Data.Number.Erf:$cinvnormcdf from erf-2.0.0.0, A

Time bar (total: 11.6s)

start0.0ms (0%)

Memory
0.1MiB live, 0.1MiB allocated

analyze355.0ms (3.1%)

Memory
0.9MiB live, 123.7MiB allocated
Algorithm
search
Search
ProbabilityValidUnknownPreconditionInfiniteDomainCan'tIter
0%0%99.8%0.2%0%0%0%0
0%0%99.8%0.2%0%0%0%1
0%0%99.8%0.2%0%0%0%2
0%0%99.8%0.2%0%0%0%3
50%49.9%49.9%0.2%0%0%0%4
50%49.9%49.9%0.2%0%0%0%5
50%49.9%49.9%0.2%0%0%0%6
50%49.9%49.9%0.2%0%0%0%7
66.7%49.9%25%0.2%0%25%0%8
66.7%49.9%25%0.2%0%25%0%9
66.7%49.9%25%0.2%0%25%0%10
66.7%49.9%25%0.2%0%25%0%11
80%49.9%12.5%0.2%0%37.4%0%12
Compiler

Compiled 19 to 17 computations (10.5% saved)

sample2.1s (18.5%)

Memory
39.2MiB live, 1 446.5MiB allocated
Samples
1.3s8 256×0valid
296.0ms2 071×0invalid
Precisions
Click to see histograms. Total time spent on operations: 953.0ms
ival-mult: 470.0ms (49.3% of total)
ival-sqrt: 169.0ms (17.7% of total)
ival-exp: 118.0ms (12.4% of total)
ival-sub: 99.0ms (10.4% of total)
ival-div: 72.0ms (7.6% of total)
exact: 12.0ms (1.3% of total)
ival-true: 9.0ms (0.9% of total)
ival-assert: 4.0ms (0.4% of total)
Bogosity

explain265.0ms (2.3%)

Memory
-21.5MiB live, 531.0MiB allocated
FPErrors
Click to see full error table
Ground TruthOverpredictionsExampleUnderpredictionsExampleSubexpression
20-0-(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) (exp.f64 (/.f64 (*.f64 t t) #s(literal 2 binary64))))
10-0-(/.f64 (*.f64 t t) #s(literal 2 binary64))
00-0-(exp.f64 (/.f64 (*.f64 t t) #s(literal 2 binary64)))
00-0-t
00-0-(-.f64 (*.f64 x #s(literal 1/2 binary64)) y)
00-0-z
00-0-(*.f64 x #s(literal 1/2 binary64))
00-0-(sqrt.f64 (*.f64 z #s(literal 2 binary64)))
00-0-(*.f64 t t)
00-0-#s(literal 2 binary64)
00-0-y
00-0-(*.f64 z #s(literal 2 binary64))
00-0-(*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64))))
00-0-#s(literal 1/2 binary64)
00-0-x
Explanations
Click to see full explanations table
OperatorSubexpressionExplanationCount
*.f64(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) (exp.f64 (/.f64 (*.f64 t t) #s(literal 2 binary64))))u*o20
(*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64))))underflow6
(exp.f64 (/.f64 (*.f64 t t) #s(literal 2 binary64)))overflow133
(/.f64 (*.f64 t t) #s(literal 2 binary64))overflow66
(*.f64 t t)overflow67
/.f64(/.f64 (*.f64 t t) #s(literal 2 binary64))o/n10
(*.f64 t t)overflow67
Confusion
Predicted +Predicted -
+20
-1253
Precision
0.6666666666666666
Recall
1.0
Confusion?
Predicted +Predicted MaybePredicted -
+200
-10253
Precision?
0.6666666666666666
Recall?
1.0
Freqs
test
numberfreq
0253
13
Total Confusion?
Predicted +Predicted MaybePredicted -
+100
-000
Precision?
1.0
Recall?
1.0
Samples
55.0ms512×0valid
Compiler

Compiled 269 to 104 computations (61.3% saved)

Precisions
Click to see histograms. Total time spent on operations: 31.0ms
ival-mult: 16.0ms (51.2% of total)
ival-div: 4.0ms (12.8% of total)
ival-exp: 4.0ms (12.8% of total)
ival-sqrt: 4.0ms (12.8% of total)
ival-sub: 3.0ms (9.6% of total)
ival-true: 1.0ms (3.2% of total)
exact: 1.0ms (3.2% of total)
ival-assert: 0.0ms (0% of total)

preprocess150.0ms (1.3%)

Memory
-6.0MiB live, 114.1MiB allocated
Algorithm
egg-herbie
Iterations

Useful iterations: 0 (0.0ms)

IterNodesCost
072232
1192226
2495224
31536224
44035224
56477224
01517
02416
13616
25816
311516
424616
537516
650716
781716
8150516
9194316
10208316
11210116
12210116
13212116
14212916
15212916
0212916
Stop Event
iter limit
saturated
iter limit
node limit
Calls
Call 1
Inputs
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) (exp.f64 (/.f64 (*.f64 t t) #s(literal 2 binary64))))
Outputs
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) (exp.f64 (/.f64 (*.f64 t t) #s(literal 2 binary64))))
(*.f64 (*.f64 (fma.f64 #s(literal -1/2 binary64) x y) (sqrt.f64 (*.f64 #s(literal 2 binary64) z))) (neg.f64 (pow.f64 (sqrt.f64 (exp.f64 t)) t)))
Symmetry

(abs t)

Compiler

Compiled 17 to 15 computations (11.8% saved)

eval0.0ms (0%)

Memory
0.2MiB live, 0.2MiB allocated
Compiler

Compiled 0 to 4 computations (-∞% saved)

prune1.0ms (0%)

Memory
1.1MiB live, 1.1MiB allocated
Alt Table
Click to see full alt table
StatusAccuracyProgram
99.0%
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) (exp.f64 (/.f64 (*.f64 t t) #s(literal 2 binary64))))
Compiler

Compiled 17 to 15 computations (11.8% saved)

simplify63.0ms (0.5%)

Memory
-2.4MiB live, 34.9MiB allocated
Algorithm
egg-herbie
Localize:

Found 4 expressions of interest:

NewMetricScoreProgram
cost-diff0
(*.f64 x #s(literal 1/2 binary64))
cost-diff0
(-.f64 (*.f64 x #s(literal 1/2 binary64)) y)
cost-diff0
(*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64))))
cost-diff0
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) (exp.f64 (/.f64 (*.f64 t t) #s(literal 2 binary64))))
Iterations

Useful iterations: 0 (0.0ms)

IterNodesCost
01562
02460
13660
25860
311560
424660
537560
650760
781760
8150560
9194360
10208360
11210160
12210160
13212160
14212960
15212960
0212960
Stop Event
iter limit
saturated
iter limit
Calls
Call 1
Inputs
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) (exp.f64 (/.f64 (*.f64 t t) #s(literal 2 binary64))))
(*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64))))
(-.f64 (*.f64 x #s(literal 1/2 binary64)) y)
(*.f64 x #s(literal 1/2 binary64))
x
#s(literal 1/2 binary64)
y
(sqrt.f64 (*.f64 z #s(literal 2 binary64)))
(*.f64 z #s(literal 2 binary64))
z
#s(literal 2 binary64)
(exp.f64 (/.f64 (*.f64 t t) #s(literal 2 binary64)))
(/.f64 (*.f64 t t) #s(literal 2 binary64))
(*.f64 t t)
t
Outputs
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) (exp.f64 (/.f64 (*.f64 t t) #s(literal 2 binary64))))
(*.f64 (*.f64 (fma.f64 #s(literal -1/2 binary64) x y) (sqrt.f64 (*.f64 #s(literal 2 binary64) z))) (neg.f64 (pow.f64 (sqrt.f64 (exp.f64 t)) t)))
(*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64))))
(*.f64 (sqrt.f64 (*.f64 #s(literal 2 binary64) z)) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y))
(-.f64 (*.f64 x #s(literal 1/2 binary64)) y)
(-.f64 (*.f64 #s(literal 1/2 binary64) x) y)
(*.f64 x #s(literal 1/2 binary64))
(*.f64 #s(literal 1/2 binary64) x)
x
#s(literal 1/2 binary64)
y
(sqrt.f64 (*.f64 z #s(literal 2 binary64)))
(sqrt.f64 (*.f64 #s(literal 2 binary64) z))
(*.f64 z #s(literal 2 binary64))
(*.f64 #s(literal 2 binary64) z)
z
#s(literal 2 binary64)
(exp.f64 (/.f64 (*.f64 t t) #s(literal 2 binary64)))
(pow.f64 (sqrt.f64 (exp.f64 t)) t)
(/.f64 (*.f64 t t) #s(literal 2 binary64))
(*.f64 t t)
t

localize49.0ms (0.4%)

Memory
-3.2MiB live, 79.3MiB allocated
Localize:

Found 4 expressions of interest:

NewMetricScoreProgram
accuracy0
(exp.f64 (/.f64 (*.f64 t t) #s(literal 2 binary64)))
accuracy0.1912071356236791
(/.f64 (*.f64 t t) #s(literal 2 binary64))
accuracy0.234375
(*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64))))
accuracy0.5039021216604116
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) (exp.f64 (/.f64 (*.f64 t t) #s(literal 2 binary64))))
Samples
40.0ms256×0valid
Compiler

Compiled 126 to 32 computations (74.6% saved)

Precisions
Click to see histograms. Total time spent on operations: 26.0ms
ival-mult: 17.0ms (64.9% of total)
ival-div: 4.0ms (15.3% of total)
ival-exp: 2.0ms (7.6% of total)
ival-sqrt: 2.0ms (7.6% of total)
ival-sub: 1.0ms (3.8% of total)
ival-true: 0.0ms (0% of total)
exact: 0.0ms (0% of total)
ival-assert: 0.0ms (0% of total)

series37.0ms (0.3%)

Memory
-9.4MiB live, 28.6MiB allocated
Counts
6 → 35
Calls
Call 1
Inputs
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) (exp.f64 (/.f64 (*.f64 t t) #s(literal 2 binary64))))
(*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64))))
(-.f64 (*.f64 x #s(literal 1/2 binary64)) y)
(*.f64 x #s(literal 1/2 binary64))
(/.f64 (*.f64 t t) #s(literal 2 binary64))
(exp.f64 (/.f64 (*.f64 t t) #s(literal 2 binary64)))
Outputs
(* -1 (* (* y (* (exp (* 1/2 (pow t 2))) (sqrt 2))) (sqrt z)))
(+ (* -1 (* (* y (* (exp (* 1/2 (pow t 2))) (sqrt 2))) (sqrt z))) (* 1/2 (* (* x (* (exp (* 1/2 (pow t 2))) (sqrt 2))) (sqrt z))))
(* -1 (* (* y (sqrt 2)) (sqrt z)))
(+ (* -1 (* (* y (sqrt 2)) (sqrt z))) (* 1/2 (* (* x (sqrt 2)) (sqrt z))))
(* -1 y)
(- (* 1/2 x) y)
(* 1/2 x)
(* 1/2 (* (* x (* (exp (* 1/2 (pow t 2))) (sqrt 2))) (sqrt z)))
(* x (+ (* -1 (* (/ (* y (* (exp (* 1/2 (pow t 2))) (sqrt 2))) x) (sqrt z))) (* 1/2 (* (sqrt z) (* (exp (* 1/2 (pow t 2))) (sqrt 2))))))
(* 1/2 (* (* x (sqrt 2)) (sqrt z)))
(* x (+ (* -1 (* (/ (* y (sqrt 2)) x) (sqrt z))) (* 1/2 (* (sqrt z) (sqrt 2)))))
(* x (+ 1/2 (* -1 (/ y x))))
(* -1 (* x (+ (* -1/2 (* (sqrt z) (* (exp (* 1/2 (pow t 2))) (sqrt 2)))) (* (/ (* y (* (exp (* 1/2 (pow t 2))) (sqrt 2))) x) (sqrt z)))))
(* -1 (* x (+ (* -1/2 (* (sqrt z) (sqrt 2))) (* (/ (* y (sqrt 2)) x) (sqrt z)))))
(* -1 (* x (- (/ y x) 1/2)))
(+ (* -1 y) (* 1/2 x))
(* y (+ (* -1 (* (sqrt z) (* (exp (* 1/2 (pow t 2))) (sqrt 2)))) (* 1/2 (* (/ (* x (* (exp (* 1/2 (pow t 2))) (sqrt 2))) y) (sqrt z)))))
(* y (+ (* -1 (* (sqrt z) (sqrt 2))) (* 1/2 (* (/ (* x (sqrt 2)) y) (sqrt z)))))
(* y (- (* 1/2 (/ x y)) 1))
(* -1 (* y (+ (* -1/2 (* (/ (* x (* (exp (* 1/2 (pow t 2))) (sqrt 2))) y) (sqrt z))) (* (sqrt z) (* (exp (* 1/2 (pow t 2))) (sqrt 2))))))
(* -1 (* y (+ (* -1/2 (* (/ (* x (sqrt 2)) y) (sqrt z))) (* (sqrt z) (sqrt 2)))))
(* -1 (* y (+ 1 (* -1/2 (/ x y)))))
(* (sqrt z) (* (exp (* 1/2 (pow t 2))) (* (sqrt 2) (- (* 1/2 x) y))))
(* (sqrt z) (* (sqrt 2) (- (* 1/2 x) y)))
(* -1 (* (sqrt z) (* (exp (* 1/2 (pow t 2))) (* (sqrt -2) (* (sqrt -1) (- (* 1/2 x) y))))))
(* -1 (* (sqrt z) (* (sqrt -2) (* (sqrt -1) (- (* 1/2 x) y)))))
(+ (* 1/2 (* (* (pow t 2) (* (sqrt 2) (- (* 1/2 x) y))) (sqrt z))) (* (sqrt z) (* (sqrt 2) (- (* 1/2 x) y))))
(+ (* (sqrt z) (* (sqrt 2) (- (* 1/2 x) y))) (* (pow t 2) (+ (* 1/8 (* (* (pow t 2) (* (sqrt 2) (- (* 1/2 x) y))) (sqrt z))) (* 1/2 (* (sqrt z) (* (sqrt 2) (- (* 1/2 x) y)))))))
(+ (* (sqrt z) (* (sqrt 2) (- (* 1/2 x) y))) (* (pow t 2) (+ (* 1/2 (* (sqrt z) (* (sqrt 2) (- (* 1/2 x) y)))) (* (pow t 2) (+ (* 1/48 (* (* (pow t 2) (* (sqrt 2) (- (* 1/2 x) y))) (sqrt z))) (* 1/8 (* (sqrt z) (* (sqrt 2) (- (* 1/2 x) y)))))))))
(* 1/2 (pow t 2))
1
(+ 1 (* 1/2 (pow t 2)))
(+ 1 (* (pow t 2) (+ 1/2 (* 1/8 (pow t 2)))))
(+ 1 (* (pow t 2) (+ 1/2 (* (pow t 2) (+ 1/8 (* 1/48 (pow t 2)))))))
(exp (* 1/2 (pow t 2)))
Calls

12 calls:

TimeVariablePointExpression
17.0ms
z
@0
((* (* (- (* x 1/2) y) (sqrt (* z 2))) (exp (/ (* t t) 2))) (* (- (* x 1/2) y) (sqrt (* z 2))) (- (* x 1/2) y) (* x 1/2) (/ (* t t) 2) (exp (/ (* t t) 2)))
3.0ms
x
@-inf
((* (* (- (* x 1/2) y) (sqrt (* z 2))) (exp (/ (* t t) 2))) (* (- (* x 1/2) y) (sqrt (* z 2))) (- (* x 1/2) y) (* x 1/2) (/ (* t t) 2) (exp (/ (* t t) 2)))
2.0ms
y
@-inf
((* (* (- (* x 1/2) y) (sqrt (* z 2))) (exp (/ (* t t) 2))) (* (- (* x 1/2) y) (sqrt (* z 2))) (- (* x 1/2) y) (* x 1/2) (/ (* t t) 2) (exp (/ (* t t) 2)))
2.0ms
x
@0
((* (* (- (* x 1/2) y) (sqrt (* z 2))) (exp (/ (* t t) 2))) (* (- (* x 1/2) y) (sqrt (* z 2))) (- (* x 1/2) y) (* x 1/2) (/ (* t t) 2) (exp (/ (* t t) 2)))
2.0ms
z
@-inf
((* (* (- (* x 1/2) y) (sqrt (* z 2))) (exp (/ (* t t) 2))) (* (- (* x 1/2) y) (sqrt (* z 2))) (- (* x 1/2) y) (* x 1/2) (/ (* t t) 2) (exp (/ (* t t) 2)))

simplify181.0ms (1.6%)

Memory
27.5MiB live, 174.9MiB allocated
Algorithm
egg-herbie
Iterations

Useful iterations: 0 (0.0ms)

IterNodesCost
0133612
1446483
21554432
34441429
08855417
Stop Event
iter limit
node limit
Counts
35 → 35
Calls
Call 1
Inputs
(* -1 (* (* y (* (exp (* 1/2 (pow t 2))) (sqrt 2))) (sqrt z)))
(+ (* -1 (* (* y (* (exp (* 1/2 (pow t 2))) (sqrt 2))) (sqrt z))) (* 1/2 (* (* x (* (exp (* 1/2 (pow t 2))) (sqrt 2))) (sqrt z))))
(* -1 (* (* y (sqrt 2)) (sqrt z)))
(+ (* -1 (* (* y (sqrt 2)) (sqrt z))) (* 1/2 (* (* x (sqrt 2)) (sqrt z))))
(* -1 y)
(- (* 1/2 x) y)
(* 1/2 x)
(* 1/2 (* (* x (* (exp (* 1/2 (pow t 2))) (sqrt 2))) (sqrt z)))
(* x (+ (* -1 (* (/ (* y (* (exp (* 1/2 (pow t 2))) (sqrt 2))) x) (sqrt z))) (* 1/2 (* (sqrt z) (* (exp (* 1/2 (pow t 2))) (sqrt 2))))))
(* 1/2 (* (* x (sqrt 2)) (sqrt z)))
(* x (+ (* -1 (* (/ (* y (sqrt 2)) x) (sqrt z))) (* 1/2 (* (sqrt z) (sqrt 2)))))
(* x (+ 1/2 (* -1 (/ y x))))
(* -1 (* x (+ (* -1/2 (* (sqrt z) (* (exp (* 1/2 (pow t 2))) (sqrt 2)))) (* (/ (* y (* (exp (* 1/2 (pow t 2))) (sqrt 2))) x) (sqrt z)))))
(* -1 (* x (+ (* -1/2 (* (sqrt z) (sqrt 2))) (* (/ (* y (sqrt 2)) x) (sqrt z)))))
(* -1 (* x (- (/ y x) 1/2)))
(+ (* -1 y) (* 1/2 x))
(* y (+ (* -1 (* (sqrt z) (* (exp (* 1/2 (pow t 2))) (sqrt 2)))) (* 1/2 (* (/ (* x (* (exp (* 1/2 (pow t 2))) (sqrt 2))) y) (sqrt z)))))
(* y (+ (* -1 (* (sqrt z) (sqrt 2))) (* 1/2 (* (/ (* x (sqrt 2)) y) (sqrt z)))))
(* y (- (* 1/2 (/ x y)) 1))
(* -1 (* y (+ (* -1/2 (* (/ (* x (* (exp (* 1/2 (pow t 2))) (sqrt 2))) y) (sqrt z))) (* (sqrt z) (* (exp (* 1/2 (pow t 2))) (sqrt 2))))))
(* -1 (* y (+ (* -1/2 (* (/ (* x (sqrt 2)) y) (sqrt z))) (* (sqrt z) (sqrt 2)))))
(* -1 (* y (+ 1 (* -1/2 (/ x y)))))
(* (sqrt z) (* (exp (* 1/2 (pow t 2))) (* (sqrt 2) (- (* 1/2 x) y))))
(* (sqrt z) (* (sqrt 2) (- (* 1/2 x) y)))
(* -1 (* (sqrt z) (* (exp (* 1/2 (pow t 2))) (* (sqrt -2) (* (sqrt -1) (- (* 1/2 x) y))))))
(* -1 (* (sqrt z) (* (sqrt -2) (* (sqrt -1) (- (* 1/2 x) y)))))
(+ (* 1/2 (* (* (pow t 2) (* (sqrt 2) (- (* 1/2 x) y))) (sqrt z))) (* (sqrt z) (* (sqrt 2) (- (* 1/2 x) y))))
(+ (* (sqrt z) (* (sqrt 2) (- (* 1/2 x) y))) (* (pow t 2) (+ (* 1/8 (* (* (pow t 2) (* (sqrt 2) (- (* 1/2 x) y))) (sqrt z))) (* 1/2 (* (sqrt z) (* (sqrt 2) (- (* 1/2 x) y)))))))
(+ (* (sqrt z) (* (sqrt 2) (- (* 1/2 x) y))) (* (pow t 2) (+ (* 1/2 (* (sqrt z) (* (sqrt 2) (- (* 1/2 x) y)))) (* (pow t 2) (+ (* 1/48 (* (* (pow t 2) (* (sqrt 2) (- (* 1/2 x) y))) (sqrt z))) (* 1/8 (* (sqrt z) (* (sqrt 2) (- (* 1/2 x) y)))))))))
(* 1/2 (pow t 2))
1
(+ 1 (* 1/2 (pow t 2)))
(+ 1 (* (pow t 2) (+ 1/2 (* 1/8 (pow t 2)))))
(+ 1 (* (pow t 2) (+ 1/2 (* (pow t 2) (+ 1/8 (* 1/48 (pow t 2)))))))
(exp (* 1/2 (pow t 2)))
Outputs
(* -1 (* (* y (* (exp (* 1/2 (pow t 2))) (sqrt 2))) (sqrt z)))
(*.f64 (*.f64 (neg.f64 (sqrt.f64 z)) y) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 (pow.f64 (exp.f64 t) t))))
(+ (* -1 (* (* y (* (exp (* 1/2 (pow t 2))) (sqrt 2))) (sqrt z))) (* 1/2 (* (* x (* (exp (* 1/2 (pow t 2))) (sqrt 2))) (sqrt z))))
(*.f64 (*.f64 (fma.f64 #s(literal 1/2 binary64) x (neg.f64 y)) (sqrt.f64 z)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 (pow.f64 (exp.f64 t) t))))
(* -1 (* (* y (sqrt 2)) (sqrt z)))
(*.f64 (*.f64 (neg.f64 (sqrt.f64 z)) y) (sqrt.f64 #s(literal 2 binary64)))
(+ (* -1 (* (* y (sqrt 2)) (sqrt z))) (* 1/2 (* (* x (sqrt 2)) (sqrt z))))
(*.f64 (*.f64 (fma.f64 #s(literal 1/2 binary64) x (neg.f64 y)) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 z))
(* -1 y)
(neg.f64 y)
(- (* 1/2 x) y)
(fma.f64 #s(literal 1/2 binary64) x (neg.f64 y))
(* 1/2 x)
(*.f64 #s(literal 1/2 binary64) x)
(* 1/2 (* (* x (* (exp (* 1/2 (pow t 2))) (sqrt 2))) (sqrt z)))
(*.f64 (*.f64 (*.f64 (sqrt.f64 z) #s(literal 1/2 binary64)) x) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 (pow.f64 (exp.f64 t) t))))
(* x (+ (* -1 (* (/ (* y (* (exp (* 1/2 (pow t 2))) (sqrt 2))) x) (sqrt z))) (* 1/2 (* (sqrt z) (* (exp (* 1/2 (pow t 2))) (sqrt 2))))))
(*.f64 (*.f64 (fma.f64 #s(literal 1/2 binary64) x (neg.f64 y)) (sqrt.f64 z)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 (pow.f64 (exp.f64 t) t))))
(* 1/2 (* (* x (sqrt 2)) (sqrt z)))
(*.f64 (*.f64 (*.f64 (sqrt.f64 z) #s(literal 1/2 binary64)) x) (sqrt.f64 #s(literal 2 binary64)))
(* x (+ (* -1 (* (/ (* y (sqrt 2)) x) (sqrt z))) (* 1/2 (* (sqrt z) (sqrt 2)))))
(*.f64 (*.f64 (fma.f64 #s(literal 1/2 binary64) x (neg.f64 y)) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 z))
(* x (+ 1/2 (* -1 (/ y x))))
(fma.f64 #s(literal 1/2 binary64) x (neg.f64 y))
(* -1 (* x (+ (* -1/2 (* (sqrt z) (* (exp (* 1/2 (pow t 2))) (sqrt 2)))) (* (/ (* y (* (exp (* 1/2 (pow t 2))) (sqrt 2))) x) (sqrt z)))))
(*.f64 (*.f64 (fma.f64 #s(literal 1/2 binary64) x (neg.f64 y)) (sqrt.f64 z)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 (pow.f64 (exp.f64 t) t))))
(* -1 (* x (+ (* -1/2 (* (sqrt z) (sqrt 2))) (* (/ (* y (sqrt 2)) x) (sqrt z)))))
(*.f64 (*.f64 (fma.f64 #s(literal 1/2 binary64) x (neg.f64 y)) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 z))
(* -1 (* x (- (/ y x) 1/2)))
(fma.f64 #s(literal 1/2 binary64) x (neg.f64 y))
(+ (* -1 y) (* 1/2 x))
(fma.f64 #s(literal 1/2 binary64) x (neg.f64 y))
(* y (+ (* -1 (* (sqrt z) (* (exp (* 1/2 (pow t 2))) (sqrt 2)))) (* 1/2 (* (/ (* x (* (exp (* 1/2 (pow t 2))) (sqrt 2))) y) (sqrt z)))))
(*.f64 (*.f64 (fma.f64 #s(literal 1/2 binary64) x (neg.f64 y)) (sqrt.f64 z)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 (pow.f64 (exp.f64 t) t))))
(* y (+ (* -1 (* (sqrt z) (sqrt 2))) (* 1/2 (* (/ (* x (sqrt 2)) y) (sqrt z)))))
(*.f64 (*.f64 (fma.f64 #s(literal 1/2 binary64) x (neg.f64 y)) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 z))
(* y (- (* 1/2 (/ x y)) 1))
(fma.f64 #s(literal 1/2 binary64) x (neg.f64 y))
(* -1 (* y (+ (* -1/2 (* (/ (* x (* (exp (* 1/2 (pow t 2))) (sqrt 2))) y) (sqrt z))) (* (sqrt z) (* (exp (* 1/2 (pow t 2))) (sqrt 2))))))
(*.f64 (*.f64 (fma.f64 #s(literal 1/2 binary64) x (neg.f64 y)) (sqrt.f64 z)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 (pow.f64 (exp.f64 t) t))))
(* -1 (* y (+ (* -1/2 (* (/ (* x (sqrt 2)) y) (sqrt z))) (* (sqrt z) (sqrt 2)))))
(*.f64 (*.f64 (fma.f64 #s(literal 1/2 binary64) x (neg.f64 y)) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 z))
(* -1 (* y (+ 1 (* -1/2 (/ x y)))))
(fma.f64 #s(literal 1/2 binary64) x (neg.f64 y))
(* (sqrt z) (* (exp (* 1/2 (pow t 2))) (* (sqrt 2) (- (* 1/2 x) y))))
(*.f64 (*.f64 (fma.f64 #s(literal 1/2 binary64) x (neg.f64 y)) (sqrt.f64 z)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 (pow.f64 (exp.f64 t) t))))
(* (sqrt z) (* (sqrt 2) (- (* 1/2 x) y)))
(*.f64 (*.f64 (fma.f64 #s(literal 1/2 binary64) x (neg.f64 y)) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 z))
(* -1 (* (sqrt z) (* (exp (* 1/2 (pow t 2))) (* (sqrt -2) (* (sqrt -1) (- (* 1/2 x) y))))))
(*.f64 (neg.f64 (sqrt.f64 z)) (*.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal -1 binary64)) (fma.f64 #s(literal 1/2 binary64) x (neg.f64 y))) (sqrt.f64 #s(literal -2 binary64))) (sqrt.f64 (pow.f64 (exp.f64 t) t))))
(* -1 (* (sqrt z) (* (sqrt -2) (* (sqrt -1) (- (* 1/2 x) y)))))
(*.f64 (*.f64 (neg.f64 (fma.f64 #s(literal 1/2 binary64) x (neg.f64 y))) (sqrt.f64 z)) (*.f64 (sqrt.f64 #s(literal -1 binary64)) (sqrt.f64 #s(literal -2 binary64))))
(+ (* 1/2 (* (* (pow t 2) (* (sqrt 2) (- (* 1/2 x) y))) (sqrt z))) (* (sqrt z) (* (sqrt 2) (- (* 1/2 x) y))))
(*.f64 (*.f64 (fma.f64 (*.f64 t t) #s(literal 1/2 binary64) #s(literal 1 binary64)) (*.f64 (fma.f64 #s(literal 1/2 binary64) x (neg.f64 y)) (sqrt.f64 #s(literal 2 binary64)))) (sqrt.f64 z))
(+ (* (sqrt z) (* (sqrt 2) (- (* 1/2 x) y))) (* (pow t 2) (+ (* 1/8 (* (* (pow t 2) (* (sqrt 2) (- (* 1/2 x) y))) (sqrt z))) (* 1/2 (* (sqrt z) (* (sqrt 2) (- (* 1/2 x) y)))))))
(*.f64 (sqrt.f64 z) (fma.f64 (*.f64 t t) (*.f64 (*.f64 (fma.f64 #s(literal 1/2 binary64) x (neg.f64 y)) (sqrt.f64 #s(literal 2 binary64))) (fma.f64 #s(literal 1/8 binary64) (*.f64 t t) #s(literal 1/2 binary64))) (*.f64 (fma.f64 #s(literal 1/2 binary64) x (neg.f64 y)) (sqrt.f64 #s(literal 2 binary64)))))
(+ (* (sqrt z) (* (sqrt 2) (- (* 1/2 x) y))) (* (pow t 2) (+ (* 1/2 (* (sqrt z) (* (sqrt 2) (- (* 1/2 x) y)))) (* (pow t 2) (+ (* 1/48 (* (* (pow t 2) (* (sqrt 2) (- (* 1/2 x) y))) (sqrt z))) (* 1/8 (* (sqrt z) (* (sqrt 2) (- (* 1/2 x) y)))))))))
(fma.f64 (pow.f64 t #s(literal 4 binary64)) (*.f64 (*.f64 (*.f64 (fma.f64 #s(literal 1/2 binary64) x (neg.f64 y)) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 z)) (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64))) (*.f64 (*.f64 (fma.f64 (*.f64 t t) #s(literal 1/2 binary64) #s(literal 1 binary64)) (*.f64 (fma.f64 #s(literal 1/2 binary64) x (neg.f64 y)) (sqrt.f64 #s(literal 2 binary64)))) (sqrt.f64 z)))
(* 1/2 (pow t 2))
(*.f64 (*.f64 t t) #s(literal 1/2 binary64))
1
#s(literal 1 binary64)
(+ 1 (* 1/2 (pow t 2)))
(fma.f64 (*.f64 t t) #s(literal 1/2 binary64) #s(literal 1 binary64))
(+ 1 (* (pow t 2) (+ 1/2 (* 1/8 (pow t 2)))))
(fma.f64 (fma.f64 #s(literal 1/8 binary64) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))
(+ 1 (* (pow t 2) (+ 1/2 (* (pow t 2) (+ 1/8 (* 1/48 (pow t 2)))))))
(fma.f64 (fma.f64 (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))
(exp (* 1/2 (pow t 2)))
(sqrt.f64 (pow.f64 (exp.f64 t) t))

rewrite264.0ms (2.3%)

Memory
-5.8MiB live, 277.5MiB allocated
Iterations

Useful iterations: 1 (0.0ms)

IterNodesCost
01546
02444
16343
228543
3234343
0861743
Stop Event
iter limit
node limit
iter limit
Counts
6 → 452
Calls
Call 1
Inputs
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) (exp.f64 (/.f64 (*.f64 t t) #s(literal 2 binary64))))
(*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64))))
(-.f64 (*.f64 x #s(literal 1/2 binary64)) y)
(*.f64 x #s(literal 1/2 binary64))
(/.f64 (*.f64 t t) #s(literal 2 binary64))
(exp.f64 (/.f64 (*.f64 t t) #s(literal 2 binary64)))
Outputs
(*.f64 (/.f64 (*.f64 (sqrt.f64 (*.f64 (*.f64 #s(literal 2 binary64) (pow.f64 (exp.f64 t) t)) z)) (fma.f64 (neg.f64 y) y (pow.f64 (*.f64 #s(literal 1/2 binary64) x) #s(literal 2 binary64)))) (fma.f64 #s(literal 1/8 binary64) (pow.f64 x #s(literal 3 binary64)) (pow.f64 y #s(literal 3 binary64)))) (fma.f64 (*.f64 #s(literal 1/4 binary64) x) x (*.f64 y (-.f64 y (*.f64 #s(literal 1/2 binary64) x)))))
(*.f64 (/.f64 (*.f64 (sqrt.f64 (*.f64 (*.f64 #s(literal 2 binary64) (pow.f64 (exp.f64 t) t)) z)) (fma.f64 (neg.f64 y) y (pow.f64 (*.f64 #s(literal 1/2 binary64) x) #s(literal 2 binary64)))) (fma.f64 (neg.f64 y) y (pow.f64 (*.f64 #s(literal 1/2 binary64) x) #s(literal 2 binary64)))) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y))
(*.f64 (/.f64 (*.f64 (sqrt.f64 (*.f64 (*.f64 #s(literal 2 binary64) (pow.f64 (exp.f64 t) t)) z)) (fma.f64 #s(literal 1/8 binary64) (pow.f64 x #s(literal 3 binary64)) (pow.f64 y #s(literal 3 binary64)))) (-.f64 (pow.f64 (*.f64 #s(literal 1/2 binary64) x) #s(literal 4 binary64)) (pow.f64 (*.f64 (fma.f64 #s(literal 1/2 binary64) x y) y) #s(literal 2 binary64)))) (-.f64 (pow.f64 (*.f64 #s(literal 1/2 binary64) x) #s(literal 2 binary64)) (*.f64 (fma.f64 #s(literal 1/2 binary64) x y) y)))
(*.f64 (/.f64 (*.f64 (sqrt.f64 (*.f64 (*.f64 #s(literal 2 binary64) (pow.f64 (exp.f64 t) t)) z)) (fma.f64 #s(literal 1/8 binary64) (pow.f64 x #s(literal 3 binary64)) (pow.f64 y #s(literal 3 binary64)))) (fma.f64 (pow.f64 x #s(literal 6 binary64)) #s(literal 1/64 binary64) (pow.f64 (*.f64 (fma.f64 #s(literal 1/2 binary64) x y) y) #s(literal 3 binary64)))) (fma.f64 (pow.f64 x #s(literal 4 binary64)) #s(literal 1/16 binary64) (*.f64 (*.f64 (fma.f64 #s(literal 1/2 binary64) x y) y) (-.f64 (*.f64 (fma.f64 #s(literal 1/2 binary64) x y) y) (pow.f64 (*.f64 #s(literal 1/2 binary64) x) #s(literal 2 binary64))))))
(*.f64 (*.f64 (*.f64 (pow.f64 (sqrt.f64 (exp.f64 t)) t) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)) (pow.f64 (*.f64 #s(literal 2 binary64) z) #s(literal 1/4 binary64))) (pow.f64 (*.f64 #s(literal 2 binary64) z) #s(literal 1/4 binary64)))
(*.f64 (*.f64 (*.f64 (pow.f64 (sqrt.f64 (exp.f64 t)) t) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 z))
(*.f64 (*.f64 (*.f64 (pow.f64 (sqrt.f64 (exp.f64 t)) t) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)) (sqrt.f64 z)) (sqrt.f64 #s(literal 2 binary64)))
(*.f64 (*.f64 (pow.f64 (sqrt.f64 (exp.f64 t)) t) (*.f64 (sqrt.f64 z) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y))) (sqrt.f64 #s(literal 2 binary64)))
(*.f64 (sqrt.f64 (*.f64 (pow.f64 (exp.f64 t) t) z)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)))
(*.f64 (*.f64 (sqrt.f64 (*.f64 (*.f64 #s(literal 2 binary64) (pow.f64 (exp.f64 t) t)) z)) (fma.f64 (neg.f64 y) y (pow.f64 (*.f64 #s(literal 1/2 binary64) x) #s(literal 2 binary64)))) (pow.f64 (fma.f64 #s(literal 1/2 binary64) x y) #s(literal -1 binary64)))
(*.f64 (*.f64 (sqrt.f64 (*.f64 (*.f64 #s(literal 2 binary64) (pow.f64 (exp.f64 t) t)) z)) (fma.f64 #s(literal 1/8 binary64) (pow.f64 x #s(literal 3 binary64)) (pow.f64 y #s(literal 3 binary64)))) (pow.f64 (fma.f64 (*.f64 #s(literal 1/4 binary64) x) x (*.f64 (fma.f64 #s(literal 1/2 binary64) x y) y)) #s(literal -1 binary64)))
(*.f64 (*.f64 (pow.f64 (sqrt.f64 (exp.f64 t)) t) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
(*.f64 (*.f64 (sqrt.f64 z) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)) (sqrt.f64 (*.f64 (pow.f64 (exp.f64 t) t) #s(literal 2 binary64))))
(*.f64 (pow.f64 (*.f64 #s(literal 2 binary64) z) #s(literal 1/4 binary64)) (*.f64 (pow.f64 (*.f64 #s(literal 2 binary64) z) #s(literal 1/4 binary64)) (*.f64 (pow.f64 (sqrt.f64 (exp.f64 t)) t) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y))))
(*.f64 (sqrt.f64 #s(literal 2 binary64)) (*.f64 (sqrt.f64 z) (*.f64 (pow.f64 (sqrt.f64 (exp.f64 t)) t) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y))))
(*.f64 (sqrt.f64 z) (*.f64 (sqrt.f64 (*.f64 (pow.f64 (exp.f64 t) t) #s(literal 2 binary64))) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)))
(*.f64 (sqrt.f64 z) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)) (pow.f64 (sqrt.f64 (exp.f64 t)) t)))
(*.f64 (sqrt.f64 z) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (*.f64 (pow.f64 (sqrt.f64 (exp.f64 t)) t) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y))))
(*.f64 (sqrt.f64 (*.f64 (*.f64 #s(literal 2 binary64) (pow.f64 (exp.f64 t) t)) z)) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y))
(*.f64 (fma.f64 (neg.f64 y) y (pow.f64 (*.f64 #s(literal 1/2 binary64) x) #s(literal 2 binary64))) (/.f64 (sqrt.f64 (*.f64 (*.f64 #s(literal 2 binary64) (pow.f64 (exp.f64 t) t)) z)) (fma.f64 #s(literal 1/2 binary64) x y)))
(*.f64 (fma.f64 (neg.f64 y) y (pow.f64 (*.f64 #s(literal 1/2 binary64) x) #s(literal 2 binary64))) (*.f64 (pow.f64 (fma.f64 #s(literal 1/2 binary64) x y) #s(literal -1 binary64)) (sqrt.f64 (*.f64 (*.f64 #s(literal 2 binary64) (pow.f64 (exp.f64 t) t)) z))))
(*.f64 (fma.f64 #s(literal 1/8 binary64) (pow.f64 x #s(literal 3 binary64)) (pow.f64 y #s(literal 3 binary64))) (/.f64 (sqrt.f64 (*.f64 (*.f64 #s(literal 2 binary64) (pow.f64 (exp.f64 t) t)) z)) (fma.f64 (*.f64 #s(literal 1/4 binary64) x) x (*.f64 (fma.f64 #s(literal 1/2 binary64) x y) y))))
(*.f64 (fma.f64 #s(literal 1/8 binary64) (pow.f64 x #s(literal 3 binary64)) (pow.f64 y #s(literal 3 binary64))) (*.f64 (pow.f64 (fma.f64 (*.f64 #s(literal 1/4 binary64) x) x (*.f64 (fma.f64 #s(literal 1/2 binary64) x y) y)) #s(literal -1 binary64)) (sqrt.f64 (*.f64 (*.f64 #s(literal 2 binary64) (pow.f64 (exp.f64 t) t)) z))))
(*.f64 (pow.f64 (sqrt.f64 (exp.f64 t)) t) (*.f64 (sqrt.f64 (*.f64 #s(literal 2 binary64) z)) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)))
(*.f64 (*.f64 (sqrt.f64 (*.f64 #s(literal 2 binary64) z)) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)) (pow.f64 (sqrt.f64 (exp.f64 t)) t))
(*.f64 (sqrt.f64 (*.f64 #s(literal 2 binary64) z)) (*.f64 (pow.f64 (sqrt.f64 (exp.f64 t)) t) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)))
(*.f64 (-.f64 (*.f64 #s(literal 1/2 binary64) x) y) (sqrt.f64 (*.f64 (*.f64 #s(literal 2 binary64) (pow.f64 (exp.f64 t) t)) z)))
(pow.f64 (/.f64 #s(literal 1 binary64) (*.f64 (sqrt.f64 (*.f64 (*.f64 #s(literal 2 binary64) (pow.f64 (exp.f64 t) t)) z)) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y))) #s(literal -1 binary64))
(/.f64 (+.f64 (pow.f64 (*.f64 (neg.f64 y) (sqrt.f64 (*.f64 (*.f64 #s(literal 2 binary64) (pow.f64 (exp.f64 t) t)) z))) #s(literal 3 binary64)) (pow.f64 (*.f64 (*.f64 #s(literal 1/2 binary64) x) (sqrt.f64 (*.f64 (*.f64 #s(literal 2 binary64) (pow.f64 (exp.f64 t) t)) z))) #s(literal 3 binary64))) (fma.f64 (*.f64 (neg.f64 y) (sqrt.f64 (*.f64 (*.f64 #s(literal 2 binary64) (pow.f64 (exp.f64 t) t)) z))) (*.f64 (neg.f64 y) (sqrt.f64 (*.f64 (*.f64 #s(literal 2 binary64) (pow.f64 (exp.f64 t) t)) z))) (-.f64 (*.f64 (*.f64 (*.f64 #s(literal 1/2 binary64) x) (sqrt.f64 (*.f64 (*.f64 #s(literal 2 binary64) (pow.f64 (exp.f64 t) t)) z))) (*.f64 (*.f64 #s(literal 1/2 binary64) x) (sqrt.f64 (*.f64 (*.f64 #s(literal 2 binary64) (pow.f64 (exp.f64 t) t)) z)))) (*.f64 (*.f64 (neg.f64 y) (sqrt.f64 (*.f64 (*.f64 #s(literal 2 binary64) (pow.f64 (exp.f64 t) t)) z))) (*.f64 (*.f64 #s(literal 1/2 binary64) x) (sqrt.f64 (*.f64 (*.f64 #s(literal 2 binary64) (pow.f64 (exp.f64 t) t)) z)))))))
(/.f64 (+.f64 (pow.f64 (*.f64 (*.f64 #s(literal 1/2 binary64) x) (sqrt.f64 (*.f64 (*.f64 #s(literal 2 binary64) (pow.f64 (exp.f64 t) t)) z))) #s(literal 3 binary64)) (pow.f64 (*.f64 (neg.f64 y) (sqrt.f64 (*.f64 (*.f64 #s(literal 2 binary64) (pow.f64 (exp.f64 t) t)) z))) #s(literal 3 binary64))) (fma.f64 (*.f64 (*.f64 #s(literal 1/2 binary64) x) (sqrt.f64 (*.f64 (*.f64 #s(literal 2 binary64) (pow.f64 (exp.f64 t) t)) z))) (*.f64 (*.f64 #s(literal 1/2 binary64) x) (sqrt.f64 (*.f64 (*.f64 #s(literal 2 binary64) (pow.f64 (exp.f64 t) t)) z))) (-.f64 (*.f64 (*.f64 (neg.f64 y) (sqrt.f64 (*.f64 (*.f64 #s(literal 2 binary64) (pow.f64 (exp.f64 t) t)) z))) (*.f64 (neg.f64 y) (sqrt.f64 (*.f64 (*.f64 #s(literal 2 binary64) (pow.f64 (exp.f64 t) t)) z)))) (*.f64 (*.f64 (*.f64 #s(literal 1/2 binary64) x) (sqrt.f64 (*.f64 (*.f64 #s(literal 2 binary64) (pow.f64 (exp.f64 t) t)) z))) (*.f64 (neg.f64 y) (sqrt.f64 (*.f64 (*.f64 #s(literal 2 binary64) (pow.f64 (exp.f64 t) t)) z)))))))
(/.f64 (+.f64 (pow.f64 (*.f64 (*.f64 (sqrt.f64 (*.f64 #s(literal 2 binary64) z)) (*.f64 #s(literal 1/2 binary64) x)) (pow.f64 (sqrt.f64 (exp.f64 t)) t)) #s(literal 3 binary64)) (pow.f64 (*.f64 (*.f64 (neg.f64 y) (sqrt.f64 (*.f64 #s(literal 2 binary64) z))) (pow.f64 (sqrt.f64 (exp.f64 t)) t)) #s(literal 3 binary64))) (fma.f64 (*.f64 (*.f64 (sqrt.f64 (*.f64 #s(literal 2 binary64) z)) (*.f64 #s(literal 1/2 binary64) x)) (pow.f64 (sqrt.f64 (exp.f64 t)) t)) (*.f64 (*.f64 (sqrt.f64 (*.f64 #s(literal 2 binary64) z)) (*.f64 #s(literal 1/2 binary64) x)) (pow.f64 (sqrt.f64 (exp.f64 t)) t)) (-.f64 (*.f64 (*.f64 (*.f64 (neg.f64 y) (sqrt.f64 (*.f64 #s(literal 2 binary64) z))) (pow.f64 (sqrt.f64 (exp.f64 t)) t)) (*.f64 (*.f64 (neg.f64 y) (sqrt.f64 (*.f64 #s(literal 2 binary64) z))) (pow.f64 (sqrt.f64 (exp.f64 t)) t))) (*.f64 (*.f64 (*.f64 (sqrt.f64 (*.f64 #s(literal 2 binary64) z)) (*.f64 #s(literal 1/2 binary64) x)) (pow.f64 (sqrt.f64 (exp.f64 t)) t)) (*.f64 (*.f64 (neg.f64 y) (sqrt.f64 (*.f64 #s(literal 2 binary64) z))) (pow.f64 (sqrt.f64 (exp.f64 t)) t))))))
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(*.f64 (pow.f64 (/.f64 #s(literal 2 binary64) (*.f64 t t)) #s(literal -1/2 binary64)) (pow.f64 (/.f64 #s(literal 2 binary64) (*.f64 t t)) #s(literal -1/2 binary64)))
(*.f64 #s(literal -1/2 binary64) (pow.f64 (/.f64 #s(literal -1 binary64) (*.f64 t t)) #s(literal -1 binary64)))
(*.f64 #s(literal -1/2 binary64) (*.f64 (neg.f64 t) t))
(*.f64 (neg.f64 t) (*.f64 t #s(literal -1/2 binary64)))
(*.f64 (neg.f64 t) (/.f64 t #s(literal -2 binary64)))
(*.f64 #s(literal -1 binary64) (*.f64 (*.f64 t t) #s(literal -1/2 binary64)))
(*.f64 (*.f64 t #s(literal 1/2 binary64)) (pow.f64 (pow.f64 t #s(literal -1 binary64)) #s(literal -1 binary64)))
(*.f64 (*.f64 t #s(literal 1/2 binary64)) t)
(*.f64 #s(literal 1 binary64) (*.f64 (*.f64 t t) #s(literal 1/2 binary64)))
(*.f64 (*.f64 (neg.f64 t) t) #s(literal -1/2 binary64))
(*.f64 (*.f64 (*.f64 t t) #s(literal 1/2 binary64)) #s(literal 1 binary64))
(*.f64 (*.f64 t t) #s(literal 1/2 binary64))
(*.f64 t (*.f64 t #s(literal 1/2 binary64)))
(*.f64 #s(literal 1/2 binary64) (*.f64 t t))
(pow.f64 (exp.f64 (log.f64 (/.f64 #s(literal 2 binary64) (*.f64 t t)))) #s(literal -1 binary64))
(pow.f64 (*.f64 (/.f64 #s(literal 2 binary64) (*.f64 t t)) (/.f64 #s(literal 2 binary64) (*.f64 t t))) #s(literal -1/2 binary64))
(pow.f64 (pow.f64 (/.f64 #s(literal 2 binary64) (*.f64 t t)) #s(literal -1/2 binary64)) #s(literal 2 binary64))
(pow.f64 (/.f64 #s(literal 2 binary64) (*.f64 t t)) #s(literal -1 binary64))
(pow.f64 (*.f64 (*.f64 t t) #s(literal 1/2 binary64)) #s(literal 1 binary64))
(/.f64 (-.f64 #s(literal 0 binary64) (pow.f64 (*.f64 (*.f64 t t) #s(literal -1/2 binary64)) #s(literal 3 binary64))) (+.f64 #s(literal 0 binary64) (fma.f64 (*.f64 (*.f64 t t) #s(literal -1/2 binary64)) (*.f64 (*.f64 t t) #s(literal -1/2 binary64)) (*.f64 #s(literal 0 binary64) (*.f64 (*.f64 t t) #s(literal -1/2 binary64))))))
(/.f64 (neg.f64 (*.f64 t #s(literal 1 binary64))) (neg.f64 (/.f64 #s(literal 2 binary64) t)))
(/.f64 (neg.f64 (*.f64 #s(literal 1 binary64) t)) (neg.f64 (/.f64 #s(literal 2 binary64) t)))
(/.f64 (neg.f64 (*.f64 #s(literal 1 binary64) (*.f64 (neg.f64 t) t))) #s(literal 2 binary64))
(/.f64 (*.f64 t #s(literal 1 binary64)) (/.f64 #s(literal 2 binary64) t))
(/.f64 (*.f64 #s(literal 1 binary64) (*.f64 (neg.f64 t) t)) #s(literal -2 binary64))
(/.f64 (*.f64 #s(literal 1 binary64) t) (/.f64 #s(literal 2 binary64) t))
(/.f64 (neg.f64 (*.f64 (*.f64 t t) #s(literal 1/2 binary64))) #s(literal -1 binary64))
(/.f64 #s(literal -1/2 binary64) (neg.f64 (pow.f64 t #s(literal -2 binary64))))
(/.f64 (neg.f64 t) (neg.f64 (/.f64 #s(literal 2 binary64) t)))
(/.f64 #s(literal -1 binary64) (/.f64 #s(literal -2 binary64) (*.f64 t t)))
(/.f64 #s(literal 1 binary64) (/.f64 (/.f64 #s(literal 2 binary64) t) (*.f64 t #s(literal 1 binary64))))
(/.f64 #s(literal 1 binary64) (/.f64 #s(literal 2 binary64) (*.f64 t t)))
(/.f64 (*.f64 (neg.f64 t) t) #s(literal -2 binary64))
(/.f64 (*.f64 (*.f64 t t) #s(literal 1/2 binary64)) #s(literal 1 binary64))
(/.f64 (*.f64 t t) #s(literal 2 binary64))
(/.f64 t (/.f64 #s(literal 2 binary64) t))
(/.f64 #s(literal 1/2 binary64) (pow.f64 t #s(literal -2 binary64)))
(neg.f64 (*.f64 #s(literal 1 binary64) (*.f64 (*.f64 t t) #s(literal -1/2 binary64))))
(neg.f64 (*.f64 (*.f64 t t) #s(literal -1/2 binary64)))
(-.f64 #s(literal 0 binary64) (/.f64 (*.f64 (*.f64 t t) #s(literal -1/2 binary64)) #s(literal 1 binary64)))
(-.f64 #s(literal 0 binary64) (*.f64 (*.f64 t t) #s(literal -1/2 binary64)))
(exp.f64 (*.f64 (log.f64 (/.f64 #s(literal 2 binary64) (*.f64 t t))) #s(literal -1 binary64)))
(*.f64 (sqrt.f64 (pow.f64 (sqrt.f64 (exp.f64 t)) t)) (sqrt.f64 (pow.f64 (sqrt.f64 (exp.f64 t)) t)))
(*.f64 (pow.f64 (pow.f64 (sqrt.f64 (exp.f64 t)) t) #s(literal 1/2 binary64)) (pow.f64 (pow.f64 (sqrt.f64 (exp.f64 t)) t) #s(literal 1/2 binary64)))
(*.f64 (pow.f64 (exp.f64 t) (/.f64 (*.f64 t #s(literal 1/2 binary64)) #s(literal 2 binary64))) (pow.f64 (exp.f64 t) (/.f64 (*.f64 t #s(literal 1/2 binary64)) #s(literal 2 binary64))))
(*.f64 (pow.f64 (exp.f64 t) (*.f64 t #s(literal 1/4 binary64))) (pow.f64 (exp.f64 t) (*.f64 t #s(literal 1/4 binary64))))
(pow.f64 (exp.f64 (*.f64 #s(literal 1 binary64) (*.f64 (neg.f64 t) t))) #s(literal -1/2 binary64))
(pow.f64 (exp.f64 (*.f64 #s(literal 1 binary64) t)) (*.f64 t #s(literal 1/2 binary64)))
(pow.f64 (exp.f64 (pow.f64 (/.f64 #s(literal 2 binary64) (*.f64 t t)) #s(literal -1/2 binary64))) (pow.f64 (/.f64 #s(literal 2 binary64) (*.f64 t t)) #s(literal -1/2 binary64)))
(pow.f64 (exp.f64 #s(literal -1/2 binary64)) (*.f64 (neg.f64 t) t))
(pow.f64 (exp.f64 (neg.f64 t)) (*.f64 t #s(literal -1/2 binary64)))
(pow.f64 (exp.f64 (neg.f64 t)) (/.f64 t #s(literal -2 binary64)))
(pow.f64 (exp.f64 #s(literal -1 binary64)) (*.f64 (*.f64 t t) #s(literal -1/2 binary64)))
(pow.f64 (*.f64 (exp.f64 t) (exp.f64 t)) (/.f64 (*.f64 t #s(literal 1/2 binary64)) #s(literal 2 binary64)))
(pow.f64 (*.f64 (pow.f64 (exp.f64 t) t) (pow.f64 (exp.f64 t) t)) #s(literal 1/4 binary64))
(pow.f64 (pow.f64 (sqrt.f64 (exp.f64 t)) (sqrt.f64 t)) (sqrt.f64 t))
(pow.f64 (pow.f64 (E.f64) (*.f64 #s(literal 1 binary64) (*.f64 (neg.f64 t) t))) #s(literal -1/2 binary64))
(pow.f64 (pow.f64 (E.f64) (*.f64 #s(literal 1 binary64) t)) (*.f64 t #s(literal 1/2 binary64)))
(pow.f64 (pow.f64 (E.f64) (pow.f64 (/.f64 #s(literal 2 binary64) (*.f64 t t)) #s(literal -1/2 binary64))) (pow.f64 (/.f64 #s(literal 2 binary64) (*.f64 t t)) #s(literal -1/2 binary64)))
(pow.f64 (pow.f64 (E.f64) #s(literal -1/2 binary64)) (*.f64 (neg.f64 t) t))
(pow.f64 (pow.f64 (E.f64) (neg.f64 t)) (*.f64 t #s(literal -1/2 binary64)))
(pow.f64 (pow.f64 (E.f64) (neg.f64 t)) (/.f64 t #s(literal -2 binary64)))
(pow.f64 (pow.f64 (E.f64) #s(literal -1 binary64)) (*.f64 (*.f64 t t) #s(literal -1/2 binary64)))
(pow.f64 (pow.f64 (E.f64) #s(literal 1 binary64)) (*.f64 (*.f64 t t) #s(literal 1/2 binary64)))
(pow.f64 (pow.f64 (E.f64) (*.f64 (neg.f64 t) t)) #s(literal -1/2 binary64))
(pow.f64 (pow.f64 (E.f64) t) (*.f64 t #s(literal 1/2 binary64)))
(pow.f64 (pow.f64 (E.f64) #s(literal 1/2 binary64)) (*.f64 t t))
(pow.f64 (pow.f64 (exp.f64 #s(literal 1/2 binary64)) (neg.f64 (neg.f64 t))) t)
(pow.f64 (pow.f64 (exp.f64 #s(literal 1/2 binary64)) (neg.f64 t)) (neg.f64 t))
(pow.f64 (pow.f64 (exp.f64 #s(literal 1/2 binary64)) #s(literal -1 binary64)) (*.f64 (neg.f64 t) t))
(pow.f64 (pow.f64 (exp.f64 #s(literal 1/2 binary64)) #s(literal 1 binary64)) (*.f64 t t))
(pow.f64 (pow.f64 (exp.f64 t) #s(literal 1 binary64)) (*.f64 t #s(literal 1/2 binary64)))
(pow.f64 (pow.f64 (exp.f64 t) (/.f64 (*.f64 t #s(literal 1/2 binary64)) #s(literal 2 binary64))) #s(literal 2 binary64))
(pow.f64 (pow.f64 (exp.f64 t) (*.f64 t #s(literal 1/4 binary64))) #s(literal 2 binary64))
(pow.f64 (pow.f64 (exp.f64 t) (/.f64 t #s(literal -2 binary64))) #s(literal -1 binary64))
(pow.f64 (sqrt.f64 (exp.f64 t)) (neg.f64 (neg.f64 t)))
(pow.f64 (sqrt.f64 (exp.f64 t)) t)
(pow.f64 (E.f64) (*.f64 (*.f64 t t) #s(literal 1/2 binary64)))
(pow.f64 (pow.f64 (exp.f64 t) (neg.f64 t)) #s(literal -1/2 binary64))
(pow.f64 (exp.f64 #s(literal 1/2 binary64)) (*.f64 t t))
(pow.f64 (exp.f64 t) (+.f64 (/.f64 (*.f64 t #s(literal 1/2 binary64)) #s(literal 2 binary64)) (/.f64 (*.f64 t #s(literal 1/2 binary64)) #s(literal 2 binary64))))
(pow.f64 (exp.f64 t) (*.f64 t #s(literal 1/2 binary64)))
(pow.f64 (pow.f64 (exp.f64 t) t) #s(literal 1/2 binary64))
(pow.f64 (pow.f64 (sqrt.f64 (exp.f64 t)) t) #s(literal 1 binary64))
(/.f64 #s(literal -1 binary64) (neg.f64 (pow.f64 (exp.f64 t) (/.f64 t #s(literal -2 binary64)))))
(/.f64 #s(literal 1 binary64) (/.f64 (pow.f64 (exp.f64 t) (/.f64 t #s(literal -2 binary64))) #s(literal 1 binary64)))
(/.f64 #s(literal 1 binary64) (exp.f64 (*.f64 #s(literal 1 binary64) (*.f64 (*.f64 t t) #s(literal -1/2 binary64)))))
(/.f64 #s(literal 1 binary64) (pow.f64 (E.f64) (*.f64 #s(literal 1 binary64) (*.f64 (*.f64 t t) #s(literal -1/2 binary64)))))
(/.f64 #s(literal 1 binary64) (pow.f64 (E.f64) (*.f64 (*.f64 t t) #s(literal -1/2 binary64))))
(/.f64 #s(literal 1 binary64) (pow.f64 (exp.f64 #s(literal 1/2 binary64)) (*.f64 (neg.f64 t) t)))
(/.f64 #s(literal 1 binary64) (pow.f64 (exp.f64 t) (/.f64 t #s(literal -2 binary64))))
(sqrt.f64 (pow.f64 (exp.f64 t) t))
(fabs.f64 (pow.f64 (sqrt.f64 (exp.f64 t)) t))
(exp.f64 (*.f64 (log.f64 (sqrt.f64 (exp.f64 t))) t))
(exp.f64 (*.f64 (log.f64 (E.f64)) (*.f64 (*.f64 t t) #s(literal 1/2 binary64))))
(exp.f64 (*.f64 (log.f64 (pow.f64 (exp.f64 t) (neg.f64 t))) #s(literal -1/2 binary64)))
(exp.f64 (*.f64 (log.f64 (exp.f64 #s(literal 1/2 binary64))) (*.f64 t t)))
(exp.f64 (*.f64 (*.f64 t t) #s(literal 1/2 binary64)))

eval77.0ms (0.7%)

Memory
16.0MiB live, 90.4MiB allocated
Compiler

Compiled 16 282 to 1 830 computations (88.8% saved)

prune57.0ms (0.5%)

Memory
4.1MiB live, 42.5MiB allocated
Pruning

17 alts after pruning (17 fresh and 0 done)

PrunedKeptTotal
New45517472
Fresh000
Picked101
Done000
Total45617473
Accuracy
100.0%
Counts
473 → 17
Alt Table
Click to see full alt table
StatusAccuracyProgram
75.6%
(*.f64 (/.f64 (*.f64 (fma.f64 (neg.f64 y) y (pow.f64 (*.f64 #s(literal 1/2 binary64) x) #s(literal 2 binary64))) (sqrt.f64 (*.f64 #s(literal 2 binary64) z))) (fma.f64 #s(literal 1/2 binary64) x y)) (exp.f64 (/.f64 (*.f64 t t) #s(literal 2 binary64))))
99.0%
(*.f64 (/.f64 (sqrt.f64 (*.f64 #s(literal 2 binary64) z)) (pow.f64 (-.f64 (*.f64 #s(literal 1/2 binary64) x) y) #s(literal -1 binary64))) (exp.f64 (/.f64 (*.f64 t t) #s(literal 2 binary64))))
98.9%
(*.f64 (/.f64 #s(literal 1 binary64) (/.f64 (pow.f64 (-.f64 (*.f64 #s(literal 1/2 binary64) x) y) #s(literal -1 binary64)) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))) (exp.f64 (/.f64 (*.f64 t t) #s(literal 2 binary64))))
99.0%
(*.f64 (/.f64 #s(literal 1 binary64) (/.f64 #s(literal 1 binary64) (*.f64 (sqrt.f64 (*.f64 #s(literal 2 binary64) z)) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)))) (exp.f64 (/.f64 (*.f64 t t) #s(literal 2 binary64))))
99.8%
(*.f64 (-.f64 (*.f64 #s(literal 1/2 binary64) x) y) (sqrt.f64 (*.f64 (*.f64 #s(literal 2 binary64) (pow.f64 (exp.f64 t) t)) z)))
84.8%
(*.f64 (*.f64 (fma.f64 (*.f64 x x) (/.f64 #s(literal 1/4 binary64) (fma.f64 #s(literal 1/2 binary64) x y)) (neg.f64 (*.f64 y (/.f64 y (fma.f64 #s(literal 1/2 binary64) x y))))) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) (exp.f64 (/.f64 (*.f64 t t) #s(literal 2 binary64))))
75.5%
(*.f64 (*.f64 (fma.f64 (neg.f64 y) y (pow.f64 (*.f64 #s(literal 1/2 binary64) x) #s(literal 2 binary64))) (/.f64 (sqrt.f64 (*.f64 #s(literal 2 binary64) z)) (fma.f64 #s(literal 1/2 binary64) x y))) (exp.f64 (/.f64 (*.f64 t t) #s(literal 2 binary64))))
98.9%
(*.f64 (*.f64 (pow.f64 (*.f64 #s(literal 2 binary64) z) #s(literal 1/4 binary64)) (*.f64 (pow.f64 (*.f64 #s(literal 2 binary64) z) #s(literal 1/4 binary64)) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y))) (exp.f64 (/.f64 (*.f64 t t) #s(literal 2 binary64))))
99.8%
(*.f64 (*.f64 (pow.f64 (sqrt.f64 (exp.f64 t)) t) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
28.0%
(*.f64 (*.f64 (/.f64 (-.f64 (*.f64 #s(literal 1 binary64) (/.f64 (fma.f64 #s(literal 1/2 binary64) x y) (*.f64 y y))) (*.f64 (/.f64 (fma.f64 #s(literal 1/2 binary64) x y) (pow.f64 (*.f64 #s(literal 1/2 binary64) x) #s(literal 2 binary64))) #s(literal 1 binary64))) (*.f64 (/.f64 (fma.f64 #s(literal 1/2 binary64) x y) (pow.f64 (*.f64 #s(literal 1/2 binary64) x) #s(literal 2 binary64))) (/.f64 (fma.f64 #s(literal 1/2 binary64) x y) (*.f64 y y)))) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) (exp.f64 (/.f64 (*.f64 t t) #s(literal 2 binary64))))
99.0%
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) (exp.f64 (*.f64 (*.f64 t t) #s(literal 1/2 binary64))))
95.0%
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) (fma.f64 (fma.f64 (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))))
92.0%
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) (fma.f64 (fma.f64 #s(literal 1/8 binary64) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))))
86.1%
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) (fma.f64 (*.f64 t t) #s(literal 1/2 binary64) #s(literal 1 binary64))))
57.1%
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
88.1%
#s(approx (* (* (- (* x 1/2) y) (sqrt (* z 2))) (exp (/ (* t t) 2))) (*.f64 (*.f64 (fma.f64 (*.f64 t t) #s(literal 1/2 binary64) #s(literal 1 binary64)) (*.f64 (fma.f64 #s(literal 1/2 binary64) x (neg.f64 y)) (sqrt.f64 #s(literal 2 binary64)))) (sqrt.f64 z)))
92.6%
#s(approx (* (* (- (* x 1/2) y) (sqrt (* z 2))) (exp (/ (* t t) 2))) (*.f64 (sqrt.f64 z) (fma.f64 (*.f64 t t) (*.f64 (*.f64 (fma.f64 #s(literal 1/2 binary64) x (neg.f64 y)) (sqrt.f64 #s(literal 2 binary64))) (fma.f64 #s(literal 1/8 binary64) (*.f64 t t) #s(literal 1/2 binary64))) (*.f64 (fma.f64 #s(literal 1/2 binary64) x (neg.f64 y)) (sqrt.f64 #s(literal 2 binary64))))))
Compiler

Compiled 922 to 680 computations (26.2% saved)

simplify191.0ms (1.7%)

Memory
-27.2MiB live, 94.6MiB allocated
Algorithm
egg-herbie
Localize:

Found 20 expressions of interest:

NewMetricScoreProgram
cost-diff0
(fma.f64 (neg.f64 y) y (pow.f64 (*.f64 #s(literal 1/2 binary64) x) #s(literal 2 binary64)))
cost-diff0
(*.f64 (*.f64 (fma.f64 (neg.f64 y) y (pow.f64 (*.f64 #s(literal 1/2 binary64) x) #s(literal 2 binary64))) (/.f64 (sqrt.f64 (*.f64 #s(literal 2 binary64) z)) (fma.f64 #s(literal 1/2 binary64) x y))) (exp.f64 (/.f64 (*.f64 t t) #s(literal 2 binary64))))
cost-diff1408
(*.f64 (fma.f64 (neg.f64 y) y (pow.f64 (*.f64 #s(literal 1/2 binary64) x) #s(literal 2 binary64))) (/.f64 (sqrt.f64 (*.f64 #s(literal 2 binary64) z)) (fma.f64 #s(literal 1/2 binary64) x y)))
cost-diff6144
(pow.f64 (*.f64 #s(literal 1/2 binary64) x) #s(literal 2 binary64))
cost-diff0
(*.f64 x x)
cost-diff0
(*.f64 (fma.f64 (*.f64 x x) (/.f64 #s(literal 1/4 binary64) (fma.f64 #s(literal 1/2 binary64) x y)) (neg.f64 (*.f64 y (/.f64 y (fma.f64 #s(literal 1/2 binary64) x y))))) (sqrt.f64 (*.f64 z #s(literal 2 binary64))))
cost-diff0
(*.f64 (*.f64 (fma.f64 (*.f64 x x) (/.f64 #s(literal 1/4 binary64) (fma.f64 #s(literal 1/2 binary64) x y)) (neg.f64 (*.f64 y (/.f64 y (fma.f64 #s(literal 1/2 binary64) x y))))) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) (exp.f64 (/.f64 (*.f64 t t) #s(literal 2 binary64))))
cost-diff2496
(fma.f64 (*.f64 x x) (/.f64 #s(literal 1/4 binary64) (fma.f64 #s(literal 1/2 binary64) x y)) (neg.f64 (*.f64 y (/.f64 y (fma.f64 #s(literal 1/2 binary64) x y)))))
cost-diff0
(*.f64 x #s(literal 1/2 binary64))
cost-diff0
(-.f64 (*.f64 x #s(literal 1/2 binary64)) y)
cost-diff0
(*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64))))
cost-diff0
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) (fma.f64 (fma.f64 (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))))
cost-diff0
(*.f64 x #s(literal 1/2 binary64))
cost-diff0
(-.f64 (*.f64 x #s(literal 1/2 binary64)) y)
cost-diff0
(*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64))))
cost-diff0
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
cost-diff0
(sqrt.f64 (exp.f64 t))
cost-diff0
(pow.f64 (sqrt.f64 (exp.f64 t)) t)
cost-diff0
(*.f64 (pow.f64 (sqrt.f64 (exp.f64 t)) t) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y))
cost-diff0
(*.f64 (*.f64 (pow.f64 (sqrt.f64 (exp.f64 t)) t) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
Iterations

Useful iterations: 5 (0.0ms)

