Lanczos kernel

Time bar (total: 4.8s)

start0.0ms (0.0%)

Memory
0.2MiB live, 0.2MiB allocated; 0ms collecting garbage

analyze22.0ms (0.5%)

Memory
-14.2MiB live, 32.5MiB allocated; 9ms collecting garbage
Algorithm
search
Search
ProbabilityValidUnknownPreconditionInfiniteDomainCan'tIter
0.0%0.0%0.0%100.0%0.0%0.0%0.0%0
0.0%0.0%0.0%100.0%0.0%0.0%0.0%1
50.0%0.0%0.0%100.0%0.0%0.0%0.0%2
50.0%0.0%0.0%100.0%0.0%0.0%0.0%3
75.0%0.0%0.0%100.0%0.0%0.0%0.0%4
75.0%0.0%0.0%100.0%0.0%0.0%0.0%5
87.5%0.0%0.0%100.0%0.0%0.0%0.0%6
87.5%0.0%0.0%100.0%0.0%0.0%0.0%7
93.7%0.0%0.0%100.0%0.0%0.0%0.0%8
93.7%0.0%0.0%100.0%0.0%0.0%0.0%9
96.9%0.0%0.0%100.0%0.0%0.0%0.0%10
96.9%0.0%0.0%100.0%0.0%0.0%0.0%11
98.4%0.0%0.0%100.0%0.0%0.0%0.0%12
Compiler

Compiled 37 to 21 computations (43.2% saved)

sample1.0s (21.8%)

Memory
97.8MiB live, 1 563.0MiB allocated; 373ms collecting garbage
Samples
766.0ms8 254×0valid
0.0ms1valid
Precisions
Click to see histograms. Total time spent on operations: 533.0ms
ival-div!: 142.0ms (26.6% of total)
ival-mult!: 135.0ms (25.3% of total)
ival-sin: 129.0ms (24.2% of total)
ival-sinu: 124.0ms (23.3% of total)
adjust: 2.0ms (0.4% of total)
ival-pi: 0.0ms (0.0% of total)
ival-assert: 0.0ms (0.0% of total)
ival-and: 0.0ms (0.0% of total)
ival-<=: 0.0ms (0.0% of total)
Bogosity

preprocess30.0ms (0.6%)

Memory
-35.7MiB live, 54.0MiB allocated; 9ms collecting garbage
Iterations

Useful iterations: 2 (0.0ms)

IterNodesCost
032136
1156128
21235116
Stop Event
node-limit
Alt Table
Click to see full alt table
StatusAccuracyProgram
98.1%
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
Symmetry

(abs x)

(abs tau)

Compiler

Compiled 42 to 20 computations (52.4% saved)

sample0.0ms (0.0%)

Memory
0.3MiB live, 0.3MiB allocated; 0ms collecting garbage
Calls
Call 1
Inputs
(PI)
Outputs
#s(literal 13176795/4194304 binary32)
Samples
0.0ms0valid
Compiler

Compiled 3 to 3 computations (0.0% saved)

Precisions
Click to see histograms. Total time spent on operations: 0.0ms
adjust: 0.0ms (0.0% of total)

series46.0ms (1.0%)

Memory
19.9MiB live, 74.1MiB allocated; 7ms collecting garbage
Iterations

Useful iterations: 0 (0.0ms)

IterNodesCost
02501161
Stop Event
iter-limit
Counts
10 → 33
Calls
Call 1
Inputs
x
(PI.f32)
(*.f32 x (PI.f32))
tau
(*.f32 (*.f32 x (PI.f32)) tau)
(sin.f32 (*.f32 (*.f32 x (PI.f32)) tau))
(/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau))
(sin.f32 (*.f32 x (PI.f32)))
(/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32)))
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
Outputs
#s(approx x x)
#s(approx (* x (PI)) (*.f32 x (PI.f32)))
#s(approx (* (* x (PI)) tau) (*.f32 tau (*.f32 x (PI.f32))))
#s(approx (sin (* (* x (PI)) tau)) (*.f32 x (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 tau #s(literal 3 binary32)) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32)))) (*.f32 tau (PI.f32)))))
#s(approx (sin (* (* x (PI)) tau)) (*.f32 x (fma.f32 tau (PI.f32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 tau #s(literal 3 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32))) (*.f32 #s(literal 1/120 binary32) (*.f32 (pow.f32 tau #s(literal 5 binary32)) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 5 binary32))))))))))
#s(approx (sin (* (* x (PI)) tau)) (*.f32 x (fma.f32 tau (PI.f32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 tau #s(literal 3 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32))) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal -1/5040 binary32) (*.f32 (pow.f32 tau #s(literal 7 binary32)) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 7 binary32)))) (*.f32 #s(literal 1/120 binary32) (*.f32 (pow.f32 tau #s(literal 5 binary32)) (pow.f32 (PI.f32) #s(literal 5 binary32)))))))))))
#s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))
#s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (+.f32 #s(literal 1 binary32) (*.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32)))))))
#s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (+.f32 #s(literal 1 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32))) (*.f32 #s(literal 1/120 binary32) (*.f32 (pow.f32 tau #s(literal 4 binary32)) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 4 binary32)))))))))
#s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (+.f32 #s(literal 1 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32))) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal -1/5040 binary32) (*.f32 (pow.f32 tau #s(literal 6 binary32)) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 6 binary32)))) (*.f32 #s(literal 1/120 binary32) (*.f32 (pow.f32 tau #s(literal 4 binary32)) (pow.f32 (PI.f32) #s(literal 4 binary32))))))))))
#s(approx (sin (* x (PI))) (*.f32 x (+.f32 (PI.f32) (*.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32)))))))
#s(approx (sin (* x (PI))) (*.f32 x (+.f32 (PI.f32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (pow.f32 (PI.f32) #s(literal 3 binary32)) (*.f32 #s(literal 1/120 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 5 binary32)))))))))
#s(approx (sin (* x (PI))) (*.f32 x (+.f32 (PI.f32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (pow.f32 (PI.f32) #s(literal 3 binary32)) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal -1/5040 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 7 binary32))) (*.f32 #s(literal 1/120 binary32) (pow.f32 (PI.f32) #s(literal 5 binary32))))))))))
#s(approx (/ (sin (* x (PI))) (* x (PI))) (+.f32 #s(literal 1 binary32) (*.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32))))))
#s(approx (/ (sin (* x (PI))) (* x (PI))) (+.f32 #s(literal 1 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (pow.f32 (PI.f32) #s(literal 2 binary32)) (*.f32 #s(literal 1/120 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 4 binary32))))))))
#s(approx (/ (sin (* x (PI))) (* x (PI))) (+.f32 #s(literal 1 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (pow.f32 (PI.f32) #s(literal 2 binary32)) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal -1/5040 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 6 binary32))) (*.f32 #s(literal 1/120 binary32) (pow.f32 (PI.f32) #s(literal 4 binary32)))))))))
#s(approx (* (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (/ (sin (* x (PI))) (* x (PI)))) (+.f32 #s(literal 1 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32))) (*.f32 #s(literal -1/6 binary32) (pow.f32 (PI.f32) #s(literal 2 binary32)))))))
#s(approx (* (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (/ (sin (* x (PI))) (* x (PI)))) (+.f32 #s(literal 1 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32))) (fma.f32 #s(literal -1/6 binary32) (pow.f32 (PI.f32) #s(literal 2 binary32)) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal 1/120 binary32) (*.f32 (pow.f32 tau #s(literal 4 binary32)) (pow.f32 (PI.f32) #s(literal 4 binary32))) (fma.f32 #s(literal 1/120 binary32) (pow.f32 (PI.f32) #s(literal 4 binary32)) (*.f32 #s(literal 1/36 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 4 binary32))))))))))))
#s(approx (* (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (/ (sin (* x (PI))) (* x (PI)))) (+.f32 #s(literal 1 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32))) (fma.f32 #s(literal -1/6 binary32) (pow.f32 (PI.f32) #s(literal 2 binary32)) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal 1/120 binary32) (*.f32 (pow.f32 tau #s(literal 4 binary32)) (pow.f32 (PI.f32) #s(literal 4 binary32))) (fma.f32 #s(literal 1/120 binary32) (pow.f32 (PI.f32) #s(literal 4 binary32)) (fma.f32 #s(literal 1/36 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 4 binary32))) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal -1/720 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 6 binary32))) (fma.f32 #s(literal -1/720 binary32) (*.f32 (pow.f32 tau #s(literal 4 binary32)) (pow.f32 (PI.f32) #s(literal 6 binary32))) (fma.f32 #s(literal -1/5040 binary32) (*.f32 (pow.f32 tau #s(literal 6 binary32)) (pow.f32 (PI.f32) #s(literal 6 binary32))) (*.f32 #s(literal -1/5040 binary32) (pow.f32 (PI.f32) #s(literal 6 binary32))))))))))))))))
#s(approx (sin (* (* x (PI)) tau)) (sin.f32 (*.f32 tau (*.f32 x (PI.f32)))))
#s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (/.f32 (sin.f32 (*.f32 tau (*.f32 x (PI.f32)))) (*.f32 tau (*.f32 x (PI.f32)))))
#s(approx (sin (* x (PI))) (sin.f32 (*.f32 x (PI.f32))))
#s(approx (/ (sin (* x (PI))) (* x (PI))) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
#s(approx (* (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (/ (sin (* x (PI))) (* x (PI)))) (/.f32 (*.f32 (sin.f32 (*.f32 tau (*.f32 x (PI.f32)))) (sin.f32 (*.f32 x (PI.f32)))) (*.f32 tau (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32))))))
#s(approx tau tau)
#s(approx (sin (* (* x (PI)) tau)) (*.f32 tau (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (*.f32 (pow.f32 x #s(literal 3 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32)))) (*.f32 x (PI.f32)))))
#s(approx (sin (* (* x (PI)) tau)) (*.f32 tau (fma.f32 x (PI.f32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 x #s(literal 3 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32))) (*.f32 #s(literal 1/120 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (*.f32 (pow.f32 x #s(literal 5 binary32)) (pow.f32 (PI.f32) #s(literal 5 binary32))))))))))
#s(approx (sin (* (* x (PI)) tau)) (*.f32 tau (fma.f32 x (PI.f32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 x #s(literal 3 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32))) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (fma.f32 #s(literal -1/5040 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (*.f32 (pow.f32 x #s(literal 7 binary32)) (pow.f32 (PI.f32) #s(literal 7 binary32)))) (*.f32 #s(literal 1/120 binary32) (*.f32 (pow.f32 x #s(literal 5 binary32)) (pow.f32 (PI.f32) #s(literal 5 binary32)))))))))))
#s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (+.f32 #s(literal 1 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32))) (*.f32 #s(literal 1/120 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (*.f32 (pow.f32 x #s(literal 4 binary32)) (pow.f32 (PI.f32) #s(literal 4 binary32)))))))))
#s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (+.f32 #s(literal 1 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32))) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (fma.f32 #s(literal -1/5040 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (*.f32 (pow.f32 x #s(literal 6 binary32)) (pow.f32 (PI.f32) #s(literal 6 binary32)))) (*.f32 #s(literal 1/120 binary32) (*.f32 (pow.f32 x #s(literal 4 binary32)) (pow.f32 (PI.f32) #s(literal 4 binary32))))))))))
#s(approx (* (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (/ (sin (* x (PI))) (* x (PI)))) (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (*.f32 x (*.f32 (PI.f32) (sin.f32 (*.f32 x (PI.f32)))))) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32)))))
#s(approx (* (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (/ (sin (* x (PI))) (* x (PI)))) (fma.f32 (pow.f32 tau #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (*.f32 x (*.f32 (PI.f32) (sin.f32 (*.f32 x (PI.f32))))) (*.f32 #s(literal 1/120 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (*.f32 (pow.f32 x #s(literal 3 binary32)) (*.f32 (pow.f32 (PI.f32) #s(literal 3 binary32)) (sin.f32 (*.f32 x (PI.f32)))))))) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32)))))
#s(approx (* (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (/ (sin (* x (PI))) (* x (PI)))) (fma.f32 (pow.f32 tau #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (*.f32 x (*.f32 (PI.f32) (sin.f32 (*.f32 x (PI.f32))))) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (fma.f32 #s(literal -1/5040 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (*.f32 (pow.f32 x #s(literal 5 binary32)) (*.f32 (pow.f32 (PI.f32) #s(literal 5 binary32)) (sin.f32 (*.f32 x (PI.f32)))))) (*.f32 #s(literal 1/120 binary32) (*.f32 (pow.f32 x #s(literal 3 binary32)) (*.f32 (pow.f32 (PI.f32) #s(literal 3 binary32)) (sin.f32 (*.f32 x (PI.f32))))))))) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32)))))
Calls

6 calls:

TimeVariablePoint
8.0ms
tau
-inf
6.0ms
tau
inf
6.0ms
x
-inf
4.0ms
x
inf
4.0ms
x
0

rewrite148.0ms (3.1%)

Memory
17.0MiB live, 199.1MiB allocated; 16ms collecting garbage
Iterations

Useful iterations: 2 (0.0ms)

IterNodesCost
01062
01862
16262
237360
3388560
0445760
Stop Event
iter-limit
node-limit
iter-limit
Counts
10 → 398
Calls
Call 1
Inputs
x
(PI.f32)
(*.f32 x (PI.f32))
tau
(*.f32 (*.f32 x (PI.f32)) tau)
(sin.f32 (*.f32 (*.f32 x (PI.f32)) tau))
(/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau))
(sin.f32 (*.f32 x (PI.f32)))
(/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32)))
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
Outputs
x
(PI.f32)
(log.f32 (exp.f32 (*.f32 (PI.f32) x)))
(*.f32 (*.f32 (*.f32 (pow.f32 (PI.f32) #s(literal 2/3 binary32)) x) (pow.f32 (cbrt.f32 (PI.f32)) #s(literal 2/3 binary32))) (pow.f32 (PI.f32) #s(literal 1/9 binary32)))
(*.f32 (neg.f32 (neg.f32 x)) (PI.f32))
(*.f32 (neg.f32 (neg.f32 (PI.f32))) x)
(*.f32 (*.f32 (pow.f32 (PI.f32) #s(literal 2/3 binary32)) x) (cbrt.f32 (PI.f32)))
(*.f32 (*.f32 (cbrt.f32 (PI.f32)) x) (pow.f32 (PI.f32) #s(literal 2/3 binary32)))
(*.f32 (neg.f32 x) (neg.f32 (PI.f32)))
(*.f32 (cbrt.f32 (fabs.f32 (PI.f32))) (*.f32 (cbrt.f32 (fabs.f32 (PI.f32))) (*.f32 (cbrt.f32 (PI.f32)) x)))
(*.f32 (cbrt.f32 (neg.f32 (PI.f32))) (*.f32 (cbrt.f32 (neg.f32 (PI.f32))) (*.f32 (cbrt.f32 (PI.f32)) x)))
(*.f32 (neg.f32 (PI.f32)) (neg.f32 x))
(*.f32 (pow.f32 (PI.f32) #s(literal 2/3 binary32)) (*.f32 (cbrt.f32 (PI.f32)) x))
(*.f32 (cbrt.f32 (PI.f32)) (*.f32 (cbrt.f32 (PI.f32)) (*.f32 (cbrt.f32 (PI.f32)) x)))
(*.f32 (cbrt.f32 (PI.f32)) (*.f32 (pow.f32 (PI.f32) #s(literal 2/3 binary32)) x))
(*.f32 (PI.f32) (neg.f32 (neg.f32 x)))
(*.f32 (PI.f32) x)
(*.f32 x (neg.f32 (neg.f32 (PI.f32))))
(*.f32 x (log.f32 (exp.f32 (PI.f32))))
(*.f32 x (PI.f32))
(neg.f32 (*.f32 (neg.f32 x) (PI.f32)))
tau
(log.f32 (pow.f32 (exp.f32 (PI.f32)) (*.f32 tau x)))
(log.f32 (pow.f32 (exp.f32 (*.f32 (PI.f32) x)) tau))
(*.f32 (*.f32 (*.f32 tau x) (pow.f32 (PI.f32) #s(literal 2/3 binary32))) (cbrt.f32 (PI.f32)))
(*.f32 (*.f32 (*.f32 tau x) (cbrt.f32 (PI.f32))) (pow.f32 (PI.f32) #s(literal 2/3 binary32)))
(*.f32 (*.f32 tau (*.f32 (pow.f32 (PI.f32) #s(literal 2/3 binary32)) x)) (cbrt.f32 (PI.f32)))
(*.f32 (*.f32 tau (pow.f32 (PI.f32) #s(literal 2/3 binary32))) (*.f32 (cbrt.f32 (PI.f32)) x))
(*.f32 (neg.f32 (neg.f32 tau)) (*.f32 (PI.f32) x))
(*.f32 (neg.f32 (neg.f32 x)) (*.f32 tau (PI.f32)))
(*.f32 (*.f32 (pow.f32 (PI.f32) #s(literal 2/3 binary32)) x) (*.f32 (cbrt.f32 (PI.f32)) tau))
(*.f32 (*.f32 tau x) (PI.f32))
(*.f32 (neg.f32 tau) (*.f32 (neg.f32 x) (PI.f32)))
(*.f32 (neg.f32 x) (*.f32 (neg.f32 tau) (PI.f32)))
(*.f32 (*.f32 tau (PI.f32)) x)
(*.f32 (*.f32 (neg.f32 x) (PI.f32)) (neg.f32 tau))
(*.f32 (pow.f32 (PI.f32) #s(literal 2/3 binary32)) (*.f32 (*.f32 (cbrt.f32 (PI.f32)) tau) x))
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(/.f32 (*.f32 (-.f32 (cos.f32 (*.f32 (PI.f32) (-.f32 (*.f32 tau x) x))) (cos.f32 (*.f32 (PI.f32) (fma.f32 tau x x)))) #s(literal 1 binary32)) (*.f32 #s(literal 2 binary32) (*.f32 (*.f32 (*.f32 (PI.f32) x) x) (*.f32 tau (PI.f32)))))
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (pow.f32 (PI.f32) #s(literal 2/3 binary32)) x)) (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) x)) (*.f32 (cbrt.f32 (PI.f32)) (*.f32 tau (PI.f32))))
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (pow.f32 (PI.f32) #s(literal 2/3 binary32)) x)) (sin.f32 (*.f32 (*.f32 (neg.f32 x) tau) (PI.f32)))) (*.f32 (cbrt.f32 (PI.f32)) (*.f32 (*.f32 (neg.f32 x) tau) (PI.f32))))
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (pow.f32 (PI.f32) #s(literal 2/3 binary32)) x)) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) (*.f32 (cbrt.f32 (PI.f32)) (*.f32 tau (*.f32 (PI.f32) x))))
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (PI.f32)) (sin.f32 (*.f32 (*.f32 (neg.f32 x) tau) (PI.f32)))) (*.f32 x (*.f32 (*.f32 (neg.f32 x) tau) (PI.f32))))
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (PI.f32)) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) (*.f32 (*.f32 tau (*.f32 (PI.f32) x)) x))
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (neg.f32 x)) (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) x)) (*.f32 (neg.f32 (PI.f32)) (*.f32 tau (PI.f32))))
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (neg.f32 x)) (sin.f32 (*.f32 (*.f32 (neg.f32 x) tau) (PI.f32)))) (*.f32 (neg.f32 (PI.f32)) (*.f32 (*.f32 (neg.f32 x) tau) (PI.f32))))
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (neg.f32 x)) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) (*.f32 (neg.f32 (PI.f32)) (*.f32 tau (*.f32 (PI.f32) x))))
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) x)) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
(/.f32 (*.f32 (sin.f32 (*.f32 (neg.f32 x) (PI.f32))) (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) x)) (*.f32 (*.f32 (PI.f32) (*.f32 (PI.f32) x)) (neg.f32 tau)))
(/.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) x)) (*.f32 (*.f32 tau (*.f32 (PI.f32) x)) (PI.f32)))
(/.f32 (neg.f32 (*.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (*.f32 x x) (*.f32 (PI.f32) (PI.f32)))))) (neg.f32 tau))
(/.f32 (neg.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (*.f32 tau (*.f32 (PI.f32) x)) (PI.f32))))) (neg.f32 x))
(/.f32 (neg.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (*.f32 tau (*.f32 (PI.f32) x)) x)))) (neg.f32 (PI.f32)))
(/.f32 (neg.f32 (/.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) (*.f32 x (*.f32 (PI.f32) x)))) (*.f32 (neg.f32 tau) (PI.f32)))
(/.f32 (neg.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (sin.f32 (*.f32 (*.f32 (neg.f32 x) tau) (PI.f32))))) (neg.f32 (*.f32 (*.f32 (PI.f32) (*.f32 (PI.f32) x)) (neg.f32 tau))))
(/.f32 (neg.f32 (*.f32 (sin.f32 (*.f32 (*.f32 (neg.f32 x) tau) (PI.f32))) (sin.f32 (*.f32 (neg.f32 x) (PI.f32))))) (*.f32 (*.f32 (*.f32 (PI.f32) x) x) (*.f32 (neg.f32 tau) (PI.f32))))
(/.f32 (*.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (*.f32 x x) (*.f32 (PI.f32) (PI.f32))))) tau)
(/.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (*.f32 tau (*.f32 (PI.f32) x)) (PI.f32)))) x)
(/.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (*.f32 tau (*.f32 (PI.f32) x)) x))) (PI.f32))
(/.f32 (/.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) (*.f32 x (*.f32 (PI.f32) x))) (*.f32 tau (PI.f32)))
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (sin.f32 (*.f32 (*.f32 (neg.f32 x) tau) (PI.f32)))) (*.f32 (*.f32 (PI.f32) (*.f32 (PI.f32) x)) (neg.f32 tau)))
(/.f32 (*.f32 (sin.f32 (*.f32 (*.f32 (neg.f32 x) tau) (PI.f32))) (sin.f32 (*.f32 (neg.f32 x) (PI.f32)))) (*.f32 (*.f32 (*.f32 (PI.f32) x) x) (*.f32 tau (PI.f32))))
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) (*.f32 (*.f32 tau (*.f32 (PI.f32) x)) (PI.f32)))
(/.f32 (*.f32 (sin.f32 (*.f32 (*.f32 (neg.f32 x) tau) (PI.f32))) (sin.f32 (*.f32 (PI.f32) x))) (*.f32 (*.f32 (*.f32 (PI.f32) x) x) (*.f32 (neg.f32 tau) (PI.f32))))
(/.f32 (*.f32 (sin.f32 (*.f32 (*.f32 (neg.f32 x) tau) (PI.f32))) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 tau (*.f32 (PI.f32) x)))) (*.f32 (neg.f32 x) (PI.f32)))
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 (neg.f32 x) tau) (PI.f32))) (*.f32 (PI.f32) x)) (sin.f32 (*.f32 (PI.f32) x))) (*.f32 (*.f32 (neg.f32 x) tau) (PI.f32)))
(/.f32 (-.f32 (cos.f32 (*.f32 (PI.f32) (-.f32 (*.f32 tau x) x))) (cos.f32 (*.f32 (PI.f32) (fma.f32 tau x x)))) (*.f32 #s(literal 2 binary32) (*.f32 (*.f32 (*.f32 (PI.f32) x) x) (*.f32 tau (PI.f32)))))
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 tau (*.f32 (PI.f32) x))) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) (*.f32 (PI.f32) x))
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (PI.f32) x)) (sin.f32 (*.f32 (PI.f32) x))) (*.f32 tau (*.f32 (PI.f32) x)))
(/.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) (*.f32 (*.f32 (*.f32 (PI.f32) x) x) (*.f32 tau (PI.f32))))
(/.f32 #s(literal 1 binary32) (/.f32 tau (*.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (*.f32 x x) (*.f32 (PI.f32) (PI.f32)))))))
(/.f32 #s(literal 1 binary32) (/.f32 x (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (*.f32 tau (*.f32 (PI.f32) x)) (PI.f32))))))
(/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (*.f32 tau (*.f32 (PI.f32) x)) x)))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 tau (PI.f32)) (/.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) (*.f32 x (*.f32 (PI.f32) x)))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 (*.f32 (*.f32 (PI.f32) x) x) (*.f32 tau (PI.f32))) (*.f32 (sin.f32 (*.f32 (*.f32 (neg.f32 x) tau) (PI.f32))) (sin.f32 (*.f32 (neg.f32 x) (PI.f32))))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 (*.f32 (PI.f32) (*.f32 (PI.f32) x)) (neg.f32 tau)) (*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (sin.f32 (*.f32 (*.f32 (neg.f32 x) tau) (PI.f32))))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 (*.f32 (*.f32 (PI.f32) x) x) (*.f32 (neg.f32 tau) (PI.f32))) (*.f32 (sin.f32 (*.f32 (*.f32 (neg.f32 x) tau) (PI.f32))) (sin.f32 (*.f32 (PI.f32) x)))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 (*.f32 tau (*.f32 (PI.f32) x)) (PI.f32)) (*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 (neg.f32 x) (PI.f32)) (*.f32 (sin.f32 (*.f32 (*.f32 (neg.f32 x) tau) (PI.f32))) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 tau (*.f32 (PI.f32) x))))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 (*.f32 (neg.f32 x) tau) (PI.f32)) (*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 (neg.f32 x) tau) (PI.f32))) (*.f32 (PI.f32) x)) (sin.f32 (*.f32 (PI.f32) x)))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 (PI.f32) x) (*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 tau (*.f32 (PI.f32) x))) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 tau (*.f32 (PI.f32) x)) (*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (PI.f32) x)) (sin.f32 (*.f32 (PI.f32) x)))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 (*.f32 (*.f32 (PI.f32) x) x) (*.f32 tau (PI.f32))) (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))))))
(neg.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (neg.f32 x) (PI.f32))) (*.f32 (PI.f32) x)) (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 tau (*.f32 (PI.f32) x)))))
(neg.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 (neg.f32 x) tau) (PI.f32))) (*.f32 tau (*.f32 (PI.f32) x))) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x))))
(neg.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x)) (/.f32 (sin.f32 (*.f32 (*.f32 (neg.f32 x) tau) (PI.f32))) (*.f32 tau (*.f32 (PI.f32) x)))))
(neg.f32 (*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 tau (*.f32 (PI.f32) x))) (/.f32 (sin.f32 (*.f32 (neg.f32 x) (PI.f32))) (*.f32 (PI.f32) x))))
(neg.f32 (/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 tau (*.f32 (PI.f32) x))) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) (*.f32 (neg.f32 x) (PI.f32))))
(neg.f32 (/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (PI.f32) x)) (sin.f32 (*.f32 (PI.f32) x))) (*.f32 (*.f32 (neg.f32 x) tau) (PI.f32))))
(neg.f32 (/.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) (*.f32 (*.f32 (*.f32 (PI.f32) x) x) (*.f32 (neg.f32 tau) (PI.f32)))))
(neg.f32 (/.f32 (*.f32 (sin.f32 (*.f32 (*.f32 (neg.f32 x) tau) (PI.f32))) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 tau (*.f32 (PI.f32) x)))) (*.f32 (PI.f32) x)))
(neg.f32 (/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 (neg.f32 x) tau) (PI.f32))) (*.f32 (PI.f32) x)) (sin.f32 (*.f32 (PI.f32) x))) (*.f32 tau (*.f32 (PI.f32) x))))
(neg.f32 (/.f32 (*.f32 (sin.f32 (*.f32 (*.f32 (neg.f32 x) tau) (PI.f32))) (sin.f32 (*.f32 (PI.f32) x))) (*.f32 (*.f32 (*.f32 (PI.f32) x) x) (*.f32 tau (PI.f32)))))

eval33.0ms (0.7%)

Memory
-13.6MiB live, 75.1MiB allocated; 7ms collecting garbage
Compiler

Compiled 11 081 to 1 396 computations (87.4% saved)

prune28.0ms (0.6%)

Memory
-14.5MiB live, 85.5MiB allocated; 5ms collecting garbage
Pruning

30 alts after pruning (30 fresh and 0 done)

PrunedKeptTotal
New39830428
Fresh000
Picked101
Done000
Total39930429
Accuracy
99.8%
Counts
429 → 30
Alt Table
Click to see full alt table
StatusAccuracyProgram
97.7%
(/.f32 (/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (PI.f32) x)) (sin.f32 (*.f32 (PI.f32) x))) (PI.f32)) (*.f32 tau x))
96.8%
(/.f32 (/.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) tau) (*.f32 (*.f32 x x) (*.f32 (PI.f32) (PI.f32))))
97.5%
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 (neg.f32 x) tau) (PI.f32))) (*.f32 (PI.f32) x)) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x))) (neg.f32 tau))
97.4%
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 (neg.f32 x) tau) (PI.f32))) (*.f32 (PI.f32) x)) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x)) (*.f32 (neg.f32 tau) (PI.f32)))
97.8%
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 tau (*.f32 (PI.f32) x))) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) (*.f32 (PI.f32) x))
97.6%
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (PI.f32)) (sin.f32 (*.f32 (*.f32 (neg.f32 x) tau) (PI.f32)))) (*.f32 x (*.f32 (*.f32 (neg.f32 x) tau) (PI.f32))))
96.8%
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) x)) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
97.5%
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (*.f32 tau (*.f32 (PI.f32) x)) (PI.f32))) (sin.f32 (*.f32 (PI.f32) x))) x)
97.6%
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (*.f32 tau (*.f32 (PI.f32) x)) x)) (sin.f32 (*.f32 (PI.f32) x))) (PI.f32))
98.0%
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (PI.f32) x)) (sin.f32 (*.f32 (PI.f32) x))) (*.f32 tau (*.f32 (PI.f32) x)))
65.1%
(/.f32 (*.f32 (-.f32 (cos.f32 (*.f32 (PI.f32) (-.f32 (*.f32 tau x) x))) (cos.f32 (*.f32 (PI.f32) (fma.f32 tau x x)))) (/.f32 #s(literal 1 binary32) (*.f32 (*.f32 (*.f32 (PI.f32) x) x) (*.f32 tau (PI.f32))))) #s(literal 2 binary32))
97.2%
(/.f32 (*.f32 (sin.f32 (*.f32 (*.f32 (neg.f32 x) tau) (PI.f32))) (sin.f32 (*.f32 (neg.f32 x) (PI.f32)))) (*.f32 (*.f32 (*.f32 (PI.f32) x) x) (*.f32 tau (PI.f32))))
97.3%
(/.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) (*.f32 (*.f32 (*.f32 (PI.f32) x) x) (*.f32 tau (PI.f32))))
77.9%
(*.f32 (/.f32 (sin.f32 (fma.f32 (fma.f32 tau x #s(literal 1 binary32)) (PI.f32) (PI.f32))) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
79.8%
(*.f32 (/.f32 (sin.f32 (fma.f32 (*.f32 tau x) (neg.f32 (PI.f32)) (PI.f32))) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
97.9%
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (PI.f32)))
77.0%
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (fma.f32 (neg.f32 x) (PI.f32) (PI.f32))) (*.f32 x (PI.f32))))
74.7%
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (+.f32 (fma.f32 (PI.f32) x (PI.f32)) (PI.f32))) (*.f32 x (PI.f32))))
86.0%
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) #s(approx (/ (sin (* x (PI))) (* x (PI))) (+.f32 #s(literal 1 binary32) (*.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32)))))))
98.1%
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 tau x) (PI.f32))) (*.f32 (*.f32 tau x) (PI.f32))) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
97.3%
(*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (*.f32 (*.f32 (PI.f32) x) x) (*.f32 tau (PI.f32)))) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))))
97.5%
(*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (*.f32 tau (*.f32 (PI.f32) x)) (PI.f32))))
97.3%
(*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (*.f32 (*.f32 (PI.f32) x) x) (*.f32 tau (PI.f32)))) (sin.f32 (*.f32 (PI.f32) x)))
97.4%
(*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (PI.f32)) (/.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 tau (*.f32 (PI.f32) x))) x))
81.3%
(*.f32 (/.f32 (sin.f32 (neg.f32 (fma.f32 (*.f32 tau (PI.f32)) x (PI.f32)))) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
98.0%
(*.f32 (/.f32 (sin.f32 (log.f32 (pow.f32 (exp.f32 (*.f32 (PI.f32) x)) tau))) (log.f32 (pow.f32 (exp.f32 (*.f32 (PI.f32) x)) tau))) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
78.0%
(*.f32 (/.f32 (cos.f32 (fma.f32 (fma.f32 tau x #s(literal 1 binary32)) (PI.f32) (*.f32 (PI.f32) #s(literal 1/2 binary32)))) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
82.1%
(*.f32 (/.f32 (cos.f32 (fma.f32 (*.f32 (neg.f32 tau) (PI.f32)) x (*.f32 (PI.f32) #s(literal 1/2 binary32)))) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
65.7%
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
79.8%
#s(approx (* (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (/ (sin (* x (PI))) (* x (PI)))) (+.f32 #s(literal 1 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32))) (*.f32 #s(literal -1/6 binary32) (pow.f32 (PI.f32) #s(literal 2 binary32)))))))
Compiler

Compiled 1 410 to 804 computations (43.0% saved)

sample0.0ms (0.0%)

Memory
1.6MiB live, 1.6MiB allocated; 0ms collecting garbage
Calls
Call 1
Inputs
(PI)
1
Outputs
#s(literal 13176795/4194304 binary32)
#s(literal 1 binary32)
Samples
0.0ms0valid
Compiler

Compiled 4 to 4 computations (0.0% saved)

Precisions
Click to see histograms. Total time spent on operations: 0.0ms
adjust: 0.0ms (0.0% of total)

series78.0ms (1.6%)

Memory
31.2MiB live, 159.2MiB allocated; 21ms collecting garbage
Iterations

Useful iterations: 0 (0.0ms)

