Lanczos kernel

Time bar (total: 10.1s)

start0.0ms (0%)

Memory
0.1MiB live, 0.1MiB allocated

analyze24.0ms (0.2%)

Memory
-7.5MiB live, 36.5MiB allocated
Algorithm
search
Search
ProbabilityValidUnknownPreconditionInfiniteDomainCan'tIter
0%0%0%100%0%0%0%0
0%0%0%100%0%0%0%1
50%0%0%100%0%0%0%2
50%0%0%100%0%0%0%3
75%0%0%100%0%0%0%4
75%0%0%100%0%0%0%5
87.5%0%0%100%0%0%0%6
87.5%0%0%100%0%0%0%7
93.7%0%0%100%0%0%0%8
93.7%0%0%100%0%0%0%9
96.9%0%0%100%0%0%0%10
96.9%0%0%100%0%0%0%11
98.4%0%0%100%0%0%0%12
Compiler

Compiled 37 to 21 computations (43.2% saved)

sample1.5s (14.4%)

Memory
48.2MiB live, 2 205.9MiB allocated
Samples
1.1s8 256×0valid
Precisions
Click to see histograms. Total time spent on operations: 858.0ms
ival-mult: 193.0ms (22.5% of total)
ival-sin: 151.0ms (17.6% of total)
const: 129.0ms (15% of total)
ival-sinu: 120.0ms (14% of total)
ival-div: 102.0ms (11.9% of total)
ival-<=: 88.0ms (10.3% of total)
ival-pi: 37.0ms (4.3% of total)
ival-and: 26.0ms (3% of total)
exact: 8.0ms (0.9% of total)
ival-assert: 3.0ms (0.3% of total)
Bogosity

explain126.0ms (1.2%)

Memory
-18.1MiB live, 224.2MiB allocated
FPErrors
Click to see full error table
Ground TruthOverpredictionsExampleUnderpredictionsExampleSubexpression
00-0-(PI.f32)
00-0-(/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32)))
00-0-(*.f32 (*.f32 x (PI.f32)) tau)
01(0.7992757558822632 1.2472240924835205)0-(sin.f32 (*.f32 (*.f32 x (PI.f32)) tau))
00-0-(*.f32 x (PI.f32))
00-0-(sin.f32 (*.f32 x (PI.f32)))
00-0-(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
00-0-tau
00-0-(/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau))
00-0-x
Explanations
Click to see full explanations table
OperatorSubexpressionExplanationCount
sin.f32(sin.f32 (*.f32 (*.f32 x (PI.f32)) tau))cancelation10
Confusion
Predicted +Predicted -
+13
-0252
Precision
1.0
Recall
0.25
Confusion?
Predicted +Predicted MaybePredicted -
+112
-00252
Precision?
1.0
Recall?
0.5
Freqs
test
numberfreq
0255
11
Total Confusion?
Predicted +Predicted MaybePredicted -
+100
-000
Precision?
1.0
Recall?
1.0
Samples
48.0ms512×0valid
Compiler

Compiled 273 to 88 computations (67.8% saved)

Precisions
Click to see histograms. Total time spent on operations: 33.0ms
ival-mult: 9.0ms (26.9% of total)
ival-sinu: 9.0ms (26.9% of total)
ival-sin: 7.0ms (20.9% of total)
ival-div: 6.0ms (17.9% of total)
ival-pi: 2.0ms (6% of total)
ival-true: 0.0ms (0% of total)
ival-assert: 0.0ms (0% of total)

preprocess73.0ms (0.7%)

Memory
26.7MiB live, 64.7MiB allocated
Algorithm
egg-herbie
Iterations

Useful iterations: 0 (0.0ms)

IterNodesCost
028123
188123
2415107
32253107
44724107
56828107
67824107
01021
01821
13121
28821
329621
469921
5108221
6111521
7111521
0111521
Stop Event
iter limit
saturated
iter limit
node limit
Calls
Call 1
Inputs
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
Outputs
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
(*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (*.f32 (PI.f32) x) (PI.f32))) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 tau x)))
Symmetry