IterNodesCost
052485
095487
1170487
2310467
3852462
42638462
54621427
67398427
08102427
Stop Event
iter limit
node limit
iter limit
Calls
Call 1
Inputs
(*.f64 (*.f64 (pow.f64 (sqrt.f64 (exp.f64 t)) t) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
(*.f64 (pow.f64 (sqrt.f64 (exp.f64 t)) t) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y))
(pow.f64 (sqrt.f64 (exp.f64 t)) t)
(sqrt.f64 (exp.f64 t))
(exp.f64 t)
t
(-.f64 (*.f64 #s(literal 1/2 binary64) x) y)
(*.f64 #s(literal 1/2 binary64) x)
#s(literal 1/2 binary64)
x
y
(sqrt.f64 (*.f64 #s(literal 2 binary64) z))
(*.f64 #s(literal 2 binary64) z)
#s(literal 2 binary64)
z
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64))))
(-.f64 (*.f64 x #s(literal 1/2 binary64)) y)
(*.f64 x #s(literal 1/2 binary64))
x
#s(literal 1/2 binary64)
y
(sqrt.f64 (*.f64 z #s(literal 2 binary64)))
(*.f64 z #s(literal 2 binary64))
z
#s(literal 2 binary64)
#s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64))
#s(literal 1 binary64)
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) (fma.f64 (fma.f64 (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))))
(*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64))))
(-.f64 (*.f64 x #s(literal 1/2 binary64)) y)
(*.f64 x #s(literal 1/2 binary64))
x
#s(literal 1/2 binary64)
y
(sqrt.f64 (*.f64 z #s(literal 2 binary64)))
(*.f64 z #s(literal 2 binary64))
z
#s(literal 2 binary64)
#s(approx (exp (/ (* t t) 2)) (fma.f64 (fma.f64 (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64)))
(fma.f64 (fma.f64 (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))
(fma.f64 (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64))
(fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64))
#s(literal 1/48 binary64)
(*.f64 t t)
t
#s(literal 1/8 binary64)
#s(literal 1 binary64)
(*.f64 (*.f64 (fma.f64 (*.f64 x x) (/.f64 #s(literal 1/4 binary64) (fma.f64 #s(literal 1/2 binary64) x y)) (neg.f64 (*.f64 y (/.f64 y (fma.f64 #s(literal 1/2 binary64) x y))))) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) (exp.f64 (/.f64 (*.f64 t t) #s(literal 2 binary64))))
(*.f64 (fma.f64 (*.f64 x x) (/.f64 #s(literal 1/4 binary64) (fma.f64 #s(literal 1/2 binary64) x y)) (neg.f64 (*.f64 y (/.f64 y (fma.f64 #s(literal 1/2 binary64) x y))))) (sqrt.f64 (*.f64 z #s(literal 2 binary64))))
(fma.f64 (*.f64 x x) (/.f64 #s(literal 1/4 binary64) (fma.f64 #s(literal 1/2 binary64) x y)) (neg.f64 (*.f64 y (/.f64 y (fma.f64 #s(literal 1/2 binary64) x y)))))
(*.f64 x x)
x
(/.f64 #s(literal 1/4 binary64) (fma.f64 #s(literal 1/2 binary64) x y))
#s(literal 1/4 binary64)
(fma.f64 #s(literal 1/2 binary64) x y)
#s(literal 1/2 binary64)
y
(neg.f64 (*.f64 y (/.f64 y (fma.f64 #s(literal 1/2 binary64) x y))))
(*.f64 y (/.f64 y (fma.f64 #s(literal 1/2 binary64) x y)))
(/.f64 y (fma.f64 #s(literal 1/2 binary64) x y))
(sqrt.f64 (*.f64 z #s(literal 2 binary64)))
(*.f64 z #s(literal 2 binary64))
z
#s(literal 2 binary64)
(exp.f64 (/.f64 (*.f64 t t) #s(literal 2 binary64)))
(/.f64 (*.f64 t t) #s(literal 2 binary64))
(*.f64 t t)
t
(*.f64 (*.f64 (fma.f64 (neg.f64 y) y (pow.f64 (*.f64 #s(literal 1/2 binary64) x) #s(literal 2 binary64))) (/.f64 (sqrt.f64 (*.f64 #s(literal 2 binary64) z)) (fma.f64 #s(literal 1/2 binary64) x y))) (exp.f64 (/.f64 (*.f64 t t) #s(literal 2 binary64))))
(*.f64 (fma.f64 (neg.f64 y) y (pow.f64 (*.f64 #s(literal 1/2 binary64) x) #s(literal 2 binary64))) (/.f64 (sqrt.f64 (*.f64 #s(literal 2 binary64) z)) (fma.f64 #s(literal 1/2 binary64) x y)))
(fma.f64 (neg.f64 y) y (pow.f64 (*.f64 #s(literal 1/2 binary64) x) #s(literal 2 binary64)))
(neg.f64 y)
y
(pow.f64 (*.f64 #s(literal 1/2 binary64) x) #s(literal 2 binary64))
(*.f64 #s(literal 1/2 binary64) x)
#s(literal 1/2 binary64)
x
#s(literal 2 binary64)
(/.f64 (sqrt.f64 (*.f64 #s(literal 2 binary64) z)) (fma.f64 #s(literal 1/2 binary64) x y))
(sqrt.f64 (*.f64 #s(literal 2 binary64) z))
(*.f64 #s(literal 2 binary64) z)
z
(fma.f64 #s(literal 1/2 binary64) x y)
(exp.f64 (/.f64 (*.f64 t t) #s(literal 2 binary64)))
(/.f64 (*.f64 t t) #s(literal 2 binary64))
(*.f64 t t)
t
Outputs
(*.f64 (*.f64 (pow.f64 (sqrt.f64 (exp.f64 t)) t) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
(*.f64 (sqrt.f64 (pow.f64 (exp.f64 t) t)) (*.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (-.f64 (*.f64 x #s(literal 1/2 binary64)) y)))
(*.f64 (pow.f64 (sqrt.f64 (exp.f64 t)) t) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y))
(*.f64 (sqrt.f64 (pow.f64 (exp.f64 t) t)) (-.f64 (*.f64 x #s(literal 1/2 binary64)) y))
(pow.f64 (sqrt.f64 (exp.f64 t)) t)
(sqrt.f64 (pow.f64 (exp.f64 t) t))
(sqrt.f64 (exp.f64 t))
(exp.f64 t)
t
(-.f64 (*.f64 #s(literal 1/2 binary64) x) y)
(-.f64 (*.f64 x #s(literal 1/2 binary64)) y)
(*.f64 #s(literal 1/2 binary64) x)
(*.f64 x #s(literal 1/2 binary64))
#s(literal 1/2 binary64)
x
y
(sqrt.f64 (*.f64 #s(literal 2 binary64) z))
(sqrt.f64 (*.f64 z #s(literal 2 binary64)))
(*.f64 #s(literal 2 binary64) z)
(*.f64 z #s(literal 2 binary64))
#s(literal 2 binary64)
z
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)) (*.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (-.f64 (*.f64 x #s(literal 1/2 binary64)) y)))
(*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64))))
(*.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (-.f64 (*.f64 x #s(literal 1/2 binary64)) y))
(-.f64 (*.f64 x #s(literal 1/2 binary64)) y)
(*.f64 x #s(literal 1/2 binary64))
x
#s(literal 1/2 binary64)
y
(sqrt.f64 (*.f64 z #s(literal 2 binary64)))
(*.f64 z #s(literal 2 binary64))
z
#s(literal 2 binary64)
#s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64))
#s(literal 1 binary64)
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) (fma.f64 (fma.f64 (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))))
(*.f64 (*.f64 #s(approx (exp (/ (* t t) 2)) (fma.f64 (fma.f64 (fma.f64 (*.f64 t t) #s(literal 1/48 binary64) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))) (-.f64 (*.f64 x #s(literal 1/2 binary64)) y)) (sqrt.f64 (*.f64 z #s(literal 2 binary64))))
(*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64))))
(*.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (-.f64 (*.f64 x #s(literal 1/2 binary64)) y))
(-.f64 (*.f64 x #s(literal 1/2 binary64)) y)
(*.f64 x #s(literal 1/2 binary64))
x
#s(literal 1/2 binary64)
y
(sqrt.f64 (*.f64 z #s(literal 2 binary64)))
(*.f64 z #s(literal 2 binary64))
z
#s(literal 2 binary64)
#s(approx (exp (/ (* t t) 2)) (fma.f64 (fma.f64 (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64)))
#s(approx (exp (/ (* t t) 2)) (fma.f64 (fma.f64 (fma.f64 (*.f64 t t) #s(literal 1/48 binary64) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64)))
(fma.f64 (fma.f64 (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))
(fma.f64 (fma.f64 (fma.f64 (*.f64 t t) #s(literal 1/48 binary64) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))
(fma.f64 (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64))
(fma.f64 (fma.f64 (*.f64 t t) #s(literal 1/48 binary64) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64))
(fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64))
(fma.f64 (*.f64 t t) #s(literal 1/48 binary64) #s(literal 1/8 binary64))
#s(literal 1/48 binary64)
(*.f64 t t)
t
#s(literal 1/8 binary64)
#s(literal 1 binary64)
(*.f64 (*.f64 (fma.f64 (*.f64 x x) (/.f64 #s(literal 1/4 binary64) (fma.f64 #s(literal 1/2 binary64) x y)) (neg.f64 (*.f64 y (/.f64 y (fma.f64 #s(literal 1/2 binary64) x y))))) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) (exp.f64 (/.f64 (*.f64 t t) #s(literal 2 binary64))))
(*.f64 (*.f64 (sqrt.f64 (pow.f64 (exp.f64 t) t)) (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) #s(literal 1 binary64))) (sqrt.f64 (*.f64 z #s(literal 2 binary64))))
(*.f64 (fma.f64 (*.f64 x x) (/.f64 #s(literal 1/4 binary64) (fma.f64 #s(literal 1/2 binary64) x y)) (neg.f64 (*.f64 y (/.f64 y (fma.f64 #s(literal 1/2 binary64) x y))))) (sqrt.f64 (*.f64 z #s(literal 2 binary64))))
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) #s(literal 1 binary64)) (sqrt.f64 (*.f64 z #s(literal 2 binary64))))
(fma.f64 (*.f64 x x) (/.f64 #s(literal 1/4 binary64) (fma.f64 #s(literal 1/2 binary64) x y)) (neg.f64 (*.f64 y (/.f64 y (fma.f64 #s(literal 1/2 binary64) x y)))))
(*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) #s(literal 1 binary64))
(*.f64 x x)
x
(/.f64 #s(literal 1/4 binary64) (fma.f64 #s(literal 1/2 binary64) x y))
(/.f64 #s(literal 1/4 binary64) (fma.f64 x #s(literal 1/2 binary64) y))
#s(literal 1/4 binary64)
(fma.f64 #s(literal 1/2 binary64) x y)
(fma.f64 x #s(literal 1/2 binary64) y)
#s(literal 1/2 binary64)
y
(neg.f64 (*.f64 y (/.f64 y (fma.f64 #s(literal 1/2 binary64) x y))))
(*.f64 (neg.f64 y) (/.f64 y (fma.f64 x #s(literal 1/2 binary64) y)))
(*.f64 y (/.f64 y (fma.f64 #s(literal 1/2 binary64) x y)))
(*.f64 (/.f64 y (fma.f64 x #s(literal 1/2 binary64) y)) y)
(/.f64 y (fma.f64 #s(literal 1/2 binary64) x y))
(/.f64 y (fma.f64 x #s(literal 1/2 binary64) y))
(sqrt.f64 (*.f64 z #s(literal 2 binary64)))
(*.f64 z #s(literal 2 binary64))
z
#s(literal 2 binary64)
(exp.f64 (/.f64 (*.f64 t t) #s(literal 2 binary64)))
(sqrt.f64 (pow.f64 (exp.f64 t) t))
(/.f64 (*.f64 t t) #s(literal 2 binary64))
(*.f64 t t)
t
(*.f64 (*.f64 (fma.f64 (neg.f64 y) y (pow.f64 (*.f64 #s(literal 1/2 binary64) x) #s(literal 2 binary64))) (/.f64 (sqrt.f64 (*.f64 #s(literal 2 binary64) z)) (fma.f64 #s(literal 1/2 binary64) x y))) (exp.f64 (/.f64 (*.f64 t t) #s(literal 2 binary64))))
(*.f64 (*.f64 (sqrt.f64 (pow.f64 (exp.f64 t) t)) (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) #s(literal 1 binary64))) (sqrt.f64 (*.f64 z #s(literal 2 binary64))))
(*.f64 (fma.f64 (neg.f64 y) y (pow.f64 (*.f64 #s(literal 1/2 binary64) x) #s(literal 2 binary64))) (/.f64 (sqrt.f64 (*.f64 #s(literal 2 binary64) z)) (fma.f64 #s(literal 1/2 binary64) x y)))
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) #s(literal 1 binary64)) (sqrt.f64 (*.f64 z #s(literal 2 binary64))))
(fma.f64 (neg.f64 y) y (pow.f64 (*.f64 #s(literal 1/2 binary64) x) #s(literal 2 binary64)))
(fma.f64 (neg.f64 y) y (*.f64 #s(literal 1/4 binary64) (*.f64 x x)))
(neg.f64 y)
y
(pow.f64 (*.f64 #s(literal 1/2 binary64) x) #s(literal 2 binary64))
(*.f64 #s(literal 1/4 binary64) (*.f64 x x))
(*.f64 #s(literal 1/2 binary64) x)
(*.f64 x #s(literal 1/2 binary64))
#s(literal 1/2 binary64)
x
#s(literal 2 binary64)
(/.f64 (sqrt.f64 (*.f64 #s(literal 2 binary64) z)) (fma.f64 #s(literal 1/2 binary64) x y))
(/.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (fma.f64 x #s(literal 1/2 binary64) y))
(sqrt.f64 (*.f64 #s(literal 2 binary64) z))
(sqrt.f64 (*.f64 z #s(literal 2 binary64)))
(*.f64 #s(literal 2 binary64) z)
(*.f64 z #s(literal 2 binary64))
z
(fma.f64 #s(literal 1/2 binary64) x y)
(fma.f64 x #s(literal 1/2 binary64) y)
(exp.f64 (/.f64 (*.f64 t t) #s(literal 2 binary64)))
(sqrt.f64 (pow.f64 (exp.f64 t) t))
(/.f64 (*.f64 t t) #s(literal 2 binary64))
(*.f64 t t)
t

localize409.0ms (3.5%)

Memory
-12.8MiB live, 192.4MiB allocated
Localize:

Found 20 expressions of interest:

NewMetricScoreProgram
accuracy0.21875
(/.f64 (sqrt.f64 (*.f64 #s(literal 2 binary64) z)) (fma.f64 #s(literal 1/2 binary64) x y))
accuracy0.5039021216604116
(*.f64 (*.f64 (fma.f64 (neg.f64 y) y (pow.f64 (*.f64 #s(literal 1/2 binary64) x) #s(literal 2 binary64))) (/.f64 (sqrt.f64 (*.f64 #s(literal 2 binary64) z)) (fma.f64 #s(literal 1/2 binary64) x y))) (exp.f64 (/.f64 (*.f64 t t) #s(literal 2 binary64))))
accuracy2.9999669712667223
(fma.f64 (neg.f64 y) y (pow.f64 (*.f64 #s(literal 1/2 binary64) x) #s(literal 2 binary64)))
accuracy19.065363505464354
(*.f64 (fma.f64 (neg.f64 y) y (pow.f64 (*.f64 #s(literal 1/2 binary64) x) #s(literal 2 binary64))) (/.f64 (sqrt.f64 (*.f64 #s(literal 2 binary64) z)) (fma.f64 #s(literal 1/2 binary64) x y)))
accuracy0.1912071356236791
(/.f64 (*.f64 t t) #s(literal 2 binary64))
accuracy0.234375
(*.f64 (fma.f64 (*.f64 x x) (/.f64 #s(literal 1/4 binary64) (fma.f64 #s(literal 1/2 binary64) x y)) (neg.f64 (*.f64 y (/.f64 y (fma.f64 #s(literal 1/2 binary64) x y))))) (sqrt.f64 (*.f64 z #s(literal 2 binary64))))
accuracy0.5039021216604116
(*.f64 (*.f64 (fma.f64 (*.f64 x x) (/.f64 #s(literal 1/4 binary64) (fma.f64 #s(literal 1/2 binary64) x y)) (neg.f64 (*.f64 y (/.f64 y (fma.f64 #s(literal 1/2 binary64) x y))))) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) (exp.f64 (/.f64 (*.f64 t t) #s(literal 2 binary64))))
accuracy17.57897379725347
(fma.f64 (*.f64 x x) (/.f64 #s(literal 1/4 binary64) (fma.f64 #s(literal 1/2 binary64) x y)) (neg.f64 (*.f64 y (/.f64 y (fma.f64 #s(literal 1/2 binary64) x y)))))
accuracy0.234375
(*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64))))
accuracy0.3212775335601479
(fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64))
accuracy0.5039021216604116
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) (fma.f64 (fma.f64 (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))))
accuracy4.485125503656907
#s(approx (exp (/ (* t t) 2)) (fma.f64 (fma.f64 (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64)))
accuracy0
(sqrt.f64 (*.f64 z #s(literal 2 binary64)))
accuracy0.234375
(*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64))))
accuracy0.5039021216604116
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
accuracy32.29958965994895
#s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64))
accuracy0
(sqrt.f64 (*.f64 #s(literal 2 binary64) z))
accuracy0
(exp.f64 t)
accuracy0.01171875
(sqrt.f64 (exp.f64 t))
accuracy0.10546875
(*.f64 (*.f64 (pow.f64 (sqrt.f64 (exp.f64 t)) t) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
Samples
343.0ms256×0valid
Compiler

Compiled 961 to 106 computations (89% saved)

Precisions
Click to see histograms. Total time spent on operations: 197.0ms
ival-exp: 82.0ms (41.7% of total)
const: 50.0ms (25.4% of total)
ival-mult: 29.0ms (14.8% of total)
ival-div: 7.0ms (3.6% of total)
ival-add: 7.0ms (3.6% of total)
ival-pow: 6.0ms (3.1% of total)
ival-sqrt: 5.0ms (2.5% of total)
ival-sub: 4.0ms (2% of total)
ival-pow2: 3.0ms (1.5% of total)
ival-neg: 2.0ms (1% of total)
exact: 1.0ms (0.5% of total)
ival-assert: 0.0ms (0% of total)
ival-true: 0.0ms (0% of total)

series188.0ms (1.6%)

Memory
2.4MiB live, 238.1MiB allocated
Counts
25 → 136
Calls
Call 1
Inputs
(*.f64 (*.f64 (pow.f64 (sqrt.f64 (exp.f64 t)) t) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
(*.f64 (pow.f64 (sqrt.f64 (exp.f64 t)) t) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y))
(pow.f64 (sqrt.f64 (exp.f64 t)) t)
(sqrt.f64 (exp.f64 t))
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64))))
(-.f64 (*.f64 x #s(literal 1/2 binary64)) y)
(*.f64 x #s(literal 1/2 binary64))
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) (fma.f64 (fma.f64 (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))))
(fma.f64 (*.f64 x x) (/.f64 #s(literal 1/4 binary64) (fma.f64 #s(literal 1/2 binary64) x y)) (neg.f64 (*.f64 y (/.f64 y (fma.f64 #s(literal 1/2 binary64) x y)))))
(*.f64 (*.f64 (fma.f64 (*.f64 x x) (/.f64 #s(literal 1/4 binary64) (fma.f64 #s(literal 1/2 binary64) x y)) (neg.f64 (*.f64 y (/.f64 y (fma.f64 #s(literal 1/2 binary64) x y))))) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) (exp.f64 (/.f64 (*.f64 t t) #s(literal 2 binary64))))
(*.f64 (fma.f64 (*.f64 x x) (/.f64 #s(literal 1/4 binary64) (fma.f64 #s(literal 1/2 binary64) x y)) (neg.f64 (*.f64 y (/.f64 y (fma.f64 #s(literal 1/2 binary64) x y))))) (sqrt.f64 (*.f64 z #s(literal 2 binary64))))
(*.f64 x x)
(pow.f64 (*.f64 #s(literal 1/2 binary64) x) #s(literal 2 binary64))
(*.f64 (fma.f64 (neg.f64 y) y (pow.f64 (*.f64 #s(literal 1/2 binary64) x) #s(literal 2 binary64))) (/.f64 (sqrt.f64 (*.f64 #s(literal 2 binary64) z)) (fma.f64 #s(literal 1/2 binary64) x y)))
(*.f64 (*.f64 (fma.f64 (neg.f64 y) y (pow.f64 (*.f64 #s(literal 1/2 binary64) x) #s(literal 2 binary64))) (/.f64 (sqrt.f64 (*.f64 #s(literal 2 binary64) z)) (fma.f64 #s(literal 1/2 binary64) x y))) (exp.f64 (/.f64 (*.f64 t t) #s(literal 2 binary64))))
(fma.f64 (neg.f64 y) y (pow.f64 (*.f64 #s(literal 1/2 binary64) x) #s(literal 2 binary64)))
(exp.f64 t)
(sqrt.f64 (*.f64 #s(literal 2 binary64) z))
#s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64))
(sqrt.f64 (*.f64 z #s(literal 2 binary64)))
#s(approx (exp (/ (* t t) 2)) (fma.f64 (fma.f64 (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64)))
(fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64))
(/.f64 (*.f64 t t) #s(literal 2 binary64))
(/.f64 (sqrt.f64 (*.f64 #s(literal 2 binary64) z)) (fma.f64 #s(literal 1/2 binary64) x y))
Outputs
(* -1 (* (* y (* (sqrt 2) (pow (sqrt (exp t)) t))) (sqrt z)))
(+ (* -1 (* (* y (* (sqrt 2) (pow (sqrt (exp t)) t))) (sqrt z))) (* 1/2 (* (* x (* (sqrt 2) (pow (sqrt (exp t)) t))) (sqrt z))))
(* -1 (* y (pow (sqrt (exp t)) t)))
(+ (* -1 (* y (pow (sqrt (exp t)) t))) (* 1/2 (* x (pow (sqrt (exp t)) t))))
(* -1 (* (* y (* (exp (* 1/2 (pow t 2))) (sqrt 2))) (sqrt z)))
(+ (* -1 (* (* y (* (exp (* 1/2 (pow t 2))) (sqrt 2))) (sqrt z))) (* 1/2 (* (* x (* (exp (* 1/2 (pow t 2))) (sqrt 2))) (sqrt z))))
(* -1 (* (* y (sqrt 2)) (sqrt z)))
(+ (* -1 (* (* y (sqrt 2)) (sqrt z))) (* 1/2 (* (* x (sqrt 2)) (sqrt z))))
(* -1 y)
(- (* 1/2 x) y)
(* 1/2 x)
(pow x 2)
(* 1/4 (pow x 2))
(* -1 (pow y 2))
(+ (* -1 (pow y 2)) (* 1/4 (pow x 2)))
(* (/ (sqrt 2) y) (sqrt z))
(+ (* -1/2 (* (/ (* x (sqrt 2)) (pow y 2)) (sqrt z))) (* (/ (sqrt 2) y) (sqrt z)))
(+ (* x (+ (* -1/2 (* (/ (sqrt 2) (pow y 2)) (sqrt z))) (* 1/4 (* (/ (* x (sqrt 2)) (pow y 3)) (sqrt z))))) (* (/ (sqrt 2) y) (sqrt z)))
(+ (* x (+ (* -1/2 (* (/ (sqrt 2) (pow y 2)) (sqrt z))) (* x (+ (* -1/8 (* (/ (* x (sqrt 2)) (pow y 4)) (sqrt z))) (* 1/4 (* (/ (sqrt 2) (pow y 3)) (sqrt z))))))) (* (/ (sqrt 2) y) (sqrt z)))
(* 1/2 (* (* x (* (sqrt 2) (pow (sqrt (exp t)) t))) (sqrt z)))
(* x (+ (* -1 (* (/ (* y (* (sqrt 2) (pow (sqrt (exp t)) t))) x) (sqrt z))) (* 1/2 (* (sqrt z) (* (sqrt 2) (pow (sqrt (exp t)) t))))))
(* 1/2 (* x (pow (sqrt (exp t)) t)))
(* x (+ (* -1 (/ (* y (pow (sqrt (exp t)) t)) x)) (* 1/2 (pow (sqrt (exp t)) t))))
(* 1/2 (* (* x (* (exp (* 1/2 (pow t 2))) (sqrt 2))) (sqrt z)))
(* x (+ (* -1 (* (/ (* y (* (exp (* 1/2 (pow t 2))) (sqrt 2))) x) (sqrt z))) (* 1/2 (* (sqrt z) (* (exp (* 1/2 (pow t 2))) (sqrt 2))))))
(* 1/2 (* (* x (sqrt 2)) (sqrt z)))
(* x (+ (* -1 (* (/ (* y (sqrt 2)) x) (sqrt z))) (* 1/2 (* (sqrt z) (sqrt 2)))))
(* x (+ 1/2 (* -1 (/ y x))))
(* x (+ 1/2 (+ (* -4 (/ (pow y 3) (pow x 3))) (+ (* -1 (/ y x)) (* 4 (/ (pow y 3) (pow x 3)))))))
(* x (+ 1/2 (+ (* -8 (/ (pow y 4) (pow x 4))) (+ (* -4 (/ (pow y 3) (pow x 3))) (+ (* -1 (/ y x)) (+ (* 4 (/ (pow y 3) (pow x 3))) (* 8 (/ (pow y 4) (pow x 4)))))))))
(* x (+ (* -1 (* (/ (* y (* (exp (* 1/2 (pow t 2))) (sqrt 2))) x) (sqrt z))) (+ (* 1/2 (* (sqrt z) (* (exp (* 1/2 (pow t 2))) (sqrt 2)))) (* (/ (* (exp (* 1/2 (pow t 2))) (* (sqrt 2) (+ (* -4 (pow y 3)) (* 4 (pow y 3))))) (pow x 3)) (sqrt z)))))
(* x (+ (* -1 (* (/ (* y (* (exp (* 1/2 (pow t 2))) (sqrt 2))) x) (sqrt z))) (+ (* 1/2 (* (sqrt z) (* (exp (* 1/2 (pow t 2))) (sqrt 2)))) (+ (* (/ (* (exp (* 1/2 (pow t 2))) (* (sqrt 2) (+ (* -8 (pow y 4)) (* 8 (pow y 4))))) (pow x 4)) (sqrt z)) (* (/ (* (exp (* 1/2 (pow t 2))) (* (sqrt 2) (+ (* -4 (pow y 3)) (* 4 (pow y 3))))) (pow x 3)) (sqrt z))))))
(* x (+ (* -1 (* (/ (* y (sqrt 2)) x) (sqrt z))) (+ (* 1/2 (* (sqrt z) (sqrt 2))) (* (/ (* (sqrt 2) (+ (* -4 (pow y 3)) (* 4 (pow y 3)))) (pow x 3)) (sqrt z)))))
(* x (+ (* -1 (* (/ (* y (sqrt 2)) x) (sqrt z))) (+ (* 1/2 (* (sqrt z) (sqrt 2))) (+ (* (/ (* (sqrt 2) (+ (* -8 (pow y 4)) (* 8 (pow y 4)))) (pow x 4)) (sqrt z)) (* (/ (* (sqrt 2) (+ (* -4 (pow y 3)) (* 4 (pow y 3)))) (pow x 3)) (sqrt z))))))
(* (pow x 2) (+ 1/4 (* -1 (/ (pow y 2) (pow x 2)))))
(* 2 (* (/ (sqrt 2) x) (sqrt z)))
(/ (+ (* -4 (* (/ (* y (sqrt 2)) x) (sqrt z))) (* 2 (* (sqrt z) (sqrt 2)))) x)
(/ (+ (* -4 (* (/ (* y (sqrt 2)) x) (sqrt z))) (+ (* 2 (* (sqrt z) (sqrt 2))) (* 8 (* (/ (* (pow y 2) (sqrt 2)) (pow x 2)) (sqrt z))))) x)
(/ (+ (* -16 (* (/ (* (pow y 3) (sqrt 2)) (pow x 3)) (sqrt z))) (+ (* -4 (* (/ (* y (sqrt 2)) x) (sqrt z))) (+ (* 2 (* (sqrt z) (sqrt 2))) (* 8 (* (/ (* (pow y 2) (sqrt 2)) (pow x 2)) (sqrt z)))))) x)
(* -1 (* x (+ (* -1/2 (* (sqrt z) (* (sqrt 2) (pow (sqrt (exp t)) t)))) (* (/ (* y (* (sqrt 2) (pow (sqrt (exp t)) t))) x) (sqrt z)))))
(* -1 (* x (+ (* -1/2 (pow (sqrt (exp t)) t)) (/ (* y (pow (sqrt (exp t)) t)) x))))
(* -1 (* x (+ (* -1/2 (* (sqrt z) (* (exp (* 1/2 (pow t 2))) (sqrt 2)))) (* (/ (* y (* (exp (* 1/2 (pow t 2))) (sqrt 2))) x) (sqrt z)))))
(* -1 (* x (+ (* -1/2 (* (sqrt z) (sqrt 2))) (* (/ (* y (sqrt 2)) x) (sqrt z)))))
(* -1 (* x (- (/ y x) 1/2)))
(* -1 (* x (- (* -1 (/ (+ (* -4 (/ (pow y 3) (pow x 2))) (+ (* -1 y) (* 4 (/ (pow y 3) (pow x 2))))) x)) 1/2)))
(* -1 (* x (- (* -1 (/ (+ (* -4 (/ (pow y 3) (pow x 2))) (+ (* -1 y) (+ (* -1 (/ (+ (* -8 (pow y 4)) (* 8 (pow y 4))) (pow x 3))) (* 4 (/ (pow y 3) (pow x 2)))))) x)) 1/2)))
(* -1 (* x (+ (* -1 (/ (+ (* -1 (* (* y (* (exp (* 1/2 (pow t 2))) (sqrt 2))) (sqrt z))) (* (/ (* (exp (* 1/2 (pow t 2))) (* (sqrt 2) (+ (* -4 (pow y 3)) (* 4 (pow y 3))))) (pow x 2)) (sqrt z))) x)) (* -1/2 (* (sqrt z) (* (exp (* 1/2 (pow t 2))) (sqrt 2)))))))
(* -1 (* x (+ (* -1 (/ (+ (* -1 (* (* y (* (exp (* 1/2 (pow t 2))) (sqrt 2))) (sqrt z))) (+ (* -1 (* (/ (* (exp (* 1/2 (pow t 2))) (* (sqrt 2) (+ (* -8 (pow y 4)) (* 8 (pow y 4))))) (pow x 3)) (sqrt z))) (* (/ (* (exp (* 1/2 (pow t 2))) (* (sqrt 2) (+ (* -4 (pow y 3)) (* 4 (pow y 3))))) (pow x 2)) (sqrt z)))) x)) (* -1/2 (* (sqrt z) (* (exp (* 1/2 (pow t 2))) (sqrt 2)))))))
(* -1 (* x (+ (* -1 (/ (+ (* -1 (* (* y (sqrt 2)) (sqrt z))) (* (/ (* (sqrt 2) (+ (* -4 (pow y 3)) (* 4 (pow y 3)))) (pow x 2)) (sqrt z))) x)) (* -1/2 (* (sqrt z) (sqrt 2))))))
(* -1 (* x (+ (* -1 (/ (+ (* -1 (* (* y (sqrt 2)) (sqrt z))) (+ (* -1 (* (/ (* (sqrt 2) (+ (* -8 (pow y 4)) (* 8 (pow y 4)))) (pow x 3)) (sqrt z))) (* (/ (* (sqrt 2) (+ (* -4 (pow y 3)) (* 4 (pow y 3)))) (pow x 2)) (sqrt z)))) x)) (* -1/2 (* (sqrt z) (sqrt 2))))))
(* -1 (/ (+ (* -2 (* (sqrt z) (sqrt 2))) (* 4 (* (/ (* y (sqrt 2)) x) (sqrt z)))) x))
(* -1 (/ (+ (* -2 (* (sqrt z) (sqrt 2))) (* -1 (/ (+ (* -4 (* (* y (sqrt 2)) (sqrt z))) (* 8 (* (/ (* (pow y 2) (sqrt 2)) x) (sqrt z)))) x))) x))
(* -1 (/ (+ (* -2 (* (sqrt z) (sqrt 2))) (* -1 (/ (+ (* -4 (* (* y (sqrt 2)) (sqrt z))) (* -1 (/ (+ (* -8 (* (* (pow y 2) (sqrt 2)) (sqrt z))) (* 16 (* (/ (* (pow y 3) (sqrt 2)) x) (sqrt z)))) x))) x))) x))
(+ (* -1 y) (* 1/2 x))
(+ (* -4 (* (/ (* y (sqrt 2)) (pow x 2)) (sqrt z))) (* 2 (* (/ (sqrt 2) x) (sqrt z))))
(+ (* 2 (* (/ (sqrt 2) x) (sqrt z))) (* y (+ (* -4 (* (/ (sqrt 2) (pow x 2)) (sqrt z))) (* 8 (* (/ (* y (sqrt 2)) (pow x 3)) (sqrt z))))))
(+ (* 2 (* (/ (sqrt 2) x) (sqrt z))) (* y (+ (* -4 (* (/ (sqrt 2) (pow x 2)) (sqrt z))) (* y (+ (* -16 (* (/ (* y (sqrt 2)) (pow x 4)) (sqrt z))) (* 8 (* (/ (sqrt 2) (pow x 3)) (sqrt z))))))))
(* y (+ (* -1 (* (sqrt z) (* (sqrt 2) (pow (sqrt (exp t)) t)))) (* 1/2 (* (/ (* x (* (sqrt 2) (pow (sqrt (exp t)) t))) y) (sqrt z)))))
(* y (+ (* -1 (pow (sqrt (exp t)) t)) (* 1/2 (/ (* x (pow (sqrt (exp t)) t)) y))))
(* y (+ (* -1 (* (sqrt z) (* (exp (* 1/2 (pow t 2))) (sqrt 2)))) (* 1/2 (* (/ (* x (* (exp (* 1/2 (pow t 2))) (sqrt 2))) y) (sqrt z)))))
(* y (+ (* -1 (* (sqrt z) (sqrt 2))) (* 1/2 (* (/ (* x (sqrt 2)) y) (sqrt z)))))
(* y (- (* 1/2 (/ x y)) 1))
(* y (- (+ (* -1/4 (/ (pow x 2) (pow y 2))) (+ (* 1/4 (/ (pow x 2) (pow y 2))) (* 1/2 (/ x y)))) 1))
(* y (- (+ (* -1/4 (/ (pow x 2) (pow y 2))) (+ (* -1/8 (/ (pow x 3) (pow y 3))) (+ (* 1/8 (/ (pow x 3) (pow y 3))) (+ (* 1/4 (/ (pow x 2) (pow y 2))) (* 1/2 (/ x y)))))) 1))
(* y (+ (* -1 (* (sqrt z) (* (exp (* 1/2 (pow t 2))) (sqrt 2)))) (+ (* 1/2 (* (/ (* x (* (exp (* 1/2 (pow t 2))) (sqrt 2))) y) (sqrt z))) (* (/ (* (exp (* 1/2 (pow t 2))) (* (sqrt 2) (+ (* -1/4 (pow x 2)) (* 1/4 (pow x 2))))) (pow y 2)) (sqrt z)))))
(* y (+ (* -1 (* (sqrt z) (* (exp (* 1/2 (pow t 2))) (sqrt 2)))) (+ (* 1/2 (* (/ (* x (* (exp (* 1/2 (pow t 2))) (sqrt 2))) y) (sqrt z))) (+ (* (/ (* (exp (* 1/2 (pow t 2))) (* (sqrt 2) (+ (* -1/4 (pow x 2)) (* 1/4 (pow x 2))))) (pow y 2)) (sqrt z)) (* (/ (* (exp (* 1/2 (pow t 2))) (* (sqrt 2) (+ (* -1/8 (pow x 3)) (* 1/8 (pow x 3))))) (pow y 3)) (sqrt z))))))
(* y (+ (* -1 (* (sqrt z) (sqrt 2))) (+ (* 1/2 (* (/ (* x (sqrt 2)) y) (sqrt z))) (* (/ (* (sqrt 2) (+ (* -1/4 (pow x 2)) (* 1/4 (pow x 2)))) (pow y 2)) (sqrt z)))))
(* y (+ (* -1 (* (sqrt z) (sqrt 2))) (+ (* 1/2 (* (/ (* x (sqrt 2)) y) (sqrt z))) (+ (* (/ (* (sqrt 2) (+ (* -1/4 (pow x 2)) (* 1/4 (pow x 2)))) (pow y 2)) (sqrt z)) (* (/ (* (sqrt 2) (+ (* -1/8 (pow x 3)) (* 1/8 (pow x 3)))) (pow y 3)) (sqrt z))))))
(* (pow y 2) (- (* 1/4 (/ (pow x 2) (pow y 2))) 1))
(/ (+ (* -1/2 (* (/ (* x (sqrt 2)) y) (sqrt z))) (* (sqrt z) (sqrt 2))) y)
(/ (+ (* -1/2 (* (/ (* x (sqrt 2)) y) (sqrt z))) (+ (* 1/4 (* (/ (* (pow x 2) (sqrt 2)) (pow y 2)) (sqrt z))) (* (sqrt z) (sqrt 2)))) y)
(/ (+ (* -1/2 (* (/ (* x (sqrt 2)) y) (sqrt z))) (+ (* -1/8 (* (/ (* (pow x 3) (sqrt 2)) (pow y 3)) (sqrt z))) (+ (* 1/4 (* (/ (* (pow x 2) (sqrt 2)) (pow y 2)) (sqrt z))) (* (sqrt z) (sqrt 2))))) y)
(* -1 (* y (+ (* -1/2 (* (/ (* x (* (sqrt 2) (pow (sqrt (exp t)) t))) y) (sqrt z))) (* (sqrt z) (* (sqrt 2) (pow (sqrt (exp t)) t))))))
(* -1 (* y (+ (* -1/2 (/ (* x (pow (sqrt (exp t)) t)) y)) (pow (sqrt (exp t)) t))))
(* -1 (* y (+ (* -1/2 (* (/ (* x (* (exp (* 1/2 (pow t 2))) (sqrt 2))) y) (sqrt z))) (* (sqrt z) (* (exp (* 1/2 (pow t 2))) (sqrt 2))))))
(* -1 (* y (+ (* -1/2 (* (/ (* x (sqrt 2)) y) (sqrt z))) (* (sqrt z) (sqrt 2)))))
(* -1 (* y (+ 1 (* -1/2 (/ x y)))))
(* -1 (* y (+ 1 (* -1 (/ (+ (* -1 (/ (+ (* -1/4 (pow x 2)) (* 1/4 (pow x 2))) y)) (* 1/2 x)) y)))))
(* -1 (* y (+ 1 (* -1 (/ (+ (* -1 (/ (+ (* -1 (/ (+ (* -1/8 (pow x 3)) (* 1/8 (pow x 3))) y)) (+ (* -1/4 (pow x 2)) (* 1/4 (pow x 2)))) y)) (* 1/2 x)) y)))))
(* -1 (* y (+ (* -1 (/ (+ (* -1 (* (/ (* (exp (* 1/2 (pow t 2))) (* (sqrt 2) (+ (* -1/4 (pow x 2)) (* 1/4 (pow x 2))))) y) (sqrt z))) (* 1/2 (* (* x (* (exp (* 1/2 (pow t 2))) (sqrt 2))) (sqrt z)))) y)) (* (sqrt z) (* (exp (* 1/2 (pow t 2))) (sqrt 2))))))
(* -1 (* y (+ (* -1 (/ (+ (* -1 (/ (+ (* -1 (* (/ (* (exp (* 1/2 (pow t 2))) (* (sqrt 2) (+ (* -1/8 (pow x 3)) (* 1/8 (pow x 3))))) y) (sqrt z))) (* (sqrt z) (* (exp (* 1/2 (pow t 2))) (* (sqrt 2) (+ (* -1/4 (pow x 2)) (* 1/4 (pow x 2))))))) y)) (* 1/2 (* (* x (* (exp (* 1/2 (pow t 2))) (sqrt 2))) (sqrt z)))) y)) (* (sqrt z) (* (exp (* 1/2 (pow t 2))) (sqrt 2))))))
(* -1 (* y (+ (* -1 (/ (+ (* -1 (* (/ (* (sqrt 2) (+ (* -1/4 (pow x 2)) (* 1/4 (pow x 2)))) y) (sqrt z))) (* 1/2 (* (* x (sqrt 2)) (sqrt z)))) y)) (* (sqrt z) (sqrt 2)))))
(* -1 (* y (+ (* -1 (/ (+ (* -1 (/ (+ (* -1 (* (/ (* (sqrt 2) (+ (* -1/8 (pow x 3)) (* 1/8 (pow x 3)))) y) (sqrt z))) (* (sqrt z) (* (sqrt 2) (+ (* -1/4 (pow x 2)) (* 1/4 (pow x 2)))))) y)) (* 1/2 (* (* x (sqrt 2)) (sqrt z)))) y)) (* (sqrt z) (sqrt 2)))))
(* -1 (/ (+ (* -1 (* (sqrt z) (sqrt 2))) (* 1/2 (* (/ (* x (sqrt 2)) y) (sqrt z)))) y))
(* -1 (/ (+ (* -1 (* (sqrt z) (sqrt 2))) (* -1 (/ (+ (* -1/2 (* (* x (sqrt 2)) (sqrt z))) (* 1/4 (* (/ (* (pow x 2) (sqrt 2)) y) (sqrt z)))) y))) y))
(* -1 (/ (+ (* -1 (* (sqrt z) (sqrt 2))) (* -1 (/ (+ (* -1 (/ (+ (* -1/4 (* (* (pow x 2) (sqrt 2)) (sqrt z))) (* 1/8 (* (/ (* (pow x 3) (sqrt 2)) y) (sqrt z)))) y)) (* -1/2 (* (* x (sqrt 2)) (sqrt z)))) y))) y))
(* (sqrt z) (* (sqrt 2) (* (- (* 1/2 x) y) (pow (sqrt (exp t)) t))))
(* (sqrt z) (* (exp (* 1/2 (pow t 2))) (* (sqrt 2) (- (* 1/2 x) y))))
(* (sqrt z) (* (sqrt 2) (- (* 1/2 x) y)))
(* (sqrt z) (* (exp (* 1/2 (pow t 2))) (* (sqrt 2) (- (* 1/4 (/ (pow x 2) (+ y (* 1/2 x)))) (/ (pow y 2) (+ y (* 1/2 x)))))))
(* (sqrt z) (* (sqrt 2) (- (* 1/4 (/ (pow x 2) (+ y (* 1/2 x)))) (/ (pow y 2) (+ y (* 1/2 x))))))
(* (sqrt z) (/ (* (sqrt 2) (+ (* -1 (pow y 2)) (* 1/4 (pow x 2)))) (+ y (* 1/2 x))))
(* (sqrt z) (/ (* (exp (* 1/2 (pow t 2))) (* (sqrt 2) (+ (* -1 (pow y 2)) (* 1/4 (pow x 2))))) (+ y (* 1/2 x))))
(* (sqrt z) (sqrt 2))
(* (sqrt z) (/ (sqrt 2) (+ y (* 1/2 x))))
(* -1 (* (sqrt z) (* (sqrt -2) (* (sqrt -1) (* (- (* 1/2 x) y) (pow (sqrt (exp t)) t))))))
(* -1 (* (sqrt z) (* (exp (* 1/2 (pow t 2))) (* (sqrt -2) (* (sqrt -1) (- (* 1/2 x) y))))))
(* -1 (* (sqrt z) (* (sqrt -2) (* (sqrt -1) (- (* 1/2 x) y)))))
(* -1 (* (sqrt z) (* (exp (* 1/2 (pow t 2))) (* (sqrt -2) (* (sqrt -1) (- (* 1/4 (/ (pow x 2) (+ y (* 1/2 x)))) (/ (pow y 2) (+ y (* 1/2 x)))))))))
(* -1 (* (sqrt z) (* (sqrt -2) (* (sqrt -1) (- (* 1/4 (/ (pow x 2) (+ y (* 1/2 x)))) (/ (pow y 2) (+ y (* 1/2 x))))))))
(* -1 (* (sqrt z) (/ (* (sqrt -2) (* (sqrt -1) (+ (* -1 (pow y 2)) (* 1/4 (pow x 2))))) (+ y (* 1/2 x)))))
(* -1 (* (sqrt z) (/ (* (exp (* 1/2 (pow t 2))) (* (sqrt -2) (* (sqrt -1) (+ (* -1 (pow y 2)) (* 1/4 (pow x 2)))))) (+ y (* 1/2 x)))))
(* -1 (* (sqrt z) (* (sqrt -2) (sqrt -1))))
(* -1 (* (sqrt z) (/ (* (sqrt -2) (sqrt -1)) (+ y (* 1/2 x)))))
(+ (* 1/2 (* (* (pow t 2) (* (sqrt 2) (- (* 1/2 x) y))) (sqrt z))) (* (sqrt z) (* (sqrt 2) (- (* 1/2 x) y))))
(+ (* (sqrt z) (* (sqrt 2) (- (* 1/2 x) y))) (* (pow t 2) (+ (* 1/8 (* (* (pow t 2) (* (sqrt 2) (- (* 1/2 x) y))) (sqrt z))) (* 1/2 (* (sqrt z) (* (sqrt 2) (- (* 1/2 x) y)))))))
(+ (* (sqrt z) (* (sqrt 2) (- (* 1/2 x) y))) (* (pow t 2) (+ (* 1/2 (* (sqrt z) (* (sqrt 2) (- (* 1/2 x) y)))) (* (pow t 2) (+ (* 1/48 (* (* (pow t 2) (* (sqrt 2) (- (* 1/2 x) y))) (sqrt z))) (* 1/8 (* (sqrt z) (* (sqrt 2) (- (* 1/2 x) y)))))))))
(- (+ (* 1/2 x) (* 1/2 (* (pow t 2) (- (* 1/2 x) y)))) y)
(- (+ (* 1/2 x) (* (pow t 2) (+ (* 1/8 (* (pow t 2) (- (* 1/2 x) y))) (* 1/2 (- (* 1/2 x) y))))) y)
(- (+ (* 1/2 x) (* (pow t 2) (+ (* 1/2 (- (* 1/2 x) y)) (* (pow t 2) (+ (* 1/48 (* (pow t 2) (- (* 1/2 x) y))) (* 1/8 (- (* 1/2 x) y))))))) y)
1
(+ 1 (* 1/2 (pow t 2)))
(+ 1 (* (pow t 2) (+ 1/2 (* 1/8 (pow t 2)))))
(+ 1 (* (pow t 2) (+ 1/2 (* (pow t 2) (+ 1/8 (* 1/48 (pow t 2)))))))
(+ 1 (* 1/2 t))
(+ 1 (* t (+ 1/2 (* 1/8 t))))
(+ 1 (* t (+ 1/2 (* t (+ 1/8 (* 1/48 t))))))
(+ (* 1/2 (* (* (pow t 2) (* (sqrt 2) (- (* 1/4 (/ (pow x 2) (+ y (* 1/2 x)))) (/ (pow y 2) (+ y (* 1/2 x)))))) (sqrt z))) (* (sqrt z) (* (sqrt 2) (- (* 1/4 (/ (pow x 2) (+ y (* 1/2 x)))) (/ (pow y 2) (+ y (* 1/2 x)))))))
(+ (* (sqrt z) (* (sqrt 2) (- (* 1/4 (/ (pow x 2) (+ y (* 1/2 x)))) (/ (pow y 2) (+ y (* 1/2 x)))))) (* (pow t 2) (+ (* 1/8 (* (* (pow t 2) (* (sqrt 2) (- (* 1/4 (/ (pow x 2) (+ y (* 1/2 x)))) (/ (pow y 2) (+ y (* 1/2 x)))))) (sqrt z))) (* 1/2 (* (sqrt z) (* (sqrt 2) (- (* 1/4 (/ (pow x 2) (+ y (* 1/2 x)))) (/ (pow y 2) (+ y (* 1/2 x))))))))))
(+ (* (sqrt z) (* (sqrt 2) (- (* 1/4 (/ (pow x 2) (+ y (* 1/2 x)))) (/ (pow y 2) (+ y (* 1/2 x)))))) (* (pow t 2) (+ (* 1/2 (* (sqrt z) (* (sqrt 2) (- (* 1/4 (/ (pow x 2) (+ y (* 1/2 x)))) (/ (pow y 2) (+ y (* 1/2 x))))))) (* (pow t 2) (+ (* 1/48 (* (* (pow t 2) (* (sqrt 2) (- (* 1/4 (/ (pow x 2) (+ y (* 1/2 x)))) (/ (pow y 2) (+ y (* 1/2 x)))))) (sqrt z))) (* 1/8 (* (sqrt z) (* (sqrt 2) (- (* 1/4 (/ (pow x 2) (+ y (* 1/2 x)))) (/ (pow y 2) (+ y (* 1/2 x))))))))))))
(+ (* 1/2 (* (/ (* (pow t 2) (* (sqrt 2) (+ (* -1 (pow y 2)) (* 1/4 (pow x 2))))) (+ y (* 1/2 x))) (sqrt z))) (* (sqrt z) (/ (* (sqrt 2) (+ (* -1 (pow y 2)) (* 1/4 (pow x 2)))) (+ y (* 1/2 x)))))
(+ (* (sqrt z) (/ (* (sqrt 2) (+ (* -1 (pow y 2)) (* 1/4 (pow x 2)))) (+ y (* 1/2 x)))) (* (pow t 2) (+ (* 1/8 (* (/ (* (pow t 2) (* (sqrt 2) (+ (* -1 (pow y 2)) (* 1/4 (pow x 2))))) (+ y (* 1/2 x))) (sqrt z))) (* 1/2 (* (sqrt z) (/ (* (sqrt 2) (+ (* -1 (pow y 2)) (* 1/4 (pow x 2)))) (+ y (* 1/2 x))))))))
(+ (* (sqrt z) (/ (* (sqrt 2) (+ (* -1 (pow y 2)) (* 1/4 (pow x 2)))) (+ y (* 1/2 x)))) (* (pow t 2) (+ (* 1/2 (* (sqrt z) (/ (* (sqrt 2) (+ (* -1 (pow y 2)) (* 1/4 (pow x 2)))) (+ y (* 1/2 x))))) (* (pow t 2) (+ (* 1/48 (* (/ (* (pow t 2) (* (sqrt 2) (+ (* -1 (pow y 2)) (* 1/4 (pow x 2))))) (+ y (* 1/2 x))) (sqrt z))) (* 1/8 (* (sqrt z) (/ (* (sqrt 2) (+ (* -1 (pow y 2)) (* 1/4 (pow x 2)))) (+ y (* 1/2 x))))))))))
(+ 1 t)
(+ 1 (* t (+ 1 (* 1/2 t))))
(+ 1 (* t (+ 1 (* t (+ 1/2 (* 1/6 t))))))
1/8
(+ 1/8 (* 1/48 (pow t 2)))
(* 1/2 (pow t 2))
(* (- (* 1/2 x) y) (pow (sqrt (exp t)) t))
(pow (sqrt (exp t)) t)
(sqrt (exp t))
(exp t)
(exp (* 1/2 (pow t 2)))
(* 1/48 (pow t 2))
(* (pow t 2) (+ 1/48 (* 1/8 (/ 1 (pow t 2)))))
Calls

12 calls:

TimeVariablePointExpression
39.0ms
z
@-inf
((* (* (pow (sqrt (exp t)) t) (- (* 1/2 x) y)) (sqrt (* 2 z))) (* (pow (sqrt (exp t)) t) (- (* 1/2 x) y)) (pow (sqrt (exp t)) t) (sqrt (exp t)) (* (* (- (* x 1/2) y) (sqrt (* z 2))) (exp (/ (* t t) 2))) (* (- (* x 1/2) y) (sqrt (* z 2))) (- (* x 1/2) y) (* x 1/2) (* (* (- (* x 1/2) y) (sqrt (* z 2))) (exp (/ (* t t) 2))) (+ (* (* x x) (/ 1/4 (+ (* 1/2 x) y))) (neg (* y (/ y (+ (* 1/2 x) y))))) (* (* (+ (* (* x x) (/ 1/4 (+ (* 1/2 x) y))) (neg (* y (/ y (+ (* 1/2 x) y))))) (sqrt (* z 2))) (exp (/ (* t t) 2))) (* (+ (* (* x x) (/ 1/4 (+ (* 1/2 x) y))) (neg (* y (/ y (+ (* 1/2 x) y))))) (sqrt (* z 2))) (* x x) (pow (* 1/2 x) 2) (* (+ (* (neg y) y) (pow (* 1/2 x) 2)) (/ (sqrt (* 2 z)) (+ (* 1/2 x) y))) (* (* (+ (* (neg y) y) (pow (* 1/2 x) 2)) (/ (sqrt (* 2 z)) (+ (* 1/2 x) y))) (exp (/ (* t t) 2))) (+ (* (neg y) y) (pow (* 1/2 x) 2)) (exp t) (sqrt (* 2 z)) (exp (/ (* t t) 2)) (sqrt (* z 2)) (exp (/ (* t t) 2)) (+ (* 1/48 (* t t)) 1/8) (/ (* t t) 2) (/ (sqrt (* 2 z)) (+ (* 1/2 x) y)))
38.0ms
z
@0
((* (* (pow (sqrt (exp t)) t) (- (* 1/2 x) y)) (sqrt (* 2 z))) (* (pow (sqrt (exp t)) t) (- (* 1/2 x) y)) (pow (sqrt (exp t)) t) (sqrt (exp t)) (* (* (- (* x 1/2) y) (sqrt (* z 2))) (exp (/ (* t t) 2))) (* (- (* x 1/2) y) (sqrt (* z 2))) (- (* x 1/2) y) (* x 1/2) (* (* (- (* x 1/2) y) (sqrt (* z 2))) (exp (/ (* t t) 2))) (+ (* (* x x) (/ 1/4 (+ (* 1/2 x) y))) (neg (* y (/ y (+ (* 1/2 x) y))))) (* (* (+ (* (* x x) (/ 1/4 (+ (* 1/2 x) y))) (neg (* y (/ y (+ (* 1/2 x) y))))) (sqrt (* z 2))) (exp (/ (* t t) 2))) (* (+ (* (* x x) (/ 1/4 (+ (* 1/2 x) y))) (neg (* y (/ y (+ (* 1/2 x) y))))) (sqrt (* z 2))) (* x x) (pow (* 1/2 x) 2) (* (+ (* (neg y) y) (pow (* 1/2 x) 2)) (/ (sqrt (* 2 z)) (+ (* 1/2 x) y))) (* (* (+ (* (neg y) y) (pow (* 1/2 x) 2)) (/ (sqrt (* 2 z)) (+ (* 1/2 x) y))) (exp (/ (* t t) 2))) (+ (* (neg y) y) (pow (* 1/2 x) 2)) (exp t) (sqrt (* 2 z)) (exp (/ (* t t) 2)) (sqrt (* z 2)) (exp (/ (* t t) 2)) (+ (* 1/48 (* t t)) 1/8) (/ (* t t) 2) (/ (sqrt (* 2 z)) (+ (* 1/2 x) y)))
22.0ms
x
@-inf
((* (* (pow (sqrt (exp t)) t) (- (* 1/2 x) y)) (sqrt (* 2 z))) (* (pow (sqrt (exp t)) t) (- (* 1/2 x) y)) (pow (sqrt (exp t)) t) (sqrt (exp t)) (* (* (- (* x 1/2) y) (sqrt (* z 2))) (exp (/ (* t t) 2))) (* (- (* x 1/2) y) (sqrt (* z 2))) (- (* x 1/2) y) (* x 1/2) (* (* (- (* x 1/2) y) (sqrt (* z 2))) (exp (/ (* t t) 2))) (+ (* (* x x) (/ 1/4 (+ (* 1/2 x) y))) (neg (* y (/ y (+ (* 1/2 x) y))))) (* (* (+ (* (* x x) (/ 1/4 (+ (* 1/2 x) y))) (neg (* y (/ y (+ (* 1/2 x) y))))) (sqrt (* z 2))) (exp (/ (* t t) 2))) (* (+ (* (* x x) (/ 1/4 (+ (* 1/2 x) y))) (neg (* y (/ y (+ (* 1/2 x) y))))) (sqrt (* z 2))) (* x x) (pow (* 1/2 x) 2) (* (+ (* (neg y) y) (pow (* 1/2 x) 2)) (/ (sqrt (* 2 z)) (+ (* 1/2 x) y))) (* (* (+ (* (neg y) y) (pow (* 1/2 x) 2)) (/ (sqrt (* 2 z)) (+ (* 1/2 x) y))) (exp (/ (* t t) 2))) (+ (* (neg y) y) (pow (* 1/2 x) 2)) (exp t) (sqrt (* 2 z)) (exp (/ (* t t) 2)) (sqrt (* z 2)) (exp (/ (* t t) 2)) (+ (* 1/48 (* t t)) 1/8) (/ (* t t) 2) (/ (sqrt (* 2 z)) (+ (* 1/2 x) y)))
14.0ms
x
@0
((* (* (pow (sqrt (exp t)) t) (- (* 1/2 x) y)) (sqrt (* 2 z))) (* (pow (sqrt (exp t)) t) (- (* 1/2 x) y)) (pow (sqrt (exp t)) t) (sqrt (exp t)) (* (* (- (* x 1/2) y) (sqrt (* z 2))) (exp (/ (* t t) 2))) (* (- (* x 1/2) y) (sqrt (* z 2))) (- (* x 1/2) y) (* x 1/2) (* (* (- (* x 1/2) y) (sqrt (* z 2))) (exp (/ (* t t) 2))) (+ (* (* x x) (/ 1/4 (+ (* 1/2 x) y))) (neg (* y (/ y (+ (* 1/2 x) y))))) (* (* (+ (* (* x x) (/ 1/4 (+ (* 1/2 x) y))) (neg (* y (/ y (+ (* 1/2 x) y))))) (sqrt (* z 2))) (exp (/ (* t t) 2))) (* (+ (* (* x x) (/ 1/4 (+ (* 1/2 x) y))) (neg (* y (/ y (+ (* 1/2 x) y))))) (sqrt (* z 2))) (* x x) (pow (* 1/2 x) 2) (* (+ (* (neg y) y) (pow (* 1/2 x) 2)) (/ (sqrt (* 2 z)) (+ (* 1/2 x) y))) (* (* (+ (* (neg y) y) (pow (* 1/2 x) 2)) (/ (sqrt (* 2 z)) (+ (* 1/2 x) y))) (exp (/ (* t t) 2))) (+ (* (neg y) y) (pow (* 1/2 x) 2)) (exp t) (sqrt (* 2 z)) (exp (/ (* t t) 2)) (sqrt (* z 2)) (exp (/ (* t t) 2)) (+ (* 1/48 (* t t)) 1/8) (/ (* t t) 2) (/ (sqrt (* 2 z)) (+ (* 1/2 x) y)))
12.0ms
x
@inf
((* (* (pow (sqrt (exp t)) t) (- (* 1/2 x) y)) (sqrt (* 2 z))) (* (pow (sqrt (exp t)) t) (- (* 1/2 x) y)) (pow (sqrt (exp t)) t) (sqrt (exp t)) (* (* (- (* x 1/2) y) (sqrt (* z 2))) (exp (/ (* t t) 2))) (* (- (* x 1/2) y) (sqrt (* z 2))) (- (* x 1/2) y) (* x 1/2) (* (* (- (* x 1/2) y) (sqrt (* z 2))) (exp (/ (* t t) 2))) (+ (* (* x x) (/ 1/4 (+ (* 1/2 x) y))) (neg (* y (/ y (+ (* 1/2 x) y))))) (* (* (+ (* (* x x) (/ 1/4 (+ (* 1/2 x) y))) (neg (* y (/ y (+ (* 1/2 x) y))))) (sqrt (* z 2))) (exp (/ (* t t) 2))) (* (+ (* (* x x) (/ 1/4 (+ (* 1/2 x) y))) (neg (* y (/ y (+ (* 1/2 x) y))))) (sqrt (* z 2))) (* x x) (pow (* 1/2 x) 2) (* (+ (* (neg y) y) (pow (* 1/2 x) 2)) (/ (sqrt (* 2 z)) (+ (* 1/2 x) y))) (* (* (+ (* (neg y) y) (pow (* 1/2 x) 2)) (/ (sqrt (* 2 z)) (+ (* 1/2 x) y))) (exp (/ (* t t) 2))) (+ (* (neg y) y) (pow (* 1/2 x) 2)) (exp t) (sqrt (* 2 z)) (exp (/ (* t t) 2)) (sqrt (* z 2)) (exp (/ (* t t) 2)) (+ (* 1/48 (* t t)) 1/8) (/ (* t t) 2) (/ (sqrt (* 2 z)) (+ (* 1/2 x) y)))

simplify174.0ms (1.5%)

Memory
51.3MiB live, 198.1MiB allocated
Algorithm
egg-herbie
Iterations

Useful iterations: 0 (0.0ms)