IterNodesCost
06193437
Stop Event
iter-limit
Counts
35 → 92
Calls
Call 1
Inputs
tau
x
(*.f32 tau x)
(PI.f32)
(*.f32 (*.f32 tau x) (PI.f32))
(sin.f32 (*.f32 (*.f32 tau x) (PI.f32)))
(/.f32 (sin.f32 (*.f32 (*.f32 tau x) (PI.f32))) (*.f32 (*.f32 tau x) (PI.f32)))
(*.f32 x (PI.f32))
(sin.f32 (*.f32 x (PI.f32)))
(/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32)))
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 tau x) (PI.f32))) (*.f32 (*.f32 tau x) (PI.f32))) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
#s(literal 1 binary32)
#s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
(*.f32 (PI.f32) x)
(*.f32 tau (*.f32 (PI.f32) x))
(sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))
(/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (PI.f32) x))
(sin.f32 (*.f32 (PI.f32) x))
(*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (PI.f32) x)) (sin.f32 (*.f32 (PI.f32) x)))
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (PI.f32) x)) (sin.f32 (*.f32 (PI.f32) x))) (*.f32 tau (*.f32 (PI.f32) x)))
(/.f32 (sin.f32 (*.f32 (PI.f32) x)) x)
(/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) x)
(*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) x))
(*.f32 tau (PI.f32))
(*.f32 (PI.f32) (*.f32 tau (PI.f32)))
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) x)) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
(*.f32 (*.f32 x (PI.f32)) tau)
(sin.f32 (*.f32 (*.f32 x (PI.f32)) tau))
(/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau))
(neg.f32 x)
(fma.f32 (neg.f32 x) (PI.f32) (PI.f32))
(sin.f32 (fma.f32 (neg.f32 x) (PI.f32) (PI.f32)))
(/.f32 (sin.f32 (fma.f32 (neg.f32 x) (PI.f32) (PI.f32))) (*.f32 x (PI.f32)))
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (fma.f32 (neg.f32 x) (PI.f32) (PI.f32))) (*.f32 x (PI.f32))))
Outputs
#s(approx x x)
#s(approx (* tau x) (*.f32 tau x))
#s(approx (* (* tau x) (PI)) (*.f32 tau (*.f32 x (PI.f32))))
#s(approx (sin (* (* tau x) (PI))) (*.f32 x (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 tau #s(literal 3 binary32)) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32)))) (*.f32 tau (PI.f32)))))
#s(approx (sin (* (* tau x) (PI))) (*.f32 x (fma.f32 tau (PI.f32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 tau #s(literal 3 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32))) (*.f32 #s(literal 1/120 binary32) (*.f32 (pow.f32 tau #s(literal 5 binary32)) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 5 binary32))))))))))
#s(approx (sin (* (* tau x) (PI))) (*.f32 x (fma.f32 tau (PI.f32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 tau #s(literal 3 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32))) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal -1/5040 binary32) (*.f32 (pow.f32 tau #s(literal 7 binary32)) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 7 binary32)))) (*.f32 #s(literal 1/120 binary32) (*.f32 (pow.f32 tau #s(literal 5 binary32)) (pow.f32 (PI.f32) #s(literal 5 binary32)))))))))))
#s(approx (/ (sin (* (* tau x) (PI))) (* (* tau x) (PI))) #s(literal 1 binary32))
#s(approx (/ (sin (* (* tau x) (PI))) (* (* tau x) (PI))) (+.f32 #s(literal 1 binary32) (*.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32)))))))
#s(approx (/ (sin (* (* tau x) (PI))) (* (* tau x) (PI))) (+.f32 #s(literal 1 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32))) (*.f32 #s(literal 1/120 binary32) (*.f32 (pow.f32 tau #s(literal 4 binary32)) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 4 binary32)))))))))
#s(approx (/ (sin (* (* tau x) (PI))) (* (* tau x) (PI))) (+.f32 #s(literal 1 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32))) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal -1/5040 binary32) (*.f32 (pow.f32 tau #s(literal 6 binary32)) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 6 binary32)))) (*.f32 #s(literal 1/120 binary32) (*.f32 (pow.f32 tau #s(literal 4 binary32)) (pow.f32 (PI.f32) #s(literal 4 binary32))))))))))
#s(approx (* x (PI)) (*.f32 x (PI.f32)))
#s(approx (sin (* x (PI))) (*.f32 x (+.f32 (PI.f32) (*.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32)))))))
#s(approx (sin (* x (PI))) (*.f32 x (+.f32 (PI.f32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (pow.f32 (PI.f32) #s(literal 3 binary32)) (*.f32 #s(literal 1/120 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 5 binary32)))))))))
#s(approx (sin (* x (PI))) (*.f32 x (+.f32 (PI.f32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (pow.f32 (PI.f32) #s(literal 3 binary32)) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal -1/5040 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 7 binary32))) (*.f32 #s(literal 1/120 binary32) (pow.f32 (PI.f32) #s(literal 5 binary32))))))))))
#s(approx (/ (sin (* x (PI))) (* x (PI))) (+.f32 #s(literal 1 binary32) (*.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32))))))
#s(approx (/ (sin (* x (PI))) (* x (PI))) (+.f32 #s(literal 1 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (pow.f32 (PI.f32) #s(literal 2 binary32)) (*.f32 #s(literal 1/120 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 4 binary32))))))))
#s(approx (/ (sin (* x (PI))) (* x (PI))) (+.f32 #s(literal 1 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (pow.f32 (PI.f32) #s(literal 2 binary32)) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal -1/5040 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 6 binary32))) (*.f32 #s(literal 1/120 binary32) (pow.f32 (PI.f32) #s(literal 4 binary32)))))))))
#s(approx (* (/ (sin (* (* tau x) (PI))) (* (* tau x) (PI))) (/ (sin (* x (PI))) (* x (PI)))) (+.f32 #s(literal 1 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32))) (*.f32 #s(literal -1/6 binary32) (pow.f32 (PI.f32) #s(literal 2 binary32)))))))
#s(approx (* (/ (sin (* (* tau x) (PI))) (* (* tau x) (PI))) (/ (sin (* x (PI))) (* x (PI)))) (+.f32 #s(literal 1 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32))) (fma.f32 #s(literal -1/6 binary32) (pow.f32 (PI.f32) #s(literal 2 binary32)) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal 1/120 binary32) (*.f32 (pow.f32 tau #s(literal 4 binary32)) (pow.f32 (PI.f32) #s(literal 4 binary32))) (fma.f32 #s(literal 1/120 binary32) (pow.f32 (PI.f32) #s(literal 4 binary32)) (*.f32 #s(literal 1/36 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 4 binary32))))))))))))
#s(approx (* (/ (sin (* (* tau x) (PI))) (* (* tau x) (PI))) (/ (sin (* x (PI))) (* x (PI)))) (+.f32 #s(literal 1 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32))) (fma.f32 #s(literal -1/6 binary32) (pow.f32 (PI.f32) #s(literal 2 binary32)) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal 1/120 binary32) (*.f32 (pow.f32 tau #s(literal 4 binary32)) (pow.f32 (PI.f32) #s(literal 4 binary32))) (fma.f32 #s(literal 1/120 binary32) (pow.f32 (PI.f32) #s(literal 4 binary32)) (fma.f32 #s(literal 1/36 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 4 binary32))) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal -1/720 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 6 binary32))) (fma.f32 #s(literal -1/720 binary32) (*.f32 (pow.f32 tau #s(literal 4 binary32)) (pow.f32 (PI.f32) #s(literal 6 binary32))) (fma.f32 #s(literal -1/5040 binary32) (*.f32 (pow.f32 tau #s(literal 6 binary32)) (pow.f32 (PI.f32) #s(literal 6 binary32))) (*.f32 #s(literal -1/5040 binary32) (pow.f32 (PI.f32) #s(literal 6 binary32))))))))))))))))
#s(approx (/ (sin (* tau (* (PI) x))) (* (PI) x)) tau)
#s(approx (/ (sin (* tau (* (PI) x))) (* (PI) x)) (+.f32 tau (*.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 tau #s(literal 3 binary32)) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32)))))))
#s(approx (/ (sin (* tau (* (PI) x))) (* (PI) x)) (+.f32 tau (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 tau #s(literal 3 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32))) (*.f32 #s(literal 1/120 binary32) (*.f32 (pow.f32 tau #s(literal 5 binary32)) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 4 binary32)))))))))
#s(approx (/ (sin (* tau (* (PI) x))) (* (PI) x)) (+.f32 tau (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 tau #s(literal 3 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32))) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal -1/5040 binary32) (*.f32 (pow.f32 tau #s(literal 7 binary32)) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 6 binary32)))) (*.f32 #s(literal 1/120 binary32) (*.f32 (pow.f32 tau #s(literal 5 binary32)) (pow.f32 (PI.f32) #s(literal 4 binary32))))))))))
#s(approx (* (/ (sin (* tau (* (PI) x))) (* (PI) x)) (sin (* (PI) x))) (*.f32 x (fma.f32 tau (PI.f32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (*.f32 tau (pow.f32 (PI.f32) #s(literal 3 binary32))) (*.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 tau #s(literal 3 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32)))))))))
#s(approx (* (/ (sin (* tau (* (PI) x))) (* (PI) x)) (sin (* (PI) x))) (*.f32 x (fma.f32 tau (PI.f32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (*.f32 tau (pow.f32 (PI.f32) #s(literal 3 binary32))) (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 tau #s(literal 3 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32))) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal 1/120 binary32) (*.f32 tau (pow.f32 (PI.f32) #s(literal 5 binary32))) (fma.f32 #s(literal 1/120 binary32) (*.f32 (pow.f32 tau #s(literal 5 binary32)) (pow.f32 (PI.f32) #s(literal 5 binary32))) (*.f32 #s(literal 1/36 binary32) (*.f32 (pow.f32 tau #s(literal 3 binary32)) (pow.f32 (PI.f32) #s(literal 5 binary32)))))))))))))
#s(approx (* (/ (sin (* tau (* (PI) x))) (* (PI) x)) (sin (* (PI) x))) (*.f32 x (fma.f32 tau (PI.f32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (*.f32 tau (pow.f32 (PI.f32) #s(literal 3 binary32))) (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 tau #s(literal 3 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32))) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal 1/120 binary32) (*.f32 tau (pow.f32 (PI.f32) #s(literal 5 binary32))) (fma.f32 #s(literal 1/120 binary32) (*.f32 (pow.f32 tau #s(literal 5 binary32)) (pow.f32 (PI.f32) #s(literal 5 binary32))) (fma.f32 #s(literal 1/36 binary32) (*.f32 (pow.f32 tau #s(literal 3 binary32)) (pow.f32 (PI.f32) #s(literal 5 binary32))) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal -1/720 binary32) (*.f32 (pow.f32 tau #s(literal 3 binary32)) (pow.f32 (PI.f32) #s(literal 7 binary32))) (fma.f32 #s(literal -1/720 binary32) (*.f32 (pow.f32 tau #s(literal 5 binary32)) (pow.f32 (PI.f32) #s(literal 7 binary32))) (fma.f32 #s(literal -1/5040 binary32) (*.f32 tau (pow.f32 (PI.f32) #s(literal 7 binary32))) (*.f32 #s(literal -1/5040 binary32) (*.f32 (pow.f32 tau #s(literal 7 binary32)) (pow.f32 (PI.f32) #s(literal 7 binary32))))))))))))))))))
#s(approx (/ (sin (* (PI) x)) x) (PI.f32))
#s(approx (/ (sin (* (PI) x)) x) (+.f32 (PI.f32) (*.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32))))))
#s(approx (/ (sin (* (PI) x)) x) (+.f32 (PI.f32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (pow.f32 (PI.f32) #s(literal 3 binary32)) (*.f32 #s(literal 1/120 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 5 binary32))))))))
#s(approx (/ (sin (* (PI) x)) x) (+.f32 (PI.f32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (pow.f32 (PI.f32) #s(literal 3 binary32)) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal -1/5040 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 7 binary32))) (*.f32 #s(literal 1/120 binary32) (pow.f32 (PI.f32) #s(literal 5 binary32)))))))))
#s(approx (/ (sin (* tau (* (PI) x))) x) (*.f32 tau (PI.f32)))
#s(approx (/ (sin (* tau (* (PI) x))) x) (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 tau #s(literal 3 binary32)) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32)))) (*.f32 tau (PI.f32))))
#s(approx (/ (sin (* tau (* (PI) x))) x) (fma.f32 tau (PI.f32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 tau #s(literal 3 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32))) (*.f32 #s(literal 1/120 binary32) (*.f32 (pow.f32 tau #s(literal 5 binary32)) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 5 binary32)))))))))
#s(approx (/ (sin (* tau (* (PI) x))) x) (fma.f32 tau (PI.f32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 tau #s(literal 3 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32))) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal -1/5040 binary32) (*.f32 (pow.f32 tau #s(literal 7 binary32)) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 7 binary32)))) (*.f32 #s(literal 1/120 binary32) (*.f32 (pow.f32 tau #s(literal 5 binary32)) (pow.f32 (PI.f32) #s(literal 5 binary32))))))))))
#s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 tau (pow.f32 (PI.f32) #s(literal 2 binary32))))
#s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (fma.f32 tau (pow.f32 (PI.f32) #s(literal 2 binary32)) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (*.f32 tau (pow.f32 (PI.f32) #s(literal 4 binary32))) (*.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 tau #s(literal 3 binary32)) (pow.f32 (PI.f32) #s(literal 4 binary32))))))))
#s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (fma.f32 tau (pow.f32 (PI.f32) #s(literal 2 binary32)) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (*.f32 tau (pow.f32 (PI.f32) #s(literal 4 binary32))) (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 tau #s(literal 3 binary32)) (pow.f32 (PI.f32) #s(literal 4 binary32))) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal 1/120 binary32) (*.f32 tau (pow.f32 (PI.f32) #s(literal 6 binary32))) (fma.f32 #s(literal 1/120 binary32) (*.f32 (pow.f32 tau #s(literal 5 binary32)) (pow.f32 (PI.f32) #s(literal 6 binary32))) (*.f32 #s(literal 1/36 binary32) (*.f32 (pow.f32 tau #s(literal 3 binary32)) (pow.f32 (PI.f32) #s(literal 6 binary32))))))))))))
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#s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 tau (fma.f32 (pow.f32 tau #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (*.f32 x (*.f32 (pow.f32 (PI.f32) #s(literal 3 binary32)) (sin.f32 (*.f32 x (PI.f32))))) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (fma.f32 #s(literal -1/5040 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (*.f32 (pow.f32 x #s(literal 5 binary32)) (*.f32 (pow.f32 (PI.f32) #s(literal 7 binary32)) (sin.f32 (*.f32 x (PI.f32)))))) (*.f32 #s(literal 1/120 binary32) (*.f32 (pow.f32 x #s(literal 3 binary32)) (*.f32 (pow.f32 (PI.f32) #s(literal 5 binary32)) (sin.f32 (*.f32 x (PI.f32))))))))) (/.f32 (*.f32 (PI.f32) (sin.f32 (*.f32 x (PI.f32)))) x))))
#s(approx (* (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (/ (sin (+ (* (neg x) (PI)) (PI))) (* x (PI)))) (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (*.f32 x (*.f32 (PI.f32) (sin.f32 (+.f32 (PI.f32) (*.f32 #s(literal -1 binary32) (*.f32 x (PI.f32)))))))) (/.f32 (sin.f32 (+.f32 (PI.f32) (*.f32 #s(literal -1 binary32) (*.f32 x (PI.f32))))) (*.f32 x (PI.f32)))))
#s(approx (* (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (/ (sin (+ (* (neg x) (PI)) (PI))) (* x (PI)))) (fma.f32 (pow.f32 tau #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (*.f32 x (*.f32 (PI.f32) (sin.f32 (+.f32 (PI.f32) (*.f32 #s(literal -1 binary32) (*.f32 x (PI.f32))))))) (*.f32 #s(literal 1/120 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (*.f32 (pow.f32 x #s(literal 3 binary32)) (*.f32 (pow.f32 (PI.f32) #s(literal 3 binary32)) (sin.f32 (+.f32 (PI.f32) (*.f32 #s(literal -1 binary32) (*.f32 x (PI.f32)))))))))) (/.f32 (sin.f32 (+.f32 (PI.f32) (*.f32 #s(literal -1 binary32) (*.f32 x (PI.f32))))) (*.f32 x (PI.f32)))))
#s(approx (* (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (/ (sin (+ (* (neg x) (PI)) (PI))) (* x (PI)))) (fma.f32 (pow.f32 tau #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (*.f32 x (*.f32 (PI.f32) (sin.f32 (+.f32 (PI.f32) (*.f32 #s(literal -1 binary32) (*.f32 x (PI.f32))))))) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (fma.f32 #s(literal -1/5040 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (*.f32 (pow.f32 x #s(literal 5 binary32)) (*.f32 (pow.f32 (PI.f32) #s(literal 5 binary32)) (sin.f32 (+.f32 (PI.f32) (*.f32 #s(literal -1 binary32) (*.f32 x (PI.f32)))))))) (*.f32 #s(literal 1/120 binary32) (*.f32 (pow.f32 x #s(literal 3 binary32)) (*.f32 (pow.f32 (PI.f32) #s(literal 3 binary32)) (sin.f32 (+.f32 (PI.f32) (*.f32 #s(literal -1 binary32) (*.f32 x (PI.f32))))))))))) (/.f32 (sin.f32 (+.f32 (PI.f32) (*.f32 #s(literal -1 binary32) (*.f32 x (PI.f32))))) (*.f32 x (PI.f32)))))
Calls

6 calls:

TimeVariablePoint
11.0ms
tau
0
11.0ms
x
-inf
11.0ms
tau
-inf
6.0ms
tau
inf
6.0ms
x
inf

rewrite230.0ms (4.8%)

Memory
21.6MiB live, 399.5MiB allocated; 43ms collecting garbage
Iterations

Useful iterations: 2 (0.0ms)

IterNodesCost
040294
073290
1283290
21301282
04387282
Stop Event
iter-limit
node-limit
iter-limit
Counts
35 → 1 726
Calls
Call 1
Inputs
tau
x
(*.f32 tau x)
(PI.f32)
(*.f32 (*.f32 tau x) (PI.f32))
(sin.f32 (*.f32 (*.f32 tau x) (PI.f32)))
(/.f32 (sin.f32 (*.f32 (*.f32 tau x) (PI.f32))) (*.f32 (*.f32 tau x) (PI.f32)))
(*.f32 x (PI.f32))
(sin.f32 (*.f32 x (PI.f32)))
(/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32)))
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 tau x) (PI.f32))) (*.f32 (*.f32 tau x) (PI.f32))) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
#s(literal 1 binary32)
#s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
(*.f32 (PI.f32) x)
(*.f32 tau (*.f32 (PI.f32) x))
(sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))
(/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (PI.f32) x))
(sin.f32 (*.f32 (PI.f32) x))
(*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (PI.f32) x)) (sin.f32 (*.f32 (PI.f32) x)))
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (PI.f32) x)) (sin.f32 (*.f32 (PI.f32) x))) (*.f32 tau (*.f32 (PI.f32) x)))
(/.f32 (sin.f32 (*.f32 (PI.f32) x)) x)
(/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) x)
(*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) x))
(*.f32 tau (PI.f32))
(*.f32 (PI.f32) (*.f32 tau (PI.f32)))
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) x)) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
(*.f32 (*.f32 x (PI.f32)) tau)
(sin.f32 (*.f32 (*.f32 x (PI.f32)) tau))
(/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau))
(neg.f32 x)
(fma.f32 (neg.f32 x) (PI.f32) (PI.f32))
(sin.f32 (fma.f32 (neg.f32 x) (PI.f32) (PI.f32)))
(/.f32 (sin.f32 (fma.f32 (neg.f32 x) (PI.f32) (PI.f32))) (*.f32 x (PI.f32)))
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (fma.f32 (neg.f32 x) (PI.f32) (PI.f32))) (*.f32 x (PI.f32))))
Outputs
tau
x
(*.f32 x tau)
(*.f32 tau x)
(PI.f32)
(log.f32 (pow.f32 (exp.f32 (*.f32 (PI.f32) tau)) x))
(log.f32 (pow.f32 (exp.f32 (*.f32 (PI.f32) x)) tau))
(log.f32 (exp.f32 (*.f32 (*.f32 (PI.f32) tau) x)))
(*.f32 (*.f32 (*.f32 x tau) (pow.f32 (PI.f32) #s(literal 2/3 binary32))) (cbrt.f32 (PI.f32)))
(*.f32 (pow.f32 (PI.f32) #s(literal 2/3 binary32)) (*.f32 (cbrt.f32 (PI.f32)) (*.f32 x tau)))
(*.f32 (*.f32 (PI.f32) tau) x)
(*.f32 (*.f32 (PI.f32) x) tau)
(*.f32 (PI.f32) (*.f32 x tau))
(*.f32 (*.f32 x tau) (log.f32 (exp.f32 (PI.f32))))
(*.f32 (*.f32 x tau) (PI.f32))
(*.f32 x (*.f32 (PI.f32) tau))
(*.f32 tau (*.f32 (PI.f32) x))
(sin.f32 (*.f32 (*.f32 (PI.f32) tau) x))
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x)) tau) (/.f32 #s(literal 1 binary32) (*.f32 (PI.f32) x)))
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x)) (PI.f32)) (/.f32 (/.f32 #s(literal 1 binary32) x) tau))
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x)) (*.f32 x tau)) (/.f32 #s(literal 1 binary32) (PI.f32)))
(*.f32 (/.f32 #s(literal 1 binary32) (*.f32 (*.f32 (PI.f32) tau) x)) (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x)))
(*.f32 (sin.f32 (*.f32 (*.f32 (neg.f32 x) (PI.f32)) tau)) (/.f32 #s(literal 1 binary32) (*.f32 (*.f32 (neg.f32 x) (PI.f32)) tau)))
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x)) x) (/.f32 #s(literal 1 binary32) (*.f32 (PI.f32) tau)))
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x)) (*.f32 (PI.f32) x)) (/.f32 #s(literal 1 binary32) tau))
(*.f32 (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x)) (/.f32 #s(literal 1 binary32) (*.f32 (*.f32 (PI.f32) tau) x)))
(/.f32 (neg.f32 (/.f32 (/.f32 (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x)) (*.f32 x tau)) (pow.f32 (PI.f32) #s(literal 2/3 binary32)))) (cbrt.f32 (neg.f32 (PI.f32))))
(/.f32 (neg.f32 (/.f32 (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x)) (*.f32 (PI.f32) tau))) (neg.f32 x))
(/.f32 (neg.f32 (neg.f32 (/.f32 (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x)) (*.f32 x tau)))) (neg.f32 (neg.f32 (PI.f32))))
(/.f32 (neg.f32 (neg.f32 (/.f32 (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x)) (*.f32 (PI.f32) x)))) (neg.f32 (neg.f32 tau)))
(/.f32 (neg.f32 (*.f32 (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x)) #s(literal 1 binary32))) (*.f32 (*.f32 (neg.f32 x) (PI.f32)) tau))
(/.f32 (neg.f32 (sin.f32 (neg.f32 (*.f32 (*.f32 (neg.f32 x) (PI.f32)) tau)))) (neg.f32 (neg.f32 (*.f32 (*.f32 (neg.f32 x) (PI.f32)) tau))))
(/.f32 (neg.f32 (/.f32 (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x)) tau)) (*.f32 (neg.f32 x) (PI.f32)))
(/.f32 (neg.f32 (neg.f32 (/.f32 (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x)) x))) (neg.f32 (neg.f32 (*.f32 (PI.f32) tau))))
(/.f32 (*.f32 (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x)) #s(literal 1 binary32)) (*.f32 (*.f32 (PI.f32) tau) x))
(/.f32 (/.f32 (/.f32 (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x)) (*.f32 x tau)) (pow.f32 (PI.f32) #s(literal 2/3 binary32))) (cbrt.f32 (PI.f32)))
(/.f32 (/.f32 (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x)) (*.f32 (PI.f32) tau)) x)
(/.f32 (/.f32 (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x)) tau) (*.f32 (PI.f32) x))
(/.f32 (neg.f32 (/.f32 (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x)) x)) (neg.f32 (*.f32 (PI.f32) tau)))
(/.f32 (neg.f32 (/.f32 (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x)) (PI.f32))) (neg.f32 (*.f32 x tau)))
(/.f32 (neg.f32 (/.f32 (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x)) (*.f32 x tau))) (neg.f32 (PI.f32)))
(/.f32 (sin.f32 (neg.f32 (*.f32 (*.f32 (neg.f32 x) (PI.f32)) tau))) (neg.f32 (*.f32 (*.f32 (neg.f32 x) (PI.f32)) tau)))
(/.f32 (neg.f32 (/.f32 (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x)) (*.f32 (PI.f32) x))) (neg.f32 tau))
(/.f32 (/.f32 (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x)) (PI.f32)) (*.f32 x tau))
(/.f32 (/.f32 (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x)) (*.f32 x tau)) (PI.f32))
(/.f32 (sin.f32 (*.f32 (*.f32 (neg.f32 x) (PI.f32)) tau)) (*.f32 (*.f32 (neg.f32 x) (PI.f32)) tau))
(/.f32 (/.f32 (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x)) x) (*.f32 (PI.f32) tau))
(/.f32 (/.f32 (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x)) (*.f32 (PI.f32) x)) tau)
(/.f32 (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x)) (*.f32 (*.f32 (PI.f32) tau) x))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 (*.f32 (PI.f32) tau) x) (*.f32 (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x)) #s(literal 1 binary32))))
(/.f32 #s(literal 1 binary32) (/.f32 (cbrt.f32 (PI.f32)) (/.f32 (/.f32 (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x)) (*.f32 x tau)) (pow.f32 (PI.f32) #s(literal 2/3 binary32)))))
(/.f32 #s(literal 1 binary32) (/.f32 x (/.f32 (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x)) (*.f32 (PI.f32) tau))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 (PI.f32) x) (/.f32 (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x)) tau)))
(/.f32 #s(literal 1 binary32) (/.f32 (neg.f32 (*.f32 (PI.f32) tau)) (neg.f32 (/.f32 (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x)) x))))
(/.f32 #s(literal 1 binary32) (/.f32 (neg.f32 (PI.f32)) (neg.f32 (/.f32 (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x)) (*.f32 x tau)))))
(/.f32 #s(literal 1 binary32) (/.f32 (neg.f32 (*.f32 (*.f32 (neg.f32 x) (PI.f32)) tau)) (sin.f32 (neg.f32 (*.f32 (*.f32 (neg.f32 x) (PI.f32)) tau)))))
(/.f32 #s(literal 1 binary32) (/.f32 (neg.f32 tau) (neg.f32 (/.f32 (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x)) (*.f32 (PI.f32) x)))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 x tau) (/.f32 (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x)) (PI.f32))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 (PI.f32) tau) (/.f32 (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x)) x)))
(/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (/.f32 (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x)) (*.f32 x tau))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 (*.f32 (neg.f32 x) (PI.f32)) tau) (sin.f32 (*.f32 (*.f32 (neg.f32 x) (PI.f32)) tau))))
(/.f32 #s(literal 1 binary32) (/.f32 tau (/.f32 (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x)) (*.f32 (PI.f32) x))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 (*.f32 (PI.f32) tau) x) (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x))))
(neg.f32 (/.f32 (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x)) (*.f32 (*.f32 (neg.f32 x) (PI.f32)) tau)))
(neg.f32 (/.f32 (sin.f32 (*.f32 (*.f32 (neg.f32 x) (PI.f32)) tau)) (*.f32 (*.f32 (PI.f32) tau) x)))
(log.f32 (exp.f32 (*.f32 (PI.f32) x)))
(*.f32 (*.f32 x (pow.f32 (PI.f32) #s(literal 2/3 binary32))) (cbrt.f32 (PI.f32)))
(*.f32 (pow.f32 (PI.f32) #s(literal 2/3 binary32)) (*.f32 (cbrt.f32 (PI.f32)) x))
(*.f32 (PI.f32) x)
(*.f32 x (log.f32 (exp.f32 (PI.f32))))
(*.f32 x (PI.f32))
(sin.f32 (*.f32 (PI.f32) x))
(*.f32 (+.f32 #s(literal 1 binary32) (/.f32 (/.f32 (*.f32 (cos.f32 (*.f32 (PI.f32) x)) #s(literal 0 binary32)) (*.f32 (PI.f32) x)) (/.f32 (*.f32 #s(literal -1 binary32) (sin.f32 (*.f32 (neg.f32 x) (PI.f32)))) (*.f32 (PI.f32) x)))) (/.f32 (*.f32 #s(literal -1 binary32) (sin.f32 (*.f32 (neg.f32 x) (PI.f32)))) (*.f32 (PI.f32) x)))
(*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (pow.f32 (PI.f32) #s(literal 2/3 binary32))) (/.f32 (/.f32 #s(literal 1 binary32) x) (cbrt.f32 (PI.f32))))
(*.f32 (/.f32 #s(literal 1 binary32) (*.f32 (PI.f32) x)) (sin.f32 (neg.f32 (*.f32 (neg.f32 x) (PI.f32)))))
(*.f32 (/.f32 #s(literal 1 binary32) (*.f32 (PI.f32) x)) (sin.f32 (*.f32 (PI.f32) x)))
(*.f32 (sin.f32 (*.f32 (neg.f32 x) (PI.f32))) (/.f32 #s(literal 1 binary32) (*.f32 (neg.f32 x) (PI.f32))))
(*.f32 (sin.f32 (neg.f32 (*.f32 (neg.f32 x) (PI.f32)))) (/.f32 #s(literal 1 binary32) (*.f32 (PI.f32) x)))
(*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (/.f32 #s(literal 1 binary32) (PI.f32)))
(*.f32 (sin.f32 (*.f32 (PI.f32) x)) (/.f32 #s(literal 1 binary32) (*.f32 (PI.f32) x)))
(/.f32 (fma.f32 (/.f32 (*.f32 #s(literal -1 binary32) (sin.f32 (*.f32 (neg.f32 x) (PI.f32)))) (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x) (*.f32 (cos.f32 (*.f32 (PI.f32) x)) #s(literal 0 binary32))) (*.f32 (PI.f32) x))
(/.f32 (fma.f32 (*.f32 #s(literal -1 binary32) (sin.f32 (*.f32 (neg.f32 x) (PI.f32)))) (*.f32 (PI.f32) x) (*.f32 (*.f32 (cos.f32 (*.f32 (PI.f32) x)) #s(literal 0 binary32)) (*.f32 (PI.f32) x))) (*.f32 (*.f32 (PI.f32) x) (*.f32 (PI.f32) x)))
(/.f32 (-.f32 (*.f32 (/.f32 (*.f32 #s(literal -1 binary32) (sin.f32 (*.f32 (neg.f32 x) (PI.f32)))) (*.f32 (PI.f32) x)) (/.f32 (*.f32 #s(literal -1 binary32) (sin.f32 (*.f32 (neg.f32 x) (PI.f32)))) (*.f32 (PI.f32) x))) (*.f32 (/.f32 (*.f32 (cos.f32 (*.f32 (PI.f32) x)) #s(literal 0 binary32)) (*.f32 (PI.f32) x)) (/.f32 (*.f32 (cos.f32 (*.f32 (PI.f32) x)) #s(literal 0 binary32)) (*.f32 (PI.f32) x)))) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x)))
(/.f32 (+.f32 (pow.f32 (/.f32 (*.f32 #s(literal -1 binary32) (sin.f32 (*.f32 (neg.f32 x) (PI.f32)))) (*.f32 (PI.f32) x)) #s(literal 3 binary32)) (pow.f32 (/.f32 (*.f32 (cos.f32 (*.f32 (PI.f32) x)) #s(literal 0 binary32)) (*.f32 (PI.f32) x)) #s(literal 3 binary32))) (fma.f32 (/.f32 (*.f32 #s(literal -1 binary32) (sin.f32 (*.f32 (neg.f32 x) (PI.f32)))) (*.f32 (PI.f32) x)) (/.f32 (*.f32 #s(literal -1 binary32) (sin.f32 (*.f32 (neg.f32 x) (PI.f32)))) (*.f32 (PI.f32) x)) (-.f32 (*.f32 (/.f32 (*.f32 (cos.f32 (*.f32 (PI.f32) x)) #s(literal 0 binary32)) (*.f32 (PI.f32) x)) (/.f32 (*.f32 (cos.f32 (*.f32 (PI.f32) x)) #s(literal 0 binary32)) (*.f32 (PI.f32) x))) (*.f32 (/.f32 (*.f32 #s(literal -1 binary32) (sin.f32 (*.f32 (neg.f32 x) (PI.f32)))) (*.f32 (PI.f32) x)) (/.f32 (*.f32 (cos.f32 (*.f32 (PI.f32) x)) #s(literal 0 binary32)) (*.f32 (PI.f32) x))))))
(/.f32 (fma.f32 (*.f32 #s(literal -1 binary32) (sin.f32 (*.f32 (neg.f32 x) (PI.f32)))) (*.f32 (PI.f32) x) (*.f32 (*.f32 (PI.f32) x) (*.f32 (cos.f32 (*.f32 (PI.f32) x)) #s(literal 0 binary32)))) (*.f32 (*.f32 (PI.f32) x) (*.f32 (PI.f32) x)))
(/.f32 (neg.f32 (*.f32 (sin.f32 (neg.f32 (*.f32 (neg.f32 x) (PI.f32)))) #s(literal 1 binary32))) (*.f32 (neg.f32 x) (PI.f32)))
(/.f32 (neg.f32 (/.f32 (sin.f32 (*.f32 (neg.f32 x) (PI.f32))) (PI.f32))) (neg.f32 (neg.f32 x)))
(/.f32 (neg.f32 (/.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (pow.f32 (PI.f32) #s(literal 2/3 binary32)))) (cbrt.f32 (neg.f32 (PI.f32))))
(/.f32 (neg.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (PI.f32))) (neg.f32 x))
(/.f32 (neg.f32 (neg.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x))) (neg.f32 (neg.f32 (PI.f32))))
(/.f32 (neg.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) #s(literal 1 binary32))) (*.f32 (neg.f32 x) (PI.f32)))
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(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 (*.f32 (neg.f32 x) (PI.f32)) (*.f32 (*.f32 (PI.f32) tau) x)) (*.f32 (sin.f32 (*.f32 (*.f32 (neg.f32 x) (PI.f32)) tau)) (sin.f32 (*.f32 (PI.f32) x)))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 (*.f32 (*.f32 (PI.f32) tau) x) (*.f32 (neg.f32 x) (PI.f32))) (*.f32 (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x)) (sin.f32 (*.f32 (neg.f32 x) (PI.f32))))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 (*.f32 (neg.f32 x) (PI.f32)) (*.f32 (*.f32 (neg.f32 x) (PI.f32)) tau)) (*.f32 (sin.f32 (*.f32 (neg.f32 x) (PI.f32))) (sin.f32 (*.f32 (*.f32 (neg.f32 x) (PI.f32)) tau)))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 (*.f32 (neg.f32 x) (PI.f32)) (*.f32 (*.f32 (PI.f32) tau) x)) (*.f32 (sin.f32 (*.f32 (neg.f32 x) (PI.f32))) (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x)))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 (*.f32 (PI.f32) x) (*.f32 (*.f32 (neg.f32 x) (PI.f32)) tau)) (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (sin.f32 (*.f32 (*.f32 (neg.f32 x) (PI.f32)) tau)))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 x (*.f32 (*.f32 (PI.f32) tau) (PI.f32))) (*.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x)) x) (sin.f32 (*.f32 (PI.f32) x))) #s(literal 1 binary32))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 (neg.f32 x) (*.f32 (*.f32 (PI.f32) tau) (PI.f32))) (*.f32 (sin.f32 (*.f32 (neg.f32 x) (PI.f32))) (/.f32 (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x)) x))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 (*.f32 (neg.f32 x) (PI.f32)) (*.f32 (PI.f32) tau)) (*.f32 (sin.f32 (*.f32 (neg.f32 x) (PI.f32))) (/.f32 (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x)) x))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 (neg.f32 x) (PI.f32)) (neg.f32 (*.f32 (sin.f32 (neg.f32 (*.f32 (neg.f32 x) (PI.f32)))) (/.f32 (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x)) (*.f32 (*.f32 (PI.f32) tau) x))))))
(/.f32 #s(literal 1 binary32) (/.f32 (neg.f32 (*.f32 (*.f32 (*.f32 (*.f32 (PI.f32) tau) x) x) (PI.f32))) (neg.f32 (*.f32 (sin.f32 (neg.f32 (*.f32 (neg.f32 x) (PI.f32)))) (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x))))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 (neg.f32 x) (PI.f32)) (neg.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x)) (*.f32 (*.f32 (PI.f32) tau) x)) (sin.f32 (*.f32 (PI.f32) x))))))
(/.f32 #s(literal 1 binary32) (/.f32 (neg.f32 (*.f32 (*.f32 (neg.f32 x) (PI.f32)) tau)) (neg.f32 (*.f32 (sin.f32 (*.f32 (neg.f32 x) (PI.f32))) (/.f32 (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x)) (*.f32 (PI.f32) x))))))
(/.f32 #s(literal 1 binary32) (/.f32 (neg.f32 (*.f32 (PI.f32) tau)) (neg.f32 (/.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x))) (*.f32 (*.f32 x x) (PI.f32))))))
(/.f32 #s(literal 1 binary32) (/.f32 (neg.f32 (*.f32 (neg.f32 (PI.f32)) (*.f32 (PI.f32) tau))) (neg.f32 (/.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x))) (neg.f32 (*.f32 x x))))))
(/.f32 #s(literal 1 binary32) (/.f32 (neg.f32 (*.f32 (*.f32 (*.f32 (*.f32 (PI.f32) tau) x) x) (PI.f32))) (neg.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x))))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 (*.f32 (*.f32 (PI.f32) tau) x) (PI.f32)) (*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x)) x) (sin.f32 (*.f32 (PI.f32) x)))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 (PI.f32) (*.f32 (*.f32 (PI.f32) tau) x)) (*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x)) x) (sin.f32 (*.f32 (PI.f32) x)))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 x (*.f32 (*.f32 (PI.f32) tau) (PI.f32))) (*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x)) x) (sin.f32 (*.f32 (PI.f32) x)))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 (*.f32 (PI.f32) x) (*.f32 (PI.f32) tau)) (*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x)) x) (sin.f32 (*.f32 (PI.f32) x)))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 (*.f32 x x) (*.f32 (*.f32 (PI.f32) tau) (PI.f32))) (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x)))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 (PI.f32) x) (*.f32 (sin.f32 (neg.f32 (*.f32 (neg.f32 x) (PI.f32)))) (/.f32 (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x)) (*.f32 (*.f32 (PI.f32) tau) x)))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 (*.f32 (*.f32 (*.f32 (PI.f32) tau) x) x) (PI.f32)) (*.f32 (sin.f32 (neg.f32 (*.f32 (neg.f32 x) (PI.f32)))) (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x)))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 (PI.f32) x) (*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x)) (*.f32 (*.f32 (PI.f32) tau) x)) (sin.f32 (*.f32 (PI.f32) x)))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 (*.f32 (*.f32 (*.f32 (PI.f32) tau) x) x) (PI.f32)) (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x)))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 (*.f32 (neg.f32 x) (PI.f32)) tau) (*.f32 (sin.f32 (*.f32 (neg.f32 x) (PI.f32))) (/.f32 (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x)) (*.f32 (PI.f32) x)))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 (PI.f32) tau) (/.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x))) (*.f32 (*.f32 x x) (PI.f32)))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 (neg.f32 (PI.f32)) (*.f32 (PI.f32) tau)) (/.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x))) (neg.f32 (*.f32 x x)))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 (*.f32 (PI.f32) tau) x) (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (/.f32 (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x)) (*.f32 (PI.f32) x)))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 (*.f32 (PI.f32) tau) (PI.f32)) (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (/.f32 (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x)) (*.f32 x x)))))
(+.f32 (/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x)) (*.f32 (*.f32 (PI.f32) tau) x)) (*.f32 #s(literal -1 binary32) (sin.f32 (*.f32 (neg.f32 x) (PI.f32))))) (*.f32 (PI.f32) x)) (/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x)) (*.f32 (*.f32 (PI.f32) tau) x)) (*.f32 (cos.f32 (*.f32 (PI.f32) x)) #s(literal 0 binary32))) (*.f32 (PI.f32) x)))
(+.f32 (/.f32 (*.f32 (*.f32 #s(literal -1 binary32) (sin.f32 (*.f32 (neg.f32 x) (PI.f32)))) (/.f32 (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x)) (*.f32 (*.f32 (PI.f32) tau) x))) (*.f32 (PI.f32) x)) (/.f32 (*.f32 (*.f32 (cos.f32 (*.f32 (PI.f32) x)) #s(literal 0 binary32)) (/.f32 (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x)) (*.f32 (*.f32 (PI.f32) tau) x))) (*.f32 (PI.f32) x)))
(+.f32 (/.f32 (*.f32 (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x)) (*.f32 #s(literal -1 binary32) (sin.f32 (*.f32 (neg.f32 x) (PI.f32))))) (*.f32 (*.f32 (*.f32 (*.f32 (PI.f32) tau) x) x) (PI.f32))) (/.f32 (*.f32 (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x)) (*.f32 (cos.f32 (*.f32 (PI.f32) x)) #s(literal 0 binary32))) (*.f32 (*.f32 (*.f32 (*.f32 (PI.f32) tau) x) x) (PI.f32))))
(+.f32 (/.f32 (*.f32 (*.f32 #s(literal -1 binary32) (sin.f32 (*.f32 (neg.f32 x) (PI.f32)))) (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x))) (*.f32 (*.f32 (*.f32 (*.f32 (PI.f32) tau) x) x) (PI.f32))) (/.f32 (*.f32 (*.f32 (cos.f32 (*.f32 (PI.f32) x)) #s(literal 0 binary32)) (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x))) (*.f32 (*.f32 (*.f32 (*.f32 (PI.f32) tau) x) x) (PI.f32))))
(neg.f32 (/.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (/.f32 (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x)) (*.f32 (PI.f32) x))) (*.f32 (*.f32 (neg.f32 x) (PI.f32)) tau)))
(neg.f32 (/.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (/.f32 (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x)) (*.f32 x x))) (*.f32 (neg.f32 (PI.f32)) (*.f32 (PI.f32) tau))))
(neg.f32 (/.f32 (*.f32 (sin.f32 (*.f32 (neg.f32 x) (PI.f32))) (/.f32 (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x)) (*.f32 (PI.f32) x))) (*.f32 (*.f32 (PI.f32) tau) x)))
(neg.f32 (/.f32 (/.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x))) (neg.f32 (*.f32 x x))) (*.f32 (*.f32 (PI.f32) tau) (PI.f32))))

eval73.0ms (1.5%)

Memory
21.2MiB live, 202.0MiB allocated; 23ms collecting garbage
Compiler

Compiled 26 006 to 3 002 computations (88.5% saved)

prune56.0ms (1.2%)

Memory
-13.6MiB live, 129.9MiB allocated; 16ms collecting garbage
Pruning

49 alts after pruning (44 fresh and 5 done)

PrunedKeptTotal
New86329892
Fresh101525
Picked505
Done-550
Total87349922
Accuracy
99.8%
Counts
922 → 49
Alt Table
Click to see full alt table
StatusAccuracyProgram
96.8%
(/.f32 (/.f32 (/.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x))) (*.f32 (*.f32 x x) (PI.f32))) (PI.f32)) tau)
97.0%
(/.f32 (/.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x))) (*.f32 (*.f32 x x) (PI.f32))) (*.f32 (PI.f32) tau))
97.0%
(/.f32 (/.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x))) (*.f32 x x)) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
65.6%
(/.f32 (/.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
96.8%
(/.f32 (/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x)) x) (sin.f32 (*.f32 (PI.f32) x))))) (*.f32 tau (*.f32 (PI.f32) x)))
97.4%
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 (neg.f32 x) tau) (PI.f32))) (*.f32 (PI.f32) x)) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x)) (*.f32 (neg.f32 tau) (PI.f32)))
97.1%
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x)) (*.f32 (PI.f32) x)) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x))) tau)
97.1%
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x)) x) (sin.f32 (*.f32 (PI.f32) x))) (*.f32 x (*.f32 (*.f32 (PI.f32) tau) (PI.f32))))
96.8%
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau))
96.8%
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) x)) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
97.6%
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (*.f32 tau (*.f32 (PI.f32) x)) x)) (sin.f32 (*.f32 (PI.f32) x))) (PI.f32))
98.0%
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (PI.f32) x)) (sin.f32 (*.f32 (PI.f32) x))) (*.f32 tau (*.f32 (PI.f32) x)))
65.1%
(/.f32 (*.f32 (-.f32 (cos.f32 (*.f32 (PI.f32) (-.f32 (*.f32 tau x) x))) (cos.f32 (*.f32 (PI.f32) (fma.f32 tau x x)))) (/.f32 #s(literal 1 binary32) (*.f32 (*.f32 (*.f32 (PI.f32) x) x) (*.f32 tau (PI.f32))))) #s(literal 2 binary32))
97.4%
(/.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x))) (*.f32 (*.f32 (*.f32 (*.f32 (PI.f32) tau) x) x) (PI.f32)))
97.0%
(/.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x))) (*.f32 (*.f32 x x) (*.f32 (*.f32 (PI.f32) tau) (PI.f32))))
97.3%
(/.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) (*.f32 (*.f32 (*.f32 (PI.f32) x) x) (*.f32 tau (PI.f32))))
71.9%
(/.f32 (*.f32 #s(approx (/ (sin (* (PI) x)) x) (PI.f32)) (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) x)) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
65.7%
(/.f32 (*.f32 #s(approx (/ (sin (* tau (* (PI) x))) (* (PI) x)) tau) (sin.f32 (*.f32 (PI.f32) x))) (*.f32 tau (*.f32 (PI.f32) x)))
64.7%
(/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 tau (pow.f32 (PI.f32) #s(literal 2 binary32)))) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
65.7%
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 (PI.f32) x) (*.f32 (sin.f32 (*.f32 (PI.f32) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)))))
97.0%
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 x (*.f32 (*.f32 (PI.f32) tau) (PI.f32))) (*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x)) x) (sin.f32 (*.f32 (PI.f32) x)))))
65.6%
(/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (/.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) x)))
65.6%
(/.f32 #s(literal 1 binary32) (/.f32 x (/.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32))))
77.9%
(*.f32 (/.f32 (sin.f32 (fma.f32 (fma.f32 tau x #s(literal 1 binary32)) (PI.f32) (PI.f32))) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
79.8%
(*.f32 (/.f32 (sin.f32 (fma.f32 (*.f32 tau x) (neg.f32 (PI.f32)) (PI.f32))) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
97.9%
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (PI.f32)))
77.0%
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (fma.f32 (neg.f32 x) (PI.f32) (PI.f32))) (*.f32 x (PI.f32))))
77.0%
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (-.f32 (PI.f32) (*.f32 (PI.f32) x))) (*.f32 x (PI.f32))))
74.7%
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (+.f32 (fma.f32 (PI.f32) x (PI.f32)) (PI.f32))) (*.f32 x (PI.f32))))
71.7%
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (+.f32 (+.f32 (-.f32 (PI.f32) (*.f32 (PI.f32) x)) (PI.f32)) (PI.f32))) (*.f32 x (PI.f32))))
86.0%
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) #s(approx (/ (sin (* x (PI))) (* x (PI))) (+.f32 #s(literal 1 binary32) (*.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32)))))))
98.1%
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 tau x) (PI.f32))) (*.f32 (*.f32 tau x) (PI.f32))) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
86.0%
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 tau x) (PI.f32))) (*.f32 (*.f32 tau x) (PI.f32))) #s(approx (/ (sin (* x (PI))) (* x (PI))) (+.f32 #s(literal 1 binary32) (*.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32)))))))
97.3%
(*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (*.f32 (*.f32 (PI.f32) x) x) (*.f32 tau (PI.f32)))) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))))
97.5%
(*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (*.f32 tau (*.f32 (PI.f32) x)) (PI.f32))))
97.3%
(*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (*.f32 (*.f32 (PI.f32) x) x) (*.f32 tau (PI.f32)))) (sin.f32 (*.f32 (PI.f32) x)))
81.3%
(*.f32 (/.f32 (sin.f32 (neg.f32 (fma.f32 (*.f32 tau (PI.f32)) x (PI.f32)))) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
98.0%
(*.f32 (/.f32 (sin.f32 (log.f32 (pow.f32 (exp.f32 (*.f32 (PI.f32) x)) tau))) (log.f32 (pow.f32 (exp.f32 (*.f32 (PI.f32) x)) tau))) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
78.0%
(*.f32 (/.f32 (cos.f32 (fma.f32 (fma.f32 tau x #s(literal 1 binary32)) (PI.f32) (*.f32 (PI.f32) #s(literal 1/2 binary32)))) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
82.1%
(*.f32 (/.f32 (cos.f32 (fma.f32 (*.f32 (neg.f32 tau) (PI.f32)) x (*.f32 (PI.f32) #s(literal 1/2 binary32)))) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
65.6%
(*.f32 (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (PI.f32)) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x))
65.5%
(*.f32 (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) x) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (PI.f32)))
97.4%
(*.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x))) (/.f32 #s(literal 1 binary32) (*.f32 (*.f32 (*.f32 (*.f32 (PI.f32) tau) x) x) (PI.f32))))
65.6%
(*.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (/.f32 #s(literal 1 binary32) (*.f32 (PI.f32) x)))
97.4%
(*.f32 (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x)) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (*.f32 (*.f32 (*.f32 (PI.f32) tau) x) x) (PI.f32))))
65.7%
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
66.0%
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x (+.f32 (PI.f32) (*.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32))))))) (*.f32 x (PI.f32))))
66.0%
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) #s(approx (/ (sin (* x (PI))) (* x (PI))) (+.f32 #s(literal 1 binary32) (*.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32)))))))
79.8%
#s(approx (* (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (/ (sin (* x (PI))) (* x (PI)))) (+.f32 #s(literal 1 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32))) (*.f32 #s(literal -1/6 binary32) (pow.f32 (PI.f32) #s(literal 2 binary32)))))))
Compiler

