt.f64 #s(literal 2 binary64)) y-scale)))
28.3%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (*.f64 #s(literal 1/4 binary64) b) y-scale) #s(literal 4 binary64)))
41.6%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) #s(literal 1/4 binary64)) (*.f64 y-scale (*.f64 (hypot.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))))) (sqrt.f64 #s(literal 2 binary64))))))
24.3%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale) b)) (sqrt.f64 (+.f64 (sqrt.f64 (fma.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (pow.f64 (*.f64 y-scale x-scale) #s(literal 2 binary64)))) #s(literal 4 binary64) (pow.f64 (-.f64 (/.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 x-scale x-scale)) (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 y-scale y-scale))) #s(literal 2 binary64)))) (+.f64 (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 y-scale y-scale)) (/.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 x-scale x-scale)))))))
36.7%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale)) (/.f64 (*.f64 (hypot.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))))) (sqrt.f64 #s(literal 2 binary64))) (fabs.f64 x-scale))))
41.8%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale)) (/.f64 (sqrt.f64 (*.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64))) (/.f64 #s(literal 2 binary64) x-scale))) (sqrt.f64 x-scale))))
22.6%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale)) (sqrt.f64 (*.f64 #s(literal 2 binary64) (/.f64 (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 b b) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 a a))) (*.f64 y-scale y-scale))))))
25.3%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale)) (exp.f64 (*.f64 (log.f64 (*.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64))) (/.f64 #s(literal 2 binary64) (*.f64 x-scale x-scale)))) #s(literal 1/2 binary64)))))
20.0%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale)) #s(approx (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))) (fma.f64 #s(literal 1/2 binary64) (/.f64 (*.f64 (*.f64 angle angle) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (fma.f64 (*.f64 #s(literal -1/32400 binary64) (*.f64 b b)) (*.f64 (PI.f64) (PI.f64)) (*.f64 (*.f64 #s(literal 1/32400 binary64) (*.f64 a a)) (*.f64 (PI.f64) (PI.f64)))))) (*.f64 b x-scale)) (/.f64 (*.f64 b (sqrt.f64 #s(literal 2 binary64))) x-scale)))))
22.6%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale)) #s(approx (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))) (/.f64 (*.f64 b (*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) (sqrt.f64 #s(literal 2 binary64)))) x-scale))))
25.7%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale)) #s(approx (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))) (/.f64 (*.f64 b (sqrt.f64 #s(literal 2 binary64))) x-scale))))
12.6%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale)) #s(approx (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))) (/.f64 (*.f64 a (*.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) (sqrt.f64 #s(literal 2 binary64)))) x-scale))))
15.4%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale)) #s(approx (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))) (*.f64 a (fma.f64 #s(literal 1/2 binary64) (*.f64 (/.f64 (*.f64 b b) (*.f64 a a)) (/.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (sqrt.f64 #s(literal 2 binary64))) (*.f64 x-scale (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))))) (/.f64 (*.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) (sqrt.f64 #s(literal 2 binary64))) x-scale))))))
10.9%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale)) #s(approx (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))) (neg.f64 (/.f64 (*.f64 a (*.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) (sqrt.f64 #s(literal 2 binary64)))) x-scale)))))
25.2%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) x-scale) y-scale)) (sqrt.f64 (/.f64 (*.f64 #s(literal 2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b)))) (*.f64 x-scale x-scale)))))
44.0%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (*.f64 (pow.f64 (*.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64))) #s(literal 2 binary64)) #s(literal 1/4 binary64)) (pow.f64 (*.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64))) #s(literal 2 binary64)) #s(literal 1/4 binary64)))))
44.1%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (sqrt.f64 (*.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64))) #s(literal 2 binary64)))))
42.3%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (sqrt.f64 (*.f64 #s(literal 2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (sin.f64 (fma.f64 (*.f64 #s(literal 1/180 binary64) angle) (PI.f64) (/.f64 (PI.f64) #s(literal 2 binary64)))) #s(literal 2 binary64)) (*.f64 b b)))))))
42.3%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (sqrt.f64 (*.f64 #s(literal 2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (sin.f64 (fma.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle) (/.f64 (PI.f64) #s(literal 2 binary64)))) #s(literal 2 binary64)) (*.f64 b b)))))))
36.3%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (sqrt.f64 (*.f64 #s(literal 2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 #s(approx (cos (* -1/180 (* (PI) angle))) (+.f64 #s(literal 1 binary64) (*.f64 (*.f64 #s(literal -1/64800 binary64) (*.f64 angle angle)) (*.f64 (PI.f64) (PI.f64))))) #s(literal 2 binary64)) (*.f64 b b)))))))
42.4%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (sqrt.f64 (*.f64 #s(literal 2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 #s(approx (cos (* -1/180 (* (PI) angle))) #s(literal 1 binary64)) #s(literal 2 binary64)) (*.f64 b b)))))))
39.4%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (sqrt.f64 (*.f64 #s(literal 2 binary64) (fma.f64 (pow.f64 #s(approx (sin (* (* (PI) angle) 1/180)) (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b)))))))
43.5%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (exp.f64 (*.f64 (log.f64 (*.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64))) #s(literal 2 binary64))) #s(literal 1/2 binary64)))))
24.2%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) #s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) (fma.f64 #s(literal 1/2 binary64) (/.f64 (*.f64 (*.f64 angle angle) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (fma.f64 (*.f64 #s(literal -1/32400 binary64) (*.f64 b b)) (*.f64 (PI.f64) (PI.f64)) (*.f64 (*.f64 #s(literal 1/32400 binary64) (*.f64 a a)) (*.f64 (PI.f64) (PI.f64)))))) b) (*.f64 b (sqrt.f64 #s(literal 2 binary64)))))))
42.3%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) #s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 (fma.f64 (*.f64 a a) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (*.f64 b b) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)))))))))
24.4%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) #s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) (*.f64 b (*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) (sqrt.f64 #s(literal 2 binary64)))))))
12.5%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) #s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) (*.f64 a (*.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) (sqrt.f64 #s(literal 2 binary64)))))))
7.3%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) #s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) (neg.f64 (*.f64 b (*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) (sqrt.f64 #s(literal 2 binary64))))))))
11.5%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) #s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) (neg.f64 (*.f64 a (*.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) (sqrt.f64 #s(literal 2 binary64))))))))
41.8%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) x-scale)) (sqrt.f64 (*.f64 #s(literal 2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 b b) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 a a)))))))
18.6%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 b (*.f64 x-scale (*.f64 y-scale (sqrt.f64 #s(literal 8 binary64)))))) (sqrt.f64 (+.f64 (sqrt.f64 (fma.f64 #s(literal 4 binary64) (*.f64 (/.f64 (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 x-scale x-scale)) (/.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 y-scale y-scale))) (pow.f64 (-.f64 (/.f64 (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 x-scale x-scale)) (/.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 y-scale y-scale))) #s(literal 2 binary64)))) (+.f64 (/.f64 (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 x-scale x-scale)) (/.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 y-scale y-scale)))))))
20.2%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 a (*.f64 x-scale (*.f64 y-scale (sqrt.f64 #s(literal 8 binary64)))))) (sqrt.f64 (+.f64 (sqrt.f64 (fma.f64 #s(literal 4 binary64) (*.f64 (/.f64 (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 x-scale x-scale)) (/.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 y-scale y-scale))) (pow.f64 (-.f64 (/.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 x-scale x-scale)) (/.f64 (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 y-scale y-scale))) #s(literal 2 binary64)))) (+.f64 (/.f64 (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 y-scale y-scale)) (/.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 x-scale x-scale)))))))
28.1%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) b) (*.f64 (*.f64 y-scale (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64)))))
28.2%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) b) (*.f64 (*.f64 y-scale (exp.f64 (*.f64 (log.f64 #s(literal 2 binary64)) #s(literal 1/2 binary64)))) (sqrt.f64 #s(literal 8 binary64)))))
41.6%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (*.f64 (hypot.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))))) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) #s(literal 1/4 binary64)))))
6.3%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 x-scale (fma.f64 #s(literal 1/8 binary64) (*.f64 (/.f64 (*.f64 (*.f64 y-scale (sqrt.f64 #s(literal 8 binary64))) (fma.f64 #s(literal 1/2 binary64) (/.f64 (fma.f64 (*.f64 #s(literal -2 binary64) (fma.f64 (*.f64 a a) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (*.f64 b b) (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))))) (/.f64 (fma.f64 (*.f64 a a) (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (*.f64 b b) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)))) (*.f64 y-scale y-scale)) (*.f64 #s(literal 4 binary64) (/.f64 (*.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))) (pow.f64 (*.f64 (+.f64 b a) (-.f64 b a)) #s(literal 2 binary64))) (*.f64 y-scale y-scale)))) (/.f64 (fma.f64 (*.f64 a a) (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (*.f64 b b) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)))) (*.f64 y-scale y-scale))) (fma.f64 (*.f64 a a) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (*.f64 b b) (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)))))) (*.f64 x-scale x-scale)) (sqrt.f64 (/.f64 #s(literal 1 binary64) (*.f64 #s(literal 2 binary64) (/.f64 (fma.f64 (*.f64 a a) (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (*.f64 b b) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)))) (*.f64 y-scale y-scale)))))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 y-scale (sqrt.f64 #s(literal 8 binary64)))) (sqrt.f64 (*.f64 #s(literal 2 binary64) (/.f64 (fma.f64 (*.f64 a a) (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (*.f64 b b) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)))) (*.f64 y-scale y-scale))))))))
9.7%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 a (fma.f64 #s(literal 1/8 binary64) (*.f64 (/.f64 (*.f64 (*.f64 x-scale y-scale) (*.f64 (sqrt.f64 #s(literal 8 binary64)) (fma.f64 (*.f64 #s(literal 1/2 binary64) (fma.f64 #s(literal -8 binary64) (/.f64 (*.f64 (*.f64 (*.f64 b b) (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))) (*.f64 (*.f64 x-scale x-scale) (*.f64 y-scale y-scale))) (*.f64 #s(literal 2 binary64) (*.f64 (-.f64 (/.f64 (*.f64 (*.f64 b b) (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))) (*.f64 x-scale x-scale)) (/.f64 (*.f64 (*.f64 b b) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))) (*.f64 y-scale y-scale))) (-.f64 (/.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 x-scale x-scale)) (/.f64 (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 y-scale y-scale))))))) (sqrt.f64 (/.f64 #s(literal 1 binary64) (fma.f64 #s(literal 4 binary64) (*.f64 (/.f64 (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 x-scale x-scale)) (/.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 y-scale y-scale))) (pow.f64 (-.f64 (/.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 x-scale x-scale)) (/.f64 (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 y-scale y-scale))) #s(literal 2 binary64))))) (+.f64 (/.f64 (*.f64 (*.f64 b b) (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))) (*.f64 x-scale x-scale)) (/.f64 (*.f64 (*.f64 b b) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))) (*.f64 y-scale y-scale)))))) (*.f64 a a)) (sqrt.f64 (/.f64 #s(literal 1 binary64) (+.f64 (sqrt.f64 (fma.f64 #s(literal 4 binary64) (*.f64 (/.f64 (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 x-scale x-scale)) (/.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 y-scale y-scale))) (pow.f64 (-.f64 (/.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 x-scale x-scale)) (/.f64 (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 y-scale y-scale))) #s(literal 2 binary64)))) (+.f64 (/.f64 (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 y-scale y-scale)) (/.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 x-scale x-scale))))))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 x-scale (*.f64 y-scale (sqrt.f64 #s(literal 8 binary64))))) (sqrt.f64 (+.f64 (sqrt.f64 (fma.f64 #s(literal 4 binary64) (*.f64 (/.f64 (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 x-scale x-scale)) (/.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 y-scale y-scale))) (pow.f64 (-.f64 (/.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 x-scale x-scale)) (/.f64 (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 y-scale y-scale))) #s(literal 2 binary64)))) (+.f64 (/.f64 (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 y-scale y-scale)) (/.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 x-scale x-scale)))))))))
42.3%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (+ (* (/ (* (* (* (sqrt 8) x-scale) (+ (* (/ (+ (* (/ 4 x-scale) (/ (* (* (pow (* (+ b a) (- b a)) 2) (pow (sin (* (* (PI) angle) 1/180)) 2)) (pow (cos (* -1/180 (* (PI) angle))) 2)) x-scale)) (* (* -2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale))) 1/2) (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a))))) (sqrt (/ 1 (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))))) (* y-scale y-scale)) 1/8) (* (* 1/4 (* (sqrt 8) x-scale)) (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))))) y-scale) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 y-scale (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64)))) (sqrt.f64 (fma.f64 (*.f64 a a) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (*.f64 b b) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))))))))
17.5%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (+ (* (/ (* (* (* (sqrt 8) x-scale) (+ (* (/ (+ (* (/ 4 x-scale) (/ (* (* (pow (* (+ b a) (- b a)) 2) (pow (sin (* (* (PI) angle) 1/180)) 2)) (pow (cos (* -1/180 (* (PI) angle))) 2)) x-scale)) (* (* -2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale))) 1/2) (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a))))) (sqrt (/ 1 (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))))) (* y-scale y-scale)) 1/8) (* (* 1/4 (* (sqrt 8) x-scale)) (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))))) y-scale) (*.f64 y-scale (fma.f64 #s(literal 1/8 binary64) (/.f64 (*.f64 (*.f64 x-scale x-scale) (*.f64 (sqrt.f64 #s(literal 1/2 binary64)) (*.f64 (sqrt.f64 #s(literal 8 binary64)) (*.f64 #s(literal 0 binary64) (*.f64 a a))))) (*.f64 b (*.f64 y-scale y-scale))) (*.f64 (*.f64 #s(literal 1/4 binary64) b) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))))))
3.0%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (+ (* (/ (* (* (* (sqrt 8) x-scale) (+ (* (/ (+ (* (/ 4 x-scale) (/ (* (* (pow (* (+ b a) (- b a)) 2) (pow (sin (* (* (PI) angle) 1/180)) 2)) (pow (cos (* -1/180 (* (PI) angle))) 2)) x-scale)) (* (* -2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale))) 1/2) (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a))))) (sqrt (/ 1 (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))))) (* y-scale y-scale)) 1/8) (* (* 1/4 (* (sqrt 8) x-scale)) (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))))) y-scale) (neg.f64 (*.f64 (*.f64 b y-scale) (fma.f64 #s(literal 1/8 binary64) (*.f64 (/.f64 (*.f64 x-scale x-scale) (*.f64 y-scale y-scale)) (/.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 1/2 binary64)) (sqrt.f64 #s(literal 8 binary64))) (fma.f64 #s(literal 1/2 binary64) (/.f64 (*.f64 (*.f64 x-scale x-scale) (*.f64 (/.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))) (*.f64 x-scale x-scale)) #s(literal 2 binary64))) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)))) (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))))) (*.f64 (*.f64 #s(literal 1/4 binary64) (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64))))) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64)))))))))
6.0%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (+ (* (/ (* (* (* (sqrt 8) x-scale) (+ (* (/ (+ (* (/ 4 x-scale) (/ (* (* (pow (* (+ b a) (- b a)) 2) (pow (sin (* (* (PI) angle) 1/180)) 2)) (pow (cos (* -1/180 (* (PI) angle))) 2)) x-scale)) (* (* -2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale))) 1/2) (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a))))) (sqrt (/ 1 (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))))) (* y-scale y-scale)) 1/8) (* (* 1/4 (* (sqrt 8) x-scale)) (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))))) y-scale) (neg.f64 (*.f64 (*.f64 a y-scale) (fma.f64 #s(literal 1/8 binary64) (*.f64 (/.f64 (*.f64 x-scale x-scale) (*.f64 y-scale y-scale)) (/.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 1/2 binary64)) (sqrt.f64 #s(literal 8 binary64))) (fma.f64 #s(literal 1/2 binary64) (/.f64 (*.f64 (*.f64 x-scale x-scale) (*.f64 (/.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))) (*.f64 x-scale x-scale)) #s(literal 2 binary64))) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)))) (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))))) (*.f64 (*.f64 #s(literal 1/4 binary64) (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64)))))))))
2.7%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (+ (* (/ (* (* (* (sqrt 8) x-scale) (+ (* (/ (+ (* (/ 4 x-scale) (/ (* (* (pow (* (+ b a) (- b a)) 2) (pow (sin (* (* (PI) angle) 1/180)) 2)) (pow (cos (* -1/180 (* (PI) angle))) 2)) x-scale)) (* (* -2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale))) 1/2) (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a))))) (sqrt (/ 1 (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))))) (* y-scale y-scale)) 1/8) (* (* 1/4 (* (sqrt 8) x-scale)) (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))))) y-scale) (neg.f64 (*.f64 b (fma.f64 #s(literal -1/4 binary64) (*.f64 (/.f64 (*.f64 x-scale x-scale) b) (/.f64 (*.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (sqrt.f64 #s(literal 1/2 binary64)) (*.f64 (sqrt.f64 #s(literal 8 binary64)) (*.f64 a #s(literal 0 binary64))))) (*.f64 y-scale (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64))))))) (*.f64 y-scale (fma.f64 #s(literal 1/8 binary64) (*.f64 (/.f64 (*.f64 x-scale x-scale) (*.f64 y-scale y-scale)) (/.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 1/2 binary64)) (sqrt.f64 #s(literal 8 binary64))) (fma.f64 #s(literal 1/2 binary64) (/.f64 (*.f64 (*.f64 x-scale x-scale) (*.f64 (/.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))) (*.f64 x-scale x-scale)) #s(literal 2 binary64))) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)))) (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))))) (*.f64 (*.f64 #s(literal 1/4 binary64) (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64))))) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64)))))))))))
6.2%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (+ (* (/ (* (* (* (sqrt 8) x-scale) (+ (* (/ (+ (* (/ 4 x-scale) (/ (* (* (pow (* (+ b a) (- b a)) 2) (pow (sin (* (* (PI) angle) 1/180)) 2)) (pow (cos (* -1/180 (* (PI) angle))) 2)) x-scale)) (* (* -2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale))) 1/2) (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a))))) (sqrt (/ 1 (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))))) (* y-scale y-scale)) 1/8) (* (* 1/4 (* (sqrt 8) x-scale)) (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))))) y-scale) (neg.f64 (*.f64 a (fma.f64 #s(literal -1/4 binary64) (*.f64 (/.f64 (*.f64 x-scale x-scale) a) (/.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (sqrt.f64 #s(literal 1/2 binary64)) (*.f64 (sqrt.f64 #s(literal 8 binary64)) (*.f64 b #s(literal 0 binary64))))) (*.f64 y-scale (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))))) (*.f64 y-scale (fma.f64 #s(literal 1/8 binary64) (*.f64 (/.f64 (*.f64 x-scale x-scale) (*.f64 y-scale y-scale)) (/.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 1/2 binary64)) (sqrt.f64 #s(literal 8 binary64))) (fma.f64 #s(literal 1/2 binary64) (/.f64 (*.f64 (*.f64 x-scale x-scale) (*.f64 (/.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))) (*.f64 x-scale x-scale)) #s(literal 2 binary64))) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)))) (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))))) (*.f64 (*.f64 #s(literal 1/4 binary64) (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64)))))))))))
23.4%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale)))) (fma.f64 #s(literal 1/8 binary64) (/.f64 (*.f64 (*.f64 (*.f64 angle angle) y-scale) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (*.f64 (sqrt.f64 #s(literal 8 binary64)) (fma.f64 (*.f64 #s(literal -1/32400 binary64) (*.f64 b b)) (*.f64 (PI.f64) (PI.f64)) (*.f64 (*.f64 #s(literal 1/32400 binary64) (*.f64 a a)) (*.f64 (PI.f64) (PI.f64))))))) b) (*.f64 (*.f64 #s(literal 1/4 binary64) b) (*.f64 (*.f64 y-scale (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64)))))))
24.4%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale)))) (*.f64 (*.f64 #s(literal 1/4 binary64) b) (*.f64 (*.f64 y-scale (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64))))) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64)))))))
12.5%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale)))) (*.f64 (*.f64 #s(literal 1/4 binary64) a) (*.f64 (*.f64 y-scale (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64)))))))
7.3%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale)))) (*.f64 (*.f64 #s(literal -1/4 binary64) b) (*.f64 (*.f64 y-scale (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64))))) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64)))))))
11.5%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale)))) (*.f64 (*.f64 #s(literal -1/4 binary64) a) (*.f64 (*.f64 y-scale (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64)))))))
13.6%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale)))) (neg.f64 (*.f64 a (fma.f64 #s(literal 1/8 binary64) (/.f64 (*.f64 (*.f64 (*.f64 b b) y-scale) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))) (*.f64 (*.f64 a a) (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))))) (*.f64 (*.f64 #s(literal 1/4 binary64) y-scale) (*.f64 (*.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64)))))))))
Compiler

Compiled 35 177 to 12 008 computations (65.9% saved)

simplify174.0ms (0.6%)

Memory
-23.2MiB live, 155.6MiB allocated; 16ms collecting garbage
Localize:

Found 20 expressions of interest:

NewMetricScoreProgram
cost-diff0
(*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale))
cost-diff0
(*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (exp.f64 (*.f64 (log.f64 (*.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64))) #s(literal 2 binary64))) #s(literal 1/2 binary64))))
cost-diff0
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (exp.f64 (*.f64 (log.f64 (*.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64))) #s(literal 2 binary64))) #s(literal 1/2 binary64)))))
cost-diff3
(exp.f64 (*.f64 (log.f64 (*.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64))) #s(literal 2 binary64))) #s(literal 1/2 binary64)))
cost-diff0
(*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale)
cost-diff0
(*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale))
cost-diff0
(*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale)) (/.f64 (*.f64 (hypot.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))))) (sqrt.f64 #s(literal 2 binary64))) (fabs.f64 x-scale)))
cost-diff0
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale)) (/.f64 (*.f64 (hypot.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))))) (sqrt.f64 #s(literal 2 binary64))) (fabs.f64 x-scale))))
cost-diff0
(*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale))
cost-diff0
(*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) #s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) (neg.f64 (*.f64 a (*.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) (sqrt.f64 #s(literal 2 binary64)))))))
cost-diff0
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) #s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) (neg.f64 (*.f64 a (*.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) (sqrt.f64 #s(literal 2 binary64))))))))
cost-diff1
(neg.f64 (*.f64 a (*.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) (sqrt.f64 #s(literal 2 binary64)))))
cost-diff0
(*.f64 #s(literal 1/4 binary64) b)
cost-diff0
(*.f64 (*.f64 #s(literal 1/4 binary64) b) y-scale)
cost-diff0
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (*.f64 #s(literal 1/4 binary64) b) y-scale) #s(literal 4 binary64)))
cost-diff4
(*.f64 (*.f64 (*.f64 #s(literal 1/4 binary64) b) y-scale) #s(literal 4 binary64))
cost-diff0
(*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)
cost-diff0
(*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale))
cost-diff0
(*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (sqrt.f64 (*.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64))) #s(literal 2 binary64))))
cost-diff0
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (sqrt.f64 (*.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64))) #s(literal 2 binary64)))))
Iterations

Useful iterations: 0 (0.0ms)

IterNodesCost
01191819
01621804
13771784
214541771
372091771
081971746
Stop Event
iter limit
node limit
iter limit
Calls
Call 1
Inputs
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (sqrt.f64 (*.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64))) #s(literal 2 binary64)))))
(*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (sqrt.f64 (*.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64))) #s(literal 2 binary64))))
(*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale))
#s(literal 1/4 binary64)
(*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)
(sqrt.f64 #s(literal 8 binary64))
#s(literal 8 binary64)
y-scale
(sqrt.f64 (*.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64))) #s(literal 2 binary64)))
(*.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64))) #s(literal 2 binary64))
(+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)))
(pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64))
(*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))))
a
(sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))
(*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))
#s(literal 1/180 binary64)
(*.f64 (PI.f64) angle)
(PI.f64)
angle
#s(literal 2 binary64)
(pow.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64))
(*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))))
b
(cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (*.f64 #s(literal 1/4 binary64) b) y-scale) #s(literal 4 binary64)))
(*.f64 (*.f64 (*.f64 #s(literal 1/4 binary64) b) y-scale) #s(literal 4 binary64))
(*.f64 (*.f64 #s(literal 1/4 binary64) b) y-scale)
(*.f64 #s(literal 1/4 binary64) b)
#s(literal 1/4 binary64)
b
y-scale
#s(literal 4 binary64)
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) #s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) (neg.f64 (*.f64 a (*.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) (sqrt.f64 #s(literal 2 binary64))))))))
(*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) #s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) (neg.f64 (*.f64 a (*.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) (sqrt.f64 #s(literal 2 binary64)))))))
(*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale))
#s(literal 1/4 binary64)
(*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)
(sqrt.f64 #s(literal 8 binary64))
#s(literal 8 binary64)
y-scale
#s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) (neg.f64 (*.f64 a (*.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) (sqrt.f64 #s(literal 2 binary64))))))
(neg.f64 (*.f64 a (*.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) (sqrt.f64 #s(literal 2 binary64)))))
(*.f64 a (*.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) (sqrt.f64 #s(literal 2 binary64))))
a
(*.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) (sqrt.f64 #s(literal 2 binary64)))
(sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))
(*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))
#s(literal 1/180 binary64)
(*.f64 angle (PI.f64))
angle
(PI.f64)
(sqrt.f64 #s(literal 2 binary64))
#s(literal 2 binary64)
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale)) (/.f64 (*.f64 (hypot.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))))) (sqrt.f64 #s(literal 2 binary64))) (fabs.f64 x-scale))))
(*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale)) (/.f64 (*.f64 (hypot.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))))) (sqrt.f64 #s(literal 2 binary64))) (fabs.f64 x-scale)))
(*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale))
#s(literal 1/4 binary64)
(*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale)
(*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)
(sqrt.f64 #s(literal 8 binary64))
#s(literal 8 binary64)
y-scale
x-scale
(/.f64 (*.f64 (hypot.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))))) (sqrt.f64 #s(literal 2 binary64))) (fabs.f64 x-scale))
(*.f64 (hypot.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))))) (sqrt.f64 #s(literal 2 binary64)))
(hypot.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))))
(*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))))
b
(cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))
(*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))
#s(literal 1/180 binary64)
(*.f64 (PI.f64) angle)
(PI.f64)
angle
(*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))))
a
(sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))
(sqrt.f64 #s(literal 2 binary64))
#s(literal 2 binary64)
(fabs.f64 x-scale)
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (exp.f64 (*.f64 (log.f64 (*.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64))) #s(literal 2 binary64))) #s(literal 1/2 binary64)))))
(*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (exp.f64 (*.f64 (log.f64 (*.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64))) #s(literal 2 binary64))) #s(literal 1/2 binary64))))
(*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale))
#s(literal 1/4 binary64)
(*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)
(sqrt.f64 #s(literal 8 binary64))
#s(literal 8 binary64)
y-scale
(exp.f64 (*.f64 (log.f64 (*.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64))) #s(literal 2 binary64))) #s(literal 1/2 binary64)))
(*.f64 (log.f64 (*.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64))) #s(literal 2 binary64))) #s(literal 1/2 binary64))
(log.f64 (*.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64))) #s(literal 2 binary64)))
(*.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64))) #s(literal 2 binary64))
(+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)))
(pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64))
(*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))))
a
(sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))
(*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))
#s(literal 1/180 binary64)
(*.f64 (PI.f64) angle)
(PI.f64)
angle
#s(literal 2 binary64)
(pow.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64))
(*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))))
b
(cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))
#s(literal 1/2 binary64)
Outputs
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (sqrt.f64 (*.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64))) #s(literal 2 binary64)))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (sqrt.f64 (*.f64 (+.f64 (pow.f64 (*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) b) #s(literal 2 binary64)) (pow.f64 (*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) a) #s(literal 2 binary64))) #s(literal 2 binary64))) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) #s(literal 1/4 binary64))))
(*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (sqrt.f64 (*.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64))) #s(literal 2 binary64))))
(*.f64 (sqrt.f64 (*.f64 (+.f64 (pow.f64 (*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) b) #s(literal 2 binary64)) (pow.f64 (*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) a) #s(literal 2 binary64))) #s(literal 2 binary64))) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) #s(literal 1/4 binary64)))
(*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale))
(*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) #s(literal 1/4 binary64))
#s(literal 1/4 binary64)
(*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)
(sqrt.f64 #s(literal 8 binary64))
#s(literal 8 binary64)
y-scale
(sqrt.f64 (*.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64))) #s(literal 2 binary64)))
(sqrt.f64 (*.f64 (+.f64 (pow.f64 (*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) b) #s(literal 2 binary64)) (pow.f64 (*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) a) #s(literal 2 binary64))) #s(literal 2 binary64)))
(*.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64))) #s(literal 2 binary64))
(*.f64 (+.f64 (pow.f64 (*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) b) #s(literal 2 binary64)) (pow.f64 (*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) a) #s(literal 2 binary64))) #s(literal 2 binary64))
(+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)))
(+.f64 (pow.f64 (*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) b) #s(literal 2 binary64)) (pow.f64 (*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) a) #s(literal 2 binary64)))
(pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64))
(pow.f64 (*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) a) #s(literal 2 binary64))
(*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))))
(*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) a)
a
(sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))
(sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))
(*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))
(*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))
#s(literal 1/180 binary64)
(*.f64 (PI.f64) angle)
(PI.f64)
angle
#s(literal 2 binary64)
(pow.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64))
(pow.f64 (*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) b) #s(literal 2 binary64))
(*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))))
(*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) b)
b
(cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))
(cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle)))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (*.f64 #s(literal 1/4 binary64) b) y-scale) #s(literal 4 binary64)))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 y-scale b))
(*.f64 (*.f64 (*.f64 #s(literal 1/4 binary64) b) y-scale) #s(literal 4 binary64))
(*.f64 y-scale b)
(*.f64 (*.f64 #s(literal 1/4 binary64) b) y-scale)
(*.f64 #s(literal 1/4 binary64) b)
#s(literal 1/4 binary64)
b
y-scale
#s(literal 4 binary64)
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) #s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) (neg.f64 (*.f64 a (*.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) (sqrt.f64 #s(literal 2 binary64))))))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 #s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) a) (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))))) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) #s(literal 1/4 binary64))))
(*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) #s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) (neg.f64 (*.f64 a (*.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) (sqrt.f64 #s(literal 2 binary64)))))))
(*.f64 #s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) a) (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))))) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) #s(literal 1/4 binary64)))
(*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale))
(*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) #s(literal 1/4 binary64))
#s(literal 1/4 binary64)
(*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)
(sqrt.f64 #s(literal 8 binary64))
#s(literal 8 binary64)
y-scale
#s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) (neg.f64 (*.f64 a (*.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) (sqrt.f64 #s(literal 2 binary64))))))
#s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) a) (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle)))))
(neg.f64 (*.f64 a (*.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) (sqrt.f64 #s(literal 2 binary64)))))
(*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) a) (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))))
(*.f64 a (*.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) (sqrt.f64 #s(literal 2 binary64))))
(*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) a) (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))))
a
(*.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) (sqrt.f64 #s(literal 2 binary64)))
(*.f64 (sqrt.f64 #s(literal 2 binary64)) (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))))
(sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))
(sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))
(*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))
(*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))
#s(literal 1/180 binary64)
(*.f64 angle (PI.f64))
(*.f64 (PI.f64) angle)
angle
(PI.f64)
(sqrt.f64 #s(literal 2 binary64))
#s(literal 2 binary64)
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale)) (/.f64 (*.f64 (hypot.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))))) (sqrt.f64 #s(literal 2 binary64))) (fabs.f64 x-scale))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (/.f64 (sqrt.f64 #s(literal 2 binary64)) (fabs.f64 x-scale)) (*.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale) #s(literal 1/4 binary64))) (hypot.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) a) (*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) b))))
(*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale)) (/.f64 (*.f64 (hypot.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))))) (sqrt.f64 #s(literal 2 binary64))) (fabs.f64 x-scale)))
(*.f64 (*.f64 (/.f64 (sqrt.f64 #s(literal 2 binary64)) (fabs.f64 x-scale)) (*.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale) #s(literal 1/4 binary64))) (hypot.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) a) (*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) b)))
(*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale))
(*.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale) #s(literal 1/4 binary64))
#s(literal 1/4 binary64)
(*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale)
(*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)
(sqrt.f64 #s(literal 8 binary64))
#s(literal 8 binary64)
y-scale
x-scale
(/.f64 (*.f64 (hypot.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))))) (sqrt.f64 #s(literal 2 binary64))) (fabs.f64 x-scale))
(*.f64 (/.f64 (sqrt.f64 #s(literal 2 binary64)) (fabs.f64 x-scale)) (hypot.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) a) (*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) b)))
(*.f64 (hypot.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))))) (sqrt.f64 #s(literal 2 binary64)))
(*.f64 (hypot.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) a) (*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) b)) (sqrt.f64 #s(literal 2 binary64)))
(hypot.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))))
(hypot.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) a) (*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) b))
(*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))))
(*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) b)
b
(cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))
(cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle)))
(*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))
(*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))
#s(literal 1/180 binary64)
(*.f64 (PI.f64) angle)
(PI.f64)
angle
(*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))))
(*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) a)
a
(sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))
(sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))
(sqrt.f64 #s(literal 2 binary64))
#s(literal 2 binary64)
(fabs.f64 x-scale)
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (exp.f64 (*.f64 (log.f64 (*.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64))) #s(literal 2 binary64))) #s(literal 1/2 binary64)))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (sqrt.f64 (*.f64 (+.f64 (pow.f64 (*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) b) #s(literal 2 binary64)) (pow.f64 (*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) a) #s(literal 2 binary64))) #s(literal 2 binary64))) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) #s(literal 1/4 binary64))))
(*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (exp.f64 (*.f64 (log.f64 (*.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64))) #s(literal 2 binary64))) #s(literal 1/2 binary64))))
(*.f64 (sqrt.f64 (*.f64 (+.f64 (pow.f64 (*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) b) #s(literal 2 binary64)) (pow.f64 (*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) a) #s(literal 2 binary64))) #s(literal 2 binary64))) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) #s(literal 1/4 binary64)))
(*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale))
(*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) #s(literal 1/4 binary64))
#s(literal 1/4 binary64)
(*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)
(sqrt.f64 #s(literal 8 binary64))
#s(literal 8 binary64)
y-scale
(exp.f64 (*.f64 (log.f64 (*.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64))) #s(literal 2 binary64))) #s(literal 1/2 binary64)))
(sqrt.f64 (*.f64 (+.f64 (pow.f64 (*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) b) #s(literal 2 binary64)) (pow.f64 (*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) a) #s(literal 2 binary64))) #s(literal 2 binary64)))
(*.f64 (log.f64 (*.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64))) #s(literal 2 binary64))) #s(literal 1/2 binary64))
(*.f64 #s(literal 1/2 binary64) (log.f64 (*.f64 (+.f64 (pow.f64 (*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) b) #s(literal 2 binary64)) (pow.f64 (*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) a) #s(literal 2 binary64))) #s(literal 2 binary64))))
(log.f64 (*.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64))) #s(literal 2 binary64)))
(log.f64 (*.f64 (+.f64 (pow.f64 (*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) b) #s(literal 2 binary64)) (pow.f64 (*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) a) #s(literal 2 binary64))) #s(literal 2 binary64)))
(*.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64))) #s(literal 2 binary64))
(*.f64 (+.f64 (pow.f64 (*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) b) #s(literal 2 binary64)) (pow.f64 (*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) a) #s(literal 2 binary64))) #s(literal 2 binary64))
(+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)))
(+.f64 (pow.f64 (*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) b) #s(literal 2 binary64)) (pow.f64 (*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) a) #s(literal 2 binary64)))
(pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64))
(pow.f64 (*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) a) #s(literal 2 binary64))
(*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))))
(*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) a)
a
(sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))
(sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))
(*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))
(*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))
#s(literal 1/180 binary64)
(*.f64 (PI.f64) angle)
(PI.f64)
angle
#s(literal 2 binary64)
(pow.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64))
(pow.f64 (*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) b) #s(literal 2 binary64))
(*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))))
(*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) b)
b
(cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))
(cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle)))
#s(literal 1/2 binary64)

localize574.0ms (2%)

Memory
28.5MiB live, 733.9MiB allocated; 88ms collecting garbage
Localize:

Found 20 expressions of interest:

NewMetricScoreProgram
accuracy25.72862200828294
(log.f64 (*.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64))) #s(literal 2 binary64)))
accuracy26.789927625992473
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (exp.f64 (*.f64 (log.f64 (*.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64))) #s(literal 2 binary64))) #s(literal 1/2 binary64)))))
accuracy30.46514388629209
(sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))
accuracy30.66031287291737
(cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))
accuracy12.532940623583235
(*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale)) (/.f64 (*.f64 (hypot.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))))) (sqrt.f64 #s(literal 2 binary64))) (fabs.f64 x-scale)))
accuracy26.789927625992473
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale)) (/.f64 (*.f64 (hypot.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))))) (sqrt.f64 #s(literal 2 binary64))) (fabs.f64 x-scale))))
accuracy30.46514388629209
(sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))
accuracy30.66031287291737
(cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))
accuracy0.42578125
(*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)
accuracy26.789927625992473
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) #s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) (neg.f64 (*.f64 a (*.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) (sqrt.f64 #s(literal 2 binary64))))))))
accuracy30.46514388629209
(sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))
accuracy47.052980525667806
#s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) (neg.f64 (*.f64 a (*.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) (sqrt.f64 #s(literal 2 binary64))))))
accuracy0.0
(*.f64 (*.f64 #s(literal 1/4 binary64) b) y-scale)
accuracy0.0
(*.f64 #s(literal 1/4 binary64) b)
accuracy0.01171875
(*.f64 (*.f64 (*.f64 #s(literal 1/4 binary64) b) y-scale) #s(literal 4 binary64))
accuracy45.91492549090528
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (*.f64 #s(literal 1/4 binary64) b) y-scale) #s(literal 4 binary64)))
accuracy24.875505631829796
(sqrt.f64 (*.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64))) #s(literal 2 binary64)))
accuracy26.789927625992473
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (sqrt.f64 (*.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64))) #s(literal 2 binary64)))))
accuracy30.46514388629209
(sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))
accuracy30.66031287291737
(cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))
Samples
377.0ms140×1valid
103.0ms116×0valid
Compiler

Compiled 1 714 to 110 computations (93.6% saved)

Precisions
Click to see histograms. Total time spent on operations: 416.0ms
ival-mult: 126.0ms (30.3% of total)
ival-pow2: 53.0ms (12.8% of total)
ival-sin: 31.0ms (7.5% of total)
adjust: 30.0ms (7.2% of total)
ival-div: 28.0ms (6.7% of total)
ival-cos: 24.0ms (5.8% of total)
ival-hypot: 24.0ms (5.8% of total)
ival-cosu: 17.0ms (4.1% of total)
const: 16.0ms (3.8% of total)
ival-sinu: 16.0ms (3.8% of total)
ival-sqrt: 14.0ms (3.4% of total)
ival-add: 12.0ms (2.9% of total)
ival-neg: 7.0ms (1.7% of total)
ival-log: 6.0ms (1.4% of total)
ival-exp: 4.0ms (1% of total)
ival-sub: 3.0ms (0.7% of total)
ival-pi: 2.0ms (0.5% of total)
ival-fabs: 1.0ms (0.2% of total)
exact: 1.0ms (0.2% of total)
ival-true: 0.0ms (0% of total)
ival-assert: 0.0ms (0% of total)

series384.0ms (1.4%)

Memory
20.3MiB live, 598.6MiB allocated; 127ms collecting garbage
Counts
24 → 298
Calls
Call 1
Inputs
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (sqrt.f64 (*.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64))) #s(literal 2 binary64)))))
(*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (sqrt.f64 (*.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64))) #s(literal 2 binary64))))
(*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale))
(*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)
(*.f64 (*.f64 (*.f64 #s(literal 1/4 binary64) b) y-scale) #s(literal 4 binary64))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (*.f64 #s(literal 1/4 binary64) b) y-scale) #s(literal 4 binary64)))
(*.f64 (*.f64 #s(literal 1/4 binary64) b) y-scale)
(*.f64 #s(literal 1/4 binary64) b)
(neg.f64 (*.f64 a (*.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) (sqrt.f64 #s(literal 2 binary64)))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) #s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) (neg.f64 (*.f64 a (*.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) (sqrt.f64 #s(literal 2 binary64))))))))
(*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) #s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) (neg.f64 (*.f64 a (*.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) (sqrt.f64 #s(literal 2 binary64)))))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale)) (/.f64 (*.f64 (hypot.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))))) (sqrt.f64 #s(literal 2 binary64))) (fabs.f64 x-scale))))
(*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale)) (/.f64 (*.f64 (hypot.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))))) (sqrt.f64 #s(literal 2 binary64))) (fabs.f64 x-scale)))
(*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale))
(*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale)
(exp.f64 (*.f64 (log.f64 (*.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64))) #s(literal 2 binary64))) #s(literal 1/2 binary64)))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (exp.f64 (*.f64 (log.f64 (*.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64))) #s(literal 2 binary64))) #s(literal 1/2 binary64)))))
(*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (exp.f64 (*.f64 (log.f64 (*.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64))) #s(literal 2 binary64))) #s(literal 1/2 binary64))))
(cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))
(sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))
(sqrt.f64 (*.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64))) #s(literal 2 binary64)))
#s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) (neg.f64 (*.f64 a (*.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) (sqrt.f64 #s(literal 2 binary64))))))
(sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))
(log.f64 (*.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64))) #s(literal 2 binary64)))
Outputs
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(hole binary64 (* 1/4 (* (* x-scale (* y-scale (sqrt 8))) (sqrt (+ (sqrt (+ (* 4 (/ (* (pow b 4) (* (pow (cos (* 1/180 (* angle (PI)))) 2) (pow (sin (* 1/180 (* angle (PI)))) 2))) (* (pow x-scale 2) (pow y-scale 2)))) (pow (- (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)) (/ (* (pow b 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow y-scale 2))) 2))) (+ (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)) (/ (* (pow b 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow y-scale 2)))))))))
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#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2))) #s(hole binary64 (+ (* 1/4 (* a (* y-scale (* (sin (* 1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8)))))) (* (pow b 2) (+ (* 1/8 (/ (* y-scale (* (pow (cos (* 1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8)))) (* a (sin (* 1/180 (* angle (PI))))))) (* (pow b 2) (+ (* -1/32 (/ (* y-scale (* (pow (cos (* 1/180 (* angle (PI)))) 4) (* (sqrt 2) (sqrt 8)))) (* (pow a 3) (pow (sin (* 1/180 (* angle (PI)))) 3)))) (* 1/64 (/ (* (pow b 2) (* y-scale (* (pow (cos (* 1/180 (* angle (PI)))) 6) (* (sqrt 2) (sqrt 8))))) (* (pow a 5) (pow (sin (* 1/180 (* angle (PI)))) 5)))))))))))
#s(approx (* (* (* 1/4 b) y-scale) 4) #s(hole binary64 (* b y-scale)))
#s(approx (* (* 1/4 b) y-scale) #s(hole binary64 (* 1/4 (* b y-scale))))
#s(approx (* 1/4 b) #s(hole binary64 (* 1/4 b)))
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#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) #s(hole binary64 (+ (* 1/4 (* a (* y-scale (* (sin (* 1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8)))))) (* (pow b 2) (+ (* -1/32 (/ (* (pow b 2) (* y-scale (* (pow (cos (* -1/180 (* angle (PI)))) 4) (* (sqrt 2) (sqrt 8))))) (* (pow a 3) (pow (sin (* 1/180 (* angle (PI)))) 3)))) (* 1/8 (/ (* y-scale (* (pow (cos (* -1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8)))) (* a (sin (* 1/180 (* angle (PI))))))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) #s(hole binary64 (+ (* 1/4 (* a (* y-scale (* (sin (* 1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8)))))) (* (pow b 2) (+ (* 1/8 (/ (* y-scale (* (pow (cos (* -1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8)))) (* a (sin (* 1/180 (* angle (PI))))))) (* (pow b 2) (+ (* -1/32 (/ (* y-scale (* (pow (cos (* -1/180 (* angle (PI)))) 4) (* (sqrt 2) (sqrt 8)))) (* (pow a 3) (pow (sin (* 1/180 (* angle (PI)))) 3)))) (* 1/64 (/ (* (pow b 2) (* y-scale (* (pow (cos (* -1/180 (* angle (PI)))) 6) (* (sqrt 2) (sqrt 8))))) (* (pow a 5) (pow (sin (* 1/180 (* angle (PI)))) 5)))))))))))
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(pow x-scale 2)) (/ (pow a 2) (pow y-scale 2))) 2)))) (- (/ (pow b 2) (pow x-scale 2)) (/ (pow a 2) (pow y-scale 2))))) (+ (/ (* (pow a 2) (+ (* 1/12597120000 (pow (PI) 4)) (* 1/4199040000 (pow (PI) 4)))) (pow y-scale 2)) (/ (* (pow b 2) (+ (* 1/12597120000 (pow (PI) 4)) (* 1/4199040000 (pow (PI) 4)))) (pow x-scale 2)))))) (* 1/4 (/ (* (pow x-scale 2) (pow (+ (* -1/32400 (/ (* (pow a 2) (pow (PI) 2)) (pow y-scale 2))) (+ (* -1/32400 (/ (* (pow b 2) (pow (PI) 2)) (pow x-scale 2))) (+ (* 1/32400 (/ (* (pow a 2) (pow (PI) 2)) (pow x-scale 2))) (+ (* 1/32400 (/ (* (pow b 2) (pow (PI) 2)) (pow y-scale 2))) (* 1/2 (/ (+ (* 1/8100 (/ (* (pow (PI) 2) (pow (- (pow b 2) (pow a 2)) 2)) (* (pow x-scale 2) (pow y-scale 2)))) (* 2 (* (- (+ (* -1/32400 (/ (* (pow b 2) (pow (PI) 2)) (pow x-scale 2))) (* 1/32400 (/ (* (pow a 2) (pow (PI) 2)) (pow x-scale 2)))) (+ (* -1/32400 (/ (* (pow a 2) (pow (PI) 2)) (pow y-scale 2))) (* 1/32400 (/ (* (pow b 2) (pow (PI) 2)) (pow y-scale 2))))) (- (/ (pow b 2) (pow x-scale 2)) (/ (pow a 2) (pow y-scale 2)))))) (- (/ (pow b 2) (pow x-scale 2)) (/ (pow a 2) (pow y-scale 2))))))))) 2)) (* (pow b 2) (pow (sqrt 2) 2)))))))) (* b (sqrt 2)))))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2))) #s(hole binary64 (* 1/4 (* b (* y-scale (* (sqrt 2) (sqrt 8)))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2))) #s(hole binary64 (+ (* 1/8 (/ (* (pow angle 2) (* y-scale (* (sqrt 2) (* (sqrt 8) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))))))) b)) (* 1/4 (* b (* y-scale (* (sqrt 2) (sqrt 8))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2))) #s(hole binary64 (+ (* 1/4 (* b (* y-scale (* (sqrt 2) (sqrt 8))))) (* (pow angle 2) (+ (* 1/8 (/ (* y-scale (* (sqrt 2) (* (sqrt 8) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2))))))) b)) (* 1/8 (/ (* (pow angle 2) (* y-scale (* (sqrt 2) (* (sqrt 8) (- (+ (* -1/3149280000 (* (pow a 2) (pow (PI) 4))) (* (pow b 2) (+ (* 1/12597120000 (pow (PI) 4)) (* 1/4199040000 (pow (PI) 4))))) (* 1/4 (/ (pow (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))) 2) (pow b 2)))))))) b)))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2))) #s(hole binary64 (+ (* 1/4 (* b (* y-scale (* (sqrt 2) (sqrt 8))))) (* (pow angle 2) (+ (* 1/8 (/ (* y-scale (* (sqrt 2) (* (sqrt 8) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2))))))) b)) (* (pow angle 2) (+ (* 1/8 (/ (* y-scale (* (sqrt 2) (* (sqrt 8) (- (+ (* -1/3149280000 (* (pow a 2) (pow (PI) 4))) (* (pow b 2) (+ (* 1/12597120000 (pow (PI) 4)) (* 1/4199040000 (pow (PI) 4))))) (* 1/4 (/ (pow (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))) 2) (pow b 2))))))) b)) (* 1/8 (/ (* (pow angle 2) (* y-scale (* (sqrt 2) (* (sqrt 8) (- (+ (* (pow a 2) (+ (* 1/2040733440000000 (pow (PI) 6)) (* 1/1224440064000000 (pow (PI) 6)))) (* (pow b 2) (+ (* -1/816293376000000 (pow (PI) 6)) (* -1/12244400640000000 (pow (PI) 6))))) (* 1/2 (/ (* (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))) (- (+ (* -1/3149280000 (* (pow a 2) (pow (PI) 4))) (* (pow b 2) (+ (* 1/12597120000 (pow (PI) 4)) (* 1/4199040000 (pow (PI) 4))))) (* 1/4 (/ (pow (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))) 2) (pow b 2))))) (pow b 2)))))))) b)))))))))
#s(approx (neg (* a (* (sin (* 1/180 (* angle (PI)))) (sqrt 2)))) #s(hole binary64 (* -1/180 (* a (* angle (* (PI) (sqrt 2)))))))
#s(approx (neg (* a (* (sin (* 1/180 (* angle (PI)))) (sqrt 2)))) #s(hole binary64 (* angle (- (* 1/34992000 (* a (* (pow angle 2) (* (pow (PI) 3) (sqrt 2))))) (* 1/180 (* a (* (PI) (sqrt 2))))))))
#s(approx (neg (* a (* (sin (* 1/180 (* angle (PI)))) (sqrt 2)))) #s(hole binary64 (* angle (- (* (pow angle 2) (- (* -1/22674816000000 (* a (* (pow angle 2) (* (pow (PI) 5) (sqrt 2))))) (* -1/34992000 (* a (* (pow (PI) 3) (sqrt 2)))))) (* 1/180 (* a (* (PI) (sqrt 2))))))))
#s(approx (neg (* a (* (sin (* 1/180 (* angle (PI)))) (sqrt 2)))) #s(hole binary64 (* angle (- (* (pow angle 2) (- (* (pow angle 2) (- (* 1/30855889612800000000 (* a (* (pow angle 2) (* (pow (PI) 7) (sqrt 2))))) (* 1/22674816000000 (* a (* (pow (PI) 5) (sqrt 2)))))) (* -1/34992000 (* a (* (pow (PI) 3) (sqrt 2)))))) (* 1/180 (* a (* (PI) (sqrt 2))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) #s(hole binary64 (* 1/4 (* b (* y-scale (* (sqrt 2) (sqrt 8)))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) #s(hole binary64 (+ (* 1/8 (/ (* (pow angle 2) (* y-scale (* (sqrt 2) (* (sqrt 8) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))))))) b)) (* 1/4 (* b (* y-scale (* (sqrt 2) (sqrt 8))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) #s(hole binary64 (+ (* 1/4 (* b (* y-scale (* (sqrt 2) (sqrt 8))))) (* (pow angle 2) (+ (* 1/8 (/ (* y-scale (* (sqrt 2) (* (sqrt 8) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2))))))) b)) (* 1/8 (/ (* (pow angle 2) (* y-scale (* (sqrt 2) (* (sqrt 8) (- (+ (* -1/3149280000 (* (pow a 2) (pow (PI) 4))) (* (pow b 2) (+ (* 1/12597120000 (pow (PI) 4)) (* 1/4199040000 (pow (PI) 4))))) (* 1/4 (/ (pow (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))) 2) (pow b 2)))))))) b)))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) #s(hole binary64 (+ (* 1/4 (* b (* y-scale (* (sqrt 2) (sqrt 8))))) (* (pow angle 2) (+ (* 1/8 (/ (* y-scale (* (sqrt 2) (* (sqrt 8) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2))))))) b)) (* (pow angle 2) (+ (* 1/8 (/ (* y-scale (* (sqrt 2) (* (sqrt 8) (- (+ (* -1/3149280000 (* (pow a 2) (pow (PI) 4))) (* (pow b 2) (+ (* 1/12597120000 (pow (PI) 4)) (* 1/4199040000 (pow (PI) 4))))) (* 1/4 (/ (pow (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))) 2) (pow b 2))))))) b)) (* 1/8 (/ (* (pow angle 2) (* y-scale (* (sqrt 2) (* (sqrt 8) (- (+ (* (pow a 2) (+ (* 1/2040733440000000 (pow (PI) 6)) (* 1/1224440064000000 (pow (PI) 6)))) (* (pow b 2) (+ (* -1/816293376000000 (pow (PI) 6)) (* -1/12244400640000000 (pow (PI) 6))))) (* 1/2 (/ (* (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))) (- (+ (* -1/3149280000 (* (pow a 2) (pow (PI) 4))) (* (pow b 2) (+ (* 1/12597120000 (pow (PI) 4)) (* 1/4199040000 (pow (PI) 4))))) (* 1/4 (/ (pow (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))) 2) (pow b 2))))) (pow b 2)))))))) b)))))))))
#s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) #s(hole binary64 (* 1/4 (/ (* b (* x-scale (* y-scale (* (sqrt 2) (sqrt 8))))) (fabs x-scale)))))
#s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) #s(hole binary64 (+ (* 1/8 (/ (* (pow angle 2) (* x-scale (* y-scale (* (sqrt 2) (* (sqrt 8) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2))))))))) (* b (fabs x-scale)))) (* 1/4 (/ (* b (* x-scale (* y-scale (* (sqrt 2) (sqrt 8))))) (fabs x-scale))))))
#s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) #s(hole binary64 (+ (* 1/4 (/ (* b (* x-scale (* y-scale (* (sqrt 2) (sqrt 8))))) (fabs x-scale))) (* (pow angle 2) (+ (* 1/8 (/ (* x-scale (* y-scale (* (sqrt 2) (* (sqrt 8) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))))))) (* b (fabs x-scale)))) (* 1/8 (/ (* (pow angle 2) (* x-scale (* y-scale (* (sqrt 2) (* (sqrt 8) (- (+ (* -1/3149280000 (* (pow a 2) (pow (PI) 4))) (* (pow b 2) (+ (* 1/12597120000 (pow (PI) 4)) (* 1/4199040000 (pow (PI) 4))))) (* 1/4 (/ (pow (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))) 2) (pow b 2))))))))) (* b (fabs x-scale)))))))))
#s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) #s(hole binary64 (+ (* 1/4 (/ (* b (* x-scale (* y-scale (* (sqrt 2) (sqrt 8))))) (fabs x-scale))) (* (pow angle 2) (+ (* 1/8 (/ (* x-scale (* y-scale (* (sqrt 2) (* (sqrt 8) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))))))) (* b (fabs x-scale)))) (* (pow angle 2) (+ (* 1/8 (/ (* x-scale (* y-scale (* (sqrt 2) (* (sqrt 8) (- (+ (* -1/3149280000 (* (pow a 2) (pow (PI) 4))) (* (pow b 2) (+ (* 1/12597120000 (pow (PI) 4)) (* 1/4199040000 (pow (PI) 4))))) (* 1/4 (/ (pow (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))) 2) (pow b 2)))))))) (* b (fabs x-scale)))) (* 1/8 (/ (* (pow angle 2) (* x-scale (* y-scale (* (sqrt 2) (* (sqrt 8) (- (+ (* (pow a 2) (+ (* 1/2040733440000000 (pow (PI) 6)) (* 1/1224440064000000 (pow (PI) 6)))) (* (pow b 2) (+ (* -1/816293376000000 (pow (PI) 6)) (* -1/12244400640000000 (pow (PI) 6))))) (* 1/2 (/ (* (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))) (- (+ (* -1/3149280000 (* (pow a 2) (pow (PI) 4))) (* (pow b 2) (+ (* 1/12597120000 (pow (PI) 4)) (* 1/4199040000 (pow (PI) 4))))) (* 1/4 (/ (pow (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))) 2) (pow b 2))))) (pow b 2))))))))) (* b (fabs x-scale)))))))))))
#s(approx (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) 1/2)) #s(hole binary64 (* b (sqrt 2))))
#s(approx (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) 1/2)) #s(hole binary64 (+ (* b (sqrt 2)) (/ (* (pow angle 2) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2))))) (* b (sqrt 2))))))
#s(approx (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) 1/2)) #s(hole binary64 (+ (* b (sqrt 2)) (* (pow angle 2) (+ (* -1/32400 (/ (* b (pow (PI) 2)) (sqrt 2))) (+ (* 1/32400 (/ (* (pow a 2) (pow (PI) 2)) (* b (sqrt 2)))) (* 1/2 (/ (* (pow angle 2) (- (* 2 (+ (* -1/3149280000 (* (pow a 2) (pow (PI) 4))) (* (pow b 2) (+ (* 1/12597120000 (pow (PI) 4)) (* 1/4199040000 (pow (PI) 4)))))) (/ (pow (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))) 2) (* (pow b 2) (pow (sqrt 2) 2))))) (* b (sqrt 2))))))))))
#s(approx (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) 1/2)) #s(hole binary64 (+ (* b (sqrt 2)) (* (pow angle 2) (+ (* -1/32400 (/ (* b (pow (PI) 2)) (sqrt 2))) (+ (* 1/32400 (/ (* (pow a 2) (pow (PI) 2)) (* b (sqrt 2)))) (* (pow angle 2) (+ (* 1/2 (/ (* (pow angle 2) (- (* 2 (+ (* (pow a 2) (+ (* 1/2040733440000000 (pow (PI) 6)) (* 1/1224440064000000 (pow (PI) 6)))) (* (pow b 2) (+ (* -1/816293376000000 (pow (PI) 6)) (* -1/12244400640000000 (pow (PI) 6)))))) (/ (* (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))) (- (* 2 (+ (* -1/3149280000 (* (pow a 2) (pow (PI) 4))) (* (pow b 2) (+ (* 1/12597120000 (pow (PI) 4)) (* 1/4199040000 (pow (PI) 4)))))) (/ (pow (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))) 2) (* (pow b 2) (pow (sqrt 2) 2))))) (* (pow b 2) (pow (sqrt 2) 2))))) (* b (sqrt 2)))) (* 1/2 (/ (- (* 2 (+ (* -1/3149280000 (* (pow a 2) (pow (PI) 4))) (* (pow b 2) (+ (* 1/12597120000 (pow (PI) 4)) (* 1/4199040000 (pow (PI) 4)))))) (/ (pow (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))) 2) (* (pow b 2) (pow (sqrt 2) 2)))) (* b (sqrt 2))))))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) 1/2))) #s(hole binary64 (* 1/4 (* b (* y-scale (* (sqrt 2) (sqrt 8)))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) 1/2))) #s(hole binary64 (+ (* 1/8 (/ (* (pow angle 2) (* y-scale (* (sqrt 2) (* (sqrt 8) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))))))) b)) (* 1/4 (* b (* y-scale (* (sqrt 2) (sqrt 8))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) 1/2))) #s(hole binary64 (+ (* 1/4 (* b (* y-scale (* (sqrt 2) (sqrt 8))))) (* (pow angle 2) (+ (* 1/8 (/ (* y-scale (* (sqrt 2) (* (sqrt 8) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2))))))) b)) (* 1/8 (/ (* (pow angle 2) (* y-scale (* (sqrt 2) (* (sqrt 8) (- (+ (* -1/3149280000 (* (pow a 2) (pow (PI) 4))) (* (pow b 2) (+ (* 1/12597120000 (pow (PI) 4)) (* 1/4199040000 (pow (PI) 4))))) (* 1/4 (/ (pow (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))) 2) (pow b 2)))))))) b)))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) 1/2))) #s(hole binary64 (+ (* 1/4 (* b (* y-scale (* (sqrt 2) (sqrt 8))))) (* (pow angle 2) (+ (* 1/8 (/ (* y-scale (* (sqrt 2) (* (sqrt 8) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2))))))) b)) (* (pow angle 2) (+ (* 1/8 (/ (* y-scale (* (sqrt 2) (* (sqrt 8) (- (+ (* -1/3149280000 (* (pow a 2) (pow (PI) 4))) (* (pow b 2) (+ (* 1/12597120000 (pow (PI) 4)) (* 1/4199040000 (pow (PI) 4))))) (* 1/4 (/ (pow (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))) 2) (pow b 2))))))) b)) (* 1/8 (/ (* (pow angle 2) (* y-scale (* (sqrt 2) (* (sqrt 8) (- (+ (* (pow a 2) (+ (* 1/2040733440000000 (pow (PI) 6)) (* 1/1224440064000000 (pow (PI) 6)))) (* (pow b 2) (+ (* -1/816293376000000 (pow (PI) 6)) (* -1/12244400640000000 (pow (PI) 6))))) (* 1/2 (/ (* (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))) (- (+ (* -1/3149280000 (* (pow a 2) (pow (PI) 4))) (* (pow b 2) (+ (* 1/12597120000 (pow (PI) 4)) (* 1/4199040000 (pow (PI) 4))))) (* 1/4 (/ (pow (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))) 2) (pow b 2))))) (pow b 2)))))))) b)))))))))
#s(approx (cos (* 1/180 (* (PI) angle))) #s(hole binary64 1))
#s(approx (cos (* 1/180 (* (PI) angle))) #s(hole binary64 (+ 1 (* -1/64800 (* (pow angle 2) (pow (PI) 2))))))
#s(approx (cos (* 1/180 (* (PI) angle))) #s(hole binary64 (+ 1 (* (pow angle 2) (+ (* -1/64800 (pow (PI) 2)) (* 1/25194240000 (* (pow angle 2) (pow (PI) 4))))))))
#s(approx (cos (* 1/180 (* (PI) angle))) #s(hole binary64 (+ 1 (* (pow angle 2) (+ (* -1/64800 (pow (PI) 2)) (* (pow angle 2) (+ (* -1/24488801280000000 (* (pow angle 2) (pow (PI) 6))) (* 1/25194240000 (pow (PI) 4)))))))))
#s(approx (sin (* 1/180 (* (PI) angle))) #s(hole binary64 (* 1/180 (* angle (PI)))))
#s(approx (sin (* 1/180 (* (PI) angle))) #s(hole binary64 (* angle (+ (* -1/34992000 (* (pow angle 2) (pow (PI) 3))) (* 1/180 (PI))))))
#s(approx (sin (* 1/180 (* (PI) angle))) #s(hole binary64 (* angle (+ (* 1/180 (PI)) (* (pow angle 2) (+ (* -1/34992000 (pow (PI) 3)) (* 1/22674816000000 (* (pow angle 2) (pow (PI) 5)))))))))
#s(approx (sin (* 1/180 (* (PI) angle))) #s(hole binary64 (* angle (+ (* 1/180 (PI)) (* (pow angle 2) (+ (* -1/34992000 (pow (PI) 3)) (* (pow angle 2) (+ (* -1/30855889612800000000 (* (pow angle 2) (pow (PI) 7))) (* 1/22674816000000 (pow (PI) 5))))))))))
#s(approx (sqrt (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) #s(hole binary64 (* b (sqrt 2))))
#s(approx (sqrt (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) #s(hole binary64 (+ (* 1/2 (/ (* (pow angle 2) (* (sqrt 2) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))))) b)) (* b (sqrt 2)))))
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#s(approx (sin (* 1/180 (* angle (PI)))) #s(hole binary64 (* 1/180 (* angle (PI)))))
#s(approx (sin (* 1/180 (* angle (PI)))) #s(hole binary64 (* angle (+ (* -1/34992000 (* (pow angle 2) (pow (PI) 3))) (* 1/180 (PI))))))
#s(approx (sin (* 1/180 (* angle (PI)))) #s(hole binary64 (* angle (+ (* 1/180 (PI)) (* (pow angle 2) (+ (* -1/34992000 (pow (PI) 3)) (* 1/22674816000000 (* (pow angle 2) (pow (PI) 5)))))))))
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#s(approx (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) #s(hole binary64 (log (* 2 (pow b 2)))))
#s(approx (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) #s(hole binary64 (+ (log (* 2 (pow b 2))) (/ (* (pow angle 2) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2))))) (pow b 2)))))
#s(approx (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) #s(hole binary64 (+ (log (* 2 (pow b 2))) (* (pow angle 2) (+ (* -1/32400 (pow (PI) 2)) (+ (* 1/32400 (/ (* (pow a 2) (pow (PI) 2)) (pow b 2))) (* 1/24 (* (pow angle 2) (+ (* -12 (/ (pow (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))) 2) (pow b 4))) (* 24 (/ (+ (* -1/3149280000 (* (pow a 2) (pow (PI) 4))) (* (pow b 2) (+ (* 1/12597120000 (pow (PI) 4)) (* 1/4199040000 (pow (PI) 4))))) (pow b 2))))))))))))
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#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(hole binary64 (* 1/4 (* (* x-scale (* y-scale (sqrt 8))) (sqrt (+ (sqrt (+ (* 4 (/ (* (pow (cos (* 1/180 (* angle (PI)))) 2) (* (pow (sin (* 1/180 (* angle (PI)))) 2) (pow (- (pow b 2) (pow a 2)) 2))) (* (pow x-scale 2) (pow y-scale 2)))) (pow (- (+ (/ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)) (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))) (+ (/ (* (pow a 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow y-scale 2)) (/ (* (pow b 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow y-scale 2)))) 2))) (+ (/ (* (pow a 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow y-scale 2)) (+ (/ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)) (+ (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)) (/ (* (pow b 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow y-scale 2)))))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2))) #s(hole binary64 (* 1/4 (* (* y-scale (* (sqrt 2) (sqrt 8))) (sqrt (+ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) #s(hole binary64 (* 1/4 (* (* y-scale (* (sqrt 2) (sqrt 8))) (sqrt (+ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (* (pow b 2) (pow (cos (* -1/180 (* angle (PI)))) 2))))))))
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#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) 1/2))) #s(hole binary64 (* 1/4 (* (* y-scale (* (sqrt 2) (sqrt 8))) (sqrt (+ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2))))))))
#s(approx (cos (* 1/180 (* (PI) angle))) #s(hole binary64 (cos (* 1/180 (* angle (PI))))))
#s(approx (sin (* 1/180 (* (PI) angle))) #s(hole binary64 (sin (* 1/180 (* angle (PI))))))
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#s(approx (sin (* 1/180 (* angle (PI)))) #s(hole binary64 (sin (* 1/180 (* angle (PI))))))
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#s(approx (* (sqrt 8) y-scale) #s(hole binary64 (* y-scale (sqrt 8))))
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#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(hole binary64 (* y-scale (+ (* 1/8 (* (/ (* x-scale (* (sqrt 8) (+ (* 1/2 (/ (+ (* -2 (* (+ (* (pow a 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (* (pow b 2) (pow (sin (* 1/180 (* angle (PI)))) 2))) (+ (/ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)) (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))))) (* 4 (/ (* (pow (cos (* 1/180 (* angle (PI)))) 2) (* (pow (sin (* 1/180 (* angle (PI)))) 2) (pow (- (pow b 2) (pow a 2)) 2))) (pow x-scale 2)))) (+ (/ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)) (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))))) (+ (* (pow a 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (* (pow b 2) (pow (sin (* 1/180 (* angle (PI)))) 2)))))) (pow y-scale 2)) (sqrt (/ 1 (+ (* 2 (/ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))) (* 2 (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)))))))) (* 1/4 (* (* x-scale (sqrt 8)) (sqrt (+ (* 2 (/ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))) (* 2 (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)))))))))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(hole binary64 (* y-scale (+ (* 1/8 (* (/ (* x-scale (* (sqrt 8) (+ (* 1/2 (/ (+ (* -2 (* (+ (* (pow a 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (* (pow b 2) (pow (sin (* 1/180 (* angle (PI)))) 2))) (+ (/ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)) (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))))) (* 4 (/ (* (pow (cos (* 1/180 (* angle (PI)))) 2) (* (pow (sin (* 1/180 (* angle (PI)))) 2) (pow (- (pow b 2) (pow a 2)) 2))) (pow x-scale 2)))) (+ (/ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)) (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))))) (+ (* (pow a 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (* (pow b 2) (pow (sin (* 1/180 (* angle (PI)))) 2)))))) (pow y-scale 2)) (sqrt (/ 1 (+ (* 2 (/ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))) (* 2 (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)))))))) (+ (* 1/8 (* (/ (* x-scale (* (sqrt 8) (- (* 1/2 (/ (- (pow (+ (* (pow a 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (* (pow b 2) (pow (sin (* 1/180 (* angle (PI)))) 2))) 2) (* 1/4 (/ (pow (+ (* -2 (* (+ (* (pow a 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (* (pow b 2) (pow (sin (* 1/180 (* angle (PI)))) 2))) (+ (/ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)) (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))))) (* 4 (/ (* (pow (cos (* 1/180 (* angle (PI)))) 2) (* (pow (sin (* 1/180 (* angle (PI)))) 2) (pow (- (pow b 2) (pow a 2)) 2))) (pow x-scale 2)))) 2) (pow (+ (/ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)) (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))) 2)))) (+ (/ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)) (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))))) (* 1/4 (/ (pow (+ (* 1/2 (/ (+ (* -2 (* (+ (* (pow a 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (* (pow b 2) (pow (sin (* 1/180 (* angle (PI)))) 2))) (+ (/ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)) (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))))) (* 4 (/ (* (pow (cos (* 1/180 (* angle (PI)))) 2) (* (pow (sin (* 1/180 (* angle (PI)))) 2) (pow (- (pow b 2) (pow a 2)) 2))) (pow x-scale 2)))) (+ (/ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)) (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))))) (+ (* (pow a 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (* (pow b 2) (pow (sin (* 1/180 (* angle (PI)))) 2)))) 2) (+ (* 2 (/ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))) (* 2 (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))))))))) (pow y-scale 4)) (sqrt (/ 1 (+ (* 2 (/ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))) (* 2 (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)))))))) (* 1/4 (* (* x-scale (sqrt 8)) (sqrt (+ (* 2 (/ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))) (* 2 (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))))))))))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(hole binary64 (* y-scale (+ (* 1/8 (* (/ (* x-scale (* (sqrt 8) (+ (* 1/2 (/ (+ (* -2 (* (+ (* (pow a 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (* (pow b 2) (pow (sin (* 1/180 (* angle 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Calls