IterNodesCost
06893865
122523468
081093313
Stop Event
iter limit
node limit
Counts
136 → 136
Calls
Call 1
Inputs
(* -1 (* (* y (* (sqrt 2) (pow (sqrt (exp t)) t))) (sqrt z)))
(+ (* -1 (* (* y (* (sqrt 2) (pow (sqrt (exp t)) t))) (sqrt z))) (* 1/2 (* (* x (* (sqrt 2) (pow (sqrt (exp t)) t))) (sqrt z))))
(* -1 (* y (pow (sqrt (exp t)) t)))
(+ (* -1 (* y (pow (sqrt (exp t)) t))) (* 1/2 (* x (pow (sqrt (exp t)) t))))
(* -1 (* (* y (* (exp (* 1/2 (pow t 2))) (sqrt 2))) (sqrt z)))
(+ (* -1 (* (* y (* (exp (* 1/2 (pow t 2))) (sqrt 2))) (sqrt z))) (* 1/2 (* (* x (* (exp (* 1/2 (pow t 2))) (sqrt 2))) (sqrt z))))
(* -1 (* (* y (sqrt 2)) (sqrt z)))
(+ (* -1 (* (* y (sqrt 2)) (sqrt z))) (* 1/2 (* (* x (sqrt 2)) (sqrt z))))
(* -1 y)
(- (* 1/2 x) y)
(* 1/2 x)
(pow x 2)
(* 1/4 (pow x 2))
(* -1 (pow y 2))
(+ (* -1 (pow y 2)) (* 1/4 (pow x 2)))
(* (/ (sqrt 2) y) (sqrt z))
(+ (* -1/2 (* (/ (* x (sqrt 2)) (pow y 2)) (sqrt z))) (* (/ (sqrt 2) y) (sqrt z)))
(+ (* x (+ (* -1/2 (* (/ (sqrt 2) (pow y 2)) (sqrt z))) (* 1/4 (* (/ (* x (sqrt 2)) (pow y 3)) (sqrt z))))) (* (/ (sqrt 2) y) (sqrt z)))
(+ (* x (+ (* -1/2 (* (/ (sqrt 2) (pow y 2)) (sqrt z))) (* x (+ (* -1/8 (* (/ (* x (sqrt 2)) (pow y 4)) (sqrt z))) (* 1/4 (* (/ (sqrt 2) (pow y 3)) (sqrt z))))))) (* (/ (sqrt 2) y) (sqrt z)))
(* 1/2 (* (* x (* (sqrt 2) (pow (sqrt (exp t)) t))) (sqrt z)))
(* x (+ (* -1 (* (/ (* y (* (sqrt 2) (pow (sqrt (exp t)) t))) x) (sqrt z))) (* 1/2 (* (sqrt z) (* (sqrt 2) (pow (sqrt (exp t)) t))))))
(* 1/2 (* x (pow (sqrt (exp t)) t)))
(* x (+ (* -1 (/ (* y (pow (sqrt (exp t)) t)) x)) (* 1/2 (pow (sqrt (exp t)) t))))
(* 1/2 (* (* x (* (exp (* 1/2 (pow t 2))) (sqrt 2))) (sqrt z)))
(* x (+ (* -1 (* (/ (* y (* (exp (* 1/2 (pow t 2))) (sqrt 2))) x) (sqrt z))) (* 1/2 (* (sqrt z) (* (exp (* 1/2 (pow t 2))) (sqrt 2))))))
(* 1/2 (* (* x (sqrt 2)) (sqrt z)))
(* x (+ (* -1 (* (/ (* y (sqrt 2)) x) (sqrt z))) (* 1/2 (* (sqrt z) (sqrt 2)))))
(* x (+ 1/2 (* -1 (/ y x))))
(* x (+ 1/2 (+ (* -4 (/ (pow y 3) (pow x 3))) (+ (* -1 (/ y x)) (* 4 (/ (pow y 3) (pow x 3)))))))
(* x (+ 1/2 (+ (* -8 (/ (pow y 4) (pow x 4))) (+ (* -4 (/ (pow y 3) (pow x 3))) (+ (* -1 (/ y x)) (+ (* 4 (/ (pow y 3) (pow x 3))) (* 8 (/ (pow y 4) (pow x 4)))))))))
(* x (+ (* -1 (* (/ (* y (* (exp (* 1/2 (pow t 2))) (sqrt 2))) x) (sqrt z))) (+ (* 1/2 (* (sqrt z) (* (exp (* 1/2 (pow t 2))) (sqrt 2)))) (* (/ (* (exp (* 1/2 (pow t 2))) (* (sqrt 2) (+ (* -4 (pow y 3)) (* 4 (pow y 3))))) (pow x 3)) (sqrt z)))))
(* x (+ (* -1 (* (/ (* y (* (exp (* 1/2 (pow t 2))) (sqrt 2))) x) (sqrt z))) (+ (* 1/2 (* (sqrt z) (* (exp (* 1/2 (pow t 2))) (sqrt 2)))) (+ (* (/ (* (exp (* 1/2 (pow t 2))) (* (sqrt 2) (+ (* -8 (pow y 4)) (* 8 (pow y 4))))) (pow x 4)) (sqrt z)) (* (/ (* (exp (* 1/2 (pow t 2))) (* (sqrt 2) (+ (* -4 (pow y 3)) (* 4 (pow y 3))))) (pow x 3)) (sqrt z))))))
(* x (+ (* -1 (* (/ (* y (sqrt 2)) x) (sqrt z))) (+ (* 1/2 (* (sqrt z) (sqrt 2))) (* (/ (* (sqrt 2) (+ (* -4 (pow y 3)) (* 4 (pow y 3)))) (pow x 3)) (sqrt z)))))
(* x (+ (* -1 (* (/ (* y (sqrt 2)) x) (sqrt z))) (+ (* 1/2 (* (sqrt z) (sqrt 2))) (+ (* (/ (* (sqrt 2) (+ (* -8 (pow y 4)) (* 8 (pow y 4)))) (pow x 4)) (sqrt z)) (* (/ (* (sqrt 2) (+ (* -4 (pow y 3)) (* 4 (pow y 3)))) (pow x 3)) (sqrt z))))))
(* (pow x 2) (+ 1/4 (* -1 (/ (pow y 2) (pow x 2)))))
(* 2 (* (/ (sqrt 2) x) (sqrt z)))
(/ (+ (* -4 (* (/ (* y (sqrt 2)) x) (sqrt z))) (* 2 (* (sqrt z) (sqrt 2)))) x)
(/ (+ (* -4 (* (/ (* y (sqrt 2)) x) (sqrt z))) (+ (* 2 (* (sqrt z) (sqrt 2))) (* 8 (* (/ (* (pow y 2) (sqrt 2)) (pow x 2)) (sqrt z))))) x)
(/ (+ (* -16 (* (/ (* (pow y 3) (sqrt 2)) (pow x 3)) (sqrt z))) (+ (* -4 (* (/ (* y (sqrt 2)) x) (sqrt z))) (+ (* 2 (* (sqrt z) (sqrt 2))) (* 8 (* (/ (* (pow y 2) (sqrt 2)) (pow x 2)) (sqrt z)))))) x)
(* -1 (* x (+ (* -1/2 (* (sqrt z) (* (sqrt 2) (pow (sqrt (exp t)) t)))) (* (/ (* y (* (sqrt 2) (pow (sqrt (exp t)) t))) x) (sqrt z)))))
(* -1 (* x (+ (* -1/2 (pow (sqrt (exp t)) t)) (/ (* y (pow (sqrt (exp t)) t)) x))))
(* -1 (* x (+ (* -1/2 (* (sqrt z) (* (exp (* 1/2 (pow t 2))) (sqrt 2)))) (* (/ (* y (* (exp (* 1/2 (pow t 2))) (sqrt 2))) x) (sqrt z)))))
(* -1 (* x (+ (* -1/2 (* (sqrt z) (sqrt 2))) (* (/ (* y (sqrt 2)) x) (sqrt z)))))
(* -1 (* x (- (/ y x) 1/2)))
(* -1 (* x (- (* -1 (/ (+ (* -4 (/ (pow y 3) (pow x 2))) (+ (* -1 y) (* 4 (/ (pow y 3) (pow x 2))))) x)) 1/2)))
(* -1 (* x (- (* -1 (/ (+ (* -4 (/ (pow y 3) (pow x 2))) (+ (* -1 y) (+ (* -1 (/ (+ (* -8 (pow y 4)) (* 8 (pow y 4))) (pow x 3))) (* 4 (/ (pow y 3) (pow x 2)))))) x)) 1/2)))
(* -1 (* x (+ (* -1 (/ (+ (* -1 (* (* y (* (exp (* 1/2 (pow t 2))) (sqrt 2))) (sqrt z))) (* (/ (* (exp (* 1/2 (pow t 2))) (* (sqrt 2) (+ (* -4 (pow y 3)) (* 4 (pow y 3))))) (pow x 2)) (sqrt z))) x)) (* -1/2 (* (sqrt z) (* (exp (* 1/2 (pow t 2))) (sqrt 2)))))))
(* -1 (* x (+ (* -1 (/ (+ (* -1 (* (* y (* (exp (* 1/2 (pow t 2))) (sqrt 2))) (sqrt z))) (+ (* -1 (* (/ (* (exp (* 1/2 (pow t 2))) (* (sqrt 2) (+ (* -8 (pow y 4)) (* 8 (pow y 4))))) (pow x 3)) (sqrt z))) (* (/ (* (exp (* 1/2 (pow t 2))) (* (sqrt 2) (+ (* -4 (pow y 3)) (* 4 (pow y 3))))) (pow x 2)) (sqrt z)))) x)) (* -1/2 (* (sqrt z) (* (exp (* 1/2 (pow t 2))) (sqrt 2)))))))
(* -1 (* x (+ (* -1 (/ (+ (* -1 (* (* y (sqrt 2)) (sqrt z))) (* (/ (* (sqrt 2) (+ (* -4 (pow y 3)) (* 4 (pow y 3)))) (pow x 2)) (sqrt z))) x)) (* -1/2 (* (sqrt z) (sqrt 2))))))
(* -1 (* x (+ (* -1 (/ (+ (* -1 (* (* y (sqrt 2)) (sqrt z))) (+ (* -1 (* (/ (* (sqrt 2) (+ (* -8 (pow y 4)) (* 8 (pow y 4)))) (pow x 3)) (sqrt z))) (* (/ (* (sqrt 2) (+ (* -4 (pow y 3)) (* 4 (pow y 3)))) (pow x 2)) (sqrt z)))) x)) (* -1/2 (* (sqrt z) (sqrt 2))))))
(* -1 (/ (+ (* -2 (* (sqrt z) (sqrt 2))) (* 4 (* (/ (* y (sqrt 2)) x) (sqrt z)))) x))
(* -1 (/ (+ (* -2 (* (sqrt z) (sqrt 2))) (* -1 (/ (+ (* -4 (* (* y (sqrt 2)) (sqrt z))) (* 8 (* (/ (* (pow y 2) (sqrt 2)) x) (sqrt z)))) x))) x))
(* -1 (/ (+ (* -2 (* (sqrt z) (sqrt 2))) (* -1 (/ (+ (* -4 (* (* y (sqrt 2)) (sqrt z))) (* -1 (/ (+ (* -8 (* (* (pow y 2) (sqrt 2)) (sqrt z))) (* 16 (* (/ (* (pow y 3) (sqrt 2)) x) (sqrt z)))) x))) x))) x))
(+ (* -1 y) (* 1/2 x))
(+ (* -4 (* (/ (* y (sqrt 2)) (pow x 2)) (sqrt z))) (* 2 (* (/ (sqrt 2) x) (sqrt z))))
(+ (* 2 (* (/ (sqrt 2) x) (sqrt z))) (* y (+ (* -4 (* (/ (sqrt 2) (pow x 2)) (sqrt z))) (* 8 (* (/ (* y (sqrt 2)) (pow x 3)) (sqrt z))))))
(+ (* 2 (* (/ (sqrt 2) x) (sqrt z))) (* y (+ (* -4 (* (/ (sqrt 2) (pow x 2)) (sqrt z))) (* y (+ (* -16 (* (/ (* y (sqrt 2)) (pow x 4)) (sqrt z))) (* 8 (* (/ (sqrt 2) (pow x 3)) (sqrt z))))))))
(* y (+ (* -1 (* (sqrt z) (* (sqrt 2) (pow (sqrt (exp t)) t)))) (* 1/2 (* (/ (* x (* (sqrt 2) (pow (sqrt (exp t)) t))) y) (sqrt z)))))
(* y (+ (* -1 (pow (sqrt (exp t)) t)) (* 1/2 (/ (* x (pow (sqrt (exp t)) t)) y))))
(* y (+ (* -1 (* (sqrt z) (* (exp (* 1/2 (pow t 2))) (sqrt 2)))) (* 1/2 (* (/ (* x (* (exp (* 1/2 (pow t 2))) (sqrt 2))) y) (sqrt z)))))
(* y (+ (* -1 (* (sqrt z) (sqrt 2))) (* 1/2 (* (/ (* x (sqrt 2)) y) (sqrt z)))))
(* y (- (* 1/2 (/ x y)) 1))
(* y (- (+ (* -1/4 (/ (pow x 2) (pow y 2))) (+ (* 1/4 (/ (pow x 2) (pow y 2))) (* 1/2 (/ x y)))) 1))
(* y (- (+ (* -1/4 (/ (pow x 2) (pow y 2))) (+ (* -1/8 (/ (pow x 3) (pow y 3))) (+ (* 1/8 (/ (pow x 3) (pow y 3))) (+ (* 1/4 (/ (pow x 2) (pow y 2))) (* 1/2 (/ x y)))))) 1))
(* y (+ (* -1 (* (sqrt z) (* (exp (* 1/2 (pow t 2))) (sqrt 2)))) (+ (* 1/2 (* (/ (* x (* (exp (* 1/2 (pow t 2))) (sqrt 2))) y) (sqrt z))) (* (/ (* (exp (* 1/2 (pow t 2))) (* (sqrt 2) (+ (* -1/4 (pow x 2)) (* 1/4 (pow x 2))))) (pow y 2)) (sqrt z)))))
(* y (+ (* -1 (* (sqrt z) (* (exp (* 1/2 (pow t 2))) (sqrt 2)))) (+ (* 1/2 (* (/ (* x (* (exp (* 1/2 (pow t 2))) (sqrt 2))) y) (sqrt z))) (+ (* (/ (* (exp (* 1/2 (pow t 2))) (* (sqrt 2) (+ (* -1/4 (pow x 2)) (* 1/4 (pow x 2))))) (pow y 2)) (sqrt z)) (* (/ (* (exp (* 1/2 (pow t 2))) (* (sqrt 2) (+ (* -1/8 (pow x 3)) (* 1/8 (pow x 3))))) (pow y 3)) (sqrt z))))))
(* y (+ (* -1 (* (sqrt z) (sqrt 2))) (+ (* 1/2 (* (/ (* x (sqrt 2)) y) (sqrt z))) (* (/ (* (sqrt 2) (+ (* -1/4 (pow x 2)) (* 1/4 (pow x 2)))) (pow y 2)) (sqrt z)))))
(* y (+ (* -1 (* (sqrt z) (sqrt 2))) (+ (* 1/2 (* (/ (* x (sqrt 2)) y) (sqrt z))) (+ (* (/ (* (sqrt 2) (+ (* -1/4 (pow x 2)) (* 1/4 (pow x 2)))) (pow y 2)) (sqrt z)) (* (/ (* (sqrt 2) (+ (* -1/8 (pow x 3)) (* 1/8 (pow x 3)))) (pow y 3)) (sqrt z))))))
(* (pow y 2) (- (* 1/4 (/ (pow x 2) (pow y 2))) 1))
(/ (+ (* -1/2 (* (/ (* x (sqrt 2)) y) (sqrt z))) (* (sqrt z) (sqrt 2))) y)
(/ (+ (* -1/2 (* (/ (* x (sqrt 2)) y) (sqrt z))) (+ (* 1/4 (* (/ (* (pow x 2) (sqrt 2)) (pow y 2)) (sqrt z))) (* (sqrt z) (sqrt 2)))) y)
(/ (+ (* -1/2 (* (/ (* x (sqrt 2)) y) (sqrt z))) (+ (* -1/8 (* (/ (* (pow x 3) (sqrt 2)) (pow y 3)) (sqrt z))) (+ (* 1/4 (* (/ (* (pow x 2) (sqrt 2)) (pow y 2)) (sqrt z))) (* (sqrt z) (sqrt 2))))) y)
(* -1 (* y (+ (* -1/2 (* (/ (* x (* (sqrt 2) (pow (sqrt (exp t)) t))) y) (sqrt z))) (* (sqrt z) (* (sqrt 2) (pow (sqrt (exp t)) t))))))
(* -1 (* y (+ (* -1/2 (/ (* x (pow (sqrt (exp t)) t)) y)) (pow (sqrt (exp t)) t))))
(* -1 (* y (+ (* -1/2 (* (/ (* x (* (exp (* 1/2 (pow t 2))) (sqrt 2))) y) (sqrt z))) (* (sqrt z) (* (exp (* 1/2 (pow t 2))) (sqrt 2))))))
(* -1 (* y (+ (* -1/2 (* (/ (* x (sqrt 2)) y) (sqrt z))) (* (sqrt z) (sqrt 2)))))
(* -1 (* y (+ 1 (* -1/2 (/ x y)))))
(* -1 (* y (+ 1 (* -1 (/ (+ (* -1 (/ (+ (* -1/4 (pow x 2)) (* 1/4 (pow x 2))) y)) (* 1/2 x)) y)))))
(* -1 (* y (+ 1 (* -1 (/ (+ (* -1 (/ (+ (* -1 (/ (+ (* -1/8 (pow x 3)) (* 1/8 (pow x 3))) y)) (+ (* -1/4 (pow x 2)) (* 1/4 (pow x 2)))) y)) (* 1/2 x)) y)))))
(* -1 (* y (+ (* -1 (/ (+ (* -1 (* (/ (* (exp (* 1/2 (pow t 2))) (* (sqrt 2) (+ (* -1/4 (pow x 2)) (* 1/4 (pow x 2))))) y) (sqrt z))) (* 1/2 (* (* x (* (exp (* 1/2 (pow t 2))) (sqrt 2))) (sqrt z)))) y)) (* (sqrt z) (* (exp (* 1/2 (pow t 2))) (sqrt 2))))))
(* -1 (* y (+ (* -1 (/ (+ (* -1 (/ (+ (* -1 (* (/ (* (exp (* 1/2 (pow t 2))) (* (sqrt 2) (+ (* -1/8 (pow x 3)) (* 1/8 (pow x 3))))) y) (sqrt z))) (* (sqrt z) (* (exp (* 1/2 (pow t 2))) (* (sqrt 2) (+ (* -1/4 (pow x 2)) (* 1/4 (pow x 2))))))) y)) (* 1/2 (* (* x (* (exp (* 1/2 (pow t 2))) (sqrt 2))) (sqrt z)))) y)) (* (sqrt z) (* (exp (* 1/2 (pow t 2))) (sqrt 2))))))
(* -1 (* y (+ (* -1 (/ (+ (* -1 (* (/ (* (sqrt 2) (+ (* -1/4 (pow x 2)) (* 1/4 (pow x 2)))) y) (sqrt z))) (* 1/2 (* (* x (sqrt 2)) (sqrt z)))) y)) (* (sqrt z) (sqrt 2)))))
(* -1 (* y (+ (* -1 (/ (+ (* -1 (/ (+ (* -1 (* (/ (* (sqrt 2) (+ (* -1/8 (pow x 3)) (* 1/8 (pow x 3)))) y) (sqrt z))) (* (sqrt z) (* (sqrt 2) (+ (* -1/4 (pow x 2)) (* 1/4 (pow x 2)))))) y)) (* 1/2 (* (* x (sqrt 2)) (sqrt z)))) y)) (* (sqrt z) (sqrt 2)))))
(* -1 (/ (+ (* -1 (* (sqrt z) (sqrt 2))) (* 1/2 (* (/ (* x (sqrt 2)) y) (sqrt z)))) y))
(* -1 (/ (+ (* -1 (* (sqrt z) (sqrt 2))) (* -1 (/ (+ (* -1/2 (* (* x (sqrt 2)) (sqrt z))) (* 1/4 (* (/ (* (pow x 2) (sqrt 2)) y) (sqrt z)))) y))) y))
(* -1 (/ (+ (* -1 (* (sqrt z) (sqrt 2))) (* -1 (/ (+ (* -1 (/ (+ (* -1/4 (* (* (pow x 2) (sqrt 2)) (sqrt z))) (* 1/8 (* (/ (* (pow x 3) (sqrt 2)) y) (sqrt z)))) y)) (* -1/2 (* (* x (sqrt 2)) (sqrt z)))) y))) y))
(* (sqrt z) (* (sqrt 2) (* (- (* 1/2 x) y) (pow (sqrt (exp t)) t))))
(* (sqrt z) (* (exp (* 1/2 (pow t 2))) (* (sqrt 2) (- (* 1/2 x) y))))
(* (sqrt z) (* (sqrt 2) (- (* 1/2 x) y)))
(* (sqrt z) (* (exp (* 1/2 (pow t 2))) (* (sqrt 2) (- (* 1/4 (/ (pow x 2) (+ y (* 1/2 x)))) (/ (pow y 2) (+ y (* 1/2 x)))))))
(* (sqrt z) (* (sqrt 2) (- (* 1/4 (/ (pow x 2) (+ y (* 1/2 x)))) (/ (pow y 2) (+ y (* 1/2 x))))))
(* (sqrt z) (/ (* (sqrt 2) (+ (* -1 (pow y 2)) (* 1/4 (pow x 2)))) (+ y (* 1/2 x))))
(* (sqrt z) (/ (* (exp (* 1/2 (pow t 2))) (* (sqrt 2) (+ (* -1 (pow y 2)) (* 1/4 (pow x 2))))) (+ y (* 1/2 x))))
(* (sqrt z) (sqrt 2))
(* (sqrt z) (/ (sqrt 2) (+ y (* 1/2 x))))
(* -1 (* (sqrt z) (* (sqrt -2) (* (sqrt -1) (* (- (* 1/2 x) y) (pow (sqrt (exp t)) t))))))
(* -1 (* (sqrt z) (* (exp (* 1/2 (pow t 2))) (* (sqrt -2) (* (sqrt -1) (- (* 1/2 x) y))))))
(* -1 (* (sqrt z) (* (sqrt -2) (* (sqrt -1) (- (* 1/2 x) y)))))
(* -1 (* (sqrt z) (* (exp (* 1/2 (pow t 2))) (* (sqrt -2) (* (sqrt -1) (- (* 1/4 (/ (pow x 2) (+ y (* 1/2 x)))) (/ (pow y 2) (+ y (* 1/2 x)))))))))
(* -1 (* (sqrt z) (* (sqrt -2) (* (sqrt -1) (- (* 1/4 (/ (pow x 2) (+ y (* 1/2 x)))) (/ (pow y 2) (+ y (* 1/2 x))))))))
(* -1 (* (sqrt z) (/ (* (sqrt -2) (* (sqrt -1) (+ (* -1 (pow y 2)) (* 1/4 (pow x 2))))) (+ y (* 1/2 x)))))
(* -1 (* (sqrt z) (/ (* (exp (* 1/2 (pow t 2))) (* (sqrt -2) (* (sqrt -1) (+ (* -1 (pow y 2)) (* 1/4 (pow x 2)))))) (+ y (* 1/2 x)))))
(* -1 (* (sqrt z) (* (sqrt -2) (sqrt -1))))
(* -1 (* (sqrt z) (/ (* (sqrt -2) (sqrt -1)) (+ y (* 1/2 x)))))
(+ (* 1/2 (* (* (pow t 2) (* (sqrt 2) (- (* 1/2 x) y))) (sqrt z))) (* (sqrt z) (* (sqrt 2) (- (* 1/2 x) y))))
(+ (* (sqrt z) (* (sqrt 2) (- (* 1/2 x) y))) (* (pow t 2) (+ (* 1/8 (* (* (pow t 2) (* (sqrt 2) (- (* 1/2 x) y))) (sqrt z))) (* 1/2 (* (sqrt z) (* (sqrt 2) (- (* 1/2 x) y)))))))
(+ (* (sqrt z) (* (sqrt 2) (- (* 1/2 x) y))) (* (pow t 2) (+ (* 1/2 (* (sqrt z) (* (sqrt 2) (- (* 1/2 x) y)))) (* (pow t 2) (+ (* 1/48 (* (* (pow t 2) (* (sqrt 2) (- (* 1/2 x) y))) (sqrt z))) (* 1/8 (* (sqrt z) (* (sqrt 2) (- (* 1/2 x) y)))))))))
(- (+ (* 1/2 x) (* 1/2 (* (pow t 2) (- (* 1/2 x) y)))) y)
(- (+ (* 1/2 x) (* (pow t 2) (+ (* 1/8 (* (pow t 2) (- (* 1/2 x) y))) (* 1/2 (- (* 1/2 x) y))))) y)
(- (+ (* 1/2 x) (* (pow t 2) (+ (* 1/2 (- (* 1/2 x) y)) (* (pow t 2) (+ (* 1/48 (* (pow t 2) (- (* 1/2 x) y))) (* 1/8 (- (* 1/2 x) y))))))) y)
1
(+ 1 (* 1/2 (pow t 2)))
(+ 1 (* (pow t 2) (+ 1/2 (* 1/8 (pow t 2)))))
(+ 1 (* (pow t 2) (+ 1/2 (* (pow t 2) (+ 1/8 (* 1/48 (pow t 2)))))))
(+ 1 (* 1/2 t))
(+ 1 (* t (+ 1/2 (* 1/8 t))))
(+ 1 (* t (+ 1/2 (* t (+ 1/8 (* 1/48 t))))))
(+ (* 1/2 (* (* (pow t 2) (* (sqrt 2) (- (* 1/4 (/ (pow x 2) (+ y (* 1/2 x)))) (/ (pow y 2) (+ y (* 1/2 x)))))) (sqrt z))) (* (sqrt z) (* (sqrt 2) (- (* 1/4 (/ (pow x 2) (+ y (* 1/2 x)))) (/ (pow y 2) (+ y (* 1/2 x)))))))
(+ (* (sqrt z) (* (sqrt 2) (- (* 1/4 (/ (pow x 2) (+ y (* 1/2 x)))) (/ (pow y 2) (+ y (* 1/2 x)))))) (* (pow t 2) (+ (* 1/8 (* (* (pow t 2) (* (sqrt 2) (- (* 1/4 (/ (pow x 2) (+ y (* 1/2 x)))) (/ (pow y 2) (+ y (* 1/2 x)))))) (sqrt z))) (* 1/2 (* (sqrt z) (* (sqrt 2) (- (* 1/4 (/ (pow x 2) (+ y (* 1/2 x)))) (/ (pow y 2) (+ y (* 1/2 x))))))))))
(+ (* (sqrt z) (* (sqrt 2) (- (* 1/4 (/ (pow x 2) (+ y (* 1/2 x)))) (/ (pow y 2) (+ y (* 1/2 x)))))) (* (pow t 2) (+ (* 1/2 (* (sqrt z) (* (sqrt 2) (- (* 1/4 (/ (pow x 2) (+ y (* 1/2 x)))) (/ (pow y 2) (+ y (* 1/2 x))))))) (* (pow t 2) (+ (* 1/48 (* (* (pow t 2) (* (sqrt 2) (- (* 1/4 (/ (pow x 2) (+ y (* 1/2 x)))) (/ (pow y 2) (+ y (* 1/2 x)))))) (sqrt z))) (* 1/8 (* (sqrt z) (* (sqrt 2) (- (* 1/4 (/ (pow x 2) (+ y (* 1/2 x)))) (/ (pow y 2) (+ y (* 1/2 x))))))))))))
(+ (* 1/2 (* (/ (* (pow t 2) (* (sqrt 2) (+ (* -1 (pow y 2)) (* 1/4 (pow x 2))))) (+ y (* 1/2 x))) (sqrt z))) (* (sqrt z) (/ (* (sqrt 2) (+ (* -1 (pow y 2)) (* 1/4 (pow x 2)))) (+ y (* 1/2 x)))))
(+ (* (sqrt z) (/ (* (sqrt 2) (+ (* -1 (pow y 2)) (* 1/4 (pow x 2)))) (+ y (* 1/2 x)))) (* (pow t 2) (+ (* 1/8 (* (/ (* (pow t 2) (* (sqrt 2) (+ (* -1 (pow y 2)) (* 1/4 (pow x 2))))) (+ y (* 1/2 x))) (sqrt z))) (* 1/2 (* (sqrt z) (/ (* (sqrt 2) (+ (* -1 (pow y 2)) (* 1/4 (pow x 2)))) (+ y (* 1/2 x))))))))
(+ (* (sqrt z) (/ (* (sqrt 2) (+ (* -1 (pow y 2)) (* 1/4 (pow x 2)))) (+ y (* 1/2 x)))) (* (pow t 2) (+ (* 1/2 (* (sqrt z) (/ (* (sqrt 2) (+ (* -1 (pow y 2)) (* 1/4 (pow x 2)))) (+ y (* 1/2 x))))) (* (pow t 2) (+ (* 1/48 (* (/ (* (pow t 2) (* (sqrt 2) (+ (* -1 (pow y 2)) (* 1/4 (pow x 2))))) (+ y (* 1/2 x))) (sqrt z))) (* 1/8 (* (sqrt z) (/ (* (sqrt 2) (+ (* -1 (pow y 2)) (* 1/4 (pow x 2)))) (+ y (* 1/2 x))))))))))
(+ 1 t)
(+ 1 (* t (+ 1 (* 1/2 t))))
(+ 1 (* t (+ 1 (* t (+ 1/2 (* 1/6 t))))))
1/8
(+ 1/8 (* 1/48 (pow t 2)))
(* 1/2 (pow t 2))
(* (- (* 1/2 x) y) (pow (sqrt (exp t)) t))
(pow (sqrt (exp t)) t)
(sqrt (exp t))
(exp t)
(exp (* 1/2 (pow t 2)))
(* 1/48 (pow t 2))
(* (pow t 2) (+ 1/48 (* 1/8 (/ 1 (pow t 2)))))
Outputs
(* -1 (* (* y (* (sqrt 2) (pow (sqrt (exp t)) t))) (sqrt z)))
(*.f64 (*.f64 (*.f64 (neg.f64 y) (sqrt.f64 #s(literal 2 binary64))) (pow.f64 (sqrt.f64 (exp.f64 t)) t)) (sqrt.f64 z))
(+ (* -1 (* (* y (* (sqrt 2) (pow (sqrt (exp t)) t))) (sqrt z))) (* 1/2 (* (* x (* (sqrt 2) (pow (sqrt (exp t)) t))) (sqrt z))))
(*.f64 (sqrt.f64 z) (fma.f64 (*.f64 #s(literal 1/2 binary64) (*.f64 (sqrt.f64 #s(literal 2 binary64)) x)) (pow.f64 (sqrt.f64 (exp.f64 t)) t) (*.f64 (*.f64 (neg.f64 y) (sqrt.f64 #s(literal 2 binary64))) (pow.f64 (sqrt.f64 (exp.f64 t)) t))))
(* -1 (* y (pow (sqrt (exp t)) t)))
(*.f64 (neg.f64 y) (pow.f64 (sqrt.f64 (exp.f64 t)) t))
(+ (* -1 (* y (pow (sqrt (exp t)) t))) (* 1/2 (* x (pow (sqrt (exp t)) t))))
(*.f64 (-.f64 (*.f64 #s(literal 1/2 binary64) x) y) (pow.f64 (sqrt.f64 (exp.f64 t)) t))
(* -1 (* (* y (* (exp (* 1/2 (pow t 2))) (sqrt 2))) (sqrt z)))
(*.f64 (*.f64 y (neg.f64 (sqrt.f64 z))) (*.f64 (pow.f64 (exp.f64 #s(literal 1/2 binary64)) (*.f64 t t)) (sqrt.f64 #s(literal 2 binary64))))
(+ (* -1 (* (* y (* (exp (* 1/2 (pow t 2))) (sqrt 2))) (sqrt z))) (* 1/2 (* (* x (* (exp (* 1/2 (pow t 2))) (sqrt 2))) (sqrt z))))
(*.f64 (*.f64 (-.f64 (*.f64 #s(literal 1/2 binary64) x) y) (*.f64 (pow.f64 (exp.f64 #s(literal 1/2 binary64)) (*.f64 t t)) (sqrt.f64 #s(literal 2 binary64)))) (sqrt.f64 z))
(* -1 (* (* y (sqrt 2)) (sqrt z)))
(*.f64 (*.f64 y (neg.f64 (sqrt.f64 z))) (sqrt.f64 #s(literal 2 binary64)))
(+ (* -1 (* (* y (sqrt 2)) (sqrt z))) (* 1/2 (* (* x (sqrt 2)) (sqrt z))))
(*.f64 (*.f64 (-.f64 (*.f64 #s(literal 1/2 binary64) x) y) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 z))
(* -1 y)
(neg.f64 y)
(- (* 1/2 x) y)
(-.f64 (*.f64 #s(literal 1/2 binary64) x) y)
(* 1/2 x)
(*.f64 #s(literal 1/2 binary64) x)
(pow x 2)
(*.f64 x x)
(* 1/4 (pow x 2))
(*.f64 #s(literal 1/4 binary64) (*.f64 x x))
(* -1 (pow y 2))
(*.f64 (neg.f64 y) y)
(+ (* -1 (pow y 2)) (* 1/4 (pow x 2)))
(fma.f64 (*.f64 #s(literal 1/4 binary64) x) x (*.f64 (neg.f64 y) y))
(* (/ (sqrt 2) y) (sqrt z))
(*.f64 (/.f64 (sqrt.f64 #s(literal 2 binary64)) y) (sqrt.f64 z))
(+ (* -1/2 (* (/ (* x (sqrt 2)) (pow y 2)) (sqrt z))) (* (/ (sqrt 2) y) (sqrt z)))
(*.f64 (sqrt.f64 z) (fma.f64 (*.f64 #s(literal -1/2 binary64) x) (/.f64 (/.f64 (sqrt.f64 #s(literal 2 binary64)) y) y) (/.f64 (sqrt.f64 #s(literal 2 binary64)) y)))
(+ (* x (+ (* -1/2 (* (/ (sqrt 2) (pow y 2)) (sqrt z))) (* 1/4 (* (/ (* x (sqrt 2)) (pow y 3)) (sqrt z))))) (* (/ (sqrt 2) y) (sqrt z)))
(fma.f64 (*.f64 (sqrt.f64 z) (fma.f64 (*.f64 #s(literal 1/4 binary64) x) (/.f64 (sqrt.f64 #s(literal 2 binary64)) (pow.f64 y #s(literal 3 binary64))) (*.f64 #s(literal -1/2 binary64) (/.f64 (/.f64 (sqrt.f64 #s(literal 2 binary64)) y) y)))) x (*.f64 (/.f64 (sqrt.f64 #s(literal 2 binary64)) y) (sqrt.f64 z)))
(+ (* x (+ (* -1/2 (* (/ (sqrt 2) (pow y 2)) (sqrt z))) (* x (+ (* -1/8 (* (/ (* x (sqrt 2)) (pow y 4)) (sqrt z))) (* 1/4 (* (/ (sqrt 2) (pow y 3)) (sqrt z))))))) (* (/ (sqrt 2) y) (sqrt z)))
(fma.f64 (sqrt.f64 z) (fma.f64 (*.f64 #s(literal -1/2 binary64) x) (/.f64 (/.f64 (sqrt.f64 #s(literal 2 binary64)) y) y) (/.f64 (sqrt.f64 #s(literal 2 binary64)) y)) (*.f64 (*.f64 (sqrt.f64 z) (fma.f64 #s(literal 1/4 binary64) (/.f64 (sqrt.f64 #s(literal 2 binary64)) (pow.f64 y #s(literal 3 binary64))) (/.f64 (*.f64 #s(literal -1/8 binary64) (*.f64 (sqrt.f64 #s(literal 2 binary64)) x)) (pow.f64 y #s(literal 4 binary64))))) (*.f64 x x)))
(* 1/2 (* (* x (* (sqrt 2) (pow (sqrt (exp t)) t))) (sqrt z)))
(*.f64 (*.f64 (*.f64 (*.f64 #s(literal 1/2 binary64) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 z)) (pow.f64 (sqrt.f64 (exp.f64 t)) t)) x)
(* x (+ (* -1 (* (/ (* y (* (sqrt 2) (pow (sqrt (exp t)) t))) x) (sqrt z))) (* 1/2 (* (sqrt z) (* (sqrt 2) (pow (sqrt (exp t)) t))))))
(*.f64 (fma.f64 (*.f64 (*.f64 #s(literal 1/2 binary64) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 z)) (pow.f64 (sqrt.f64 (exp.f64 t)) t) (/.f64 (*.f64 (*.f64 (*.f64 y (sqrt.f64 z)) (sqrt.f64 #s(literal 2 binary64))) (pow.f64 (sqrt.f64 (exp.f64 t)) t)) (neg.f64 x))) x)
(* 1/2 (* x (pow (sqrt (exp t)) t)))
(*.f64 (*.f64 #s(literal 1/2 binary64) x) (pow.f64 (sqrt.f64 (exp.f64 t)) t))
(* x (+ (* -1 (/ (* y (pow (sqrt (exp t)) t)) x)) (* 1/2 (pow (sqrt (exp t)) t))))
(*.f64 (fma.f64 (neg.f64 y) (/.f64 (pow.f64 (sqrt.f64 (exp.f64 t)) t) x) (*.f64 #s(literal 1/2 binary64) (pow.f64 (sqrt.f64 (exp.f64 t)) t))) x)
(* 1/2 (* (* x (* (exp (* 1/2 (pow t 2))) (sqrt 2))) (sqrt z)))
(*.f64 (*.f64 x (*.f64 #s(literal 1/2 binary64) (sqrt.f64 z))) (*.f64 (pow.f64 (exp.f64 #s(literal 1/2 binary64)) (*.f64 t t)) (sqrt.f64 #s(literal 2 binary64))))
(* x (+ (* -1 (* (/ (* y (* (exp (* 1/2 (pow t 2))) (sqrt 2))) x) (sqrt z))) (* 1/2 (* (sqrt z) (* (exp (* 1/2 (pow t 2))) (sqrt 2))))))
(*.f64 (fma.f64 (*.f64 #s(literal 1/2 binary64) (sqrt.f64 z)) (*.f64 (pow.f64 (exp.f64 #s(literal 1/2 binary64)) (*.f64 t t)) (sqrt.f64 #s(literal 2 binary64))) (/.f64 (*.f64 (*.f64 y (sqrt.f64 z)) (*.f64 (pow.f64 (exp.f64 #s(literal 1/2 binary64)) (*.f64 t t)) (sqrt.f64 #s(literal 2 binary64)))) (neg.f64 x))) x)
(* 1/2 (* (* x (sqrt 2)) (sqrt z)))
(*.f64 (*.f64 x (*.f64 #s(literal 1/2 binary64) (sqrt.f64 z))) (sqrt.f64 #s(literal 2 binary64)))
(* x (+ (* -1 (* (/ (* y (sqrt 2)) x) (sqrt z))) (* 1/2 (* (sqrt z) (sqrt 2)))))
(*.f64 (fma.f64 (*.f64 #s(literal 1/2 binary64) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 z) (/.f64 (*.f64 (*.f64 y (sqrt.f64 z)) (sqrt.f64 #s(literal 2 binary64))) (neg.f64 x))) x)
(* x (+ 1/2 (* -1 (/ y x))))
(*.f64 (-.f64 #s(literal 1/2 binary64) (/.f64 y x)) x)
(* x (+ 1/2 (+ (* -4 (/ (pow y 3) (pow x 3))) (+ (* -1 (/ y x)) (* 4 (/ (pow y 3) (pow x 3)))))))
(*.f64 (+.f64 (fma.f64 (pow.f64 y #s(literal 3 binary64)) (/.f64 #s(literal -4 binary64) (pow.f64 x #s(literal 3 binary64))) #s(literal 1/2 binary64)) (fma.f64 (/.f64 (pow.f64 y #s(literal 3 binary64)) (pow.f64 x #s(literal 3 binary64))) #s(literal 4 binary64) (/.f64 (neg.f64 y) x))) x)
(* x (+ 1/2 (+ (* -8 (/ (pow y 4) (pow x 4))) (+ (* -4 (/ (pow y 3) (pow x 3))) (+ (* -1 (/ y x)) (+ (* 4 (/ (pow y 3) (pow x 3))) (* 8 (/ (pow y 4) (pow x 4)))))))))
(*.f64 (+.f64 (fma.f64 (pow.f64 y #s(literal 4 binary64)) (/.f64 #s(literal -8 binary64) (pow.f64 x #s(literal 4 binary64))) #s(literal 1/2 binary64)) (fma.f64 (pow.f64 y #s(literal 3 binary64)) (/.f64 #s(literal -4 binary64) (pow.f64 x #s(literal 3 binary64))) (fma.f64 (pow.f64 y #s(literal 4 binary64)) (/.f64 #s(literal 8 binary64) (pow.f64 x #s(literal 4 binary64))) (fma.f64 (/.f64 (pow.f64 y #s(literal 3 binary64)) (pow.f64 x #s(literal 3 binary64))) #s(literal 4 binary64) (/.f64 (neg.f64 y) x))))) x)
(* x (+ (* -1 (* (/ (* y (* (exp (* 1/2 (pow t 2))) (sqrt 2))) x) (sqrt z))) (+ (* 1/2 (* (sqrt z) (* (exp (* 1/2 (pow t 2))) (sqrt 2)))) (* (/ (* (exp (* 1/2 (pow t 2))) (* (sqrt 2) (+ (* -4 (pow y 3)) (* 4 (pow y 3))))) (pow x 3)) (sqrt z)))))
(*.f64 (fma.f64 (*.f64 (*.f64 #s(literal 1/2 binary64) (sqrt.f64 z)) (pow.f64 (exp.f64 #s(literal 1/2 binary64)) (*.f64 t t))) (sqrt.f64 #s(literal 2 binary64)) (fma.f64 (*.f64 (*.f64 (pow.f64 (exp.f64 #s(literal 1/2 binary64)) (*.f64 t t)) (sqrt.f64 #s(literal 2 binary64))) (/.f64 #s(literal 0 binary64) (pow.f64 x #s(literal 3 binary64)))) (sqrt.f64 z) (/.f64 (*.f64 (*.f64 y (sqrt.f64 z)) (*.f64 (pow.f64 (exp.f64 #s(literal 1/2 binary64)) (*.f64 t t)) (sqrt.f64 #s(literal 2 binary64)))) (neg.f64 x)))) x)
(* x (+ (* -1 (* (/ (* y (* (exp (* 1/2 (pow t 2))) (sqrt 2))) x) (sqrt z))) (+ (* 1/2 (* (sqrt z) (* (exp (* 1/2 (pow t 2))) (sqrt 2)))) (+ (* (/ (* (exp (* 1/2 (pow t 2))) (* (sqrt 2) (+ (* -8 (pow y 4)) (* 8 (pow y 4))))) (pow x 4)) (sqrt z)) (* (/ (* (exp (* 1/2 (pow t 2))) (* (sqrt 2) (+ (* -4 (pow y 3)) (* 4 (pow y 3))))) (pow x 3)) (sqrt z))))))
(*.f64 (fma.f64 (*.f64 (*.f64 #s(literal 1/2 binary64) (sqrt.f64 z)) (pow.f64 (exp.f64 #s(literal 1/2 binary64)) (*.f64 t t))) (sqrt.f64 #s(literal 2 binary64)) (fma.f64 (sqrt.f64 z) (*.f64 (pow.f64 (exp.f64 #s(literal 1/2 binary64)) (*.f64 t t)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (+.f64 (/.f64 #s(literal 0 binary64) (pow.f64 x #s(literal 4 binary64))) (/.f64 #s(literal 0 binary64) (pow.f64 x #s(literal 3 binary64)))))) (/.f64 (*.f64 (*.f64 y (sqrt.f64 z)) (*.f64 (pow.f64 (exp.f64 #s(literal 1/2 binary64)) (*.f64 t t)) (sqrt.f64 #s(literal 2 binary64)))) (neg.f64 x)))) x)
(* x (+ (* -1 (* (/ (* y (sqrt 2)) x) (sqrt z))) (+ (* 1/2 (* (sqrt z) (sqrt 2))) (* (/ (* (sqrt 2) (+ (* -4 (pow y 3)) (* 4 (pow y 3)))) (pow x 3)) (sqrt z)))))
(*.f64 (fma.f64 (*.f64 (sqrt.f64 z) (sqrt.f64 #s(literal 2 binary64))) (/.f64 #s(literal 0 binary64) (pow.f64 x #s(literal 3 binary64))) (fma.f64 (*.f64 #s(literal 1/2 binary64) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 z) (/.f64 (*.f64 (*.f64 y (sqrt.f64 z)) (sqrt.f64 #s(literal 2 binary64))) (neg.f64 x)))) x)
(* x (+ (* -1 (* (/ (* y (sqrt 2)) x) (sqrt z))) (+ (* 1/2 (* (sqrt z) (sqrt 2))) (+ (* (/ (* (sqrt 2) (+ (* -8 (pow y 4)) (* 8 (pow y 4)))) (pow x 4)) (sqrt z)) (* (/ (* (sqrt 2) (+ (* -4 (pow y 3)) (* 4 (pow y 3)))) (pow x 3)) (sqrt z))))))
(*.f64 (fma.f64 (*.f64 #s(literal 1/2 binary64) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 z) (fma.f64 (sqrt.f64 z) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (+.f64 (/.f64 #s(literal 0 binary64) (pow.f64 x #s(literal 4 binary64))) (/.f64 #s(literal 0 binary64) (pow.f64 x #s(literal 3 binary64))))) (/.f64 (*.f64 (*.f64 y (sqrt.f64 z)) (sqrt.f64 #s(literal 2 binary64))) (neg.f64 x)))) x)
(* (pow x 2) (+ 1/4 (* -1 (/ (pow y 2) (pow x 2)))))
(*.f64 (-.f64 #s(literal 1/4 binary64) (*.f64 (/.f64 y x) (/.f64 y x))) (*.f64 x x))
(* 2 (* (/ (sqrt 2) x) (sqrt z)))
(*.f64 (*.f64 #s(literal 2 binary64) (sqrt.f64 z)) (/.f64 (sqrt.f64 #s(literal 2 binary64)) x))
(/ (+ (* -4 (* (/ (* y (sqrt 2)) x) (sqrt z))) (* 2 (* (sqrt z) (sqrt 2)))) x)
(/.f64 (fma.f64 (*.f64 #s(literal 2 binary64) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 z) (*.f64 (*.f64 #s(literal -4 binary64) (sqrt.f64 z)) (/.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) y) x))) x)
(/ (+ (* -4 (* (/ (* y (sqrt 2)) x) (sqrt z))) (+ (* 2 (* (sqrt z) (sqrt 2))) (* 8 (* (/ (* (pow y 2) (sqrt 2)) (pow x 2)) (sqrt z))))) x)
(/.f64 (fma.f64 (*.f64 #s(literal -4 binary64) (sqrt.f64 z)) (/.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) y) x) (fma.f64 (*.f64 #s(literal 2 binary64) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 z) (*.f64 (*.f64 #s(literal 8 binary64) (sqrt.f64 z)) (*.f64 (/.f64 (*.f64 y y) x) (/.f64 (sqrt.f64 #s(literal 2 binary64)) x))))) x)
(/ (+ (* -16 (* (/ (* (pow y 3) (sqrt 2)) (pow x 3)) (sqrt z))) (+ (* -4 (* (/ (* y (sqrt 2)) x) (sqrt z))) (+ (* 2 (* (sqrt z) (sqrt 2))) (* 8 (* (/ (* (pow y 2) (sqrt 2)) (pow x 2)) (sqrt z)))))) x)
(/.f64 (fma.f64 (sqrt.f64 z) (fma.f64 (*.f64 #s(literal -16 binary64) (pow.f64 y #s(literal 3 binary64))) (/.f64 (sqrt.f64 #s(literal 2 binary64)) (pow.f64 x #s(literal 3 binary64))) (*.f64 #s(literal -4 binary64) (/.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) y) x))) (fma.f64 (*.f64 #s(literal 2 binary64) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 z) (*.f64 (*.f64 #s(literal 8 binary64) (sqrt.f64 z)) (*.f64 (/.f64 (*.f64 y y) x) (/.f64 (sqrt.f64 #s(literal 2 binary64)) x))))) x)
(* -1 (* x (+ (* -1/2 (* (sqrt z) (* (sqrt 2) (pow (sqrt (exp t)) t)))) (* (/ (* y (* (sqrt 2) (pow (sqrt (exp t)) t))) x) (sqrt z)))))
(*.f64 (neg.f64 x) (fma.f64 (*.f64 (*.f64 #s(literal -1/2 binary64) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 z)) (pow.f64 (sqrt.f64 (exp.f64 t)) t) (/.f64 (*.f64 (*.f64 (*.f64 y (sqrt.f64 z)) (sqrt.f64 #s(literal 2 binary64))) (pow.f64 (sqrt.f64 (exp.f64 t)) t)) x)))
(* -1 (* x (+ (* -1/2 (pow (sqrt (exp t)) t)) (/ (* y (pow (sqrt (exp t)) t)) x))))
(*.f64 (neg.f64 x) (fma.f64 #s(literal -1/2 binary64) (pow.f64 (sqrt.f64 (exp.f64 t)) t) (*.f64 (pow.f64 (sqrt.f64 (exp.f64 t)) t) (/.f64 y x))))
(* -1 (* x (+ (* -1/2 (* (sqrt z) (* (exp (* 1/2 (pow t 2))) (sqrt 2)))) (* (/ (* y (* (exp (* 1/2 (pow t 2))) (sqrt 2))) x) (sqrt z)))))
(*.f64 (neg.f64 x) (fma.f64 (*.f64 #s(literal -1/2 binary64) (sqrt.f64 z)) (*.f64 (pow.f64 (exp.f64 #s(literal 1/2 binary64)) (*.f64 t t)) (sqrt.f64 #s(literal 2 binary64))) (*.f64 (*.f64 (*.f64 (pow.f64 (exp.f64 #s(literal 1/2 binary64)) (*.f64 t t)) (sqrt.f64 #s(literal 2 binary64))) (/.f64 y x)) (sqrt.f64 z))))
(* -1 (* x (+ (* -1/2 (* (sqrt z) (sqrt 2))) (* (/ (* y (sqrt 2)) x) (sqrt z)))))
(*.f64 (neg.f64 x) (fma.f64 (*.f64 #s(literal -1/2 binary64) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 z) (*.f64 (*.f64 (sqrt.f64 z) y) (/.f64 (sqrt.f64 #s(literal 2 binary64)) x))))
(* -1 (* x (- (/ y x) 1/2)))
(*.f64 (neg.f64 x) (-.f64 (/.f64 y x) #s(literal 1/2 binary64)))
(* -1 (* x (- (* -1 (/ (+ (* -4 (/ (pow y 3) (pow x 2))) (+ (* -1 y) (* 4 (/ (pow y 3) (pow x 2))))) x)) 1/2)))
(*.f64 (neg.f64 x) (-.f64 (/.f64 (fma.f64 (/.f64 #s(literal -4 binary64) x) (/.f64 (pow.f64 y #s(literal 3 binary64)) x) (fma.f64 (/.f64 #s(literal 4 binary64) x) (/.f64 (pow.f64 y #s(literal 3 binary64)) x) (neg.f64 y))) (neg.f64 x)) #s(literal 1/2 binary64)))
(* -1 (* x (- (* -1 (/ (+ (* -4 (/ (pow y 3) (pow x 2))) (+ (* -1 y) (+ (* -1 (/ (+ (* -8 (pow y 4)) (* 8 (pow y 4))) (pow x 3))) (* 4 (/ (pow y 3) (pow x 2)))))) x)) 1/2)))
(*.f64 (neg.f64 x) (-.f64 (/.f64 (fma.f64 (/.f64 #s(literal -4 binary64) x) (/.f64 (pow.f64 y #s(literal 3 binary64)) x) (-.f64 (fma.f64 (/.f64 #s(literal 4 binary64) x) (/.f64 (pow.f64 y #s(literal 3 binary64)) x) (/.f64 #s(literal 0 binary64) (pow.f64 x #s(literal 3 binary64)))) y)) (neg.f64 x)) #s(literal 1/2 binary64)))
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1/8
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(exp.f64 t)
(exp (* 1/2 (pow t 2)))
(pow.f64 (exp.f64 #s(literal 1/2 binary64)) (*.f64 t t))
(* 1/48 (pow t 2))
(*.f64 #s(literal 1/48 binary64) (*.f64 t t))
(* (pow t 2) (+ 1/48 (* 1/8 (/ 1 (pow t 2)))))
(*.f64 (*.f64 (+.f64 (/.f64 #s(literal 1/8 binary64) (*.f64 t t)) #s(literal 1/48 binary64)) t) t)

rewrite396.0ms (3.4%)

Memory
-10.2MiB live, 356.0MiB allocated
Iterations

Useful iterations: 1 (0.0ms)

IterNodesCost
052303
095237
1312234
21826234
08553234
Stop Event
iter limit
node limit
iter limit
Counts
25 → 1 403
Calls
Call 1
Inputs
(*.f64 (*.f64 (pow.f64 (sqrt.f64 (exp.f64 t)) t) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
(*.f64 (pow.f64 (sqrt.f64 (exp.f64 t)) t) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y))
(pow.f64 (sqrt.f64 (exp.f64 t)) t)
(sqrt.f64 (exp.f64 t))
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64))))
(-.f64 (*.f64 x #s(literal 1/2 binary64)) y)
(*.f64 x #s(literal 1/2 binary64))
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) (fma.f64 (fma.f64 (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))))
(fma.f64 (*.f64 x x) (/.f64 #s(literal 1/4 binary64) (fma.f64 #s(literal 1/2 binary64) x y)) (neg.f64 (*.f64 y (/.f64 y (fma.f64 #s(literal 1/2 binary64) x y)))))
(*.f64 (*.f64 (fma.f64 (*.f64 x x) (/.f64 #s(literal 1/4 binary64) (fma.f64 #s(literal 1/2 binary64) x y)) (neg.f64 (*.f64 y (/.f64 y (fma.f64 #s(literal 1/2 binary64) x y))))) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) (exp.f64 (/.f64 (*.f64 t t) #s(literal 2 binary64))))
(*.f64 (fma.f64 (*.f64 x x) (/.f64 #s(literal 1/4 binary64) (fma.f64 #s(literal 1/2 binary64) x y)) (neg.f64 (*.f64 y (/.f64 y (fma.f64 #s(literal 1/2 binary64) x y))))) (sqrt.f64 (*.f64 z #s(literal 2 binary64))))
(*.f64 x x)
(pow.f64 (*.f64 #s(literal 1/2 binary64) x) #s(literal 2 binary64))
(*.f64 (fma.f64 (neg.f64 y) y (pow.f64 (*.f64 #s(literal 1/2 binary64) x) #s(literal 2 binary64))) (/.f64 (sqrt.f64 (*.f64 #s(literal 2 binary64) z)) (fma.f64 #s(literal 1/2 binary64) x y)))
(*.f64 (*.f64 (fma.f64 (neg.f64 y) y (pow.f64 (*.f64 #s(literal 1/2 binary64) x) #s(literal 2 binary64))) (/.f64 (sqrt.f64 (*.f64 #s(literal 2 binary64) z)) (fma.f64 #s(literal 1/2 binary64) x y))) (exp.f64 (/.f64 (*.f64 t t) #s(literal 2 binary64))))
(fma.f64 (neg.f64 y) y (pow.f64 (*.f64 #s(literal 1/2 binary64) x) #s(literal 2 binary64)))
(exp.f64 t)
(sqrt.f64 (*.f64 #s(literal 2 binary64) z))
#s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64))
(sqrt.f64 (*.f64 z #s(literal 2 binary64)))
#s(approx (exp (/ (* t t) 2)) (fma.f64 (fma.f64 (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64)))
(fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64))
(/.f64 (*.f64 t t) #s(literal 2 binary64))
(/.f64 (sqrt.f64 (*.f64 #s(literal 2 binary64) z)) (fma.f64 #s(literal 1/2 binary64) x y))
Outputs
(*.f64 (/.f64 (*.f64 (fma.f64 (neg.f64 y) y (*.f64 #s(literal 1/4 binary64) (*.f64 x x))) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) (/.f64 (fma.f64 (neg.f64 y) y (*.f64 #s(literal 1/4 binary64) (*.f64 x x))) (fma.f64 (pow.f64 x #s(literal 3 binary64)) #s(literal 1/8 binary64) (pow.f64 (neg.f64 y) #s(literal 3 binary64))))) (/.f64 (pow.f64 (sqrt.f64 (exp.f64 t)) t) (fma.f64 #s(literal 1/4 binary64) (*.f64 x x) (*.f64 y (fma.f64 x #s(literal 1/2 binary64) y)))))
(*.f64 (/.f64 (*.f64 (fma.f64 (neg.f64 y) y (*.f64 #s(literal 1/4 binary64) (*.f64 x x))) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) (/.f64 (fma.f64 (neg.f64 y) y (*.f64 #s(literal 1/4 binary64) (*.f64 x x))) (fma.f64 (neg.f64 y) y (*.f64 #s(literal 1/4 binary64) (*.f64 x x))))) (/.f64 (pow.f64 (sqrt.f64 (exp.f64 t)) t) (fma.f64 x #s(literal 1/2 binary64) y)))
(*.f64 (/.f64 (pow.f64 (sqrt.f64 (exp.f64 t)) t) (/.f64 (fma.f64 (neg.f64 y) y (*.f64 #s(literal 1/4 binary64) (*.f64 x x))) (fma.f64 (pow.f64 x #s(literal 3 binary64)) #s(literal 1/8 binary64) (pow.f64 (neg.f64 y) #s(literal 3 binary64))))) (/.f64 (*.f64 (fma.f64 (neg.f64 y) y (*.f64 #s(literal 1/4 binary64) (*.f64 x x))) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) (fma.f64 #s(literal 1/4 binary64) (*.f64 x x) (*.f64 y (fma.f64 x #s(literal 1/2 binary64) y)))))
(*.f64 (/.f64 (pow.f64 (sqrt.f64 (exp.f64 t)) t) (/.f64 (fma.f64 (neg.f64 y) y (*.f64 #s(literal 1/4 binary64) (*.f64 x x))) (fma.f64 (neg.f64 y) y (*.f64 #s(literal 1/4 binary64) (*.f64 x x))))) (*.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (-.f64 (*.f64 x #s(literal 1/2 binary64)) y)))
(*.f64 (/.f64 (pow.f64 (sqrt.f64 (exp.f64 t)) t) (fma.f64 (neg.f64 y) y (*.f64 #s(literal 1/4 binary64) (*.f64 x x)))) (/.f64 (*.f64 (fma.f64 (neg.f64 y) y (*.f64 #s(literal 1/4 binary64) (*.f64 x x))) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) (pow.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) #s(literal -1 binary64))))
(*.f64 (/.f64 (pow.f64 (sqrt.f64 (exp.f64 t)) t) (fma.f64 (pow.f64 x #s(literal 3 binary64)) #s(literal 1/8 binary64) (pow.f64 y #s(literal 3 binary64)))) (/.f64 (*.f64 (fma.f64 (neg.f64 y) y (*.f64 #s(literal 1/4 binary64) (*.f64 x x))) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) (pow.f64 (fma.f64 (*.f64 #s(literal 1/4 binary64) x) x (*.f64 y (-.f64 y (*.f64 x #s(literal 1/2 binary64))))) #s(literal -1 binary64))))
(*.f64 (*.f64 (/.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (fma.f64 x #s(literal 1/2 binary64) y)) (fma.f64 x #s(literal 1/2 binary64) y)) (/.f64 (pow.f64 (sqrt.f64 (exp.f64 t)) t) (pow.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) #s(literal -1 binary64))))
(*.f64 (/.f64 (*.f64 (fma.f64 (neg.f64 y) y (*.f64 #s(literal 1/4 binary64) (*.f64 x x))) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) (fma.f64 (pow.f64 x #s(literal 3 binary64)) #s(literal 1/8 binary64) (pow.f64 y #s(literal 3 binary64)))) (/.f64 (pow.f64 (sqrt.f64 (exp.f64 t)) t) (pow.f64 (fma.f64 (*.f64 #s(literal 1/4 binary64) x) x (*.f64 y (-.f64 y (*.f64 x #s(literal 1/2 binary64))))) #s(literal -1 binary64))))
(*.f64 (*.f64 (pow.f64 (sqrt.f64 (exp.f64 t)) t) (fma.f64 (neg.f64 y) y (*.f64 #s(literal 1/4 binary64) (*.f64 x x)))) (/.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (fma.f64 x #s(literal 1/2 binary64) y)))
(*.f64 (*.f64 (*.f64 (pow.f64 (sqrt.f64 (exp.f64 t)) t) (-.f64 (*.f64 x #s(literal 1/2 binary64)) y)) (sqrt.f64 z)) (sqrt.f64 #s(literal 2 binary64)))
(*.f64 (*.f64 (*.f64 (pow.f64 (sqrt.f64 (exp.f64 t)) t) (-.f64 (*.f64 x #s(literal 1/2 binary64)) y)) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 z))
(*.f64 (sqrt.f64 (*.f64 (pow.f64 (exp.f64 t) t) (*.f64 z #s(literal 2 binary64)))) (-.f64 (*.f64 x #s(literal 1/2 binary64)) y))
(*.f64 (/.f64 (sqrt.f64 (*.f64 (pow.f64 (exp.f64 t) t) (*.f64 z #s(literal 2 binary64)))) (fma.f64 x #s(literal 1/2 binary64) y)) (fma.f64 (neg.f64 y) y (*.f64 #s(literal 1/4 binary64) (*.f64 x x))))
(*.f64 (pow.f64 (pow.f64 (sqrt.f64 (exp.f64 t)) t) #s(literal 1/2 binary64)) (*.f64 (pow.f64 (pow.f64 (sqrt.f64 (exp.f64 t)) t) #s(literal 1/2 binary64)) (*.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (-.f64 (*.f64 x #s(literal 1/2 binary64)) y))))
(*.f64 (fma.f64 (neg.f64 y) y (*.f64 #s(literal 1/4 binary64) (*.f64 x x))) (/.f64 (sqrt.f64 (*.f64 (pow.f64 (exp.f64 t) t) (*.f64 z #s(literal 2 binary64)))) (fma.f64 x #s(literal 1/2 binary64) y)))
(*.f64 (sqrt.f64 z) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (*.f64 (pow.f64 (sqrt.f64 (exp.f64 t)) t) (-.f64 (*.f64 x #s(literal 1/2 binary64)) y))))
(*.f64 (sqrt.f64 #s(literal 2 binary64)) (*.f64 (sqrt.f64 z) (*.f64 (pow.f64 (sqrt.f64 (exp.f64 t)) t) (-.f64 (*.f64 x #s(literal 1/2 binary64)) y))))
(*.f64 (/.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (fma.f64 x #s(literal 1/2 binary64) y)) (*.f64 (fma.f64 (neg.f64 y) y (*.f64 #s(literal 1/4 binary64) (*.f64 x x))) (pow.f64 (sqrt.f64 (exp.f64 t)) t)))
(*.f64 (pow.f64 (sqrt.f64 (exp.f64 t)) t) (*.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (-.f64 (*.f64 x #s(literal 1/2 binary64)) y)))
(*.f64 (*.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (-.f64 (*.f64 x #s(literal 1/2 binary64)) y)) (pow.f64 (sqrt.f64 (exp.f64 t)) t))
(*.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (*.f64 (pow.f64 (sqrt.f64 (exp.f64 t)) t) (-.f64 (*.f64 x #s(literal 1/2 binary64)) y)))
(*.f64 (*.f64 (pow.f64 (sqrt.f64 (exp.f64 t)) t) (-.f64 (*.f64 x #s(literal 1/2 binary64)) y)) (sqrt.f64 (*.f64 z #s(literal 2 binary64))))
(*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 (pow.f64 (exp.f64 t) t) (*.f64 z #s(literal 2 binary64)))))
(/.f64 (neg.f64 (*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (/.f64 (-.f64 (*.f64 (*.f64 x x) #s(literal -1/4 binary64)) (*.f64 y y)) (neg.f64 (fma.f64 x #s(literal 1/2 binary64) y)))) (sqrt.f64 (*.f64 (pow.f64 (exp.f64 t) t) (*.f64 z #s(literal 2 binary64)))))) (neg.f64 (/.f64 (-.f64 (*.f64 (*.f64 x x) #s(literal -1/4 binary64)) (*.f64 y y)) (neg.f64 (fma.f64 x #s(literal 1/2 binary64) y)))))
(/.f64 (neg.f64 (*.f64 (fma.f64 (pow.f64 (*.f64 (fma.f64 x #s(literal 1/2 binary64) y) #s(literal 4 binary64)) #s(literal -3 binary64)) (pow.f64 x #s(literal 6 binary64)) (pow.f64 (*.f64 (neg.f64 y) (/.f64 y (fma.f64 x #s(literal 1/2 binary64) y))) #s(literal 3 binary64))) (sqrt.f64 (*.f64 (pow.f64 (exp.f64 t) t) (*.f64 z #s(literal 2 binary64)))))) (neg.f64 (fma.f64 (pow.f64 (*.f64 (fma.f64 x #s(literal 1/2 binary64) y) #s(literal 4 binary64)) #s(literal -2 binary64)) (pow.f64 x #s(literal 4 binary64)) (*.f64 (*.f64 (neg.f64 y) (/.f64 y (fma.f64 x #s(literal 1/2 binary64) y))) (/.f64 (fma.f64 (neg.f64 y) y (*.f64 #s(literal -1/4 binary64) (*.f64 x x))) (fma.f64 x #s(literal 1/2 binary64) y))))))
(/.f64 (neg.f64 (*.f64 (*.f64 (fma.f64 (neg.f64 y) y (*.f64 #s(literal 1/4 binary64) (*.f64 x x))) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) (pow.f64 (sqrt.f64 (exp.f64 t)) t))) (neg.f64 (fma.f64 x #s(literal 1/2 binary64) y)))
(/.f64 (neg.f64 (*.f64 (-.f64 (pow.f64 y #s(literal 4 binary64)) (pow.f64 (*.f64 x #s(literal 1/2 binary64)) #s(literal 4 binary64))) (/.f64 (sqrt.f64 (*.f64 (pow.f64 (exp.f64 t) t) (*.f64 z #s(literal 2 binary64)))) (fma.f64 x #s(literal 1/2 binary64) y)))) (neg.f64 (fma.f64 (neg.f64 y) y (*.f64 #s(literal -1/4 binary64) (*.f64 x x)))))
(/.f64 (neg.f64 (*.f64 (fma.f64 (pow.f64 x #s(literal 6 binary64)) #s(literal 1/64 binary64) (neg.f64 (pow.f64 y #s(literal 6 binary64)))) (/.f64 (sqrt.f64 (*.f64 (pow.f64 (exp.f64 t) t) (*.f64 z #s(literal 2 binary64)))) (fma.f64 x #s(literal 1/2 binary64) y)))) (neg.f64 (+.f64 (fma.f64 (pow.f64 x #s(literal 4 binary64)) #s(literal 1/16 binary64) (pow.f64 (*.f64 y (*.f64 x #s(literal 1/2 binary64))) #s(literal 2 binary64))) (pow.f64 y #s(literal 4 binary64)))))
(/.f64 (neg.f64 (*.f64 (pow.f64 (sqrt.f64 (exp.f64 t)) t) (*.f64 (fma.f64 (neg.f64 y) y (*.f64 #s(literal 1/4 binary64) (*.f64 x x))) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))))) (neg.f64 (fma.f64 x #s(literal 1/2 binary64) y)))
(/.f64 (*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (/.f64 (-.f64 (*.f64 (*.f64 x x) #s(literal -1/4 binary64)) (*.f64 y y)) (neg.f64 (fma.f64 x #s(literal 1/2 binary64) y)))) (sqrt.f64 (*.f64 (pow.f64 (exp.f64 t) t) (*.f64 z #s(literal 2 binary64))))) (/.f64 (-.f64 (*.f64 (*.f64 x x) #s(literal -1/4 binary64)) (*.f64 y y)) (neg.f64 (fma.f64 x #s(literal 1/2 binary64) y))))
(/.f64 (*.f64 (fma.f64 (pow.f64 (*.f64 (fma.f64 x #s(literal 1/2 binary64) y) #s(literal 4 binary64)) #s(literal -3 binary64)) (pow.f64 x #s(literal 6 binary64)) (pow.f64 (*.f64 (neg.f64 y) (/.f64 y (fma.f64 x #s(literal 1/2 binary64) y))) #s(literal 3 binary64))) (sqrt.f64 (*.f64 (pow.f64 (exp.f64 t) t) (*.f64 z #s(literal 2 binary64))))) (fma.f64 (pow.f64 (*.f64 (fma.f64 x #s(literal 1/2 binary64) y) #s(literal 4 binary64)) #s(literal -2 binary64)) (pow.f64 x #s(literal 4 binary64)) (*.f64 (*.f64 (neg.f64 y) (/.f64 y (fma.f64 x #s(literal 1/2 binary64) y))) (/.f64 (fma.f64 (neg.f64 y) y (*.f64 #s(literal -1/4 binary64) (*.f64 x x))) (fma.f64 x #s(literal 1/2 binary64) y)))))
(/.f64 (*.f64 (*.f64 (fma.f64 (neg.f64 y) y (*.f64 #s(literal 1/4 binary64) (*.f64 x x))) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) (pow.f64 (sqrt.f64 (exp.f64 t)) t)) (fma.f64 x #s(literal 1/2 binary64) y))
(/.f64 (*.f64 (-.f64 (pow.f64 y #s(literal 4 binary64)) (pow.f64 (*.f64 x #s(literal 1/2 binary64)) #s(literal 4 binary64))) (/.f64 (sqrt.f64 (*.f64 (pow.f64 (exp.f64 t) t) (*.f64 z #s(literal 2 binary64)))) (fma.f64 x #s(literal 1/2 binary64) y))) (fma.f64 (neg.f64 y) y (*.f64 #s(literal -1/4 binary64) (*.f64 x x))))
(/.f64 (*.f64 (fma.f64 (pow.f64 x #s(literal 6 binary64)) #s(literal 1/64 binary64) (neg.f64 (pow.f64 y #s(literal 6 binary64)))) (/.f64 (sqrt.f64 (*.f64 (pow.f64 (exp.f64 t) t) (*.f64 z #s(literal 2 binary64)))) (fma.f64 x #s(literal 1/2 binary64) y))) (+.f64 (fma.f64 (pow.f64 x #s(literal 4 binary64)) #s(literal 1/16 binary64) (pow.f64 (*.f64 y (*.f64 x #s(literal 1/2 binary64))) #s(literal 2 binary64))) (pow.f64 y #s(literal 4 binary64))))
(/.f64 (*.f64 (pow.f64 (sqrt.f64 (exp.f64 t)) t) (*.f64 (fma.f64 (neg.f64 y) y (*.f64 #s(literal 1/4 binary64) (*.f64 x x))) (sqrt.f64 (*.f64 z #s(literal 2 binary64))))) (fma.f64 x #s(literal 1/2 binary64) y))
(*.f64 (/.f64 (pow.f64 (sqrt.f64 (exp.f64 t)) t) (/.f64 (fma.f64 (neg.f64 y) y (*.f64 #s(literal 1/4 binary64) (*.f64 x x))) (fma.f64 (pow.f64 x #s(literal 3 binary64)) #s(literal 1/8 binary64) (pow.f64 (neg.f64 y) #s(literal 3 binary64))))) (/.f64 (fma.f64 (neg.f64 y) y (*.f64 #s(literal 1/4 binary64) (*.f64 x x))) (fma.f64 #s(literal 1/4 binary64) (*.f64 x x) (*.f64 y (fma.f64 x #s(literal 1/2 binary64) y)))))
(*.f64 (/.f64 (pow.f64 (sqrt.f64 (exp.f64 t)) t) (/.f64 (fma.f64 (neg.f64 y) y (*.f64 #s(literal 1/4 binary64) (*.f64 x x))) (fma.f64 (neg.f64 y) y (*.f64 #s(literal 1/4 binary64) (*.f64 x x))))) (-.f64 (*.f64 x #s(literal 1/2 binary64)) y))
(*.f64 (/.f64 (pow.f64 (sqrt.f64 (exp.f64 t)) t) (fma.f64 (neg.f64 y) y (*.f64 #s(literal 1/4 binary64) (*.f64 x x)))) (/.f64 (fma.f64 (neg.f64 y) y (*.f64 #s(literal 1/4 binary64) (*.f64 x x))) (pow.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) #s(literal -1 binary64))))
(*.f64 (/.f64 (pow.f64 (sqrt.f64 (exp.f64 t)) t) (fma.f64 (pow.f64 x #s(literal 3 binary64)) #s(literal 1/8 binary64) (pow.f64 y #s(literal 3 binary64)))) (/.f64 (fma.f64 (neg.f64 y) y (*.f64 #s(literal 1/4 binary64) (*.f64 x x))) (pow.f64 (fma.f64 (*.f64 #s(literal 1/4 binary64) x) x (*.f64 y (-.f64 y (*.f64 x #s(literal 1/2 binary64))))) #s(literal -1 binary64))))
(*.f64 (/.f64 (fma.f64 (neg.f64 y) y (*.f64 #s(literal 1/4 binary64) (*.f64 x x))) (/.f64 (fma.f64 (neg.f64 y) y (*.f64 #s(literal 1/4 binary64) (*.f64 x x))) (fma.f64 (pow.f64 x #s(literal 3 binary64)) #s(literal 1/8 binary64) (pow.f64 (neg.f64 y) #s(literal 3 binary64))))) (/.f64 (pow.f64 (sqrt.f64 (exp.f64 t)) t) (fma.f64 #s(literal 1/4 binary64) (*.f64 x x) (*.f64 y (fma.f64 x #s(literal 1/2 binary64) y)))))
(*.f64 (/.f64 (fma.f64 (neg.f64 y) y (*.f64 #s(literal 1/4 binary64) (*.f64 x x))) (/.f64 (fma.f64 (neg.f64 y) y (*.f64 #s(literal 1/4 binary64) (*.f64 x x))) (fma.f64 (neg.f64 y) y (*.f64 #s(literal 1/4 binary64) (*.f64 x x))))) (/.f64 (pow.f64 (sqrt.f64 (exp.f64 t)) t) (fma.f64 x #s(literal 1/2 binary64) y)))
(*.f64 (/.f64 (fma.f64 (neg.f64 y) y (*.f64 #s(literal 1/4 binary64) (*.f64 x x))) (fma.f64 (neg.f64 y) y (*.f64 #s(literal 1/4 binary64) (*.f64 x x)))) (/.f64 (pow.f64 (sqrt.f64 (exp.f64 t)) t) (pow.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) #s(literal -1 binary64))))
(*.f64 (/.f64 (fma.f64 (neg.f64 y) y (*.f64 #s(literal 1/4 binary64) (*.f64 x x))) (fma.f64 (pow.f64 x #s(literal 3 binary64)) #s(literal 1/8 binary64) (pow.f64 y #s(literal 3 binary64)))) (/.f64 (pow.f64 (sqrt.f64 (exp.f64 t)) t) (pow.f64 (fma.f64 (*.f64 #s(literal 1/4 binary64) x) x (*.f64 y (-.f64 y (*.f64 x #s(literal 1/2 binary64))))) #s(literal -1 binary64))))
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (pow.f64 (pow.f64 (sqrt.f64 (exp.f64 t)) t) #s(literal 1/2 binary64))) (pow.f64 (pow.f64 (sqrt.f64 (exp.f64 t)) t) #s(literal 1/2 binary64)))
(*.f64 (pow.f64 (pow.f64 (sqrt.f64 (exp.f64 t)) t) #s(literal 1/2 binary64)) (*.f64 (pow.f64 (pow.f64 (sqrt.f64 (exp.f64 t)) t) #s(literal 1/2 binary64)) (-.f64 (*.f64 x #s(literal 1/2 binary64)) y)))
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(*.f64 (/.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (fma.f64 (neg.f64 y) y (*.f64 #s(literal 1/4 binary64) (*.f64 x x)))) (-.f64 (*.f64 x #s(literal 1/2 binary64)) y))
(*.f64 (/.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (fma.f64 (pow.f64 x #s(literal 3 binary64)) #s(literal 1/8 binary64) (pow.f64 y #s(literal 3 binary64)))) (/.f64 #s(literal 1 binary64) (pow.f64 (fma.f64 (*.f64 #s(literal 1/4 binary64) x) x (*.f64 y (-.f64 y (*.f64 x #s(literal 1/2 binary64))))) #s(literal -1 binary64))))
(*.f64 (/.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (fma.f64 (pow.f64 x #s(literal 3 binary64)) #s(literal 1/8 binary64) (pow.f64 y #s(literal 3 binary64)))) (fma.f64 (*.f64 #s(literal 1/4 binary64) x) x (*.f64 y (-.f64 y (*.f64 x #s(literal 1/2 binary64))))))
(*.f64 (pow.f64 (fma.f64 x #s(literal 1/2 binary64) y) #s(literal -1 binary64)) (pow.f64 (pow.f64 (*.f64 z #s(literal 2 binary64)) #s(literal -1/2 binary64)) #s(literal -1 binary64)))
(*.f64 (pow.f64 (fma.f64 x #s(literal 1/2 binary64) y) #s(literal -1 binary64)) (sqrt.f64 (*.f64 z #s(literal 2 binary64))))
(*.f64 (neg.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) (pow.f64 (neg.f64 (fma.f64 x #s(literal 1/2 binary64) y)) #s(literal -1 binary64)))
(*.f64 (sqrt.f64 z) (/.f64 (sqrt.f64 #s(literal 2 binary64)) (fma.f64 x #s(literal 1/2 binary64) y)))
(*.f64 (sqrt.f64 z) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (pow.f64 (fma.f64 x #s(literal 1/2 binary64) y) #s(literal -1 binary64))))
(*.f64 (sqrt.f64 #s(literal 2 binary64)) (/.f64 (sqrt.f64 z) (fma.f64 x #s(literal 1/2 binary64) y)))
(*.f64 (sqrt.f64 #s(literal 2 binary64)) (*.f64 (sqrt.f64 z) (pow.f64 (fma.f64 x #s(literal 1/2 binary64) y) #s(literal -1 binary64))))
(*.f64 #s(literal 1 binary64) (/.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (fma.f64 x #s(literal 1/2 binary64) y)))
(*.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (pow.f64 (fma.f64 x #s(literal 1/2 binary64) y) #s(literal -1 binary64)))
(pow.f64 (/.f64 (/.f64 (fma.f64 x #s(literal 1/2 binary64) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(literal 1 binary64)) #s(literal -1 binary64))
(pow.f64 (/.f64 (fma.f64 x #s(literal 1/2 binary64) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(literal -1 binary64))
(/.f64 (neg.f64 (*.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) #s(literal 1 binary64))) (neg.f64 (fma.f64 x #s(literal 1/2 binary64) y)))
(/.f64 (neg.f64 (neg.f64 (neg.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64)))))) (neg.f64 (neg.f64 (neg.f64 (fma.f64 x #s(literal 1/2 binary64) y)))))
(/.f64 (*.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) #s(literal 1 binary64)) (fma.f64 x #s(literal 1/2 binary64) y))
(/.f64 (neg.f64 (neg.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))))) (neg.f64 (neg.f64 (fma.f64 x #s(literal 1/2 binary64) y))))
(/.f64 #s(literal -1 binary64) (neg.f64 (/.f64 (/.f64 (fma.f64 x #s(literal 1/2 binary64) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(literal 1 binary64))))
(/.f64 #s(literal -1 binary64) (neg.f64 (/.f64 (fma.f64 x #s(literal 1/2 binary64) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64))))))
(/.f64 (neg.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) (neg.f64 (fma.f64 x #s(literal 1/2 binary64) y)))
(/.f64 #s(literal 1 binary64) (neg.f64 (neg.f64 (/.f64 (fma.f64 x #s(literal 1/2 binary64) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))))))
(/.f64 #s(literal 1 binary64) (/.f64 (/.f64 (fma.f64 x #s(literal 1/2 binary64) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(literal 1 binary64)))
(/.f64 #s(literal 1 binary64) (/.f64 (fma.f64 x #s(literal 1/2 binary64) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))))
(/.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (fma.f64 x #s(literal 1/2 binary64) y))
(neg.f64 (/.f64 (neg.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) (fma.f64 x #s(literal 1/2 binary64) y)))
(neg.f64 (/.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (neg.f64 (fma.f64 x #s(literal 1/2 binary64) y))))
(-.f64 (/.f64 #s(literal 0 binary64) (neg.f64 (fma.f64 x #s(literal 1/2 binary64) y))) (/.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (neg.f64 (fma.f64 x #s(literal 1/2 binary64) y))))
(exp.f64 (*.f64 (log.f64 (/.f64 (fma.f64 x #s(literal 1/2 binary64) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64))))) #s(literal -1 binary64)))

eval273.0ms (2.4%)

Memory
-3.9MiB live, 296.0MiB allocated
Compiler

Compiled 69 756 to 4 577 computations (93.4% saved)

prune84.0ms (0.7%)

Memory
7.4MiB live, 148.0MiB allocated
Pruning

31 alts after pruning (30 fresh and 1 done)

PrunedKeptTotal
New1 361261 387
Fresh8412
Picked415
Done000
Total1 373311 404
Accuracy
100.0%
Counts
1 404 → 31
Alt Table
Click to see full alt table
StatusAccuracyProgram
50.0%
(/.f64 (*.f64 (fma.f64 (neg.f64 y) y (*.f64 #s(literal 1/4 binary64) (*.f64 x x))) (*.f64 #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)) (sqrt.f64 (*.f64 z #s(literal 2 binary64))))) (fma.f64 x #s(literal 1/2 binary64) y))
47.5%
(*.f64 (/.f64 (fma.f64 (neg.f64 y) y (*.f64 #s(literal 1/4 binary64) (*.f64 x x))) (/.f64 (fma.f64 x #s(literal 1/2 binary64) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64))))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
99.0%
(*.f64 (/.f64 (sqrt.f64 (*.f64 #s(literal 2 binary64) z)) (pow.f64 (-.f64 (*.f64 #s(literal 1/2 binary64) x) y) #s(literal -1 binary64))) (exp.f64 (/.f64 (*.f64 t t) #s(literal 2 binary64))))
50.0%
(*.f64 (/.f64 #s(literal 1 binary64) (/.f64 (fma.f64 x #s(literal 1/2 binary64) y) (*.f64 (fma.f64 (neg.f64 y) y (*.f64 #s(literal 1/4 binary64) (*.f64 x x))) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
81.1%
(*.f64 (*.f64 (fma.f64 (/.f64 #s(literal 1/4 binary64) (fma.f64 x #s(literal 1/2 binary64) y)) (*.f64 x x) (*.f64 (neg.f64 y) (/.f64 y (fma.f64 x #s(literal 1/2 binary64) y)))) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) (fma.f64 (fma.f64 (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))))
48.0%
(*.f64 (*.f64 (fma.f64 (neg.f64 y) y (*.f64 #s(literal 1/4 binary64) (*.f64 x x))) (/.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (fma.f64 x #s(literal 1/2 binary64) y))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
98.9%
(*.f64 (*.f64 (pow.f64 (*.f64 #s(literal 2 binary64) z) #s(literal 1/4 binary64)) (*.f64 (pow.f64 (*.f64 #s(literal 2 binary64) z) #s(literal 1/4 binary64)) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y))) (exp.f64 (/.f64 (*.f64 t t) #s(literal 2 binary64))))
99.8%
(*.f64 (*.f64 (pow.f64 #s(approx (sqrt (exp t)) (fma.f64 #s(literal 1/2 binary64) t #s(literal 1 binary64))) t) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
57.1%
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (/.f64 #s(literal 1 binary64) (pow.f64 (*.f64 z #s(literal 2 binary64)) #s(literal -1/2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
95.0%
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) (fma.f64 (fma.f64 (fma.f64 (*.f64 #s(literal 1/48 binary64) t) t #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))))
95.0%
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) (fma.f64 (fma.f64 #s(approx (+ (* 1/48 (* t t)) 1/8) (*.f64 #s(literal 1/48 binary64) (*.f64 t t))) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))))
92.0%
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) (fma.f64 (fma.f64 #s(approx (+ (* 1/48 (* t t)) 1/8) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))))
86.1%
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) (fma.f64 (*.f64 t t) #s(literal 1/2 binary64) #s(literal 1 binary64))))
57.1%
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
51.7%
(*.f64 (*.f64 (*.f64 (/.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (fma.f64 x #s(literal 1/2 binary64) y)) (fma.f64 x #s(literal 1/2 binary64) y)) (-.f64 (*.f64 x #s(literal 1/2 binary64)) y)) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
94.8%
(*.f64 (*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 z)) #s(approx (exp (/ (* t t) 2)) (fma.f64 (fma.f64 (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))))
56.9%
(*.f64 (*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 z)) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
96.5%
(*.f64 (*.f64 #s(approx (pow (sqrt (exp t)) t) (fma.f64 (fma.f64 (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
93.1%
(*.f64 (*.f64 #s(approx (pow (sqrt (exp t)) t) (fma.f64 (fma.f64 #s(literal 1/8 binary64) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
88.3%
(*.f64 (*.f64 #s(approx (pow (sqrt (exp t)) t) (fma.f64 (*.f64 t t) #s(literal 1/2 binary64) #s(literal 1 binary64))) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
57.5%
(*.f64 (*.f64 #s(approx (- (* x 1/2) y) (*.f64 (fma.f64 (/.f64 x y) #s(literal 1/2 binary64) #s(literal -1 binary64)) y)) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
57.8%
(*.f64 (*.f64 #s(approx (- (* x 1/2) y) (*.f64 (-.f64 #s(literal 1/2 binary64) (/.f64 y x)) x)) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
55.1%
(*.f64 (*.f64 #s(approx (- (* x 1/2) y) (neg.f64 y)) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) (fma.f64 (fma.f64 (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))))
27.8%
(*.f64 (*.f64 #s(approx (- (* x 1/2) y) (neg.f64 y)) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
95.7%
(*.f64 #s(approx (* (pow (sqrt (exp t)) t) (- (* 1/2 x) y)) (fma.f64 (fma.f64 (*.f64 (-.f64 (*.f64 #s(literal 1/2 binary64) x) y) (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64))) (*.f64 t t) (*.f64 (-.f64 (*.f64 #s(literal 1/2 binary64) x) y) #s(literal 1/2 binary64))) (*.f64 t t) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y))) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
92.8%
(*.f64 #s(approx (* (pow (sqrt (exp t)) t) (- (* 1/2 x) y)) (fma.f64 (*.f64 (-.f64 (*.f64 #s(literal 1/2 binary64) x) y) (fma.f64 #s(literal 1/8 binary64) (*.f64 t t) #s(literal 1/2 binary64))) (*.f64 t t) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y))) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
55.0%
(*.f64 #s(approx (* (- (* x 1/2) y) (sqrt (* z 2))) (*.f64 (*.f64 y (neg.f64 (sqrt.f64 z))) (sqrt.f64 #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) (fma.f64 (fma.f64 (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))))
27.7%
(*.f64 #s(approx (* (- (* x 1/2) y) (sqrt (* z 2))) (*.f64 (*.f64 y (neg.f64 (sqrt.f64 z))) (sqrt.f64 #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
33.8%
(*.f64 #s(approx (* (- (* x 1/2) y) (sqrt (* z 2))) (*.f64 (*.f64 x (*.f64 #s(literal 1/2 binary64) (sqrt.f64 z))) (sqrt.f64 #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
57.3%
(*.f64 #s(approx (* (- (* x 1/2) y) (sqrt (* z 2))) (*.f64 (neg.f64 y) (*.f64 (sqrt.f64 z) (fma.f64 #s(literal -1/2 binary64) (*.f64 x (/.f64 (sqrt.f64 #s(literal 2 binary64)) y)) (sqrt.f64 #s(literal 2 binary64)))))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
88.1%
#s(approx (* (* (- (* x 1/2) y) (sqrt (* z 2))) (exp (/ (* t t) 2))) (*.f64 (*.f64 (fma.f64 (*.f64 t t) #s(literal 1/2 binary64) #s(literal 1 binary64)) (*.f64 (fma.f64 #s(literal 1/2 binary64) x (neg.f64 y)) (sqrt.f64 #s(literal 2 binary64)))) (sqrt.f64 z)))
Compiler

Compiled 1 869 to 1 426 computations (23.7% saved)

simplify297.0ms (2.6%)

Memory
2.4MiB live, 193.3MiB allocated
Algorithm
egg-herbie
Localize:

Found 20 expressions of interest:

NewMetricScoreProgram
cost-diff0
(*.f64 y (neg.f64 (sqrt.f64 z)))
cost-diff0
(*.f64 (*.f64 y (neg.f64 (sqrt.f64 z))) (sqrt.f64 #s(literal 2 binary64)))
cost-diff0
#s(approx (* (- (* x 1/2) y) (sqrt (* z 2))) (*.f64 (*.f64 y (neg.f64 (sqrt.f64 z))) (sqrt.f64 #s(literal 2 binary64))))
cost-diff0
(*.f64 #s(approx (* (- (* x 1/2) y) (sqrt (* z 2))) (*.f64 (*.f64 y (neg.f64 (sqrt.f64 z))) (sqrt.f64 #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) (fma.f64 (fma.f64 (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))))
cost-diff0
(/.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (fma.f64 x #s(literal 1/2 binary64) y))
cost-diff0
(*.f64 (*.f64 (/.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (fma.f64 x #s(literal 1/2 binary64) y)) (fma.f64 x #s(literal 1/2 binary64) y)) (-.f64 (*.f64 x #s(literal 1/2 binary64)) y))
cost-diff0
(*.f64 (*.f64 (*.f64 (/.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (fma.f64 x #s(literal 1/2 binary64) y)) (fma.f64 x #s(literal 1/2 binary64) y)) (-.f64 (*.f64 x #s(literal 1/2 binary64)) y)) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
cost-diff1792
(*.f64 (/.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (fma.f64 x #s(literal 1/2 binary64) y)) (fma.f64 x #s(literal 1/2 binary64) y))
cost-diff0
#s(approx (- (* x 1/2) y) (*.f64 (fma.f64 (/.f64 x y) #s(literal 1/2 binary64) #s(literal -1 binary64)) y))
cost-diff0
(*.f64 #s(approx (- (* x 1/2) y) (*.f64 (fma.f64 (/.f64 x y) #s(literal 1/2 binary64) #s(literal -1 binary64)) y)) (sqrt.f64 (*.f64 z #s(literal 2 binary64))))
cost-diff0
(*.f64 (*.f64 #s(approx (- (* x 1/2) y) (*.f64 (fma.f64 (/.f64 x y) #s(literal 1/2 binary64) #s(literal -1 binary64)) y)) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
cost-diff896
(*.f64 (fma.f64 (/.f64 x y) #s(literal 1/2 binary64) #s(literal -1 binary64)) y)
cost-diff0
(neg.f64 y)
cost-diff0
#s(approx (- (* x 1/2) y) (neg.f64 y))
cost-diff0
(*.f64 #s(approx (- (* x 1/2) y) (neg.f64 y)) (sqrt.f64 (*.f64 z #s(literal 2 binary64))))
cost-diff0
(*.f64 (*.f64 #s(approx (- (* x 1/2) y) (neg.f64 y)) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
cost-diff0
#s(approx (sqrt (exp t)) (fma.f64 #s(literal 1/2 binary64) t #s(literal 1 binary64)))
cost-diff0
(pow.f64 #s(approx (sqrt (exp t)) (fma.f64 #s(literal 1/2 binary64) t #s(literal 1 binary64))) t)
cost-diff0
(*.f64 (pow.f64 #s(approx (sqrt (exp t)) (fma.f64 #s(literal 1/2 binary64) t #s(literal 1 binary64))) t) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y))
cost-diff0
(*.f64 (*.f64 (pow.f64 #s(approx (sqrt (exp t)) (fma.f64 #s(literal 1/2 binary64) t #s(literal 1 binary64))) t) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
Iterations

Useful iterations: 4 (0.0ms)