(abs tau)

(abs x)

Compiler

Compiled 21 to 10 computations (52.4% saved)

eval0.0ms (0%)

Memory
0.2MiB live, 0.2MiB allocated
Compiler

Compiled 0 to 2 computations (-∞% saved)

prune0.0ms (0%)

Memory
0.7MiB live, 0.7MiB allocated
Alt Table
Click to see full alt table
StatusAccuracyProgram
97.7%
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
Compiler

Compiled 21 to 10 computations (52.4% saved)

simplify22.0ms (0.2%)

Memory
-24.2MiB live, 14.1MiB allocated
Algorithm
egg-herbie
Localize:

Found 4 expressions of interest:

NewMetricScoreProgram
cost-diff0
(*.f32 (*.f32 x (PI.f32)) tau)
cost-diff0
(sin.f32 (*.f32 (*.f32 x (PI.f32)) tau))
cost-diff0
(/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau))
cost-diff0
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
Iterations

Useful iterations: 0 (0.0ms)

IterNodesCost
01062
01862
13162
28862
329662
469962
5108262
6111562
7111562
0111562
Stop Event
iter limit
saturated
iter limit
Calls
Call 1
Inputs
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
(/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau))
(sin.f32 (*.f32 (*.f32 x (PI.f32)) tau))
(*.f32 (*.f32 x (PI.f32)) tau)
(*.f32 x (PI.f32))
x
(PI.f32)
tau
(/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32)))
(sin.f32 (*.f32 x (PI.f32)))
Outputs
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
(*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (*.f32 (PI.f32) x) (PI.f32))) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 tau x)))
(/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau))
(/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 tau (*.f32 (PI.f32) x)))
(sin.f32 (*.f32 (*.f32 x (PI.f32)) tau))
(sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))
(*.f32 (*.f32 x (PI.f32)) tau)
(*.f32 tau (*.f32 (PI.f32) x))
(*.f32 x (PI.f32))
(*.f32 (PI.f32) x)
x
(PI.f32)
tau
(/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32)))
(/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x))
(sin.f32 (*.f32 x (PI.f32)))
(sin.f32 (*.f32 (PI.f32) x))

localize39.0ms (0.4%)

Memory
-1.9MiB live, 78.1MiB allocated
Localize:

Found 4 expressions of interest:

NewMetricScoreProgram
accuracy0.3046875
(*.f32 x (PI.f32))
accuracy0.360038769536884
(/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32)))
accuracy0.37521767039534126
(sin.f32 (*.f32 (*.f32 x (PI.f32)) tau))
accuracy0.3984375
(/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau))
Samples
24.0ms256×0valid
Compiler

Compiled 126 to 22 computations (82.5% saved)

Precisions
Click to see histograms. Total time spent on operations: 17.0ms
ival-mult: 4.0ms (24.1% of total)
ival-sinu: 4.0ms (24.1% of total)
ival-sin: 4.0ms (24.1% of total)
ival-div: 3.0ms (18.1% of total)
ival-pi: 2.0ms (12.1% of total)
ival-true: 0.0ms (0% of total)
ival-assert: 0.0ms (0% of total)

series32.0ms (0.3%)