Compiled 2 263 to 1 360 computations (39.9% saved)

sample0.0ms (0.0%)

Memory
1.1MiB live, 1.1MiB allocated; 0ms collecting garbage
Calls
Call 1
Inputs
(PI)
2
(pow (PI) 2)
1
-1/6
3
(pow (PI) 3)
Outputs
#s(literal 13176795/4194304 binary32)
#s(literal 2 binary32)
#s(literal 5174515/524288 binary32)
#s(literal 1 binary32)
#s(literal -11184811/67108864 binary32)
#s(literal 3 binary32)
#s(literal 16256219/524288 binary32)
Samples
0.0ms0valid
Compiler

Compiled 13 to 9 computations (30.8% saved)

Precisions
Click to see histograms. Total time spent on operations: 0.0ms
adjust: 0.0ms (0.0% of total)

series424.0ms (8.9%)

Memory
-27.3MiB live, 869.8MiB allocated; 205ms collecting garbage
Iterations

Useful iterations: 0 (0.0ms)

IterNodesCost
08177356
Stop Event
iter-limit
Counts
43 → 92
Calls
Call 1
Inputs
(PI.f32)
x
(*.f32 (PI.f32) x)
(exp.f32 (*.f32 (PI.f32) x))
tau
(pow.f32 (exp.f32 (*.f32 (PI.f32) x)) tau)
(log.f32 (pow.f32 (exp.f32 (*.f32 (PI.f32) x)) tau))
(sin.f32 (log.f32 (pow.f32 (exp.f32 (*.f32 (PI.f32) x)) tau)))
(/.f32 (sin.f32 (log.f32 (pow.f32 (exp.f32 (*.f32 (PI.f32) x)) tau))) (log.f32 (pow.f32 (exp.f32 (*.f32 (PI.f32) x)) tau)))
(*.f32 x (PI.f32))
(sin.f32 (*.f32 x (PI.f32)))
(/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32)))
(*.f32 (/.f32 (sin.f32 (log.f32 (pow.f32 (exp.f32 (*.f32 (PI.f32) x)) tau))) (log.f32 (pow.f32 (exp.f32 (*.f32 (PI.f32) x)) tau))) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
#s(literal 2 binary32)
(pow.f32 (PI.f32) #s(literal 2 binary32))
(*.f32 tau (pow.f32 (PI.f32) #s(literal 2 binary32)))
#s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 tau (pow.f32 (PI.f32) #s(literal 2 binary32))))
(*.f32 tau (PI.f32))
(*.f32 (PI.f32) (*.f32 tau (PI.f32)))
(/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 tau (pow.f32 (PI.f32) #s(literal 2 binary32)))) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
#s(literal 1 binary32)
#s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))
#s(literal -1/6 binary32)
(pow.f32 x #s(literal 2 binary32))
#s(literal 3 binary32)
(pow.f32 (PI.f32) #s(literal 3 binary32))
(*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32)))
(*.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32))))
(+.f32 (PI.f32) (*.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32)))))
(*.f32 x (+.f32 (PI.f32) (*.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32))))))
#s(approx (sin (* x (PI))) (*.f32 x (+.f32 (PI.f32) (*.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32)))))))
(/.f32 #s(approx (sin (* x (PI))) (*.f32 x (+.f32 (PI.f32) (*.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32))))))) (*.f32 x (PI.f32)))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x (+.f32 (PI.f32) (*.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32))))))) (*.f32 x (PI.f32))))
(sin.f32 (*.f32 (PI.f32) x))
(*.f32 (PI.f32) tau)
(*.f32 (*.f32 (PI.f32) tau) x)
(sin.f32 (*.f32 (*.f32 (PI.f32) tau) x))
(*.f32 (sin.f32 (*.f32 (PI.f32) x)) (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x)))
(*.f32 (*.f32 (*.f32 (PI.f32) tau) x) x)
(*.f32 (*.f32 (*.f32 (*.f32 (PI.f32) tau) x) x) (PI.f32))
(/.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x))) (*.f32 (*.f32 (*.f32 (*.f32 (PI.f32) tau) x) x) (PI.f32)))
(/.f32 #s(literal 1 binary32) (*.f32 (*.f32 (*.f32 (*.f32 (PI.f32) tau) x) x) (PI.f32)))
(*.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x))) (/.f32 #s(literal 1 binary32) (*.f32 (*.f32 (*.f32 (*.f32 (PI.f32) tau) x) x) (PI.f32))))
Outputs
#s(approx x x)
#s(approx (* (PI) x) (*.f32 x (PI.f32)))
#s(approx (exp (* (PI) x)) #s(literal 1 binary32))
#s(approx (exp (* (PI) x)) (+.f32 #s(literal 1 binary32) (*.f32 x (PI.f32))))
#s(approx (exp (* (PI) x)) (+.f32 #s(literal 1 binary32) (*.f32 x (+.f32 (PI.f32) (*.f32 #s(literal 1/2 binary32) (*.f32 x (pow.f32 (PI.f32) #s(literal 2 binary32))))))))
#s(approx (exp (* (PI) x)) (+.f32 #s(literal 1 binary32) (*.f32 x (+.f32 (PI.f32) (*.f32 x (fma.f32 #s(literal 1/6 binary32) (*.f32 x (pow.f32 (PI.f32) #s(literal 3 binary32))) (*.f32 #s(literal 1/2 binary32) (pow.f32 (PI.f32) #s(literal 2 binary32)))))))))
#s(approx (pow (exp (* (PI) x)) tau) (+.f32 #s(literal 1 binary32) (*.f32 tau (*.f32 x (PI.f32)))))
#s(approx (pow (exp (* (PI) x)) tau) (+.f32 #s(literal 1 binary32) (*.f32 x (fma.f32 tau (PI.f32) (*.f32 x (fma.f32 #s(literal 1/2 binary32) (*.f32 tau (fma.f32 #s(literal -1 binary32) (pow.f32 (PI.f32) #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32)))) (*.f32 #s(literal 1/2 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32))))))))))
#s(approx (pow (exp (* (PI) x)) tau) (+.f32 #s(literal 1 binary32) (*.f32 x (fma.f32 tau (PI.f32) (*.f32 x (fma.f32 #s(literal 1/2 binary32) (*.f32 tau (fma.f32 #s(literal -1 binary32) (pow.f32 (PI.f32) #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32)))) (fma.f32 #s(literal 1/2 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32))) (*.f32 x (fma.f32 #s(literal 1/6 binary32) (*.f32 tau (fma.f32 #s(literal -3 binary32) (pow.f32 (PI.f32) #s(literal 3 binary32)) (fma.f32 #s(literal 2 binary32) (pow.f32 (PI.f32) #s(literal 3 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32))))) (fma.f32 #s(literal 1/6 binary32) (*.f32 (pow.f32 tau #s(literal 3 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32))) (*.f32 #s(literal 1/2 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (*.f32 (PI.f32) (fma.f32 #s(literal -1 binary32) (pow.f32 (PI.f32) #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32))))))))))))))))
#s(approx (log (pow (exp (* (PI) x)) tau)) (*.f32 tau (*.f32 x (PI.f32))))
#s(approx (log (pow (exp (* (PI) x)) tau)) (*.f32 x (fma.f32 #s(literal 1/2 binary32) (*.f32 x (fma.f32 #s(literal -1 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32))) (*.f32 #s(literal 2 binary32) (fma.f32 #s(literal 1/2 binary32) (*.f32 tau (fma.f32 #s(literal -1 binary32) (pow.f32 (PI.f32) #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32)))) (*.f32 #s(literal 1/2 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32)))))))) (*.f32 tau (PI.f32)))))
#s(approx (log (pow (exp (* (PI) x)) tau)) (*.f32 x (fma.f32 tau (PI.f32) (*.f32 x (fma.f32 #s(literal 1/6 binary32) (*.f32 x (fma.f32 #s(literal -6 binary32) (*.f32 tau (*.f32 (PI.f32) (fma.f32 #s(literal 1/2 binary32) (*.f32 tau (fma.f32 #s(literal -1 binary32) (pow.f32 (PI.f32) #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32)))) (*.f32 #s(literal 1/2 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32))))))) (fma.f32 #s(literal 2 binary32) (*.f32 (pow.f32 tau #s(literal 3 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32))) (*.f32 #s(literal 6 binary32) (fma.f32 #s(literal 1/6 binary32) (*.f32 tau (fma.f32 #s(literal -3 binary32) (pow.f32 (PI.f32) #s(literal 3 binary32)) (fma.f32 #s(literal 2 binary32) (pow.f32 (PI.f32) #s(literal 3 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32))))) (fma.f32 #s(literal 1/6 binary32) (*.f32 (pow.f32 tau #s(literal 3 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32))) (*.f32 #s(literal 1/2 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (*.f32 (PI.f32) (fma.f32 #s(literal -1 binary32) (pow.f32 (PI.f32) #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32)))))))))))) (*.f32 #s(literal 1/2 binary32) (fma.f32 #s(literal -1 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32))) (*.f32 #s(literal 2 binary32) (fma.f32 #s(literal 1/2 binary32) (*.f32 tau (fma.f32 #s(literal -1 binary32) (pow.f32 (PI.f32) #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32)))) (*.f32 #s(literal 1/2 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32)))))))))))))
#s(approx (log (pow (exp (* (PI) x)) tau)) (*.f32 x (fma.f32 tau (PI.f32) (*.f32 x (fma.f32 #s(literal 1/2 binary32) (fma.f32 #s(literal -1 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32))) (*.f32 #s(literal 2 binary32) (fma.f32 #s(literal 1/2 binary32) (*.f32 tau (fma.f32 #s(literal -1 binary32) (pow.f32 (PI.f32) #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32)))) (*.f32 #s(literal 1/2 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32))))))) (*.f32 x (fma.f32 #s(literal 1/24 binary32) (*.f32 x (fma.f32 #s(literal -24 binary32) (*.f32 tau (*.f32 (PI.f32) (fma.f32 #s(literal 1/6 binary32) (*.f32 tau (fma.f32 #s(literal -3 binary32) (pow.f32 (PI.f32) #s(literal 3 binary32)) (fma.f32 #s(literal 2 binary32) (pow.f32 (PI.f32) #s(literal 3 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32))))) (fma.f32 #s(literal 1/6 binary32) (*.f32 (pow.f32 tau #s(literal 3 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32))) (*.f32 #s(literal 1/2 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (*.f32 (PI.f32) (fma.f32 #s(literal -1 binary32) (pow.f32 (PI.f32) #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32)))))))))) (fma.f32 #s(literal -12 binary32) (pow.f32 (fma.f32 #s(literal 1/2 binary32) (*.f32 tau (fma.f32 #s(literal -1 binary32) (pow.f32 (PI.f32) #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32)))) (*.f32 #s(literal 1/2 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32))))) #s(literal 2 binary32)) (fma.f32 #s(literal -6 binary32) (*.f32 (pow.f32 tau #s(literal 4 binary32)) (pow.f32 (PI.f32) #s(literal 4 binary32))) (fma.f32 #s(literal 24 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (*.f32 (pow.f32 (PI.f32) #s(literal 2 binary32)) (fma.f32 #s(literal 1/2 binary32) (*.f32 tau (fma.f32 #s(literal -1 binary32) (pow.f32 (PI.f32) #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32)))) (*.f32 #s(literal 1/2 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32))))))) (*.f32 #s(literal 24 binary32) (fma.f32 #s(literal 1/24 binary32) (*.f32 tau (fma.f32 #s(literal -6 binary32) (pow.f32 (PI.f32) #s(literal 4 binary32)) (fma.f32 #s(literal -4 binary32) (pow.f32 (PI.f32) #s(literal 4 binary32)) (fma.f32 #s(literal -3 binary32) (pow.f32 (PI.f32) #s(literal 4 binary32)) (fma.f32 #s(literal 12 binary32) (pow.f32 (PI.f32) #s(literal 4 binary32)) (pow.f32 (PI.f32) #s(literal 4 binary32))))))) (fma.f32 #s(literal 1/24 binary32) (*.f32 (pow.f32 tau #s(literal 4 binary32)) (pow.f32 (PI.f32) #s(literal 4 binary32))) (fma.f32 #s(literal 1/8 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (pow.f32 (fma.f32 #s(literal -1 binary32) (pow.f32 (PI.f32) #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32))) #s(literal 2 binary32))) (fma.f32 #s(literal 1/6 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (*.f32 (PI.f32) (fma.f32 #s(literal -3 binary32) (pow.f32 (PI.f32) #s(literal 3 binary32)) (fma.f32 #s(literal 2 binary32) (pow.f32 (PI.f32) #s(literal 3 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32)))))) (*.f32 #s(literal 1/4 binary32) (*.f32 (pow.f32 tau #s(literal 3 binary32)) (*.f32 (pow.f32 (PI.f32) #s(literal 2 binary32)) (fma.f32 #s(literal -1 binary32) (pow.f32 (PI.f32) #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32)))))))))))))))) (*.f32 #s(literal 1/6 binary32) (fma.f32 #s(literal -6 binary32) (*.f32 tau (*.f32 (PI.f32) (fma.f32 #s(literal 1/2 binary32) (*.f32 tau (fma.f32 #s(literal -1 binary32) (pow.f32 (PI.f32) #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32)))) (*.f32 #s(literal 1/2 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32))))))) (fma.f32 #s(literal 2 binary32) (*.f32 (pow.f32 tau #s(literal 3 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32))) (*.f32 #s(literal 6 binary32) (fma.f32 #s(literal 1/6 binary32) (*.f32 tau (fma.f32 #s(literal -3 binary32) (pow.f32 (PI.f32) #s(literal 3 binary32)) (fma.f32 #s(literal 2 binary32) (pow.f32 (PI.f32) #s(literal 3 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32))))) (fma.f32 #s(literal 1/6 binary32) (*.f32 (pow.f32 tau #s(literal 3 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32))) (*.f32 #s(literal 1/2 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (*.f32 (PI.f32) (fma.f32 #s(literal -1 binary32) (pow.f32 (PI.f32) #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32)))))))))))))))))))
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#s(approx (pow x 2) (pow.f32 x #s(literal 2 binary32)))
#s(approx (* (pow x 2) (pow (PI) 3)) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32))))
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#s(approx (sin (log (pow (exp (* (PI) x)) tau))) (sin.f32 (*.f32 tau (*.f32 x (PI.f32)))))
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#s(approx tau tau)
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#s(literal 2 binary32)))) (*.f32 #s(literal 1/6 binary32) (/.f32 (*.f32 (sin.f32 (*.f32 x (PI.f32))) (fma.f32 #s(literal -3 binary32) (*.f32 (pow.f32 x #s(literal 3 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32))) (fma.f32 #s(literal 2 binary32) (*.f32 (pow.f32 x #s(literal 3 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32))) (*.f32 (pow.f32 x #s(literal 3 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32)))))) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32))))))) (*.f32 x (PI.f32))) (*.f32 #s(literal 1/2 binary32) (/.f32 (*.f32 (fma.f32 #s(literal -1 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32))) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32)))) (-.f32 (/.f32 (*.f32 (sin.f32 (*.f32 x (PI.f32))) (fma.f32 #s(literal -1/4 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (*.f32 (pow.f32 (PI.f32) #s(literal 2 binary32)) (fma.f32 #s(literal -1 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32))) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32)))))) (*.f32 #s(literal 1/24 binary32) (fma.f32 #s(literal -6 binary32) (*.f32 (pow.f32 x #s(literal 4 binary32)) (pow.f32 (PI.f32) #s(literal 4 binary32))) (fma.f32 #s(literal -4 binary32) (*.f32 (pow.f32 x #s(literal 4 binary32)) (pow.f32 (PI.f32) #s(literal 4 binary32))) (fma.f32 #s(literal -3 binary32) (*.f32 (pow.f32 x #s(literal 4 binary32)) (pow.f32 (PI.f32) #s(literal 4 binary32))) (fma.f32 #s(literal 12 binary32) (*.f32 (pow.f32 x #s(literal 4 binary32)) (pow.f32 (PI.f32) #s(literal 4 binary32))) (*.f32 (pow.f32 x #s(literal 4 binary32)) (pow.f32 (PI.f32) #s(literal 4 binary32)))))))))) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32)))) (fma.f32 #s(literal 1/24 binary32) (/.f32 (*.f32 (sin.f32 (*.f32 x (PI.f32))) (fma.f32 #s(literal -6 binary32) (*.f32 (pow.f32 x #s(literal 4 binary32)) (pow.f32 (PI.f32) #s(literal 4 binary32))) (fma.f32 #s(literal -4 binary32) (*.f32 (pow.f32 x #s(literal 4 binary32)) (pow.f32 (PI.f32) #s(literal 4 binary32))) (fma.f32 #s(literal -3 binary32) (*.f32 (pow.f32 x #s(literal 4 binary32)) (pow.f32 (PI.f32) #s(literal 4 binary32))) (fma.f32 #s(literal 12 binary32) (*.f32 (pow.f32 x #s(literal 4 binary32)) (pow.f32 (PI.f32) #s(literal 4 binary32))) (*.f32 (pow.f32 x #s(literal 4 binary32)) (pow.f32 (PI.f32) #s(literal 4 binary32)))))))) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32)))) (*.f32 #s(literal 1/2 binary32) (/.f32 (*.f32 (fma.f32 #s(literal -1 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32))) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32)))) (-.f32 (/.f32 (*.f32 (sin.f32 (*.f32 x (PI.f32))) (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 x #s(literal 3 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32))) (*.f32 #s(literal 1/6 binary32) (fma.f32 #s(literal -3 binary32) (*.f32 (pow.f32 x #s(literal 3 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32))) (fma.f32 #s(literal 2 binary32) (*.f32 (pow.f32 x #s(literal 3 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32))) (*.f32 (pow.f32 x #s(literal 3 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32)))))))) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32)))) (*.f32 #s(literal 1/6 binary32) (/.f32 (*.f32 (sin.f32 (*.f32 x (PI.f32))) (fma.f32 #s(literal -3 binary32) (*.f32 (pow.f32 x #s(literal 3 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32))) (fma.f32 #s(literal 2 binary32) (*.f32 (pow.f32 x #s(literal 3 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32))) (*.f32 (pow.f32 x #s(literal 3 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32)))))) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32))))))) (*.f32 x (PI.f32))))))) (*.f32 x (PI.f32))))))) (/.f32 (*.f32 (sin.f32 (*.f32 x (PI.f32))) (fma.f32 #s(literal -1/4 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (*.f32 (pow.f32 (PI.f32) #s(literal 2 binary32)) (fma.f32 #s(literal -1 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32))) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32)))))) (*.f32 #s(literal 1/24 binary32) (fma.f32 #s(literal -6 binary32) (*.f32 (pow.f32 x #s(literal 4 binary32)) (pow.f32 (PI.f32) #s(literal 4 binary32))) (fma.f32 #s(literal -4 binary32) (*.f32 (pow.f32 x #s(literal 4 binary32)) (pow.f32 (PI.f32) #s(literal 4 binary32))) (fma.f32 #s(literal -3 binary32) (*.f32 (pow.f32 x #s(literal 4 binary32)) (pow.f32 (PI.f32) #s(literal 4 binary32))) (fma.f32 #s(literal 12 binary32) (*.f32 (pow.f32 x #s(literal 4 binary32)) (pow.f32 (PI.f32) #s(literal 4 binary32))) (*.f32 (pow.f32 x #s(literal 4 binary32)) (pow.f32 (PI.f32) #s(literal 4 binary32)))))))))) (*.f32 (pow.f32 x #s(literal 2 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(PI.f32) #s(literal 2 binary32)))) (-.f32 (/.f32 (*.f32 (sin.f32 (*.f32 x (PI.f32))) (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 x #s(literal 3 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32))) (*.f32 #s(literal 1/6 binary32) (fma.f32 #s(literal -3 binary32) (*.f32 (pow.f32 x #s(literal 3 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32))) (fma.f32 #s(literal 2 binary32) (*.f32 (pow.f32 x #s(literal 3 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32))) (*.f32 (pow.f32 x #s(literal 3 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32)))))))) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32)))) (*.f32 #s(literal 1/6 binary32) (/.f32 (*.f32 (sin.f32 (*.f32 x (PI.f32))) (fma.f32 #s(literal -3 binary32) (*.f32 (pow.f32 x #s(literal 3 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32))) (fma.f32 #s(literal 2 binary32) (*.f32 (pow.f32 x #s(literal 3 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32))) (*.f32 (pow.f32 x #s(literal 3 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32)))))) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32))))))) (*.f32 x (PI.f32)))))) (/.f32 (*.f32 (sin.f32 (*.f32 x (PI.f32))) (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 x #s(literal 3 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32))) (*.f32 #s(literal 1/6 binary32) (fma.f32 #s(literal -3 binary32) (*.f32 (pow.f32 x #s(literal 3 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32))) (fma.f32 #s(literal 2 binary32) (*.f32 (pow.f32 x #s(literal 3 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32))) (*.f32 (pow.f32 x #s(literal 3 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32)))))))) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32))))) (*.f32 #s(literal 1/6 binary32) (/.f32 (*.f32 (sin.f32 (*.f32 x (PI.f32))) (fma.f32 #s(literal -3 binary32) (*.f32 (pow.f32 x #s(literal 3 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32))) (fma.f32 #s(literal 2 binary32) (*.f32 (pow.f32 x #s(literal 3 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32))) (*.f32 (pow.f32 x #s(literal 3 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32)))))) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32)))))) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32)))))
#s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (/.f32 (*.f32 tau (*.f32 (PI.f32) (sin.f32 (*.f32 x (PI.f32))))) x))
#s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 tau (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (*.f32 x (*.f32 (pow.f32 (PI.f32) #s(literal 3 binary32)) (sin.f32 (*.f32 x (PI.f32)))))) (/.f32 (*.f32 (PI.f32) (sin.f32 (*.f32 x (PI.f32)))) x))))
#s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 tau (fma.f32 (pow.f32 tau #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (*.f32 x (*.f32 (pow.f32 (PI.f32) #s(literal 3 binary32)) (sin.f32 (*.f32 x (PI.f32))))) (*.f32 #s(literal 1/120 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (*.f32 (pow.f32 x #s(literal 3 binary32)) (*.f32 (pow.f32 (PI.f32) #s(literal 5 binary32)) (sin.f32 (*.f32 x (PI.f32)))))))) (/.f32 (*.f32 (PI.f32) (sin.f32 (*.f32 x (PI.f32)))) x))))
#s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 tau (fma.f32 (pow.f32 tau #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (*.f32 x (*.f32 (pow.f32 (PI.f32) #s(literal 3 binary32)) (sin.f32 (*.f32 x (PI.f32))))) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (fma.f32 #s(literal -1/5040 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (*.f32 (pow.f32 x #s(literal 5 binary32)) (*.f32 (pow.f32 (PI.f32) #s(literal 7 binary32)) (sin.f32 (*.f32 x (PI.f32)))))) (*.f32 #s(literal 1/120 binary32) (*.f32 (pow.f32 x #s(literal 3 binary32)) (*.f32 (pow.f32 (PI.f32) #s(literal 5 binary32)) (sin.f32 (*.f32 x (PI.f32))))))))) (/.f32 (*.f32 (PI.f32) (sin.f32 (*.f32 x (PI.f32)))) x))))
#s(approx (* tau (PI)) (*.f32 tau (PI.f32)))
#s(approx (/ (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (* (PI) (* tau (PI)))) (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (*.f32 x (*.f32 (PI.f32) (sin.f32 (*.f32 x (PI.f32)))))) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32)))))
#s(approx (/ (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (* (PI) (* tau (PI)))) (fma.f32 (pow.f32 tau #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (*.f32 x (*.f32 (PI.f32) (sin.f32 (*.f32 x (PI.f32))))) (*.f32 #s(literal 1/120 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (*.f32 (pow.f32 x #s(literal 3 binary32)) (*.f32 (pow.f32 (PI.f32) #s(literal 3 binary32)) (sin.f32 (*.f32 x (PI.f32)))))))) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32)))))
#s(approx (/ (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (* (PI) (* tau (PI)))) (fma.f32 (pow.f32 tau #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (*.f32 x (*.f32 (PI.f32) (sin.f32 (*.f32 x (PI.f32))))) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (fma.f32 #s(literal -1/5040 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (*.f32 (pow.f32 x #s(literal 5 binary32)) (*.f32 (pow.f32 (PI.f32) #s(literal 5 binary32)) (sin.f32 (*.f32 x (PI.f32)))))) (*.f32 #s(literal 1/120 binary32) (*.f32 (pow.f32 x #s(literal 3 binary32)) (*.f32 (pow.f32 (PI.f32) #s(literal 3 binary32)) (sin.f32 (*.f32 x (PI.f32))))))))) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32)))))
#s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (+.f32 #s(literal 1 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32))) (*.f32 #s(literal 1/120 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (*.f32 (pow.f32 x #s(literal 4 binary32)) (pow.f32 (PI.f32) #s(literal 4 binary32)))))))))
#s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (+.f32 #s(literal 1 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32))) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (fma.f32 #s(literal -1/5040 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (*.f32 (pow.f32 x #s(literal 6 binary32)) (pow.f32 (PI.f32) #s(literal 6 binary32)))) (*.f32 #s(literal 1/120 binary32) (*.f32 (pow.f32 x #s(literal 4 binary32)) (pow.f32 (PI.f32) #s(literal 4 binary32))))))))))
#s(approx (sin (* (* (PI) tau) x)) (*.f32 tau (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (*.f32 (pow.f32 x #s(literal 3 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32)))) (*.f32 x (PI.f32)))))
#s(approx (sin (* (* (PI) tau) x)) (*.f32 tau (fma.f32 x (PI.f32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 x #s(literal 3 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32))) (*.f32 #s(literal 1/120 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (*.f32 (pow.f32 x #s(literal 5 binary32)) (pow.f32 (PI.f32) #s(literal 5 binary32))))))))))
#s(approx (sin (* (* (PI) tau) x)) (*.f32 tau (fma.f32 x (PI.f32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 x #s(literal 3 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32))) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (fma.f32 #s(literal -1/5040 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (*.f32 (pow.f32 x #s(literal 7 binary32)) (pow.f32 (PI.f32) #s(literal 7 binary32)))) (*.f32 #s(literal 1/120 binary32) (*.f32 (pow.f32 x #s(literal 5 binary32)) (pow.f32 (PI.f32) #s(literal 5 binary32)))))))))))
#s(approx (* (sin (* (PI) x)) (sin (* (* (PI) tau) x))) (*.f32 tau (*.f32 x (*.f32 (PI.f32) (sin.f32 (*.f32 x (PI.f32)))))))
#s(approx (* (sin (* (PI) x)) (sin (* (* (PI) tau) x))) (*.f32 tau (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (*.f32 (pow.f32 x #s(literal 3 binary32)) (*.f32 (pow.f32 (PI.f32) #s(literal 3 binary32)) (sin.f32 (*.f32 x (PI.f32)))))) (*.f32 x (*.f32 (PI.f32) (sin.f32 (*.f32 x (PI.f32))))))))
#s(approx (* (sin (* (PI) x)) (sin (* (* (PI) tau) x))) (*.f32 tau (fma.f32 x (*.f32 (PI.f32) (sin.f32 (*.f32 x (PI.f32)))) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 x #s(literal 3 binary32)) (*.f32 (pow.f32 (PI.f32) #s(literal 3 binary32)) (sin.f32 (*.f32 x (PI.f32))))) (*.f32 #s(literal 1/120 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (*.f32 (pow.f32 x #s(literal 5 binary32)) (*.f32 (pow.f32 (PI.f32) #s(literal 5 binary32)) (sin.f32 (*.f32 x (PI.f32))))))))))))
#s(approx (* (sin (* (PI) x)) (sin (* (* (PI) tau) x))) (*.f32 tau (fma.f32 x (*.f32 (PI.f32) (sin.f32 (*.f32 x (PI.f32)))) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 x #s(literal 3 binary32)) (*.f32 (pow.f32 (PI.f32) #s(literal 3 binary32)) (sin.f32 (*.f32 x (PI.f32))))) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (fma.f32 #s(literal -1/5040 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (*.f32 (pow.f32 x #s(literal 7 binary32)) (*.f32 (pow.f32 (PI.f32) #s(literal 7 binary32)) (sin.f32 (*.f32 x (PI.f32)))))) (*.f32 #s(literal 1/120 binary32) (*.f32 (pow.f32 x #s(literal 5 binary32)) (*.f32 (pow.f32 (PI.f32) #s(literal 5 binary32)) (sin.f32 (*.f32 x (PI.f32)))))))))))))
Calls

6 calls:

TimeVariablePoint
111.0ms
x
inf
90.0ms
tau
-inf
58.0ms
x
-inf
31.0ms
x
0
23.0ms
tau
inf

rewrite210.0ms (4.4%)

Memory
-0.3MiB live, 704.1MiB allocated; 53ms collecting garbage
Iterations

Useful iterations: 0 (0.0ms)