IterNodesCost
061499
0102478
1175478
2352462
31044458
43451449
56292449
08193449
Stop Event
iter limit
node limit
iter limit
Calls
Call 1
Inputs
(*.f64 (*.f64 (pow.f64 #s(approx (sqrt (exp t)) (fma.f64 #s(literal 1/2 binary64) t #s(literal 1 binary64))) t) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
(*.f64 (pow.f64 #s(approx (sqrt (exp t)) (fma.f64 #s(literal 1/2 binary64) t #s(literal 1 binary64))) t) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y))
(pow.f64 #s(approx (sqrt (exp t)) (fma.f64 #s(literal 1/2 binary64) t #s(literal 1 binary64))) t)
#s(approx (sqrt (exp t)) (fma.f64 #s(literal 1/2 binary64) t #s(literal 1 binary64)))
(fma.f64 #s(literal 1/2 binary64) t #s(literal 1 binary64))
#s(literal 1/2 binary64)
t
#s(literal 1 binary64)
(-.f64 (*.f64 #s(literal 1/2 binary64) x) y)
(*.f64 #s(literal 1/2 binary64) x)
x
y
(sqrt.f64 (*.f64 #s(literal 2 binary64) z))
(*.f64 #s(literal 2 binary64) z)
#s(literal 2 binary64)
z
(*.f64 (*.f64 #s(approx (- (* x 1/2) y) (neg.f64 y)) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 #s(approx (- (* x 1/2) y) (neg.f64 y)) (sqrt.f64 (*.f64 z #s(literal 2 binary64))))
#s(approx (- (* x 1/2) y) (neg.f64 y))
(neg.f64 y)
y
(sqrt.f64 (*.f64 z #s(literal 2 binary64)))
(*.f64 z #s(literal 2 binary64))
z
#s(literal 2 binary64)
#s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64))
#s(literal 1 binary64)
(*.f64 (*.f64 #s(approx (- (* x 1/2) y) (*.f64 (fma.f64 (/.f64 x y) #s(literal 1/2 binary64) #s(literal -1 binary64)) y)) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 #s(approx (- (* x 1/2) y) (*.f64 (fma.f64 (/.f64 x y) #s(literal 1/2 binary64) #s(literal -1 binary64)) y)) (sqrt.f64 (*.f64 z #s(literal 2 binary64))))
#s(approx (- (* x 1/2) y) (*.f64 (fma.f64 (/.f64 x y) #s(literal 1/2 binary64) #s(literal -1 binary64)) y))
(*.f64 (fma.f64 (/.f64 x y) #s(literal 1/2 binary64) #s(literal -1 binary64)) y)
(fma.f64 (/.f64 x y) #s(literal 1/2 binary64) #s(literal -1 binary64))
(/.f64 x y)
x
y
#s(literal 1/2 binary64)
#s(literal -1 binary64)
(sqrt.f64 (*.f64 z #s(literal 2 binary64)))
(*.f64 z #s(literal 2 binary64))
z
#s(literal 2 binary64)
#s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64))
#s(literal 1 binary64)
(*.f64 (*.f64 (*.f64 (/.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (fma.f64 x #s(literal 1/2 binary64) y)) (fma.f64 x #s(literal 1/2 binary64) y)) (-.f64 (*.f64 x #s(literal 1/2 binary64)) y)) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 (/.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (fma.f64 x #s(literal 1/2 binary64) y)) (fma.f64 x #s(literal 1/2 binary64) y)) (-.f64 (*.f64 x #s(literal 1/2 binary64)) y))
(*.f64 (/.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (fma.f64 x #s(literal 1/2 binary64) y)) (fma.f64 x #s(literal 1/2 binary64) y))
(/.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (fma.f64 x #s(literal 1/2 binary64) y))
(sqrt.f64 (*.f64 z #s(literal 2 binary64)))
(*.f64 z #s(literal 2 binary64))
z
#s(literal 2 binary64)
(fma.f64 x #s(literal 1/2 binary64) y)
x
#s(literal 1/2 binary64)
y
(-.f64 (*.f64 x #s(literal 1/2 binary64)) y)
(*.f64 x #s(literal 1/2 binary64))
#s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64))
#s(literal 1 binary64)
(*.f64 #s(approx (* (- (* x 1/2) y) (sqrt (* z 2))) (*.f64 (*.f64 y (neg.f64 (sqrt.f64 z))) (sqrt.f64 #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) (fma.f64 (fma.f64 (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))))
#s(approx (* (- (* x 1/2) y) (sqrt (* z 2))) (*.f64 (*.f64 y (neg.f64 (sqrt.f64 z))) (sqrt.f64 #s(literal 2 binary64))))
(*.f64 (*.f64 y (neg.f64 (sqrt.f64 z))) (sqrt.f64 #s(literal 2 binary64)))
(*.f64 y (neg.f64 (sqrt.f64 z)))
y
(neg.f64 (sqrt.f64 z))
(sqrt.f64 z)
z
(sqrt.f64 #s(literal 2 binary64))
#s(literal 2 binary64)
#s(approx (exp (/ (* t t) 2)) (fma.f64 (fma.f64 (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64)))
(fma.f64 (fma.f64 (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))
(fma.f64 (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64))
(fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64))
#s(literal 1/48 binary64)
(*.f64 t t)
t
#s(literal 1/8 binary64)
#s(literal 1/2 binary64)
#s(literal 1 binary64)
Outputs
(*.f64 (*.f64 (pow.f64 #s(approx (sqrt (exp t)) (fma.f64 #s(literal 1/2 binary64) t #s(literal 1 binary64))) t) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
(*.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (*.f64 (neg.f64 (fma.f64 #s(literal -1/2 binary64) x y)) (pow.f64 #s(approx (sqrt (exp t)) (fma.f64 #s(literal 1/2 binary64) t #s(literal 1 binary64))) t)))
(*.f64 (pow.f64 #s(approx (sqrt (exp t)) (fma.f64 #s(literal 1/2 binary64) t #s(literal 1 binary64))) t) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y))
(*.f64 (neg.f64 (fma.f64 #s(literal -1/2 binary64) x y)) (pow.f64 #s(approx (sqrt (exp t)) (fma.f64 #s(literal 1/2 binary64) t #s(literal 1 binary64))) t))
(pow.f64 #s(approx (sqrt (exp t)) (fma.f64 #s(literal 1/2 binary64) t #s(literal 1 binary64))) t)
#s(approx (sqrt (exp t)) (fma.f64 #s(literal 1/2 binary64) t #s(literal 1 binary64)))
(fma.f64 #s(literal 1/2 binary64) t #s(literal 1 binary64))
#s(literal 1/2 binary64)
t
#s(literal 1 binary64)
(-.f64 (*.f64 #s(literal 1/2 binary64) x) y)
(neg.f64 (fma.f64 #s(literal -1/2 binary64) x y))
(*.f64 #s(literal 1/2 binary64) x)
(*.f64 x #s(literal 1/2 binary64))
x
y
(sqrt.f64 (*.f64 #s(literal 2 binary64) z))
(sqrt.f64 (*.f64 z #s(literal 2 binary64)))
(*.f64 #s(literal 2 binary64) z)
(*.f64 z #s(literal 2 binary64))
#s(literal 2 binary64)
z
(*.f64 (*.f64 #s(approx (- (* x 1/2) y) (neg.f64 y)) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)) #s(approx (- (* x 1/2) y) (neg.f64 y))) (sqrt.f64 (*.f64 z #s(literal 2 binary64))))
(*.f64 #s(approx (- (* x 1/2) y) (neg.f64 y)) (sqrt.f64 (*.f64 z #s(literal 2 binary64))))
(*.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) #s(approx (- (* x 1/2) y) (neg.f64 y)))
#s(approx (- (* x 1/2) y) (neg.f64 y))
(neg.f64 y)
y
(sqrt.f64 (*.f64 z #s(literal 2 binary64)))
(*.f64 z #s(literal 2 binary64))
z
#s(literal 2 binary64)
#s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64))
#s(literal 1 binary64)
(*.f64 (*.f64 #s(approx (- (* x 1/2) y) (*.f64 (fma.f64 (/.f64 x y) #s(literal 1/2 binary64) #s(literal -1 binary64)) y)) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (- (* x 1/2) y) (neg.f64 (fma.f64 #s(literal -1/2 binary64) x y))))
(*.f64 #s(approx (- (* x 1/2) y) (*.f64 (fma.f64 (/.f64 x y) #s(literal 1/2 binary64) #s(literal -1 binary64)) y)) (sqrt.f64 (*.f64 z #s(literal 2 binary64))))
(*.f64 #s(approx (- (* x 1/2) y) (neg.f64 (fma.f64 #s(literal -1/2 binary64) x y))) (sqrt.f64 (*.f64 z #s(literal 2 binary64))))
#s(approx (- (* x 1/2) y) (*.f64 (fma.f64 (/.f64 x y) #s(literal 1/2 binary64) #s(literal -1 binary64)) y))
#s(approx (- (* x 1/2) y) (neg.f64 (fma.f64 #s(literal -1/2 binary64) x y)))
(*.f64 (fma.f64 (/.f64 x y) #s(literal 1/2 binary64) #s(literal -1 binary64)) y)
(neg.f64 (fma.f64 #s(literal -1/2 binary64) x y))
(fma.f64 (/.f64 x y) #s(literal 1/2 binary64) #s(literal -1 binary64))
(/.f64 x y)
x
y
#s(literal 1/2 binary64)
#s(literal -1 binary64)
(sqrt.f64 (*.f64 z #s(literal 2 binary64)))
(*.f64 z #s(literal 2 binary64))
z
#s(literal 2 binary64)
#s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64))
#s(literal 1 binary64)
(*.f64 (*.f64 (*.f64 (/.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (fma.f64 x #s(literal 1/2 binary64) y)) (fma.f64 x #s(literal 1/2 binary64) y)) (-.f64 (*.f64 x #s(literal 1/2 binary64)) y)) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 (neg.f64 #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64))) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) (fma.f64 #s(literal -1/2 binary64) x y))
(*.f64 (*.f64 (/.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (fma.f64 x #s(literal 1/2 binary64) y)) (fma.f64 x #s(literal 1/2 binary64) y)) (-.f64 (*.f64 x #s(literal 1/2 binary64)) y))
(*.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (neg.f64 (fma.f64 #s(literal -1/2 binary64) x y)))
(*.f64 (/.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (fma.f64 x #s(literal 1/2 binary64) y)) (fma.f64 x #s(literal 1/2 binary64) y))
(sqrt.f64 (*.f64 z #s(literal 2 binary64)))
(/.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (fma.f64 x #s(literal 1/2 binary64) y))
(sqrt.f64 (*.f64 z #s(literal 2 binary64)))
(*.f64 z #s(literal 2 binary64))
z
#s(literal 2 binary64)
(fma.f64 x #s(literal 1/2 binary64) y)
x
#s(literal 1/2 binary64)
y
(-.f64 (*.f64 x #s(literal 1/2 binary64)) y)
(neg.f64 (fma.f64 #s(literal -1/2 binary64) x y))
(*.f64 x #s(literal 1/2 binary64))
#s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64))
#s(literal 1 binary64)
(*.f64 #s(approx (* (- (* x 1/2) y) (sqrt (* z 2))) (*.f64 (*.f64 y (neg.f64 (sqrt.f64 z))) (sqrt.f64 #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) (fma.f64 (fma.f64 (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))))
(*.f64 #s(approx (exp (/ (* t t) 2)) (fma.f64 (fma.f64 (fma.f64 (*.f64 t t) #s(literal 1/48 binary64) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))) #s(approx (* (- (* x 1/2) y) (sqrt (* z 2))) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) y) (neg.f64 (sqrt.f64 z)))))
#s(approx (* (- (* x 1/2) y) (sqrt (* z 2))) (*.f64 (*.f64 y (neg.f64 (sqrt.f64 z))) (sqrt.f64 #s(literal 2 binary64))))
#s(approx (* (- (* x 1/2) y) (sqrt (* z 2))) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) y) (neg.f64 (sqrt.f64 z))))
(*.f64 (*.f64 y (neg.f64 (sqrt.f64 z))) (sqrt.f64 #s(literal 2 binary64)))
(*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) y) (neg.f64 (sqrt.f64 z)))
(*.f64 y (neg.f64 (sqrt.f64 z)))
(*.f64 (neg.f64 (sqrt.f64 z)) y)
y
(neg.f64 (sqrt.f64 z))
(sqrt.f64 z)
z
(sqrt.f64 #s(literal 2 binary64))
#s(literal 2 binary64)
#s(approx (exp (/ (* t t) 2)) (fma.f64 (fma.f64 (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64)))
#s(approx (exp (/ (* t t) 2)) (fma.f64 (fma.f64 (fma.f64 (*.f64 t t) #s(literal 1/48 binary64) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64)))
(fma.f64 (fma.f64 (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))
(fma.f64 (fma.f64 (fma.f64 (*.f64 t t) #s(literal 1/48 binary64) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))
(fma.f64 (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64))
(fma.f64 (fma.f64 (*.f64 t t) #s(literal 1/48 binary64) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64))
(fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64))
(fma.f64 (*.f64 t t) #s(literal 1/48 binary64) #s(literal 1/8 binary64))
#s(literal 1/48 binary64)
(*.f64 t t)
t
#s(literal 1/8 binary64)
#s(literal 1/2 binary64)
#s(literal 1 binary64)

localize202.0ms (1.7%)

Memory
10.4MiB live, 205.6MiB allocated
Localize:

Found 20 expressions of interest:

NewMetricScoreProgram
accuracy0.4733200195368841
(*.f64 (*.f64 y (neg.f64 (sqrt.f64 z))) (sqrt.f64 #s(literal 2 binary64)))
accuracy0.5039021216604116
(*.f64 #s(approx (* (- (* x 1/2) y) (sqrt (* z 2))) (*.f64 (*.f64 y (neg.f64 (sqrt.f64 z))) (sqrt.f64 #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) (fma.f64 (fma.f64 (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))))
accuracy4.485125503656907
#s(approx (exp (/ (* t t) 2)) (fma.f64 (fma.f64 (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64)))
accuracy32.68860745620499
#s(approx (* (- (* x 1/2) y) (sqrt (* z 2))) (*.f64 (*.f64 y (neg.f64 (sqrt.f64 z))) (sqrt.f64 #s(literal 2 binary64))))
accuracy0.234375
(*.f64 (*.f64 (/.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (fma.f64 x #s(literal 1/2 binary64) y)) (fma.f64 x #s(literal 1/2 binary64) y)) (-.f64 (*.f64 x #s(literal 1/2 binary64)) y))
accuracy0.5039021216604116
(*.f64 (*.f64 (*.f64 (/.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (fma.f64 x #s(literal 1/2 binary64) y)) (fma.f64 x #s(literal 1/2 binary64) y)) (-.f64 (*.f64 x #s(literal 1/2 binary64)) y)) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
accuracy7.697370739668535
(*.f64 (/.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (fma.f64 x #s(literal 1/2 binary64) y)) (fma.f64 x #s(literal 1/2 binary64) y))
accuracy32.29958965994895
#s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64))
accuracy0.234375
(*.f64 #s(approx (- (* x 1/2) y) (*.f64 (fma.f64 (/.f64 x y) #s(literal 1/2 binary64) #s(literal -1 binary64)) y)) (sqrt.f64 (*.f64 z #s(literal 2 binary64))))
accuracy0.5039021216604116
(*.f64 (*.f64 #s(approx (- (* x 1/2) y) (*.f64 (fma.f64 (/.f64 x y) #s(literal 1/2 binary64) #s(literal -1 binary64)) y)) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
accuracy7.4892824710385
(*.f64 (fma.f64 (/.f64 x y) #s(literal 1/2 binary64) #s(literal -1 binary64)) y)
accuracy32.29958965994895
#s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64))
accuracy0.234375
(*.f64 #s(approx (- (* x 1/2) y) (neg.f64 y)) (sqrt.f64 (*.f64 z #s(literal 2 binary64))))
accuracy0.5039021216604116
(*.f64 (*.f64 #s(approx (- (* x 1/2) y) (neg.f64 y)) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
accuracy32.29958965994895
#s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64))
accuracy33.327314287099036
#s(approx (- (* x 1/2) y) (neg.f64 y))
accuracy0
(*.f64 #s(literal 1/2 binary64) x)
accuracy0
(sqrt.f64 (*.f64 #s(literal 2 binary64) z))
accuracy0.10546875
(*.f64 (*.f64 (pow.f64 #s(approx (sqrt (exp t)) (fma.f64 #s(literal 1/2 binary64) t #s(literal 1 binary64))) t) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
accuracy31.53313162472672
#s(approx (sqrt (exp t)) (fma.f64 #s(literal 1/2 binary64) t #s(literal 1 binary64)))
Samples
145.0ms256×0valid
Compiler

Compiled 897 to 116 computations (87.1% saved)

Precisions
Click to see histograms. Total time spent on operations: 76.0ms
ival-mult: 28.0ms (36.9% of total)
ival-sqrt: 14.0ms (18.5% of total)
ival-add: 9.0ms (11.9% of total)
ival-div: 5.0ms (6.6% of total)
ival-pow: 5.0ms (6.6% of total)
ival-exp: 4.0ms (5.3% of total)
const: 4.0ms (5.3% of total)
ival-sub: 3.0ms (4% of total)
ival-neg: 2.0ms (2.6% of total)
exact: 1.0ms (1.3% of total)
ival-assert: 0.0ms (0% of total)
ival-true: 0.0ms (0% of total)

series83.0ms (0.7%)

Memory
-24.4MiB live, 128.4MiB allocated
Counts
24 → 86
Calls
Call 1
Inputs
(*.f64 (*.f64 (pow.f64 #s(approx (sqrt (exp t)) (fma.f64 #s(literal 1/2 binary64) t #s(literal 1 binary64))) t) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
(*.f64 (pow.f64 #s(approx (sqrt (exp t)) (fma.f64 #s(literal 1/2 binary64) t #s(literal 1 binary64))) t) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y))
(pow.f64 #s(approx (sqrt (exp t)) (fma.f64 #s(literal 1/2 binary64) t #s(literal 1 binary64))) t)
#s(approx (sqrt (exp t)) (fma.f64 #s(literal 1/2 binary64) t #s(literal 1 binary64)))
(*.f64 (*.f64 #s(approx (- (* x 1/2) y) (neg.f64 y)) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 #s(approx (- (* x 1/2) y) (neg.f64 y)) (sqrt.f64 (*.f64 z #s(literal 2 binary64))))
#s(approx (- (* x 1/2) y) (neg.f64 y))
(neg.f64 y)
(*.f64 (fma.f64 (/.f64 x y) #s(literal 1/2 binary64) #s(literal -1 binary64)) y)
(*.f64 (*.f64 #s(approx (- (* x 1/2) y) (*.f64 (fma.f64 (/.f64 x y) #s(literal 1/2 binary64) #s(literal -1 binary64)) y)) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 #s(approx (- (* x 1/2) y) (*.f64 (fma.f64 (/.f64 x y) #s(literal 1/2 binary64) #s(literal -1 binary64)) y)) (sqrt.f64 (*.f64 z #s(literal 2 binary64))))
#s(approx (- (* x 1/2) y) (*.f64 (fma.f64 (/.f64 x y) #s(literal 1/2 binary64) #s(literal -1 binary64)) y))
(*.f64 (/.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (fma.f64 x #s(literal 1/2 binary64) y)) (fma.f64 x #s(literal 1/2 binary64) y))
(*.f64 (*.f64 (*.f64 (/.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (fma.f64 x #s(literal 1/2 binary64) y)) (fma.f64 x #s(literal 1/2 binary64) y)) (-.f64 (*.f64 x #s(literal 1/2 binary64)) y)) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 (/.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (fma.f64 x #s(literal 1/2 binary64) y)) (fma.f64 x #s(literal 1/2 binary64) y)) (-.f64 (*.f64 x #s(literal 1/2 binary64)) y))
(/.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (fma.f64 x #s(literal 1/2 binary64) y))
(*.f64 #s(approx (* (- (* x 1/2) y) (sqrt (* z 2))) (*.f64 (*.f64 y (neg.f64 (sqrt.f64 z))) (sqrt.f64 #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) (fma.f64 (fma.f64 (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))))
#s(approx (* (- (* x 1/2) y) (sqrt (* z 2))) (*.f64 (*.f64 y (neg.f64 (sqrt.f64 z))) (sqrt.f64 #s(literal 2 binary64))))
(*.f64 (*.f64 y (neg.f64 (sqrt.f64 z))) (sqrt.f64 #s(literal 2 binary64)))
(*.f64 y (neg.f64 (sqrt.f64 z)))
(sqrt.f64 (*.f64 #s(literal 2 binary64) z))
(*.f64 #s(literal 1/2 binary64) x)
#s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64))
#s(approx (exp (/ (* t t) 2)) (fma.f64 (fma.f64 (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64)))
Outputs
(* -1 (* (* y (* (sqrt 2) (pow (sqrt (exp t)) t))) (sqrt z)))
(+ (* -1 (* (* y (* (sqrt 2) (pow (sqrt (exp t)) t))) (sqrt z))) (* 1/2 (* (* x (* (sqrt 2) (pow (sqrt (exp t)) t))) (sqrt z))))
(* -1 (* y (pow (sqrt (exp t)) t)))
(+ (* -1 (* y (pow (sqrt (exp t)) t))) (* 1/2 (* x (pow (sqrt (exp t)) t))))
(* -1 (* (* y (* (exp (* 1/2 (pow t 2))) (sqrt 2))) (sqrt z)))
(+ (* -1 (* (* y (* (exp (* 1/2 (pow t 2))) (sqrt 2))) (sqrt z))) (* 1/2 (* (* x (* (exp (* 1/2 (pow t 2))) (sqrt 2))) (sqrt z))))
(* -1 (* (* y (sqrt 2)) (sqrt z)))
(+ (* -1 (* (* y (sqrt 2)) (sqrt z))) (* 1/2 (* (* x (sqrt 2)) (sqrt z))))
(* -1 y)
(- (* 1/2 x) y)
(+ (* -1 y) (* 1/2 x))
(* (sqrt z) (sqrt 2))
(* (/ (sqrt 2) y) (sqrt z))
(+ (* -1/2 (* (/ (* x (sqrt 2)) (pow y 2)) (sqrt z))) (* (/ (sqrt 2) y) (sqrt z)))
(+ (* x (+ (* -1/2 (* (/ (sqrt 2) (pow y 2)) (sqrt z))) (* 1/4 (* (/ (* x (sqrt 2)) (pow y 3)) (sqrt z))))) (* (/ (sqrt 2) y) (sqrt z)))
(+ (* x (+ (* -1/2 (* (/ (sqrt 2) (pow y 2)) (sqrt z))) (* x (+ (* -1/8 (* (/ (* x (sqrt 2)) (pow y 4)) (sqrt z))) (* 1/4 (* (/ (sqrt 2) (pow y 3)) (sqrt z))))))) (* (/ (sqrt 2) y) (sqrt z)))
(* 1/2 x)
(* 1/2 (* (* x (* (sqrt 2) (pow (sqrt (exp t)) t))) (sqrt z)))
(* x (+ (* -1 (* (/ (* y (* (sqrt 2) (pow (sqrt (exp t)) t))) x) (sqrt z))) (* 1/2 (* (sqrt z) (* (sqrt 2) (pow (sqrt (exp t)) t))))))
(* 1/2 (* x (pow (sqrt (exp t)) t)))
(* x (+ (* -1 (/ (* y (pow (sqrt (exp t)) t)) x)) (* 1/2 (pow (sqrt (exp t)) t))))
(* 1/2 (* (* x (* (exp (* 1/2 (pow t 2))) (sqrt 2))) (sqrt z)))
(* x (+ (* -1 (* (/ (* y (* (exp (* 1/2 (pow t 2))) (sqrt 2))) x) (sqrt z))) (* 1/2 (* (sqrt z) (* (exp (* 1/2 (pow t 2))) (sqrt 2))))))
(* 1/2 (* (* x (sqrt 2)) (sqrt z)))
(* x (+ (* -1 (* (/ (* y (sqrt 2)) x) (sqrt z))) (* 1/2 (* (sqrt z) (sqrt 2)))))
(* x (+ 1/2 (* -1 (/ y x))))
(* 2 (* (/ (sqrt 2) x) (sqrt z)))
(/ (+ (* -4 (* (/ (* y (sqrt 2)) x) (sqrt z))) (* 2 (* (sqrt z) (sqrt 2)))) x)
(/ (+ (* -4 (* (/ (* y (sqrt 2)) x) (sqrt z))) (+ (* 2 (* (sqrt z) (sqrt 2))) (* 8 (* (/ (* (pow y 2) (sqrt 2)) (pow x 2)) (sqrt z))))) x)
(/ (+ (* -16 (* (/ (* (pow y 3) (sqrt 2)) (pow x 3)) (sqrt z))) (+ (* -4 (* (/ (* y (sqrt 2)) x) (sqrt z))) (+ (* 2 (* (sqrt z) (sqrt 2))) (* 8 (* (/ (* (pow y 2) (sqrt 2)) (pow x 2)) (sqrt z)))))) x)
(* -1 (* x (+ (* -1/2 (* (sqrt z) (* (sqrt 2) (pow (sqrt (exp t)) t)))) (* (/ (* y (* (sqrt 2) (pow (sqrt (exp t)) t))) x) (sqrt z)))))
(* -1 (* x (+ (* -1/2 (pow (sqrt (exp t)) t)) (/ (* y (pow (sqrt (exp t)) t)) x))))
(* -1 (* x (+ (* -1/2 (* (sqrt z) (* (exp (* 1/2 (pow t 2))) (sqrt 2)))) (* (/ (* y (* (exp (* 1/2 (pow t 2))) (sqrt 2))) x) (sqrt z)))))
(* -1 (* x (+ (* -1/2 (* (sqrt z) (sqrt 2))) (* (/ (* y (sqrt 2)) x) (sqrt z)))))
(* -1 (* x (- (/ y x) 1/2)))
(* -1 (/ (+ (* -2 (* (sqrt z) (sqrt 2))) (* 4 (* (/ (* y (sqrt 2)) x) (sqrt z)))) x))
(* -1 (/ (+ (* -2 (* (sqrt z) (sqrt 2))) (* -1 (/ (+ (* -4 (* (* y (sqrt 2)) (sqrt z))) (* 8 (* (/ (* (pow y 2) (sqrt 2)) x) (sqrt z)))) x))) x))
(* -1 (/ (+ (* -2 (* (sqrt z) (sqrt 2))) (* -1 (/ (+ (* -4 (* (* y (sqrt 2)) (sqrt z))) (* -1 (/ (+ (* -8 (* (* (pow y 2) (sqrt 2)) (sqrt z))) (* 16 (* (/ (* (pow y 3) (sqrt 2)) x) (sqrt z)))) x))) x))) x))
(+ (* -4 (* (/ (* y (sqrt 2)) (pow x 2)) (sqrt z))) (* 2 (* (/ (sqrt 2) x) (sqrt z))))
(+ (* 2 (* (/ (sqrt 2) x) (sqrt z))) (* y (+ (* -4 (* (/ (sqrt 2) (pow x 2)) (sqrt z))) (* 8 (* (/ (* y (sqrt 2)) (pow x 3)) (sqrt z))))))
(+ (* 2 (* (/ (sqrt 2) x) (sqrt z))) (* y (+ (* -4 (* (/ (sqrt 2) (pow x 2)) (sqrt z))) (* y (+ (* -16 (* (/ (* y (sqrt 2)) (pow x 4)) (sqrt z))) (* 8 (* (/ (sqrt 2) (pow x 3)) (sqrt z))))))))
(* -1 (* y (sqrt z)))
(* y (+ (* -1 (* (sqrt z) (* (sqrt 2) (pow (sqrt (exp t)) t)))) (* 1/2 (* (/ (* x (* (sqrt 2) (pow (sqrt (exp t)) t))) y) (sqrt z)))))
(* y (+ (* -1 (pow (sqrt (exp t)) t)) (* 1/2 (/ (* x (pow (sqrt (exp t)) t)) y))))
(* y (+ (* -1 (* (sqrt z) (* (exp (* 1/2 (pow t 2))) (sqrt 2)))) (* 1/2 (* (/ (* x (* (exp (* 1/2 (pow t 2))) (sqrt 2))) y) (sqrt z)))))
(* y (+ (* -1 (* (sqrt z) (sqrt 2))) (* 1/2 (* (/ (* x (sqrt 2)) y) (sqrt z)))))
(* y (- (* 1/2 (/ x y)) 1))
(/ (+ (* -1/2 (* (/ (* x (sqrt 2)) y) (sqrt z))) (* (sqrt z) (sqrt 2))) y)
(/ (+ (* -1/2 (* (/ (* x (sqrt 2)) y) (sqrt z))) (+ (* 1/4 (* (/ (* (pow x 2) (sqrt 2)) (pow y 2)) (sqrt z))) (* (sqrt z) (sqrt 2)))) y)
(/ (+ (* -1/2 (* (/ (* x (sqrt 2)) y) (sqrt z))) (+ (* -1/8 (* (/ (* (pow x 3) (sqrt 2)) (pow y 3)) (sqrt z))) (+ (* 1/4 (* (/ (* (pow x 2) (sqrt 2)) (pow y 2)) (sqrt z))) (* (sqrt z) (sqrt 2))))) y)
(* -1 (* y (+ (* -1/2 (* (/ (* x (* (sqrt 2) (pow (sqrt (exp t)) t))) y) (sqrt z))) (* (sqrt z) (* (sqrt 2) (pow (sqrt (exp t)) t))))))
(* -1 (* y (+ (* -1/2 (/ (* x (pow (sqrt (exp t)) t)) y)) (pow (sqrt (exp t)) t))))
(* -1 (* y (+ (* -1/2 (* (/ (* x (* (exp (* 1/2 (pow t 2))) (sqrt 2))) y) (sqrt z))) (* (sqrt z) (* (exp (* 1/2 (pow t 2))) (sqrt 2))))))
(* -1 (* y (+ (* -1/2 (* (/ (* x (sqrt 2)) y) (sqrt z))) (* (sqrt z) (sqrt 2)))))
(* -1 (* y (+ 1 (* -1/2 (/ x y)))))
(* -1 (/ (+ (* -1 (* (sqrt z) (sqrt 2))) (* 1/2 (* (/ (* x (sqrt 2)) y) (sqrt z)))) y))
(* -1 (/ (+ (* -1 (* (sqrt z) (sqrt 2))) (* -1 (/ (+ (* -1/2 (* (* x (sqrt 2)) (sqrt z))) (* 1/4 (* (/ (* (pow x 2) (sqrt 2)) y) (sqrt z)))) y))) y))
(* -1 (/ (+ (* -1 (* (sqrt z) (sqrt 2))) (* -1 (/ (+ (* -1 (/ (+ (* -1/4 (* (* (pow x 2) (sqrt 2)) (sqrt z))) (* 1/8 (* (/ (* (pow x 3) (sqrt 2)) y) (sqrt z)))) y)) (* -1/2 (* (* x (sqrt 2)) (sqrt z)))) y))) y))
(* (sqrt z) (* (sqrt 2) (* (- (* 1/2 x) y) (pow (sqrt (exp t)) t))))
(* (sqrt z) (* (exp (* 1/2 (pow t 2))) (* (sqrt 2) (- (* 1/2 x) y))))
(* (sqrt z) (* (sqrt 2) (- (* 1/2 x) y)))
(* (sqrt z) (/ (sqrt 2) (+ y (* 1/2 x))))
(* -1 (* (sqrt z) (* (sqrt -2) (* (sqrt -1) (* (- (* 1/2 x) y) (pow (sqrt (exp t)) t))))))
(* -1 (* (sqrt z) (* (exp (* 1/2 (pow t 2))) (* (sqrt -2) (* (sqrt -1) (- (* 1/2 x) y))))))
(* -1 (* (sqrt z) (* (sqrt -2) (* (sqrt -1) (- (* 1/2 x) y)))))
(* -1 (* (sqrt z) (* (sqrt -2) (sqrt -1))))
(* -1 (* (sqrt z) (/ (* (sqrt -2) (sqrt -1)) (+ y (* 1/2 x)))))
(* (* y (* (pow (sqrt -1) 2) (sqrt 2))) (sqrt z))
(* (* y (pow (sqrt -1) 2)) (sqrt z))
(+ (* 1/2 (* (* (pow t 2) (* (sqrt 2) (- (* 1/2 x) y))) (sqrt z))) (* (sqrt z) (* (sqrt 2) (- (* 1/2 x) y))))
(+ (* (sqrt z) (* (sqrt 2) (- (* 1/2 x) y))) (* (pow t 2) (+ (* 1/8 (* (* (pow t 2) (* (sqrt 2) (- (* 1/2 x) y))) (sqrt z))) (* 1/2 (* (sqrt z) (* (sqrt 2) (- (* 1/2 x) y)))))))
(+ (* (sqrt z) (* (sqrt 2) (- (* 1/2 x) y))) (* (pow t 2) (+ (* 1/2 (* (sqrt z) (* (sqrt 2) (- (* 1/2 x) y)))) (* (pow t 2) (+ (* 1/48 (* (* (pow t 2) (* (sqrt 2) (- (* 1/2 x) y))) (sqrt z))) (* 1/8 (* (sqrt z) (* (sqrt 2) (- (* 1/2 x) y)))))))))
(- (+ (* 1/2 x) (* 1/2 (* (pow t 2) (- (* 1/2 x) y)))) y)
(- (+ (* 1/2 x) (* (pow t 2) (+ (* 1/8 (* (pow t 2) (- (* 1/2 x) y))) (* 1/2 (- (* 1/2 x) y))))) y)
(- (+ (* 1/2 x) (* (pow t 2) (+ (* 1/2 (- (* 1/2 x) y)) (* (pow t 2) (+ (* 1/48 (* (pow t 2) (- (* 1/2 x) y))) (* 1/8 (- (* 1/2 x) y))))))) y)
1
(+ 1 (* 1/2 (pow t 2)))
(+ 1 (* (pow t 2) (+ 1/2 (* 1/8 (pow t 2)))))
(+ 1 (* (pow t 2) (+ 1/2 (* (pow t 2) (+ 1/8 (* 1/48 (pow t 2)))))))
(+ 1 (* 1/2 t))
(+ 1 (* t (+ 1/2 (* 1/8 t))))
(+ 1 (* t (+ 1/2 (* t (+ 1/8 (* 1/48 t))))))
(* (- (* 1/2 x) y) (pow (sqrt (exp t)) t))
(pow (sqrt (exp t)) t)
(sqrt (exp t))
(exp (* 1/2 (pow t 2)))
Calls

12 calls:

TimeVariablePointExpression
14.0ms
x
@0
((* (* (pow (sqrt (exp t)) t) (- (* 1/2 x) y)) (sqrt (* 2 z))) (* (pow (sqrt (exp t)) t) (- (* 1/2 x) y)) (pow (sqrt (exp t)) t) (sqrt (exp t)) (* (* (- (* x 1/2) y) (sqrt (* z 2))) (exp (/ (* t t) 2))) (* (- (* x 1/2) y) (sqrt (* z 2))) (- (* x 1/2) y) (neg y) (* (+ (* (/ x y) 1/2) -1) y) (* (* (- (* x 1/2) y) (sqrt (* z 2))) (exp (/ (* t t) 2))) (* (- (* x 1/2) y) (sqrt (* z 2))) (- (* x 1/2) y) (* (/ (sqrt (* z 2)) (+ (* x 1/2) y)) (+ (* x 1/2) y)) (* (* (* (/ (sqrt (* z 2)) (+ (* x 1/2) y)) (+ (* x 1/2) y)) (- (* x 1/2) y)) (exp (/ (* t t) 2))) (* (* (/ (sqrt (* z 2)) (+ (* x 1/2) y)) (+ (* x 1/2) y)) (- (* x 1/2) y)) (/ (sqrt (* z 2)) (+ (* x 1/2) y)) (* (* (- (* x 1/2) y) (sqrt (* z 2))) (exp (/ (* t t) 2))) (* (- (* x 1/2) y) (sqrt (* z 2))) (* (* y (neg (sqrt z))) (sqrt 2)) (* y (neg (sqrt z))) (sqrt (* 2 z)) (* 1/2 x) (exp (/ (* t t) 2)) (exp (/ (* t t) 2)))
12.0ms
z
@inf
((* (* (pow (sqrt (exp t)) t) (- (* 1/2 x) y)) (sqrt (* 2 z))) (* (pow (sqrt (exp t)) t) (- (* 1/2 x) y)) (pow (sqrt (exp t)) t) (sqrt (exp t)) (* (* (- (* x 1/2) y) (sqrt (* z 2))) (exp (/ (* t t) 2))) (* (- (* x 1/2) y) (sqrt (* z 2))) (- (* x 1/2) y) (neg y) (* (+ (* (/ x y) 1/2) -1) y) (* (* (- (* x 1/2) y) (sqrt (* z 2))) (exp (/ (* t t) 2))) (* (- (* x 1/2) y) (sqrt (* z 2))) (- (* x 1/2) y) (* (/ (sqrt (* z 2)) (+ (* x 1/2) y)) (+ (* x 1/2) y)) (* (* (* (/ (sqrt (* z 2)) (+ (* x 1/2) y)) (+ (* x 1/2) y)) (- (* x 1/2) y)) (exp (/ (* t t) 2))) (* (* (/ (sqrt (* z 2)) (+ (* x 1/2) y)) (+ (* x 1/2) y)) (- (* x 1/2) y)) (/ (sqrt (* z 2)) (+ (* x 1/2) y)) (* (* (- (* x 1/2) y) (sqrt (* z 2))) (exp (/ (* t t) 2))) (* (- (* x 1/2) y) (sqrt (* z 2))) (* (* y (neg (sqrt z))) (sqrt 2)) (* y (neg (sqrt z))) (sqrt (* 2 z)) (* 1/2 x) (exp (/ (* t t) 2)) (exp (/ (* t t) 2)))
12.0ms
z
@-inf
((* (* (pow (sqrt (exp t)) t) (- (* 1/2 x) y)) (sqrt (* 2 z))) (* (pow (sqrt (exp t)) t) (- (* 1/2 x) y)) (pow (sqrt (exp t)) t) (sqrt (exp t)) (* (* (- (* x 1/2) y) (sqrt (* z 2))) (exp (/ (* t t) 2))) (* (- (* x 1/2) y) (sqrt (* z 2))) (- (* x 1/2) y) (neg y) (* (+ (* (/ x y) 1/2) -1) y) (* (* (- (* x 1/2) y) (sqrt (* z 2))) (exp (/ (* t t) 2))) (* (- (* x 1/2) y) (sqrt (* z 2))) (- (* x 1/2) y) (* (/ (sqrt (* z 2)) (+ (* x 1/2) y)) (+ (* x 1/2) y)) (* (* (* (/ (sqrt (* z 2)) (+ (* x 1/2) y)) (+ (* x 1/2) y)) (- (* x 1/2) y)) (exp (/ (* t t) 2))) (* (* (/ (sqrt (* z 2)) (+ (* x 1/2) y)) (+ (* x 1/2) y)) (- (* x 1/2) y)) (/ (sqrt (* z 2)) (+ (* x 1/2) y)) (* (* (- (* x 1/2) y) (sqrt (* z 2))) (exp (/ (* t t) 2))) (* (- (* x 1/2) y) (sqrt (* z 2))) (* (* y (neg (sqrt z))) (sqrt 2)) (* y (neg (sqrt z))) (sqrt (* 2 z)) (* 1/2 x) (exp (/ (* t t) 2)) (exp (/ (* t t) 2)))
10.0ms
z
@0
((* (* (pow (sqrt (exp t)) t) (- (* 1/2 x) y)) (sqrt (* 2 z))) (* (pow (sqrt (exp t)) t) (- (* 1/2 x) y)) (pow (sqrt (exp t)) t) (sqrt (exp t)) (* (* (- (* x 1/2) y) (sqrt (* z 2))) (exp (/ (* t t) 2))) (* (- (* x 1/2) y) (sqrt (* z 2))) (- (* x 1/2) y) (neg y) (* (+ (* (/ x y) 1/2) -1) y) (* (* (- (* x 1/2) y) (sqrt (* z 2))) (exp (/ (* t t) 2))) (* (- (* x 1/2) y) (sqrt (* z 2))) (- (* x 1/2) y) (* (/ (sqrt (* z 2)) (+ (* x 1/2) y)) (+ (* x 1/2) y)) (* (* (* (/ (sqrt (* z 2)) (+ (* x 1/2) y)) (+ (* x 1/2) y)) (- (* x 1/2) y)) (exp (/ (* t t) 2))) (* (* (/ (sqrt (* z 2)) (+ (* x 1/2) y)) (+ (* x 1/2) y)) (- (* x 1/2) y)) (/ (sqrt (* z 2)) (+ (* x 1/2) y)) (* (* (- (* x 1/2) y) (sqrt (* z 2))) (exp (/ (* t t) 2))) (* (- (* x 1/2) y) (sqrt (* z 2))) (* (* y (neg (sqrt z))) (sqrt 2)) (* y (neg (sqrt z))) (sqrt (* 2 z)) (* 1/2 x) (exp (/ (* t t) 2)) (exp (/ (* t t) 2)))
8.0ms
y
@-inf
((* (* (pow (sqrt (exp t)) t) (- (* 1/2 x) y)) (sqrt (* 2 z))) (* (pow (sqrt (exp t)) t) (- (* 1/2 x) y)) (pow (sqrt (exp t)) t) (sqrt (exp t)) (* (* (- (* x 1/2) y) (sqrt (* z 2))) (exp (/ (* t t) 2))) (* (- (* x 1/2) y) (sqrt (* z 2))) (- (* x 1/2) y) (neg y) (* (+ (* (/ x y) 1/2) -1) y) (* (* (- (* x 1/2) y) (sqrt (* z 2))) (exp (/ (* t t) 2))) (* (- (* x 1/2) y) (sqrt (* z 2))) (- (* x 1/2) y) (* (/ (sqrt (* z 2)) (+ (* x 1/2) y)) (+ (* x 1/2) y)) (* (* (* (/ (sqrt (* z 2)) (+ (* x 1/2) y)) (+ (* x 1/2) y)) (- (* x 1/2) y)) (exp (/ (* t t) 2))) (* (* (/ (sqrt (* z 2)) (+ (* x 1/2) y)) (+ (* x 1/2) y)) (- (* x 1/2) y)) (/ (sqrt (* z 2)) (+ (* x 1/2) y)) (* (* (- (* x 1/2) y) (sqrt (* z 2))) (exp (/ (* t t) 2))) (* (- (* x 1/2) y) (sqrt (* z 2))) (* (* y (neg (sqrt z))) (sqrt 2)) (* y (neg (sqrt z))) (sqrt (* 2 z)) (* 1/2 x) (exp (/ (* t t) 2)) (exp (/ (* t t) 2)))

simplify203.0ms (1.8%)

Memory
1.5MiB live, 160.5MiB allocated
Algorithm
egg-herbie
Iterations

Useful iterations: 0 (0.0ms)

IterNodesCost
03981854
112611705
241831557
080401499
Stop Event
iter limit
node limit
Counts
86 → 86
Calls
Call 1
Inputs
(* -1 (* (* y (* (sqrt 2) (pow (sqrt (exp t)) t))) (sqrt z)))
(+ (* -1 (* (* y (* (sqrt 2) (pow (sqrt (exp t)) t))) (sqrt z))) (* 1/2 (* (* x (* (sqrt 2) (pow (sqrt (exp t)) t))) (sqrt z))))
(* -1 (* y (pow (sqrt (exp t)) t)))
(+ (* -1 (* y (pow (sqrt (exp t)) t))) (* 1/2 (* x (pow (sqrt (exp t)) t))))
(* -1 (* (* y (* (exp (* 1/2 (pow t 2))) (sqrt 2))) (sqrt z)))
(+ (* -1 (* (* y (* (exp (* 1/2 (pow t 2))) (sqrt 2))) (sqrt z))) (* 1/2 (* (* x (* (exp (* 1/2 (pow t 2))) (sqrt 2))) (sqrt z))))
(* -1 (* (* y (sqrt 2)) (sqrt z)))
(+ (* -1 (* (* y (sqrt 2)) (sqrt z))) (* 1/2 (* (* x (sqrt 2)) (sqrt z))))
(* -1 y)
(- (* 1/2 x) y)
(+ (* -1 y) (* 1/2 x))
(* (sqrt z) (sqrt 2))
(* (/ (sqrt 2) y) (sqrt z))
(+ (* -1/2 (* (/ (* x (sqrt 2)) (pow y 2)) (sqrt z))) (* (/ (sqrt 2) y) (sqrt z)))
(+ (* x (+ (* -1/2 (* (/ (sqrt 2) (pow y 2)) (sqrt z))) (* 1/4 (* (/ (* x (sqrt 2)) (pow y 3)) (sqrt z))))) (* (/ (sqrt 2) y) (sqrt z)))
(+ (* x (+ (* -1/2 (* (/ (sqrt 2) (pow y 2)) (sqrt z))) (* x (+ (* -1/8 (* (/ (* x (sqrt 2)) (pow y 4)) (sqrt z))) (* 1/4 (* (/ (sqrt 2) (pow y 3)) (sqrt z))))))) (* (/ (sqrt 2) y) (sqrt z)))
(* 1/2 x)
(* 1/2 (* (* x (* (sqrt 2) (pow (sqrt (exp t)) t))) (sqrt z)))
(* x (+ (* -1 (* (/ (* y (* (sqrt 2) (pow (sqrt (exp t)) t))) x) (sqrt z))) (* 1/2 (* (sqrt z) (* (sqrt 2) (pow (sqrt (exp t)) t))))))
(* 1/2 (* x (pow (sqrt (exp t)) t)))
(* x (+ (* -1 (/ (* y (pow (sqrt (exp t)) t)) x)) (* 1/2 (pow (sqrt (exp t)) t))))
(* 1/2 (* (* x (* (exp (* 1/2 (pow t 2))) (sqrt 2))) (sqrt z)))
(* x (+ (* -1 (* (/ (* y (* (exp (* 1/2 (pow t 2))) (sqrt 2))) x) (sqrt z))) (* 1/2 (* (sqrt z) (* (exp (* 1/2 (pow t 2))) (sqrt 2))))))
(* 1/2 (* (* x (sqrt 2)) (sqrt z)))
(* x (+ (* -1 (* (/ (* y (sqrt 2)) x) (sqrt z))) (* 1/2 (* (sqrt z) (sqrt 2)))))
(* x (+ 1/2 (* -1 (/ y x))))
(* 2 (* (/ (sqrt 2) x) (sqrt z)))
(/ (+ (* -4 (* (/ (* y (sqrt 2)) x) (sqrt z))) (* 2 (* (sqrt z) (sqrt 2)))) x)
(/ (+ (* -4 (* (/ (* y (sqrt 2)) x) (sqrt z))) (+ (* 2 (* (sqrt z) (sqrt 2))) (* 8 (* (/ (* (pow y 2) (sqrt 2)) (pow x 2)) (sqrt z))))) x)
(/ (+ (* -16 (* (/ (* (pow y 3) (sqrt 2)) (pow x 3)) (sqrt z))) (+ (* -4 (* (/ (* y (sqrt 2)) x) (sqrt z))) (+ (* 2 (* (sqrt z) (sqrt 2))) (* 8 (* (/ (* (pow y 2) (sqrt 2)) (pow x 2)) (sqrt z)))))) x)
(* -1 (* x (+ (* -1/2 (* (sqrt z) (* (sqrt 2) (pow (sqrt (exp t)) t)))) (* (/ (* y (* (sqrt 2) (pow (sqrt (exp t)) t))) x) (sqrt z)))))
(* -1 (* x (+ (* -1/2 (pow (sqrt (exp t)) t)) (/ (* y (pow (sqrt (exp t)) t)) x))))
(* -1 (* x (+ (* -1/2 (* (sqrt z) (* (exp (* 1/2 (pow t 2))) (sqrt 2)))) (* (/ (* y (* (exp (* 1/2 (pow t 2))) (sqrt 2))) x) (sqrt z)))))
(* -1 (* x (+ (* -1/2 (* (sqrt z) (sqrt 2))) (* (/ (* y (sqrt 2)) x) (sqrt z)))))
(* -1 (* x (- (/ y x) 1/2)))
(* -1 (/ (+ (* -2 (* (sqrt z) (sqrt 2))) (* 4 (* (/ (* y (sqrt 2)) x) (sqrt z)))) x))
(* -1 (/ (+ (* -2 (* (sqrt z) (sqrt 2))) (* -1 (/ (+ (* -4 (* (* y (sqrt 2)) (sqrt z))) (* 8 (* (/ (* (pow y 2) (sqrt 2)) x) (sqrt z)))) x))) x))
(* -1 (/ (+ (* -2 (* (sqrt z) (sqrt 2))) (* -1 (/ (+ (* -4 (* (* y (sqrt 2)) (sqrt z))) (* -1 (/ (+ (* -8 (* (* (pow y 2) (sqrt 2)) (sqrt z))) (* 16 (* (/ (* (pow y 3) (sqrt 2)) x) (sqrt z)))) x))) x))) x))
(+ (* -4 (* (/ (* y (sqrt 2)) (pow x 2)) (sqrt z))) (* 2 (* (/ (sqrt 2) x) (sqrt z))))
(+ (* 2 (* (/ (sqrt 2) x) (sqrt z))) (* y (+ (* -4 (* (/ (sqrt 2) (pow x 2)) (sqrt z))) (* 8 (* (/ (* y (sqrt 2)) (pow x 3)) (sqrt z))))))
(+ (* 2 (* (/ (sqrt 2) x) (sqrt z))) (* y (+ (* -4 (* (/ (sqrt 2) (pow x 2)) (sqrt z))) (* y (+ (* -16 (* (/ (* y (sqrt 2)) (pow x 4)) (sqrt z))) (* 8 (* (/ (sqrt 2) (pow x 3)) (sqrt z))))))))
(* -1 (* y (sqrt z)))
(* y (+ (* -1 (* (sqrt z) (* (sqrt 2) (pow (sqrt (exp t)) t)))) (* 1/2 (* (/ (* x (* (sqrt 2) (pow (sqrt (exp t)) t))) y) (sqrt z)))))
(* y (+ (* -1 (pow (sqrt (exp t)) t)) (* 1/2 (/ (* x (pow (sqrt (exp t)) t)) y))))
(* y (+ (* -1 (* (sqrt z) (* (exp (* 1/2 (pow t 2))) (sqrt 2)))) (* 1/2 (* (/ (* x (* (exp (* 1/2 (pow t 2))) (sqrt 2))) y) (sqrt z)))))
(* y (+ (* -1 (* (sqrt z) (sqrt 2))) (* 1/2 (* (/ (* x (sqrt 2)) y) (sqrt z)))))
(* y (- (* 1/2 (/ x y)) 1))
(/ (+ (* -1/2 (* (/ (* x (sqrt 2)) y) (sqrt z))) (* (sqrt z) (sqrt 2))) y)
(/ (+ (* -1/2 (* (/ (* x (sqrt 2)) y) (sqrt z))) (+ (* 1/4 (* (/ (* (pow x 2) (sqrt 2)) (pow y 2)) (sqrt z))) (* (sqrt z) (sqrt 2)))) y)
(/ (+ (* -1/2 (* (/ (* x (sqrt 2)) y) (sqrt z))) (+ (* -1/8 (* (/ (* (pow x 3) (sqrt 2)) (pow y 3)) (sqrt z))) (+ (* 1/4 (* (/ (* (pow x 2) (sqrt 2)) (pow y 2)) (sqrt z))) (* (sqrt z) (sqrt 2))))) y)
(* -1 (* y (+ (* -1/2 (* (/ (* x (* (sqrt 2) (pow (sqrt (exp t)) t))) y) (sqrt z))) (* (sqrt z) (* (sqrt 2) (pow (sqrt (exp t)) t))))))
(* -1 (* y (+ (* -1/2 (/ (* x (pow (sqrt (exp t)) t)) y)) (pow (sqrt (exp t)) t))))
(* -1 (* y (+ (* -1/2 (* (/ (* x (* (exp (* 1/2 (pow t 2))) (sqrt 2))) y) (sqrt z))) (* (sqrt z) (* (exp (* 1/2 (pow t 2))) (sqrt 2))))))
(* -1 (* y (+ (* -1/2 (* (/ (* x (sqrt 2)) y) (sqrt z))) (* (sqrt z) (sqrt 2)))))
(* -1 (* y (+ 1 (* -1/2 (/ x y)))))
(* -1 (/ (+ (* -1 (* (sqrt z) (sqrt 2))) (* 1/2 (* (/ (* x (sqrt 2)) y) (sqrt z)))) y))
(* -1 (/ (+ (* -1 (* (sqrt z) (sqrt 2))) (* -1 (/ (+ (* -1/2 (* (* x (sqrt 2)) (sqrt z))) (* 1/4 (* (/ (* (pow x 2) (sqrt 2)) y) (sqrt z)))) y))) y))
(* -1 (/ (+ (* -1 (* (sqrt z) (sqrt 2))) (* -1 (/ (+ (* -1 (/ (+ (* -1/4 (* (* (pow x 2) (sqrt 2)) (sqrt z))) (* 1/8 (* (/ (* (pow x 3) (sqrt 2)) y) (sqrt z)))) y)) (* -1/2 (* (* x (sqrt 2)) (sqrt z)))) y))) y))
(* (sqrt z) (* (sqrt 2) (* (- (* 1/2 x) y) (pow (sqrt (exp t)) t))))
(* (sqrt z) (* (exp (* 1/2 (pow t 2))) (* (sqrt 2) (- (* 1/2 x) y))))
(* (sqrt z) (* (sqrt 2) (- (* 1/2 x) y)))
(* (sqrt z) (/ (sqrt 2) (+ y (* 1/2 x))))
(* -1 (* (sqrt z) (* (sqrt -2) (* (sqrt -1) (* (- (* 1/2 x) y) (pow (sqrt (exp t)) t))))))
(* -1 (* (sqrt z) (* (exp (* 1/2 (pow t 2))) (* (sqrt -2) (* (sqrt -1) (- (* 1/2 x) y))))))
(* -1 (* (sqrt z) (* (sqrt -2) (* (sqrt -1) (- (* 1/2 x) y)))))
(* -1 (* (sqrt z) (* (sqrt -2) (sqrt -1))))
(* -1 (* (sqrt z) (/ (* (sqrt -2) (sqrt -1)) (+ y (* 1/2 x)))))
(* (* y (* (pow (sqrt -1) 2) (sqrt 2))) (sqrt z))
(* (* y (pow (sqrt -1) 2)) (sqrt z))
(+ (* 1/2 (* (* (pow t 2) (* (sqrt 2) (- (* 1/2 x) y))) (sqrt z))) (* (sqrt z) (* (sqrt 2) (- (* 1/2 x) y))))
(+ (* (sqrt z) (* (sqrt 2) (- (* 1/2 x) y))) (* (pow t 2) (+ (* 1/8 (* (* (pow t 2) (* (sqrt 2) (- (* 1/2 x) y))) (sqrt z))) (* 1/2 (* (sqrt z) (* (sqrt 2) (- (* 1/2 x) y)))))))
(+ (* (sqrt z) (* (sqrt 2) (- (* 1/2 x) y))) (* (pow t 2) (+ (* 1/2 (* (sqrt z) (* (sqrt 2) (- (* 1/2 x) y)))) (* (pow t 2) (+ (* 1/48 (* (* (pow t 2) (* (sqrt 2) (- (* 1/2 x) y))) (sqrt z))) (* 1/8 (* (sqrt z) (* (sqrt 2) (- (* 1/2 x) y)))))))))
(- (+ (* 1/2 x) (* 1/2 (* (pow t 2) (- (* 1/2 x) y)))) y)
(- (+ (* 1/2 x) (* (pow t 2) (+ (* 1/8 (* (pow t 2) (- (* 1/2 x) y))) (* 1/2 (- (* 1/2 x) y))))) y)
(- (+ (* 1/2 x) (* (pow t 2) (+ (* 1/2 (- (* 1/2 x) y)) (* (pow t 2) (+ (* 1/48 (* (pow t 2) (- (* 1/2 x) y))) (* 1/8 (- (* 1/2 x) y))))))) y)
1
(+ 1 (* 1/2 (pow t 2)))
(+ 1 (* (pow t 2) (+ 1/2 (* 1/8 (pow t 2)))))
(+ 1 (* (pow t 2) (+ 1/2 (* (pow t 2) (+ 1/8 (* 1/48 (pow t 2)))))))
(+ 1 (* 1/2 t))
(+ 1 (* t (+ 1/2 (* 1/8 t))))
(+ 1 (* t (+ 1/2 (* t (+ 1/8 (* 1/48 t))))))
(* (- (* 1/2 x) y) (pow (sqrt (exp t)) t))
(pow (sqrt (exp t)) t)
(sqrt (exp t))
(exp (* 1/2 (pow t 2)))
Outputs
(* -1 (* (* y (* (sqrt 2) (pow (sqrt (exp t)) t))) (sqrt z)))
(*.f64 (*.f64 (neg.f64 (sqrt.f64 #s(literal 2 binary64))) (pow.f64 (sqrt.f64 (exp.f64 t)) t)) (*.f64 (sqrt.f64 z) y))
(+ (* -1 (* (* y (* (sqrt 2) (pow (sqrt (exp t)) t))) (sqrt z))) (* 1/2 (* (* x (* (sqrt 2) (pow (sqrt (exp t)) t))) (sqrt z))))
(*.f64 (*.f64 (*.f64 (-.f64 (*.f64 #s(literal 1/2 binary64) x) y) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 z)) (pow.f64 (sqrt.f64 (exp.f64 t)) t))
(* -1 (* y (pow (sqrt (exp t)) t)))
(*.f64 (neg.f64 y) (pow.f64 (sqrt.f64 (exp.f64 t)) t))
(+ (* -1 (* y (pow (sqrt (exp t)) t))) (* 1/2 (* x (pow (sqrt (exp t)) t))))
(*.f64 (-.f64 (*.f64 #s(literal 1/2 binary64) x) y) (pow.f64 (sqrt.f64 (exp.f64 t)) t))
(* -1 (* (* y (* (exp (* 1/2 (pow t 2))) (sqrt 2))) (sqrt z)))
(*.f64 (*.f64 (neg.f64 (sqrt.f64 z)) (sqrt.f64 (pow.f64 (exp.f64 t) t))) (*.f64 (sqrt.f64 #s(literal 2 binary64)) y))
(+ (* -1 (* (* y (* (exp (* 1/2 (pow t 2))) (sqrt 2))) (sqrt z))) (* 1/2 (* (* x (* (exp (* 1/2 (pow t 2))) (sqrt 2))) (sqrt z))))
(*.f64 (*.f64 (-.f64 (*.f64 #s(literal 1/2 binary64) x) y) (*.f64 (sqrt.f64 (pow.f64 (exp.f64 t) t)) (sqrt.f64 #s(literal 2 binary64)))) (sqrt.f64 z))
(* -1 (* (* y (sqrt 2)) (sqrt z)))
(*.f64 (neg.f64 (sqrt.f64 #s(literal 2 binary64))) (*.f64 (sqrt.f64 z) y))
(+ (* -1 (* (* y (sqrt 2)) (sqrt z))) (* 1/2 (* (* x (sqrt 2)) (sqrt z))))
(*.f64 (*.f64 (-.f64 (*.f64 #s(literal 1/2 binary64) x) y) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 z))
(* -1 y)
(neg.f64 y)
(- (* 1/2 x) y)
(-.f64 (*.f64 #s(literal 1/2 binary64) x) y)
(+ (* -1 y) (* 1/2 x))
(-.f64 (*.f64 #s(literal 1/2 binary64) x) y)
(* (sqrt z) (sqrt 2))
(*.f64 (sqrt.f64 z) (sqrt.f64 #s(literal 2 binary64)))
(* (/ (sqrt 2) y) (sqrt z))
(*.f64 (/.f64 (sqrt.f64 #s(literal 2 binary64)) y) (sqrt.f64 z))
(+ (* -1/2 (* (/ (* x (sqrt 2)) (pow y 2)) (sqrt z))) (* (/ (sqrt 2) y) (sqrt z)))
(*.f64 (sqrt.f64 z) (fma.f64 x (*.f64 (/.f64 (/.f64 (sqrt.f64 #s(literal 2 binary64)) y) y) #s(literal -1/2 binary64)) (/.f64 (sqrt.f64 #s(literal 2 binary64)) y)))
(+ (* x (+ (* -1/2 (* (/ (sqrt 2) (pow y 2)) (sqrt z))) (* 1/4 (* (/ (* x (sqrt 2)) (pow y 3)) (sqrt z))))) (* (/ (sqrt 2) y) (sqrt z)))
(fma.f64 (*.f64 (sqrt.f64 z) x) (fma.f64 (*.f64 #s(literal 1/4 binary64) x) (/.f64 (sqrt.f64 #s(literal 2 binary64)) (pow.f64 y #s(literal 3 binary64))) (*.f64 (/.f64 (/.f64 (sqrt.f64 #s(literal 2 binary64)) y) y) #s(literal -1/2 binary64))) (*.f64 (/.f64 (sqrt.f64 #s(literal 2 binary64)) y) (sqrt.f64 z)))
(+ (* x (+ (* -1/2 (* (/ (sqrt 2) (pow y 2)) (sqrt z))) (* x (+ (* -1/8 (* (/ (* x (sqrt 2)) (pow y 4)) (sqrt z))) (* 1/4 (* (/ (sqrt 2) (pow y 3)) (sqrt z))))))) (* (/ (sqrt 2) y) (sqrt z)))
(fma.f64 (sqrt.f64 z) (fma.f64 x (*.f64 (/.f64 (/.f64 (sqrt.f64 #s(literal 2 binary64)) y) y) #s(literal -1/2 binary64)) (/.f64 (sqrt.f64 #s(literal 2 binary64)) y)) (*.f64 (*.f64 x x) (*.f64 (sqrt.f64 z) (fma.f64 (/.f64 (sqrt.f64 #s(literal 2 binary64)) (pow.f64 y #s(literal 3 binary64))) #s(literal 1/4 binary64) (/.f64 (*.f64 #s(literal -1/8 binary64) (*.f64 (sqrt.f64 #s(literal 2 binary64)) x)) (pow.f64 y #s(literal 4 binary64)))))))
(* 1/2 x)
(*.f64 #s(literal 1/2 binary64) x)
(* 1/2 (* (* x (* (sqrt 2) (pow (sqrt (exp t)) t))) (sqrt z)))
(*.f64 (*.f64 (*.f64 (*.f64 #s(literal 1/2 binary64) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 z)) (pow.f64 (sqrt.f64 (exp.f64 t)) t)) x)
(* x (+ (* -1 (* (/ (* y (* (sqrt 2) (pow (sqrt (exp t)) t))) x) (sqrt z))) (* 1/2 (* (sqrt z) (* (sqrt 2) (pow (sqrt (exp t)) t))))))
(*.f64 (neg.f64 x) (*.f64 (sqrt.f64 z) (fma.f64 #s(literal -1/2 binary64) (*.f64 (pow.f64 (sqrt.f64 (exp.f64 t)) t) (sqrt.f64 #s(literal 2 binary64))) (*.f64 (*.f64 (pow.f64 (sqrt.f64 (exp.f64 t)) t) (/.f64 (sqrt.f64 #s(literal 2 binary64)) x)) y))))
(* 1/2 (* x (pow (sqrt (exp t)) t)))
(*.f64 (*.f64 #s(literal 1/2 binary64) x) (pow.f64 (sqrt.f64 (exp.f64 t)) t))
(* x (+ (* -1 (/ (* y (pow (sqrt (exp t)) t)) x)) (* 1/2 (pow (sqrt (exp t)) t))))
(*.f64 (*.f64 (pow.f64 (sqrt.f64 (exp.f64 t)) t) (-.f64 #s(literal 1/2 binary64) (/.f64 y x))) x)
(* 1/2 (* (* x (* (exp (* 1/2 (pow t 2))) (sqrt 2))) (sqrt z)))
(*.f64 (*.f64 x (*.f64 (sqrt.f64 z) #s(literal 1/2 binary64))) (*.f64 (sqrt.f64 (pow.f64 (exp.f64 t) t)) (sqrt.f64 #s(literal 2 binary64))))
(* x (+ (* -1 (* (/ (* y (* (exp (* 1/2 (pow t 2))) (sqrt 2))) x) (sqrt z))) (* 1/2 (* (sqrt z) (* (exp (* 1/2 (pow t 2))) (sqrt 2))))))
(*.f64 (neg.f64 x) (*.f64 (sqrt.f64 z) (fma.f64 #s(literal -1/2 binary64) (*.f64 (sqrt.f64 (pow.f64 (exp.f64 t) t)) (sqrt.f64 #s(literal 2 binary64))) (*.f64 (*.f64 (sqrt.f64 (pow.f64 (exp.f64 t) t)) (sqrt.f64 #s(literal 2 binary64))) (/.f64 y x)))))
(* 1/2 (* (* x (sqrt 2)) (sqrt z)))
(*.f64 (*.f64 x (*.f64 (sqrt.f64 z) #s(literal 1/2 binary64))) (sqrt.f64 #s(literal 2 binary64)))
(* x (+ (* -1 (* (/ (* y (sqrt 2)) x) (sqrt z))) (* 1/2 (* (sqrt z) (sqrt 2)))))
(*.f64 (neg.f64 x) (*.f64 (sqrt.f64 z) (fma.f64 #s(literal -1/2 binary64) (sqrt.f64 #s(literal 2 binary64)) (/.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) y) x))))
(* x (+ 1/2 (* -1 (/ y x))))
(*.f64 (-.f64 #s(literal 1/2 binary64) (/.f64 y x)) x)
(* 2 (* (/ (sqrt 2) x) (sqrt z)))
(*.f64 (*.f64 (/.f64 (sqrt.f64 #s(literal 2 binary64)) x) #s(literal 2 binary64)) (sqrt.f64 z))
(/ (+ (* -4 (* (/ (* y (sqrt 2)) x) (sqrt z))) (* 2 (* (sqrt z) (sqrt 2)))) x)
(/.f64 (*.f64 (sqrt.f64 z) (fma.f64 #s(literal 2 binary64) (sqrt.f64 #s(literal 2 binary64)) (*.f64 #s(literal -4 binary64) (/.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) y) x)))) x)
(/ (+ (* -4 (* (/ (* y (sqrt 2)) x) (sqrt z))) (+ (* 2 (* (sqrt z) (sqrt 2))) (* 8 (* (/ (* (pow y 2) (sqrt 2)) (pow x 2)) (sqrt z))))) x)
(/.f64 (fma.f64 (*.f64 #s(literal 8 binary64) (sqrt.f64 z)) (*.f64 (/.f64 (*.f64 y y) x) (/.f64 (sqrt.f64 #s(literal 2 binary64)) x)) (*.f64 (sqrt.f64 z) (fma.f64 #s(literal 2 binary64) (sqrt.f64 #s(literal 2 binary64)) (*.f64 #s(literal -4 binary64) (/.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) y) x))))) x)
(/ (+ (* -16 (* (/ (* (pow y 3) (sqrt 2)) (pow x 3)) (sqrt z))) (+ (* -4 (* (/ (* y (sqrt 2)) x) (sqrt z))) (+ (* 2 (* (sqrt z) (sqrt 2))) (* 8 (* (/ (* (pow y 2) (sqrt 2)) (pow x 2)) (sqrt z)))))) x)
(/.f64 (fma.f64 (sqrt.f64 z) (fma.f64 (*.f64 #s(literal -4 binary64) y) (/.f64 (sqrt.f64 #s(literal 2 binary64)) x) (*.f64 (*.f64 #s(literal -16 binary64) (pow.f64 y #s(literal 3 binary64))) (/.f64 (sqrt.f64 #s(literal 2 binary64)) (pow.f64 x #s(literal 3 binary64))))) (*.f64 (sqrt.f64 z) (fma.f64 (/.f64 #s(literal 8 binary64) x) (*.f64 y (/.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) y) x)) (*.f64 #s(literal 2 binary64) (sqrt.f64 #s(literal 2 binary64)))))) x)
(* -1 (* x (+ (* -1/2 (* (sqrt z) (* (sqrt 2) (pow (sqrt (exp t)) t)))) (* (/ (* y (* (sqrt 2) (pow (sqrt (exp t)) t))) x) (sqrt z)))))
(*.f64 (neg.f64 x) (*.f64 (sqrt.f64 z) (fma.f64 #s(literal -1/2 binary64) (*.f64 (pow.f64 (sqrt.f64 (exp.f64 t)) t) (sqrt.f64 #s(literal 2 binary64))) (*.f64 (*.f64 (pow.f64 (sqrt.f64 (exp.f64 t)) t) (/.f64 (sqrt.f64 #s(literal 2 binary64)) x)) y))))
(* -1 (* x (+ (* -1/2 (pow (sqrt (exp t)) t)) (/ (* y (pow (sqrt (exp t)) t)) x))))
(*.f64 (*.f64 (pow.f64 (sqrt.f64 (exp.f64 t)) t) (-.f64 #s(literal 1/2 binary64) (/.f64 y x))) x)
(* -1 (* x (+ (* -1/2 (* (sqrt z) (* (exp (* 1/2 (pow t 2))) (sqrt 2)))) (* (/ (* y (* (exp (* 1/2 (pow t 2))) (sqrt 2))) x) (sqrt z)))))
(*.f64 (neg.f64 x) (*.f64 (sqrt.f64 z) (fma.f64 #s(literal -1/2 binary64) (*.f64 (sqrt.f64 (pow.f64 (exp.f64 t) t)) (sqrt.f64 #s(literal 2 binary64))) (*.f64 (*.f64 (sqrt.f64 (pow.f64 (exp.f64 t) t)) (sqrt.f64 #s(literal 2 binary64))) (/.f64 y x)))))
(* -1 (* x (+ (* -1/2 (* (sqrt z) (sqrt 2))) (* (/ (* y (sqrt 2)) x) (sqrt z)))))
(*.f64 (neg.f64 x) (*.f64 (sqrt.f64 z) (fma.f64 #s(literal -1/2 binary64) (sqrt.f64 #s(literal 2 binary64)) (/.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) y) x))))
(* -1 (* x (- (/ y x) 1/2)))
(*.f64 (-.f64 #s(literal 1/2 binary64) (/.f64 y x)) x)
(* -1 (/ (+ (* -2 (* (sqrt z) (sqrt 2))) (* 4 (* (/ (* y (sqrt 2)) x) (sqrt z)))) x))
(/.f64 (*.f64 (sqrt.f64 z) (fma.f64 (/.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) y) x) #s(literal 4 binary64) (*.f64 #s(literal -2 binary64) (sqrt.f64 #s(literal 2 binary64))))) (neg.f64 x))
(* -1 (/ (+ (* -2 (* (sqrt z) (sqrt 2))) (* -1 (/ (+ (* -4 (* (* y (sqrt 2)) (sqrt z))) (* 8 (* (/ (* (pow y 2) (sqrt 2)) x) (sqrt z)))) x))) x))
(/.f64 (fma.f64 (*.f64 #s(literal -2 binary64) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 z) (/.f64 (*.f64 (sqrt.f64 z) (fma.f64 (*.f64 y (/.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) y) x)) #s(literal 8 binary64) (*.f64 #s(literal -4 binary64) (*.f64 (sqrt.f64 #s(literal 2 binary64)) y)))) (neg.f64 x))) (neg.f64 x))
(* -1 (/ (+ (* -2 (* (sqrt z) (sqrt 2))) (* -1 (/ (+ (* -4 (* (* y (sqrt 2)) (sqrt z))) (* -1 (/ (+ (* -8 (* (* (pow y 2) (sqrt 2)) (sqrt z))) (* 16 (* (/ (* (pow y 3) (sqrt 2)) x) (sqrt z)))) x))) x))) x))
(/.f64 (fma.f64 (*.f64 #s(literal -2 binary64) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 z) (/.f64 (fma.f64 (*.f64 #s(literal -4 binary64) y) (*.f64 (sqrt.f64 z) (sqrt.f64 #s(literal 2 binary64))) (/.f64 (*.f64 (sqrt.f64 z) (fma.f64 (*.f64 #s(literal 16 binary64) (pow.f64 y #s(literal 3 binary64))) (/.f64 (sqrt.f64 #s(literal 2 binary64)) x) (*.f64 #s(literal -8 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) y) y)))) (neg.f64 x))) (neg.f64 x))) (neg.f64 x))
(+ (* -4 (* (/ (* y (sqrt 2)) (pow x 2)) (sqrt z))) (* 2 (* (/ (sqrt 2) x) (sqrt z))))
(*.f64 (sqrt.f64 z) (fma.f64 y (*.f64 (/.f64 (/.f64 (sqrt.f64 #s(literal 2 binary64)) x) x) #s(literal -4 binary64)) (*.f64 (/.f64 (sqrt.f64 #s(literal 2 binary64)) x) #s(literal 2 binary64))))
(+ (* 2 (* (/ (sqrt 2) x) (sqrt z))) (* y (+ (* -4 (* (/ (sqrt 2) (pow x 2)) (sqrt z))) (* 8 (* (/ (* y (sqrt 2)) (pow x 3)) (sqrt z))))))
(fma.f64 (*.f64 (sqrt.f64 z) (fma.f64 (*.f64 #s(literal 8 binary64) y) (/.f64 (sqrt.f64 #s(literal 2 binary64)) (pow.f64 x #s(literal 3 binary64))) (*.f64 (/.f64 (/.f64 (sqrt.f64 #s(literal 2 binary64)) x) x) #s(literal -4 binary64)))) y (*.f64 (*.f64 (/.f64 (sqrt.f64 #s(literal 2 binary64)) x) #s(literal 2 binary64)) (sqrt.f64 z)))
(+ (* 2 (* (/ (sqrt 2) x) (sqrt z))) (* y (+ (* -4 (* (/ (sqrt 2) (pow x 2)) (sqrt z))) (* y (+ (* -16 (* (/ (* y (sqrt 2)) (pow x 4)) (sqrt z))) (* 8 (* (/ (sqrt 2) (pow x 3)) (sqrt z))))))))
(fma.f64 (sqrt.f64 z) (fma.f64 y (*.f64 (/.f64 (/.f64 (sqrt.f64 #s(literal 2 binary64)) x) x) #s(literal -4 binary64)) (*.f64 (/.f64 (sqrt.f64 #s(literal 2 binary64)) x) #s(literal 2 binary64))) (*.f64 (*.f64 (sqrt.f64 z) (fma.f64 (/.f64 (sqrt.f64 #s(literal 2 binary64)) (pow.f64 x #s(literal 3 binary64))) #s(literal 8 binary64) (/.f64 (*.f64 #s(literal -16 binary64) (*.f64 (sqrt.f64 #s(literal 2 binary64)) y)) (pow.f64 x #s(literal 4 binary64))))) (*.f64 y y)))
(* -1 (* y (sqrt z)))
(*.f64 (neg.f64 y) (sqrt.f64 z))
(* y (+ (* -1 (* (sqrt z) (* (sqrt 2) (pow (sqrt (exp t)) t)))) (* 1/2 (* (/ (* x (* (sqrt 2) (pow (sqrt (exp t)) t))) y) (sqrt z)))))
(*.f64 (*.f64 (sqrt.f64 z) (fma.f64 (*.f64 #s(literal 1/2 binary64) x) (*.f64 (pow.f64 (sqrt.f64 (exp.f64 t)) t) (/.f64 (sqrt.f64 #s(literal 2 binary64)) y)) (*.f64 (neg.f64 (sqrt.f64 #s(literal 2 binary64))) (pow.f64 (sqrt.f64 (exp.f64 t)) t)))) y)
(* y (+ (* -1 (pow (sqrt (exp t)) t)) (* 1/2 (/ (* x (pow (sqrt (exp t)) t)) y))))
(*.f64 (neg.f64 y) (fma.f64 (*.f64 (pow.f64 (sqrt.f64 (exp.f64 t)) t) (/.f64 x y)) #s(literal -1/2 binary64) (pow.f64 (sqrt.f64 (exp.f64 t)) t)))
(* y (+ (* -1 (* (sqrt z) (* (exp (* 1/2 (pow t 2))) (sqrt 2)))) (* 1/2 (* (/ (* x (* (exp (* 1/2 (pow t 2))) (sqrt 2))) y) (sqrt z)))))
(*.f64 (neg.f64 y) (*.f64 (sqrt.f64 z) (fma.f64 (*.f64 #s(literal -1/2 binary64) x) (*.f64 (sqrt.f64 (pow.f64 (exp.f64 t) t)) (/.f64 (sqrt.f64 #s(literal 2 binary64)) y)) (*.f64 (sqrt.f64 (pow.f64 (exp.f64 t) t)) (sqrt.f64 #s(literal 2 binary64))))))
(* y (+ (* -1 (* (sqrt z) (sqrt 2))) (* 1/2 (* (/ (* x (sqrt 2)) y) (sqrt z)))))
(*.f64 (neg.f64 y) (*.f64 (sqrt.f64 z) (fma.f64 (*.f64 (/.f64 (sqrt.f64 #s(literal 2 binary64)) y) x) #s(literal -1/2 binary64) (sqrt.f64 #s(literal 2 binary64)))))
(* y (- (* 1/2 (/ x y)) 1))
(*.f64 (fma.f64 (/.f64 x y) #s(literal 1/2 binary64) #s(literal -1 binary64)) y)
(/ (+ (* -1/2 (* (/ (* x (sqrt 2)) y) (sqrt z))) (* (sqrt z) (sqrt 2))) y)
(/.f64 (*.f64 (sqrt.f64 z) (fma.f64 (*.f64 (/.f64 (sqrt.f64 #s(literal 2 binary64)) y) x) #s(literal -1/2 binary64) (sqrt.f64 #s(literal 2 binary64)))) y)
(/ (+ (* -1/2 (* (/ (* x (sqrt 2)) y) (sqrt z))) (+ (* 1/4 (* (/ (* (pow x 2) (sqrt 2)) (pow y 2)) (sqrt z))) (* (sqrt z) (sqrt 2)))) y)
(/.f64 (*.f64 (sqrt.f64 z) (fma.f64 (/.f64 #s(literal 1/4 binary64) y) (*.f64 x (*.f64 (/.f64 (sqrt.f64 #s(literal 2 binary64)) y) x)) (fma.f64 (*.f64 (/.f64 (sqrt.f64 #s(literal 2 binary64)) y) x) #s(literal -1/2 binary64) (sqrt.f64 #s(literal 2 binary64))))) y)
(/ (+ (* -1/2 (* (/ (* x (sqrt 2)) y) (sqrt z))) (+ (* -1/8 (* (/ (* (pow x 3) (sqrt 2)) (pow y 3)) (sqrt z))) (+ (* 1/4 (* (/ (* (pow x 2) (sqrt 2)) (pow y 2)) (sqrt z))) (* (sqrt z) (sqrt 2))))) y)
(/.f64 (*.f64 (sqrt.f64 z) (+.f64 (fma.f64 (*.f64 #s(literal -1/8 binary64) (pow.f64 x #s(literal 3 binary64))) (/.f64 (sqrt.f64 #s(literal 2 binary64)) (pow.f64 y #s(literal 3 binary64))) (*.f64 (/.f64 #s(literal 1/4 binary64) y) (*.f64 x (*.f64 (/.f64 (sqrt.f64 #s(literal 2 binary64)) y) x)))) (fma.f64 (*.f64 (/.f64 (sqrt.f64 #s(literal 2 binary64)) y) x) #s(literal -1/2 binary64) (sqrt.f64 #s(literal 2 binary64))))) y)
(* -1 (* y (+ (* -1/2 (* (/ (* x (* (sqrt 2) (pow (sqrt (exp t)) t))) y) (sqrt z))) (* (sqrt z) (* (sqrt 2) (pow (sqrt (exp t)) t))))))
(*.f64 (*.f64 (sqrt.f64 z) (fma.f64 (*.f64 #s(literal 1/2 binary64) x) (*.f64 (pow.f64 (sqrt.f64 (exp.f64 t)) t) (/.f64 (sqrt.f64 #s(literal 2 binary64)) y)) (*.f64 (neg.f64 (sqrt.f64 #s(literal 2 binary64))) (pow.f64 (sqrt.f64 (exp.f64 t)) t)))) y)
(* -1 (* y (+ (* -1/2 (/ (* x (pow (sqrt (exp t)) t)) y)) (pow (sqrt (exp t)) t))))
(*.f64 (neg.f64 y) (fma.f64 (*.f64 (pow.f64 (sqrt.f64 (exp.f64 t)) t) (/.f64 x y)) #s(literal -1/2 binary64) (pow.f64 (sqrt.f64 (exp.f64 t)) t)))
(* -1 (* y (+ (* -1/2 (* (/ (* x (* (exp (* 1/2 (pow t 2))) (sqrt 2))) y) (sqrt z))) (* (sqrt z) (* (exp (* 1/2 (pow t 2))) (sqrt 2))))))
(*.f64 (neg.f64 y) (*.f64 (sqrt.f64 z) (fma.f64 (*.f64 #s(literal -1/2 binary64) x) (*.f64 (sqrt.f64 (pow.f64 (exp.f64 t) t)) (/.f64 (sqrt.f64 #s(literal 2 binary64)) y)) (*.f64 (sqrt.f64 (pow.f64 (exp.f64 t) t)) (sqrt.f64 #s(literal 2 binary64))))))
(* -1 (* y (+ (* -1/2 (* (/ (* x (sqrt 2)) y) (sqrt z))) (* (sqrt z) (sqrt 2)))))
(*.f64 (neg.f64 y) (*.f64 (sqrt.f64 z) (fma.f64 (*.f64 (/.f64 (sqrt.f64 #s(literal 2 binary64)) y) x) #s(literal -1/2 binary64) (sqrt.f64 #s(literal 2 binary64)))))
(* -1 (* y (+ 1 (* -1/2 (/ x y)))))
(*.f64 (neg.f64 y) (fma.f64 (/.f64 x y) #s(literal -1/2 binary64) #s(literal 1 binary64)))
(* -1 (/ (+ (* -1 (* (sqrt z) (sqrt 2))) (* 1/2 (* (/ (* x (sqrt 2)) y) (sqrt z)))) y))
(/.f64 (*.f64 (sqrt.f64 z) (-.f64 (*.f64 (*.f64 (/.f64 (sqrt.f64 #s(literal 2 binary64)) y) x) #s(literal 1/2 binary64)) (sqrt.f64 #s(literal 2 binary64)))) (neg.f64 y))
(* -1 (/ (+ (* -1 (* (sqrt z) (sqrt 2))) (* -1 (/ (+ (* -1/2 (* (* x (sqrt 2)) (sqrt z))) (* 1/4 (* (/ (* (pow x 2) (sqrt 2)) y) (sqrt z)))) y))) y))
(/.f64 (fma.f64 (sqrt.f64 z) (sqrt.f64 #s(literal 2 binary64)) (/.f64 (*.f64 (sqrt.f64 z) (fma.f64 (*.f64 x (*.f64 (/.f64 (sqrt.f64 #s(literal 2 binary64)) y) x)) #s(literal 1/4 binary64) (*.f64 #s(literal -1/2 binary64) (*.f64 (sqrt.f64 #s(literal 2 binary64)) x)))) y)) y)
(* -1 (/ (+ (* -1 (* (sqrt z) (sqrt 2))) (* -1 (/ (+ (* -1 (/ (+ (* -1/4 (* (* (pow x 2) (sqrt 2)) (sqrt z))) (* 1/8 (* (/ (* (pow x 3) (sqrt 2)) y) (sqrt z)))) y)) (* -1/2 (* (* x (sqrt 2)) (sqrt z)))) y))) y))
(/.f64 (fma.f64 (sqrt.f64 z) (sqrt.f64 #s(literal 2 binary64)) (/.f64 (fma.f64 (*.f64 x (*.f64 #s(literal -1/2 binary64) (sqrt.f64 z))) (sqrt.f64 #s(literal 2 binary64)) (/.f64 (*.f64 (sqrt.f64 z) (fma.f64 (*.f64 #s(literal 1/8 binary64) (pow.f64 x #s(literal 3 binary64))) (/.f64 (sqrt.f64 #s(literal 2 binary64)) y) (*.f64 #s(literal -1/4 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) x) x)))) (neg.f64 y))) y)) y)
(* (sqrt z) (* (sqrt 2) (* (- (* 1/2 x) y) (pow (sqrt (exp t)) t))))
(*.f64 (*.f64 (*.f64 (-.f64 (*.f64 #s(literal 1/2 binary64) x) y) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 z)) (pow.f64 (sqrt.f64 (exp.f64 t)) t))
(* (sqrt z) (* (exp (* 1/2 (pow t 2))) (* (sqrt 2) (- (* 1/2 x) y))))
(*.f64 (*.f64 (-.f64 (*.f64 #s(literal 1/2 binary64) x) y) (*.f64 (sqrt.f64 (pow.f64 (exp.f64 t) t)) (sqrt.f64 #s(literal 2 binary64)))) (sqrt.f64 z))
(* (sqrt z) (* (sqrt 2) (- (* 1/2 x) y)))
(*.f64 (*.f64 (-.f64 (*.f64 #s(literal 1/2 binary64) x) y) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 z))
(* (sqrt z) (/ (sqrt 2) (+ y (* 1/2 x))))
(*.f64 (/.f64 (sqrt.f64 #s(literal 2 binary64)) (fma.f64 #s(literal 1/2 binary64) x y)) (sqrt.f64 z))
(* -1 (* (sqrt z) (* (sqrt -2) (* (sqrt -1) (* (- (* 1/2 x) y) (pow (sqrt (exp t)) t))))))
(*.f64 (*.f64 (neg.f64 (sqrt.f64 z)) (sqrt.f64 #s(literal -2 binary64))) (*.f64 (*.f64 (sqrt.f64 #s(literal -1 binary64)) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)) (pow.f64 (sqrt.f64 (exp.f64 t)) t)))
(* -1 (* (sqrt z) (* (exp (* 1/2 (pow t 2))) (* (sqrt -2) (* (sqrt -1) (- (* 1/2 x) y))))))
(*.f64 (*.f64 (neg.f64 (sqrt.f64 z)) (*.f64 (sqrt.f64 #s(literal -2 binary64)) (sqrt.f64 (pow.f64 (exp.f64 t) t)))) (*.f64 (sqrt.f64 #s(literal -1 binary64)) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)))
(* -1 (* (sqrt z) (* (sqrt -2) (* (sqrt -1) (- (* 1/2 x) y)))))
(*.f64 (neg.f64 (sqrt.f64 #s(literal -2 binary64))) (*.f64 (*.f64 (sqrt.f64 #s(literal -1 binary64)) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)) (sqrt.f64 z)))
(* -1 (* (sqrt z) (* (sqrt -2) (sqrt -1))))
(*.f64 (neg.f64 (sqrt.f64 #s(literal -2 binary64))) (*.f64 (sqrt.f64 #s(literal -1 binary64)) (sqrt.f64 z)))
(* -1 (* (sqrt z) (/ (* (sqrt -2) (sqrt -1)) (+ y (* 1/2 x)))))
(*.f64 (neg.f64 (sqrt.f64 #s(literal -2 binary64))) (*.f64 (/.f64 (sqrt.f64 #s(literal -1 binary64)) (fma.f64 #s(literal 1/2 binary64) x y)) (sqrt.f64 z)))
(* (* y (* (pow (sqrt -1) 2) (sqrt 2))) (sqrt z))
(*.f64 (neg.f64 (sqrt.f64 #s(literal 2 binary64))) (*.f64 (sqrt.f64 z) y))
(* (* y (pow (sqrt -1) 2)) (sqrt z))
(*.f64 (neg.f64 y) (sqrt.f64 z))
(+ (* 1/2 (* (* (pow t 2) (* (sqrt 2) (- (* 1/2 x) y))) (sqrt z))) (* (sqrt z) (* (sqrt 2) (- (* 1/2 x) y))))
(*.f64 (*.f64 (-.f64 (*.f64 #s(literal 1/2 binary64) x) y) (sqrt.f64 #s(literal 2 binary64))) (fma.f64 (*.f64 t t) (*.f64 (sqrt.f64 z) #s(literal 1/2 binary64)) (sqrt.f64 z)))
(+ (* (sqrt z) (* (sqrt 2) (- (* 1/2 x) y))) (* (pow t 2) (+ (* 1/8 (* (* (pow t 2) (* (sqrt 2) (- (* 1/2 x) y))) (sqrt z))) (* 1/2 (* (sqrt z) (* (sqrt 2) (- (* 1/2 x) y)))))))
(fma.f64 (*.f64 (*.f64 (*.f64 (-.f64 (*.f64 #s(literal 1/2 binary64) x) y) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 z)) (fma.f64 #s(literal 1/8 binary64) (*.f64 t t) #s(literal 1/2 binary64))) (*.f64 t t) (*.f64 (*.f64 (-.f64 (*.f64 #s(literal 1/2 binary64) x) y) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 z)))
(+ (* (sqrt z) (* (sqrt 2) (- (* 1/2 x) y))) (* (pow t 2) (+ (* 1/2 (* (sqrt z) (* (sqrt 2) (- (* 1/2 x) y)))) (* (pow t 2) (+ (* 1/48 (* (* (pow t 2) (* (sqrt 2) (- (* 1/2 x) y))) (sqrt z))) (* 1/8 (* (sqrt z) (* (sqrt 2) (- (* 1/2 x) y)))))))))
(fma.f64 (*.f64 (-.f64 (*.f64 #s(literal 1/2 binary64) x) y) (sqrt.f64 #s(literal 2 binary64))) (fma.f64 (*.f64 t t) (*.f64 (sqrt.f64 z) #s(literal 1/2 binary64)) (sqrt.f64 z)) (*.f64 (pow.f64 t #s(literal 4 binary64)) (*.f64 (*.f64 (*.f64 (-.f64 (*.f64 #s(literal 1/2 binary64) x) y) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 z)) (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64)))))
(- (+ (* 1/2 x) (* 1/2 (* (pow t 2) (- (* 1/2 x) y)))) y)
(fma.f64 (fma.f64 (-.f64 (*.f64 #s(literal 1/2 binary64) x) y) (*.f64 t t) x) #s(literal 1/2 binary64) (neg.f64 y))
(- (+ (* 1/2 x) (* (pow t 2) (+ (* 1/8 (* (pow t 2) (- (* 1/2 x) y))) (* 1/2 (- (* 1/2 x) y))))) y)
(fma.f64 (*.f64 (-.f64 (*.f64 #s(literal 1/2 binary64) x) y) (fma.f64 #s(literal 1/8 binary64) (*.f64 t t) #s(literal 1/2 binary64))) (*.f64 t t) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y))
(- (+ (* 1/2 x) (* (pow t 2) (+ (* 1/2 (- (* 1/2 x) y)) (* (pow t 2) (+ (* 1/48 (* (pow t 2) (- (* 1/2 x) y))) (* 1/8 (- (* 1/2 x) y))))))) y)
(-.f64 (fma.f64 (fma.f64 (-.f64 (*.f64 #s(literal 1/2 binary64) x) y) (*.f64 t t) x) #s(literal 1/2 binary64) (*.f64 (pow.f64 t #s(literal 4 binary64)) (*.f64 (-.f64 (*.f64 #s(literal 1/2 binary64) x) y) (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64))))) y)
1
#s(literal 1 binary64)
(+ 1 (* 1/2 (pow t 2)))
(fma.f64 (*.f64 t t) #s(literal 1/2 binary64) #s(literal 1 binary64))
(+ 1 (* (pow t 2) (+ 1/2 (* 1/8 (pow t 2)))))
(fma.f64 (fma.f64 #s(literal 1/8 binary64) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))
(+ 1 (* (pow t 2) (+ 1/2 (* (pow t 2) (+ 1/8 (* 1/48 (pow t 2)))))))
(fma.f64 (fma.f64 (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))
(+ 1 (* 1/2 t))
(fma.f64 #s(literal 1/2 binary64) t #s(literal 1 binary64))
(+ 1 (* t (+ 1/2 (* 1/8 t))))
(fma.f64 (fma.f64 #s(literal 1/8 binary64) t #s(literal 1/2 binary64)) t #s(literal 1 binary64))
(+ 1 (* t (+ 1/2 (* t (+ 1/8 (* 1/48 t))))))
(fma.f64 (fma.f64 (fma.f64 #s(literal 1/48 binary64) t #s(literal 1/8 binary64)) t #s(literal 1/2 binary64)) t #s(literal 1 binary64))
(* (- (* 1/2 x) y) (pow (sqrt (exp t)) t))
(*.f64 (-.f64 (*.f64 #s(literal 1/2 binary64) x) y) (pow.f64 (sqrt.f64 (exp.f64 t)) t))
(pow (sqrt (exp t)) t)
(pow.f64 (sqrt.f64 (exp.f64 t)) t)
(sqrt (exp t))
(sqrt.f64 (exp.f64 t))
(exp (* 1/2 (pow t 2)))
(sqrt.f64 (pow.f64 (exp.f64 t) t))