Memory
-1.6MiB live, 36.1MiB allocated
Counts
6 → 120
Calls
Call 1
Inputs
#s(alt (*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32)))) (patch (*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32)))) #<representation binary32>) () ())
#s(alt (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (patch (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) #<representation binary32>) () ())
#s(alt (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (patch (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) #<representation binary32>) () ())
#s(alt (*.f32 (*.f32 x (PI.f32)) tau) (patch (*.f32 (*.f32 x (PI.f32)) tau) #<representation binary32>) () ())
#s(alt (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))) (patch (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))) #<representation binary32>) () ())
#s(alt (*.f32 x (PI.f32)) (patch (*.f32 x (PI.f32)) #<representation binary32>) () ())
Outputs
#s(alt (/ (sin (* x (PI))) (* x (PI))) (taylor 0 tau) (#s(alt (*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32)))) (patch (*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32)))) #<representation binary32>) () ())) ())
#s(alt (+ (* -1/6 (* (pow tau 2) (* x (* (PI) (sin (* x (PI))))))) (/ (sin (* x (PI))) (* x (PI)))) (taylor 0 tau) (#s(alt (*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32)))) (patch (*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32)))) #<representation binary32>) () ())) ())
#s(alt (+ (* (pow tau 2) (+ (* -1/6 (* x (* (PI) (sin (* x (PI)))))) (* 1/120 (* (pow tau 2) (* (pow x 3) (* (pow (PI) 3) (sin (* x (PI))))))))) (/ (sin (* x (PI))) (* x (PI)))) (taylor 0 tau) (#s(alt (*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32)))) (patch (*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32)))) #<representation binary32>) () ())) ())
#s(alt (+ (* (pow tau 2) (+ (* -1/6 (* x (* (PI) (sin (* x (PI)))))) (* (pow tau 2) (+ (* -1/5040 (* (pow tau 2) (* (pow x 5) (* (pow (PI) 5) (sin (* x (PI))))))) (* 1/120 (* (pow x 3) (* (pow (PI) 3) (sin (* x (PI)))))))))) (/ (sin (* x (PI))) (* x (PI)))) (taylor 0 tau) (#s(alt (*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32)))) (patch (*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32)))) #<representation binary32>) () ())) ())
#s(alt 1 (taylor 0 tau) (#s(alt (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (patch (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) #<representation binary32>) () ())) ())
#s(alt (+ 1 (* -1/6 (* (pow tau 2) (* (pow x 2) (pow (PI) 2))))) (taylor 0 tau) (#s(alt (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (patch (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) #<representation binary32>) () ())) ())
#s(alt (+ 1 (* (pow tau 2) (+ (* -1/6 (* (pow x 2) (pow (PI) 2))) (* 1/120 (* (pow tau 2) (* (pow x 4) (pow (PI) 4))))))) (taylor 0 tau) (#s(alt (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (patch (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) #<representation binary32>) () ())) ())
#s(alt (+ 1 (* (pow tau 2) (+ (* -1/6 (* (pow x 2) (pow (PI) 2))) (* (pow tau 2) (+ (* -1/5040 (* (pow tau 2) (* (pow x 6) (pow (PI) 6)))) (* 1/120 (* (pow x 4) (pow (PI) 4)))))))) (taylor 0 tau) (#s(alt (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (patch (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) #<representation binary32>) () ())) ())
#s(alt (* tau (* x (PI))) (taylor 0 tau) (#s(alt (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (patch (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) #<representation binary32>) () ())) ())
#s(alt (* tau (+ (* -1/6 (* (pow tau 2) (* (pow x 3) (pow (PI) 3)))) (* x (PI)))) (taylor 0 tau) (#s(alt (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (patch (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) #<representation binary32>) () ())) ())
#s(alt (* tau (+ (* x (PI)) (* (pow tau 2) (+ (* -1/6 (* (pow x 3) (pow (PI) 3))) (* 1/120 (* (pow tau 2) (* (pow x 5) (pow (PI) 5)))))))) (taylor 0 tau) (#s(alt (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (patch (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) #<representation binary32>) () ())) ())
#s(alt (* tau (+ (* x (PI)) (* (pow tau 2) (+ (* -1/6 (* (pow x 3) (pow (PI) 3))) (* (pow tau 2) (+ (* -1/5040 (* (pow tau 2) (* (pow x 7) (pow (PI) 7)))) (* 1/120 (* (pow x 5) (pow (PI) 5))))))))) (taylor 0 tau) (#s(alt (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (patch (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) #<representation binary32>) () ())) ())