IterNodesCost
056392
093402
1326378
21416368
04262363
Stop Event
iter-limit
node-limit
iter-limit
Counts
43 → 1 779
Calls
Call 1
Inputs
(PI.f32)
x
(*.f32 (PI.f32) x)
(exp.f32 (*.f32 (PI.f32) x))
tau
(pow.f32 (exp.f32 (*.f32 (PI.f32) x)) tau)
(log.f32 (pow.f32 (exp.f32 (*.f32 (PI.f32) x)) tau))
(sin.f32 (log.f32 (pow.f32 (exp.f32 (*.f32 (PI.f32) x)) tau)))
(/.f32 (sin.f32 (log.f32 (pow.f32 (exp.f32 (*.f32 (PI.f32) x)) tau))) (log.f32 (pow.f32 (exp.f32 (*.f32 (PI.f32) x)) tau)))
(*.f32 x (PI.f32))
(sin.f32 (*.f32 x (PI.f32)))
(/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32)))
(*.f32 (/.f32 (sin.f32 (log.f32 (pow.f32 (exp.f32 (*.f32 (PI.f32) x)) tau))) (log.f32 (pow.f32 (exp.f32 (*.f32 (PI.f32) x)) tau))) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
#s(literal 2 binary32)
(pow.f32 (PI.f32) #s(literal 2 binary32))
(*.f32 tau (pow.f32 (PI.f32) #s(literal 2 binary32)))
#s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 tau (pow.f32 (PI.f32) #s(literal 2 binary32))))
(*.f32 tau (PI.f32))
(*.f32 (PI.f32) (*.f32 tau (PI.f32)))
(/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 tau (pow.f32 (PI.f32) #s(literal 2 binary32)))) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
#s(literal 1 binary32)
#s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))
#s(literal -1/6 binary32)
(pow.f32 x #s(literal 2 binary32))
#s(literal 3 binary32)
(pow.f32 (PI.f32) #s(literal 3 binary32))
(*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32)))
(*.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32))))
(+.f32 (PI.f32) (*.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32)))))
(*.f32 x (+.f32 (PI.f32) (*.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32))))))
#s(approx (sin (* x (PI))) (*.f32 x (+.f32 (PI.f32) (*.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32)))))))
(/.f32 #s(approx (sin (* x (PI))) (*.f32 x (+.f32 (PI.f32) (*.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32))))))) (*.f32 x (PI.f32)))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x (+.f32 (PI.f32) (*.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32))))))) (*.f32 x (PI.f32))))
(sin.f32 (*.f32 (PI.f32) x))
(*.f32 (PI.f32) tau)
(*.f32 (*.f32 (PI.f32) tau) x)
(sin.f32 (*.f32 (*.f32 (PI.f32) tau) x))
(*.f32 (sin.f32 (*.f32 (PI.f32) x)) (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x)))
(*.f32 (*.f32 (*.f32 (PI.f32) tau) x) x)
(*.f32 (*.f32 (*.f32 (*.f32 (PI.f32) tau) x) x) (PI.f32))
(/.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x))) (*.f32 (*.f32 (*.f32 (*.f32 (PI.f32) tau) x) x) (PI.f32)))
(/.f32 #s(literal 1 binary32) (*.f32 (*.f32 (*.f32 (*.f32 (PI.f32) tau) x) x) (PI.f32)))
(*.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x))) (/.f32 #s(literal 1 binary32) (*.f32 (*.f32 (*.f32 (*.f32 (PI.f32) tau) x) x) (PI.f32))))
Outputs
(PI.f32)
x
(log.f32 (exp.f32 (*.f32 x (PI.f32))))
(*.f32 (*.f32 x (pow.f32 (PI.f32) #s(literal 2/3 binary32))) (cbrt.f32 (PI.f32)))
(*.f32 (pow.f32 (PI.f32) #s(literal 2/3 binary32)) (*.f32 (cbrt.f32 (PI.f32)) x))
(*.f32 x (log.f32 (exp.f32 (PI.f32))))
(*.f32 x (PI.f32))
(*.f32 (PI.f32) (log.f32 (exp.f32 x)))
(*.f32 (PI.f32) x)
(*.f32 (sqrt.f32 (exp.f32 (*.f32 x (PI.f32)))) (sqrt.f32 (exp.f32 (*.f32 x (PI.f32)))))
(*.f32 (+.f32 #s(literal 1 binary32) (/.f32 (sinh.f32 (*.f32 x (PI.f32))) (cosh.f32 (*.f32 x (PI.f32))))) (cosh.f32 (*.f32 x (PI.f32))))
(*.f32 (pow.f32 (exp.f32 (PI.f32)) (/.f32 x #s(literal 2 binary32))) (pow.f32 (exp.f32 (PI.f32)) (/.f32 x #s(literal 2 binary32))))
(/.f32 (-.f32 (*.f32 (cosh.f32 (*.f32 x (PI.f32))) (cosh.f32 (*.f32 x (PI.f32)))) (*.f32 (sinh.f32 (*.f32 x (PI.f32))) (sinh.f32 (*.f32 x (PI.f32))))) (exp.f32 (*.f32 (neg.f32 x) (PI.f32))))
(/.f32 (+.f32 (pow.f32 (cosh.f32 (*.f32 x (PI.f32))) #s(literal 3 binary32)) (pow.f32 (sinh.f32 (*.f32 x (PI.f32))) #s(literal 3 binary32))) (fma.f32 (cosh.f32 (*.f32 x (PI.f32))) (cosh.f32 (*.f32 x (PI.f32))) (-.f32 (*.f32 (sinh.f32 (*.f32 x (PI.f32))) (sinh.f32 (*.f32 x (PI.f32)))) (*.f32 (cosh.f32 (*.f32 x (PI.f32))) (sinh.f32 (*.f32 x (PI.f32)))))))
(sqrt.f32 (exp.f32 (*.f32 (*.f32 x (PI.f32)) #s(literal 2 binary32))))
(-.f32 (cosh.f32 (*.f32 x (PI.f32))) (sinh.f32 (*.f32 (neg.f32 x) (PI.f32))))
(pow.f32 (exp.f32 (*.f32 x (pow.f32 (PI.f32) #s(literal 2/3 binary32)))) (cbrt.f32 (PI.f32)))
(pow.f32 (exp.f32 (*.f32 (*.f32 x (PI.f32)) #s(literal 2 binary32))) #s(literal 1/2 binary32))
(pow.f32 (exp.f32 x) (PI.f32))
(pow.f32 (exp.f32 (pow.f32 (PI.f32) #s(literal 2/3 binary32))) (*.f32 (cbrt.f32 (PI.f32)) x))
(pow.f32 (exp.f32 (PI.f32)) x)
(+.f32 (sinh.f32 (*.f32 x (PI.f32))) (cosh.f32 (*.f32 x (PI.f32))))
(+.f32 (cosh.f32 (*.f32 x (PI.f32))) (sinh.f32 (*.f32 x (PI.f32))))
(fabs.f32 (-.f32 (sinh.f32 (*.f32 (neg.f32 x) (PI.f32))) (cosh.f32 (*.f32 x (PI.f32)))))
(fabs.f32 (neg.f32 (neg.f32 (exp.f32 (*.f32 x (PI.f32))))))
(fabs.f32 (neg.f32 (exp.f32 (*.f32 x (PI.f32)))))
(fabs.f32 (exp.f32 (*.f32 x (PI.f32))))
(exp.f32 (*.f32 (log.f32 (exp.f32 x)) (PI.f32)))
(exp.f32 (*.f32 (log.f32 (exp.f32 (PI.f32))) x))
(exp.f32 (*.f32 x (PI.f32)))
tau
(*.f32 (pow.f32 (exp.f32 (*.f32 x (PI.f32))) (/.f32 tau #s(literal 2 binary32))) (pow.f32 (exp.f32 (*.f32 x (PI.f32))) (/.f32 tau #s(literal 2 binary32))))
(sqrt.f32 (*.f32 (exp.f32 (*.f32 (*.f32 tau (PI.f32)) x)) (exp.f32 (*.f32 (*.f32 tau (PI.f32)) x))))
(pow.f32 (exp.f32 (*.f32 tau x)) (PI.f32))
(pow.f32 (exp.f32 (*.f32 (*.f32 x (PI.f32)) #s(literal 2 binary32))) (/.f32 tau #s(literal 2 binary32)))
(pow.f32 (exp.f32 tau) (*.f32 x (PI.f32)))
(pow.f32 (exp.f32 x) (*.f32 tau (PI.f32)))
(pow.f32 (exp.f32 (pow.f32 (PI.f32) #s(literal 2/3 binary32))) (*.f32 (cbrt.f32 (PI.f32)) (*.f32 tau x)))
(pow.f32 (exp.f32 (*.f32 tau (PI.f32))) x)
(pow.f32 (exp.f32 (PI.f32)) (*.f32 tau x))
(pow.f32 (exp.f32 (*.f32 x (PI.f32))) tau)
(+.f32 (cosh.f32 (*.f32 (*.f32 tau (PI.f32)) x)) (sinh.f32 (*.f32 (*.f32 tau (PI.f32)) x)))
(fabs.f32 (neg.f32 (exp.f32 (*.f32 (*.f32 tau (PI.f32)) x))))
(fabs.f32 (exp.f32 (*.f32 (*.f32 tau (PI.f32)) x)))
(exp.f32 (*.f32 (log.f32 (exp.f32 tau)) (*.f32 x (PI.f32))))
(exp.f32 (*.f32 (log.f32 (exp.f32 x)) (*.f32 tau (PI.f32))))
(exp.f32 (*.f32 (log.f32 (exp.f32 (PI.f32))) (*.f32 tau x)))
(exp.f32 (*.f32 (*.f32 tau (PI.f32)) x))
(log.f32 (exp.f32 (*.f32 (*.f32 tau (PI.f32)) x)))
(*.f32 (*.f32 tau x) (log.f32 (exp.f32 (PI.f32))))
(*.f32 (*.f32 tau x) (PI.f32))
(*.f32 (pow.f32 (PI.f32) #s(literal 2/3 binary32)) (*.f32 (cbrt.f32 (PI.f32)) (*.f32 tau x)))
(*.f32 (*.f32 tau (PI.f32)) (log.f32 (exp.f32 x)))
(*.f32 (*.f32 tau (PI.f32)) x)
(*.f32 (*.f32 x (PI.f32)) (log.f32 (exp.f32 tau)))
(*.f32 (*.f32 x (PI.f32)) tau)
(*.f32 tau (*.f32 x (PI.f32)))
(*.f32 x (*.f32 tau (PI.f32)))
(*.f32 (PI.f32) (*.f32 tau x))
(sin.f32 (*.f32 (*.f32 tau (PI.f32)) x))
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 tau (PI.f32)) x)) (*.f32 x (PI.f32))) (/.f32 #s(literal 1 binary32) tau))
(*.f32 (/.f32 #s(literal 1 binary32) (*.f32 (*.f32 tau (PI.f32)) x)) (sin.f32 (*.f32 (*.f32 tau (PI.f32)) x)))
(*.f32 (sin.f32 (*.f32 (*.f32 (neg.f32 x) (PI.f32)) tau)) (/.f32 #s(literal -1 binary32) (*.f32 (*.f32 tau (PI.f32)) x)))
(*.f32 (sin.f32 (*.f32 (*.f32 tau (PI.f32)) x)) (/.f32 #s(literal 1 binary32) (*.f32 (*.f32 tau (PI.f32)) x)))
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 tau (PI.f32)) x)) (PI.f32)) #s(literal 1 binary32)) (*.f32 tau x))
(/.f32 (*.f32 (sin.f32 (*.f32 (*.f32 (neg.f32 x) (PI.f32)) tau)) #s(literal 1 binary32)) (*.f32 (*.f32 (neg.f32 x) (PI.f32)) tau))
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 tau (PI.f32)) x)) x) #s(literal 1 binary32)) (*.f32 tau (PI.f32)))
(/.f32 (neg.f32 (/.f32 (sin.f32 (*.f32 (*.f32 tau (PI.f32)) x)) tau)) (*.f32 (neg.f32 x) (PI.f32)))
(/.f32 (neg.f32 (/.f32 (sin.f32 (*.f32 (*.f32 tau (PI.f32)) x)) (*.f32 tau (PI.f32)))) (neg.f32 x))
(/.f32 (neg.f32 (neg.f32 (/.f32 (sin.f32 (*.f32 (*.f32 tau (PI.f32)) x)) (*.f32 x (PI.f32))))) (neg.f32 (neg.f32 tau)))
(/.f32 (neg.f32 (/.f32 (sin.f32 (*.f32 (*.f32 tau (PI.f32)) x)) (PI.f32))) (neg.f32 (*.f32 tau x)))
(/.f32 (neg.f32 (/.f32 (sin.f32 (*.f32 (*.f32 tau (PI.f32)) x)) x)) (neg.f32 (*.f32 tau (PI.f32))))
(/.f32 (neg.f32 (*.f32 (sin.f32 (*.f32 (*.f32 tau (PI.f32)) x)) #s(literal 1 binary32))) (*.f32 (*.f32 (neg.f32 x) (PI.f32)) tau))
(/.f32 (neg.f32 (sin.f32 (neg.f32 (*.f32 (*.f32 (neg.f32 x) (PI.f32)) tau)))) (neg.f32 (neg.f32 (*.f32 (*.f32 (neg.f32 x) (PI.f32)) tau))))
(/.f32 (*.f32 (sin.f32 (*.f32 (*.f32 tau (PI.f32)) x)) #s(literal 1 binary32)) (*.f32 (*.f32 tau (PI.f32)) x))
(/.f32 (/.f32 (sin.f32 (*.f32 (*.f32 tau (PI.f32)) x)) tau) (*.f32 x (PI.f32)))
(/.f32 (/.f32 (sin.f32 (*.f32 (*.f32 tau (PI.f32)) x)) (*.f32 tau (PI.f32))) x)
(/.f32 (neg.f32 (/.f32 (sin.f32 (*.f32 (*.f32 tau (PI.f32)) x)) (*.f32 x (PI.f32)))) (neg.f32 tau))
(/.f32 (sin.f32 (neg.f32 (*.f32 (*.f32 (neg.f32 x) (PI.f32)) tau))) (neg.f32 (*.f32 (*.f32 (neg.f32 x) (PI.f32)) tau)))
(/.f32 (/.f32 (sin.f32 (*.f32 (*.f32 tau (PI.f32)) x)) (*.f32 x (PI.f32))) tau)
(/.f32 (/.f32 (sin.f32 (*.f32 (*.f32 tau (PI.f32)) x)) (PI.f32)) (*.f32 tau x))
(/.f32 (sin.f32 (*.f32 (*.f32 (neg.f32 x) (PI.f32)) tau)) (*.f32 (*.f32 (neg.f32 x) (PI.f32)) tau))
(/.f32 #s(literal 1 binary32) (/.f32 tau (/.f32 (sin.f32 (*.f32 (*.f32 tau (PI.f32)) x)) (*.f32 x (PI.f32)))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 (*.f32 (neg.f32 x) (PI.f32)) tau) (sin.f32 (*.f32 (*.f32 (neg.f32 x) (PI.f32)) tau))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 (*.f32 tau (PI.f32)) x) (sin.f32 (*.f32 (*.f32 tau (PI.f32)) x))))
(/.f32 (/.f32 (sin.f32 (*.f32 (*.f32 tau (PI.f32)) x)) x) (*.f32 tau (PI.f32)))
(/.f32 (sin.f32 (*.f32 (*.f32 tau (PI.f32)) x)) (*.f32 (*.f32 tau (PI.f32)) x))
(neg.f32 (/.f32 (sin.f32 (*.f32 (*.f32 tau (PI.f32)) x)) (*.f32 (*.f32 (neg.f32 x) (PI.f32)) tau)))
(neg.f32 (/.f32 (sin.f32 (*.f32 (*.f32 (neg.f32 x) (PI.f32)) tau)) (*.f32 (*.f32 tau (PI.f32)) x)))
(log.f32 (exp.f32 (*.f32 x (PI.f32))))
(*.f32 (*.f32 x (pow.f32 (PI.f32) #s(literal 2/3 binary32))) (cbrt.f32 (PI.f32)))
(*.f32 (pow.f32 (PI.f32) #s(literal 2/3 binary32)) (*.f32 (cbrt.f32 (PI.f32)) x))
(*.f32 x (log.f32 (exp.f32 (PI.f32))))
(*.f32 x (PI.f32))
(*.f32 (PI.f32) (log.f32 (exp.f32 x)))
(*.f32 (PI.f32) x)
(sin.f32 (*.f32 x (PI.f32)))
(*.f32 (/.f32 (sin.f32 (*.f32 x (PI.f32))) (pow.f32 (PI.f32) #s(literal 2/3 binary32))) (/.f32 (/.f32 #s(literal 1 binary32) x) (cbrt.f32 (PI.f32))))
(*.f32 (/.f32 #s(literal 1 binary32) (*.f32 x (PI.f32))) (sin.f32 (*.f32 x (PI.f32))))
(*.f32 (sin.f32 (*.f32 (neg.f32 x) (PI.f32))) (/.f32 #s(literal -1 binary32) (*.f32 x (PI.f32))))
(*.f32 (sin.f32 (*.f32 x (PI.f32))) (/.f32 #s(literal 1 binary32) (*.f32 x (PI.f32))))
(*.f32 (/.f32 (sin.f32 (*.f32 x (PI.f32))) x) (/.f32 #s(literal 1 binary32) (PI.f32)))
(/.f32 (*.f32 (*.f32 (sin.f32 (*.f32 x (PI.f32))) #s(literal 1 binary32)) #s(literal 1 binary32)) (*.f32 x (PI.f32)))
(/.f32 (*.f32 (sin.f32 (neg.f32 (*.f32 (neg.f32 x) (PI.f32)))) #s(literal 1 binary32)) (*.f32 (neg.f32 (neg.f32 x)) (PI.f32)))
(/.f32 (*.f32 (sin.f32 (*.f32 (neg.f32 x) (PI.f32))) #s(literal 1 binary32)) (*.f32 (neg.f32 x) (PI.f32)))
(/.f32 (neg.f32 (/.f32 (/.f32 (sin.f32 (*.f32 x (PI.f32))) x) (pow.f32 (PI.f32) #s(literal 2/3 binary32)))) (cbrt.f32 (neg.f32 (PI.f32))))
(/.f32 (neg.f32 (/.f32 (sin.f32 (*.f32 x (PI.f32))) (PI.f32))) (neg.f32 x))
(/.f32 (neg.f32 (neg.f32 (/.f32 (sin.f32 (*.f32 x (PI.f32))) x))) (neg.f32 (neg.f32 (PI.f32))))
(/.f32 (neg.f32 (*.f32 (sin.f32 (*.f32 x (PI.f32))) #s(literal 1 binary32))) (*.f32 (neg.f32 x) (PI.f32)))
(/.f32 (neg.f32 (sin.f32 (neg.f32 (*.f32 (neg.f32 x) (PI.f32))))) (neg.f32 (neg.f32 (*.f32 (neg.f32 x) (PI.f32)))))
(/.f32 (*.f32 (sin.f32 (*.f32 x (PI.f32))) #s(literal 1 binary32)) (*.f32 x (PI.f32)))
(/.f32 (/.f32 (/.f32 (sin.f32 (*.f32 x (PI.f32))) x) (pow.f32 (PI.f32) #s(literal 2/3 binary32))) (cbrt.f32 (PI.f32)))
(/.f32 (/.f32 (sin.f32 (*.f32 x (PI.f32))) (PI.f32)) x)
(/.f32 (sin.f32 (neg.f32 (*.f32 (neg.f32 x) (PI.f32)))) (neg.f32 (*.f32 (neg.f32 x) (PI.f32))))
(/.f32 (neg.f32 (/.f32 (sin.f32 (*.f32 x (PI.f32))) x)) (neg.f32 (PI.f32)))
(/.f32 (sin.f32 (*.f32 (neg.f32 x) (PI.f32))) (*.f32 (neg.f32 x) (PI.f32)))
(/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32)))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 (neg.f32 x) (PI.f32)) (sin.f32 (*.f32 (neg.f32 x) (PI.f32)))))
(/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (/.f32 (sin.f32 (*.f32 x (PI.f32))) x)))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 x (PI.f32)) (sin.f32 (*.f32 x (PI.f32)))))
(/.f32 (/.f32 (sin.f32 (*.f32 x (PI.f32))) x) (PI.f32))
(neg.f32 (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 (neg.f32 x) (PI.f32))))
(neg.f32 (/.f32 (sin.f32 (*.f32 (neg.f32 x) (PI.f32))) (*.f32 x (PI.f32))))
(*.f32 (*.f32 (/.f32 #s(literal 1 binary32) (*.f32 (*.f32 (*.f32 (*.f32 tau (PI.f32)) x) x) (PI.f32))) (sin.f32 (*.f32 x (PI.f32)))) (sin.f32 (*.f32 (*.f32 tau (PI.f32)) x)))
(*.f32 (/.f32 (*.f32 (sin.f32 (*.f32 x (PI.f32))) (sin.f32 (*.f32 (*.f32 tau (PI.f32)) x))) (PI.f32)) (/.f32 #s(literal 1 binary32) (*.f32 (*.f32 (*.f32 tau (PI.f32)) x) x)))
(*.f32 (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 (*.f32 tau (PI.f32)) x)) (/.f32 (sin.f32 (*.f32 (*.f32 tau (PI.f32)) x)) (*.f32 x (PI.f32))))
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 tau (PI.f32)) x)) (*.f32 (*.f32 (*.f32 tau (PI.f32)) x) x)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (PI.f32)))
(*.f32 (/.f32 (sin.f32 (*.f32 x (PI.f32))) (PI.f32)) (/.f32 (sin.f32 (*.f32 (*.f32 tau (PI.f32)) x)) (*.f32 (*.f32 (*.f32 tau (PI.f32)) x) x)))
(*.f32 (/.f32 (/.f32 (sin.f32 (*.f32 (*.f32 tau (PI.f32)) x)) (*.f32 (*.f32 tau (PI.f32)) x)) x) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (PI.f32)))
(*.f32 (/.f32 (/.f32 (sin.f32 (*.f32 (*.f32 tau (PI.f32)) x)) (*.f32 (*.f32 tau (PI.f32)) x)) (PI.f32)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) x))
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 tau (PI.f32)) x)) (*.f32 (*.f32 (*.f32 (*.f32 tau (PI.f32)) x) x) (PI.f32))) (sin.f32 (*.f32 x (PI.f32))))
(*.f32 (*.f32 (sin.f32 (*.f32 x (PI.f32))) (/.f32 (sin.f32 (*.f32 (*.f32 tau (PI.f32)) x)) (*.f32 (*.f32 tau (PI.f32)) x))) (/.f32 #s(literal 1 binary32) (*.f32 x (PI.f32))))
(*.f32 (*.f32 (sin.f32 (*.f32 (*.f32 tau (PI.f32)) x)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32)))) (/.f32 #s(literal 1 binary32) (*.f32 (*.f32 tau (PI.f32)) x)))
(*.f32 (*.f32 (sin.f32 (*.f32 x (PI.f32))) (/.f32 (sin.f32 (*.f32 (*.f32 tau (PI.f32)) x)) (*.f32 (*.f32 (*.f32 tau (PI.f32)) x) x))) (/.f32 #s(literal 1 binary32) (PI.f32)))
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 tau (PI.f32)) x)) (PI.f32)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 (*.f32 (*.f32 tau (PI.f32)) x) x)))
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(/.f32 (/.f32 (*.f32 (sin.f32 (*.f32 x (PI.f32))) (sin.f32 (*.f32 (*.f32 tau (PI.f32)) x))) (PI.f32)) (*.f32 (*.f32 (*.f32 tau (PI.f32)) x) x))
(/.f32 (*.f32 (sin.f32 (*.f32 (*.f32 (neg.f32 x) (PI.f32)) tau)) (sin.f32 (*.f32 (neg.f32 x) (PI.f32)))) (*.f32 (neg.f32 (PI.f32)) (neg.f32 (*.f32 (*.f32 (*.f32 tau (PI.f32)) x) x))))
(/.f32 (*.f32 (sin.f32 (*.f32 (*.f32 (neg.f32 x) (PI.f32)) tau)) (sin.f32 (*.f32 (neg.f32 x) (PI.f32)))) (*.f32 (*.f32 (*.f32 (neg.f32 x) (PI.f32)) tau) (*.f32 (neg.f32 x) (PI.f32))))
(/.f32 (*.f32 (sin.f32 (*.f32 (neg.f32 x) (PI.f32))) (sin.f32 (*.f32 (*.f32 (neg.f32 x) (PI.f32)) tau))) (*.f32 (neg.f32 (*.f32 (*.f32 (*.f32 tau (PI.f32)) x) x)) (neg.f32 (PI.f32))))
(/.f32 (*.f32 (sin.f32 (*.f32 (neg.f32 x) (PI.f32))) (sin.f32 (*.f32 (*.f32 (neg.f32 x) (PI.f32)) tau))) (*.f32 (*.f32 (neg.f32 x) (PI.f32)) (*.f32 (*.f32 (neg.f32 x) (PI.f32)) tau)))
(/.f32 (*.f32 (/.f32 #s(literal 1 binary32) (*.f32 (*.f32 (*.f32 tau (PI.f32)) x) x)) (-.f32 (cos.f32 (*.f32 x (-.f32 (PI.f32) (*.f32 tau (PI.f32))))) (cos.f32 (*.f32 (+.f32 tau #s(literal 1 binary32)) (*.f32 x (PI.f32)))))) (*.f32 (PI.f32) #s(literal 2 binary32)))
(/.f32 (*.f32 #s(literal -1 binary32) (-.f32 (cos.f32 (*.f32 x (-.f32 (PI.f32) (*.f32 tau (PI.f32))))) (cos.f32 (*.f32 (+.f32 tau #s(literal 1 binary32)) (*.f32 x (PI.f32)))))) (*.f32 (*.f32 (neg.f32 (PI.f32)) (*.f32 (*.f32 (*.f32 tau (PI.f32)) x) x)) #s(literal 2 binary32)))
(/.f32 (*.f32 #s(literal 1 binary32) (-.f32 (cos.f32 (*.f32 x (-.f32 (PI.f32) (*.f32 tau (PI.f32))))) (cos.f32 (*.f32 (+.f32 tau #s(literal 1 binary32)) (*.f32 x (PI.f32)))))) (*.f32 (neg.f32 (*.f32 (neg.f32 (PI.f32)) (*.f32 (*.f32 (*.f32 tau (PI.f32)) x) x))) #s(literal 2 binary32)))
(/.f32 (*.f32 #s(literal 1 binary32) (-.f32 (cos.f32 (*.f32 x (-.f32 (PI.f32) (*.f32 tau (PI.f32))))) (cos.f32 (*.f32 (+.f32 tau #s(literal 1 binary32)) (*.f32 x (PI.f32)))))) (*.f32 (*.f32 (*.f32 (*.f32 (*.f32 tau (PI.f32)) x) x) (PI.f32)) #s(literal 2 binary32)))
(/.f32 (*.f32 (-.f32 (cos.f32 (*.f32 x (-.f32 (PI.f32) (*.f32 tau (PI.f32))))) (cos.f32 (*.f32 (+.f32 tau #s(literal 1 binary32)) (*.f32 x (PI.f32))))) (/.f32 #s(literal 1 binary32) (*.f32 (*.f32 (*.f32 tau (PI.f32)) x) x))) (*.f32 #s(literal 2 binary32) (PI.f32)))
(/.f32 (*.f32 (-.f32 (cos.f32 (*.f32 x (-.f32 (PI.f32) (*.f32 tau (PI.f32))))) (cos.f32 (*.f32 (+.f32 tau #s(literal 1 binary32)) (*.f32 x (PI.f32))))) #s(literal -1 binary32)) (*.f32 #s(literal 2 binary32) (*.f32 (neg.f32 (PI.f32)) (*.f32 (*.f32 (*.f32 tau (PI.f32)) x) x))))
(/.f32 (*.f32 (-.f32 (cos.f32 (*.f32 x (-.f32 (PI.f32) (*.f32 tau (PI.f32))))) (cos.f32 (*.f32 (+.f32 tau #s(literal 1 binary32)) (*.f32 x (PI.f32))))) #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal 2 binary32) (*.f32 (*.f32 (*.f32 tau (PI.f32)) x) x)) (PI.f32)))
(/.f32 (*.f32 (-.f32 (cos.f32 (*.f32 x (-.f32 (PI.f32) (*.f32 tau (PI.f32))))) (cos.f32 (*.f32 (+.f32 tau #s(literal 1 binary32)) (*.f32 x (PI.f32))))) #s(literal 1 binary32)) (*.f32 #s(literal -2 binary32) (*.f32 (neg.f32 (PI.f32)) (*.f32 (*.f32 (*.f32 tau (PI.f32)) x) x))))
(/.f32 (*.f32 (-.f32 (cos.f32 (*.f32 x (-.f32 (PI.f32) (*.f32 tau (PI.f32))))) (cos.f32 (*.f32 (+.f32 tau #s(literal 1 binary32)) (*.f32 x (PI.f32))))) #s(literal 1 binary32)) (*.f32 #s(literal 2 binary32) (neg.f32 (*.f32 (neg.f32 (PI.f32)) (*.f32 (*.f32 (*.f32 tau (PI.f32)) x) x)))))
(/.f32 (*.f32 (-.f32 (cos.f32 (*.f32 x (-.f32 (PI.f32) (*.f32 tau (PI.f32))))) (cos.f32 (*.f32 (+.f32 tau #s(literal 1 binary32)) (*.f32 x (PI.f32))))) #s(literal 1 binary32)) (*.f32 #s(literal 2 binary32) (*.f32 (*.f32 (*.f32 (*.f32 tau (PI.f32)) x) x) (PI.f32))))
(/.f32 (neg.f32 (-.f32 (cos.f32 (*.f32 x (-.f32 (PI.f32) (*.f32 tau (PI.f32))))) (cos.f32 (*.f32 (+.f32 tau #s(literal 1 binary32)) (*.f32 x (PI.f32)))))) (neg.f32 (*.f32 #s(literal 2 binary32) (*.f32 (*.f32 (*.f32 (*.f32 tau (PI.f32)) x) x) (PI.f32)))))
(/.f32 (neg.f32 (*.f32 (sin.f32 (*.f32 x (PI.f32))) (/.f32 (sin.f32 (*.f32 (*.f32 tau (PI.f32)) x)) x))) (neg.f32 (*.f32 (PI.f32) (*.f32 (*.f32 tau (PI.f32)) x))))
(/.f32 (neg.f32 (*.f32 (sin.f32 (*.f32 x (PI.f32))) (/.f32 (sin.f32 (*.f32 (*.f32 tau (PI.f32)) x)) x))) (neg.f32 (*.f32 (*.f32 (*.f32 tau (PI.f32)) x) (PI.f32))))
(/.f32 (neg.f32 (*.f32 (sin.f32 (*.f32 x (PI.f32))) (/.f32 (sin.f32 (*.f32 (*.f32 tau (PI.f32)) x)) (*.f32 (*.f32 (*.f32 tau (PI.f32)) x) x)))) (neg.f32 (PI.f32)))
(/.f32 (neg.f32 (*.f32 (sin.f32 (*.f32 (*.f32 (neg.f32 x) (PI.f32)) tau)) (sin.f32 (*.f32 x (PI.f32))))) (neg.f32 (*.f32 (*.f32 (neg.f32 x) (PI.f32)) (*.f32 (*.f32 tau (PI.f32)) x))))
(/.f32 (neg.f32 (*.f32 (sin.f32 (*.f32 (*.f32 (neg.f32 x) (PI.f32)) tau)) (sin.f32 (*.f32 x (PI.f32))))) (neg.f32 (*.f32 (*.f32 x (PI.f32)) (*.f32 (*.f32 (neg.f32 x) (PI.f32)) tau))))
(/.f32 (neg.f32 (*.f32 (sin.f32 (*.f32 (*.f32 (neg.f32 x) (PI.f32)) tau)) (sin.f32 (*.f32 x (PI.f32))))) (neg.f32 (*.f32 (neg.f32 (PI.f32)) (*.f32 (*.f32 (*.f32 tau (PI.f32)) x) x))))
(/.f32 (neg.f32 (*.f32 (sin.f32 (*.f32 x (PI.f32))) (/.f32 (sin.f32 (*.f32 (*.f32 tau (PI.f32)) x)) (*.f32 (*.f32 tau (PI.f32)) x)))) (*.f32 (neg.f32 x) (PI.f32)))
(/.f32 (neg.f32 (*.f32 (sin.f32 (*.f32 (*.f32 tau (PI.f32)) x)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))) (*.f32 (*.f32 (neg.f32 x) (PI.f32)) tau))
(/.f32 (*.f32 (sin.f32 (*.f32 x (PI.f32))) (/.f32 (sin.f32 (*.f32 (*.f32 tau (PI.f32)) x)) (*.f32 (*.f32 tau (PI.f32)) x))) (*.f32 x (PI.f32)))
(/.f32 (*.f32 (sin.f32 (*.f32 x (PI.f32))) (/.f32 (sin.f32 (*.f32 (*.f32 tau (PI.f32)) x)) x)) (*.f32 (*.f32 x (PI.f32)) (*.f32 tau (PI.f32))))
(/.f32 (*.f32 (sin.f32 (*.f32 x (PI.f32))) (/.f32 (sin.f32 (*.f32 (*.f32 tau (PI.f32)) x)) x)) (*.f32 (*.f32 tau (PI.f32)) (*.f32 x (PI.f32))))
(/.f32 (*.f32 (sin.f32 (*.f32 x (PI.f32))) (/.f32 (sin.f32 (*.f32 (*.f32 tau (PI.f32)) x)) x)) (*.f32 (PI.f32) (*.f32 (*.f32 tau (PI.f32)) x)))
(/.f32 (*.f32 (sin.f32 (*.f32 x (PI.f32))) (/.f32 (sin.f32 (*.f32 (*.f32 tau (PI.f32)) x)) x)) (*.f32 (*.f32 (*.f32 tau (PI.f32)) x) (PI.f32)))
(/.f32 (*.f32 (sin.f32 (*.f32 (*.f32 tau (PI.f32)) x)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32)))) (*.f32 (*.f32 tau (PI.f32)) x))
(/.f32 (*.f32 (sin.f32 (*.f32 x (PI.f32))) (/.f32 (sin.f32 (*.f32 (*.f32 tau (PI.f32)) x)) (*.f32 (*.f32 (*.f32 tau (PI.f32)) x) x))) (PI.f32))
(/.f32 (*.f32 (sin.f32 (*.f32 (*.f32 (neg.f32 x) (PI.f32)) tau)) (sin.f32 (*.f32 x (PI.f32)))) (*.f32 (*.f32 (neg.f32 x) (PI.f32)) (*.f32 (*.f32 tau (PI.f32)) x)))
(/.f32 (*.f32 (sin.f32 (*.f32 (*.f32 (neg.f32 x) (PI.f32)) tau)) (sin.f32 (*.f32 x (PI.f32)))) (*.f32 (*.f32 x (PI.f32)) (*.f32 (*.f32 (neg.f32 x) (PI.f32)) tau)))
(/.f32 (*.f32 (sin.f32 (*.f32 (*.f32 (neg.f32 x) (PI.f32)) tau)) (sin.f32 (*.f32 x (PI.f32)))) (*.f32 (neg.f32 (PI.f32)) (*.f32 (*.f32 (*.f32 tau (PI.f32)) x) x)))
(/.f32 (-.f32 (cos.f32 (*.f32 x (-.f32 (PI.f32) (*.f32 tau (PI.f32))))) (cos.f32 (*.f32 (+.f32 tau #s(literal 1 binary32)) (*.f32 x (PI.f32))))) (*.f32 #s(literal 2 binary32) (*.f32 (*.f32 (*.f32 (*.f32 tau (PI.f32)) x) x) (PI.f32))))
(/.f32 (*.f32 (sin.f32 (*.f32 x (PI.f32))) (sin.f32 (*.f32 (*.f32 tau (PI.f32)) x))) (*.f32 (*.f32 (*.f32 (*.f32 tau (PI.f32)) x) x) (PI.f32)))
(/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (*.f32 (sin.f32 (*.f32 x (PI.f32))) (/.f32 (sin.f32 (*.f32 (*.f32 tau (PI.f32)) x)) (*.f32 (*.f32 (*.f32 tau (PI.f32)) x) x)))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 (neg.f32 (PI.f32)) (*.f32 (*.f32 (*.f32 tau (PI.f32)) x) x)) (*.f32 (sin.f32 (*.f32 (*.f32 (neg.f32 x) (PI.f32)) tau)) (sin.f32 (*.f32 x (PI.f32))))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 x (PI.f32)) (*.f32 (sin.f32 (*.f32 x (PI.f32))) (/.f32 (sin.f32 (*.f32 (*.f32 tau (PI.f32)) x)) (*.f32 (*.f32 tau (PI.f32)) x)))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 (*.f32 tau (PI.f32)) x) (*.f32 (sin.f32 (*.f32 (*.f32 tau (PI.f32)) x)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 (*.f32 (*.f32 (*.f32 tau (PI.f32)) x) x) (PI.f32)) (*.f32 (sin.f32 (*.f32 x (PI.f32))) (sin.f32 (*.f32 (*.f32 tau (PI.f32)) x)))))
(/.f32 (*.f32 (sin.f32 (*.f32 x (PI.f32))) (/.f32 (sin.f32 (*.f32 (*.f32 tau (PI.f32)) x)) (*.f32 x x))) (*.f32 (*.f32 tau (PI.f32)) (PI.f32)))
(neg.f32 (/.f32 (*.f32 (sin.f32 (*.f32 x (PI.f32))) (sin.f32 (*.f32 (*.f32 tau (PI.f32)) x))) (*.f32 (neg.f32 (PI.f32)) (*.f32 (*.f32 (*.f32 tau (PI.f32)) x) x))))
(neg.f32 (/.f32 (*.f32 (sin.f32 (*.f32 (*.f32 (neg.f32 x) (PI.f32)) tau)) (sin.f32 (*.f32 x (PI.f32)))) (*.f32 (*.f32 (*.f32 (*.f32 tau (PI.f32)) x) x) (PI.f32))))

eval108.0ms (2.3%)

Memory
31.0MiB live, 257.6MiB allocated; 62ms collecting garbage
Compiler

Compiled 38 927 to 4 133 computations (89.4% saved)

prune99.0ms (2.1%)

Memory
9.0MiB live, 238.1MiB allocated; 34ms collecting garbage
Pruning

77 alts after pruning (73 fresh and 4 done)

PrunedKeptTotal
New1 033431 076
Fresh93039
Picked505
Done145
Total1 048771 125
Accuracy
99.8%
Counts
1 125 → 77
Alt Table
Click to see full alt table
StatusAccuracyProgram
96.8%
(/.f32 (/.f32 (/.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x))) (*.f32 (*.f32 x x) (PI.f32))) (PI.f32)) tau)
64.7%
(/.f32 (/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) (PI.f32)) tau)
64.7%
(/.f32 (/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) tau) (PI.f32))
97.3%
(/.f32 (/.f32 (*.f32 (sin.f32 (*.f32 x (PI.f32))) (sin.f32 (*.f32 (*.f32 tau (PI.f32)) x))) (PI.f32)) (*.f32 (*.f32 (*.f32 tau (PI.f32)) x) x))
66.0%
(/.f32 (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (PI.f32) (PI.f32)) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
64.8%
(/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (*.f32 tau (PI.f32))) (PI.f32))
64.8%
(/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) (*.f32 tau (PI.f32)))
96.8%
(/.f32 (/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x)) x) (sin.f32 (*.f32 (PI.f32) x))))) (*.f32 tau (*.f32 (PI.f32) x)))
97.4%
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 (neg.f32 x) tau) (PI.f32))) (*.f32 (PI.f32) x)) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x)) (*.f32 (neg.f32 tau) (PI.f32)))
97.1%
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x)) (*.f32 (PI.f32) x)) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x))) tau)
97.1%
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x)) x) (sin.f32 (*.f32 (PI.f32) x))) (*.f32 x (*.f32 (*.f32 (PI.f32) tau) (PI.f32))))
96.8%
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau))
96.8%
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) x)) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
97.6%
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (*.f32 tau (*.f32 (PI.f32) x)) x)) (sin.f32 (*.f32 (PI.f32) x))) (PI.f32))
98.0%
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (PI.f32) x)) (sin.f32 (*.f32 (PI.f32) x))) (*.f32 tau (*.f32 (PI.f32) x)))
65.1%
(/.f32 (*.f32 (-.f32 (cos.f32 (*.f32 (PI.f32) (-.f32 (*.f32 tau x) x))) (cos.f32 (*.f32 (PI.f32) (fma.f32 tau x x)))) (/.f32 #s(literal 1 binary32) (*.f32 (*.f32 (*.f32 (PI.f32) x) x) (*.f32 tau (PI.f32))))) #s(literal 2 binary32))
97.1%
(/.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x))) (*.f32 (*.f32 (*.f32 x x) (*.f32 tau (PI.f32))) (PI.f32)))
97.8%
(/.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x))) (*.f32 (*.f32 (*.f32 tau (PI.f32)) x) (*.f32 x (PI.f32))))
97.0%
(/.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x))) (*.f32 (*.f32 (PI.f32) (*.f32 (*.f32 tau x) x)) (PI.f32)))
97.2%
(/.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x))) (*.f32 x (*.f32 (*.f32 tau (PI.f32)) (*.f32 x (PI.f32)))))
96.8%
(/.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x))) (*.f32 tau (*.f32 (*.f32 x x) (*.f32 (PI.f32) (PI.f32)))))
97.3%
(/.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) (*.f32 (*.f32 (*.f32 (PI.f32) x) x) (*.f32 tau (PI.f32))))
71.9%
(/.f32 (*.f32 #s(approx (/ (sin (* (PI) x)) x) (PI.f32)) (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) x)) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
65.7%
(/.f32 (*.f32 #s(approx (/ (sin (* tau (* (PI) x))) (* (PI) x)) tau) (sin.f32 (*.f32 (PI.f32) x))) (*.f32 tau (*.f32 (PI.f32) x)))
66.0%
(/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (PI.f32) (PI.f32)) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (*.f32 x (PI.f32)))
64.6%
(/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 (*.f32 tau (PI.f32)) (pow.f32 (PI.f32) #s(literal 2/3 binary32))) (cbrt.f32 (PI.f32)))) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
64.0%
(/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 tau (pow.f32 (cbrt.f32 (PI.f32)) #s(literal 6 binary32)))) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
64.3%
(/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 tau #s(literal 5174515/524288 binary32))) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
96.9%
(/.f32 #s(approx (* (sin (* (PI) x)) (sin (* (* (PI) tau) x))) (*.f32 (sin.f32 (*.f32 tau (*.f32 x (PI.f32)))) (sin.f32 (*.f32 x (PI.f32))))) (*.f32 (*.f32 (*.f32 (*.f32 (PI.f32) tau) x) x) (PI.f32)))
97.0%
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 x (*.f32 (*.f32 (PI.f32) tau) (PI.f32))) (*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x)) x) (sin.f32 (*.f32 (PI.f32) x)))))
66.1%
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 x (PI.f32)) (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (PI.f32) (PI.f32)) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)))))
64.8%
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 tau (PI.f32)) (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32))))
65.6%
(/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (/.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) x)))
65.6%
(/.f32 #s(literal 1 binary32) (/.f32 x (/.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32))))
77.9%
(*.f32 (/.f32 (sin.f32 (fma.f32 (fma.f32 tau x #s(literal 1 binary32)) (PI.f32) (PI.f32))) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
79.8%
(*.f32 (/.f32 (sin.f32 (fma.f32 (*.f32 tau x) (neg.f32 (PI.f32)) (PI.f32))) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
97.9%
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (PI.f32)))
77.0%
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (fma.f32 (neg.f32 x) (PI.f32) (PI.f32))) (*.f32 x (PI.f32))))
77.0%
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (-.f32 (PI.f32) (*.f32 (PI.f32) x))) (*.f32 x (PI.f32))))
74.7%
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (+.f32 (fma.f32 (PI.f32) x (PI.f32)) (PI.f32))) (*.f32 x (PI.f32))))
71.7%
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (+.f32 (+.f32 (-.f32 (PI.f32) (*.f32 (PI.f32) x)) (PI.f32)) (PI.f32))) (*.f32 x (PI.f32))))
86.0%
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) #s(approx (/ (sin (* x (PI))) (* x (PI))) (+.f32 #s(literal 1 binary32) (*.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32)))))))
97.7%
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 tau (PI.f32)) (log.f32 (exp.f32 x)))) (*.f32 (*.f32 tau (PI.f32)) (log.f32 (exp.f32 x)))) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
97.3%
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 tau (PI.f32)) x)) (*.f32 (*.f32 (*.f32 (*.f32 tau (PI.f32)) x) x) (PI.f32))) (sin.f32 (*.f32 x (PI.f32))))
98.1%
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 tau x) (PI.f32))) (*.f32 (*.f32 tau x) (PI.f32))) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
86.0%
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 tau x) (PI.f32))) (*.f32 (*.f32 tau x) (PI.f32))) #s(approx (/ (sin (* x (PI))) (* x (PI))) (+.f32 #s(literal 1 binary32) (*.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32)))))))
97.3%
(*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (*.f32 (*.f32 (PI.f32) x) x) (*.f32 tau (PI.f32)))) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))))
97.3%
(*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (*.f32 (*.f32 (PI.f32) x) x) (*.f32 tau (PI.f32)))) (sin.f32 (*.f32 (PI.f32) x)))
81.3%
(*.f32 (/.f32 (sin.f32 (neg.f32 (fma.f32 (*.f32 tau (PI.f32)) x (PI.f32)))) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
78.0%
(*.f32 (/.f32 (cos.f32 (fma.f32 (fma.f32 tau x #s(literal 1 binary32)) (PI.f32) (*.f32 (PI.f32) #s(literal 1/2 binary32)))) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
82.1%
(*.f32 (/.f32 (cos.f32 (fma.f32 (*.f32 (neg.f32 tau) (PI.f32)) x (*.f32 (PI.f32) #s(literal 1/2 binary32)))) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
65.6%
(*.f32 (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (PI.f32)) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x))
66.0%
(*.f32 (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (PI.f32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (PI.f32) (PI.f32)) (PI.f32)) x)) x))
65.5%
(*.f32 (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) x) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (PI.f32)))
65.9%
(*.f32 (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) x) (/.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (PI.f32) (PI.f32)) (PI.f32)) x)) (PI.f32)))
64.8%
(*.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) (/.f32 #s(literal 1 binary32) (*.f32 tau (PI.f32))))
64.8%
(*.f32 (/.f32 #s(literal 1 binary32) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))))
66.0%
(*.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (PI.f32) (PI.f32)) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (/.f32 #s(literal 1 binary32) (*.f32 x (PI.f32))))
66.0%
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (fma.f32 (*.f32 x (*.f32 (*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) (PI.f32)) x) x)) #s(literal -1/6 binary32) (*.f32 x (PI.f32)))) (*.f32 x (PI.f32))))
66.0%
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (fma.f32 (PI.f32) x (*.f32 (*.f32 x (*.f32 (*.f32 x x) #s(literal -1/6 binary32))) (*.f32 (*.f32 (PI.f32) (PI.f32)) (PI.f32))))) (*.f32 x (PI.f32))))
66.0%
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (-.f32 (*.f32 x (PI.f32)) (*.f32 (*.f32 (*.f32 #s(literal 1/6 binary32) (*.f32 (*.f32 (PI.f32) (PI.f32)) (PI.f32))) (*.f32 x x)) x))) (*.f32 x (PI.f32))))
66.0%
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (-.f32 (*.f32 x (PI.f32)) (*.f32 (neg.f32 x) (*.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (PI.f32) (PI.f32)))))) (*.f32 x (PI.f32))))
66.1%
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 (+.f32 #s(literal 1 binary32) (/.f32 (*.f32 (*.f32 x (*.f32 (*.f32 x x) #s(literal -1/6 binary32))) (*.f32 (*.f32 (PI.f32) (PI.f32)) (PI.f32))) (*.f32 x (PI.f32)))) (*.f32 x (PI.f32)))) (*.f32 x (PI.f32))))
66.0%
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x (fma.f32 (*.f32 (*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) (PI.f32)) x) x) #s(literal -1/6 binary32) (PI.f32)))) (*.f32 x (PI.f32))))
66.0%
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (*.f32 (PI.f32) (PI.f32))) (PI.f32) (PI.f32)))) (*.f32 x (PI.f32))))
66.0%
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x (fma.f32 (*.f32 x x) (*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) (PI.f32)) #s(literal -1/6 binary32)) (PI.f32)))) (*.f32 x (PI.f32))))
66.0%
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x (+.f32 (PI.f32) (*.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (*.f32 (PI.f32) (PI.f32))) (PI.f32))))) (*.f32 x (PI.f32))))
66.0%
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x (+.f32 (PI.f32) (*.f32 #s(literal -1/6 binary32) (*.f32 (*.f32 (*.f32 x x) (*.f32 (PI.f32) (PI.f32))) (PI.f32)))))) (*.f32 x (PI.f32))))
66.0%
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x (+.f32 (PI.f32) (*.f32 #s(literal -1/6 binary32) (*.f32 (*.f32 (*.f32 x x) (PI.f32)) (*.f32 (PI.f32) (PI.f32))))))) (*.f32 x (PI.f32))))
66.0%
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x (*.f32 (-.f32 #s(literal 1 binary32) (/.f32 (*.f32 (*.f32 #s(literal 1/6 binary32) (*.f32 (*.f32 (PI.f32) (PI.f32)) (PI.f32))) (*.f32 x x)) (PI.f32))) (PI.f32)))) (*.f32 x (PI.f32))))
66.0%
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x (*.f32 (+.f32 #s(literal 1 binary32) (/.f32 (*.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (PI.f32) (PI.f32))) (PI.f32))) (PI.f32)))) (*.f32 x (PI.f32))))
66.0%
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x (*.f32 (+.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (*.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (PI.f32) (PI.f32))))) (*.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (PI.f32) (PI.f32)))))) (*.f32 x (PI.f32))))
64.9%
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)))) (*.f32 x (PI.f32))))
4.7%
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) #s(approx (* x (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3))))) (*.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 x #s(literal 3 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32)))))) (*.f32 x (PI.f32))))
66.0%
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (/.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (PI.f32) (PI.f32)) (PI.f32)) x)) x))))
65.3%
(*.f32 #s(approx (* (sin (* (PI) x)) (sin (* (* (PI) tau) x))) (*.f32 tau (*.f32 x (*.f32 (PI.f32) (sin.f32 (*.f32 x (PI.f32))))))) (/.f32 #s(literal 1 binary32) (*.f32 (*.f32 (*.f32 (*.f32 (PI.f32) tau) x) x) (PI.f32))))
79.8%
#s(approx (* (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (/ (sin (* x (PI))) (* x (PI)))) (+.f32 #s(literal 1 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32))) (*.f32 #s(literal -1/6 binary32) (pow.f32 (PI.f32) #s(literal 2 binary32)))))))
Compiler

Compiled 4 462 to 2 658 computations (40.4% saved)

sample0.0ms (0.0%)

Memory
1.1MiB live, 1.1MiB allocated; 0ms collecting garbage
Calls
Call 1
Inputs
(PI)
1
-1/6
(* (PI) (PI))
2/3
(pow (PI) 2/3)
(cbrt (PI))
Outputs
#s(literal 13176795/4194304 binary32)
#s(literal 1 binary32)
#s(literal -11184811/67108864 binary32)
#s(literal 5174515/524288 binary32)
#s(literal 11184811/16777216 binary32)
#s(literal 8996905/4194304 binary32)
#s(literal 12285887/8388608 binary32)
Samples
0.0ms0valid
Compiler