rewrite327.0ms (2.8%)

Memory
-6.6MiB live, 236.1MiB allocated
Iterations

Useful iterations: 2 (0.0ms)

IterNodesCost
061354
0102348
1300325
21710317
08196317
Stop Event
iter limit
node limit
iter limit
Counts
24 → 690
Calls
Call 1
Inputs
(*.f64 (*.f64 (pow.f64 #s(approx (sqrt (exp t)) (fma.f64 #s(literal 1/2 binary64) t #s(literal 1 binary64))) t) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
(*.f64 (pow.f64 #s(approx (sqrt (exp t)) (fma.f64 #s(literal 1/2 binary64) t #s(literal 1 binary64))) t) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y))
(pow.f64 #s(approx (sqrt (exp t)) (fma.f64 #s(literal 1/2 binary64) t #s(literal 1 binary64))) t)
#s(approx (sqrt (exp t)) (fma.f64 #s(literal 1/2 binary64) t #s(literal 1 binary64)))
(*.f64 (*.f64 #s(approx (- (* x 1/2) y) (neg.f64 y)) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 #s(approx (- (* x 1/2) y) (neg.f64 y)) (sqrt.f64 (*.f64 z #s(literal 2 binary64))))
#s(approx (- (* x 1/2) y) (neg.f64 y))
(neg.f64 y)
(*.f64 (fma.f64 (/.f64 x y) #s(literal 1/2 binary64) #s(literal -1 binary64)) y)
(*.f64 (*.f64 #s(approx (- (* x 1/2) y) (*.f64 (fma.f64 (/.f64 x y) #s(literal 1/2 binary64) #s(literal -1 binary64)) y)) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 #s(approx (- (* x 1/2) y) (*.f64 (fma.f64 (/.f64 x y) #s(literal 1/2 binary64) #s(literal -1 binary64)) y)) (sqrt.f64 (*.f64 z #s(literal 2 binary64))))
#s(approx (- (* x 1/2) y) (*.f64 (fma.f64 (/.f64 x y) #s(literal 1/2 binary64) #s(literal -1 binary64)) y))
(*.f64 (/.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (fma.f64 x #s(literal 1/2 binary64) y)) (fma.f64 x #s(literal 1/2 binary64) y))
(*.f64 (*.f64 (*.f64 (/.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (fma.f64 x #s(literal 1/2 binary64) y)) (fma.f64 x #s(literal 1/2 binary64) y)) (-.f64 (*.f64 x #s(literal 1/2 binary64)) y)) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 (/.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (fma.f64 x #s(literal 1/2 binary64) y)) (fma.f64 x #s(literal 1/2 binary64) y)) (-.f64 (*.f64 x #s(literal 1/2 binary64)) y))
(/.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (fma.f64 x #s(literal 1/2 binary64) y))
(*.f64 #s(approx (* (- (* x 1/2) y) (sqrt (* z 2))) (*.f64 (*.f64 y (neg.f64 (sqrt.f64 z))) (sqrt.f64 #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) (fma.f64 (fma.f64 (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))))
#s(approx (* (- (* x 1/2) y) (sqrt (* z 2))) (*.f64 (*.f64 y (neg.f64 (sqrt.f64 z))) (sqrt.f64 #s(literal 2 binary64))))
(*.f64 (*.f64 y (neg.f64 (sqrt.f64 z))) (sqrt.f64 #s(literal 2 binary64)))
(*.f64 y (neg.f64 (sqrt.f64 z)))
(sqrt.f64 (*.f64 #s(literal 2 binary64) z))
(*.f64 #s(literal 1/2 binary64) x)
#s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64))
#s(approx (exp (/ (* t t) 2)) (fma.f64 (fma.f64 (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64)))
Outputs
(*.f64 (*.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (pow.f64 #s(approx (sqrt (exp t)) (fma.f64 #s(literal 1/2 binary64) t #s(literal 1 binary64))) t)) (fma.f64 x #s(literal 1/2 binary64) (neg.f64 y)))
(*.f64 (*.f64 (*.f64 (fma.f64 x #s(literal 1/2 binary64) (neg.f64 y)) (pow.f64 #s(approx (sqrt (exp t)) (fma.f64 #s(literal 1/2 binary64) t #s(literal 1 binary64))) t)) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 z))
(*.f64 (*.f64 (*.f64 (fma.f64 x #s(literal 1/2 binary64) (neg.f64 y)) (pow.f64 #s(approx (sqrt (exp t)) (fma.f64 #s(literal 1/2 binary64) t #s(literal 1 binary64))) t)) (sqrt.f64 z)) (sqrt.f64 #s(literal 2 binary64)))
(*.f64 (*.f64 (pow.f64 #s(approx (sqrt (exp t)) (fma.f64 #s(literal 1/2 binary64) t #s(literal 1 binary64))) t) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) (fma.f64 x #s(literal 1/2 binary64) (neg.f64 y)))
(*.f64 (pow.f64 #s(approx (sqrt (exp t)) (fma.f64 #s(literal 1/2 binary64) t #s(literal 1 binary64))) (*.f64 #s(literal 1/2 binary64) t)) (*.f64 (pow.f64 #s(approx (sqrt (exp t)) (fma.f64 #s(literal 1/2 binary64) t #s(literal 1 binary64))) (*.f64 #s(literal 1/2 binary64) t)) (*.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (fma.f64 x #s(literal 1/2 binary64) (neg.f64 y)))))
(*.f64 (sqrt.f64 #s(literal 2 binary64)) (*.f64 (sqrt.f64 z) (*.f64 (fma.f64 x #s(literal 1/2 binary64) (neg.f64 y)) (pow.f64 #s(approx (sqrt (exp t)) (fma.f64 #s(literal 1/2 binary64) t #s(literal 1 binary64))) t))))
(*.f64 (sqrt.f64 z) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (*.f64 (fma.f64 x #s(literal 1/2 binary64) (neg.f64 y)) (pow.f64 #s(approx (sqrt (exp t)) (fma.f64 #s(literal 1/2 binary64) t #s(literal 1 binary64))) t))))
(*.f64 (*.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (fma.f64 x #s(literal 1/2 binary64) (neg.f64 y))) (pow.f64 #s(approx (sqrt (exp t)) (fma.f64 #s(literal 1/2 binary64) t #s(literal 1 binary64))) t))
(*.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (*.f64 (fma.f64 x #s(literal 1/2 binary64) (neg.f64 y)) (pow.f64 #s(approx (sqrt (exp t)) (fma.f64 #s(literal 1/2 binary64) t #s(literal 1 binary64))) t)))
(*.f64 (fma.f64 x #s(literal 1/2 binary64) (neg.f64 y)) (*.f64 (pow.f64 #s(approx (sqrt (exp t)) (fma.f64 #s(literal 1/2 binary64) t #s(literal 1 binary64))) t) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))))
(*.f64 (*.f64 (fma.f64 x #s(literal 1/2 binary64) (neg.f64 y)) (pow.f64 #s(approx (sqrt (exp t)) (fma.f64 #s(literal 1/2 binary64) t #s(literal 1 binary64))) t)) (sqrt.f64 (*.f64 z #s(literal 2 binary64))))
(*.f64 (pow.f64 #s(approx (sqrt (exp t)) (fma.f64 #s(literal 1/2 binary64) t #s(literal 1 binary64))) t) (*.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (fma.f64 x #s(literal 1/2 binary64) (neg.f64 y))))
(/.f64 (*.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (pow.f64 #s(approx (sqrt (exp t)) (fma.f64 #s(literal 1/2 binary64) t #s(literal 1 binary64))) t)) (pow.f64 (fma.f64 x #s(literal 1/2 binary64) (neg.f64 y)) #s(literal -1 binary64)))
(/.f64 (*.f64 (pow.f64 #s(approx (sqrt (exp t)) (fma.f64 #s(literal 1/2 binary64) t #s(literal 1 binary64))) t) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) (pow.f64 (fma.f64 x #s(literal 1/2 binary64) (neg.f64 y)) #s(literal -1 binary64)))
(*.f64 (/.f64 (pow.f64 #s(approx (sqrt (exp t)) (fma.f64 #s(literal 1/2 binary64) t #s(literal 1 binary64))) t) (/.f64 (fma.f64 (*.f64 x x) #s(literal 1/4 binary64) (*.f64 (neg.f64 y) y)) (fma.f64 (*.f64 x x) #s(literal 1/4 binary64) (*.f64 (neg.f64 y) y)))) (fma.f64 x #s(literal 1/2 binary64) (neg.f64 y)))
(*.f64 (/.f64 (pow.f64 #s(approx (sqrt (exp t)) (fma.f64 #s(literal 1/2 binary64) t #s(literal 1 binary64))) t) (/.f64 (fma.f64 (*.f64 x x) #s(literal 1/4 binary64) (*.f64 (neg.f64 y) y)) (fma.f64 (pow.f64 x #s(literal 3 binary64)) #s(literal 1/8 binary64) (pow.f64 (neg.f64 y) #s(literal 3 binary64))))) (/.f64 (fma.f64 (*.f64 x x) #s(literal 1/4 binary64) (*.f64 (neg.f64 y) y)) (fma.f64 y (fma.f64 x #s(literal 1/2 binary64) y) (pow.f64 (*.f64 x #s(literal 1/2 binary64)) #s(literal 2 binary64)))))
(*.f64 (/.f64 (pow.f64 #s(approx (sqrt (exp t)) (fma.f64 #s(literal 1/2 binary64) t #s(literal 1 binary64))) t) (fma.f64 (*.f64 x x) #s(literal 1/4 binary64) (*.f64 (neg.f64 y) y))) (*.f64 (fma.f64 (*.f64 x x) #s(literal 1/4 binary64) (*.f64 (neg.f64 y) y)) (fma.f64 x #s(literal 1/2 binary64) (neg.f64 y))))
(*.f64 (/.f64 (pow.f64 #s(approx (sqrt (exp t)) (fma.f64 #s(literal 1/2 binary64) t #s(literal 1 binary64))) t) (fma.f64 (pow.f64 x #s(literal 3 binary64)) #s(literal 1/8 binary64) (pow.f64 y #s(literal 3 binary64)))) (/.f64 (fma.f64 (*.f64 x x) #s(literal 1/4 binary64) (*.f64 (neg.f64 y) y)) (pow.f64 (fma.f64 (*.f64 x x) #s(literal 1/4 binary64) (*.f64 y (-.f64 y (*.f64 x #s(literal 1/2 binary64))))) #s(literal -1 binary64))))
(*.f64 (/.f64 (fma.f64 (*.f64 x x) #s(literal 1/4 binary64) (*.f64 (neg.f64 y) y)) (/.f64 (fma.f64 (*.f64 x x) #s(literal 1/4 binary64) (*.f64 (neg.f64 y) y)) (fma.f64 (*.f64 x x) #s(literal 1/4 binary64) (*.f64 (neg.f64 y) y)))) (/.f64 (pow.f64 #s(approx (sqrt (exp t)) (fma.f64 #s(literal 1/2 binary64) t #s(literal 1 binary64))) t) (fma.f64 x #s(literal 1/2 binary64) y)))
(*.f64 (/.f64 (fma.f64 (*.f64 x x) #s(literal 1/4 binary64) (*.f64 (neg.f64 y) y)) (/.f64 (fma.f64 (*.f64 x x) #s(literal 1/4 binary64) (*.f64 (neg.f64 y) y)) (fma.f64 (pow.f64 x #s(literal 3 binary64)) #s(literal 1/8 binary64) (pow.f64 (neg.f64 y) #s(literal 3 binary64))))) (/.f64 (pow.f64 #s(approx (sqrt (exp t)) (fma.f64 #s(literal 1/2 binary64) t #s(literal 1 binary64))) t) (fma.f64 y (fma.f64 x #s(literal 1/2 binary64) y) (pow.f64 (*.f64 x #s(literal 1/2 binary64)) #s(literal 2 binary64)))))
(*.f64 (/.f64 (fma.f64 (*.f64 x x) #s(literal 1/4 binary64) (*.f64 (neg.f64 y) y)) (fma.f64 (pow.f64 x #s(literal 3 binary64)) #s(literal 1/8 binary64) (pow.f64 y #s(literal 3 binary64)))) (/.f64 (pow.f64 #s(approx (sqrt (exp t)) (fma.f64 #s(literal 1/2 binary64) t #s(literal 1 binary64))) t) (pow.f64 (fma.f64 (*.f64 x x) #s(literal 1/4 binary64) (*.f64 y (-.f64 y (*.f64 x #s(literal 1/2 binary64))))) #s(literal -1 binary64))))
(*.f64 (/.f64 (fma.f64 (*.f64 x x) #s(literal 1/4 binary64) (*.f64 (neg.f64 y) y)) (fma.f64 (*.f64 x x) #s(literal 1/4 binary64) (*.f64 (neg.f64 y) y))) (*.f64 (fma.f64 x #s(literal 1/2 binary64) (neg.f64 y)) (pow.f64 #s(approx (sqrt (exp t)) (fma.f64 #s(literal 1/2 binary64) t #s(literal 1 binary64))) t)))
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(/.f64 #s(literal -1 binary64) (neg.f64 (/.f64 (fma.f64 x #s(literal 1/2 binary64) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64))))))
(/.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (fma.f64 x #s(literal 1/2 binary64) y))
(/.f64 #s(literal 1 binary64) (/.f64 (fma.f64 x #s(literal 1/2 binary64) y) (*.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) #s(literal 1 binary64))))
(/.f64 #s(literal 1 binary64) (neg.f64 (neg.f64 (/.f64 (fma.f64 x #s(literal 1/2 binary64) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))))))
(/.f64 #s(literal 1 binary64) (/.f64 (fma.f64 x #s(literal 1/2 binary64) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))))
(neg.f64 (/.f64 (neg.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) (fma.f64 x #s(literal 1/2 binary64) y)))
(neg.f64 (/.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (neg.f64 (fma.f64 x #s(literal 1/2 binary64) y))))
(-.f64 (/.f64 #s(literal 0 binary64) (neg.f64 (fma.f64 x #s(literal 1/2 binary64) y))) (/.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (neg.f64 (fma.f64 x #s(literal 1/2 binary64) y))))
(-.f64 #s(literal 0 binary64) (/.f64 (neg.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) (fma.f64 x #s(literal 1/2 binary64) y)))
(-.f64 #s(literal 0 binary64) (/.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (neg.f64 (fma.f64 x #s(literal 1/2 binary64) y))))
(exp.f64 (*.f64 (log.f64 (/.f64 (fma.f64 x #s(literal 1/2 binary64) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64))))) #s(literal -1 binary64)))
(*.f64 #s(approx (exp (/ (* t t) 2)) (fma.f64 (fma.f64 (fma.f64 (*.f64 t t) #s(literal 1/48 binary64) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))) #s(approx (* (- (* x 1/2) y) (sqrt (* z 2))) (*.f64 (neg.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) y)))
(*.f64 #s(approx (* (- (* x 1/2) y) (sqrt (* z 2))) (*.f64 (neg.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) y)) #s(approx (exp (/ (* t t) 2)) (fma.f64 (fma.f64 (fma.f64 (*.f64 t t) #s(literal 1/48 binary64) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))))
#s(approx (* (- (* x 1/2) y) (sqrt (* z 2))) (*.f64 (neg.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) y))
(*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) y) (neg.f64 (sqrt.f64 z)))
(*.f64 (neg.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) y)
(*.f64 (sqrt.f64 #s(literal 2 binary64)) (*.f64 (neg.f64 (sqrt.f64 z)) y))
(*.f64 (*.f64 (neg.f64 (sqrt.f64 z)) y) (sqrt.f64 #s(literal 2 binary64)))
(*.f64 (neg.f64 (sqrt.f64 z)) (*.f64 y (sqrt.f64 #s(literal 2 binary64))))
(*.f64 y (neg.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64)))))
(neg.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (*.f64 (sqrt.f64 z) y)))
(neg.f64 (*.f64 (*.f64 (sqrt.f64 z) y) (sqrt.f64 #s(literal 2 binary64))))
(-.f64 #s(literal 0 binary64) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (*.f64 (sqrt.f64 z) y)))
(-.f64 #s(literal 0 binary64) (*.f64 (*.f64 (sqrt.f64 z) y) (sqrt.f64 #s(literal 2 binary64))))
(*.f64 (neg.f64 (sqrt.f64 z)) y)
(*.f64 #s(literal -1 binary64) (*.f64 (sqrt.f64 z) y))
(*.f64 (neg.f64 y) (sqrt.f64 z))
(*.f64 y (neg.f64 (sqrt.f64 z)))
(/.f64 (-.f64 #s(literal 0 binary64) (pow.f64 (*.f64 (sqrt.f64 z) y) #s(literal 3 binary64))) (+.f64 #s(literal 0 binary64) (fma.f64 (*.f64 (sqrt.f64 z) y) (*.f64 (sqrt.f64 z) y) (*.f64 #s(literal 0 binary64) (*.f64 (sqrt.f64 z) y)))))
(neg.f64 (*.f64 (sqrt.f64 z) y))
(-.f64 #s(literal 0 binary64) (*.f64 (sqrt.f64 z) y))
(+.f64 #s(literal 0 binary64) (*.f64 (neg.f64 (sqrt.f64 z)) y))
(*.f64 (pow.f64 (*.f64 z #s(literal 2 binary64)) #s(literal 1/4 binary64)) (pow.f64 (*.f64 z #s(literal 2 binary64)) #s(literal 1/4 binary64)))
(*.f64 (sqrt.f64 #s(literal 2 binary64)) (sqrt.f64 z))
(*.f64 (sqrt.f64 z) (sqrt.f64 #s(literal 2 binary64)))
(pow.f64 (exp.f64 (log.f64 (*.f64 z #s(literal 2 binary64)))) #s(literal 1/2 binary64))
(pow.f64 (*.f64 (*.f64 z #s(literal 2 binary64)) (*.f64 z #s(literal 2 binary64))) #s(literal 1/4 binary64))
(pow.f64 (pow.f64 (*.f64 z #s(literal 2 binary64)) #s(literal 1/4 binary64)) #s(literal 2 binary64))
(pow.f64 (*.f64 z #s(literal 2 binary64)) #s(literal 1/2 binary64))
(sqrt.f64 (*.f64 z #s(literal 2 binary64)))
(exp.f64 (fma.f64 (log.f64 #s(literal 2 binary64)) #s(literal 1/2 binary64) (*.f64 (log.f64 z) #s(literal 1/2 binary64))))
(exp.f64 (fma.f64 (log.f64 z) #s(literal 1/2 binary64) (*.f64 (log.f64 #s(literal 2 binary64)) #s(literal 1/2 binary64))))
(exp.f64 (*.f64 (log.f64 (*.f64 z #s(literal 2 binary64))) #s(literal 1/2 binary64)))
(*.f64 x #s(literal 1/2 binary64))
(*.f64 #s(literal 1/2 binary64) x)
#s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64))
#s(approx (exp (/ (* t t) 2)) (fma.f64 (fma.f64 (fma.f64 (*.f64 t t) #s(literal 1/48 binary64) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64)))

eval99.0ms (0.9%)

Memory
34.1MiB live, 187.7MiB allocated
Compiler

Compiled 31 838 to 3 148 computations (90.1% saved)

prune61.0ms (0.5%)

Memory
-20.4MiB live, 104.8MiB allocated
Pruning

34 alts after pruning (29 fresh and 5 done)

PrunedKeptTotal
New74617763
Fresh131225
Picked145
Done011
Total76034794
Accuracy
100.0%
Counts
794 → 34
Alt Table
Click to see full alt table
StatusAccuracyProgram
57.0%
(/.f64 (*.f64 #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)) (fma.f64 x #s(literal 1/2 binary64) (neg.f64 y))) (/.f64 #s(literal 1 binary64) (*.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) #s(literal 1 binary64))))
46.0%
(*.f64 (/.f64 (fma.f64 (*.f64 x x) #s(literal 1/4 binary64) (*.f64 (neg.f64 y) y)) (/.f64 (fma.f64 x #s(literal 1/2 binary64) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64))))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
46.4%
(*.f64 (/.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (fma.f64 x #s(literal 1/2 binary64) y)) (*.f64 (fma.f64 (*.f64 x x) #s(literal 1/4 binary64) (*.f64 (neg.f64 y) y)) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64))))
57.0%
(*.f64 (/.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (pow.f64 (fma.f64 x #s(literal 1/2 binary64) (neg.f64 y)) #s(literal -1 binary64))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
47.9%
(*.f64 (/.f64 #s(literal 1 binary64) (/.f64 (fma.f64 x #s(literal 1/2 binary64) y) (*.f64 (fma.f64 (*.f64 x x) #s(literal 1/4 binary64) (*.f64 (neg.f64 y) y)) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
46.0%
(*.f64 (/.f64 #s(literal 1 binary64) (/.f64 (/.f64 (fma.f64 x #s(literal 1/2 binary64) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) (*.f64 #s(literal 1 binary64) (fma.f64 (*.f64 x x) #s(literal 1/4 binary64) (*.f64 (neg.f64 y) y))))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
99.8%
(*.f64 (*.f64 (pow.f64 #s(approx (sqrt (exp t)) (fma.f64 #s(literal 1/2 binary64) t #s(literal 1 binary64))) t) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
95.0%
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) (fma.f64 (fma.f64 (fma.f64 (*.f64 #s(literal 1/48 binary64) t) t #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))))
95.0%
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) (fma.f64 (fma.f64 #s(approx (+ (* 1/48 (* t t)) 1/8) (*.f64 #s(literal 1/48 binary64) (*.f64 t t))) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))))
92.0%
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) (fma.f64 (fma.f64 #s(approx (+ (* 1/48 (* t t)) 1/8) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))))
86.1%
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) (fma.f64 (*.f64 t t) #s(literal 1/2 binary64) #s(literal 1 binary64))))
57.1%
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
56.9%
(*.f64 (*.f64 (*.f64 (fma.f64 x #s(literal 1/2 binary64) (neg.f64 y)) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 z)) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
28.6%
(*.f64 (*.f64 (*.f64 (/.f64 (*.f64 (fma.f64 x #s(literal 1/2 binary64) (neg.f64 y)) (sqrt.f64 z)) (fma.f64 (*.f64 x x) #s(literal 1/4 binary64) (*.f64 (neg.f64 y) y))) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (fma.f64 x #s(literal 1/2 binary64) y))) (-.f64 (*.f64 x #s(literal 1/2 binary64)) y)) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
26.2%
(*.f64 (*.f64 (*.f64 (/.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (fma.f64 (*.f64 x x) #s(literal 1/4 binary64) (*.f64 (neg.f64 y) y))) (fma.f64 (*.f64 x x) #s(literal 1/4 binary64) (*.f64 (neg.f64 y) y))) (-.f64 (*.f64 x #s(literal 1/2 binary64)) y)) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
51.7%
(*.f64 (*.f64 (*.f64 (/.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (fma.f64 x #s(literal 1/2 binary64) y)) (fma.f64 x #s(literal 1/2 binary64) y)) (-.f64 (*.f64 x #s(literal 1/2 binary64)) y)) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
27.6%
(*.f64 (*.f64 (*.f64 (*.f64 (/.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (fma.f64 (*.f64 x x) #s(literal 1/4 binary64) (*.f64 (neg.f64 y) y))) (fma.f64 x #s(literal 1/2 binary64) (neg.f64 y))) (fma.f64 x #s(literal 1/2 binary64) y)) (-.f64 (*.f64 x #s(literal 1/2 binary64)) y)) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
34.8%
(*.f64 (*.f64 (*.f64 #s(approx (/ (sqrt (* z 2)) (+ (* x 1/2) y)) (*.f64 (/.f64 (sqrt.f64 #s(literal 2 binary64)) y) (sqrt.f64 z))) (fma.f64 x #s(literal 1/2 binary64) y)) (-.f64 (*.f64 x #s(literal 1/2 binary64)) y)) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
27.7%
(*.f64 (*.f64 (*.f64 #s(approx (- (* x 1/2) y) (neg.f64 y)) (sqrt.f64 z)) (sqrt.f64 #s(literal 2 binary64))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
27.7%
(*.f64 (*.f64 (*.f64 #s(approx (- (* x 1/2) y) (neg.f64 y)) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 z)) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
96.5%
(*.f64 (*.f64 #s(approx (pow (sqrt (exp t)) t) (fma.f64 (fma.f64 (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
93.1%
(*.f64 (*.f64 #s(approx (pow (sqrt (exp t)) t) (fma.f64 (fma.f64 #s(literal 1/8 binary64) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
88.3%
(*.f64 (*.f64 #s(approx (pow (sqrt (exp t)) t) (fma.f64 (*.f64 t t) #s(literal 1/2 binary64) #s(literal 1 binary64))) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
57.5%
(*.f64 (*.f64 #s(approx (- (* x 1/2) y) (*.f64 (fma.f64 (/.f64 x y) #s(literal 1/2 binary64) #s(literal -1 binary64)) y)) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
57.8%
(*.f64 (*.f64 #s(approx (- (* x 1/2) y) (*.f64 (-.f64 #s(literal 1/2 binary64) (/.f64 y x)) x)) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
55.1%
(*.f64 (*.f64 #s(approx (- (* x 1/2) y) (neg.f64 y)) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) (fma.f64 (fma.f64 (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))))
27.8%
(*.f64 (*.f64 #s(approx (- (* x 1/2) y) (neg.f64 y)) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
56.9%
(*.f64 (*.f64 #s(approx (* (/ (sqrt (* z 2)) (+ (* x 1/2) y)) (+ (* x 1/2) y)) (*.f64 (sqrt.f64 z) (sqrt.f64 #s(literal 2 binary64)))) (-.f64 (*.f64 x #s(literal 1/2 binary64)) y)) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
95.7%
(*.f64 #s(approx (* (pow (sqrt (exp t)) t) (- (* 1/2 x) y)) (fma.f64 (fma.f64 (*.f64 (-.f64 (*.f64 #s(literal 1/2 binary64) x) y) (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64))) (*.f64 t t) (*.f64 (-.f64 (*.f64 #s(literal 1/2 binary64) x) y) #s(literal 1/2 binary64))) (*.f64 t t) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y))) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
92.8%
(*.f64 #s(approx (* (pow (sqrt (exp t)) t) (- (* 1/2 x) y)) (fma.f64 (*.f64 (-.f64 (*.f64 #s(literal 1/2 binary64) x) y) (fma.f64 #s(literal 1/8 binary64) (*.f64 t t) #s(literal 1/2 binary64))) (*.f64 t t) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y))) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
55.0%
(*.f64 #s(approx (* (- (* x 1/2) y) (sqrt (* z 2))) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) y) (neg.f64 (sqrt.f64 z)))) #s(approx (exp (/ (* t t) 2)) (fma.f64 (fma.f64 (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))))
33.8%
(*.f64 #s(approx (* (- (* x 1/2) y) (sqrt (* z 2))) (*.f64 (*.f64 x (*.f64 (sqrt.f64 z) #s(literal 1/2 binary64))) (sqrt.f64 #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
57.3%
(*.f64 #s(approx (* (- (* x 1/2) y) (sqrt (* z 2))) (*.f64 (neg.f64 y) (*.f64 (sqrt.f64 z) (fma.f64 (*.f64 (/.f64 (sqrt.f64 #s(literal 2 binary64)) y) x) #s(literal -1/2 binary64) (sqrt.f64 #s(literal 2 binary64)))))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
88.1%
#s(approx (* (* (- (* x 1/2) y) (sqrt (* z 2))) (exp (/ (* t t) 2))) (*.f64 (*.f64 (fma.f64 (*.f64 t t) #s(literal 1/2 binary64) #s(literal 1 binary64)) (*.f64 (fma.f64 #s(literal 1/2 binary64) x (neg.f64 y)) (sqrt.f64 #s(literal 2 binary64)))) (sqrt.f64 z)))
Compiler

Compiled 1 995 to 1 521 computations (23.8% saved)

simplify243.0ms (2.1%)

Memory
2.6MiB live, 230.0MiB allocated
Algorithm
egg-herbie
Localize:

Found 20 expressions of interest:

NewMetricScoreProgram
cost-diff0
(fma.f64 x #s(literal 1/2 binary64) y)
cost-diff0
(/.f64 (fma.f64 x #s(literal 1/2 binary64) y) (*.f64 (fma.f64 (*.f64 x x) #s(literal 1/4 binary64) (*.f64 (neg.f64 y) y)) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))))
cost-diff0
(*.f64 (/.f64 #s(literal 1 binary64) (/.f64 (fma.f64 x #s(literal 1/2 binary64) y) (*.f64 (fma.f64 (*.f64 x x) #s(literal 1/4 binary64) (*.f64 (neg.f64 y) y)) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
cost-diff704
(/.f64 #s(literal 1 binary64) (/.f64 (fma.f64 x #s(literal 1/2 binary64) y) (*.f64 (fma.f64 (*.f64 x x) #s(literal 1/4 binary64) (*.f64 (neg.f64 y) y)) (sqrt.f64 (*.f64 z #s(literal 2 binary64))))))
cost-diff0
(*.f64 (-.f64 (*.f64 #s(literal 1/2 binary64) x) y) (fma.f64 #s(literal 1/8 binary64) (*.f64 t t) #s(literal 1/2 binary64)))
cost-diff0
#s(approx (* (pow (sqrt (exp t)) t) (- (* 1/2 x) y)) (fma.f64 (*.f64 (-.f64 (*.f64 #s(literal 1/2 binary64) x) y) (fma.f64 #s(literal 1/8 binary64) (*.f64 t t) #s(literal 1/2 binary64))) (*.f64 t t) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)))
cost-diff0
(*.f64 #s(approx (* (pow (sqrt (exp t)) t) (- (* 1/2 x) y)) (fma.f64 (*.f64 (-.f64 (*.f64 #s(literal 1/2 binary64) x) y) (fma.f64 #s(literal 1/8 binary64) (*.f64 t t) #s(literal 1/2 binary64))) (*.f64 t t) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y))) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
cost-diff512
(fma.f64 (*.f64 (-.f64 (*.f64 #s(literal 1/2 binary64) x) y) (fma.f64 #s(literal 1/8 binary64) (*.f64 t t) #s(literal 1/2 binary64))) (*.f64 t t) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y))
cost-diff0
(*.f64 x #s(literal 1/2 binary64))
cost-diff0
(-.f64 (*.f64 x #s(literal 1/2 binary64)) y)
cost-diff0
(*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64))))
cost-diff0
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) (fma.f64 (*.f64 t t) #s(literal 1/2 binary64) #s(literal 1 binary64))))
cost-diff0
#s(approx (- (* x 1/2) y) (neg.f64 y))
cost-diff0
(*.f64 #s(approx (- (* x 1/2) y) (neg.f64 y)) (sqrt.f64 #s(literal 2 binary64)))
cost-diff0
(*.f64 (*.f64 #s(approx (- (* x 1/2) y) (neg.f64 y)) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 z))
cost-diff0
(*.f64 (*.f64 (*.f64 #s(approx (- (* x 1/2) y) (neg.f64 y)) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 z)) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
cost-diff0
(fma.f64 (fma.f64 (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))
cost-diff0
#s(approx (pow (sqrt (exp t)) t) (fma.f64 (fma.f64 (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64)))
cost-diff0
(*.f64 #s(approx (pow (sqrt (exp t)) t) (fma.f64 (fma.f64 (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y))
cost-diff0
(*.f64 (*.f64 #s(approx (pow (sqrt (exp t)) t) (fma.f64 (fma.f64 (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
Iterations

Useful iterations: 0 (0.0ms)

IterNodesCost
061558
0103552
1195550
2388539
31257539
44215539
57104539
08169536
Stop Event
iter limit
node limit
iter limit
Calls
Call 1
Inputs
(*.f64 (*.f64 #s(approx (pow (sqrt (exp t)) t) (fma.f64 (fma.f64 (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
(*.f64 #s(approx (pow (sqrt (exp t)) t) (fma.f64 (fma.f64 (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y))
#s(approx (pow (sqrt (exp t)) t) (fma.f64 (fma.f64 (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64)))
(fma.f64 (fma.f64 (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))
(fma.f64 (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64))
(fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64))
#s(literal 1/48 binary64)
(*.f64 t t)
t
#s(literal 1/8 binary64)
#s(literal 1/2 binary64)
#s(literal 1 binary64)
(-.f64 (*.f64 #s(literal 1/2 binary64) x) y)
(*.f64 #s(literal 1/2 binary64) x)
x
y
(sqrt.f64 (*.f64 #s(literal 2 binary64) z))
(*.f64 #s(literal 2 binary64) z)
#s(literal 2 binary64)
z
(*.f64 (*.f64 (*.f64 #s(approx (- (* x 1/2) y) (neg.f64 y)) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 z)) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 #s(approx (- (* x 1/2) y) (neg.f64 y)) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 z))
(*.f64 #s(approx (- (* x 1/2) y) (neg.f64 y)) (sqrt.f64 #s(literal 2 binary64)))
#s(approx (- (* x 1/2) y) (neg.f64 y))
(neg.f64 y)
y
(sqrt.f64 #s(literal 2 binary64))
#s(literal 2 binary64)
(sqrt.f64 z)
z
#s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64))
#s(literal 1 binary64)
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) (fma.f64 (*.f64 t t) #s(literal 1/2 binary64) #s(literal 1 binary64))))
(*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64))))
(-.f64 (*.f64 x #s(literal 1/2 binary64)) y)
(*.f64 x #s(literal 1/2 binary64))
x
#s(literal 1/2 binary64)
y
(sqrt.f64 (*.f64 z #s(literal 2 binary64)))
(*.f64 z #s(literal 2 binary64))
z
#s(literal 2 binary64)
#s(approx (exp (/ (* t t) 2)) (fma.f64 (*.f64 t t) #s(literal 1/2 binary64) #s(literal 1 binary64)))
(fma.f64 (*.f64 t t) #s(literal 1/2 binary64) #s(literal 1 binary64))
(*.f64 t t)
t
#s(literal 1 binary64)
(*.f64 #s(approx (* (pow (sqrt (exp t)) t) (- (* 1/2 x) y)) (fma.f64 (*.f64 (-.f64 (*.f64 #s(literal 1/2 binary64) x) y) (fma.f64 #s(literal 1/8 binary64) (*.f64 t t) #s(literal 1/2 binary64))) (*.f64 t t) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y))) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
#s(approx (* (pow (sqrt (exp t)) t) (- (* 1/2 x) y)) (fma.f64 (*.f64 (-.f64 (*.f64 #s(literal 1/2 binary64) x) y) (fma.f64 #s(literal 1/8 binary64) (*.f64 t t) #s(literal 1/2 binary64))) (*.f64 t t) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)))
(fma.f64 (*.f64 (-.f64 (*.f64 #s(literal 1/2 binary64) x) y) (fma.f64 #s(literal 1/8 binary64) (*.f64 t t) #s(literal 1/2 binary64))) (*.f64 t t) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y))
(*.f64 (-.f64 (*.f64 #s(literal 1/2 binary64) x) y) (fma.f64 #s(literal 1/8 binary64) (*.f64 t t) #s(literal 1/2 binary64)))
(-.f64 (*.f64 #s(literal 1/2 binary64) x) y)
(*.f64 #s(literal 1/2 binary64) x)
#s(literal 1/2 binary64)
x
y
(fma.f64 #s(literal 1/8 binary64) (*.f64 t t) #s(literal 1/2 binary64))
#s(literal 1/8 binary64)
(*.f64 t t)
t
(sqrt.f64 (*.f64 #s(literal 2 binary64) z))
(*.f64 #s(literal 2 binary64) z)
#s(literal 2 binary64)
z
(*.f64 (/.f64 #s(literal 1 binary64) (/.f64 (fma.f64 x #s(literal 1/2 binary64) y) (*.f64 (fma.f64 (*.f64 x x) #s(literal 1/4 binary64) (*.f64 (neg.f64 y) y)) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(/.f64 #s(literal 1 binary64) (/.f64 (fma.f64 x #s(literal 1/2 binary64) y) (*.f64 (fma.f64 (*.f64 x x) #s(literal 1/4 binary64) (*.f64 (neg.f64 y) y)) (sqrt.f64 (*.f64 z #s(literal 2 binary64))))))
#s(literal 1 binary64)
(/.f64 (fma.f64 x #s(literal 1/2 binary64) y) (*.f64 (fma.f64 (*.f64 x x) #s(literal 1/4 binary64) (*.f64 (neg.f64 y) y)) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))))
(fma.f64 x #s(literal 1/2 binary64) y)
x
#s(literal 1/2 binary64)
y
(*.f64 (fma.f64 (*.f64 x x) #s(literal 1/4 binary64) (*.f64 (neg.f64 y) y)) (sqrt.f64 (*.f64 z #s(literal 2 binary64))))
(fma.f64 (*.f64 x x) #s(literal 1/4 binary64) (*.f64 (neg.f64 y) y))
(*.f64 x x)
#s(literal 1/4 binary64)
(*.f64 (neg.f64 y) y)
(neg.f64 y)
(sqrt.f64 (*.f64 z #s(literal 2 binary64)))
(*.f64 z #s(literal 2 binary64))
z
#s(literal 2 binary64)
#s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64))
Outputs
(*.f64 (*.f64 #s(approx (pow (sqrt (exp t)) t) (fma.f64 (fma.f64 (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
(*.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (*.f64 (neg.f64 (fma.f64 #s(literal -1/2 binary64) x y)) #s(approx (pow (sqrt (exp t)) t) (fma.f64 (fma.f64 (fma.f64 (*.f64 t t) #s(literal 1/48 binary64) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64)))))
(*.f64 #s(approx (pow (sqrt (exp t)) t) (fma.f64 (fma.f64 (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y))
(*.f64 (neg.f64 (fma.f64 #s(literal -1/2 binary64) x y)) #s(approx (pow (sqrt (exp t)) t) (fma.f64 (fma.f64 (fma.f64 (*.f64 t t) #s(literal 1/48 binary64) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))))
#s(approx (pow (sqrt (exp t)) t) (fma.f64 (fma.f64 (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64)))
#s(approx (pow (sqrt (exp t)) t) (fma.f64 (fma.f64 (fma.f64 (*.f64 t t) #s(literal 1/48 binary64) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64)))
(fma.f64 (fma.f64 (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))
(fma.f64 (fma.f64 (fma.f64 (*.f64 t t) #s(literal 1/48 binary64) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))
(fma.f64 (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64))
(fma.f64 (fma.f64 (*.f64 t t) #s(literal 1/48 binary64) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64))
(fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64))
(fma.f64 (*.f64 t t) #s(literal 1/48 binary64) #s(literal 1/8 binary64))
#s(literal 1/48 binary64)
(*.f64 t t)
t
#s(literal 1/8 binary64)
#s(literal 1/2 binary64)
#s(literal 1 binary64)
(-.f64 (*.f64 #s(literal 1/2 binary64) x) y)
(neg.f64 (fma.f64 #s(literal -1/2 binary64) x y))
(*.f64 #s(literal 1/2 binary64) x)
(*.f64 x #s(literal 1/2 binary64))
x
y
(sqrt.f64 (*.f64 #s(literal 2 binary64) z))
(sqrt.f64 (*.f64 z #s(literal 2 binary64)))
(*.f64 #s(literal 2 binary64) z)
(*.f64 z #s(literal 2 binary64))
#s(literal 2 binary64)
z
(*.f64 (*.f64 (*.f64 #s(approx (- (* x 1/2) y) (neg.f64 y)) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 z)) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 #s(approx (pow (sqrt (exp t)) t) #s(literal 1 binary64)) (*.f64 (sqrt.f64 z) (*.f64 (sqrt.f64 #s(literal 2 binary64)) #s(approx (- (* x 1/2) y) (neg.f64 y)))))
(*.f64 (*.f64 #s(approx (- (* x 1/2) y) (neg.f64 y)) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 z))
(*.f64 (sqrt.f64 z) (*.f64 (sqrt.f64 #s(literal 2 binary64)) #s(approx (- (* x 1/2) y) (neg.f64 y))))
(*.f64 #s(approx (- (* x 1/2) y) (neg.f64 y)) (sqrt.f64 #s(literal 2 binary64)))
(*.f64 (sqrt.f64 #s(literal 2 binary64)) #s(approx (- (* x 1/2) y) (neg.f64 y)))
#s(approx (- (* x 1/2) y) (neg.f64 y))
(neg.f64 y)
y
(sqrt.f64 #s(literal 2 binary64))
#s(literal 2 binary64)
(sqrt.f64 z)
z
#s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64))
#s(approx (pow (sqrt (exp t)) t) #s(literal 1 binary64))
#s(literal 1 binary64)
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) (fma.f64 (*.f64 t t) #s(literal 1/2 binary64) #s(literal 1 binary64))))
(*.f64 #s(approx (pow (sqrt (exp t)) t) (fma.f64 #s(literal 1/2 binary64) (*.f64 t t) #s(literal 1 binary64))) (*.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (neg.f64 (fma.f64 #s(literal -1/2 binary64) x y))))
(*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64))))
(*.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (neg.f64 (fma.f64 #s(literal -1/2 binary64) x y)))
(-.f64 (*.f64 x #s(literal 1/2 binary64)) y)
(neg.f64 (fma.f64 #s(literal -1/2 binary64) x y))
(*.f64 x #s(literal 1/2 binary64))
x
#s(literal 1/2 binary64)
y
(sqrt.f64 (*.f64 z #s(literal 2 binary64)))
(*.f64 z #s(literal 2 binary64))
z
#s(literal 2 binary64)
#s(approx (exp (/ (* t t) 2)) (fma.f64 (*.f64 t t) #s(literal 1/2 binary64) #s(literal 1 binary64)))
#s(approx (pow (sqrt (exp t)) t) (fma.f64 #s(literal 1/2 binary64) (*.f64 t t) #s(literal 1 binary64)))
(fma.f64 (*.f64 t t) #s(literal 1/2 binary64) #s(literal 1 binary64))
(fma.f64 #s(literal 1/2 binary64) (*.f64 t t) #s(literal 1 binary64))
(*.f64 t t)
t
#s(literal 1 binary64)
(*.f64 #s(approx (* (pow (sqrt (exp t)) t) (- (* 1/2 x) y)) (fma.f64 (*.f64 (-.f64 (*.f64 #s(literal 1/2 binary64) x) y) (fma.f64 #s(literal 1/8 binary64) (*.f64 t t) #s(literal 1/2 binary64))) (*.f64 t t) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y))) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
(*.f64 #s(approx (* (pow (sqrt (exp t)) t) (- (* 1/2 x) y)) (*.f64 (fma.f64 (*.f64 (fma.f64 #s(literal 1/8 binary64) (*.f64 t t) #s(literal 1/2 binary64)) t) t #s(literal 1 binary64)) (neg.f64 (fma.f64 #s(literal -1/2 binary64) x y)))) (sqrt.f64 (*.f64 z #s(literal 2 binary64))))
#s(approx (* (pow (sqrt (exp t)) t) (- (* 1/2 x) y)) (fma.f64 (*.f64 (-.f64 (*.f64 #s(literal 1/2 binary64) x) y) (fma.f64 #s(literal 1/8 binary64) (*.f64 t t) #s(literal 1/2 binary64))) (*.f64 t t) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)))
#s(approx (* (pow (sqrt (exp t)) t) (- (* 1/2 x) y)) (*.f64 (fma.f64 (*.f64 (fma.f64 #s(literal 1/8 binary64) (*.f64 t t) #s(literal 1/2 binary64)) t) t #s(literal 1 binary64)) (neg.f64 (fma.f64 #s(literal -1/2 binary64) x y))))
(fma.f64 (*.f64 (-.f64 (*.f64 #s(literal 1/2 binary64) x) y) (fma.f64 #s(literal 1/8 binary64) (*.f64 t t) #s(literal 1/2 binary64))) (*.f64 t t) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y))
(*.f64 (fma.f64 (*.f64 (fma.f64 #s(literal 1/8 binary64) (*.f64 t t) #s(literal 1/2 binary64)) t) t #s(literal 1 binary64)) (neg.f64 (fma.f64 #s(literal -1/2 binary64) x y)))
(*.f64 (-.f64 (*.f64 #s(literal 1/2 binary64) x) y) (fma.f64 #s(literal 1/8 binary64) (*.f64 t t) #s(literal 1/2 binary64)))
(*.f64 (fma.f64 #s(literal 1/8 binary64) (*.f64 t t) #s(literal 1/2 binary64)) (neg.f64 (fma.f64 #s(literal -1/2 binary64) x y)))
(-.f64 (*.f64 #s(literal 1/2 binary64) x) y)
(neg.f64 (fma.f64 #s(literal -1/2 binary64) x y))
(*.f64 #s(literal 1/2 binary64) x)
(*.f64 x #s(literal 1/2 binary64))
#s(literal 1/2 binary64)
x
y
(fma.f64 #s(literal 1/8 binary64) (*.f64 t t) #s(literal 1/2 binary64))
#s(literal 1/8 binary64)
(*.f64 t t)
t
(sqrt.f64 (*.f64 #s(literal 2 binary64) z))
(sqrt.f64 (*.f64 z #s(literal 2 binary64)))
(*.f64 #s(literal 2 binary64) z)
(*.f64 z #s(literal 2 binary64))
#s(literal 2 binary64)
z
(*.f64 (/.f64 #s(literal 1 binary64) (/.f64 (fma.f64 x #s(literal 1/2 binary64) y) (*.f64 (fma.f64 (*.f64 x x) #s(literal 1/4 binary64) (*.f64 (neg.f64 y) y)) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (/.f64 (*.f64 (fma.f64 #s(literal 1/4 binary64) (*.f64 x x) (*.f64 (neg.f64 y) y)) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) (fma.f64 x #s(literal 1/2 binary64) y)) #s(approx (pow (sqrt (exp t)) t) #s(literal 1 binary64)))
(/.f64 #s(literal 1 binary64) (/.f64 (fma.f64 x #s(literal 1/2 binary64) y) (*.f64 (fma.f64 (*.f64 x x) #s(literal 1/4 binary64) (*.f64 (neg.f64 y) y)) (sqrt.f64 (*.f64 z #s(literal 2 binary64))))))
(/.f64 (*.f64 (fma.f64 #s(literal 1/4 binary64) (*.f64 x x) (*.f64 (neg.f64 y) y)) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) (fma.f64 x #s(literal 1/2 binary64) y))
#s(literal 1 binary64)
(/.f64 (fma.f64 x #s(literal 1/2 binary64) y) (*.f64 (fma.f64 (*.f64 x x) #s(literal 1/4 binary64) (*.f64 (neg.f64 y) y)) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))))
(/.f64 (fma.f64 x #s(literal 1/2 binary64) y) (*.f64 (fma.f64 #s(literal 1/4 binary64) (*.f64 x x) (*.f64 (neg.f64 y) y)) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))))
(fma.f64 x #s(literal 1/2 binary64) y)
x
#s(literal 1/2 binary64)
y
(*.f64 (fma.f64 (*.f64 x x) #s(literal 1/4 binary64) (*.f64 (neg.f64 y) y)) (sqrt.f64 (*.f64 z #s(literal 2 binary64))))
(*.f64 (fma.f64 #s(literal 1/4 binary64) (*.f64 x x) (*.f64 (neg.f64 y) y)) (sqrt.f64 (*.f64 z #s(literal 2 binary64))))
(fma.f64 (*.f64 x x) #s(literal 1/4 binary64) (*.f64 (neg.f64 y) y))
(fma.f64 #s(literal 1/4 binary64) (*.f64 x x) (*.f64 (neg.f64 y) y))
(*.f64 x x)
#s(literal 1/4 binary64)
(*.f64 (neg.f64 y) y)
(neg.f64 y)
(sqrt.f64 (*.f64 z #s(literal 2 binary64)))
(*.f64 z #s(literal 2 binary64))
z
#s(literal 2 binary64)
#s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64))
#s(approx (pow (sqrt (exp t)) t) #s(literal 1 binary64))

localize163.0ms (1.4%)

Memory
16.2MiB live, 204.7MiB allocated
Localize:

Found 20 expressions of interest:

NewMetricScoreProgram
accuracy1.7483528179073728
(*.f64 (fma.f64 (*.f64 x x) #s(literal 1/4 binary64) (*.f64 (neg.f64 y) y)) (sqrt.f64 (*.f64 z #s(literal 2 binary64))))
accuracy4.7929439799624705
(fma.f64 (*.f64 x x) #s(literal 1/4 binary64) (*.f64 (neg.f64 y) y))
accuracy21.458014438695137
(/.f64 (fma.f64 x #s(literal 1/2 binary64) y) (*.f64 (fma.f64 (*.f64 x x) #s(literal 1/4 binary64) (*.f64 (neg.f64 y) y)) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))))
accuracy32.29958965994895
#s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64))
accuracy0.10546875
(*.f64 #s(approx (* (pow (sqrt (exp t)) t) (- (* 1/2 x) y)) (fma.f64 (*.f64 (-.f64 (*.f64 #s(literal 1/2 binary64) x) y) (fma.f64 #s(literal 1/8 binary64) (*.f64 t t) #s(literal 1/2 binary64))) (*.f64 t t) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y))) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
accuracy0.2073613818464481
(fma.f64 #s(literal 1/8 binary64) (*.f64 t t) #s(literal 1/2 binary64))
accuracy0.9760726068519835
(*.f64 (-.f64 (*.f64 #s(literal 1/2 binary64) x) y) (fma.f64 #s(literal 1/8 binary64) (*.f64 t t) #s(literal 1/2 binary64)))
accuracy4.9720892304503455
#s(approx (* (pow (sqrt (exp t)) t) (- (* 1/2 x) y)) (fma.f64 (*.f64 (-.f64 (*.f64 #s(literal 1/2 binary64) x) y) (fma.f64 #s(literal 1/8 binary64) (*.f64 t t) #s(literal 1/2 binary64))) (*.f64 t t) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)))
accuracy0.1912071356236791
(fma.f64 (*.f64 t t) #s(literal 1/2 binary64) #s(literal 1 binary64))
accuracy0.234375
(*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64))))
accuracy0.5039021216604116
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) (fma.f64 (*.f64 t t) #s(literal 1/2 binary64) #s(literal 1 binary64))))
accuracy15.732016844783054
#s(approx (exp (/ (* t t) 2)) (fma.f64 (*.f64 t t) #s(literal 1/2 binary64) #s(literal 1 binary64)))
accuracy0.421875
(*.f64 #s(approx (- (* x 1/2) y) (neg.f64 y)) (sqrt.f64 #s(literal 2 binary64)))
accuracy0.5039021216604116
(*.f64 (*.f64 (*.f64 #s(approx (- (* x 1/2) y) (neg.f64 y)) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 z)) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
accuracy32.29958965994895
#s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64))
accuracy33.327314287099036
#s(approx (- (* x 1/2) y) (neg.f64 y))
accuracy0.041347509768442016
(fma.f64 (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64))
accuracy0.10546875
(*.f64 (*.f64 #s(approx (pow (sqrt (exp t)) t) (fma.f64 (fma.f64 (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
accuracy0.3212775335601479
(fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64))
accuracy4.485125503656907
#s(approx (pow (sqrt (exp t)) t) (fma.f64 (fma.f64 (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64)))
Samples
116.0ms256×0valid
Compiler

Compiled 1 009 to 121 computations (88% saved)

Precisions
Click to see histograms. Total time spent on operations: 77.0ms
ival-mult: 36.0ms (46.9% of total)
ival-add: 9.0ms (11.7% of total)
ival-sqrt: 9.0ms (11.7% of total)
ival-pow: 6.0ms (7.8% of total)
ival-div: 5.0ms (6.5% of total)
ival-exp: 4.0ms (5.2% of total)
const: 4.0ms (5.2% of total)
ival-sub: 3.0ms (3.9% of total)
exact: 1.0ms (1.3% of total)
ival-neg: 1.0ms (1.3% of total)
ival-assert: 0.0ms (0% of total)
ival-true: 0.0ms (0% of total)

series98.0ms (0.8%)