15 calls:

TimeVariablePointExpression
59.0ms
angle
@-inf
((/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2))) (* 1/4 (* (sqrt 8) y-scale)) (* (sqrt 8) y-scale) (* (* (* 1/4 b) y-scale) 4) (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* 1/4 b) y-scale) (* 1/4 b) (neg (* a (* (sin (* 1/180 (* angle (PI)))) (sqrt 2)))) (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (* (* (sqrt 8) y-scale) x-scale) (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) 1/2)) (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* 1/4 (* (sqrt 8) y-scale)) (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) 1/2))) (cos (* 1/180 (* (PI) angle))) (sin (* 1/180 (* (PI) angle))) (sqrt (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) (sin (* 1/180 (* angle (PI)))) (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)))
47.0ms
angle
@inf
((/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2))) (* 1/4 (* (sqrt 8) y-scale)) (* (sqrt 8) y-scale) (* (* (* 1/4 b) y-scale) 4) (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* 1/4 b) y-scale) (* 1/4 b) (neg (* a (* (sin (* 1/180 (* angle (PI)))) (sqrt 2)))) (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (* (* (sqrt 8) y-scale) x-scale) (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) 1/2)) (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* 1/4 (* (sqrt 8) y-scale)) (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) 1/2))) (cos (* 1/180 (* (PI) angle))) (sin (* 1/180 (* (PI) angle))) (sqrt (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) (sin (* 1/180 (* angle (PI)))) (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)))
42.0ms
y-scale
@inf
((/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2))) (* 1/4 (* (sqrt 8) y-scale)) (* (sqrt 8) y-scale) (* (* (* 1/4 b) y-scale) 4) (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* 1/4 b) y-scale) (* 1/4 b) (neg (* a (* (sin (* 1/180 (* angle (PI)))) (sqrt 2)))) (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (* (* (sqrt 8) y-scale) x-scale) (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) 1/2)) (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* 1/4 (* (sqrt 8) y-scale)) (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) 1/2))) (cos (* 1/180 (* (PI) angle))) (sin (* 1/180 (* (PI) angle))) (sqrt (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) (sin (* 1/180 (* angle (PI)))) (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)))
39.0ms
a
@inf
((/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2))) (* 1/4 (* (sqrt 8) y-scale)) (* (sqrt 8) y-scale) (* (* (* 1/4 b) y-scale) 4) (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* 1/4 b) y-scale) (* 1/4 b) (neg (* a (* (sin (* 1/180 (* angle (PI)))) (sqrt 2)))) (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (* (* (sqrt 8) y-scale) x-scale) (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) 1/2)) (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* 1/4 (* (sqrt 8) y-scale)) (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) 1/2))) (cos (* 1/180 (* (PI) angle))) (sin (* 1/180 (* (PI) angle))) (sqrt (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) (sin (* 1/180 (* angle (PI)))) (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)))
18.0ms
b
@inf
((/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2))) (* 1/4 (* (sqrt 8) y-scale)) (* (sqrt 8) y-scale) (* (* (* 1/4 b) y-scale) 4) (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* 1/4 b) y-scale) (* 1/4 b) (neg (* a (* (sin (* 1/180 (* angle (PI)))) (sqrt 2)))) (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* 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simplify353.0ms (1.3%)

Memory
-4.8MiB live, 455.3MiB allocated; 57ms collecting garbage
Iterations

Useful iterations: 0 (0.0ms)