Compiled 14 to 10 computations (28.6% saved)

Precisions
Click to see histograms. Total time spent on operations: 0.0ms
adjust: 0.0ms (0.0% of total)

series107.0ms (2.2%)

Memory
-9.4MiB live, 220.4MiB allocated; 34ms collecting garbage
Iterations

Useful iterations: 0 (0.0ms)

IterNodesCost
05533522
Stop Event
iter-limit
Counts
47 → 88
Calls
Call 1
Inputs
x
(PI.f32)
(*.f32 x (PI.f32))
tau
(*.f32 (*.f32 x (PI.f32)) tau)
(sin.f32 (*.f32 (*.f32 x (PI.f32)) tau))
(/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau))
(*.f32 (PI.f32) x)
(sin.f32 (*.f32 (PI.f32) x))
(/.f32 (sin.f32 (*.f32 (PI.f32) x)) x)
(/.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (PI.f32))
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (PI.f32)))
#s(literal 1 binary32)
#s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))
#s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32))
(*.f32 x #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)))
#s(approx (sin (* x (PI))) (*.f32 x #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32))))
(/.f32 #s(approx (sin (* x (PI))) (*.f32 x #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)))) (*.f32 x (PI.f32)))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)))) (*.f32 x (PI.f32))))
(*.f32 x x)
#s(literal -1/6 binary32)
(*.f32 (*.f32 x x) #s(literal -1/6 binary32))
(*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32))
(*.f32 (PI.f32) (PI.f32))
(fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (PI.f32) (PI.f32)) (PI.f32))
(*.f32 (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (PI.f32) (PI.f32)) (PI.f32)) x)
#s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (PI.f32) (PI.f32)) (PI.f32)) x))
(*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (PI.f32) (PI.f32)) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)))
(/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (PI.f32) (PI.f32)) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32))
(/.f32 (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (PI.f32) (PI.f32)) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
(*.f32 tau (PI.f32))
#s(literal 2/3 binary32)
(pow.f32 (PI.f32) #s(literal 2/3 binary32))
(*.f32 (*.f32 tau (PI.f32)) (pow.f32 (PI.f32) #s(literal 2/3 binary32)))
(cbrt.f32 (PI.f32))
(*.f32 (*.f32 (*.f32 tau (PI.f32)) (pow.f32 (PI.f32) #s(literal 2/3 binary32))) (cbrt.f32 (PI.f32)))
#s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 (*.f32 tau (PI.f32)) (pow.f32 (PI.f32) #s(literal 2/3 binary32))) (cbrt.f32 (PI.f32))))
(*.f32 (PI.f32) (*.f32 tau (PI.f32)))
(/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 (*.f32 tau (PI.f32)) (pow.f32 (PI.f32) #s(literal 2/3 binary32))) (cbrt.f32 (PI.f32)))) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
(*.f32 (PI.f32) tau)
(*.f32 (*.f32 (PI.f32) tau) x)
(sin.f32 (*.f32 (*.f32 (PI.f32) tau) x))
(/.f32 (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x)) x)
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x)) x) (sin.f32 (*.f32 (PI.f32) x)))
(*.f32 (*.f32 (PI.f32) tau) (PI.f32))
(*.f32 x (*.f32 (*.f32 (PI.f32) tau) (PI.f32)))
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x)) x) (sin.f32 (*.f32 (PI.f32) x))) (*.f32 x (*.f32 (*.f32 (PI.f32) tau) (PI.f32))))
Outputs
#s(approx x x)
#s(approx (* x (PI)) (*.f32 x (PI.f32)))
#s(approx (* (* x (PI)) tau) (*.f32 tau (*.f32 x (PI.f32))))
#s(approx (sin (* (* x (PI)) tau)) (*.f32 x (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 tau #s(literal 3 binary32)) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32)))) (*.f32 tau (PI.f32)))))
#s(approx (sin (* (* x (PI)) tau)) (*.f32 x (fma.f32 tau (PI.f32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 tau #s(literal 3 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32))) (*.f32 #s(literal 1/120 binary32) (*.f32 (pow.f32 tau #s(literal 5 binary32)) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 5 binary32))))))))))
#s(approx (sin (* (* x (PI)) tau)) (*.f32 x (fma.f32 tau (PI.f32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 tau #s(literal 3 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32))) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal -1/5040 binary32) (*.f32 (pow.f32 tau #s(literal 7 binary32)) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 7 binary32)))) (*.f32 #s(literal 1/120 binary32) (*.f32 (pow.f32 tau #s(literal 5 binary32)) (pow.f32 (PI.f32) #s(literal 5 binary32)))))))))))
#s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))
#s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (+.f32 #s(literal 1 binary32) (*.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32)))))))
#s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (+.f32 #s(literal 1 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32))) (*.f32 #s(literal 1/120 binary32) (*.f32 (pow.f32 tau #s(literal 4 binary32)) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 4 binary32)))))))))
#s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (+.f32 #s(literal 1 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32))) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal -1/5040 binary32) (*.f32 (pow.f32 tau #s(literal 6 binary32)) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 6 binary32)))) (*.f32 #s(literal 1/120 binary32) (*.f32 (pow.f32 tau #s(literal 4 binary32)) (pow.f32 (PI.f32) #s(literal 4 binary32))))))))))
#s(approx (sin (* (PI) x)) (*.f32 x (+.f32 (PI.f32) (*.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32)))))))
#s(approx (sin (* (PI) x)) (*.f32 x (+.f32 (PI.f32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (pow.f32 (PI.f32) #s(literal 3 binary32)) (*.f32 #s(literal 1/120 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 5 binary32)))))))))
#s(approx (sin (* (PI) x)) (*.f32 x (+.f32 (PI.f32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (pow.f32 (PI.f32) #s(literal 3 binary32)) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal -1/5040 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 7 binary32))) (*.f32 #s(literal 1/120 binary32) (pow.f32 (PI.f32) #s(literal 5 binary32))))))))))
#s(approx (/ (sin (* (PI) x)) x) (PI.f32))
#s(approx (/ (sin (* (PI) x)) x) (+.f32 (PI.f32) (*.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32))))))
#s(approx (/ (sin (* (PI) x)) x) (+.f32 (PI.f32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (pow.f32 (PI.f32) #s(literal 3 binary32)) (*.f32 #s(literal 1/120 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 5 binary32))))))))
#s(approx (/ (sin (* (PI) x)) x) (+.f32 (PI.f32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (pow.f32 (PI.f32) #s(literal 3 binary32)) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal -1/5040 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 7 binary32))) (*.f32 #s(literal 1/120 binary32) (pow.f32 (PI.f32) #s(literal 5 binary32)))))))))
#s(approx (/ (/ (sin (* (PI) x)) x) (PI)) (+.f32 #s(literal 1 binary32) (*.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32))))))
#s(approx (/ (/ (sin (* (PI) x)) x) (PI)) (+.f32 #s(literal 1 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (pow.f32 (PI.f32) #s(literal 2 binary32)) (*.f32 #s(literal 1/120 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 4 binary32))))))))
#s(approx (/ (/ (sin (* (PI) x)) x) (PI)) (+.f32 #s(literal 1 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (pow.f32 (PI.f32) #s(literal 2 binary32)) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal -1/5040 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 6 binary32))) (*.f32 #s(literal 1/120 binary32) (pow.f32 (PI.f32) #s(literal 4 binary32)))))))))
#s(approx (* (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (/ (/ (sin (* (PI) x)) x) (PI))) (+.f32 #s(literal 1 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32))) (*.f32 #s(literal -1/6 binary32) (pow.f32 (PI.f32) #s(literal 2 binary32)))))))
#s(approx (* (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (/ (/ (sin (* (PI) x)) x) (PI))) (+.f32 #s(literal 1 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32))) (fma.f32 #s(literal -1/6 binary32) (pow.f32 (PI.f32) #s(literal 2 binary32)) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal 1/120 binary32) (*.f32 (pow.f32 tau #s(literal 4 binary32)) (pow.f32 (PI.f32) #s(literal 4 binary32))) (fma.f32 #s(literal 1/120 binary32) (pow.f32 (PI.f32) #s(literal 4 binary32)) (*.f32 #s(literal 1/36 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 4 binary32))))))))))))
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#s(approx (* x x) (pow.f32 x #s(literal 2 binary32)))
#s(approx (* (* x x) -1/6) (*.f32 #s(literal -1/6 binary32) (pow.f32 x #s(literal 2 binary32))))
#s(approx (* (* (* x x) -1/6) (PI)) (*.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (PI.f32))))
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#s(approx (* (sin (* x (PI))) (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau))) (*.f32 x (+.f32 (PI.f32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32))) (fma.f32 #s(literal -1/6 binary32) (pow.f32 (PI.f32) #s(literal 3 binary32)) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal 1/120 binary32) (*.f32 (pow.f32 tau #s(literal 4 binary32)) (pow.f32 (PI.f32) #s(literal 5 binary32))) (fma.f32 #s(literal 1/120 binary32) (pow.f32 (PI.f32) #s(literal 5 binary32)) (*.f32 #s(literal 1/36 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 5 binary32)))))))))))))
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#s(approx (/ (* (sin (* x (PI))) (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau))) (PI)) (*.f32 x (+.f32 #s(literal 1 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32))) (fma.f32 #s(literal -1/6 binary32) (pow.f32 (PI.f32) #s(literal 2 binary32)) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal 1/120 binary32) (*.f32 (pow.f32 tau #s(literal 4 binary32)) (pow.f32 (PI.f32) #s(literal 4 binary32))) (fma.f32 #s(literal 1/120 binary32) (pow.f32 (PI.f32) #s(literal 4 binary32)) (*.f32 #s(literal 1/36 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 4 binary32)))))))))))))
#s(approx (/ (* (sin (* x (PI))) (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau))) (PI)) (*.f32 x (+.f32 #s(literal 1 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32))) (fma.f32 #s(literal -1/6 binary32) (pow.f32 (PI.f32) #s(literal 2 binary32)) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal 1/120 binary32) (*.f32 (pow.f32 tau #s(literal 4 binary32)) (pow.f32 (PI.f32) #s(literal 4 binary32))) (fma.f32 #s(literal 1/120 binary32) (pow.f32 (PI.f32) #s(literal 4 binary32)) (fma.f32 #s(literal 1/36 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 4 binary32))) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal -1/720 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 6 binary32))) (fma.f32 #s(literal -1/720 binary32) (*.f32 (pow.f32 tau #s(literal 4 binary32)) (pow.f32 (PI.f32) #s(literal 6 binary32))) (fma.f32 #s(literal -1/5040 binary32) (*.f32 (pow.f32 tau #s(literal 6 binary32)) (pow.f32 (PI.f32) #s(literal 6 binary32))) (*.f32 #s(literal -1/5040 binary32) (pow.f32 (PI.f32) #s(literal 6 binary32)))))))))))))))))
#s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 tau (pow.f32 (PI.f32) #s(literal 2 binary32))))
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#s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (fma.f32 tau (pow.f32 (PI.f32) #s(literal 2 binary32)) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (*.f32 tau (pow.f32 (PI.f32) #s(literal 4 binary32))) (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 tau #s(literal 3 binary32)) (pow.f32 (PI.f32) #s(literal 4 binary32))) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal 1/120 binary32) (*.f32 tau (pow.f32 (PI.f32) #s(literal 6 binary32))) (fma.f32 #s(literal 1/120 binary32) (*.f32 (pow.f32 tau #s(literal 5 binary32)) (pow.f32 (PI.f32) #s(literal 6 binary32))) (*.f32 #s(literal 1/36 binary32) (*.f32 (pow.f32 tau #s(literal 3 binary32)) (pow.f32 (PI.f32) #s(literal 6 binary32))))))))))))
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#s(approx (/ (sin (* (* (PI) tau) x)) x) (*.f32 tau (PI.f32)))
#s(approx (/ (sin (* (* (PI) tau) x)) x) (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 tau #s(literal 3 binary32)) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32)))) (*.f32 tau (PI.f32))))
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#s(approx (* (/ (sin (* (* (PI) tau) x)) x) (sin (* (PI) x))) (*.f32 tau (*.f32 x (pow.f32 (PI.f32) #s(literal 2 binary32)))))
#s(approx (* (/ (sin (* (* (PI) tau) x)) x) (sin (* (PI) x))) (*.f32 x (fma.f32 tau (pow.f32 (PI.f32) #s(literal 2 binary32)) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (*.f32 tau (pow.f32 (PI.f32) #s(literal 4 binary32))) (*.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 tau #s(literal 3 binary32)) (pow.f32 (PI.f32) #s(literal 4 binary32)))))))))
#s(approx (* (/ (sin (* (* (PI) tau) x)) x) (sin (* (PI) x))) (*.f32 x (fma.f32 tau (pow.f32 (PI.f32) #s(literal 2 binary32)) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (*.f32 tau (pow.f32 (PI.f32) #s(literal 4 binary32))) (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 tau #s(literal 3 binary32)) (pow.f32 (PI.f32) #s(literal 4 binary32))) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal 1/120 binary32) (*.f32 tau (pow.f32 (PI.f32) #s(literal 6 binary32))) (fma.f32 #s(literal 1/120 binary32) (*.f32 (pow.f32 tau #s(literal 5 binary32)) (pow.f32 (PI.f32) #s(literal 6 binary32))) (*.f32 #s(literal 1/36 binary32) (*.f32 (pow.f32 tau #s(literal 3 binary32)) (pow.f32 (PI.f32) #s(literal 6 binary32)))))))))))))
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#s(approx (sin (* (* x (PI)) tau)) (sin.f32 (*.f32 tau (*.f32 x (PI.f32)))))
#s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (/.f32 (sin.f32 (*.f32 tau (*.f32 x (PI.f32)))) (*.f32 tau (*.f32 x (PI.f32)))))
#s(approx (sin (* (PI) x)) (sin.f32 (*.f32 x (PI.f32))))
#s(approx (/ (sin (* (PI) x)) x) (/.f32 (sin.f32 (*.f32 x (PI.f32))) x))
#s(approx (/ (/ (sin (* (PI) x)) x) (PI)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
#s(approx (* (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (/ (/ (sin (* (PI) x)) x) (PI))) (/.f32 (*.f32 (sin.f32 (*.f32 tau (*.f32 x (PI.f32)))) (sin.f32 (*.f32 x (PI.f32)))) (*.f32 tau (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32))))))
#s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (*.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32)))))
#s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (pow.f32 (PI.f32) #s(literal 3 binary32)) (/.f32 (PI.f32) (pow.f32 x #s(literal 2 binary32))))))
#s(approx (* x (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3))))) (*.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 x #s(literal 3 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32)))))
#s(approx (* x (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3))))) (*.f32 (pow.f32 x #s(literal 3 binary32)) (fma.f32 #s(literal -1/6 binary32) (pow.f32 (PI.f32) #s(literal 3 binary32)) (/.f32 (PI.f32) (pow.f32 x #s(literal 2 binary32))))))
#s(approx (* (sin (* x (PI))) (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau))) (/.f32 (*.f32 (sin.f32 (*.f32 tau (*.f32 x (PI.f32)))) (sin.f32 (*.f32 x (PI.f32)))) (*.f32 tau (*.f32 x (PI.f32)))))
#s(approx (/ (* (sin (* x (PI))) (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau))) (PI)) (/.f32 (*.f32 (sin.f32 (*.f32 tau (*.f32 x (PI.f32)))) (sin.f32 (*.f32 x (PI.f32)))) (*.f32 tau (*.f32 x (pow.f32 (PI.f32) #s(literal 2 binary32))))))
#s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (/.f32 (*.f32 (sin.f32 (*.f32 tau (*.f32 x (PI.f32)))) (sin.f32 (*.f32 x (PI.f32)))) (pow.f32 x #s(literal 2 binary32))))
#s(approx (/ (sin (* (* (PI) tau) x)) x) (/.f32 (sin.f32 (*.f32 tau (*.f32 x (PI.f32)))) x))
#s(approx (* (/ (sin (* (* (PI) tau) x)) x) (sin (* (PI) x))) (/.f32 (*.f32 (sin.f32 (*.f32 tau (*.f32 x (PI.f32)))) (sin.f32 (*.f32 x (PI.f32)))) x))
#s(approx (* x (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3))))) (*.f32 #s(literal -1 binary32) (*.f32 (pow.f32 x #s(literal 3 binary32)) (fma.f32 #s(literal -1 binary32) (/.f32 (PI.f32) (pow.f32 x #s(literal 2 binary32))) (*.f32 #s(literal 1/6 binary32) (pow.f32 (PI.f32) #s(literal 3 binary32)))))))
#s(approx tau tau)
#s(approx (sin (* (* x (PI)) tau)) (*.f32 tau (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (*.f32 (pow.f32 x #s(literal 3 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32)))) (*.f32 x (PI.f32)))))
#s(approx (sin (* (* x (PI)) tau)) (*.f32 tau (fma.f32 x (PI.f32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 x #s(literal 3 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32))) (*.f32 #s(literal 1/120 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (*.f32 (pow.f32 x #s(literal 5 binary32)) (pow.f32 (PI.f32) #s(literal 5 binary32))))))))))
#s(approx (sin (* (* x (PI)) tau)) (*.f32 tau (fma.f32 x (PI.f32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 x #s(literal 3 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32))) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (fma.f32 #s(literal -1/5040 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (*.f32 (pow.f32 x #s(literal 7 binary32)) (pow.f32 (PI.f32) #s(literal 7 binary32)))) (*.f32 #s(literal 1/120 binary32) (*.f32 (pow.f32 x #s(literal 5 binary32)) (pow.f32 (PI.f32) #s(literal 5 binary32)))))))))))
#s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (+.f32 #s(literal 1 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32))) (*.f32 #s(literal 1/120 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (*.f32 (pow.f32 x #s(literal 4 binary32)) (pow.f32 (PI.f32) #s(literal 4 binary32)))))))))
#s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (+.f32 #s(literal 1 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32))) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (fma.f32 #s(literal -1/5040 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (*.f32 (pow.f32 x #s(literal 6 binary32)) (pow.f32 (PI.f32) #s(literal 6 binary32)))) (*.f32 #s(literal 1/120 binary32) (*.f32 (pow.f32 x #s(literal 4 binary32)) (pow.f32 (PI.f32) #s(literal 4 binary32))))))))))
#s(approx (* (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (/ (/ (sin (* (PI) x)) x) (PI))) (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (*.f32 x (*.f32 (PI.f32) (sin.f32 (*.f32 x (PI.f32)))))) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32)))))
#s(approx (* (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (/ (/ (sin (* (PI) x)) x) (PI))) (fma.f32 (pow.f32 tau #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (*.f32 x (*.f32 (PI.f32) (sin.f32 (*.f32 x (PI.f32))))) (*.f32 #s(literal 1/120 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (*.f32 (pow.f32 x #s(literal 3 binary32)) (*.f32 (pow.f32 (PI.f32) #s(literal 3 binary32)) (sin.f32 (*.f32 x (PI.f32)))))))) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32)))))
#s(approx (* (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (/ (/ (sin (* (PI) x)) x) (PI))) (fma.f32 (pow.f32 tau #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (*.f32 x (*.f32 (PI.f32) (sin.f32 (*.f32 x (PI.f32))))) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (fma.f32 #s(literal -1/5040 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (*.f32 (pow.f32 x #s(literal 5 binary32)) (*.f32 (pow.f32 (PI.f32) #s(literal 5 binary32)) (sin.f32 (*.f32 x (PI.f32)))))) (*.f32 #s(literal 1/120 binary32) (*.f32 (pow.f32 x #s(literal 3 binary32)) (*.f32 (pow.f32 (PI.f32) #s(literal 3 binary32)) (sin.f32 (*.f32 x (PI.f32))))))))) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32)))))
#s(approx (* (sin (* x (PI))) (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau))) (+.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (*.f32 (pow.f32 x #s(literal 2 binary32)) (*.f32 (pow.f32 (PI.f32) #s(literal 2 binary32)) (sin.f32 (*.f32 x (PI.f32)))))))))
#s(approx (* (sin (* x (PI))) (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau))) (+.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (*.f32 (pow.f32 (PI.f32) #s(literal 2 binary32)) (sin.f32 (*.f32 x (PI.f32))))) (*.f32 #s(literal 1/120 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (*.f32 (pow.f32 x #s(literal 4 binary32)) (*.f32 (pow.f32 (PI.f32) #s(literal 4 binary32)) (sin.f32 (*.f32 x (PI.f32)))))))))))
#s(approx (* (sin (* x (PI))) (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau))) (+.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (*.f32 (pow.f32 (PI.f32) #s(literal 2 binary32)) (sin.f32 (*.f32 x (PI.f32))))) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (fma.f32 #s(literal -1/5040 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (*.f32 (pow.f32 x #s(literal 6 binary32)) (*.f32 (pow.f32 (PI.f32) #s(literal 6 binary32)) (sin.f32 (*.f32 x (PI.f32)))))) (*.f32 #s(literal 1/120 binary32) (*.f32 (pow.f32 x #s(literal 4 binary32)) (*.f32 (pow.f32 (PI.f32) #s(literal 4 binary32)) (sin.f32 (*.f32 x (PI.f32))))))))))))
#s(approx (/ (* (sin (* x (PI))) (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau))) (PI)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (PI.f32)))
#s(approx (/ (* (sin (* x (PI))) (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau))) (PI)) (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (*.f32 (pow.f32 x #s(literal 2 binary32)) (*.f32 (PI.f32) (sin.f32 (*.f32 x (PI.f32)))))) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (PI.f32))))
#s(approx (/ (* (sin (* x (PI))) (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau))) (PI)) (fma.f32 (pow.f32 tau #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (*.f32 (PI.f32) (sin.f32 (*.f32 x (PI.f32))))) (*.f32 #s(literal 1/120 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (*.f32 (pow.f32 x #s(literal 4 binary32)) (*.f32 (pow.f32 (PI.f32) #s(literal 3 binary32)) (sin.f32 (*.f32 x (PI.f32)))))))) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (PI.f32))))
#s(approx (/ (* (sin (* x (PI))) (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau))) (PI)) (fma.f32 (pow.f32 tau #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (*.f32 (PI.f32) (sin.f32 (*.f32 x (PI.f32))))) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (fma.f32 #s(literal -1/5040 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (*.f32 (pow.f32 x #s(literal 6 binary32)) (*.f32 (pow.f32 (PI.f32) #s(literal 5 binary32)) (sin.f32 (*.f32 x (PI.f32)))))) (*.f32 #s(literal 1/120 binary32) (*.f32 (pow.f32 x #s(literal 4 binary32)) (*.f32 (pow.f32 (PI.f32) #s(literal 3 binary32)) (sin.f32 (*.f32 x (PI.f32))))))))) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (PI.f32))))
#s(approx (* (* tau (PI)) (pow (PI) 2/3)) (*.f32 tau (pow.f32 (PI.f32) #s(literal 5/3 binary32))))
#s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (/.f32 (*.f32 tau (*.f32 (PI.f32) (sin.f32 (*.f32 x (PI.f32))))) x))
#s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 tau (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (*.f32 x (*.f32 (pow.f32 (PI.f32) #s(literal 3 binary32)) (sin.f32 (*.f32 x (PI.f32)))))) (/.f32 (*.f32 (PI.f32) (sin.f32 (*.f32 x (PI.f32)))) x))))
#s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 tau (fma.f32 (pow.f32 tau #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (*.f32 x (*.f32 (pow.f32 (PI.f32) #s(literal 3 binary32)) (sin.f32 (*.f32 x (PI.f32))))) (*.f32 #s(literal 1/120 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (*.f32 (pow.f32 x #s(literal 3 binary32)) (*.f32 (pow.f32 (PI.f32) #s(literal 5 binary32)) (sin.f32 (*.f32 x (PI.f32)))))))) (/.f32 (*.f32 (PI.f32) (sin.f32 (*.f32 x (PI.f32)))) x))))
#s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 tau (fma.f32 (pow.f32 tau #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (*.f32 x (*.f32 (pow.f32 (PI.f32) #s(literal 3 binary32)) (sin.f32 (*.f32 x (PI.f32))))) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (fma.f32 #s(literal -1/5040 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (*.f32 (pow.f32 x #s(literal 5 binary32)) (*.f32 (pow.f32 (PI.f32) #s(literal 7 binary32)) (sin.f32 (*.f32 x (PI.f32)))))) (*.f32 #s(literal 1/120 binary32) (*.f32 (pow.f32 x #s(literal 3 binary32)) (*.f32 (pow.f32 (PI.f32) #s(literal 5 binary32)) (sin.f32 (*.f32 x (PI.f32))))))))) (/.f32 (*.f32 (PI.f32) (sin.f32 (*.f32 x (PI.f32)))) x))))
#s(approx (/ (sin (* (* (PI) tau) x)) x) (*.f32 tau (+.f32 (PI.f32) (*.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32))))))))
#s(approx (/ (sin (* (* (PI) tau) x)) x) (*.f32 tau (+.f32 (PI.f32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32))) (*.f32 #s(literal 1/120 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (*.f32 (pow.f32 x #s(literal 4 binary32)) (pow.f32 (PI.f32) #s(literal 5 binary32))))))))))
#s(approx (/ (sin (* (* (PI) tau) x)) x) (*.f32 tau (+.f32 (PI.f32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32))) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (fma.f32 #s(literal -1/5040 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (*.f32 (pow.f32 x #s(literal 6 binary32)) (pow.f32 (PI.f32) #s(literal 7 binary32)))) (*.f32 #s(literal 1/120 binary32) (*.f32 (pow.f32 x #s(literal 4 binary32)) (pow.f32 (PI.f32) #s(literal 5 binary32)))))))))))
#s(approx (* (/ (sin (* (* (PI) tau) x)) x) (sin (* (PI) x))) (*.f32 tau (*.f32 (PI.f32) (sin.f32 (*.f32 x (PI.f32))))))
#s(approx (* (/ (sin (* (* (PI) tau) x)) x) (sin (* (PI) x))) (*.f32 tau (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (*.f32 (pow.f32 x #s(literal 2 binary32)) (*.f32 (pow.f32 (PI.f32) #s(literal 3 binary32)) (sin.f32 (*.f32 x (PI.f32)))))) (*.f32 (PI.f32) (sin.f32 (*.f32 x (PI.f32)))))))
#s(approx (* (/ (sin (* (* (PI) tau) x)) x) (sin (* (PI) x))) (*.f32 tau (fma.f32 (PI.f32) (sin.f32 (*.f32 x (PI.f32))) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (*.f32 (pow.f32 (PI.f32) #s(literal 3 binary32)) (sin.f32 (*.f32 x (PI.f32))))) (*.f32 #s(literal 1/120 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (*.f32 (pow.f32 x #s(literal 4 binary32)) (*.f32 (pow.f32 (PI.f32) #s(literal 5 binary32)) (sin.f32 (*.f32 x (PI.f32))))))))))))
#s(approx (* (/ (sin (* (* (PI) tau) x)) x) (sin (* (PI) x))) (*.f32 tau (fma.f32 (PI.f32) (sin.f32 (*.f32 x (PI.f32))) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (*.f32 (pow.f32 (PI.f32) #s(literal 3 binary32)) (sin.f32 (*.f32 x (PI.f32))))) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (fma.f32 #s(literal -1/5040 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (*.f32 (pow.f32 x #s(literal 6 binary32)) (*.f32 (pow.f32 (PI.f32) #s(literal 7 binary32)) (sin.f32 (*.f32 x (PI.f32)))))) (*.f32 #s(literal 1/120 binary32) (*.f32 (pow.f32 x #s(literal 4 binary32)) (*.f32 (pow.f32 (PI.f32) #s(literal 5 binary32)) (sin.f32 (*.f32 x (PI.f32)))))))))))))
Calls

6 calls:

TimeVariablePoint
34.0ms
tau
0
17.0ms
tau
-inf
12.0ms
tau
inf
8.0ms
x
0
7.0ms
x
-inf

rewrite177.0ms (3.7%)

Memory
-28.2MiB live, 375.1MiB allocated; 50ms collecting garbage
Iterations

Useful iterations: 0 (0.0ms)

IterNodesCost
067526
0111530
1353505
21415504
04106492
Stop Event
iter-limit
node-limit
iter-limit
Counts
47 → 1 046
Calls
Call 1
Inputs
x
(PI.f32)
(*.f32 x (PI.f32))
tau
(*.f32 (*.f32 x (PI.f32)) tau)
(sin.f32 (*.f32 (*.f32 x (PI.f32)) tau))
(/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau))
(*.f32 (PI.f32) x)
(sin.f32 (*.f32 (PI.f32) x))
(/.f32 (sin.f32 (*.f32 (PI.f32) x)) x)
(/.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (PI.f32))
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (PI.f32)))
#s(literal 1 binary32)
#s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))
#s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32))
(*.f32 x #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)))
#s(approx (sin (* x (PI))) (*.f32 x #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32))))
(/.f32 #s(approx (sin (* x (PI))) (*.f32 x #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)))) (*.f32 x (PI.f32)))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)))) (*.f32 x (PI.f32))))
(*.f32 x x)
#s(literal -1/6 binary32)
(*.f32 (*.f32 x x) #s(literal -1/6 binary32))
(*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32))
(*.f32 (PI.f32) (PI.f32))
(fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (PI.f32) (PI.f32)) (PI.f32))
(*.f32 (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (PI.f32) (PI.f32)) (PI.f32)) x)
#s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (PI.f32) (PI.f32)) (PI.f32)) x))
(*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (PI.f32) (PI.f32)) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)))
(/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (PI.f32) (PI.f32)) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32))
(/.f32 (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (PI.f32) (PI.f32)) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
(*.f32 tau (PI.f32))
#s(literal 2/3 binary32)
(pow.f32 (PI.f32) #s(literal 2/3 binary32))
(*.f32 (*.f32 tau (PI.f32)) (pow.f32 (PI.f32) #s(literal 2/3 binary32)))
(cbrt.f32 (PI.f32))
(*.f32 (*.f32 (*.f32 tau (PI.f32)) (pow.f32 (PI.f32) #s(literal 2/3 binary32))) (cbrt.f32 (PI.f32)))
#s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 (*.f32 tau (PI.f32)) (pow.f32 (PI.f32) #s(literal 2/3 binary32))) (cbrt.f32 (PI.f32))))
(*.f32 (PI.f32) (*.f32 tau (PI.f32)))
(/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 (*.f32 tau (PI.f32)) (pow.f32 (PI.f32) #s(literal 2/3 binary32))) (cbrt.f32 (PI.f32)))) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
(*.f32 (PI.f32) tau)
(*.f32 (*.f32 (PI.f32) tau) x)
(sin.f32 (*.f32 (*.f32 (PI.f32) tau) x))
(/.f32 (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x)) x)
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x)) x) (sin.f32 (*.f32 (PI.f32) x)))
(*.f32 (*.f32 (PI.f32) tau) (PI.f32))
(*.f32 x (*.f32 (*.f32 (PI.f32) tau) (PI.f32)))
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x)) x) (sin.f32 (*.f32 (PI.f32) x))) (*.f32 x (*.f32 (*.f32 (PI.f32) tau) (PI.f32))))
Outputs
x
(PI.f32)
(log.f32 (exp.f32 (*.f32 (PI.f32) x)))
(*.f32 (*.f32 x (pow.f32 (PI.f32) #s(literal 2/3 binary32))) (cbrt.f32 (PI.f32)))
(*.f32 (pow.f32 (PI.f32) #s(literal 2/3 binary32)) (*.f32 (cbrt.f32 (PI.f32)) x))
(*.f32 (PI.f32) x)
(*.f32 x (log.f32 (exp.f32 (PI.f32))))
(*.f32 x (PI.f32))
tau
(log.f32 (pow.f32 (exp.f32 (PI.f32)) (*.f32 tau x)))
(log.f32 (pow.f32 (exp.f32 (*.f32 (PI.f32) x)) tau))
(log.f32 (pow.f32 (exp.f32 (*.f32 tau (PI.f32))) x))
(*.f32 (*.f32 tau x) (PI.f32))
(*.f32 (pow.f32 (PI.f32) #s(literal 2/3 binary32)) (*.f32 (cbrt.f32 (PI.f32)) (*.f32 tau x)))
(*.f32 (*.f32 tau (PI.f32)) x)
(*.f32 tau (*.f32 (PI.f32) x))
(*.f32 (*.f32 (PI.f32) x) tau)
(*.f32 (PI.f32) (*.f32 tau x))
(*.f32 x (*.f32 tau (PI.f32)))
(sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))
(*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (PI.f32) x)) (/.f32 #s(literal 1 binary32) tau))
(*.f32 (/.f32 #s(literal 1 binary32) (*.f32 tau (*.f32 (PI.f32) x))) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))))
(*.f32 (sin.f32 (*.f32 (*.f32 (neg.f32 (PI.f32)) x) tau)) (/.f32 #s(literal 1 binary32) (*.f32 (*.f32 (neg.f32 (PI.f32)) x) tau)))
(*.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (/.f32 #s(literal 1 binary32) (*.f32 tau (*.f32 (PI.f32) x))))
(/.f32 (neg.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 tau (PI.f32)))) (neg.f32 x))
(/.f32 (neg.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) tau)) (*.f32 (neg.f32 (PI.f32)) x))
(/.f32 (neg.f32 (neg.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (PI.f32) x)))) (neg.f32 (neg.f32 tau)))
(/.f32 (neg.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (PI.f32))) (neg.f32 (*.f32 tau x)))
(/.f32 (neg.f32 (*.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) #s(literal 1 binary32))) (*.f32 (*.f32 (neg.f32 (PI.f32)) x) tau))
(/.f32 (neg.f32 (sin.f32 (neg.f32 (*.f32 (*.f32 (neg.f32 (PI.f32)) x) tau)))) (neg.f32 (neg.f32 (*.f32 (*.f32 (neg.f32 (PI.f32)) x) tau))))
(/.f32 (*.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) #s(literal 1 binary32)) (*.f32 tau (*.f32 (PI.f32) x)))
(/.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 tau (PI.f32))) x)
(/.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) tau) (*.f32 (PI.f32) x))
(/.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (PI.f32)) (*.f32 tau x))
(/.f32 (neg.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (PI.f32) x))) (neg.f32 tau))
(/.f32 (sin.f32 (neg.f32 (*.f32 (*.f32 (neg.f32 (PI.f32)) x) tau))) (neg.f32 (*.f32 (*.f32 (neg.f32 (PI.f32)) x) tau)))
(/.f32 (neg.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) x)) (neg.f32 (*.f32 tau (PI.f32))))
(/.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (PI.f32) x)) tau)
(/.f32 (sin.f32 (*.f32 (*.f32 (neg.f32 (PI.f32)) x) tau)) (*.f32 (*.f32 (neg.f32 (PI.f32)) x) tau))
(/.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) x) (*.f32 tau (PI.f32)))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 tau (*.f32 (PI.f32) x)) (*.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) #s(literal 1 binary32))))
(/.f32 #s(literal 1 binary32) (/.f32 x (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 tau (PI.f32)))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 (PI.f32) x) (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) tau)))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 tau x) (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (PI.f32))))
(/.f32 #s(literal 1 binary32) (/.f32 (neg.f32 tau) (neg.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (PI.f32) x)))))
(/.f32 #s(literal 1 binary32) (/.f32 (neg.f32 (*.f32 (*.f32 (neg.f32 (PI.f32)) x) tau)) (sin.f32 (neg.f32 (*.f32 (*.f32 (neg.f32 (PI.f32)) x) tau)))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 tau (PI.f32)) (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) x)))
(/.f32 #s(literal 1 binary32) (/.f32 tau (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (PI.f32) x))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 (*.f32 (neg.f32 (PI.f32)) x) tau) (sin.f32 (*.f32 (*.f32 (neg.f32 (PI.f32)) x) tau))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 tau (*.f32 (PI.f32) x)) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))))
(/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 tau (*.f32 (PI.f32) x)))
(neg.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (*.f32 (neg.f32 (PI.f32)) x) tau)))
(neg.f32 (/.f32 (sin.f32 (*.f32 (*.f32 (neg.f32 (PI.f32)) x) tau)) (*.f32 tau (*.f32 (PI.f32) x))))
(log.f32 (exp.f32 (*.f32 (PI.f32) x)))
(*.f32 (*.f32 x (pow.f32 (PI.f32) #s(literal 2/3 binary32))) (cbrt.f32 (PI.f32)))
(*.f32 (pow.f32 (PI.f32) #s(literal 2/3 binary32)) (*.f32 (cbrt.f32 (PI.f32)) x))
(*.f32 (PI.f32) x)
(*.f32 x (log.f32 (exp.f32 (PI.f32))))
(*.f32 x (PI.f32))
(sin.f32 (*.f32 (PI.f32) x))
(*.f32 (/.f32 #s(literal 1 binary32) x) (sin.f32 (*.f32 (PI.f32) x)))
(*.f32 (sin.f32 (*.f32 (neg.f32 (PI.f32)) x)) (/.f32 #s(literal 1 binary32) (neg.f32 x)))
(*.f32 (sin.f32 (*.f32 (PI.f32) x)) (/.f32 #s(literal 1 binary32) x))
(/.f32 (neg.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) #s(literal 1 binary32))) (neg.f32 x))
(/.f32 (neg.f32 (sin.f32 (neg.f32 (*.f32 (neg.f32 (PI.f32)) x)))) (neg.f32 (neg.f32 (neg.f32 x))))
(/.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) #s(literal 1 binary32)) x)
(/.f32 (sin.f32 (neg.f32 (*.f32 (neg.f32 (PI.f32)) x))) (neg.f32 (neg.f32 x)))
(/.f32 (sin.f32 (*.f32 (neg.f32 (PI.f32)) x)) (neg.f32 x))
(/.f32 #s(literal 1 binary32) (/.f32 x (*.f32 (sin.f32 (*.f32 (PI.f32) x)) #s(literal 1 binary32))))
(/.f32 #s(literal 1 binary32) (/.f32 (neg.f32 (neg.f32 x)) (sin.f32 (neg.f32 (*.f32 (neg.f32 (PI.f32)) x)))))
(/.f32 #s(literal 1 binary32) (/.f32 (neg.f32 x) (sin.f32 (*.f32 (neg.f32 (PI.f32)) x))))
(/.f32 #s(literal 1 binary32) (/.f32 x (sin.f32 (*.f32 (PI.f32) x))))
(/.f32 (sin.f32 (*.f32 (PI.f32) x)) x)
(neg.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (neg.f32 x)))
(*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (pow.f32 (PI.f32) #s(literal 2/3 binary32))) (/.f32 (/.f32 #s(literal 1 binary32) x) (cbrt.f32 (PI.f32))))
(*.f32 (/.f32 #s(literal 1 binary32) (PI.f32)) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x))
(*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (neg.f32 x)) (/.f32 #s(literal 1 binary32) (neg.f32 (PI.f32))))
(*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (/.f32 #s(literal 1 binary32) (PI.f32)))
(*.f32 (sin.f32 (*.f32 (PI.f32) x)) (/.f32 #s(literal 1 binary32) (*.f32 (PI.f32) x)))
(/.f32 (neg.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) #s(literal 1 binary32))) (neg.f32 (PI.f32)))
(/.f32 (neg.f32 (*.f32 (sin.f32 (*.f32 (neg.f32 (PI.f32)) x)) (/.f32 #s(literal 1 binary32) (PI.f32)))) (neg.f32 (neg.f32 x)))
(/.f32 (neg.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (/.f32 #s(literal 1 binary32) (PI.f32)))) (neg.f32 x))
(/.f32 (neg.f32 (/.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (pow.f32 (PI.f32) #s(literal 2/3 binary32)))) (cbrt.f32 (neg.f32 (PI.f32))))
(/.f32 (neg.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (PI.f32))) (neg.f32 x))
(/.f32 (neg.f32 (*.f32 (sin.f32 (*.f32 (neg.f32 (PI.f32)) x)) #s(literal 1 binary32))) (neg.f32 (*.f32 (neg.f32 (PI.f32)) x)))
(/.f32 (neg.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) #s(literal 1 binary32))) (*.f32 (neg.f32 (PI.f32)) x))
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) #s(literal 1 binary32)) (PI.f32))
(/.f32 (*.f32 (sin.f32 (*.f32 (neg.f32 (PI.f32)) x)) (/.f32 #s(literal 1 binary32) (PI.f32))) (neg.f32 x))
(/.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (/.f32 #s(literal 1 binary32) (PI.f32))) x)
(/.f32 (/.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (pow.f32 (PI.f32) #s(literal 2/3 binary32))) (cbrt.f32 (PI.f32)))
(/.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (PI.f32)) x)
(/.f32 (*.f32 (sin.f32 (*.f32 (neg.f32 (PI.f32)) x)) #s(literal 1 binary32)) (*.f32 (neg.f32 (PI.f32)) x))
(/.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) #s(literal 1 binary32)) (*.f32 (PI.f32) x))
(/.f32 (sin.f32 (neg.f32 (*.f32 (neg.f32 (PI.f32)) x))) (neg.f32 (*.f32 (neg.f32 (PI.f32)) x)))
(/.f32 (sin.f32 (*.f32 (neg.f32 (PI.f32)) x)) (*.f32 (neg.f32 (PI.f32)) x))
(/.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (neg.f32 x)) (neg.f32 (neg.f32 (neg.f32 (PI.f32)))))
(/.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (neg.f32 x)) (neg.f32 (PI.f32)))
(/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) #s(literal 1 binary32))))
(/.f32 #s(literal 1 binary32) (/.f32 (neg.f32 x) (*.f32 (sin.f32 (*.f32 (neg.f32 (PI.f32)) x)) (/.f32 #s(literal 1 binary32) (PI.f32)))))
(/.f32 #s(literal 1 binary32) (/.f32 x (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (/.f32 #s(literal 1 binary32) (PI.f32)))))
(/.f32 #s(literal 1 binary32) (/.f32 (cbrt.f32 (PI.f32)) (/.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (pow.f32 (PI.f32) #s(literal 2/3 binary32)))))
(/.f32 #s(literal 1 binary32) (/.f32 x (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (PI.f32))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 (neg.f32 (PI.f32)) x) (*.f32 (sin.f32 (*.f32 (neg.f32 (PI.f32)) x)) #s(literal 1 binary32))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 (PI.f32) x) (*.f32 (sin.f32 (*.f32 (PI.f32) x)) #s(literal 1 binary32))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 (neg.f32 (PI.f32)) x) (sin.f32 (*.f32 (neg.f32 (PI.f32)) x))))
(/.f32 #s(literal 1 binary32) (/.f32 (neg.f32 (neg.f32 (PI.f32))) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x)))
(/.f32 #s(literal 1 binary32) (/.f32 (neg.f32 (PI.f32)) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (neg.f32 x))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 (PI.f32) x) (sin.f32 (*.f32 (PI.f32) x))))
(/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x)))
(/.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (neg.f32 (neg.f32 (PI.f32))))
(/.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (PI.f32))
(/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x))
(neg.f32 (/.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (neg.f32 x)) (PI.f32)))
(*.f32 (/.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (*.f32 tau (PI.f32))) (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (PI.f32) x)))
(*.f32 (/.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) x) (*.f32 tau (*.f32 (PI.f32) x))) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (PI.f32)))
(*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 tau (*.f32 (PI.f32) x))) (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (PI.f32) x)))
(*.f32 (/.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) x) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x))
(*.f32 (/.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 tau (*.f32 (PI.f32) x))) (pow.f32 (PI.f32) #s(literal 2/3 binary32))) (/.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (cbrt.f32 (PI.f32))))
(*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 tau (PI.f32))) (/.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x)) x))
(*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) tau) (/.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x)))
(*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (PI.f32)) (/.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x)) (*.f32 tau x)))
(*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (/.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) x))
(*.f32 (/.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) (*.f32 (*.f32 tau (*.f32 (PI.f32) x)) x)) (/.f32 #s(literal 1 binary32) (PI.f32)))
(*.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x)) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) (/.f32 #s(literal 1 binary32) (*.f32 tau (*.f32 (PI.f32) x))))
(*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (PI.f32) x)) (/.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (*.f32 tau (PI.f32))))
(*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (PI.f32) x)) (/.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x)) tau))
(*.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 x x))) (/.f32 #s(literal 1 binary32) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))))
(*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (*.f32 (*.f32 tau (PI.f32)) (PI.f32)) x)) (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) x))
(*.f32 (/.f32 #s(literal 1 binary32) (*.f32 (*.f32 (*.f32 tau (PI.f32)) (PI.f32)) x)) (*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) x) (sin.f32 (*.f32 (PI.f32) x))))
(*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 x x)))
(*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 x x)) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))))
(*.f32 (*.f32 (sin.f32 (*.f32 (neg.f32 (PI.f32)) x)) (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) x)) (/.f32 #s(literal 1 binary32) (*.f32 (*.f32 (*.f32 (neg.f32 (PI.f32)) x) tau) (PI.f32))))
(*.f32 (*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) x) (sin.f32 (*.f32 (PI.f32) x))) (/.f32 #s(literal 1 binary32) (*.f32 (*.f32 (*.f32 tau (PI.f32)) (PI.f32)) x)))
(*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) x) (/.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x)) (*.f32 tau (PI.f32))))
(*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) x) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (*.f32 (*.f32 tau (PI.f32)) (PI.f32)) x)))
(*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x)) (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 tau (*.f32 (PI.f32) x))))
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(/.f32 #s(literal 1 binary32) (/.f32 x (/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x)) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) (*.f32 tau (PI.f32)))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 (PI.f32) x) (/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x)) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) tau)))
(/.f32 #s(literal 1 binary32) (/.f32 tau (/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x)) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) (*.f32 (PI.f32) x))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 tau x) (/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x)) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) (PI.f32))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 tau (PI.f32)) (/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x)) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) x)))
(/.f32 #s(literal 1 binary32) (/.f32 x (/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) x) (sin.f32 (*.f32 (PI.f32) x))) (*.f32 (*.f32 tau (PI.f32)) (PI.f32)))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 x (*.f32 (*.f32 (*.f32 tau (PI.f32)) (PI.f32)) x)) (*.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) #s(literal 1 binary32))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 (neg.f32 (PI.f32)) tau) (*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (neg.f32 x)) (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (PI.f32) x)))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 (neg.f32 (PI.f32)) (*.f32 (*.f32 (neg.f32 (PI.f32)) x) tau)) (*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (neg.f32 x)) (sin.f32 (*.f32 (*.f32 (neg.f32 (PI.f32)) x) tau)))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 (neg.f32 (PI.f32)) (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (neg.f32 x)) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 tau (PI.f32)) (*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (PI.f32) x)))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 (PI.f32) (*.f32 (*.f32 (neg.f32 (PI.f32)) x) tau)) (*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (sin.f32 (*.f32 (*.f32 (neg.f32 (PI.f32)) x) tau)))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 tau (*.f32 (PI.f32) x)) (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (PI.f32) x)))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 tau (neg.f32 (PI.f32))) (*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (PI.f32) x)) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (neg.f32 x)))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 tau (PI.f32)) (*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (PI.f32) x)) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 (*.f32 (*.f32 (neg.f32 (PI.f32)) x) tau) (neg.f32 (PI.f32))) (*.f32 (sin.f32 (*.f32 (*.f32 (neg.f32 (PI.f32)) x) tau)) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (neg.f32 x)))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 (*.f32 (*.f32 (neg.f32 (PI.f32)) x) tau) (PI.f32)) (*.f32 (sin.f32 (*.f32 (*.f32 (neg.f32 (PI.f32)) x) tau)) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 (*.f32 (*.f32 (neg.f32 (PI.f32)) x) tau) (PI.f32)) (*.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (neg.f32 x)))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 (*.f32 (PI.f32) x) (*.f32 (*.f32 (neg.f32 (PI.f32)) x) tau)) (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (sin.f32 (*.f32 (*.f32 (neg.f32 (PI.f32)) x) tau)))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 tau (*.f32 (PI.f32) x)) (*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (PI.f32) x)) (sin.f32 (*.f32 (PI.f32) x)))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 (neg.f32 x) (*.f32 (*.f32 (*.f32 tau (PI.f32)) (PI.f32)) x)) (*.f32 (sin.f32 (*.f32 (*.f32 (neg.f32 (PI.f32)) x) tau)) (sin.f32 (*.f32 (PI.f32) x)))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 (*.f32 (*.f32 (neg.f32 (PI.f32)) x) tau) (*.f32 (PI.f32) x)) (*.f32 (sin.f32 (*.f32 (*.f32 (neg.f32 (PI.f32)) x) tau)) (sin.f32 (*.f32 (PI.f32) x)))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 (neg.f32 (PI.f32)) (*.f32 tau (PI.f32))) (neg.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 x x))))))
(/.f32 #s(literal 1 binary32) (/.f32 (neg.f32 (*.f32 (*.f32 (*.f32 (neg.f32 (PI.f32)) x) tau) (PI.f32))) (neg.f32 (*.f32 (sin.f32 (*.f32 (neg.f32 (PI.f32)) x)) (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) x)))))
(/.f32 #s(literal 1 binary32) (/.f32 (neg.f32 (PI.f32)) (neg.f32 (/.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) (*.f32 (*.f32 tau (*.f32 (PI.f32) x)) x)))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 (*.f32 (neg.f32 (PI.f32)) x) tau) (neg.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x)) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 (*.f32 x x) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 x (*.f32 (*.f32 (*.f32 tau (PI.f32)) (PI.f32)) x)) (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 (*.f32 (PI.f32) x) (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 (*.f32 tau (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x)) (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 (*.f32 tau (PI.f32)) (PI.f32)) (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 x x)))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 (*.f32 (*.f32 (neg.f32 (PI.f32)) x) tau) (PI.f32)) (*.f32 (sin.f32 (*.f32 (neg.f32 (PI.f32)) x)) (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) x))))
(/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (/.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) (*.f32 (*.f32 tau (*.f32 (PI.f32) x)) x))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 tau (*.f32 (PI.f32) x)) (*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x)) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 (*.f32 (*.f32 tau (PI.f32)) (PI.f32)) x) (*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) x) (sin.f32 (*.f32 (PI.f32) x)))))
(neg.f32 (/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) x) (sin.f32 (*.f32 (PI.f32) x))) (*.f32 (*.f32 (*.f32 (neg.f32 (PI.f32)) x) tau) (PI.f32))))
(neg.f32 (/.f32 (*.f32 (sin.f32 (*.f32 (neg.f32 (PI.f32)) x)) (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) x)) (*.f32 (*.f32 (*.f32 tau (PI.f32)) (PI.f32)) x)))