#s(alt (* tau (* x (PI))) (taylor 0 tau) (#s(alt (*.f32 (*.f32 x (PI.f32)) tau) (patch (*.f32 (*.f32 x (PI.f32)) tau) #<representation binary32>) () ())) ())
#s(alt (* tau (* x (PI))) (taylor 0 tau) (#s(alt (*.f32 (*.f32 x (PI.f32)) tau) (patch (*.f32 (*.f32 x (PI.f32)) tau) #<representation binary32>) () ())) ())
#s(alt (* tau (* x (PI))) (taylor 0 tau) (#s(alt (*.f32 (*.f32 x (PI.f32)) tau) (patch (*.f32 (*.f32 x (PI.f32)) tau) #<representation binary32>) () ())) ())
#s(alt (* tau (* x (PI))) (taylor 0 tau) (#s(alt (*.f32 (*.f32 x (PI.f32)) tau) (patch (*.f32 (*.f32 x (PI.f32)) tau) #<representation binary32>) () ())) ())
#s(alt (/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2)))) (taylor inf tau) (#s(alt (*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32)))) (patch (*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32)))) #<representation binary32>) () ())) ())
#s(alt (/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2)))) (taylor inf tau) (#s(alt (*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32)))) (patch (*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32)))) #<representation binary32>) () ())) ())
#s(alt (/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2)))) (taylor inf tau) (#s(alt (*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32)))) (patch (*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32)))) #<representation binary32>) () ())) ())
#s(alt (/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2)))) (taylor inf tau) (#s(alt (*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32)))) (patch (*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32)))) #<representation binary32>) () ())) ())
#s(alt (/ (sin (* tau (* x (PI)))) (* tau (* x (PI)))) (taylor inf tau) (#s(alt (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (patch (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) #<representation binary32>) () ())) ())
#s(alt (/ (sin (* tau (* x (PI)))) (* tau (* x (PI)))) (taylor inf tau) (#s(alt (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (patch (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) #<representation binary32>) () ())) ())
#s(alt (/ (sin (* tau (* x (PI)))) (* tau (* x (PI)))) (taylor inf tau) (#s(alt (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (patch (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) #<representation binary32>) () ())) ())
#s(alt (/ (sin (* tau (* x (PI)))) (* tau (* x (PI)))) (taylor inf tau) (#s(alt (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (patch (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) #<representation binary32>) () ())) ())
#s(alt (sin (* tau (* x (PI)))) (taylor inf tau) (#s(alt (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (patch (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) #<representation binary32>) () ())) ())
#s(alt (sin (* tau (* x (PI)))) (taylor inf tau) (#s(alt (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (patch (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) #<representation binary32>) () ())) ())
#s(alt (sin (* tau (* x (PI)))) (taylor inf tau) (#s(alt (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (patch (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) #<representation binary32>) () ())) ())
#s(alt (sin (* tau (* x (PI)))) (taylor inf tau) (#s(alt (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (patch (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) #<representation binary32>) () ())) ())
#s(alt (* tau (* x (PI))) (taylor inf tau) (#s(alt (*.f32 (*.f32 x (PI.f32)) tau) (patch (*.f32 (*.f32 x (PI.f32)) tau) #<representation binary32>) () ())) ())
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#s(alt (/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2)))) (taylor -inf x) (#s(alt (*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32)))) (patch (*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32)))) #<representation binary32>) () ())) ())
#s(alt (/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2)))) (taylor -inf x) (#s(alt (*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32)))) (patch (*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32)))) #<representation binary32>) () ())) ())