Memory
23.5MiB live, 186.5MiB allocated
Counts
28 → 155
Calls
Call 1
Inputs
(*.f64 (*.f64 #s(approx (pow (sqrt (exp t)) t) (fma.f64 (fma.f64 (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
(*.f64 #s(approx (pow (sqrt (exp t)) t) (fma.f64 (fma.f64 (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y))
#s(approx (pow (sqrt (exp t)) t) (fma.f64 (fma.f64 (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64)))
(fma.f64 (fma.f64 (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))
(*.f64 (*.f64 (*.f64 #s(approx (- (* x 1/2) y) (neg.f64 y)) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 z)) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 #s(approx (- (* x 1/2) y) (neg.f64 y)) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 z))
(*.f64 #s(approx (- (* x 1/2) y) (neg.f64 y)) (sqrt.f64 #s(literal 2 binary64)))
#s(approx (- (* x 1/2) y) (neg.f64 y))
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) (fma.f64 (*.f64 t t) #s(literal 1/2 binary64) #s(literal 1 binary64))))
(*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64))))
(-.f64 (*.f64 x #s(literal 1/2 binary64)) y)
(*.f64 x #s(literal 1/2 binary64))
(fma.f64 (*.f64 (-.f64 (*.f64 #s(literal 1/2 binary64) x) y) (fma.f64 #s(literal 1/8 binary64) (*.f64 t t) #s(literal 1/2 binary64))) (*.f64 t t) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y))
(*.f64 #s(approx (* (pow (sqrt (exp t)) t) (- (* 1/2 x) y)) (fma.f64 (*.f64 (-.f64 (*.f64 #s(literal 1/2 binary64) x) y) (fma.f64 #s(literal 1/8 binary64) (*.f64 t t) #s(literal 1/2 binary64))) (*.f64 t t) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y))) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
#s(approx (* (pow (sqrt (exp t)) t) (- (* 1/2 x) y)) (fma.f64 (*.f64 (-.f64 (*.f64 #s(literal 1/2 binary64) x) y) (fma.f64 #s(literal 1/8 binary64) (*.f64 t t) #s(literal 1/2 binary64))) (*.f64 t t) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)))
(*.f64 (-.f64 (*.f64 #s(literal 1/2 binary64) x) y) (fma.f64 #s(literal 1/8 binary64) (*.f64 t t) #s(literal 1/2 binary64)))
(/.f64 #s(literal 1 binary64) (/.f64 (fma.f64 x #s(literal 1/2 binary64) y) (*.f64 (fma.f64 (*.f64 x x) #s(literal 1/4 binary64) (*.f64 (neg.f64 y) y)) (sqrt.f64 (*.f64 z #s(literal 2 binary64))))))
(*.f64 (/.f64 #s(literal 1 binary64) (/.f64 (fma.f64 x #s(literal 1/2 binary64) y) (*.f64 (fma.f64 (*.f64 x x) #s(literal 1/4 binary64) (*.f64 (neg.f64 y) y)) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(/.f64 (fma.f64 x #s(literal 1/2 binary64) y) (*.f64 (fma.f64 (*.f64 x x) #s(literal 1/4 binary64) (*.f64 (neg.f64 y) y)) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))))
(fma.f64 x #s(literal 1/2 binary64) y)
(fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64))
(fma.f64 (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64))
#s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64))
#s(approx (exp (/ (* t t) 2)) (fma.f64 (*.f64 t t) #s(literal 1/2 binary64) #s(literal 1 binary64)))
(fma.f64 (*.f64 t t) #s(literal 1/2 binary64) #s(literal 1 binary64))
(fma.f64 #s(literal 1/8 binary64) (*.f64 t t) #s(literal 1/2 binary64))
(fma.f64 (*.f64 x x) #s(literal 1/4 binary64) (*.f64 (neg.f64 y) y))
(*.f64 (fma.f64 (*.f64 x x) #s(literal 1/4 binary64) (*.f64 (neg.f64 y) y)) (sqrt.f64 (*.f64 z #s(literal 2 binary64))))
Outputs
(* -1 (* (* y (* (sqrt 2) (pow (sqrt (exp t)) t))) (sqrt z)))
(+ (* -1 (* (* y (* (sqrt 2) (pow (sqrt (exp t)) t))) (sqrt z))) (* 1/2 (* (* x (* (sqrt 2) (pow (sqrt (exp t)) t))) (sqrt z))))
(* -1 (* y (pow (sqrt (exp t)) t)))
(+ (* -1 (* y (pow (sqrt (exp t)) t))) (* 1/2 (* x (pow (sqrt (exp t)) t))))
(* -1 (* (* y (* (exp (* 1/2 (pow t 2))) (sqrt 2))) (sqrt z)))
(+ (* -1 (* (* y (* (exp (* 1/2 (pow t 2))) (sqrt 2))) (sqrt z))) (* 1/2 (* (* x (* (exp (* 1/2 (pow t 2))) (sqrt 2))) (sqrt z))))
(* -1 (* (* y (sqrt 2)) (sqrt z)))
(+ (* -1 (* (* y (sqrt 2)) (sqrt z))) (* 1/2 (* (* x (sqrt 2)) (sqrt z))))
(* -1 (* y (sqrt 2)))
(+ (* -1 (* y (sqrt 2))) (* 1/2 (* x (sqrt 2))))
(* -1 y)
(- (* 1/2 x) y)
(* 1/2 x)
(- (* -1 (* (pow t 2) (* y (+ 1/2 (* 1/8 (pow t 2)))))) y)
(- (+ (* -1 (* (pow t 2) (* y (+ 1/2 (* 1/8 (pow t 2)))))) (* x (+ 1/2 (* 1/2 (* (pow t 2) (+ 1/2 (* 1/8 (pow t 2)))))))) y)
(* -1 (* y (+ 1/2 (* 1/8 (pow t 2)))))
(+ (* -1 (* y (+ 1/2 (* 1/8 (pow t 2))))) (* 1/2 (* x (+ 1/2 (* 1/8 (pow t 2))))))
(* -1 (* (/ 1 (* y (sqrt 2))) (sqrt (/ 1 z))))
(+ (* -1 (* (/ 1 (* y (sqrt 2))) (sqrt (/ 1 z)))) (* -1/2 (* (/ x (* (pow y 2) (sqrt 2))) (sqrt (/ 1 z)))))
(+ (* -1 (* (/ 1 (* y (sqrt 2))) (sqrt (/ 1 z)))) (* x (+ (* -1/2 (* (/ 1 (* (pow y 2) (sqrt 2))) (sqrt (/ 1 z)))) (* -1/4 (* (/ x (* (pow y 3) (sqrt 2))) (sqrt (/ 1 z)))))))
(+ (* -1 (* (/ 1 (* y (sqrt 2))) (sqrt (/ 1 z)))) (* x (+ (* -1/2 (* (/ 1 (* (pow y 2) (sqrt 2))) (sqrt (/ 1 z)))) (* x (+ (* -1/4 (* (/ 1 (* (pow y 3) (sqrt 2))) (sqrt (/ 1 z)))) (* -1/8 (* (/ x (* (pow y 4) (sqrt 2))) (sqrt (/ 1 z)))))))))
y
(+ y (* 1/2 x))
(* -1 (pow y 2))
(+ (* -1 (pow y 2)) (* 1/4 (pow x 2)))
(* -1 (* (* (pow y 2) (sqrt 2)) (sqrt z)))
(+ (* -1 (* (* (pow y 2) (sqrt 2)) (sqrt z))) (* 1/4 (* (* (pow x 2) (sqrt 2)) (sqrt z))))
(* 1/2 (* (* x (* (sqrt 2) (pow (sqrt (exp t)) t))) (sqrt z)))
(* x (+ (* -1 (* (/ (* y (* (sqrt 2) (pow (sqrt (exp t)) t))) x) (sqrt z))) (* 1/2 (* (sqrt z) (* (sqrt 2) (pow (sqrt (exp t)) t))))))
(* 1/2 (* x (pow (sqrt (exp t)) t)))
(* x (+ (* -1 (/ (* y (pow (sqrt (exp t)) t)) x)) (* 1/2 (pow (sqrt (exp t)) t))))
(* 1/2 (* (* x (* (exp (* 1/2 (pow t 2))) (sqrt 2))) (sqrt z)))
(* x (+ (* -1 (* (/ (* y (* (exp (* 1/2 (pow t 2))) (sqrt 2))) x) (sqrt z))) (* 1/2 (* (sqrt z) (* (exp (* 1/2 (pow t 2))) (sqrt 2))))))
(* 1/2 (* (* x (sqrt 2)) (sqrt z)))
(* x (+ (* -1 (* (/ (* y (sqrt 2)) x) (sqrt z))) (* 1/2 (* (sqrt z) (sqrt 2)))))
(* 1/2 (* x (sqrt 2)))
(* x (+ (* -1 (/ (* y (sqrt 2)) x)) (* 1/2 (sqrt 2))))
(* x (+ 1/2 (* -1 (/ y x))))
(* x (+ 1/2 (* 1/2 (* (pow t 2) (+ 1/2 (* 1/8 (pow t 2)))))))
(* x (- (+ 1/2 (+ (* -1 (/ (* (pow t 2) (* y (+ 1/2 (* 1/8 (pow t 2))))) x)) (* 1/2 (* (pow t 2) (+ 1/2 (* 1/8 (pow t 2))))))) (/ y x)))
(* 1/2 (* x (+ 1/2 (* 1/8 (pow t 2)))))
(* x (+ (* -1 (/ (* y (+ 1/2 (* 1/8 (pow t 2)))) x)) (* 1/2 (+ 1/2 (* 1/8 (pow t 2))))))
(* 2 (* (/ 1 (* x (sqrt 2))) (sqrt (/ 1 z))))
(/ (+ (* 2 (* (sqrt (/ 1 z)) (/ 1 (sqrt 2)))) (* 4 (* (/ y (* x (sqrt 2))) (sqrt (/ 1 z))))) x)
(/ (+ (* 2 (* (sqrt (/ 1 z)) (/ 1 (sqrt 2)))) (+ (* 4 (* (/ y (* x (sqrt 2))) (sqrt (/ 1 z)))) (* 8 (* (/ (pow y 2) (* (pow x 2) (sqrt 2))) (sqrt (/ 1 z)))))) x)
(/ (+ (* 2 (* (sqrt (/ 1 z)) (/ 1 (sqrt 2)))) (+ (* 4 (* (/ y (* x (sqrt 2))) (sqrt (/ 1 z)))) (+ (* 8 (* (/ (pow y 2) (* (pow x 2) (sqrt 2))) (sqrt (/ 1 z)))) (* 16 (* (/ (pow y 3) (* (pow x 3) (sqrt 2))) (sqrt (/ 1 z))))))) x)
(* x (+ 1/2 (/ y x)))
(* 1/4 (pow x 2))
(* (pow x 2) (+ 1/4 (* -1 (/ (pow y 2) (pow x 2)))))
(* 1/4 (* (* (pow x 2) (sqrt 2)) (sqrt z)))
(* (pow x 2) (+ (* -1 (* (/ (* (pow y 2) (sqrt 2)) (pow x 2)) (sqrt z))) (* 1/4 (* (sqrt z) (sqrt 2)))))
(* -1 (* x (+ (* -1/2 (* (sqrt z) (* (sqrt 2) (pow (sqrt (exp t)) t)))) (* (/ (* y (* (sqrt 2) (pow (sqrt (exp t)) t))) x) (sqrt z)))))
(* -1 (* x (+ (* -1/2 (pow (sqrt (exp t)) t)) (/ (* y (pow (sqrt (exp t)) t)) x))))
(* -1 (* x (+ (* -1/2 (* (sqrt z) (* (exp (* 1/2 (pow t 2))) (sqrt 2)))) (* (/ (* y (* (exp (* 1/2 (pow t 2))) (sqrt 2))) x) (sqrt z)))))
(* -1 (* x (+ (* -1/2 (* (sqrt z) (sqrt 2))) (* (/ (* y (sqrt 2)) x) (sqrt z)))))
(* -1 (* x (+ (* -1/2 (sqrt 2)) (/ (* y (sqrt 2)) x))))
(* -1 (* x (- (/ y x) 1/2)))
(* -1 (* x (- (* -1/2 (* (pow t 2) (+ 1/2 (* 1/8 (pow t 2))))) 1/2)))
(* -1 (* x (- (+ (* -1 (/ (- (* -1 (* (pow t 2) (* y (+ 1/2 (* 1/8 (pow t 2)))))) y) x)) (* -1/2 (* (pow t 2) (+ 1/2 (* 1/8 (pow t 2)))))) 1/2)))
(* -1 (* x (+ (* -1/2 (+ 1/2 (* 1/8 (pow t 2)))) (/ (* y (+ 1/2 (* 1/8 (pow t 2)))) x))))
(* -1 (/ (+ (* -4 (* (/ y (* x (sqrt 2))) (sqrt (/ 1 z)))) (* -2 (* (sqrt (/ 1 z)) (/ 1 (sqrt 2))))) x))
(* -1 (/ (+ (* -2 (* (sqrt (/ 1 z)) (/ 1 (sqrt 2)))) (* -1 (/ (+ (* 4 (* (/ y (sqrt 2)) (sqrt (/ 1 z)))) (* 8 (* (/ (pow y 2) (* x (sqrt 2))) (sqrt (/ 1 z))))) x))) x))
(* -1 (/ (+ (* -2 (* (sqrt (/ 1 z)) (/ 1 (sqrt 2)))) (* -1 (/ (+ (* -1 (/ (+ (* -16 (* (/ (pow y 3) (* x (sqrt 2))) (sqrt (/ 1 z)))) (* -8 (* (/ (pow y 2) (sqrt 2)) (sqrt (/ 1 z))))) x)) (* 4 (* (/ y (sqrt 2)) (sqrt (/ 1 z))))) x))) x))
(* -1 (* x (- (* -1 (/ y x)) 1/2)))
(+ (* -1 y) (* 1/2 x))
(+ (* 1/2 x) (* 1/2 (* (pow t 2) (* x (+ 1/2 (* 1/8 (pow t 2)))))))
(+ (* 1/2 x) (+ (* 1/2 (* (pow t 2) (* x (+ 1/2 (* 1/8 (pow t 2)))))) (* y (- (* -1 (* (pow t 2) (+ 1/2 (* 1/8 (pow t 2))))) 1))))
(+ (* 2 (* (/ 1 (* x (sqrt 2))) (sqrt (/ 1 z)))) (* 4 (* (/ y (* (pow x 2) (sqrt 2))) (sqrt (/ 1 z)))))
(+ (* 2 (* (/ 1 (* x (sqrt 2))) (sqrt (/ 1 z)))) (* y (+ (* 4 (* (/ 1 (* (pow x 2) (sqrt 2))) (sqrt (/ 1 z)))) (* 8 (* (/ y (* (pow x 3) (sqrt 2))) (sqrt (/ 1 z)))))))
(+ (* 2 (* (/ 1 (* x (sqrt 2))) (sqrt (/ 1 z)))) (* y (+ (* 4 (* (/ 1 (* (pow x 2) (sqrt 2))) (sqrt (/ 1 z)))) (* y (+ (* 8 (* (/ 1 (* (pow x 3) (sqrt 2))) (sqrt (/ 1 z)))) (* 16 (* (/ y (* (pow x 4) (sqrt 2))) (sqrt (/ 1 z)))))))))
(* y (+ (* -1 (* (sqrt z) (* (sqrt 2) (pow (sqrt (exp t)) t)))) (* 1/2 (* (/ (* x (* (sqrt 2) (pow (sqrt (exp t)) t))) y) (sqrt z)))))
(* y (+ (* -1 (pow (sqrt (exp t)) t)) (* 1/2 (/ (* x (pow (sqrt (exp t)) t)) y))))
(* y (+ (* -1 (* (sqrt z) (* (exp (* 1/2 (pow t 2))) (sqrt 2)))) (* 1/2 (* (/ (* x (* (exp (* 1/2 (pow t 2))) (sqrt 2))) y) (sqrt z)))))
(* y (+ (* -1 (* (sqrt z) (sqrt 2))) (* 1/2 (* (/ (* x (sqrt 2)) y) (sqrt z)))))
(* y (+ (* -1 (sqrt 2)) (* 1/2 (/ (* x (sqrt 2)) y))))
(* y (- (* 1/2 (/ x y)) 1))
(* y (- (* -1 (* (pow t 2) (+ 1/2 (* 1/8 (pow t 2))))) 1))
(* y (- (+ (* -1 (* (pow t 2) (+ 1/2 (* 1/8 (pow t 2))))) (+ (* 1/2 (/ x y)) (* 1/2 (/ (* (pow t 2) (* x (+ 1/2 (* 1/8 (pow t 2))))) y)))) 1))
(* y (+ (* -1 (+ 1/2 (* 1/8 (pow t 2)))) (* 1/2 (/ (* x (+ 1/2 (* 1/8 (pow t 2)))) y))))
(/ (+ (* -1 (* (sqrt (/ 1 z)) (/ 1 (sqrt 2)))) (* -1/2 (* (/ x (* y (sqrt 2))) (sqrt (/ 1 z))))) y)
(/ (+ (* -1 (* (sqrt (/ 1 z)) (/ 1 (sqrt 2)))) (+ (* -1/2 (* (/ x (* y (sqrt 2))) (sqrt (/ 1 z)))) (* -1/4 (* (/ (pow x 2) (* (pow y 2) (sqrt 2))) (sqrt (/ 1 z)))))) y)
(/ (+ (* -1 (* (sqrt (/ 1 z)) (/ 1 (sqrt 2)))) (+ (* -1/2 (* (/ x (* y (sqrt 2))) (sqrt (/ 1 z)))) (+ (* -1/4 (* (/ (pow x 2) (* (pow y 2) (sqrt 2))) (sqrt (/ 1 z)))) (* -1/8 (* (/ (pow x 3) (* (pow y 3) (sqrt 2))) (sqrt (/ 1 z))))))) y)
(* y (+ 1 (* 1/2 (/ x y))))
(* (pow y 2) (- (* 1/4 (/ (pow x 2) (pow y 2))) 1))
(* (pow y 2) (+ (* -1 (* (sqrt z) (sqrt 2))) (* 1/4 (* (/ (* (pow x 2) (sqrt 2)) (pow y 2)) (sqrt z)))))
(* -1 (* y (+ (* -1/2 (* (/ (* x (* (sqrt 2) (pow (sqrt (exp t)) t))) y) (sqrt z))) (* (sqrt z) (* (sqrt 2) (pow (sqrt (exp t)) t))))))
(* -1 (* y (+ (* -1/2 (/ (* x (pow (sqrt (exp t)) t)) y)) (pow (sqrt (exp t)) t))))
(* -1 (* y (+ (* -1/2 (* (/ (* x (* (exp (* 1/2 (pow t 2))) (sqrt 2))) y) (sqrt z))) (* (sqrt z) (* (exp (* 1/2 (pow t 2))) (sqrt 2))))))
(* -1 (* y (+ (* -1/2 (* (/ (* x (sqrt 2)) y) (sqrt z))) (* (sqrt z) (sqrt 2)))))
(* -1 (* y (+ (sqrt 2) (* -1/2 (/ (* x (sqrt 2)) y)))))
(* -1 (* y (+ 1 (* -1/2 (/ x y)))))
(* -1 (* y (+ 1 (* (pow t 2) (+ 1/2 (* 1/8 (pow t 2)))))))
(* -1 (* y (+ 1 (+ (* -1 (/ (+ (* 1/2 x) (* 1/2 (* (pow t 2) (* x (+ 1/2 (* 1/8 (pow t 2))))))) y)) (* (pow t 2) (+ 1/2 (* 1/8 (pow t 2))))))))
(* -1 (* y (+ 1/2 (+ (* -1/2 (/ (* x (+ 1/2 (* 1/8 (pow t 2)))) y)) (* 1/8 (pow t 2))))))
(* -1 (/ (+ (* 1/2 (* (/ x (* y (sqrt 2))) (sqrt (/ 1 z)))) (* (sqrt (/ 1 z)) (/ 1 (sqrt 2)))) y))
(* -1 (/ (+ (* -1 (/ (+ (* -1/2 (* (/ x (sqrt 2)) (sqrt (/ 1 z)))) (* -1/4 (* (/ (pow x 2) (* y (sqrt 2))) (sqrt (/ 1 z))))) y)) (* (sqrt (/ 1 z)) (/ 1 (sqrt 2)))) y))
(* -1 (/ (+ (* -1 (/ (+ (* -1 (/ (+ (* 1/8 (* (/ (pow x 3) (* y (sqrt 2))) (sqrt (/ 1 z)))) (* 1/4 (* (/ (pow x 2) (sqrt 2)) (sqrt (/ 1 z))))) y)) (* -1/2 (* (/ x (sqrt 2)) (sqrt (/ 1 z))))) y)) (* (sqrt (/ 1 z)) (/ 1 (sqrt 2)))) y))
(* -1 (* y (- (* -1/2 (/ x y)) 1)))
(* (sqrt z) (* (sqrt 2) (* (- (* 1/2 x) y) (pow (sqrt (exp t)) t))))
(* (sqrt z) (* (exp (* 1/2 (pow t 2))) (* (sqrt 2) (- (* 1/2 x) y))))
(* (sqrt z) (* (sqrt 2) (- (* 1/2 x) y)))
(* (sqrt z) (/ (* (sqrt 2) (+ (* -1 (pow y 2)) (* 1/4 (pow x 2)))) (+ y (* 1/2 x))))
(* (sqrt z) (/ (* (exp (* 1/2 (pow t 2))) (* (sqrt 2) (+ (* -1 (pow y 2)) (* 1/4 (pow x 2))))) (+ y (* 1/2 x))))
(* (sqrt (/ 1 z)) (/ (+ y (* 1/2 x)) (* (sqrt 2) (+ (* -1 (pow y 2)) (* 1/4 (pow x 2))))))
(* (sqrt z) (* (sqrt 2) (+ (* -1 (pow y 2)) (* 1/4 (pow x 2)))))
(* -1 (* (sqrt z) (* (sqrt -2) (* (sqrt -1) (* (- (* 1/2 x) y) (pow (sqrt (exp t)) t))))))
(* -1 (* (sqrt z) (* (exp (* 1/2 (pow t 2))) (* (pow (sqrt -1) 2) (* (sqrt 2) (- (* 1/2 x) y))))))
(* -1 (* (sqrt z) (* (pow (sqrt -1) 2) (* (sqrt 2) (- (* 1/2 x) y)))))
(* -1 (* (sqrt z) (* (exp (* 1/2 (pow t 2))) (* (sqrt -2) (* (sqrt -1) (- (* 1/2 x) y))))))
(* -1 (* (sqrt z) (* (sqrt -2) (* (sqrt -1) (- (* 1/2 x) y)))))
(* -1 (* (sqrt z) (/ (* (sqrt -2) (* (sqrt -1) (+ (* -1 (pow y 2)) (* 1/4 (pow x 2))))) (+ y (* 1/2 x)))))
(* -1 (* (sqrt z) (/ (* (exp (* 1/2 (pow t 2))) (* (sqrt -2) (* (sqrt -1) (+ (* -1 (pow y 2)) (* 1/4 (pow x 2)))))) (+ y (* 1/2 x)))))
(* (sqrt (/ 1 z)) (/ (* (sqrt -1) (+ y (* 1/2 x))) (* (sqrt -2) (+ (* -1 (pow y 2)) (* 1/4 (pow x 2))))))
(* -1 (* (sqrt z) (* (sqrt -2) (* (sqrt -1) (+ (* -1 (pow y 2)) (* 1/4 (pow x 2)))))))
(+ (* 1/2 (* (* (pow t 2) (* (sqrt 2) (- (* 1/2 x) y))) (sqrt z))) (* (sqrt z) (* (sqrt 2) (- (* 1/2 x) y))))
(+ (* (sqrt z) (* (sqrt 2) (- (* 1/2 x) y))) (* (pow t 2) (+ (* 1/8 (* (* (pow t 2) (* (sqrt 2) (- (* 1/2 x) y))) (sqrt z))) (* 1/2 (* (sqrt z) (* (sqrt 2) (- (* 1/2 x) y)))))))
(+ (* (sqrt z) (* (sqrt 2) (- (* 1/2 x) y))) (* (pow t 2) (+ (* 1/2 (* (sqrt z) (* (sqrt 2) (- (* 1/2 x) y)))) (* (pow t 2) (+ (* 1/48 (* (* (pow t 2) (* (sqrt 2) (- (* 1/2 x) y))) (sqrt z))) (* 1/8 (* (sqrt z) (* (sqrt 2) (- (* 1/2 x) y)))))))))
(- (+ (* 1/2 x) (* 1/2 (* (pow t 2) (- (* 1/2 x) y)))) y)
(- (+ (* 1/2 x) (* (pow t 2) (+ (* 1/8 (* (pow t 2) (- (* 1/2 x) y))) (* 1/2 (- (* 1/2 x) y))))) y)
(- (+ (* 1/2 x) (* (pow t 2) (+ (* 1/2 (- (* 1/2 x) y)) (* (pow t 2) (+ (* 1/48 (* (pow t 2) (- (* 1/2 x) y))) (* 1/8 (- (* 1/2 x) y))))))) y)
1
(+ 1 (* 1/2 (pow t 2)))
(+ 1 (* (pow t 2) (+ 1/2 (* 1/8 (pow t 2)))))
(+ 1 (* (pow t 2) (+ 1/2 (* (pow t 2) (+ 1/8 (* 1/48 (pow t 2)))))))
(* 1/2 (- (* 1/2 x) y))
(+ (* 1/8 (* (pow t 2) (- (* 1/2 x) y))) (* 1/2 (- (* 1/2 x) y)))
(+ (* 1/2 (* (/ (* (pow t 2) (* (sqrt 2) (+ (* -1 (pow y 2)) (* 1/4 (pow x 2))))) (+ y (* 1/2 x))) (sqrt z))) (* (sqrt z) (/ (* (sqrt 2) (+ (* -1 (pow y 2)) (* 1/4 (pow x 2)))) (+ y (* 1/2 x)))))
(+ (* (sqrt z) (/ (* (sqrt 2) (+ (* -1 (pow y 2)) (* 1/4 (pow x 2)))) (+ y (* 1/2 x)))) (* (pow t 2) (+ (* 1/8 (* (/ (* (pow t 2) (* (sqrt 2) (+ (* -1 (pow y 2)) (* 1/4 (pow x 2))))) (+ y (* 1/2 x))) (sqrt z))) (* 1/2 (* (sqrt z) (/ (* (sqrt 2) (+ (* -1 (pow y 2)) (* 1/4 (pow x 2)))) (+ y (* 1/2 x))))))))
(+ (* (sqrt z) (/ (* (sqrt 2) (+ (* -1 (pow y 2)) (* 1/4 (pow x 2)))) (+ y (* 1/2 x)))) (* (pow t 2) (+ (* 1/2 (* (sqrt z) (/ (* (sqrt 2) (+ (* -1 (pow y 2)) (* 1/4 (pow x 2)))) (+ y (* 1/2 x))))) (* (pow t 2) (+ (* 1/48 (* (/ (* (pow t 2) (* (sqrt 2) (+ (* -1 (pow y 2)) (* 1/4 (pow x 2))))) (+ y (* 1/2 x))) (sqrt z))) (* 1/8 (* (sqrt z) (/ (* (sqrt 2) (+ (* -1 (pow y 2)) (* 1/4 (pow x 2)))) (+ y (* 1/2 x))))))))))
1/8
(+ 1/8 (* 1/48 (pow t 2)))
1/2
(+ 1/2 (* 1/8 (pow t 2)))
(+ 1/2 (* (pow t 2) (+ 1/8 (* 1/48 (pow t 2)))))
(* (- (* 1/2 x) y) (pow (sqrt (exp t)) t))
(pow (sqrt (exp t)) t)
(* 1/48 (pow t 6))
(* (pow t 6) (+ 1/48 (* 1/8 (/ 1 (pow t 2)))))
(* (pow t 6) (+ 1/48 (+ (/ 1/2 (pow t 4)) (* 1/8 (/ 1 (pow t 2))))))
(* (pow t 6) (+ 1/48 (+ (/ 1/2 (pow t 4)) (+ (* 1/8 (/ 1 (pow t 2))) (/ 1 (pow t 6))))))
(* 1/8 (* (pow t 4) (- (* 1/2 x) y)))
(* (pow t 4) (+ (* 1/8 (- (* 1/2 x) y)) (* 1/2 (/ (- (* 1/2 x) y) (pow t 2)))))
(* (pow t 4) (- (+ (* 1/8 (- (* 1/2 x) y)) (+ (* 1/2 (/ x (pow t 4))) (* 1/2 (/ (- (* 1/2 x) y) (pow t 2))))) (/ y (pow t 4))))
(* 1/8 (* (pow t 2) (- (* 1/2 x) y)))
(* (pow t 2) (+ (* 1/8 (- (* 1/2 x) y)) (* 1/2 (/ (- (* 1/2 x) y) (pow t 2)))))
(* 1/48 (pow t 2))
(* (pow t 2) (+ 1/48 (* 1/8 (/ 1 (pow t 2)))))
(* 1/48 (pow t 4))
(* (pow t 4) (+ 1/48 (* 1/8 (/ 1 (pow t 2)))))
(* (pow t 4) (+ 1/48 (+ (/ 1/2 (pow t 4)) (* 1/8 (/ 1 (pow t 2))))))
(exp (* 1/2 (pow t 2)))
(* 1/2 (pow t 2))
(* (pow t 2) (+ 1/2 (/ 1 (pow t 2))))
(* 1/8 (pow t 2))
(* (pow t 2) (+ 1/8 (* 1/2 (/ 1 (pow t 2)))))
Calls

12 calls:

TimeVariablePointExpression
16.0ms
z
@-inf
((* (* (pow (sqrt (exp t)) t) (- (* 1/2 x) y)) (sqrt (* 2 z))) (* (pow (sqrt (exp t)) t) (- (* 1/2 x) y)) (pow (sqrt (exp t)) t) (+ (* (+ (* (+ (* 1/48 (* t t)) 1/8) (* t t)) 1/2) (* t t)) 1) (* (* (* (- (* x 1/2) y) (sqrt 2)) (sqrt z)) (exp (/ (* t t) 2))) (* (* (- (* x 1/2) y) (sqrt 2)) (sqrt z)) (* (- (* x 1/2) y) (sqrt 2)) (- (* x 1/2) y) (* (* (- (* x 1/2) y) (sqrt (* z 2))) (exp (/ (* t t) 2))) (* (- (* x 1/2) y) (sqrt (* z 2))) (- (* x 1/2) y) (* x 1/2) (+ (* (* (- (* 1/2 x) y) (+ (* 1/8 (* t t)) 1/2)) (* t t)) (- (* 1/2 x) y)) (* (* (pow (sqrt (exp t)) t) (- (* 1/2 x) y)) (sqrt (* 2 z))) (* (pow (sqrt (exp t)) t) (- (* 1/2 x) y)) (* (- (* 1/2 x) y) (+ (* 1/8 (* t t)) 1/2)) (/ 1 (/ (+ (* x 1/2) y) (* (+ (* (* x x) 1/4) (* (neg y) y)) (sqrt (* z 2))))) (* (/ 1 (/ (+ (* x 1/2) y) (* (+ (* (* x x) 1/4) (* (neg y) y)) (sqrt (* z 2))))) (exp (/ (* t t) 2))) (/ (+ (* x 1/2) y) (* (+ (* (* x x) 1/4) (* (neg y) y)) (sqrt (* z 2)))) (+ (* x 1/2) y) (+ (* 1/48 (* t t)) 1/8) (+ (* (+ (* 1/48 (* t t)) 1/8) (* t t)) 1/2) (exp (/ (* t t) 2)) (exp (/ (* t t) 2)) (+ (* (* t t) 1/2) 1) (+ (* 1/8 (* t t)) 1/2) (+ (* (* x x) 1/4) (* (neg y) y)) (* (+ (* (* x x) 1/4) (* (neg y) y)) (sqrt (* z 2))))
14.0ms
z
@0
((* (* (pow (sqrt (exp t)) t) (- (* 1/2 x) y)) (sqrt (* 2 z))) (* (pow (sqrt (exp t)) t) (- (* 1/2 x) y)) (pow (sqrt (exp t)) t) (+ (* (+ (* (+ (* 1/48 (* t t)) 1/8) (* t t)) 1/2) (* t t)) 1) (* (* (* (- (* x 1/2) y) (sqrt 2)) (sqrt z)) (exp (/ (* t t) 2))) (* (* (- (* x 1/2) y) (sqrt 2)) (sqrt z)) (* (- (* x 1/2) y) (sqrt 2)) (- (* x 1/2) y) (* (* (- (* x 1/2) y) (sqrt (* z 2))) (exp (/ (* t t) 2))) (* (- (* x 1/2) y) (sqrt (* z 2))) (- (* x 1/2) y) (* x 1/2) (+ (* (* (- (* 1/2 x) y) (+ (* 1/8 (* t t)) 1/2)) (* t t)) (- (* 1/2 x) y)) (* (* (pow (sqrt (exp t)) t) (- (* 1/2 x) y)) (sqrt (* 2 z))) (* (pow (sqrt (exp t)) t) (- (* 1/2 x) y)) (* (- (* 1/2 x) y) (+ (* 1/8 (* t t)) 1/2)) (/ 1 (/ (+ (* x 1/2) y) (* (+ (* (* x x) 1/4) (* (neg y) y)) (sqrt (* z 2))))) (* (/ 1 (/ (+ (* x 1/2) y) (* (+ (* (* x x) 1/4) (* (neg y) y)) (sqrt (* z 2))))) (exp (/ (* t t) 2))) (/ (+ (* x 1/2) y) (* (+ (* (* x x) 1/4) (* (neg y) y)) (sqrt (* z 2)))) (+ (* x 1/2) y) (+ (* 1/48 (* t t)) 1/8) (+ (* (+ (* 1/48 (* t t)) 1/8) (* t t)) 1/2) (exp (/ (* t t) 2)) (exp (/ (* t t) 2)) (+ (* (* t t) 1/2) 1) (+ (* 1/8 (* t t)) 1/2) (+ (* (* x x) 1/4) (* (neg y) y)) (* (+ (* (* x x) 1/4) (* (neg y) y)) (sqrt (* z 2))))
13.0ms
z
@inf
((* (* (pow (sqrt (exp t)) t) (- (* 1/2 x) y)) (sqrt (* 2 z))) (* (pow (sqrt (exp t)) t) (- (* 1/2 x) y)) (pow (sqrt (exp t)) t) (+ (* (+ (* (+ (* 1/48 (* t t)) 1/8) (* t t)) 1/2) (* t t)) 1) (* (* (* (- (* x 1/2) y) (sqrt 2)) (sqrt z)) (exp (/ (* t t) 2))) (* (* (- (* x 1/2) y) (sqrt 2)) (sqrt z)) (* (- (* x 1/2) y) (sqrt 2)) (- (* x 1/2) y) (* (* (- (* x 1/2) y) (sqrt (* z 2))) (exp (/ (* t t) 2))) (* (- (* x 1/2) y) (sqrt (* z 2))) (- (* x 1/2) y) (* x 1/2) (+ (* (* (- (* 1/2 x) y) (+ (* 1/8 (* t t)) 1/2)) (* t t)) (- (* 1/2 x) y)) (* (* (pow (sqrt (exp t)) t) (- (* 1/2 x) y)) (sqrt (* 2 z))) (* (pow (sqrt (exp t)) t) (- (* 1/2 x) y)) (* (- (* 1/2 x) y) (+ (* 1/8 (* t t)) 1/2)) (/ 1 (/ (+ (* x 1/2) y) (* (+ (* (* x x) 1/4) (* (neg y) y)) (sqrt (* z 2))))) (* (/ 1 (/ (+ (* x 1/2) y) (* (+ (* (* x x) 1/4) (* (neg y) y)) (sqrt (* z 2))))) (exp (/ (* t t) 2))) (/ (+ (* x 1/2) y) (* (+ (* (* x x) 1/4) (* (neg y) y)) (sqrt (* z 2)))) (+ (* x 1/2) y) (+ (* 1/48 (* t t)) 1/8) (+ (* (+ (* 1/48 (* t t)) 1/8) (* t t)) 1/2) (exp (/ (* t t) 2)) (exp (/ (* t t) 2)) (+ (* (* t t) 1/2) 1) (+ (* 1/8 (* t t)) 1/2) (+ (* (* x x) 1/4) (* (neg y) y)) (* (+ (* (* x x) 1/4) (* (neg y) y)) (sqrt (* z 2))))
11.0ms
x
@-inf
((* (* (pow (sqrt (exp t)) t) (- (* 1/2 x) y)) (sqrt (* 2 z))) (* (pow (sqrt (exp t)) t) (- (* 1/2 x) y)) (pow (sqrt (exp t)) t) (+ (* (+ (* (+ (* 1/48 (* t t)) 1/8) (* t t)) 1/2) (* t t)) 1) (* (* (* (- (* x 1/2) y) (sqrt 2)) (sqrt z)) (exp (/ (* t t) 2))) (* (* (- (* x 1/2) y) (sqrt 2)) (sqrt z)) (* (- (* x 1/2) y) (sqrt 2)) (- (* x 1/2) y) (* (* (- (* x 1/2) y) (sqrt (* z 2))) (exp (/ (* t t) 2))) (* (- (* x 1/2) y) (sqrt (* z 2))) (- (* x 1/2) y) (* x 1/2) (+ (* (* (- (* 1/2 x) y) (+ (* 1/8 (* t t)) 1/2)) (* t t)) (- (* 1/2 x) y)) (* (* (pow (sqrt (exp t)) t) (- (* 1/2 x) y)) (sqrt (* 2 z))) (* (pow (sqrt (exp t)) t) (- (* 1/2 x) y)) (* (- (* 1/2 x) y) (+ (* 1/8 (* t t)) 1/2)) (/ 1 (/ (+ (* x 1/2) y) (* (+ (* (* x x) 1/4) (* (neg y) y)) (sqrt (* z 2))))) (* (/ 1 (/ (+ (* x 1/2) y) (* (+ (* (* x x) 1/4) (* (neg y) y)) (sqrt (* z 2))))) (exp (/ (* t t) 2))) (/ (+ (* x 1/2) y) (* (+ (* (* x x) 1/4) (* (neg y) y)) (sqrt (* z 2)))) (+ (* x 1/2) y) (+ (* 1/48 (* t t)) 1/8) (+ (* (+ (* 1/48 (* t t)) 1/8) (* t t)) 1/2) (exp (/ (* t t) 2)) (exp (/ (* t t) 2)) (+ (* (* t t) 1/2) 1) (+ (* 1/8 (* t t)) 1/2) (+ (* (* x x) 1/4) (* (neg y) y)) (* (+ (* (* x x) 1/4) (* (neg y) y)) (sqrt (* z 2))))
6.0ms
x
@0
((* (* (pow (sqrt (exp t)) t) (- (* 1/2 x) y)) (sqrt (* 2 z))) (* (pow (sqrt (exp t)) t) (- (* 1/2 x) y)) (pow (sqrt (exp t)) t) (+ (* (+ (* (+ (* 1/48 (* t t)) 1/8) (* t t)) 1/2) (* t t)) 1) (* (* (* (- (* x 1/2) y) (sqrt 2)) (sqrt z)) (exp (/ (* t t) 2))) (* (* (- (* x 1/2) y) (sqrt 2)) (sqrt z)) (* (- (* x 1/2) y) (sqrt 2)) (- (* x 1/2) y) (* (* (- (* x 1/2) y) (sqrt (* z 2))) (exp (/ (* t t) 2))) (* (- (* x 1/2) y) (sqrt (* z 2))) (- (* x 1/2) y) (* x 1/2) (+ (* (* (- (* 1/2 x) y) (+ (* 1/8 (* t t)) 1/2)) (* t t)) (- (* 1/2 x) y)) (* (* (pow (sqrt (exp t)) t) (- (* 1/2 x) y)) (sqrt (* 2 z))) (* (pow (sqrt (exp t)) t) (- (* 1/2 x) y)) (* (- (* 1/2 x) y) (+ (* 1/8 (* t t)) 1/2)) (/ 1 (/ (+ (* x 1/2) y) (* (+ (* (* x x) 1/4) (* (neg y) y)) (sqrt (* z 2))))) (* (/ 1 (/ (+ (* x 1/2) y) (* (+ (* (* x x) 1/4) (* (neg y) y)) (sqrt (* z 2))))) (exp (/ (* t t) 2))) (/ (+ (* x 1/2) y) (* (+ (* (* x x) 1/4) (* (neg y) y)) (sqrt (* z 2)))) (+ (* x 1/2) y) (+ (* 1/48 (* t t)) 1/8) (+ (* (+ (* 1/48 (* t t)) 1/8) (* t t)) 1/2) (exp (/ (* t t) 2)) (exp (/ (* t t) 2)) (+ (* (* t t) 1/2) 1) (+ (* 1/8 (* t t)) 1/2) (+ (* (* x x) 1/4) (* (neg y) y)) (* (+ (* (* x x) 1/4) (* (neg y) y)) (sqrt (* z 2))))

simplify194.0ms (1.7%)

Memory
-40.8MiB live, 207.0MiB allocated
Algorithm
egg-herbie
Iterations

Useful iterations: 0 (0.0ms)

IterNodesCost
06093409
120453069
270533026
082622884
Stop Event
iter limit
node limit
Counts
155 → 154
Calls
Call 1
Inputs
(* -1 (* (* y (* (sqrt 2) (pow (sqrt (exp t)) t))) (sqrt z)))
(+ (* -1 (* (* y (* (sqrt 2) (pow (sqrt (exp t)) t))) (sqrt z))) (* 1/2 (* (* x (* (sqrt 2) (pow (sqrt (exp t)) t))) (sqrt z))))
(* -1 (* y (pow (sqrt (exp t)) t)))
(+ (* -1 (* y (pow (sqrt (exp t)) t))) (* 1/2 (* x (pow (sqrt (exp t)) t))))
(* -1 (* (* y (* (exp (* 1/2 (pow t 2))) (sqrt 2))) (sqrt z)))
(+ (* -1 (* (* y (* (exp (* 1/2 (pow t 2))) (sqrt 2))) (sqrt z))) (* 1/2 (* (* x (* (exp (* 1/2 (pow t 2))) (sqrt 2))) (sqrt z))))
(* -1 (* (* y (sqrt 2)) (sqrt z)))
(+ (* -1 (* (* y (sqrt 2)) (sqrt z))) (* 1/2 (* (* x (sqrt 2)) (sqrt z))))
(* -1 (* y (sqrt 2)))
(+ (* -1 (* y (sqrt 2))) (* 1/2 (* x (sqrt 2))))
(* -1 y)
(- (* 1/2 x) y)
(* 1/2 x)
(- (* -1 (* (pow t 2) (* y (+ 1/2 (* 1/8 (pow t 2)))))) y)
(- (+ (* -1 (* (pow t 2) (* y (+ 1/2 (* 1/8 (pow t 2)))))) (* x (+ 1/2 (* 1/2 (* (pow t 2) (+ 1/2 (* 1/8 (pow t 2)))))))) y)
(* -1 (* y (+ 1/2 (* 1/8 (pow t 2)))))
(+ (* -1 (* y (+ 1/2 (* 1/8 (pow t 2))))) (* 1/2 (* x (+ 1/2 (* 1/8 (pow t 2))))))
(* -1 (* (/ 1 (* y (sqrt 2))) (sqrt (/ 1 z))))
(+ (* -1 (* (/ 1 (* y (sqrt 2))) (sqrt (/ 1 z)))) (* -1/2 (* (/ x (* (pow y 2) (sqrt 2))) (sqrt (/ 1 z)))))
(+ (* -1 (* (/ 1 (* y (sqrt 2))) (sqrt (/ 1 z)))) (* x (+ (* -1/2 (* (/ 1 (* (pow y 2) (sqrt 2))) (sqrt (/ 1 z)))) (* -1/4 (* (/ x (* (pow y 3) (sqrt 2))) (sqrt (/ 1 z)))))))
(+ (* -1 (* (/ 1 (* y (sqrt 2))) (sqrt (/ 1 z)))) (* x (+ (* -1/2 (* (/ 1 (* (pow y 2) (sqrt 2))) (sqrt (/ 1 z)))) (* x (+ (* -1/4 (* (/ 1 (* (pow y 3) (sqrt 2))) (sqrt (/ 1 z)))) (* -1/8 (* (/ x (* (pow y 4) (sqrt 2))) (sqrt (/ 1 z)))))))))
y
(+ y (* 1/2 x))
(* -1 (pow y 2))
(+ (* -1 (pow y 2)) (* 1/4 (pow x 2)))
(* -1 (* (* (pow y 2) (sqrt 2)) (sqrt z)))
(+ (* -1 (* (* (pow y 2) (sqrt 2)) (sqrt z))) (* 1/4 (* (* (pow x 2) (sqrt 2)) (sqrt z))))
(* 1/2 (* (* x (* (sqrt 2) (pow (sqrt (exp t)) t))) (sqrt z)))
(* x (+ (* -1 (* (/ (* y (* (sqrt 2) (pow (sqrt (exp t)) t))) x) (sqrt z))) (* 1/2 (* (sqrt z) (* (sqrt 2) (pow (sqrt (exp t)) t))))))
(* 1/2 (* x (pow (sqrt (exp t)) t)))
(* x (+ (* -1 (/ (* y (pow (sqrt (exp t)) t)) x)) (* 1/2 (pow (sqrt (exp t)) t))))
(* 1/2 (* (* x (* (exp (* 1/2 (pow t 2))) (sqrt 2))) (sqrt z)))
(* x (+ (* -1 (* (/ (* y (* (exp (* 1/2 (pow t 2))) (sqrt 2))) x) (sqrt z))) (* 1/2 (* (sqrt z) (* (exp (* 1/2 (pow t 2))) (sqrt 2))))))
(* 1/2 (* (* x (sqrt 2)) (sqrt z)))
(* x (+ (* -1 (* (/ (* y (sqrt 2)) x) (sqrt z))) (* 1/2 (* (sqrt z) (sqrt 2)))))
(* 1/2 (* x (sqrt 2)))
(* x (+ (* -1 (/ (* y (sqrt 2)) x)) (* 1/2 (sqrt 2))))
(* x (+ 1/2 (* -1 (/ y x))))
(* x (+ 1/2 (* 1/2 (* (pow t 2) (+ 1/2 (* 1/8 (pow t 2)))))))
(* x (- (+ 1/2 (+ (* -1 (/ (* (pow t 2) (* y (+ 1/2 (* 1/8 (pow t 2))))) x)) (* 1/2 (* (pow t 2) (+ 1/2 (* 1/8 (pow t 2))))))) (/ y x)))
(* 1/2 (* x (+ 1/2 (* 1/8 (pow t 2)))))
(* x (+ (* -1 (/ (* y (+ 1/2 (* 1/8 (pow t 2)))) x)) (* 1/2 (+ 1/2 (* 1/8 (pow t 2))))))
(* 2 (* (/ 1 (* x (sqrt 2))) (sqrt (/ 1 z))))
(/ (+ (* 2 (* (sqrt (/ 1 z)) (/ 1 (sqrt 2)))) (* 4 (* (/ y (* x (sqrt 2))) (sqrt (/ 1 z))))) x)
(/ (+ (* 2 (* (sqrt (/ 1 z)) (/ 1 (sqrt 2)))) (+ (* 4 (* (/ y (* x (sqrt 2))) (sqrt (/ 1 z)))) (* 8 (* (/ (pow y 2) (* (pow x 2) (sqrt 2))) (sqrt (/ 1 z)))))) x)
(/ (+ (* 2 (* (sqrt (/ 1 z)) (/ 1 (sqrt 2)))) (+ (* 4 (* (/ y (* x (sqrt 2))) (sqrt (/ 1 z)))) (+ (* 8 (* (/ (pow y 2) (* (pow x 2) (sqrt 2))) (sqrt (/ 1 z)))) (* 16 (* (/ (pow y 3) (* (pow x 3) (sqrt 2))) (sqrt (/ 1 z))))))) x)
(* x (+ 1/2 (/ y x)))
(* 1/4 (pow x 2))
(* (pow x 2) (+ 1/4 (* -1 (/ (pow y 2) (pow x 2)))))
(* 1/4 (* (* (pow x 2) (sqrt 2)) (sqrt z)))
(* (pow x 2) (+ (* -1 (* (/ (* (pow y 2) (sqrt 2)) (pow x 2)) (sqrt z))) (* 1/4 (* (sqrt z) (sqrt 2)))))
(* -1 (* x (+ (* -1/2 (* (sqrt z) (* (sqrt 2) (pow (sqrt (exp t)) t)))) (* (/ (* y (* (sqrt 2) (pow (sqrt (exp t)) t))) x) (sqrt z)))))
(* -1 (* x (+ (* -1/2 (pow (sqrt (exp t)) t)) (/ (* y (pow (sqrt (exp t)) t)) x))))
(* -1 (* x (+ (* -1/2 (* (sqrt z) (* (exp (* 1/2 (pow t 2))) (sqrt 2)))) (* (/ (* y (* (exp (* 1/2 (pow t 2))) (sqrt 2))) x) (sqrt z)))))
(* -1 (* x (+ (* -1/2 (* (sqrt z) (sqrt 2))) (* (/ (* y (sqrt 2)) x) (sqrt z)))))
(* -1 (* x (+ (* -1/2 (sqrt 2)) (/ (* y (sqrt 2)) x))))
(* -1 (* x (- (/ y x) 1/2)))
(* -1 (* x (- (* -1/2 (* (pow t 2) (+ 1/2 (* 1/8 (pow t 2))))) 1/2)))
(* -1 (* x (- (+ (* -1 (/ (- (* -1 (* (pow t 2) (* y (+ 1/2 (* 1/8 (pow t 2)))))) y) x)) (* -1/2 (* (pow t 2) (+ 1/2 (* 1/8 (pow t 2)))))) 1/2)))
(* -1 (* x (+ (* -1/2 (+ 1/2 (* 1/8 (pow t 2)))) (/ (* y (+ 1/2 (* 1/8 (pow t 2)))) x))))
(* -1 (/ (+ (* -4 (* (/ y (* x (sqrt 2))) (sqrt (/ 1 z)))) (* -2 (* (sqrt (/ 1 z)) (/ 1 (sqrt 2))))) x))
(* -1 (/ (+ (* -2 (* (sqrt (/ 1 z)) (/ 1 (sqrt 2)))) (* -1 (/ (+ (* 4 (* (/ y (sqrt 2)) (sqrt (/ 1 z)))) (* 8 (* (/ (pow y 2) (* x (sqrt 2))) (sqrt (/ 1 z))))) x))) x))
(* -1 (/ (+ (* -2 (* (sqrt (/ 1 z)) (/ 1 (sqrt 2)))) (* -1 (/ (+ (* -1 (/ (+ (* -16 (* (/ (pow y 3) (* x (sqrt 2))) (sqrt (/ 1 z)))) (* -8 (* (/ (pow y 2) (sqrt 2)) (sqrt (/ 1 z))))) x)) (* 4 (* (/ y (sqrt 2)) (sqrt (/ 1 z))))) x))) x))
(* -1 (* x (- (* -1 (/ y x)) 1/2)))
(+ (* -1 y) (* 1/2 x))
(+ (* 1/2 x) (* 1/2 (* (pow t 2) (* x (+ 1/2 (* 1/8 (pow t 2)))))))
(+ (* 1/2 x) (+ (* 1/2 (* (pow t 2) (* x (+ 1/2 (* 1/8 (pow t 2)))))) (* y (- (* -1 (* (pow t 2) (+ 1/2 (* 1/8 (pow t 2))))) 1))))
(+ (* 2 (* (/ 1 (* x (sqrt 2))) (sqrt (/ 1 z)))) (* 4 (* (/ y (* (pow x 2) (sqrt 2))) (sqrt (/ 1 z)))))
(+ (* 2 (* (/ 1 (* x (sqrt 2))) (sqrt (/ 1 z)))) (* y (+ (* 4 (* (/ 1 (* (pow x 2) (sqrt 2))) (sqrt (/ 1 z)))) (* 8 (* (/ y (* (pow x 3) (sqrt 2))) (sqrt (/ 1 z)))))))
(+ (* 2 (* (/ 1 (* x (sqrt 2))) (sqrt (/ 1 z)))) (* y (+ (* 4 (* (/ 1 (* (pow x 2) (sqrt 2))) (sqrt (/ 1 z)))) (* y (+ (* 8 (* (/ 1 (* (pow x 3) (sqrt 2))) (sqrt (/ 1 z)))) (* 16 (* (/ y (* (pow x 4) (sqrt 2))) (sqrt (/ 1 z)))))))))
(* y (+ (* -1 (* (sqrt z) (* (sqrt 2) (pow (sqrt (exp t)) t)))) (* 1/2 (* (/ (* x (* (sqrt 2) (pow (sqrt (exp t)) t))) y) (sqrt z)))))
(* y (+ (* -1 (pow (sqrt (exp t)) t)) (* 1/2 (/ (* x (pow (sqrt (exp t)) t)) y))))
(* y (+ (* -1 (* (sqrt z) (* (exp (* 1/2 (pow t 2))) (sqrt 2)))) (* 1/2 (* (/ (* x (* (exp (* 1/2 (pow t 2))) (sqrt 2))) y) (sqrt z)))))
(* y (+ (* -1 (* (sqrt z) (sqrt 2))) (* 1/2 (* (/ (* x (sqrt 2)) y) (sqrt z)))))
(* y (+ (* -1 (sqrt 2)) (* 1/2 (/ (* x (sqrt 2)) y))))
(* y (- (* 1/2 (/ x y)) 1))
(* y (- (* -1 (* (pow t 2) (+ 1/2 (* 1/8 (pow t 2))))) 1))
(* y (- (+ (* -1 (* (pow t 2) (+ 1/2 (* 1/8 (pow t 2))))) (+ (* 1/2 (/ x y)) (* 1/2 (/ (* (pow t 2) (* x (+ 1/2 (* 1/8 (pow t 2))))) y)))) 1))
(* y (+ (* -1 (+ 1/2 (* 1/8 (pow t 2)))) (* 1/2 (/ (* x (+ 1/2 (* 1/8 (pow t 2)))) y))))
(/ (+ (* -1 (* (sqrt (/ 1 z)) (/ 1 (sqrt 2)))) (* -1/2 (* (/ x (* y (sqrt 2))) (sqrt (/ 1 z))))) y)
(/ (+ (* -1 (* (sqrt (/ 1 z)) (/ 1 (sqrt 2)))) (+ (* -1/2 (* (/ x (* y (sqrt 2))) (sqrt (/ 1 z)))) (* -1/4 (* (/ (pow x 2) (* (pow y 2) (sqrt 2))) (sqrt (/ 1 z)))))) y)
(/ (+ (* -1 (* (sqrt (/ 1 z)) (/ 1 (sqrt 2)))) (+ (* -1/2 (* (/ x (* y (sqrt 2))) (sqrt (/ 1 z)))) (+ (* -1/4 (* (/ (pow x 2) (* (pow y 2) (sqrt 2))) (sqrt (/ 1 z)))) (* -1/8 (* (/ (pow x 3) (* (pow y 3) (sqrt 2))) (sqrt (/ 1 z))))))) y)
(* y (+ 1 (* 1/2 (/ x y))))
(* (pow y 2) (- (* 1/4 (/ (pow x 2) (pow y 2))) 1))
(* (pow y 2) (+ (* -1 (* (sqrt z) (sqrt 2))) (* 1/4 (* (/ (* (pow x 2) (sqrt 2)) (pow y 2)) (sqrt z)))))
(* -1 (* y (+ (* -1/2 (* (/ (* x (* (sqrt 2) (pow (sqrt (exp t)) t))) y) (sqrt z))) (* (sqrt z) (* (sqrt 2) (pow (sqrt (exp t)) t))))))
(* -1 (* y (+ (* -1/2 (/ (* x (pow (sqrt (exp t)) t)) y)) (pow (sqrt (exp t)) t))))
(* -1 (* y (+ (* -1/2 (* (/ (* x (* (exp (* 1/2 (pow t 2))) (sqrt 2))) y) (sqrt z))) (* (sqrt z) (* (exp (* 1/2 (pow t 2))) (sqrt 2))))))
(* -1 (* y (+ (* -1/2 (* (/ (* x (sqrt 2)) y) (sqrt z))) (* (sqrt z) (sqrt 2)))))
(* -1 (* y (+ (sqrt 2) (* -1/2 (/ (* x (sqrt 2)) y)))))
(* -1 (* y (+ 1 (* -1/2 (/ x y)))))
(* -1 (* y (+ 1 (* (pow t 2) (+ 1/2 (* 1/8 (pow t 2)))))))
(* -1 (* y (+ 1 (+ (* -1 (/ (+ (* 1/2 x) (* 1/2 (* (pow t 2) (* x (+ 1/2 (* 1/8 (pow t 2))))))) y)) (* (pow t 2) (+ 1/2 (* 1/8 (pow t 2))))))))
(* -1 (* y (+ 1/2 (+ (* -1/2 (/ (* x (+ 1/2 (* 1/8 (pow t 2)))) y)) (* 1/8 (pow t 2))))))
(* -1 (/ (+ (* 1/2 (* (/ x (* y (sqrt 2))) (sqrt (/ 1 z)))) (* (sqrt (/ 1 z)) (/ 1 (sqrt 2)))) y))
(* -1 (/ (+ (* -1 (/ (+ (* -1/2 (* (/ x (sqrt 2)) (sqrt (/ 1 z)))) (* -1/4 (* (/ (pow x 2) (* y (sqrt 2))) (sqrt (/ 1 z))))) y)) (* (sqrt (/ 1 z)) (/ 1 (sqrt 2)))) y))
(* -1 (/ (+ (* -1 (/ (+ (* -1 (/ (+ (* 1/8 (* (/ (pow x 3) (* y (sqrt 2))) (sqrt (/ 1 z)))) (* 1/4 (* (/ (pow x 2) (sqrt 2)) (sqrt (/ 1 z))))) y)) (* -1/2 (* (/ x (sqrt 2)) (sqrt (/ 1 z))))) y)) (* (sqrt (/ 1 z)) (/ 1 (sqrt 2)))) y))
(* -1 (* y (- (* -1/2 (/ x y)) 1)))
(* (sqrt z) (* (sqrt 2) (* (- (* 1/2 x) y) (pow (sqrt (exp t)) t))))
(* (sqrt z) (* (exp (* 1/2 (pow t 2))) (* (sqrt 2) (- (* 1/2 x) y))))
(* (sqrt z) (* (sqrt 2) (- (* 1/2 x) y)))
(* (sqrt z) (/ (* (sqrt 2) (+ (* -1 (pow y 2)) (* 1/4 (pow x 2)))) (+ y (* 1/2 x))))
(* (sqrt z) (/ (* (exp (* 1/2 (pow t 2))) (* (sqrt 2) (+ (* -1 (pow y 2)) (* 1/4 (pow x 2))))) (+ y (* 1/2 x))))
(* (sqrt (/ 1 z)) (/ (+ y (* 1/2 x)) (* (sqrt 2) (+ (* -1 (pow y 2)) (* 1/4 (pow x 2))))))
(* (sqrt z) (* (sqrt 2) (+ (* -1 (pow y 2)) (* 1/4 (pow x 2)))))
(* -1 (* (sqrt z) (* (sqrt -2) (* (sqrt -1) (* (- (* 1/2 x) y) (pow (sqrt (exp t)) t))))))
(* -1 (* (sqrt z) (* (exp (* 1/2 (pow t 2))) (* (pow (sqrt -1) 2) (* (sqrt 2) (- (* 1/2 x) y))))))
(* -1 (* (sqrt z) (* (pow (sqrt -1) 2) (* (sqrt 2) (- (* 1/2 x) y)))))
(* -1 (* (sqrt z) (* (exp (* 1/2 (pow t 2))) (* (sqrt -2) (* (sqrt -1) (- (* 1/2 x) y))))))
(* -1 (* (sqrt z) (* (sqrt -2) (* (sqrt -1) (- (* 1/2 x) y)))))
(* -1 (* (sqrt z) (/ (* (sqrt -2) (* (sqrt -1) (+ (* -1 (pow y 2)) (* 1/4 (pow x 2))))) (+ y (* 1/2 x)))))
(* -1 (* (sqrt z) (/ (* (exp (* 1/2 (pow t 2))) (* (sqrt -2) (* (sqrt -1) (+ (* -1 (pow y 2)) (* 1/4 (pow x 2)))))) (+ y (* 1/2 x)))))
(* (sqrt (/ 1 z)) (/ (* (sqrt -1) (+ y (* 1/2 x))) (* (sqrt -2) (+ (* -1 (pow y 2)) (* 1/4 (pow x 2))))))
(* -1 (* (sqrt z) (* (sqrt -2) (* (sqrt -1) (+ (* -1 (pow y 2)) (* 1/4 (pow x 2)))))))
(+ (* 1/2 (* (* (pow t 2) (* (sqrt 2) (- (* 1/2 x) y))) (sqrt z))) (* (sqrt z) (* (sqrt 2) (- (* 1/2 x) y))))
(+ (* (sqrt z) (* (sqrt 2) (- (* 1/2 x) y))) (* (pow t 2) (+ (* 1/8 (* (* (pow t 2) (* (sqrt 2) (- (* 1/2 x) y))) (sqrt z))) (* 1/2 (* (sqrt z) (* (sqrt 2) (- (* 1/2 x) y)))))))
(+ (* (sqrt z) (* (sqrt 2) (- (* 1/2 x) y))) (* (pow t 2) (+ (* 1/2 (* (sqrt z) (* (sqrt 2) (- (* 1/2 x) y)))) (* (pow t 2) (+ (* 1/48 (* (* (pow t 2) (* (sqrt 2) (- (* 1/2 x) y))) (sqrt z))) (* 1/8 (* (sqrt z) (* (sqrt 2) (- (* 1/2 x) y)))))))))
(- (+ (* 1/2 x) (* 1/2 (* (pow t 2) (- (* 1/2 x) y)))) y)
(- (+ (* 1/2 x) (* (pow t 2) (+ (* 1/8 (* (pow t 2) (- (* 1/2 x) y))) (* 1/2 (- (* 1/2 x) y))))) y)
(- (+ (* 1/2 x) (* (pow t 2) (+ (* 1/2 (- (* 1/2 x) y)) (* (pow t 2) (+ (* 1/48 (* (pow t 2) (- (* 1/2 x) y))) (* 1/8 (- (* 1/2 x) y))))))) y)
1
(+ 1 (* 1/2 (pow t 2)))
(+ 1 (* (pow t 2) (+ 1/2 (* 1/8 (pow t 2)))))
(+ 1 (* (pow t 2) (+ 1/2 (* (pow t 2) (+ 1/8 (* 1/48 (pow t 2)))))))
(* 1/2 (- (* 1/2 x) y))
(+ (* 1/8 (* (pow t 2) (- (* 1/2 x) y))) (* 1/2 (- (* 1/2 x) y)))
(+ (* 1/2 (* (/ (* (pow t 2) (* (sqrt 2) (+ (* -1 (pow y 2)) (* 1/4 (pow x 2))))) (+ y (* 1/2 x))) (sqrt z))) (* (sqrt z) (/ (* (sqrt 2) (+ (* -1 (pow y 2)) (* 1/4 (pow x 2)))) (+ y (* 1/2 x)))))
(+ (* (sqrt z) (/ (* (sqrt 2) (+ (* -1 (pow y 2)) (* 1/4 (pow x 2)))) (+ y (* 1/2 x)))) (* (pow t 2) (+ (* 1/8 (* (/ (* (pow t 2) (* (sqrt 2) (+ (* -1 (pow y 2)) (* 1/4 (pow x 2))))) (+ y (* 1/2 x))) (sqrt z))) (* 1/2 (* (sqrt z) (/ (* (sqrt 2) (+ (* -1 (pow y 2)) (* 1/4 (pow x 2)))) (+ y (* 1/2 x))))))))
(+ (* (sqrt z) (/ (* (sqrt 2) (+ (* -1 (pow y 2)) (* 1/4 (pow x 2)))) (+ y (* 1/2 x)))) (* (pow t 2) (+ (* 1/2 (* (sqrt z) (/ (* (sqrt 2) (+ (* -1 (pow y 2)) (* 1/4 (pow x 2)))) (+ y (* 1/2 x))))) (* (pow t 2) (+ (* 1/48 (* (/ (* (pow t 2) (* (sqrt 2) (+ (* -1 (pow y 2)) (* 1/4 (pow x 2))))) (+ y (* 1/2 x))) (sqrt z))) (* 1/8 (* (sqrt z) (/ (* (sqrt 2) (+ (* -1 (pow y 2)) (* 1/4 (pow x 2)))) (+ y (* 1/2 x))))))))))
1/8
(+ 1/8 (* 1/48 (pow t 2)))
1/2
(+ 1/2 (* 1/8 (pow t 2)))
(+ 1/2 (* (pow t 2) (+ 1/8 (* 1/48 (pow t 2)))))
(* (- (* 1/2 x) y) (pow (sqrt (exp t)) t))
(pow (sqrt (exp t)) t)
(* 1/48 (pow t 6))
(* (pow t 6) (+ 1/48 (* 1/8 (/ 1 (pow t 2)))))
(* (pow t 6) (+ 1/48 (+ (/ 1/2 (pow t 4)) (* 1/8 (/ 1 (pow t 2))))))
(* (pow t 6) (+ 1/48 (+ (/ 1/2 (pow t 4)) (+ (* 1/8 (/ 1 (pow t 2))) (/ 1 (pow t 6))))))
(* 1/8 (* (pow t 4) (- (* 1/2 x) y)))
(* (pow t 4) (+ (* 1/8 (- (* 1/2 x) y)) (* 1/2 (/ (- (* 1/2 x) y) (pow t 2)))))
(* (pow t 4) (- (+ (* 1/8 (- (* 1/2 x) y)) (+ (* 1/2 (/ x (pow t 4))) (* 1/2 (/ (- (* 1/2 x) y) (pow t 2))))) (/ y (pow t 4))))
(* 1/8 (* (pow t 2) (- (* 1/2 x) y)))
(* (pow t 2) (+ (* 1/8 (- (* 1/2 x) y)) (* 1/2 (/ (- (* 1/2 x) y) (pow t 2)))))
(* 1/48 (pow t 2))
(* (pow t 2) (+ 1/48 (* 1/8 (/ 1 (pow t 2)))))
(* 1/48 (pow t 4))
(* (pow t 4) (+ 1/48 (* 1/8 (/ 1 (pow t 2)))))
(* (pow t 4) (+ 1/48 (+ (/ 1/2 (pow t 4)) (* 1/8 (/ 1 (pow t 2))))))
(exp (* 1/2 (pow t 2)))
(* 1/2 (pow t 2))
(* (pow t 2) (+ 1/2 (/ 1 (pow t 2))))
(* 1/8 (pow t 2))
(* (pow t 2) (+ 1/8 (* 1/2 (/ 1 (pow t 2)))))
Outputs
(* -1 (* (* y (* (sqrt 2) (pow (sqrt (exp t)) t))) (sqrt z)))
(*.f64 (*.f64 (neg.f64 (sqrt.f64 #s(literal 2 binary64))) (pow.f64 (sqrt.f64 (exp.f64 t)) t)) (*.f64 (sqrt.f64 z) y))
(+ (* -1 (* (* y (* (sqrt 2) (pow (sqrt (exp t)) t))) (sqrt z))) (* 1/2 (* (* x (* (sqrt 2) (pow (sqrt (exp t)) t))) (sqrt z))))
(*.f64 (sqrt.f64 z) (fma.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) x) #s(literal 1/2 binary64)) (pow.f64 (sqrt.f64 (exp.f64 t)) t) (*.f64 (*.f64 (neg.f64 y) (sqrt.f64 #s(literal 2 binary64))) (pow.f64 (sqrt.f64 (exp.f64 t)) t))))
(* -1 (* y (pow (sqrt (exp t)) t)))
(*.f64 (neg.f64 y) (pow.f64 (sqrt.f64 (exp.f64 t)) t))
(+ (* -1 (* y (pow (sqrt (exp t)) t))) (* 1/2 (* x (pow (sqrt (exp t)) t))))
(*.f64 (-.f64 (*.f64 #s(literal 1/2 binary64) x) y) (pow.f64 (sqrt.f64 (exp.f64 t)) t))
(* -1 (* (* y (* (exp (* 1/2 (pow t 2))) (sqrt 2))) (sqrt z)))
(*.f64 (neg.f64 (*.f64 (sqrt.f64 z) y)) (*.f64 (sqrt.f64 (pow.f64 (exp.f64 t) t)) (sqrt.f64 #s(literal 2 binary64))))
(+ (* -1 (* (* y (* (exp (* 1/2 (pow t 2))) (sqrt 2))) (sqrt z))) (* 1/2 (* (* x (* (exp (* 1/2 (pow t 2))) (sqrt 2))) (sqrt z))))
(*.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)) (sqrt.f64 (pow.f64 (exp.f64 t) t))) (sqrt.f64 z))
(* -1 (* (* y (sqrt 2)) (sqrt z)))
(*.f64 (neg.f64 (*.f64 (sqrt.f64 z) y)) (sqrt.f64 #s(literal 2 binary64)))
(+ (* -1 (* (* y (sqrt 2)) (sqrt z))) (* 1/2 (* (* x (sqrt 2)) (sqrt z))))
(*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)) (sqrt.f64 z))
(* -1 (* y (sqrt 2)))
(*.f64 (neg.f64 y) (sqrt.f64 #s(literal 2 binary64)))
(+ (* -1 (* y (sqrt 2))) (* 1/2 (* x (sqrt 2))))
(*.f64 (sqrt.f64 #s(literal 2 binary64)) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y))
(* -1 y)
(neg.f64 y)
(- (* 1/2 x) y)
(-.f64 (*.f64 #s(literal 1/2 binary64) x) y)
(* 1/2 x)
(*.f64 #s(literal 1/2 binary64) x)
(- (* -1 (* (pow t 2) (* y (+ 1/2 (* 1/8 (pow t 2)))))) y)
(*.f64 (fma.f64 (fma.f64 #s(literal -1/8 binary64) (*.f64 t t) #s(literal -1/2 binary64)) (*.f64 t t) #s(literal -1 binary64)) y)
(- (+ (* -1 (* (pow t 2) (* y (+ 1/2 (* 1/8 (pow t 2)))))) (* x (+ 1/2 (* 1/2 (* (pow t 2) (+ 1/2 (* 1/8 (pow t 2)))))))) y)
(fma.f64 (fma.f64 (fma.f64 #s(literal -1/8 binary64) (*.f64 t t) #s(literal -1/2 binary64)) (*.f64 t t) #s(literal -1 binary64)) y (*.f64 (fma.f64 (fma.f64 #s(literal 1/16 binary64) (*.f64 t t) #s(literal 1/4 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) x))
(* -1 (* y (+ 1/2 (* 1/8 (pow t 2)))))
(*.f64 (fma.f64 #s(literal -1/8 binary64) (*.f64 t t) #s(literal -1/2 binary64)) y)
(+ (* -1 (* y (+ 1/2 (* 1/8 (pow t 2))))) (* 1/2 (* x (+ 1/2 (* 1/8 (pow t 2))))))
(*.f64 (fma.f64 #s(literal 1/8 binary64) (*.f64 t t) #s(literal 1/2 binary64)) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y))
(* -1 (* (/ 1 (* y (sqrt 2))) (sqrt (/ 1 z))))
(/.f64 (sqrt.f64 (/.f64 #s(literal 1 binary64) z)) (*.f64 (neg.f64 y) (sqrt.f64 #s(literal 2 binary64))))
(+ (* -1 (* (/ 1 (* y (sqrt 2))) (sqrt (/ 1 z)))) (* -1/2 (* (/ x (* (pow y 2) (sqrt 2))) (sqrt (/ 1 z)))))
(*.f64 (sqrt.f64 (/.f64 #s(literal 1 binary64) z)) (fma.f64 #s(literal -1/2 binary64) (/.f64 x (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) y) y)) (/.f64 #s(literal -1 binary64) (*.f64 (sqrt.f64 #s(literal 2 binary64)) y))))
(+ (* -1 (* (/ 1 (* y (sqrt 2))) (sqrt (/ 1 z)))) (* x (+ (* -1/2 (* (/ 1 (* (pow y 2) (sqrt 2))) (sqrt (/ 1 z)))) (* -1/4 (* (/ x (* (pow y 3) (sqrt 2))) (sqrt (/ 1 z)))))))
(fma.f64 (*.f64 (sqrt.f64 (/.f64 #s(literal 1 binary64) z)) (fma.f64 #s(literal -1/4 binary64) (/.f64 (/.f64 x (pow.f64 y #s(literal 3 binary64))) (sqrt.f64 #s(literal 2 binary64))) (/.f64 #s(literal -1/2 binary64) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) y) y)))) x (/.f64 (sqrt.f64 (/.f64 #s(literal 1 binary64) z)) (*.f64 (neg.f64 y) (sqrt.f64 #s(literal 2 binary64)))))
(+ (* -1 (* (/ 1 (* y (sqrt 2))) (sqrt (/ 1 z)))) (* x (+ (* -1/2 (* (/ 1 (* (pow y 2) (sqrt 2))) (sqrt (/ 1 z)))) (* x (+ (* -1/4 (* (/ 1 (* (pow y 3) (sqrt 2))) (sqrt (/ 1 z)))) (* -1/8 (* (/ x (* (pow y 4) (sqrt 2))) (sqrt (/ 1 z)))))))))
(fma.f64 (sqrt.f64 (/.f64 #s(literal 1 binary64) z)) (fma.f64 #s(literal -1/2 binary64) (/.f64 x (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) y) y)) (/.f64 #s(literal -1 binary64) (*.f64 (sqrt.f64 #s(literal 2 binary64)) y))) (*.f64 (*.f64 x x) (*.f64 (sqrt.f64 (/.f64 #s(literal 1 binary64) z)) (fma.f64 #s(literal -1/8 binary64) (/.f64 (/.f64 x (pow.f64 y #s(literal 4 binary64))) (sqrt.f64 #s(literal 2 binary64))) (/.f64 #s(literal -1/4 binary64) (*.f64 (pow.f64 y #s(literal 3 binary64)) (sqrt.f64 #s(literal 2 binary64))))))))
y
(+ y (* 1/2 x))
(fma.f64 #s(literal 1/2 binary64) x y)
(* -1 (pow y 2))
(*.f64 (neg.f64 y) y)
(+ (* -1 (pow y 2)) (* 1/4 (pow x 2)))
(fma.f64 (*.f64 #s(literal 1/4 binary64) x) x (*.f64 (neg.f64 y) y))
(* -1 (* (* (pow y 2) (sqrt 2)) (sqrt z)))
(*.f64 (neg.f64 y) (*.f64 (*.f64 (sqrt.f64 z) y) (sqrt.f64 #s(literal 2 binary64))))
(+ (* -1 (* (* (pow y 2) (sqrt 2)) (sqrt z))) (* 1/4 (* (* (pow x 2) (sqrt 2)) (sqrt z))))
(*.f64 (*.f64 (fma.f64 (*.f64 #s(literal 1/4 binary64) x) x (*.f64 (neg.f64 y) y)) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 z))
(* 1/2 (* (* x (* (sqrt 2) (pow (sqrt (exp t)) t))) (sqrt z)))
(*.f64 (*.f64 (*.f64 (*.f64 #s(literal 1/2 binary64) (sqrt.f64 z)) (sqrt.f64 #s(literal 2 binary64))) (pow.f64 (sqrt.f64 (exp.f64 t)) t)) x)
(* x (+ (* -1 (* (/ (* y (* (sqrt 2) (pow (sqrt (exp t)) t))) x) (sqrt z))) (* 1/2 (* (sqrt z) (* (sqrt 2) (pow (sqrt (exp t)) t))))))
(*.f64 (neg.f64 x) (fma.f64 (*.f64 (*.f64 #s(literal -1/2 binary64) (sqrt.f64 z)) (sqrt.f64 #s(literal 2 binary64))) (pow.f64 (sqrt.f64 (exp.f64 t)) t) (/.f64 (*.f64 (*.f64 (*.f64 (sqrt.f64 z) y) (sqrt.f64 #s(literal 2 binary64))) (pow.f64 (sqrt.f64 (exp.f64 t)) t)) x)))
(* 1/2 (* x (pow (sqrt (exp t)) t)))
(*.f64 (*.f64 #s(literal 1/2 binary64) x) (pow.f64 (sqrt.f64 (exp.f64 t)) t))
(* x (+ (* -1 (/ (* y (pow (sqrt (exp t)) t)) x)) (* 1/2 (pow (sqrt (exp t)) t))))
(*.f64 (neg.f64 x) (fma.f64 #s(literal -1/2 binary64) (pow.f64 (sqrt.f64 (exp.f64 t)) t) (*.f64 (pow.f64 (sqrt.f64 (exp.f64 t)) t) (/.f64 y x))))
(* 1/2 (* (* x (* (exp (* 1/2 (pow t 2))) (sqrt 2))) (sqrt z)))
(*.f64 (*.f64 x (*.f64 #s(literal 1/2 binary64) (sqrt.f64 z))) (*.f64 (sqrt.f64 (pow.f64 (exp.f64 t) t)) (sqrt.f64 #s(literal 2 binary64))))
(* x (+ (* -1 (* (/ (* y (* (exp (* 1/2 (pow t 2))) (sqrt 2))) x) (sqrt z))) (* 1/2 (* (sqrt z) (* (exp (* 1/2 (pow t 2))) (sqrt 2))))))
(*.f64 (neg.f64 x) (fma.f64 (*.f64 #s(literal -1/2 binary64) (sqrt.f64 z)) (*.f64 (sqrt.f64 (pow.f64 (exp.f64 t) t)) (sqrt.f64 #s(literal 2 binary64))) (*.f64 (*.f64 (*.f64 (sqrt.f64 (pow.f64 (exp.f64 t) t)) (sqrt.f64 #s(literal 2 binary64))) (/.f64 y x)) (sqrt.f64 z))))
(* 1/2 (* (* x (sqrt 2)) (sqrt z)))
(*.f64 (*.f64 x (*.f64 #s(literal 1/2 binary64) (sqrt.f64 z))) (sqrt.f64 #s(literal 2 binary64)))
(* x (+ (* -1 (* (/ (* y (sqrt 2)) x) (sqrt z))) (* 1/2 (* (sqrt z) (sqrt 2)))))
(*.f64 (neg.f64 x) (fma.f64 (*.f64 (sqrt.f64 z) y) (/.f64 (sqrt.f64 #s(literal 2 binary64)) x) (*.f64 (*.f64 #s(literal -1/2 binary64) (sqrt.f64 z)) (sqrt.f64 #s(literal 2 binary64)))))
(* 1/2 (* x (sqrt 2)))
(*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) x) #s(literal 1/2 binary64))
(* x (+ (* -1 (/ (* y (sqrt 2)) x)) (* 1/2 (sqrt 2))))
(*.f64 (neg.f64 x) (fma.f64 #s(literal -1/2 binary64) (sqrt.f64 #s(literal 2 binary64)) (/.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) y) x)))
(* x (+ 1/2 (* -1 (/ y x))))
(*.f64 (-.f64 #s(literal 1/2 binary64) (/.f64 y x)) x)
(* x (+ 1/2 (* 1/2 (* (pow t 2) (+ 1/2 (* 1/8 (pow t 2)))))))
(*.f64 (fma.f64 (fma.f64 #s(literal 1/16 binary64) (*.f64 t t) #s(literal 1/4 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) x)
(* x (- (+ 1/2 (+ (* -1 (/ (* (pow t 2) (* y (+ 1/2 (* 1/8 (pow t 2))))) x)) (* 1/2 (* (pow t 2) (+ 1/2 (* 1/8 (pow t 2))))))) (/ y x)))
(*.f64 (+.f64 (fma.f64 (fma.f64 #s(literal 1/16 binary64) (*.f64 t t) #s(literal 1/4 binary64)) (*.f64 t t) (/.f64 (*.f64 (fma.f64 (fma.f64 #s(literal -1/8 binary64) (*.f64 t t) #s(literal -1/2 binary64)) (*.f64 t t) #s(literal -1 binary64)) y) x)) #s(literal 1/2 binary64)) x)
(* 1/2 (* x (+ 1/2 (* 1/8 (pow t 2)))))
(*.f64 (fma.f64 #s(literal 1/16 binary64) (*.f64 t t) #s(literal 1/4 binary64)) x)
(* x (+ (* -1 (/ (* y (+ 1/2 (* 1/8 (pow t 2)))) x)) (* 1/2 (+ 1/2 (* 1/8 (pow t 2))))))
(*.f64 (fma.f64 (fma.f64 #s(literal -1/8 binary64) (*.f64 t t) #s(literal -1/2 binary64)) (/.f64 y x) (fma.f64 #s(literal 1/16 binary64) (*.f64 t t) #s(literal 1/4 binary64))) x)
(* 2 (* (/ 1 (* x (sqrt 2))) (sqrt (/ 1 z))))
(*.f64 (/.f64 #s(literal 2 binary64) (*.f64 (sqrt.f64 #s(literal 2 binary64)) x)) (sqrt.f64 (/.f64 #s(literal 1 binary64) z)))
(/ (+ (* 2 (* (sqrt (/ 1 z)) (/ 1 (sqrt 2)))) (* 4 (* (/ y (* x (sqrt 2))) (sqrt (/ 1 z))))) x)
(/.f64 (fma.f64 (/.f64 (sqrt.f64 (/.f64 #s(literal 1 binary64) z)) (sqrt.f64 #s(literal 2 binary64))) #s(literal 2 binary64) (*.f64 (*.f64 #s(literal 4 binary64) (/.f64 y (*.f64 (sqrt.f64 #s(literal 2 binary64)) x))) (sqrt.f64 (/.f64 #s(literal 1 binary64) z)))) x)
(/ (+ (* 2 (* (sqrt (/ 1 z)) (/ 1 (sqrt 2)))) (+ (* 4 (* (/ y (* x (sqrt 2))) (sqrt (/ 1 z)))) (* 8 (* (/ (pow y 2) (* (pow x 2) (sqrt 2))) (sqrt (/ 1 z)))))) x)
(/.f64 (fma.f64 (/.f64 (sqrt.f64 (/.f64 #s(literal 1 binary64) z)) (sqrt.f64 #s(literal 2 binary64))) #s(literal 2 binary64) (*.f64 (sqrt.f64 (/.f64 #s(literal 1 binary64) z)) (fma.f64 #s(literal 8 binary64) (*.f64 (/.f64 (/.f64 y x) x) (/.f64 y (sqrt.f64 #s(literal 2 binary64)))) (*.f64 #s(literal 4 binary64) (/.f64 y (*.f64 (sqrt.f64 #s(literal 2 binary64)) x)))))) x)
(/ (+ (* 2 (* (sqrt (/ 1 z)) (/ 1 (sqrt 2)))) (+ (* 4 (* (/ y (* x (sqrt 2))) (sqrt (/ 1 z)))) (+ (* 8 (* (/ (pow y 2) (* (pow x 2) (sqrt 2))) (sqrt (/ 1 z)))) (* 16 (* (/ (pow y 3) (* (pow x 3) (sqrt 2))) (sqrt (/ 1 z))))))) x)
(/.f64 (fma.f64 (/.f64 (sqrt.f64 (/.f64 #s(literal 1 binary64) z)) (sqrt.f64 #s(literal 2 binary64))) #s(literal 2 binary64) (fma.f64 (/.f64 (*.f64 #s(literal 16 binary64) (pow.f64 (/.f64 y x) #s(literal 3 binary64))) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 (/.f64 #s(literal 1 binary64) z)) (*.f64 (sqrt.f64 (/.f64 #s(literal 1 binary64) z)) (fma.f64 #s(literal 8 binary64) (*.f64 (/.f64 (/.f64 y x) x) (/.f64 y (sqrt.f64 #s(literal 2 binary64)))) (*.f64 #s(literal 4 binary64) (/.f64 y (*.f64 (sqrt.f64 #s(literal 2 binary64)) x))))))) x)
(* x (+ 1/2 (/ y x)))
(*.f64 (+.f64 (/.f64 y x) #s(literal 1/2 binary64)) x)
(* 1/4 (pow x 2))
(*.f64 (*.f64 x x) #s(literal 1/4 binary64))
(* (pow x 2) (+ 1/4 (* -1 (/ (pow y 2) (pow x 2)))))
(*.f64 (fma.f64 (neg.f64 y) (/.f64 (/.f64 y x) x) #s(literal 1/4 binary64)) (*.f64 x x))
(* 1/4 (* (* (pow x 2) (sqrt 2)) (sqrt z)))
(*.f64 (*.f64 #s(literal 1/4 binary64) (sqrt.f64 z)) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) x) x))
(* (pow x 2) (+ (* -1 (* (/ (* (pow y 2) (sqrt 2)) (pow x 2)) (sqrt z))) (* 1/4 (* (sqrt z) (sqrt 2)))))
(*.f64 (fma.f64 (*.f64 #s(literal 1/4 binary64) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 z) (/.f64 (*.f64 (neg.f64 y) (*.f64 (*.f64 (sqrt.f64 z) y) (sqrt.f64 #s(literal 2 binary64)))) (*.f64 x x))) (*.f64 x x))
(* -1 (* x (+ (* -1/2 (* (sqrt z) (* (sqrt 2) (pow (sqrt (exp t)) t)))) (* (/ (* y (* (sqrt 2) (pow (sqrt (exp t)) t))) x) (sqrt z)))))
(*.f64 (neg.f64 x) (fma.f64 (*.f64 (*.f64 #s(literal -1/2 binary64) (sqrt.f64 z)) (sqrt.f64 #s(literal 2 binary64))) (pow.f64 (sqrt.f64 (exp.f64 t)) t) (/.f64 (*.f64 (*.f64 (*.f64 (sqrt.f64 z) y) (sqrt.f64 #s(literal 2 binary64))) (pow.f64 (sqrt.f64 (exp.f64 t)) t)) x)))
(* -1 (* x (+ (* -1/2 (pow (sqrt (exp t)) t)) (/ (* y (pow (sqrt (exp t)) t)) x))))
(*.f64 (neg.f64 x) (fma.f64 #s(literal -1/2 binary64) (pow.f64 (sqrt.f64 (exp.f64 t)) t) (*.f64 (pow.f64 (sqrt.f64 (exp.f64 t)) t) (/.f64 y x))))
(* -1 (* x (+ (* -1/2 (* (sqrt z) (* (exp (* 1/2 (pow t 2))) (sqrt 2)))) (* (/ (* y (* (exp (* 1/2 (pow t 2))) (sqrt 2))) x) (sqrt z)))))
(*.f64 (neg.f64 x) (fma.f64 (*.f64 #s(literal -1/2 binary64) (sqrt.f64 z)) (*.f64 (sqrt.f64 (pow.f64 (exp.f64 t) t)) (sqrt.f64 #s(literal 2 binary64))) (*.f64 (*.f64 (*.f64 (sqrt.f64 (pow.f64 (exp.f64 t) t)) (sqrt.f64 #s(literal 2 binary64))) (/.f64 y x)) (sqrt.f64 z))))
(* -1 (* x (+ (* -1/2 (* (sqrt z) (sqrt 2))) (* (/ (* y (sqrt 2)) x) (sqrt z)))))
(*.f64 (neg.f64 x) (fma.f64 (*.f64 (sqrt.f64 z) y) (/.f64 (sqrt.f64 #s(literal 2 binary64)) x) (*.f64 (*.f64 #s(literal -1/2 binary64) (sqrt.f64 z)) (sqrt.f64 #s(literal 2 binary64)))))
(* -1 (* x (+ (* -1/2 (sqrt 2)) (/ (* y (sqrt 2)) x))))
(*.f64 (neg.f64 x) (fma.f64 #s(literal -1/2 binary64) (sqrt.f64 #s(literal 2 binary64)) (/.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) y) x)))
(* -1 (* x (- (/ y x) 1/2)))
(*.f64 (neg.f64 x) (-.f64 (/.f64 y x) #s(literal 1/2 binary64)))
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(*.f64 (*.f64 (neg.f64 (sqrt.f64 z)) (sqrt.f64 (pow.f64 (exp.f64 t) t))) (/.f64 (*.f64 (*.f64 (sqrt.f64 #s(literal -1 binary64)) (fma.f64 (*.f64 #s(literal 1/4 binary64) x) x (*.f64 (neg.f64 y) y))) (sqrt.f64 #s(literal -2 binary64))) (fma.f64 #s(literal 1/2 binary64) x y)))
(* (sqrt (/ 1 z)) (/ (* (sqrt -1) (+ y (* 1/2 x))) (* (sqrt -2) (+ (* -1 (pow y 2)) (* 1/4 (pow x 2))))))
(*.f64 (*.f64 (sqrt.f64 (/.f64 #s(literal 1 binary64) z)) (sqrt.f64 #s(literal -1 binary64))) (/.f64 (/.f64 (fma.f64 #s(literal 1/2 binary64) x y) (fma.f64 (*.f64 #s(literal 1/4 binary64) x) x (*.f64 (neg.f64 y) y))) (sqrt.f64 #s(literal -2 binary64))))
(* -1 (* (sqrt z) (* (sqrt -2) (* (sqrt -1) (+ (* -1 (pow y 2)) (* 1/4 (pow x 2)))))))
(*.f64 (neg.f64 (sqrt.f64 #s(literal -2 binary64))) (*.f64 (*.f64 (sqrt.f64 #s(literal -1 binary64)) (fma.f64 (*.f64 #s(literal 1/4 binary64) x) x (*.f64 (neg.f64 y) y))) (sqrt.f64 z)))
(+ (* 1/2 (* (* (pow t 2) (* (sqrt 2) (- (* 1/2 x) y))) (sqrt z))) (* (sqrt z) (* (sqrt 2) (- (* 1/2 x) y))))
(*.f64 (sqrt.f64 z) (fma.f64 (*.f64 (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y))))
(+ (* (sqrt z) (* (sqrt 2) (- (* 1/2 x) y))) (* (pow t 2) (+ (* 1/8 (* (* (pow t 2) (* (sqrt 2) (- (* 1/2 x) y))) (sqrt z))) (* 1/2 (* (sqrt z) (* (sqrt 2) (- (* 1/2 x) y)))))))
(fma.f64 (fma.f64 (*.f64 #s(literal 1/8 binary64) (sqrt.f64 z)) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)) (*.f64 t t)) (*.f64 (*.f64 #s(literal 1/2 binary64) (sqrt.f64 z)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)))) (*.f64 t t) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)) (sqrt.f64 z)))
(+ (* (sqrt z) (* (sqrt 2) (- (* 1/2 x) y))) (* (pow t 2) (+ (* 1/2 (* (sqrt z) (* (sqrt 2) (- (* 1/2 x) y)))) (* (pow t 2) (+ (* 1/48 (* (* (pow t 2) (* (sqrt 2) (- (* 1/2 x) y))) (sqrt z))) (* 1/8 (* (sqrt z) (* (sqrt 2) (- (* 1/2 x) y)))))))))
(fma.f64 (sqrt.f64 z) (fma.f64 (*.f64 (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y))) (*.f64 (pow.f64 t #s(literal 4 binary64)) (fma.f64 (*.f64 #s(literal 1/48 binary64) (sqrt.f64 z)) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)) (*.f64 t t)) (*.f64 (*.f64 #s(literal 1/8 binary64) (sqrt.f64 z)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y))))))
(- (+ (* 1/2 x) (* 1/2 (* (pow t 2) (- (* 1/2 x) y)))) y)
(fma.f64 #s(literal 1/2 binary64) (fma.f64 (*.f64 t t) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y) x) (neg.f64 y))
(- (+ (* 1/2 x) (* (pow t 2) (+ (* 1/8 (* (pow t 2) (- (* 1/2 x) y))) (* 1/2 (- (* 1/2 x) y))))) y)
(fma.f64 (*.f64 (-.f64 (*.f64 #s(literal 1/2 binary64) x) y) (fma.f64 #s(literal 1/8 binary64) (*.f64 t t) #s(literal 1/2 binary64))) (*.f64 t t) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y))
(- (+ (* 1/2 x) (* (pow t 2) (+ (* 1/2 (- (* 1/2 x) y)) (* (pow t 2) (+ (* 1/48 (* (pow t 2) (- (* 1/2 x) y))) (* 1/8 (- (* 1/2 x) y))))))) y)
(-.f64 (fma.f64 #s(literal 1/2 binary64) (fma.f64 (*.f64 t t) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y) x) (*.f64 (pow.f64 t #s(literal 4 binary64)) (*.f64 (-.f64 (*.f64 #s(literal 1/2 binary64) x) y) (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64))))) y)
1
#s(literal 1 binary64)
(+ 1 (* 1/2 (pow t 2)))
(fma.f64 (*.f64 t t) #s(literal 1/2 binary64) #s(literal 1 binary64))
(+ 1 (* (pow t 2) (+ 1/2 (* 1/8 (pow t 2)))))
(fma.f64 (fma.f64 #s(literal 1/8 binary64) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))
(+ 1 (* (pow t 2) (+ 1/2 (* (pow t 2) (+ 1/8 (* 1/48 (pow t 2)))))))
(fma.f64 (fma.f64 (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))
(* 1/2 (- (* 1/2 x) y))
(*.f64 (-.f64 (*.f64 #s(literal 1/2 binary64) x) y) #s(literal 1/2 binary64))
(+ (* 1/8 (* (pow t 2) (- (* 1/2 x) y))) (* 1/2 (- (* 1/2 x) y)))
(*.f64 (-.f64 (*.f64 #s(literal 1/2 binary64) x) y) (fma.f64 #s(literal 1/8 binary64) (*.f64 t t) #s(literal 1/2 binary64)))
(+ (* 1/2 (* (/ (* (pow t 2) (* (sqrt 2) (+ (* -1 (pow y 2)) (* 1/4 (pow x 2))))) (+ y (* 1/2 x))) (sqrt z))) (* (sqrt z) (/ (* (sqrt 2) (+ (* -1 (pow y 2)) (* 1/4 (pow x 2)))) (+ y (* 1/2 x)))))
(*.f64 (sqrt.f64 z) (fma.f64 (*.f64 (*.f64 t t) #s(literal 1/2 binary64)) (/.f64 (*.f64 (fma.f64 (*.f64 #s(literal 1/4 binary64) x) x (*.f64 (neg.f64 y) y)) (sqrt.f64 #s(literal 2 binary64))) (fma.f64 #s(literal 1/2 binary64) x y)) (/.f64 (*.f64 (fma.f64 (*.f64 #s(literal 1/4 binary64) x) x (*.f64 (neg.f64 y) y)) (sqrt.f64 #s(literal 2 binary64))) (fma.f64 #s(literal 1/2 binary64) x y))))
(+ (* (sqrt z) (/ (* (sqrt 2) (+ (* -1 (pow y 2)) (* 1/4 (pow x 2)))) (+ y (* 1/2 x)))) (* (pow t 2) (+ (* 1/8 (* (/ (* (pow t 2) (* (sqrt 2) (+ (* -1 (pow y 2)) (* 1/4 (pow x 2))))) (+ y (* 1/2 x))) (sqrt z))) (* 1/2 (* (sqrt z) (/ (* (sqrt 2) (+ (* -1 (pow y 2)) (* 1/4 (pow x 2)))) (+ y (* 1/2 x))))))))
(fma.f64 (fma.f64 (*.f64 #s(literal 1/8 binary64) (sqrt.f64 z)) (*.f64 (*.f64 t t) (/.f64 (*.f64 (fma.f64 (*.f64 #s(literal 1/4 binary64) x) x (*.f64 (neg.f64 y) y)) (sqrt.f64 #s(literal 2 binary64))) (fma.f64 #s(literal 1/2 binary64) x y))) (*.f64 (*.f64 #s(literal 1/2 binary64) (sqrt.f64 z)) (/.f64 (*.f64 (fma.f64 (*.f64 #s(literal 1/4 binary64) x) x (*.f64 (neg.f64 y) y)) (sqrt.f64 #s(literal 2 binary64))) (fma.f64 #s(literal 1/2 binary64) x y)))) (*.f64 t t) (*.f64 (/.f64 (*.f64 (fma.f64 (*.f64 #s(literal 1/4 binary64) x) x (*.f64 (neg.f64 y) y)) (sqrt.f64 #s(literal 2 binary64))) (fma.f64 #s(literal 1/2 binary64) x y)) (sqrt.f64 z)))
(+ (* (sqrt z) (/ (* (sqrt 2) (+ (* -1 (pow y 2)) (* 1/4 (pow x 2)))) (+ y (* 1/2 x)))) (* (pow t 2) (+ (* 1/2 (* (sqrt z) (/ (* (sqrt 2) (+ (* -1 (pow y 2)) (* 1/4 (pow x 2)))) (+ y (* 1/2 x))))) (* (pow t 2) (+ (* 1/48 (* (/ (* (pow t 2) (* (sqrt 2) (+ (* -1 (pow y 2)) (* 1/4 (pow x 2))))) (+ y (* 1/2 x))) (sqrt z))) (* 1/8 (* (sqrt z) (/ (* (sqrt 2) (+ (* -1 (pow y 2)) (* 1/4 (pow x 2)))) (+ y (* 1/2 x))))))))))
(fma.f64 (sqrt.f64 z) (fma.f64 (*.f64 (*.f64 t t) #s(literal 1/2 binary64)) (/.f64 (*.f64 (fma.f64 (*.f64 #s(literal 1/4 binary64) x) x (*.f64 (neg.f64 y) y)) (sqrt.f64 #s(literal 2 binary64))) (fma.f64 #s(literal 1/2 binary64) x y)) (/.f64 (*.f64 (fma.f64 (*.f64 #s(literal 1/4 binary64) x) x (*.f64 (neg.f64 y) y)) (sqrt.f64 #s(literal 2 binary64))) (fma.f64 #s(literal 1/2 binary64) x y))) (*.f64 (pow.f64 t #s(literal 4 binary64)) (fma.f64 (*.f64 #s(literal 1/48 binary64) (sqrt.f64 z)) (*.f64 (*.f64 t t) (/.f64 (*.f64 (fma.f64 (*.f64 #s(literal 1/4 binary64) x) x (*.f64 (neg.f64 y) y)) (sqrt.f64 #s(literal 2 binary64))) (fma.f64 #s(literal 1/2 binary64) x y))) (*.f64 (*.f64 #s(literal 1/8 binary64) (sqrt.f64 z)) (/.f64 (*.f64 (fma.f64 (*.f64 #s(literal 1/4 binary64) x) x (*.f64 (neg.f64 y) y)) (sqrt.f64 #s(literal 2 binary64))) (fma.f64 #s(literal 1/2 binary64) x y))))))
1/8
#s(literal 1/8 binary64)
(+ 1/8 (* 1/48 (pow t 2)))
(fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64))
1/2
#s(literal 1/2 binary64)
(+ 1/2 (* 1/8 (pow t 2)))
(fma.f64 #s(literal 1/8 binary64) (*.f64 t t) #s(literal 1/2 binary64))
(+ 1/2 (* (pow t 2) (+ 1/8 (* 1/48 (pow t 2)))))
(fma.f64 (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64))
(* (- (* 1/2 x) y) (pow (sqrt (exp t)) t))
(*.f64 (-.f64 (*.f64 #s(literal 1/2 binary64) x) y) (pow.f64 (sqrt.f64 (exp.f64 t)) t))
(pow (sqrt (exp t)) t)
(pow.f64 (sqrt.f64 (exp.f64 t)) t)
(* 1/48 (pow t 6))
(*.f64 (pow.f64 t #s(literal 6 binary64)) #s(literal 1/48 binary64))
(* (pow t 6) (+ 1/48 (* 1/8 (/ 1 (pow t 2)))))
(*.f64 (+.f64 (/.f64 #s(literal 1/8 binary64) (*.f64 t t)) #s(literal 1/48 binary64)) (pow.f64 t #s(literal 6 binary64)))
(* (pow t 6) (+ 1/48 (+ (/ 1/2 (pow t 4)) (* 1/8 (/ 1 (pow t 2))))))
(*.f64 (+.f64 (+.f64 (/.f64 #s(literal 1/2 binary64) (pow.f64 t #s(literal 4 binary64))) #s(literal 1/48 binary64)) (/.f64 #s(literal 1/8 binary64) (*.f64 t t))) (pow.f64 t #s(literal 6 binary64)))
(* (pow t 6) (+ 1/48 (+ (/ 1/2 (pow t 4)) (+ (* 1/8 (/ 1 (pow t 2))) (/ 1 (pow t 6))))))
(fma.f64 (pow.f64 t #s(literal 6 binary64)) #s(literal 1/48 binary64) (fma.f64 (+.f64 (/.f64 #s(literal 1/2 binary64) (pow.f64 t #s(literal 4 binary64))) (/.f64 #s(literal 1/8 binary64) (*.f64 t t))) (pow.f64 t #s(literal 6 binary64)) #s(literal 1 binary64)))
(* 1/8 (* (pow t 4) (- (* 1/2 x) y)))
(*.f64 (*.f64 (pow.f64 t #s(literal 4 binary64)) #s(literal 1/8 binary64)) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y))
(* (pow t 4) (+ (* 1/8 (- (* 1/2 x) y)) (* 1/2 (/ (- (* 1/2 x) y) (pow t 2)))))
(*.f64 (fma.f64 (/.f64 (-.f64 (*.f64 #s(literal 1/2 binary64) x) y) t) (/.f64 #s(literal 1/2 binary64) t) (*.f64 #s(literal 1/8 binary64) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y))) (pow.f64 t #s(literal 4 binary64)))
(* (pow t 4) (- (+ (* 1/8 (- (* 1/2 x) y)) (+ (* 1/2 (/ x (pow t 4))) (* 1/2 (/ (- (* 1/2 x) y) (pow t 2))))) (/ y (pow t 4))))
(*.f64 (fma.f64 #s(literal 1/8 binary64) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y) (fma.f64 #s(literal 1/2 binary64) (+.f64 (/.f64 x (pow.f64 t #s(literal 4 binary64))) (/.f64 (/.f64 (-.f64 (*.f64 #s(literal 1/2 binary64) x) y) t) t)) (/.f64 (neg.f64 y) (pow.f64 t #s(literal 4 binary64))))) (pow.f64 t #s(literal 4 binary64)))
(* 1/8 (* (pow t 2) (- (* 1/2 x) y)))
(*.f64 (*.f64 (*.f64 #s(literal 1/8 binary64) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)) t) t)
(* (pow t 2) (+ (* 1/8 (- (* 1/2 x) y)) (* 1/2 (/ (- (* 1/2 x) y) (pow t 2)))))
(*.f64 (fma.f64 (/.f64 (-.f64 (*.f64 #s(literal 1/2 binary64) x) y) t) (/.f64 #s(literal 1/2 binary64) t) (*.f64 #s(literal 1/8 binary64) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y))) (*.f64 t t))
(* 1/48 (pow t 2))
(*.f64 #s(literal 1/48 binary64) (*.f64 t t))
(* (pow t 2) (+ 1/48 (* 1/8 (/ 1 (pow t 2)))))
(fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64))
(* 1/48 (pow t 4))
(*.f64 (pow.f64 t #s(literal 4 binary64)) #s(literal 1/48 binary64))
(* (pow t 4) (+ 1/48 (* 1/8 (/ 1 (pow t 2)))))
(*.f64 (pow.f64 t #s(literal 4 binary64)) (+.f64 (/.f64 #s(literal 1/8 binary64) (*.f64 t t)) #s(literal 1/48 binary64)))
(* (pow t 4) (+ 1/48 (+ (/ 1/2 (pow t 4)) (* 1/8 (/ 1 (pow t 2))))))
(*.f64 (+.f64 (+.f64 (/.f64 #s(literal 1/2 binary64) (pow.f64 t #s(literal 4 binary64))) #s(literal 1/48 binary64)) (/.f64 #s(literal 1/8 binary64) (*.f64 t t))) (pow.f64 t #s(literal 4 binary64)))
(exp (* 1/2 (pow t 2)))
(sqrt.f64 (pow.f64 (exp.f64 t) t))
(* 1/2 (pow t 2))
(*.f64 (*.f64 t t) #s(literal 1/2 binary64))
(* (pow t 2) (+ 1/2 (/ 1 (pow t 2))))
(fma.f64 (*.f64 t t) #s(literal 1/2 binary64) #s(literal 1 binary64))
(* 1/8 (pow t 2))
(*.f64 #s(literal 1/8 binary64) (*.f64 t t))
(* (pow t 2) (+ 1/8 (* 1/2 (/ 1 (pow t 2)))))
(fma.f64 #s(literal 1/8 binary64) (*.f64 t t) #s(literal 1/2 binary64))