eval105.0ms (2.2%)

Memory
53.8MiB live, 222.5MiB allocated; 46ms collecting garbage
Compiler

Compiled 31 723 to 4 096 computations (87.1% saved)

prune114.0ms (2.4%)

Memory
-17.4MiB live, 189.5MiB allocated; 30ms collecting garbage
Pruning

106 alts after pruning (100 fresh and 6 done)

PrunedKeptTotal
New84548893
Fresh165268
Picked505
Done-264
Total864106970
Accuracy
99.8%
Counts
970 → 106
Alt Table
Click to see full alt table
StatusAccuracyProgram
96.8%
(/.f32 (/.f32 (/.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x))) (*.f32 (*.f32 x x) (PI.f32))) (PI.f32)) tau)
64.7%
(/.f32 (/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) (PI.f32)) tau)
64.7%
(/.f32 (/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) tau) (PI.f32))
97.3%
(/.f32 (/.f32 (*.f32 (sin.f32 (*.f32 x (PI.f32))) (sin.f32 (*.f32 (*.f32 tau (PI.f32)) x))) (PI.f32)) (*.f32 (*.f32 (*.f32 tau (PI.f32)) x) x))
65.9%
(/.f32 (/.f32 (*.f32 #s(approx (sin (* x (PI))) (fma.f32 (*.f32 (*.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) (PI.f32)) x (*.f32 (PI.f32) x))) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
66.0%
(/.f32 (/.f32 (*.f32 #s(approx (sin (* x (PI))) (fma.f32 (PI.f32) x (*.f32 (*.f32 (*.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) (PI.f32)) x))) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
65.9%
(/.f32 (/.f32 (*.f32 #s(approx (sin (* x (PI))) (+.f32 (*.f32 (*.f32 (*.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) (PI.f32)) x) (*.f32 (PI.f32) x))) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
66.0%
(/.f32 (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (pow.f32 (neg.f32 (pow.f32 (PI.f32) #s(literal 2/3 binary32))) #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2/3 binary32))) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
66.0%
(/.f32 (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (exp.f32 (*.f32 (log.f32 (PI.f32)) #s(literal 2 binary32))) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
66.0%
(/.f32 (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) #s(literal 5174515/524288 binary32) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
66.0%
(/.f32 (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (*.f32 (exp.f32 (*.f32 (log.f32 x) #s(literal 2 binary32))) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (PI.f32) (PI.f32)) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
66.0%
(/.f32 (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (*.f32 (PI.f32) (*.f32 x x)) #s(literal -1/6 binary32)) (*.f32 (PI.f32) (PI.f32)) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
65.9%
(/.f32 (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (log.f32 (exp.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)))) (*.f32 (PI.f32) (PI.f32)) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
66.0%
(/.f32 (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (+.f32 (*.f32 (*.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) (PI.f32)) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
66.0%
(/.f32 (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (+.f32 #s(literal 1 binary32) (/.f32 (*.f32 (*.f32 (*.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) (PI.f32)) x) (*.f32 (PI.f32) x))) (*.f32 (PI.f32) x))) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
66.0%
(/.f32 (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (*.f32 (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32) #s(literal 1 binary32)) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
65.9%
(/.f32 (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (*.f32 (+.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (*.f32 (*.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) (PI.f32)))) (*.f32 (*.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) (PI.f32))) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
64.8%
(/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (*.f32 tau (PI.f32))) (PI.f32))
64.8%
(/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) (*.f32 tau (PI.f32)))
79.2%
(/.f32 (/.f32 #s(approx (* (sin (* x (PI))) (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau))) (*.f32 x (+.f32 (PI.f32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32))) (*.f32 #s(literal -1/6 binary32) (pow.f32 (PI.f32) #s(literal 3 binary32)))))))) (PI.f32)) x)
96.8%
(/.f32 (/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x)) x) (sin.f32 (*.f32 (PI.f32) x))))) (*.f32 tau (*.f32 (PI.f32) x)))
65.8%
(/.f32 (/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))))) x)
97.4%
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 (neg.f32 x) tau) (PI.f32))) (*.f32 (PI.f32) x)) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x)) (*.f32 (neg.f32 tau) (PI.f32)))
97.1%
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x)) (*.f32 (PI.f32) x)) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x))) tau)
96.8%
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau))
96.8%
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) x)) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
97.6%
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (*.f32 tau (*.f32 (PI.f32) x)) x)) (sin.f32 (*.f32 (PI.f32) x))) (PI.f32))
98.0%
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (PI.f32) x)) (sin.f32 (*.f32 (PI.f32) x))) (*.f32 tau (*.f32 (PI.f32) x)))
65.9%
(/.f32 (*.f32 (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (PI.f32)) #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) x))) x)
65.1%
(/.f32 (*.f32 (-.f32 (cos.f32 (*.f32 (PI.f32) (-.f32 (*.f32 tau x) x))) (cos.f32 (*.f32 (PI.f32) (fma.f32 tau x x)))) (/.f32 #s(literal 1 binary32) (*.f32 (*.f32 (*.f32 (PI.f32) x) x) (*.f32 tau (PI.f32))))) #s(literal 2 binary32))
65.9%
(/.f32 (*.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (/.f32 #s(literal 1 binary32) x)) (PI.f32))
97.1%
(/.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x))) (*.f32 (*.f32 (*.f32 x x) (*.f32 tau (PI.f32))) (PI.f32)))
97.0%
(/.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x))) (*.f32 (*.f32 (PI.f32) (*.f32 (*.f32 tau x) x)) (PI.f32)))
97.2%
(/.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x))) (*.f32 x (*.f32 (*.f32 tau (PI.f32)) (*.f32 x (PI.f32)))))
96.8%
(/.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x))) (*.f32 tau (*.f32 (*.f32 x x) (*.f32 (PI.f32) (PI.f32)))))
97.3%
(/.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) (*.f32 (*.f32 (*.f32 (PI.f32) x) x) (*.f32 tau (PI.f32))))
98.0%
(/.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) (*.f32 (*.f32 (PI.f32) x) (*.f32 tau (*.f32 (PI.f32) x))))
65.5%
(/.f32 (*.f32 #s(approx (/ (sin (* (* (PI) tau) x)) x) (*.f32 tau (PI.f32))) (sin.f32 (*.f32 (PI.f32) x))) (*.f32 x (*.f32 (*.f32 (PI.f32) tau) (PI.f32))))
71.9%
(/.f32 (*.f32 #s(approx (/ (sin (* (PI) x)) x) (PI.f32)) (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) x)) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
65.7%
(/.f32 (*.f32 #s(approx (/ (sin (* tau (* (PI) x))) (* (PI) x)) tau) (sin.f32 (*.f32 (PI.f32) x))) (*.f32 tau (*.f32 (PI.f32) x)))
79.5%
(/.f32 #s(approx (/ (* (sin (* x (PI))) (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau))) (PI)) (*.f32 x (+.f32 #s(literal 1 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32))) (*.f32 #s(literal -1/6 binary32) (pow.f32 (PI.f32) #s(literal 2 binary32)))))))) x)
65.3%
(/.f32 #s(approx (* (/ (sin (* (* (PI) tau) x)) x) (sin (* (PI) x))) (*.f32 tau (*.f32 (PI.f32) (sin.f32 (*.f32 x (PI.f32)))))) (*.f32 x (*.f32 (*.f32 (PI.f32) tau) (PI.f32))))
64.4%
(/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 (*.f32 tau (PI.f32)) #s(literal 8996905/4194304 binary32)) (cbrt.f32 (PI.f32)))) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
64.0%
(/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 tau (pow.f32 (cbrt.f32 (PI.f32)) #s(literal 6 binary32)))) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
64.3%
(/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 tau #s(literal 5174515/524288 binary32))) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
96.9%
(/.f32 #s(approx (* (sin (* (PI) x)) (sin (* (* (PI) tau) x))) (*.f32 (sin.f32 (*.f32 tau (*.f32 x (PI.f32)))) (sin.f32 (*.f32 x (PI.f32))))) (*.f32 (*.f32 (*.f32 (*.f32 (PI.f32) tau) x) x) (PI.f32)))
66.1%
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 (PI.f32) x) (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)))))
64.8%
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 tau (PI.f32)) (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32))))
64.7%
(/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) tau)))
65.6%
(/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (/.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) x)))
66.0%
(/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) x)))
64.8%
(/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) x)))
64.8%
(/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (*.f32 tau (PI.f32)))))
65.8%
(/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (*.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (/.f32 #s(literal 1 binary32) x))))
64.8%
(/.f32 #s(literal 1 binary32) (/.f32 x (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32))))
65.9%
(/.f32 #s(literal 1 binary32) (/.f32 x (*.f32 (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (PI.f32)) #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) x)))))
64.6%
(/.f32 #s(literal 1 binary32) (/.f32 tau (/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) (PI.f32))))
77.9%
(*.f32 (/.f32 (sin.f32 (fma.f32 (fma.f32 tau x #s(literal 1 binary32)) (PI.f32) (PI.f32))) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
79.8%
(*.f32 (/.f32 (sin.f32 (fma.f32 (*.f32 tau x) (neg.f32 (PI.f32)) (PI.f32))) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
97.9%
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (PI.f32)))
77.0%
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (fma.f32 (neg.f32 x) (PI.f32) (PI.f32))) (*.f32 x (PI.f32))))
77.0%
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (-.f32 (PI.f32) (*.f32 (PI.f32) x))) (*.f32 x (PI.f32))))
74.7%
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (+.f32 (fma.f32 (PI.f32) x (PI.f32)) (PI.f32))) (*.f32 x (PI.f32))))
71.7%
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (+.f32 (+.f32 (-.f32 (PI.f32) (*.f32 (PI.f32) x)) (PI.f32)) (PI.f32))) (*.f32 x (PI.f32))))
72.0%
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 #s(approx (/ (sin (* (PI) x)) x) (PI.f32)) (PI.f32)))
86.0%
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) #s(approx (/ (/ (sin (* (PI) x)) x) (PI)) (+.f32 #s(literal 1 binary32) (*.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32)))))))
97.7%
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 tau (PI.f32)) (log.f32 (exp.f32 x)))) (*.f32 (*.f32 tau (PI.f32)) (log.f32 (exp.f32 x)))) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
97.3%
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 tau (PI.f32)) x)) (*.f32 (*.f32 (*.f32 (*.f32 tau (PI.f32)) x) x) (PI.f32))) (sin.f32 (*.f32 x (PI.f32))))
98.1%
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 tau x) (PI.f32))) (*.f32 (*.f32 tau x) (PI.f32))) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
86.0%
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 tau x) (PI.f32))) (*.f32 (*.f32 tau x) (PI.f32))) #s(approx (/ (sin (* x (PI))) (* x (PI))) (+.f32 #s(literal 1 binary32) (*.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32)))))))
97.3%
(*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (*.f32 (*.f32 (PI.f32) x) x) (*.f32 tau (PI.f32)))) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))))
97.3%
(*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (*.f32 (*.f32 (PI.f32) x) x) (*.f32 tau (PI.f32)))) (sin.f32 (*.f32 (PI.f32) x)))
81.3%
(*.f32 (/.f32 (sin.f32 (neg.f32 (fma.f32 (*.f32 tau (PI.f32)) x (PI.f32)))) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
78.0%
(*.f32 (/.f32 (cos.f32 (fma.f32 (fma.f32 tau x #s(literal 1 binary32)) (PI.f32) (*.f32 (PI.f32) #s(literal 1/2 binary32)))) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
82.1%
(*.f32 (/.f32 (cos.f32 (fma.f32 (*.f32 (neg.f32 tau) (PI.f32)) x (*.f32 (PI.f32) #s(literal 1/2 binary32)))) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
65.6%
(*.f32 (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (PI.f32)) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x))
66.0%
(*.f32 (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (PI.f32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (PI.f32) (PI.f32)) (PI.f32)) x)) x))
64.8%
(*.f32 (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (PI.f32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)) x)) x))
65.5%
(*.f32 (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) x) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (PI.f32)))
65.9%
(*.f32 (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) x) (/.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (PI.f32) (PI.f32)) (PI.f32)) x)) (PI.f32)))
64.7%
(*.f32 (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) x) (/.f32 #s(approx (sin (* x (PI))) (*.f32 #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)) x)) (PI.f32)))
64.8%
(*.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) (/.f32 #s(literal 1 binary32) (*.f32 tau (PI.f32))))
96.8%
(*.f32 (/.f32 #s(literal 1 binary32) (*.f32 (*.f32 (*.f32 tau (PI.f32)) (PI.f32)) x)) (*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) x) (sin.f32 (*.f32 (PI.f32) x))))
65.9%
(*.f32 (/.f32 #s(literal 1 binary32) x) (*.f32 (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (PI.f32)) #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) x))))
64.8%
(*.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (/.f32 #s(literal 1 binary32) (*.f32 (PI.f32) x)))
96.8%
(*.f32 (sin.f32 (*.f32 (PI.f32) x)) (/.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) x) (*.f32 (*.f32 (*.f32 tau (PI.f32)) (PI.f32)) x)))
66.0%
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (fma.f32 (*.f32 x (*.f32 (*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) (PI.f32)) x) x)) #s(literal -1/6 binary32) (*.f32 x (PI.f32)))) (*.f32 x (PI.f32))))
66.0%
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (fma.f32 (PI.f32) x (*.f32 (*.f32 x (*.f32 (*.f32 x x) #s(literal -1/6 binary32))) (*.f32 (*.f32 (PI.f32) (PI.f32)) (PI.f32))))) (*.f32 x (PI.f32))))
66.0%
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (-.f32 (*.f32 x (PI.f32)) (*.f32 (*.f32 (*.f32 #s(literal 1/6 binary32) (*.f32 (*.f32 (PI.f32) (PI.f32)) (PI.f32))) (*.f32 x x)) x))) (*.f32 x (PI.f32))))
66.1%
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 (+.f32 #s(literal 1 binary32) (/.f32 (*.f32 (*.f32 x (*.f32 (*.f32 x x) #s(literal -1/6 binary32))) (*.f32 (*.f32 (PI.f32) (PI.f32)) (PI.f32))) (*.f32 x (PI.f32)))) (*.f32 x (PI.f32)))) (*.f32 x (PI.f32))))
66.0%
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x (fma.f32 (*.f32 (*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) (PI.f32)) x) x) #s(literal -1/6 binary32) (PI.f32)))) (*.f32 x (PI.f32))))
66.0%
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (*.f32 (PI.f32) (PI.f32))) (PI.f32) (PI.f32)))) (*.f32 x (PI.f32))))
66.0%
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x (+.f32 (PI.f32) (*.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (*.f32 (PI.f32) (PI.f32))) (PI.f32))))) (*.f32 x (PI.f32))))
66.0%
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x (+.f32 (PI.f32) (*.f32 #s(literal -1/6 binary32) (*.f32 (*.f32 (*.f32 x x) (*.f32 (PI.f32) (PI.f32))) (PI.f32)))))) (*.f32 x (PI.f32))))
66.0%
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x (+.f32 (PI.f32) (*.f32 #s(literal -1/6 binary32) (*.f32 (*.f32 (*.f32 x x) (PI.f32)) (*.f32 (PI.f32) (PI.f32))))))) (*.f32 x (PI.f32))))
66.0%
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x (*.f32 (-.f32 #s(literal 1 binary32) (/.f32 (*.f32 (*.f32 #s(literal 1/6 binary32) (*.f32 (*.f32 (PI.f32) (PI.f32)) (PI.f32))) (*.f32 x x)) (PI.f32))) (PI.f32)))) (*.f32 x (PI.f32))))
66.0%
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x (*.f32 (+.f32 #s(literal 1 binary32) (/.f32 (*.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (PI.f32) (PI.f32))) (PI.f32))) (PI.f32)))) (*.f32 x (PI.f32))))
66.0%
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x (*.f32 (+.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (*.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (PI.f32) (PI.f32))))) (*.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (PI.f32) (PI.f32)))))) (*.f32 x (PI.f32))))
4.7%
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (*.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32))))))) (*.f32 x (PI.f32))))
64.9%
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)))) (*.f32 x (PI.f32))))
55.0%
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)))) (log.f32 (exp.f32 (*.f32 (PI.f32) x)))))
4.7%
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) #s(approx (* x (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3))))) (*.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 x #s(literal 3 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32)))))) (*.f32 x (PI.f32))))
65.9%
(*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) x)) (/.f32 (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (PI.f32)) x))
66.0%
(*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) x)) (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (*.f32 (PI.f32) x)))
65.9%
(*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) x)) (*.f32 (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (PI.f32)) (/.f32 #s(literal 1 binary32) x)))
79.8%
#s(approx (* (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (/ (/ (sin (* (PI) x)) x) (PI))) (+.f32 #s(literal 1 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32))) (*.f32 #s(literal -1/6 binary32) (pow.f32 (PI.f32) #s(literal 2 binary32)))))))
Compiler

Compiled 3 423 to 2 041 computations (40.4% saved)

regimes1.3s (27.1%)