IterNodesCost
0216572788
1727772461
0814270617
Stop Event
iter limit
node limit
Counts
298 → 298
Calls
Call 1
Inputs
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#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2))) #s(hole binary64 (+ (* 1/4 (* a (* y-scale (* (sin (* 1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8)))))) (* (pow b 2) (+ (* 1/8 (/ (* y-scale (* (pow (cos (* 1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8)))) (* a (sin (* 1/180 (* angle (PI))))))) (* (pow b 2) (+ (* -1/32 (/ (* y-scale (* (pow (cos (* 1/180 (* angle (PI)))) 4) (* (sqrt 2) (sqrt 8)))) (* (pow a 3) (pow (sin (* 1/180 (* angle (PI)))) 3)))) (* 1/64 (/ (* (pow b 2) (* y-scale (* (pow (cos (* 1/180 (* angle (PI)))) 6) (* (sqrt 2) (sqrt 8))))) (* (pow a 5) (pow (sin (* 1/180 (* angle (PI)))) 5)))))))))))
#s(approx (* (* (* 1/4 b) y-scale) 4) #s(hole binary64 (* b y-scale)))
#s(approx (* (* 1/4 b) y-scale) #s(hole binary64 (* 1/4 (* b y-scale))))
#s(approx (* 1/4 b) #s(hole binary64 (* 1/4 b)))
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#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) #s(hole binary64 (+ (* 1/4 (* a (* y-scale (* (sin (* 1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8)))))) (* (pow b 2) (+ (* -1/32 (/ (* (pow b 2) (* y-scale (* (pow (cos (* -1/180 (* angle (PI)))) 4) (* (sqrt 2) (sqrt 8))))) (* (pow a 3) (pow (sin (* 1/180 (* angle (PI)))) 3)))) (* 1/8 (/ (* y-scale (* (pow (cos (* -1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8)))) (* a (sin (* 1/180 (* angle (PI))))))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) #s(hole binary64 (+ (* 1/4 (* a (* y-scale (* (sin (* 1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8)))))) (* (pow b 2) (+ (* 1/8 (/ (* y-scale (* (pow (cos (* -1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8)))) (* a (sin (* 1/180 (* angle (PI))))))) (* (pow b 2) (+ (* -1/32 (/ (* y-scale (* (pow (cos (* -1/180 (* angle (PI)))) 4) (* (sqrt 2) (sqrt 8)))) (* (pow a 3) (pow (sin (* 1/180 (* angle (PI)))) 3)))) (* 1/64 (/ (* (pow b 2) (* y-scale (* (pow (cos (* -1/180 (* angle (PI)))) 6) (* (sqrt 2) (sqrt 8))))) (* (pow a 5) (pow (sin (* 1/180 (* angle (PI)))) 5)))))))))))
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(pow x-scale 2)) (/ (pow a 2) (pow y-scale 2))) 2)))) (- (/ (pow b 2) (pow x-scale 2)) (/ (pow a 2) (pow y-scale 2))))) (+ (/ (* (pow a 2) (+ (* 1/12597120000 (pow (PI) 4)) (* 1/4199040000 (pow (PI) 4)))) (pow y-scale 2)) (/ (* (pow b 2) (+ (* 1/12597120000 (pow (PI) 4)) (* 1/4199040000 (pow (PI) 4)))) (pow x-scale 2)))))) (* 1/4 (/ (* (pow x-scale 2) (pow (+ (* -1/32400 (/ (* (pow a 2) (pow (PI) 2)) (pow y-scale 2))) (+ (* -1/32400 (/ (* (pow b 2) (pow (PI) 2)) (pow x-scale 2))) (+ (* 1/32400 (/ (* (pow a 2) (pow (PI) 2)) (pow x-scale 2))) (+ (* 1/32400 (/ (* (pow b 2) (pow (PI) 2)) (pow y-scale 2))) (* 1/2 (/ (+ (* 1/8100 (/ (* (pow (PI) 2) (pow (- (pow b 2) (pow a 2)) 2)) (* (pow x-scale 2) (pow y-scale 2)))) (* 2 (* (- (+ (* -1/32400 (/ (* (pow b 2) (pow (PI) 2)) (pow x-scale 2))) (* 1/32400 (/ (* (pow a 2) (pow (PI) 2)) (pow x-scale 2)))) (+ (* -1/32400 (/ (* (pow a 2) (pow (PI) 2)) (pow y-scale 2))) (* 1/32400 (/ (* (pow b 2) (pow (PI) 2)) (pow y-scale 2))))) (- (/ (pow b 2) (pow x-scale 2)) (/ (pow a 2) (pow y-scale 2)))))) (- (/ (pow b 2) (pow x-scale 2)) (/ (pow a 2) (pow y-scale 2))))))))) 2)) (* (pow b 2) (pow (sqrt 2) 2)))))))) (* b (sqrt 2)))))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2))) #s(hole binary64 (* 1/4 (* b (* y-scale (* (sqrt 2) (sqrt 8)))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2))) #s(hole binary64 (+ (* 1/8 (/ (* (pow angle 2) (* y-scale (* (sqrt 2) (* (sqrt 8) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))))))) b)) (* 1/4 (* b (* y-scale (* (sqrt 2) (sqrt 8))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2))) #s(hole binary64 (+ (* 1/4 (* b (* y-scale (* (sqrt 2) (sqrt 8))))) (* (pow angle 2) (+ (* 1/8 (/ (* y-scale (* (sqrt 2) (* (sqrt 8) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2))))))) b)) (* 1/8 (/ (* (pow angle 2) (* y-scale (* (sqrt 2) (* (sqrt 8) (- (+ (* -1/3149280000 (* (pow a 2) (pow (PI) 4))) (* (pow b 2) (+ (* 1/12597120000 (pow (PI) 4)) (* 1/4199040000 (pow (PI) 4))))) (* 1/4 (/ (pow (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))) 2) (pow b 2)))))))) b)))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2))) #s(hole binary64 (+ (* 1/4 (* b (* y-scale (* (sqrt 2) (sqrt 8))))) (* (pow angle 2) (+ (* 1/8 (/ (* y-scale (* (sqrt 2) (* (sqrt 8) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2))))))) b)) (* (pow angle 2) (+ (* 1/8 (/ (* y-scale (* (sqrt 2) (* (sqrt 8) (- (+ (* -1/3149280000 (* (pow a 2) (pow (PI) 4))) (* (pow b 2) (+ (* 1/12597120000 (pow (PI) 4)) (* 1/4199040000 (pow (PI) 4))))) (* 1/4 (/ (pow (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))) 2) (pow b 2))))))) b)) (* 1/8 (/ (* (pow angle 2) (* y-scale (* (sqrt 2) (* (sqrt 8) (- (+ (* (pow a 2) (+ (* 1/2040733440000000 (pow (PI) 6)) (* 1/1224440064000000 (pow (PI) 6)))) (* (pow b 2) (+ (* -1/816293376000000 (pow (PI) 6)) (* -1/12244400640000000 (pow (PI) 6))))) (* 1/2 (/ (* (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))) (- (+ (* -1/3149280000 (* (pow a 2) (pow (PI) 4))) (* (pow b 2) (+ (* 1/12597120000 (pow (PI) 4)) (* 1/4199040000 (pow (PI) 4))))) (* 1/4 (/ (pow (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))) 2) (pow b 2))))) (pow b 2)))))))) b)))))))))
#s(approx (neg (* a (* (sin (* 1/180 (* angle (PI)))) (sqrt 2)))) #s(hole binary64 (* -1/180 (* a (* angle (* (PI) (sqrt 2)))))))
#s(approx (neg (* a (* (sin (* 1/180 (* angle (PI)))) (sqrt 2)))) #s(hole binary64 (* angle (- (* 1/34992000 (* a (* (pow angle 2) (* (pow (PI) 3) (sqrt 2))))) (* 1/180 (* a (* (PI) (sqrt 2))))))))
#s(approx (neg (* a (* (sin (* 1/180 (* angle (PI)))) (sqrt 2)))) #s(hole binary64 (* angle (- (* (pow angle 2) (- (* -1/22674816000000 (* a (* (pow angle 2) (* (pow (PI) 5) (sqrt 2))))) (* -1/34992000 (* a (* (pow (PI) 3) (sqrt 2)))))) (* 1/180 (* a (* (PI) (sqrt 2))))))))
#s(approx (neg (* a (* (sin (* 1/180 (* angle (PI)))) (sqrt 2)))) #s(hole binary64 (* angle (- (* (pow angle 2) (- (* (pow angle 2) (- (* 1/30855889612800000000 (* a (* (pow angle 2) (* (pow (PI) 7) (sqrt 2))))) (* 1/22674816000000 (* a (* (pow (PI) 5) (sqrt 2)))))) (* -1/34992000 (* a (* (pow (PI) 3) (sqrt 2)))))) (* 1/180 (* a (* (PI) (sqrt 2))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) #s(hole binary64 (* 1/4 (* b (* y-scale (* (sqrt 2) (sqrt 8)))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) #s(hole binary64 (+ (* 1/8 (/ (* (pow angle 2) (* y-scale (* (sqrt 2) (* (sqrt 8) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))))))) b)) (* 1/4 (* b (* y-scale (* (sqrt 2) (sqrt 8))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) #s(hole binary64 (+ (* 1/4 (* b (* y-scale (* (sqrt 2) (sqrt 8))))) (* (pow angle 2) (+ (* 1/8 (/ (* y-scale (* (sqrt 2) (* (sqrt 8) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2))))))) b)) (* 1/8 (/ (* (pow angle 2) (* y-scale (* (sqrt 2) (* (sqrt 8) (- (+ (* -1/3149280000 (* (pow a 2) (pow (PI) 4))) (* (pow b 2) (+ (* 1/12597120000 (pow (PI) 4)) (* 1/4199040000 (pow (PI) 4))))) (* 1/4 (/ (pow (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))) 2) (pow b 2)))))))) b)))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) #s(hole binary64 (+ (* 1/4 (* b (* y-scale (* (sqrt 2) (sqrt 8))))) (* (pow angle 2) (+ (* 1/8 (/ (* y-scale (* (sqrt 2) (* (sqrt 8) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2))))))) b)) (* (pow angle 2) (+ (* 1/8 (/ (* y-scale (* (sqrt 2) (* (sqrt 8) (- (+ (* -1/3149280000 (* (pow a 2) (pow (PI) 4))) (* (pow b 2) (+ (* 1/12597120000 (pow (PI) 4)) (* 1/4199040000 (pow (PI) 4))))) (* 1/4 (/ (pow (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))) 2) (pow b 2))))))) b)) (* 1/8 (/ (* (pow angle 2) (* y-scale (* (sqrt 2) (* (sqrt 8) (- (+ (* (pow a 2) (+ (* 1/2040733440000000 (pow (PI) 6)) (* 1/1224440064000000 (pow (PI) 6)))) (* (pow b 2) (+ (* -1/816293376000000 (pow (PI) 6)) (* -1/12244400640000000 (pow (PI) 6))))) (* 1/2 (/ (* (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))) (- (+ (* -1/3149280000 (* (pow a 2) (pow (PI) 4))) (* (pow b 2) (+ (* 1/12597120000 (pow (PI) 4)) (* 1/4199040000 (pow (PI) 4))))) (* 1/4 (/ (pow (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))) 2) (pow b 2))))) (pow b 2)))))))) b)))))))))
#s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) #s(hole binary64 (* 1/4 (/ (* b (* x-scale (* y-scale (* (sqrt 2) (sqrt 8))))) (fabs x-scale)))))
#s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) #s(hole binary64 (+ (* 1/8 (/ (* (pow angle 2) (* x-scale (* y-scale (* (sqrt 2) (* (sqrt 8) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2))))))))) (* b (fabs x-scale)))) (* 1/4 (/ (* b (* x-scale (* y-scale (* (sqrt 2) (sqrt 8))))) (fabs x-scale))))))
#s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) #s(hole binary64 (+ (* 1/4 (/ (* b (* x-scale (* y-scale (* (sqrt 2) (sqrt 8))))) (fabs x-scale))) (* (pow angle 2) (+ (* 1/8 (/ (* x-scale (* y-scale (* (sqrt 2) (* (sqrt 8) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))))))) (* b (fabs x-scale)))) (* 1/8 (/ (* (pow angle 2) (* x-scale (* y-scale (* (sqrt 2) (* (sqrt 8) (- (+ (* -1/3149280000 (* (pow a 2) (pow (PI) 4))) (* (pow b 2) (+ (* 1/12597120000 (pow (PI) 4)) (* 1/4199040000 (pow (PI) 4))))) (* 1/4 (/ (pow (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))) 2) (pow b 2))))))))) (* b (fabs x-scale)))))))))
#s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) #s(hole binary64 (+ (* 1/4 (/ (* b (* x-scale (* y-scale (* (sqrt 2) (sqrt 8))))) (fabs x-scale))) (* (pow angle 2) (+ (* 1/8 (/ (* x-scale (* y-scale (* (sqrt 2) (* (sqrt 8) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))))))) (* b (fabs x-scale)))) (* (pow angle 2) (+ (* 1/8 (/ (* x-scale (* y-scale (* (sqrt 2) (* (sqrt 8) (- (+ (* -1/3149280000 (* (pow a 2) (pow (PI) 4))) (* (pow b 2) (+ (* 1/12597120000 (pow (PI) 4)) (* 1/4199040000 (pow (PI) 4))))) (* 1/4 (/ (pow (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))) 2) (pow b 2)))))))) (* b (fabs x-scale)))) (* 1/8 (/ (* (pow angle 2) (* x-scale (* y-scale (* (sqrt 2) (* (sqrt 8) (- (+ (* (pow a 2) (+ (* 1/2040733440000000 (pow (PI) 6)) (* 1/1224440064000000 (pow (PI) 6)))) (* (pow b 2) (+ (* -1/816293376000000 (pow (PI) 6)) (* -1/12244400640000000 (pow (PI) 6))))) (* 1/2 (/ (* (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))) (- (+ (* -1/3149280000 (* (pow a 2) (pow (PI) 4))) (* (pow b 2) (+ (* 1/12597120000 (pow (PI) 4)) (* 1/4199040000 (pow (PI) 4))))) (* 1/4 (/ (pow (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))) 2) (pow b 2))))) (pow b 2))))))))) (* b (fabs x-scale)))))))))))
#s(approx (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) 1/2)) #s(hole binary64 (* b (sqrt 2))))
#s(approx (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) 1/2)) #s(hole binary64 (+ (* b (sqrt 2)) (/ (* (pow angle 2) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2))))) (* b (sqrt 2))))))
#s(approx (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) 1/2)) #s(hole binary64 (+ (* b (sqrt 2)) (* (pow angle 2) (+ (* -1/32400 (/ (* b (pow (PI) 2)) (sqrt 2))) (+ (* 1/32400 (/ (* (pow a 2) (pow (PI) 2)) (* b (sqrt 2)))) (* 1/2 (/ (* (pow angle 2) (- (* 2 (+ (* -1/3149280000 (* (pow a 2) (pow (PI) 4))) (* (pow b 2) (+ (* 1/12597120000 (pow (PI) 4)) (* 1/4199040000 (pow (PI) 4)))))) (/ (pow (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))) 2) (* (pow b 2) (pow (sqrt 2) 2))))) (* b (sqrt 2))))))))))
#s(approx (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) 1/2)) #s(hole binary64 (+ (* b (sqrt 2)) (* (pow angle 2) (+ (* -1/32400 (/ (* b (pow (PI) 2)) (sqrt 2))) (+ (* 1/32400 (/ (* (pow a 2) (pow (PI) 2)) (* b (sqrt 2)))) (* (pow angle 2) (+ (* 1/2 (/ (* (pow angle 2) (- (* 2 (+ (* (pow a 2) (+ (* 1/2040733440000000 (pow (PI) 6)) (* 1/1224440064000000 (pow (PI) 6)))) (* (pow b 2) (+ (* -1/816293376000000 (pow (PI) 6)) (* -1/12244400640000000 (pow (PI) 6)))))) (/ (* (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))) (- (* 2 (+ (* -1/3149280000 (* (pow a 2) (pow (PI) 4))) (* (pow b 2) (+ (* 1/12597120000 (pow (PI) 4)) (* 1/4199040000 (pow (PI) 4)))))) (/ (pow (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))) 2) (* (pow b 2) (pow (sqrt 2) 2))))) (* (pow b 2) (pow (sqrt 2) 2))))) (* b (sqrt 2)))) (* 1/2 (/ (- (* 2 (+ (* -1/3149280000 (* (pow a 2) (pow (PI) 4))) (* (pow b 2) (+ (* 1/12597120000 (pow (PI) 4)) (* 1/4199040000 (pow (PI) 4)))))) (/ (pow (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))) 2) (* (pow b 2) (pow (sqrt 2) 2)))) (* b (sqrt 2))))))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) 1/2))) #s(hole binary64 (* 1/4 (* b (* y-scale (* (sqrt 2) (sqrt 8)))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) 1/2))) #s(hole binary64 (+ (* 1/8 (/ (* (pow angle 2) (* y-scale (* (sqrt 2) (* (sqrt 8) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))))))) b)) (* 1/4 (* b (* y-scale (* (sqrt 2) (sqrt 8))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) 1/2))) #s(hole binary64 (+ (* 1/4 (* b (* y-scale (* (sqrt 2) (sqrt 8))))) (* (pow angle 2) (+ (* 1/8 (/ (* y-scale (* (sqrt 2) (* (sqrt 8) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2))))))) b)) (* 1/8 (/ (* (pow angle 2) (* y-scale (* (sqrt 2) (* (sqrt 8) (- (+ (* -1/3149280000 (* (pow a 2) (pow (PI) 4))) (* (pow b 2) (+ (* 1/12597120000 (pow (PI) 4)) (* 1/4199040000 (pow (PI) 4))))) (* 1/4 (/ (pow (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))) 2) (pow b 2)))))))) b)))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) 1/2))) #s(hole binary64 (+ (* 1/4 (* b (* y-scale (* (sqrt 2) (sqrt 8))))) (* (pow angle 2) (+ (* 1/8 (/ (* y-scale (* (sqrt 2) (* (sqrt 8) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2))))))) b)) (* (pow angle 2) (+ (* 1/8 (/ (* y-scale (* (sqrt 2) (* (sqrt 8) (- (+ (* -1/3149280000 (* (pow a 2) (pow (PI) 4))) (* (pow b 2) (+ (* 1/12597120000 (pow (PI) 4)) (* 1/4199040000 (pow (PI) 4))))) (* 1/4 (/ (pow (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))) 2) (pow b 2))))))) b)) (* 1/8 (/ (* (pow angle 2) (* y-scale (* (sqrt 2) (* (sqrt 8) (- (+ (* (pow a 2) (+ (* 1/2040733440000000 (pow (PI) 6)) (* 1/1224440064000000 (pow (PI) 6)))) (* (pow b 2) (+ (* -1/816293376000000 (pow (PI) 6)) (* -1/12244400640000000 (pow (PI) 6))))) (* 1/2 (/ (* (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))) (- (+ (* -1/3149280000 (* (pow a 2) (pow (PI) 4))) (* (pow b 2) (+ (* 1/12597120000 (pow (PI) 4)) (* 1/4199040000 (pow (PI) 4))))) (* 1/4 (/ (pow (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))) 2) (pow b 2))))) (pow b 2)))))))) b)))))))))
#s(approx (cos (* 1/180 (* (PI) angle))) #s(hole binary64 1))
#s(approx (cos (* 1/180 (* (PI) angle))) #s(hole binary64 (+ 1 (* -1/64800 (* (pow angle 2) (pow (PI) 2))))))
#s(approx (cos (* 1/180 (* (PI) angle))) #s(hole binary64 (+ 1 (* (pow angle 2) (+ (* -1/64800 (pow (PI) 2)) (* 1/25194240000 (* (pow angle 2) (pow (PI) 4))))))))
#s(approx (cos (* 1/180 (* (PI) angle))) #s(hole binary64 (+ 1 (* (pow angle 2) (+ (* -1/64800 (pow (PI) 2)) (* (pow angle 2) (+ (* -1/24488801280000000 (* (pow angle 2) (pow (PI) 6))) (* 1/25194240000 (pow (PI) 4)))))))))
#s(approx (sin (* 1/180 (* (PI) angle))) #s(hole binary64 (* 1/180 (* angle (PI)))))
#s(approx (sin (* 1/180 (* (PI) angle))) #s(hole binary64 (* angle (+ (* -1/34992000 (* (pow angle 2) (pow (PI) 3))) (* 1/180 (PI))))))
#s(approx (sin (* 1/180 (* (PI) angle))) #s(hole binary64 (* angle (+ (* 1/180 (PI)) (* (pow angle 2) (+ (* -1/34992000 (pow (PI) 3)) (* 1/22674816000000 (* (pow angle 2) (pow (PI) 5)))))))))
#s(approx (sin (* 1/180 (* (PI) angle))) #s(hole binary64 (* angle (+ (* 1/180 (PI)) (* (pow angle 2) (+ (* -1/34992000 (pow (PI) 3)) (* (pow angle 2) (+ (* -1/30855889612800000000 (* (pow angle 2) (pow (PI) 7))) (* 1/22674816000000 (pow (PI) 5))))))))))
#s(approx (sqrt (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) #s(hole binary64 (* b (sqrt 2))))
#s(approx (sqrt (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) #s(hole binary64 (+ (* 1/2 (/ (* (pow angle 2) (* (sqrt 2) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))))) b)) (* b (sqrt 2)))))
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#s(approx (sin (* 1/180 (* angle (PI)))) #s(hole binary64 (* 1/180 (* angle (PI)))))
#s(approx (sin (* 1/180 (* angle (PI)))) #s(hole binary64 (* angle (+ (* -1/34992000 (* (pow angle 2) (pow (PI) 3))) (* 1/180 (PI))))))
#s(approx (sin (* 1/180 (* angle (PI)))) #s(hole binary64 (* angle (+ (* 1/180 (PI)) (* (pow angle 2) (+ (* -1/34992000 (pow (PI) 3)) (* 1/22674816000000 (* (pow angle 2) (pow (PI) 5)))))))))
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#s(approx (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) #s(hole binary64 (log (* 2 (pow b 2)))))
#s(approx (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) #s(hole binary64 (+ (log (* 2 (pow b 2))) (/ (* (pow angle 2) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2))))) (pow b 2)))))
#s(approx (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) #s(hole binary64 (+ (log (* 2 (pow b 2))) (* (pow angle 2) (+ (* -1/32400 (pow (PI) 2)) (+ (* 1/32400 (/ (* (pow a 2) (pow (PI) 2)) (pow b 2))) (* 1/24 (* (pow angle 2) (+ (* -12 (/ (pow (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))) 2) (pow b 4))) (* 24 (/ (+ (* -1/3149280000 (* (pow a 2) (pow (PI) 4))) (* (pow b 2) (+ (* 1/12597120000 (pow (PI) 4)) (* 1/4199040000 (pow (PI) 4))))) (pow b 2))))))))))))
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#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(hole binary64 (* 1/4 (* (* x-scale (* y-scale (sqrt 8))) (sqrt (+ (sqrt (+ (* 4 (/ (* (pow (cos (* 1/180 (* angle (PI)))) 2) (* (pow (sin (* 1/180 (* angle (PI)))) 2) (pow (- (pow b 2) (pow a 2)) 2))) (* (pow x-scale 2) (pow y-scale 2)))) (pow (- (+ (/ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)) (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))) (+ (/ (* (pow a 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow y-scale 2)) (/ (* (pow b 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow y-scale 2)))) 2))) (+ (/ (* (pow a 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow y-scale 2)) (+ (/ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)) (+ (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)) (/ (* (pow b 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow y-scale 2)))))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2))) #s(hole binary64 (* 1/4 (* (* y-scale (* (sqrt 2) (sqrt 8))) (sqrt (+ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) #s(hole binary64 (* 1/4 (* (* y-scale (* (sqrt 2) (sqrt 8))) (sqrt (+ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (* (pow b 2) (pow (cos (* -1/180 (* angle (PI)))) 2))))))))
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#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) 1/2))) #s(hole binary64 (* 1/4 (* (* y-scale (* (sqrt 2) (sqrt 8))) (sqrt (+ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2))))))))
#s(approx (cos (* 1/180 (* (PI) angle))) #s(hole binary64 (cos (* 1/180 (* angle (PI))))))
#s(approx (sin (* 1/180 (* (PI) angle))) #s(hole binary64 (sin (* 1/180 (* angle (PI))))))
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#s(approx (sin (* 1/180 (* angle (PI)))) #s(hole binary64 (sin (* 1/180 (* angle (PI))))))
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#s(approx (* (sqrt 8) y-scale) #s(hole binary64 (* y-scale (sqrt 8))))
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#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(hole binary64 (* y-scale (+ (* 1/8 (* (/ (* x-scale (* (sqrt 8) (+ (* 1/2 (/ (+ (* -2 (* (+ (* (pow a 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (* (pow b 2) (pow (sin (* 1/180 (* angle (PI)))) 2))) (+ (/ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)) (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))))) (* 4 (/ (* (pow (cos (* 1/180 (* angle (PI)))) 2) (* (pow (sin (* 1/180 (* angle (PI)))) 2) (pow (- (pow b 2) (pow a 2)) 2))) (pow x-scale 2)))) (+ (/ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)) (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))))) (+ (* (pow a 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (* (pow b 2) (pow (sin (* 1/180 (* angle (PI)))) 2)))))) (pow y-scale 2)) (sqrt (/ 1 (+ (* 2 (/ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))) (* 2 (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)))))))) (* 1/4 (* (* x-scale (sqrt 8)) (sqrt (+ (* 2 (/ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))) (* 2 (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)))))))))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(hole binary64 (* y-scale (+ (* 1/8 (* (/ (* x-scale (* (sqrt 8) (+ (* 1/2 (/ (+ (* -2 (* (+ (* (pow a 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (* (pow b 2) (pow (sin (* 1/180 (* angle (PI)))) 2))) (+ (/ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)) (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))))) (* 4 (/ (* (pow (cos (* 1/180 (* angle (PI)))) 2) (* (pow (sin (* 1/180 (* angle (PI)))) 2) (pow (- (pow b 2) (pow a 2)) 2))) (pow x-scale 2)))) (+ (/ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)) (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))))) (+ (* (pow a 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (* (pow b 2) (pow (sin (* 1/180 (* angle (PI)))) 2)))))) (pow y-scale 2)) (sqrt (/ 1 (+ (* 2 (/ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))) (* 2 (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)))))))) (+ (* 1/8 (* (/ (* x-scale (* (sqrt 8) (- (* 1/2 (/ (- (pow (+ (* (pow a 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (* (pow b 2) (pow (sin (* 1/180 (* angle (PI)))) 2))) 2) (* 1/4 (/ (pow (+ (* -2 (* (+ (* (pow a 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (* (pow b 2) (pow (sin (* 1/180 (* angle (PI)))) 2))) (+ (/ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)) (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))))) (* 4 (/ (* (pow (cos (* 1/180 (* angle (PI)))) 2) (* (pow (sin (* 1/180 (* angle (PI)))) 2) (pow (- (pow b 2) (pow a 2)) 2))) (pow x-scale 2)))) 2) (pow (+ (/ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)) (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))) 2)))) (+ (/ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)) (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))))) (* 1/4 (/ (pow (+ (* 1/2 (/ (+ (* -2 (* (+ (* (pow a 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (* (pow b 2) (pow (sin (* 1/180 (* angle (PI)))) 2))) (+ (/ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)) (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))))) (* 4 (/ (* (pow (cos (* 1/180 (* angle (PI)))) 2) (* (pow (sin (* 1/180 (* angle (PI)))) 2) (pow (- (pow b 2) (pow a 2)) 2))) (pow x-scale 2)))) (+ (/ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)) (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))))) (+ (* (pow a 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (* (pow b 2) (pow (sin (* 1/180 (* angle (PI)))) 2)))) 2) (+ (* 2 (/ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))) (* 2 (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))))))))) (pow y-scale 4)) (sqrt (/ 1 (+ (* 2 (/ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))) (* 2 (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)))))))) (* 1/4 (* (* x-scale (sqrt 8)) (sqrt (+ (* 2 (/ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))) (* 2 (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))))))))))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(hole binary64 (* y-scale (+ (* 1/8 (* (/ (* x-scale (* (sqrt 8) (+ (* 1/2 (/ (+ (* -2 (* (+ (* (pow a 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (* (pow b 2) (pow (sin (* 1/180 (* angle 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#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(hole binary64 (* -1 (* y-scale (+ (* 1/8 (* (/ (* x-scale (* (sqrt 8) (+ (* 1/2 (/ (+ (* -2 (* (+ (* (pow a 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (* (pow b 2) (pow (sin (* 1/180 (* 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Outputs
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#s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 y-scale y-scale)) (/.f64 (pow.f64 (*.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) b) #s(literal 2 binary64)) (*.f64 x-scale x-scale))) (sqrt.f64 (fma.f64 (*.f64 (pow.f64 b #s(literal 4 binary64)) (*.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 (*.f64 y-scale y-scale) (*.f64 x-scale x-scale))))) #s(literal 4 binary64) (pow.f64 (-.f64 (/.f64 (pow.f64 (*.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) b) #s(literal 2 binary64)) (*.f64 x-scale x-scale)) (*.f64 (*.f64 b b) (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 y-scale y-scale)))) #s(literal 2 binary64)))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2))) #s(hole binary64 (* 1/4 (* b (* y-scale (* (cos (* 1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) 1/2))) (*.f64 (*.f64 #s(literal 1/4 binary64) b) (*.f64 (*.f64 y-scale (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2))) #s(hole binary64 (+ (* 1/8 (/ (* (pow a 2) (* y-scale (* (pow (sin (* 1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8))))) (* b (cos (* 1/180 (* angle (PI))))))) (* 1/4 (* b (* y-scale (* (cos (* 1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8)))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) 1/2))) (fma.f64 (*.f64 #s(literal 1/4 binary64) b) (*.f64 (*.f64 y-scale (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64)))) (*.f64 (/.f64 (*.f64 (*.f64 (*.f64 a a) y-scale) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))) (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)))) (*.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) b)) #s(literal 1/8 binary64))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2))) #s(hole binary64 (+ (* 1/4 (* b (* y-scale (* (cos (* 1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8)))))) (* (pow a 2) (+ (* -1/32 (/ (* (pow a 2) (* y-scale (* (pow (sin (* 1/180 (* angle (PI)))) 4) (* (sqrt 2) (sqrt 8))))) (* (pow b 3) (pow (cos (* 1/180 (* angle (PI)))) 3)))) (* 1/8 (/ (* y-scale (* (pow (sin (* 1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8)))) (* b (cos (* 1/180 (* angle (PI))))))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) 1/2))) (fma.f64 (fma.f64 (/.f64 (*.f64 (*.f64 (*.f64 a a) y-scale) (*.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 4 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))) (pow.f64 (*.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) b) #s(literal 3 binary64))) #s(literal -1/32 binary64) (*.f64 (*.f64 (/.f64 y-scale b) (/.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))) (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64))) (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))))) #s(literal 1/8 binary64))) (*.f64 a a) (*.f64 (*.f64 #s(literal 1/4 binary64) b) (*.f64 (*.f64 y-scale (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64)))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2))) #s(hole binary64 (+ (* 1/4 (* b (* y-scale (* (cos (* 1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8)))))) (* (pow a 2) (+ (* 1/8 (/ (* y-scale (* (pow (sin (* 1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8)))) (* b (cos (* 1/180 (* angle (PI))))))) (* (pow a 2) (+ (* -1/32 (/ (* y-scale (* (pow (sin (* 1/180 (* angle (PI)))) 4) (* (sqrt 2) (sqrt 8)))) (* (pow b 3) (pow (cos (* 1/180 (* angle (PI)))) 3)))) (* 1/64 (/ (* (pow a 2) (* y-scale (* (pow (sin (* 1/180 (* angle (PI)))) 6) (* (sqrt 2) (sqrt 8))))) (* (pow b 5) (pow (cos (* 1/180 (* angle (PI)))) 5)))))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) 1/2))) (fma.f64 (fma.f64 (fma.f64 (*.f64 (/.f64 (*.f64 a a) (pow.f64 b #s(literal 5 binary64))) (/.f64 (*.f64 (*.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 6 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64)))) y-scale) (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 5 binary64)))) #s(literal 1/64 binary64) (*.f64 (*.f64 y-scale (/.f64 (*.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 4 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64)))) (pow.f64 (*.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) b) #s(literal 3 binary64)))) #s(literal -1/32 binary64))) (*.f64 a a) (*.f64 (*.f64 (/.f64 y-scale b) (/.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))) (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64))) (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))))) #s(literal 1/8 binary64))) (*.f64 a a) (*.f64 (*.f64 #s(literal 1/4 binary64) b) (*.f64 (*.f64 y-scale (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64)))))))
#s(approx (neg (* a (* (sin (* 1/180 (* angle (PI)))) (sqrt 2)))) #s(hole binary64 (* -1 (* a (* (sin (* 1/180 (* angle (PI)))) (sqrt 2))))))
#s(approx (neg (* a (* (sin (* 1/180 (* angle (PI)))) (sqrt 2)))) (*.f64 (neg.f64 a) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) #s(hole binary64 (* 1/4 (* b (* y-scale (* (cos (* -1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) (*.f64 (*.f64 #s(literal 1/4 binary64) b) (*.f64 (*.f64 y-scale (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal -1/180 binary64)))) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) #s(hole binary64 (+ (* 1/8 (/ (* (pow a 2) (* y-scale (* (pow (sin (* 1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8))))) (* b (cos (* -1/180 (* angle (PI))))))) (* 1/4 (* b (* y-scale (* (cos (* -1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8)))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) (fma.f64 (*.f64 #s(literal 1/4 binary64) b) (*.f64 (*.f64 y-scale (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal -1/180 binary64)))) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64)))) (*.f64 (/.f64 (*.f64 (*.f64 (*.f64 a a) y-scale) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))) (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)))) (*.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal -1/180 binary64))) b)) #s(literal 1/8 binary64))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) #s(hole binary64 (+ (* 1/4 (* b (* y-scale (* (cos (* -1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8)))))) (* (pow a 2) (+ (* -1/32 (/ (* (pow a 2) (* y-scale (* (pow (sin (* 1/180 (* angle (PI)))) 4) (* (sqrt 2) (sqrt 8))))) (* (pow b 3) (pow (cos (* -1/180 (* angle (PI)))) 3)))) (* 1/8 (/ (* y-scale (* (pow (sin (* 1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8)))) (* b (cos (* -1/180 (* angle (PI))))))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) (fma.f64 (fma.f64 (/.f64 (*.f64 (*.f64 (*.f64 a a) y-scale) (*.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 4 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))) (pow.f64 (*.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal -1/180 binary64))) b) #s(literal 3 binary64))) #s(literal -1/32 binary64) (*.f64 (*.f64 (/.f64 y-scale b) (/.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))) (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64))) (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal -1/180 binary64))))) #s(literal 1/8 binary64))) (*.f64 a a) (*.f64 (*.f64 #s(literal 1/4 binary64) b) (*.f64 (*.f64 y-scale (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal -1/180 binary64)))) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64)))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) #s(hole binary64 (+ (* 1/4 (* b (* y-scale (* (cos (* -1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8)))))) (* (pow a 2) (+ (* 1/8 (/ (* y-scale (* (pow (sin (* 1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8)))) (* b (cos (* -1/180 (* angle (PI))))))) (* (pow a 2) (+ (* -1/32 (/ (* y-scale (* (pow (sin (* 1/180 (* angle (PI)))) 4) (* (sqrt 2) (sqrt 8)))) (* (pow b 3) (pow (cos (* -1/180 (* angle (PI)))) 3)))) (* 1/64 (/ (* (pow a 2) (* y-scale (* (pow (sin (* 1/180 (* angle (PI)))) 6) (* (sqrt 2) (sqrt 8))))) (* (pow b 5) (pow (cos (* -1/180 (* angle (PI)))) 5)))))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) (fma.f64 (fma.f64 (fma.f64 (*.f64 (/.f64 (*.f64 a a) (pow.f64 b #s(literal 5 binary64))) (/.f64 (*.f64 (*.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 6 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64)))) y-scale) (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal -1/180 binary64))) #s(literal 5 binary64)))) #s(literal 1/64 binary64) (*.f64 (*.f64 y-scale (/.f64 (*.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 4 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64)))) (pow.f64 (*.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal -1/180 binary64))) b) #s(literal 3 binary64)))) #s(literal -1/32 binary64))) (*.f64 a a) (*.f64 (*.f64 (/.f64 y-scale b) (/.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))) (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64))) (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal -1/180 binary64))))) #s(literal 1/8 binary64))) (*.f64 a a) (*.f64 (*.f64 #s(literal 1/4 binary64) b) (*.f64 (*.f64 y-scale (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal -1/180 binary64)))) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64)))))))
#s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) #s(hole binary64 (* 1/4 (/ (* b (* x-scale (* y-scale (* (cos (* 1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8)))))) (fabs x-scale)))))
#s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) (*.f64 (*.f64 b (/.f64 (*.f64 (*.f64 y-scale x-scale) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))) (sqrt.f64 #s(literal 8 binary64)))) (fabs.f64 x-scale))) #s(literal 1/4 binary64)))
#s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) #s(hole binary64 (+ (* 1/8 (/ (* (pow a 2) (* x-scale (* y-scale (* (pow (sin (* 1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8)))))) (* b (* (cos (* 1/180 (* angle (PI)))) (fabs x-scale))))) (* 1/4 (/ (* b (* x-scale (* y-scale (* (cos (* 1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8)))))) (fabs x-scale))))))
#s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) (fma.f64 (*.f64 b (/.f64 (*.f64 (*.f64 y-scale x-scale) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))) (sqrt.f64 #s(literal 8 binary64)))) (fabs.f64 x-scale))) #s(literal 1/4 binary64) (*.f64 (*.f64 (*.f64 a a) (/.f64 (*.f64 (*.f64 y-scale x-scale) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))) (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)))) (*.f64 (*.f64 (fabs.f64 x-scale) (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))) b))) #s(literal 1/8 binary64))))
#s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) #s(hole binary64 (+ (* 1/4 (/ (* b (* x-scale (* y-scale (* (cos (* 1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8)))))) (fabs x-scale))) (* (pow a 2) (+ (* -1/32 (/ (* (pow a 2) (* x-scale (* y-scale (* (pow (sin (* 1/180 (* angle (PI)))) 4) (* (sqrt 2) (sqrt 8)))))) (* (pow b 3) (* (pow (cos (* 1/180 (* angle (PI)))) 3) (fabs x-scale))))) (* 1/8 (/ (* x-scale (* y-scale (* (pow (sin (* 1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8))))) (* b (* (cos (* 1/180 (* angle (PI)))) (fabs x-scale))))))))))
#s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) (fma.f64 (fma.f64 (*.f64 (*.f64 a a) (/.f64 (*.f64 (*.f64 y-scale x-scale) (*.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 4 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))) (*.f64 (pow.f64 (*.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) b) #s(literal 3 binary64)) (fabs.f64 x-scale)))) #s(literal -1/32 binary64) (*.f64 (/.f64 (*.f64 (*.f64 y-scale x-scale) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))) (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)))) (*.f64 (*.f64 (fabs.f64 x-scale) (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))) b)) #s(literal 1/8 binary64))) (*.f64 a a) (*.f64 (*.f64 b (/.f64 (*.f64 (*.f64 y-scale x-scale) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))) (sqrt.f64 #s(literal 8 binary64)))) (fabs.f64 x-scale))) #s(literal 1/4 binary64))))
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#s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) #s(hole binary64 (* b (* (cos (* -1/180 (* angle (PI)))) (sqrt 2)))))
#s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) (*.f64 (*.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal -1/180 binary64))) (sqrt.f64 #s(literal 2 binary64))) b))
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#s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) #s(hole binary64 (+ (* b (* (cos (* -1/180 (* angle (PI)))) (sqrt 2))) (* (pow a 2) (+ (* -1/8 (/ (* (pow a 2) (* (pow (sin (* 1/180 (* angle (PI)))) 4) (sqrt 2))) (* (pow b 3) (pow (cos (* -1/180 (* angle (PI)))) 3)))) (* 1/2 (/ (* (pow (sin (* 1/180 (* angle (PI)))) 2) (sqrt 2)) (* b (cos (* -1/180 (* angle (PI))))))))))))
#s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) (fma.f64 (fma.f64 (/.f64 (*.f64 (*.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 4 binary64)) (sqrt.f64 #s(literal 2 binary64))) (*.f64 a a)) (pow.f64 (*.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal -1/180 binary64))) b) #s(literal 3 binary64))) #s(literal -1/8 binary64) (*.f64 (/.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64))) (*.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal -1/180 binary64))) b)) #s(literal 1/2 binary64))) (*.f64 a a) (*.f64 (*.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal -1/180 binary64))) (sqrt.f64 #s(literal 2 binary64))) b)))
#s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) #s(hole binary64 (+ (* b (* (cos (* -1/180 (* angle (PI)))) (sqrt 2))) (* (pow a 2) (+ (* 1/2 (/ (* (pow (sin (* 1/180 (* angle (PI)))) 2) (sqrt 2)) (* b (cos (* -1/180 (* angle (PI))))))) (* (pow a 2) (+ (* -1/8 (/ (* (pow (sin (* 1/180 (* angle (PI)))) 4) (sqrt 2)) (* (pow b 3) (pow (cos (* -1/180 (* angle (PI)))) 3)))) (* 1/16 (/ (* (pow a 2) (* (pow (sin (* 1/180 (* angle (PI)))) 6) (sqrt 2))) (* (pow b 5) (pow (cos (* -1/180 (* angle (PI)))) 5)))))))))))
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#s(approx (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) #s(hole binary64 (log (* 2 (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2))))))
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#s(approx (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) #s(hole binary64 (+ (log (* 2 (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)))) (/ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2))))))
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#s(approx (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) #s(hole binary64 (+ (log (* 2 (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)))) (* (pow a 2) (+ (* -1/2 (/ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 4)) (* (pow b 4) (pow (cos (* 1/180 (* angle (PI)))) 4)))) (/ (pow (sin (* 1/180 (* angle (PI)))) 2) (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2))))))))
#s(approx (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) (fma.f64 (fma.f64 (*.f64 (/.f64 (*.f64 a a) (pow.f64 b #s(literal 4 binary64))) (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 4 binary64)) (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 4 binary64)))) #s(literal -1/2 binary64) (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (pow.f64 (*.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) b) #s(literal 2 binary64)))) (*.f64 a a) (log.f64 (*.f64 (pow.f64 (*.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) b) #s(literal 2 binary64)) #s(literal 2 binary64)))))
#s(approx (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) #s(hole binary64 (+ (log (* 2 (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)))) (* (pow a 2) (+ (* (pow a 2) (+ (* -1/2 (/ (pow (sin (* 1/180 (* angle (PI)))) 4) (* (pow b 4) (pow (cos (* 1/180 (* angle (PI)))) 4)))) (* 1/3 (/ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 6)) (* (pow b 6) (pow (cos (* 1/180 (* angle (PI)))) 6)))))) (/ (pow (sin (* 1/180 (* angle (PI)))) 2) (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2))))))))
#s(approx (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) (fma.f64 (fma.f64 (fma.f64 (*.f64 (/.f64 (*.f64 a a) (pow.f64 b #s(literal 6 binary64))) (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 6 binary64)) (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 6 binary64)))) #s(literal 1/3 binary64) (*.f64 (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 4 binary64)) (*.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 4 binary64)) (pow.f64 b #s(literal 4 binary64)))) #s(literal -1/2 binary64))) (*.f64 a a) (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (pow.f64 (*.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) b) #s(literal 2 binary64)))) (*.f64 a a) (log.f64 (*.f64 (pow.f64 (*.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) b) #s(literal 2 binary64)) #s(literal 2 binary64)))))
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#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) 1/2))) (*.f64 (fma.f64 (*.f64 (/.f64 (pow.f64 b #s(literal 4 binary64)) (pow.f64 a #s(literal 4 binary64))) (/.f64 (*.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 4 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64)))) y-scale) (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 3 binary64)))) #s(literal -1/32 binary64) (fma.f64 (/.f64 (*.f64 (*.f64 (*.f64 b b) y-scale) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))) (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)))) (*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) (*.f64 a a))) #s(literal 1/8 binary64) (*.f64 (*.f64 #s(literal 1/4 binary64) y-scale) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))) (sqrt.f64 #s(literal 8 binary64)))))) a))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2))) #s(hole binary64 (* a (+ (* -1/32 (/ (* (pow b 4) (* y-scale (* (pow (cos (* 1/180 (* angle (PI)))) 4) (* (sqrt 2) (sqrt 8))))) (* (pow a 4) (pow (sin (* 1/180 (* angle (PI)))) 3)))) (+ (* 1/64 (/ (* (pow b 6) (* y-scale (* (pow (cos (* 1/180 (* angle (PI)))) 6) (* (sqrt 2) (sqrt 8))))) (* (pow a 6) (pow (sin (* 1/180 (* angle (PI)))) 5)))) (+ (* 1/8 (/ (* (pow b 2) (* y-scale (* (pow (cos (* 1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8))))) (* (pow a 2) (sin (* 1/180 (* angle (PI))))))) (* 1/4 (* y-scale (* (sin (* 1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8)))))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) 1/2))) (*.f64 (fma.f64 (*.f64 (/.f64 (pow.f64 b #s(literal 4 binary64)) (pow.f64 a #s(literal 4 binary64))) (/.f64 (*.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 4 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64)))) y-scale) (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 3 binary64)))) #s(literal -1/32 binary64) (fma.f64 (*.f64 (/.f64 (pow.f64 b #s(literal 6 binary64)) (pow.f64 a #s(literal 6 binary64))) (/.f64 (*.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 6 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64)))) y-scale) (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 5 binary64)))) #s(literal 1/64 binary64) (fma.f64 (/.f64 (*.f64 (*.f64 (*.f64 b b) y-scale) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))) (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)))) (*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) (*.f64 a a))) #s(literal 1/8 binary64) (*.f64 (*.f64 #s(literal 1/4 binary64) y-scale) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))) (sqrt.f64 #s(literal 8 binary64))))))) a))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) #s(hole binary64 (* 1/4 (* a (* y-scale (* (sin (* 1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) (*.f64 (*.f64 (*.f64 a y-scale) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))) (sqrt.f64 #s(literal 8 binary64)))) #s(literal 1/4 binary64)))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) #s(hole binary64 (* a (+ (* 1/8 (/ (* (pow b 2) (* y-scale (* (pow (cos (* -1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8))))) (* (pow a 2) (sin (* 1/180 (* angle (PI))))))) (* 1/4 (* y-scale (* (sin (* 1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8)))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) (*.f64 (fma.f64 (/.f64 (*.f64 (*.f64 (*.f64 b b) y-scale) (*.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal -1/180 binary64))) #s(literal 2 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))) (*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) (*.f64 a a))) #s(literal 1/8 binary64) (*.f64 (*.f64 #s(literal 1/4 binary64) y-scale) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))) (sqrt.f64 #s(literal 8 binary64))))) a))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) #s(hole binary64 (* a (+ (* -1/32 (/ (* (pow b 4) (* y-scale (* (pow (cos (* -1/180 (* angle (PI)))) 4) (* (sqrt 2) (sqrt 8))))) (* (pow a 4) (pow (sin (* 1/180 (* angle (PI)))) 3)))) (+ (* 1/8 (/ (* (pow b 2) (* y-scale (* (pow (cos (* -1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8))))) (* (pow a 2) (sin (* 1/180 (* angle (PI))))))) (* 1/4 (* y-scale (* (sin (* 1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8))))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) (*.f64 (fma.f64 (*.f64 (/.f64 (pow.f64 b #s(literal 4 binary64)) (pow.f64 a #s(literal 4 binary64))) (/.f64 (*.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal -1/180 binary64))) #s(literal 4 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64)))) y-scale) (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 3 binary64)))) #s(literal -1/32 binary64) (fma.f64 (/.f64 (*.f64 (*.f64 (*.f64 b b) y-scale) (*.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal -1/180 binary64))) #s(literal 2 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))) (*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) (*.f64 a a))) #s(literal 1/8 binary64) (*.f64 (*.f64 #s(literal 1/4 binary64) y-scale) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))) (sqrt.f64 #s(literal 8 binary64)))))) a))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) #s(hole binary64 (* a (+ (* -1/32 (/ (* (pow b 4) (* y-scale (* (pow (cos (* -1/180 (* angle (PI)))) 4) (* (sqrt 2) (sqrt 8))))) (* (pow a 4) (pow (sin (* 1/180 (* angle (PI)))) 3)))) (+ (* 1/64 (/ (* (pow b 6) (* y-scale (* (pow (cos (* -1/180 (* angle (PI)))) 6) (* (sqrt 2) (sqrt 8))))) (* (pow a 6) (pow (sin (* 1/180 (* angle (PI)))) 5)))) (+ (* 1/8 (/ (* (pow b 2) (* y-scale (* (pow (cos (* -1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8))))) (* (pow a 2) (sin (* 1/180 (* angle (PI))))))) (* 1/4 (* y-scale (* (sin (* 1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8)))))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) (*.f64 (fma.f64 (*.f64 (/.f64 (pow.f64 b #s(literal 4 binary64)) (pow.f64 a #s(literal 4 binary64))) (/.f64 (*.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal -1/180 binary64))) #s(literal 4 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64)))) y-scale) (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 3 binary64)))) #s(literal -1/32 binary64) (fma.f64 (*.f64 (/.f64 (pow.f64 b #s(literal 6 binary64)) (pow.f64 a #s(literal 6 binary64))) (/.f64 (*.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal -1/180 binary64))) #s(literal 6 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64)))) y-scale) (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 5 binary64)))) #s(literal 1/64 binary64) (fma.f64 (/.f64 (*.f64 (*.f64 (*.f64 b b) y-scale) (*.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal -1/180 binary64))) #s(literal 2 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))) (*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) (*.f64 a a))) #s(literal 1/8 binary64) (*.f64 (*.f64 #s(literal 1/4 binary64) y-scale) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))) (sqrt.f64 #s(literal 8 binary64))))))) a))
#s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) #s(hole binary64 (* 1/4 (/ (* a (* x-scale (* y-scale (* (sin (* 1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8)))))) (fabs x-scale)))))
#s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) (*.f64 (*.f64 a (/.f64 (*.f64 (*.f64 y-scale x-scale) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))) (sqrt.f64 #s(literal 8 binary64)))) (fabs.f64 x-scale))) #s(literal 1/4 binary64)))
#s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) #s(hole binary64 (* a (+ (* 1/8 (/ (* (pow b 2) (* x-scale (* y-scale (* (pow (cos (* 1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8)))))) (* (pow a 2) (* (fabs x-scale) (sin (* 1/180 (* angle (PI)))))))) (* 1/4 (/ (* x-scale (* y-scale (* (sin (* 1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8))))) (fabs x-scale)))))))
#s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) (*.f64 (fma.f64 (*.f64 (/.f64 (*.f64 b b) (*.f64 a a)) (/.f64 (*.f64 (*.f64 y-scale x-scale) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))) (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)))) (*.f64 (fabs.f64 x-scale) (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))))) #s(literal 1/8 binary64) (*.f64 (/.f64 (*.f64 (*.f64 y-scale x-scale) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))) (sqrt.f64 #s(literal 8 binary64)))) (fabs.f64 x-scale)) #s(literal 1/4 binary64))) a))
#s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) #s(hole binary64 (* a (+ (* -1/32 (/ (* (pow b 4) (* x-scale (* y-scale (* (pow (cos (* 1/180 (* angle (PI)))) 4) (* (sqrt 2) (sqrt 8)))))) (* (pow a 4) (* (fabs x-scale) (pow (sin (* 1/180 (* angle (PI)))) 3))))) (+ (* 1/8 (/ (* (pow b 2) (* x-scale (* y-scale (* (pow (cos (* 1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8)))))) (* (pow a 2) (* (fabs x-scale) (sin (* 1/180 (* angle (PI)))))))) (* 1/4 (/ (* x-scale (* y-scale (* (sin (* 1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8))))) (fabs x-scale))))))))
#s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) (*.f64 (fma.f64 (*.f64 (pow.f64 b #s(literal 4 binary64)) (/.f64 (*.f64 (*.f64 y-scale x-scale) (*.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 4 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))) (*.f64 (*.f64 (pow.f64 a #s(literal 4 binary64)) (fabs.f64 x-scale)) (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 3 binary64))))) #s(literal -1/32 binary64) (fma.f64 (*.f64 (/.f64 (*.f64 b b) (*.f64 a a)) (/.f64 (*.f64 (*.f64 y-scale x-scale) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))) (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)))) (*.f64 (fabs.f64 x-scale) (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))))) #s(literal 1/8 binary64) (*.f64 (/.f64 (*.f64 (*.f64 y-scale x-scale) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))) (sqrt.f64 #s(literal 8 binary64)))) (fabs.f64 x-scale)) #s(literal 1/4 binary64)))) a))
#s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) #s(hole binary64 (* a (+ (* -1/32 (/ (* (pow b 4) (* x-scale (* y-scale (* (pow (cos (* 1/180 (* angle (PI)))) 4) (* (sqrt 2) (sqrt 8)))))) (* (pow a 4) (* (fabs x-scale) (pow (sin (* 1/180 (* angle (PI)))) 3))))) (+ (* 1/64 (/ (* (pow b 6) (* x-scale (* y-scale (* (pow (cos (* 1/180 (* angle (PI)))) 6) (* (sqrt 2) (sqrt 8)))))) (* (pow a 6) (* (fabs x-scale) (pow (sin (* 1/180 (* angle (PI)))) 5))))) (+ (* 1/8 (/ (* (pow b 2) (* x-scale (* y-scale (* (pow (cos (* 1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8)))))) (* (pow a 2) (* (fabs x-scale) (sin (* 1/180 (* angle (PI)))))))) (* 1/4 (/ (* x-scale (* y-scale (* (sin (* 1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8))))) (fabs x-scale)))))))))
#s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) (*.f64 (fma.f64 (*.f64 (pow.f64 b #s(literal 4 binary64)) (/.f64 (*.f64 (*.f64 y-scale x-scale) (*.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 4 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))) (*.f64 (*.f64 (pow.f64 a #s(literal 4 binary64)) (fabs.f64 x-scale)) (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 3 binary64))))) #s(literal -1/32 binary64) (fma.f64 (*.f64 (pow.f64 b #s(literal 6 binary64)) (/.f64 (*.f64 (*.f64 y-scale x-scale) (*.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 6 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))) (*.f64 (*.f64 (pow.f64 a #s(literal 6 binary64)) (fabs.f64 x-scale)) (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 5 binary64))))) #s(literal 1/64 binary64) (fma.f64 (*.f64 (/.f64 (*.f64 b b) (*.f64 a a)) (/.f64 (*.f64 (*.f64 y-scale x-scale) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))) (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)))) (*.f64 (fabs.f64 x-scale) (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))))) #s(literal 1/8 binary64) (*.f64 (/.f64 (*.f64 (*.f64 y-scale x-scale) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))) (sqrt.f64 #s(literal 8 binary64)))) (fabs.f64 x-scale)) #s(literal 1/4 binary64))))) a))
#s(approx (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) 1/2)) #s(hole binary64 (* a (* (sin (* 1/180 (* angle (PI)))) (sqrt 2)))))
#s(approx (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) 1/2)) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))) a))
#s(approx (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) 1/2)) #s(hole binary64 (* a (+ (* (sin (* 1/180 (* angle (PI)))) (sqrt 2)) (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (* (pow a 2) (* (sin (* 1/180 (* angle (PI)))) (sqrt 2))))))))
#s(approx (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) 1/2)) (*.f64 (fma.f64 (sqrt.f64 #s(literal 2 binary64)) (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) (/.f64 (pow.f64 (*.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) b) #s(literal 2 binary64)) (*.f64 (*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) (*.f64 a a)) (sqrt.f64 #s(literal 2 binary64))))) a))
#s(approx (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) 1/2)) #s(hole binary64 (* a (+ (* -1/2 (/ (* (pow b 4) (pow (cos (* 1/180 (* angle (PI)))) 4)) (* (pow a 4) (* (pow (sin (* 1/180 (* angle (PI)))) 3) (pow (sqrt 2) 3))))) (+ (* (sin (* 1/180 (* angle (PI)))) (sqrt 2)) (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (* (pow a 2) (* (sin (* 1/180 (* angle (PI)))) (sqrt 2)))))))))
#s(approx (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) 1/2)) (*.f64 (fma.f64 (*.f64 (/.f64 (pow.f64 b #s(literal 4 binary64)) (pow.f64 a #s(literal 4 binary64))) (/.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 4 binary64)) (pow.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))) #s(literal 3 binary64)))) #s(literal -1/2 binary64) (fma.f64 (sqrt.f64 #s(literal 2 binary64)) (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) (/.f64 (pow.f64 (*.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) b) #s(literal 2 binary64)) (*.f64 (*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) (*.f64 a a)) (sqrt.f64 #s(literal 2 binary64)))))) a))
#s(approx (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) 1/2)) #s(hole binary64 (* a (+ (* -1/2 (/ (* (pow b 4) (pow (cos (* 1/180 (* angle (PI)))) 4)) (* (pow a 4) (* (pow (sin (* 1/180 (* angle (PI)))) 3) (pow (sqrt 2) 3))))) (+ (* 1/2 (/ (* (pow b 6) (pow (cos (* 1/180 (* angle (PI)))) 6)) (* (pow a 6) (* (pow (sin (* 1/180 (* angle (PI)))) 5) (pow (sqrt 2) 5))))) (+ (* (sin (* 1/180 (* angle (PI)))) (sqrt 2)) (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (* (pow a 2) (* (sin (* 1/180 (* angle (PI)))) (sqrt 2))))))))))
#s(approx (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) 1/2)) (*.f64 (fma.f64 (*.f64 (/.f64 (pow.f64 b #s(literal 4 binary64)) (pow.f64 a #s(literal 4 binary64))) (/.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 4 binary64)) (pow.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))) #s(literal 3 binary64)))) #s(literal -1/2 binary64) (fma.f64 (*.f64 (/.f64 (pow.f64 b #s(literal 6 binary64)) (pow.f64 a #s(literal 6 binary64))) (/.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 6 binary64)) (*.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 5 binary64)) (pow.f64 (sqrt.f64 #s(literal 2 binary64)) #s(literal 5 binary64))))) #s(literal 1/2 binary64) (fma.f64 (sqrt.f64 #s(literal 2 binary64)) (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) (/.f64 (pow.f64 (*.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) b) #s(literal 2 binary64)) (*.f64 (*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) (*.f64 a a)) (sqrt.f64 #s(literal 2 binary64))))))) a))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) 1/2))) #s(hole binary64 (* 1/4 (* a (* y-scale (* (sin (* 1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) 1/2))) (*.f64 (*.f64 (*.f64 a y-scale) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))) (sqrt.f64 #s(literal 8 binary64)))) #s(literal 1/4 binary64)))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) 1/2))) #s(hole binary64 (* a (+ (* 1/8 (/ (* (pow b 2) (* y-scale (* (pow (cos (* 1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8))))) (* (pow a 2) (sin (* 1/180 (* angle (PI))))))) (* 1/4 (* y-scale (* (sin (* 1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8)))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) 1/2))) (*.f64 (fma.f64 (/.f64 (*.f64 (*.f64 (*.f64 b b) y-scale) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))) (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)))) (*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) (*.f64 a a))) #s(literal 1/8 binary64) (*.f64 (*.f64 #s(literal 1/4 binary64) y-scale) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))) (sqrt.f64 #s(literal 8 binary64))))) a))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) 1/2))) #s(hole binary64 (* a (+ (* -1/32 (/ (* (pow b 4) (* y-scale (* (pow (cos (* 1/180 (* angle (PI)))) 4) (* (sqrt 2) (sqrt 8))))) (* (pow a 4) (pow (sin (* 1/180 (* angle (PI)))) 3)))) (+ (* 1/8 (/ (* (pow b 2) (* y-scale (* (pow (cos (* 1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8))))) (* (pow a 2) (sin (* 1/180 (* angle (PI))))))) (* 1/4 (* y-scale (* (sin (* 1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8))))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) 1/2))) (*.f64 (fma.f64 (*.f64 (/.f64 (pow.f64 b #s(literal 4 binary64)) (pow.f64 a #s(literal 4 binary64))) (/.f64 (*.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 4 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64)))) y-scale) (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 3 binary64)))) #s(literal -1/32 binary64) (fma.f64 (/.f64 (*.f64 (*.f64 (*.f64 b b) y-scale) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))) (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)))) (*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) (*.f64 a a))) #s(literal 1/8 binary64) (*.f64 (*.f64 #s(literal 1/4 binary64) y-scale) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))) (sqrt.f64 #s(literal 8 binary64)))))) a))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) 1/2))) #s(hole binary64 (* a (+ (* -1/32 (/ (* (pow b 4) (* y-scale (* (pow (cos (* 1/180 (* angle (PI)))) 4) (* (sqrt 2) (sqrt 8))))) (* (pow a 4) (pow (sin (* 1/180 (* angle (PI)))) 3)))) (+ (* 1/64 (/ (* (pow b 6) (* y-scale (* (pow (cos (* 1/180 (* angle (PI)))) 6) (* (sqrt 2) (sqrt 8))))) (* (pow a 6) (pow (sin (* 1/180 (* angle (PI)))) 5)))) (+ (* 1/8 (/ (* (pow b 2) (* y-scale (* (pow (cos (* 1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8))))) (* (pow a 2) (sin (* 1/180 (* angle (PI))))))) (* 1/4 (* y-scale (* (sin (* 1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8)))))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) 1/2))) (*.f64 (fma.f64 (*.f64 (/.f64 (pow.f64 b #s(literal 4 binary64)) (pow.f64 a #s(literal 4 binary64))) (/.f64 (*.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 4 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64)))) y-scale) (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 3 binary64)))) #s(literal -1/32 binary64) (fma.f64 (*.f64 (/.f64 (pow.f64 b #s(literal 6 binary64)) (pow.f64 a #s(literal 6 binary64))) (/.f64 (*.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 6 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64)))) y-scale) (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 5 binary64)))) #s(literal 1/64 binary64) (fma.f64 (/.f64 (*.f64 (*.f64 (*.f64 b b) y-scale) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))) (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)))) (*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) (*.f64 a a))) #s(literal 1/8 binary64) (*.f64 (*.f64 #s(literal 1/4 binary64) y-scale) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))) (sqrt.f64 #s(literal 8 binary64))))))) a))
#s(approx (sqrt (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) #s(hole binary64 (* a (* (sin (* 1/180 (* angle (PI)))) (sqrt 2)))))
#s(approx (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) 1/2)) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))) a))
#s(approx (sqrt (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) #s(hole binary64 (* a (+ (* 1/2 (/ (* (pow b 2) (* (pow (cos (* 1/180 (* angle (PI)))) 2) (sqrt 2))) (* (pow a 2) (sin (* 1/180 (* angle (PI))))))) (* (sin (* 1/180 (* angle (PI)))) (sqrt 2))))))
#s(approx (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) 1/2)) (*.f64 (fma.f64 (/.f64 (*.f64 (pow.f64 (*.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) b) #s(literal 2 binary64)) (sqrt.f64 #s(literal 2 binary64))) (*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) (*.f64 a a))) #s(literal 1/2 binary64) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))))) a))
#s(approx (sqrt (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) #s(hole binary64 (* a (+ (* -1/8 (/ (* (pow b 4) (* (pow (cos (* 1/180 (* angle (PI)))) 4) (sqrt 2))) (* (pow a 4) (pow (sin (* 1/180 (* angle (PI)))) 3)))) (+ (* 1/2 (/ (* (pow b 2) (* (pow (cos (* 1/180 (* angle (PI)))) 2) (sqrt 2))) (* (pow a 2) (sin (* 1/180 (* angle (PI))))))) (* (sin (* 1/180 (* angle (PI)))) (sqrt 2)))))))
#s(approx (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) 1/2)) (*.f64 (fma.f64 (*.f64 (/.f64 (pow.f64 b #s(literal 4 binary64)) (pow.f64 a #s(literal 4 binary64))) (/.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 4 binary64)) (sqrt.f64 #s(literal 2 binary64))) (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 3 binary64)))) #s(literal -1/8 binary64) (fma.f64 (/.f64 (*.f64 (pow.f64 (*.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) b) #s(literal 2 binary64)) (sqrt.f64 #s(literal 2 binary64))) (*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) (*.f64 a a))) #s(literal 1/2 binary64) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))))) a))
#s(approx (sqrt (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) #s(hole binary64 (* a (+ (* -1/8 (/ (* (pow b 4) (* (pow (cos (* 1/180 (* angle (PI)))) 4) (sqrt 2))) (* (pow a 4) (pow (sin (* 1/180 (* angle (PI)))) 3)))) (+ (* 1/16 (/ (* (pow b 6) (* (pow (cos (* 1/180 (* angle (PI)))) 6) (sqrt 2))) (* (pow a 6) (pow (sin (* 1/180 (* angle (PI)))) 5)))) (+ (* 1/2 (/ (* (pow b 2) (* (pow (cos (* 1/180 (* angle (PI)))) 2) (sqrt 2))) (* (pow a 2) (sin (* 1/180 (* angle (PI))))))) (* (sin (* 1/180 (* angle (PI)))) (sqrt 2))))))))
#s(approx (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) 1/2)) (*.f64 (fma.f64 (*.f64 (/.f64 (pow.f64 b #s(literal 4 binary64)) (pow.f64 a #s(literal 4 binary64))) (/.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 4 binary64)) (sqrt.f64 #s(literal 2 binary64))) (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 3 binary64)))) #s(literal -1/8 binary64) (fma.f64 (*.f64 (/.f64 (pow.f64 b #s(literal 6 binary64)) (pow.f64 a #s(literal 6 binary64))) (/.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 6 binary64)) (sqrt.f64 #s(literal 2 binary64))) (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 5 binary64)))) #s(literal 1/16 binary64) (fma.f64 (/.f64 (*.f64 (pow.f64 (*.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) b) #s(literal 2 binary64)) (sqrt.f64 #s(literal 2 binary64))) (*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) (*.f64 a a))) #s(literal 1/2 binary64) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))))))) a))
#s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) #s(hole binary64 (* a (* (sin (* 1/180 (* angle (PI)))) (sqrt 2)))))
#s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))) a))
#s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) #s(hole binary64 (* a (+ (* 1/2 (/ (* (pow b 2) (* (pow (cos (* -1/180 (* angle (PI)))) 2) (sqrt 2))) (* (pow a 2) (sin (* 1/180 (* angle (PI))))))) (* (sin (* 1/180 (* angle (PI)))) (sqrt 2))))))
#s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) (*.f64 (fma.f64 (*.f64 (/.f64 (*.f64 b b) (*.f64 a a)) (/.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal -1/180 binary64))) #s(literal 2 binary64)) (sqrt.f64 #s(literal 2 binary64))) (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))))) #s(literal 1/2 binary64) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))))) a))
#s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) #s(hole binary64 (* a (+ (* -1/8 (/ (* (pow b 4) (* (pow (cos (* -1/180 (* angle (PI)))) 4) (sqrt 2))) (* (pow a 4) (pow (sin (* 1/180 (* angle (PI)))) 3)))) (+ (* 1/2 (/ (* (pow b 2) (* (pow (cos (* -1/180 (* angle (PI)))) 2) (sqrt 2))) (* (pow a 2) (sin (* 1/180 (* angle (PI))))))) (* (sin (* 1/180 (* angle (PI)))) (sqrt 2)))))))
#s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) (*.f64 (fma.f64 (*.f64 (/.f64 (pow.f64 b #s(literal 4 binary64)) (pow.f64 a #s(literal 4 binary64))) (/.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal -1/180 binary64))) #s(literal 4 binary64)) (sqrt.f64 #s(literal 2 binary64))) (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 3 binary64)))) #s(literal -1/8 binary64) (fma.f64 (*.f64 (/.f64 (*.f64 b b) (*.f64 a a)) (/.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal -1/180 binary64))) #s(literal 2 binary64)) (sqrt.f64 #s(literal 2 binary64))) (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))))) #s(literal 1/2 binary64) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))))) a))
#s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) #s(hole binary64 (* a (+ (* -1/8 (/ (* (pow b 4) (* (pow (cos (* -1/180 (* angle (PI)))) 4) (sqrt 2))) (* (pow a 4) (pow (sin (* 1/180 (* angle (PI)))) 3)))) (+ (* 1/16 (/ (* (pow b 6) (* (pow (cos (* -1/180 (* angle (PI)))) 6) (sqrt 2))) (* (pow a 6) (pow (sin (* 1/180 (* angle (PI)))) 5)))) (+ (* 1/2 (/ (* (pow b 2) (* (pow (cos (* -1/180 (* angle (PI)))) 2) (sqrt 2))) (* (pow a 2) (sin (* 1/180 (* angle (PI))))))) (* (sin (* 1/180 (* angle (PI)))) (sqrt 2))))))))
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(fma.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 (*.f64 y-scale y-scale) (*.f64 x-scale x-scale)))) #s(literal 4 binary64) (pow.f64 (-.f64 (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 x-scale x-scale)) (/.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 y-scale y-scale))) #s(literal 2 binary64)))) (+.f64 (/.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 y-scale y-scale)) (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 x-scale x-scale)))))) (*.f64 (*.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) #s(literal 1/4 binary64)) x-scale) (sqrt.f64 (+.f64 (sqrt.f64 (fma.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 (*.f64 y-scale y-scale) (*.f64 x-scale x-scale)))) #s(literal 4 binary64) (pow.f64 (-.f64 (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 x-scale x-scale)) (/.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 y-scale y-scale))) #s(literal 2 binary64)))) (+.f64 (/.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 y-scale y-scale)) (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 x-scale x-scale))))))))) a)))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2))) #s(hole binary64 (* -1/4 (* a (* y-scale (* (sin (* 1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) 1/2))) (*.f64 (*.f64 (*.f64 a y-scale) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))) (sqrt.f64 #s(literal 8 binary64)))) #s(literal -1/4 binary64)))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2))) #s(hole binary64 (* -1 (* a (+ (* 1/8 (/ (* (pow b 2) (* y-scale (* (pow (cos (* 1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8))))) (* (pow a 2) (sin (* 1/180 (* angle (PI))))))) (* 1/4 (* y-scale (* (sin (* 1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8))))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) 1/2))) (neg.f64 (*.f64 (fma.f64 (/.f64 (*.f64 (*.f64 (*.f64 b b) y-scale) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))) (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)))) (*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) (*.f64 a a))) #s(literal 1/8 binary64) (*.f64 (*.f64 #s(literal 1/4 binary64) y-scale) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))) (sqrt.f64 #s(literal 8 binary64))))) a)))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2))) #s(hole binary64 (* -1 (* a (+ (* -1/32 (/ (* (pow b 4) (* y-scale (* (pow (cos (* 1/180 (* angle (PI)))) 4) (* (sqrt 2) (sqrt 8))))) (* (pow a 4) (pow (sin (* 1/180 (* angle (PI)))) 3)))) (+ (* 1/8 (/ (* (pow b 2) (* y-scale (* (pow (cos (* 1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8))))) (* (pow a 2) (sin (* 1/180 (* angle (PI))))))) (* 1/4 (* y-scale (* (sin (* 1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8)))))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) 1/2))) (neg.f64 (*.f64 (fma.f64 (*.f64 (/.f64 (pow.f64 b #s(literal 4 binary64)) (pow.f64 a #s(literal 4 binary64))) (/.f64 (*.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 4 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64)))) y-scale) (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 3 binary64)))) #s(literal -1/32 binary64) (fma.f64 (/.f64 (*.f64 (*.f64 (*.f64 b b) y-scale) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))) (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)))) (*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) (*.f64 a a))) #s(literal 1/8 binary64) (*.f64 (*.f64 #s(literal 1/4 binary64) y-scale) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))) (sqrt.f64 #s(literal 8 binary64)))))) a)))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2))) #s(hole binary64 (* -1 (* a (+ (* -1/32 (/ (* (pow b 4) (* y-scale (* (pow (cos (* 1/180 (* angle (PI)))) 4) (* (sqrt 2) (sqrt 8))))) (* (pow a 4) (pow (sin (* 1/180 (* angle (PI)))) 3)))) (+ (* 1/64 (/ (* (pow b 6) (* y-scale (* (pow (cos (* 1/180 (* angle (PI)))) 6) (* (sqrt 2) (sqrt 8))))) (* (pow a 6) (pow (sin (* 1/180 (* angle (PI)))) 5)))) (+ (* 1/8 (/ (* (pow b 2) (* y-scale (* (pow (cos (* 1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8))))) (* (pow a 2) (sin (* 1/180 (* angle (PI))))))) (* 1/4 (* y-scale (* (sin (* 1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8))))))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) 1/2))) (neg.f64 (*.f64 (fma.f64 (*.f64 (/.f64 (pow.f64 b #s(literal 4 binary64)) (pow.f64 a #s(literal 4 binary64))) (/.f64 (*.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 4 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64)))) y-scale) (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 3 binary64)))) #s(literal -1/32 binary64) (fma.f64 (*.f64 (/.f64 (pow.f64 b #s(literal 6 binary64)) (pow.f64 a #s(literal 6 binary64))) (/.f64 (*.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 6 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64)))) y-scale) (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 5 binary64)))) #s(literal 1/64 binary64) (fma.f64 (/.f64 (*.f64 (*.f64 (*.f64 b b) y-scale) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))) (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)))) (*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) (*.f64 a a))) #s(literal 1/8 binary64) (*.f64 (*.f64 #s(literal 1/4 binary64) y-scale) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))) (sqrt.f64 #s(literal 8 binary64))))))) a)))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) #s(hole binary64 (* -1/4 (* a (* y-scale (* (sin (* 1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) (*.f64 (*.f64 (*.f64 a y-scale) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))) (sqrt.f64 #s(literal 8 binary64)))) #s(literal -1/4 binary64)))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) #s(hole binary64 (* -1 (* a (+ (* 1/8 (/ (* (pow b 2) (* y-scale (* (pow (cos (* -1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8))))) (* (pow a 2) (sin (* 1/180 (* angle (PI))))))) (* 1/4 (* y-scale (* (sin (* 1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8))))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) (neg.f64 (*.f64 (fma.f64 (/.f64 (*.f64 (*.f64 (*.f64 b b) y-scale) (*.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal -1/180 binary64))) #s(literal 2 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))) (*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) (*.f64 a a))) #s(literal 1/8 binary64) (*.f64 (*.f64 #s(literal 1/4 binary64) y-scale) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))) (sqrt.f64 #s(literal 8 binary64))))) a)))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) #s(hole binary64 (* -1 (* a (+ (* -1/32 (/ (* (pow b 4) (* y-scale (* (pow (cos (* -1/180 (* angle (PI)))) 4) (* (sqrt 2) (sqrt 8))))) (* (pow a 4) (pow (sin (* 1/180 (* angle (PI)))) 3)))) (+ (* 1/8 (/ (* (pow b 2) (* y-scale (* (pow (cos (* -1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8))))) (* (pow a 2) (sin (* 1/180 (* angle (PI))))))) (* 1/4 (* y-scale (* (sin (* 1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8)))))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) (neg.f64 (*.f64 (fma.f64 (*.f64 (/.f64 (pow.f64 b #s(literal 4 binary64)) (pow.f64 a #s(literal 4 binary64))) (/.f64 (*.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal -1/180 binary64))) #s(literal 4 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64)))) y-scale) (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 3 binary64)))) #s(literal -1/32 binary64) (fma.f64 (/.f64 (*.f64 (*.f64 (*.f64 b b) y-scale) (*.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal -1/180 binary64))) #s(literal 2 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))) (*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) (*.f64 a a))) #s(literal 1/8 binary64) (*.f64 (*.f64 #s(literal 1/4 binary64) y-scale) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))) (sqrt.f64 #s(literal 8 binary64)))))) a)))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) #s(hole binary64 (* -1 (* a (+ (* -1/32 (/ (* (pow b 4) (* y-scale (* (pow (cos (* -1/180 (* angle (PI)))) 4) (* (sqrt 2) (sqrt 8))))) (* (pow a 4) (pow (sin (* 1/180 (* angle (PI)))) 3)))) (+ (* 1/64 (/ (* (pow b 6) (* y-scale (* (pow (cos (* -1/180 (* angle (PI)))) 6) (* (sqrt 2) (sqrt 8))))) (* (pow a 6) (pow (sin (* 1/180 (* angle (PI)))) 5)))) (+ (* 1/8 (/ (* (pow b 2) (* y-scale (* (pow (cos (* -1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8))))) (* (pow a 2) (sin (* 1/180 (* angle (PI))))))) (* 1/4 (* y-scale (* (sin (* 1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8))))))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) (neg.f64 (*.f64 (fma.f64 (*.f64 (/.f64 (pow.f64 b #s(literal 4 binary64)) (pow.f64 a #s(literal 4 binary64))) (/.f64 (*.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal -1/180 binary64))) #s(literal 4 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64)))) y-scale) (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 3 binary64)))) #s(literal -1/32 binary64) (fma.f64 (*.f64 (/.f64 (pow.f64 b #s(literal 6 binary64)) (pow.f64 a #s(literal 6 binary64))) (/.f64 (*.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal -1/180 binary64))) #s(literal 6 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64)))) y-scale) (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 5 binary64)))) #s(literal 1/64 binary64) (fma.f64 (/.f64 (*.f64 (*.f64 (*.f64 b b) y-scale) (*.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal -1/180 binary64))) #s(literal 2 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))) (*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) (*.f64 a a))) #s(literal 1/8 binary64) (*.f64 (*.f64 #s(literal 1/4 binary64) y-scale) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))) (sqrt.f64 #s(literal 8 binary64))))))) a)))
#s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) #s(hole binary64 (* -1/4 (/ (* a (* x-scale (* y-scale (* (sin (* 1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8)))))) (fabs x-scale)))))
#s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) (*.f64 (*.f64 a (/.f64 (*.f64 (*.f64 y-scale x-scale) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))) (sqrt.f64 #s(literal 8 binary64)))) (fabs.f64 x-scale))) #s(literal -1/4 binary64)))
#s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) #s(hole binary64 (* -1 (* a (+ (* 1/8 (/ (* (pow b 2) (* x-scale (* y-scale (* (pow (cos (* 1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8)))))) (* (pow a 2) (* (fabs x-scale) (sin (* 1/180 (* angle (PI)))))))) (* 1/4 (/ (* x-scale (* y-scale (* (sin (* 1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8))))) (fabs x-scale))))))))
#s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) (neg.f64 (*.f64 (fma.f64 (*.f64 (/.f64 (*.f64 b b) (*.f64 a a)) (/.f64 (*.f64 (*.f64 y-scale x-scale) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))) (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)))) (*.f64 (fabs.f64 x-scale) (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))))) #s(literal 1/8 binary64) (*.f64 (/.f64 (*.f64 (*.f64 y-scale x-scale) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))) (sqrt.f64 #s(literal 8 binary64)))) (fabs.f64 x-scale)) #s(literal 1/4 binary64))) a)))
#s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) #s(hole binary64 (* -1 (* a (+ (* -1/32 (/ (* (pow b 4) (* x-scale (* y-scale (* (pow (cos (* 1/180 (* angle (PI)))) 4) (* (sqrt 2) (sqrt 8)))))) (* (pow a 4) (* (fabs x-scale) (pow (sin (* 1/180 (* angle (PI)))) 3))))) (+ (* 1/8 (/ (* (pow b 2) (* x-scale (* y-scale (* (pow (cos (* 1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8)))))) (* (pow a 2) (* (fabs x-scale) (sin (* 1/180 (* angle (PI)))))))) (* 1/4 (/ (* x-scale (* y-scale (* (sin (* 1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8))))) (fabs x-scale)))))))))
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#s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) #s(hole binary64 (* -1 (* a (+ (* -1/32 (/ (* (pow b 4) (* x-scale (* y-scale (* (pow (cos (* 1/180 (* angle (PI)))) 4) (* (sqrt 2) (sqrt 8)))))) (* (pow a 4) (* (fabs x-scale) (pow (sin (* 1/180 (* angle (PI)))) 3))))) (+ (* 1/64 (/ (* (pow b 6) (* x-scale (* y-scale (* (pow (cos (* 1/180 (* angle (PI)))) 6) (* (sqrt 2) (sqrt 8)))))) (* (pow a 6) (* (fabs x-scale) (pow (sin (* 1/180 (* angle (PI)))) 5))))) (+ (* 1/8 (/ (* (pow b 2) (* x-scale (* y-scale (* (pow (cos (* 1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8)))))) (* (pow a 2) (* (fabs x-scale) (sin (* 1/180 (* angle (PI)))))))) (* 1/4 (/ (* x-scale (* y-scale (* (sin (* 1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8))))) (fabs x-scale))))))))))
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#s(approx (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) 1/2)) #s(hole binary64 (* -1 (* a (* (sin (* 1/180 (* angle (PI)))) (sqrt 2))))))
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#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) 1/2))) #s(hole binary64 (* -1/4 (* a (* y-scale (* (sin (* 1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8))))))))
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#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) 1/2))) #s(hole binary64 (* -1 (* a (+ (* 1/8 (/ (* (pow b 2) (* y-scale (* (pow (cos (* 1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8))))) (* (pow a 2) (sin (* 1/180 (* angle (PI))))))) (* 1/4 (* y-scale (* (sin (* 1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8))))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) 1/2))) (neg.f64 (*.f64 (fma.f64 (/.f64 (*.f64 (*.f64 (*.f64 b b) y-scale) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))) (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)))) (*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) (*.f64 a a))) #s(literal 1/8 binary64) (*.f64 (*.f64 #s(literal 1/4 binary64) y-scale) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))) (sqrt.f64 #s(literal 8 binary64))))) a)))
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#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2))) #s(hole binary64 (+ (* 1/4 (* a (* y-scale (* (sin (* 1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8)))))) (* (pow b 2) (+ (* -1/32 (/ (* (pow b 2) (* y-scale (* (pow (cos (* 1/180 (* angle (PI)))) 4) (* (sqrt 2) (sqrt 8))))) (* (pow a 3) (pow (sin (* 1/180 (* angle (PI)))) 3)))) (* 1/8 (/ (* y-scale (* (pow (cos (* 1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8)))) (* a (sin (* 1/180 (* angle (PI))))))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) 1/2))) (fma.f64 (fma.f64 (/.f64 (*.f64 (*.f64 (*.f64 b b) y-scale) (*.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 4 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))) (pow.f64 (*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) a) #s(literal 3 binary64))) #s(literal -1/32 binary64) (*.f64 (*.f64 (/.f64 y-scale a) (/.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))) (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64))) (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))))) #s(literal 1/8 binary64))) (*.f64 b b) (*.f64 (*.f64 (*.f64 a y-scale) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))) (sqrt.f64 #s(literal 8 binary64)))) #s(literal 1/4 binary64))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2))) #s(hole binary64 (+ (* 1/4 (* a (* y-scale (* (sin (* 1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8)))))) (* (pow b 2) (+ (* 1/8 (/ (* y-scale (* (pow (cos (* 1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8)))) (* a (sin (* 1/180 (* angle (PI))))))) (* (pow b 2) (+ (* -1/32 (/ (* y-scale (* (pow (cos (* 1/180 (* angle (PI)))) 4) (* (sqrt 2) (sqrt 8)))) (* (pow a 3) (pow (sin (* 1/180 (* angle (PI)))) 3)))) (* 1/64 (/ (* (pow b 2) (* y-scale (* (pow (cos (* 1/180 (* angle (PI)))) 6) (* (sqrt 2) (sqrt 8))))) (* (pow a 5) (pow (sin (* 1/180 (* angle (PI)))) 5)))))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) 1/2))) (fma.f64 (fma.f64 (fma.f64 (*.f64 (/.f64 (*.f64 b b) (pow.f64 a #s(literal 5 binary64))) (/.f64 (*.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 6 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64)))) y-scale) (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 5 binary64)))) #s(literal 1/64 binary64) (*.f64 (*.f64 y-scale (/.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 4 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64)))) (pow.f64 (*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) a) #s(literal 3 binary64)))) #s(literal -1/32 binary64))) (*.f64 b b) (*.f64 (*.f64 (/.f64 y-scale a) (/.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))) (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64))) (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))))) #s(literal 1/8 binary64))) (*.f64 b b) (*.f64 (*.f64 (*.f64 a y-scale) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))) (sqrt.f64 #s(literal 8 binary64)))) #s(literal 1/4 binary64))))
#s(approx (* (* (* 1/4 b) y-scale) 4) #s(hole binary64 (* b y-scale)))
#s(approx (* (* (* 1/4 b) y-scale) 4) (*.f64 y-scale b))
#s(approx (* (* 1/4 b) y-scale) #s(hole binary64 (* 1/4 (* b y-scale))))
#s(approx (* (* 1/4 b) y-scale) (*.f64 (*.f64 #s(literal 1/4 binary64) b) y-scale))
#s(approx (* 1/4 b) #s(hole binary64 (* 1/4 b)))
#s(approx (* 1/4 b) (*.f64 #s(literal 1/4 binary64) b))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) #s(hole binary64 (+ (* 1/8 (/ (* (pow b 2) (* y-scale (* (pow (cos (* -1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8))))) (* a (sin (* 1/180 (* angle (PI))))))) (* 1/4 (* a (* y-scale (* (sin (* 1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8)))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) (fma.f64 (/.f64 (*.f64 (*.f64 (*.f64 b b) y-scale) (*.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal -1/180 binary64))) #s(literal 2 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))) (*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) a)) #s(literal 1/8 binary64) (*.f64 (*.f64 (*.f64 a y-scale) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))) (sqrt.f64 #s(literal 8 binary64)))) #s(literal 1/4 binary64))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) #s(hole binary64 (+ (* 1/4 (* a (* y-scale (* (sin (* 1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8)))))) (* (pow b 2) (+ (* -1/32 (/ (* (pow b 2) (* y-scale (* (pow (cos (* -1/180 (* angle (PI)))) 4) (* (sqrt 2) (sqrt 8))))) (* (pow a 3) (pow (sin (* 1/180 (* angle (PI)))) 3)))) (* 1/8 (/ (* y-scale (* (pow (cos (* -1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8)))) (* a (sin (* 1/180 (* angle (PI))))))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) (fma.f64 (fma.f64 (/.f64 (*.f64 (*.f64 (*.f64 b b) y-scale) (*.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal -1/180 binary64))) #s(literal 4 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))) (pow.f64 (*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) a) #s(literal 3 binary64))) #s(literal -1/32 binary64) (*.f64 (*.f64 (/.f64 y-scale a) (/.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal -1/180 binary64))) #s(literal 2 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64)))) (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))))) #s(literal 1/8 binary64))) (*.f64 b b) (*.f64 (*.f64 (*.f64 a y-scale) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))) (sqrt.f64 #s(literal 8 binary64)))) #s(literal 1/4 binary64))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) #s(hole binary64 (+ (* 1/4 (* a (* y-scale (* (sin (* 1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8)))))) (* (pow b 2) (+ (* 1/8 (/ (* y-scale (* (pow (cos (* -1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8)))) (* a (sin (* 1/180 (* angle (PI))))))) (* (pow b 2) (+ (* -1/32 (/ (* y-scale (* (pow (cos (* -1/180 (* angle (PI)))) 4) (* (sqrt 2) (sqrt 8)))) (* (pow a 3) (pow (sin (* 1/180 (* angle (PI)))) 3)))) (* 1/64 (/ (* (pow b 2) (* y-scale (* (pow (cos (* -1/180 (* angle (PI)))) 6) (* (sqrt 2) (sqrt 8))))) (* (pow a 5) (pow (sin (* 1/180 (* angle (PI)))) 5)))))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) (fma.f64 (fma.f64 (fma.f64 (*.f64 (/.f64 (*.f64 b b) (pow.f64 a #s(literal 5 binary64))) (/.f64 (*.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal -1/180 binary64))) #s(literal 6 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64)))) y-scale) (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 5 binary64)))) #s(literal 1/64 binary64) (*.f64 (*.f64 y-scale (/.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal -1/180 binary64))) #s(literal 4 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64)))) (pow.f64 (*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) a) #s(literal 3 binary64)))) #s(literal -1/32 binary64))) (*.f64 b b) (*.f64 (*.f64 (/.f64 y-scale a) (/.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal -1/180 binary64))) #s(literal 2 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64)))) (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))))) #s(literal 1/8 binary64))) (*.f64 b b) (*.f64 (*.f64 (*.f64 a y-scale) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))) (sqrt.f64 #s(literal 8 binary64)))) #s(literal 1/4 binary64))))
#s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) #s(hole binary64 (+ (* 1/8 (/ (* (pow b 2) (* x-scale (* y-scale (* (pow (cos (* 1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8)))))) (* a (* (fabs x-scale) (sin (* 1/180 (* angle (PI)))))))) (* 1/4 (/ (* a (* x-scale (* y-scale (* (sin (* 1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8)))))) (fabs x-scale))))))
#s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) (fma.f64 (*.f64 (/.f64 (*.f64 b b) a) (/.f64 (*.f64 (*.f64 y-scale x-scale) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))) (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)))) (*.f64 (fabs.f64 x-scale) (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))))) #s(literal 1/8 binary64) (*.f64 (*.f64 a (/.f64 (*.f64 (*.f64 y-scale x-scale) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))) (sqrt.f64 #s(literal 8 binary64)))) (fabs.f64 x-scale))) #s(literal 1/4 binary64))))
#s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) #s(hole binary64 (+ (* 1/4 (/ (* a (* x-scale (* y-scale (* (sin (* 1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8)))))) (fabs x-scale))) (* (pow b 2) (+ (* -1/32 (/ (* (pow b 2) (* x-scale (* y-scale (* (pow (cos (* 1/180 (* angle (PI)))) 4) (* (sqrt 2) (sqrt 8)))))) (* (pow a 3) (* (fabs x-scale) (pow (sin (* 1/180 (* angle (PI)))) 3))))) (* 1/8 (/ (* x-scale (* y-scale (* (pow (cos (* 1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8))))) (* a (* (fabs x-scale) (sin (* 1/180 (* angle (PI)))))))))))))
#s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) (fma.f64 (fma.f64 (/.f64 (*.f64 (*.f64 y-scale x-scale) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))) (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)))) (*.f64 (*.f64 a (fabs.f64 x-scale)) (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))))) #s(literal 1/8 binary64) (*.f64 (*.f64 (*.f64 b b) (/.f64 (*.f64 (*.f64 y-scale x-scale) (*.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 4 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))) (*.f64 (*.f64 (pow.f64 a #s(literal 3 binary64)) (fabs.f64 x-scale)) (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 3 binary64))))) #s(literal -1/32 binary64))) (*.f64 b b) (*.f64 (*.f64 a (/.f64 (*.f64 (*.f64 y-scale x-scale) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))) (sqrt.f64 #s(literal 8 binary64)))) (fabs.f64 x-scale))) #s(literal 1/4 binary64))))
#s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) #s(hole binary64 (+ (* 1/4 (/ (* a (* x-scale (* y-scale (* (sin (* 1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8)))))) (fabs x-scale))) (* (pow b 2) (+ (* 1/8 (/ (* x-scale (* y-scale (* (pow (cos (* 1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8))))) (* a (* (fabs x-scale) (sin (* 1/180 (* angle (PI)))))))) (* (pow b 2) (+ (* -1/32 (/ (* x-scale (* y-scale (* (pow (cos (* 1/180 (* angle (PI)))) 4) (* (sqrt 2) (sqrt 8))))) (* (pow a 3) (* (fabs x-scale) (pow (sin (* 1/180 (* angle (PI)))) 3))))) (* 1/64 (/ (* (pow b 2) (* x-scale (* y-scale (* (pow (cos (* 1/180 (* angle (PI)))) 6) (* (sqrt 2) (sqrt 8)))))) (* (pow a 5) (* (fabs x-scale) (pow (sin (* 1/180 (* angle (PI)))) 5))))))))))))
#s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) (fma.f64 (fma.f64 (fma.f64 (*.f64 (*.f64 b b) (/.f64 (*.f64 (*.f64 y-scale x-scale) (*.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 6 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))) (*.f64 (*.f64 (pow.f64 a #s(literal 5 binary64)) (fabs.f64 x-scale)) (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 5 binary64))))) #s(literal 1/64 binary64) (*.f64 (/.f64 (*.f64 (*.f64 y-scale x-scale) (*.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 4 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))) (*.f64 (*.f64 (pow.f64 a #s(literal 3 binary64)) (fabs.f64 x-scale)) (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 3 binary64)))) #s(literal -1/32 binary64))) (*.f64 b b) (*.f64 (/.f64 (*.f64 (*.f64 y-scale x-scale) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))) (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)))) (*.f64 (*.f64 a (fabs.f64 x-scale)) (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))))) #s(literal 1/8 binary64))) (*.f64 b b) (*.f64 (*.f64 a (/.f64 (*.f64 (*.f64 y-scale x-scale) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))) (sqrt.f64 #s(literal 8 binary64)))) (fabs.f64 x-scale))) #s(literal 1/4 binary64))))
#s(approx (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) 1/2)) #s(hole binary64 (+ (* a (* (sin (* 1/180 (* angle (PI)))) (sqrt 2))) (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (* a (* (sin (* 1/180 (* angle (PI)))) (sqrt 2)))))))
#s(approx (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) 1/2)) (fma.f64 (*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) a) (sqrt.f64 #s(literal 2 binary64)) (/.f64 (pow.f64 (*.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) b) #s(literal 2 binary64)) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))) a))))
#s(approx (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) 1/2)) #s(hole binary64 (+ (* a (* (sin (* 1/180 (* angle (PI)))) (sqrt 2))) (* (pow b 2) (+ (* -1/2 (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 4)) (* (pow a 3) (* (pow (sin (* 1/180 (* angle (PI)))) 3) (pow (sqrt 2) 3))))) (/ (pow (cos (* 1/180 (* angle (PI)))) 2) (* a (* (sin (* 1/180 (* angle (PI)))) (sqrt 2)))))))))
#s(approx (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) 1/2)) (fma.f64 (fma.f64 (*.f64 (*.f64 b b) (/.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 4 binary64)) (pow.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))) a) #s(literal 3 binary64)))) #s(literal -1/2 binary64) (/.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))) a))) (*.f64 b b) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))) a)))
#s(approx (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) 1/2)) #s(hole binary64 (+ (* a (* (sin (* 1/180 (* angle (PI)))) (sqrt 2))) (* (pow b 2) (+ (* (pow b 2) (+ (* -1/2 (/ (pow (cos (* 1/180 (* angle (PI)))) 4) (* (pow a 3) (* (pow (sin (* 1/180 (* angle (PI)))) 3) (pow (sqrt 2) 3))))) (* 1/2 (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 6)) (* (pow a 5) (* (pow (sin (* 1/180 (* angle (PI)))) 5) (pow (sqrt 2) 5))))))) (/ (pow (cos (* 1/180 (* angle (PI)))) 2) (* a (* (sin (* 1/180 (* angle (PI)))) (sqrt 2)))))))))
#s(approx (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) 1/2)) (fma.f64 (fma.f64 (fma.f64 (*.f64 (/.f64 (*.f64 b b) (pow.f64 a #s(literal 5 binary64))) (/.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 6 binary64)) (*.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 5 binary64)) (pow.f64 (sqrt.f64 #s(literal 2 binary64)) #s(literal 5 binary64))))) #s(literal 1/2 binary64) (*.f64 (/.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 4 binary64)) (pow.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))) a) #s(literal 3 binary64))) #s(literal -1/2 binary64))) (*.f64 b b) (/.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))) a))) (*.f64 b b) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))) a)))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) 1/2))) #s(hole binary64 (+ (* 1/8 (/ (* (pow b 2) (* y-scale (* (pow (cos (* 1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8))))) (* a (sin (* 1/180 (* angle (PI))))))) (* 1/4 (* a (* y-scale (* (sin (* 1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8)))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) 1/2))) (fma.f64 (/.f64 (*.f64 (*.f64 (*.f64 b b) y-scale) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))) (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)))) (*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) a)) #s(literal 1/8 binary64) (*.f64 (*.f64 (*.f64 a y-scale) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))) (sqrt.f64 #s(literal 8 binary64)))) #s(literal 1/4 binary64))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) 1/2))) #s(hole binary64 (+ (* 1/4 (* a (* y-scale (* (sin (* 1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8)))))) (* (pow b 2) (+ (* -1/32 (/ (* (pow b 2) (* y-scale (* (pow (cos (* 1/180 (* angle (PI)))) 4) (* (sqrt 2) (sqrt 8))))) (* (pow a 3) (pow (sin (* 1/180 (* angle (PI)))) 3)))) (* 1/8 (/ (* y-scale (* (pow (cos (* 1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8)))) (* a (sin (* 1/180 (* angle (PI))))))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) 1/2))) (fma.f64 (fma.f64 (/.f64 (*.f64 (*.f64 (*.f64 b b) y-scale) (*.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 4 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))) (pow.f64 (*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) a) #s(literal 3 binary64))) #s(literal -1/32 binary64) (*.f64 (*.f64 (/.f64 y-scale a) (/.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))) (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64))) (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))))) #s(literal 1/8 binary64))) (*.f64 b b) (*.f64 (*.f64 (*.f64 a y-scale) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))) (sqrt.f64 #s(literal 8 binary64)))) #s(literal 1/4 binary64))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) 1/2))) #s(hole binary64 (+ (* 1/4 (* a (* y-scale (* (sin (* 1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8)))))) (* (pow b 2) (+ (* 1/8 (/ (* y-scale (* (pow (cos (* 1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8)))) (* a (sin (* 1/180 (* angle (PI))))))) (* (pow b 2) (+ (* -1/32 (/ (* y-scale (* (pow (cos (* 1/180 (* angle (PI)))) 4) (* (sqrt 2) (sqrt 8)))) (* (pow a 3) (pow (sin (* 1/180 (* angle (PI)))) 3)))) (* 1/64 (/ (* (pow b 2) (* y-scale (* (pow (cos (* 1/180 (* angle (PI)))) 6) (* (sqrt 2) (sqrt 8))))) (* (pow a 5) (pow (sin (* 1/180 (* angle (PI)))) 5)))))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) 1/2))) (fma.f64 (fma.f64 (fma.f64 (*.f64 (/.f64 (*.f64 b b) (pow.f64 a #s(literal 5 binary64))) (/.f64 (*.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 6 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64)))) y-scale) (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 5 binary64)))) #s(literal 1/64 binary64) (*.f64 (*.f64 y-scale (/.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 4 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64)))) (pow.f64 (*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) a) #s(literal 3 binary64)))) #s(literal -1/32 binary64))) (*.f64 b b) (*.f64 (*.f64 (/.f64 y-scale a) (/.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))) (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64))) (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))))) #s(literal 1/8 binary64))) (*.f64 b b) (*.f64 (*.f64 (*.f64 a y-scale) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))) (sqrt.f64 #s(literal 8 binary64)))) #s(literal 1/4 binary64))))
#s(approx (sqrt (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) #s(hole binary64 (+ (* 1/2 (/ (* (pow b 2) (* (pow (cos (* 1/180 (* angle (PI)))) 2) (sqrt 2))) (* a (sin (* 1/180 (* angle (PI))))))) (* a (* (sin (* 1/180 (* angle (PI)))) (sqrt 2))))))
#s(approx (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) 1/2)) (fma.f64 (/.f64 (*.f64 (pow.f64 (*.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) b) #s(literal 2 binary64)) (sqrt.f64 #s(literal 2 binary64))) (*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) a)) #s(literal 1/2 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))) a)))
#s(approx (sqrt (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) #s(hole binary64 (+ (* a (* (sin (* 1/180 (* angle (PI)))) (sqrt 2))) (* (pow b 2) (+ (* -1/8 (/ (* (pow b 2) (* (pow (cos (* 1/180 (* angle (PI)))) 4) (sqrt 2))) (* (pow a 3) (pow (sin (* 1/180 (* angle (PI)))) 3)))) (* 1/2 (/ (* (pow (cos (* 1/180 (* angle (PI)))) 2) (sqrt 2)) (* a (sin (* 1/180 (* angle (PI))))))))))))
#s(approx (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) 1/2)) (fma.f64 (fma.f64 (/.f64 (*.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 4 binary64)) (*.f64 b b)) (sqrt.f64 #s(literal 2 binary64))) (pow.f64 (*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) a) #s(literal 3 binary64))) #s(literal -1/8 binary64) (*.f64 (/.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64))) (*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) a)) #s(literal 1/2 binary64))) (*.f64 b b) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))) a)))
#s(approx (sqrt (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) #s(hole binary64 (+ (* a (* (sin (* 1/180 (* angle (PI)))) (sqrt 2))) (* (pow b 2) (+ (* 1/2 (/ (* (pow (cos (* 1/180 (* angle (PI)))) 2) (sqrt 2)) (* a (sin (* 1/180 (* angle (PI))))))) (* (pow b 2) (+ (* -1/8 (/ (* (pow (cos (* 1/180 (* angle (PI)))) 4) (sqrt 2)) (* (pow a 3) (pow (sin (* 1/180 (* angle (PI)))) 3)))) (* 1/16 (/ (* (pow b 2) (* (pow (cos (* 1/180 (* angle (PI)))) 6) (sqrt 2))) (* (pow a 5) (pow (sin (* 1/180 (* angle (PI)))) 5)))))))))))
#s(approx (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) 1/2)) (fma.f64 (fma.f64 (fma.f64 (*.f64 (/.f64 (*.f64 b b) (pow.f64 a #s(literal 5 binary64))) (/.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 6 binary64)) (sqrt.f64 #s(literal 2 binary64))) (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 5 binary64)))) #s(literal 1/16 binary64) (*.f64 (/.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 4 binary64)) (sqrt.f64 #s(literal 2 binary64))) (pow.f64 (*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) a) #s(literal 3 binary64))) #s(literal -1/8 binary64))) (*.f64 b b) (*.f64 (/.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64))) (*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) a)) #s(literal 1/2 binary64))) (*.f64 b b) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))) a)))
#s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) #s(hole binary64 (+ (* 1/2 (/ (* (pow b 2) (* (pow (cos (* -1/180 (* angle (PI)))) 2) (sqrt 2))) (* a (sin (* 1/180 (* angle (PI))))))) (* a (* (sin (* 1/180 (* angle (PI)))) (sqrt 2))))))
#s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) (fma.f64 (*.f64 (*.f64 b b) (/.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal -1/180 binary64))) #s(literal 2 binary64)) (sqrt.f64 #s(literal 2 binary64))) (*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) a))) #s(literal 1/2 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))) a)))
#s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) #s(hole binary64 (+ (* a (* (sin (* 1/180 (* angle (PI)))) (sqrt 2))) (* (pow b 2) (+ (* -1/8 (/ (* (pow b 2) (* (pow (cos (* -1/180 (* angle (PI)))) 4) (sqrt 2))) (* (pow a 3) (pow (sin (* 1/180 (* angle (PI)))) 3)))) (* 1/2 (/ (* (pow (cos (* -1/180 (* angle (PI)))) 2) (sqrt 2)) (* a (sin (* 1/180 (* angle (PI))))))))))))
#s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) (fma.f64 (fma.f64 (/.f64 (*.f64 (*.f64 (*.f64 b b) (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal -1/180 binary64))) #s(literal 4 binary64))) (sqrt.f64 #s(literal 2 binary64))) (pow.f64 (*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) a) #s(literal 3 binary64))) #s(literal -1/8 binary64) (*.f64 (/.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal -1/180 binary64))) #s(literal 2 binary64)) (sqrt.f64 #s(literal 2 binary64))) (*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) a)) #s(literal 1/2 binary64))) (*.f64 b b) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))) a)))
#s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) #s(hole binary64 (+ (* a (* (sin (* 1/180 (* angle (PI)))) (sqrt 2))) (* (pow b 2) (+ (* 1/2 (/ (* (pow (cos (* -1/180 (* angle (PI)))) 2) (sqrt 2)) (* a (sin (* 1/180 (* angle (PI))))))) (* (pow b 2) (+ (* -1/8 (/ (* (pow (cos (* -1/180 (* angle (PI)))) 4) (sqrt 2)) (* (pow a 3) (pow (sin (* 1/180 (* angle (PI)))) 3)))) (* 1/16 (/ (* (pow b 2) (* (pow (cos (* -1/180 (* angle (PI)))) 6) (sqrt 2))) (* (pow a 5) (pow (sin (* 1/180 (* angle (PI)))) 5)))))))))))
#s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) (fma.f64 (fma.f64 (fma.f64 (*.f64 (/.f64 (*.f64 b b) (pow.f64 a #s(literal 5 binary64))) (/.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal -1/180 binary64))) #s(literal 6 binary64)) (sqrt.f64 #s(literal 2 binary64))) (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 5 binary64)))) #s(literal 1/16 binary64) (*.f64 (/.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal -1/180 binary64))) #s(literal 4 binary64)) (sqrt.f64 #s(literal 2 binary64))) (pow.f64 (*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) a) #s(literal 3 binary64))) #s(literal -1/8 binary64))) (*.f64 b b) (*.f64 (/.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal -1/180 binary64))) #s(literal 2 binary64)) (sqrt.f64 #s(literal 2 binary64))) (*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) a)) #s(literal 1/2 binary64))) (*.f64 b b) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))) a)))
#s(approx (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) #s(hole binary64 (log (* 2 (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2))))))
#s(approx (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) (log.f64 (*.f64 (pow.f64 (*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) a) #s(literal 2 binary64)) #s(literal 2 binary64))))
#s(approx (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) #s(hole binary64 (+ (log (* 2 (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)))) (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2))))))
#s(approx (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) (+.f64 (log.f64 (*.f64 (pow.f64 (*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) a) #s(literal 2 binary64)) #s(literal 2 binary64))) (/.f64 (pow.f64 (*.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) b) #s(literal 2 binary64)) (pow.f64 (*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) a) #s(literal 2 binary64)))))
#s(approx (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) #s(hole binary64 (+ (log (* 2 (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)))) (* (pow b 2) (+ (* -1/2 (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 4)) (* (pow a 4) (pow (sin (* 1/180 (* angle (PI)))) 4)))) (/ (pow (cos (* 1/180 (* angle (PI)))) 2) (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2))))))))
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#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2))) #s(hole binary64 (* b (+ (* -1/32 (/ (* (pow a 4) (* y-scale (* (pow (sin (* 1/180 (* angle (PI)))) 4) (* (sqrt 2) (sqrt 8))))) (* (pow b 4) (pow (cos (* 1/180 (* angle (PI)))) 3)))) (+ (* 1/8 (/ (* (pow a 2) (* y-scale (* (pow (sin (* 1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8))))) (* (pow b 2) (cos (* 1/180 (* angle (PI))))))) (* 1/4 (* y-scale (* (cos (* 1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8))))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) 1/2))) (*.f64 (fma.f64 (*.f64 (/.f64 (pow.f64 a #s(literal 4 binary64)) (pow.f64 b #s(literal 4 binary64))) (/.f64 (*.f64 (*.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 4 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64)))) y-scale) (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 3 binary64)))) #s(literal -1/32 binary64) (fma.f64 (/.f64 (*.f64 (*.f64 (*.f64 a a) y-scale) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))) (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)))) (*.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) (*.f64 b b))) #s(literal 1/8 binary64) (*.f64 (*.f64 #s(literal 1/4 binary64) y-scale) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))) (sqrt.f64 #s(literal 8 binary64)))))) b))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2))) #s(hole binary64 (* b (+ (* -1/32 (/ (* (pow a 4) (* y-scale (* (pow (sin (* 1/180 (* angle (PI)))) 4) (* (sqrt 2) (sqrt 8))))) (* (pow b 4) (pow (cos (* 1/180 (* angle (PI)))) 3)))) (+ (* 1/64 (/ (* (pow a 6) (* y-scale (* (pow (sin (* 1/180 (* angle (PI)))) 6) (* (sqrt 2) (sqrt 8))))) (* (pow b 6) (pow (cos (* 1/180 (* angle (PI)))) 5)))) (+ (* 1/8 (/ (* (pow a 2) (* y-scale (* (pow (sin (* 1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8))))) (* (pow b 2) (cos (* 1/180 (* angle (PI))))))) (* 1/4 (* y-scale (* (cos (* 1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8)))))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) 1/2))) (*.f64 (fma.f64 (*.f64 (/.f64 (pow.f64 a #s(literal 4 binary64)) (pow.f64 b #s(literal 4 binary64))) (/.f64 (*.f64 (*.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 4 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64)))) y-scale) (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 3 binary64)))) #s(literal -1/32 binary64) (fma.f64 (*.f64 (/.f64 (pow.f64 a #s(literal 6 binary64)) (pow.f64 b #s(literal 6 binary64))) (/.f64 (*.f64 (*.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 6 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64)))) y-scale) (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 5 binary64)))) #s(literal 1/64 binary64) (fma.f64 (/.f64 (*.f64 (*.f64 (*.f64 a a) y-scale) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))) (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)))) (*.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) (*.f64 b b))) #s(literal 1/8 binary64) (*.f64 (*.f64 #s(literal 1/4 binary64) y-scale) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))) (sqrt.f64 #s(literal 8 binary64))))))) b))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) #s(hole binary64 (* b (+ (* 1/8 (/ (* (pow a 2) (* y-scale (* (pow (sin (* 1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8))))) (* (pow b 2) (cos (* -1/180 (* angle (PI))))))) (* 1/4 (* y-scale (* (cos (* -1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8)))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) (*.f64 (fma.f64 (/.f64 (*.f64 (*.f64 (*.f64 a a) y-scale) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))) (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)))) (*.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal -1/180 binary64))) (*.f64 b b))) #s(literal 1/8 binary64) (*.f64 (*.f64 #s(literal 1/4 binary64) y-scale) (*.f64 (*.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal -1/180 binary64))) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64))))) b))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) #s(hole binary64 (* b (+ (* -1/32 (/ (* (pow a 4) (* y-scale (* (pow (sin (* 1/180 (* angle (PI)))) 4) (* (sqrt 2) (sqrt 8))))) (* (pow b 4) (pow (cos (* -1/180 (* angle (PI)))) 3)))) (+ (* 1/8 (/ (* (pow a 2) (* y-scale (* (pow (sin (* 1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8))))) (* (pow b 2) (cos (* -1/180 (* angle (PI))))))) (* 1/4 (* y-scale (* (cos (* -1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8))))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) (*.f64 (fma.f64 (*.f64 (/.f64 (pow.f64 a #s(literal 4 binary64)) (pow.f64 b #s(literal 4 binary64))) (/.f64 (*.f64 (*.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 4 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64)))) y-scale) (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal -1/180 binary64))) #s(literal 3 binary64)))) #s(literal -1/32 binary64) (fma.f64 (/.f64 (*.f64 (*.f64 (*.f64 a a) y-scale) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))) (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)))) (*.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal -1/180 binary64))) (*.f64 b b))) #s(literal 1/8 binary64) (*.f64 (*.f64 #s(literal 1/4 binary64) y-scale) (*.f64 (*.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal -1/180 binary64))) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64)))))) b))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) #s(hole binary64 (* b (+ (* -1/32 (/ (* (pow a 4) (* y-scale (* (pow (sin (* 1/180 (* angle (PI)))) 4) (* (sqrt 2) (sqrt 8))))) (* (pow b 4) (pow (cos (* -1/180 (* angle (PI)))) 3)))) (+ (* 1/64 (/ (* (pow a 6) (* y-scale (* (pow (sin (* 1/180 (* angle (PI)))) 6) (* (sqrt 2) (sqrt 8))))) (* (pow b 6) (pow (cos (* -1/180 (* angle (PI)))) 5)))) (+ (* 1/8 (/ (* (pow a 2) (* y-scale (* (pow (sin (* 1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8))))) (* (pow b 2) (cos (* -1/180 (* angle (PI))))))) (* 1/4 (* y-scale (* (cos (* -1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8)))))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) (*.f64 (fma.f64 (*.f64 (/.f64 (pow.f64 a #s(literal 4 binary64)) (pow.f64 b #s(literal 4 binary64))) (/.f64 (*.f64 (*.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 4 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64)))) y-scale) (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal -1/180 binary64))) #s(literal 3 binary64)))) #s(literal -1/32 binary64) (fma.f64 (*.f64 (/.f64 (pow.f64 a #s(literal 6 binary64)) (pow.f64 b #s(literal 6 binary64))) (/.f64 (*.f64 (*.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 6 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64)))) y-scale) (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal -1/180 binary64))) #s(literal 5 binary64)))) #s(literal 1/64 binary64) (fma.f64 (/.f64 (*.f64 (*.f64 (*.f64 a a) y-scale) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))) (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)))) (*.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal -1/180 binary64))) (*.f64 b b))) #s(literal 1/8 binary64) (*.f64 (*.f64 #s(literal 1/4 binary64) y-scale) (*.f64 (*.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal -1/180 binary64))) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64))))))) b))
#s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) #s(hole binary64 (* b (+ (* 1/8 (/ (* (pow a 2) (* x-scale (* y-scale (* (pow (sin (* 1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8)))))) (* (pow b 2) (* (cos (* 1/180 (* angle (PI)))) (fabs x-scale))))) (* 1/4 (/ (* x-scale (* y-scale (* (cos (* 1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8))))) (fabs x-scale)))))))
#s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) (*.f64 (fma.f64 (*.f64 (/.f64 (*.f64 a a) (*.f64 b b)) (/.f64 (*.f64 (*.f64 y-scale x-scale) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))) (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)))) (*.f64 (fabs.f64 x-scale) (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))))) #s(literal 1/8 binary64) (*.f64 (/.f64 (*.f64 (*.f64 y-scale x-scale) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))) (sqrt.f64 #s(literal 8 binary64)))) (fabs.f64 x-scale)) #s(literal 1/4 binary64))) b))
#s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) #s(hole binary64 (* b (+ (* -1/32 (/ (* (pow a 4) (* x-scale (* y-scale (* (pow (sin (* 1/180 (* angle (PI)))) 4) (* (sqrt 2) (sqrt 8)))))) (* (pow b 4) (* (pow (cos (* 1/180 (* angle (PI)))) 3) (fabs x-scale))))) (+ (* 1/8 (/ (* (pow a 2) (* x-scale (* y-scale (* (pow (sin (* 1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8)))))) (* (pow b 2) (* (cos (* 1/180 (* angle (PI)))) (fabs x-scale))))) (* 1/4 (/ (* x-scale (* y-scale (* (cos (* 1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8))))) (fabs x-scale))))))))
#s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) (*.f64 (fma.f64 (*.f64 (/.f64 (pow.f64 a #s(literal 4 binary64)) (pow.f64 b #s(literal 4 binary64))) (/.f64 (*.f64 (*.f64 y-scale x-scale) (*.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 4 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))) (*.f64 (fabs.f64 x-scale) (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 3 binary64))))) #s(literal -1/32 binary64) (fma.f64 (*.f64 (/.f64 (*.f64 a a) (*.f64 b b)) (/.f64 (*.f64 (*.f64 y-scale x-scale) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))) (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)))) (*.f64 (fabs.f64 x-scale) (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))))) #s(literal 1/8 binary64) (*.f64 (/.f64 (*.f64 (*.f64 y-scale x-scale) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))) (sqrt.f64 #s(literal 8 binary64)))) (fabs.f64 x-scale)) #s(literal 1/4 binary64)))) b))
#s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) #s(hole binary64 (* b (+ (* -1/32 (/ (* (pow a 4) (* x-scale (* y-scale (* (pow (sin (* 1/180 (* angle (PI)))) 4) (* (sqrt 2) (sqrt 8)))))) (* (pow b 4) (* (pow (cos (* 1/180 (* angle (PI)))) 3) (fabs x-scale))))) (+ (* 1/64 (/ (* (pow a 6) (* x-scale (* y-scale (* (pow (sin (* 1/180 (* angle (PI)))) 6) (* (sqrt 2) (sqrt 8)))))) (* (pow b 6) (* (pow (cos (* 1/180 (* angle (PI)))) 5) (fabs x-scale))))) (+ (* 1/8 (/ (* (pow a 2) (* x-scale (* y-scale (* (pow (sin (* 1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8)))))) (* (pow b 2) (* (cos (* 1/180 (* angle (PI)))) (fabs x-scale))))) (* 1/4 (/ (* x-scale (* y-scale (* (cos (* 1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8))))) (fabs x-scale)))))))))
#s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) (*.f64 (fma.f64 (*.f64 (/.f64 (pow.f64 a #s(literal 4 binary64)) (pow.f64 b #s(literal 4 binary64))) (/.f64 (*.f64 (*.f64 y-scale x-scale) (*.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 4 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))) (*.f64 (fabs.f64 x-scale) (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 3 binary64))))) #s(literal -1/32 binary64) (fma.f64 (*.f64 (/.f64 (pow.f64 a #s(literal 6 binary64)) (pow.f64 b #s(literal 6 binary64))) (/.f64 (*.f64 (*.f64 y-scale x-scale) (*.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 6 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))) (*.f64 (fabs.f64 x-scale) (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 5 binary64))))) #s(literal 1/64 binary64) (fma.f64 (*.f64 (/.f64 (*.f64 a a) (*.f64 b b)) (/.f64 (*.f64 (*.f64 y-scale x-scale) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))) (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)))) (*.f64 (fabs.f64 x-scale) (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))))) #s(literal 1/8 binary64) (*.f64 (/.f64 (*.f64 (*.f64 y-scale x-scale) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))) (sqrt.f64 #s(literal 8 binary64)))) (fabs.f64 x-scale)) #s(literal 1/4 binary64))))) b))
#s(approx (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) 1/2)) #s(hole binary64 (* b (+ (* (cos (* 1/180 (* angle (PI)))) (sqrt 2)) (/ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (* (pow b 2) (* (cos (* 1/180 (* angle (PI)))) (sqrt 2))))))))
#s(approx (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) 1/2)) (*.f64 (fma.f64 (sqrt.f64 #s(literal 2 binary64)) (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) (/.f64 (pow.f64 (*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) a) #s(literal 2 binary64)) (*.f64 (*.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) (*.f64 b b)) (sqrt.f64 #s(literal 2 binary64))))) b))
#s(approx (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) 1/2)) #s(hole binary64 (* b (+ (* -1/2 (/ (* (pow a 4) (pow (sin (* 1/180 (* angle (PI)))) 4)) (* (pow b 4) (* (pow (cos (* 1/180 (* angle (PI)))) 3) (pow (sqrt 2) 3))))) (+ (* (cos (* 1/180 (* angle (PI)))) (sqrt 2)) (/ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (* (pow b 2) (* (cos (* 1/180 (* angle (PI)))) (sqrt 2)))))))))
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#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2))) #s(hole binary64 (* -1/4 (* b (* y-scale (* (cos (* 1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) 1/2))) (*.f64 (*.f64 #s(literal -1/4 binary64) b) (*.f64 (*.f64 y-scale (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2))) #s(hole binary64 (* -1 (* b (+ (* 1/8 (/ (* (pow a 2) (* y-scale (* (pow (sin (* 1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8))))) (* (pow b 2) (cos (* 1/180 (* angle (PI))))))) (* 1/4 (* y-scale (* (cos (* 1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8))))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) 1/2))) (neg.f64 (*.f64 (fma.f64 (/.f64 (*.f64 (*.f64 (*.f64 a a) y-scale) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))) (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)))) (*.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) (*.f64 b b))) #s(literal 1/8 binary64) (*.f64 (*.f64 #s(literal 1/4 binary64) y-scale) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))) (sqrt.f64 #s(literal 8 binary64))))) b)))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2))) #s(hole binary64 (* -1 (* b (+ (* -1/32 (/ (* (pow a 4) (* y-scale (* (pow (sin (* 1/180 (* angle (PI)))) 4) (* (sqrt 2) (sqrt 8))))) (* (pow b 4) (pow (cos (* 1/180 (* angle (PI)))) 3)))) (+ (* 1/8 (/ (* (pow a 2) (* y-scale (* (pow (sin (* 1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8))))) (* (pow b 2) (cos (* 1/180 (* angle (PI))))))) (* 1/4 (* y-scale (* (cos (* 1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8)))))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) 1/2))) (neg.f64 (*.f64 (fma.f64 (*.f64 (/.f64 (pow.f64 a #s(literal 4 binary64)) (pow.f64 b #s(literal 4 binary64))) (/.f64 (*.f64 (*.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 4 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64)))) y-scale) (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 3 binary64)))) #s(literal -1/32 binary64) (fma.f64 (/.f64 (*.f64 (*.f64 (*.f64 a a) y-scale) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))) (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)))) (*.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) (*.f64 b b))) #s(literal 1/8 binary64) (*.f64 (*.f64 #s(literal 1/4 binary64) y-scale) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))) (sqrt.f64 #s(literal 8 binary64)))))) b)))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2))) #s(hole binary64 (* -1 (* b (+ (* -1/32 (/ (* (pow a 4) (* y-scale (* (pow (sin (* 1/180 (* angle (PI)))) 4) (* (sqrt 2) (sqrt 8))))) (* (pow b 4) (pow (cos (* 1/180 (* angle (PI)))) 3)))) (+ (* 1/64 (/ (* (pow a 6) (* y-scale (* (pow (sin (* 1/180 (* angle (PI)))) 6) (* (sqrt 2) (sqrt 8))))) (* (pow b 6) (pow (cos (* 1/180 (* angle (PI)))) 5)))) (+ (* 1/8 (/ (* (pow a 2) (* y-scale (* (pow (sin (* 1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8))))) (* (pow b 2) (cos (* 1/180 (* angle (PI))))))) (* 1/4 (* y-scale (* (cos (* 1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8))))))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) 1/2))) (neg.f64 (*.f64 (fma.f64 (*.f64 (/.f64 (pow.f64 a #s(literal 4 binary64)) (pow.f64 b #s(literal 4 binary64))) (/.f64 (*.f64 (*.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 4 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64)))) y-scale) (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 3 binary64)))) #s(literal -1/32 binary64) (fma.f64 (*.f64 (/.f64 (pow.f64 a #s(literal 6 binary64)) (pow.f64 b #s(literal 6 binary64))) (/.f64 (*.f64 (*.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 6 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64)))) y-scale) (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 5 binary64)))) #s(literal 1/64 binary64) (fma.f64 (/.f64 (*.f64 (*.f64 (*.f64 a a) y-scale) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))) (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)))) (*.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) (*.f64 b b))) #s(literal 1/8 binary64) (*.f64 (*.f64 #s(literal 1/4 binary64) y-scale) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))) (sqrt.f64 #s(literal 8 binary64))))))) b)))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) #s(hole binary64 (* -1/4 (* b (* y-scale (* (cos (* -1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) (*.f64 (*.f64 #s(literal -1/4 binary64) b) (*.f64 (*.f64 y-scale (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal -1/180 binary64)))) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) #s(hole binary64 (* -1 (* b (+ (* 1/8 (/ (* (pow a 2) (* y-scale (* (pow (sin (* 1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8))))) (* (pow b 2) (cos (* -1/180 (* angle (PI))))))) (* 1/4 (* y-scale (* (cos (* -1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8))))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) (neg.f64 (*.f64 (fma.f64 (/.f64 (*.f64 (*.f64 (*.f64 a a) y-scale) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))) (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)))) (*.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal -1/180 binary64))) (*.f64 b b))) #s(literal 1/8 binary64) (*.f64 (*.f64 #s(literal 1/4 binary64) y-scale) (*.f64 (*.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal -1/180 binary64))) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64))))) b)))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) #s(hole binary64 (* -1 (* b (+ (* -1/32 (/ (* (pow a 4) (* y-scale (* (pow (sin (* 1/180 (* angle (PI)))) 4) (* (sqrt 2) (sqrt 8))))) (* (pow b 4) (pow (cos (* -1/180 (* angle (PI)))) 3)))) (+ (* 1/8 (/ (* (pow a 2) (* y-scale (* (pow (sin (* 1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8))))) (* (pow b 2) (cos (* -1/180 (* angle (PI))))))) (* 1/4 (* y-scale (* (cos (* -1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8)))))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) (neg.f64 (*.f64 (fma.f64 (*.f64 (/.f64 (pow.f64 a #s(literal 4 binary64)) (pow.f64 b #s(literal 4 binary64))) (/.f64 (*.f64 (*.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 4 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64)))) y-scale) (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal -1/180 binary64))) #s(literal 3 binary64)))) #s(literal -1/32 binary64) (fma.f64 (/.f64 (*.f64 (*.f64 (*.f64 a a) y-scale) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))) (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)))) (*.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal -1/180 binary64))) (*.f64 b b))) #s(literal 1/8 binary64) (*.f64 (*.f64 #s(literal 1/4 binary64) y-scale) (*.f64 (*.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal -1/180 binary64))) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64)))))) b)))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) #s(hole binary64 (* -1 (* b (+ (* -1/32 (/ (* (pow a 4) (* y-scale (* (pow (sin (* 1/180 (* angle (PI)))) 4) (* (sqrt 2) (sqrt 8))))) (* (pow b 4) (pow (cos (* -1/180 (* angle (PI)))) 3)))) (+ (* 1/64 (/ (* (pow a 6) (* y-scale (* (pow (sin (* 1/180 (* angle (PI)))) 6) (* (sqrt 2) (sqrt 8))))) (* (pow b 6) (pow (cos (* -1/180 (* angle (PI)))) 5)))) (+ (* 1/8 (/ (* (pow a 2) (* y-scale (* (pow (sin (* 1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8))))) (* (pow b 2) (cos (* -1/180 (* angle (PI))))))) (* 1/4 (* y-scale (* (cos (* -1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8))))))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) (neg.f64 (*.f64 (fma.f64 (*.f64 (/.f64 (pow.f64 a #s(literal 4 binary64)) (pow.f64 b #s(literal 4 binary64))) (/.f64 (*.f64 (*.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 4 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64)))) y-scale) (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal -1/180 binary64))) #s(literal 3 binary64)))) #s(literal -1/32 binary64) (fma.f64 (*.f64 (/.f64 (pow.f64 a #s(literal 6 binary64)) (pow.f64 b #s(literal 6 binary64))) (/.f64 (*.f64 (*.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 6 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64)))) y-scale) (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal -1/180 binary64))) #s(literal 5 binary64)))) #s(literal 1/64 binary64) (fma.f64 (/.f64 (*.f64 (*.f64 (*.f64 a a) y-scale) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))) (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)))) (*.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal -1/180 binary64))) (*.f64 b b))) #s(literal 1/8 binary64) (*.f64 (*.f64 #s(literal 1/4 binary64) y-scale) (*.f64 (*.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal -1/180 binary64))) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64))))))) b)))
#s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) #s(hole binary64 (* -1/4 (/ (* b (* x-scale (* y-scale (* (cos (* 1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8)))))) (fabs x-scale)))))
#s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) (*.f64 (*.f64 b (/.f64 (*.f64 (*.f64 y-scale x-scale) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))) (sqrt.f64 #s(literal 8 binary64)))) (fabs.f64 x-scale))) #s(literal -1/4 binary64)))
#s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) #s(hole binary64 (* -1 (* b (+ (* 1/8 (/ (* (pow a 2) (* x-scale (* y-scale (* (pow (sin (* 1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8)))))) (* (pow b 2) (* (cos (* 1/180 (* angle (PI)))) (fabs x-scale))))) (* 1/4 (/ (* x-scale (* y-scale (* (cos (* 1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8))))) (fabs x-scale))))))))
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#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2))) #s(hole binary64 (+ (* 1/4 (* b (* y-scale (* (sqrt 2) (sqrt 8))))) (* (pow angle 2) (+ (* 1/8 (/ (* y-scale (* (sqrt 2) (* (sqrt 8) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2))))))) b)) (* 1/8 (/ (* (pow angle 2) (* y-scale (* (sqrt 2) (* (sqrt 8) (- (+ (* -1/3149280000 (* (pow a 2) (pow (PI) 4))) (* (pow b 2) (+ (* 1/12597120000 (pow (PI) 4)) (* 1/4199040000 (pow (PI) 4))))) (* 1/4 (/ (pow (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))) 2) (pow b 2)))))))) b)))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) 1/2))) (fma.f64 (*.f64 #s(literal 1/8 binary64) (/.f64 (fma.f64 (*.f64 y-scale (sqrt.f64 #s(literal 2 binary64))) (*.f64 (fma.f64 (*.f64 #s(literal 1/32400 binary64) (*.f64 a a)) (*.f64 (PI.f64) (PI.f64)) (*.f64 (*.f64 #s(literal -1/32400 binary64) (*.f64 b b)) (*.f64 (PI.f64) (PI.f64)))) (sqrt.f64 #s(literal 8 binary64))) (*.f64 (*.f64 (*.f64 angle angle) y-scale) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))) (-.f64 (fma.f64 (*.f64 #s(literal -1/3149280000 binary64) (*.f64 a a)) (pow.f64 (PI.f64) #s(literal 4 binary64)) (*.f64 (*.f64 (pow.f64 (PI.f64) #s(literal 4 binary64)) #s(literal 1/3149280000 binary64)) (*.f64 b b))) (*.f64 (/.f64 (pow.f64 (fma.f64 (*.f64 #s(literal 1/32400 binary64) (*.f64 a a)) (*.f64 (PI.f64) (PI.f64)) (*.f64 (*.f64 #s(literal -1/32400 binary64) (*.f64 b b)) (*.f64 (PI.f64) (PI.f64)))) #s(literal 2 binary64)) (*.f64 b b)) #s(literal 1/4 binary64)))))) b)) (*.f64 angle angle) (*.f64 (*.f64 #s(literal 1/4 binary64) b) (*.f64 (*.f64 y-scale (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2))) #s(hole binary64 (+ (* 1/4 (* b (* y-scale (* (sqrt 2) (sqrt 8))))) (* (pow angle 2) (+ (* 1/8 (/ (* y-scale (* (sqrt 2) (* (sqrt 8) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2))))))) b)) (* (pow angle 2) (+ (* 1/8 (/ (* y-scale (* (sqrt 2) (* (sqrt 8) (- (+ (* -1/3149280000 (* (pow a 2) (pow (PI) 4))) (* (pow b 2) (+ (* 1/12597120000 (pow (PI) 4)) (* 1/4199040000 (pow (PI) 4))))) (* 1/4 (/ (pow (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))) 2) (pow b 2))))))) b)) (* 1/8 (/ (* (pow angle 2) (* y-scale (* (sqrt 2) (* (sqrt 8) (- (+ (* (pow a 2) (+ (* 1/2040733440000000 (pow (PI) 6)) (* 1/1224440064000000 (pow (PI) 6)))) (* (pow b 2) (+ (* -1/816293376000000 (pow (PI) 6)) (* -1/12244400640000000 (pow (PI) 6))))) (* 1/2 (/ (* (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))) (- (+ (* -1/3149280000 (* (pow a 2) (pow (PI) 4))) (* (pow b 2) (+ (* 1/12597120000 (pow (PI) 4)) (* 1/4199040000 (pow (PI) 4))))) (* 1/4 (/ (pow (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))) 2) (pow b 2))))) (pow b 2)))))))) b)))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) 1/2))) (fma.f64 (fma.f64 (*.f64 #s(literal 1/8 binary64) (/.f64 (fma.f64 (*.f64 y-scale (sqrt.f64 #s(literal 2 binary64))) (*.f64 (-.f64 (fma.f64 (*.f64 #s(literal -1/3149280000 binary64) (*.f64 a a)) (pow.f64 (PI.f64) #s(literal 4 binary64)) (*.f64 (*.f64 (pow.f64 (PI.f64) #s(literal 4 binary64)) #s(literal 1/3149280000 binary64)) (*.f64 b b))) (*.f64 (/.f64 (pow.f64 (fma.f64 (*.f64 #s(literal 1/32400 binary64) (*.f64 a a)) (*.f64 (PI.f64) (PI.f64)) (*.f64 (*.f64 #s(literal -1/32400 binary64) (*.f64 b b)) (*.f64 (PI.f64) (PI.f64)))) #s(literal 2 binary64)) (*.f64 b b)) #s(literal 1/4 binary64))) (sqrt.f64 #s(literal 8 binary64))) (*.f64 (*.f64 (*.f64 angle angle) y-scale) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))) (-.f64 (fma.f64 (*.f64 (pow.f64 (PI.f64) #s(literal 6 binary64)) #s(literal -1/765275040000000 binary64)) (*.f64 b b) (*.f64 (*.f64 (pow.f64 (PI.f64) #s(literal 6 binary64)) #s(literal 1/765275040000000 binary64)) (*.f64 a a))) (*.f64 (*.f64 (fma.f64 (*.f64 #s(literal 1/32400 binary64) (*.f64 a a)) (*.f64 (PI.f64) (PI.f64)) (*.f64 (*.f64 #s(literal -1/32400 binary64) (*.f64 b b)) (*.f64 (PI.f64) (PI.f64)))) (/.f64 (-.f64 (fma.f64 (*.f64 #s(literal -1/3149280000 binary64) (*.f64 a a)) (pow.f64 (PI.f64) #s(literal 4 binary64)) (*.f64 (*.f64 (pow.f64 (PI.f64) #s(literal 4 binary64)) #s(literal 1/3149280000 binary64)) (*.f64 b b))) (*.f64 (/.f64 (pow.f64 (fma.f64 (*.f64 #s(literal 1/32400 binary64) (*.f64 a a)) (*.f64 (PI.f64) (PI.f64)) (*.f64 (*.f64 #s(literal -1/32400 binary64) (*.f64 b b)) (*.f64 (PI.f64) (PI.f64)))) #s(literal 2 binary64)) (*.f64 b b)) #s(literal 1/4 binary64))) (*.f64 b b))) #s(literal 1/2 binary64)))))) b)) (*.f64 angle angle) (*.f64 (/.f64 (*.f64 (*.f64 y-scale (sqrt.f64 #s(literal 2 binary64))) (*.f64 (fma.f64 (*.f64 #s(literal 1/32400 binary64) (*.f64 a a)) (*.f64 (PI.f64) (PI.f64)) (*.f64 (*.f64 #s(literal -1/32400 binary64) (*.f64 b b)) (*.f64 (PI.f64) (PI.f64)))) (sqrt.f64 #s(literal 8 binary64)))) b) #s(literal 1/8 binary64))) (*.f64 angle angle) (*.f64 (*.f64 #s(literal 1/4 binary64) b) (*.f64 (*.f64 y-scale (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64))))))
#s(approx (neg (* a (* (sin (* 1/180 (* angle (PI)))) (sqrt 2)))) #s(hole binary64 (* -1/180 (* a (* angle (* (PI) (sqrt 2)))))))
#s(approx (neg (* a (* (sin (* 1/180 (* angle (PI)))) (sqrt 2)))) (*.f64 (*.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (PI.f64)) angle) a) #s(literal -1/180 binary64)))
#s(approx (neg (* a (* (sin (* 1/180 (* angle (PI)))) (sqrt 2)))) #s(hole binary64 (* angle (- (* 1/34992000 (* a (* (pow angle 2) (* (pow (PI) 3) (sqrt 2))))) (* 1/180 (* a (* (PI) (sqrt 2))))))))
#s(approx (neg (* a (* (sin (* 1/180 (* angle (PI)))) (sqrt 2)))) (*.f64 (fma.f64 (*.f64 #s(literal 1/34992000 binary64) a) (*.f64 (*.f64 (pow.f64 (PI.f64) #s(literal 3 binary64)) (sqrt.f64 #s(literal 2 binary64))) (*.f64 angle angle)) (*.f64 #s(literal -1/180 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (PI.f64)) a))) angle))
#s(approx (neg (* a (* (sin (* 1/180 (* angle (PI)))) (sqrt 2)))) #s(hole binary64 (* angle (- (* (pow angle 2) (- (* -1/22674816000000 (* a (* (pow angle 2) (* (pow (PI) 5) (sqrt 2))))) (* -1/34992000 (* a (* (pow (PI) 3) (sqrt 2)))))) (* 1/180 (* a (* (PI) (sqrt 2))))))))
#s(approx (neg (* a (* (sin (* 1/180 (* angle (PI)))) (sqrt 2)))) (*.f64 (fma.f64 (fma.f64 (*.f64 #s(literal -1/22674816000000 binary64) a) (*.f64 (*.f64 (pow.f64 (PI.f64) #s(literal 5 binary64)) (sqrt.f64 #s(literal 2 binary64))) (*.f64 angle angle)) (*.f64 #s(literal 1/34992000 binary64) (*.f64 (*.f64 a (pow.f64 (PI.f64) #s(literal 3 binary64))) (sqrt.f64 #s(literal 2 binary64))))) (*.f64 angle angle) (*.f64 #s(literal -1/180 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (PI.f64)) a))) angle))
#s(approx (neg (* a (* (sin (* 1/180 (* angle (PI)))) (sqrt 2)))) #s(hole binary64 (* angle (- (* (pow angle 2) (- (* (pow angle 2) (- (* 1/30855889612800000000 (* a (* (pow angle 2) (* (pow (PI) 7) (sqrt 2))))) (* 1/22674816000000 (* a (* (pow (PI) 5) (sqrt 2)))))) (* -1/34992000 (* a (* (pow (PI) 3) (sqrt 2)))))) (* 1/180 (* a (* (PI) (sqrt 2))))))))
#s(approx (neg (* a (* (sin (* 1/180 (* angle (PI)))) (sqrt 2)))) (*.f64 (fma.f64 (fma.f64 (fma.f64 (*.f64 #s(literal 1/30855889612800000000 binary64) a) (*.f64 (*.f64 (pow.f64 (PI.f64) #s(literal 7 binary64)) (sqrt.f64 #s(literal 2 binary64))) (*.f64 angle angle)) (*.f64 #s(literal -1/22674816000000 binary64) (*.f64 (*.f64 a (pow.f64 (PI.f64) #s(literal 5 binary64))) (sqrt.f64 #s(literal 2 binary64))))) (*.f64 angle angle) (*.f64 #s(literal 1/34992000 binary64) (*.f64 (*.f64 a (pow.f64 (PI.f64) #s(literal 3 binary64))) (sqrt.f64 #s(literal 2 binary64))))) (*.f64 angle angle) (*.f64 #s(literal -1/180 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (PI.f64)) a))) angle))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) #s(hole binary64 (* 1/4 (* b (* y-scale (* (sqrt 2) (sqrt 8)))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) (*.f64 (*.f64 #s(literal 1/4 binary64) b) (*.f64 (*.f64 y-scale (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64)))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) #s(hole binary64 (+ (* 1/8 (/ (* (pow angle 2) (* y-scale (* (sqrt 2) (* (sqrt 8) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))))))) b)) (* 1/4 (* b (* y-scale (* (sqrt 2) (sqrt 8))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) (fma.f64 (/.f64 (*.f64 (*.f64 (*.f64 angle angle) y-scale) (*.f64 (*.f64 (fma.f64 (*.f64 #s(literal 1/32400 binary64) (*.f64 a a)) (*.f64 (PI.f64) (PI.f64)) (*.f64 (*.f64 #s(literal -1/32400 binary64) (*.f64 b b)) (*.f64 (PI.f64) (PI.f64)))) (sqrt.f64 #s(literal 8 binary64))) (sqrt.f64 #s(literal 2 binary64)))) b) #s(literal 1/8 binary64) (*.f64 (*.f64 #s(literal 1/4 binary64) b) (*.f64 (*.f64 y-scale (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) #s(hole binary64 (+ (* 1/4 (* b (* y-scale (* (sqrt 2) (sqrt 8))))) (* (pow angle 2) (+ (* 1/8 (/ (* y-scale (* (sqrt 2) (* (sqrt 8) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2))))))) b)) (* 1/8 (/ (* (pow angle 2) (* y-scale (* (sqrt 2) (* (sqrt 8) (- (+ (* -1/3149280000 (* (pow a 2) (pow (PI) 4))) (* (pow b 2) (+ (* 1/12597120000 (pow (PI) 4)) (* 1/4199040000 (pow (PI) 4))))) (* 1/4 (/ (pow (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))) 2) (pow b 2)))))))) b)))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) (fma.f64 (*.f64 #s(literal 1/8 binary64) (/.f64 (fma.f64 (*.f64 y-scale (sqrt.f64 #s(literal 2 binary64))) (*.f64 (fma.f64 (*.f64 #s(literal 1/32400 binary64) (*.f64 a a)) (*.f64 (PI.f64) (PI.f64)) (*.f64 (*.f64 #s(literal -1/32400 binary64) (*.f64 b b)) (*.f64 (PI.f64) (PI.f64)))) (sqrt.f64 #s(literal 8 binary64))) (*.f64 (*.f64 (*.f64 angle angle) y-scale) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))) (-.f64 (fma.f64 (*.f64 #s(literal -1/3149280000 binary64) (*.f64 a a)) (pow.f64 (PI.f64) #s(literal 4 binary64)) (*.f64 (*.f64 (pow.f64 (PI.f64) #s(literal 4 binary64)) #s(literal 1/3149280000 binary64)) (*.f64 b b))) (*.f64 (/.f64 (pow.f64 (fma.f64 (*.f64 #s(literal 1/32400 binary64) (*.f64 a a)) (*.f64 (PI.f64) (PI.f64)) (*.f64 (*.f64 #s(literal -1/32400 binary64) (*.f64 b b)) (*.f64 (PI.f64) (PI.f64)))) #s(literal 2 binary64)) (*.f64 b b)) #s(literal 1/4 binary64)))))) b)) (*.f64 angle angle) (*.f64 (*.f64 #s(literal 1/4 binary64) b) (*.f64 (*.f64 y-scale (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) #s(hole binary64 (+ (* 1/4 (* b (* y-scale (* (sqrt 2) (sqrt 8))))) (* (pow angle 2) (+ (* 1/8 (/ (* y-scale (* (sqrt 2) (* (sqrt 8) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2))))))) b)) (* (pow angle 2) (+ (* 1/8 (/ (* y-scale (* (sqrt 2) (* (sqrt 8) (- (+ (* -1/3149280000 (* (pow a 2) (pow (PI) 4))) (* (pow b 2) (+ (* 1/12597120000 (pow (PI) 4)) (* 1/4199040000 (pow (PI) 4))))) (* 1/4 (/ (pow (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))) 2) (pow b 2))))))) b)) (* 1/8 (/ (* (pow angle 2) (* y-scale (* (sqrt 2) (* (sqrt 8) (- (+ (* (pow a 2) (+ (* 1/2040733440000000 (pow (PI) 6)) (* 1/1224440064000000 (pow (PI) 6)))) (* (pow b 2) (+ (* -1/816293376000000 (pow (PI) 6)) (* -1/12244400640000000 (pow (PI) 6))))) (* 1/2 (/ (* (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))) (- (+ (* -1/3149280000 (* (pow a 2) (pow (PI) 4))) (* (pow b 2) (+ (* 1/12597120000 (pow (PI) 4)) (* 1/4199040000 (pow (PI) 4))))) (* 1/4 (/ (pow (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))) 2) (pow b 2))))) (pow b 2)))))))) b)))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) (fma.f64 (fma.f64 (*.f64 #s(literal 1/8 binary64) (/.f64 (fma.f64 (*.f64 y-scale (sqrt.f64 #s(literal 2 binary64))) (*.f64 (-.f64 (fma.f64 (*.f64 #s(literal -1/3149280000 binary64) (*.f64 a a)) (pow.f64 (PI.f64) #s(literal 4 binary64)) (*.f64 (*.f64 (pow.f64 (PI.f64) #s(literal 4 binary64)) #s(literal 1/3149280000 binary64)) (*.f64 b b))) (*.f64 (/.f64 (pow.f64 (fma.f64 (*.f64 #s(literal 1/32400 binary64) (*.f64 a a)) (*.f64 (PI.f64) (PI.f64)) (*.f64 (*.f64 #s(literal -1/32400 binary64) (*.f64 b b)) (*.f64 (PI.f64) (PI.f64)))) #s(literal 2 binary64)) (*.f64 b b)) #s(literal 1/4 binary64))) (sqrt.f64 #s(literal 8 binary64))) (*.f64 (*.f64 (*.f64 angle angle) y-scale) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))) (-.f64 (fma.f64 (*.f64 (pow.f64 (PI.f64) #s(literal 6 binary64)) #s(literal -1/765275040000000 binary64)) (*.f64 b b) (*.f64 (*.f64 (pow.f64 (PI.f64) #s(literal 6 binary64)) #s(literal 1/765275040000000 binary64)) (*.f64 a a))) (*.f64 (*.f64 (fma.f64 (*.f64 #s(literal 1/32400 binary64) (*.f64 a a)) (*.f64 (PI.f64) (PI.f64)) (*.f64 (*.f64 #s(literal -1/32400 binary64) (*.f64 b b)) (*.f64 (PI.f64) (PI.f64)))) (/.f64 (-.f64 (fma.f64 (*.f64 #s(literal -1/3149280000 binary64) (*.f64 a a)) (pow.f64 (PI.f64) #s(literal 4 binary64)) (*.f64 (*.f64 (pow.f64 (PI.f64) #s(literal 4 binary64)) #s(literal 1/3149280000 binary64)) (*.f64 b b))) (*.f64 (/.f64 (pow.f64 (fma.f64 (*.f64 #s(literal 1/32400 binary64) (*.f64 a a)) (*.f64 (PI.f64) (PI.f64)) (*.f64 (*.f64 #s(literal -1/32400 binary64) (*.f64 b b)) (*.f64 (PI.f64) (PI.f64)))) #s(literal 2 binary64)) (*.f64 b b)) #s(literal 1/4 binary64))) (*.f64 b b))) #s(literal 1/2 binary64)))))) b)) (*.f64 angle angle) (*.f64 (/.f64 (*.f64 (*.f64 y-scale (sqrt.f64 #s(literal 2 binary64))) (*.f64 (fma.f64 (*.f64 #s(literal 1/32400 binary64) (*.f64 a a)) (*.f64 (PI.f64) (PI.f64)) (*.f64 (*.f64 #s(literal -1/32400 binary64) (*.f64 b b)) (*.f64 (PI.f64) (PI.f64)))) (sqrt.f64 #s(literal 8 binary64)))) b) #s(literal 1/8 binary64))) (*.f64 angle angle) (*.f64 (*.f64 #s(literal 1/4 binary64) b) (*.f64 (*.f64 y-scale (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64))))))
#s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) #s(hole binary64 (* 1/4 (/ (* b (* x-scale (* y-scale (* (sqrt 2) (sqrt 8))))) (fabs x-scale)))))
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#s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) #s(hole binary64 (+ (* 1/8 (/ (* (pow angle 2) (* x-scale (* y-scale (* (sqrt 2) (* (sqrt 8) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2))))))))) (* b (fabs x-scale)))) (* 1/4 (/ (* b (* x-scale (* y-scale (* (sqrt 2) (sqrt 8))))) (fabs x-scale))))))
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#s(approx (cos (* 1/180 (* (PI) angle))) #s(hole binary64 1))
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#s(approx (sin (* 1/180 (* angle (PI)))) #s(hole binary64 (* 1/180 (* angle (PI)))))
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#s(approx (sin (* 1/180 (* angle (PI)))) #s(hole binary64 (* angle (+ (* -1/34992000 (* (pow angle 2) (pow (PI) 3))) (* 1/180 (PI))))))
#s(approx (sin (* 1/180 (* (PI) angle))) (*.f64 (fma.f64 (*.f64 #s(literal -1/34992000 binary64) (*.f64 angle angle)) (pow.f64 (PI.f64) #s(literal 3 binary64)) (*.f64 #s(literal 1/180 binary64) (PI.f64))) angle))
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#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) #s(literal 1/4 binary64)) x-scale) (sqrt.f64 (/.f64 (*.f64 (+.f64 (pow.f64 (*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) a) #s(literal 2 binary64)) (pow.f64 (*.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) b) #s(literal 2 binary64))) #s(literal 2 binary64)) (*.f64 x-scale x-scale)))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(hole binary64 (* y-scale (+ (* 1/8 (* (/ (* x-scale (* (sqrt 8) (+ (* 1/2 (/ (+ (* -2 (* (+ (* (pow a 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (* (pow b 2) (pow (sin (* 1/180 (* angle (PI)))) 2))) (+ (/ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)) (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))))) (* 4 (/ (* (pow (cos (* 1/180 (* angle (PI)))) 2) (* (pow (sin (* 1/180 (* angle (PI)))) 2) (pow (- (pow b 2) (pow a 2)) 2))) (pow x-scale 2)))) (+ (/ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)) (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))))) (+ (* (pow a 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (* (pow b 2) (pow (sin (* 1/180 (* angle (PI)))) 2)))))) (pow y-scale 2)) (sqrt (/ 1 (+ (* 2 (/ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))) (* 2 (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)))))))) (* 1/4 (* (* x-scale (sqrt 8)) (sqrt (+ (* 2 (/ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))) (* 2 (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)))))))))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (fma.f64 (/.f64 (*.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) x-scale) (fma.f64 (/.f64 (fma.f64 (*.f64 #s(literal -2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 b b) (*.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a)))) (/.f64 (+.f64 (pow.f64 (*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) a) #s(literal 2 binary64)) (pow.f64 (*.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) b) #s(literal 2 binary64))) (*.f64 x-scale x-scale)) (*.f64 (/.f64 (*.f64 (*.f64 (pow.f64 (-.f64 (*.f64 b b) (*.f64 a a)) #s(literal 2 binary64)) (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64))) (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64))) (*.f64 x-scale x-scale)) #s(literal 4 binary64))) (/.f64 (+.f64 (pow.f64 (*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) a) #s(literal 2 binary64)) (pow.f64 (*.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) b) #s(literal 2 binary64))) (*.f64 x-scale x-scale))) #s(literal 1/2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 b b) (*.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a))))) (sqrt.f64 (/.f64 #s(literal 1 binary64) (/.f64 (*.f64 (+.f64 (pow.f64 (*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) a) #s(literal 2 binary64)) (pow.f64 (*.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) b) #s(literal 2 binary64))) #s(literal 2 binary64)) (*.f64 x-scale x-scale))))) (*.f64 y-scale y-scale)) #s(literal 1/8 binary64) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) x-scale)) (sqrt.f64 (/.f64 (*.f64 (+.f64 (pow.f64 (*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) a) #s(literal 2 binary64)) (pow.f64 (*.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) b) #s(literal 2 binary64))) #s(literal 2 binary64)) (*.f64 x-scale x-scale))))) y-scale))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(hole binary64 (* y-scale (+ (* 1/8 (* (/ (* x-scale (* (sqrt 8) (+ (* 1/2 (/ (+ (* -2 (* (+ (* (pow a 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (* (pow b 2) (pow (sin (* 1/180 (* angle (PI)))) 2))) (+ (/ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)) (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))))) (* 4 (/ (* (pow (cos (* 1/180 (* angle (PI)))) 2) (* (pow (sin (* 1/180 (* angle (PI)))) 2) (pow (- (pow b 2) (pow a 2)) 2))) (pow x-scale 2)))) (+ (/ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)) (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))))) (+ (* (pow a 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (* (pow b 2) (pow (sin (* 1/180 (* angle (PI)))) 2)))))) (pow y-scale 2)) (sqrt (/ 1 (+ (* 2 (/ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))) (* 2 (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)))))))) (+ (* 1/8 (* (/ (* x-scale (* (sqrt 8) (- (* 1/2 (/ (- (pow (+ (* (pow a 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (* (pow b 2) (pow (sin (* 1/180 (* angle (PI)))) 2))) 2) (* 1/4 (/ (pow (+ (* -2 (* (+ (* (pow a 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (* (pow b 2) (pow (sin (* 1/180 (* angle (PI)))) 2))) (+ (/ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)) (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))))) (* 4 (/ (* (pow (cos (* 1/180 (* angle (PI)))) 2) (* (pow (sin (* 1/180 (* angle (PI)))) 2) (pow (- (pow b 2) (pow a 2)) 2))) (pow x-scale 2)))) 2) (pow (+ (/ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)) (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))) 2)))) (+ (/ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)) (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))))) (* 1/4 (/ (pow (+ (* 1/2 (/ (+ (* -2 (* (+ (* (pow a 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (* (pow b 2) (pow (sin (* 1/180 (* angle (PI)))) 2))) (+ (/ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)) (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))))) (* 4 (/ (* (pow (cos (* 1/180 (* angle (PI)))) 2) (* (pow (sin (* 1/180 (* angle (PI)))) 2) (pow (- (pow b 2) (pow a 2)) 2))) (pow x-scale 2)))) (+ (/ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)) (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))))) (+ (* (pow a 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (* (pow b 2) (pow (sin (* 1/180 (* angle (PI)))) 2)))) 2) (+ (* 2 (/ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))) (* 2 (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))))))))) (pow y-scale 4)) (sqrt (/ 1 (+ (* 2 (/ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))) (* 2 (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)))))))) (* 1/4 (* (* x-scale (sqrt 8)) (sqrt (+ (* 2 (/ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))) (* 2 (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))))))))))))
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(PI.f64) angle) #s(literal 1/180 binary64))) b) #s(literal 2 binary64))) #s(literal 2 binary64)) (*.f64 x-scale x-scale))))))) (pow.f64 y-scale #s(literal 6 binary64)))) (sqrt.f64 (/.f64 #s(literal 1 binary64) (/.f64 (*.f64 (+.f64 (pow.f64 (*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) a) #s(literal 2 binary64)) (pow.f64 (*.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) b) #s(literal 2 binary64))) #s(literal 2 binary64)) (*.f64 x-scale x-scale)))) (fma.f64 (*.f64 #s(literal 1/8 binary64) (/.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) x-scale) (fma.f64 (/.f64 (-.f64 (pow.f64 (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 b b) (*.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a))) #s(literal 2 binary64)) (*.f64 (/.f64 (pow.f64 (fma.f64 (*.f64 #s(literal -2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 b b) (*.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a)))) (/.f64 (+.f64 (pow.f64 (*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) a) #s(literal 2 binary64)) (pow.f64 (*.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) b) #s(literal 2 binary64))) (*.f64 x-scale x-scale)) (*.f64 (/.f64 (*.f64 (*.f64 (pow.f64 (-.f64 (*.f64 b b) (*.f64 a a)) #s(literal 2 binary64)) (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64))) (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64))) (*.f64 x-scale x-scale)) #s(literal 4 binary64))) #s(literal 2 binary64)) (pow.f64 (/.f64 (+.f64 (pow.f64 (*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) a) #s(literal 2 binary64)) (pow.f64 (*.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) b) #s(literal 2 binary64))) (*.f64 x-scale x-scale)) #s(literal 2 binary64))) #s(literal 1/4 binary64))) (/.f64 (+.f64 (pow.f64 (*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) a) #s(literal 2 binary64)) (pow.f64 (*.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) b) #s(literal 2 binary64))) (*.f64 x-scale x-scale))) #s(literal 1/2 binary64) (*.f64 #s(literal -1/4 binary64) (/.f64 (pow.f64 (fma.f64 (/.f64 (fma.f64 (*.f64 #s(literal -2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 b b) (*.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a)))) (/.f64 (+.f64 (pow.f64 (*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) a) #s(literal 2 binary64)) (pow.f64 (*.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) b) #s(literal 2 binary64))) (*.f64 x-scale x-scale)) (*.f64 (/.f64 (*.f64 (*.f64 (pow.f64 (-.f64 (*.f64 b b) (*.f64 a a)) #s(literal 2 binary64)) (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64))) (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64))) (*.f64 x-scale x-scale)) #s(literal 4 binary64))) (/.f64 (+.f64 (pow.f64 (*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) a) #s(literal 2 binary64)) (pow.f64 (*.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) b) #s(literal 2 binary64))) (*.f64 x-scale x-scale))) #s(literal 1/2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 b b) (*.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a)))) #s(literal 2 binary64)) (/.f64 (*.f64 (+.f64 (pow.f64 (*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) a) #s(literal 2 binary64)) (pow.f64 (*.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) b) #s(literal 2 binary64))) #s(literal 2 binary64)) (*.f64 x-scale x-scale)))))) (pow.f64 y-scale #s(literal 4 binary64)))) (sqrt.f64 (/.f64 #s(literal 1 binary64) (/.f64 (*.f64 (+.f64 (pow.f64 (*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) a) #s(literal 2 binary64)) (pow.f64 (*.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) b) #s(literal 2 binary64))) #s(literal 2 binary64)) (*.f64 x-scale x-scale)))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) x-scale)) (sqrt.f64 (/.f64 (*.f64 (+.f64 (pow.f64 (*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) a) #s(literal 2 binary64)) (pow.f64 (*.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) b) #s(literal 2 binary64))) #s(literal 2 binary64)) (*.f64 x-scale x-scale))))))) y-scale)))