rewrite218.0ms (1.9%)

Memory
37.3MiB live, 265.4MiB allocated
Iterations

Useful iterations: 1 (0.0ms)

IterNodesCost
061448
0103430
1344412
22218412
08437412
Stop Event
iter limit
node limit
iter limit
Counts
28 → 923
Calls
Call 1
Inputs
(*.f64 (*.f64 #s(approx (pow (sqrt (exp t)) t) (fma.f64 (fma.f64 (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
(*.f64 #s(approx (pow (sqrt (exp t)) t) (fma.f64 (fma.f64 (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y))
#s(approx (pow (sqrt (exp t)) t) (fma.f64 (fma.f64 (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64)))
(fma.f64 (fma.f64 (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))
(*.f64 (*.f64 (*.f64 #s(approx (- (* x 1/2) y) (neg.f64 y)) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 z)) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 #s(approx (- (* x 1/2) y) (neg.f64 y)) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 z))
(*.f64 #s(approx (- (* x 1/2) y) (neg.f64 y)) (sqrt.f64 #s(literal 2 binary64)))
#s(approx (- (* x 1/2) y) (neg.f64 y))
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) (fma.f64 (*.f64 t t) #s(literal 1/2 binary64) #s(literal 1 binary64))))
(*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64))))
(-.f64 (*.f64 x #s(literal 1/2 binary64)) y)
(*.f64 x #s(literal 1/2 binary64))
(fma.f64 (*.f64 (-.f64 (*.f64 #s(literal 1/2 binary64) x) y) (fma.f64 #s(literal 1/8 binary64) (*.f64 t t) #s(literal 1/2 binary64))) (*.f64 t t) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y))
(*.f64 #s(approx (* (pow (sqrt (exp t)) t) (- (* 1/2 x) y)) (fma.f64 (*.f64 (-.f64 (*.f64 #s(literal 1/2 binary64) x) y) (fma.f64 #s(literal 1/8 binary64) (*.f64 t t) #s(literal 1/2 binary64))) (*.f64 t t) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y))) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
#s(approx (* (pow (sqrt (exp t)) t) (- (* 1/2 x) y)) (fma.f64 (*.f64 (-.f64 (*.f64 #s(literal 1/2 binary64) x) y) (fma.f64 #s(literal 1/8 binary64) (*.f64 t t) #s(literal 1/2 binary64))) (*.f64 t t) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)))
(*.f64 (-.f64 (*.f64 #s(literal 1/2 binary64) x) y) (fma.f64 #s(literal 1/8 binary64) (*.f64 t t) #s(literal 1/2 binary64)))
(/.f64 #s(literal 1 binary64) (/.f64 (fma.f64 x #s(literal 1/2 binary64) y) (*.f64 (fma.f64 (*.f64 x x) #s(literal 1/4 binary64) (*.f64 (neg.f64 y) y)) (sqrt.f64 (*.f64 z #s(literal 2 binary64))))))
(*.f64 (/.f64 #s(literal 1 binary64) (/.f64 (fma.f64 x #s(literal 1/2 binary64) y) (*.f64 (fma.f64 (*.f64 x x) #s(literal 1/4 binary64) (*.f64 (neg.f64 y) y)) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(/.f64 (fma.f64 x #s(literal 1/2 binary64) y) (*.f64 (fma.f64 (*.f64 x x) #s(literal 1/4 binary64) (*.f64 (neg.f64 y) y)) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))))
(fma.f64 x #s(literal 1/2 binary64) y)
(fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64))
(fma.f64 (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64))
#s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64))
#s(approx (exp (/ (* t t) 2)) (fma.f64 (*.f64 t t) #s(literal 1/2 binary64) #s(literal 1 binary64)))
(fma.f64 (*.f64 t t) #s(literal 1/2 binary64) #s(literal 1 binary64))
(fma.f64 #s(literal 1/8 binary64) (*.f64 t t) #s(literal 1/2 binary64))
(fma.f64 (*.f64 x x) #s(literal 1/4 binary64) (*.f64 (neg.f64 y) y))
(*.f64 (fma.f64 (*.f64 x x) #s(literal 1/4 binary64) (*.f64 (neg.f64 y) y)) (sqrt.f64 (*.f64 z #s(literal 2 binary64))))
Outputs
(*.f64 (*.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) #s(approx (pow (sqrt (exp t)) t) (fma.f64 (fma.f64 (fma.f64 (*.f64 t t) #s(literal 1/48 binary64) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64)))) (-.f64 (*.f64 x #s(literal 1/2 binary64)) y))
(*.f64 (*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) #s(approx (pow (sqrt (exp t)) t) (fma.f64 (fma.f64 (fma.f64 (*.f64 t t) #s(literal 1/48 binary64) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64)))) (sqrt.f64 z)) (sqrt.f64 #s(literal 2 binary64)))
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(fma.f64 (*.f64 (*.f64 x #s(literal 1/2 binary64)) x) #s(literal 1/2 binary64) (*.f64 (neg.f64 y) y))
(fma.f64 (*.f64 (*.f64 x #s(literal 1/2 binary64)) #s(literal 1/2 binary64)) x (*.f64 (neg.f64 y) y))
(fma.f64 (*.f64 #s(literal 1/4 binary64) x) x (*.f64 (neg.f64 y) y))
(fma.f64 #s(literal -1 binary64) (*.f64 y y) (*.f64 #s(literal 1/4 binary64) (*.f64 x x)))
(fma.f64 #s(literal 1/4 binary64) (*.f64 x x) (*.f64 (neg.f64 y) y))
(fma.f64 (*.f64 x x) #s(literal 1/4 binary64) (*.f64 (neg.f64 y) y))
(fma.f64 (neg.f64 y) y (*.f64 #s(literal 1/4 binary64) (*.f64 x x)))
(fma.f64 y (neg.f64 y) (*.f64 #s(literal 1/4 binary64) (*.f64 x x)))
(fma.f64 (*.f64 x #s(literal 1/2 binary64)) (*.f64 x #s(literal 1/2 binary64)) (*.f64 (neg.f64 y) y))
(fma.f64 x (*.f64 #s(literal 1/2 binary64) (*.f64 x #s(literal 1/2 binary64))) (*.f64 (neg.f64 y) y))
(fma.f64 x (*.f64 #s(literal 1/4 binary64) x) (*.f64 (neg.f64 y) y))
(fma.f64 #s(literal 1/2 binary64) (*.f64 x (*.f64 x #s(literal 1/2 binary64))) (*.f64 (neg.f64 y) y))
(-.f64 (/.f64 (pow.f64 y #s(literal 4 binary64)) (-.f64 (*.f64 (neg.f64 y) y) (*.f64 #s(literal 1/4 binary64) (*.f64 x x)))) (/.f64 (pow.f64 (*.f64 x #s(literal 1/2 binary64)) #s(literal 4 binary64)) (-.f64 (*.f64 (neg.f64 y) y) (*.f64 #s(literal 1/4 binary64) (*.f64 x x)))))
(-.f64 (/.f64 (pow.f64 (*.f64 x #s(literal 1/2 binary64)) #s(literal 6 binary64)) (fma.f64 (pow.f64 x #s(literal 4 binary64)) #s(literal 1/16 binary64) (+.f64 (pow.f64 y #s(literal 4 binary64)) (pow.f64 (*.f64 y (*.f64 x #s(literal 1/2 binary64))) #s(literal 2 binary64))))) (/.f64 (pow.f64 y #s(literal 6 binary64)) (fma.f64 (pow.f64 x #s(literal 4 binary64)) #s(literal 1/16 binary64) (+.f64 (pow.f64 y #s(literal 4 binary64)) (pow.f64 (*.f64 y (*.f64 x #s(literal 1/2 binary64))) #s(literal 2 binary64))))))
(-.f64 (/.f64 (pow.f64 (*.f64 x #s(literal 1/2 binary64)) #s(literal 4 binary64)) (fma.f64 #s(literal 1/4 binary64) (*.f64 x x) (*.f64 y y))) (/.f64 (pow.f64 y #s(literal 4 binary64)) (fma.f64 #s(literal 1/4 binary64) (*.f64 x x) (*.f64 y y))))
(-.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 x x)) (*.f64 y y))
(+.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 x x)) (*.f64 (neg.f64 y) y))
(+.f64 (*.f64 (neg.f64 y) y) (*.f64 #s(literal 1/4 binary64) (*.f64 x x)))
(*.f64 (*.f64 (fma.f64 #s(literal 1/4 binary64) (*.f64 x x) (*.f64 (neg.f64 y) y)) (sqrt.f64 z)) (sqrt.f64 #s(literal 2 binary64)))
(*.f64 (*.f64 (fma.f64 #s(literal 1/4 binary64) (*.f64 x x) (*.f64 (neg.f64 y) y)) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 z))
(*.f64 (fma.f64 #s(literal 1/4 binary64) (*.f64 x x) (*.f64 (neg.f64 y) y)) (sqrt.f64 (*.f64 z #s(literal 2 binary64))))
(*.f64 (sqrt.f64 z) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (fma.f64 #s(literal 1/4 binary64) (*.f64 x x) (*.f64 (neg.f64 y) y))))
(*.f64 (sqrt.f64 #s(literal 2 binary64)) (*.f64 (sqrt.f64 z) (fma.f64 #s(literal 1/4 binary64) (*.f64 x x) (*.f64 (neg.f64 y) y))))
(*.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (fma.f64 #s(literal 1/4 binary64) (*.f64 x x) (*.f64 (neg.f64 y) y)))
(/.f64 (neg.f64 (*.f64 (-.f64 (pow.f64 (*.f64 x #s(literal 1/2 binary64)) #s(literal 4 binary64)) (pow.f64 y #s(literal 4 binary64))) (sqrt.f64 (*.f64 z #s(literal 2 binary64))))) (neg.f64 (fma.f64 #s(literal 1/4 binary64) (*.f64 x x) (*.f64 y y))))
(/.f64 (neg.f64 (*.f64 (fma.f64 (pow.f64 x #s(literal 6 binary64)) #s(literal 1/64 binary64) (neg.f64 (pow.f64 y #s(literal 6 binary64)))) (sqrt.f64 (*.f64 z #s(literal 2 binary64))))) (neg.f64 (fma.f64 (pow.f64 x #s(literal 4 binary64)) #s(literal 1/16 binary64) (-.f64 (pow.f64 y #s(literal 4 binary64)) (neg.f64 (pow.f64 (*.f64 y (*.f64 x #s(literal 1/2 binary64))) #s(literal 2 binary64)))))))
(/.f64 (neg.f64 (*.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (-.f64 (pow.f64 (*.f64 x #s(literal 1/2 binary64)) #s(literal 4 binary64)) (pow.f64 y #s(literal 4 binary64))))) (neg.f64 (fma.f64 #s(literal 1/4 binary64) (*.f64 x x) (*.f64 y y))))
(/.f64 (neg.f64 (*.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (fma.f64 (pow.f64 x #s(literal 6 binary64)) #s(literal 1/64 binary64) (neg.f64 (pow.f64 y #s(literal 6 binary64)))))) (neg.f64 (fma.f64 (pow.f64 x #s(literal 4 binary64)) #s(literal 1/16 binary64) (-.f64 (pow.f64 y #s(literal 4 binary64)) (neg.f64 (pow.f64 (*.f64 y (*.f64 x #s(literal 1/2 binary64))) #s(literal 2 binary64)))))))
(/.f64 (*.f64 (-.f64 (pow.f64 (*.f64 x #s(literal 1/2 binary64)) #s(literal 4 binary64)) (pow.f64 y #s(literal 4 binary64))) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) (fma.f64 #s(literal 1/4 binary64) (*.f64 x x) (*.f64 y y)))
(/.f64 (*.f64 (fma.f64 (pow.f64 x #s(literal 6 binary64)) #s(literal 1/64 binary64) (neg.f64 (pow.f64 y #s(literal 6 binary64)))) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) (fma.f64 (pow.f64 x #s(literal 4 binary64)) #s(literal 1/16 binary64) (-.f64 (pow.f64 y #s(literal 4 binary64)) (neg.f64 (pow.f64 (*.f64 y (*.f64 x #s(literal 1/2 binary64))) #s(literal 2 binary64))))))
(/.f64 (*.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (-.f64 (pow.f64 (*.f64 x #s(literal 1/2 binary64)) #s(literal 4 binary64)) (pow.f64 y #s(literal 4 binary64)))) (fma.f64 #s(literal 1/4 binary64) (*.f64 x x) (*.f64 y y)))
(/.f64 (*.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (fma.f64 (pow.f64 x #s(literal 6 binary64)) #s(literal 1/64 binary64) (neg.f64 (pow.f64 y #s(literal 6 binary64))))) (fma.f64 (pow.f64 x #s(literal 4 binary64)) #s(literal 1/16 binary64) (-.f64 (pow.f64 y #s(literal 4 binary64)) (neg.f64 (pow.f64 (*.f64 y (*.f64 x #s(literal 1/2 binary64))) #s(literal 2 binary64))))))
(fma.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 x x)) (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (*.f64 (*.f64 (neg.f64 y) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))))
(fma.f64 (*.f64 (neg.f64 y) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 x x)) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))))
(fma.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (*.f64 #s(literal 1/4 binary64) (*.f64 x x)) (*.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (*.f64 (neg.f64 y) y)))
(fma.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (*.f64 (neg.f64 y) y) (*.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (*.f64 #s(literal 1/4 binary64) (*.f64 x x))))
(+.f64 (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 x x)) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) (*.f64 (*.f64 (neg.f64 y) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))))
(+.f64 (*.f64 (*.f64 (neg.f64 y) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) (*.f64 (*.f64 #s(literal 1/4 binary64) (*.f64 x x)) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))))
(+.f64 (*.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (*.f64 #s(literal 1/4 binary64) (*.f64 x x))) (*.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (*.f64 (neg.f64 y) y)))
(+.f64 (*.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (*.f64 (neg.f64 y) y)) (*.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (*.f64 #s(literal 1/4 binary64) (*.f64 x x))))

eval267.0ms (2.3%)

Memory
-13.0MiB live, 283.7MiB allocated
Compiler

Compiled 47 034 to 4 624 computations (90.2% saved)

prune125.0ms (1.1%)

Memory
3.0MiB live, 88.7MiB allocated
Pruning

43 alts after pruning (37 fresh and 6 done)

PrunedKeptTotal
New95322975
Fresh91524
Picked415
Done055
Total966431 009
Accuracy
100.0%
Counts
1 009 → 43
Alt Table
Click to see full alt table
StatusAccuracyProgram
57.0%
(/.f64 (*.f64 #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)) (fma.f64 x #s(literal 1/2 binary64) (neg.f64 y))) (/.f64 #s(literal 1 binary64) (*.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) #s(literal 1 binary64))))
57.1%
(/.f64 (neg.f64 #s(approx (pow (sqrt (exp t)) t) #s(literal 1 binary64))) (/.f64 #s(literal -1 binary64) (*.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (-.f64 (*.f64 x #s(literal 1/2 binary64)) y))))
46.0%
(*.f64 (/.f64 (fma.f64 (*.f64 x x) #s(literal 1/4 binary64) (*.f64 (neg.f64 y) y)) (/.f64 (fma.f64 x #s(literal 1/2 binary64) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64))))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
46.4%
(*.f64 (/.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (fma.f64 x #s(literal 1/2 binary64) y)) (*.f64 (fma.f64 (*.f64 x x) #s(literal 1/4 binary64) (*.f64 (neg.f64 y) y)) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64))))
42.0%
(*.f64 (/.f64 #s(literal 1 binary64) (/.f64 (fma.f64 x #s(literal 1/2 binary64) y) (*.f64 #s(approx (+ (* (* x x) 1/4) (* (neg y) y)) (*.f64 (fma.f64 (neg.f64 y) (/.f64 (/.f64 y x) x) #s(literal 1/4 binary64)) (*.f64 x x))) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
28.6%
(*.f64 (/.f64 #s(literal 1 binary64) (/.f64 (fma.f64 x #s(literal 1/2 binary64) y) (*.f64 #s(approx (+ (* (* x x) 1/4) (* (neg y) y)) (*.f64 (*.f64 x x) #s(literal 1/4 binary64))) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
43.6%
(*.f64 (/.f64 #s(literal 1 binary64) (/.f64 (fma.f64 x #s(literal 1/2 binary64) y) #s(approx (* (+ (* (* x x) 1/4) (* (neg y) y)) (sqrt (* z 2))) (*.f64 (fma.f64 (neg.f64 (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 z) (*.f64 (*.f64 #s(literal 1/4 binary64) (sqrt.f64 z)) (*.f64 (/.f64 (sqrt.f64 #s(literal 2 binary64)) y) (*.f64 x (/.f64 x y))))) (*.f64 y y))))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
26.6%
(*.f64 (/.f64 #s(literal 1 binary64) #s(approx (/ (+ (* x 1/2) y) (* (+ (* (* x x) 1/4) (* (neg y) y)) (sqrt (* z 2)))) (*.f64 (sqrt.f64 (/.f64 #s(literal 1 binary64) z)) (fma.f64 #s(literal -1/2 binary64) (/.f64 x (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) y) y)) (/.f64 #s(literal -1 binary64) (*.f64 (sqrt.f64 #s(literal 2 binary64)) y)))))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
86.5%
(*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (*.f64 #s(approx (pow (sqrt (exp t)) t) (fma.f64 #s(literal 1/2 binary64) (*.f64 t t) #s(literal 1 binary64))) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))))
99.8%
(*.f64 (*.f64 (pow.f64 #s(approx (sqrt (exp t)) (fma.f64 #s(literal 1/2 binary64) t #s(literal 1 binary64))) t) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
95.0%
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) (fma.f64 (fma.f64 #s(approx (+ (* 1/48 (* t t)) 1/8) (*.f64 #s(literal 1/48 binary64) (*.f64 t t))) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))))
92.0%
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) (fma.f64 (fma.f64 #s(approx (+ (* 1/48 (* t t)) 1/8) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))))
43.0%
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(approx (+ (* (* t t) 1/2) 1) (*.f64 (*.f64 t t) #s(literal 1/2 binary64)))))
57.1%
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
28.6%
(*.f64 (*.f64 (*.f64 (/.f64 (*.f64 (fma.f64 x #s(literal 1/2 binary64) (neg.f64 y)) (sqrt.f64 z)) (fma.f64 (*.f64 x x) #s(literal 1/4 binary64) (*.f64 (neg.f64 y) y))) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (fma.f64 x #s(literal 1/2 binary64) y))) (-.f64 (*.f64 x #s(literal 1/2 binary64)) y)) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
26.2%
(*.f64 (*.f64 (*.f64 (/.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (fma.f64 (*.f64 x x) #s(literal 1/4 binary64) (*.f64 (neg.f64 y) y))) (fma.f64 (*.f64 x x) #s(literal 1/4 binary64) (*.f64 (neg.f64 y) y))) (-.f64 (*.f64 x #s(literal 1/2 binary64)) y)) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
51.7%
(*.f64 (*.f64 (*.f64 (/.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (fma.f64 x #s(literal 1/2 binary64) y)) (fma.f64 x #s(literal 1/2 binary64) y)) (-.f64 (*.f64 x #s(literal 1/2 binary64)) y)) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
96.3%
(*.f64 (*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) #s(approx (pow (sqrt (exp t)) t) (fma.f64 (fma.f64 (fma.f64 (*.f64 t t) #s(literal 1/48 binary64) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64)))) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 z))
27.6%
(*.f64 (*.f64 (*.f64 (*.f64 (/.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (fma.f64 (*.f64 x x) #s(literal 1/4 binary64) (*.f64 (neg.f64 y) y))) (fma.f64 x #s(literal 1/2 binary64) (neg.f64 y))) (fma.f64 x #s(literal 1/2 binary64) y)) (-.f64 (*.f64 x #s(literal 1/2 binary64)) y)) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
27.7%
(*.f64 (*.f64 (*.f64 (sqrt.f64 z) #s(approx (- (* x 1/2) y) (neg.f64 y))) (sqrt.f64 #s(literal 2 binary64))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
34.8%
(*.f64 (*.f64 (*.f64 #s(approx (/ (sqrt (* z 2)) (+ (* x 1/2) y)) (*.f64 (/.f64 (sqrt.f64 #s(literal 2 binary64)) y) (sqrt.f64 z))) (fma.f64 x #s(literal 1/2 binary64) y)) (-.f64 (*.f64 x #s(literal 1/2 binary64)) y)) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
27.7%
(*.f64 (*.f64 (*.f64 #s(approx (- (* x 1/2) y) (neg.f64 y)) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 z)) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
96.5%
(*.f64 (*.f64 #s(approx (pow (sqrt (exp t)) t) (fma.f64 (fma.f64 (fma.f64 (*.f64 #s(literal 1/48 binary64) t) t #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
96.5%
(*.f64 (*.f64 #s(approx (pow (sqrt (exp t)) t) (fma.f64 (fma.f64 #s(approx (+ (* 1/48 (* t t)) 1/8) (*.f64 #s(literal 1/48 binary64) (*.f64 t t))) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
93.1%
(*.f64 (*.f64 #s(approx (pow (sqrt (exp t)) t) (fma.f64 (fma.f64 #s(approx (+ (* 1/48 (* t t)) 1/8) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
96.5%
(*.f64 (*.f64 #s(approx (pow (sqrt (exp t)) t) (fma.f64 (*.f64 (fma.f64 (fma.f64 (*.f64 t t) #s(literal 1/48 binary64) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) t) t #s(literal 1 binary64))) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
88.3%
(*.f64 (*.f64 #s(approx (pow (sqrt (exp t)) t) (fma.f64 (*.f64 t t) #s(literal 1/2 binary64) #s(literal 1 binary64))) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
57.5%
(*.f64 (*.f64 #s(approx (- (* x 1/2) y) (*.f64 (fma.f64 (/.f64 x y) #s(literal 1/2 binary64) #s(literal -1 binary64)) y)) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
57.8%
(*.f64 (*.f64 #s(approx (- (* x 1/2) y) (*.f64 (-.f64 #s(literal 1/2 binary64) (/.f64 y x)) x)) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
55.1%
(*.f64 (*.f64 #s(approx (- (* x 1/2) y) (neg.f64 y)) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) (fma.f64 (fma.f64 (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))))
27.8%
(*.f64 (*.f64 #s(approx (- (* x 1/2) y) (neg.f64 y)) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
33.8%
(*.f64 (*.f64 #s(approx (* (- (* x 1/2) y) (sqrt 2)) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) x) #s(literal 1/2 binary64))) (sqrt.f64 z)) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
27.7%
(*.f64 #s(approx (- (* x 1/2) y) (neg.f64 y)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (*.f64 #s(approx (pow (sqrt (exp t)) t) #s(literal 1 binary64)) (sqrt.f64 z))))
95.7%
(*.f64 #s(approx (* (pow (sqrt (exp t)) t) (- (* 1/2 x) y)) (fma.f64 (fma.f64 (*.f64 (-.f64 (*.f64 #s(literal 1/2 binary64) x) y) (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64))) (*.f64 t t) (*.f64 (-.f64 (*.f64 #s(literal 1/2 binary64) x) y) #s(literal 1/2 binary64))) (*.f64 t t) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y))) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
92.8%
(*.f64 #s(approx (* (pow (sqrt (exp t)) t) (- (* 1/2 x) y)) (fma.f64 (*.f64 (fma.f64 #s(literal 1/8 binary64) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) t)) t (-.f64 (*.f64 x #s(literal 1/2 binary64)) y))) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
83.1%
(*.f64 #s(approx (* (pow (sqrt (exp t)) t) (- (* 1/2 x) y)) (fma.f64 #s(approx (* (- (* 1/2 x) y) (+ (* 1/8 (* t t)) 1/2)) (*.f64 (fma.f64 #s(literal 1/16 binary64) (*.f64 t t) #s(literal 1/4 binary64)) x)) (*.f64 t t) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y))) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
78.7%
(*.f64 #s(approx (* (pow (sqrt (exp t)) t) (- (* 1/2 x) y)) (fma.f64 #s(approx (* (- (* 1/2 x) y) (+ (* 1/8 (* t t)) 1/2)) (*.f64 (fma.f64 #s(literal -1/8 binary64) (*.f64 t t) #s(literal -1/2 binary64)) y)) (*.f64 t t) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y))) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
92.6%
(*.f64 #s(approx (* (pow (sqrt (exp t)) t) (- (* 1/2 x) y)) (fma.f64 #s(approx (* (- (* 1/2 x) y) (+ (* 1/8 (* t t)) 1/2)) (*.f64 (*.f64 (*.f64 #s(literal 1/8 binary64) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)) t) t)) (*.f64 t t) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y))) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
63.7%
(*.f64 #s(approx (* (pow (sqrt (exp t)) t) (- (* 1/2 x) y)) #s(approx (+ (* (* (- (* 1/2 x) y) (+ (* 1/8 (* t t)) 1/2)) (* t t)) (- (* 1/2 x) y)) (*.f64 (fma.f64 (fma.f64 #s(literal 1/16 binary64) (*.f64 t t) #s(literal 1/4 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) x))) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
54.0%
(*.f64 #s(approx (* (pow (sqrt (exp t)) t) (- (* 1/2 x) y)) #s(approx (+ (* (* (- (* 1/2 x) y) (+ (* 1/8 (* t t)) 1/2)) (* t t)) (- (* 1/2 x) y)) (*.f64 (fma.f64 (fma.f64 #s(literal -1/8 binary64) (*.f64 t t) #s(literal -1/2 binary64)) (*.f64 t t) #s(literal -1 binary64)) y))) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
73.3%
(*.f64 #s(approx (* (pow (sqrt (exp t)) t) (- (* 1/2 x) y)) #s(approx (+ (* (* (- (* 1/2 x) y) (+ (* 1/8 (* t t)) 1/2)) (* t t)) (- (* 1/2 x) y)) (*.f64 (+.f64 (fma.f64 (fma.f64 #s(literal 1/16 binary64) (*.f64 t t) #s(literal 1/4 binary64)) (*.f64 t t) (/.f64 (*.f64 (fma.f64 (fma.f64 #s(literal -1/8 binary64) (*.f64 t t) #s(literal -1/2 binary64)) (*.f64 t t) #s(literal -1 binary64)) y) x)) #s(literal 1/2 binary64)) x))) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
33.8%
(*.f64 #s(approx (* (- (* x 1/2) y) (sqrt (* z 2))) (*.f64 (*.f64 x (*.f64 (sqrt.f64 z) #s(literal 1/2 binary64))) (sqrt.f64 #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
57.3%
(*.f64 #s(approx (* (- (* x 1/2) y) (sqrt (* z 2))) (*.f64 (neg.f64 y) (*.f64 (sqrt.f64 z) (fma.f64 (*.f64 (/.f64 (sqrt.f64 #s(literal 2 binary64)) y) x) #s(literal -1/2 binary64) (sqrt.f64 #s(literal 2 binary64)))))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
Compiler

Compiled 4 247 to 1 562 computations (63.2% saved)

regimes518.0ms (4.5%)

Memory
-3.1MiB live, 419.8MiB allocated
Counts
83 → 1
Calls
Call 1
Inputs
(*.f64 (*.f64 #s(approx (- (* x 1/2) y) (neg.f64 y)) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 #s(approx (* (- (* x 1/2) y) (sqrt (* z 2))) (*.f64 (*.f64 y (neg.f64 (sqrt.f64 z))) (sqrt.f64 #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 #s(approx (- (* x 1/2) y) (neg.f64 y)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (*.f64 #s(approx (pow (sqrt (exp t)) t) #s(literal 1 binary64)) (sqrt.f64 z))))
(*.f64 (*.f64 (*.f64 #s(approx (- (* x 1/2) y) (neg.f64 y)) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 z)) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 (*.f64 #s(approx (- (* x 1/2) y) (neg.f64 y)) (sqrt.f64 z)) (sqrt.f64 #s(literal 2 binary64))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 (*.f64 (sqrt.f64 z) #s(approx (- (* x 1/2) y) (neg.f64 y))) (sqrt.f64 #s(literal 2 binary64))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 #s(approx (* (- (* x 1/2) y) (sqrt (* z 2))) (*.f64 (*.f64 x (*.f64 #s(literal 1/2 binary64) (sqrt.f64 z))) (sqrt.f64 #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 #s(approx (* (- (* x 1/2) y) (sqrt (* z 2))) (*.f64 (*.f64 x (*.f64 (sqrt.f64 z) #s(literal 1/2 binary64))) (sqrt.f64 #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 #s(approx (* (- (* x 1/2) y) (sqrt 2)) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) x) #s(literal 1/2 binary64))) (sqrt.f64 z)) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 #s(approx (* (/ (sqrt (* z 2)) (+ (* x 1/2) y)) (+ (* x 1/2) y)) (*.f64 (sqrt.f64 z) (sqrt.f64 #s(literal 2 binary64)))) (-.f64 (*.f64 x #s(literal 1/2 binary64)) y)) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 z)) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 (*.f64 (fma.f64 x #s(literal 1/2 binary64) (neg.f64 y)) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 z)) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(approx (+ (* (* t t) 1/2) 1) (*.f64 (*.f64 t t) #s(literal 1/2 binary64)))))
(*.f64 (*.f64 #s(approx (- (* x 1/2) y) (*.f64 (-.f64 #s(literal 1/2 binary64) (/.f64 y x)) x)) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 #s(approx (pow (sqrt (exp t)) t) (fma.f64 (*.f64 t t) #s(literal 1/2 binary64) #s(literal 1 binary64))) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) (fma.f64 (*.f64 t t) #s(literal 1/2 binary64) #s(literal 1 binary64))))
(*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (*.f64 #s(approx (pow (sqrt (exp t)) t) (fma.f64 #s(literal 1/2 binary64) (*.f64 t t) #s(literal 1 binary64))) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))))
(*.f64 #s(approx (* (pow (sqrt (exp t)) t) (- (* 1/2 x) y)) #s(approx (+ (* (* (- (* 1/2 x) y) (+ (* 1/8 (* t t)) 1/2)) (* t t)) (- (* 1/2 x) y)) (*.f64 (fma.f64 (fma.f64 #s(literal -1/8 binary64) (*.f64 t t) #s(literal -1/2 binary64)) (*.f64 t t) #s(literal -1 binary64)) y))) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
(*.f64 #s(approx (* (pow (sqrt (exp t)) t) (- (* 1/2 x) y)) #s(approx (+ (* (* (- (* 1/2 x) y) (+ (* 1/8 (* t t)) 1/2)) (* t t)) (- (* 1/2 x) y)) (*.f64 (fma.f64 (fma.f64 #s(literal 1/16 binary64) (*.f64 t t) #s(literal 1/4 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) x))) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
(*.f64 (*.f64 #s(approx (- (* x 1/2) y) (*.f64 (fma.f64 (/.f64 x y) #s(literal 1/2 binary64) #s(literal -1 binary64)) y)) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(/.f64 (neg.f64 #s(approx (pow (sqrt (exp t)) t) #s(literal 1 binary64))) (/.f64 #s(literal -1 binary64) (*.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (-.f64 (*.f64 x #s(literal 1/2 binary64)) y))))
#s(approx (* (* (- (* x 1/2) y) (sqrt (* z 2))) (exp (/ (* t t) 2))) (*.f64 (*.f64 (fma.f64 (*.f64 t t) #s(literal 1/2 binary64) #s(literal 1 binary64)) (*.f64 (fma.f64 #s(literal 1/2 binary64) x (neg.f64 y)) (sqrt.f64 #s(literal 2 binary64)))) (sqrt.f64 z)))
(*.f64 #s(approx (* (pow (sqrt (exp t)) t) (- (* 1/2 x) y)) (fma.f64 #s(approx (* (- (* 1/2 x) y) (+ (* 1/8 (* t t)) 1/2)) (*.f64 (fma.f64 #s(literal -1/8 binary64) (*.f64 t t) #s(literal -1/2 binary64)) y)) (*.f64 t t) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y))) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
(*.f64 #s(approx (* (pow (sqrt (exp t)) t) (- (* 1/2 x) y)) (fma.f64 #s(approx (* (- (* 1/2 x) y) (+ (* 1/8 (* t t)) 1/2)) (*.f64 (fma.f64 #s(literal 1/16 binary64) (*.f64 t t) #s(literal 1/4 binary64)) x)) (*.f64 t t) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y))) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
(*.f64 (*.f64 #s(approx (pow (sqrt (exp t)) t) (fma.f64 (fma.f64 #s(literal 1/8 binary64) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
(*.f64 (*.f64 #s(approx (pow (sqrt (exp t)) t) (fma.f64 (fma.f64 #s(approx (+ (* 1/48 (* t t)) 1/8) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) (fma.f64 (fma.f64 #s(literal 1/8 binary64) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))))
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) (fma.f64 (fma.f64 #s(approx (+ (* 1/48 (* t t)) 1/8) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))))
(/.f64 (*.f64 #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)) (fma.f64 x #s(literal 1/2 binary64) (neg.f64 y))) (/.f64 #s(literal 1 binary64) (*.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) #s(literal 1 binary64))))
(*.f64 (*.f64 #s(approx (- (* x 1/2) y) (neg.f64 y)) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) (fma.f64 (fma.f64 (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))))
(*.f64 (*.f64 (fma.f64 (neg.f64 y) y (*.f64 #s(literal 1/4 binary64) (*.f64 x x))) (/.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (fma.f64 x #s(literal 1/2 binary64) y))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (/.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (fma.f64 x #s(literal 1/2 binary64) y)) (*.f64 (fma.f64 (*.f64 x x) #s(literal 1/4 binary64) (*.f64 (neg.f64 y) y)) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64))))
(/.f64 (*.f64 (fma.f64 (neg.f64 y) y (*.f64 #s(literal 1/4 binary64) (*.f64 x x))) (*.f64 #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)) (sqrt.f64 (*.f64 z #s(literal 2 binary64))))) (fma.f64 x #s(literal 1/2 binary64) y))
(*.f64 (*.f64 (*.f64 (/.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (fma.f64 x #s(literal 1/2 binary64) y)) (fma.f64 x #s(literal 1/2 binary64) y)) (-.f64 (*.f64 x #s(literal 1/2 binary64)) y)) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 #s(approx (* (pow (sqrt (exp t)) t) (- (* 1/2 x) y)) (fma.f64 #s(approx (* (- (* 1/2 x) y) (+ (* 1/8 (* t t)) 1/2)) (*.f64 (*.f64 (*.f64 #s(literal 1/8 binary64) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)) t) t)) (*.f64 t t) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y))) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
(*.f64 #s(approx (* (pow (sqrt (exp t)) t) (- (* 1/2 x) y)) (fma.f64 (*.f64 (-.f64 (*.f64 #s(literal 1/2 binary64) x) y) (fma.f64 #s(literal 1/8 binary64) (*.f64 t t) #s(literal 1/2 binary64))) (*.f64 t t) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y))) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
(*.f64 #s(approx (* (pow (sqrt (exp t)) t) (- (* 1/2 x) y)) (fma.f64 (*.f64 (fma.f64 #s(literal 1/8 binary64) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) t)) t (-.f64 (*.f64 x #s(literal 1/2 binary64)) y))) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
(*.f64 (/.f64 #s(literal 1 binary64) (/.f64 (fma.f64 x #s(literal 1/2 binary64) y) (*.f64 #s(approx (+ (* (* x x) 1/4) (* (neg y) y)) (*.f64 (*.f64 x x) #s(literal 1/4 binary64))) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 #s(approx (pow (sqrt (exp t)) t) (fma.f64 (fma.f64 #s(approx (+ (* 1/48 (* t t)) 1/8) (*.f64 #s(literal 1/48 binary64) (*.f64 t t))) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
(*.f64 (*.f64 (*.f64 #s(approx (/ (sqrt (* z 2)) (+ (* x 1/2) y)) (*.f64 (/.f64 (sqrt.f64 #s(literal 2 binary64)) y) (sqrt.f64 z))) (fma.f64 x #s(literal 1/2 binary64) y)) (-.f64 (*.f64 x #s(literal 1/2 binary64)) y)) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) (fma.f64 (fma.f64 #s(approx (+ (* 1/48 (* t t)) 1/8) (*.f64 #s(literal 1/48 binary64) (*.f64 t t))) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))))
(*.f64 (*.f64 #s(approx (pow (sqrt (exp t)) t) (fma.f64 (*.f64 (fma.f64 (fma.f64 (*.f64 t t) #s(literal 1/48 binary64) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) t) t #s(literal 1 binary64))) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
(*.f64 (*.f64 #s(approx (pow (sqrt (exp t)) t) (fma.f64 (fma.f64 (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
(*.f64 (*.f64 #s(approx (pow (sqrt (exp t)) t) (fma.f64 (fma.f64 (fma.f64 (*.f64 #s(literal 1/48 binary64) t) t #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) (fma.f64 (fma.f64 (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))))
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) (fma.f64 (fma.f64 (fma.f64 (*.f64 #s(literal 1/48 binary64) t) t #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))))
(*.f64 (/.f64 (fma.f64 (neg.f64 y) y (*.f64 #s(literal 1/4 binary64) (*.f64 x x))) (/.f64 (fma.f64 x #s(literal 1/2 binary64) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64))))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (/.f64 (fma.f64 (*.f64 x x) #s(literal 1/4 binary64) (*.f64 (neg.f64 y) y)) (/.f64 (fma.f64 x #s(literal 1/2 binary64) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64))))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 #s(approx (* (- (* x 1/2) y) (sqrt (* z 2))) (*.f64 (neg.f64 y) (*.f64 (sqrt.f64 z) (fma.f64 #s(literal -1/2 binary64) (*.f64 x (/.f64 (sqrt.f64 #s(literal 2 binary64)) y)) (sqrt.f64 #s(literal 2 binary64)))))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 #s(approx (* (- (* x 1/2) y) (sqrt (* z 2))) (*.f64 (neg.f64 y) (*.f64 (sqrt.f64 z) (fma.f64 (*.f64 (/.f64 (sqrt.f64 #s(literal 2 binary64)) y) x) #s(literal -1/2 binary64) (sqrt.f64 #s(literal 2 binary64)))))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 #s(approx (* (- (* x 1/2) y) (sqrt (* z 2))) (*.f64 (*.f64 y (neg.f64 (sqrt.f64 z))) (sqrt.f64 #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) (fma.f64 (fma.f64 (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))))
(*.f64 #s(approx (* (- (* x 1/2) y) (sqrt (* z 2))) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) y) (neg.f64 (sqrt.f64 z)))) #s(approx (exp (/ (* t t) 2)) (fma.f64 (fma.f64 (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))))
(*.f64 (/.f64 #s(literal 1 binary64) (/.f64 (fma.f64 x #s(literal 1/2 binary64) y) (*.f64 (fma.f64 (neg.f64 y) y (*.f64 #s(literal 1/4 binary64) (*.f64 x x))) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (/.f64 #s(literal 1 binary64) (/.f64 (fma.f64 x #s(literal 1/2 binary64) y) (*.f64 (fma.f64 (*.f64 x x) #s(literal 1/4 binary64) (*.f64 (neg.f64 y) y)) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) #s(approx (pow (sqrt (exp t)) t) (fma.f64 (fma.f64 (fma.f64 (*.f64 t t) #s(literal 1/48 binary64) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64)))) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 z))
(*.f64 (*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 z)) #s(approx (exp (/ (* t t) 2)) (fma.f64 (fma.f64 (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))))
(*.f64 (/.f64 #s(literal 1 binary64) (/.f64 (/.f64 (fma.f64 x #s(literal 1/2 binary64) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) (*.f64 #s(literal 1 binary64) (fma.f64 (*.f64 x x) #s(literal 1/4 binary64) (*.f64 (neg.f64 y) y))))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 (*.f64 (/.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (fma.f64 (*.f64 x x) #s(literal 1/4 binary64) (*.f64 (neg.f64 y) y))) (fma.f64 (*.f64 x x) #s(literal 1/4 binary64) (*.f64 (neg.f64 y) y))) (-.f64 (*.f64 x #s(literal 1/2 binary64)) y)) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 (*.f64 (*.f64 (/.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (fma.f64 (*.f64 x x) #s(literal 1/4 binary64) (*.f64 (neg.f64 y) y))) (fma.f64 x #s(literal 1/2 binary64) (neg.f64 y))) (fma.f64 x #s(literal 1/2 binary64) y)) (-.f64 (*.f64 x #s(literal 1/2 binary64)) y)) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 #s(approx (* (pow (sqrt (exp t)) t) (- (* 1/2 x) y)) (fma.f64 (fma.f64 (*.f64 (-.f64 (*.f64 #s(literal 1/2 binary64) x) y) (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64))) (*.f64 t t) (*.f64 (-.f64 (*.f64 #s(literal 1/2 binary64) x) y) #s(literal 1/2 binary64))) (*.f64 t t) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y))) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
#s(approx (* (* (- (* x 1/2) y) (sqrt (* z 2))) (exp (/ (* t t) 2))) (*.f64 (sqrt.f64 z) (fma.f64 (*.f64 t t) (*.f64 (*.f64 (fma.f64 #s(literal 1/2 binary64) x (neg.f64 y)) (sqrt.f64 #s(literal 2 binary64))) (fma.f64 #s(literal 1/8 binary64) (*.f64 t t) #s(literal 1/2 binary64))) (*.f64 (fma.f64 #s(literal 1/2 binary64) x (neg.f64 y)) (sqrt.f64 #s(literal 2 binary64))))))
(*.f64 #s(approx (* (pow (sqrt (exp t)) t) (- (* 1/2 x) y)) #s(approx (+ (* (* (- (* 1/2 x) y) (+ (* 1/8 (* t t)) 1/2)) (* t t)) (- (* 1/2 x) y)) (*.f64 (+.f64 (fma.f64 (fma.f64 #s(literal 1/16 binary64) (*.f64 t t) #s(literal 1/4 binary64)) (*.f64 t t) (/.f64 (*.f64 (fma.f64 (fma.f64 #s(literal -1/8 binary64) (*.f64 t t) #s(literal -1/2 binary64)) (*.f64 t t) #s(literal -1 binary64)) y) x)) #s(literal 1/2 binary64)) x))) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
(*.f64 (/.f64 #s(literal 1 binary64) (/.f64 (fma.f64 x #s(literal 1/2 binary64) y) (*.f64 #s(approx (+ (* (* x x) 1/4) (* (neg y) y)) (*.f64 (fma.f64 (neg.f64 y) (/.f64 (/.f64 y x) x) #s(literal 1/4 binary64)) (*.f64 x x))) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 (*.f64 (/.f64 (*.f64 (fma.f64 x #s(literal 1/2 binary64) (neg.f64 y)) (sqrt.f64 z)) (fma.f64 (*.f64 x x) #s(literal 1/4 binary64) (*.f64 (neg.f64 y) y))) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (fma.f64 x #s(literal 1/2 binary64) y))) (-.f64 (*.f64 x #s(literal 1/2 binary64)) y)) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (/.f64 #s(literal 1 binary64) #s(approx (/ (+ (* x 1/2) y) (* (+ (* (* x x) 1/4) (* (neg y) y)) (sqrt (* z 2)))) (*.f64 (sqrt.f64 (/.f64 #s(literal 1 binary64) z)) (fma.f64 #s(literal -1/2 binary64) (/.f64 x (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) y) y)) (/.f64 #s(literal -1 binary64) (*.f64 (sqrt.f64 #s(literal 2 binary64)) y)))))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 (fma.f64 (/.f64 #s(literal 1/4 binary64) (fma.f64 x #s(literal 1/2 binary64) y)) (*.f64 x x) (*.f64 (neg.f64 y) (/.f64 y (fma.f64 x #s(literal 1/2 binary64) y)))) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) (fma.f64 (fma.f64 (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))))
(*.f64 (/.f64 #s(literal 1 binary64) (/.f64 (fma.f64 x #s(literal 1/2 binary64) y) #s(approx (* (+ (* (* x x) 1/4) (* (neg y) y)) (sqrt (* z 2))) (*.f64 (fma.f64 (neg.f64 (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 z) (*.f64 (*.f64 #s(literal 1/4 binary64) (sqrt.f64 z)) (*.f64 (/.f64 (sqrt.f64 #s(literal 2 binary64)) y) (*.f64 x (/.f64 x y))))) (*.f64 y y))))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (/.f64 #s(literal 1 binary64) (pow.f64 (*.f64 z #s(literal 2 binary64)) #s(literal -1/2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 (pow.f64 #s(approx (sqrt (exp t)) (fma.f64 #s(literal 1/2 binary64) t #s(literal 1 binary64))) t) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
(*.f64 (/.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (pow.f64 (fma.f64 x #s(literal 1/2 binary64) (neg.f64 y)) #s(literal -1 binary64))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) (exp.f64 (*.f64 (*.f64 t t) #s(literal 1/2 binary64))))
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) (exp.f64 (/.f64 (*.f64 t t) #s(literal 2 binary64))))
(*.f64 (/.f64 #s(literal 1 binary64) (/.f64 #s(literal 1 binary64) (*.f64 (sqrt.f64 (*.f64 #s(literal 2 binary64) z)) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)))) (exp.f64 (/.f64 (*.f64 t t) #s(literal 2 binary64))))
(*.f64 (*.f64 (fma.f64 (*.f64 x x) (/.f64 #s(literal 1/4 binary64) (fma.f64 #s(literal 1/2 binary64) x y)) (neg.f64 (*.f64 y (/.f64 y (fma.f64 #s(literal 1/2 binary64) x y))))) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) (exp.f64 (/.f64 (*.f64 t t) #s(literal 2 binary64))))
(*.f64 (-.f64 (*.f64 #s(literal 1/2 binary64) x) y) (sqrt.f64 (*.f64 (*.f64 #s(literal 2 binary64) (pow.f64 (exp.f64 t) t)) z)))
(*.f64 (*.f64 (pow.f64 (sqrt.f64 (exp.f64 t)) t) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
(*.f64 (/.f64 (sqrt.f64 (*.f64 #s(literal 2 binary64) z)) (pow.f64 (-.f64 (*.f64 #s(literal 1/2 binary64) x) y) #s(literal -1 binary64))) (exp.f64 (/.f64 (*.f64 t t) #s(literal 2 binary64))))
(*.f64 (/.f64 #s(literal 1 binary64) (/.f64 (pow.f64 (-.f64 (*.f64 #s(literal 1/2 binary64) x) y) #s(literal -1 binary64)) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))) (exp.f64 (/.f64 (*.f64 t t) #s(literal 2 binary64))))
(*.f64 (*.f64 (fma.f64 (neg.f64 y) y (pow.f64 (*.f64 #s(literal 1/2 binary64) x) #s(literal 2 binary64))) (/.f64 (sqrt.f64 (*.f64 #s(literal 2 binary64) z)) (fma.f64 #s(literal 1/2 binary64) x y))) (exp.f64 (/.f64 (*.f64 t t) #s(literal 2 binary64))))
(*.f64 (/.f64 (*.f64 (fma.f64 (neg.f64 y) y (pow.f64 (*.f64 #s(literal 1/2 binary64) x) #s(literal 2 binary64))) (sqrt.f64 (*.f64 #s(literal 2 binary64) z))) (fma.f64 #s(literal 1/2 binary64) x y)) (exp.f64 (/.f64 (*.f64 t t) #s(literal 2 binary64))))
(*.f64 (*.f64 (pow.f64 (*.f64 #s(literal 2 binary64) z) #s(literal 1/4 binary64)) (*.f64 (pow.f64 (*.f64 #s(literal 2 binary64) z) #s(literal 1/4 binary64)) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y))) (exp.f64 (/.f64 (*.f64 t t) #s(literal 2 binary64))))
(*.f64 (*.f64 (/.f64 (-.f64 (*.f64 #s(literal 1 binary64) (/.f64 (fma.f64 #s(literal 1/2 binary64) x y) (*.f64 y y))) (*.f64 (/.f64 (fma.f64 #s(literal 1/2 binary64) x y) (pow.f64 (*.f64 #s(literal 1/2 binary64) x) #s(literal 2 binary64))) #s(literal 1 binary64))) (*.f64 (/.f64 (fma.f64 #s(literal 1/2 binary64) x y) (pow.f64 (*.f64 #s(literal 1/2 binary64) x) #s(literal 2 binary64))) (/.f64 (fma.f64 #s(literal 1/2 binary64) x y) (*.f64 y y)))) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) (exp.f64 (/.f64 (*.f64 t t) #s(literal 2 binary64))))
Outputs
(*.f64 (*.f64 (pow.f64 (sqrt.f64 (exp.f64 t)) t) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
Calls

13 calls:

81.0ms
x
53.0ms
(*.f64 z #s(literal 2 binary64))
50.0ms
(sqrt.f64 (*.f64 z #s(literal 2 binary64)))
47.0ms
y
38.0ms
(/.f64 (*.f64 t t) #s(literal 2 binary64))
Results
AccuracySegmentsBranch
99.8%1x
99.8%1y
99.8%1z
99.8%1t
99.8%1(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) (exp.f64 (/.f64 (*.f64 t t) #s(literal 2 binary64))))
99.8%1(*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64))))
99.8%1(-.f64 (*.f64 x #s(literal 1/2 binary64)) y)
99.8%1(*.f64 x #s(literal 1/2 binary64))
99.8%1(sqrt.f64 (*.f64 z #s(literal 2 binary64)))
99.8%1(*.f64 z #s(literal 2 binary64))
99.8%1(exp.f64 (/.f64 (*.f64 t t) #s(literal 2 binary64)))
99.8%1(/.f64 (*.f64 t t) #s(literal 2 binary64))
99.8%1(*.f64 t t)
Compiler

Compiled 60 to 88 computations (-46.7% saved)

regimes499.0ms (4.3%)