#s(alt (/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2)))) (taylor -inf x) (#s(alt (*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32)))) (patch (*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32)))) #<representation binary32>) () ())) ())
#s(alt (/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2)))) (taylor -inf x) (#s(alt (*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32)))) (patch (*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32)))) #<representation binary32>) () ())) ())
#s(alt (/ (sin (* tau (* x (PI)))) (* tau (* x (PI)))) (taylor -inf x) (#s(alt (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (patch (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) #<representation binary32>) () ())) ())
#s(alt (/ (sin (* tau (* x (PI)))) (* tau (* x (PI)))) (taylor -inf x) (#s(alt (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (patch (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) #<representation binary32>) () ())) ())
#s(alt (/ (sin (* tau (* x (PI)))) (* tau (* x (PI)))) (taylor -inf x) (#s(alt (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (patch (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) #<representation binary32>) () ())) ())
#s(alt (/ (sin (* tau (* x (PI)))) (* tau (* x (PI)))) (taylor -inf x) (#s(alt (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (patch (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) #<representation binary32>) () ())) ())
#s(alt (sin (* tau (* x (PI)))) (taylor -inf x) (#s(alt (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (patch (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) #<representation binary32>) () ())) ())
#s(alt (sin (* tau (* x (PI)))) (taylor -inf x) (#s(alt (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (patch (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) #<representation binary32>) () ())) ())
#s(alt (sin (* tau (* x (PI)))) (taylor -inf x) (#s(alt (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (patch (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) #<representation binary32>) () ())) ())
#s(alt (sin (* tau (* x (PI)))) (taylor -inf x) (#s(alt (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (patch (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) #<representation binary32>) () ())) ())
#s(alt (* tau (* x (PI))) (taylor -inf x) (#s(alt (*.f32 (*.f32 x (PI.f32)) tau) (patch (*.f32 (*.f32 x (PI.f32)) tau) #<representation binary32>) () ())) ())
#s(alt (* tau (* x (PI))) (taylor -inf x) (#s(alt (*.f32 (*.f32 x (PI.f32)) tau) (patch (*.f32 (*.f32 x (PI.f32)) tau) #<representation binary32>) () ())) ())
#s(alt (* tau (* x (PI))) (taylor -inf x) (#s(alt (*.f32 (*.f32 x (PI.f32)) tau) (patch (*.f32 (*.f32 x (PI.f32)) tau) #<representation binary32>) () ())) ())
#s(alt (* tau (* x (PI))) (taylor -inf x) (#s(alt (*.f32 (*.f32 x (PI.f32)) tau) (patch (*.f32 (*.f32 x (PI.f32)) tau) #<representation binary32>) () ())) ())
#s(alt (/ (sin (* x (PI))) (* x (PI))) (taylor -inf x) (#s(alt (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))) (patch (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))) #<representation binary32>) () ())) ())
#s(alt (/ (sin (* x (PI))) (* x (PI))) (taylor -inf x) (#s(alt (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))) (patch (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))) #<representation binary32>) () ())) ())
#s(alt (/ (sin (* x (PI))) (* x (PI))) (taylor -inf x) (#s(alt (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))) (patch (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))) #<representation binary32>) () ())) ())
#s(alt (/ (sin (* x (PI))) (* x (PI))) (taylor -inf x) (#s(alt (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))) (patch (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))) #<representation binary32>) () ())) ())
#s(alt (* x (PI)) (taylor -inf x) (#s(alt (*.f32 x (PI.f32)) (patch (*.f32 x (PI.f32)) #<representation binary32>) () ())) ())
#s(alt (* x (PI)) (taylor -inf x) (#s(alt (*.f32 x (PI.f32)) (patch (*.f32 x (PI.f32)) #<representation binary32>) () ())) ())
#s(alt (* x (PI)) (taylor -inf x) (#s(alt (*.f32 x (PI.f32)) (patch (*.f32 x (PI.f32)) #<representation binary32>) () ())) ())
#s(alt (* x (PI)) (taylor -inf x) (#s(alt (*.f32 x (PI.f32)) (patch (*.f32 x (PI.f32)) #<representation binary32>) () ())) ())
Calls