rewrite191.0ms (0.7%)

Memory
11.8MiB live, 253.5MiB allocated; 27ms collecting garbage
Iterations

Useful iterations: 0 (0.0ms)

IterNodesCost
01191402
01621363
16401296
250991257
081291232
Stop Event
iter limit
node limit
iter limit
Counts
24 → 186
Calls
Call 1
Inputs
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (sqrt.f64 (*.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64))) #s(literal 2 binary64)))))
(*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (sqrt.f64 (*.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64))) #s(literal 2 binary64))))
(*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale))
(*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)
(*.f64 (*.f64 (*.f64 #s(literal 1/4 binary64) b) y-scale) #s(literal 4 binary64))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (*.f64 #s(literal 1/4 binary64) b) y-scale) #s(literal 4 binary64)))
(*.f64 (*.f64 #s(literal 1/4 binary64) b) y-scale)
(*.f64 #s(literal 1/4 binary64) b)
(neg.f64 (*.f64 a (*.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) (sqrt.f64 #s(literal 2 binary64)))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) #s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) (neg.f64 (*.f64 a (*.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) (sqrt.f64 #s(literal 2 binary64))))))))
(*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) #s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) (neg.f64 (*.f64 a (*.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) (sqrt.f64 #s(literal 2 binary64)))))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale)) (/.f64 (*.f64 (hypot.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))))) (sqrt.f64 #s(literal 2 binary64))) (fabs.f64 x-scale))))
(*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale)) (/.f64 (*.f64 (hypot.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))))) (sqrt.f64 #s(literal 2 binary64))) (fabs.f64 x-scale)))
(*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale))
(*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale)
(exp.f64 (*.f64 (log.f64 (*.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64))) #s(literal 2 binary64))) #s(literal 1/2 binary64)))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (exp.f64 (*.f64 (log.f64 (*.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64))) #s(literal 2 binary64))) #s(literal 1/2 binary64)))))
(*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (exp.f64 (*.f64 (log.f64 (*.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64))) #s(literal 2 binary64))) #s(literal 1/2 binary64))))
(cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))
(sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))
(sqrt.f64 (*.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64))) #s(literal 2 binary64)))
#s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) (neg.f64 (*.f64 a (*.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) (sqrt.f64 #s(literal 2 binary64))))))
(sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))
(log.f64 (*.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64))) #s(literal 2 binary64)))
Outputs
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) #s(literal 1/4 binary64)) (sqrt.f64 #s(literal 2 binary64))) (hypot.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) a) (*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) b))))
(*.f64 (*.f64 (*.f64 (hypot.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) a) (*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) b)) (sqrt.f64 #s(literal 2 binary64))) (*.f64 (sqrt.f64 #s(literal 8 binary64)) #s(literal 1/4 binary64))) y-scale)
(*.f64 (*.f64 (*.f64 (hypot.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) a) (*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) b)) (sqrt.f64 #s(literal 2 binary64))) #s(literal 1/4 binary64)) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale))
(*.f64 (*.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) #s(literal 1/4 binary64)) (hypot.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) a) (*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) b))) (sqrt.f64 #s(literal 2 binary64)))
(*.f64 (*.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) #s(literal 1/4 binary64)) (sqrt.f64 #s(literal 2 binary64))) (hypot.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) a) (*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) b)))
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eval157.0ms (0.6%)

Memory
16.5MiB live, 345.5MiB allocated; 27ms collecting garbage
Compiler

Compiled 162 067 to 3 396 computations (97.9% saved)

prune1.3s (4.5%)

Memory
-8.5MiB live, 2 305.8MiB allocated; 223ms collecting garbage
Pruning

86 alts after pruning (84 fresh and 2 done)

PrunedKeptTotal
New44256498
Fresh302858
Picked415
Done011
Total47686562
Accuracy
67.6%
Counts
562 → 86
Alt Table
Click to see full alt table
StatusAccuracyProgram
5.0%
(/.f64 (neg.f64 (sqrt.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64)))) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (+.f64 (+.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a #s(approx (cos (* (/ angle 180) (PI))) #s(literal 1 binary64))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) #s(approx (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))) (/.f64 (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 b b) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 a a))) (*.f64 y-scale y-scale))))))) (/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64))))
4.5%
(/.f64 (neg.f64 #s(approx (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2)))))) (*.f64 (/.f64 (*.f64 (*.f64 (*.f64 a a) (*.f64 b b)) (sqrt.f64 #s(literal 8 binary64))) (*.f64 x-scale (*.f64 y-scale y-scale))) (sqrt.f64 (*.f64 #s(literal 2 binary64) (fma.f64 (*.f64 a a) (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (*.f64 b b) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))))))))) (/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64))))
42.0%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (/.f64 (*.f64 (*.f64 (*.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale) #s(literal 1/4 binary64)) (sqrt.f64 #s(literal 2 binary64))) (hypot.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) a) (*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) b))) (fabs.f64 x-scale)))
6.2%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (fma.f64 (/.f64 (*.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) x-scale) (fma.f64 (/.f64 (fma.f64 (/.f64 #s(literal 4 binary64) x-scale) (/.f64 (*.f64 (*.f64 (pow.f64 (*.f64 (+.f64 b a) (-.f64 b a)) #s(literal 2 binary64)) (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64))) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64))) x-scale) (*.f64 (*.f64 #s(literal -2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 b b) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 a a)))) (/.f64 (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b))) (*.f64 x-scale x-scale)))) (/.f64 (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b))) (*.f64 x-scale x-scale))) #s(literal 1/2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 b b) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 a a))))) (sqrt.f64 (/.f64 #s(literal 1 binary64) (/.f64 (*.f64 #s(literal 2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b)))) (*.f64 x-scale x-scale))))) (*.f64 y-scale y-scale)) #s(literal 1/8 binary64) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) x-scale)) (exp.f64 (*.f64 (log.f64 (*.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64))) (/.f64 #s(literal 2 binary64) (*.f64 x-scale x-scale)))) #s(literal 1/2 binary64))))) y-scale))
5.0%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (fma.f64 (/.f64 (*.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) x-scale) (fma.f64 (/.f64 (fma.f64 (/.f64 #s(literal 4 binary64) x-scale) (/.f64 (*.f64 (*.f64 (pow.f64 (*.f64 (+.f64 b a) (-.f64 b a)) #s(literal 2 binary64)) (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64))) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64))) x-scale) (*.f64 (*.f64 #s(literal -2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 b b) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 a a)))) (/.f64 (fma.f64 (pow.f64 #s(approx (sin (* (* (PI) angle) 1/180)) (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b))) (*.f64 x-scale x-scale)))) (/.f64 (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b))) (*.f64 x-scale x-scale))) #s(literal 1/2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 b b) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 a a))))) (sqrt.f64 (/.f64 #s(literal 1 binary64) (/.f64 (*.f64 #s(literal 2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b)))) (*.f64 x-scale x-scale))))) (*.f64 y-scale y-scale)) #s(literal 1/8 binary64) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) x-scale)) (sqrt.f64 (/.f64 (*.f64 #s(literal 2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b)))) (*.f64 x-scale x-scale))))) y-scale))
4.3%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (fma.f64 (/.f64 (*.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) x-scale) (fma.f64 (/.f64 (fma.f64 (/.f64 #s(literal 4 binary64) x-scale) (/.f64 (*.f64 (*.f64 (pow.f64 (*.f64 (+.f64 b a) (-.f64 b a)) #s(literal 2 binary64)) (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64))) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64))) x-scale) (*.f64 (*.f64 #s(literal -2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 b b) (*.f64 (pow.f64 #s(approx (cos (* -1/180 (* (PI) angle))) (+.f64 #s(literal 1 binary64) (*.f64 (*.f64 #s(literal -1/64800 binary64) (*.f64 angle angle)) (*.f64 (PI.f64) (PI.f64))))) #s(literal 2 binary64)) (*.f64 a a)))) (/.f64 (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b))) (*.f64 x-scale x-scale)))) (/.f64 (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b))) (*.f64 x-scale x-scale))) #s(literal 1/2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 b b) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 a a))))) (sqrt.f64 (/.f64 #s(literal 1 binary64) (/.f64 (*.f64 #s(literal 2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b)))) (*.f64 x-scale x-scale))))) (*.f64 y-scale y-scale)) #s(literal 1/8 binary64) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) x-scale)) (sqrt.f64 (/.f64 (*.f64 #s(literal 2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b)))) (*.f64 x-scale x-scale))))) y-scale))
9.6%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (fma.f64 (*.f64 (sqrt.f64 (/.f64 #s(literal 1 binary64) (+.f64 (sqrt.f64 (fma.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 (*.f64 y-scale y-scale) (*.f64 x-scale x-scale)))) #s(literal 4 binary64) (pow.f64 (-.f64 (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 x-scale x-scale)) (/.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 y-scale y-scale))) #s(literal 2 binary64)))) (+.f64 (/.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 y-scale y-scale)) (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 x-scale x-scale)))))) (*.f64 x-scale (/.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) (fma.f64 (*.f64 #s(literal 1/2 binary64) (fma.f64 (*.f64 (-.f64 (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 x-scale x-scale)) (/.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 y-scale y-scale))) (-.f64 (/.f64 (pow.f64 (*.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) b) #s(literal 2 binary64)) (*.f64 x-scale x-scale)) (*.f64 (*.f64 b b) (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 y-scale y-scale))))) #s(literal 2 binary64) (*.f64 (/.f64 (*.f64 (pow.f64 (*.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) b) #s(literal 2 binary64)) (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64))) (*.f64 (*.f64 y-scale y-scale) (*.f64 x-scale x-scale))) #s(literal -8 binary64)))) (sqrt.f64 (/.f64 #s(literal 1 binary64) (fma.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 (*.f64 y-scale y-scale) (*.f64 x-scale x-scale)))) #s(literal 4 binary64) (pow.f64 (-.f64 (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 x-scale x-scale)) (/.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 y-scale y-scale))) #s(literal 2 binary64))))) (fma.f64 (*.f64 b b) (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 y-scale y-scale)) (/.f64 (pow.f64 (*.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) b) #s(literal 2 binary64)) (*.f64 x-scale x-scale))))) (*.f64 a a)))) #s(literal 1/8 binary64) (*.f64 (*.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) #s(literal 1/4 binary64)) x-scale) (sqrt.f64 (+.f64 (sqrt.f64 (fma.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 (*.f64 y-scale y-scale) (*.f64 x-scale x-scale)))) #s(literal 4 binary64) (pow.f64 (-.f64 (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 x-scale x-scale)) (/.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 y-scale y-scale))) #s(literal 2 binary64)))) (+.f64 (/.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 y-scale y-scale)) (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 x-scale x-scale))))))) a))
12.3%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (fma.f64 (*.f64 (sqrt.f64 (/.f64 #s(literal 1 binary64) (+.f64 (sqrt.f64 (fma.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (pow.f64 (*.f64 y-scale x-scale) #s(literal 2 binary64)))) #s(literal 4 binary64) (pow.f64 (-.f64 (/.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 x-scale x-scale)) (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 y-scale y-scale))) #s(literal 2 binary64)))) (+.f64 (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 y-scale y-scale)) (/.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 x-scale x-scale)))))) (*.f64 (/.f64 (*.f64 y-scale x-scale) b) (/.f64 (*.f64 (fma.f64 (*.f64 #s(literal 1/2 binary64) (fma.f64 (*.f64 (-.f64 (/.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 x-scale x-scale)) (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 y-scale y-scale))) (fma.f64 (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) x-scale) (/.f64 (*.f64 a a) x-scale) (*.f64 (*.f64 (neg.f64 a) a) (/.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 y-scale y-scale))))) #s(literal 2 binary64) (*.f64 (*.f64 (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (pow.f64 (*.f64 y-scale x-scale) #s(literal 2 binary64))))) #s(literal -8 binary64)))) (sqrt.f64 (/.f64 #s(literal 1 binary64) (fma.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (pow.f64 (*.f64 y-scale x-scale) #s(literal 2 binary64)))) #s(literal 4 binary64) (pow.f64 (-.f64 (/.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 x-scale x-scale)) (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 y-scale y-scale))) #s(literal 2 binary64))))) (fma.f64 (/.f64 (*.f64 a a) y-scale) (/.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) y-scale) (*.f64 (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) x-scale) (/.f64 (*.f64 a a) x-scale)))) (sqrt.f64 #s(literal 8 binary64))) b))) #s(literal 1/8 binary64) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale)) (sqrt.f64 (+.f64 (sqrt.f64 (fma.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (pow.f64 (*.f64 y-scale x-scale) #s(literal 2 binary64)))) #s(literal 4 binary64) (pow.f64 (-.f64 (/.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 x-scale x-scale)) (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 y-scale y-scale))) #s(literal 2 binary64)))) (+.f64 (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 y-scale y-scale)) (/.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 x-scale x-scale))))))) b))
6.3%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (fma.f64 (*.f64 (sqrt.f64 (/.f64 #s(literal 1 binary64) (*.f64 #s(literal 2 binary64) (/.f64 (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 b b) (*.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a))) (*.f64 y-scale y-scale))))) (/.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) (fma.f64 (/.f64 (fma.f64 (*.f64 #s(literal -2 binary64) (+.f64 (pow.f64 (*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) a) #s(literal 2 binary64)) (pow.f64 (*.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) b) #s(literal 2 binary64)))) (/.f64 (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 b b) (*.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a))) (*.f64 y-scale y-scale)) (*.f64 (/.f64 (*.f64 (*.f64 (pow.f64 (-.f64 (*.f64 b b) (*.f64 a a)) #s(literal 2 binary64)) (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64))) (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64))) (*.f64 y-scale y-scale)) #s(literal 4 binary64))) (/.f64 (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 b b) (*.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a))) (*.f64 y-scale y-scale))) #s(literal 1/2 binary64) (+.f64 (pow.f64 (*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) a) #s(literal 2 binary64)) (pow.f64 (*.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) b) #s(literal 2 binary64))))) (*.f64 x-scale x-scale))) #s(literal 1/8 binary64) (*.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) #s(literal 1/4 binary64)) (sqrt.f64 (*.f64 #s(literal 2 binary64) (/.f64 (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 b b) (*.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a))) (*.f64 y-scale y-scale)))))) x-scale))
41.6%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (hypot.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) a) (*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) b)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) #s(literal 1/4 binary64)))))
41.6%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (hypot.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) a) (*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) b)) (sqrt.f64 #s(literal 2 binary64))) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) #s(literal 1/4 binary64))))
22.6%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) #s(literal 1/4 binary64)) x-scale) (sqrt.f64 (*.f64 #s(literal 2 binary64) (/.f64 (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 b b) (*.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a))) (*.f64 y-scale y-scale))))))
28.1%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (*.f64 (*.f64 #s(literal 1/4 binary64) b) y-scale) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64))))
37.1%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) #s(literal 1/4 binary64)) (*.f64 x-scale (*.f64 (/.f64 (sqrt.f64 #s(literal 2 binary64)) (fabs.f64 x-scale)) (hypot.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) a) (*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) b))))))
36.7%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) #s(literal 1/4 binary64)) (*.f64 y-scale x-scale)) (/.f64 (*.f64 (hypot.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))))) (sqrt.f64 #s(literal 2 binary64))) (fabs.f64 x-scale))))
41.8%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (*.f64 y-scale #s(literal 4 binary64)) (hypot.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))))) #s(literal 1/4 binary64)))
28.1%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (*.f64 #s(literal 1/4 binary64) b) (sqrt.f64 #s(literal 8 binary64))) (*.f64 (sqrt.f64 #s(literal 2 binary64)) y-scale)))
28.3%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (*.f64 #s(literal 1/4 binary64) b) y-scale) #s(literal 4 binary64)))
11.5%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) #s(literal 1/4 binary64)) (*.f64 y-scale #s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) (*.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) (sqrt.f64 #s(literal 2 binary64))) a)))))
18.5%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale) b)) (sqrt.f64 (+.f64 (sqrt.f64 (fma.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 (*.f64 y-scale y-scale) (*.f64 x-scale x-scale)))) #s(literal 4 binary64) (pow.f64 (-.f64 (/.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 x-scale x-scale)) (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 y-scale y-scale))) #s(literal 2 binary64)))) (+.f64 (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 y-scale y-scale)) (/.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 x-scale x-scale)))))))
20.2%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale) a)) (sqrt.f64 (+.f64 (sqrt.f64 (fma.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 (*.f64 y-scale y-scale) (*.f64 x-scale x-scale)))) #s(literal 4 binary64) (pow.f64 (-.f64 (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 x-scale x-scale)) (/.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 y-scale y-scale))) #s(literal 2 binary64)))) (+.f64 (/.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 y-scale y-scale)) (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 x-scale x-scale)))))))
36.6%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale)) (/.f64 (*.f64 (hypot.f64 (*.f64 b (sin.f64 (fma.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64) (/.f64 (PI.f64) #s(literal 2 binary64))))) (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))))) (sqrt.f64 #s(literal 2 binary64))) (fabs.f64 x-scale))))
38.7%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale)) (/.f64 (*.f64 (hypot.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) (*.f64 a #s(approx (sin (* 1/180 (* (PI) angle))) (*.f64 (fma.f64 (*.f64 #s(literal -1/34992000 binary64) (*.f64 angle angle)) (pow.f64 (PI.f64) #s(literal 3 binary64)) (*.f64 #s(literal 1/180 binary64) (PI.f64))) angle)))) (sqrt.f64 #s(literal 2 binary64))) (fabs.f64 x-scale))))
37.5%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale)) (/.f64 (*.f64 (hypot.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) (*.f64 a #s(approx (sin (* 1/180 (* (PI) angle))) (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))))) (sqrt.f64 #s(literal 2 binary64))) (fabs.f64 x-scale))))
38.3%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale)) (/.f64 (*.f64 (hypot.f64 (*.f64 b #s(approx (cos (* 1/180 (* (PI) angle))) (fma.f64 (fma.f64 (*.f64 #s(literal 1/25194240000 binary64) (*.f64 angle angle)) (pow.f64 (PI.f64) #s(literal 4 binary64)) (*.f64 #s(literal -1/64800 binary64) (*.f64 (PI.f64) (PI.f64)))) (*.f64 angle angle) #s(literal 1 binary64)))) (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))))) (sqrt.f64 #s(literal 2 binary64))) (fabs.f64 x-scale))))
38.2%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale)) (/.f64 (*.f64 (hypot.f64 (*.f64 b #s(approx (cos (* 1/180 (* (PI) angle))) (fma.f64 (*.f64 #s(literal -1/64800 binary64) (*.f64 angle angle)) (*.f64 (PI.f64) (PI.f64)) #s(literal 1 binary64)))) (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))))) (sqrt.f64 #s(literal 2 binary64))) (fabs.f64 x-scale))))
36.7%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale)) (/.f64 (*.f64 (hypot.f64 (*.f64 b #s(approx (cos (* 1/180 (* (PI) angle))) #s(literal 1 binary64))) (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))))) (sqrt.f64 #s(literal 2 binary64))) (fabs.f64 x-scale))))
25.3%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale)) (exp.f64 (*.f64 (log.f64 (*.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64))) (/.f64 #s(literal 2 binary64) (*.f64 x-scale x-scale)))) #s(literal 1/2 binary64)))))
20.0%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale)) #s(approx (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))) (fma.f64 #s(literal 1/2 binary64) (/.f64 (*.f64 (*.f64 angle angle) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (fma.f64 (*.f64 #s(literal -1/32400 binary64) (*.f64 b b)) (*.f64 (PI.f64) (PI.f64)) (*.f64 (*.f64 #s(literal 1/32400 binary64) (*.f64 a a)) (*.f64 (PI.f64) (PI.f64)))))) (*.f64 b x-scale)) (/.f64 (*.f64 b (sqrt.f64 #s(literal 2 binary64))) x-scale)))))
22.6%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale)) #s(approx (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))) (/.f64 (*.f64 b (*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) (sqrt.f64 #s(literal 2 binary64)))) x-scale))))
25.7%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale)) #s(approx (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))) (/.f64 (*.f64 b (sqrt.f64 #s(literal 2 binary64))) x-scale))))
12.6%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale)) #s(approx (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))) (/.f64 (*.f64 a (*.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) (sqrt.f64 #s(literal 2 binary64)))) x-scale))))
10.9%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale)) #s(approx (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))) (neg.f64 (/.f64 (*.f64 a (*.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) (sqrt.f64 #s(literal 2 binary64)))) x-scale)))))
36.7%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) x-scale) y-scale)) (/.f64 (*.f64 (hypot.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))))) (sqrt.f64 #s(literal 2 binary64))) (fabs.f64 x-scale))))
43.3%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (pow.f64 (exp.f64 #s(literal 1/2 binary64)) (log.f64 (*.f64 (+.f64 (pow.f64 (*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) b) #s(literal 2 binary64)) (pow.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) a) #s(literal 2 binary64))) #s(literal 2 binary64))))))
40.8%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (/.f64 #s(literal 1 binary64) (exp.f64 (neg.f64 (log.f64 (*.f64 (hypot.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) a) (*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) b)) (sqrt.f64 #s(literal 2 binary64)))))))))
44.0%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (sqrt.f64 (*.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (fma.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64) (/.f64 (PI.f64) #s(literal 2 binary64))))) #s(literal 2 binary64))) #s(literal 2 binary64)))))
42.4%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (sqrt.f64 (*.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b #s(approx (cos (* 1/180 (* (PI) angle))) (fma.f64 (*.f64 #s(literal -1/64800 binary64) (*.f64 angle angle)) (*.f64 (PI.f64) (PI.f64)) #s(literal 1 binary64)))) #s(literal 2 binary64))) #s(literal 2 binary64)))))
42.9%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (sqrt.f64 (*.f64 (+.f64 (pow.f64 (*.f64 a #s(approx (sin (* 1/180 (* (PI) angle))) (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64))) #s(literal 2 binary64)))))
42.3%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (sqrt.f64 (*.f64 #s(literal 2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (sin.f64 (fma.f64 (*.f64 #s(literal 1/180 binary64) angle) (PI.f64) (/.f64 (PI.f64) #s(literal 2 binary64)))) #s(literal 2 binary64)) (*.f64 b b)))))))
18.7%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (exp.f64 (*.f64 (/.f64 (-.f64 (*.f64 (log.f64 (+.f64 (pow.f64 (*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) b) #s(literal 2 binary64)) (pow.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) a) #s(literal 2 binary64)))) (log.f64 (+.f64 (pow.f64 (*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) b) #s(literal 2 binary64)) (pow.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) a) #s(literal 2 binary64))))) (*.f64 (log.f64 #s(literal 2 binary64)) (log.f64 #s(literal 2 binary64)))) (log.f64 (/.f64 (+.f64 (pow.f64 (*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) b) #s(literal 2 binary64)) (pow.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) a) #s(literal 2 binary64))) #s(literal 2 binary64)))) #s(literal 1/2 binary64)))))
18.7%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (exp.f64 (*.f64 (/.f64 (+.f64 (pow.f64 (log.f64 (+.f64 (pow.f64 (*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) b) #s(literal 2 binary64)) (pow.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) a) #s(literal 2 binary64)))) #s(literal 3 binary64)) (pow.f64 (log.f64 #s(literal 2 binary64)) #s(literal 3 binary64))) (fma.f64 (log.f64 (+.f64 (pow.f64 (*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) b) #s(literal 2 binary64)) (pow.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) a) #s(literal 2 binary64)))) (log.f64 (+.f64 (pow.f64 (*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) b) #s(literal 2 binary64)) (pow.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) a) #s(literal 2 binary64)))) (-.f64 (*.f64 (log.f64 #s(literal 2 binary64)) (log.f64 #s(literal 2 binary64))) (*.f64 (log.f64 (+.f64 (pow.f64 (*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) b) #s(literal 2 binary64)) (pow.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) a) #s(literal 2 binary64)))) (log.f64 #s(literal 2 binary64)))))) #s(literal 1/2 binary64)))))
4.8%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (exp.f64 (*.f64 (-.f64 (log.f64 (fma.f64 (+.f64 (pow.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) a) #s(literal 6 binary64)) (pow.f64 (*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) b) #s(literal 6 binary64))) (-.f64 (+.f64 (pow.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) a) #s(literal 4 binary64)) (pow.f64 (*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) b) #s(literal 4 binary64))) (pow.f64 (*.f64 (*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) b) (*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) a)) #s(literal 2 binary64))) (*.f64 (-.f64 (+.f64 (pow.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) a) #s(literal 4 binary64)) (pow.f64 (*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) b) #s(literal 4 binary64))) (pow.f64 (*.f64 (*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) b) (*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) a)) #s(literal 2 binary64))) (+.f64 (pow.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) a) #s(literal 6 binary64)) (pow.f64 (*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) b) #s(literal 6 binary64)))))) (log.f64 (*.f64 (-.f64 (+.f64 (pow.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) a) #s(literal 4 binary64)) (pow.f64 (*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) b) #s(literal 4 binary64))) (pow.f64 (*.f64 (*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) b) (*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) a)) #s(literal 2 binary64))) (-.f64 (+.f64 (pow.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) a) #s(literal 4 binary64)) (pow.f64 (*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) b) #s(literal 4 binary64))) (pow.f64 (*.f64 (*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) b) (*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) a)) #s(literal 2 binary64)))))) #s(literal 1/2 binary64)))))
7.1%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (exp.f64 (*.f64 (-.f64 (log.f64 (*.f64 (-.f64 (pow.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) a) #s(literal 4 binary64)) (pow.f64 (*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) b) #s(literal 4 binary64))) #s(literal 2 binary64))) (log.f64 (-.f64 (pow.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) a) #s(literal 2 binary64)) (pow.f64 (*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) b) #s(literal 2 binary64))))) #s(literal 1/2 binary64)))))
8.9%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (exp.f64 (*.f64 (-.f64 (log.f64 (*.f64 (-.f64 (pow.f64 (*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) b) #s(literal 4 binary64)) (pow.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) a) #s(literal 4 binary64))) #s(literal 2 binary64))) (log.f64 (-.f64 (pow.f64 (*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) b) #s(literal 2 binary64)) (pow.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) a) #s(literal 2 binary64))))) #s(literal 1/2 binary64)))))
9.4%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (exp.f64 (*.f64 (-.f64 (log.f64 (*.f64 (+.f64 (pow.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) a) #s(literal 6 binary64)) (pow.f64 (*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) b) #s(literal 6 binary64))) #s(literal 2 binary64))) (log.f64 (-.f64 (+.f64 (pow.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) a) #s(literal 4 binary64)) (pow.f64 (*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) b) #s(literal 4 binary64))) (pow.f64 (*.f64 (*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) b) (*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) a)) #s(literal 2 binary64))))) #s(literal 1/2 binary64)))))
43.4%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (exp.f64 (*.f64 (+.f64 (log.f64 (+.f64 (pow.f64 (*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) b) #s(literal 2 binary64)) (pow.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) a) #s(literal 2 binary64)))) (log.f64 #s(literal 2 binary64))) #s(literal 1/2 binary64)))))
43.4%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (exp.f64 (*.f64 (log.f64 (*.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (fma.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64) (/.f64 (PI.f64) #s(literal 2 binary64))))) #s(literal 2 binary64))) #s(literal 2 binary64))) #s(literal 1/2 binary64)))))
42.3%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (exp.f64 (*.f64 (log.f64 (*.f64 (+.f64 (pow.f64 (*.f64 a #s(approx (sin (* 1/180 (* (PI) angle))) (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64))) #s(literal 2 binary64))) #s(literal 1/2 binary64)))))
27.9%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (exp.f64 (*.f64 #s(approx (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) (fma.f64 (neg.f64 (log.f64 b)) #s(literal -2 binary64) (log.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) #s(literal 2 binary64))))) #s(literal 1/2 binary64)))))
19.4%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (exp.f64 (*.f64 #s(approx (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) (fma.f64 (neg.f64 (log.f64 a)) #s(literal -2 binary64) (log.f64 (*.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) #s(literal 2 binary64))))) #s(literal 1/2 binary64)))))
21.8%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (exp.f64 (*.f64 #s(approx (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) (log.f64 (*.f64 (pow.f64 (*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) a) #s(literal 2 binary64)) #s(literal 2 binary64)))) #s(literal 1/2 binary64)))))
29.4%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (exp.f64 (*.f64 #s(approx (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) (log.f64 (*.f64 (pow.f64 (*.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) b) #s(literal 2 binary64)) #s(literal 2 binary64)))) #s(literal 1/2 binary64)))))
29.4%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (exp.f64 (*.f64 #s(approx (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) (log.f64 (*.f64 (*.f64 b b) #s(literal 2 binary64)))) #s(literal 1/2 binary64)))))
40.8%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (exp.f64 (log.f64 (*.f64 (hypot.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) a) (*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) b)) (sqrt.f64 #s(literal 2 binary64)))))))
24.2%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) #s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) (fma.f64 (/.f64 (*.f64 (*.f64 (fma.f64 (*.f64 #s(literal 1/32400 binary64) (*.f64 a a)) (*.f64 (PI.f64) (PI.f64)) (*.f64 (*.f64 #s(literal -1/32400 binary64) (*.f64 b b)) (*.f64 (PI.f64) (PI.f64)))) (sqrt.f64 #s(literal 2 binary64))) (*.f64 angle angle)) b) #s(literal 1/2 binary64) (*.f64 (sqrt.f64 #s(literal 2 binary64)) b)))))
12.5%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) #s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))) a))))
11.5%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) #s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) (*.f64 (*.f64 (neg.f64 a) (sqrt.f64 #s(literal 2 binary64))) (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))))))
24.4%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) #s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) (*.f64 (*.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal -1/180 binary64))) (sqrt.f64 #s(literal 2 binary64))) b))))
7.3%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) #s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) (neg.f64 (*.f64 (*.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal -1/180 binary64))) (sqrt.f64 #s(literal 2 binary64))) b)))))
14.3%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) #s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) #s(approx (neg (* a (* (sin (* 1/180 (* angle (PI)))) (sqrt 2)))) (*.f64 (fma.f64 (fma.f64 (fma.f64 (*.f64 #s(literal 1/30855889612800000000 binary64) a) (*.f64 (*.f64 (pow.f64 (PI.f64) #s(literal 7 binary64)) (sqrt.f64 #s(literal 2 binary64))) (*.f64 angle angle)) (*.f64 #s(literal -1/22674816000000 binary64) (*.f64 (*.f64 a (pow.f64 (PI.f64) #s(literal 5 binary64))) (sqrt.f64 #s(literal 2 binary64))))) (*.f64 angle angle) (*.f64 #s(literal 1/34992000 binary64) (*.f64 (*.f64 a (pow.f64 (PI.f64) #s(literal 3 binary64))) (sqrt.f64 #s(literal 2 binary64))))) (*.f64 angle angle) (*.f64 #s(literal -1/180 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (PI.f64)) a))) angle)))))
14.3%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) #s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) #s(approx (neg (* a (* (sin (* 1/180 (* angle (PI)))) (sqrt 2)))) (*.f64 (fma.f64 (*.f64 #s(literal 1/34992000 binary64) a) (*.f64 (*.f64 (pow.f64 (PI.f64) #s(literal 3 binary64)) (sqrt.f64 #s(literal 2 binary64))) (*.f64 angle angle)) (*.f64 #s(literal -1/180 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (PI.f64)) a))) angle)))))
12.1%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) #s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) #s(approx (neg (* a (* (sin (* 1/180 (* angle (PI)))) (sqrt 2)))) (*.f64 (*.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (PI.f64)) angle) a) #s(literal -1/180 binary64))))))
24.2%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) #s(approx (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) 1/2)) (fma.f64 (sqrt.f64 #s(literal 2 binary64)) b (/.f64 (*.f64 (fma.f64 (*.f64 #s(literal 1/32400 binary64) (*.f64 a a)) (*.f64 (PI.f64) (PI.f64)) (*.f64 (*.f64 #s(literal -1/32400 binary64) (*.f64 b b)) (*.f64 (PI.f64) (PI.f64)))) (*.f64 angle angle)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) b))))))
41.8%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) x-scale)) (sqrt.f64 (*.f64 #s(literal 2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 b b) (*.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a)))))))
28.1%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) b) (*.f64 (*.f64 y-scale (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64)))))
28.2%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) b) (*.f64 (*.f64 y-scale (exp.f64 (*.f64 (log.f64 #s(literal 2 binary64)) #s(literal 1/2 binary64)))) (sqrt.f64 #s(literal 8 binary64)))))
42.3%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (+ (* (/ (* (* (* (sqrt 8) x-scale) (+ (* (/ (+ (* (/ 4 x-scale) (/ (* (* (pow (* (+ b a) (- b a)) 2) (pow (sin (* (* (PI) angle) 1/180)) 2)) (pow (cos (* -1/180 (* (PI) angle))) 2)) x-scale)) (* (* -2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale))) 1/2) (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a))))) (sqrt (/ 1 (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))))) (* y-scale y-scale)) 1/8) (* (* 1/4 (* (sqrt 8) x-scale)) (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))))) y-scale) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 y-scale (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64)))) (sqrt.f64 (fma.f64 (*.f64 a a) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (*.f64 b b) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))))))))
17.5%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (+ (* (/ (* (* (* (sqrt 8) x-scale) (+ (* (/ (+ (* (/ 4 x-scale) (/ (* (* (pow (* (+ b a) (- b a)) 2) (pow (sin (* (* (PI) angle) 1/180)) 2)) (pow (cos (* -1/180 (* (PI) angle))) 2)) x-scale)) (* (* -2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale))) 1/2) (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a))))) (sqrt (/ 1 (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))))) (* y-scale y-scale)) 1/8) (* (* 1/4 (* (sqrt 8) x-scale)) (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))))) y-scale) (*.f64 y-scale (fma.f64 #s(literal 1/8 binary64) (/.f64 (*.f64 (*.f64 x-scale x-scale) (*.f64 (sqrt.f64 #s(literal 1/2 binary64)) (*.f64 (sqrt.f64 #s(literal 8 binary64)) (*.f64 #s(literal 0 binary64) (*.f64 a a))))) (*.f64 b (*.f64 y-scale y-scale))) (*.f64 (*.f64 #s(literal 1/4 binary64) b) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))))))
3.0%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (+ (* (/ (* (* (* (sqrt 8) x-scale) (+ (* (/ (+ (* (/ 4 x-scale) (/ (* (* (pow (* (+ b a) (- b a)) 2) (pow (sin (* (* (PI) angle) 1/180)) 2)) (pow (cos (* -1/180 (* (PI) angle))) 2)) x-scale)) (* (* -2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale))) 1/2) (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a))))) (sqrt (/ 1 (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))))) (* y-scale y-scale)) 1/8) (* (* 1/4 (* (sqrt 8) x-scale)) (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))))) y-scale) (neg.f64 (*.f64 (*.f64 b y-scale) (fma.f64 #s(literal 1/8 binary64) (*.f64 (/.f64 (*.f64 x-scale x-scale) (*.f64 y-scale y-scale)) (/.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 1/2 binary64)) (sqrt.f64 #s(literal 8 binary64))) (fma.f64 #s(literal 1/2 binary64) (/.f64 (*.f64 (*.f64 x-scale x-scale) (*.f64 (/.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))) (*.f64 x-scale x-scale)) #s(literal 2 binary64))) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)))) (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))))) (*.f64 (*.f64 #s(literal 1/4 binary64) (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64))))) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64)))))))))
6.0%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (+ (* (/ (* (* (* (sqrt 8) x-scale) (+ (* (/ (+ (* (/ 4 x-scale) (/ (* (* (pow (* (+ b a) (- b a)) 2) (pow (sin (* (* (PI) angle) 1/180)) 2)) (pow (cos (* -1/180 (* (PI) angle))) 2)) x-scale)) (* (* -2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale))) 1/2) (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a))))) (sqrt (/ 1 (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))))) (* y-scale y-scale)) 1/8) (* (* 1/4 (* (sqrt 8) x-scale)) (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))))) y-scale) (neg.f64 (*.f64 (*.f64 a y-scale) (fma.f64 #s(literal 1/8 binary64) (*.f64 (/.f64 (*.f64 x-scale x-scale) (*.f64 y-scale y-scale)) (/.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 1/2 binary64)) (sqrt.f64 #s(literal 8 binary64))) (fma.f64 #s(literal 1/2 binary64) (/.f64 (*.f64 (*.f64 x-scale x-scale) (*.f64 (/.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))) (*.f64 x-scale x-scale)) #s(literal 2 binary64))) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)))) (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))))) (*.f64 (*.f64 #s(literal 1/4 binary64) (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64)))))))))
2.7%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (+ (* (/ (* (* (* (sqrt 8) x-scale) (+ (* (/ (+ (* (/ 4 x-scale) (/ (* (* (pow (* (+ b a) (- b a)) 2) (pow (sin (* (* (PI) angle) 1/180)) 2)) (pow (cos (* -1/180 (* (PI) angle))) 2)) x-scale)) (* (* -2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale))) 1/2) (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a))))) (sqrt (/ 1 (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))))) (* y-scale y-scale)) 1/8) (* (* 1/4 (* (sqrt 8) x-scale)) (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))))) y-scale) (neg.f64 (*.f64 b (fma.f64 #s(literal -1/4 binary64) (*.f64 (/.f64 (*.f64 x-scale x-scale) b) (/.f64 (*.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (sqrt.f64 #s(literal 1/2 binary64)) (*.f64 (sqrt.f64 #s(literal 8 binary64)) (*.f64 a #s(literal 0 binary64))))) (*.f64 y-scale (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64))))))) (*.f64 y-scale (fma.f64 #s(literal 1/8 binary64) (*.f64 (/.f64 (*.f64 x-scale x-scale) (*.f64 y-scale y-scale)) (/.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 1/2 binary64)) (sqrt.f64 #s(literal 8 binary64))) (fma.f64 #s(literal 1/2 binary64) (/.f64 (*.f64 (*.f64 x-scale x-scale) (*.f64 (/.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))) (*.f64 x-scale x-scale)) #s(literal 2 binary64))) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)))) (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))))) (*.f64 (*.f64 #s(literal 1/4 binary64) (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64))))) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64)))))))))))
6.2%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (+ (* (/ (* (* (* (sqrt 8) x-scale) (+ (* (/ (+ (* (/ 4 x-scale) (/ (* (* (pow (* (+ b a) (- b a)) 2) (pow (sin (* (* (PI) angle) 1/180)) 2)) (pow (cos (* -1/180 (* (PI) angle))) 2)) x-scale)) (* (* -2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale))) 1/2) (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a))))) (sqrt (/ 1 (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))))) (* y-scale y-scale)) 1/8) (* (* 1/4 (* (sqrt 8) x-scale)) (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))))) y-scale) (neg.f64 (*.f64 a (fma.f64 #s(literal -1/4 binary64) (*.f64 (/.f64 (*.f64 x-scale x-scale) a) (/.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (sqrt.f64 #s(literal 1/2 binary64)) (*.f64 (sqrt.f64 #s(literal 8 binary64)) (*.f64 b #s(literal 0 binary64))))) (*.f64 y-scale (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))))) (*.f64 y-scale (fma.f64 #s(literal 1/8 binary64) (*.f64 (/.f64 (*.f64 x-scale x-scale) (*.f64 y-scale y-scale)) (/.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 1/2 binary64)) (sqrt.f64 #s(literal 8 binary64))) (fma.f64 #s(literal 1/2 binary64) (/.f64 (*.f64 (*.f64 x-scale x-scale) (*.f64 (/.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))) (*.f64 x-scale x-scale)) #s(literal 2 binary64))) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)))) (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))))) (*.f64 (*.f64 #s(literal 1/4 binary64) (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64)))))))))))
28.3%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (* (* 1/4 b) y-scale) 4) (*.f64 y-scale b)))
19.3%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) (fma.f64 (/.f64 (*.f64 (*.f64 (*.f64 angle angle) x-scale) (*.f64 (*.f64 y-scale (sqrt.f64 #s(literal 2 binary64))) (*.f64 (fma.f64 (*.f64 #s(literal 1/32400 binary64) (*.f64 a a)) (*.f64 (PI.f64) (PI.f64)) (*.f64 (*.f64 #s(literal -1/32400 binary64) (*.f64 b b)) (*.f64 (PI.f64) (PI.f64)))) (sqrt.f64 #s(literal 8 binary64))))) (*.f64 (fabs.f64 x-scale) b)) #s(literal 1/8 binary64) (*.f64 (/.f64 (*.f64 (*.f64 b x-scale) (*.f64 (*.f64 y-scale (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64)))) (fabs.f64 x-scale)) #s(literal 1/4 binary64)))))
33.3%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) (*.f64 (/.f64 (*.f64 (*.f64 b x-scale) (*.f64 (*.f64 y-scale (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64)))) (fabs.f64 x-scale)) #s(literal 1/4 binary64))))
24.7%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) (*.f64 (*.f64 b (/.f64 (*.f64 (*.f64 y-scale x-scale) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))) (sqrt.f64 #s(literal 8 binary64)))) (fabs.f64 x-scale))) #s(literal 1/4 binary64))))
13.2%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) (*.f64 (*.f64 a (/.f64 (*.f64 (*.f64 y-scale x-scale) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))) (sqrt.f64 #s(literal 8 binary64)))) (fabs.f64 x-scale))) #s(literal 1/4 binary64))))
13.5%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) (*.f64 (*.f64 a (/.f64 (*.f64 (*.f64 y-scale x-scale) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))) (sqrt.f64 #s(literal 8 binary64)))) (fabs.f64 x-scale))) #s(literal -1/4 binary64))))
23.4%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale)))) (fma.f64 #s(literal 1/8 binary64) (/.f64 (*.f64 (*.f64 (*.f64 angle angle) y-scale) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (*.f64 (sqrt.f64 #s(literal 8 binary64)) (fma.f64 (*.f64 #s(literal -1/32400 binary64) (*.f64 b b)) (*.f64 (PI.f64) (PI.f64)) (*.f64 (*.f64 #s(literal 1/32400 binary64) (*.f64 a a)) (*.f64 (PI.f64) (PI.f64))))))) b) (*.f64 (*.f64 #s(literal 1/4 binary64) b) (*.f64 (*.f64 y-scale (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64)))))))
24.4%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale)))) (*.f64 (*.f64 #s(literal 1/4 binary64) b) (*.f64 (*.f64 y-scale (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64))))) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64)))))))
12.5%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale)))) (*.f64 (*.f64 #s(literal 1/4 binary64) a) (*.f64 (*.f64 y-scale (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64)))))))
7.3%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale)))) (*.f64 (*.f64 #s(literal -1/4 binary64) b) (*.f64 (*.f64 y-scale (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64))))) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64)))))))
11.5%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale)))) (*.f64 (*.f64 #s(literal -1/4 binary64) a) (*.f64 (*.f64 y-scale (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64)))))))
13.2%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) (*.f64 (*.f64 (*.f64 a y-scale) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))) (sqrt.f64 #s(literal 8 binary64)))) #s(literal 1/4 binary64))))
11.9%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) (*.f64 (*.f64 (*.f64 a y-scale) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))) (sqrt.f64 #s(literal 8 binary64)))) #s(literal -1/4 binary64))))
Compiler

Compiled 46 094 to 16 044 computations (65.2% saved)

simplify190.0ms (0.7%)

Memory
-14.6MiB live, 219.3MiB allocated; 23ms collecting garbage
Localize:

Found 19 expressions of interest:

NewMetricScoreProgram
cost-diff0
(*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (exp.f64 (*.f64 (log.f64 (*.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (fma.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64) (/.f64 (PI.f64) #s(literal 2 binary64))))) #s(literal 2 binary64))) #s(literal 2 binary64))) #s(literal 1/2 binary64))))
cost-diff0
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (exp.f64 (*.f64 (log.f64 (*.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (fma.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64) (/.f64 (PI.f64) #s(literal 2 binary64))))) #s(literal 2 binary64))) #s(literal 2 binary64))) #s(literal 1/2 binary64)))))
cost-diff3
(sin.f64 (fma.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64) (/.f64 (PI.f64) #s(literal 2 binary64))))
cost-diff3
(exp.f64 (*.f64 (log.f64 (*.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (fma.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64) (/.f64 (PI.f64) #s(literal 2 binary64))))) #s(literal 2 binary64))) #s(literal 2 binary64))) #s(literal 1/2 binary64)))
cost-diff0
(*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) x-scale) y-scale)
cost-diff0
(*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) x-scale) y-scale))
cost-diff0
(*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) x-scale) y-scale)) (/.f64 (*.f64 (hypot.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))))) (sqrt.f64 #s(literal 2 binary64))) (fabs.f64 x-scale)))
cost-diff0
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) x-scale) y-scale)) (/.f64 (*.f64 (hypot.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))))) (sqrt.f64 #s(literal 2 binary64))) (fabs.f64 x-scale))))
cost-diff0
(*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)
cost-diff0
(*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale))
cost-diff0
(*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) #s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) (neg.f64 (*.f64 (*.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal -1/180 binary64))) (sqrt.f64 #s(literal 2 binary64))) b))))
cost-diff0
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) #s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) (neg.f64 (*.f64 (*.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal -1/180 binary64))) (sqrt.f64 #s(literal 2 binary64))) b)))))
cost-diff0
(*.f64 y-scale b)
cost-diff0
#s(approx (* (* (* 1/4 b) y-scale) 4) (*.f64 y-scale b))
cost-diff0
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (* (* 1/4 b) y-scale) 4) (*.f64 y-scale b)))
cost-diff0
(*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale))
cost-diff0
(*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (sqrt.f64 (*.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (fma.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64) (/.f64 (PI.f64) #s(literal 2 binary64))))) #s(literal 2 binary64))) #s(literal 2 binary64))))
cost-diff0
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (sqrt.f64 (*.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (fma.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64) (/.f64 (PI.f64) #s(literal 2 binary64))))) #s(literal 2 binary64))) #s(literal 2 binary64)))))
cost-diff3
(sin.f64 (fma.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64) (/.f64 (PI.f64) #s(literal 2 binary64))))
Iterations

Useful iterations: 0 (0.0ms)