Memory
44.8MiB live, 1 351.6MiB allocated; 287ms collecting garbage
Counts
20 → 1
21 → 1
23 → 1
24 → 1
25 → 1
28 → 1
45 → 1
60 → 1
84 → 1
88 → 1
92 → 1
93 → 1
95 → 1
100 → 1
111 → 1
151 → 1
Calls
Call 1
Inputs
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)))) (*.f32 x (PI.f32))))
(/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 tau #s(literal 5174515/524288 binary32))) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
(*.f32 (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) x) (/.f32 #s(approx (sin (* x (PI))) (*.f32 #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)) x)) (PI.f32)))
(*.f32 (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (PI.f32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)) x)) x))
(*.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (/.f32 #s(literal 1 binary32) (*.f32 (PI.f32) x)))
(/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) (*.f32 tau (PI.f32)))
(/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) (*.f32 tau (PI.f32)))
(/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (*.f32 tau (PI.f32))) (PI.f32))
(/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (*.f32 tau (PI.f32))) (PI.f32))
(/.f32 #s(literal 1 binary32) (/.f32 x (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32))))
(/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) x)))
(/.f32 (/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) tau) (PI.f32))
(/.f32 (/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) (PI.f32)) tau)
(*.f32 (/.f32 #s(literal 1 binary32) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))))
(*.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) (/.f32 #s(literal 1 binary32) (*.f32 tau (PI.f32))))
(*.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) (/.f32 #s(literal 1 binary32) (*.f32 tau (PI.f32))))
(/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (*.f32 tau (PI.f32)))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 tau (PI.f32)) (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32))))
(/.f32 #s(literal 1 binary32) (/.f32 tau (/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) (PI.f32))))
(/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) tau)))
Outputs
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)))) (*.f32 x (PI.f32))))
Call 2
Inputs
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)))) (*.f32 x (PI.f32))))
(/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 tau #s(literal 5174515/524288 binary32))) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
(*.f32 (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) x) (/.f32 #s(approx (sin (* x (PI))) (*.f32 #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)) x)) (PI.f32)))
(*.f32 (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (PI.f32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)) x)) x))
(*.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (/.f32 #s(literal 1 binary32) (*.f32 (PI.f32) x)))
(/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) (*.f32 tau (PI.f32)))
(/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) (*.f32 tau (PI.f32)))
(/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (*.f32 tau (PI.f32))) (PI.f32))
(/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (*.f32 tau (PI.f32))) (PI.f32))
(/.f32 #s(literal 1 binary32) (/.f32 x (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32))))
(/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) x)))
(/.f32 (/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) tau) (PI.f32))
(/.f32 (/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) (PI.f32)) tau)
(*.f32 (/.f32 #s(literal 1 binary32) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))))
(*.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) (/.f32 #s(literal 1 binary32) (*.f32 tau (PI.f32))))
(*.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) (/.f32 #s(literal 1 binary32) (*.f32 tau (PI.f32))))
(/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (*.f32 tau (PI.f32)))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 tau (PI.f32)) (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32))))
(/.f32 #s(literal 1 binary32) (/.f32 tau (/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) (PI.f32))))
(/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) tau)))
(/.f32 (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) #s(literal 5174515/524288 binary32) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
Outputs
(/.f32 (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) #s(literal 5174515/524288 binary32) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
Call 3
Inputs
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)))) (*.f32 x (PI.f32))))
(/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 tau #s(literal 5174515/524288 binary32))) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
(*.f32 (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) x) (/.f32 #s(approx (sin (* x (PI))) (*.f32 #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)) x)) (PI.f32)))
(*.f32 (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (PI.f32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)) x)) x))
(*.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (/.f32 #s(literal 1 binary32) (*.f32 (PI.f32) x)))
(/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) (*.f32 tau (PI.f32)))
(/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) (*.f32 tau (PI.f32)))
(/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (*.f32 tau (PI.f32))) (PI.f32))
(/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (*.f32 tau (PI.f32))) (PI.f32))
(/.f32 #s(literal 1 binary32) (/.f32 x (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32))))
(/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) x)))
(/.f32 (/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) tau) (PI.f32))
(/.f32 (/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) (PI.f32)) tau)
(*.f32 (/.f32 #s(literal 1 binary32) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))))
(*.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) (/.f32 #s(literal 1 binary32) (*.f32 tau (PI.f32))))
(*.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) (/.f32 #s(literal 1 binary32) (*.f32 tau (PI.f32))))
(/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (*.f32 tau (PI.f32)))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 tau (PI.f32)) (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32))))
(/.f32 #s(literal 1 binary32) (/.f32 tau (/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) (PI.f32))))
(/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) tau)))
(/.f32 (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) #s(literal 5174515/524288 binary32) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
(*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) x)) (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (*.f32 (PI.f32) x)))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)))) (log.f32 (exp.f32 (*.f32 (PI.f32) x)))))
Outputs
(*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) x)) (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (*.f32 (PI.f32) x)))
Call 4
Inputs
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)))) (*.f32 x (PI.f32))))
(/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 tau #s(literal 5174515/524288 binary32))) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
(*.f32 (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) x) (/.f32 #s(approx (sin (* x (PI))) (*.f32 #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)) x)) (PI.f32)))
(*.f32 (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (PI.f32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)) x)) x))
(*.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (/.f32 #s(literal 1 binary32) (*.f32 (PI.f32) x)))
(/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) (*.f32 tau (PI.f32)))
(/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) (*.f32 tau (PI.f32)))
(/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (*.f32 tau (PI.f32))) (PI.f32))
(/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (*.f32 tau (PI.f32))) (PI.f32))
(/.f32 #s(literal 1 binary32) (/.f32 x (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32))))
(/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) x)))
(/.f32 (/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) tau) (PI.f32))
(/.f32 (/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) (PI.f32)) tau)
(*.f32 (/.f32 #s(literal 1 binary32) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))))
(*.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) (/.f32 #s(literal 1 binary32) (*.f32 tau (PI.f32))))
(*.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) (/.f32 #s(literal 1 binary32) (*.f32 tau (PI.f32))))
(/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (*.f32 tau (PI.f32)))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 tau (PI.f32)) (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32))))
(/.f32 #s(literal 1 binary32) (/.f32 tau (/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) (PI.f32))))
(/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) tau)))
(/.f32 (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) #s(literal 5174515/524288 binary32) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
(*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) x)) (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (*.f32 (PI.f32) x)))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)))) (log.f32 (exp.f32 (*.f32 (PI.f32) x)))))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x (fma.f32 (*.f32 x x) (*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) (PI.f32)) #s(literal -1/6 binary32)) (PI.f32)))) (*.f32 x (PI.f32))))
Outputs
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x (fma.f32 (*.f32 x x) (*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) (PI.f32)) #s(literal -1/6 binary32)) (PI.f32)))) (*.f32 x (PI.f32))))
Call 5
Inputs
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)))) (*.f32 x (PI.f32))))
(/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 tau #s(literal 5174515/524288 binary32))) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
(*.f32 (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) x) (/.f32 #s(approx (sin (* x (PI))) (*.f32 #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)) x)) (PI.f32)))
(*.f32 (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (PI.f32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)) x)) x))
(*.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (/.f32 #s(literal 1 binary32) (*.f32 (PI.f32) x)))
(/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) (*.f32 tau (PI.f32)))
(/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) (*.f32 tau (PI.f32)))
(/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (*.f32 tau (PI.f32))) (PI.f32))
(/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (*.f32 tau (PI.f32))) (PI.f32))
(/.f32 #s(literal 1 binary32) (/.f32 x (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32))))
(/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) x)))
(/.f32 (/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) tau) (PI.f32))
(/.f32 (/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) (PI.f32)) tau)
(*.f32 (/.f32 #s(literal 1 binary32) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))))
(*.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) (/.f32 #s(literal 1 binary32) (*.f32 tau (PI.f32))))
(*.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) (/.f32 #s(literal 1 binary32) (*.f32 tau (PI.f32))))
(/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (*.f32 tau (PI.f32)))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 tau (PI.f32)) (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32))))
(/.f32 #s(literal 1 binary32) (/.f32 tau (/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) (PI.f32))))
(/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) tau)))
(/.f32 (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) #s(literal 5174515/524288 binary32) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
(*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) x)) (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (*.f32 (PI.f32) x)))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)))) (log.f32 (exp.f32 (*.f32 (PI.f32) x)))))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x (fma.f32 (*.f32 x x) (*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) (PI.f32)) #s(literal -1/6 binary32)) (PI.f32)))) (*.f32 x (PI.f32))))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (*.f32 (PI.f32) (PI.f32))) (PI.f32) (PI.f32)))) (*.f32 x (PI.f32))))
Outputs
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (*.f32 (PI.f32) (PI.f32))) (PI.f32) (PI.f32)))) (*.f32 x (PI.f32))))
Call 6
Inputs
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)))) (*.f32 x (PI.f32))))
(/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 tau #s(literal 5174515/524288 binary32))) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
(*.f32 (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) x) (/.f32 #s(approx (sin (* x (PI))) (*.f32 #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)) x)) (PI.f32)))
(*.f32 (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (PI.f32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)) x)) x))
(*.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (/.f32 #s(literal 1 binary32) (*.f32 (PI.f32) x)))
(/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) (*.f32 tau (PI.f32)))
(/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) (*.f32 tau (PI.f32)))
(/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (*.f32 tau (PI.f32))) (PI.f32))
(/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (*.f32 tau (PI.f32))) (PI.f32))
(/.f32 #s(literal 1 binary32) (/.f32 x (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32))))
(/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) x)))
(/.f32 (/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) tau) (PI.f32))
(/.f32 (/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) (PI.f32)) tau)
(*.f32 (/.f32 #s(literal 1 binary32) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))))
(*.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) (/.f32 #s(literal 1 binary32) (*.f32 tau (PI.f32))))
(*.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) (/.f32 #s(literal 1 binary32) (*.f32 tau (PI.f32))))
(/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (*.f32 tau (PI.f32)))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 tau (PI.f32)) (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32))))
(/.f32 #s(literal 1 binary32) (/.f32 tau (/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) (PI.f32))))
(/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) tau)))
(/.f32 (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) #s(literal 5174515/524288 binary32) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
(*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) x)) (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (*.f32 (PI.f32) x)))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)))) (log.f32 (exp.f32 (*.f32 (PI.f32) x)))))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x (fma.f32 (*.f32 x x) (*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) (PI.f32)) #s(literal -1/6 binary32)) (PI.f32)))) (*.f32 x (PI.f32))))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (*.f32 (PI.f32) (PI.f32))) (PI.f32) (PI.f32)))) (*.f32 x (PI.f32))))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x (fma.f32 (*.f32 (*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) (PI.f32)) x) x) #s(literal -1/6 binary32) (PI.f32)))) (*.f32 x (PI.f32))))
(/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 tau (pow.f32 (PI.f32) #s(literal 2 binary32)))) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
(/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (PI.f32) (PI.f32)) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (*.f32 x (PI.f32)))
Outputs
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x (fma.f32 (*.f32 (*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) (PI.f32)) x) x) #s(literal -1/6 binary32) (PI.f32)))) (*.f32 x (PI.f32))))
Call 7
Inputs
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)))) (*.f32 x (PI.f32))))
(/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 tau #s(literal 5174515/524288 binary32))) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
(*.f32 (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) x) (/.f32 #s(approx (sin (* x (PI))) (*.f32 #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)) x)) (PI.f32)))
(*.f32 (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (PI.f32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)) x)) x))
(*.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (/.f32 #s(literal 1 binary32) (*.f32 (PI.f32) x)))
(/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) (*.f32 tau (PI.f32)))
(/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) (*.f32 tau (PI.f32)))
(/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (*.f32 tau (PI.f32))) (PI.f32))
(/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (*.f32 tau (PI.f32))) (PI.f32))
(/.f32 #s(literal 1 binary32) (/.f32 x (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32))))
(/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) x)))
(/.f32 (/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) tau) (PI.f32))
(/.f32 (/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) (PI.f32)) tau)
(*.f32 (/.f32 #s(literal 1 binary32) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))))
(*.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) (/.f32 #s(literal 1 binary32) (*.f32 tau (PI.f32))))
(*.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) (/.f32 #s(literal 1 binary32) (*.f32 tau (PI.f32))))
(/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (*.f32 tau (PI.f32)))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 tau (PI.f32)) (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32))))
(/.f32 #s(literal 1 binary32) (/.f32 tau (/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) (PI.f32))))
(/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) tau)))
(/.f32 (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) #s(literal 5174515/524288 binary32) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
(*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) x)) (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (*.f32 (PI.f32) x)))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)))) (log.f32 (exp.f32 (*.f32 (PI.f32) x)))))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x (fma.f32 (*.f32 x x) (*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) (PI.f32)) #s(literal -1/6 binary32)) (PI.f32)))) (*.f32 x (PI.f32))))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (*.f32 (PI.f32) (PI.f32))) (PI.f32) (PI.f32)))) (*.f32 x (PI.f32))))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x (fma.f32 (*.f32 (*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) (PI.f32)) x) x) #s(literal -1/6 binary32) (PI.f32)))) (*.f32 x (PI.f32))))
(/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 tau (pow.f32 (PI.f32) #s(literal 2 binary32)))) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
(/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (PI.f32) (PI.f32)) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (*.f32 x (PI.f32)))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x (+.f32 (PI.f32) (*.f32 #s(literal -1/6 binary32) (*.f32 (*.f32 (*.f32 x x) (PI.f32)) (*.f32 (PI.f32) (PI.f32))))))) (*.f32 x (PI.f32))))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x (+.f32 (PI.f32) (*.f32 #s(literal -1/6 binary32) (*.f32 (*.f32 (*.f32 x x) (*.f32 (PI.f32) (PI.f32))) (PI.f32)))))) (*.f32 x (PI.f32))))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x (+.f32 (PI.f32) (*.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (*.f32 (PI.f32) (PI.f32))) (PI.f32))))) (*.f32 x (PI.f32))))
(*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) x)) (/.f32 (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (PI.f32)) x))
(*.f32 (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) x) (/.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (PI.f32) (PI.f32)) (PI.f32)) x)) (PI.f32)))
(*.f32 (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (PI.f32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (PI.f32) (PI.f32)) (PI.f32)) x)) x))
(/.f32 (*.f32 (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (PI.f32)) #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) x))) x)
(/.f32 (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (*.f32 (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32) #s(literal 1 binary32)) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
(/.f32 (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (*.f32 (PI.f32) (*.f32 x x)) #s(literal -1/6 binary32)) (*.f32 (PI.f32) (PI.f32)) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
(/.f32 (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (PI.f32) (PI.f32)) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
(/.f32 (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (+.f32 (*.f32 (*.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) (PI.f32)) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (fma.f32 (PI.f32) x (*.f32 (*.f32 x (*.f32 (*.f32 x x) #s(literal -1/6 binary32))) (*.f32 (*.f32 (PI.f32) (PI.f32)) (PI.f32))))) (*.f32 x (PI.f32))))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (fma.f32 (*.f32 x (*.f32 (*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) (PI.f32)) x) x)) #s(literal -1/6 binary32) (*.f32 x (PI.f32)))) (*.f32 x (PI.f32))))
(*.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (PI.f32) (PI.f32)) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (/.f32 #s(literal 1 binary32) (*.f32 x (PI.f32))))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (-.f32 (*.f32 x (PI.f32)) (*.f32 (*.f32 (*.f32 #s(literal 1/6 binary32) (*.f32 (*.f32 (PI.f32) (PI.f32)) (PI.f32))) (*.f32 x x)) x))) (*.f32 x (PI.f32))))
(*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) x)) (*.f32 (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (PI.f32)) (/.f32 #s(literal 1 binary32) x)))
(*.f32 (/.f32 #s(literal 1 binary32) x) (*.f32 (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (PI.f32)) #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) x))))
Outputs
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x (+.f32 (PI.f32) (*.f32 #s(literal -1/6 binary32) (*.f32 (*.f32 (*.f32 x x) (PI.f32)) (*.f32 (PI.f32) (PI.f32))))))) (*.f32 x (PI.f32))))
Call 8
Inputs
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)))) (*.f32 x (PI.f32))))
(/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 tau #s(literal 5174515/524288 binary32))) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
(*.f32 (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) x) (/.f32 #s(approx (sin (* x (PI))) (*.f32 #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)) x)) (PI.f32)))
(*.f32 (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (PI.f32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)) x)) x))
(*.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (/.f32 #s(literal 1 binary32) (*.f32 (PI.f32) x)))
(/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) (*.f32 tau (PI.f32)))
(/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) (*.f32 tau (PI.f32)))
(/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (*.f32 tau (PI.f32))) (PI.f32))
(/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (*.f32 tau (PI.f32))) (PI.f32))
(/.f32 #s(literal 1 binary32) (/.f32 x (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32))))
(/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) x)))
(/.f32 (/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) tau) (PI.f32))
(/.f32 (/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) (PI.f32)) tau)
(*.f32 (/.f32 #s(literal 1 binary32) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))))
(*.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) (/.f32 #s(literal 1 binary32) (*.f32 tau (PI.f32))))
(*.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) (/.f32 #s(literal 1 binary32) (*.f32 tau (PI.f32))))
(/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (*.f32 tau (PI.f32)))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 tau (PI.f32)) (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32))))
(/.f32 #s(literal 1 binary32) (/.f32 tau (/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) (PI.f32))))
(/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) tau)))
(/.f32 (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) #s(literal 5174515/524288 binary32) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
(*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) x)) (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (*.f32 (PI.f32) x)))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)))) (log.f32 (exp.f32 (*.f32 (PI.f32) x)))))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x (fma.f32 (*.f32 x x) (*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) (PI.f32)) #s(literal -1/6 binary32)) (PI.f32)))) (*.f32 x (PI.f32))))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (*.f32 (PI.f32) (PI.f32))) (PI.f32) (PI.f32)))) (*.f32 x (PI.f32))))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x (fma.f32 (*.f32 (*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) (PI.f32)) x) x) #s(literal -1/6 binary32) (PI.f32)))) (*.f32 x (PI.f32))))
(/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 tau (pow.f32 (PI.f32) #s(literal 2 binary32)))) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
(/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (PI.f32) (PI.f32)) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (*.f32 x (PI.f32)))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x (+.f32 (PI.f32) (*.f32 #s(literal -1/6 binary32) (*.f32 (*.f32 (*.f32 x x) (PI.f32)) (*.f32 (PI.f32) (PI.f32))))))) (*.f32 x (PI.f32))))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x (+.f32 (PI.f32) (*.f32 #s(literal -1/6 binary32) (*.f32 (*.f32 (*.f32 x x) (*.f32 (PI.f32) (PI.f32))) (PI.f32)))))) (*.f32 x (PI.f32))))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x (+.f32 (PI.f32) (*.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (*.f32 (PI.f32) (PI.f32))) (PI.f32))))) (*.f32 x (PI.f32))))
(*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) x)) (/.f32 (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (PI.f32)) x))
(*.f32 (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) x) (/.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (PI.f32) (PI.f32)) (PI.f32)) x)) (PI.f32)))
(*.f32 (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (PI.f32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (PI.f32) (PI.f32)) (PI.f32)) x)) x))
(/.f32 (*.f32 (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (PI.f32)) #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) x))) x)
(/.f32 (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (*.f32 (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32) #s(literal 1 binary32)) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
(/.f32 (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (*.f32 (PI.f32) (*.f32 x x)) #s(literal -1/6 binary32)) (*.f32 (PI.f32) (PI.f32)) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
(/.f32 (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (PI.f32) (PI.f32)) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
(/.f32 (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (+.f32 (*.f32 (*.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) (PI.f32)) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (fma.f32 (PI.f32) x (*.f32 (*.f32 x (*.f32 (*.f32 x x) #s(literal -1/6 binary32))) (*.f32 (*.f32 (PI.f32) (PI.f32)) (PI.f32))))) (*.f32 x (PI.f32))))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (fma.f32 (*.f32 x (*.f32 (*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) (PI.f32)) x) x)) #s(literal -1/6 binary32) (*.f32 x (PI.f32)))) (*.f32 x (PI.f32))))
(*.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (PI.f32) (PI.f32)) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (/.f32 #s(literal 1 binary32) (*.f32 x (PI.f32))))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (-.f32 (*.f32 x (PI.f32)) (*.f32 (*.f32 (*.f32 #s(literal 1/6 binary32) (*.f32 (*.f32 (PI.f32) (PI.f32)) (PI.f32))) (*.f32 x x)) x))) (*.f32 x (PI.f32))))
(*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) x)) (*.f32 (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (PI.f32)) (/.f32 #s(literal 1 binary32) x)))
(*.f32 (/.f32 #s(literal 1 binary32) x) (*.f32 (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (PI.f32)) #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) x))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 x (PI.f32)) (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (PI.f32) (PI.f32)) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 (PI.f32) x) (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)))))
(/.f32 (*.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (/.f32 #s(literal 1 binary32) x)) (PI.f32))
(/.f32 (/.f32 (*.f32 #s(approx (sin (* x (PI))) (fma.f32 (PI.f32) x (*.f32 (*.f32 (*.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) (PI.f32)) x))) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
(/.f32 (/.f32 (*.f32 #s(approx (sin (* x (PI))) (fma.f32 (*.f32 (*.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) (PI.f32)) x (*.f32 (PI.f32) x))) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
(/.f32 (/.f32 (*.f32 #s(approx (sin (* x (PI))) (+.f32 (*.f32 (*.f32 (*.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) (PI.f32)) x) (*.f32 (PI.f32) x))) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (/.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (PI.f32) (PI.f32)) (PI.f32)) x)) x))))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (-.f32 (*.f32 x (PI.f32)) (*.f32 (neg.f32 x) (*.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (PI.f32) (PI.f32)))))) (*.f32 x (PI.f32))))
(/.f32 #s(literal 1 binary32) (/.f32 x (*.f32 (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (PI.f32)) #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) x)))))
(/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) x)))
(/.f32 (/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))))) x)
(/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 (*.f32 tau (PI.f32)) #s(literal 8996905/4194304 binary32)) (cbrt.f32 (PI.f32)))) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x (*.f32 (+.f32 #s(literal 1 binary32) (/.f32 (*.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (PI.f32) (PI.f32))) (PI.f32))) (PI.f32)))) (*.f32 x (PI.f32))))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x (*.f32 (-.f32 #s(literal 1 binary32) (/.f32 (*.f32 (*.f32 #s(literal 1/6 binary32) (*.f32 (*.f32 (PI.f32) (PI.f32)) (PI.f32))) (*.f32 x x)) (PI.f32))) (PI.f32)))) (*.f32 x (PI.f32))))
(/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (*.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (/.f32 #s(literal 1 binary32) x))))
Outputs
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 x (PI.f32)) (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (PI.f32) (PI.f32)) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)))))
Call 9
Inputs
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)))) (*.f32 x (PI.f32))))
(/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 tau #s(literal 5174515/524288 binary32))) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
(*.f32 (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) x) (/.f32 #s(approx (sin (* x (PI))) (*.f32 #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)) x)) (PI.f32)))
(*.f32 (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (PI.f32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)) x)) x))
(*.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (/.f32 #s(literal 1 binary32) (*.f32 (PI.f32) x)))
(/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) (*.f32 tau (PI.f32)))
(/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) (*.f32 tau (PI.f32)))
(/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (*.f32 tau (PI.f32))) (PI.f32))
(/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (*.f32 tau (PI.f32))) (PI.f32))
(/.f32 #s(literal 1 binary32) (/.f32 x (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32))))
(/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) x)))
(/.f32 (/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) tau) (PI.f32))
(/.f32 (/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) (PI.f32)) tau)
(*.f32 (/.f32 #s(literal 1 binary32) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))))
(*.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) (/.f32 #s(literal 1 binary32) (*.f32 tau (PI.f32))))
(*.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) (/.f32 #s(literal 1 binary32) (*.f32 tau (PI.f32))))
(/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (*.f32 tau (PI.f32)))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 tau (PI.f32)) (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32))))
(/.f32 #s(literal 1 binary32) (/.f32 tau (/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) (PI.f32))))
(/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) tau)))
(/.f32 (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) #s(literal 5174515/524288 binary32) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
(*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) x)) (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (*.f32 (PI.f32) x)))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)))) (log.f32 (exp.f32 (*.f32 (PI.f32) x)))))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x (fma.f32 (*.f32 x x) (*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) (PI.f32)) #s(literal -1/6 binary32)) (PI.f32)))) (*.f32 x (PI.f32))))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (*.f32 (PI.f32) (PI.f32))) (PI.f32) (PI.f32)))) (*.f32 x (PI.f32))))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x (fma.f32 (*.f32 (*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) (PI.f32)) x) x) #s(literal -1/6 binary32) (PI.f32)))) (*.f32 x (PI.f32))))
(/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 tau (pow.f32 (PI.f32) #s(literal 2 binary32)))) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
(/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (PI.f32) (PI.f32)) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (*.f32 x (PI.f32)))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x (+.f32 (PI.f32) (*.f32 #s(literal -1/6 binary32) (*.f32 (*.f32 (*.f32 x x) (PI.f32)) (*.f32 (PI.f32) (PI.f32))))))) (*.f32 x (PI.f32))))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x (+.f32 (PI.f32) (*.f32 #s(literal -1/6 binary32) (*.f32 (*.f32 (*.f32 x x) (*.f32 (PI.f32) (PI.f32))) (PI.f32)))))) (*.f32 x (PI.f32))))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x (+.f32 (PI.f32) (*.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (*.f32 (PI.f32) (PI.f32))) (PI.f32))))) (*.f32 x (PI.f32))))
(*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) x)) (/.f32 (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (PI.f32)) x))
(*.f32 (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) x) (/.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (PI.f32) (PI.f32)) (PI.f32)) x)) (PI.f32)))
(*.f32 (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (PI.f32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (PI.f32) (PI.f32)) (PI.f32)) x)) x))
(/.f32 (*.f32 (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (PI.f32)) #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) x))) x)
(/.f32 (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (*.f32 (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32) #s(literal 1 binary32)) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
(/.f32 (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (*.f32 (PI.f32) (*.f32 x x)) #s(literal -1/6 binary32)) (*.f32 (PI.f32) (PI.f32)) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
(/.f32 (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (PI.f32) (PI.f32)) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
(/.f32 (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (+.f32 (*.f32 (*.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) (PI.f32)) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (fma.f32 (PI.f32) x (*.f32 (*.f32 x (*.f32 (*.f32 x x) #s(literal -1/6 binary32))) (*.f32 (*.f32 (PI.f32) (PI.f32)) (PI.f32))))) (*.f32 x (PI.f32))))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (fma.f32 (*.f32 x (*.f32 (*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) (PI.f32)) x) x)) #s(literal -1/6 binary32) (*.f32 x (PI.f32)))) (*.f32 x (PI.f32))))
(*.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (PI.f32) (PI.f32)) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (/.f32 #s(literal 1 binary32) (*.f32 x (PI.f32))))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (-.f32 (*.f32 x (PI.f32)) (*.f32 (*.f32 (*.f32 #s(literal 1/6 binary32) (*.f32 (*.f32 (PI.f32) (PI.f32)) (PI.f32))) (*.f32 x x)) x))) (*.f32 x (PI.f32))))
(*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) x)) (*.f32 (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (PI.f32)) (/.f32 #s(literal 1 binary32) x)))
(*.f32 (/.f32 #s(literal 1 binary32) x) (*.f32 (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (PI.f32)) #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) x))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 x (PI.f32)) (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (PI.f32) (PI.f32)) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 (PI.f32) x) (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)))))
(/.f32 (*.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (/.f32 #s(literal 1 binary32) x)) (PI.f32))
(/.f32 (/.f32 (*.f32 #s(approx (sin (* x (PI))) (fma.f32 (PI.f32) x (*.f32 (*.f32 (*.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) (PI.f32)) x))) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
(/.f32 (/.f32 (*.f32 #s(approx (sin (* x (PI))) (fma.f32 (*.f32 (*.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) (PI.f32)) x (*.f32 (PI.f32) x))) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
(/.f32 (/.f32 (*.f32 #s(approx (sin (* x (PI))) (+.f32 (*.f32 (*.f32 (*.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) (PI.f32)) x) (*.f32 (PI.f32) x))) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (/.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (PI.f32) (PI.f32)) (PI.f32)) x)) x))))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (-.f32 (*.f32 x (PI.f32)) (*.f32 (neg.f32 x) (*.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (PI.f32) (PI.f32)))))) (*.f32 x (PI.f32))))
(/.f32 #s(literal 1 binary32) (/.f32 x (*.f32 (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (PI.f32)) #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) x)))))
(/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) x)))
(/.f32 (/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))))) x)
(/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 (*.f32 tau (PI.f32)) #s(literal 8996905/4194304 binary32)) (cbrt.f32 (PI.f32)))) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x (*.f32 (+.f32 #s(literal 1 binary32) (/.f32 (*.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (PI.f32) (PI.f32))) (PI.f32))) (PI.f32)))) (*.f32 x (PI.f32))))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x (*.f32 (-.f32 #s(literal 1 binary32) (/.f32 (*.f32 (*.f32 #s(literal 1/6 binary32) (*.f32 (*.f32 (PI.f32) (PI.f32)) (PI.f32))) (*.f32 x x)) (PI.f32))) (PI.f32)))) (*.f32 x (PI.f32))))
(/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (*.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (/.f32 #s(literal 1 binary32) x))))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 (+.f32 #s(literal 1 binary32) (/.f32 (*.f32 (*.f32 x (*.f32 (*.f32 x x) #s(literal -1/6 binary32))) (*.f32 (*.f32 (PI.f32) (PI.f32)) (PI.f32))) (*.f32 x (PI.f32)))) (*.f32 x (PI.f32)))) (*.f32 x (PI.f32))))
(/.f32 (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (+.f32 #s(literal 1 binary32) (/.f32 (*.f32 (*.f32 (*.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) (PI.f32)) x) (*.f32 (PI.f32) x))) (*.f32 (PI.f32) x))) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) #s(approx (/ (sin (* x (PI))) (* x (PI))) (+.f32 #s(literal 1 binary32) (*.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32)))))))
(/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 tau (pow.f32 (cbrt.f32 (PI.f32)) #s(literal 6 binary32)))) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
(*.f32 (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) x) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (PI.f32)))
(*.f32 (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (PI.f32)) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x))
(/.f32 (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (log.f32 (exp.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)))) (*.f32 (PI.f32) (PI.f32)) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
(/.f32 (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (*.f32 (exp.f32 (*.f32 (log.f32 x) #s(literal 2 binary32))) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (PI.f32) (PI.f32)) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
(/.f32 (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (exp.f32 (*.f32 (log.f32 (PI.f32)) #s(literal 2 binary32))) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
(/.f32 (/.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) #s(approx (* x (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3))))) (*.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 x #s(literal 3 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32)))))) (*.f32 x (PI.f32))))
(*.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (/.f32 #s(literal 1 binary32) (*.f32 (PI.f32) x)))
(/.f32 (*.f32 #s(approx (/ (sin (* tau (* (PI) x))) (* (PI) x)) tau) (sin.f32 (*.f32 (PI.f32) x))) (*.f32 tau (*.f32 (PI.f32) x)))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 (PI.f32) x) (*.f32 (sin.f32 (*.f32 (PI.f32) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)))))
(/.f32 #s(literal 1 binary32) (/.f32 x (/.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32))))
(/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (/.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) x)))
(/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 (*.f32 tau (PI.f32)) (pow.f32 (PI.f32) #s(literal 2/3 binary32))) (cbrt.f32 (PI.f32)))) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x (*.f32 (+.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (*.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (PI.f32) (PI.f32))))) (*.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (PI.f32) (PI.f32)))))) (*.f32 x (PI.f32))))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (*.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32))))))) (*.f32 x (PI.f32))))
(/.f32 (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (*.f32 (+.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (*.f32 (*.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) (PI.f32)))) (*.f32 (*.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) (PI.f32))) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x (+.f32 (PI.f32) (*.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32))))))) (*.f32 x (PI.f32))))
(/.f32 #s(approx (* (/ (sin (* (* (PI) tau) x)) x) (sin (* (PI) x))) (*.f32 tau (*.f32 (PI.f32) (sin.f32 (*.f32 x (PI.f32)))))) (*.f32 x (*.f32 (*.f32 (PI.f32) tau) (PI.f32))))
(/.f32 (*.f32 #s(approx (/ (sin (* (* (PI) tau) x)) x) (*.f32 tau (PI.f32))) (sin.f32 (*.f32 (PI.f32) x))) (*.f32 x (*.f32 (*.f32 (PI.f32) tau) (PI.f32))))
Outputs
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 (+.f32 #s(literal 1 binary32) (/.f32 (*.f32 (*.f32 x (*.f32 (*.f32 x x) #s(literal -1/6 binary32))) (*.f32 (*.f32 (PI.f32) (PI.f32)) (PI.f32))) (*.f32 x (PI.f32)))) (*.f32 x (PI.f32)))) (*.f32 x (PI.f32))))
Call 10
Inputs
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)))) (*.f32 x (PI.f32))))
(/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 tau #s(literal 5174515/524288 binary32))) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
(*.f32 (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) x) (/.f32 #s(approx (sin (* x (PI))) (*.f32 #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)) x)) (PI.f32)))
(*.f32 (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (PI.f32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)) x)) x))
(*.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (/.f32 #s(literal 1 binary32) (*.f32 (PI.f32) x)))
(/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) (*.f32 tau (PI.f32)))
(/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) (*.f32 tau (PI.f32)))
(/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (*.f32 tau (PI.f32))) (PI.f32))
(/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (*.f32 tau (PI.f32))) (PI.f32))
(/.f32 #s(literal 1 binary32) (/.f32 x (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32))))
(/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) x)))
(/.f32 (/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) tau) (PI.f32))
(/.f32 (/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) (PI.f32)) tau)
(*.f32 (/.f32 #s(literal 1 binary32) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))))
(*.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) (/.f32 #s(literal 1 binary32) (*.f32 tau (PI.f32))))
(*.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) (/.f32 #s(literal 1 binary32) (*.f32 tau (PI.f32))))
(/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (*.f32 tau (PI.f32)))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 tau (PI.f32)) (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32))))
(/.f32 #s(literal 1 binary32) (/.f32 tau (/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) (PI.f32))))
(/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) tau)))
(/.f32 (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) #s(literal 5174515/524288 binary32) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
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(*.f32 #s(approx (* (sin (* (PI) x)) (sin (* (* (PI) tau) x))) (*.f32 tau (*.f32 x (*.f32 (PI.f32) (sin.f32 (*.f32 x (PI.f32))))))) (/.f32 #s(literal 1 binary32) (*.f32 (*.f32 (*.f32 (*.f32 (PI.f32) tau) x) x) (PI.f32))))
(/.f32 (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (pow.f32 (neg.f32 (pow.f32 (PI.f32) #s(literal 2/3 binary32))) #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2/3 binary32))) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
Outputs
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 #s(approx (/ (sin (* (PI) x)) x) (PI.f32)) (PI.f32)))
Call 11
Inputs
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)))) (*.f32 x (PI.f32))))
(/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 tau #s(literal 5174515/524288 binary32))) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
(*.f32 (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) x) (/.f32 #s(approx (sin (* x (PI))) (*.f32 #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)) x)) (PI.f32)))
(*.f32 (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (PI.f32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)) x)) x))
(*.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (/.f32 #s(literal 1 binary32) (*.f32 (PI.f32) x)))
(/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) (*.f32 tau (PI.f32)))
(/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) (*.f32 tau (PI.f32)))
(/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (*.f32 tau (PI.f32))) (PI.f32))
(/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (*.f32 tau (PI.f32))) (PI.f32))
(/.f32 #s(literal 1 binary32) (/.f32 x (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32))))
(/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) x)))
(/.f32 (/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) tau) (PI.f32))
(/.f32 (/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) (PI.f32)) tau)
(*.f32 (/.f32 #s(literal 1 binary32) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))))
(*.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) (/.f32 #s(literal 1 binary32) (*.f32 tau (PI.f32))))
(*.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) (/.f32 #s(literal 1 binary32) (*.f32 tau (PI.f32))))
(/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (*.f32 tau (PI.f32)))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 tau (PI.f32)) (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32))))
(/.f32 #s(literal 1 binary32) (/.f32 tau (/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) (PI.f32))))
(/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) tau)))
(/.f32 (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) #s(literal 5174515/524288 binary32) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
(*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) x)) (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (*.f32 (PI.f32) x)))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)))) (log.f32 (exp.f32 (*.f32 (PI.f32) x)))))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x (fma.f32 (*.f32 x x) (*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) (PI.f32)) #s(literal -1/6 binary32)) (PI.f32)))) (*.f32 x (PI.f32))))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (*.f32 (PI.f32) (PI.f32))) (PI.f32) (PI.f32)))) (*.f32 x (PI.f32))))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x (fma.f32 (*.f32 (*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) (PI.f32)) x) x) #s(literal -1/6 binary32) (PI.f32)))) (*.f32 x (PI.f32))))
(/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 tau (pow.f32 (PI.f32) #s(literal 2 binary32)))) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
(/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (PI.f32) (PI.f32)) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (*.f32 x (PI.f32)))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x (+.f32 (PI.f32) (*.f32 #s(literal -1/6 binary32) (*.f32 (*.f32 (*.f32 x x) (PI.f32)) (*.f32 (PI.f32) (PI.f32))))))) (*.f32 x (PI.f32))))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x (+.f32 (PI.f32) (*.f32 #s(literal -1/6 binary32) (*.f32 (*.f32 (*.f32 x x) (*.f32 (PI.f32) (PI.f32))) (PI.f32)))))) (*.f32 x (PI.f32))))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x (+.f32 (PI.f32) (*.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (*.f32 (PI.f32) (PI.f32))) (PI.f32))))) (*.f32 x (PI.f32))))
(*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) x)) (/.f32 (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (PI.f32)) x))
(*.f32 (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) x) (/.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (PI.f32) (PI.f32)) (PI.f32)) x)) (PI.f32)))
(*.f32 (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (PI.f32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (PI.f32) (PI.f32)) (PI.f32)) x)) x))
(/.f32 (*.f32 (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (PI.f32)) #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) x))) x)
(/.f32 (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (*.f32 (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32) #s(literal 1 binary32)) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
(/.f32 (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (*.f32 (PI.f32) (*.f32 x x)) #s(literal -1/6 binary32)) (*.f32 (PI.f32) (PI.f32)) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
(/.f32 (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (PI.f32) (PI.f32)) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
(/.f32 (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (+.f32 (*.f32 (*.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) (PI.f32)) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (fma.f32 (PI.f32) x (*.f32 (*.f32 x (*.f32 (*.f32 x x) #s(literal -1/6 binary32))) (*.f32 (*.f32 (PI.f32) (PI.f32)) (PI.f32))))) (*.f32 x (PI.f32))))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (fma.f32 (*.f32 x (*.f32 (*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) (PI.f32)) x) x)) #s(literal -1/6 binary32) (*.f32 x (PI.f32)))) (*.f32 x (PI.f32))))
(*.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (PI.f32) (PI.f32)) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (/.f32 #s(literal 1 binary32) (*.f32 x (PI.f32))))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (-.f32 (*.f32 x (PI.f32)) (*.f32 (*.f32 (*.f32 #s(literal 1/6 binary32) (*.f32 (*.f32 (PI.f32) (PI.f32)) (PI.f32))) (*.f32 x x)) x))) (*.f32 x (PI.f32))))
(*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) x)) (*.f32 (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (PI.f32)) (/.f32 #s(literal 1 binary32) x)))
(*.f32 (/.f32 #s(literal 1 binary32) x) (*.f32 (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (PI.f32)) #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) x))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 x (PI.f32)) (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (PI.f32) (PI.f32)) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 (PI.f32) x) (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)))))
(/.f32 (*.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (/.f32 #s(literal 1 binary32) x)) (PI.f32))
(/.f32 (/.f32 (*.f32 #s(approx (sin (* x (PI))) (fma.f32 (PI.f32) x (*.f32 (*.f32 (*.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) (PI.f32)) x))) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
(/.f32 (/.f32 (*.f32 #s(approx (sin (* x (PI))) (fma.f32 (*.f32 (*.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) (PI.f32)) x (*.f32 (PI.f32) x))) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
(/.f32 (/.f32 (*.f32 #s(approx (sin (* x (PI))) (+.f32 (*.f32 (*.f32 (*.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) (PI.f32)) x) (*.f32 (PI.f32) x))) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (/.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (PI.f32) (PI.f32)) (PI.f32)) x)) x))))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (-.f32 (*.f32 x (PI.f32)) (*.f32 (neg.f32 x) (*.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (PI.f32) (PI.f32)))))) (*.f32 x (PI.f32))))
(/.f32 #s(literal 1 binary32) (/.f32 x (*.f32 (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (PI.f32)) #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) x)))))
(/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) x)))
(/.f32 (/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))))) x)
(/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 (*.f32 tau (PI.f32)) #s(literal 8996905/4194304 binary32)) (cbrt.f32 (PI.f32)))) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x (*.f32 (+.f32 #s(literal 1 binary32) (/.f32 (*.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (PI.f32) (PI.f32))) (PI.f32))) (PI.f32)))) (*.f32 x (PI.f32))))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x (*.f32 (-.f32 #s(literal 1 binary32) (/.f32 (*.f32 (*.f32 #s(literal 1/6 binary32) (*.f32 (*.f32 (PI.f32) (PI.f32)) (PI.f32))) (*.f32 x x)) (PI.f32))) (PI.f32)))) (*.f32 x (PI.f32))))
(/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (*.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (/.f32 #s(literal 1 binary32) x))))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 (+.f32 #s(literal 1 binary32) (/.f32 (*.f32 (*.f32 x (*.f32 (*.f32 x x) #s(literal -1/6 binary32))) (*.f32 (*.f32 (PI.f32) (PI.f32)) (PI.f32))) (*.f32 x (PI.f32)))) (*.f32 x (PI.f32)))) (*.f32 x (PI.f32))))
(/.f32 (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (+.f32 #s(literal 1 binary32) (/.f32 (*.f32 (*.f32 (*.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) (PI.f32)) x) (*.f32 (PI.f32) x))) (*.f32 (PI.f32) x))) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) #s(approx (/ (sin (* x (PI))) (* x (PI))) (+.f32 #s(literal 1 binary32) (*.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32)))))))
(/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 tau (pow.f32 (cbrt.f32 (PI.f32)) #s(literal 6 binary32)))) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
(*.f32 (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) x) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (PI.f32)))
(*.f32 (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (PI.f32)) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x))
(/.f32 (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (log.f32 (exp.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)))) (*.f32 (PI.f32) (PI.f32)) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
(/.f32 (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (*.f32 (exp.f32 (*.f32 (log.f32 x) #s(literal 2 binary32))) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (PI.f32) (PI.f32)) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
(/.f32 (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (exp.f32 (*.f32 (log.f32 (PI.f32)) #s(literal 2 binary32))) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
(/.f32 (/.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) #s(approx (* x (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3))))) (*.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 x #s(literal 3 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32)))))) (*.f32 x (PI.f32))))
(*.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (/.f32 #s(literal 1 binary32) (*.f32 (PI.f32) x)))
(/.f32 (*.f32 #s(approx (/ (sin (* tau (* (PI) x))) (* (PI) x)) tau) (sin.f32 (*.f32 (PI.f32) x))) (*.f32 tau (*.f32 (PI.f32) x)))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 (PI.f32) x) (*.f32 (sin.f32 (*.f32 (PI.f32) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)))))
(/.f32 #s(literal 1 binary32) (/.f32 x (/.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32))))
(/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (/.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) x)))
(/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 (*.f32 tau (PI.f32)) (pow.f32 (PI.f32) #s(literal 2/3 binary32))) (cbrt.f32 (PI.f32)))) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x (*.f32 (+.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (*.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (PI.f32) (PI.f32))))) (*.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (PI.f32) (PI.f32)))))) (*.f32 x (PI.f32))))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (*.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32))))))) (*.f32 x (PI.f32))))
(/.f32 (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (*.f32 (+.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (*.f32 (*.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) (PI.f32)))) (*.f32 (*.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) (PI.f32))) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x (+.f32 (PI.f32) (*.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32))))))) (*.f32 x (PI.f32))))
(/.f32 #s(approx (* (/ (sin (* (* (PI) tau) x)) x) (sin (* (PI) x))) (*.f32 tau (*.f32 (PI.f32) (sin.f32 (*.f32 x (PI.f32)))))) (*.f32 x (*.f32 (*.f32 (PI.f32) tau) (PI.f32))))
(/.f32 (*.f32 #s(approx (/ (sin (* (* (PI) tau) x)) x) (*.f32 tau (PI.f32))) (sin.f32 (*.f32 (PI.f32) x))) (*.f32 x (*.f32 (*.f32 (PI.f32) tau) (PI.f32))))
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 #s(approx (/ (sin (* (PI) x)) x) (PI.f32)) (PI.f32)))
(/.f32 (*.f32 #s(approx (/ (sin (* (PI) x)) x) (PI.f32)) (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) x)) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
(*.f32 #s(approx (* (sin (* (PI) x)) (sin (* (* (PI) tau) x))) (*.f32 tau (*.f32 x (*.f32 (PI.f32) (sin.f32 (*.f32 x (PI.f32))))))) (/.f32 #s(literal 1 binary32) (*.f32 (*.f32 (*.f32 (*.f32 (PI.f32) tau) x) x) (PI.f32))))
(/.f32 (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (pow.f32 (neg.f32 (pow.f32 (PI.f32) #s(literal 2/3 binary32))) #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2/3 binary32))) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
#s(approx (* (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (/ (sin (* x (PI))) (* x (PI)))) (+.f32 #s(literal 1 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32))) (*.f32 #s(literal -1/6 binary32) (pow.f32 (PI.f32) #s(literal 2 binary32)))))))
#s(approx (* (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (/ (/ (sin (* (PI) x)) x) (PI))) (+.f32 #s(literal 1 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32))) (*.f32 #s(literal -1/6 binary32) (pow.f32 (PI.f32) #s(literal 2 binary32)))))))
(/.f32 #s(approx (/ (* (sin (* x (PI))) (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau))) (PI)) (*.f32 x (+.f32 #s(literal 1 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32))) (*.f32 #s(literal -1/6 binary32) (pow.f32 (PI.f32) #s(literal 2 binary32)))))))) x)
(/.f32 (/.f32 #s(approx (* (sin (* x (PI))) (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau))) (*.f32 x (+.f32 (PI.f32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32))) (*.f32 #s(literal -1/6 binary32) (pow.f32 (PI.f32) #s(literal 3 binary32)))))))) (PI.f32)) x)
Outputs
#s(approx (* (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (/ (sin (* x (PI))) (* x (PI)))) (+.f32 #s(literal 1 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32))) (*.f32 #s(literal -1/6 binary32) (pow.f32 (PI.f32) #s(literal 2 binary32)))))))
Call 12
Inputs
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)))) (*.f32 x (PI.f32))))
(/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 tau #s(literal 5174515/524288 binary32))) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
(*.f32 (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) x) (/.f32 #s(approx (sin (* x (PI))) (*.f32 #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)) x)) (PI.f32)))
(*.f32 (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (PI.f32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)) x)) x))
(*.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (/.f32 #s(literal 1 binary32) (*.f32 (PI.f32) x)))
(/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) (*.f32 tau (PI.f32)))
(/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) (*.f32 tau (PI.f32)))
(/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (*.f32 tau (PI.f32))) (PI.f32))
(/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (*.f32 tau (PI.f32))) (PI.f32))
(/.f32 #s(literal 1 binary32) (/.f32 x (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32))))
(/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) x)))
(/.f32 (/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) tau) (PI.f32))
(/.f32 (/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) (PI.f32)) tau)
(*.f32 (/.f32 #s(literal 1 binary32) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))))
(*.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) (/.f32 #s(literal 1 binary32) (*.f32 tau (PI.f32))))
(*.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) (/.f32 #s(literal 1 binary32) (*.f32 tau (PI.f32))))
(/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (*.f32 tau (PI.f32)))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 tau (PI.f32)) (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32))))
(/.f32 #s(literal 1 binary32) (/.f32 tau (/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) (PI.f32))))
(/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) tau)))
(/.f32 (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) #s(literal 5174515/524288 binary32) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
(*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) x)) (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (*.f32 (PI.f32) x)))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)))) (log.f32 (exp.f32 (*.f32 (PI.f32) x)))))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x (fma.f32 (*.f32 x x) (*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) (PI.f32)) #s(literal -1/6 binary32)) (PI.f32)))) (*.f32 x (PI.f32))))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (*.f32 (PI.f32) (PI.f32))) (PI.f32) (PI.f32)))) (*.f32 x (PI.f32))))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x (fma.f32 (*.f32 (*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) (PI.f32)) x) x) #s(literal -1/6 binary32) (PI.f32)))) (*.f32 x (PI.f32))))
(/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 tau (pow.f32 (PI.f32) #s(literal 2 binary32)))) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
(/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (PI.f32) (PI.f32)) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (*.f32 x (PI.f32)))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x (+.f32 (PI.f32) (*.f32 #s(literal -1/6 binary32) (*.f32 (*.f32 (*.f32 x x) (PI.f32)) (*.f32 (PI.f32) (PI.f32))))))) (*.f32 x (PI.f32))))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x (+.f32 (PI.f32) (*.f32 #s(literal -1/6 binary32) (*.f32 (*.f32 (*.f32 x x) (*.f32 (PI.f32) (PI.f32))) (PI.f32)))))) (*.f32 x (PI.f32))))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x (+.f32 (PI.f32) (*.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (*.f32 (PI.f32) (PI.f32))) (PI.f32))))) (*.f32 x (PI.f32))))
(*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) x)) (/.f32 (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (PI.f32)) x))
(*.f32 (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) x) (/.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (PI.f32) (PI.f32)) (PI.f32)) x)) (PI.f32)))
(*.f32 (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (PI.f32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (PI.f32) (PI.f32)) (PI.f32)) x)) x))
(/.f32 (*.f32 (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (PI.f32)) #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) x))) x)
(/.f32 (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (*.f32 (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32) #s(literal 1 binary32)) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
(/.f32 (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (*.f32 (PI.f32) (*.f32 x x)) #s(literal -1/6 binary32)) (*.f32 (PI.f32) (PI.f32)) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
(/.f32 (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (PI.f32) (PI.f32)) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
(/.f32 (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (+.f32 (*.f32 (*.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) (PI.f32)) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (fma.f32 (PI.f32) x (*.f32 (*.f32 x (*.f32 (*.f32 x x) #s(literal -1/6 binary32))) (*.f32 (*.f32 (PI.f32) (PI.f32)) (PI.f32))))) (*.f32 x (PI.f32))))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (fma.f32 (*.f32 x (*.f32 (*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) (PI.f32)) x) x)) #s(literal -1/6 binary32) (*.f32 x (PI.f32)))) (*.f32 x (PI.f32))))
(*.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (PI.f32) (PI.f32)) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (/.f32 #s(literal 1 binary32) (*.f32 x (PI.f32))))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (-.f32 (*.f32 x (PI.f32)) (*.f32 (*.f32 (*.f32 #s(literal 1/6 binary32) (*.f32 (*.f32 (PI.f32) (PI.f32)) (PI.f32))) (*.f32 x x)) x))) (*.f32 x (PI.f32))))
(*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) x)) (*.f32 (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (PI.f32)) (/.f32 #s(literal 1 binary32) x)))
(*.f32 (/.f32 #s(literal 1 binary32) x) (*.f32 (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (PI.f32)) #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) x))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 x (PI.f32)) (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (PI.f32) (PI.f32)) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 (PI.f32) x) (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)))))
(/.f32 (*.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (/.f32 #s(literal 1 binary32) x)) (PI.f32))
(/.f32 (/.f32 (*.f32 #s(approx (sin (* x (PI))) (fma.f32 (PI.f32) x (*.f32 (*.f32 (*.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) (PI.f32)) x))) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
(/.f32 (/.f32 (*.f32 #s(approx (sin (* x (PI))) (fma.f32 (*.f32 (*.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) (PI.f32)) x (*.f32 (PI.f32) x))) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
(/.f32 (/.f32 (*.f32 #s(approx (sin (* x (PI))) (+.f32 (*.f32 (*.f32 (*.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) (PI.f32)) x) (*.f32 (PI.f32) x))) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (/.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (PI.f32) (PI.f32)) (PI.f32)) x)) x))))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (-.f32 (*.f32 x (PI.f32)) (*.f32 (neg.f32 x) (*.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (PI.f32) (PI.f32)))))) (*.f32 x (PI.f32))))
(/.f32 #s(literal 1 binary32) (/.f32 x (*.f32 (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (PI.f32)) #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) x)))))
(/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) x)))
(/.f32 (/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))))) x)
(/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 (*.f32 tau (PI.f32)) #s(literal 8996905/4194304 binary32)) (cbrt.f32 (PI.f32)))) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x (*.f32 (+.f32 #s(literal 1 binary32) (/.f32 (*.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (PI.f32) (PI.f32))) (PI.f32))) (PI.f32)))) (*.f32 x (PI.f32))))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x (*.f32 (-.f32 #s(literal 1 binary32) (/.f32 (*.f32 (*.f32 #s(literal 1/6 binary32) (*.f32 (*.f32 (PI.f32) (PI.f32)) (PI.f32))) (*.f32 x x)) (PI.f32))) (PI.f32)))) (*.f32 x (PI.f32))))
(/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (*.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (/.f32 #s(literal 1 binary32) x))))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 (+.f32 #s(literal 1 binary32) (/.f32 (*.f32 (*.f32 x (*.f32 (*.f32 x x) #s(literal -1/6 binary32))) (*.f32 (*.f32 (PI.f32) (PI.f32)) (PI.f32))) (*.f32 x (PI.f32)))) (*.f32 x (PI.f32)))) (*.f32 x (PI.f32))))
(/.f32 (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (+.f32 #s(literal 1 binary32) (/.f32 (*.f32 (*.f32 (*.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) (PI.f32)) x) (*.f32 (PI.f32) x))) (*.f32 (PI.f32) x))) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) #s(approx (/ (sin (* x (PI))) (* x (PI))) (+.f32 #s(literal 1 binary32) (*.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32)))))))
(/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 tau (pow.f32 (cbrt.f32 (PI.f32)) #s(literal 6 binary32)))) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
(*.f32 (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) x) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (PI.f32)))
(*.f32 (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (PI.f32)) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x))
(/.f32 (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (log.f32 (exp.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)))) (*.f32 (PI.f32) (PI.f32)) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
(/.f32 (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (*.f32 (exp.f32 (*.f32 (log.f32 x) #s(literal 2 binary32))) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (PI.f32) (PI.f32)) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
(/.f32 (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (exp.f32 (*.f32 (log.f32 (PI.f32)) #s(literal 2 binary32))) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
(/.f32 (/.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) #s(approx (* x (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3))))) (*.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 x #s(literal 3 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32)))))) (*.f32 x (PI.f32))))
(*.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (/.f32 #s(literal 1 binary32) (*.f32 (PI.f32) x)))
(/.f32 (*.f32 #s(approx (/ (sin (* tau (* (PI) x))) (* (PI) x)) tau) (sin.f32 (*.f32 (PI.f32) x))) (*.f32 tau (*.f32 (PI.f32) x)))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 (PI.f32) x) (*.f32 (sin.f32 (*.f32 (PI.f32) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)))))
(/.f32 #s(literal 1 binary32) (/.f32 x (/.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32))))
(/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (/.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) x)))
(/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 (*.f32 tau (PI.f32)) (pow.f32 (PI.f32) #s(literal 2/3 binary32))) (cbrt.f32 (PI.f32)))) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x (*.f32 (+.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (*.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (PI.f32) (PI.f32))))) (*.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (PI.f32) (PI.f32)))))) (*.f32 x (PI.f32))))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (*.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32))))))) (*.f32 x (PI.f32))))
(/.f32 (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (*.f32 (+.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (*.f32 (*.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) (PI.f32)))) (*.f32 (*.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) (PI.f32))) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x (+.f32 (PI.f32) (*.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32))))))) (*.f32 x (PI.f32))))
(/.f32 #s(approx (* (/ (sin (* (* (PI) tau) x)) x) (sin (* (PI) x))) (*.f32 tau (*.f32 (PI.f32) (sin.f32 (*.f32 x (PI.f32)))))) (*.f32 x (*.f32 (*.f32 (PI.f32) tau) (PI.f32))))
(/.f32 (*.f32 #s(approx (/ (sin (* (* (PI) tau) x)) x) (*.f32 tau (PI.f32))) (sin.f32 (*.f32 (PI.f32) x))) (*.f32 x (*.f32 (*.f32 (PI.f32) tau) (PI.f32))))
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 #s(approx (/ (sin (* (PI) x)) x) (PI.f32)) (PI.f32)))
(/.f32 (*.f32 #s(approx (/ (sin (* (PI) x)) x) (PI.f32)) (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) x)) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
(*.f32 #s(approx (* (sin (* (PI) x)) (sin (* (* (PI) tau) x))) (*.f32 tau (*.f32 x (*.f32 (PI.f32) (sin.f32 (*.f32 x (PI.f32))))))) (/.f32 #s(literal 1 binary32) (*.f32 (*.f32 (*.f32 (*.f32 (PI.f32) tau) x) x) (PI.f32))))
(/.f32 (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (pow.f32 (neg.f32 (pow.f32 (PI.f32) #s(literal 2/3 binary32))) #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2/3 binary32))) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
#s(approx (* (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (/ (sin (* x (PI))) (* x (PI)))) (+.f32 #s(literal 1 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32))) (*.f32 #s(literal -1/6 binary32) (pow.f32 (PI.f32) #s(literal 2 binary32)))))))
#s(approx (* (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (/ (/ (sin (* (PI) x)) x) (PI))) (+.f32 #s(literal 1 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32))) (*.f32 #s(literal -1/6 binary32) (pow.f32 (PI.f32) #s(literal 2 binary32)))))))
(/.f32 #s(approx (/ (* (sin (* x (PI))) (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau))) (PI)) (*.f32 x (+.f32 #s(literal 1 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32))) (*.f32 #s(literal -1/6 binary32) (pow.f32 (PI.f32) #s(literal 2 binary32)))))))) x)
(/.f32 (/.f32 #s(approx (* (sin (* x (PI))) (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau))) (*.f32 x (+.f32 (PI.f32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32))) (*.f32 #s(literal -1/6 binary32) (pow.f32 (PI.f32) #s(literal 3 binary32)))))))) (PI.f32)) x)
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 tau x) (PI.f32))) (*.f32 (*.f32 tau x) (PI.f32))) #s(approx (/ (sin (* x (PI))) (* x (PI))) (+.f32 #s(literal 1 binary32) (*.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32)))))))
Outputs
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 tau x) (PI.f32))) (*.f32 (*.f32 tau x) (PI.f32))) #s(approx (/ (sin (* x (PI))) (* x (PI))) (+.f32 #s(literal 1 binary32) (*.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32)))))))
Call 13
Inputs
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)))) (*.f32 x (PI.f32))))
(/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 tau #s(literal 5174515/524288 binary32))) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
(*.f32 (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) x) (/.f32 #s(approx (sin (* x (PI))) (*.f32 #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)) x)) (PI.f32)))
(*.f32 (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (PI.f32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)) x)) x))
(*.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (/.f32 #s(literal 1 binary32) (*.f32 (PI.f32) x)))
(/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) (*.f32 tau (PI.f32)))
(/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) (*.f32 tau (PI.f32)))
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(/.f32 #s(literal 1 binary32) (/.f32 x (/.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32))))
(/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (/.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) x)))
(/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 (*.f32 tau (PI.f32)) (pow.f32 (PI.f32) #s(literal 2/3 binary32))) (cbrt.f32 (PI.f32)))) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x (*.f32 (+.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (*.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (PI.f32) (PI.f32))))) (*.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (PI.f32) (PI.f32)))))) (*.f32 x (PI.f32))))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (*.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32))))))) (*.f32 x (PI.f32))))
(/.f32 (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (*.f32 (+.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (*.f32 (*.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) (PI.f32)))) (*.f32 (*.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) (PI.f32))) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x (+.f32 (PI.f32) (*.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32))))))) (*.f32 x (PI.f32))))
(/.f32 #s(approx (* (/ (sin (* (* (PI) tau) x)) x) (sin (* (PI) x))) (*.f32 tau (*.f32 (PI.f32) (sin.f32 (*.f32 x (PI.f32)))))) (*.f32 x (*.f32 (*.f32 (PI.f32) tau) (PI.f32))))
(/.f32 (*.f32 #s(approx (/ (sin (* (* (PI) tau) x)) x) (*.f32 tau (PI.f32))) (sin.f32 (*.f32 (PI.f32) x))) (*.f32 x (*.f32 (*.f32 (PI.f32) tau) (PI.f32))))
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 #s(approx (/ (sin (* (PI) x)) x) (PI.f32)) (PI.f32)))
(/.f32 (*.f32 #s(approx (/ (sin (* (PI) x)) x) (PI.f32)) (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) x)) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
(*.f32 #s(approx (* (sin (* (PI) x)) (sin (* (* (PI) tau) x))) (*.f32 tau (*.f32 x (*.f32 (PI.f32) (sin.f32 (*.f32 x (PI.f32))))))) (/.f32 #s(literal 1 binary32) (*.f32 (*.f32 (*.f32 (*.f32 (PI.f32) tau) x) x) (PI.f32))))
(/.f32 (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (pow.f32 (neg.f32 (pow.f32 (PI.f32) #s(literal 2/3 binary32))) #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2/3 binary32))) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
#s(approx (* (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (/ (sin (* x (PI))) (* x (PI)))) (+.f32 #s(literal 1 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32))) (*.f32 #s(literal -1/6 binary32) (pow.f32 (PI.f32) #s(literal 2 binary32)))))))
#s(approx (* (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (/ (/ (sin (* (PI) x)) x) (PI))) (+.f32 #s(literal 1 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32))) (*.f32 #s(literal -1/6 binary32) (pow.f32 (PI.f32) #s(literal 2 binary32)))))))
(/.f32 #s(approx (/ (* (sin (* x (PI))) (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau))) (PI)) (*.f32 x (+.f32 #s(literal 1 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32))) (*.f32 #s(literal -1/6 binary32) (pow.f32 (PI.f32) #s(literal 2 binary32)))))))) x)
(/.f32 (/.f32 #s(approx (* (sin (* x (PI))) (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau))) (*.f32 x (+.f32 (PI.f32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32))) (*.f32 #s(literal -1/6 binary32) (pow.f32 (PI.f32) #s(literal 3 binary32)))))))) (PI.f32)) x)
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 tau x) (PI.f32))) (*.f32 (*.f32 tau x) (PI.f32))) #s(approx (/ (sin (* x (PI))) (* x (PI))) (+.f32 #s(literal 1 binary32) (*.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32)))))))
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) #s(approx (/ (sin (* x (PI))) (* x (PI))) (+.f32 #s(literal 1 binary32) (*.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32)))))))
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) #s(approx (/ (/ (sin (* (PI) x)) x) (PI)) (+.f32 #s(literal 1 binary32) (*.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32)))))))
Outputs
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) #s(approx (/ (sin (* x (PI))) (* x (PI))) (+.f32 #s(literal 1 binary32) (*.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32)))))))
Call 14
Inputs
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)))) (*.f32 x (PI.f32))))
(/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 tau #s(literal 5174515/524288 binary32))) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
(*.f32 (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) x) (/.f32 #s(approx (sin (* x (PI))) (*.f32 #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)) x)) (PI.f32)))
(*.f32 (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (PI.f32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)) x)) x))
(*.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (/.f32 #s(literal 1 binary32) (*.f32 (PI.f32) x)))
(/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) (*.f32 tau (PI.f32)))
(/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) (*.f32 tau (PI.f32)))
(/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (*.f32 tau (PI.f32))) (PI.f32))
(/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (*.f32 tau (PI.f32))) (PI.f32))
(/.f32 #s(literal 1 binary32) (/.f32 x (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32))))
(/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) x)))
(/.f32 (/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) tau) (PI.f32))
(/.f32 (/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) (PI.f32)) tau)
(*.f32 (/.f32 #s(literal 1 binary32) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))))
(*.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) (/.f32 #s(literal 1 binary32) (*.f32 tau (PI.f32))))
(*.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) (/.f32 #s(literal 1 binary32) (*.f32 tau (PI.f32))))
(/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (*.f32 tau (PI.f32)))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 tau (PI.f32)) (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32))))
(/.f32 #s(literal 1 binary32) (/.f32 tau (/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) (PI.f32))))
(/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) tau)))
(/.f32 (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) #s(literal 5174515/524288 binary32) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
(*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) x)) (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (*.f32 (PI.f32) x)))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)))) (log.f32 (exp.f32 (*.f32 (PI.f32) x)))))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x (fma.f32 (*.f32 x x) (*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) (PI.f32)) #s(literal -1/6 binary32)) (PI.f32)))) (*.f32 x (PI.f32))))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (*.f32 (PI.f32) (PI.f32))) (PI.f32) (PI.f32)))) (*.f32 x (PI.f32))))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x (fma.f32 (*.f32 (*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) (PI.f32)) x) x) #s(literal -1/6 binary32) (PI.f32)))) (*.f32 x (PI.f32))))
(/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 tau (pow.f32 (PI.f32) #s(literal 2 binary32)))) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
(/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (PI.f32) (PI.f32)) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (*.f32 x (PI.f32)))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x (+.f32 (PI.f32) (*.f32 #s(literal -1/6 binary32) (*.f32 (*.f32 (*.f32 x x) (PI.f32)) (*.f32 (PI.f32) (PI.f32))))))) (*.f32 x (PI.f32))))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x (+.f32 (PI.f32) (*.f32 #s(literal -1/6 binary32) (*.f32 (*.f32 (*.f32 x x) (*.f32 (PI.f32) (PI.f32))) (PI.f32)))))) (*.f32 x (PI.f32))))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x (+.f32 (PI.f32) (*.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (*.f32 (PI.f32) (PI.f32))) (PI.f32))))) (*.f32 x (PI.f32))))
(*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) x)) (/.f32 (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (PI.f32)) x))
(*.f32 (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) x) (/.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (PI.f32) (PI.f32)) (PI.f32)) x)) (PI.f32)))
(*.f32 (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (PI.f32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (PI.f32) (PI.f32)) (PI.f32)) x)) x))
(/.f32 (*.f32 (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (PI.f32)) #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) x))) x)
(/.f32 (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (*.f32 (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32) #s(literal 1 binary32)) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
(/.f32 (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (*.f32 (PI.f32) (*.f32 x x)) #s(literal -1/6 binary32)) (*.f32 (PI.f32) (PI.f32)) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
(/.f32 (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (PI.f32) (PI.f32)) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
(/.f32 (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (+.f32 (*.f32 (*.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) (PI.f32)) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (fma.f32 (PI.f32) x (*.f32 (*.f32 x (*.f32 (*.f32 x x) #s(literal -1/6 binary32))) (*.f32 (*.f32 (PI.f32) (PI.f32)) (PI.f32))))) (*.f32 x (PI.f32))))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (fma.f32 (*.f32 x (*.f32 (*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) (PI.f32)) x) x)) #s(literal -1/6 binary32) (*.f32 x (PI.f32)))) (*.f32 x (PI.f32))))
(*.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (PI.f32) (PI.f32)) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (/.f32 #s(literal 1 binary32) (*.f32 x (PI.f32))))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (-.f32 (*.f32 x (PI.f32)) (*.f32 (*.f32 (*.f32 #s(literal 1/6 binary32) (*.f32 (*.f32 (PI.f32) (PI.f32)) (PI.f32))) (*.f32 x x)) x))) (*.f32 x (PI.f32))))
(*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) x)) (*.f32 (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (PI.f32)) (/.f32 #s(literal 1 binary32) x)))
(*.f32 (/.f32 #s(literal 1 binary32) x) (*.f32 (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (PI.f32)) #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) x))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 x (PI.f32)) (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (PI.f32) (PI.f32)) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 (PI.f32) x) (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)))))
(/.f32 (*.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (/.f32 #s(literal 1 binary32) x)) (PI.f32))
(/.f32 (/.f32 (*.f32 #s(approx (sin (* x (PI))) (fma.f32 (PI.f32) x (*.f32 (*.f32 (*.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) (PI.f32)) x))) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
(/.f32 (/.f32 (*.f32 #s(approx (sin (* x (PI))) (fma.f32 (*.f32 (*.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) (PI.f32)) x (*.f32 (PI.f32) x))) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
(/.f32 (/.f32 (*.f32 #s(approx (sin (* x (PI))) (+.f32 (*.f32 (*.f32 (*.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) (PI.f32)) x) (*.f32 (PI.f32) x))) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (/.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (PI.f32) (PI.f32)) (PI.f32)) x)) x))))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (-.f32 (*.f32 x (PI.f32)) (*.f32 (neg.f32 x) (*.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (PI.f32) (PI.f32)))))) (*.f32 x (PI.f32))))
(/.f32 #s(literal 1 binary32) (/.f32 x (*.f32 (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (PI.f32)) #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) x)))))
(/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) x)))
(/.f32 (/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))))) x)
(/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 (*.f32 tau (PI.f32)) #s(literal 8996905/4194304 binary32)) (cbrt.f32 (PI.f32)))) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x (*.f32 (+.f32 #s(literal 1 binary32) (/.f32 (*.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (PI.f32) (PI.f32))) (PI.f32))) (PI.f32)))) (*.f32 x (PI.f32))))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x (*.f32 (-.f32 #s(literal 1 binary32) (/.f32 (*.f32 (*.f32 #s(literal 1/6 binary32) (*.f32 (*.f32 (PI.f32) (PI.f32)) (PI.f32))) (*.f32 x x)) (PI.f32))) (PI.f32)))) (*.f32 x (PI.f32))))
(/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (*.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (/.f32 #s(literal 1 binary32) x))))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 (+.f32 #s(literal 1 binary32) (/.f32 (*.f32 (*.f32 x (*.f32 (*.f32 x x) #s(literal -1/6 binary32))) (*.f32 (*.f32 (PI.f32) (PI.f32)) (PI.f32))) (*.f32 x (PI.f32)))) (*.f32 x (PI.f32)))) (*.f32 x (PI.f32))))
(/.f32 (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (+.f32 #s(literal 1 binary32) (/.f32 (*.f32 (*.f32 (*.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) (PI.f32)) x) (*.f32 (PI.f32) x))) (*.f32 (PI.f32) x))) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) #s(approx (/ (sin (* x (PI))) (* x (PI))) (+.f32 #s(literal 1 binary32) (*.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32)))))))
(/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 tau (pow.f32 (cbrt.f32 (PI.f32)) #s(literal 6 binary32)))) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
(*.f32 (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) x) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (PI.f32)))
(*.f32 (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (PI.f32)) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x))
(/.f32 (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (log.f32 (exp.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)))) (*.f32 (PI.f32) (PI.f32)) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
(/.f32 (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (*.f32 (exp.f32 (*.f32 (log.f32 x) #s(literal 2 binary32))) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (PI.f32) (PI.f32)) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
(/.f32 (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (exp.f32 (*.f32 (log.f32 (PI.f32)) #s(literal 2 binary32))) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
(/.f32 (/.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) #s(approx (* x (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3))))) (*.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 x #s(literal 3 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32)))))) (*.f32 x (PI.f32))))
(*.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (/.f32 #s(literal 1 binary32) (*.f32 (PI.f32) x)))
(/.f32 (*.f32 #s(approx (/ (sin (* tau (* (PI) x))) (* (PI) x)) tau) (sin.f32 (*.f32 (PI.f32) x))) (*.f32 tau (*.f32 (PI.f32) x)))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 (PI.f32) x) (*.f32 (sin.f32 (*.f32 (PI.f32) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)))))
(/.f32 #s(literal 1 binary32) (/.f32 x (/.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32))))
(/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (/.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) x)))
(/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 (*.f32 tau (PI.f32)) (pow.f32 (PI.f32) #s(literal 2/3 binary32))) (cbrt.f32 (PI.f32)))) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x (*.f32 (+.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (*.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (PI.f32) (PI.f32))))) (*.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (PI.f32) (PI.f32)))))) (*.f32 x (PI.f32))))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (*.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32))))))) (*.f32 x (PI.f32))))
(/.f32 (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (*.f32 (+.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (*.f32 (*.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) (PI.f32)))) (*.f32 (*.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) (PI.f32))) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x (+.f32 (PI.f32) (*.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32))))))) (*.f32 x (PI.f32))))
(/.f32 #s(approx (* (/ (sin (* (* (PI) tau) x)) x) (sin (* (PI) x))) (*.f32 tau (*.f32 (PI.f32) (sin.f32 (*.f32 x (PI.f32)))))) (*.f32 x (*.f32 (*.f32 (PI.f32) tau) (PI.f32))))
(/.f32 (*.f32 #s(approx (/ (sin (* (* (PI) tau) x)) x) (*.f32 tau (PI.f32))) (sin.f32 (*.f32 (PI.f32) x))) (*.f32 x (*.f32 (*.f32 (PI.f32) tau) (PI.f32))))
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 #s(approx (/ (sin (* (PI) x)) x) (PI.f32)) (PI.f32)))
(/.f32 (*.f32 #s(approx (/ (sin (* (PI) x)) x) (PI.f32)) (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) x)) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
(*.f32 #s(approx (* (sin (* (PI) x)) (sin (* (* (PI) tau) x))) (*.f32 tau (*.f32 x (*.f32 (PI.f32) (sin.f32 (*.f32 x (PI.f32))))))) (/.f32 #s(literal 1 binary32) (*.f32 (*.f32 (*.f32 (*.f32 (PI.f32) tau) x) x) (PI.f32))))
(/.f32 (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (pow.f32 (neg.f32 (pow.f32 (PI.f32) #s(literal 2/3 binary32))) #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2/3 binary32))) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
#s(approx (* (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (/ (sin (* x (PI))) (* x (PI)))) (+.f32 #s(literal 1 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32))) (*.f32 #s(literal -1/6 binary32) (pow.f32 (PI.f32) #s(literal 2 binary32)))))))
#s(approx (* (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (/ (/ (sin (* (PI) x)) x) (PI))) (+.f32 #s(literal 1 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32))) (*.f32 #s(literal -1/6 binary32) (pow.f32 (PI.f32) #s(literal 2 binary32)))))))
(/.f32 #s(approx (/ (* (sin (* x (PI))) (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau))) (PI)) (*.f32 x (+.f32 #s(literal 1 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32))) (*.f32 #s(literal -1/6 binary32) (pow.f32 (PI.f32) #s(literal 2 binary32)))))))) x)
(/.f32 (/.f32 #s(approx (* (sin (* x (PI))) (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau))) (*.f32 x (+.f32 (PI.f32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32))) (*.f32 #s(literal -1/6 binary32) (pow.f32 (PI.f32) #s(literal 3 binary32)))))))) (PI.f32)) x)
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 tau x) (PI.f32))) (*.f32 (*.f32 tau x) (PI.f32))) #s(approx (/ (sin (* x (PI))) (* x (PI))) (+.f32 #s(literal 1 binary32) (*.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32)))))))
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) #s(approx (/ (sin (* x (PI))) (* x (PI))) (+.f32 #s(literal 1 binary32) (*.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32)))))))
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) #s(approx (/ (/ (sin (* (PI) x)) x) (PI)) (+.f32 #s(literal 1 binary32) (*.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32)))))))
(*.f32 (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x)) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (*.f32 (*.f32 (*.f32 (PI.f32) tau) x) x) (PI.f32))))
(*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (*.f32 (*.f32 (PI.f32) x) x) (*.f32 tau (PI.f32)))) (sin.f32 (*.f32 (PI.f32) x)))
(*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (*.f32 (*.f32 (PI.f32) x) x) (*.f32 tau (PI.f32)))) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))))
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 tau (PI.f32)) x)) (*.f32 (*.f32 (*.f32 (*.f32 tau (PI.f32)) x) x) (PI.f32))) (sin.f32 (*.f32 x (PI.f32))))
(/.f32 #s(approx (* (sin (* (PI) x)) (sin (* (* (PI) tau) x))) (*.f32 (sin.f32 (*.f32 tau (*.f32 x (PI.f32)))) (sin.f32 (*.f32 x (PI.f32))))) (*.f32 (*.f32 (*.f32 (*.f32 (PI.f32) tau) x) x) (PI.f32)))
Outputs
(*.f32 (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x)) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (*.f32 (*.f32 (*.f32 (PI.f32) tau) x) x) (PI.f32))))
Call 15
Inputs
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)))) (*.f32 x (PI.f32))))
(/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 tau #s(literal 5174515/524288 binary32))) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
(*.f32 (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) x) (/.f32 #s(approx (sin (* x (PI))) (*.f32 #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)) x)) (PI.f32)))
(*.f32 (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (PI.f32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)) x)) x))
(*.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (/.f32 #s(literal 1 binary32) (*.f32 (PI.f32) x)))
(/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) (*.f32 tau (PI.f32)))
(/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) (*.f32 tau (PI.f32)))
(/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (*.f32 tau (PI.f32))) (PI.f32))
(/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (*.f32 tau (PI.f32))) (PI.f32))
(/.f32 #s(literal 1 binary32) (/.f32 x (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32))))
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(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x (*.f32 (+.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (*.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (PI.f32) (PI.f32))))) (*.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (PI.f32) (PI.f32)))))) (*.f32 x (PI.f32))))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (*.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32))))))) (*.f32 x (PI.f32))))
(/.f32 (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (*.f32 (+.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (*.f32 (*.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) (PI.f32)))) (*.f32 (*.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) (PI.f32))) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x (+.f32 (PI.f32) (*.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32))))))) (*.f32 x (PI.f32))))
(/.f32 #s(approx (* (/ (sin (* (* (PI) tau) x)) x) (sin (* (PI) x))) (*.f32 tau (*.f32 (PI.f32) (sin.f32 (*.f32 x (PI.f32)))))) (*.f32 x (*.f32 (*.f32 (PI.f32) tau) (PI.f32))))
(/.f32 (*.f32 #s(approx (/ (sin (* (* (PI) tau) x)) x) (*.f32 tau (PI.f32))) (sin.f32 (*.f32 (PI.f32) x))) (*.f32 x (*.f32 (*.f32 (PI.f32) tau) (PI.f32))))
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 #s(approx (/ (sin (* (PI) x)) x) (PI.f32)) (PI.f32)))
(/.f32 (*.f32 #s(approx (/ (sin (* (PI) x)) x) (PI.f32)) (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) x)) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
(*.f32 #s(approx (* (sin (* (PI) x)) (sin (* (* (PI) tau) x))) (*.f32 tau (*.f32 x (*.f32 (PI.f32) (sin.f32 (*.f32 x (PI.f32))))))) (/.f32 #s(literal 1 binary32) (*.f32 (*.f32 (*.f32 (*.f32 (PI.f32) tau) x) x) (PI.f32))))
(/.f32 (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (pow.f32 (neg.f32 (pow.f32 (PI.f32) #s(literal 2/3 binary32))) #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2/3 binary32))) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
#s(approx (* (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (/ (sin (* x (PI))) (* x (PI)))) (+.f32 #s(literal 1 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32))) (*.f32 #s(literal -1/6 binary32) (pow.f32 (PI.f32) #s(literal 2 binary32)))))))
#s(approx (* (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (/ (/ (sin (* (PI) x)) x) (PI))) (+.f32 #s(literal 1 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32))) (*.f32 #s(literal -1/6 binary32) (pow.f32 (PI.f32) #s(literal 2 binary32)))))))
(/.f32 #s(approx (/ (* (sin (* x (PI))) (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau))) (PI)) (*.f32 x (+.f32 #s(literal 1 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32))) (*.f32 #s(literal -1/6 binary32) (pow.f32 (PI.f32) #s(literal 2 binary32)))))))) x)
(/.f32 (/.f32 #s(approx (* (sin (* x (PI))) (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau))) (*.f32 x (+.f32 (PI.f32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 tau #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32))) (*.f32 #s(literal -1/6 binary32) (pow.f32 (PI.f32) #s(literal 3 binary32)))))))) (PI.f32)) x)
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 tau x) (PI.f32))) (*.f32 (*.f32 tau x) (PI.f32))) #s(approx (/ (sin (* x (PI))) (* x (PI))) (+.f32 #s(literal 1 binary32) (*.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32)))))))
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) #s(approx (/ (sin (* x (PI))) (* x (PI))) (+.f32 #s(literal 1 binary32) (*.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32)))))))
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) #s(approx (/ (/ (sin (* (PI) x)) x) (PI)) (+.f32 #s(literal 1 binary32) (*.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 x #s(literal 2 binary32)) (pow.f32 (PI.f32) #s(literal 2 binary32)))))))
(*.f32 (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x)) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (*.f32 (*.f32 (*.f32 (PI.f32) tau) x) x) (PI.f32))))
(*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (*.f32 (*.f32 (PI.f32) x) x) (*.f32 tau (PI.f32)))) (sin.f32 (*.f32 (PI.f32) x)))
(*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (*.f32 (*.f32 (PI.f32) x) x) (*.f32 tau (PI.f32)))) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))))
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 tau (PI.f32)) x)) (*.f32 (*.f32 (*.f32 (*.f32 tau (PI.f32)) x) x) (PI.f32))) (sin.f32 (*.f32 x (PI.f32))))
(/.f32 #s(approx (* (sin (* (PI) x)) (sin (* (* (PI) tau) x))) (*.f32 (sin.f32 (*.f32 tau (*.f32 x (PI.f32)))) (sin.f32 (*.f32 x (PI.f32))))) (*.f32 (*.f32 (*.f32 (*.f32 (PI.f32) tau) x) x) (PI.f32)))
(/.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) (*.f32 (*.f32 (PI.f32) x) (*.f32 tau (*.f32 (PI.f32) x))))
(/.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) (*.f32 (*.f32 (*.f32 (PI.f32) x) x) (*.f32 tau (PI.f32))))
(/.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x))) (*.f32 tau (*.f32 (*.f32 x x) (*.f32 (PI.f32) (PI.f32)))))
(/.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x))) (*.f32 x (*.f32 (*.f32 tau (PI.f32)) (*.f32 x (PI.f32)))))
(/.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x))) (*.f32 (*.f32 x x) (*.f32 (*.f32 (PI.f32) tau) (PI.f32))))
(/.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x))) (*.f32 (*.f32 (PI.f32) (*.f32 (*.f32 tau x) x)) (PI.f32)))
(/.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x))) (*.f32 (*.f32 (*.f32 tau (PI.f32)) x) (*.f32 x (PI.f32))))
(/.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x))) (*.f32 (*.f32 (*.f32 x x) (*.f32 tau (PI.f32))) (PI.f32)))
(/.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x))) (*.f32 (*.f32 (*.f32 (*.f32 (PI.f32) tau) x) x) (PI.f32)))
(*.f32 (sin.f32 (*.f32 (PI.f32) x)) (/.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) x) (*.f32 (*.f32 (*.f32 tau (PI.f32)) (PI.f32)) x)))
(*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (*.f32 tau (*.f32 (PI.f32) x)) (PI.f32))))
Outputs
(/.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) (*.f32 (*.f32 (PI.f32) x) (*.f32 tau (*.f32 (PI.f32) x))))
Call 16
Inputs
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)))) (*.f32 x (PI.f32))))
(/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 tau #s(literal 5174515/524288 binary32))) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
(*.f32 (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) x) (/.f32 #s(approx (sin (* x (PI))) (*.f32 #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)) x)) (PI.f32)))
(*.f32 (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (PI.f32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)) x)) x))
(*.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (/.f32 #s(literal 1 binary32) (*.f32 (PI.f32) x)))
(/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) (*.f32 tau (PI.f32)))
(/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) (*.f32 tau (PI.f32)))
(/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (*.f32 tau (PI.f32))) (PI.f32))
(/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (*.f32 tau (PI.f32))) (PI.f32))
(/.f32 #s(literal 1 binary32) (/.f32 x (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32))))
(/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) x)))
(/.f32 (/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) tau) (PI.f32))
(/.f32 (/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) (PI.f32)) tau)
(*.f32 (/.f32 #s(literal 1 binary32) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))))
(*.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) (/.f32 #s(literal 1 binary32) (*.f32 tau (PI.f32))))
(*.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) (/.f32 #s(literal 1 binary32) (*.f32 tau (PI.f32))))
(/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (*.f32 tau (PI.f32)))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 tau (PI.f32)) (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32))))
(/.f32 #s(literal 1 binary32) (/.f32 tau (/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) (PI.f32))))
(/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (/.f32 (/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (PI.f32)) tau)))
(/.f32 (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) #s(literal 5174515/524288 binary32) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
(*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) x)) (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (*.f32 (PI.f32) x)))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x #s(approx (+ (PI) (* -1/6 (* (pow x 2) (pow (PI) 3)))) (PI.f32)))) (log.f32 (exp.f32 (*.f32 (PI.f32) x)))))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x (fma.f32 (*.f32 x x) (*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) (PI.f32)) #s(literal -1/6 binary32)) (PI.f32)))) (*.f32 x (PI.f32))))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (*.f32 (PI.f32) (PI.f32))) (PI.f32) (PI.f32)))) (*.f32 x (PI.f32))))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x (fma.f32 (*.f32 (*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) (PI.f32)) x) x) #s(literal -1/6 binary32) (PI.f32)))) (*.f32 x (PI.f32))))
(/.f32 #s(approx (* (/ (sin (* (PI) x)) x) (/ (sin (* tau (* (PI) x))) x)) (*.f32 tau (pow.f32 (PI.f32) #s(literal 2 binary32)))) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
(/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (PI.f32) (PI.f32)) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (*.f32 x (PI.f32)))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x (+.f32 (PI.f32) (*.f32 #s(literal -1/6 binary32) (*.f32 (*.f32 (*.f32 x x) (PI.f32)) (*.f32 (PI.f32) (PI.f32))))))) (*.f32 x (PI.f32))))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x (+.f32 (PI.f32) (*.f32 #s(literal -1/6 binary32) (*.f32 (*.f32 (*.f32 x x) (*.f32 (PI.f32) (PI.f32))) (PI.f32)))))) (*.f32 x (PI.f32))))
(*.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 x (+.f32 (PI.f32) (*.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (*.f32 (PI.f32) (PI.f32))) (PI.f32))))) (*.f32 x (PI.f32))))
(*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) x)) (/.f32 (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (PI.f32)) x))
(*.f32 (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) x) (/.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (PI.f32) (PI.f32)) (PI.f32)) x)) (PI.f32)))
(*.f32 (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (PI.f32)) (/.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (*.f32 (PI.f32) (PI.f32)) (PI.f32)) x)) x))
(/.f32 (*.f32 (/.f32 #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32)) (PI.f32)) #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) x))) x)
(/.f32 (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (*.f32 (fma.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32) #s(literal 1 binary32)) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
(/.f32 (/.f32 (*.f32 #s(approx (sin (* x (PI))) (*.f32 (fma.f32 (*.f32 (*.f32 (PI.f32) (*.f32 x x)) #s(literal -1/6 binary32)) (*.f32 (PI.f32) (PI.f32)) (PI.f32)) x)) #s(approx (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) #s(literal 1 binary32))) (PI.f32)) x)
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(/.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x))) (*.f32 x (*.f32 (*.f32 tau (PI.f32)) (*.f32 x (PI.f32)))))
(/.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x))) (*.f32 (*.f32 x x) (*.f32 (*.f32 (PI.f32) tau) (PI.f32))))
(/.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x))) (*.f32 (*.f32 (PI.f32) (*.f32 (*.f32 tau x) x)) (PI.f32)))
(/.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x))) (*.f32 (*.f32 (*.f32 tau (PI.f32)) x) (*.f32 x (PI.f32))))
(/.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x))) (*.f32 (*.f32 (*.f32 x x) (*.f32 tau (PI.f32))) (PI.f32)))
(/.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x))) (*.f32 (*.f32 (*.f32 (*.f32 (PI.f32) tau) x) x) (PI.f32)))
(*.f32 (sin.f32 (*.f32 (PI.f32) x)) (/.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) x) (*.f32 (*.f32 (*.f32 tau (PI.f32)) (PI.f32)) x)))
(*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (*.f32 tau (*.f32 (PI.f32) x)) (PI.f32))))
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 tau x) (PI.f32))) (*.f32 (*.f32 tau x) (PI.f32))) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (PI.f32) x)) (sin.f32 (*.f32 (PI.f32) x))) (*.f32 tau (*.f32 (PI.f32) x)))
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (*.f32 tau (*.f32 (PI.f32) x)) x)) (sin.f32 (*.f32 (PI.f32) x))) (PI.f32))
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (*.f32 tau (*.f32 (PI.f32) x)) (PI.f32))) (sin.f32 (*.f32 (PI.f32) x))) x)
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 tau (*.f32 (PI.f32) x))) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) (*.f32 (PI.f32) x))
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x)) x) (sin.f32 (*.f32 (PI.f32) x))) (*.f32 x (*.f32 (*.f32 (PI.f32) tau) (PI.f32))))
(/.f32 (/.f32 (*.f32 (sin.f32 (*.f32 x (PI.f32))) (sin.f32 (*.f32 (*.f32 tau (PI.f32)) x))) (PI.f32)) (*.f32 (*.f32 (*.f32 tau (PI.f32)) x) x))
(/.f32 (/.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) tau) (*.f32 (*.f32 x x) (*.f32 (PI.f32) (PI.f32))))
(/.f32 (/.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x))) (*.f32 x x)) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
(/.f32 (/.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x))) (*.f32 (*.f32 x x) (PI.f32))) (*.f32 (PI.f32) tau))
(*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (PI.f32)) (/.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 tau (*.f32 (PI.f32) x))) x))
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (PI.f32)))
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) x)) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau))
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x)) (*.f32 (PI.f32) x)) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x))) tau)
(/.f32 (/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (PI.f32) x)) (sin.f32 (*.f32 (PI.f32) x))) (PI.f32)) (*.f32 tau x))
(/.f32 (/.f32 (/.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x))) (*.f32 (*.f32 x x) (PI.f32))) (PI.f32)) tau)
(/.f32 (*.f32 (sin.f32 (*.f32 (*.f32 (neg.f32 x) tau) (PI.f32))) (sin.f32 (*.f32 (neg.f32 x) (PI.f32)))) (*.f32 (*.f32 (*.f32 (PI.f32) x) x) (*.f32 tau (PI.f32))))
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (PI.f32)) (sin.f32 (*.f32 (*.f32 (neg.f32 x) tau) (PI.f32)))) (*.f32 x (*.f32 (*.f32 (neg.f32 x) tau) (PI.f32))))
(*.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x))) (/.f32 #s(literal 1 binary32) (*.f32 (*.f32 (*.f32 (*.f32 (PI.f32) tau) x) x) (PI.f32))))
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (-.f32 (PI.f32) (*.f32 (PI.f32) x))) (*.f32 x (PI.f32))))
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 (neg.f32 x) tau) (PI.f32))) (*.f32 (PI.f32) x)) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x)) (*.f32 (neg.f32 tau) (PI.f32)))
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 (neg.f32 x) tau) (PI.f32))) (*.f32 (PI.f32) x)) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x))) (neg.f32 tau))
(*.f32 (/.f32 #s(literal 1 binary32) (*.f32 (*.f32 (*.f32 tau (PI.f32)) (PI.f32)) x)) (*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) x) (sin.f32 (*.f32 (PI.f32) x))))
(*.f32 (/.f32 (sin.f32 (neg.f32 (fma.f32 (*.f32 tau (PI.f32)) x (PI.f32)))) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (fma.f32 (neg.f32 x) (PI.f32) (PI.f32))) (*.f32 x (PI.f32))))
(*.f32 (/.f32 (sin.f32 (fma.f32 (*.f32 tau x) (neg.f32 (PI.f32)) (PI.f32))) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 x (*.f32 (*.f32 (PI.f32) tau) (PI.f32))) (*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x)) x) (sin.f32 (*.f32 (PI.f32) x)))))
(*.f32 (/.f32 (sin.f32 (fma.f32 (fma.f32 tau x #s(literal 1 binary32)) (PI.f32) (PI.f32))) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (+.f32 (fma.f32 (PI.f32) x (PI.f32)) (PI.f32))) (*.f32 x (PI.f32))))
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (+.f32 (fma.f32 (PI.f32) x (PI.f32)) (PI.f32))) (*.f32 x (PI.f32))))
(/.f32 (/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 (PI.f32) tau) x)) x) (sin.f32 (*.f32 (PI.f32) x))))) (*.f32 tau (*.f32 (PI.f32) x)))
(*.f32 (/.f32 (cos.f32 (fma.f32 (*.f32 (neg.f32 tau) (PI.f32)) x (*.f32 (PI.f32) #s(literal 1/2 binary32)))) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
(*.f32 (/.f32 (cos.f32 (fma.f32 (fma.f32 tau x #s(literal 1 binary32)) (PI.f32) (*.f32 (PI.f32) #s(literal 1/2 binary32)))) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (+.f32 (+.f32 (-.f32 (PI.f32) (*.f32 (PI.f32) x)) (PI.f32)) (PI.f32))) (*.f32 x (PI.f32))))
(/.f32 (*.f32 (-.f32 (cos.f32 (*.f32 (PI.f32) (-.f32 (*.f32 tau x) x))) (cos.f32 (*.f32 (PI.f32) (fma.f32 tau x x)))) (/.f32 #s(literal 1 binary32) (*.f32 (*.f32 (*.f32 (PI.f32) x) x) (*.f32 tau (PI.f32))))) #s(literal 2 binary32))
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 tau (PI.f32)) (log.f32 (exp.f32 x)))) (*.f32 (*.f32 tau (PI.f32)) (log.f32 (exp.f32 x)))) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
(*.f32 (/.f32 (sin.f32 (log.f32 (pow.f32 (exp.f32 (*.f32 (PI.f32) x)) tau))) (log.f32 (pow.f32 (exp.f32 (*.f32 (PI.f32) x)) tau))) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
(*.f32 (/.f32 (sin.f32 (log.f32 (pow.f32 (exp.f32 (*.f32 (PI.f32) x)) tau))) (log.f32 (pow.f32 (exp.f32 (*.f32 (PI.f32) x)) tau))) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
Outputs
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 tau x) (PI.f32))) (*.f32 (*.f32 tau x) (PI.f32))) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
Calls