6 calls:

TimeVariablePointExpression
7.0ms
x
@-inf
((* (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (/ (sin (* x (PI))) (* x (PI)))) (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (sin (* (* x (PI)) tau)) (* (* x (PI)) tau) (/ (sin (* x (PI))) (* x (PI))) (* x (PI)))
5.0ms
tau
@-inf
((* (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (/ (sin (* x (PI))) (* x (PI)))) (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (sin (* (* x (PI)) tau)) (* (* x (PI)) tau) (/ (sin (* x (PI))) (* x (PI))) (* x (PI)))
4.0ms
tau
@inf
((* (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (/ (sin (* x (PI))) (* x (PI)))) (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (sin (* (* x (PI)) tau)) (* (* x (PI)) tau) (/ (sin (* x (PI))) (* x (PI))) (* x (PI)))
4.0ms
x
@inf
((* (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (/ (sin (* x (PI))) (* x (PI)))) (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (sin (* (* x (PI)) tau)) (* (* x (PI)) tau) (/ (sin (* x (PI))) (* x (PI))) (* x (PI)))
3.0ms
x
@0
((* (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (/ (sin (* x (PI))) (* x (PI)))) (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (sin (* (* x (PI)) tau)) (* (* x (PI)) tau) (/ (sin (* x (PI))) (* x (PI))) (* x (PI)))