IterNodesCost
01251896
01711827
14021807
214851798
372311798
082191773
Stop Event
iter limit
node limit
iter limit
Calls
Call 1
Inputs
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (sqrt.f64 (*.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (fma.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64) (/.f64 (PI.f64) #s(literal 2 binary64))))) #s(literal 2 binary64))) #s(literal 2 binary64)))))
(*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (sqrt.f64 (*.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (fma.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64) (/.f64 (PI.f64) #s(literal 2 binary64))))) #s(literal 2 binary64))) #s(literal 2 binary64))))
(*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale))
#s(literal 1/4 binary64)
(*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)
(sqrt.f64 #s(literal 8 binary64))
#s(literal 8 binary64)
y-scale
(sqrt.f64 (*.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (fma.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64) (/.f64 (PI.f64) #s(literal 2 binary64))))) #s(literal 2 binary64))) #s(literal 2 binary64)))
(*.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (fma.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64) (/.f64 (PI.f64) #s(literal 2 binary64))))) #s(literal 2 binary64))) #s(literal 2 binary64))
(+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (fma.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64) (/.f64 (PI.f64) #s(literal 2 binary64))))) #s(literal 2 binary64)))
(pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64))
(*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))))
a
(sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))
(*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))
#s(literal 1/180 binary64)
(*.f64 (PI.f64) angle)
(PI.f64)
angle
#s(literal 2 binary64)
(pow.f64 (*.f64 b (sin.f64 (fma.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64) (/.f64 (PI.f64) #s(literal 2 binary64))))) #s(literal 2 binary64))
(*.f64 b (sin.f64 (fma.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64) (/.f64 (PI.f64) #s(literal 2 binary64)))))
b
(sin.f64 (fma.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64) (/.f64 (PI.f64) #s(literal 2 binary64))))
(fma.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64) (/.f64 (PI.f64) #s(literal 2 binary64)))
(/.f64 (PI.f64) #s(literal 2 binary64))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (* (* 1/4 b) y-scale) 4) (*.f64 y-scale b)))
#s(approx (* (* (* 1/4 b) y-scale) 4) (*.f64 y-scale b))
(*.f64 y-scale b)
y-scale
b
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) #s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) (neg.f64 (*.f64 (*.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal -1/180 binary64))) (sqrt.f64 #s(literal 2 binary64))) b)))))
(*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) #s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) (neg.f64 (*.f64 (*.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal -1/180 binary64))) (sqrt.f64 #s(literal 2 binary64))) b))))
(*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale))
#s(literal 1/4 binary64)
(*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)
(sqrt.f64 #s(literal 8 binary64))
#s(literal 8 binary64)
y-scale
#s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) (neg.f64 (*.f64 (*.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal -1/180 binary64))) (sqrt.f64 #s(literal 2 binary64))) b)))
(neg.f64 (*.f64 (*.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal -1/180 binary64))) (sqrt.f64 #s(literal 2 binary64))) b))
(*.f64 (*.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal -1/180 binary64))) (sqrt.f64 #s(literal 2 binary64))) b)
(*.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal -1/180 binary64))) (sqrt.f64 #s(literal 2 binary64)))
(cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal -1/180 binary64)))
(*.f64 (*.f64 (PI.f64) angle) #s(literal -1/180 binary64))
(*.f64 (PI.f64) angle)
(PI.f64)
angle
#s(literal -1/180 binary64)
(sqrt.f64 #s(literal 2 binary64))
#s(literal 2 binary64)
b
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) x-scale) y-scale)) (/.f64 (*.f64 (hypot.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))))) (sqrt.f64 #s(literal 2 binary64))) (fabs.f64 x-scale))))
(*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) x-scale) y-scale)) (/.f64 (*.f64 (hypot.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))))) (sqrt.f64 #s(literal 2 binary64))) (fabs.f64 x-scale)))
(*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) x-scale) y-scale))
#s(literal 1/4 binary64)
(*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) x-scale) y-scale)
(*.f64 (sqrt.f64 #s(literal 8 binary64)) x-scale)
(sqrt.f64 #s(literal 8 binary64))
#s(literal 8 binary64)
x-scale
y-scale
(/.f64 (*.f64 (hypot.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))))) (sqrt.f64 #s(literal 2 binary64))) (fabs.f64 x-scale))
(*.f64 (hypot.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))))) (sqrt.f64 #s(literal 2 binary64)))
(hypot.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))))
(*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))))
b
(cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))
(*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))
#s(literal 1/180 binary64)
(*.f64 (PI.f64) angle)
(PI.f64)
angle
(*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))))
a
(sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))
(sqrt.f64 #s(literal 2 binary64))
#s(literal 2 binary64)
(fabs.f64 x-scale)
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (exp.f64 (*.f64 (log.f64 (*.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (fma.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64) (/.f64 (PI.f64) #s(literal 2 binary64))))) #s(literal 2 binary64))) #s(literal 2 binary64))) #s(literal 1/2 binary64)))))
(*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (exp.f64 (*.f64 (log.f64 (*.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (fma.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64) (/.f64 (PI.f64) #s(literal 2 binary64))))) #s(literal 2 binary64))) #s(literal 2 binary64))) #s(literal 1/2 binary64))))
(*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale))
#s(literal 1/4 binary64)
(*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)
(sqrt.f64 #s(literal 8 binary64))
#s(literal 8 binary64)
y-scale
(exp.f64 (*.f64 (log.f64 (*.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (fma.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64) (/.f64 (PI.f64) #s(literal 2 binary64))))) #s(literal 2 binary64))) #s(literal 2 binary64))) #s(literal 1/2 binary64)))
(*.f64 (log.f64 (*.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (fma.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64) (/.f64 (PI.f64) #s(literal 2 binary64))))) #s(literal 2 binary64))) #s(literal 2 binary64))) #s(literal 1/2 binary64))
(log.f64 (*.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (fma.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64) (/.f64 (PI.f64) #s(literal 2 binary64))))) #s(literal 2 binary64))) #s(literal 2 binary64)))
(*.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (fma.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64) (/.f64 (PI.f64) #s(literal 2 binary64))))) #s(literal 2 binary64))) #s(literal 2 binary64))
(+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (fma.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64) (/.f64 (PI.f64) #s(literal 2 binary64))))) #s(literal 2 binary64)))
(pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64))
(*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))))
a
(sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))
(*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))
#s(literal 1/180 binary64)
(*.f64 (PI.f64) angle)
(PI.f64)
angle
#s(literal 2 binary64)
(pow.f64 (*.f64 b (sin.f64 (fma.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64) (/.f64 (PI.f64) #s(literal 2 binary64))))) #s(literal 2 binary64))
(*.f64 b (sin.f64 (fma.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64) (/.f64 (PI.f64) #s(literal 2 binary64)))))
b
(sin.f64 (fma.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64) (/.f64 (PI.f64) #s(literal 2 binary64))))
(fma.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64) (/.f64 (PI.f64) #s(literal 2 binary64)))
(/.f64 (PI.f64) #s(literal 2 binary64))
#s(literal 1/2 binary64)
Outputs
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (sqrt.f64 (*.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (fma.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64) (/.f64 (PI.f64) #s(literal 2 binary64))))) #s(literal 2 binary64))) #s(literal 2 binary64)))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (sqrt.f64 (*.f64 (+.f64 (pow.f64 (*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) b) #s(literal 2 binary64)) (pow.f64 (*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) a) #s(literal 2 binary64))) #s(literal 2 binary64))) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) #s(literal 1/4 binary64))))
(*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (sqrt.f64 (*.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (fma.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64) (/.f64 (PI.f64) #s(literal 2 binary64))))) #s(literal 2 binary64))) #s(literal 2 binary64))))
(*.f64 (sqrt.f64 (*.f64 (+.f64 (pow.f64 (*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) b) #s(literal 2 binary64)) (pow.f64 (*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) a) #s(literal 2 binary64))) #s(literal 2 binary64))) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) #s(literal 1/4 binary64)))
(*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale))
(*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) #s(literal 1/4 binary64))
#s(literal 1/4 binary64)
(*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)
(sqrt.f64 #s(literal 8 binary64))
#s(literal 8 binary64)
y-scale
(sqrt.f64 (*.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (fma.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64) (/.f64 (PI.f64) #s(literal 2 binary64))))) #s(literal 2 binary64))) #s(literal 2 binary64)))
(sqrt.f64 (*.f64 (+.f64 (pow.f64 (*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) b) #s(literal 2 binary64)) (pow.f64 (*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) a) #s(literal 2 binary64))) #s(literal 2 binary64)))
(*.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (fma.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64) (/.f64 (PI.f64) #s(literal 2 binary64))))) #s(literal 2 binary64))) #s(literal 2 binary64))
(*.f64 (+.f64 (pow.f64 (*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) b) #s(literal 2 binary64)) (pow.f64 (*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) a) #s(literal 2 binary64))) #s(literal 2 binary64))
(+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (fma.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64) (/.f64 (PI.f64) #s(literal 2 binary64))))) #s(literal 2 binary64)))
(+.f64 (pow.f64 (*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) b) #s(literal 2 binary64)) (pow.f64 (*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) a) #s(literal 2 binary64)))
(pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64))
(pow.f64 (*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) a) #s(literal 2 binary64))
(*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))))
(*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) a)
a
(sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))
(sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))
(*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))
(*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))
#s(literal 1/180 binary64)
(*.f64 (PI.f64) angle)
(PI.f64)
angle
#s(literal 2 binary64)
(pow.f64 (*.f64 b (sin.f64 (fma.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64) (/.f64 (PI.f64) #s(literal 2 binary64))))) #s(literal 2 binary64))
(pow.f64 (*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) b) #s(literal 2 binary64))
(*.f64 b (sin.f64 (fma.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64) (/.f64 (PI.f64) #s(literal 2 binary64)))))
(*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) b)
b
(sin.f64 (fma.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64) (/.f64 (PI.f64) #s(literal 2 binary64))))
(cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle)))
(fma.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64) (/.f64 (PI.f64) #s(literal 2 binary64)))
(/.f64 (PI.f64) #s(literal 2 binary64))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (* (* 1/4 b) y-scale) 4) (*.f64 y-scale b)))
#s(approx (* (* (* 1/4 b) y-scale) 4) (*.f64 y-scale b))
(*.f64 y-scale b)
y-scale
b
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) #s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) (neg.f64 (*.f64 (*.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal -1/180 binary64))) (sqrt.f64 #s(literal 2 binary64))) b)))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 #s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) (*.f64 (neg.f64 b) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle)))))) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) #s(literal 1/4 binary64))))
(*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) #s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) (neg.f64 (*.f64 (*.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal -1/180 binary64))) (sqrt.f64 #s(literal 2 binary64))) b))))
(*.f64 #s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) (*.f64 (neg.f64 b) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle)))))) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) #s(literal 1/4 binary64)))
(*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale))
(*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) #s(literal 1/4 binary64))
#s(literal 1/4 binary64)
(*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)
(sqrt.f64 #s(literal 8 binary64))
#s(literal 8 binary64)
y-scale
#s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) (neg.f64 (*.f64 (*.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal -1/180 binary64))) (sqrt.f64 #s(literal 2 binary64))) b)))
#s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) (*.f64 (neg.f64 b) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))))))
(neg.f64 (*.f64 (*.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal -1/180 binary64))) (sqrt.f64 #s(literal 2 binary64))) b))
(*.f64 (neg.f64 b) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle)))))
(*.f64 (*.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal -1/180 binary64))) (sqrt.f64 #s(literal 2 binary64))) b)
(*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) b) (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))))
(*.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal -1/180 binary64))) (sqrt.f64 #s(literal 2 binary64)))
(*.f64 (sqrt.f64 #s(literal 2 binary64)) (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))))
(cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal -1/180 binary64)))
(cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle)))
(*.f64 (*.f64 (PI.f64) angle) #s(literal -1/180 binary64))
(*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))
(*.f64 (PI.f64) angle)
(PI.f64)
angle
#s(literal -1/180 binary64)
(sqrt.f64 #s(literal 2 binary64))
#s(literal 2 binary64)
b
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) x-scale) y-scale)) (/.f64 (*.f64 (hypot.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))))) (sqrt.f64 #s(literal 2 binary64))) (fabs.f64 x-scale))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (/.f64 (sqrt.f64 #s(literal 2 binary64)) (fabs.f64 x-scale)) (*.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) x-scale) y-scale) #s(literal 1/4 binary64))) (hypot.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) a) (*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) b))))
(*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) x-scale) y-scale)) (/.f64 (*.f64 (hypot.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))))) (sqrt.f64 #s(literal 2 binary64))) (fabs.f64 x-scale)))
(*.f64 (*.f64 (/.f64 (sqrt.f64 #s(literal 2 binary64)) (fabs.f64 x-scale)) (*.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) x-scale) y-scale) #s(literal 1/4 binary64))) (hypot.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) a) (*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) b)))
(*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) x-scale) y-scale))
(*.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) x-scale) y-scale) #s(literal 1/4 binary64))
#s(literal 1/4 binary64)
(*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) x-scale) y-scale)
(*.f64 (sqrt.f64 #s(literal 8 binary64)) x-scale)
(sqrt.f64 #s(literal 8 binary64))
#s(literal 8 binary64)
x-scale
y-scale
(/.f64 (*.f64 (hypot.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))))) (sqrt.f64 #s(literal 2 binary64))) (fabs.f64 x-scale))
(*.f64 (/.f64 (sqrt.f64 #s(literal 2 binary64)) (fabs.f64 x-scale)) (hypot.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) a) (*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) b)))
(*.f64 (hypot.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))))) (sqrt.f64 #s(literal 2 binary64)))
(*.f64 (hypot.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) a) (*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) b)) (sqrt.f64 #s(literal 2 binary64)))
(hypot.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))))
(hypot.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) a) (*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) b))
(*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))))
(*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) b)
b
(cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))
(cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle)))
(*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))
(*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))
#s(literal 1/180 binary64)
(*.f64 (PI.f64) angle)
(PI.f64)
angle
(*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))))
(*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) a)
a
(sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))
(sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))
(sqrt.f64 #s(literal 2 binary64))
#s(literal 2 binary64)
(fabs.f64 x-scale)
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (exp.f64 (*.f64 (log.f64 (*.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (fma.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64) (/.f64 (PI.f64) #s(literal 2 binary64))))) #s(literal 2 binary64))) #s(literal 2 binary64))) #s(literal 1/2 binary64)))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (sqrt.f64 (*.f64 (+.f64 (pow.f64 (*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) b) #s(literal 2 binary64)) (pow.f64 (*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) a) #s(literal 2 binary64))) #s(literal 2 binary64))) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) #s(literal 1/4 binary64))))
(*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (exp.f64 (*.f64 (log.f64 (*.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (fma.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64) (/.f64 (PI.f64) #s(literal 2 binary64))))) #s(literal 2 binary64))) #s(literal 2 binary64))) #s(literal 1/2 binary64))))
(*.f64 (sqrt.f64 (*.f64 (+.f64 (pow.f64 (*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) b) #s(literal 2 binary64)) (pow.f64 (*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) a) #s(literal 2 binary64))) #s(literal 2 binary64))) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) #s(literal 1/4 binary64)))
(*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale))
(*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) #s(literal 1/4 binary64))
#s(literal 1/4 binary64)
(*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)
(sqrt.f64 #s(literal 8 binary64))
#s(literal 8 binary64)
y-scale
(exp.f64 (*.f64 (log.f64 (*.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (fma.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64) (/.f64 (PI.f64) #s(literal 2 binary64))))) #s(literal 2 binary64))) #s(literal 2 binary64))) #s(literal 1/2 binary64)))
(sqrt.f64 (*.f64 (+.f64 (pow.f64 (*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) b) #s(literal 2 binary64)) (pow.f64 (*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) a) #s(literal 2 binary64))) #s(literal 2 binary64)))
(*.f64 (log.f64 (*.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (fma.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64) (/.f64 (PI.f64) #s(literal 2 binary64))))) #s(literal 2 binary64))) #s(literal 2 binary64))) #s(literal 1/2 binary64))
(*.f64 #s(literal 1/2 binary64) (log.f64 (*.f64 (+.f64 (pow.f64 (*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) b) #s(literal 2 binary64)) (pow.f64 (*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) a) #s(literal 2 binary64))) #s(literal 2 binary64))))
(log.f64 (*.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (fma.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64) (/.f64 (PI.f64) #s(literal 2 binary64))))) #s(literal 2 binary64))) #s(literal 2 binary64)))
(log.f64 (*.f64 (+.f64 (pow.f64 (*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) b) #s(literal 2 binary64)) (pow.f64 (*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) a) #s(literal 2 binary64))) #s(literal 2 binary64)))
(*.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (fma.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64) (/.f64 (PI.f64) #s(literal 2 binary64))))) #s(literal 2 binary64))) #s(literal 2 binary64))
(*.f64 (+.f64 (pow.f64 (*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) b) #s(literal 2 binary64)) (pow.f64 (*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) a) #s(literal 2 binary64))) #s(literal 2 binary64))
(+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (fma.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64) (/.f64 (PI.f64) #s(literal 2 binary64))))) #s(literal 2 binary64)))
(+.f64 (pow.f64 (*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) b) #s(literal 2 binary64)) (pow.f64 (*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) a) #s(literal 2 binary64)))
(pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64))
(pow.f64 (*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) a) #s(literal 2 binary64))
(*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))))
(*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) a)
a
(sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))
(sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))
(*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))
(*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))
#s(literal 1/180 binary64)
(*.f64 (PI.f64) angle)
(PI.f64)
angle
#s(literal 2 binary64)
(pow.f64 (*.f64 b (sin.f64 (fma.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64) (/.f64 (PI.f64) #s(literal 2 binary64))))) #s(literal 2 binary64))
(pow.f64 (*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) b) #s(literal 2 binary64))
(*.f64 b (sin.f64 (fma.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64) (/.f64 (PI.f64) #s(literal 2 binary64)))))
(*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) b)
b
(sin.f64 (fma.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64) (/.f64 (PI.f64) #s(literal 2 binary64))))
(cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle)))
(fma.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64) (/.f64 (PI.f64) #s(literal 2 binary64)))
(/.f64 (PI.f64) #s(literal 2 binary64))
#s(literal 1/2 binary64)

localize725.0ms (2.6%)

Memory
24.2MiB live, 643.7MiB allocated; 49ms collecting garbage
Localize:

Found 19 expressions of interest:

NewMetricScoreProgram
accuracy25.72862200828294
(log.f64 (*.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (fma.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64) (/.f64 (PI.f64) #s(literal 2 binary64))))) #s(literal 2 binary64))) #s(literal 2 binary64)))
accuracy26.789927625992473
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (exp.f64 (*.f64 (log.f64 (*.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (fma.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64) (/.f64 (PI.f64) #s(literal 2 binary64))))) #s(literal 2 binary64))) #s(literal 2 binary64))) #s(literal 1/2 binary64)))))
accuracy30.46514388629209
(sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))
accuracy30.52140084317304
(sin.f64 (fma.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64) (/.f64 (PI.f64) #s(literal 2 binary64))))
accuracy12.532940623583235
(*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) x-scale) y-scale)) (/.f64 (*.f64 (hypot.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))))) (sqrt.f64 #s(literal 2 binary64))) (fabs.f64 x-scale)))
accuracy26.789927625992473
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) x-scale) y-scale)) (/.f64 (*.f64 (hypot.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))))) (sqrt.f64 #s(literal 2 binary64))) (fabs.f64 x-scale))))
accuracy30.46514388629209
(sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))
accuracy30.66031287291737
(cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))
accuracy0.42578125
(*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)
accuracy26.789927625992473
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) #s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) (neg.f64 (*.f64 (*.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal -1/180 binary64))) (sqrt.f64 #s(literal 2 binary64))) b)))))
accuracy30.66031287291737
(cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal -1/180 binary64)))
accuracy53.24074112223359
#s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) (neg.f64 (*.f64 (*.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal -1/180 binary64))) (sqrt.f64 #s(literal 2 binary64))) b)))
accuracy0.0
(*.f64 y-scale b)
accuracy0.0
#s(approx (* (* (* 1/4 b) y-scale) 4) (*.f64 y-scale b))
accuracy45.91492549090528
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (* (* 1/4 b) y-scale) 4) (*.f64 y-scale b)))
accuracy24.875505631829796
(sqrt.f64 (*.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (fma.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64) (/.f64 (PI.f64) #s(literal 2 binary64))))) #s(literal 2 binary64))) #s(literal 2 binary64)))
accuracy26.789927625992473
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (sqrt.f64 (*.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (fma.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64) (/.f64 (PI.f64) #s(literal 2 binary64))))) #s(literal 2 binary64))) #s(literal 2 binary64)))))
accuracy30.46514388629209
(sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))
accuracy30.52140084317304
(sin.f64 (fma.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64) (/.f64 (PI.f64) #s(literal 2 binary64))))
Samples
478.0ms140×1valid
148.0ms116×0valid
Compiler

Compiled 1 795 to 115 computations (93.6% saved)

Precisions
Click to see histograms. Total time spent on operations: 540.0ms
ival-mult: 170.0ms (31.5% of total)
ival-sin: 71.0ms (13.2% of total)
ival-pow2: 46.0ms (8.5% of total)
ival-cos: 44.0ms (8.2% of total)
ival-div: 38.0ms (7% of total)
ival-sqrt: 32.0ms (5.9% of total)
ival-exp: 31.0ms (5.7% of total)
adjust: 24.0ms (4.4% of total)
const: 16.0ms (3% of total)
ival-add: 13.0ms (2.4% of total)
ival-sinu: 13.0ms (2.4% of total)
ival-cosu: 11.0ms (2% of total)
ival-log: 11.0ms (2% of total)
ival-hypot: 6.0ms (1.1% of total)
ival-neg: 4.0ms (0.7% of total)
ival-pi: 3.0ms (0.6% of total)
ival-sub: 3.0ms (0.6% of total)
ival-fabs: 1.0ms (0.2% of total)
exact: 1.0ms (0.2% of total)
ival-true: 0.0ms (0% of total)
ival-assert: 0.0ms (0% of total)

series437.0ms (1.6%)

Memory
0.9MiB live, 481.5MiB allocated; 62ms collecting garbage
Counts
23 → 297
Calls
Call 1
Inputs
(sin.f64 (fma.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64) (/.f64 (PI.f64) #s(literal 2 binary64))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (sqrt.f64 (*.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (fma.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64) (/.f64 (PI.f64) #s(literal 2 binary64))))) #s(literal 2 binary64))) #s(literal 2 binary64)))))
(*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (sqrt.f64 (*.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (fma.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64) (/.f64 (PI.f64) #s(literal 2 binary64))))) #s(literal 2 binary64))) #s(literal 2 binary64))))
(*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (* (* 1/4 b) y-scale) 4) (*.f64 y-scale b)))
#s(approx (* (* (* 1/4 b) y-scale) 4) (*.f64 y-scale b))
(*.f64 y-scale b)
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) #s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) (neg.f64 (*.f64 (*.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal -1/180 binary64))) (sqrt.f64 #s(literal 2 binary64))) b)))))
(*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) #s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) (neg.f64 (*.f64 (*.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal -1/180 binary64))) (sqrt.f64 #s(literal 2 binary64))) b))))
(*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) x-scale) y-scale)) (/.f64 (*.f64 (hypot.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))))) (sqrt.f64 #s(literal 2 binary64))) (fabs.f64 x-scale))))
(*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) x-scale) y-scale)) (/.f64 (*.f64 (hypot.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))))) (sqrt.f64 #s(literal 2 binary64))) (fabs.f64 x-scale)))
(*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) x-scale) y-scale))
(*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) x-scale) y-scale)
(exp.f64 (*.f64 (log.f64 (*.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (fma.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64) (/.f64 (PI.f64) #s(literal 2 binary64))))) #s(literal 2 binary64))) #s(literal 2 binary64))) #s(literal 1/2 binary64)))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (exp.f64 (*.f64 (log.f64 (*.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (fma.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64) (/.f64 (PI.f64) #s(literal 2 binary64))))) #s(literal 2 binary64))) #s(literal 2 binary64))) #s(literal 1/2 binary64)))))
(*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (exp.f64 (*.f64 (log.f64 (*.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (fma.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64) (/.f64 (PI.f64) #s(literal 2 binary64))))) #s(literal 2 binary64))) #s(literal 2 binary64))) #s(literal 1/2 binary64))))
(sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))
(sqrt.f64 (*.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (fma.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64) (/.f64 (PI.f64) #s(literal 2 binary64))))) #s(literal 2 binary64))) #s(literal 2 binary64)))
#s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) (neg.f64 (*.f64 (*.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal -1/180 binary64))) (sqrt.f64 #s(literal 2 binary64))) b)))
(cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal -1/180 binary64)))
(cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))
(log.f64 (*.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (fma.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64) (/.f64 (PI.f64) #s(literal 2 binary64))))) #s(literal 2 binary64))) #s(literal 2 binary64)))
Outputs
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(hole binary64 (* 1/4 (* (* x-scale (* y-scale (sqrt 8))) (sqrt (+ (sqrt (+ (* 4 (/ (* (pow b 4) (* (pow (cos (* 1/180 (* angle (PI)))) 2) (pow (sin (* 1/180 (* angle (PI)))) 2))) (* (pow x-scale 2) (pow y-scale 2)))) (pow (- (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)) (/ (* (pow b 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow y-scale 2))) 2))) (+ (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)) (/ (* (pow b 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow y-scale 2)))))))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(hole binary64 (+ (* 1/8 (* (* (pow a 2) (* x-scale (* y-scale (* (sqrt 8) (+ (* 1/2 (* (+ (* -8 (/ (* (pow b 2) (* (pow (cos (* 1/180 (* angle (PI)))) 2) (pow (sin (* 1/180 (* angle (PI)))) 2))) (* (pow x-scale 2) (pow y-scale 2)))) (* 2 (* (- (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)) (/ (* (pow b 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow y-scale 2))) (- (/ (pow (sin (* 1/180 (* angle (PI)))) 2) (pow x-scale 2)) (/ (pow (cos (* 1/180 (* angle (PI)))) 2) (pow y-scale 2)))))) (sqrt (/ 1 (+ (* 4 (/ (* (pow b 4) (* (pow (cos (* 1/180 (* angle (PI)))) 2) (pow (sin (* 1/180 (* angle (PI)))) 2))) (* (pow x-scale 2) (pow y-scale 2)))) (pow (- (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)) (/ (* (pow b 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow y-scale 2))) 2)))))) (+ (/ (pow (cos (* 1/180 (* angle (PI)))) 2) (pow y-scale 2)) (/ (pow (sin (* 1/180 (* angle (PI)))) 2) (pow x-scale 2)))))))) (sqrt (/ 1 (+ (sqrt (+ (* 4 (/ (* (pow b 4) (* (pow (cos (* 1/180 (* angle (PI)))) 2) (pow (sin (* 1/180 (* angle (PI)))) 2))) (* (pow x-scale 2) (pow y-scale 2)))) (pow (- (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)) (/ (* (pow b 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow y-scale 2))) 2))) (+ (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)) (/ (* (pow b 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow y-scale 2)))))))) (* 1/4 (* (* x-scale (* y-scale (sqrt 8))) (sqrt (+ (sqrt (+ (* 4 (/ (* (pow b 4) (* (pow (cos (* 1/180 (* angle (PI)))) 2) (pow (sin (* 1/180 (* angle (PI)))) 2))) (* (pow x-scale 2) (pow y-scale 2)))) (pow (- (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)) (/ (* (pow b 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow y-scale 2))) 2))) (+ (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)) (/ (* (pow b 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow y-scale 2))))))))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(hole binary64 (+ (* 1/4 (* (* x-scale (* y-scale (sqrt 8))) (sqrt (+ (sqrt (+ (* 4 (/ (* (pow b 4) (* (pow (cos (* 1/180 (* angle (PI)))) 2) (pow (sin (* 1/180 (* angle (PI)))) 2))) (* (pow x-scale 2) (pow y-scale 2)))) (pow (- (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)) (/ (* (pow b 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow y-scale 2))) 2))) (+ (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)) (/ (* (pow b 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow y-scale 2))))))) (* (pow a 2) (+ (* 1/8 (* (* x-scale (* y-scale (* (sqrt 8) (+ (* 1/2 (* (+ (* -8 (/ (* (pow b 2) (* (pow (cos (* 1/180 (* angle (PI)))) 2) (pow (sin (* 1/180 (* angle (PI)))) 2))) (* (pow x-scale 2) (pow y-scale 2)))) (* 2 (* (- (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)) (/ (* (pow b 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow y-scale 2))) (- (/ (pow (sin (* 1/180 (* angle (PI)))) 2) (pow x-scale 2)) (/ (pow (cos (* 1/180 (* angle (PI)))) 2) (pow y-scale 2)))))) (sqrt (/ 1 (+ (* 4 (/ (* (pow b 4) (* (pow (cos (* 1/180 (* angle (PI)))) 2) (pow (sin (* 1/180 (* angle (PI)))) 2))) (* (pow x-scale 2) (pow y-scale 2)))) (pow (- (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)) (/ (* (pow b 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow y-scale 2))) 2)))))) (+ (/ (pow (cos (* 1/180 (* angle (PI)))) 2) (pow y-scale 2)) (/ (pow (sin (* 1/180 (* angle (PI)))) 2) (pow x-scale 2))))))) (sqrt (/ 1 (+ (sqrt (+ (* 4 (/ (* (pow b 4) (* (pow (cos (* 1/180 (* angle (PI)))) 2) (pow (sin (* 1/180 (* angle (PI)))) 2))) (* (pow x-scale 2) (pow y-scale 2)))) (pow (- (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)) (/ (* (pow b 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow y-scale 2))) 2))) (+ (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)) (/ (* (pow b 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow y-scale 2)))))))) (* 1/8 (* (* (pow a 2) (* x-scale (* y-scale (* (sqrt 8) (- (* 1/2 (* (sqrt (/ 1 (+ (* 4 (/ (* (pow b 4) (* (pow (cos (* 1/180 (* angle (PI)))) 2) (pow (sin (* 1/180 (* angle (PI)))) 2))) (* (pow x-scale 2) (pow y-scale 2)))) (pow (- (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)) (/ (* (pow b 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow y-scale 2))) 2)))) (- (+ (* 4 (/ (* (pow (cos (* 1/180 (* angle (PI)))) 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (* (pow x-scale 2) (pow y-scale 2)))) (pow (- (/ (pow (sin (* 1/180 (* angle (PI)))) 2) (pow x-scale 2)) (/ (pow (cos (* 1/180 (* angle (PI)))) 2) (pow y-scale 2))) 2)) (* 1/4 (/ (pow (+ (* -8 (/ (* (pow b 2) (* (pow (cos (* 1/180 (* angle (PI)))) 2) (pow (sin (* 1/180 (* angle (PI)))) 2))) (* (pow x-scale 2) (pow y-scale 2)))) (* 2 (* (- (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)) (/ (* (pow b 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow y-scale 2))) (- (/ (pow (sin (* 1/180 (* angle (PI)))) 2) (pow x-scale 2)) (/ (pow (cos (* 1/180 (* angle (PI)))) 2) (pow y-scale 2)))))) 2) (+ (* 4 (/ (* (pow b 4) (* (pow (cos (* 1/180 (* angle (PI)))) 2) (pow (sin (* 1/180 (* angle (PI)))) 2))) (* (pow x-scale 2) (pow y-scale 2)))) (pow (- (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)) (/ (* (pow b 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow y-scale 2))) 2))))))) (* 1/4 (/ (pow (+ (* 1/2 (* (+ (* -8 (/ (* (pow b 2) (* (pow (cos (* 1/180 (* angle (PI)))) 2) (pow (sin (* 1/180 (* angle (PI)))) 2))) (* (pow x-scale 2) (pow y-scale 2)))) (* 2 (* (- (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)) (/ (* (pow b 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow y-scale 2))) (- (/ (pow (sin (* 1/180 (* angle (PI)))) 2) (pow x-scale 2)) (/ (pow (cos (* 1/180 (* angle (PI)))) 2) (pow y-scale 2)))))) (sqrt (/ 1 (+ (* 4 (/ (* (pow b 4) (* (pow (cos (* 1/180 (* angle (PI)))) 2) (pow (sin (* 1/180 (* angle (PI)))) 2))) (* (pow x-scale 2) (pow y-scale 2)))) (pow (- (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)) (/ (* (pow b 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow y-scale 2))) 2)))))) (+ (/ (pow (cos (* 1/180 (* angle (PI)))) 2) (pow y-scale 2)) (/ (pow (sin (* 1/180 (* angle (PI)))) 2) (pow x-scale 2)))) 2) (+ (sqrt (+ (* 4 (/ (* (pow b 4) (* (pow (cos (* 1/180 (* angle (PI)))) 2) (pow (sin (* 1/180 (* angle (PI)))) 2))) (* (pow x-scale 2) (pow y-scale 2)))) (pow (- (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)) (/ (* (pow b 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow y-scale 2))) 2))) (+ (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)) (/ (* (pow b 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow y-scale 2))))))))))) (sqrt (/ 1 (+ (sqrt (+ (* 4 (/ (* (pow b 4) (* (pow (cos (* 1/180 (* angle (PI)))) 2) (pow (sin (* 1/180 (* angle (PI)))) 2))) (* (pow x-scale 2) (pow y-scale 2)))) (pow (- (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)) (/ (* (pow b 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow y-scale 2))) 2))) (+ (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)) (/ (* (pow b 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow y-scale 2)))))))))))))
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#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2)))) 2)) 2)) 1/2))) #s(hole binary64 (+ (* 1/720 (* angle (* b (* y-scale (* (PI) (* (cos (* 1/2 (PI))) (* (sqrt 2) (sqrt 8)))))))) (* 1/4 (* b (* y-scale (* (sin (* 1/2 (PI))) (* (sqrt 2) (sqrt 8)))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2)))) 2)) 2)) 1/2))) #s(hole binary64 (+ (* 1/4 (* b (* y-scale (* (sin (* 1/2 (PI))) (* (sqrt 2) (sqrt 8)))))) (* angle (+ (* 1/720 (* b (* y-scale (* (PI) (* (cos (* 1/2 (PI))) (* (sqrt 2) (sqrt 8))))))) (* 1/8 (/ (* angle (* y-scale (* (sqrt 2) (* (sqrt 8) (- (+ (* 1/32400 (* (pow a 2) (pow (PI) 2))) (* (pow b 2) (+ (* -1/32400 (* (pow (PI) 2) (pow (sin (* 1/2 (PI))) 2))) (* 1/32400 (* (pow (PI) 2) (pow (cos (* 1/2 (PI))) 2)))))) (* 1/32400 (* (pow b 2) (* (pow (PI) 2) (pow (cos (* 1/2 (PI))) 2))))))))) (* b (sin (* 1/2 (PI)))))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2)))) 2)) 2)) 1/2))) #s(hole binary64 (+ (* 1/4 (* b (* y-scale (* (sin (* 1/2 (PI))) (* (sqrt 2) (sqrt 8)))))) (* angle (+ (* 1/720 (* b (* y-scale (* (PI) (* (cos (* 1/2 (PI))) (* (sqrt 2) (sqrt 8))))))) (* angle (+ (* 1/8 (/ (* angle (* y-scale (* (sqrt 2) (* (sqrt 8) (- (* (pow b 2) (+ (* -1/5832000 (* (pow (PI) 3) (* (cos (* 1/2 (PI))) (sin (* 1/2 (PI)))))) (* -1/17496000 (* (pow (PI) 3) (* (cos (* 1/2 (PI))) (sin (* 1/2 (PI)))))))) (* 1/180 (/ (* (PI) (* (cos (* 1/2 (PI))) (- (+ (* 1/32400 (* (pow a 2) (pow (PI) 2))) (* (pow b 2) (+ (* -1/32400 (* (pow (PI) 2) (pow (sin (* 1/2 (PI))) 2))) (* 1/32400 (* (pow (PI) 2) (pow (cos (* 1/2 (PI))) 2)))))) (* 1/32400 (* (pow b 2) (* (pow (PI) 2) (pow (cos (* 1/2 (PI))) 2))))))) (sin (* 1/2 (PI)))))))))) (* b (sin (* 1/2 (PI)))))) (* 1/8 (/ (* y-scale (* (sqrt 2) (* (sqrt 8) (- (+ (* 1/32400 (* (pow a 2) (pow (PI) 2))) (* (pow b 2) (+ (* -1/32400 (* (pow (PI) 2) (pow (sin (* 1/2 (PI))) 2))) (* 1/32400 (* (pow (PI) 2) (pow (cos (* 1/2 (PI))) 2)))))) (* 1/32400 (* (pow b 2) (* (pow (PI) 2) (pow (cos (* 1/2 (PI))) 2)))))))) (* b (sin (* 1/2 (PI)))))))))))))
#s(approx (sin (* 1/180 (* (PI) angle))) #s(hole binary64 (* 1/180 (* angle (PI)))))
#s(approx (sin (* 1/180 (* (PI) angle))) #s(hole binary64 (* angle (+ (* -1/34992000 (* (pow angle 2) (pow (PI) 3))) (* 1/180 (PI))))))
#s(approx (sin (* 1/180 (* (PI) angle))) #s(hole binary64 (* angle (+ (* 1/180 (PI)) (* (pow angle 2) (+ (* -1/34992000 (pow (PI) 3)) (* 1/22674816000000 (* (pow angle 2) (pow (PI) 5)))))))))
#s(approx (sin (* 1/180 (* (PI) angle))) #s(hole binary64 (* angle (+ (* 1/180 (PI)) (* (pow angle 2) (+ (* -1/34992000 (pow (PI) 3)) (* (pow angle 2) (+ (* -1/30855889612800000000 (* (pow angle 2) (pow (PI) 7))) (* 1/22674816000000 (pow (PI) 5))))))))))
#s(approx (sqrt (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2)))) 2)) 2)) #s(hole binary64 (* b (* (sin (* 1/2 (PI))) (sqrt 2)))))
#s(approx (sqrt (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2)))) 2)) 2)) #s(hole binary64 (+ (* 1/180 (* angle (* b (* (PI) (* (cos (* 1/2 (PI))) (sqrt 2)))))) (* b (* (sin (* 1/2 (PI))) (sqrt 2))))))
#s(approx (sqrt (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2)))) 2)) 2)) #s(hole binary64 (+ (* angle (+ (* 1/180 (* b (* (PI) (* (cos (* 1/2 (PI))) (sqrt 2))))) (* 1/2 (/ (* angle (* (sqrt 2) (- (+ (* 1/32400 (* (pow a 2) (pow (PI) 2))) (* (pow b 2) (+ (* -1/32400 (* (pow (PI) 2) (pow (sin (* 1/2 (PI))) 2))) (* 1/32400 (* (pow (PI) 2) (pow (cos (* 1/2 (PI))) 2)))))) (* 1/32400 (* (pow b 2) (* (pow (PI) 2) (pow (cos (* 1/2 (PI))) 2))))))) (* b (sin (* 1/2 (PI)))))))) (* b (* (sin (* 1/2 (PI))) (sqrt 2))))))
#s(approx (sqrt (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2)))) 2)) 2)) #s(hole binary64 (+ (* angle (+ (* 1/180 (* b (* (PI) (* (cos (* 1/2 (PI))) (sqrt 2))))) (* angle (+ (* 1/2 (/ (* angle (* (sqrt 2) (- (* (pow b 2) (+ (* -1/5832000 (* (pow (PI) 3) (* (cos (* 1/2 (PI))) (sin (* 1/2 (PI)))))) (* -1/17496000 (* (pow (PI) 3) (* (cos (* 1/2 (PI))) (sin (* 1/2 (PI)))))))) (* 1/180 (/ (* (PI) (* (cos (* 1/2 (PI))) (- (+ (* 1/32400 (* (pow a 2) (pow (PI) 2))) (* (pow b 2) (+ (* -1/32400 (* (pow (PI) 2) (pow (sin (* 1/2 (PI))) 2))) (* 1/32400 (* (pow (PI) 2) (pow (cos (* 1/2 (PI))) 2)))))) (* 1/32400 (* (pow b 2) (* (pow (PI) 2) (pow (cos (* 1/2 (PI))) 2))))))) (sin (* 1/2 (PI)))))))) (* b (sin (* 1/2 (PI)))))) (* 1/2 (/ (* (sqrt 2) (- (+ (* 1/32400 (* (pow a 2) (pow (PI) 2))) (* (pow b 2) (+ (* -1/32400 (* (pow (PI) 2) (pow (sin (* 1/2 (PI))) 2))) (* 1/32400 (* (pow (PI) 2) (pow (cos (* 1/2 (PI))) 2)))))) (* 1/32400 (* (pow b 2) (* (pow (PI) 2) (pow (cos (* 1/2 (PI))) 2)))))) (* b (sin (* 1/2 (PI)))))))))) (* b (* (sin (* 1/2 (PI))) (sqrt 2))))))
#s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) #s(hole binary64 (* b (sqrt 2))))
#s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) #s(hole binary64 (+ (* 1/2 (/ (* (pow angle 2) (* (sqrt 2) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))))) b)) (* b (sqrt 2)))))
#s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) #s(hole binary64 (+ (* b (sqrt 2)) (* (pow angle 2) (+ (* 1/2 (/ (* (sqrt 2) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2))))) b)) (* 1/2 (/ (* (pow angle 2) (* (sqrt 2) (- (+ (* -1/3149280000 (* (pow a 2) (pow (PI) 4))) (* (pow b 2) (+ (* 1/12597120000 (pow (PI) 4)) (* 1/4199040000 (pow (PI) 4))))) (* 1/4 (/ (pow (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))) 2) (pow b 2)))))) b)))))))
#s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) #s(hole binary64 (+ (* b (sqrt 2)) (* (pow angle 2) (+ (* 1/2 (/ (* (sqrt 2) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2))))) b)) (* (pow angle 2) (+ (* 1/2 (/ (* (sqrt 2) (- (+ (* -1/3149280000 (* (pow a 2) (pow (PI) 4))) (* (pow b 2) (+ (* 1/12597120000 (pow (PI) 4)) (* 1/4199040000 (pow (PI) 4))))) (* 1/4 (/ (pow (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))) 2) (pow b 2))))) b)) (* 1/2 (/ (* (pow angle 2) (* (sqrt 2) (- (+ (* (pow a 2) (+ (* 1/2040733440000000 (pow (PI) 6)) (* 1/1224440064000000 (pow (PI) 6)))) (* (pow b 2) (+ (* -1/816293376000000 (pow (PI) 6)) (* -1/12244400640000000 (pow (PI) 6))))) (* 1/2 (/ (* (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))) (- (+ (* -1/3149280000 (* (pow a 2) (pow (PI) 4))) (* (pow b 2) (+ (* 1/12597120000 (pow (PI) 4)) (* 1/4199040000 (pow (PI) 4))))) (* 1/4 (/ (pow (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))) 2) (pow b 2))))) (pow b 2)))))) b)))))))))
#s(approx (cos (* (* (PI) angle) -1/180)) #s(hole binary64 1))
#s(approx (cos (* (* (PI) angle) -1/180)) #s(hole binary64 (+ 1 (* -1/64800 (* (pow angle 2) (pow (PI) 2))))))
#s(approx (cos (* (* (PI) angle) -1/180)) #s(hole binary64 (+ 1 (* (pow angle 2) (+ (* -1/64800 (pow (PI) 2)) (* 1/25194240000 (* (pow angle 2) (pow (PI) 4))))))))
#s(approx (cos (* (* (PI) angle) -1/180)) #s(hole binary64 (+ 1 (* (pow angle 2) (+ (* -1/64800 (pow (PI) 2)) (* (pow angle 2) (+ (* -1/24488801280000000 (* (pow angle 2) (pow (PI) 6))) (* 1/25194240000 (pow (PI) 4)))))))))
#s(approx (cos (* 1/180 (* (PI) angle))) #s(hole binary64 1))
#s(approx (cos (* 1/180 (* (PI) angle))) #s(hole binary64 (+ 1 (* -1/64800 (* (pow angle 2) (pow (PI) 2))))))
#s(approx (cos (* 1/180 (* (PI) angle))) #s(hole binary64 (+ 1 (* (pow angle 2) (+ (* -1/64800 (pow (PI) 2)) (* 1/25194240000 (* (pow angle 2) (pow (PI) 4))))))))
#s(approx (cos (* 1/180 (* (PI) angle))) #s(hole binary64 (+ 1 (* (pow angle 2) (+ (* -1/64800 (pow (PI) 2)) (* (pow angle 2) (+ (* -1/24488801280000000 (* (pow angle 2) (pow (PI) 6))) (* 1/25194240000 (pow (PI) 4)))))))))
#s(approx (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2)))) 2)) 2)) #s(hole binary64 (log (* 2 (* (pow b 2) (pow (sin (* 1/2 (PI))) 2))))))
#s(approx (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2)))) 2)) 2)) #s(hole binary64 (+ (log (* 2 (* (pow b 2) (pow (sin (* 1/2 (PI))) 2)))) (* 1/90 (/ (* angle (* (PI) (cos (* 1/2 (PI))))) (sin (* 1/2 (PI))))))))
#s(approx (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2)))) 2)) 2)) #s(hole binary64 (+ (log (* 2 (* (pow b 2) (pow (sin (* 1/2 (PI))) 2)))) (* angle (+ (* 1/90 (/ (* (PI) (cos (* 1/2 (PI)))) (sin (* 1/2 (PI))))) (* 1/2 (* angle (+ (* -1/8100 (/ (* (pow (PI) 2) (pow (cos (* 1/2 (PI))) 2)) (pow (sin (* 1/2 (PI))) 2))) (* 2 (/ (+ (* 1/32400 (* (pow a 2) (pow (PI) 2))) (* (pow b 2) (+ (* -1/32400 (* (pow (PI) 2) (pow (sin (* 1/2 (PI))) 2))) (* 1/32400 (* (pow (PI) 2) (pow (cos (* 1/2 (PI))) 2)))))) (* (pow b 2) (pow (sin (* 1/2 (PI))) 2))))))))))))
#s(approx (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2)))) 2)) 2)) #s(hole binary64 (+ (log (* 2 (* (pow b 2) (pow (sin (* 1/2 (PI))) 2)))) (* angle (+ (* 1/90 (/ (* (PI) (cos (* 1/2 (PI)))) (sin (* 1/2 (PI))))) (* angle (+ (* 1/6 (* angle (+ (* -1/15 (/ (* (PI) (* (cos (* 1/2 (PI))) (+ (* 1/32400 (* (pow a 2) (pow (PI) 2))) (* (pow b 2) (+ (* -1/32400 (* (pow (PI) 2) (pow (sin (* 1/2 (PI))) 2))) (* 1/32400 (* (pow (PI) 2) (pow (cos (* 1/2 (PI))) 2)))))))) (* (pow b 2) (pow (sin (* 1/2 (PI))) 3)))) (+ (* 1/364500 (/ (* (pow (PI) 3) (pow (cos (* 1/2 (PI))) 3)) (pow (sin (* 1/2 (PI))) 3))) (* 6 (/ (+ (* -1/5832000 (* (pow (PI) 3) (* (cos (* 1/2 (PI))) (sin (* 1/2 (PI)))))) (* -1/17496000 (* (pow (PI) 3) (* (cos (* 1/2 (PI))) (sin (* 1/2 (PI))))))) (pow (sin (* 1/2 (PI))) 2))))))) (* 1/2 (+ (* -1/8100 (/ (* (pow (PI) 2) (pow (cos (* 1/2 (PI))) 2)) (pow (sin (* 1/2 (PI))) 2))) (* 2 (/ (+ (* 1/32400 (* (pow a 2) (pow (PI) 2))) (* (pow b 2) (+ (* -1/32400 (* (pow (PI) 2) (pow (sin (* 1/2 (PI))) 2))) (* 1/32400 (* (pow (PI) 2) (pow (cos (* 1/2 (PI))) 2)))))) (* (pow b 2) (pow (sin (* 1/2 (PI))) 2)))))))))))))
#s(approx (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2))) #s(hole binary64 (sin (+ (* 1/180 (* angle (PI))) (* 1/2 (PI))))))
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#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2)))) 2)) 2))) #s(hole binary64 (* 1/4 (* (* y-scale (* (sqrt 2) (sqrt 8))) (sqrt (+ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (* (pow b 2) (pow (sin (+ (* 1/180 (* angle (PI))) (* 1/2 (PI)))) 2))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) #s(hole binary64 (* 1/4 (* (* y-scale (* (sqrt 2) (sqrt 8))) (sqrt (+ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (* (pow b 2) (pow (cos (* -1/180 (* angle (PI)))) 2))))))))
#s(approx (* (* 1/4 (* (* (sqrt 8) x-scale) y-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) #s(hole binary64 (* 1/4 (* (/ (* x-scale (* y-scale (* (sqrt 2) (sqrt 8)))) (fabs x-scale)) (sqrt (+ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2))))))))
#s(approx (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2)))) 2)) 2)) 1/2)) #s(hole binary64 (* (sqrt 2) (sqrt (+ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (* (pow b 2) (pow (sin (+ (* 1/180 (* angle (PI))) (* 1/2 (PI)))) 2)))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2)))) 2)) 2)) 1/2))) #s(hole binary64 (* 1/4 (* (* y-scale (* (sqrt 2) (sqrt 8))) (sqrt (+ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (* (pow b 2) (pow (sin (+ (* 1/180 (* angle (PI))) (* 1/2 (PI)))) 2))))))))
#s(approx (sin (* 1/180 (* (PI) angle))) #s(hole binary64 (sin (* 1/180 (* angle (PI))))))
#s(approx (sqrt (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2)))) 2)) 2)) #s(hole binary64 (* (sqrt 2) (sqrt (+ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (* (pow b 2) (pow (sin (+ (* 1/180 (* angle (PI))) (* 1/2 (PI)))) 2)))))))
#s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) #s(hole binary64 (* (sqrt 2) (sqrt (+ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (* (pow b 2) (pow (cos (* -1/180 (* angle (PI)))) 2)))))))
#s(approx (cos (* (* (PI) angle) -1/180)) #s(hole binary64 (cos (* -1/180 (* angle (PI))))))
#s(approx (cos (* 1/180 (* (PI) angle))) #s(hole binary64 (cos (* 1/180 (* angle (PI))))))
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#s(approx (* 1/4 (* (* (sqrt 8) x-scale) y-scale)) #s(hole binary64 (* 1/4 (* x-scale (* y-scale (sqrt 8))))))
#s(approx (* (* (sqrt 8) x-scale) y-scale) #s(hole binary64 (* x-scale (* y-scale (sqrt 8)))))
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#s(approx (* 1/4 (* (sqrt 8) y-scale)) #s(hole binary64 (* 1/4 (* y-scale (sqrt 8)))))
#s(approx (* (sqrt 8) y-scale) #s(hole binary64 (* y-scale (sqrt 8))))
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Calls

15 calls:

TimeVariablePointExpression
130.0ms
angle
@inf
((sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2))) (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2)))) 2)) 2))) (* 1/4 (* (sqrt 8) y-scale)) (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* (* 1/4 b) y-scale) 4) (* y-scale b) (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) (* (sqrt 8) y-scale) (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* 1/4 (* (* (sqrt 8) x-scale) y-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) (* 1/4 (* (* (sqrt 8) x-scale) y-scale)) (* (* (sqrt 8) x-scale) y-scale) (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2)))) 2)) 2)) 1/2)) (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* 1/4 (* (sqrt 8) y-scale)) (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2)))) 2)) 2)) 1/2))) (sin (* 1/180 (* (PI) angle))) (sqrt (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2)))) 2)) 2)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) (cos (* (* (PI) angle) -1/180)) (cos (* 1/180 (* (PI) angle))) (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2)))) 2)) 2)))
42.0ms
angle
@-inf
((sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2))) (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2)))) 2)) 2))) (* 1/4 (* (sqrt 8) y-scale)) (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* (* 1/4 b) y-scale) 4) (* y-scale b) (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) (* (sqrt 8) y-scale) (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* 1/4 (* (* (sqrt 8) x-scale) y-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) (* 1/4 (* (* (sqrt 8) x-scale) y-scale)) (* (* (sqrt 8) x-scale) y-scale) (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2)))) 2)) 2)) 1/2)) (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* 1/4 (* (sqrt 8) y-scale)) (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2)))) 2)) 2)) 1/2))) (sin (* 1/180 (* (PI) angle))) (sqrt (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2)))) 2)) 2)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) (cos (* (* (PI) angle) -1/180)) (cos (* 1/180 (* (PI) angle))) (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2)))) 2)) 2)))
38.0ms
b
@0
((sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2))) (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2)))) 2)) 2))) (* 1/4 (* (sqrt 8) y-scale)) (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* (* 1/4 b) y-scale) 4) (* y-scale b) (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) (* (sqrt 8) y-scale) (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* 1/4 (* (* (sqrt 8) x-scale) y-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) (* 1/4 (* (* (sqrt 8) x-scale) y-scale)) (* (* (sqrt 8) x-scale) y-scale) (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2)))) 2)) 2)) 1/2)) (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* 1/4 (* (sqrt 8) y-scale)) (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2)))) 2)) 2)) 1/2))) (sin (* 1/180 (* (PI) angle))) (sqrt (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2)))) 2)) 2)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) (cos (* (* (PI) angle) -1/180)) (cos (* 1/180 (* (PI) angle))) (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2)))) 2)) 2)))
29.0ms
a
@inf
((sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2))) (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2)))) 2)) 2))) (* 1/4 (* (sqrt 8) y-scale)) (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* (* 1/4 b) y-scale) 4) (* y-scale b) (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) (* (sqrt 8) y-scale) (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* 1/4 (* (* (sqrt 8) x-scale) y-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) (* 1/4 (* (* (sqrt 8) x-scale) y-scale)) (* (* (sqrt 8) x-scale) y-scale) (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2)))) 2)) 2)) 1/2)) (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* 1/4 (* (sqrt 8) y-scale)) (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2)))) 2)) 2)) 1/2))) (sin (* 1/180 (* (PI) angle))) (sqrt (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2)))) 2)) 2)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) (cos (* (* (PI) angle) -1/180)) (cos (* 1/180 (* (PI) angle))) (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2)))) 2)) 2)))
24.0ms
angle
@0
((sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2))) (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2)))) 2)) 2))) (* 1/4 (* (sqrt 8) y-scale)) (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* (* 1/4 b) y-scale) 4) (* y-scale b) (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) (* (sqrt 8) y-scale) (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* 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simplify354.0ms (1.3%)

Memory
24.3MiB live, 539.7MiB allocated; 41ms collecting garbage
Iterations

Useful iterations: 0 (0.0ms)