64 calls:

68.0ms
tau
59.0ms
tau
41.0ms
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
38.0ms
(*.f32 x (PI.f32))
37.0ms
x
Results
AccuracySegmentsBranch
64.9%1(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
64.9%1(*.f32 x (PI.f32))
64.9%1x
64.9%1tau
66.0%1(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
66.0%1(*.f32 x (PI.f32))
66.0%1x
66.0%1tau
66.0%1(*.f32 x (PI.f32))
66.0%1x
66.0%1(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
66.0%1tau
66.0%1(*.f32 x (PI.f32))
66.0%1x
66.0%1(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
66.0%1tau
66.0%1(*.f32 x (PI.f32))
66.0%1x
66.0%1(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
66.0%1tau
66.0%1(*.f32 x (PI.f32))
66.0%1x
66.0%1(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
66.0%1tau
66.0%1(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
66.0%1(*.f32 x (PI.f32))
66.0%1x
66.0%1tau
66.1%1(*.f32 x (PI.f32))
66.1%1x
66.1%1(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
66.1%1tau
66.1%1(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
66.1%1tau
66.1%1(*.f32 x (PI.f32))
66.1%1x
72.0%1(*.f32 x (PI.f32))
72.0%1x
72.0%1tau
72.0%1(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
79.8%1(*.f32 x (PI.f32))
79.8%1x
79.8%1tau
79.8%1(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
86.0%1(*.f32 x (PI.f32))
86.0%1x
86.0%1tau
86.0%1(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
86.0%1(*.f32 x (PI.f32))
86.0%1(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
86.0%1x
86.0%1tau
97.4%1(*.f32 x (PI.f32))
97.4%1x
97.4%1tau
97.4%1(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
98.0%1(*.f32 x (PI.f32))
98.0%1x
98.0%1tau
98.0%1(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
98.1%1(*.f32 x (PI.f32))
98.1%1(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
98.1%1x
98.1%1tau
Compiler

Compiled 5 071 to 936 computations (81.5% saved)

derivations199.0ms (4.2%)

Memory
-34.6MiB live, 109.3MiB allocated; 21ms collecting garbage
Stop Event
fuel
Compiler

Compiled 547 to 132 computations (75.9% saved)

preprocess152.0ms (3.2%)

Memory
24.4MiB live, 270.4MiB allocated; 32ms collecting garbage
Compiler

Compiled 2 756 to 1 414 computations (48.7% saved)

end0.0ms (0.0%)

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

Profiling

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