Memory
-23.8MiB live, 424.0MiB allocated
Counts
76 → 1
Calls
Call 1
Inputs
(*.f64 (*.f64 #s(approx (- (* x 1/2) y) (neg.f64 y)) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 #s(approx (* (- (* x 1/2) y) (sqrt (* z 2))) (*.f64 (*.f64 y (neg.f64 (sqrt.f64 z))) (sqrt.f64 #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 #s(approx (- (* x 1/2) y) (neg.f64 y)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (*.f64 #s(approx (pow (sqrt (exp t)) t) #s(literal 1 binary64)) (sqrt.f64 z))))
(*.f64 (*.f64 (*.f64 #s(approx (- (* x 1/2) y) (neg.f64 y)) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 z)) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 (*.f64 #s(approx (- (* x 1/2) y) (neg.f64 y)) (sqrt.f64 z)) (sqrt.f64 #s(literal 2 binary64))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 (*.f64 (sqrt.f64 z) #s(approx (- (* x 1/2) y) (neg.f64 y))) (sqrt.f64 #s(literal 2 binary64))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 #s(approx (* (- (* x 1/2) y) (sqrt (* z 2))) (*.f64 (*.f64 x (*.f64 #s(literal 1/2 binary64) (sqrt.f64 z))) (sqrt.f64 #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 #s(approx (* (- (* x 1/2) y) (sqrt (* z 2))) (*.f64 (*.f64 x (*.f64 (sqrt.f64 z) #s(literal 1/2 binary64))) (sqrt.f64 #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 #s(approx (* (- (* x 1/2) y) (sqrt 2)) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) x) #s(literal 1/2 binary64))) (sqrt.f64 z)) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 #s(approx (* (/ (sqrt (* z 2)) (+ (* x 1/2) y)) (+ (* x 1/2) y)) (*.f64 (sqrt.f64 z) (sqrt.f64 #s(literal 2 binary64)))) (-.f64 (*.f64 x #s(literal 1/2 binary64)) y)) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 z)) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 (*.f64 (fma.f64 x #s(literal 1/2 binary64) (neg.f64 y)) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 z)) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(approx (+ (* (* t t) 1/2) 1) (*.f64 (*.f64 t t) #s(literal 1/2 binary64)))))
(*.f64 (*.f64 #s(approx (- (* x 1/2) y) (*.f64 (-.f64 #s(literal 1/2 binary64) (/.f64 y x)) x)) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 #s(approx (pow (sqrt (exp t)) t) (fma.f64 (*.f64 t t) #s(literal 1/2 binary64) #s(literal 1 binary64))) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) (fma.f64 (*.f64 t t) #s(literal 1/2 binary64) #s(literal 1 binary64))))
(*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (*.f64 #s(approx (pow (sqrt (exp t)) t) (fma.f64 #s(literal 1/2 binary64) (*.f64 t t) #s(literal 1 binary64))) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))))
(*.f64 #s(approx (* (pow (sqrt (exp t)) t) (- (* 1/2 x) y)) #s(approx (+ (* (* (- (* 1/2 x) y) (+ (* 1/8 (* t t)) 1/2)) (* t t)) (- (* 1/2 x) y)) (*.f64 (fma.f64 (fma.f64 #s(literal -1/8 binary64) (*.f64 t t) #s(literal -1/2 binary64)) (*.f64 t t) #s(literal -1 binary64)) y))) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
(*.f64 #s(approx (* (pow (sqrt (exp t)) t) (- (* 1/2 x) y)) #s(approx (+ (* (* (- (* 1/2 x) y) (+ (* 1/8 (* t t)) 1/2)) (* t t)) (- (* 1/2 x) y)) (*.f64 (fma.f64 (fma.f64 #s(literal 1/16 binary64) (*.f64 t t) #s(literal 1/4 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) x))) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
(*.f64 (*.f64 #s(approx (- (* x 1/2) y) (*.f64 (fma.f64 (/.f64 x y) #s(literal 1/2 binary64) #s(literal -1 binary64)) y)) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(/.f64 (neg.f64 #s(approx (pow (sqrt (exp t)) t) #s(literal 1 binary64))) (/.f64 #s(literal -1 binary64) (*.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (-.f64 (*.f64 x #s(literal 1/2 binary64)) y))))
#s(approx (* (* (- (* x 1/2) y) (sqrt (* z 2))) (exp (/ (* t t) 2))) (*.f64 (*.f64 (fma.f64 (*.f64 t t) #s(literal 1/2 binary64) #s(literal 1 binary64)) (*.f64 (fma.f64 #s(literal 1/2 binary64) x (neg.f64 y)) (sqrt.f64 #s(literal 2 binary64)))) (sqrt.f64 z)))
(*.f64 #s(approx (* (pow (sqrt (exp t)) t) (- (* 1/2 x) y)) (fma.f64 #s(approx (* (- (* 1/2 x) y) (+ (* 1/8 (* t t)) 1/2)) (*.f64 (fma.f64 #s(literal -1/8 binary64) (*.f64 t t) #s(literal -1/2 binary64)) y)) (*.f64 t t) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y))) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
(*.f64 #s(approx (* (pow (sqrt (exp t)) t) (- (* 1/2 x) y)) (fma.f64 #s(approx (* (- (* 1/2 x) y) (+ (* 1/8 (* t t)) 1/2)) (*.f64 (fma.f64 #s(literal 1/16 binary64) (*.f64 t t) #s(literal 1/4 binary64)) x)) (*.f64 t t) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y))) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
(*.f64 (*.f64 #s(approx (pow (sqrt (exp t)) t) (fma.f64 (fma.f64 #s(literal 1/8 binary64) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
(*.f64 (*.f64 #s(approx (pow (sqrt (exp t)) t) (fma.f64 (fma.f64 #s(approx (+ (* 1/48 (* t t)) 1/8) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) (fma.f64 (fma.f64 #s(literal 1/8 binary64) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))))
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) (fma.f64 (fma.f64 #s(approx (+ (* 1/48 (* t t)) 1/8) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))))
(/.f64 (*.f64 #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)) (fma.f64 x #s(literal 1/2 binary64) (neg.f64 y))) (/.f64 #s(literal 1 binary64) (*.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) #s(literal 1 binary64))))
(*.f64 (*.f64 #s(approx (- (* x 1/2) y) (neg.f64 y)) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) (fma.f64 (fma.f64 (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))))
(*.f64 (*.f64 (fma.f64 (neg.f64 y) y (*.f64 #s(literal 1/4 binary64) (*.f64 x x))) (/.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (fma.f64 x #s(literal 1/2 binary64) y))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (/.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (fma.f64 x #s(literal 1/2 binary64) y)) (*.f64 (fma.f64 (*.f64 x x) #s(literal 1/4 binary64) (*.f64 (neg.f64 y) y)) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64))))
(/.f64 (*.f64 (fma.f64 (neg.f64 y) y (*.f64 #s(literal 1/4 binary64) (*.f64 x x))) (*.f64 #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)) (sqrt.f64 (*.f64 z #s(literal 2 binary64))))) (fma.f64 x #s(literal 1/2 binary64) y))
(*.f64 (*.f64 (*.f64 (/.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (fma.f64 x #s(literal 1/2 binary64) y)) (fma.f64 x #s(literal 1/2 binary64) y)) (-.f64 (*.f64 x #s(literal 1/2 binary64)) y)) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 #s(approx (* (pow (sqrt (exp t)) t) (- (* 1/2 x) y)) (fma.f64 #s(approx (* (- (* 1/2 x) y) (+ (* 1/8 (* t t)) 1/2)) (*.f64 (*.f64 (*.f64 #s(literal 1/8 binary64) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)) t) t)) (*.f64 t t) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y))) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
(*.f64 #s(approx (* (pow (sqrt (exp t)) t) (- (* 1/2 x) y)) (fma.f64 (*.f64 (-.f64 (*.f64 #s(literal 1/2 binary64) x) y) (fma.f64 #s(literal 1/8 binary64) (*.f64 t t) #s(literal 1/2 binary64))) (*.f64 t t) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y))) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
(*.f64 #s(approx (* (pow (sqrt (exp t)) t) (- (* 1/2 x) y)) (fma.f64 (*.f64 (fma.f64 #s(literal 1/8 binary64) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) t)) t (-.f64 (*.f64 x #s(literal 1/2 binary64)) y))) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
(*.f64 (/.f64 #s(literal 1 binary64) (/.f64 (fma.f64 x #s(literal 1/2 binary64) y) (*.f64 #s(approx (+ (* (* x x) 1/4) (* (neg y) y)) (*.f64 (*.f64 x x) #s(literal 1/4 binary64))) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 #s(approx (pow (sqrt (exp t)) t) (fma.f64 (fma.f64 #s(approx (+ (* 1/48 (* t t)) 1/8) (*.f64 #s(literal 1/48 binary64) (*.f64 t t))) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
(*.f64 (*.f64 (*.f64 #s(approx (/ (sqrt (* z 2)) (+ (* x 1/2) y)) (*.f64 (/.f64 (sqrt.f64 #s(literal 2 binary64)) y) (sqrt.f64 z))) (fma.f64 x #s(literal 1/2 binary64) y)) (-.f64 (*.f64 x #s(literal 1/2 binary64)) y)) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) (fma.f64 (fma.f64 #s(approx (+ (* 1/48 (* t t)) 1/8) (*.f64 #s(literal 1/48 binary64) (*.f64 t t))) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))))
(*.f64 (*.f64 #s(approx (pow (sqrt (exp t)) t) (fma.f64 (*.f64 (fma.f64 (fma.f64 (*.f64 t t) #s(literal 1/48 binary64) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) t) t #s(literal 1 binary64))) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
(*.f64 (*.f64 #s(approx (pow (sqrt (exp t)) t) (fma.f64 (fma.f64 (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
(*.f64 (*.f64 #s(approx (pow (sqrt (exp t)) t) (fma.f64 (fma.f64 (fma.f64 (*.f64 #s(literal 1/48 binary64) t) t #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) (fma.f64 (fma.f64 (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))))
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) (fma.f64 (fma.f64 (fma.f64 (*.f64 #s(literal 1/48 binary64) t) t #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))))
(*.f64 (/.f64 (fma.f64 (neg.f64 y) y (*.f64 #s(literal 1/4 binary64) (*.f64 x x))) (/.f64 (fma.f64 x #s(literal 1/2 binary64) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64))))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (/.f64 (fma.f64 (*.f64 x x) #s(literal 1/4 binary64) (*.f64 (neg.f64 y) y)) (/.f64 (fma.f64 x #s(literal 1/2 binary64) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64))))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 #s(approx (* (- (* x 1/2) y) (sqrt (* z 2))) (*.f64 (neg.f64 y) (*.f64 (sqrt.f64 z) (fma.f64 #s(literal -1/2 binary64) (*.f64 x (/.f64 (sqrt.f64 #s(literal 2 binary64)) y)) (sqrt.f64 #s(literal 2 binary64)))))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 #s(approx (* (- (* x 1/2) y) (sqrt (* z 2))) (*.f64 (neg.f64 y) (*.f64 (sqrt.f64 z) (fma.f64 (*.f64 (/.f64 (sqrt.f64 #s(literal 2 binary64)) y) x) #s(literal -1/2 binary64) (sqrt.f64 #s(literal 2 binary64)))))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 #s(approx (* (- (* x 1/2) y) (sqrt (* z 2))) (*.f64 (*.f64 y (neg.f64 (sqrt.f64 z))) (sqrt.f64 #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) (fma.f64 (fma.f64 (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))))
(*.f64 #s(approx (* (- (* x 1/2) y) (sqrt (* z 2))) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) y) (neg.f64 (sqrt.f64 z)))) #s(approx (exp (/ (* t t) 2)) (fma.f64 (fma.f64 (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))))
(*.f64 (/.f64 #s(literal 1 binary64) (/.f64 (fma.f64 x #s(literal 1/2 binary64) y) (*.f64 (fma.f64 (neg.f64 y) y (*.f64 #s(literal 1/4 binary64) (*.f64 x x))) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (/.f64 #s(literal 1 binary64) (/.f64 (fma.f64 x #s(literal 1/2 binary64) y) (*.f64 (fma.f64 (*.f64 x x) #s(literal 1/4 binary64) (*.f64 (neg.f64 y) y)) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) #s(approx (pow (sqrt (exp t)) t) (fma.f64 (fma.f64 (fma.f64 (*.f64 t t) #s(literal 1/48 binary64) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64)))) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 z))
(*.f64 (*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 z)) #s(approx (exp (/ (* t t) 2)) (fma.f64 (fma.f64 (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))))
(*.f64 (/.f64 #s(literal 1 binary64) (/.f64 (/.f64 (fma.f64 x #s(literal 1/2 binary64) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) (*.f64 #s(literal 1 binary64) (fma.f64 (*.f64 x x) #s(literal 1/4 binary64) (*.f64 (neg.f64 y) y))))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 (*.f64 (/.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (fma.f64 (*.f64 x x) #s(literal 1/4 binary64) (*.f64 (neg.f64 y) y))) (fma.f64 (*.f64 x x) #s(literal 1/4 binary64) (*.f64 (neg.f64 y) y))) (-.f64 (*.f64 x #s(literal 1/2 binary64)) y)) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 (*.f64 (*.f64 (/.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (fma.f64 (*.f64 x x) #s(literal 1/4 binary64) (*.f64 (neg.f64 y) y))) (fma.f64 x #s(literal 1/2 binary64) (neg.f64 y))) (fma.f64 x #s(literal 1/2 binary64) y)) (-.f64 (*.f64 x #s(literal 1/2 binary64)) y)) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 #s(approx (* (pow (sqrt (exp t)) t) (- (* 1/2 x) y)) (fma.f64 (fma.f64 (*.f64 (-.f64 (*.f64 #s(literal 1/2 binary64) x) y) (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64))) (*.f64 t t) (*.f64 (-.f64 (*.f64 #s(literal 1/2 binary64) x) y) #s(literal 1/2 binary64))) (*.f64 t t) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y))) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
#s(approx (* (* (- (* x 1/2) y) (sqrt (* z 2))) (exp (/ (* t t) 2))) (*.f64 (sqrt.f64 z) (fma.f64 (*.f64 t t) (*.f64 (*.f64 (fma.f64 #s(literal 1/2 binary64) x (neg.f64 y)) (sqrt.f64 #s(literal 2 binary64))) (fma.f64 #s(literal 1/8 binary64) (*.f64 t t) #s(literal 1/2 binary64))) (*.f64 (fma.f64 #s(literal 1/2 binary64) x (neg.f64 y)) (sqrt.f64 #s(literal 2 binary64))))))
(*.f64 #s(approx (* (pow (sqrt (exp t)) t) (- (* 1/2 x) y)) #s(approx (+ (* (* (- (* 1/2 x) y) (+ (* 1/8 (* t t)) 1/2)) (* t t)) (- (* 1/2 x) y)) (*.f64 (+.f64 (fma.f64 (fma.f64 #s(literal 1/16 binary64) (*.f64 t t) #s(literal 1/4 binary64)) (*.f64 t t) (/.f64 (*.f64 (fma.f64 (fma.f64 #s(literal -1/8 binary64) (*.f64 t t) #s(literal -1/2 binary64)) (*.f64 t t) #s(literal -1 binary64)) y) x)) #s(literal 1/2 binary64)) x))) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
(*.f64 (/.f64 #s(literal 1 binary64) (/.f64 (fma.f64 x #s(literal 1/2 binary64) y) (*.f64 #s(approx (+ (* (* x x) 1/4) (* (neg y) y)) (*.f64 (fma.f64 (neg.f64 y) (/.f64 (/.f64 y x) x) #s(literal 1/4 binary64)) (*.f64 x x))) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 (*.f64 (/.f64 (*.f64 (fma.f64 x #s(literal 1/2 binary64) (neg.f64 y)) (sqrt.f64 z)) (fma.f64 (*.f64 x x) #s(literal 1/4 binary64) (*.f64 (neg.f64 y) y))) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (fma.f64 x #s(literal 1/2 binary64) y))) (-.f64 (*.f64 x #s(literal 1/2 binary64)) y)) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (/.f64 #s(literal 1 binary64) #s(approx (/ (+ (* x 1/2) y) (* (+ (* (* x x) 1/4) (* (neg y) y)) (sqrt (* z 2)))) (*.f64 (sqrt.f64 (/.f64 #s(literal 1 binary64) z)) (fma.f64 #s(literal -1/2 binary64) (/.f64 x (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) y) y)) (/.f64 #s(literal -1 binary64) (*.f64 (sqrt.f64 #s(literal 2 binary64)) y)))))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 (fma.f64 (/.f64 #s(literal 1/4 binary64) (fma.f64 x #s(literal 1/2 binary64) y)) (*.f64 x x) (*.f64 (neg.f64 y) (/.f64 y (fma.f64 x #s(literal 1/2 binary64) y)))) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) (fma.f64 (fma.f64 (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))))
(*.f64 (/.f64 #s(literal 1 binary64) (/.f64 (fma.f64 x #s(literal 1/2 binary64) y) #s(approx (* (+ (* (* x x) 1/4) (* (neg y) y)) (sqrt (* z 2))) (*.f64 (fma.f64 (neg.f64 (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 z) (*.f64 (*.f64 #s(literal 1/4 binary64) (sqrt.f64 z)) (*.f64 (/.f64 (sqrt.f64 #s(literal 2 binary64)) y) (*.f64 x (/.f64 x y))))) (*.f64 y y))))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (/.f64 #s(literal 1 binary64) (pow.f64 (*.f64 z #s(literal 2 binary64)) #s(literal -1/2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 (pow.f64 #s(approx (sqrt (exp t)) (fma.f64 #s(literal 1/2 binary64) t #s(literal 1 binary64))) t) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
(*.f64 (/.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (pow.f64 (fma.f64 x #s(literal 1/2 binary64) (neg.f64 y)) #s(literal -1 binary64))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) (exp.f64 (*.f64 (*.f64 t t) #s(literal 1/2 binary64))))
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) (exp.f64 (/.f64 (*.f64 t t) #s(literal 2 binary64))))
(*.f64 (/.f64 #s(literal 1 binary64) (/.f64 #s(literal 1 binary64) (*.f64 (sqrt.f64 (*.f64 #s(literal 2 binary64) z)) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)))) (exp.f64 (/.f64 (*.f64 t t) #s(literal 2 binary64))))
(*.f64 (*.f64 (fma.f64 (*.f64 x x) (/.f64 #s(literal 1/4 binary64) (fma.f64 #s(literal 1/2 binary64) x y)) (neg.f64 (*.f64 y (/.f64 y (fma.f64 #s(literal 1/2 binary64) x y))))) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) (exp.f64 (/.f64 (*.f64 t t) #s(literal 2 binary64))))
(*.f64 (-.f64 (*.f64 #s(literal 1/2 binary64) x) y) (sqrt.f64 (*.f64 (*.f64 #s(literal 2 binary64) (pow.f64 (exp.f64 t) t)) z)))
Outputs
(*.f64 (-.f64 (*.f64 #s(literal 1/2 binary64) x) y) (sqrt.f64 (*.f64 (*.f64 #s(literal 2 binary64) (pow.f64 (exp.f64 t) t)) z)))
Calls

13 calls:

119.0ms
(*.f64 z #s(literal 2 binary64))
91.0ms
(-.f64 (*.f64 x #s(literal 1/2 binary64)) y)
74.0ms
(/.f64 (*.f64 t t) #s(literal 2 binary64))
23.0ms
x
23.0ms
y
Results
AccuracySegmentsBranch
99.8%1x
99.8%1y
99.8%1z
99.8%1t
99.8%1(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) (exp.f64 (/.f64 (*.f64 t t) #s(literal 2 binary64))))
99.8%1(*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64))))
99.8%1(-.f64 (*.f64 x #s(literal 1/2 binary64)) y)
99.8%1(*.f64 x #s(literal 1/2 binary64))
99.8%1(sqrt.f64 (*.f64 z #s(literal 2 binary64)))
99.8%1(*.f64 z #s(literal 2 binary64))
99.8%1(exp.f64 (/.f64 (*.f64 t t) #s(literal 2 binary64)))
99.8%1(/.f64 (*.f64 t t) #s(literal 2 binary64))
99.8%1(*.f64 t t)
Compiler

Compiled 60 to 88 computations (-46.7% saved)

regimes457.0ms (4%)

Memory
30.3MiB live, 499.1MiB allocated
Counts
75 → 1
Calls
Call 1
Inputs
(*.f64 (*.f64 #s(approx (- (* x 1/2) y) (neg.f64 y)) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 #s(approx (* (- (* x 1/2) y) (sqrt (* z 2))) (*.f64 (*.f64 y (neg.f64 (sqrt.f64 z))) (sqrt.f64 #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 #s(approx (- (* x 1/2) y) (neg.f64 y)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (*.f64 #s(approx (pow (sqrt (exp t)) t) #s(literal 1 binary64)) (sqrt.f64 z))))
(*.f64 (*.f64 (*.f64 #s(approx (- (* x 1/2) y) (neg.f64 y)) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 z)) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 (*.f64 #s(approx (- (* x 1/2) y) (neg.f64 y)) (sqrt.f64 z)) (sqrt.f64 #s(literal 2 binary64))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 (*.f64 (sqrt.f64 z) #s(approx (- (* x 1/2) y) (neg.f64 y))) (sqrt.f64 #s(literal 2 binary64))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 #s(approx (* (- (* x 1/2) y) (sqrt (* z 2))) (*.f64 (*.f64 x (*.f64 #s(literal 1/2 binary64) (sqrt.f64 z))) (sqrt.f64 #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 #s(approx (* (- (* x 1/2) y) (sqrt (* z 2))) (*.f64 (*.f64 x (*.f64 (sqrt.f64 z) #s(literal 1/2 binary64))) (sqrt.f64 #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 #s(approx (* (- (* x 1/2) y) (sqrt 2)) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) x) #s(literal 1/2 binary64))) (sqrt.f64 z)) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 #s(approx (* (/ (sqrt (* z 2)) (+ (* x 1/2) y)) (+ (* x 1/2) y)) (*.f64 (sqrt.f64 z) (sqrt.f64 #s(literal 2 binary64)))) (-.f64 (*.f64 x #s(literal 1/2 binary64)) y)) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 z)) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 (*.f64 (fma.f64 x #s(literal 1/2 binary64) (neg.f64 y)) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 z)) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(approx (+ (* (* t t) 1/2) 1) (*.f64 (*.f64 t t) #s(literal 1/2 binary64)))))
(*.f64 (*.f64 #s(approx (- (* x 1/2) y) (*.f64 (-.f64 #s(literal 1/2 binary64) (/.f64 y x)) x)) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 #s(approx (pow (sqrt (exp t)) t) (fma.f64 (*.f64 t t) #s(literal 1/2 binary64) #s(literal 1 binary64))) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) (fma.f64 (*.f64 t t) #s(literal 1/2 binary64) #s(literal 1 binary64))))
(*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (*.f64 #s(approx (pow (sqrt (exp t)) t) (fma.f64 #s(literal 1/2 binary64) (*.f64 t t) #s(literal 1 binary64))) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))))
(*.f64 #s(approx (* (pow (sqrt (exp t)) t) (- (* 1/2 x) y)) #s(approx (+ (* (* (- (* 1/2 x) y) (+ (* 1/8 (* t t)) 1/2)) (* t t)) (- (* 1/2 x) y)) (*.f64 (fma.f64 (fma.f64 #s(literal -1/8 binary64) (*.f64 t t) #s(literal -1/2 binary64)) (*.f64 t t) #s(literal -1 binary64)) y))) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
(*.f64 #s(approx (* (pow (sqrt (exp t)) t) (- (* 1/2 x) y)) #s(approx (+ (* (* (- (* 1/2 x) y) (+ (* 1/8 (* t t)) 1/2)) (* t t)) (- (* 1/2 x) y)) (*.f64 (fma.f64 (fma.f64 #s(literal 1/16 binary64) (*.f64 t t) #s(literal 1/4 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) x))) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
(*.f64 (*.f64 #s(approx (- (* x 1/2) y) (*.f64 (fma.f64 (/.f64 x y) #s(literal 1/2 binary64) #s(literal -1 binary64)) y)) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(/.f64 (neg.f64 #s(approx (pow (sqrt (exp t)) t) #s(literal 1 binary64))) (/.f64 #s(literal -1 binary64) (*.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (-.f64 (*.f64 x #s(literal 1/2 binary64)) y))))
#s(approx (* (* (- (* x 1/2) y) (sqrt (* z 2))) (exp (/ (* t t) 2))) (*.f64 (*.f64 (fma.f64 (*.f64 t t) #s(literal 1/2 binary64) #s(literal 1 binary64)) (*.f64 (fma.f64 #s(literal 1/2 binary64) x (neg.f64 y)) (sqrt.f64 #s(literal 2 binary64)))) (sqrt.f64 z)))
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(*.f64 #s(approx (* (pow (sqrt (exp t)) t) (- (* 1/2 x) y)) (fma.f64 #s(approx (* (- (* 1/2 x) y) (+ (* 1/8 (* t t)) 1/2)) (*.f64 (fma.f64 #s(literal 1/16 binary64) (*.f64 t t) #s(literal 1/4 binary64)) x)) (*.f64 t t) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y))) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
(*.f64 (*.f64 #s(approx (pow (sqrt (exp t)) t) (fma.f64 (fma.f64 #s(literal 1/8 binary64) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
(*.f64 (*.f64 #s(approx (pow (sqrt (exp t)) t) (fma.f64 (fma.f64 #s(approx (+ (* 1/48 (* t t)) 1/8) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) (fma.f64 (fma.f64 #s(literal 1/8 binary64) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))))
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) (fma.f64 (fma.f64 #s(approx (+ (* 1/48 (* t t)) 1/8) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))))
(/.f64 (*.f64 #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)) (fma.f64 x #s(literal 1/2 binary64) (neg.f64 y))) (/.f64 #s(literal 1 binary64) (*.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) #s(literal 1 binary64))))
(*.f64 (*.f64 #s(approx (- (* x 1/2) y) (neg.f64 y)) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) (fma.f64 (fma.f64 (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))))
(*.f64 (*.f64 (fma.f64 (neg.f64 y) y (*.f64 #s(literal 1/4 binary64) (*.f64 x x))) (/.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (fma.f64 x #s(literal 1/2 binary64) y))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (/.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (fma.f64 x #s(literal 1/2 binary64) y)) (*.f64 (fma.f64 (*.f64 x x) #s(literal 1/4 binary64) (*.f64 (neg.f64 y) y)) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64))))
(/.f64 (*.f64 (fma.f64 (neg.f64 y) y (*.f64 #s(literal 1/4 binary64) (*.f64 x x))) (*.f64 #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)) (sqrt.f64 (*.f64 z #s(literal 2 binary64))))) (fma.f64 x #s(literal 1/2 binary64) y))
(*.f64 (*.f64 (*.f64 (/.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (fma.f64 x #s(literal 1/2 binary64) y)) (fma.f64 x #s(literal 1/2 binary64) y)) (-.f64 (*.f64 x #s(literal 1/2 binary64)) y)) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 #s(approx (* (pow (sqrt (exp t)) t) (- (* 1/2 x) y)) (fma.f64 #s(approx (* (- (* 1/2 x) y) (+ (* 1/8 (* t t)) 1/2)) (*.f64 (*.f64 (*.f64 #s(literal 1/8 binary64) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)) t) t)) (*.f64 t t) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y))) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
(*.f64 #s(approx (* (pow (sqrt (exp t)) t) (- (* 1/2 x) y)) (fma.f64 (*.f64 (-.f64 (*.f64 #s(literal 1/2 binary64) x) y) (fma.f64 #s(literal 1/8 binary64) (*.f64 t t) #s(literal 1/2 binary64))) (*.f64 t t) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y))) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
(*.f64 #s(approx (* (pow (sqrt (exp t)) t) (- (* 1/2 x) y)) (fma.f64 (*.f64 (fma.f64 #s(literal 1/8 binary64) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) t)) t (-.f64 (*.f64 x #s(literal 1/2 binary64)) y))) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
(*.f64 (/.f64 #s(literal 1 binary64) (/.f64 (fma.f64 x #s(literal 1/2 binary64) y) (*.f64 #s(approx (+ (* (* x x) 1/4) (* (neg y) y)) (*.f64 (*.f64 x x) #s(literal 1/4 binary64))) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 #s(approx (pow (sqrt (exp t)) t) (fma.f64 (fma.f64 #s(approx (+ (* 1/48 (* t t)) 1/8) (*.f64 #s(literal 1/48 binary64) (*.f64 t t))) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
(*.f64 (*.f64 (*.f64 #s(approx (/ (sqrt (* z 2)) (+ (* x 1/2) y)) (*.f64 (/.f64 (sqrt.f64 #s(literal 2 binary64)) y) (sqrt.f64 z))) (fma.f64 x #s(literal 1/2 binary64) y)) (-.f64 (*.f64 x #s(literal 1/2 binary64)) y)) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) (fma.f64 (fma.f64 #s(approx (+ (* 1/48 (* t t)) 1/8) (*.f64 #s(literal 1/48 binary64) (*.f64 t t))) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))))
(*.f64 (*.f64 #s(approx (pow (sqrt (exp t)) t) (fma.f64 (*.f64 (fma.f64 (fma.f64 (*.f64 t t) #s(literal 1/48 binary64) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) t) t #s(literal 1 binary64))) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
(*.f64 (*.f64 #s(approx (pow (sqrt (exp t)) t) (fma.f64 (fma.f64 (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
(*.f64 (*.f64 #s(approx (pow (sqrt (exp t)) t) (fma.f64 (fma.f64 (fma.f64 (*.f64 #s(literal 1/48 binary64) t) t #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) (fma.f64 (fma.f64 (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))))
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) (fma.f64 (fma.f64 (fma.f64 (*.f64 #s(literal 1/48 binary64) t) t #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))))
(*.f64 (/.f64 (fma.f64 (neg.f64 y) y (*.f64 #s(literal 1/4 binary64) (*.f64 x x))) (/.f64 (fma.f64 x #s(literal 1/2 binary64) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64))))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (/.f64 (fma.f64 (*.f64 x x) #s(literal 1/4 binary64) (*.f64 (neg.f64 y) y)) (/.f64 (fma.f64 x #s(literal 1/2 binary64) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64))))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 #s(approx (* (- (* x 1/2) y) (sqrt (* z 2))) (*.f64 (neg.f64 y) (*.f64 (sqrt.f64 z) (fma.f64 #s(literal -1/2 binary64) (*.f64 x (/.f64 (sqrt.f64 #s(literal 2 binary64)) y)) (sqrt.f64 #s(literal 2 binary64)))))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 #s(approx (* (- (* x 1/2) y) (sqrt (* z 2))) (*.f64 (neg.f64 y) (*.f64 (sqrt.f64 z) (fma.f64 (*.f64 (/.f64 (sqrt.f64 #s(literal 2 binary64)) y) x) #s(literal -1/2 binary64) (sqrt.f64 #s(literal 2 binary64)))))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 #s(approx (* (- (* x 1/2) y) (sqrt (* z 2))) (*.f64 (*.f64 y (neg.f64 (sqrt.f64 z))) (sqrt.f64 #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) (fma.f64 (fma.f64 (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))))
(*.f64 #s(approx (* (- (* x 1/2) y) (sqrt (* z 2))) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) y) (neg.f64 (sqrt.f64 z)))) #s(approx (exp (/ (* t t) 2)) (fma.f64 (fma.f64 (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))))
(*.f64 (/.f64 #s(literal 1 binary64) (/.f64 (fma.f64 x #s(literal 1/2 binary64) y) (*.f64 (fma.f64 (neg.f64 y) y (*.f64 #s(literal 1/4 binary64) (*.f64 x x))) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (/.f64 #s(literal 1 binary64) (/.f64 (fma.f64 x #s(literal 1/2 binary64) y) (*.f64 (fma.f64 (*.f64 x x) #s(literal 1/4 binary64) (*.f64 (neg.f64 y) y)) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) #s(approx (pow (sqrt (exp t)) t) (fma.f64 (fma.f64 (fma.f64 (*.f64 t t) #s(literal 1/48 binary64) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64)))) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 z))
(*.f64 (*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 z)) #s(approx (exp (/ (* t t) 2)) (fma.f64 (fma.f64 (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))))
(*.f64 (/.f64 #s(literal 1 binary64) (/.f64 (/.f64 (fma.f64 x #s(literal 1/2 binary64) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) (*.f64 #s(literal 1 binary64) (fma.f64 (*.f64 x x) #s(literal 1/4 binary64) (*.f64 (neg.f64 y) y))))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 (*.f64 (/.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (fma.f64 (*.f64 x x) #s(literal 1/4 binary64) (*.f64 (neg.f64 y) y))) (fma.f64 (*.f64 x x) #s(literal 1/4 binary64) (*.f64 (neg.f64 y) y))) (-.f64 (*.f64 x #s(literal 1/2 binary64)) y)) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 (*.f64 (*.f64 (/.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (fma.f64 (*.f64 x x) #s(literal 1/4 binary64) (*.f64 (neg.f64 y) y))) (fma.f64 x #s(literal 1/2 binary64) (neg.f64 y))) (fma.f64 x #s(literal 1/2 binary64) y)) (-.f64 (*.f64 x #s(literal 1/2 binary64)) y)) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 #s(approx (* (pow (sqrt (exp t)) t) (- (* 1/2 x) y)) (fma.f64 (fma.f64 (*.f64 (-.f64 (*.f64 #s(literal 1/2 binary64) x) y) (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64))) (*.f64 t t) (*.f64 (-.f64 (*.f64 #s(literal 1/2 binary64) x) y) #s(literal 1/2 binary64))) (*.f64 t t) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y))) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
#s(approx (* (* (- (* x 1/2) y) (sqrt (* z 2))) (exp (/ (* t t) 2))) (*.f64 (sqrt.f64 z) (fma.f64 (*.f64 t t) (*.f64 (*.f64 (fma.f64 #s(literal 1/2 binary64) x (neg.f64 y)) (sqrt.f64 #s(literal 2 binary64))) (fma.f64 #s(literal 1/8 binary64) (*.f64 t t) #s(literal 1/2 binary64))) (*.f64 (fma.f64 #s(literal 1/2 binary64) x (neg.f64 y)) (sqrt.f64 #s(literal 2 binary64))))))
(*.f64 #s(approx (* (pow (sqrt (exp t)) t) (- (* 1/2 x) y)) #s(approx (+ (* (* (- (* 1/2 x) y) (+ (* 1/8 (* t t)) 1/2)) (* t t)) (- (* 1/2 x) y)) (*.f64 (+.f64 (fma.f64 (fma.f64 #s(literal 1/16 binary64) (*.f64 t t) #s(literal 1/4 binary64)) (*.f64 t t) (/.f64 (*.f64 (fma.f64 (fma.f64 #s(literal -1/8 binary64) (*.f64 t t) #s(literal -1/2 binary64)) (*.f64 t t) #s(literal -1 binary64)) y) x)) #s(literal 1/2 binary64)) x))) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
(*.f64 (/.f64 #s(literal 1 binary64) (/.f64 (fma.f64 x #s(literal 1/2 binary64) y) (*.f64 #s(approx (+ (* (* x x) 1/4) (* (neg y) y)) (*.f64 (fma.f64 (neg.f64 y) (/.f64 (/.f64 y x) x) #s(literal 1/4 binary64)) (*.f64 x x))) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 (*.f64 (/.f64 (*.f64 (fma.f64 x #s(literal 1/2 binary64) (neg.f64 y)) (sqrt.f64 z)) (fma.f64 (*.f64 x x) #s(literal 1/4 binary64) (*.f64 (neg.f64 y) y))) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (fma.f64 x #s(literal 1/2 binary64) y))) (-.f64 (*.f64 x #s(literal 1/2 binary64)) y)) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (/.f64 #s(literal 1 binary64) #s(approx (/ (+ (* x 1/2) y) (* (+ (* (* x x) 1/4) (* (neg y) y)) (sqrt (* z 2)))) (*.f64 (sqrt.f64 (/.f64 #s(literal 1 binary64) z)) (fma.f64 #s(literal -1/2 binary64) (/.f64 x (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) y) y)) (/.f64 #s(literal -1 binary64) (*.f64 (sqrt.f64 #s(literal 2 binary64)) y)))))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 (fma.f64 (/.f64 #s(literal 1/4 binary64) (fma.f64 x #s(literal 1/2 binary64) y)) (*.f64 x x) (*.f64 (neg.f64 y) (/.f64 y (fma.f64 x #s(literal 1/2 binary64) y)))) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) (fma.f64 (fma.f64 (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))))
(*.f64 (/.f64 #s(literal 1 binary64) (/.f64 (fma.f64 x #s(literal 1/2 binary64) y) #s(approx (* (+ (* (* x x) 1/4) (* (neg y) y)) (sqrt (* z 2))) (*.f64 (fma.f64 (neg.f64 (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 z) (*.f64 (*.f64 #s(literal 1/4 binary64) (sqrt.f64 z)) (*.f64 (/.f64 (sqrt.f64 #s(literal 2 binary64)) y) (*.f64 x (/.f64 x y))))) (*.f64 y y))))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (/.f64 #s(literal 1 binary64) (pow.f64 (*.f64 z #s(literal 2 binary64)) #s(literal -1/2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 (pow.f64 #s(approx (sqrt (exp t)) (fma.f64 #s(literal 1/2 binary64) t #s(literal 1 binary64))) t) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
(*.f64 (/.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (pow.f64 (fma.f64 x #s(literal 1/2 binary64) (neg.f64 y)) #s(literal -1 binary64))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) (exp.f64 (*.f64 (*.f64 t t) #s(literal 1/2 binary64))))
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) (exp.f64 (/.f64 (*.f64 t t) #s(literal 2 binary64))))
(*.f64 (/.f64 #s(literal 1 binary64) (/.f64 #s(literal 1 binary64) (*.f64 (sqrt.f64 (*.f64 #s(literal 2 binary64) z)) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)))) (exp.f64 (/.f64 (*.f64 t t) #s(literal 2 binary64))))
(*.f64 (*.f64 (fma.f64 (*.f64 x x) (/.f64 #s(literal 1/4 binary64) (fma.f64 #s(literal 1/2 binary64) x y)) (neg.f64 (*.f64 y (/.f64 y (fma.f64 #s(literal 1/2 binary64) x y))))) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) (exp.f64 (/.f64 (*.f64 t t) #s(literal 2 binary64))))
Outputs
(*.f64 (*.f64 (pow.f64 #s(approx (sqrt (exp t)) (fma.f64 #s(literal 1/2 binary64) t #s(literal 1 binary64))) t) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
Calls

13 calls:

137.0ms
(*.f64 z #s(literal 2 binary64))
47.0ms
t
37.0ms
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) (exp.f64 (/.f64 (*.f64 t t) #s(literal 2 binary64))))
34.0ms
(-.f64 (*.f64 x #s(literal 1/2 binary64)) y)
27.0ms
z
Results
AccuracySegmentsBranch
99.8%1x
99.8%1y
99.8%1z
99.8%1t
99.8%1(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) (exp.f64 (/.f64 (*.f64 t t) #s(literal 2 binary64))))
99.8%1(*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64))))
99.8%1(-.f64 (*.f64 x #s(literal 1/2 binary64)) y)
99.8%1(*.f64 x #s(literal 1/2 binary64))
99.8%1(sqrt.f64 (*.f64 z #s(literal 2 binary64)))
99.8%1(*.f64 z #s(literal 2 binary64))
99.8%1(exp.f64 (/.f64 (*.f64 t t) #s(literal 2 binary64)))
99.8%1(/.f64 (*.f64 t t) #s(literal 2 binary64))
99.8%1(*.f64 t t)
Compiler

Compiled 60 to 88 computations (-46.7% saved)

regimes474.0ms (4.1%)

Memory
-118.2MiB live, 623.1MiB allocated
Counts
69 → 1
Calls
Call 1
Inputs
(*.f64 (*.f64 #s(approx (- (* x 1/2) y) (neg.f64 y)) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 #s(approx (* (- (* x 1/2) y) (sqrt (* z 2))) (*.f64 (*.f64 y (neg.f64 (sqrt.f64 z))) (sqrt.f64 #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 #s(approx (- (* x 1/2) y) (neg.f64 y)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (*.f64 #s(approx (pow (sqrt (exp t)) t) #s(literal 1 binary64)) (sqrt.f64 z))))
(*.f64 (*.f64 (*.f64 #s(approx (- (* x 1/2) y) (neg.f64 y)) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 z)) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 (*.f64 #s(approx (- (* x 1/2) y) (neg.f64 y)) (sqrt.f64 z)) (sqrt.f64 #s(literal 2 binary64))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 (*.f64 (sqrt.f64 z) #s(approx (- (* x 1/2) y) (neg.f64 y))) (sqrt.f64 #s(literal 2 binary64))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
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(*.f64 #s(approx (* (- (* x 1/2) y) (sqrt (* z 2))) (*.f64 (*.f64 x (*.f64 (sqrt.f64 z) #s(literal 1/2 binary64))) (sqrt.f64 #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 #s(approx (* (- (* x 1/2) y) (sqrt 2)) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) x) #s(literal 1/2 binary64))) (sqrt.f64 z)) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
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(*.f64 (*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 z)) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
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#s(approx (* (* (- (* x 1/2) y) (sqrt (* z 2))) (exp (/ (* t t) 2))) (*.f64 (*.f64 (fma.f64 (*.f64 t t) #s(literal 1/2 binary64) #s(literal 1 binary64)) (*.f64 (fma.f64 #s(literal 1/2 binary64) x (neg.f64 y)) (sqrt.f64 #s(literal 2 binary64)))) (sqrt.f64 z)))
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(*.f64 (/.f64 #s(literal 1 binary64) (/.f64 (fma.f64 x #s(literal 1/2 binary64) y) (*.f64 #s(approx (+ (* (* x x) 1/4) (* (neg y) y)) (*.f64 (fma.f64 (neg.f64 y) (/.f64 (/.f64 y x) x) #s(literal 1/4 binary64)) (*.f64 x x))) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 (*.f64 (/.f64 (*.f64 (fma.f64 x #s(literal 1/2 binary64) (neg.f64 y)) (sqrt.f64 z)) (fma.f64 (*.f64 x x) #s(literal 1/4 binary64) (*.f64 (neg.f64 y) y))) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (fma.f64 x #s(literal 1/2 binary64) y))) (-.f64 (*.f64 x #s(literal 1/2 binary64)) y)) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (/.f64 #s(literal 1 binary64) #s(approx (/ (+ (* x 1/2) y) (* (+ (* (* x x) 1/4) (* (neg y) y)) (sqrt (* z 2)))) (*.f64 (sqrt.f64 (/.f64 #s(literal 1 binary64) z)) (fma.f64 #s(literal -1/2 binary64) (/.f64 x (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) y) y)) (/.f64 #s(literal -1 binary64) (*.f64 (sqrt.f64 #s(literal 2 binary64)) y)))))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 (fma.f64 (/.f64 #s(literal 1/4 binary64) (fma.f64 x #s(literal 1/2 binary64) y)) (*.f64 x x) (*.f64 (neg.f64 y) (/.f64 y (fma.f64 x #s(literal 1/2 binary64) y)))) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) (fma.f64 (fma.f64 (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))))
(*.f64 (/.f64 #s(literal 1 binary64) (/.f64 (fma.f64 x #s(literal 1/2 binary64) y) #s(approx (* (+ (* (* x x) 1/4) (* (neg y) y)) (sqrt (* z 2))) (*.f64 (fma.f64 (neg.f64 (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 z) (*.f64 (*.f64 #s(literal 1/4 binary64) (sqrt.f64 z)) (*.f64 (/.f64 (sqrt.f64 #s(literal 2 binary64)) y) (*.f64 x (/.f64 x y))))) (*.f64 y y))))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (/.f64 #s(literal 1 binary64) (pow.f64 (*.f64 z #s(literal 2 binary64)) #s(literal -1/2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
Outputs
(*.f64 (*.f64 #s(approx (pow (sqrt (exp t)) t) (fma.f64 (fma.f64 #s(approx (+ (* 1/48 (* t t)) 1/8) (*.f64 #s(literal 1/48 binary64) (*.f64 t t))) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
Calls

13 calls:

171.0ms
z
43.0ms
y
30.0ms
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) (exp.f64 (/.f64 (*.f64 t t) #s(literal 2 binary64))))
29.0ms
t
26.0ms
(/.f64 (*.f64 t t) #s(literal 2 binary64))
Results
AccuracySegmentsBranch
96.5%1x
96.5%1y
96.5%1z
96.5%1t
96.5%1(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) (exp.f64 (/.f64 (*.f64 t t) #s(literal 2 binary64))))
96.5%1(*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64))))
96.5%1(-.f64 (*.f64 x #s(literal 1/2 binary64)) y)
96.5%1(*.f64 x #s(literal 1/2 binary64))
96.5%1(sqrt.f64 (*.f64 z #s(literal 2 binary64)))
96.5%1(*.f64 z #s(literal 2 binary64))
96.5%1(exp.f64 (/.f64 (*.f64 t t) #s(literal 2 binary64)))
96.5%1(/.f64 (*.f64 t t) #s(literal 2 binary64))
96.5%1(*.f64 t t)
Compiler

Compiled 60 to 88 computations (-46.7% saved)

regimes157.0ms (1.4%)

Memory
35.4MiB live, 227.0MiB allocated
Counts
39 → 1
Calls
Call 1
Inputs
(*.f64 (*.f64 #s(approx (- (* x 1/2) y) (neg.f64 y)) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 #s(approx (* (- (* x 1/2) y) (sqrt (* z 2))) (*.f64 (*.f64 y (neg.f64 (sqrt.f64 z))) (sqrt.f64 #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 #s(approx (- (* x 1/2) y) (neg.f64 y)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (*.f64 #s(approx (pow (sqrt (exp t)) t) #s(literal 1 binary64)) (sqrt.f64 z))))
(*.f64 (*.f64 (*.f64 #s(approx (- (* x 1/2) y) (neg.f64 y)) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 z)) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 (*.f64 #s(approx (- (* x 1/2) y) (neg.f64 y)) (sqrt.f64 z)) (sqrt.f64 #s(literal 2 binary64))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 (*.f64 (sqrt.f64 z) #s(approx (- (* x 1/2) y) (neg.f64 y))) (sqrt.f64 #s(literal 2 binary64))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 #s(approx (* (- (* x 1/2) y) (sqrt (* z 2))) (*.f64 (*.f64 x (*.f64 #s(literal 1/2 binary64) (sqrt.f64 z))) (sqrt.f64 #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 #s(approx (* (- (* x 1/2) y) (sqrt (* z 2))) (*.f64 (*.f64 x (*.f64 (sqrt.f64 z) #s(literal 1/2 binary64))) (sqrt.f64 #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 #s(approx (* (- (* x 1/2) y) (sqrt 2)) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) x) #s(literal 1/2 binary64))) (sqrt.f64 z)) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 #s(approx (* (/ (sqrt (* z 2)) (+ (* x 1/2) y)) (+ (* x 1/2) y)) (*.f64 (sqrt.f64 z) (sqrt.f64 #s(literal 2 binary64)))) (-.f64 (*.f64 x #s(literal 1/2 binary64)) y)) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 z)) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 (*.f64 (fma.f64 x #s(literal 1/2 binary64) (neg.f64 y)) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 z)) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(approx (+ (* (* t t) 1/2) 1) (*.f64 (*.f64 t t) #s(literal 1/2 binary64)))))
(*.f64 (*.f64 #s(approx (- (* x 1/2) y) (*.f64 (-.f64 #s(literal 1/2 binary64) (/.f64 y x)) x)) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 #s(approx (pow (sqrt (exp t)) t) (fma.f64 (*.f64 t t) #s(literal 1/2 binary64) #s(literal 1 binary64))) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) (fma.f64 (*.f64 t t) #s(literal 1/2 binary64) #s(literal 1 binary64))))
(*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (*.f64 #s(approx (pow (sqrt (exp t)) t) (fma.f64 #s(literal 1/2 binary64) (*.f64 t t) #s(literal 1 binary64))) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))))
(*.f64 #s(approx (* (pow (sqrt (exp t)) t) (- (* 1/2 x) y)) #s(approx (+ (* (* (- (* 1/2 x) y) (+ (* 1/8 (* t t)) 1/2)) (* t t)) (- (* 1/2 x) y)) (*.f64 (fma.f64 (fma.f64 #s(literal -1/8 binary64) (*.f64 t t) #s(literal -1/2 binary64)) (*.f64 t t) #s(literal -1 binary64)) y))) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
(*.f64 #s(approx (* (pow (sqrt (exp t)) t) (- (* 1/2 x) y)) #s(approx (+ (* (* (- (* 1/2 x) y) (+ (* 1/8 (* t t)) 1/2)) (* t t)) (- (* 1/2 x) y)) (*.f64 (fma.f64 (fma.f64 #s(literal 1/16 binary64) (*.f64 t t) #s(literal 1/4 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) x))) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
(*.f64 (*.f64 #s(approx (- (* x 1/2) y) (*.f64 (fma.f64 (/.f64 x y) #s(literal 1/2 binary64) #s(literal -1 binary64)) y)) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(/.f64 (neg.f64 #s(approx (pow (sqrt (exp t)) t) #s(literal 1 binary64))) (/.f64 #s(literal -1 binary64) (*.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (-.f64 (*.f64 x #s(literal 1/2 binary64)) y))))
#s(approx (* (* (- (* x 1/2) y) (sqrt (* z 2))) (exp (/ (* t t) 2))) (*.f64 (*.f64 (fma.f64 (*.f64 t t) #s(literal 1/2 binary64) #s(literal 1 binary64)) (*.f64 (fma.f64 #s(literal 1/2 binary64) x (neg.f64 y)) (sqrt.f64 #s(literal 2 binary64)))) (sqrt.f64 z)))
(*.f64 #s(approx (* (pow (sqrt (exp t)) t) (- (* 1/2 x) y)) (fma.f64 #s(approx (* (- (* 1/2 x) y) (+ (* 1/8 (* t t)) 1/2)) (*.f64 (fma.f64 #s(literal -1/8 binary64) (*.f64 t t) #s(literal -1/2 binary64)) y)) (*.f64 t t) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y))) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
(*.f64 #s(approx (* (pow (sqrt (exp t)) t) (- (* 1/2 x) y)) (fma.f64 #s(approx (* (- (* 1/2 x) y) (+ (* 1/8 (* t t)) 1/2)) (*.f64 (fma.f64 #s(literal 1/16 binary64) (*.f64 t t) #s(literal 1/4 binary64)) x)) (*.f64 t t) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y))) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
(*.f64 (*.f64 #s(approx (pow (sqrt (exp t)) t) (fma.f64 (fma.f64 #s(literal 1/8 binary64) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
(*.f64 (*.f64 #s(approx (pow (sqrt (exp t)) t) (fma.f64 (fma.f64 #s(approx (+ (* 1/48 (* t t)) 1/8) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) (fma.f64 (fma.f64 #s(literal 1/8 binary64) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))))
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) (fma.f64 (fma.f64 #s(approx (+ (* 1/48 (* t t)) 1/8) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))))
(/.f64 (*.f64 #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)) (fma.f64 x #s(literal 1/2 binary64) (neg.f64 y))) (/.f64 #s(literal 1 binary64) (*.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) #s(literal 1 binary64))))
(*.f64 (*.f64 #s(approx (- (* x 1/2) y) (neg.f64 y)) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) (fma.f64 (fma.f64 (fma.f64 #s(literal 1/48 binary64) (*.f64 t t) #s(literal 1/8 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))))
(*.f64 (*.f64 (fma.f64 (neg.f64 y) y (*.f64 #s(literal 1/4 binary64) (*.f64 x x))) (/.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (fma.f64 x #s(literal 1/2 binary64) y))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (/.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (fma.f64 x #s(literal 1/2 binary64) y)) (*.f64 (fma.f64 (*.f64 x x) #s(literal 1/4 binary64) (*.f64 (neg.f64 y) y)) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64))))
(/.f64 (*.f64 (fma.f64 (neg.f64 y) y (*.f64 #s(literal 1/4 binary64) (*.f64 x x))) (*.f64 #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)) (sqrt.f64 (*.f64 z #s(literal 2 binary64))))) (fma.f64 x #s(literal 1/2 binary64) y))
(*.f64 (*.f64 (*.f64 (/.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (fma.f64 x #s(literal 1/2 binary64) y)) (fma.f64 x #s(literal 1/2 binary64) y)) (-.f64 (*.f64 x #s(literal 1/2 binary64)) y)) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 #s(approx (* (pow (sqrt (exp t)) t) (- (* 1/2 x) y)) (fma.f64 #s(approx (* (- (* 1/2 x) y) (+ (* 1/8 (* t t)) 1/2)) (*.f64 (*.f64 (*.f64 #s(literal 1/8 binary64) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)) t) t)) (*.f64 t t) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y))) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
(*.f64 #s(approx (* (pow (sqrt (exp t)) t) (- (* 1/2 x) y)) (fma.f64 (*.f64 (-.f64 (*.f64 #s(literal 1/2 binary64) x) y) (fma.f64 #s(literal 1/8 binary64) (*.f64 t t) #s(literal 1/2 binary64))) (*.f64 t t) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y))) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
(*.f64 #s(approx (* (pow (sqrt (exp t)) t) (- (* 1/2 x) y)) (fma.f64 (*.f64 (fma.f64 #s(literal 1/8 binary64) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) t)) t (-.f64 (*.f64 x #s(literal 1/2 binary64)) y))) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
(*.f64 (/.f64 #s(literal 1 binary64) (/.f64 (fma.f64 x #s(literal 1/2 binary64) y) (*.f64 #s(approx (+ (* (* x x) 1/4) (* (neg y) y)) (*.f64 (*.f64 x x) #s(literal 1/4 binary64))) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
Outputs
(*.f64 (*.f64 #s(approx (pow (sqrt (exp t)) t) (fma.f64 (fma.f64 #s(literal 1/8 binary64) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
Calls

13 calls:

16.0ms
t
15.0ms
(-.f64 (*.f64 x #s(literal 1/2 binary64)) y)
14.0ms
(*.f64 t t)
13.0ms
(sqrt.f64 (*.f64 z #s(literal 2 binary64)))
13.0ms
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) (exp.f64 (/.f64 (*.f64 t t) #s(literal 2 binary64))))
Results
AccuracySegmentsBranch
93.1%1y
93.1%1t
93.1%1(/.f64 (*.f64 t t) #s(literal 2 binary64))
93.1%1(*.f64 t t)
93.1%1x
93.1%1z
93.1%1(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) (exp.f64 (/.f64 (*.f64 t t) #s(literal 2 binary64))))
93.1%1(*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64))))
93.1%1(-.f64 (*.f64 x #s(literal 1/2 binary64)) y)
93.1%1(*.f64 x #s(literal 1/2 binary64))
93.1%1(sqrt.f64 (*.f64 z #s(literal 2 binary64)))
93.1%1(*.f64 z #s(literal 2 binary64))
93.1%1(exp.f64 (/.f64 (*.f64 t t) #s(literal 2 binary64)))
Compiler

Compiled 60 to 88 computations (-46.7% saved)

regimes162.0ms (1.4%)

Memory
-25.3MiB live, 133.8MiB allocated
Counts
25 → 1
Calls
Call 1
Inputs
(*.f64 (*.f64 #s(approx (- (* x 1/2) y) (neg.f64 y)) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 #s(approx (* (- (* x 1/2) y) (sqrt (* z 2))) (*.f64 (*.f64 y (neg.f64 (sqrt.f64 z))) (sqrt.f64 #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 #s(approx (- (* x 1/2) y) (neg.f64 y)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (*.f64 #s(approx (pow (sqrt (exp t)) t) #s(literal 1 binary64)) (sqrt.f64 z))))
(*.f64 (*.f64 (*.f64 #s(approx (- (* x 1/2) y) (neg.f64 y)) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 z)) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 (*.f64 #s(approx (- (* x 1/2) y) (neg.f64 y)) (sqrt.f64 z)) (sqrt.f64 #s(literal 2 binary64))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 (*.f64 (sqrt.f64 z) #s(approx (- (* x 1/2) y) (neg.f64 y))) (sqrt.f64 #s(literal 2 binary64))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 #s(approx (* (- (* x 1/2) y) (sqrt (* z 2))) (*.f64 (*.f64 x (*.f64 #s(literal 1/2 binary64) (sqrt.f64 z))) (sqrt.f64 #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 #s(approx (* (- (* x 1/2) y) (sqrt (* z 2))) (*.f64 (*.f64 x (*.f64 (sqrt.f64 z) #s(literal 1/2 binary64))) (sqrt.f64 #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 #s(approx (* (- (* x 1/2) y) (sqrt 2)) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) x) #s(literal 1/2 binary64))) (sqrt.f64 z)) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 #s(approx (* (/ (sqrt (* z 2)) (+ (* x 1/2) y)) (+ (* x 1/2) y)) (*.f64 (sqrt.f64 z) (sqrt.f64 #s(literal 2 binary64)))) (-.f64 (*.f64 x #s(literal 1/2 binary64)) y)) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 z)) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 (*.f64 (fma.f64 x #s(literal 1/2 binary64) (neg.f64 y)) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 z)) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(approx (+ (* (* t t) 1/2) 1) (*.f64 (*.f64 t t) #s(literal 1/2 binary64)))))
(*.f64 (*.f64 #s(approx (- (* x 1/2) y) (*.f64 (-.f64 #s(literal 1/2 binary64) (/.f64 y x)) x)) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 #s(approx (pow (sqrt (exp t)) t) (fma.f64 (*.f64 t t) #s(literal 1/2 binary64) #s(literal 1 binary64))) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) (fma.f64 (*.f64 t t) #s(literal 1/2 binary64) #s(literal 1 binary64))))
(*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (*.f64 #s(approx (pow (sqrt (exp t)) t) (fma.f64 #s(literal 1/2 binary64) (*.f64 t t) #s(literal 1 binary64))) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))))
(*.f64 #s(approx (* (pow (sqrt (exp t)) t) (- (* 1/2 x) y)) #s(approx (+ (* (* (- (* 1/2 x) y) (+ (* 1/8 (* t t)) 1/2)) (* t t)) (- (* 1/2 x) y)) (*.f64 (fma.f64 (fma.f64 #s(literal -1/8 binary64) (*.f64 t t) #s(literal -1/2 binary64)) (*.f64 t t) #s(literal -1 binary64)) y))) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
(*.f64 #s(approx (* (pow (sqrt (exp t)) t) (- (* 1/2 x) y)) #s(approx (+ (* (* (- (* 1/2 x) y) (+ (* 1/8 (* t t)) 1/2)) (* t t)) (- (* 1/2 x) y)) (*.f64 (fma.f64 (fma.f64 #s(literal 1/16 binary64) (*.f64 t t) #s(literal 1/4 binary64)) (*.f64 t t) #s(literal 1/2 binary64)) x))) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
(*.f64 (*.f64 #s(approx (- (* x 1/2) y) (*.f64 (fma.f64 (/.f64 x y) #s(literal 1/2 binary64) #s(literal -1 binary64)) y)) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(/.f64 (neg.f64 #s(approx (pow (sqrt (exp t)) t) #s(literal 1 binary64))) (/.f64 #s(literal -1 binary64) (*.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (-.f64 (*.f64 x #s(literal 1/2 binary64)) y))))
#s(approx (* (* (- (* x 1/2) y) (sqrt (* z 2))) (exp (/ (* t t) 2))) (*.f64 (*.f64 (fma.f64 (*.f64 t t) #s(literal 1/2 binary64) #s(literal 1 binary64)) (*.f64 (fma.f64 #s(literal 1/2 binary64) x (neg.f64 y)) (sqrt.f64 #s(literal 2 binary64)))) (sqrt.f64 z)))
(*.f64 #s(approx (* (pow (sqrt (exp t)) t) (- (* 1/2 x) y)) (fma.f64 #s(approx (* (- (* 1/2 x) y) (+ (* 1/8 (* t t)) 1/2)) (*.f64 (fma.f64 #s(literal -1/8 binary64) (*.f64 t t) #s(literal -1/2 binary64)) y)) (*.f64 t t) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y))) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
(*.f64 #s(approx (* (pow (sqrt (exp t)) t) (- (* 1/2 x) y)) (fma.f64 #s(approx (* (- (* 1/2 x) y) (+ (* 1/8 (* t t)) 1/2)) (*.f64 (fma.f64 #s(literal 1/16 binary64) (*.f64 t t) #s(literal 1/4 binary64)) x)) (*.f64 t t) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y))) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
Outputs
(*.f64 (*.f64 #s(approx (pow (sqrt (exp t)) t) (fma.f64 (*.f64 t t) #s(literal 1/2 binary64) #s(literal 1 binary64))) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
Calls

13 calls:

36.0ms
y
25.0ms
(/.f64 (*.f64 t t) #s(literal 2 binary64))
18.0ms
x
16.0ms
(-.f64 (*.f64 x #s(literal 1/2 binary64)) y)
8.0ms
(*.f64 x #s(literal 1/2 binary64))
Results
AccuracySegmentsBranch
88.3%1y
88.3%1z
88.3%1(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) (exp.f64 (/.f64 (*.f64 t t) #s(literal 2 binary64))))
88.3%1(*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64))))
88.3%1(-.f64 (*.f64 x #s(literal 1/2 binary64)) y)
88.3%1(sqrt.f64 (*.f64 z #s(literal 2 binary64)))
88.3%1(*.f64 z #s(literal 2 binary64))
88.3%1(exp.f64 (/.f64 (*.f64 t t) #s(literal 2 binary64)))
88.3%1x
88.3%1t
88.3%1(*.f64 x #s(literal 1/2 binary64))
88.3%1(/.f64 (*.f64 t t) #s(literal 2 binary64))
88.3%1(*.f64 t t)
Compiler

Compiled 60 to 88 computations (-46.7% saved)

regimes80.0ms (0.7%)

Memory
14.7MiB live, 65.0MiB allocated
Counts
15 → 2
Calls
Call 1
Inputs
(*.f64 (*.f64 #s(approx (- (* x 1/2) y) (neg.f64 y)) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 #s(approx (* (- (* x 1/2) y) (sqrt (* z 2))) (*.f64 (*.f64 y (neg.f64 (sqrt.f64 z))) (sqrt.f64 #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 #s(approx (- (* x 1/2) y) (neg.f64 y)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (*.f64 #s(approx (pow (sqrt (exp t)) t) #s(literal 1 binary64)) (sqrt.f64 z))))
(*.f64 (*.f64 (*.f64 #s(approx (- (* x 1/2) y) (neg.f64 y)) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 z)) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 (*.f64 #s(approx (- (* x 1/2) y) (neg.f64 y)) (sqrt.f64 z)) (sqrt.f64 #s(literal 2 binary64))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 (*.f64 (sqrt.f64 z) #s(approx (- (* x 1/2) y) (neg.f64 y))) (sqrt.f64 #s(literal 2 binary64))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 #s(approx (* (- (* x 1/2) y) (sqrt (* z 2))) (*.f64 (*.f64 x (*.f64 #s(literal 1/2 binary64) (sqrt.f64 z))) (sqrt.f64 #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 #s(approx (* (- (* x 1/2) y) (sqrt (* z 2))) (*.f64 (*.f64 x (*.f64 (sqrt.f64 z) #s(literal 1/2 binary64))) (sqrt.f64 #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 #s(approx (* (- (* x 1/2) y) (sqrt 2)) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) x) #s(literal 1/2 binary64))) (sqrt.f64 z)) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 #s(approx (* (/ (sqrt (* z 2)) (+ (* x 1/2) y)) (+ (* x 1/2) y)) (*.f64 (sqrt.f64 z) (sqrt.f64 #s(literal 2 binary64)))) (-.f64 (*.f64 x #s(literal 1/2 binary64)) y)) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 z)) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 (*.f64 (fma.f64 x #s(literal 1/2 binary64) (neg.f64 y)) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 z)) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(approx (+ (* (* t t) 1/2) 1) (*.f64 (*.f64 t t) #s(literal 1/2 binary64)))))
(*.f64 (*.f64 #s(approx (- (* x 1/2) y) (*.f64 (-.f64 #s(literal 1/2 binary64) (/.f64 y x)) x)) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
Outputs
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(approx (+ (* (* t t) 1/2) 1) (*.f64 (*.f64 t t) #s(literal 1/2 binary64)))))
Calls

13 calls:

21.0ms
t
5.0ms
(*.f64 x #s(literal 1/2 binary64))
5.0ms
(sqrt.f64 (*.f64 z #s(literal 2 binary64)))
5.0ms
(-.f64 (*.f64 x #s(literal 1/2 binary64)) y)
5.0ms
(*.f64 z #s(literal 2 binary64))
Results
AccuracySegmentsBranch
57.8%1x
57.8%1y
62.8%3z
86.0%2t
57.8%1(*.f64 x #s(literal 1/2 binary64))
62.8%3(sqrt.f64 (*.f64 z #s(literal 2 binary64)))
62.8%3(*.f64 z #s(literal 2 binary64))
86.0%2(exp.f64 (/.f64 (*.f64 t t) #s(literal 2 binary64)))
86.0%2(/.f64 (*.f64 t t) #s(literal 2 binary64))
86.0%2(*.f64 t t)
83.6%3(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) (exp.f64 (/.f64 (*.f64 t t) #s(literal 2 binary64))))
59.7%2(*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64))))
61.2%3(-.f64 (*.f64 x #s(literal 1/2 binary64)) y)
Compiler

Compiled 60 to 88 computations (-46.7% saved)

regimes155.0ms (1.3%)

Memory
11.5MiB live, 123.0MiB allocated
Counts
13 → 1
Calls
Call 1
Inputs
(*.f64 (*.f64 #s(approx (- (* x 1/2) y) (neg.f64 y)) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 #s(approx (* (- (* x 1/2) y) (sqrt (* z 2))) (*.f64 (*.f64 y (neg.f64 (sqrt.f64 z))) (sqrt.f64 #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 #s(approx (- (* x 1/2) y) (neg.f64 y)) (*.f64 (sqrt.f64 #s(literal 2 binary64)) (*.f64 #s(approx (pow (sqrt (exp t)) t) #s(literal 1 binary64)) (sqrt.f64 z))))
(*.f64 (*.f64 (*.f64 #s(approx (- (* x 1/2) y) (neg.f64 y)) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 z)) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 (*.f64 #s(approx (- (* x 1/2) y) (neg.f64 y)) (sqrt.f64 z)) (sqrt.f64 #s(literal 2 binary64))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 (*.f64 (sqrt.f64 z) #s(approx (- (* x 1/2) y) (neg.f64 y))) (sqrt.f64 #s(literal 2 binary64))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 #s(approx (* (- (* x 1/2) y) (sqrt (* z 2))) (*.f64 (*.f64 x (*.f64 #s(literal 1/2 binary64) (sqrt.f64 z))) (sqrt.f64 #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 #s(approx (* (- (* x 1/2) y) (sqrt (* z 2))) (*.f64 (*.f64 x (*.f64 (sqrt.f64 z) #s(literal 1/2 binary64))) (sqrt.f64 #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 #s(approx (* (- (* x 1/2) y) (sqrt 2)) (*.f64 (*.f64 (sqrt.f64 #s(literal 2 binary64)) x) #s(literal 1/2 binary64))) (sqrt.f64 z)) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 #s(approx (* (/ (sqrt (* z 2)) (+ (* x 1/2) y)) (+ (* x 1/2) y)) (*.f64 (sqrt.f64 z) (sqrt.f64 #s(literal 2 binary64)))) (-.f64 (*.f64 x #s(literal 1/2 binary64)) y)) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 z)) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 (*.f64 (fma.f64 x #s(literal 1/2 binary64) (neg.f64 y)) (sqrt.f64 #s(literal 2 binary64))) (sqrt.f64 z)) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
Outputs
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
Calls

13 calls:

89.0ms
(*.f64 x #s(literal 1/2 binary64))
12.0ms
(/.f64 (*.f64 t t) #s(literal 2 binary64))
10.0ms
z
4.0ms
(*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64))))
4.0ms
(-.f64 (*.f64 x #s(literal 1/2 binary64)) y)
Results
AccuracySegmentsBranch
57.1%1y
57.1%1x
57.1%1(*.f64 x #s(literal 1/2 binary64))
57.1%1(-.f64 (*.f64 x #s(literal 1/2 binary64)) y)
57.1%1(*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64))))
57.1%1z
57.1%1(sqrt.f64 (*.f64 z #s(literal 2 binary64)))
57.1%1(*.f64 z #s(literal 2 binary64))
57.1%1(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) (exp.f64 (/.f64 (*.f64 t t) #s(literal 2 binary64))))
57.1%1(exp.f64 (/.f64 (*.f64 t t) #s(literal 2 binary64)))
57.1%1t
57.1%1(/.f64 (*.f64 t t) #s(literal 2 binary64))
57.1%1(*.f64 t t)
Compiler

Compiled 60 to 88 computations (-46.7% saved)

regimes46.0ms (0.4%)

Memory
-12.9MiB live, 37.0MiB allocated
Accuracy

Total 0.0b remaining (0%)

Threshold costs 0b (0%)

Counts
1 → 1
Calls
Call 1
Inputs
(*.f64 (*.f64 #s(approx (- (* x 1/2) y) (neg.f64 y)) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
Outputs
(*.f64 (*.f64 #s(approx (- (* x 1/2) y) (neg.f64 y)) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
Calls

13 calls:

29.0ms
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) (exp.f64 (/.f64 (*.f64 t t) #s(literal 2 binary64))))
1.0ms
(*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64))))
1.0ms
(*.f64 x #s(literal 1/2 binary64))
1.0ms
(-.f64 (*.f64 x #s(literal 1/2 binary64)) y)
1.0ms
(sqrt.f64 (*.f64 z #s(literal 2 binary64)))
Results
AccuracySegmentsBranch
27.8%1y
27.8%1x
27.8%1(*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64))))
27.8%1(*.f64 x #s(literal 1/2 binary64))
27.8%1z
27.8%1(sqrt.f64 (*.f64 z #s(literal 2 binary64)))
27.8%1(*.f64 z #s(literal 2 binary64))
27.8%1(/.f64 (*.f64 t t) #s(literal 2 binary64))
27.8%1(*.f64 t t)
27.8%1t
27.8%1(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) (exp.f64 (/.f64 (*.f64 t t) #s(literal 2 binary64))))
27.8%1(-.f64 (*.f64 x #s(literal 1/2 binary64)) y)
27.8%1(exp.f64 (/.f64 (*.f64 t t) #s(literal 2 binary64)))
Compiler

Compiled 60 to 88 computations (-46.7% saved)

bsearch91.0ms (0.8%)

Memory
-9.9MiB live, 29.8MiB allocated
Algorithm
binary-search
Stop Event
narrow-enough
Steps
TimeLeftRight
88.0ms
3.0153083562545888e-9
3389930522.4010077
Samples
13.0ms160×0valid
Compiler

Compiled 500 to 452 computations (9.6% saved)

Precisions
Click to see histograms. Total time spent on operations: 9.0ms
ival-mult: 4.0ms (45.9% of total)
ival-exp: 2.0ms (23% of total)
ival-sub: 1.0ms (11.5% of total)
ival-div: 1.0ms (11.5% of total)
ival-sqrt: 1.0ms (11.5% of total)
ival-true: 0.0ms (0% of total)
exact: 0.0ms (0% of total)
ival-assert: 0.0ms (0% of total)

simplify27.0ms (0.2%)

Memory
-5.1MiB live, 33.9MiB allocated
Algorithm
egg-herbie
Iterations

Useful iterations: 0 (0.0ms)

IterNodesCost
074240
1108240
2111240
3112240
Stop Event
saturated
Calls
Call 1
Inputs
(*.f64 (*.f64 (pow.f64 (sqrt.f64 (exp.f64 t)) t) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
(*.f64 (-.f64 (*.f64 #s(literal 1/2 binary64) x) y) (sqrt.f64 (*.f64 (*.f64 #s(literal 2 binary64) (pow.f64 (exp.f64 t) t)) z)))
(*.f64 (*.f64 (pow.f64 #s(approx (sqrt (exp t)) (fma.f64 #s(literal 1/2 binary64) t #s(literal 1 binary64))) t) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
(*.f64 (*.f64 #s(approx (pow (sqrt (exp t)) t) (fma.f64 (fma.f64 #s(approx (+ (* 1/48 (* t t)) 1/8) (*.f64 #s(literal 1/48 binary64) (*.f64 t t))) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
(*.f64 (*.f64 #s(approx (pow (sqrt (exp t)) t) (fma.f64 (fma.f64 #s(literal 1/8 binary64) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
(*.f64 (*.f64 #s(approx (pow (sqrt (exp t)) t) (fma.f64 (*.f64 t t) #s(literal 1/2 binary64) #s(literal 1 binary64))) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
(if (<=.f64 (*.f64 t t) #s(literal 2 binary64)) (*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64))) (*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(approx (+ (* (* t t) 1/2) 1) (*.f64 (*.f64 t t) #s(literal 1/2 binary64))))))
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 (*.f64 #s(approx (- (* x 1/2) y) (neg.f64 y)) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
Outputs
(*.f64 (*.f64 (pow.f64 (sqrt.f64 (exp.f64 t)) t) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
(*.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (pow.f64 (sqrt.f64 (exp.f64 t)) t)))
(*.f64 (-.f64 (*.f64 #s(literal 1/2 binary64) x) y) (sqrt.f64 (*.f64 (*.f64 #s(literal 2 binary64) (pow.f64 (exp.f64 t) t)) z)))
(*.f64 (sqrt.f64 (*.f64 (*.f64 (pow.f64 (exp.f64 t) t) #s(literal 2 binary64)) z)) (-.f64 (*.f64 x #s(literal 1/2 binary64)) y))
(*.f64 (*.f64 (pow.f64 #s(approx (sqrt (exp t)) (fma.f64 #s(literal 1/2 binary64) t #s(literal 1 binary64))) t) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
(*.f64 (*.f64 (pow.f64 #s(approx (sqrt (exp t)) (fma.f64 #s(literal 1/2 binary64) t #s(literal 1 binary64))) t) (-.f64 (*.f64 x #s(literal 1/2 binary64)) y)) (sqrt.f64 (*.f64 z #s(literal 2 binary64))))
(*.f64 (*.f64 #s(approx (pow (sqrt (exp t)) t) (fma.f64 (fma.f64 #s(approx (+ (* 1/48 (* t t)) 1/8) (*.f64 #s(literal 1/48 binary64) (*.f64 t t))) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
(*.f64 (*.f64 #s(approx (pow (sqrt (exp t)) t) (fma.f64 (fma.f64 #s(approx (+ (* 1/48 (* t t)) 1/8) (*.f64 (*.f64 t t) #s(literal 1/48 binary64))) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))) (-.f64 (*.f64 x #s(literal 1/2 binary64)) y)) (sqrt.f64 (*.f64 z #s(literal 2 binary64))))
(*.f64 (*.f64 #s(approx (pow (sqrt (exp t)) t) (fma.f64 (fma.f64 #s(literal 1/8 binary64) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
(*.f64 (*.f64 #s(approx (pow (sqrt (exp t)) t) (fma.f64 (fma.f64 #s(literal 1/8 binary64) (*.f64 t t) #s(literal 1/2 binary64)) (*.f64 t t) #s(literal 1 binary64))) (-.f64 (*.f64 x #s(literal 1/2 binary64)) y)) (sqrt.f64 (*.f64 z #s(literal 2 binary64))))
(*.f64 (*.f64 #s(approx (pow (sqrt (exp t)) t) (fma.f64 (*.f64 t t) #s(literal 1/2 binary64) #s(literal 1 binary64))) (-.f64 (*.f64 #s(literal 1/2 binary64) x) y)) (sqrt.f64 (*.f64 #s(literal 2 binary64) z)))
(*.f64 (*.f64 #s(approx (pow (sqrt (exp t)) t) (fma.f64 (*.f64 t t) #s(literal 1/2 binary64) #s(literal 1 binary64))) (-.f64 (*.f64 x #s(literal 1/2 binary64)) y)) (sqrt.f64 (*.f64 z #s(literal 2 binary64))))
(if (<=.f64 (*.f64 t t) #s(literal 2 binary64)) (*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64))) (*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(approx (+ (* (* t t) 1/2) 1) (*.f64 (*.f64 t t) #s(literal 1/2 binary64))))))
(if (<=.f64 (*.f64 t t) #s(literal 2 binary64)) (*.f64 #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)) (*.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (-.f64 (*.f64 x #s(literal 1/2 binary64)) y))) (*.f64 #s(approx (exp (/ (* t t) 2)) #s(approx (+ (* (* t t) 1/2) 1) (*.f64 (*.f64 t t) #s(literal 1/2 binary64)))) (*.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (-.f64 (*.f64 x #s(literal 1/2 binary64)) y))))
(*.f64 (*.f64 (-.f64 (*.f64 x #s(literal 1/2 binary64)) y) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))
(*.f64 #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)) (*.f64 (sqrt.f64 (*.f64 z #s(literal 2 binary64))) (-.f64 (*.f64 x #s(literal 1/2 binary64)) y)))
(*.f64 (*.f64 #s(approx (- (* x 1/2) y) (neg.f64 y)) (sqrt.f64 (*.f64 z #s(literal 2 binary64)))) #s(approx (exp (/ (* t t) 2)) #s(literal 1 binary64)))

soundness870.0ms (7.5%)

Memory
35.6MiB live, 665.5MiB allocated
Iterations

Useful iterations: 1 (0.0ms)

IterNodesCost
01546
02444
16343
228543
3234343
0861743
06093409
120453069
270533026
082622884
0133612
1446483
21554432
34441429
08855417
06893865
122523468
081093313
Stop Event
fuel
iter limit
node limit
iter limit
node limit
iter limit
node limit
iter limit
node limit
iter limit
Compiler

Compiled 494 to 309 computations (37.4% saved)

preprocess105.0ms (0.9%)

Memory
-4.5MiB live, 108.3MiB allocated
Remove

(abs t)

Compiler

Compiled 808 to 454 computations (43.8% saved)

end0.0ms (0%)

Memory
0.0MiB live, 0.0MiB allocated

Profiling

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