IterNodesCost
0226575431
1658774511
0804872000
Stop Event
iter limit
node limit
Counts
297 → 297
Calls
Call 1
Inputs
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#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2)))) 2)) 2))) #s(hole binary64 (+ (* 1/720 (* angle (* b (* y-scale (* (PI) (* (cos (* 1/2 (PI))) (* (sqrt 2) (sqrt 8)))))))) (* 1/4 (* b (* y-scale (* (sin (* 1/2 (PI))) (* (sqrt 2) (sqrt 8)))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2)))) 2)) 2))) #s(hole binary64 (+ (* 1/4 (* b (* y-scale (* (sin (* 1/2 (PI))) (* (sqrt 2) (sqrt 8)))))) (* angle (+ (* 1/720 (* b (* y-scale (* (PI) (* (cos (* 1/2 (PI))) (* (sqrt 2) (sqrt 8))))))) (* 1/8 (/ (* angle (* y-scale (* (sqrt 2) (* (sqrt 8) (- (+ (* 1/32400 (* (pow a 2) (pow (PI) 2))) (* (pow b 2) (+ (* -1/32400 (* (pow (PI) 2) (pow (sin (* 1/2 (PI))) 2))) (* 1/32400 (* (pow (PI) 2) (pow (cos (* 1/2 (PI))) 2)))))) (* 1/32400 (* (pow b 2) (* (pow (PI) 2) (pow (cos (* 1/2 (PI))) 2))))))))) (* b (sin (* 1/2 (PI)))))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2)))) 2)) 2))) #s(hole binary64 (+ (* 1/4 (* b (* y-scale (* (sin (* 1/2 (PI))) (* (sqrt 2) (sqrt 8)))))) (* angle (+ (* 1/720 (* b (* y-scale (* (PI) (* (cos (* 1/2 (PI))) (* (sqrt 2) (sqrt 8))))))) (* angle (+ (* 1/8 (/ (* angle (* y-scale (* (sqrt 2) (* (sqrt 8) (- (* (pow b 2) (+ (* -1/5832000 (* (pow (PI) 3) (* (cos (* 1/2 (PI))) (sin (* 1/2 (PI)))))) (* -1/17496000 (* (pow (PI) 3) (* (cos (* 1/2 (PI))) (sin (* 1/2 (PI)))))))) (* 1/180 (/ (* (PI) (* (cos (* 1/2 (PI))) (- (+ (* 1/32400 (* (pow a 2) (pow (PI) 2))) (* (pow b 2) (+ (* -1/32400 (* (pow (PI) 2) (pow (sin (* 1/2 (PI))) 2))) (* 1/32400 (* (pow (PI) 2) (pow (cos (* 1/2 (PI))) 2)))))) (* 1/32400 (* (pow b 2) (* (pow (PI) 2) (pow (cos (* 1/2 (PI))) 2))))))) (sin (* 1/2 (PI)))))))))) (* b (sin (* 1/2 (PI)))))) (* 1/8 (/ (* y-scale (* (sqrt 2) (* (sqrt 8) (- (+ (* 1/32400 (* (pow a 2) (pow (PI) 2))) (* (pow b 2) (+ (* -1/32400 (* (pow (PI) 2) (pow (sin (* 1/2 (PI))) 2))) (* 1/32400 (* (pow (PI) 2) (pow (cos (* 1/2 (PI))) 2)))))) (* 1/32400 (* (pow b 2) (* (pow (PI) 2) (pow (cos (* 1/2 (PI))) 2)))))))) (* b (sin (* 1/2 (PI)))))))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) #s(hole binary64 (* 1/4 (* b (* y-scale (* (sqrt 2) (sqrt 8)))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) #s(hole binary64 (+ (* 1/8 (/ (* (pow angle 2) (* y-scale (* (sqrt 2) (* (sqrt 8) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))))))) b)) (* 1/4 (* b (* y-scale (* (sqrt 2) (sqrt 8))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) #s(hole binary64 (+ (* 1/4 (* b (* y-scale (* (sqrt 2) (sqrt 8))))) (* (pow angle 2) (+ (* 1/8 (/ (* y-scale (* (sqrt 2) (* (sqrt 8) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2))))))) b)) (* 1/8 (/ (* (pow angle 2) (* y-scale (* (sqrt 2) (* (sqrt 8) (- (+ (* -1/3149280000 (* (pow a 2) (pow (PI) 4))) (* (pow b 2) (+ (* 1/12597120000 (pow (PI) 4)) (* 1/4199040000 (pow (PI) 4))))) (* 1/4 (/ (pow (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))) 2) (pow b 2)))))))) b)))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) #s(hole binary64 (+ (* 1/4 (* b (* y-scale (* (sqrt 2) (sqrt 8))))) (* (pow angle 2) (+ (* 1/8 (/ (* y-scale (* (sqrt 2) (* (sqrt 8) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2))))))) b)) (* (pow angle 2) (+ (* 1/8 (/ (* y-scale (* (sqrt 2) (* (sqrt 8) (- (+ (* -1/3149280000 (* (pow a 2) (pow (PI) 4))) (* (pow b 2) (+ (* 1/12597120000 (pow (PI) 4)) (* 1/4199040000 (pow (PI) 4))))) (* 1/4 (/ (pow (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))) 2) (pow b 2))))))) b)) (* 1/8 (/ (* (pow angle 2) (* y-scale (* (sqrt 2) (* (sqrt 8) (- (+ (* (pow a 2) (+ (* 1/2040733440000000 (pow (PI) 6)) (* 1/1224440064000000 (pow (PI) 6)))) (* (pow b 2) (+ (* -1/816293376000000 (pow (PI) 6)) (* -1/12244400640000000 (pow (PI) 6))))) (* 1/2 (/ (* (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))) (- (+ (* -1/3149280000 (* (pow a 2) (pow (PI) 4))) (* (pow b 2) (+ (* 1/12597120000 (pow (PI) 4)) (* 1/4199040000 (pow (PI) 4))))) (* 1/4 (/ (pow (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))) 2) (pow b 2))))) (pow b 2)))))))) b)))))))))
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#s(approx (* (* 1/4 (* (* (sqrt 8) x-scale) y-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) #s(hole binary64 (+ (* 1/8 (/ (* (pow angle 2) (* x-scale (* y-scale (* (sqrt 2) (* (sqrt 8) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2))))))))) (* b (fabs x-scale)))) (* 1/4 (/ (* b (* x-scale (* y-scale (* (sqrt 2) (sqrt 8))))) (fabs x-scale))))))
#s(approx (* (* 1/4 (* (* (sqrt 8) x-scale) y-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) #s(hole binary64 (+ (* 1/4 (/ (* b (* x-scale (* y-scale (* (sqrt 2) (sqrt 8))))) (fabs x-scale))) (* (pow angle 2) (+ (* 1/8 (/ (* x-scale (* y-scale (* (sqrt 2) (* (sqrt 8) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))))))) (* b (fabs x-scale)))) (* 1/8 (/ (* (pow angle 2) (* x-scale (* y-scale (* (sqrt 2) (* (sqrt 8) (- (+ (* -1/3149280000 (* (pow a 2) (pow (PI) 4))) (* (pow b 2) (+ (* 1/12597120000 (pow (PI) 4)) (* 1/4199040000 (pow (PI) 4))))) (* 1/4 (/ (pow (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))) 2) (pow b 2))))))))) (* b (fabs x-scale)))))))))
#s(approx (* (* 1/4 (* (* (sqrt 8) x-scale) y-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) #s(hole binary64 (+ (* 1/4 (/ (* b (* x-scale (* y-scale (* (sqrt 2) (sqrt 8))))) (fabs x-scale))) (* (pow angle 2) (+ (* 1/8 (/ (* x-scale (* y-scale (* (sqrt 2) (* (sqrt 8) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))))))) (* b (fabs x-scale)))) (* (pow angle 2) (+ (* 1/8 (/ (* x-scale (* y-scale (* (sqrt 2) (* (sqrt 8) (- (+ (* -1/3149280000 (* (pow a 2) (pow (PI) 4))) (* (pow b 2) (+ (* 1/12597120000 (pow (PI) 4)) (* 1/4199040000 (pow (PI) 4))))) (* 1/4 (/ (pow (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))) 2) (pow b 2)))))))) (* b (fabs x-scale)))) (* 1/8 (/ (* (pow angle 2) (* x-scale (* y-scale (* (sqrt 2) (* (sqrt 8) (- (+ (* (pow a 2) (+ (* 1/2040733440000000 (pow (PI) 6)) (* 1/1224440064000000 (pow (PI) 6)))) (* (pow b 2) (+ (* -1/816293376000000 (pow (PI) 6)) (* -1/12244400640000000 (pow (PI) 6))))) (* 1/2 (/ (* (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))) (- (+ (* -1/3149280000 (* (pow a 2) (pow (PI) 4))) (* (pow b 2) (+ (* 1/12597120000 (pow (PI) 4)) (* 1/4199040000 (pow (PI) 4))))) (* 1/4 (/ (pow (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))) 2) (pow b 2))))) (pow b 2))))))))) (* b (fabs x-scale)))))))))))
#s(approx (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2)))) 2)) 2)) 1/2)) #s(hole binary64 (* b (* (sin (* 1/2 (PI))) (sqrt 2)))))
#s(approx (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2)))) 2)) 2)) 1/2)) #s(hole binary64 (+ (* 1/90 (/ (* angle (* b (* (PI) (cos (* 1/2 (PI)))))) (sqrt 2))) (* b (* (sin (* 1/2 (PI))) (sqrt 2))))))
#s(approx (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2)))) 2)) 2)) 1/2)) #s(hole binary64 (+ (* angle (+ (* 1/90 (/ (* b (* (PI) (cos (* 1/2 (PI))))) (sqrt 2))) (* 1/2 (/ (* angle (- (* 2 (+ (* 1/32400 (* (pow a 2) (pow (PI) 2))) (* (pow b 2) (+ (* -1/32400 (* (pow (PI) 2) (pow (sin (* 1/2 (PI))) 2))) (* 1/32400 (* (pow (PI) 2) (pow (cos (* 1/2 (PI))) 2))))))) (* 1/8100 (/ (* (pow b 2) (* (pow (PI) 2) (pow (cos (* 1/2 (PI))) 2))) (pow (sqrt 2) 2))))) (* b (* (sin (* 1/2 (PI))) (sqrt 2))))))) (* b (* (sin (* 1/2 (PI))) (sqrt 2))))))
#s(approx (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2)))) 2)) 2)) 1/2)) #s(hole binary64 (+ (* angle (+ (* 1/90 (/ (* b (* (PI) (cos (* 1/2 (PI))))) (sqrt 2))) (* angle (+ (* 1/2 (/ (* angle (- (* 2 (* (pow b 2) (+ (* -1/5832000 (* (pow (PI) 3) (* (cos (* 1/2 (PI))) (sin (* 1/2 (PI)))))) (* -1/17496000 (* (pow (PI) 3) (* (cos (* 1/2 (PI))) (sin (* 1/2 (PI))))))))) (* 1/90 (/ (* (PI) (* (cos (* 1/2 (PI))) (- (* 2 (+ (* 1/32400 (* (pow a 2) (pow (PI) 2))) (* (pow b 2) (+ (* -1/32400 (* (pow (PI) 2) (pow (sin (* 1/2 (PI))) 2))) (* 1/32400 (* (pow (PI) 2) (pow (cos (* 1/2 (PI))) 2))))))) (* 1/8100 (/ (* (pow b 2) (* (pow (PI) 2) (pow (cos (* 1/2 (PI))) 2))) (pow (sqrt 2) 2)))))) (* (sin (* 1/2 (PI))) (pow (sqrt 2) 2)))))) (* b (* (sin (* 1/2 (PI))) (sqrt 2))))) (* 1/2 (/ (- (* 2 (+ (* 1/32400 (* (pow a 2) (pow (PI) 2))) (* (pow b 2) (+ (* -1/32400 (* (pow (PI) 2) (pow (sin (* 1/2 (PI))) 2))) (* 1/32400 (* (pow (PI) 2) (pow (cos (* 1/2 (PI))) 2))))))) (* 1/8100 (/ (* (pow b 2) (* (pow (PI) 2) (pow (cos (* 1/2 (PI))) 2))) (pow (sqrt 2) 2)))) (* b (* (sin (* 1/2 (PI))) (sqrt 2))))))))) (* b (* (sin (* 1/2 (PI))) (sqrt 2))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2)))) 2)) 2)) 1/2))) #s(hole binary64 (* 1/4 (* b (* y-scale (* (sin (* 1/2 (PI))) (* (sqrt 2) (sqrt 8))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2)))) 2)) 2)) 1/2))) #s(hole binary64 (+ (* 1/720 (* angle (* b (* y-scale (* (PI) (* (cos (* 1/2 (PI))) (* (sqrt 2) (sqrt 8)))))))) (* 1/4 (* b (* y-scale (* (sin (* 1/2 (PI))) (* (sqrt 2) (sqrt 8)))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2)))) 2)) 2)) 1/2))) #s(hole binary64 (+ (* 1/4 (* b (* y-scale (* (sin (* 1/2 (PI))) (* (sqrt 2) (sqrt 8)))))) (* angle (+ (* 1/720 (* b (* y-scale (* (PI) (* (cos (* 1/2 (PI))) (* (sqrt 2) (sqrt 8))))))) (* 1/8 (/ (* angle (* y-scale (* (sqrt 2) (* (sqrt 8) (- (+ (* 1/32400 (* (pow a 2) (pow (PI) 2))) (* (pow b 2) (+ (* -1/32400 (* (pow (PI) 2) (pow (sin (* 1/2 (PI))) 2))) (* 1/32400 (* (pow (PI) 2) (pow (cos (* 1/2 (PI))) 2)))))) (* 1/32400 (* (pow b 2) (* (pow (PI) 2) (pow (cos (* 1/2 (PI))) 2))))))))) (* b (sin (* 1/2 (PI)))))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2)))) 2)) 2)) 1/2))) #s(hole binary64 (+ (* 1/4 (* b (* y-scale (* (sin (* 1/2 (PI))) (* (sqrt 2) (sqrt 8)))))) (* angle (+ (* 1/720 (* b (* y-scale (* (PI) (* (cos (* 1/2 (PI))) (* (sqrt 2) (sqrt 8))))))) (* angle (+ (* 1/8 (/ (* angle (* y-scale (* (sqrt 2) (* (sqrt 8) (- (* (pow b 2) (+ (* -1/5832000 (* (pow (PI) 3) (* (cos (* 1/2 (PI))) (sin (* 1/2 (PI)))))) (* -1/17496000 (* (pow (PI) 3) (* (cos (* 1/2 (PI))) (sin (* 1/2 (PI)))))))) (* 1/180 (/ (* (PI) (* (cos (* 1/2 (PI))) (- (+ (* 1/32400 (* (pow a 2) (pow (PI) 2))) (* (pow b 2) (+ (* -1/32400 (* (pow (PI) 2) (pow (sin (* 1/2 (PI))) 2))) (* 1/32400 (* (pow (PI) 2) (pow (cos (* 1/2 (PI))) 2)))))) (* 1/32400 (* (pow b 2) (* (pow (PI) 2) (pow (cos (* 1/2 (PI))) 2))))))) (sin (* 1/2 (PI)))))))))) (* b (sin (* 1/2 (PI)))))) (* 1/8 (/ (* y-scale (* (sqrt 2) (* (sqrt 8) (- (+ (* 1/32400 (* (pow a 2) (pow (PI) 2))) (* (pow b 2) (+ (* -1/32400 (* (pow (PI) 2) (pow (sin (* 1/2 (PI))) 2))) (* 1/32400 (* (pow (PI) 2) (pow (cos (* 1/2 (PI))) 2)))))) (* 1/32400 (* (pow b 2) (* (pow (PI) 2) (pow (cos (* 1/2 (PI))) 2)))))))) (* b (sin (* 1/2 (PI)))))))))))))
#s(approx (sin (* 1/180 (* (PI) angle))) #s(hole binary64 (* 1/180 (* angle (PI)))))
#s(approx (sin (* 1/180 (* (PI) angle))) #s(hole binary64 (* angle (+ (* -1/34992000 (* (pow angle 2) (pow (PI) 3))) (* 1/180 (PI))))))
#s(approx (sin (* 1/180 (* (PI) angle))) #s(hole binary64 (* angle (+ (* 1/180 (PI)) (* (pow angle 2) (+ (* -1/34992000 (pow (PI) 3)) (* 1/22674816000000 (* (pow angle 2) (pow (PI) 5)))))))))
#s(approx (sin (* 1/180 (* (PI) angle))) #s(hole binary64 (* angle (+ (* 1/180 (PI)) (* (pow angle 2) (+ (* -1/34992000 (pow (PI) 3)) (* (pow angle 2) (+ (* -1/30855889612800000000 (* (pow angle 2) (pow (PI) 7))) (* 1/22674816000000 (pow (PI) 5))))))))))
#s(approx (sqrt (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2)))) 2)) 2)) #s(hole binary64 (* b (* (sin (* 1/2 (PI))) (sqrt 2)))))
#s(approx (sqrt (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2)))) 2)) 2)) #s(hole binary64 (+ (* 1/180 (* angle (* b (* (PI) (* (cos (* 1/2 (PI))) (sqrt 2)))))) (* b (* (sin (* 1/2 (PI))) (sqrt 2))))))
#s(approx (sqrt (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2)))) 2)) 2)) #s(hole binary64 (+ (* angle (+ (* 1/180 (* b (* (PI) (* (cos (* 1/2 (PI))) (sqrt 2))))) (* 1/2 (/ (* angle (* (sqrt 2) (- (+ (* 1/32400 (* (pow a 2) (pow (PI) 2))) (* (pow b 2) (+ (* -1/32400 (* (pow (PI) 2) (pow (sin (* 1/2 (PI))) 2))) (* 1/32400 (* (pow (PI) 2) (pow (cos (* 1/2 (PI))) 2)))))) (* 1/32400 (* (pow b 2) (* (pow (PI) 2) (pow (cos (* 1/2 (PI))) 2))))))) (* b (sin (* 1/2 (PI)))))))) (* b (* (sin (* 1/2 (PI))) (sqrt 2))))))
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#s(approx (cos (* 1/180 (* (PI) angle))) #s(hole binary64 1))
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#s(approx (cos (* 1/180 (* (PI) angle))) #s(hole binary64 (+ 1 (* (pow angle 2) (+ (* -1/64800 (pow (PI) 2)) (* (pow angle 2) (+ (* -1/24488801280000000 (* (pow angle 2) (pow (PI) 6))) (* 1/25194240000 (pow (PI) 4)))))))))
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#s(approx (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2)))) 2)) 2)) #s(hole binary64 (+ (log (* 2 (* (pow b 2) (pow (sin (* 1/2 (PI))) 2)))) (* angle (+ (* 1/90 (/ (* (PI) (cos (* 1/2 (PI)))) (sin (* 1/2 (PI))))) (* 1/2 (* angle (+ (* -1/8100 (/ (* (pow (PI) 2) (pow (cos (* 1/2 (PI))) 2)) (pow (sin (* 1/2 (PI))) 2))) (* 2 (/ (+ (* 1/32400 (* (pow a 2) (pow (PI) 2))) (* (pow b 2) (+ (* -1/32400 (* (pow (PI) 2) (pow (sin (* 1/2 (PI))) 2))) (* 1/32400 (* (pow (PI) 2) (pow (cos (* 1/2 (PI))) 2)))))) (* (pow b 2) (pow (sin (* 1/2 (PI))) 2))))))))))))
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#s(approx (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2))) #s(hole binary64 (sin (+ (* 1/180 (* angle (PI))) (* 1/2 (PI))))))
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#s(approx (* (sqrt 8) y-scale) #s(hole binary64 (* y-scale (sqrt 8))))
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#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(hole binary64 (* y-scale (+ (* 1/8 (* (/ (* x-scale (* (sqrt 8) (+ (* 1/2 (/ (+ (* -2 (* (+ (* (pow a 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (* (pow b 2) (pow (sin (* 1/180 (* angle (PI)))) 2))) (+ (/ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)) (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))))) (* 4 (/ (* (pow (cos (* 1/180 (* angle (PI)))) 2) (* (pow (sin (* 1/180 (* angle (PI)))) 2) (pow (- (pow b 2) (pow a 2)) 2))) (pow x-scale 2)))) (+ (/ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)) (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))))) (+ (* (pow a 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (* (pow b 2) (pow (sin (* 1/180 (* angle (PI)))) 2)))))) (pow y-scale 2)) (sqrt (/ 1 (+ (* 2 (/ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))) (* 2 (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)))))))) (* 1/4 (* (* x-scale (sqrt 8)) (sqrt (+ (* 2 (/ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))) (* 2 (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)))))))))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(hole binary64 (* y-scale (+ (* 1/8 (* (/ (* x-scale (* (sqrt 8) (+ (* 1/2 (/ (+ (* -2 (* (+ (* (pow a 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (* (pow b 2) (pow (sin (* 1/180 (* angle (PI)))) 2))) (+ (/ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)) (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))))) (* 4 (/ (* (pow (cos (* 1/180 (* angle (PI)))) 2) (* (pow (sin (* 1/180 (* angle (PI)))) 2) (pow (- (pow b 2) (pow a 2)) 2))) (pow x-scale 2)))) (+ (/ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)) (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))))) (+ (* (pow a 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (* (pow b 2) (pow (sin (* 1/180 (* angle (PI)))) 2)))))) (pow y-scale 2)) (sqrt (/ 1 (+ (* 2 (/ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))) (* 2 (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)))))))) (+ (* 1/8 (* (/ (* x-scale (* (sqrt 8) (- (* 1/2 (/ (- (pow (+ (* (pow a 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (* (pow b 2) (pow (sin (* 1/180 (* angle (PI)))) 2))) 2) (* 1/4 (/ (pow (+ (* -2 (* (+ (* (pow a 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (* (pow b 2) (pow (sin (* 1/180 (* angle (PI)))) 2))) (+ (/ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)) (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))))) (* 4 (/ (* (pow (cos (* 1/180 (* angle (PI)))) 2) (* (pow (sin (* 1/180 (* angle (PI)))) 2) (pow (- (pow b 2) (pow a 2)) 2))) (pow x-scale 2)))) 2) (pow (+ (/ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)) (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))) 2)))) (+ (/ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)) (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))))) (* 1/4 (/ (pow (+ (* 1/2 (/ (+ (* -2 (* (+ (* (pow a 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (* (pow b 2) (pow (sin (* 1/180 (* angle (PI)))) 2))) (+ (/ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)) (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))))) (* 4 (/ (* (pow (cos (* 1/180 (* angle (PI)))) 2) (* (pow (sin (* 1/180 (* angle (PI)))) 2) (pow (- (pow b 2) (pow a 2)) 2))) (pow x-scale 2)))) (+ (/ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)) (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))))) (+ (* (pow a 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (* (pow b 2) (pow (sin (* 1/180 (* angle (PI)))) 2)))) 2) (+ (* 2 (/ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))) (* 2 (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))))))))) (pow y-scale 4)) (sqrt (/ 1 (+ (* 2 (/ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))) (* 2 (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2)))))))) (* 1/4 (* (* x-scale (sqrt 8)) (sqrt (+ (* 2 (/ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))) (* 2 (/ (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (pow x-scale 2))))))))))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(hole binary64 (* y-scale (+ (* 1/8 (* (/ (* x-scale (* (sqrt 8) (+ (* 1/2 (/ (+ (* -2 (* (+ (* (pow a 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (* (pow b 2) (pow (sin (* 1/180 (* angle 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#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(hole binary64 (* -1 (* y-scale (+ (* 1/8 (* (/ (* x-scale (* (sqrt 8) (+ (* 1/2 (/ (+ (* -2 (* (+ (* (pow a 2) (pow (cos (* 1/180 (* angle (PI)))) 2)) (* (pow b 2) (pow (sin (* 1/180 (* 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Outputs
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#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2)))) 2)) 2))) #s(hole binary64 (+ (* 1/8 (/ (* (pow a 2) (* y-scale (* (pow (sin (* 1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8))))) (* b (sin (+ (* 1/180 (* angle (PI))) (* 1/2 (PI))))))) (* 1/4 (* b (* y-scale (* (sin (+ (* 1/180 (* angle (PI))) (* 1/2 (PI)))) (* (sqrt 2) (sqrt 8)))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2)))) 2)) 2))) (fma.f64 #s(literal 1/8 binary64) (/.f64 (*.f64 (*.f64 (*.f64 a a) y-scale) (*.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))) (*.f64 b (sin.f64 (fma.f64 #s(literal 1/2 binary64) (PI.f64) (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))))) (*.f64 (*.f64 #s(literal 1/4 binary64) b) (*.f64 (*.f64 y-scale (sin.f64 (fma.f64 #s(literal 1/2 binary64) (PI.f64) (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))))) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64)))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2)))) 2)) 2))) #s(hole binary64 (+ (* 1/4 (* b (* y-scale (* (sin (+ (* 1/180 (* angle (PI))) (* 1/2 (PI)))) (* (sqrt 2) (sqrt 8)))))) (* (pow a 2) (+ (* -1/32 (/ (* (pow a 2) (* y-scale (* (pow (sin (* 1/180 (* angle (PI)))) 4) (* (sqrt 2) (sqrt 8))))) (* (pow b 3) (pow (sin (+ (* 1/180 (* angle (PI))) (* 1/2 (PI)))) 3)))) (* 1/8 (/ (* y-scale (* (pow (sin (* 1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8)))) (* b (sin (+ (* 1/180 (* angle (PI))) (* 1/2 (PI))))))))))))
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#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2)))) 2)) 2))) #s(hole binary64 (+ (* 1/4 (* b (* y-scale (* (sin (+ (* 1/180 (* angle (PI))) (* 1/2 (PI)))) (* (sqrt 2) (sqrt 8)))))) (* (pow a 2) (+ (* 1/8 (/ (* y-scale (* (pow (sin (* 1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8)))) (* b (sin (+ (* 1/180 (* angle (PI))) (* 1/2 (PI))))))) (* (pow a 2) (+ (* -1/32 (/ (* y-scale (* (pow (sin (* 1/180 (* angle (PI)))) 4) (* (sqrt 2) (sqrt 8)))) (* (pow b 3) (pow (sin (+ (* 1/180 (* angle (PI))) (* 1/2 (PI)))) 3)))) (* 1/64 (/ (* (pow a 2) (* y-scale (* (pow (sin (* 1/180 (* angle (PI)))) 6) (* (sqrt 2) (sqrt 8))))) (* (pow b 5) (pow (sin (+ (* 1/180 (* angle (PI))) (* 1/2 (PI)))) 5)))))))))))
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#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) #s(hole binary64 (* 1/4 (* b (* y-scale (* (cos (* -1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) (*.f64 (*.f64 #s(literal 1/4 binary64) b) (*.f64 (*.f64 y-scale (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64))))) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) #s(hole binary64 (+ (* 1/8 (/ (* (pow a 2) (* y-scale (* (pow (sin (* 1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8))))) (* b (cos (* -1/180 (* angle (PI))))))) (* 1/4 (* b (* y-scale (* (cos (* -1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8)))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) (fma.f64 #s(literal 1/8 binary64) (/.f64 (*.f64 (*.f64 (*.f64 a a) y-scale) (*.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))) (*.f64 b (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))))) (*.f64 (*.f64 #s(literal 1/4 binary64) b) (*.f64 (*.f64 y-scale (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64))))) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64)))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) #s(hole binary64 (+ (* 1/4 (* b (* y-scale (* (cos (* -1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8)))))) (* (pow a 2) (+ (* -1/32 (/ (* (pow a 2) (* y-scale (* (pow (sin (* 1/180 (* angle (PI)))) 4) (* (sqrt 2) (sqrt 8))))) (* (pow b 3) (pow (cos (* -1/180 (* angle (PI)))) 3)))) (* 1/8 (/ (* y-scale (* (pow (sin (* 1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8)))) (* b (cos (* -1/180 (* angle (PI))))))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) (fma.f64 (*.f64 a a) (fma.f64 #s(literal -1/32 binary64) (/.f64 (*.f64 (*.f64 (*.f64 a a) y-scale) (*.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 4 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))) (pow.f64 (*.f64 b (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64))))) #s(literal 3 binary64))) (*.f64 #s(literal 1/8 binary64) (*.f64 (/.f64 y-scale b) (/.f64 (*.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64)))) (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))))))) (*.f64 (*.f64 #s(literal 1/4 binary64) b) (*.f64 (*.f64 y-scale (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64))))) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64)))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) #s(hole binary64 (+ (* 1/4 (* b (* y-scale (* (cos (* -1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8)))))) (* (pow a 2) (+ (* 1/8 (/ (* y-scale (* (pow (sin (* 1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8)))) (* b (cos (* -1/180 (* angle (PI))))))) (* (pow a 2) (+ (* -1/32 (/ (* y-scale (* (pow (sin (* 1/180 (* angle (PI)))) 4) (* (sqrt 2) (sqrt 8)))) (* (pow b 3) (pow (cos (* -1/180 (* angle (PI)))) 3)))) (* 1/64 (/ (* (pow a 2) (* y-scale (* (pow (sin (* 1/180 (* angle (PI)))) 6) (* (sqrt 2) (sqrt 8))))) (* (pow b 5) (pow (cos (* -1/180 (* angle (PI)))) 5)))))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) (fma.f64 (*.f64 a a) (fma.f64 (*.f64 a a) (fma.f64 #s(literal 1/64 binary64) (*.f64 (/.f64 (*.f64 a a) (pow.f64 b #s(literal 5 binary64))) (/.f64 (*.f64 y-scale (*.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 6 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 5 binary64)))) (*.f64 #s(literal -1/32 binary64) (*.f64 y-scale (/.f64 (*.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 4 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64)))) (pow.f64 (*.f64 b (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64))))) #s(literal 3 binary64)))))) (*.f64 #s(literal 1/8 binary64) (*.f64 (/.f64 y-scale b) (/.f64 (*.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64)))) (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))))))) (*.f64 (*.f64 #s(literal 1/4 binary64) b) (*.f64 (*.f64 y-scale (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64))))) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64)))))))
#s(approx (* (* 1/4 (* (* (sqrt 8) x-scale) y-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) #s(hole binary64 (* 1/4 (/ (* b (* x-scale (* y-scale (* (cos (* 1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8)))))) (fabs x-scale)))))
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#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) #s(hole binary64 (* 1/4 (* a (* y-scale (* (sin (* 1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) (*.f64 (*.f64 #s(literal 1/4 binary64) a) (*.f64 (*.f64 y-scale (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) #s(hole binary64 (* a (+ (* 1/8 (/ (* (pow b 2) (* y-scale (* (pow (cos (* -1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8))))) (* (pow a 2) (sin (* 1/180 (* angle (PI))))))) (* 1/4 (* y-scale (* (sin (* 1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8)))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) (*.f64 a (fma.f64 #s(literal 1/8 binary64) (/.f64 (*.f64 (*.f64 (*.f64 b b) y-scale) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))) (*.f64 (*.f64 a a) (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))))) (*.f64 (*.f64 #s(literal 1/4 binary64) y-scale) (*.f64 (*.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64)))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) #s(hole binary64 (* a (+ (* -1/32 (/ (* (pow b 4) (* y-scale (* (pow (cos (* -1/180 (* angle (PI)))) 4) (* (sqrt 2) (sqrt 8))))) (* (pow a 4) (pow (sin (* 1/180 (* angle (PI)))) 3)))) (+ (* 1/8 (/ (* (pow b 2) (* y-scale (* (pow (cos (* -1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8))))) (* (pow a 2) (sin (* 1/180 (* angle (PI))))))) (* 1/4 (* y-scale (* (sin (* 1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8))))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) (*.f64 a (fma.f64 #s(literal -1/32 binary64) (*.f64 (/.f64 (pow.f64 b #s(literal 4 binary64)) (pow.f64 a #s(literal 4 binary64))) (/.f64 (*.f64 y-scale (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 4 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 3 binary64)))) (fma.f64 #s(literal 1/8 binary64) (/.f64 (*.f64 (*.f64 (*.f64 b b) y-scale) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))) (*.f64 (*.f64 a a) (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))))) (*.f64 (*.f64 #s(literal 1/4 binary64) y-scale) (*.f64 (*.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) #s(hole binary64 (* a (+ (* -1/32 (/ (* (pow b 4) (* y-scale (* (pow (cos (* -1/180 (* angle (PI)))) 4) (* (sqrt 2) (sqrt 8))))) (* (pow a 4) (pow (sin (* 1/180 (* angle (PI)))) 3)))) (+ (* 1/64 (/ (* (pow b 6) (* y-scale (* (pow (cos (* -1/180 (* angle (PI)))) 6) (* (sqrt 2) (sqrt 8))))) (* (pow a 6) (pow (sin (* 1/180 (* angle (PI)))) 5)))) (+ (* 1/8 (/ (* (pow b 2) (* y-scale (* (pow (cos (* -1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8))))) (* (pow a 2) (sin (* 1/180 (* angle (PI))))))) (* 1/4 (* y-scale (* (sin (* 1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8)))))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) (*.f64 a (fma.f64 #s(literal -1/32 binary64) (*.f64 (/.f64 (pow.f64 b #s(literal 4 binary64)) (pow.f64 a #s(literal 4 binary64))) (/.f64 (*.f64 y-scale (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 4 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 3 binary64)))) (fma.f64 #s(literal 1/64 binary64) (*.f64 (/.f64 (pow.f64 b #s(literal 6 binary64)) (pow.f64 a #s(literal 6 binary64))) (/.f64 (*.f64 y-scale (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 6 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 5 binary64)))) (fma.f64 #s(literal 1/8 binary64) (/.f64 (*.f64 (*.f64 (*.f64 b b) y-scale) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))) (*.f64 (*.f64 a a) (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))))) (*.f64 (*.f64 #s(literal 1/4 binary64) y-scale) (*.f64 (*.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64)))))))))
#s(approx (* (* 1/4 (* (* (sqrt 8) x-scale) y-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) #s(hole binary64 (* 1/4 (/ (* a (* x-scale (* y-scale (* (sin (* 1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8)))))) (fabs x-scale)))))
#s(approx (* (* 1/4 (* (* (sqrt 8) x-scale) y-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) (*.f64 #s(literal 1/4 binary64) (*.f64 a (/.f64 (*.f64 (*.f64 x-scale y-scale) (*.f64 (*.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64)))) (fabs.f64 x-scale)))))
#s(approx (* (* 1/4 (* (* (sqrt 8) x-scale) y-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) #s(hole binary64 (* a (+ (* 1/8 (/ (* (pow b 2) (* x-scale (* y-scale (* (pow (cos (* 1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8)))))) (* (pow a 2) (* (fabs x-scale) (sin (* 1/180 (* angle (PI)))))))) (* 1/4 (/ (* x-scale (* y-scale (* (sin (* 1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8))))) (fabs x-scale)))))))
#s(approx (* (* 1/4 (* (* (sqrt 8) x-scale) y-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) (*.f64 a (fma.f64 #s(literal 1/8 binary64) (*.f64 (/.f64 (*.f64 b b) (*.f64 a a)) (/.f64 (*.f64 (*.f64 x-scale y-scale) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))) (*.f64 (fabs.f64 x-scale) (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))))) (*.f64 #s(literal 1/4 binary64) (/.f64 (*.f64 (*.f64 x-scale y-scale) (*.f64 (*.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64)))) (fabs.f64 x-scale))))))
#s(approx (* (* 1/4 (* (* (sqrt 8) x-scale) y-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) #s(hole binary64 (* a (+ (* -1/32 (/ (* (pow b 4) (* x-scale (* y-scale (* (pow (cos (* 1/180 (* angle (PI)))) 4) (* (sqrt 2) (sqrt 8)))))) (* (pow a 4) (* (fabs x-scale) (pow (sin (* 1/180 (* angle (PI)))) 3))))) (+ (* 1/8 (/ (* (pow b 2) (* x-scale (* y-scale (* (pow (cos (* 1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8)))))) (* (pow a 2) (* (fabs x-scale) (sin (* 1/180 (* angle (PI)))))))) (* 1/4 (/ (* x-scale (* y-scale (* (sin (* 1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8))))) (fabs x-scale))))))))
#s(approx (* (* 1/4 (* (* (sqrt 8) x-scale) y-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) (*.f64 a (fma.f64 #s(literal -1/32 binary64) (*.f64 (pow.f64 b #s(literal 4 binary64)) (/.f64 (*.f64 (*.f64 x-scale y-scale) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 4 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))) (*.f64 (*.f64 (pow.f64 a #s(literal 4 binary64)) (fabs.f64 x-scale)) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 3 binary64))))) (fma.f64 #s(literal 1/8 binary64) (*.f64 (/.f64 (*.f64 b b) (*.f64 a a)) (/.f64 (*.f64 (*.f64 x-scale y-scale) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))) (*.f64 (fabs.f64 x-scale) (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))))) (*.f64 #s(literal 1/4 binary64) (/.f64 (*.f64 (*.f64 x-scale y-scale) (*.f64 (*.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64)))) (fabs.f64 x-scale)))))))
#s(approx (* (* 1/4 (* (* (sqrt 8) x-scale) y-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) #s(hole binary64 (* a (+ (* -1/32 (/ (* (pow b 4) (* x-scale (* y-scale (* (pow (cos (* 1/180 (* angle (PI)))) 4) (* (sqrt 2) (sqrt 8)))))) (* (pow a 4) (* (fabs x-scale) (pow (sin (* 1/180 (* angle (PI)))) 3))))) (+ (* 1/64 (/ (* (pow b 6) (* x-scale (* y-scale (* (pow (cos (* 1/180 (* angle (PI)))) 6) (* (sqrt 2) (sqrt 8)))))) (* (pow a 6) (* (fabs x-scale) (pow (sin (* 1/180 (* angle (PI)))) 5))))) (+ (* 1/8 (/ (* (pow b 2) (* x-scale (* y-scale (* (pow (cos (* 1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8)))))) (* (pow a 2) (* (fabs x-scale) (sin (* 1/180 (* angle (PI)))))))) (* 1/4 (/ (* x-scale (* y-scale (* (sin (* 1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8))))) (fabs x-scale)))))))))
#s(approx (* (* 1/4 (* (* (sqrt 8) x-scale) y-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) (*.f64 a (fma.f64 #s(literal -1/32 binary64) (*.f64 (pow.f64 b #s(literal 4 binary64)) (/.f64 (*.f64 (*.f64 x-scale y-scale) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 4 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))) (*.f64 (*.f64 (pow.f64 a #s(literal 4 binary64)) (fabs.f64 x-scale)) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 3 binary64))))) (fma.f64 #s(literal 1/64 binary64) (*.f64 (pow.f64 b #s(literal 6 binary64)) (/.f64 (*.f64 (*.f64 x-scale y-scale) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 6 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))) (*.f64 (*.f64 (pow.f64 a #s(literal 6 binary64)) (fabs.f64 x-scale)) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 5 binary64))))) (fma.f64 #s(literal 1/8 binary64) (*.f64 (/.f64 (*.f64 b b) (*.f64 a a)) (/.f64 (*.f64 (*.f64 x-scale y-scale) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))) (*.f64 (fabs.f64 x-scale) (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))))) (*.f64 #s(literal 1/4 binary64) (/.f64 (*.f64 (*.f64 x-scale y-scale) (*.f64 (*.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64)))) (fabs.f64 x-scale))))))))
#s(approx (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2)))) 2)) 2)) 1/2)) #s(hole binary64 (* a (* (sin (* 1/180 (* angle (PI)))) (sqrt 2)))))
#s(approx (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2)))) 2)) 2)) 1/2)) (*.f64 a (*.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) (sqrt.f64 #s(literal 2 binary64)))))
#s(approx (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2)))) 2)) 2)) 1/2)) #s(hole binary64 (* a (+ (* (sin (* 1/180 (* angle (PI)))) (sqrt 2)) (/ (* (pow b 2) (pow (sin (+ (* 1/180 (* angle (PI))) (* 1/2 (PI)))) 2)) (* (pow a 2) (* (sin (* 1/180 (* angle (PI)))) (sqrt 2))))))))
#s(approx (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2)))) 2)) 2)) 1/2)) (*.f64 a (fma.f64 (/.f64 (*.f64 b b) (*.f64 a a)) (/.f64 (pow.f64 (sin.f64 (fma.f64 #s(literal 1/2 binary64) (PI.f64) (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))) #s(literal 2 binary64)) (*.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) (sqrt.f64 #s(literal 2 binary64)))) (*.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) (sqrt.f64 #s(literal 2 binary64))))))
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#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) #s(hole binary64 (* -1 (* a (+ (* -1/32 (/ (* (pow b 4) (* y-scale (* (pow (cos (* -1/180 (* angle (PI)))) 4) (* (sqrt 2) (sqrt 8))))) (* (pow a 4) (pow (sin (* 1/180 (* angle (PI)))) 3)))) (+ (* 1/64 (/ (* (pow b 6) (* y-scale (* (pow (cos (* -1/180 (* angle (PI)))) 6) (* (sqrt 2) (sqrt 8))))) (* (pow a 6) (pow (sin (* 1/180 (* angle (PI)))) 5)))) (+ (* 1/8 (/ (* (pow b 2) (* y-scale (* (pow (cos (* -1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8))))) (* (pow a 2) (sin (* 1/180 (* angle (PI))))))) (* 1/4 (* y-scale (* (sin (* 1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8))))))))))))
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#s(approx (* (* 1/4 (* (* (sqrt 8) x-scale) y-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) #s(hole binary64 (* -1 (* a (+ (* 1/8 (/ (* (pow b 2) (* x-scale (* y-scale (* (pow (cos (* 1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8)))))) (* (pow a 2) (* (fabs x-scale) (sin (* 1/180 (* angle (PI)))))))) (* 1/4 (/ (* x-scale (* y-scale (* (sin (* 1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8))))) (fabs x-scale))))))))
#s(approx (* (* 1/4 (* (* (sqrt 8) x-scale) y-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) (neg.f64 (*.f64 a (fma.f64 #s(literal 1/8 binary64) (*.f64 (/.f64 (*.f64 b b) (*.f64 a a)) (/.f64 (*.f64 (*.f64 x-scale y-scale) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))) (*.f64 (fabs.f64 x-scale) (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))))) (*.f64 #s(literal 1/4 binary64) (/.f64 (*.f64 (*.f64 x-scale y-scale) (*.f64 (*.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64)))) (fabs.f64 x-scale)))))))
#s(approx (* (* 1/4 (* (* (sqrt 8) x-scale) y-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) #s(hole binary64 (* -1 (* a (+ (* -1/32 (/ (* (pow b 4) (* x-scale (* y-scale (* (pow (cos (* 1/180 (* angle (PI)))) 4) (* (sqrt 2) (sqrt 8)))))) (* (pow a 4) (* (fabs x-scale) (pow (sin (* 1/180 (* angle (PI)))) 3))))) (+ (* 1/8 (/ (* (pow b 2) (* x-scale (* y-scale (* (pow (cos (* 1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8)))))) (* (pow a 2) (* (fabs x-scale) (sin (* 1/180 (* angle (PI)))))))) (* 1/4 (/ (* x-scale (* y-scale (* (sin (* 1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8))))) (fabs x-scale)))))))))
#s(approx (* (* 1/4 (* (* (sqrt 8) x-scale) y-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) (neg.f64 (*.f64 a (fma.f64 #s(literal -1/32 binary64) (*.f64 (pow.f64 b #s(literal 4 binary64)) (/.f64 (*.f64 (*.f64 x-scale y-scale) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 4 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))) (*.f64 (*.f64 (pow.f64 a #s(literal 4 binary64)) (fabs.f64 x-scale)) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 3 binary64))))) (fma.f64 #s(literal 1/8 binary64) (*.f64 (/.f64 (*.f64 b b) (*.f64 a a)) (/.f64 (*.f64 (*.f64 x-scale y-scale) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))) (*.f64 (fabs.f64 x-scale) (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))))) (*.f64 #s(literal 1/4 binary64) (/.f64 (*.f64 (*.f64 x-scale y-scale) (*.f64 (*.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64)))) (fabs.f64 x-scale))))))))
#s(approx (* (* 1/4 (* (* (sqrt 8) x-scale) y-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) #s(hole binary64 (* -1 (* a (+ (* -1/32 (/ (* (pow b 4) (* x-scale (* y-scale (* (pow (cos (* 1/180 (* angle (PI)))) 4) (* (sqrt 2) (sqrt 8)))))) (* (pow a 4) (* (fabs x-scale) (pow (sin (* 1/180 (* angle (PI)))) 3))))) (+ (* 1/64 (/ (* (pow b 6) (* x-scale (* y-scale (* (pow (cos (* 1/180 (* angle (PI)))) 6) (* (sqrt 2) (sqrt 8)))))) (* (pow a 6) (* (fabs x-scale) (pow (sin (* 1/180 (* angle (PI)))) 5))))) (+ (* 1/8 (/ (* (pow b 2) (* x-scale (* y-scale (* (pow (cos (* 1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8)))))) (* (pow a 2) (* (fabs x-scale) (sin (* 1/180 (* angle (PI)))))))) (* 1/4 (/ (* x-scale (* y-scale (* (sin (* 1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8))))) (fabs x-scale))))))))))
#s(approx (* (* 1/4 (* (* (sqrt 8) x-scale) y-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) (neg.f64 (*.f64 a (fma.f64 #s(literal -1/32 binary64) (*.f64 (pow.f64 b #s(literal 4 binary64)) (/.f64 (*.f64 (*.f64 x-scale y-scale) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 4 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))) (*.f64 (*.f64 (pow.f64 a #s(literal 4 binary64)) (fabs.f64 x-scale)) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 3 binary64))))) (fma.f64 #s(literal 1/64 binary64) (*.f64 (pow.f64 b #s(literal 6 binary64)) (/.f64 (*.f64 (*.f64 x-scale y-scale) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 6 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))) (*.f64 (*.f64 (pow.f64 a #s(literal 6 binary64)) (fabs.f64 x-scale)) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 5 binary64))))) (fma.f64 #s(literal 1/8 binary64) (*.f64 (/.f64 (*.f64 b b) (*.f64 a a)) (/.f64 (*.f64 (*.f64 x-scale y-scale) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))) (*.f64 (fabs.f64 x-scale) (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))))) (*.f64 #s(literal 1/4 binary64) (/.f64 (*.f64 (*.f64 x-scale y-scale) (*.f64 (*.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64)))) (fabs.f64 x-scale)))))))))
#s(approx (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2)))) 2)) 2)) 1/2)) #s(hole binary64 (* -1 (* a (* (sin (* 1/180 (* angle (PI)))) (sqrt 2))))))
#s(approx (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2)))) 2)) 2)) 1/2)) (neg.f64 (*.f64 a (*.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) (sqrt.f64 #s(literal 2 binary64))))))
#s(approx (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2)))) 2)) 2)) 1/2)) #s(hole binary64 (* -1 (* a (+ (* (sin (* 1/180 (* angle (PI)))) (sqrt 2)) (/ (* (pow b 2) (pow (sin (+ (* 1/180 (* angle (PI))) (* 1/2 (PI)))) 2)) (* (pow a 2) (* (sin (* 1/180 (* angle (PI)))) (sqrt 2)))))))))
#s(approx (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2)))) 2)) 2)) 1/2)) (neg.f64 (*.f64 a (fma.f64 (/.f64 (*.f64 b b) (*.f64 a a)) (/.f64 (pow.f64 (sin.f64 (fma.f64 #s(literal 1/2 binary64) (PI.f64) (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))) #s(literal 2 binary64)) (*.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) (sqrt.f64 #s(literal 2 binary64)))) (*.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) (sqrt.f64 #s(literal 2 binary64)))))))
#s(approx (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2)))) 2)) 2)) 1/2)) #s(hole binary64 (* -1 (* a (+ (* -1/2 (/ (* (pow b 4) (pow (sin (+ (* 1/180 (* angle (PI))) (* 1/2 (PI)))) 4)) (* (pow a 4) (* (pow (sin (* 1/180 (* angle (PI)))) 3) (pow (sqrt 2) 3))))) (+ (* (sin (* 1/180 (* angle (PI)))) (sqrt 2)) (/ (* (pow b 2) (pow (sin (+ (* 1/180 (* angle (PI))) (* 1/2 (PI)))) 2)) (* (pow a 2) (* (sin (* 1/180 (* angle (PI)))) (sqrt 2))))))))))
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#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2)))) 2)) 2)) 1/2))) #s(hole binary64 (* -1/4 (* a (* y-scale (* (sin (* 1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8))))))))
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1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64)))))) (sqrt.f64 (/.f64 #s(literal 1 binary64) (fma.f64 #s(literal 4 binary64) (*.f64 (pow.f64 a #s(literal 4 binary64)) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (/.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64))))) (pow.f64 (-.f64 (/.f64 (*.f64 (*.f64 a a) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))) (*.f64 x-scale x-scale)) (/.f64 (*.f64 (*.f64 a a) (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))) (*.f64 y-scale y-scale))) #s(literal 2 binary64))))) (+.f64 (/.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 y-scale y-scale)) (/.f64 (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 x-scale x-scale)))))) (sqrt.f64 (/.f64 #s(literal 1 binary64) (+.f64 (fma.f64 (*.f64 a a) (/.f64 (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 y-scale y-scale)) (/.f64 (*.f64 (*.f64 a a) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))) (*.f64 x-scale x-scale))) (sqrt.f64 (fma.f64 #s(literal 4 binary64) (*.f64 (pow.f64 a #s(literal 4 binary64)) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (/.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64))))) (pow.f64 (-.f64 (/.f64 (*.f64 (*.f64 a a) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))) (*.f64 x-scale x-scale)) (/.f64 (*.f64 (*.f64 a a) (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))) (*.f64 y-scale y-scale))) #s(literal 2 binary64)))))))))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 x-scale (*.f64 y-scale (sqrt.f64 #s(literal 8 binary64))))) (sqrt.f64 (+.f64 (fma.f64 (*.f64 a a) (/.f64 (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 y-scale y-scale)) (/.f64 (*.f64 (*.f64 a a) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))) (*.f64 x-scale x-scale))) (sqrt.f64 (fma.f64 #s(literal 4 binary64) (*.f64 (pow.f64 a #s(literal 4 binary64)) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (/.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64))))) (pow.f64 (-.f64 (/.f64 (*.f64 (*.f64 a a) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))) (*.f64 x-scale x-scale)) (/.f64 (*.f64 (*.f64 a a) (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))) (*.f64 y-scale y-scale))) #s(literal 2 binary64)))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2)))) 2)) 2))) #s(hole binary64 (+ (* 1/8 (/ (* (pow b 2) (* y-scale (* (pow (sin (+ (* 1/180 (* angle (PI))) (* 1/2 (PI)))) 2) (* (sqrt 2) (sqrt 8))))) (* a (sin (* 1/180 (* angle (PI))))))) (* 1/4 (* a (* y-scale (* (sin (* 1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8)))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2)))) 2)) 2))) (fma.f64 (*.f64 #s(literal 1/4 binary64) a) (*.f64 (*.f64 y-scale (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64)))) (*.f64 #s(literal 1/8 binary64) (/.f64 (*.f64 (*.f64 (*.f64 b b) y-scale) (*.f64 (pow.f64 (sin.f64 (fma.f64 #s(literal 1/2 binary64) (PI.f64) (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))) #s(literal 2 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))) (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2)))) 2)) 2))) #s(hole binary64 (+ (* 1/4 (* a (* y-scale (* (sin (* 1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8)))))) (* (pow b 2) (+ (* -1/32 (/ (* (pow b 2) (* y-scale (* (pow (sin (+ (* 1/180 (* angle (PI))) (* 1/2 (PI)))) 4) (* (sqrt 2) (sqrt 8))))) (* (pow a 3) (pow (sin (* 1/180 (* angle (PI)))) 3)))) (* 1/8 (/ (* y-scale (* (pow (sin (+ (* 1/180 (* angle (PI))) (* 1/2 (PI)))) 2) (* (sqrt 2) (sqrt 8)))) (* a (sin (* 1/180 (* angle (PI))))))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2)))) 2)) 2))) (fma.f64 (*.f64 b b) (fma.f64 #s(literal -1/32 binary64) (/.f64 (*.f64 (*.f64 (*.f64 b b) y-scale) (*.f64 (pow.f64 (sin.f64 (fma.f64 #s(literal 1/2 binary64) (PI.f64) (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))) #s(literal 4 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))) (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))) #s(literal 3 binary64))) (*.f64 #s(literal 1/8 binary64) (*.f64 (/.f64 y-scale a) (/.f64 (*.f64 (pow.f64 (sin.f64 (fma.f64 #s(literal 1/2 binary64) (PI.f64) (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))) #s(literal 2 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64)))) (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))))))) (*.f64 (*.f64 #s(literal 1/4 binary64) a) (*.f64 (*.f64 y-scale (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64)))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2)))) 2)) 2))) #s(hole binary64 (+ (* 1/4 (* a (* y-scale (* (sin (* 1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8)))))) (* (pow b 2) (+ (* 1/8 (/ (* y-scale (* (pow (sin (+ (* 1/180 (* angle (PI))) (* 1/2 (PI)))) 2) (* (sqrt 2) (sqrt 8)))) (* a (sin (* 1/180 (* angle (PI))))))) (* (pow b 2) (+ (* -1/32 (/ (* y-scale (* (pow (sin (+ (* 1/180 (* angle (PI))) (* 1/2 (PI)))) 4) (* (sqrt 2) (sqrt 8)))) (* (pow a 3) (pow (sin (* 1/180 (* angle (PI)))) 3)))) (* 1/64 (/ (* (pow b 2) (* y-scale (* (pow (sin (+ (* 1/180 (* angle (PI))) (* 1/2 (PI)))) 6) (* (sqrt 2) (sqrt 8))))) (* (pow a 5) (pow (sin (* 1/180 (* angle (PI)))) 5)))))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2)))) 2)) 2))) (fma.f64 (*.f64 b b) (fma.f64 (*.f64 b b) (fma.f64 #s(literal 1/64 binary64) (*.f64 (/.f64 (*.f64 b b) (pow.f64 a #s(literal 5 binary64))) (/.f64 (*.f64 y-scale (*.f64 (pow.f64 (sin.f64 (fma.f64 #s(literal 1/2 binary64) (PI.f64) (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))) #s(literal 6 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 5 binary64)))) (*.f64 #s(literal -1/32 binary64) (*.f64 y-scale (/.f64 (*.f64 (pow.f64 (sin.f64 (fma.f64 #s(literal 1/2 binary64) (PI.f64) (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))) #s(literal 4 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64)))) (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))) #s(literal 3 binary64)))))) (*.f64 #s(literal 1/8 binary64) (*.f64 (/.f64 y-scale a) (/.f64 (*.f64 (pow.f64 (sin.f64 (fma.f64 #s(literal 1/2 binary64) (PI.f64) (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))) #s(literal 2 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64)))) (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))))))) (*.f64 (*.f64 #s(literal 1/4 binary64) a) (*.f64 (*.f64 y-scale (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64)))))))
#s(approx (* (* (* 1/4 b) y-scale) 4) #s(hole binary64 (* b y-scale)))
#s(approx (* (* (* 1/4 b) y-scale) 4) (*.f64 b y-scale))
#s(approx (* y-scale b) #s(hole binary64 (* b y-scale)))
#s(approx (* y-scale b) (*.f64 b y-scale))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) #s(hole binary64 (+ (* 1/8 (/ (* (pow b 2) (* y-scale (* (pow (cos (* -1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8))))) (* a (sin (* 1/180 (* angle (PI))))))) (* 1/4 (* a (* y-scale (* (sin (* 1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8)))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) (fma.f64 (*.f64 #s(literal 1/4 binary64) a) (*.f64 (*.f64 y-scale (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64)))) (*.f64 #s(literal 1/8 binary64) (/.f64 (*.f64 (*.f64 (*.f64 b b) y-scale) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))) (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) #s(hole binary64 (+ (* 1/4 (* a (* y-scale (* (sin (* 1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8)))))) (* (pow b 2) (+ (* -1/32 (/ (* (pow b 2) (* y-scale (* (pow (cos (* -1/180 (* angle (PI)))) 4) (* (sqrt 2) (sqrt 8))))) (* (pow a 3) (pow (sin (* 1/180 (* angle (PI)))) 3)))) (* 1/8 (/ (* y-scale (* (pow (cos (* -1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8)))) (* a (sin (* 1/180 (* angle (PI))))))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) (fma.f64 (*.f64 b b) (fma.f64 #s(literal -1/32 binary64) (/.f64 (*.f64 (*.f64 (*.f64 b b) y-scale) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 4 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))) (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))) #s(literal 3 binary64))) (*.f64 #s(literal 1/8 binary64) (*.f64 (/.f64 y-scale a) (/.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64)))) (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))))))) (*.f64 (*.f64 #s(literal 1/4 binary64) a) (*.f64 (*.f64 y-scale (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64)))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) #s(hole binary64 (+ (* 1/4 (* a (* y-scale (* (sin (* 1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8)))))) (* (pow b 2) (+ (* 1/8 (/ (* y-scale (* (pow (cos (* -1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8)))) (* a (sin (* 1/180 (* angle (PI))))))) (* (pow b 2) (+ (* -1/32 (/ (* y-scale (* (pow (cos (* -1/180 (* angle (PI)))) 4) (* (sqrt 2) (sqrt 8)))) (* (pow a 3) (pow (sin (* 1/180 (* angle (PI)))) 3)))) (* 1/64 (/ (* (pow b 2) (* y-scale (* (pow (cos (* -1/180 (* angle (PI)))) 6) (* (sqrt 2) (sqrt 8))))) (* (pow a 5) (pow (sin (* 1/180 (* angle (PI)))) 5)))))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) (fma.f64 (*.f64 b b) (fma.f64 (*.f64 b b) (fma.f64 #s(literal 1/64 binary64) (*.f64 (/.f64 (*.f64 b b) (pow.f64 a #s(literal 5 binary64))) (/.f64 (*.f64 y-scale (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 6 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 5 binary64)))) (*.f64 #s(literal -1/32 binary64) (*.f64 y-scale (/.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 4 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64)))) (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))) #s(literal 3 binary64)))))) (*.f64 #s(literal 1/8 binary64) (*.f64 (/.f64 y-scale a) (/.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64)))) (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))))))) (*.f64 (*.f64 #s(literal 1/4 binary64) a) (*.f64 (*.f64 y-scale (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64)))))))
#s(approx (* (* 1/4 (* (* (sqrt 8) x-scale) y-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) #s(hole binary64 (+ (* 1/8 (/ (* (pow b 2) (* x-scale (* y-scale (* (pow (cos (* 1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8)))))) (* a (* (fabs x-scale) (sin (* 1/180 (* angle (PI)))))))) (* 1/4 (/ (* a (* x-scale (* y-scale (* (sin (* 1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8)))))) (fabs x-scale))))))
#s(approx (* (* 1/4 (* (* (sqrt 8) x-scale) y-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) (fma.f64 #s(literal 1/8 binary64) (*.f64 (/.f64 (*.f64 b b) a) (/.f64 (*.f64 (*.f64 x-scale y-scale) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))) (*.f64 (fabs.f64 x-scale) (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))))) (*.f64 #s(literal 1/4 binary64) (*.f64 a (/.f64 (*.f64 (*.f64 x-scale y-scale) (*.f64 (*.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64)))) (fabs.f64 x-scale))))))
#s(approx (* (* 1/4 (* (* (sqrt 8) x-scale) y-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) #s(hole binary64 (+ (* 1/4 (/ (* a (* x-scale (* y-scale (* (sin (* 1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8)))))) (fabs x-scale))) (* (pow b 2) (+ (* -1/32 (/ (* (pow b 2) (* x-scale (* y-scale (* (pow (cos (* 1/180 (* angle (PI)))) 4) (* (sqrt 2) (sqrt 8)))))) (* (pow a 3) (* (fabs x-scale) (pow (sin (* 1/180 (* angle (PI)))) 3))))) (* 1/8 (/ (* x-scale (* y-scale (* (pow (cos (* 1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8))))) (* a (* (fabs x-scale) (sin (* 1/180 (* angle (PI)))))))))))))
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#s(approx (* (* 1/4 (* (* (sqrt 8) x-scale) y-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) #s(hole binary64 (+ (* 1/4 (/ (* a (* x-scale (* y-scale (* (sin (* 1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8)))))) (fabs x-scale))) (* (pow b 2) (+ (* 1/8 (/ (* x-scale (* y-scale (* (pow (cos (* 1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8))))) (* a (* (fabs x-scale) (sin (* 1/180 (* angle (PI)))))))) (* (pow b 2) (+ (* -1/32 (/ (* x-scale (* y-scale (* (pow (cos (* 1/180 (* angle (PI)))) 4) (* (sqrt 2) (sqrt 8))))) (* (pow a 3) (* (fabs x-scale) (pow (sin (* 1/180 (* angle (PI)))) 3))))) (* 1/64 (/ (* (pow b 2) (* x-scale (* y-scale (* (pow (cos (* 1/180 (* angle (PI)))) 6) (* (sqrt 2) (sqrt 8)))))) (* (pow a 5) (* (fabs x-scale) (pow (sin (* 1/180 (* angle (PI)))) 5))))))))))))
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#s(approx (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2)))) 2)) 2)) 1/2)) #s(hole binary64 (+ (* a (* (sin (* 1/180 (* angle (PI)))) (sqrt 2))) (/ (* (pow b 2) (pow (sin (+ (* 1/180 (* angle (PI))) (* 1/2 (PI)))) 2)) (* a (* (sin (* 1/180 (* angle (PI)))) (sqrt 2)))))))
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#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2)))) 2)) 2)) 1/2))) #s(hole binary64 (+ (* 1/4 (* a (* y-scale (* (sin (* 1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8)))))) (* (pow b 2) (+ (* -1/32 (/ (* (pow b 2) (* y-scale (* (pow (sin (+ (* 1/180 (* angle (PI))) (* 1/2 (PI)))) 4) (* (sqrt 2) (sqrt 8))))) (* (pow a 3) (pow (sin (* 1/180 (* angle (PI)))) 3)))) (* 1/8 (/ (* y-scale (* (pow (sin (+ (* 1/180 (* angle (PI))) (* 1/2 (PI)))) 2) (* (sqrt 2) (sqrt 8)))) (* a (sin (* 1/180 (* angle (PI))))))))))))
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#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2)))) 2)) 2))) (*.f64 b (fma.f64 #s(literal -1/32 binary64) (*.f64 (/.f64 (pow.f64 a #s(literal 4 binary64)) (pow.f64 b #s(literal 4 binary64))) (/.f64 (*.f64 y-scale (*.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 4 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))) (pow.f64 (sin.f64 (fma.f64 #s(literal 1/2 binary64) (PI.f64) (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))) #s(literal 3 binary64)))) (fma.f64 #s(literal 1/64 binary64) (*.f64 (/.f64 (pow.f64 a #s(literal 6 binary64)) (pow.f64 b #s(literal 6 binary64))) (/.f64 (*.f64 y-scale (*.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 6 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))) (pow.f64 (sin.f64 (fma.f64 #s(literal 1/2 binary64) (PI.f64) (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))) #s(literal 5 binary64)))) (fma.f64 #s(literal 1/8 binary64) (/.f64 (*.f64 (*.f64 (*.f64 a a) y-scale) (*.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))) (*.f64 (*.f64 b b) (sin.f64 (fma.f64 #s(literal 1/2 binary64) (PI.f64) (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))))) (*.f64 (*.f64 #s(literal 1/4 binary64) y-scale) (*.f64 (*.f64 (sin.f64 (fma.f64 #s(literal 1/2 binary64) (PI.f64) (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64)))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) #s(hole binary64 (* b (+ (* 1/8 (/ (* (pow a 2) (* y-scale (* (pow (sin (* 1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8))))) (* (pow b 2) (cos (* -1/180 (* angle (PI))))))) (* 1/4 (* y-scale (* (cos (* -1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8)))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) (*.f64 b (fma.f64 #s(literal 1/8 binary64) (/.f64 (*.f64 (*.f64 (*.f64 a a) y-scale) (*.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))) (*.f64 (*.f64 b b) (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))))) (*.f64 (*.f64 #s(literal 1/4 binary64) y-scale) (*.f64 (*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64)))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) #s(hole binary64 (* b (+ (* -1/32 (/ (* (pow a 4) (* y-scale (* (pow (sin (* 1/180 (* angle (PI)))) 4) (* (sqrt 2) (sqrt 8))))) (* (pow b 4) (pow (cos (* -1/180 (* angle (PI)))) 3)))) (+ (* 1/8 (/ (* (pow a 2) (* y-scale (* (pow (sin (* 1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8))))) (* (pow b 2) (cos (* -1/180 (* angle (PI))))))) (* 1/4 (* y-scale (* (cos (* -1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8))))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) (*.f64 b (fma.f64 #s(literal -1/32 binary64) (*.f64 (/.f64 (pow.f64 a #s(literal 4 binary64)) (pow.f64 b #s(literal 4 binary64))) (/.f64 (*.f64 y-scale (*.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 4 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 3 binary64)))) (fma.f64 #s(literal 1/8 binary64) (/.f64 (*.f64 (*.f64 (*.f64 a a) y-scale) (*.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))) (*.f64 (*.f64 b b) (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))))) (*.f64 (*.f64 #s(literal 1/4 binary64) y-scale) (*.f64 (*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) #s(hole binary64 (* b (+ (* -1/32 (/ (* (pow a 4) (* y-scale (* (pow (sin (* 1/180 (* angle (PI)))) 4) (* (sqrt 2) (sqrt 8))))) (* (pow b 4) (pow (cos (* -1/180 (* angle (PI)))) 3)))) (+ (* 1/64 (/ (* (pow a 6) (* y-scale (* (pow (sin (* 1/180 (* angle (PI)))) 6) (* (sqrt 2) (sqrt 8))))) (* (pow b 6) (pow (cos (* -1/180 (* angle (PI)))) 5)))) (+ (* 1/8 (/ (* (pow a 2) (* y-scale (* (pow (sin (* 1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8))))) (* (pow b 2) (cos (* -1/180 (* angle (PI))))))) (* 1/4 (* y-scale (* (cos (* -1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8)))))))))))
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#s(approx (* (* 1/4 (* (* (sqrt 8) x-scale) y-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) #s(hole binary64 (* b (+ (* 1/8 (/ (* (pow a 2) (* x-scale (* y-scale (* (pow (sin (* 1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8)))))) (* (pow b 2) (* (cos (* 1/180 (* angle (PI)))) (fabs x-scale))))) (* 1/4 (/ (* x-scale (* y-scale (* (cos (* 1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8))))) (fabs x-scale)))))))
#s(approx (* (* 1/4 (* (* (sqrt 8) x-scale) y-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) (*.f64 b (fma.f64 #s(literal 1/8 binary64) (*.f64 (/.f64 (*.f64 a a) (*.f64 b b)) (/.f64 (*.f64 (*.f64 x-scale y-scale) (*.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))) (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) (fabs.f64 x-scale)))) (*.f64 #s(literal 1/4 binary64) (/.f64 (*.f64 (*.f64 x-scale y-scale) (*.f64 (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64)))) (fabs.f64 x-scale))))))
#s(approx (* (* 1/4 (* (* (sqrt 8) x-scale) y-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) #s(hole binary64 (* b (+ (* -1/32 (/ (* (pow a 4) (* x-scale (* y-scale (* (pow (sin (* 1/180 (* angle (PI)))) 4) (* (sqrt 2) (sqrt 8)))))) (* (pow b 4) (* (pow (cos (* 1/180 (* angle (PI)))) 3) (fabs x-scale))))) (+ (* 1/8 (/ (* (pow a 2) (* x-scale (* y-scale (* (pow (sin (* 1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8)))))) (* (pow b 2) (* (cos (* 1/180 (* angle (PI)))) (fabs x-scale))))) (* 1/4 (/ (* x-scale (* y-scale (* (cos (* 1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8))))) (fabs x-scale))))))))
#s(approx (* (* 1/4 (* (* (sqrt 8) x-scale) y-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) (*.f64 b (fma.f64 #s(literal -1/32 binary64) (*.f64 (/.f64 (pow.f64 a #s(literal 4 binary64)) (pow.f64 b #s(literal 4 binary64))) (/.f64 (*.f64 (*.f64 x-scale y-scale) (*.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 4 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 3 binary64)) (fabs.f64 x-scale)))) (fma.f64 #s(literal 1/8 binary64) (*.f64 (/.f64 (*.f64 a a) (*.f64 b b)) (/.f64 (*.f64 (*.f64 x-scale y-scale) (*.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))) (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) (fabs.f64 x-scale)))) (*.f64 #s(literal 1/4 binary64) (/.f64 (*.f64 (*.f64 x-scale y-scale) (*.f64 (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64)))) (fabs.f64 x-scale)))))))
#s(approx (* (* 1/4 (* (* (sqrt 8) x-scale) y-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) #s(hole binary64 (* b (+ (* -1/32 (/ (* (pow a 4) (* x-scale (* y-scale (* (pow (sin (* 1/180 (* angle (PI)))) 4) (* (sqrt 2) (sqrt 8)))))) (* (pow b 4) (* (pow (cos (* 1/180 (* angle (PI)))) 3) (fabs x-scale))))) (+ (* 1/64 (/ (* (pow a 6) (* x-scale (* y-scale (* (pow (sin (* 1/180 (* angle (PI)))) 6) (* (sqrt 2) (sqrt 8)))))) (* (pow b 6) (* (pow (cos (* 1/180 (* angle (PI)))) 5) (fabs x-scale))))) (+ (* 1/8 (/ (* (pow a 2) (* x-scale (* y-scale (* (pow (sin (* 1/180 (* angle (PI)))) 2) (* (sqrt 2) (sqrt 8)))))) (* (pow b 2) (* (cos (* 1/180 (* angle (PI)))) (fabs x-scale))))) (* 1/4 (/ (* x-scale (* y-scale (* (cos (* 1/180 (* angle (PI)))) (* (sqrt 2) (sqrt 8))))) (fabs x-scale)))))))))
#s(approx (* (* 1/4 (* (* (sqrt 8) x-scale) y-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) (*.f64 b (fma.f64 #s(literal -1/32 binary64) (*.f64 (/.f64 (pow.f64 a #s(literal 4 binary64)) (pow.f64 b #s(literal 4 binary64))) (/.f64 (*.f64 (*.f64 x-scale y-scale) (*.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 4 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 3 binary64)) (fabs.f64 x-scale)))) (fma.f64 #s(literal 1/64 binary64) (*.f64 (/.f64 (pow.f64 a #s(literal 6 binary64)) (pow.f64 b #s(literal 6 binary64))) (/.f64 (*.f64 (*.f64 x-scale y-scale) (*.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 6 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 5 binary64)) (fabs.f64 x-scale)))) (fma.f64 #s(literal 1/8 binary64) (*.f64 (/.f64 (*.f64 a a) (*.f64 b b)) (/.f64 (*.f64 (*.f64 x-scale y-scale) (*.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))) (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) (fabs.f64 x-scale)))) (*.f64 #s(literal 1/4 binary64) (/.f64 (*.f64 (*.f64 x-scale y-scale) (*.f64 (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64)))) (fabs.f64 x-scale))))))))
#s(approx (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2)))) 2)) 2)) 1/2)) #s(hole binary64 (* b (+ (* (sin (+ (* 1/180 (* angle (PI))) (* 1/2 (PI)))) (sqrt 2)) (/ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (* (pow b 2) (* (sin (+ (* 1/180 (* angle (PI))) (* 1/2 (PI)))) (sqrt 2))))))))
#s(approx (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2)))) 2)) 2)) 1/2)) (*.f64 b (fma.f64 (/.f64 (*.f64 a a) (*.f64 b b)) (/.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (sin.f64 (fma.f64 #s(literal 1/2 binary64) (PI.f64) (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))) (sqrt.f64 #s(literal 2 binary64)))) (*.f64 (sin.f64 (fma.f64 #s(literal 1/2 binary64) (PI.f64) (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))) (sqrt.f64 #s(literal 2 binary64))))))
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#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) #s(hole binary64 (+ (* 1/8 (/ (* (pow angle 2) (* y-scale (* (sqrt 2) (* (sqrt 8) (+ (* -1/32400 (* (pow b 2) (pow (PI) 2))) (* 1/32400 (* (pow a 2) (pow (PI) 2)))))))) b)) (* 1/4 (* b (* y-scale (* (sqrt 2) (sqrt 8))))))))
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#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2)))) 2)) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 y-scale (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64)))) (hypot.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))) (*.f64 b (sin.f64 (fma.f64 #s(literal 1/2 binary64) (PI.f64) (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) #s(hole binary64 (* 1/4 (* (* y-scale (* (sqrt 2) (sqrt 8))) (sqrt (+ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (* (pow b 2) (pow (cos (* -1/180 (* angle (PI)))) 2))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 y-scale (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64)))) (hypot.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))) (*.f64 b (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64))))))))
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#s(approx (* (* 1/4 (* (* (sqrt 8) x-scale) y-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) (*.f64 (*.f64 #s(literal 1/4 binary64) (/.f64 (*.f64 (*.f64 x-scale y-scale) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64)))) (fabs.f64 x-scale))) (hypot.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))) (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))))))
#s(approx (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2)))) 2)) 2)) 1/2)) #s(hole binary64 (* (sqrt 2) (sqrt (+ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (* (pow b 2) (pow (sin (+ (* 1/180 (* angle (PI))) (* 1/2 (PI)))) 2)))))))
#s(approx (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2)))) 2)) 2)) 1/2)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (hypot.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))) (*.f64 b (sin.f64 (fma.f64 #s(literal 1/2 binary64) (PI.f64) (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2)))) 2)) 2)) 1/2))) #s(hole binary64 (* 1/4 (* (* y-scale (* (sqrt 2) (sqrt 8))) (sqrt (+ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (* (pow b 2) (pow (sin (+ (* 1/180 (* angle (PI))) (* 1/2 (PI)))) 2))))))))
#s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2)))) 2)) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 y-scale (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64)))) (hypot.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))) (*.f64 b (sin.f64 (fma.f64 #s(literal 1/2 binary64) (PI.f64) (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))))))))
#s(approx (sin (* 1/180 (* (PI) angle))) #s(hole binary64 (sin (* 1/180 (* angle (PI))))))
#s(approx (sin (* 1/180 (* (PI) angle))) (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))))
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#s(approx (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2)))) 2)) 2)) 1/2)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (hypot.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))) (*.f64 b (sin.f64 (fma.f64 #s(literal 1/2 binary64) (PI.f64) (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))))))))
#s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) #s(hole binary64 (* (sqrt 2) (sqrt (+ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (* (pow b 2) (pow (cos (* -1/180 (* angle (PI)))) 2)))))))
#s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (hypot.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))) (*.f64 b (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64))))))))
#s(approx (cos (* (* (PI) angle) -1/180)) #s(hole binary64 (cos (* -1/180 (* angle (PI))))))
#s(approx (cos (* (* (PI) angle) -1/180)) (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))))
#s(approx (cos (* 1/180 (* (PI) angle))) #s(hole binary64 (cos (* 1/180 (* angle (PI))))))
#s(approx (cos (* 1/180 (* (PI) angle))) (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))))
#s(approx (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2)))) 2)) 2)) #s(hole binary64 (log (* 2 (+ (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2)) (* (pow b 2) (pow (sin (+ (* 1/180 (* angle (PI))) (* 1/2 (PI)))) 2)))))))
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#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(hole binary64 (* 1/4 (* (* y-scale (sqrt 8)) (sqrt (+ (* 2 (* (pow a 2) (pow (sin (* 1/180 (* angle (PI)))) 2))) (* 2 (* (pow b 2) (pow (cos (* 1/180 (* angle (PI)))) 2)))))))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 y-scale (sqrt.f64 #s(literal 8 binary64)))) (sqrt.f64 (*.f64 #s(literal 2 binary64) (fma.f64 (*.f64 a a) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (*.f64 b b) (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))))))))
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rewrite262.0ms (0.9%)

Memory
-6.6MiB live, 321.6MiB allocated; 47ms collecting garbage
Iterations

Useful iterations: 0 (0.0ms)

IterNodesCost
01251423
01711360
16991293
253871258
084621233
Stop Event
iter limit
node limit
iter limit
Counts
23 → 226
Calls
Call 1
Inputs
(sin.f64 (fma.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64) (/.f64 (PI.f64) #s(literal 2 binary64))))
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(cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal -1/180 binary64)))
(cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))
(log.f64 (*.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (fma.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64) (/.f64 (PI.f64) #s(literal 2 binary64))))) #s(literal 2 binary64))) #s(literal 2 binary64)))
Outputs
(*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 1/2 binary64)) (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 1/2 binary64)))
(pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 1 binary64))
(/.f64 (-.f64 (*.f64 (*.f64 #s(literal 0 binary64) (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))) (*.f64 #s(literal 0 binary64) (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))))) (*.f64 (*.f64 #s(literal 1 binary64) (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))) (*.f64 #s(literal 1 binary64) (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))))) (sin.f64 (-.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))) (/.f64 (PI.f64) #s(literal 2 binary64)))))
(/.f64 (+.f64 (pow.f64 (*.f64 #s(literal 0 binary64) (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))) #s(literal 3 binary64)) (pow.f64 (*.f64 #s(literal 1 binary64) (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))) #s(literal 3 binary64))) (fma.f64 (*.f64 #s(literal 0 binary64) (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))) (*.f64 #s(literal 0 binary64) (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))) (-.f64 (*.f64 (*.f64 #s(literal 1 binary64) (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))) (*.f64 #s(literal 1 binary64) (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))))) (*.f64 (*.f64 #s(literal 0 binary64) (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))) (*.f64 #s(literal 1 binary64) (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))))))))
(fma.f64 (sin.f64 (/.f64 (pow.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))) #s(literal 3 binary64)) (fma.f64 (/.f64 (PI.f64) #s(literal 2 binary64)) (-.f64 (/.f64 (PI.f64) #s(literal 2 binary64)) (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) (pow.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))) #s(literal 2 binary64))))) (cos.f64 (/.f64 (pow.f64 (/.f64 (PI.f64) #s(literal 2 binary64)) #s(literal 3 binary64)) (fma.f64 (/.f64 (PI.f64) #s(literal 2 binary64)) (-.f64 (/.f64 (PI.f64) #s(literal 2 binary64)) (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) (pow.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))) #s(literal 2 binary64))))) (*.f64 (cos.f64 (/.f64 (pow.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))) #s(literal 3 binary64)) (fma.f64 (/.f64 (PI.f64) #s(literal 2 binary64)) (-.f64 (/.f64 (PI.f64) #s(literal 2 binary64)) (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) (pow.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))) #s(literal 2 binary64))))) (sin.f64 (/.f64 (pow.f64 (/.f64 (PI.f64) #s(literal 2 binary64)) #s(literal 3 binary64)) (fma.f64 (/.f64 (PI.f64) #s(literal 2 binary64)) (-.f64 (/.f64 (PI.f64) #s(literal 2 binary64)) (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) (pow.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))) #s(literal 2 binary64)))))))
(fma.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 0 binary64) (*.f64 #s(literal 1 binary64) (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))))
(fma.f64 #s(literal 1 binary64) (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) (*.f64 #s(literal 0 binary64) (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64))))))
(fma.f64 #s(literal 1 binary64) (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) (*.f64 #s(literal 0 binary64) (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))))
(fma.f64 #s(literal 0 binary64) (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) (*.f64 #s(literal 1 binary64) (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))))
(fma.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 1 binary64) (*.f64 #s(literal 0 binary64) (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64))))))
(fma.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 1 binary64) (*.f64 #s(literal 0 binary64) (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))))
(fma.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 0 binary64) (*.f64 #s(literal 1 binary64) (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))))
(sin.f64 (+.f64 (-.f64 (fma.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)) (/.f64 (PI.f64) #s(literal 2 binary64))) (/.f64 (PI.f64) #s(literal 2 binary64))) (/.f64 (PI.f64) #s(literal 2 binary64))))
(sin.f64 (fma.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)) (/.f64 (PI.f64) #s(literal 2 binary64))))
(sin.f64 (fma.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)) (/.f64 (PI.f64) #s(literal 2 binary64))))
(-.f64 (*.f64 (sin.f64 (/.f64 (pow.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))) #s(literal 2 binary64)) (-.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))) (/.f64 (PI.f64) #s(literal 2 binary64))))) (cos.f64 (/.f64 (pow.f64 (/.f64 (PI.f64) #s(literal 2 binary64)) #s(literal 2 binary64)) (-.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))) (/.f64 (PI.f64) #s(literal 2 binary64)))))) (*.f64 (cos.f64 (/.f64 (pow.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))) #s(literal 2 binary64)) (-.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))) (/.f64 (PI.f64) #s(literal 2 binary64))))) (sin.f64 (/.f64 (pow.f64 (/.f64 (PI.f64) #s(literal 2 binary64)) #s(literal 2 binary64)) (-.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))) (/.f64 (PI.f64) #s(literal 2 binary64)))))))
(-.f64 (*.f64 #s(literal 1 binary64) (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))) (*.f64 #s(literal 0 binary64) (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64))))))
(-.f64 (*.f64 #s(literal 0 binary64) (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))) (*.f64 (cos.f64 (fma.f64 (*.f64 #s(literal -1/180 binary64) angle) (PI.f64) (PI.f64))) #s(literal 1 binary64)))
(cos.f64 (neg.f64 (-.f64 (fma.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)) (/.f64 (PI.f64) #s(literal 2 binary64))) (/.f64 (PI.f64) #s(literal 2 binary64)))))
(cos.f64 (-.f64 (fma.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)) (/.f64 (PI.f64) #s(literal 2 binary64))) (/.f64 (PI.f64) #s(literal 2 binary64))))
(cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))
(cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64))))
(exp.f64 (*.f64 (log.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))) #s(literal 1 binary64)))
(+.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 0 binary64)) (*.f64 #s(literal 1 binary64) (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))))
(+.f64 (*.f64 (sin.f64 (/.f64 (pow.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))) #s(literal 3 binary64)) (fma.f64 (/.f64 (PI.f64) #s(literal 2 binary64)) (-.f64 (/.f64 (PI.f64) #s(literal 2 binary64)) (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) (pow.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))) #s(literal 2 binary64))))) (cos.f64 (/.f64 (pow.f64 (/.f64 (PI.f64) #s(literal 2 binary64)) #s(literal 3 binary64)) (fma.f64 (/.f64 (PI.f64) #s(literal 2 binary64)) (-.f64 (/.f64 (PI.f64) #s(literal 2 binary64)) (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) (pow.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))) #s(literal 2 binary64)))))) (*.f64 (cos.f64 (/.f64 (pow.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))) #s(literal 3 binary64)) (fma.f64 (/.f64 (PI.f64) #s(literal 2 binary64)) (-.f64 (/.f64 (PI.f64) #s(literal 2 binary64)) (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) (pow.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))) #s(literal 2 binary64))))) (sin.f64 (/.f64 (pow.f64 (/.f64 (PI.f64) #s(literal 2 binary64)) #s(literal 3 binary64)) (fma.f64 (/.f64 (PI.f64) #s(literal 2 binary64)) (-.f64 (/.f64 (PI.f64) #s(literal 2 binary64)) (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) (pow.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))) #s(literal 2 binary64)))))))
(+.f64 (cosh.f64 (*.f64 (log.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))) #s(literal 1 binary64))) (sinh.f64 (*.f64 (log.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))) #s(literal 1 binary64))))
(+.f64 (*.f64 #s(literal 1 binary64) (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))) (*.f64 #s(literal 0 binary64) (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64))))))
(+.f64 (*.f64 #s(literal 1 binary64) (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))) (*.f64 #s(literal 0 binary64) (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))))
(+.f64 (*.f64 #s(literal 0 binary64) (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))) (*.f64 #s(literal 1 binary64) (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) #s(literal 1/4 binary64)) (sqrt.f64 #s(literal 2 binary64))) (hypot.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) a) (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b))))
(*.f64 (*.f64 (*.f64 (hypot.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) a) (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b)) (sqrt.f64 #s(literal 2 binary64))) (*.f64 (sqrt.f64 #s(literal 8 binary64)) #s(literal 1/4 binary64))) y-scale)
(*.f64 (*.f64 (*.f64 (hypot.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) a) (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b)) (sqrt.f64 #s(literal 2 binary64))) #s(literal 1/4 binary64)) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale))
(*.f64 (*.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) #s(literal 1/4 binary64)) (hypot.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) a) (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b))) (sqrt.f64 #s(literal 2 binary64)))
(*.f64 (*.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) #s(literal 1/4 binary64)) (sqrt.f64 #s(literal 2 binary64))) (hypot.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) a) (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b)))
(*.f64 (*.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) (sqrt.f64 #s(literal 2 binary64))) (hypot.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) a) (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b))) #s(literal 1/4 binary64))
(*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) #s(literal 1/4 binary64)) (*.f64 y-scale (*.f64 (hypot.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) a) (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b)) (sqrt.f64 #s(literal 2 binary64)))))
(*.f64 (*.f64 (hypot.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) a) (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b)) (sqrt.f64 #s(literal 2 binary64))) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) #s(literal 1/4 binary64)))
(*.f64 (hypot.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) a) (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) #s(literal 1/4 binary64))))
(*.f64 (sqrt.f64 #s(literal 2 binary64)) (*.f64 (hypot.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) a) (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b)) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) #s(literal 1/4 binary64))))
(*.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) #s(literal 1/4 binary64)) (*.f64 (hypot.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) a) (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b)) (sqrt.f64 #s(literal 2 binary64))))
(*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) (*.f64 #s(literal 1/4 binary64) (*.f64 (hypot.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) a) (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b)) (sqrt.f64 #s(literal 2 binary64)))))
(*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) (sqrt.f64 #s(literal 2 binary64))) (hypot.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) a) (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b))))
(fma.f64 (cosh.f64 (log.f64 (*.f64 (hypot.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) a) (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b)) (sqrt.f64 #s(literal 2 binary64))))) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) #s(literal 1/4 binary64)) (*.f64 (sinh.f64 (log.f64 (*.f64 (hypot.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) a) (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b)) (sqrt.f64 #s(literal 2 binary64))))) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) #s(literal 1/4 binary64))))
(fma.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) #s(literal 1/4 binary64)) (cosh.f64 (log.f64 (*.f64 (hypot.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) a) (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b)) (sqrt.f64 #s(literal 2 binary64))))) (*.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) #s(literal 1/4 binary64)) (sinh.f64 (log.f64 (*.f64 (hypot.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) a) (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b)) (sqrt.f64 #s(literal 2 binary64)))))))
(+.f64 (*.f64 (cosh.f64 (log.f64 (*.f64 (hypot.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) a) (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b)) (sqrt.f64 #s(literal 2 binary64))))) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) #s(literal 1/4 binary64))) (*.f64 (sinh.f64 (log.f64 (*.f64 (hypot.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) a) (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b)) (sqrt.f64 #s(literal 2 binary64))))) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) #s(literal 1/4 binary64))))
(+.f64 (*.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) #s(literal 1/4 binary64)) (cosh.f64 (log.f64 (*.f64 (hypot.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) a) (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b)) (sqrt.f64 #s(literal 2 binary64)))))) (*.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) #s(literal 1/4 binary64)) (sinh.f64 (log.f64 (*.f64 (hypot.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) a) (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b)) (sqrt.f64 #s(literal 2 binary64)))))))
(*.f64 (*.f64 #s(literal 1/4 binary64) y-scale) (sqrt.f64 #s(literal 8 binary64)))
(*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) #s(literal 1/4 binary64)) y-scale)
(*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) #s(literal 1/4 binary64))
(*.f64 (sqrt.f64 #s(literal 8 binary64)) (*.f64 y-scale #s(literal 1/4 binary64)))
(*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale))
(*.f64 y-scale (*.f64 (sqrt.f64 #s(literal 8 binary64)) #s(literal 1/4 binary64)))
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(*.f64 (*.f64 (*.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) x-scale) y-scale) #s(literal 1/4 binary64)) (hypot.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) a) (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b))) (/.f64 (sqrt.f64 #s(literal 2 binary64)) (fabs.f64 x-scale)))
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#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) #s(literal 1/4 binary64)) (sqrt.f64 #s(literal 2 binary64))) (hypot.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) a) (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b))))
(*.f64 (*.f64 (*.f64 (hypot.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) a) (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b)) (sqrt.f64 #s(literal 2 binary64))) (*.f64 (sqrt.f64 #s(literal 8 binary64)) #s(literal 1/4 binary64))) y-scale)
(*.f64 (*.f64 (*.f64 (hypot.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) a) (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b)) (sqrt.f64 #s(literal 2 binary64))) #s(literal 1/4 binary64)) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale))
(*.f64 (*.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) #s(literal 1/4 binary64)) (hypot.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) a) (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b))) (sqrt.f64 #s(literal 2 binary64)))
(*.f64 (*.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) #s(literal 1/4 binary64)) (sqrt.f64 #s(literal 2 binary64))) (hypot.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) a) (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b)))
(*.f64 (*.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) (sqrt.f64 #s(literal 2 binary64))) (hypot.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) a) (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b))) #s(literal 1/4 binary64))
(*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) #s(literal 1/4 binary64)) (*.f64 y-scale (*.f64 (hypot.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) a) (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b)) (sqrt.f64 #s(literal 2 binary64)))))
(*.f64 (*.f64 (hypot.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) a) (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b)) (sqrt.f64 #s(literal 2 binary64))) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) #s(literal 1/4 binary64)))
(*.f64 (hypot.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) a) (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) #s(literal 1/4 binary64))))
(*.f64 (sqrt.f64 #s(literal 2 binary64)) (*.f64 (hypot.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) a) (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b)) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) #s(literal 1/4 binary64))))
(*.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) #s(literal 1/4 binary64)) (*.f64 (hypot.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) a) (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b)) (sqrt.f64 #s(literal 2 binary64))))
(*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) (*.f64 #s(literal 1/4 binary64) (*.f64 (hypot.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) a) (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b)) (sqrt.f64 #s(literal 2 binary64)))))
(*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) (sqrt.f64 #s(literal 2 binary64))) (hypot.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) a) (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b))))
(fma.f64 (cosh.f64 (log.f64 (*.f64 (hypot.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) a) (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b)) (sqrt.f64 #s(literal 2 binary64))))) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) #s(literal 1/4 binary64)) (*.f64 (sinh.f64 (log.f64 (*.f64 (hypot.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) a) (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b)) (sqrt.f64 #s(literal 2 binary64))))) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) #s(literal 1/4 binary64))))
(fma.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) #s(literal 1/4 binary64)) (cosh.f64 (log.f64 (*.f64 (hypot.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) a) (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b)) (sqrt.f64 #s(literal 2 binary64))))) (*.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) #s(literal 1/4 binary64)) (sinh.f64 (log.f64 (*.f64 (hypot.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) a) (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b)) (sqrt.f64 #s(literal 2 binary64)))))))
(+.f64 (*.f64 (cosh.f64 (log.f64 (*.f64 (hypot.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) a) (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b)) (sqrt.f64 #s(literal 2 binary64))))) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) #s(literal 1/4 binary64))) (*.f64 (sinh.f64 (log.f64 (*.f64 (hypot.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) a) (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b)) (sqrt.f64 #s(literal 2 binary64))))) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) #s(literal 1/4 binary64))))
(+.f64 (*.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) #s(literal 1/4 binary64)) (cosh.f64 (log.f64 (*.f64 (hypot.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) a) (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b)) (sqrt.f64 #s(literal 2 binary64)))))) (*.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) #s(literal 1/4 binary64)) (sinh.f64 (log.f64 (*.f64 (hypot.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) a) (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b)) (sqrt.f64 #s(literal 2 binary64)))))))
(*.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 1/2 binary64)) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 1/2 binary64)))
(pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 1 binary64))
(neg.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))))
(sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))
(exp.f64 (*.f64 (log.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))) #s(literal 1 binary64)))
(+.f64 (cosh.f64 (*.f64 (log.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))) #s(literal 1 binary64))) (sinh.f64 (*.f64 (log.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))) #s(literal 1 binary64))))
(*.f64 (pow.f64 (*.f64 (+.f64 (pow.f64 (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b) #s(literal 2 binary64)) (pow.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) a) #s(literal 2 binary64))) #s(literal 2 binary64)) #s(literal 1/4 binary64)) (pow.f64 (*.f64 (+.f64 (pow.f64 (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b) #s(literal 2 binary64)) (pow.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) a) #s(literal 2 binary64))) #s(literal 2 binary64)) #s(literal 1/4 binary64)))
(*.f64 (hypot.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) a) (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b)) (sqrt.f64 #s(literal 2 binary64)))
(*.f64 (sqrt.f64 #s(literal 2 binary64)) (hypot.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) a) (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b)))
(pow.f64 (exp.f64 #s(literal 1/2 binary64)) (log.f64 (*.f64 (+.f64 (pow.f64 (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b) #s(literal 2 binary64)) (pow.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) a) #s(literal 2 binary64))) #s(literal 2 binary64))))
(pow.f64 (*.f64 (+.f64 (pow.f64 (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b) #s(literal 2 binary64)) (pow.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) a) #s(literal 2 binary64))) #s(literal 2 binary64)) #s(literal 1/2 binary64))
(/.f64 (+.f64 (pow.f64 (cosh.f64 (log.f64 (*.f64 (hypot.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) a) (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b)) (sqrt.f64 #s(literal 2 binary64))))) #s(literal 3 binary64)) (pow.f64 (sinh.f64 (log.f64 (*.f64 (hypot.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) a) (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b)) (sqrt.f64 #s(literal 2 binary64))))) #s(literal 3 binary64))) (fma.f64 (cosh.f64 (log.f64 (*.f64 (hypot.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) a) (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b)) (sqrt.f64 #s(literal 2 binary64))))) (cosh.f64 (log.f64 (*.f64 (hypot.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) a) (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b)) (sqrt.f64 #s(literal 2 binary64))))) (-.f64 (*.f64 (sinh.f64 (log.f64 (*.f64 (hypot.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) a) (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b)) (sqrt.f64 #s(literal 2 binary64))))) (sinh.f64 (log.f64 (*.f64 (hypot.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) a) (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b)) (sqrt.f64 #s(literal 2 binary64)))))) (*.f64 (cosh.f64 (log.f64 (*.f64 (hypot.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) a) (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b)) (sqrt.f64 #s(literal 2 binary64))))) (sinh.f64 (log.f64 (*.f64 (hypot.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) a) (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b)) (sqrt.f64 #s(literal 2 binary64)))))))))
(/.f64 #s(literal 1 binary64) (exp.f64 (neg.f64 (log.f64 (*.f64 (hypot.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) a) (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b)) (sqrt.f64 #s(literal 2 binary64)))))))
(sqrt.f64 (*.f64 (+.f64 (pow.f64 (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b) #s(literal 2 binary64)) (pow.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) a) #s(literal 2 binary64))) #s(literal 2 binary64)))
(exp.f64 (*.f64 (log.f64 (exp.f64 #s(literal 1/2 binary64))) (log.f64 (*.f64 (+.f64 (pow.f64 (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b) #s(literal 2 binary64)) (pow.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) a) #s(literal 2 binary64))) #s(literal 2 binary64)))))
(exp.f64 (log.f64 (*.f64 (hypot.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) a) (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b)) (sqrt.f64 #s(literal 2 binary64)))))
(+.f64 (sinh.f64 (log.f64 (*.f64 (hypot.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) a) (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b)) (sqrt.f64 #s(literal 2 binary64))))) (cosh.f64 (log.f64 (*.f64 (hypot.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) a) (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b)) (sqrt.f64 #s(literal 2 binary64))))))
(+.f64 (cosh.f64 (log.f64 (*.f64 (hypot.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) a) (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b)) (sqrt.f64 #s(literal 2 binary64))))) (sinh.f64 (log.f64 (*.f64 (hypot.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) a) (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b)) (sqrt.f64 #s(literal 2 binary64))))))
#s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) (*.f64 (cos.f64 (fma.f64 (*.f64 #s(literal -1/180 binary64) angle) (PI.f64) (PI.f64))) (*.f64 (sqrt.f64 #s(literal 2 binary64)) b)))
(*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 1/2 binary64)) (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 1/2 binary64)))
(pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 1 binary64))
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(-.f64 (log.f64 (fma.f64 (+.f64 (pow.f64 (*.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) a) #s(literal 6 binary64)) (pow.f64 (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b) #s(literal 6 binary64))) (-.f64 (pow.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) a) #s(literal 2 binary64)) (pow.f64 (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b) #s(literal 2 binary64))) (*.f64 (-.f64 (+.f64 (pow.f64 (*.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) a) #s(literal 4 binary64)) (pow.f64 (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b) #s(literal 4 binary64))) (pow.f64 (*.f64 (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b) (*.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) a)) #s(literal 2 binary64))) (-.f64 (pow.f64 (*.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) a) #s(literal 4 binary64)) (pow.f64 (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b) #s(literal 4 binary64)))))) (log.f64 (*.f64 (-.f64 (+.f64 (pow.f64 (*.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) a) #s(literal 4 binary64)) (pow.f64 (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b) #s(literal 4 binary64))) (pow.f64 (*.f64 (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b) (*.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) a)) #s(literal 2 binary64))) (-.f64 (pow.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) a) #s(literal 2 binary64)) (pow.f64 (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b) #s(literal 2 binary64))))))
(-.f64 (log.f64 (fma.f64 (+.f64 (pow.f64 (*.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) a) #s(literal 6 binary64)) (pow.f64 (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b) #s(literal 6 binary64))) (-.f64 (+.f64 (pow.f64 (*.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) a) #s(literal 4 binary64)) (pow.f64 (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b) #s(literal 4 binary64))) (pow.f64 (*.f64 (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b) (*.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) a)) #s(literal 2 binary64))) (*.f64 (-.f64 (+.f64 (pow.f64 (*.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) a) #s(literal 4 binary64)) (pow.f64 (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b) #s(literal 4 binary64))) (pow.f64 (*.f64 (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b) (*.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) a)) #s(literal 2 binary64))) (+.f64 (pow.f64 (*.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) a) #s(literal 6 binary64)) (pow.f64 (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b) #s(literal 6 binary64)))))) (log.f64 (*.f64 (-.f64 (+.f64 (pow.f64 (*.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) a) #s(literal 4 binary64)) (pow.f64 (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b) #s(literal 4 binary64))) (pow.f64 (*.f64 (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b) (*.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) a)) #s(literal 2 binary64))) (-.f64 (+.f64 (pow.f64 (*.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) a) #s(literal 4 binary64)) (pow.f64 (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b) #s(literal 4 binary64))) (pow.f64 (*.f64 (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b) (*.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) a)) #s(literal 2 binary64))))))
(+.f64 (log.f64 (exp.f64 (log.f64 (+.f64 (pow.f64 (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b) #s(literal 2 binary64)) (pow.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) a) #s(literal 2 binary64)))))) (log.f64 (exp.f64 (log.f64 #s(literal 2 binary64)))))
(+.f64 (log.f64 #s(literal 2 binary64)) (log.f64 (+.f64 (pow.f64 (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b) #s(literal 2 binary64)) (pow.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) a) #s(literal 2 binary64)))))
(+.f64 (log.f64 (+.f64 (pow.f64 (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b) #s(literal 2 binary64)) (pow.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) a) #s(literal 2 binary64)))) (log.f64 #s(literal 2 binary64)))
(log.f64 (*.f64 (+.f64 (pow.f64 (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b) #s(literal 2 binary64)) (pow.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) a) #s(literal 2 binary64))) #s(literal 2 binary64)))

eval267.0ms (0.9%)

Memory
50.5MiB live, 518.6MiB allocated; 90ms collecting garbage
Compiler

Compiled 160 793 to 3 557 computations (97.8% saved)

prune2.0s (7%)

Memory
-169.6MiB live, 4 413.2MiB allocated; 1.2s collecting garbage
Pruning

94 alts after pruning (90 fresh and 4 done)

PrunedKeptTotal
New45128479
Fresh176279
Picked325
Done022
Total47194565
Accuracy
67.6%
Counts
565 → 94
Alt Table
Click to see full alt table
StatusAccuracyProgram
5.0%
(/.f64 (neg.f64 (sqrt.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64)))) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (+.f64 (+.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a #s(approx (cos (* (/ angle 180) (PI))) #s(literal 1 binary64))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) #s(approx (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))) (/.f64 (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 b b) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 a a))) (*.f64 y-scale y-scale))))))) (/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64))))
4.5%
(/.f64 (neg.f64 #s(approx (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2)))))) (*.f64 (/.f64 (*.f64 (*.f64 (*.f64 a a) (*.f64 b b)) (sqrt.f64 #s(literal 8 binary64))) (*.f64 x-scale (*.f64 y-scale y-scale))) (sqrt.f64 (*.f64 #s(literal 2 binary64) (fma.f64 (*.f64 a a) (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (*.f64 b b) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))))))))) (/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64))))
42.0%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (/.f64 (*.f64 (*.f64 (*.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale) #s(literal 1/4 binary64)) (sqrt.f64 #s(literal 2 binary64))) (hypot.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) a) (*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) b))) (fabs.f64 x-scale)))
6.2%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (fma.f64 (/.f64 (*.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) x-scale) (fma.f64 (/.f64 (fma.f64 (/.f64 #s(literal 4 binary64) x-scale) (/.f64 (*.f64 (*.f64 (pow.f64 (*.f64 (+.f64 b a) (-.f64 b a)) #s(literal 2 binary64)) (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64))) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64))) x-scale) (*.f64 (*.f64 #s(literal -2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 b b) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 a a)))) (/.f64 (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b))) (*.f64 x-scale x-scale)))) (/.f64 (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b))) (*.f64 x-scale x-scale))) #s(literal 1/2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 b b) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 a a))))) (sqrt.f64 (/.f64 #s(literal 1 binary64) (/.f64 (*.f64 #s(literal 2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b)))) (*.f64 x-scale x-scale))))) (*.f64 y-scale y-scale)) #s(literal 1/8 binary64) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) x-scale)) (exp.f64 (*.f64 (log.f64 (*.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64))) (/.f64 #s(literal 2 binary64) (*.f64 x-scale x-scale)))) #s(literal 1/2 binary64))))) y-scale))
5.0%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (fma.f64 (/.f64 (*.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) x-scale) (fma.f64 (/.f64 (fma.f64 (/.f64 #s(literal 4 binary64) x-scale) (/.f64 (*.f64 (*.f64 (pow.f64 (*.f64 (+.f64 b a) (-.f64 b a)) #s(literal 2 binary64)) (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64))) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64))) x-scale) (*.f64 (*.f64 #s(literal -2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 b b) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 a a)))) (/.f64 (fma.f64 (pow.f64 #s(approx (sin (* (* (PI) angle) 1/180)) (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b))) (*.f64 x-scale x-scale)))) (/.f64 (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b))) (*.f64 x-scale x-scale))) #s(literal 1/2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 b b) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 a a))))) (sqrt.f64 (/.f64 #s(literal 1 binary64) (/.f64 (*.f64 #s(literal 2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b)))) (*.f64 x-scale x-scale))))) (*.f64 y-scale y-scale)) #s(literal 1/8 binary64) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) x-scale)) (sqrt.f64 (/.f64 (*.f64 #s(literal 2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b)))) (*.f64 x-scale x-scale))))) y-scale))
4.3%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (fma.f64 (/.f64 (*.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) x-scale) (fma.f64 (/.f64 (fma.f64 (/.f64 #s(literal 4 binary64) x-scale) (/.f64 (*.f64 (*.f64 (pow.f64 (*.f64 (+.f64 b a) (-.f64 b a)) #s(literal 2 binary64)) (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64))) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64))) x-scale) (*.f64 (*.f64 #s(literal -2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 b b) (*.f64 (pow.f64 #s(approx (cos (* -1/180 (* (PI) angle))) (+.f64 #s(literal 1 binary64) (*.f64 (*.f64 #s(literal -1/64800 binary64) (*.f64 angle angle)) (*.f64 (PI.f64) (PI.f64))))) #s(literal 2 binary64)) (*.f64 a a)))) (/.f64 (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b))) (*.f64 x-scale x-scale)))) (/.f64 (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b))) (*.f64 x-scale x-scale))) #s(literal 1/2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 b b) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 a a))))) (sqrt.f64 (/.f64 #s(literal 1 binary64) (/.f64 (*.f64 #s(literal 2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b)))) (*.f64 x-scale x-scale))))) (*.f64 y-scale y-scale)) #s(literal 1/8 binary64) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) x-scale)) (sqrt.f64 (/.f64 (*.f64 #s(literal 2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b)))) (*.f64 x-scale x-scale))))) y-scale))
9.6%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (fma.f64 (*.f64 (sqrt.f64 (/.f64 #s(literal 1 binary64) (+.f64 (sqrt.f64 (fma.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 (*.f64 y-scale y-scale) (*.f64 x-scale x-scale)))) #s(literal 4 binary64) (pow.f64 (-.f64 (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 x-scale x-scale)) (/.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 y-scale y-scale))) #s(literal 2 binary64)))) (+.f64 (/.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 y-scale y-scale)) (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 x-scale x-scale)))))) (*.f64 x-scale (/.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) (fma.f64 (*.f64 #s(literal 1/2 binary64) (fma.f64 (*.f64 (-.f64 (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 x-scale x-scale)) (/.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 y-scale y-scale))) (-.f64 (/.f64 (pow.f64 (*.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) b) #s(literal 2 binary64)) (*.f64 x-scale x-scale)) (*.f64 (*.f64 b b) (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 y-scale y-scale))))) #s(literal 2 binary64) (*.f64 (/.f64 (*.f64 (pow.f64 (*.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) b) #s(literal 2 binary64)) (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64))) (*.f64 (*.f64 y-scale y-scale) (*.f64 x-scale x-scale))) #s(literal -8 binary64)))) (sqrt.f64 (/.f64 #s(literal 1 binary64) (fma.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 (*.f64 y-scale y-scale) (*.f64 x-scale x-scale)))) #s(literal 4 binary64) (pow.f64 (-.f64 (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 x-scale x-scale)) (/.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 y-scale y-scale))) #s(literal 2 binary64))))) (fma.f64 (*.f64 b b) (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 y-scale y-scale)) (/.f64 (pow.f64 (*.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) b) #s(literal 2 binary64)) (*.f64 x-scale x-scale))))) (*.f64 a a)))) #s(literal 1/8 binary64) (*.f64 (*.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) #s(literal 1/4 binary64)) x-scale) (sqrt.f64 (+.f64 (sqrt.f64 (fma.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 (*.f64 y-scale y-scale) (*.f64 x-scale x-scale)))) #s(literal 4 binary64) (pow.f64 (-.f64 (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 x-scale x-scale)) (/.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 y-scale y-scale))) #s(literal 2 binary64)))) (+.f64 (/.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 y-scale y-scale)) (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 x-scale x-scale))))))) a))
12.3%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (fma.f64 (*.f64 (sqrt.f64 (/.f64 #s(literal 1 binary64) (+.f64 (sqrt.f64 (fma.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (pow.f64 (*.f64 y-scale x-scale) #s(literal 2 binary64)))) #s(literal 4 binary64) (pow.f64 (-.f64 (/.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 x-scale x-scale)) (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 y-scale y-scale))) #s(literal 2 binary64)))) (+.f64 (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 y-scale y-scale)) (/.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 x-scale x-scale)))))) (*.f64 (/.f64 (*.f64 y-scale x-scale) b) (/.f64 (*.f64 (fma.f64 (*.f64 #s(literal 1/2 binary64) (fma.f64 (*.f64 (-.f64 (/.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 x-scale x-scale)) (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 y-scale y-scale))) (fma.f64 (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) x-scale) (/.f64 (*.f64 a a) x-scale) (*.f64 (*.f64 (neg.f64 a) a) (/.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 y-scale y-scale))))) #s(literal 2 binary64) (*.f64 (*.f64 (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (pow.f64 (*.f64 y-scale x-scale) #s(literal 2 binary64))))) #s(literal -8 binary64)))) (sqrt.f64 (/.f64 #s(literal 1 binary64) (fma.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (pow.f64 (*.f64 y-scale x-scale) #s(literal 2 binary64)))) #s(literal 4 binary64) (pow.f64 (-.f64 (/.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 x-scale x-scale)) (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 y-scale y-scale))) #s(literal 2 binary64))))) (fma.f64 (/.f64 (*.f64 a a) y-scale) (/.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) y-scale) (*.f64 (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) x-scale) (/.f64 (*.f64 a a) x-scale)))) (sqrt.f64 #s(literal 8 binary64))) b))) #s(literal 1/8 binary64) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale)) (sqrt.f64 (+.f64 (sqrt.f64 (fma.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (pow.f64 (*.f64 y-scale x-scale) #s(literal 2 binary64)))) #s(literal 4 binary64) (pow.f64 (-.f64 (/.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 x-scale x-scale)) (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 y-scale y-scale))) #s(literal 2 binary64)))) (+.f64 (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 y-scale y-scale)) (/.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 x-scale x-scale))))))) b))
6.3%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (fma.f64 (*.f64 (sqrt.f64 (/.f64 #s(literal 1 binary64) (*.f64 #s(literal 2 binary64) (/.f64 (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 b b) (*.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a))) (*.f64 y-scale y-scale))))) (/.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) (fma.f64 (/.f64 (fma.f64 (*.f64 #s(literal -2 binary64) (+.f64 (pow.f64 (*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) a) #s(literal 2 binary64)) (pow.f64 (*.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) b) #s(literal 2 binary64)))) (/.f64 (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 b b) (*.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a))) (*.f64 y-scale y-scale)) (*.f64 (/.f64 (*.f64 (*.f64 (pow.f64 (-.f64 (*.f64 b b) (*.f64 a a)) #s(literal 2 binary64)) (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64))) (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64))) (*.f64 y-scale y-scale)) #s(literal 4 binary64))) (/.f64 (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 b b) (*.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a))) (*.f64 y-scale y-scale))) #s(literal 1/2 binary64) (+.f64 (pow.f64 (*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) a) #s(literal 2 binary64)) (pow.f64 (*.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) b) #s(literal 2 binary64))))) (*.f64 x-scale x-scale))) #s(literal 1/8 binary64) (*.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) #s(literal 1/4 binary64)) (sqrt.f64 (*.f64 #s(literal 2 binary64) (/.f64 (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 b b) (*.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a))) (*.f64 y-scale y-scale)))))) x-scale))
41.6%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (hypot.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) a) (*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) b)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) #s(literal 1/4 binary64)))))
41.6%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (hypot.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) a) (*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) b)) (sqrt.f64 #s(literal 2 binary64))) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) #s(literal 1/4 binary64))))
36.7%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (/.f64 (sqrt.f64 #s(literal 2 binary64)) (fabs.f64 x-scale)) (hypot.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) a) (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b))) (*.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) x-scale) y-scale) #s(literal 1/4 binary64))))
22.6%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) #s(literal 1/4 binary64)) x-scale) (sqrt.f64 (*.f64 #s(literal 2 binary64) (/.f64 (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 b b) (*.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a))) (*.f64 y-scale y-scale))))))
28.1%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (*.f64 (*.f64 #s(literal 1/4 binary64) b) y-scale) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64))))
7.6%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) #s(literal 1/4 binary64)) #s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) (*.f64 (cos.f64 (fma.f64 (*.f64 #s(literal -1/180 binary64) angle) (PI.f64) (PI.f64))) (*.f64 (sqrt.f64 #s(literal 2 binary64)) b)))))
36.7%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) #s(literal 1/4 binary64)) (*.f64 y-scale x-scale)) (/.f64 (*.f64 (hypot.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))))) (sqrt.f64 #s(literal 2 binary64))) (fabs.f64 x-scale))))
41.8%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (*.f64 y-scale #s(literal 4 binary64)) (hypot.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))))) #s(literal 1/4 binary64)))
28.1%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (*.f64 #s(literal 1/4 binary64) b) (sqrt.f64 #s(literal 8 binary64))) (*.f64 (sqrt.f64 #s(literal 2 binary64)) y-scale)))
28.3%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (*.f64 #s(literal 1/4 binary64) b) y-scale) #s(literal 4 binary64)))
11.5%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) #s(literal 1/4 binary64)) (*.f64 y-scale #s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) (*.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) (sqrt.f64 #s(literal 2 binary64))) a)))))
18.5%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale) b)) (sqrt.f64 (+.f64 (sqrt.f64 (fma.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 (*.f64 y-scale y-scale) (*.f64 x-scale x-scale)))) #s(literal 4 binary64) (pow.f64 (-.f64 (/.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 x-scale x-scale)) (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 y-scale y-scale))) #s(literal 2 binary64)))) (+.f64 (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 y-scale y-scale)) (/.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 x-scale x-scale)))))))
20.2%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale) a)) (sqrt.f64 (+.f64 (sqrt.f64 (fma.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 (*.f64 y-scale y-scale) (*.f64 x-scale x-scale)))) #s(literal 4 binary64) (pow.f64 (-.f64 (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 x-scale x-scale)) (/.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 y-scale y-scale))) #s(literal 2 binary64)))) (+.f64 (/.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 y-scale y-scale)) (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 x-scale x-scale)))))))
38.7%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale)) (/.f64 (*.f64 (hypot.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) (*.f64 a #s(approx (sin (* 1/180 (* (PI) angle))) (*.f64 (fma.f64 (*.f64 #s(literal -1/34992000 binary64) (*.f64 angle angle)) (pow.f64 (PI.f64) #s(literal 3 binary64)) (*.f64 #s(literal 1/180 binary64) (PI.f64))) angle)))) (sqrt.f64 #s(literal 2 binary64))) (fabs.f64 x-scale))))
38.3%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale)) (/.f64 (*.f64 (hypot.f64 (*.f64 b #s(approx (cos (* 1/180 (* (PI) angle))) (fma.f64 (fma.f64 (*.f64 #s(literal 1/25194240000 binary64) (*.f64 angle angle)) (pow.f64 (PI.f64) #s(literal 4 binary64)) (*.f64 #s(literal -1/64800 binary64) (*.f64 (PI.f64) (PI.f64)))) (*.f64 angle angle) #s(literal 1 binary64)))) (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))))) (sqrt.f64 #s(literal 2 binary64))) (fabs.f64 x-scale))))
25.3%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale)) (exp.f64 (*.f64 (log.f64 (*.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64))) (/.f64 #s(literal 2 binary64) (*.f64 x-scale x-scale)))) #s(literal 1/2 binary64)))))
20.0%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale)) #s(approx (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))) (fma.f64 #s(literal 1/2 binary64) (/.f64 (*.f64 (*.f64 angle angle) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (fma.f64 (*.f64 #s(literal -1/32400 binary64) (*.f64 b b)) (*.f64 (PI.f64) (PI.f64)) (*.f64 (*.f64 #s(literal 1/32400 binary64) (*.f64 a a)) (*.f64 (PI.f64) (PI.f64)))))) (*.f64 b x-scale)) (/.f64 (*.f64 b (sqrt.f64 #s(literal 2 binary64))) x-scale)))))
25.7%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale)) #s(approx (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))) (/.f64 (*.f64 b (sqrt.f64 #s(literal 2 binary64))) x-scale))))
12.6%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale)) #s(approx (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))) (/.f64 (*.f64 a (*.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) (sqrt.f64 #s(literal 2 binary64)))) x-scale))))
10.9%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale)) #s(approx (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))) (neg.f64 (/.f64 (*.f64 a (*.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) (sqrt.f64 #s(literal 2 binary64)))) x-scale)))))
38.7%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) x-scale) y-scale)) (/.f64 (*.f64 (hypot.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) (*.f64 a #s(approx (sin (* 1/180 (* (PI) angle))) (*.f64 angle (fma.f64 (*.f64 #s(literal -1/34992000 binary64) (*.f64 angle angle)) (pow.f64 (PI.f64) #s(literal 3 binary64)) (*.f64 #s(literal 1/180 binary64) (PI.f64))))))) (sqrt.f64 #s(literal 2 binary64))) (fabs.f64 x-scale))))
37.5%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) x-scale) y-scale)) (/.f64 (*.f64 (hypot.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) (*.f64 a #s(approx (sin (* 1/180 (* (PI) angle))) (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))))) (sqrt.f64 #s(literal 2 binary64))) (fabs.f64 x-scale))))
38.2%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) x-scale) y-scale)) (/.f64 (*.f64 (hypot.f64 (*.f64 b #s(approx (cos (* 1/180 (* (PI) angle))) (fma.f64 (*.f64 #s(literal -1/64800 binary64) (*.f64 angle angle)) (*.f64 (PI.f64) (PI.f64)) #s(literal 1 binary64)))) (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))))) (sqrt.f64 #s(literal 2 binary64))) (fabs.f64 x-scale))))
36.7%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) x-scale) y-scale)) (/.f64 (*.f64 (hypot.f64 (*.f64 b #s(approx (cos (* 1/180 (* (PI) angle))) #s(literal 1 binary64))) (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))))) (sqrt.f64 #s(literal 2 binary64))) (fabs.f64 x-scale))))
43.3%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (pow.f64 (exp.f64 #s(literal 1/2 binary64)) (log.f64 (*.f64 (+.f64 (pow.f64 (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b) #s(literal 2 binary64)) (pow.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) a) #s(literal 2 binary64))) #s(literal 2 binary64))))))
40.8%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (/.f64 #s(literal 1 binary64) (exp.f64 (neg.f64 (log.f64 (*.f64 (hypot.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) a) (*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) b)) (sqrt.f64 #s(literal 2 binary64)))))))))
44.0%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (sqrt.f64 (*.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b #s(approx (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2))) (sin.f64 (fma.f64 #s(literal 1/2 binary64) (PI.f64) (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))))) #s(literal 2 binary64))) #s(literal 2 binary64)))))
42.9%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (sqrt.f64 (*.f64 (+.f64 (pow.f64 (*.f64 a #s(approx (sin (* 1/180 (* (PI) angle))) (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64))) #s(literal 2 binary64)))))
42.3%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (sqrt.f64 (*.f64 #s(literal 2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (sin.f64 (fma.f64 (*.f64 #s(literal 1/180 binary64) angle) (PI.f64) (/.f64 (PI.f64) #s(literal 2 binary64)))) #s(literal 2 binary64)) (*.f64 b b)))))))
18.7%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (exp.f64 (*.f64 (/.f64 (-.f64 (*.f64 (log.f64 (+.f64 (pow.f64 (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b) #s(literal 2 binary64)) (pow.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) a) #s(literal 2 binary64)))) (log.f64 (+.f64 (pow.f64 (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b) #s(literal 2 binary64)) (pow.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) a) #s(literal 2 binary64))))) (*.f64 (log.f64 #s(literal 2 binary64)) (log.f64 #s(literal 2 binary64)))) (log.f64 (/.f64 (+.f64 (pow.f64 (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b) #s(literal 2 binary64)) (pow.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) a) #s(literal 2 binary64))) #s(literal 2 binary64)))) #s(literal 1/2 binary64)))))
18.7%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (exp.f64 (*.f64 (/.f64 (+.f64 (pow.f64 (log.f64 (+.f64 (pow.f64 (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b) #s(literal 2 binary64)) (pow.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) a) #s(literal 2 binary64)))) #s(literal 3 binary64)) (pow.f64 (log.f64 #s(literal 2 binary64)) #s(literal 3 binary64))) (fma.f64 (log.f64 (+.f64 (pow.f64 (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b) #s(literal 2 binary64)) (pow.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) a) #s(literal 2 binary64)))) (log.f64 (+.f64 (pow.f64 (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b) #s(literal 2 binary64)) (pow.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) a) #s(literal 2 binary64)))) (-.f64 (*.f64 (log.f64 #s(literal 2 binary64)) (log.f64 #s(literal 2 binary64))) (*.f64 (log.f64 (+.f64 (pow.f64 (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b) #s(literal 2 binary64)) (pow.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) a) #s(literal 2 binary64)))) (log.f64 #s(literal 2 binary64)))))) #s(literal 1/2 binary64)))))
4.8%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (exp.f64 (*.f64 (-.f64 (log.f64 (fma.f64 (+.f64 (pow.f64 (*.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) a) #s(literal 6 binary64)) (pow.f64 (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b) #s(literal 6 binary64))) (-.f64 (+.f64 (pow.f64 (*.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) a) #s(literal 4 binary64)) (pow.f64 (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b) #s(literal 4 binary64))) (pow.f64 (*.f64 (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b) (*.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) a)) #s(literal 2 binary64))) (*.f64 (-.f64 (+.f64 (pow.f64 (*.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) a) #s(literal 4 binary64)) (pow.f64 (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b) #s(literal 4 binary64))) (pow.f64 (*.f64 (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b) (*.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) a)) #s(literal 2 binary64))) (+.f64 (pow.f64 (*.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) a) #s(literal 6 binary64)) (pow.f64 (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b) #s(literal 6 binary64)))))) (log.f64 (*.f64 (-.f64 (+.f64 (pow.f64 (*.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) a) #s(literal 4 binary64)) (pow.f64 (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b) #s(literal 4 binary64))) (pow.f64 (*.f64 (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b) (*.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) a)) #s(literal 2 binary64))) (-.f64 (+.f64 (pow.f64 (*.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) a) #s(literal 4 binary64)) (pow.f64 (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b) #s(literal 4 binary64))) (pow.f64 (*.f64 (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b) (*.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) a)) #s(literal 2 binary64)))))) #s(literal 1/2 binary64)))))
7.1%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (exp.f64 (*.f64 (-.f64 (log.f64 (*.f64 (-.f64 (pow.f64 (*.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) a) #s(literal 4 binary64)) (pow.f64 (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b) #s(literal 4 binary64))) #s(literal 2 binary64))) (log.f64 (-.f64 (pow.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) a) #s(literal 2 binary64)) (pow.f64 (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b) #s(literal 2 binary64))))) #s(literal 1/2 binary64)))))
8.9%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (exp.f64 (*.f64 (-.f64 (log.f64 (*.f64 (-.f64 (pow.f64 (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b) #s(literal 4 binary64)) (pow.f64 (*.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) a) #s(literal 4 binary64))) #s(literal 2 binary64))) (log.f64 (-.f64 (pow.f64 (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b) #s(literal 2 binary64)) (pow.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) a) #s(literal 2 binary64))))) #s(literal 1/2 binary64)))))
9.4%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (exp.f64 (*.f64 (-.f64 (log.f64 (*.f64 (+.f64 (pow.f64 (*.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) a) #s(literal 6 binary64)) (pow.f64 (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b) #s(literal 6 binary64))) #s(literal 2 binary64))) (log.f64 (-.f64 (+.f64 (pow.f64 (*.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) a) #s(literal 4 binary64)) (pow.f64 (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b) #s(literal 4 binary64))) (pow.f64 (*.f64 (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b) (*.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) a)) #s(literal 2 binary64))))) #s(literal 1/2 binary64)))))
43.4%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (exp.f64 (*.f64 (+.f64 (log.f64 (+.f64 (pow.f64 (*.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) b) #s(literal 2 binary64)) (pow.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) a) #s(literal 2 binary64)))) (log.f64 #s(literal 2 binary64))) #s(literal 1/2 binary64)))))
42.3%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (exp.f64 (*.f64 (log.f64 (*.f64 (+.f64 (pow.f64 (*.f64 a #s(approx (sin (* 1/180 (* (PI) angle))) (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64))) #s(literal 2 binary64))) #s(literal 1/2 binary64)))))
27.8%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (exp.f64 (*.f64 #s(approx (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2)))) 2)) 2)) (fma.f64 #s(literal -2 binary64) (neg.f64 (log.f64 b)) (log.f64 (*.f64 #s(literal 2 binary64) (pow.f64 (sin.f64 (fma.f64 #s(literal 1/2 binary64) (PI.f64) (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))) #s(literal 2 binary64)))))) #s(literal 1/2 binary64)))))
19.4%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (exp.f64 (*.f64 #s(approx (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2)))) 2)) 2)) (fma.f64 #s(literal -2 binary64) (neg.f64 (log.f64 a)) (log.f64 (*.f64 #s(literal 2 binary64) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)))))) #s(literal 1/2 binary64)))))
29.3%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (exp.f64 (*.f64 #s(approx (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2)))) 2)) 2)) (log.f64 (*.f64 (*.f64 #s(literal 2 binary64) (*.f64 b b)) (pow.f64 (sin.f64 (fma.f64 #s(literal 1/2 binary64) (PI.f64) (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))) #s(literal 2 binary64))))) #s(literal 1/2 binary64)))))
27.9%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (exp.f64 (*.f64 #s(approx (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) (fma.f64 (neg.f64 (log.f64 b)) #s(literal -2 binary64) (log.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) #s(literal 2 binary64))))) #s(literal 1/2 binary64)))))
21.8%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (exp.f64 (*.f64 #s(approx (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) (log.f64 (*.f64 (pow.f64 (*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) a) #s(literal 2 binary64)) #s(literal 2 binary64)))) #s(literal 1/2 binary64)))))
29.4%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (exp.f64 (*.f64 #s(approx (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) (log.f64 (*.f64 (pow.f64 (*.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) b) #s(literal 2 binary64)) #s(literal 2 binary64)))) #s(literal 1/2 binary64)))))
29.4%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (exp.f64 (*.f64 #s(approx (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) (log.f64 (*.f64 (*.f64 b b) #s(literal 2 binary64)))) #s(literal 1/2 binary64)))))
40.8%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (exp.f64 (log.f64 (*.f64 (hypot.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) a) (*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) b)) (sqrt.f64 #s(literal 2 binary64)))))))
24.2%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) #s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) (fma.f64 (/.f64 (*.f64 (*.f64 (fma.f64 (*.f64 #s(literal 1/32400 binary64) (*.f64 a a)) (*.f64 (PI.f64) (PI.f64)) (*.f64 (*.f64 #s(literal -1/32400 binary64) (*.f64 b b)) (*.f64 (PI.f64) (PI.f64)))) (sqrt.f64 #s(literal 2 binary64))) (*.f64 angle angle)) b) #s(literal 1/2 binary64) (*.f64 (sqrt.f64 #s(literal 2 binary64)) b)))))
12.5%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) #s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))) a))))
11.5%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) #s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) (*.f64 (*.f64 (neg.f64 a) (sqrt.f64 #s(literal 2 binary64))) (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))))))
24.4%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) #s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) (*.f64 (*.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal -1/180 binary64))) (sqrt.f64 #s(literal 2 binary64))) b))))
7.3%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) #s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) (neg.f64 (*.f64 (*.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal -1/180 binary64))) (sqrt.f64 #s(literal 2 binary64))) b)))))
19.7%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) #s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) (neg.f64 (*.f64 (*.f64 #s(approx (cos (* (* (PI) angle) -1/180)) (fma.f64 (*.f64 angle angle) (fma.f64 (*.f64 angle angle) (fma.f64 (*.f64 #s(literal -1/24488801280000000 binary64) (*.f64 angle angle)) (pow.f64 (PI.f64) #s(literal 6 binary64)) (*.f64 #s(literal 1/25194240000 binary64) (pow.f64 (PI.f64) #s(literal 4 binary64)))) (*.f64 #s(literal -1/64800 binary64) (*.f64 (PI.f64) (PI.f64)))) #s(literal 1 binary64))) (sqrt.f64 #s(literal 2 binary64))) b)))))
17.7%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) #s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) (neg.f64 (*.f64 (*.f64 #s(approx (cos (* (* (PI) angle) -1/180)) (fma.f64 (*.f64 #s(literal -1/64800 binary64) (*.f64 angle angle)) (*.f64 (PI.f64) (PI.f64)) #s(literal 1 binary64))) (sqrt.f64 #s(literal 2 binary64))) b)))))
14.3%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) #s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) #s(approx (neg (* a (* (sin (* 1/180 (* angle (PI)))) (sqrt 2)))) (*.f64 (fma.f64 (fma.f64 (fma.f64 (*.f64 #s(literal 1/30855889612800000000 binary64) a) (*.f64 (*.f64 (pow.f64 (PI.f64) #s(literal 7 binary64)) (sqrt.f64 #s(literal 2 binary64))) (*.f64 angle angle)) (*.f64 #s(literal -1/22674816000000 binary64) (*.f64 (*.f64 a (pow.f64 (PI.f64) #s(literal 5 binary64))) (sqrt.f64 #s(literal 2 binary64))))) (*.f64 angle angle) (*.f64 #s(literal 1/34992000 binary64) (*.f64 (*.f64 a (pow.f64 (PI.f64) #s(literal 3 binary64))) (sqrt.f64 #s(literal 2 binary64))))) (*.f64 angle angle) (*.f64 #s(literal -1/180 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (PI.f64)) a))) angle)))))
12.1%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) #s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) #s(approx (neg (* a (* (sin (* 1/180 (* angle (PI)))) (sqrt 2)))) (*.f64 (*.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (PI.f64)) angle) a) #s(literal -1/180 binary64))))))
23.9%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) #s(approx (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2)))) 2)) 2)) 1/2)) (fma.f64 (*.f64 #s(literal 1/180 binary64) angle) (*.f64 (*.f64 b (PI.f64)) (*.f64 (cos.f64 (*.f64 #s(literal 1/2 binary64) (PI.f64))) (sqrt.f64 #s(literal 2 binary64)))) (*.f64 b (*.f64 (sin.f64 (*.f64 #s(literal 1/2 binary64) (PI.f64))) (sqrt.f64 #s(literal 2 binary64))))))))
23.9%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) #s(approx (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2)))) 2)) 2)) 1/2)) (fma.f64 #s(literal 1/90 binary64) (*.f64 angle (/.f64 (*.f64 (*.f64 b (PI.f64)) (cos.f64 (*.f64 #s(literal 1/2 binary64) (PI.f64)))) (sqrt.f64 #s(literal 2 binary64)))) (*.f64 b (*.f64 (sin.f64 (*.f64 #s(literal 1/2 binary64) (PI.f64))) (sqrt.f64 #s(literal 2 binary64))))))))
24.3%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) #s(approx (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2)))) 2)) 2)) 1/2)) (*.f64 b (*.f64 (sin.f64 (fma.f64 #s(literal 1/2 binary64) (PI.f64) (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))) (sqrt.f64 #s(literal 2 binary64)))))))
24.2%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) #s(approx (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) 1/2)) (fma.f64 (sqrt.f64 #s(literal 2 binary64)) b (/.f64 (*.f64 (fma.f64 (*.f64 #s(literal 1/32400 binary64) (*.f64 a a)) (*.f64 (PI.f64) (PI.f64)) (*.f64 (*.f64 #s(literal -1/32400 binary64) (*.f64 b b)) (*.f64 (PI.f64) (PI.f64)))) (*.f64 angle angle)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) b))))))
41.8%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) x-scale)) (sqrt.f64 (*.f64 #s(literal 2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 b b) (*.f64 (pow.f64 (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a)))))))
28.1%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) b) (*.f64 (*.f64 y-scale (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64)))))
28.2%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) b) (*.f64 (*.f64 y-scale (exp.f64 (*.f64 (log.f64 #s(literal 2 binary64)) #s(literal 1/2 binary64)))) (sqrt.f64 #s(literal 8 binary64)))))
42.3%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (+ (* (/ (* (* (* (sqrt 8) x-scale) (+ (* (/ (+ (* (/ 4 x-scale) (/ (* (* (pow (* (+ b a) (- b a)) 2) (pow (sin (* (* (PI) angle) 1/180)) 2)) (pow (cos (* -1/180 (* (PI) angle))) 2)) x-scale)) (* (* -2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale))) 1/2) (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a))))) (sqrt (/ 1 (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))))) (* y-scale y-scale)) 1/8) (* (* 1/4 (* (sqrt 8) x-scale)) (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))))) y-scale) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 y-scale (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64)))) (sqrt.f64 (fma.f64 (*.f64 a a) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (*.f64 b b) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))))))))
17.5%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (+ (* (/ (* (* (* (sqrt 8) x-scale) (+ (* (/ (+ (* (/ 4 x-scale) (/ (* (* (pow (* (+ b a) (- b a)) 2) (pow (sin (* (* (PI) angle) 1/180)) 2)) (pow (cos (* -1/180 (* (PI) angle))) 2)) x-scale)) (* (* -2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale))) 1/2) (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a))))) (sqrt (/ 1 (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))))) (* y-scale y-scale)) 1/8) (* (* 1/4 (* (sqrt 8) x-scale)) (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))))) y-scale) (*.f64 y-scale (fma.f64 #s(literal 1/8 binary64) (/.f64 (*.f64 (*.f64 x-scale x-scale) (*.f64 (sqrt.f64 #s(literal 1/2 binary64)) (*.f64 (sqrt.f64 #s(literal 8 binary64)) (*.f64 #s(literal 0 binary64) (*.f64 a a))))) (*.f64 b (*.f64 y-scale y-scale))) (*.f64 (*.f64 #s(literal 1/4 binary64) b) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))))))
3.0%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (+ (* (/ (* (* (* (sqrt 8) x-scale) (+ (* (/ (+ (* (/ 4 x-scale) (/ (* (* (pow (* (+ b a) (- b a)) 2) (pow (sin (* (* (PI) angle) 1/180)) 2)) (pow (cos (* -1/180 (* (PI) angle))) 2)) x-scale)) (* (* -2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale))) 1/2) (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a))))) (sqrt (/ 1 (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))))) (* y-scale y-scale)) 1/8) (* (* 1/4 (* (sqrt 8) x-scale)) (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))))) y-scale) (neg.f64 (*.f64 (*.f64 b y-scale) (fma.f64 #s(literal 1/8 binary64) (*.f64 (/.f64 (*.f64 x-scale x-scale) (*.f64 y-scale y-scale)) (/.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 1/2 binary64)) (sqrt.f64 #s(literal 8 binary64))) (fma.f64 #s(literal 1/2 binary64) (/.f64 (*.f64 (*.f64 x-scale x-scale) (*.f64 (/.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))) (*.f64 x-scale x-scale)) #s(literal 2 binary64))) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)))) (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))))) (*.f64 (*.f64 #s(literal 1/4 binary64) (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64))))) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64)))))))))
6.0%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (+ (* (/ (* (* (* (sqrt 8) x-scale) (+ (* (/ (+ (* (/ 4 x-scale) (/ (* (* (pow (* (+ b a) (- b a)) 2) (pow (sin (* (* (PI) angle) 1/180)) 2)) (pow (cos (* -1/180 (* (PI) angle))) 2)) x-scale)) (* (* -2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale))) 1/2) (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a))))) (sqrt (/ 1 (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))))) (* y-scale y-scale)) 1/8) (* (* 1/4 (* (sqrt 8) x-scale)) (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))))) y-scale) (neg.f64 (*.f64 (*.f64 a y-scale) (fma.f64 #s(literal 1/8 binary64) (*.f64 (/.f64 (*.f64 x-scale x-scale) (*.f64 y-scale y-scale)) (/.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 1/2 binary64)) (sqrt.f64 #s(literal 8 binary64))) (fma.f64 #s(literal 1/2 binary64) (/.f64 (*.f64 (*.f64 x-scale x-scale) (*.f64 (/.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))) (*.f64 x-scale x-scale)) #s(literal 2 binary64))) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)))) (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))))) (*.f64 (*.f64 #s(literal 1/4 binary64) (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64)))))))))
2.7%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (+ (* (/ (* (* (* (sqrt 8) x-scale) (+ (* (/ (+ (* (/ 4 x-scale) (/ (* (* (pow (* (+ b a) (- b a)) 2) (pow (sin (* (* (PI) angle) 1/180)) 2)) (pow (cos (* -1/180 (* (PI) angle))) 2)) x-scale)) (* (* -2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale))) 1/2) (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a))))) (sqrt (/ 1 (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))))) (* y-scale y-scale)) 1/8) (* (* 1/4 (* (sqrt 8) x-scale)) (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))))) y-scale) (neg.f64 (*.f64 b (fma.f64 #s(literal -1/4 binary64) (*.f64 (/.f64 (*.f64 x-scale x-scale) b) (/.f64 (*.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (sqrt.f64 #s(literal 1/2 binary64)) (*.f64 (sqrt.f64 #s(literal 8 binary64)) (*.f64 a #s(literal 0 binary64))))) (*.f64 y-scale (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64))))))) (*.f64 y-scale (fma.f64 #s(literal 1/8 binary64) (*.f64 (/.f64 (*.f64 x-scale x-scale) (*.f64 y-scale y-scale)) (/.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 1/2 binary64)) (sqrt.f64 #s(literal 8 binary64))) (fma.f64 #s(literal 1/2 binary64) (/.f64 (*.f64 (*.f64 x-scale x-scale) (*.f64 (/.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))) (*.f64 x-scale x-scale)) #s(literal 2 binary64))) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)))) (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))))) (*.f64 (*.f64 #s(literal 1/4 binary64) (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64))))) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64)))))))))))
6.2%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (+ (* (/ (* (* (* (sqrt 8) x-scale) (+ (* (/ (+ (* (/ 4 x-scale) (/ (* (* (pow (* (+ b a) (- b a)) 2) (pow (sin (* (* (PI) angle) 1/180)) 2)) (pow (cos (* -1/180 (* (PI) angle))) 2)) x-scale)) (* (* -2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale))) 1/2) (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a))))) (sqrt (/ 1 (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))))) (* y-scale y-scale)) 1/8) (* (* 1/4 (* (sqrt 8) x-scale)) (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))))) y-scale) (neg.f64 (*.f64 a (fma.f64 #s(literal -1/4 binary64) (*.f64 (/.f64 (*.f64 x-scale x-scale) a) (/.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 (sqrt.f64 #s(literal 1/2 binary64)) (*.f64 (sqrt.f64 #s(literal 8 binary64)) (*.f64 b #s(literal 0 binary64))))) (*.f64 y-scale (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))))) (*.f64 y-scale (fma.f64 #s(literal 1/8 binary64) (*.f64 (/.f64 (*.f64 x-scale x-scale) (*.f64 y-scale y-scale)) (/.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 1/2 binary64)) (sqrt.f64 #s(literal 8 binary64))) (fma.f64 #s(literal 1/2 binary64) (/.f64 (*.f64 (*.f64 x-scale x-scale) (*.f64 (/.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))) (*.f64 x-scale x-scale)) #s(literal 2 binary64))) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))) (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)))) (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))))) (*.f64 (*.f64 #s(literal 1/4 binary64) (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64)))))))))))
28.3%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (* (* 1/4 b) y-scale) 4) (*.f64 y-scale b)))
19.3%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) (fma.f64 (/.f64 (*.f64 (*.f64 (*.f64 angle angle) x-scale) (*.f64 (*.f64 y-scale (sqrt.f64 #s(literal 2 binary64))) (*.f64 (fma.f64 (*.f64 #s(literal 1/32400 binary64) (*.f64 a a)) (*.f64 (PI.f64) (PI.f64)) (*.f64 (*.f64 #s(literal -1/32400 binary64) (*.f64 b b)) (*.f64 (PI.f64) (PI.f64)))) (sqrt.f64 #s(literal 8 binary64))))) (*.f64 (fabs.f64 x-scale) b)) #s(literal 1/8 binary64) (*.f64 (/.f64 (*.f64 (*.f64 b x-scale) (*.f64 (*.f64 y-scale (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64)))) (fabs.f64 x-scale)) #s(literal 1/4 binary64)))))
33.3%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) (*.f64 (/.f64 (*.f64 (*.f64 b x-scale) (*.f64 (*.f64 y-scale (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64)))) (fabs.f64 x-scale)) #s(literal 1/4 binary64))))
24.7%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) (*.f64 (*.f64 b (/.f64 (*.f64 (*.f64 y-scale x-scale) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))) (sqrt.f64 #s(literal 8 binary64)))) (fabs.f64 x-scale))) #s(literal 1/4 binary64))))
13.2%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) (*.f64 (*.f64 a (/.f64 (*.f64 (*.f64 y-scale x-scale) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))) (sqrt.f64 #s(literal 8 binary64)))) (fabs.f64 x-scale))) #s(literal 1/4 binary64))))
13.5%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) (*.f64 (*.f64 a (/.f64 (*.f64 (*.f64 y-scale x-scale) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))) (sqrt.f64 #s(literal 8 binary64)))) (fabs.f64 x-scale))) #s(literal -1/4 binary64))))
23.4%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale)))) (fma.f64 #s(literal 1/8 binary64) (/.f64 (*.f64 (*.f64 (*.f64 angle angle) y-scale) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (*.f64 (sqrt.f64 #s(literal 8 binary64)) (fma.f64 (*.f64 #s(literal -1/32400 binary64) (*.f64 b b)) (*.f64 (PI.f64) (PI.f64)) (*.f64 (*.f64 #s(literal 1/32400 binary64) (*.f64 a a)) (*.f64 (PI.f64) (PI.f64))))))) b) (*.f64 (*.f64 #s(literal 1/4 binary64) b) (*.f64 (*.f64 y-scale (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64)))))))
24.4%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale)))) (*.f64 (*.f64 #s(literal 1/4 binary64) b) (*.f64 (*.f64 y-scale (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64))))) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64)))))))
12.5%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale)))) (*.f64 (*.f64 #s(literal 1/4 binary64) a) (*.f64 (*.f64 y-scale (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64)))))))
7.3%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale)))) (*.f64 (*.f64 #s(literal -1/4 binary64) b) (*.f64 (*.f64 y-scale (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64))))) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64)))))))
11.5%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale)))) (*.f64 (*.f64 #s(literal -1/4 binary64) a) (*.f64 (*.f64 y-scale (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64)))))))
21.0%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2)))) 2)) 2))) (fma.f64 (*.f64 #s(literal 1/720 binary64) angle) (*.f64 (*.f64 b y-scale) (*.f64 (*.f64 (PI.f64) (cos.f64 (*.f64 #s(literal 1/2 binary64) (PI.f64)))) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))) (*.f64 (*.f64 #s(literal 1/4 binary64) b) (*.f64 (*.f64 y-scale (sin.f64 (*.f64 #s(literal 1/2 binary64) (PI.f64)))) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))))))
41.5%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2)))) 2)) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 y-scale (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64)))) (hypot.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))) (*.f64 b (sin.f64 (fma.f64 #s(literal 1/2 binary64) (PI.f64) (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))))))))
24.3%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2)))) 2)) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) b) (*.f64 (*.f64 y-scale (sin.f64 (fma.f64 #s(literal 1/2 binary64) (PI.f64) (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))))) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64)))))))
28.1%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2)))) 2)) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) b) (*.f64 (*.f64 y-scale (sin.f64 (*.f64 #s(literal 1/2 binary64) (PI.f64)))) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64)))))))
7.3%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2)))) 2)) 2))) (*.f64 (*.f64 #s(literal -1/4 binary64) b) (*.f64 (*.f64 y-scale (sin.f64 (fma.f64 #s(literal 1/2 binary64) (PI.f64) (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))))) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64)))))))
13.2%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) (*.f64 (*.f64 (*.f64 a y-scale) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))) (sqrt.f64 #s(literal 8 binary64)))) #s(literal 1/4 binary64))))
11.9%
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))))) (*.f64 (*.f64 (*.f64 a y-scale) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))) (sqrt.f64 #s(literal 8 binary64)))) #s(literal -1/4 binary64))))
Compiler

Compiled 66 707 to 10 526 computations (84.2% saved)

regimes492.0ms (1.7%)

Memory
36.5MiB live, 683.4MiB allocated; 109ms collecting garbage
Counts
158 → 2
Calls
Call 1
Inputs
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (* (* 1/4 b) y-scale) 4) (*.f64 y-scale b)))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (*.f64 #s(literal 1/4 binary64) b) y-scale) #s(literal 4 binary64)))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (*.f64 y-scale #s(literal 4 binary64)) b) #s(literal 1/4 binary64)))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) b) (*.f64 (*.f64 y-scale (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64)))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (*.f64 #s(literal 1/4 binary64) b) (sqrt.f64 #s(literal 8 binary64))) (*.f64 (sqrt.f64 #s(literal 2 binary64)) y-scale)))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (*.f64 (*.f64 #s(literal 1/4 binary64) b) y-scale) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) #s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) #s(approx (neg (* a (* (sin (* 1/180 (* angle (PI)))) (sqrt 2)))) (*.f64 (*.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (PI.f64)) angle) a) #s(literal -1/180 binary64))))))
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#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 a (fma.f64 #s(literal 1/8 binary64) (*.f64 (/.f64 (*.f64 (*.f64 x-scale y-scale) (*.f64 (sqrt.f64 #s(literal 8 binary64)) (fma.f64 (*.f64 #s(literal 1/2 binary64) (fma.f64 #s(literal -8 binary64) (/.f64 (*.f64 (*.f64 (*.f64 b b) (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))) (*.f64 (*.f64 x-scale x-scale) (*.f64 y-scale y-scale))) (*.f64 #s(literal 2 binary64) (*.f64 (-.f64 (/.f64 (*.f64 (*.f64 b b) (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))) (*.f64 x-scale x-scale)) (/.f64 (*.f64 (*.f64 b b) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))) (*.f64 y-scale y-scale))) (-.f64 (/.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 x-scale x-scale)) (/.f64 (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 y-scale y-scale))))))) (sqrt.f64 (/.f64 #s(literal 1 binary64) (fma.f64 #s(literal 4 binary64) (*.f64 (/.f64 (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 x-scale x-scale)) (/.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 y-scale y-scale))) (pow.f64 (-.f64 (/.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 x-scale x-scale)) (/.f64 (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 y-scale y-scale))) #s(literal 2 binary64))))) (+.f64 (/.f64 (*.f64 (*.f64 b b) (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))) (*.f64 x-scale x-scale)) (/.f64 (*.f64 (*.f64 b b) (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64))) (*.f64 y-scale y-scale)))))) (*.f64 a a)) (sqrt.f64 (/.f64 #s(literal 1 binary64) (+.f64 (sqrt.f64 (fma.f64 #s(literal 4 binary64) (*.f64 (/.f64 (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 x-scale x-scale)) (/.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 y-scale y-scale))) (pow.f64 (-.f64 (/.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 x-scale x-scale)) (/.f64 (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 y-scale y-scale))) #s(literal 2 binary64)))) (+.f64 (/.f64 (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 y-scale y-scale)) (/.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 x-scale x-scale))))))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 x-scale (*.f64 y-scale (sqrt.f64 #s(literal 8 binary64))))) (sqrt.f64 (+.f64 (sqrt.f64 (fma.f64 #s(literal 4 binary64) (*.f64 (/.f64 (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 x-scale x-scale)) (/.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 y-scale y-scale))) (pow.f64 (-.f64 (/.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 x-scale x-scale)) (/.f64 (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 y-scale y-scale))) #s(literal 2 binary64)))) (+.f64 (/.f64 (pow.f64 (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 y-scale y-scale)) (/.f64 (pow.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 x-scale x-scale)))))))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (fma.f64 (*.f64 (sqrt.f64 (/.f64 #s(literal 1 binary64) (+.f64 (sqrt.f64 (fma.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (pow.f64 (*.f64 y-scale x-scale) #s(literal 2 binary64)))) #s(literal 4 binary64) (pow.f64 (-.f64 (/.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 x-scale x-scale)) (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 y-scale y-scale))) #s(literal 2 binary64)))) (+.f64 (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 y-scale y-scale)) (/.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 x-scale x-scale)))))) (*.f64 (/.f64 (*.f64 y-scale x-scale) b) (/.f64 (*.f64 (fma.f64 (*.f64 #s(literal 1/2 binary64) (fma.f64 (*.f64 (-.f64 (/.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 x-scale x-scale)) (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 y-scale y-scale))) (fma.f64 (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) x-scale) (/.f64 (*.f64 a a) x-scale) (*.f64 (*.f64 (neg.f64 a) a) (/.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 y-scale y-scale))))) #s(literal 2 binary64) (*.f64 (*.f64 (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (pow.f64 (*.f64 y-scale x-scale) #s(literal 2 binary64))))) #s(literal -8 binary64)))) (sqrt.f64 (/.f64 #s(literal 1 binary64) (fma.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (pow.f64 (*.f64 y-scale x-scale) #s(literal 2 binary64)))) #s(literal 4 binary64) (pow.f64 (-.f64 (/.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 x-scale x-scale)) (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 y-scale y-scale))) #s(literal 2 binary64))))) (fma.f64 (/.f64 (*.f64 a a) y-scale) (/.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) y-scale) (*.f64 (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) x-scale) (/.f64 (*.f64 a a) x-scale)))) (sqrt.f64 #s(literal 8 binary64))) b))) #s(literal 1/8 binary64) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale)) (sqrt.f64 (+.f64 (sqrt.f64 (fma.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (pow.f64 (*.f64 y-scale x-scale) #s(literal 2 binary64)))) #s(literal 4 binary64) (pow.f64 (-.f64 (/.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 x-scale x-scale)) (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 y-scale y-scale))) #s(literal 2 binary64)))) (+.f64 (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 y-scale y-scale)) (/.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 x-scale x-scale))))))) b))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (fma.f64 (*.f64 (sqrt.f64 (/.f64 #s(literal 1 binary64) (+.f64 (sqrt.f64 (fma.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (pow.f64 (*.f64 y-scale x-scale) #s(literal 2 binary64)))) #s(literal 4 binary64) (pow.f64 (-.f64 (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 x-scale x-scale)) (/.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 y-scale y-scale))) #s(literal 2 binary64)))) (+.f64 (/.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 y-scale y-scale)) (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 x-scale x-scale)))))) (*.f64 (/.f64 (*.f64 y-scale x-scale) a) (/.f64 (*.f64 (fma.f64 (*.f64 #s(literal 1/2 binary64) (fma.f64 (*.f64 (-.f64 (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 x-scale x-scale)) (/.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 y-scale y-scale))) (fma.f64 (/.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) x-scale) (/.f64 (*.f64 b b) x-scale) (*.f64 (*.f64 (neg.f64 b) b) (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 y-scale y-scale))))) #s(literal 2 binary64) (*.f64 (*.f64 (*.f64 b b) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (pow.f64 (*.f64 y-scale x-scale) #s(literal 2 binary64))))) #s(literal -8 binary64)))) (sqrt.f64 (/.f64 #s(literal 1 binary64) (fma.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (pow.f64 (*.f64 y-scale x-scale) #s(literal 2 binary64)))) #s(literal 4 binary64) (pow.f64 (-.f64 (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 x-scale x-scale)) (/.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 y-scale y-scale))) #s(literal 2 binary64))))) (fma.f64 (/.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) x-scale) (/.f64 (*.f64 b b) x-scale) (*.f64 (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) y-scale) (/.f64 (*.f64 b b) y-scale)))) (sqrt.f64 #s(literal 8 binary64))) a))) #s(literal 1/8 binary64) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale)) (sqrt.f64 (+.f64 (sqrt.f64 (fma.f64 (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (pow.f64 (*.f64 y-scale x-scale) #s(literal 2 binary64)))) #s(literal 4 binary64) (pow.f64 (-.f64 (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 x-scale x-scale)) (/.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 y-scale y-scale))) #s(literal 2 binary64)))) (+.f64 (/.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 y-scale y-scale)) (/.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 x-scale x-scale))))))) a))
Outputs
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (*.f64 y-scale #s(literal 4 binary64)) (hypot.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))))) #s(literal 1/4 binary64)))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) x-scale)) (sqrt.f64 (*.f64 #s(literal 2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 b b) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 a a)))))))
Calls

8 calls:

70.0ms
(*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64))
64.0ms
y-scale
63.0ms
b
55.0ms
(/.f64 (neg.f64 (sqrt.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64)))) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (+.f64 (+.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) (sqrt.f64 (+.f64 (pow.f64 (-.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) #s(literal 2 binary64)) (pow.f64 (/.f64 (/.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (-.f64 (pow.f64 b #s(literal 2 binary64)) (pow.f64 a #s(literal 2 binary64)))) (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) x-scale) y-scale) #s(literal 2 binary64)))))))) (/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64))))
54.0ms
a
Results
AccuracySegmentsBranch
50.0%4(/.f64 angle #s(literal 180 binary64))
50.0%4(*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64))
44.1%1(/.f64 (neg.f64 (sqrt.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64)))) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (+.f64 (+.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) (sqrt.f64 (+.f64 (pow.f64 (-.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) #s(literal 2 binary64)) (pow.f64 (/.f64 (/.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (-.f64 (pow.f64 b #s(literal 2 binary64)) (pow.f64 a #s(literal 2 binary64)))) (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) x-scale) y-scale) #s(literal 2 binary64)))))))) (/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64))))
48.1%2a
51.1%3b
50.0%4angle
54.8%2x-scale
56.2%3y-scale
Compiler

Compiled 196 to 97 computations (50.5% saved)

regimes102.0ms (0.4%)

Memory
-10.7MiB live, 185.1MiB allocated; 28ms collecting garbage
Counts
89 → 2
Calls
Call 1
Inputs
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (* (* 1/4 b) y-scale) 4) (*.f64 y-scale b)))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (*.f64 #s(literal 1/4 binary64) b) y-scale) #s(literal 4 binary64)))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (*.f64 y-scale #s(literal 4 binary64)) b) #s(literal 1/4 binary64)))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) b) (*.f64 (*.f64 y-scale (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64)))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (*.f64 #s(literal 1/4 binary64) b) (sqrt.f64 #s(literal 8 binary64))) (*.f64 (sqrt.f64 #s(literal 2 binary64)) y-scale)))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (*.f64 (*.f64 #s(literal 1/4 binary64) b) y-scale) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) #s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) #s(approx (neg (* a (* (sin (* 1/180 (* angle (PI)))) (sqrt 2)))) (*.f64 (*.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (PI.f64)) angle) a) #s(literal -1/180 binary64))))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale)) #s(approx (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))) (/.f64 (*.f64 b (sqrt.f64 #s(literal 2 binary64))) x-scale))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) (*.f64 (/.f64 (*.f64 (*.f64 b x-scale) (*.f64 (*.f64 y-scale (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64)))) (fabs.f64 x-scale)) #s(literal 1/4 binary64))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) #s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) (neg.f64 (*.f64 (*.f64 #s(approx (cos (* (* (PI) angle) -1/180)) (fma.f64 (*.f64 #s(literal -1/64800 binary64) (*.f64 angle angle)) (*.f64 (PI.f64) (PI.f64)) #s(literal 1 binary64))) (sqrt.f64 #s(literal 2 binary64))) b)))))
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#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (exp.f64 (*.f64 #s(approx (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) (log.f64 (*.f64 (pow.f64 (*.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) a) #s(literal 2 binary64)) #s(literal 2 binary64)))) #s(literal 1/2 binary64)))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (exp.f64 (*.f64 #s(approx (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2)))) 2)) 2)) (log.f64 (*.f64 (*.f64 #s(literal 2 binary64) (*.f64 b b)) (pow.f64 (sin.f64 (fma.f64 #s(literal 1/2 binary64) (PI.f64) (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))) #s(literal 2 binary64))))) #s(literal 1/2 binary64)))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) #s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) #s(approx (neg (* a (* (sin (* 1/180 (* angle (PI)))) (sqrt 2)))) (*.f64 (fma.f64 (fma.f64 (fma.f64 (*.f64 #s(literal 1/30855889612800000000 binary64) a) (*.f64 (*.f64 (pow.f64 (PI.f64) #s(literal 7 binary64)) (sqrt.f64 #s(literal 2 binary64))) (*.f64 angle angle)) (*.f64 #s(literal -1/22674816000000 binary64) (*.f64 (*.f64 a (pow.f64 (PI.f64) #s(literal 5 binary64))) (sqrt.f64 #s(literal 2 binary64))))) (*.f64 angle angle) (*.f64 #s(literal 1/34992000 binary64) (*.f64 (*.f64 a (pow.f64 (PI.f64) #s(literal 3 binary64))) (sqrt.f64 #s(literal 2 binary64))))) (*.f64 angle angle) (*.f64 #s(literal -1/180 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (PI.f64)) a))) angle)))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (sqrt.f64 (*.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64))) #s(literal 2 binary64)))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (sqrt.f64 (*.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b #s(approx (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2))) (sin.f64 (fma.f64 #s(literal 1/2 binary64) (PI.f64) (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))))) #s(literal 2 binary64))) #s(literal 2 binary64)))))
Outputs
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (*.f64 y-scale #s(literal 4 binary64)) (hypot.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))))) #s(literal 1/4 binary64)))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (sqrt.f64 (*.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b #s(approx (cos (* 1/180 (* (PI) angle))) (fma.f64 (*.f64 #s(literal -1/64800 binary64) (*.f64 angle angle)) (*.f64 (PI.f64) (PI.f64)) #s(literal 1 binary64)))) #s(literal 2 binary64))) #s(literal 2 binary64)))))
Calls

3 calls:

31.0ms
b
26.0ms
y-scale
25.0ms
x-scale
Results
AccuracySegmentsBranch
46.4%2b
48.5%3y-scale
48.7%2x-scale
Compiler

Compiled 3 to 15 computations (-400% saved)

regimes67.0ms (0.2%)

Memory
-22.8MiB live, 35.9MiB allocated; 18ms collecting garbage
Counts
69 → 2
Calls
Call 1
Inputs
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (* (* 1/4 b) y-scale) 4) (*.f64 y-scale b)))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (*.f64 #s(literal 1/4 binary64) b) y-scale) #s(literal 4 binary64)))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (*.f64 y-scale #s(literal 4 binary64)) b) #s(literal 1/4 binary64)))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) b) (*.f64 (*.f64 y-scale (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64)))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (*.f64 #s(literal 1/4 binary64) b) (sqrt.f64 #s(literal 8 binary64))) (*.f64 (sqrt.f64 #s(literal 2 binary64)) y-scale)))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (*.f64 (*.f64 #s(literal 1/4 binary64) b) y-scale) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64))))
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#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (hypot.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) a) (*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) b)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) #s(literal 1/4 binary64)))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (sqrt.f64 (*.f64 #s(literal 2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 #s(approx (cos (* -1/180 (* (PI) angle))) #s(literal 1 binary64)) #s(literal 2 binary64)) (*.f64 b b)))))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (sqrt.f64 (*.f64 (+.f64 (pow.f64 (*.f64 a #s(approx (sin (* 1/180 (* (PI) angle))) (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64))) #s(literal 2 binary64)))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2)))) 2)) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 y-scale (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64)))) (hypot.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))) (*.f64 b (sin.f64 (fma.f64 #s(literal 1/2 binary64) (PI.f64) (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64))))))))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (sqrt.f64 (*.f64 #s(literal 2 binary64) (fma.f64 (pow.f64 #s(approx (sin (* (* (PI) angle) 1/180)) (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) #s(literal 2 binary64)) (*.f64 b b)))))))
Outputs
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (*.f64 y-scale #s(literal 4 binary64)) (hypot.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))))) #s(literal 1/4 binary64)))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (sqrt.f64 (*.f64 (+.f64 (pow.f64 (*.f64 a #s(approx (sin (* 1/180 (* (PI) angle))) (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64))) #s(literal 2 binary64)))))
Calls

1 calls:

55.0ms
x-scale
Results
AccuracySegmentsBranch
48.6%2x-scale
Compiler

Compiled 1 to 5 computations (-400% saved)

regimes52.0ms (0.2%)

Memory
9.1MiB live, 93.4MiB allocated; 17ms collecting garbage
Counts
66 → 2
Calls
Call 1
Inputs
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (* (* 1/4 b) y-scale) 4) (*.f64 y-scale b)))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (*.f64 #s(literal 1/4 binary64) b) y-scale) #s(literal 4 binary64)))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (*.f64 y-scale #s(literal 4 binary64)) b) #s(literal 1/4 binary64)))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) b) (*.f64 (*.f64 y-scale (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64)))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (*.f64 #s(literal 1/4 binary64) b) (sqrt.f64 #s(literal 8 binary64))) (*.f64 (sqrt.f64 #s(literal 2 binary64)) y-scale)))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (*.f64 (*.f64 #s(literal 1/4 binary64) b) y-scale) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) #s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) #s(approx (neg (* a (* (sin (* 1/180 (* angle (PI)))) (sqrt 2)))) (*.f64 (*.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (PI.f64)) angle) a) #s(literal -1/180 binary64))))))
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Outputs
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (*.f64 y-scale #s(literal 4 binary64)) (hypot.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))))) #s(literal 1/4 binary64)))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (sqrt.f64 (*.f64 #s(literal 2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 #s(approx (cos (* -1/180 (* (PI) angle))) #s(literal 1 binary64)) #s(literal 2 binary64)) (*.f64 b b)))))))
Calls

2 calls:

21.0ms
x-scale
16.0ms
a
Results
AccuracySegmentsBranch
44.4%2a
47.0%2x-scale
Compiler

Compiled 2 to 10 computations (-400% saved)

regimes106.0ms (0.4%)

Memory
30.7MiB live, 270.3MiB allocated; 22ms collecting garbage
Counts
65 → 3
Calls
Call 1
Inputs
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (* (* 1/4 b) y-scale) 4) (*.f64 y-scale b)))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (*.f64 #s(literal 1/4 binary64) b) y-scale) #s(literal 4 binary64)))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (*.f64 y-scale #s(literal 4 binary64)) b) #s(literal 1/4 binary64)))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) b) (*.f64 (*.f64 y-scale (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64)))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (*.f64 #s(literal 1/4 binary64) b) (sqrt.f64 #s(literal 8 binary64))) (*.f64 (sqrt.f64 #s(literal 2 binary64)) y-scale)))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (*.f64 (*.f64 #s(literal 1/4 binary64) b) y-scale) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) #s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) #s(approx (neg (* a (* (sin (* 1/180 (* angle (PI)))) (sqrt 2)))) (*.f64 (*.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (PI.f64)) angle) a) #s(literal -1/180 binary64))))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale)) #s(approx (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))) (/.f64 (*.f64 b (sqrt.f64 #s(literal 2 binary64))) x-scale))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) (*.f64 (/.f64 (*.f64 (*.f64 b x-scale) (*.f64 (*.f64 y-scale (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64)))) (fabs.f64 x-scale)) #s(literal 1/4 binary64))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) #s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) (neg.f64 (*.f64 (*.f64 #s(approx (cos (* (* (PI) angle) -1/180)) (fma.f64 (*.f64 #s(literal -1/64800 binary64) (*.f64 angle angle)) (*.f64 (PI.f64) (PI.f64)) #s(literal 1 binary64))) (sqrt.f64 #s(literal 2 binary64))) b)))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (+ (* (/ (* (* (* (sqrt 8) x-scale) (+ (* (/ (+ (* (/ 4 x-scale) (/ (* (* (pow (* (+ b a) (- b a)) 2) (pow (sin (* (* (PI) angle) 1/180)) 2)) (pow (cos (* -1/180 (* (PI) angle))) 2)) x-scale)) (* (* -2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale))) 1/2) (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a))))) (sqrt (/ 1 (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))))) (* y-scale y-scale)) 1/8) (* (* 1/4 (* (sqrt 8) x-scale)) (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))))) y-scale) (*.f64 y-scale (fma.f64 #s(literal 1/8 binary64) (/.f64 (*.f64 (*.f64 x-scale x-scale) (*.f64 (sqrt.f64 #s(literal 1/2 binary64)) (*.f64 (sqrt.f64 #s(literal 8 binary64)) (*.f64 #s(literal 0 binary64) (*.f64 a a))))) (*.f64 b (*.f64 y-scale y-scale))) (*.f64 (*.f64 #s(literal 1/4 binary64) b) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))))))
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#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2)))) 2)) 2))) (fma.f64 (*.f64 #s(literal 1/720 binary64) angle) (*.f64 (*.f64 b y-scale) (*.f64 (*.f64 (PI.f64) (cos.f64 (*.f64 #s(literal 1/2 binary64) (PI.f64)))) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))) (*.f64 (*.f64 #s(literal 1/4 binary64) b) (*.f64 (*.f64 y-scale (sin.f64 (*.f64 #s(literal 1/2 binary64) (PI.f64)))) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))))))
(/.f64 (neg.f64 #s(approx (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2)))))) (/.f64 (*.f64 (*.f64 a a) (*.f64 (pow.f64 b #s(literal 3 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))) (*.f64 (*.f64 x-scale x-scale) y-scale)))) (/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (*.f64 y-scale #s(literal 4 binary64)) (hypot.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))))) #s(literal 1/4 binary64)))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (*.f64 (hypot.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))))) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) #s(literal 1/4 binary64)))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) #s(literal 1/4 binary64)) (*.f64 y-scale (*.f64 (hypot.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))))) (sqrt.f64 #s(literal 2 binary64))))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) #s(literal 1/4 binary64)) (sqrt.f64 #s(literal 2 binary64))) (hypot.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (*.f64 (hypot.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))))) (sqrt.f64 #s(literal 2 binary64))) (*.f64 (sqrt.f64 #s(literal 8 binary64)) #s(literal 1/4 binary64))) y-scale))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (hypot.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))))) (sqrt.f64 #s(literal 2 binary64))) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) #s(literal 1/4 binary64))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (hypot.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) a) (*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) b)) (sqrt.f64 #s(literal 2 binary64))) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) #s(literal 1/4 binary64))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (hypot.f64 (*.f64 (sin.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) a) (*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 (PI.f64) angle))) b)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) #s(literal 1/4 binary64)))))
Outputs
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (*.f64 y-scale #s(literal 4 binary64)) (hypot.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))))) #s(literal 1/4 binary64)))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale)) (/.f64 (*.f64 (hypot.f64 (*.f64 b #s(approx (cos (* 1/180 (* (PI) angle))) (fma.f64 (*.f64 #s(literal -1/64800 binary64) (*.f64 angle angle)) (*.f64 (PI.f64) (PI.f64)) #s(literal 1 binary64)))) (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))))) (sqrt.f64 #s(literal 2 binary64))) (fabs.f64 x-scale))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) (*.f64 (/.f64 (*.f64 (*.f64 b x-scale) (*.f64 (*.f64 y-scale (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64)))) (fabs.f64 x-scale)) #s(literal 1/4 binary64))))
Calls

5 calls:

21.0ms
y-scale
20.0ms
(/.f64 angle #s(literal 180 binary64))
18.0ms
x-scale
18.0ms
(*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64))
18.0ms
angle
Results
AccuracySegmentsBranch
44.3%2(/.f64 angle #s(literal 180 binary64))
44.3%2(*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64))
44.3%2angle
43.6%2y-scale
48.3%3x-scale
Compiler

Compiled 11 to 31 computations (-181.8% saved)

regimes172.0ms (0.6%)

Memory
9.3MiB live, 294.7MiB allocated; 30ms collecting garbage
Counts
57 → 2
Calls
Call 1
Inputs
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#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (*.f64 #s(literal 1/4 binary64) b) y-scale) #s(literal 4 binary64)))
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#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) b) (*.f64 (*.f64 y-scale (exp.f64 (*.f64 (log.f64 #s(literal 2 binary64)) #s(literal 1/2 binary64)))) (sqrt.f64 #s(literal 8 binary64)))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (exp.f64 (*.f64 #s(approx (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) (log.f64 (*.f64 (*.f64 b b) #s(literal 2 binary64)))) #s(literal 1/2 binary64)))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) x-scale) y-scale)) (/.f64 (*.f64 (hypot.f64 (*.f64 b #s(approx (cos (* 1/180 (* (PI) angle))) #s(literal 1 binary64))) (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))))) (sqrt.f64 #s(literal 2 binary64))) (fabs.f64 x-scale))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale)) (/.f64 (*.f64 (hypot.f64 (*.f64 b #s(approx (cos (* 1/180 (* (PI) angle))) #s(literal 1 binary64))) (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))))) (sqrt.f64 #s(literal 2 binary64))) (fabs.f64 x-scale))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) x-scale) y-scale)) (/.f64 (*.f64 (hypot.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) (*.f64 a #s(approx (sin (* 1/180 (* (PI) angle))) (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))))) (sqrt.f64 #s(literal 2 binary64))) (fabs.f64 x-scale))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale)) (/.f64 (*.f64 (hypot.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) (*.f64 a #s(approx (sin (* 1/180 (* (PI) angle))) (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))))) (sqrt.f64 #s(literal 2 binary64))) (fabs.f64 x-scale))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) #s(approx (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2)))) 2)) 2)) 1/2)) (fma.f64 (*.f64 #s(literal 1/180 binary64) angle) (*.f64 (*.f64 b (PI.f64)) (*.f64 (cos.f64 (*.f64 #s(literal 1/2 binary64) (PI.f64))) (sqrt.f64 #s(literal 2 binary64)))) (*.f64 b (*.f64 (sin.f64 (*.f64 #s(literal 1/2 binary64) (PI.f64))) (sqrt.f64 #s(literal 2 binary64))))))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) #s(approx (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2)))) 2)) 2)) 1/2)) (fma.f64 #s(literal 1/90 binary64) (*.f64 angle (/.f64 (*.f64 (*.f64 b (PI.f64)) (cos.f64 (*.f64 #s(literal 1/2 binary64) (PI.f64)))) (sqrt.f64 #s(literal 2 binary64)))) (*.f64 b (*.f64 (sin.f64 (*.f64 #s(literal 1/2 binary64) (PI.f64))) (sqrt.f64 #s(literal 2 binary64))))))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) x-scale) y-scale)) (/.f64 (*.f64 (hypot.f64 (*.f64 b #s(approx (cos (* 1/180 (* (PI) angle))) (fma.f64 (*.f64 #s(literal -1/64800 binary64) (*.f64 angle angle)) (*.f64 (PI.f64) (PI.f64)) #s(literal 1 binary64)))) (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))))) (sqrt.f64 #s(literal 2 binary64))) (fabs.f64 x-scale))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale)) (/.f64 (*.f64 (hypot.f64 (*.f64 b #s(approx (cos (* 1/180 (* (PI) angle))) (fma.f64 (*.f64 #s(literal -1/64800 binary64) (*.f64 angle angle)) (*.f64 (PI.f64) (PI.f64)) #s(literal 1 binary64)))) (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))))) (sqrt.f64 #s(literal 2 binary64))) (fabs.f64 x-scale))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) #s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) (neg.f64 (*.f64 (*.f64 #s(approx (cos (* (* (PI) angle) -1/180)) (fma.f64 (*.f64 angle angle) (fma.f64 (*.f64 angle angle) (fma.f64 (*.f64 #s(literal -1/24488801280000000 binary64) (*.f64 angle angle)) (pow.f64 (PI.f64) #s(literal 6 binary64)) (*.f64 #s(literal 1/25194240000 binary64) (pow.f64 (PI.f64) #s(literal 4 binary64)))) (*.f64 #s(literal -1/64800 binary64) (*.f64 (PI.f64) (PI.f64)))) #s(literal 1 binary64))) (sqrt.f64 #s(literal 2 binary64))) b)))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (* 1/4 (* (sqrt 8) y-scale)) (sqrt (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (sin (+ (* (* (PI) angle) 1/180) (/ (PI) 2)))) 2)) 2))) (fma.f64 (*.f64 #s(literal 1/720 binary64) angle) (*.f64 (*.f64 b y-scale) (*.f64 (*.f64 (PI.f64) (cos.f64 (*.f64 #s(literal 1/2 binary64) (PI.f64)))) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))) (*.f64 (*.f64 #s(literal 1/4 binary64) b) (*.f64 (*.f64 y-scale (sin.f64 (*.f64 #s(literal 1/2 binary64) (PI.f64)))) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))))))
(/.f64 (neg.f64 #s(approx (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2)))))) (/.f64 (*.f64 (*.f64 a a) (*.f64 (pow.f64 b #s(literal 3 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))) (*.f64 (*.f64 x-scale x-scale) y-scale)))) (/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64))))
Outputs
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale)) (/.f64 (*.f64 (hypot.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) (*.f64 a #s(approx (sin (* 1/180 (* (PI) angle))) (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))))) (sqrt.f64 #s(literal 2 binary64))) (fabs.f64 x-scale))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) (*.f64 (/.f64 (*.f64 (*.f64 b x-scale) (*.f64 (*.f64 y-scale (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64)))) (fabs.f64 x-scale)) #s(literal 1/4 binary64))))
Calls

7 calls:

46.0ms
angle
35.0ms
(/.f64 angle #s(literal 180 binary64))
17.0ms
a
16.0ms
x-scale
15.0ms
(*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64))
Results
AccuracySegmentsBranch
38.2%1(/.f64 angle #s(literal 180 binary64))
38.2%1(*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64))
38.2%1angle
41.4%2a
38.2%1(/.f64 (neg.f64 (sqrt.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64)))) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (+.f64 (+.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) (sqrt.f64 (+.f64 (pow.f64 (-.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) #s(literal 2 binary64)) (pow.f64 (/.f64 (/.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (-.f64 (pow.f64 b #s(literal 2 binary64)) (pow.f64 a #s(literal 2 binary64)))) (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) x-scale) y-scale) #s(literal 2 binary64)))))))) (/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64))))
44.2%2b
43.0%3x-scale
Compiler

Compiled 195 to 92 computations (52.8% saved)

regimes24.0ms (0.1%)

Memory
8.7MiB live, 52.7MiB allocated; 6ms collecting garbage
Counts
49 → 2
Calls
Call 1
Inputs
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (* (* 1/4 b) y-scale) 4) (*.f64 y-scale b)))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (*.f64 #s(literal 1/4 binary64) b) y-scale) #s(literal 4 binary64)))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (*.f64 y-scale #s(literal 4 binary64)) b) #s(literal 1/4 binary64)))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) b) (*.f64 (*.f64 y-scale (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64)))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (*.f64 #s(literal 1/4 binary64) b) (sqrt.f64 #s(literal 8 binary64))) (*.f64 (sqrt.f64 #s(literal 2 binary64)) y-scale)))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (*.f64 (*.f64 #s(literal 1/4 binary64) b) y-scale) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) #s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) #s(approx (neg (* a (* (sin (* 1/180 (* angle (PI)))) (sqrt 2)))) (*.f64 (*.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (PI.f64)) angle) a) #s(literal -1/180 binary64))))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale)) #s(approx (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))) (/.f64 (*.f64 b (sqrt.f64 #s(literal 2 binary64))) x-scale))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) (*.f64 (/.f64 (*.f64 (*.f64 b x-scale) (*.f64 (*.f64 y-scale (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64)))) (fabs.f64 x-scale)) #s(literal 1/4 binary64))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) #s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) (neg.f64 (*.f64 (*.f64 #s(approx (cos (* (* (PI) angle) -1/180)) (fma.f64 (*.f64 #s(literal -1/64800 binary64) (*.f64 angle angle)) (*.f64 (PI.f64) (PI.f64)) #s(literal 1 binary64))) (sqrt.f64 #s(literal 2 binary64))) b)))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (+ (* (/ (* (* (* (sqrt 8) x-scale) (+ (* (/ (+ (* (/ 4 x-scale) (/ (* (* (pow (* (+ b a) (- b a)) 2) (pow (sin (* (* (PI) angle) 1/180)) 2)) (pow (cos (* -1/180 (* (PI) angle))) 2)) x-scale)) (* (* -2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale))) 1/2) (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a))))) (sqrt (/ 1 (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))))) (* y-scale y-scale)) 1/8) (* (* 1/4 (* (sqrt 8) x-scale)) (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))))) y-scale) (*.f64 y-scale (fma.f64 #s(literal 1/8 binary64) (/.f64 (*.f64 (*.f64 x-scale x-scale) (*.f64 (sqrt.f64 #s(literal 1/2 binary64)) (*.f64 (sqrt.f64 #s(literal 8 binary64)) (*.f64 #s(literal 0 binary64) (*.f64 a a))))) (*.f64 b (*.f64 y-scale y-scale))) (*.f64 (*.f64 #s(literal 1/4 binary64) b) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))))))
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#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) (fma.f64 (/.f64 (*.f64 (*.f64 (*.f64 angle angle) x-scale) (*.f64 (*.f64 y-scale (sqrt.f64 #s(literal 2 binary64))) (*.f64 (fma.f64 (*.f64 #s(literal 1/32400 binary64) (*.f64 a a)) (*.f64 (PI.f64) (PI.f64)) (*.f64 (*.f64 #s(literal -1/32400 binary64) (*.f64 b b)) (*.f64 (PI.f64) (PI.f64)))) (sqrt.f64 #s(literal 8 binary64))))) (*.f64 (fabs.f64 x-scale) b)) #s(literal 1/8 binary64) (*.f64 (/.f64 (*.f64 (*.f64 b x-scale) (*.f64 (*.f64 y-scale (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64)))) (fabs.f64 x-scale)) #s(literal 1/4 binary64)))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale)) #s(approx (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))) (neg.f64 (/.f64 (*.f64 a (*.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) (sqrt.f64 #s(literal 2 binary64)))) x-scale)))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) #s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) #s(approx (neg (* a (* (sin (* 1/180 (* angle (PI)))) (sqrt 2)))) (*.f64 (fma.f64 (*.f64 #s(literal 1/34992000 binary64) a) (*.f64 (*.f64 (pow.f64 (PI.f64) #s(literal 3 binary64)) (sqrt.f64 #s(literal 2 binary64))) (*.f64 angle angle)) (*.f64 #s(literal -1/180 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (PI.f64)) a))) angle)))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) b) (*.f64 (*.f64 y-scale (exp.f64 (*.f64 (log.f64 #s(literal 2 binary64)) #s(literal 1/2 binary64)))) (sqrt.f64 #s(literal 8 binary64)))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (exp.f64 (*.f64 #s(approx (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) (log.f64 (*.f64 (*.f64 b b) #s(literal 2 binary64)))) #s(literal 1/2 binary64)))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) x-scale) y-scale)) (/.f64 (*.f64 (hypot.f64 (*.f64 b #s(approx (cos (* 1/180 (* (PI) angle))) #s(literal 1 binary64))) (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))))) (sqrt.f64 #s(literal 2 binary64))) (fabs.f64 x-scale))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale)) (/.f64 (*.f64 (hypot.f64 (*.f64 b #s(approx (cos (* 1/180 (* (PI) angle))) #s(literal 1 binary64))) (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))))) (sqrt.f64 #s(literal 2 binary64))) (fabs.f64 x-scale))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) x-scale) y-scale)) (/.f64 (*.f64 (hypot.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) (*.f64 a #s(approx (sin (* 1/180 (* (PI) angle))) (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))))) (sqrt.f64 #s(literal 2 binary64))) (fabs.f64 x-scale))))
Outputs
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) x-scale) y-scale)) (/.f64 (*.f64 (hypot.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) (*.f64 a #s(approx (sin (* 1/180 (* (PI) angle))) (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))))) (sqrt.f64 #s(literal 2 binary64))) (fabs.f64 x-scale))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) (*.f64 (/.f64 (*.f64 (*.f64 b x-scale) (*.f64 (*.f64 y-scale (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64)))) (fabs.f64 x-scale)) #s(literal 1/4 binary64))))
Calls

1 calls:

12.0ms
b
Results
AccuracySegmentsBranch
44.2%2b
Compiler

Compiled 1 to 5 computations (-400% saved)

regimes48.0ms (0.2%)

Memory
-60.8MiB live, 52.2MiB allocated; 38ms collecting garbage
Counts
48 → 2
Calls
Call 1
Inputs
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (* (* 1/4 b) y-scale) 4) (*.f64 y-scale b)))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (*.f64 #s(literal 1/4 binary64) b) y-scale) #s(literal 4 binary64)))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (*.f64 y-scale #s(literal 4 binary64)) b) #s(literal 1/4 binary64)))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) b) (*.f64 (*.f64 y-scale (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64)))))
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#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) x-scale) y-scale)) (/.f64 (*.f64 (hypot.f64 (*.f64 b #s(approx (cos (* 1/180 (* (PI) angle))) #s(literal 1 binary64))) (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))))) (sqrt.f64 #s(literal 2 binary64))) (fabs.f64 x-scale))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale)) (/.f64 (*.f64 (hypot.f64 (*.f64 b #s(approx (cos (* 1/180 (* (PI) angle))) #s(literal 1 binary64))) (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))))) (sqrt.f64 #s(literal 2 binary64))) (fabs.f64 x-scale))))
Outputs
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale)) (/.f64 (*.f64 (hypot.f64 (*.f64 b #s(approx (cos (* 1/180 (* (PI) angle))) #s(literal 1 binary64))) (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))))) (sqrt.f64 #s(literal 2 binary64))) (fabs.f64 x-scale))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) (*.f64 (/.f64 (*.f64 (*.f64 b x-scale) (*.f64 (*.f64 y-scale (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64)))) (fabs.f64 x-scale)) #s(literal 1/4 binary64))))
Calls

1 calls:

12.0ms
b
Results
AccuracySegmentsBranch
43.6%2b
Compiler

Compiled 1 to 5 computations (-400% saved)

regimes21.0ms (0.1%)

Memory
43.1MiB live, 43.1MiB allocated; 0ms collecting garbage
Counts
47 → 2
Calls
Call 1
Inputs
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (* (* 1/4 b) y-scale) 4) (*.f64 y-scale b)))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (*.f64 #s(literal 1/4 binary64) b) y-scale) #s(literal 4 binary64)))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (*.f64 y-scale #s(literal 4 binary64)) b) #s(literal 1/4 binary64)))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) b) (*.f64 (*.f64 y-scale (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64)))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (*.f64 #s(literal 1/4 binary64) b) (sqrt.f64 #s(literal 8 binary64))) (*.f64 (sqrt.f64 #s(literal 2 binary64)) y-scale)))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (*.f64 (*.f64 #s(literal 1/4 binary64) b) y-scale) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) #s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) #s(approx (neg (* a (* (sin (* 1/180 (* angle (PI)))) (sqrt 2)))) (*.f64 (*.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (PI.f64)) angle) a) #s(literal -1/180 binary64))))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale)) #s(approx (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))) (/.f64 (*.f64 b (sqrt.f64 #s(literal 2 binary64))) x-scale))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) (*.f64 (/.f64 (*.f64 (*.f64 b x-scale) (*.f64 (*.f64 y-scale (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64)))) (fabs.f64 x-scale)) #s(literal 1/4 binary64))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) #s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) (neg.f64 (*.f64 (*.f64 #s(approx (cos (* (* (PI) angle) -1/180)) (fma.f64 (*.f64 #s(literal -1/64800 binary64) (*.f64 angle angle)) (*.f64 (PI.f64) (PI.f64)) #s(literal 1 binary64))) (sqrt.f64 #s(literal 2 binary64))) b)))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (+ (* (/ (* (* (* (sqrt 8) x-scale) (+ (* (/ (+ (* (/ 4 x-scale) (/ (* (* (pow (* (+ b a) (- b a)) 2) (pow (sin (* (* (PI) angle) 1/180)) 2)) (pow (cos (* -1/180 (* (PI) angle))) 2)) x-scale)) (* (* -2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale))) 1/2) (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a))))) (sqrt (/ 1 (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))))) (* y-scale y-scale)) 1/8) (* (* 1/4 (* (sqrt 8) x-scale)) (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))))) y-scale) (*.f64 y-scale (fma.f64 #s(literal 1/8 binary64) (/.f64 (*.f64 (*.f64 x-scale x-scale) (*.f64 (sqrt.f64 #s(literal 1/2 binary64)) (*.f64 (sqrt.f64 #s(literal 8 binary64)) (*.f64 #s(literal 0 binary64) (*.f64 a a))))) (*.f64 b (*.f64 y-scale y-scale))) (*.f64 (*.f64 #s(literal 1/4 binary64) b) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) #s(approx (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) 1/2)) (fma.f64 (sqrt.f64 #s(literal 2 binary64)) b (/.f64 (*.f64 (fma.f64 (*.f64 #s(literal 1/32400 binary64) (*.f64 a a)) (*.f64 (PI.f64) (PI.f64)) (*.f64 (*.f64 #s(literal -1/32400 binary64) (*.f64 b b)) (*.f64 (PI.f64) (PI.f64)))) (*.f64 angle angle)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) b))))))
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#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale)) #s(approx (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))) (neg.f64 (/.f64 (*.f64 a (*.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) (sqrt.f64 #s(literal 2 binary64)))) x-scale)))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) #s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) #s(approx (neg (* a (* (sin (* 1/180 (* angle (PI)))) (sqrt 2)))) (*.f64 (fma.f64 (*.f64 #s(literal 1/34992000 binary64) a) (*.f64 (*.f64 (pow.f64 (PI.f64) #s(literal 3 binary64)) (sqrt.f64 #s(literal 2 binary64))) (*.f64 angle angle)) (*.f64 #s(literal -1/180 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (PI.f64)) a))) angle)))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) b) (*.f64 (*.f64 y-scale (exp.f64 (*.f64 (log.f64 #s(literal 2 binary64)) #s(literal 1/2 binary64)))) (sqrt.f64 #s(literal 8 binary64)))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (exp.f64 (*.f64 #s(approx (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) (log.f64 (*.f64 (*.f64 b b) #s(literal 2 binary64)))) #s(literal 1/2 binary64)))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) x-scale) y-scale)) (/.f64 (*.f64 (hypot.f64 (*.f64 b #s(approx (cos (* 1/180 (* (PI) angle))) #s(literal 1 binary64))) (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))))) (sqrt.f64 #s(literal 2 binary64))) (fabs.f64 x-scale))))
Outputs
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) x-scale) y-scale)) (/.f64 (*.f64 (hypot.f64 (*.f64 b #s(approx (cos (* 1/180 (* (PI) angle))) #s(literal 1 binary64))) (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle))))) (sqrt.f64 #s(literal 2 binary64))) (fabs.f64 x-scale))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) (*.f64 (/.f64 (*.f64 (*.f64 b x-scale) (*.f64 (*.f64 y-scale (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64)))) (fabs.f64 x-scale)) #s(literal 1/4 binary64))))
Calls

1 calls:

12.0ms
b
Results
AccuracySegmentsBranch
43.6%2b
Compiler

Compiled 1 to 5 computations (-400% saved)

regimes59.0ms (0.2%)

Memory
-14.4MiB live, 76.7MiB allocated; 7ms collecting garbage
Counts
46 → 2
Calls
Call 1
Inputs
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (* (* 1/4 b) y-scale) 4) (*.f64 y-scale b)))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (*.f64 #s(literal 1/4 binary64) b) y-scale) #s(literal 4 binary64)))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (*.f64 y-scale #s(literal 4 binary64)) b) #s(literal 1/4 binary64)))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) b) (*.f64 (*.f64 y-scale (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64)))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (*.f64 #s(literal 1/4 binary64) b) (sqrt.f64 #s(literal 8 binary64))) (*.f64 (sqrt.f64 #s(literal 2 binary64)) y-scale)))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (*.f64 (*.f64 #s(literal 1/4 binary64) b) y-scale) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) #s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) #s(approx (neg (* a (* (sin (* 1/180 (* angle (PI)))) (sqrt 2)))) (*.f64 (*.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (PI.f64)) angle) a) #s(literal -1/180 binary64))))))
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#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale)) #s(approx (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))) (/.f64 (*.f64 b (*.f64 (cos.f64 (*.f64 #s(literal -1/180 binary64) (*.f64 angle (PI.f64)))) (sqrt.f64 #s(literal 2 binary64)))) x-scale))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) (*.f64 (*.f64 a (/.f64 (*.f64 (*.f64 y-scale x-scale) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))) (sqrt.f64 #s(literal 8 binary64)))) (fabs.f64 x-scale))) #s(literal -1/4 binary64))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) (*.f64 (*.f64 a (/.f64 (*.f64 (*.f64 y-scale x-scale) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))) (sqrt.f64 #s(literal 8 binary64)))) (fabs.f64 x-scale))) #s(literal 1/4 binary64))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) (*.f64 (*.f64 b (/.f64 (*.f64 (*.f64 y-scale x-scale) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (cos.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))) (sqrt.f64 #s(literal 8 binary64)))) (fabs.f64 x-scale))) #s(literal 1/4 binary64))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) (fma.f64 (/.f64 (*.f64 (*.f64 (*.f64 angle angle) x-scale) (*.f64 (*.f64 y-scale (sqrt.f64 #s(literal 2 binary64))) (*.f64 (fma.f64 (*.f64 #s(literal 1/32400 binary64) (*.f64 a a)) (*.f64 (PI.f64) (PI.f64)) (*.f64 (*.f64 #s(literal -1/32400 binary64) (*.f64 b b)) (*.f64 (PI.f64) (PI.f64)))) (sqrt.f64 #s(literal 8 binary64))))) (*.f64 (fabs.f64 x-scale) b)) #s(literal 1/8 binary64) (*.f64 (/.f64 (*.f64 (*.f64 b x-scale) (*.f64 (*.f64 y-scale (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64)))) (fabs.f64 x-scale)) #s(literal 1/4 binary64)))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale)) #s(approx (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))) (neg.f64 (/.f64 (*.f64 a (*.f64 (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 angle (PI.f64)))) (sqrt.f64 #s(literal 2 binary64)))) x-scale)))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) #s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) #s(approx (neg (* a (* (sin (* 1/180 (* angle (PI)))) (sqrt 2)))) (*.f64 (fma.f64 (*.f64 #s(literal 1/34992000 binary64) a) (*.f64 (*.f64 (pow.f64 (PI.f64) #s(literal 3 binary64)) (sqrt.f64 #s(literal 2 binary64))) (*.f64 angle angle)) (*.f64 #s(literal -1/180 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (PI.f64)) a))) angle)))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) b) (*.f64 (*.f64 y-scale (exp.f64 (*.f64 (log.f64 #s(literal 2 binary64)) #s(literal 1/2 binary64)))) (sqrt.f64 #s(literal 8 binary64)))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (exp.f64 (*.f64 #s(approx (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) (log.f64 (*.f64 (*.f64 b b) #s(literal 2 binary64)))) #s(literal 1/2 binary64)))))
Outputs
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) #s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) (fma.f64 #s(literal 1/2 binary64) (/.f64 (*.f64 (*.f64 angle angle) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (fma.f64 (*.f64 #s(literal -1/32400 binary64) (*.f64 b b)) (*.f64 (PI.f64) (PI.f64)) (*.f64 (*.f64 #s(literal 1/32400 binary64) (*.f64 a a)) (*.f64 (PI.f64) (PI.f64)))))) b) (*.f64 b (sqrt.f64 #s(literal 2 binary64)))))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) (*.f64 (/.f64 (*.f64 (*.f64 b x-scale) (*.f64 (*.f64 y-scale (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64)))) (fabs.f64 x-scale)) #s(literal 1/4 binary64))))
Calls

2 calls:

14.0ms
y-scale
12.0ms
b
Results
AccuracySegmentsBranch
33.3%1y-scale
41.6%2b
Compiler

Compiled 2 to 10 computations (-400% saved)

regimes6.0ms (0%)

Memory
20.7MiB live, 20.7MiB allocated; 0ms collecting garbage
Counts
12 → 2
Calls
Call 1
Inputs
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (* (* 1/4 b) y-scale) 4) (*.f64 y-scale b)))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (*.f64 #s(literal 1/4 binary64) b) y-scale) #s(literal 4 binary64)))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (*.f64 y-scale #s(literal 4 binary64)) b) #s(literal 1/4 binary64)))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) b) (*.f64 (*.f64 y-scale (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64)))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (*.f64 #s(literal 1/4 binary64) b) (sqrt.f64 #s(literal 8 binary64))) (*.f64 (sqrt.f64 #s(literal 2 binary64)) y-scale)))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (*.f64 (*.f64 #s(literal 1/4 binary64) b) y-scale) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) #s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) #s(approx (neg (* a (* (sin (* 1/180 (* angle (PI)))) (sqrt 2)))) (*.f64 (*.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (PI.f64)) angle) a) #s(literal -1/180 binary64))))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale)) #s(approx (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))) (/.f64 (*.f64 b (sqrt.f64 #s(literal 2 binary64))) x-scale))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) (*.f64 (/.f64 (*.f64 (*.f64 b x-scale) (*.f64 (*.f64 y-scale (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64)))) (fabs.f64 x-scale)) #s(literal 1/4 binary64))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) #s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) (neg.f64 (*.f64 (*.f64 #s(approx (cos (* (* (PI) angle) -1/180)) (fma.f64 (*.f64 #s(literal -1/64800 binary64) (*.f64 angle angle)) (*.f64 (PI.f64) (PI.f64)) #s(literal 1 binary64))) (sqrt.f64 #s(literal 2 binary64))) b)))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (+ (* (/ (* (* (* (sqrt 8) x-scale) (+ (* (/ (+ (* (/ 4 x-scale) (/ (* (* (pow (* (+ b a) (- b a)) 2) (pow (sin (* (* (PI) angle) 1/180)) 2)) (pow (cos (* -1/180 (* (PI) angle))) 2)) x-scale)) (* (* -2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale))) 1/2) (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a))))) (sqrt (/ 1 (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))))) (* y-scale y-scale)) 1/8) (* (* 1/4 (* (sqrt 8) x-scale)) (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))))) y-scale) (*.f64 y-scale (fma.f64 #s(literal 1/8 binary64) (/.f64 (*.f64 (*.f64 x-scale x-scale) (*.f64 (sqrt.f64 #s(literal 1/2 binary64)) (*.f64 (sqrt.f64 #s(literal 8 binary64)) (*.f64 #s(literal 0 binary64) (*.f64 a a))))) (*.f64 b (*.f64 y-scale y-scale))) (*.f64 (*.f64 #s(literal 1/4 binary64) b) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) #s(approx (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) 1/2)) (fma.f64 (sqrt.f64 #s(literal 2 binary64)) b (/.f64 (*.f64 (fma.f64 (*.f64 #s(literal 1/32400 binary64) (*.f64 a a)) (*.f64 (PI.f64) (PI.f64)) (*.f64 (*.f64 #s(literal -1/32400 binary64) (*.f64 b b)) (*.f64 (PI.f64) (PI.f64)))) (*.f64 angle angle)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) b))))))
Outputs
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) #s(approx (exp (* (log (* (+ (pow (* a (sin (* 1/180 (* (PI) angle)))) 2) (pow (* b (cos (* 1/180 (* (PI) angle)))) 2)) 2)) 1/2)) (fma.f64 (sqrt.f64 #s(literal 2 binary64)) b (/.f64 (*.f64 (fma.f64 (*.f64 #s(literal 1/32400 binary64) (*.f64 a a)) (*.f64 (PI.f64) (PI.f64)) (*.f64 (*.f64 #s(literal -1/32400 binary64) (*.f64 b b)) (*.f64 (PI.f64) (PI.f64)))) (*.f64 angle angle)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) b))))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) (*.f64 (/.f64 (*.f64 (*.f64 b x-scale) (*.f64 (*.f64 y-scale (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64)))) (fabs.f64 x-scale)) #s(literal 1/4 binary64))))
Calls

1 calls:

4.0ms
b
Results
AccuracySegmentsBranch
41.6%2b
Compiler

Compiled 1 to 5 computations (-400% saved)

regimes36.0ms (0.1%)

Memory
-46.0MiB live, 99.9MiB allocated; 19ms collecting garbage
Counts
11 → 2
Calls
Call 1
Inputs
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (* (* 1/4 b) y-scale) 4) (*.f64 y-scale b)))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (*.f64 #s(literal 1/4 binary64) b) y-scale) #s(literal 4 binary64)))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (*.f64 y-scale #s(literal 4 binary64)) b) #s(literal 1/4 binary64)))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) b) (*.f64 (*.f64 y-scale (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64)))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (*.f64 #s(literal 1/4 binary64) b) (sqrt.f64 #s(literal 8 binary64))) (*.f64 (sqrt.f64 #s(literal 2 binary64)) y-scale)))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (*.f64 (*.f64 #s(literal 1/4 binary64) b) y-scale) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) #s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) #s(approx (neg (* a (* (sin (* 1/180 (* angle (PI)))) (sqrt 2)))) (*.f64 (*.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (PI.f64)) angle) a) #s(literal -1/180 binary64))))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale)) #s(approx (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))) (/.f64 (*.f64 b (sqrt.f64 #s(literal 2 binary64))) x-scale))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) (*.f64 (/.f64 (*.f64 (*.f64 b x-scale) (*.f64 (*.f64 y-scale (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64)))) (fabs.f64 x-scale)) #s(literal 1/4 binary64))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) #s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) (neg.f64 (*.f64 (*.f64 #s(approx (cos (* (* (PI) angle) -1/180)) (fma.f64 (*.f64 #s(literal -1/64800 binary64) (*.f64 angle angle)) (*.f64 (PI.f64) (PI.f64)) #s(literal 1 binary64))) (sqrt.f64 #s(literal 2 binary64))) b)))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (+ (* (/ (* (* (* (sqrt 8) x-scale) (+ (* (/ (+ (* (/ 4 x-scale) (/ (* (* (pow (* (+ b a) (- b a)) 2) (pow (sin (* (* (PI) angle) 1/180)) 2)) (pow (cos (* -1/180 (* (PI) angle))) 2)) x-scale)) (* (* -2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale)))) (/ (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))) (* x-scale x-scale))) 1/2) (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* b b)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* a a))))) (sqrt (/ 1 (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))))) (* y-scale y-scale)) 1/8) (* (* 1/4 (* (sqrt 8) x-scale)) (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))))) y-scale) (*.f64 y-scale (fma.f64 #s(literal 1/8 binary64) (/.f64 (*.f64 (*.f64 x-scale x-scale) (*.f64 (sqrt.f64 #s(literal 1/2 binary64)) (*.f64 (sqrt.f64 #s(literal 8 binary64)) (*.f64 #s(literal 0 binary64) (*.f64 a a))))) (*.f64 b (*.f64 y-scale y-scale))) (*.f64 (*.f64 #s(literal 1/4 binary64) b) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 #s(literal 8 binary64))))))))
Outputs
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) #s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) (neg.f64 (*.f64 (*.f64 #s(approx (cos (* (* (PI) angle) -1/180)) (fma.f64 (*.f64 #s(literal -1/64800 binary64) (*.f64 angle angle)) (*.f64 (PI.f64) (PI.f64)) #s(literal 1 binary64))) (sqrt.f64 #s(literal 2 binary64))) b)))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) (*.f64 (/.f64 (*.f64 (*.f64 b x-scale) (*.f64 (*.f64 y-scale (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64)))) (fabs.f64 x-scale)) #s(literal 1/4 binary64))))
Calls

7 calls:

7.0ms
angle
6.0ms
(/.f64 (neg.f64 (sqrt.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64)))) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (+.f64 (+.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) (sqrt.f64 (+.f64 (pow.f64 (-.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) #s(literal 2 binary64)) (pow.f64 (/.f64 (/.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (-.f64 (pow.f64 b #s(literal 2 binary64)) (pow.f64 a #s(literal 2 binary64)))) (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) x-scale) y-scale) #s(literal 2 binary64)))))))) (/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64))))
4.0ms
(*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64))
3.0ms
b
3.0ms
x-scale
Results
AccuracySegmentsBranch
33.3%1(/.f64 (neg.f64 (sqrt.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64)))) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (+.f64 (+.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) (sqrt.f64 (+.f64 (pow.f64 (-.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) #s(literal 2 binary64)) (pow.f64 (/.f64 (/.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (-.f64 (pow.f64 b #s(literal 2 binary64)) (pow.f64 a #s(literal 2 binary64)))) (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) x-scale) y-scale) #s(literal 2 binary64)))))))) (/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64))))
35.0%2(/.f64 angle #s(literal 180 binary64))
35.0%2(*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64))
35.0%2angle
33.3%1a
34.9%2x-scale
35.8%2b
Compiler

Compiled 195 to 92 computations (52.8% saved)

regimes5.0ms (0%)

Memory
15.3MiB live, 15.3MiB allocated; 0ms collecting garbage
Counts
9 → 2
Calls
Call 1
Inputs
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (* (* 1/4 b) y-scale) 4) (*.f64 y-scale b)))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (*.f64 #s(literal 1/4 binary64) b) y-scale) #s(literal 4 binary64)))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (*.f64 y-scale #s(literal 4 binary64)) b) #s(literal 1/4 binary64)))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) b) (*.f64 (*.f64 y-scale (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64)))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (*.f64 #s(literal 1/4 binary64) b) (sqrt.f64 #s(literal 8 binary64))) (*.f64 (sqrt.f64 #s(literal 2 binary64)) y-scale)))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (*.f64 (*.f64 #s(literal 1/4 binary64) b) y-scale) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) #s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) #s(approx (neg (* a (* (sin (* 1/180 (* angle (PI)))) (sqrt 2)))) (*.f64 (*.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (PI.f64)) angle) a) #s(literal -1/180 binary64))))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale)) #s(approx (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))) (/.f64 (*.f64 b (sqrt.f64 #s(literal 2 binary64))) x-scale))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) (*.f64 (/.f64 (*.f64 (*.f64 b x-scale) (*.f64 (*.f64 y-scale (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64)))) (fabs.f64 x-scale)) #s(literal 1/4 binary64))))
Outputs
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) #s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) #s(approx (neg (* a (* (sin (* 1/180 (* angle (PI)))) (sqrt 2)))) (*.f64 (*.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (PI.f64)) angle) a) #s(literal -1/180 binary64))))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) (*.f64 (/.f64 (*.f64 (*.f64 b x-scale) (*.f64 (*.f64 y-scale (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64)))) (fabs.f64 x-scale)) #s(literal 1/4 binary64))))
Calls

1 calls:

3.0ms
b
Results
AccuracySegmentsBranch
35.6%2b
Compiler

Compiled 1 to 5 computations (-400% saved)

regimes26.0ms (0.1%)

Memory
15.5MiB live, 62.4MiB allocated; 2ms collecting garbage
Counts
8 → 2
Calls
Call 1
Inputs
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (* (* 1/4 b) y-scale) 4) (*.f64 y-scale b)))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (*.f64 #s(literal 1/4 binary64) b) y-scale) #s(literal 4 binary64)))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (*.f64 y-scale #s(literal 4 binary64)) b) #s(literal 1/4 binary64)))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) b) (*.f64 (*.f64 y-scale (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64)))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (*.f64 #s(literal 1/4 binary64) b) (sqrt.f64 #s(literal 8 binary64))) (*.f64 (sqrt.f64 #s(literal 2 binary64)) y-scale)))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (*.f64 (*.f64 #s(literal 1/4 binary64) b) y-scale) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) #s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) #s(approx (neg (* a (* (sin (* 1/180 (* angle (PI)))) (sqrt 2)))) (*.f64 (*.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (PI.f64)) angle) a) #s(literal -1/180 binary64))))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale) x-scale)) #s(approx (sqrt (/ (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b)))) (* x-scale x-scale))) (/.f64 (*.f64 b (sqrt.f64 #s(literal 2 binary64))) x-scale))))
Outputs
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) #s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) #s(approx (neg (* a (* (sin (* 1/180 (* angle (PI)))) (sqrt 2)))) (*.f64 (*.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (PI.f64)) angle) a) #s(literal -1/180 binary64))))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (* (* 1/4 b) y-scale) 4) (*.f64 y-scale b)))
Calls

8 calls:

4.0ms
(*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64))
3.0ms
angle
3.0ms
(/.f64 angle #s(literal 180 binary64))
3.0ms
b
3.0ms
a
Results
AccuracySegmentsBranch
30.2%2a
28.3%1(/.f64 (neg.f64 (sqrt.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64)))) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (+.f64 (+.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) (sqrt.f64 (+.f64 (pow.f64 (-.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) #s(literal 2 binary64)) (pow.f64 (/.f64 (/.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (-.f64 (pow.f64 b #s(literal 2 binary64)) (pow.f64 a #s(literal 2 binary64)))) (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) x-scale) y-scale) #s(literal 2 binary64)))))))) (/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64))))
28.3%1y-scale
28.3%1x-scale
30.5%2(/.f64 angle #s(literal 180 binary64))
30.5%2(*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64))
30.5%2angle
30.4%2b
Compiler

Compiled 196 to 97 computations (50.5% saved)

regimes19.0ms (0.1%)

Memory
-10.0MiB live, 36.7MiB allocated; 3ms collecting garbage
Accuracy

Total -0.1b remaining (-0.2%)

Threshold costs -0.1b (-0.2%)

Counts
6 → 1
Calls
Call 1
Inputs
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (* (* 1/4 b) y-scale) 4) (*.f64 y-scale b)))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (*.f64 #s(literal 1/4 binary64) b) y-scale) #s(literal 4 binary64)))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (*.f64 y-scale #s(literal 4 binary64)) b) #s(literal 1/4 binary64)))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) b) (*.f64 (*.f64 y-scale (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64)))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (*.f64 #s(literal 1/4 binary64) b) (sqrt.f64 #s(literal 8 binary64))) (*.f64 (sqrt.f64 #s(literal 2 binary64)) y-scale)))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (*.f64 (*.f64 #s(literal 1/4 binary64) b) y-scale) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64))))
Outputs
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (* (* 1/4 b) y-scale) 4) (*.f64 y-scale b)))
Calls

6 calls:

6.0ms
(/.f64 angle #s(literal 180 binary64))
2.0ms
(/.f64 (neg.f64 (sqrt.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64)))) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (+.f64 (+.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) (sqrt.f64 (+.f64 (pow.f64 (-.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) #s(literal 2 binary64)) (pow.f64 (/.f64 (/.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (-.f64 (pow.f64 b #s(literal 2 binary64)) (pow.f64 a #s(literal 2 binary64)))) (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) x-scale) y-scale) #s(literal 2 binary64)))))))) (/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64))))
2.0ms
(*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64))
2.0ms
b
2.0ms
a
Results
AccuracySegmentsBranch
28.3%1(/.f64 (neg.f64 (sqrt.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64)))) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (+.f64 (+.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) (sqrt.f64 (+.f64 (pow.f64 (-.f64 (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) x-scale) x-scale) (/.f64 (/.f64 (+.f64 (pow.f64 (*.f64 a (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) #s(literal 2 binary64))) y-scale) y-scale)) #s(literal 2 binary64)) (pow.f64 (/.f64 (/.f64 (*.f64 (*.f64 (*.f64 #s(literal 2 binary64) (-.f64 (pow.f64 b #s(literal 2 binary64)) (pow.f64 a #s(literal 2 binary64)))) (sin.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) (cos.f64 (*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64)))) x-scale) y-scale) #s(literal 2 binary64)))))))) (/.f64 (*.f64 #s(literal 4 binary64) (*.f64 (*.f64 b a) (*.f64 b (neg.f64 a)))) (pow.f64 (*.f64 x-scale y-scale) #s(literal 2 binary64))))
28.3%1a
28.3%1b
28.3%1(/.f64 angle #s(literal 180 binary64))
28.3%1(*.f64 (/.f64 angle #s(literal 180 binary64)) (PI.f64))
28.3%1angle
Compiler

Compiled 194 to 87 computations (55.2% saved)

bsearch82.0ms (0.3%)

Memory
22.0MiB live, 163.6MiB allocated; 15ms collecting garbage
Algorithm
binary-search
Stop Event
narrow-enough
Steps
TimeLeftRight
72.0ms
4447867721415779.0
387683141182919550.0
Samples
63.0ms112×0valid
Compiler

Compiled 3 161 to 1 131 computations (64.2% saved)

Precisions
Click to see histograms. Total time spent on operations: 58.0ms
ival-sinu: 23.0ms (39.5% of total)
ival-mult: 10.0ms (17.2% of total)
ival-pow2: 9.0ms (15.4% of total)
ival-div: 8.0ms (13.7% of total)
ival-add: 2.0ms (3.4% of total)
ival-cosu: 2.0ms (3.4% of total)
ival-sub: 1.0ms (1.7% of total)
ival-sqrt: 1.0ms (1.7% of total)
ival-neg: 1.0ms (1.7% of total)
adjust: 0.0ms (0% of total)
ival-assert: 0.0ms (0% of total)
ival-true: 0.0ms (0% of total)
exact: 0.0ms (0% of total)

bsearch68.0ms (0.2%)

Memory
-22.3MiB live, 168.7MiB allocated; 15ms collecting garbage
Algorithm
binary-search
Stop Event
narrow-enough
Steps
TimeLeftRight
57.0ms
1.484450146448667e+56
1.8478056794924734e+58
Samples
45.0ms112×0valid
Compiler

Compiled 3 217 to 1 180 computations (63.3% saved)

Precisions
Click to see histograms. Total time spent on operations: 41.0ms
ival-mult: 10.0ms (24.6% of total)
ival-pow2: 9.0ms (22.1% of total)
ival-div: 8.0ms (19.6% of total)
ival-sqrt: 4.0ms (9.8% of total)
ival-sinu: 3.0ms (7.4% of total)
ival-add: 2.0ms (4.9% of total)
ival-cosu: 2.0ms (4.9% of total)
ival-sub: 1.0ms (2.5% of total)
ival-neg: 1.0ms (2.5% of total)
adjust: 0.0ms (0% of total)
ival-assert: 0.0ms (0% of total)
ival-true: 0.0ms (0% of total)
exact: 0.0ms (0% of total)

bsearch97.0ms (0.3%)

Memory
-0.4MiB live, 152.2MiB allocated; 13ms collecting garbage
Algorithm
binary-search
Stop Event
narrow-enough
Steps
TimeLeftRight
91.0ms
1.484450146448667e+56
1.8478056794924734e+58
Samples
84.0ms96×0valid
Compiler

Compiled 3 182 to 1 145 computations (64% saved)

Precisions
Click to see histograms. Total time spent on operations: 80.0ms
ival-mult: 53.0ms (66.1% of total)
ival-pow2: 12.0ms (15% of total)
ival-div: 5.0ms (6.2% of total)
ival-sinu: 3.0ms (3.7% of total)
ival-add: 2.0ms (2.5% of total)
ival-cosu: 2.0ms (2.5% of total)
ival-sub: 1.0ms (1.2% of total)
ival-sqrt: 1.0ms (1.2% of total)
ival-neg: 1.0ms (1.2% of total)
adjust: 0.0ms (0% of total)
ival-assert: 0.0ms (0% of total)
ival-true: 0.0ms (0% of total)
exact: 0.0ms (0% of total)

bsearch4.0ms (0%)

Memory
14.3MiB live, 14.3MiB allocated; 0ms collecting garbage
Algorithm
binary-search
Stop Event
narrow-enough
Steps
TimeLeftRight
3.0ms
1.484450146448667e+56
1.8478056794924734e+58
Compiler

Compiled 3 175 to 1 152 computations (63.7% saved)

bsearch114.0ms (0.4%)

Memory
-1.8MiB live, 147.7MiB allocated; 9ms collecting garbage
Algorithm
binary-search
Stop Event
narrow-enough
narrow-enough
Steps
TimeLeftRight
60.0ms
8.039426553500055e+236
5.068944703813941e+237
44.0ms
1.484450146448667e+56
1.8478056794924734e+58
Samples
64.0ms160×0valid
Compiler

Compiled 6 098 to 2 279 computations (62.6% saved)

Precisions
Click to see histograms. Total time spent on operations: 57.0ms
ival-pow2: 20.0ms (34.8% of total)
ival-mult: 14.0ms (24.4% of total)
ival-div: 7.0ms (12.2% of total)
ival-sinu: 4.0ms (7% of total)
ival-add: 3.0ms (5.2% of total)
ival-cosu: 3.0ms (5.2% of total)
ival-sqrt: 2.0ms (3.5% of total)
ival-sub: 1.0ms (1.7% of total)
ival-neg: 1.0ms (1.7% of total)
adjust: 0.0ms (0% of total)
ival-assert: 0.0ms (0% of total)
ival-true: 0.0ms (0% of total)
exact: 0.0ms (0% of total)

bsearch54.0ms (0.2%)

Memory
-8.5MiB live, 80.6MiB allocated; 11ms collecting garbage
Algorithm
binary-search
Stop Event
narrow-enough
Steps
TimeLeftRight
49.0ms
1.5042196301936344e+32
4.43573746468588e+32
Samples
44.0ms80×0valid
Compiler

Compiled 2 556 to 945 computations (63% saved)

Precisions
Click to see histograms. Total time spent on operations: 41.0ms
ival-mult: 21.0ms (51.8% of total)
ival-pow2: 7.0ms (17.3% of total)
ival-div: 4.0ms (9.9% of total)
ival-add: 2.0ms (4.9% of total)
ival-cosu: 2.0ms (4.9% of total)
ival-sinu: 2.0ms (4.9% of total)
ival-sub: 1.0ms (2.5% of total)
ival-sqrt: 1.0ms (2.5% of total)
ival-neg: 1.0ms (2.5% of total)
adjust: 0.0ms (0% of total)
ival-assert: 0.0ms (0% of total)
ival-true: 0.0ms (0% of total)
exact: 0.0ms (0% of total)

bsearch3.0ms (0%)

Memory
8.0MiB live, 8.0MiB allocated; 0ms collecting garbage
Algorithm
binary-search
Stop Event
narrow-enough
Steps
TimeLeftRight
2.0ms
1.5042196301936344e+32
4.43573746468588e+32
Compiler

Compiled 2 556 to 950 computations (62.8% saved)

bsearch84.0ms (0.3%)

Memory
-21.4MiB live, 80.2MiB allocated; 10ms collecting garbage
Algorithm
binary-search
Stop Event
narrow-enough
Steps
TimeLeftRight
78.0ms
9.112804763925627e+94
1.0348743593361386e+96
Samples
72.0ms96×0valid
Compiler

Compiled 3 006 to 1 122 computations (62.7% saved)

Precisions
Click to see histograms. Total time spent on operations: 68.0ms
ival-div: 39.0ms (57.5% of total)
ival-mult: 12.0ms (17.7% of total)
ival-pow2: 7.0ms (10.3% of total)
ival-sinu: 3.0ms (4.4% of total)
ival-add: 2.0ms (2.9% of total)
ival-cosu: 2.0ms (2.9% of total)
ival-sub: 1.0ms (1.5% of total)
ival-sqrt: 1.0ms (1.5% of total)
ival-neg: 1.0ms (1.5% of total)
adjust: 0.0ms (0% of total)
ival-assert: 0.0ms (0% of total)
ival-true: 0.0ms (0% of total)
exact: 0.0ms (0% of total)

bsearch4.0ms (0%)

Memory
6.4MiB live, 6.4MiB allocated; 0ms collecting garbage
Algorithm
binary-search
Stop Event
narrow-enough
Steps
TimeLeftRight
2.0ms
9.112804763925627e+94
1.0348743593361386e+96
Compiler

Compiled 3 006 to 1 122 computations (62.7% saved)

bsearch94.0ms (0.3%)

Memory
-10.8MiB live, 78.6MiB allocated; 14ms collecting garbage
Algorithm
binary-search
Stop Event
narrow-enough
Steps
TimeLeftRight
79.0ms
3.3747431398438e-41
3.682578855859677e-40
Samples
73.0ms96×0valid
Compiler

Compiled 3 216 to 1 218 computations (62.1% saved)

Precisions
Click to see histograms. Total time spent on operations: 69.0ms
ival-sqrt: 39.0ms (56.5% of total)
ival-mult: 9.0ms (13% of total)
ival-pow2: 8.0ms (11.6% of total)
ival-div: 5.0ms (7.2% of total)
ival-sinu: 3.0ms (4.3% of total)
ival-add: 2.0ms (2.9% of total)
ival-cosu: 2.0ms (2.9% of total)
ival-sub: 1.0ms (1.4% of total)
ival-neg: 1.0ms (1.4% of total)
adjust: 0.0ms (0% of total)
ival-assert: 0.0ms (0% of total)
ival-true: 0.0ms (0% of total)
exact: 0.0ms (0% of total)

bsearch3.0ms (0%)

Memory
10.3MiB live, 10.3MiB allocated; 0ms collecting garbage
Algorithm
binary-search
Stop Event
narrow-enough
Steps
TimeLeftRight
3.0ms
3.3747431398438e-41
3.682578855859677e-40
Compiler

Compiled 3 198 to 1 200 computations (62.5% saved)

bsearch59.0ms (0.2%)

Memory
4.4MiB live, 49.2MiB allocated; 8ms collecting garbage
Algorithm
binary-search
Stop Event
narrow-enough
Steps
TimeLeftRight
54.0ms
8.935856284133006e-223
4.265642041674618e-222
Samples
48.0ms96×0valid
Compiler

Compiled 3 156 to 1 194 computations (62.2% saved)

Precisions
Click to see histograms. Total time spent on operations: 44.0ms
ival-mult: 22.0ms (50.2% of total)
ival-pow2: 8.0ms (18.3% of total)
ival-div: 5.0ms (11.4% of total)
ival-add: 2.0ms (4.6% of total)
ival-cosu: 2.0ms (4.6% of total)
ival-sinu: 2.0ms (4.6% of total)
ival-sub: 1.0ms (2.3% of total)
ival-sqrt: 1.0ms (2.3% of total)
ival-neg: 1.0ms (2.3% of total)
adjust: 0.0ms (0% of total)
ival-assert: 0.0ms (0% of total)
ival-true: 0.0ms (0% of total)
exact: 0.0ms (0% of total)

bsearch107.0ms (0.4%)

Memory
-7.9MiB live, 85.6MiB allocated; 21ms collecting garbage
Algorithm
binary-search
Stop Event
narrow-enough
Steps
TimeLeftRight
84.0ms
5.96906678429304e-55
7.442115826425939e-50
Samples
75.0ms144×0valid
Compiler

Compiled 4 641 to 1 770 computations (61.9% saved)

Precisions
Click to see histograms. Total time spent on operations: 69.0ms
ival-add: 26.0ms (37.5% of total)
ival-mult: 13.0ms (18.8% of total)
ival-pow2: 12.0ms (17.3% of total)
ival-div: 7.0ms (10.1% of total)
ival-sinu: 4.0ms (5.8% of total)
ival-cosu: 3.0ms (4.3% of total)
ival-sqrt: 2.0ms (2.9% of total)
ival-sub: 1.0ms (1.4% of total)
ival-neg: 1.0ms (1.4% of total)
adjust: 0.0ms (0% of total)
ival-assert: 0.0ms (0% of total)
ival-true: 0.0ms (0% of total)
exact: 0.0ms (0% of total)

bsearch1.0ms (0%)

Memory
1.5MiB live, 1.5MiB allocated; 0ms collecting garbage
Algorithm
binary-search
Stop Event
narrow-enough
Steps
TimeLeftRight
0.0ms
-2.0755751623145184e+58
-2.004771595357426e+58
Compiler

Compiled 186 to 60 computations (67.7% saved)

simplify85.0ms (0.3%)

Memory
34.4MiB live, 79.3MiB allocated; 11ms collecting garbage
Iterations

Useful iterations: 1 (0.0ms)

IterNodesCost
02946841
15136840
215576840
375996840
Stop Event
node limit
Calls
Call 1
Inputs
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(if (<=.f64 x-scale #s(literal 8500000000000000149610025186925362049119657682471384776704 binary64)) #s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (*.f64 y-scale #s(literal 4 binary64)) (hypot.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))))) #s(literal 1/4 binary64))) #s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (sqrt.f64 (*.f64 (+.f64 (pow.f64 (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b #s(approx (cos (* 1/180 (* (PI) angle))) (fma.f64 (*.f64 #s(literal -1/64800 binary64) (*.f64 angle angle)) (*.f64 (PI.f64) (PI.f64)) #s(literal 1 binary64)))) #s(literal 2 binary64))) #s(literal 2 binary64))))))
(if (<=.f64 x-scale #s(literal 155000000000000002267000122005202355119467230961069981696 binary64)) #s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (*.f64 y-scale #s(literal 4 binary64)) (hypot.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))))) #s(literal 1/4 binary64))) #s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (sqrt.f64 (*.f64 (+.f64 (pow.f64 (*.f64 a #s(approx (sin (* 1/180 (* (PI) angle))) (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64)))) #s(literal 2 binary64)) (pow.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) #s(literal 2 binary64))) #s(literal 2 binary64))))))
(if (<=.f64 x-scale #s(literal 155000000000000002267000122005202355119467230961069981696 binary64)) #s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 (*.f64 y-scale #s(literal 4 binary64)) (hypot.f64 (*.f64 b (cos.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))) (*.f64 a (sin.f64 (*.f64 #s(literal 1/180 binary64) (*.f64 (PI.f64) angle)))))) #s(literal 1/4 binary64))) #s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) (sqrt.f64 (*.f64 #s(literal 2 binary64) (fma.f64 (pow.f64 (sin.f64 (*.f64 (*.f64 (PI.f64) angle) #s(literal 1/180 binary64))) #s(literal 2 binary64)) (*.f64 a a) (*.f64 (pow.f64 #s(approx (cos (* -1/180 (* (PI) angle))) #s(literal 1 binary64)) #s(literal 2 binary64)) (*.f64 b b))))))))
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(if (<=.f64 b #s(literal 8595487354884187/6511732844609232689531105264376228317524178049136629062886970519300817615056281319845148633663627237053642490813899648872938282865350942461292339894854326216889802323744154842249099888585755883524379898570201759747744871130348106729652224 binary64)) #s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) #s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) (neg.f64 (*.f64 (*.f64 #s(approx (cos (* (* (PI) angle) -1/180)) (fma.f64 (*.f64 #s(literal -1/64800 binary64) (*.f64 angle angle)) (*.f64 (PI.f64) (PI.f64)) #s(literal 1 binary64))) (sqrt.f64 #s(literal 2 binary64))) b))))) #s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) (*.f64 (/.f64 (*.f64 (*.f64 b x-scale) (*.f64 (*.f64 y-scale (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64)))) (fabs.f64 x-scale)) #s(literal 1/4 binary64)))))
(if (<=.f64 b #s(literal 4417117661945961/3450873173395281893717377931138512726225554486085193277581262111899648 binary64)) #s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) #s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) #s(approx (neg (* a (* (sin (* 1/180 (* angle (PI)))) (sqrt 2)))) (*.f64 (*.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (PI.f64)) angle) a) #s(literal -1/180 binary64)))))) #s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (* 1/4 (* (* (sqrt 8) y-scale) x-scale)) (/ (* (sqrt (+ (* (* b (cos (* 1/180 (* (PI) angle)))) (* b (cos (* 1/180 (* (PI) angle))))) (* (* a (sin (* 1/180 (* (PI) angle)))) (* a (sin (* 1/180 (* (PI) angle))))))) (sqrt 2)) (fabs x-scale))) (*.f64 (/.f64 (*.f64 (*.f64 b x-scale) (*.f64 (*.f64 y-scale (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 #s(literal 8 binary64)))) (fabs.f64 x-scale)) #s(literal 1/4 binary64)))))
(if (<=.f64 angle #s(literal -20500000000000000032872043119487297566469199812896258785280 binary64)) #s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 (sqrt.f64 #s(literal 8 binary64)) y-scale)) #s(approx (sqrt (* 2 (+ (* (pow (sin (* (* (PI) angle) 1/180)) 2) (* a a)) (* (pow (cos (* -1/180 (* (PI) angle))) 2) (* b b))))) #s(approx (neg (* a (* (sin (* 1/180 (* angle (PI)))) (sqrt 2)))) (*.f64 (*.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (PI.f64)) angle) a) #s(literal -1/180 binary64)))))) #s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (* (* 1/4 b) y-scale) 4) (*.f64 y-scale b))))
#s(approx (/ (neg (sqrt (* (* (* 2 (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) (* (* b a) (* b (neg a)))) (+ (+ (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) (sqrt (+ (pow (- (/ (/ (+ (pow (* a (sin (* (/ angle 180) (PI)))) 2) (pow (* b (cos (* (/ angle 180) (PI)))) 2)) x-scale) x-scale) (/ (/ (+ (pow (* a (cos (* (/ angle 180) (PI)))) 2) (pow (* b (sin (* (/ angle 180) (PI)))) 2)) y-scale) y-scale)) 2) (pow (/ (/ (* (* (* 2 (- (pow b 2) (pow a 2))) (sin (* (/ angle 180) (PI)))) (cos (* (/ angle 180) (PI)))) x-scale) y-scale) 2))))))) (/ (* 4 (* (* b a) (* b (neg a)))) (pow (* x-scale y-scale) 2))) #s(approx (* (* (* 1/4 b) y-scale) 4) (*.f64 y-scale b)))
Outputs
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derivations2.9s (10.5%)

Memory
-23.4MiB live, 2 566.2MiB allocated; 291ms collecting garbage
Stop Event
fuel
Compiler

Compiled 6 977 to 301 computations (95.7% saved)

preprocess182.0ms (0.6%)

Memory
20.8MiB live, 258.4MiB allocated; 29ms collecting garbage
Remove

(abs a)

(abs b)

Compiler

Compiled 19 468 to 1 842 computations (90.5% saved)

end0.0ms (0%)

Memory
0.0MiB live, 0.0MiB allocated; 0ms collecting garbage

Profiling

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