simplify224.0ms (2.2%)

Memory
26.1MiB live, 216.1MiB allocated
Algorithm
egg-herbie
Iterations

Useful iterations: 0 (0.0ms)

IterNodesCost
01961582
16201562
224071538
341371538
448711538
555501538
659401538
759711538
859711538
088161486
Stop Event
iter limit
node limit
Counts
120 → 120
Calls
Call 1
Inputs
(/ (sin (* x (PI))) (* x (PI)))
(+ (* -1/6 (* (pow tau 2) (* x (* (PI) (sin (* x (PI))))))) (/ (sin (* x (PI))) (* x (PI))))
(+ (* (pow tau 2) (+ (* -1/6 (* x (* (PI) (sin (* x (PI)))))) (* 1/120 (* (pow tau 2) (* (pow x 3) (* (pow (PI) 3) (sin (* x (PI))))))))) (/ (sin (* x (PI))) (* x (PI))))
(+ (* (pow tau 2) (+ (* -1/6 (* x (* (PI) (sin (* x (PI)))))) (* (pow tau 2) (+ (* -1/5040 (* (pow tau 2) (* (pow x 5) (* (pow (PI) 5) (sin (* x (PI))))))) (* 1/120 (* (pow x 3) (* (pow (PI) 3) (sin (* x (PI)))))))))) (/ (sin (* x (PI))) (* x (PI))))
1
(+ 1 (* -1/6 (* (pow tau 2) (* (pow x 2) (pow (PI) 2)))))
(+ 1 (* (pow tau 2) (+ (* -1/6 (* (pow x 2) (pow (PI) 2))) (* 1/120 (* (pow tau 2) (* (pow x 4) (pow (PI) 4)))))))
(+ 1 (* (pow tau 2) (+ (* -1/6 (* (pow x 2) (pow (PI) 2))) (* (pow tau 2) (+ (* -1/5040 (* (pow tau 2) (* (pow x 6) (pow (PI) 6)))) (* 1/120 (* (pow x 4) (pow (PI) 4))))))))
(* tau (* x (PI)))
(* tau (+ (* -1/6 (* (pow tau 2) (* (pow x 3) (pow (PI) 3)))) (* x (PI))))
(* tau (+ (* x (PI)) (* (pow tau 2) (+ (* -1/6 (* (pow x 3) (pow (PI) 3))) (* 1/120 (* (pow tau 2) (* (pow x 5) (pow (PI) 5))))))))
(* tau (+ (* x (PI)) (* (pow tau 2) (+ (* -1/6 (* (pow x 3) (pow (PI) 3))) (* (pow tau 2) (+ (* -1/5040 (* (pow tau 2) (* (pow x 7) (pow (PI) 7)))) (* 1/120 (* (pow x 5) (pow (PI) 5)))))))))
(* tau (* x (PI)))
(* tau (* x (PI)))
(* tau (* x (PI)))
(* tau (* x (PI)))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(/ (sin (* tau (* x (PI)))) (* tau (* x (PI))))
(/ (sin (* tau (* x (PI)))) (* tau (* x (PI))))
(/ (sin (* tau (* x (PI)))) (* tau (* x (PI))))
(/ (sin (* tau (* x (PI)))) (* tau (* x (PI))))
(sin (* tau (* x (PI))))
(sin (* tau (* x (PI))))
(sin (* tau (* x (PI))))
(sin (* tau (* x (PI))))
(* tau (* x (PI)))
(* tau (* x (PI)))
(* tau (* x (PI)))
(* tau (* x (PI)))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(/ (sin (* tau (* x (PI)))) (* tau (* x (PI))))
(/ (sin (* tau (* x (PI)))) (* tau (* x (PI))))
(/ (sin (* tau (* x (PI)))) (* tau (* x (PI))))
(/ (sin (* tau (* x (PI)))) (* tau (* x (PI))))
(sin (* tau (* x (PI))))
(sin (* tau (* x (PI))))
(sin (* tau (* x (PI))))
(sin (* tau (* x (PI))))
(* tau (* x (PI)))
(* tau (* x (PI)))
(* tau (* x (PI)))
(* tau (* x (PI)))
1
(+ 1 (* (pow x 2) (+ (* -1/6 (* (pow tau 2) (pow (PI) 2))) (* -1/6 (pow (PI) 2)))))
(+ 1 (* (pow x 2) (+ (* -1/6 (* (pow tau 2) (pow (PI) 2))) (+ (* -1/6 (pow (PI) 2)) (* (pow x 2) (+ (* 1/120 (* (pow tau 4) (pow (PI) 4))) (+ (* 1/120 (pow (PI) 4)) (* 1/36 (* (pow tau 2) (pow (PI) 4))))))))))
(+ 1 (* (pow x 2) (+ (* -1/6 (* (pow tau 2) (pow (PI) 2))) (+ (* -1/6 (pow (PI) 2)) (* (pow x 2) (+ (* 1/120 (* (pow tau 4) (pow (PI) 4))) (+ (* 1/120 (pow (PI) 4)) (+ (* 1/36 (* (pow tau 2) (pow (PI) 4))) (* (pow x 2) (+ (* -1/720 (* (pow tau 2) (pow (PI) 6))) (+ (* -1/720 (* (pow tau 4) (pow (PI) 6))) (+ (* -1/5040 (* (pow tau 6) (pow (PI) 6))) (* -1/5040 (pow (PI) 6))))))))))))))
1
(+ 1 (* -1/6 (* (pow tau 2) (* (pow x 2) (pow (PI) 2)))))
(+ 1 (* (pow x 2) (+ (* -1/6 (* (pow tau 2) (pow (PI) 2))) (* 1/120 (* (pow tau 4) (* (pow x 2) (pow (PI) 4)))))))
(+ 1 (* (pow x 2) (+ (* -1/6 (* (pow tau 2) (pow (PI) 2))) (* (pow x 2) (+ (* -1/5040 (* (pow tau 6) (* (pow x 2) (pow (PI) 6)))) (* 1/120 (* (pow tau 4) (pow (PI) 4))))))))
(* tau (* x (PI)))
(* x (+ (* -1/6 (* (pow tau 3) (* (pow x 2) (pow (PI) 3)))) (* tau (PI))))
(* x (+ (* tau (PI)) (* (pow x 2) (+ (* -1/6 (* (pow tau 3) (pow (PI) 3))) (* 1/120 (* (pow tau 5) (* (pow x 2) (pow (PI) 5))))))))
(* x (+ (* tau (PI)) (* (pow x 2) (+ (* -1/6 (* (pow tau 3) (pow (PI) 3))) (* (pow x 2) (+ (* -1/5040 (* (pow tau 7) (* (pow x 2) (pow (PI) 7)))) (* 1/120 (* (pow tau 5) (pow (PI) 5)))))))))
(* tau (* x (PI)))
(* tau (* x (PI)))
(* tau (* x (PI)))
(* tau (* x (PI)))
1
(+ 1 (* -1/6 (* (pow x 2) (pow (PI) 2))))
(+ 1 (* (pow x 2) (+ (* -1/6 (pow (PI) 2)) (* 1/120 (* (pow x 2) (pow (PI) 4))))))
(+ 1 (* (pow x 2) (+ (* -1/6 (pow (PI) 2)) (* (pow x 2) (+ (* -1/5040 (* (pow x 2) (pow (PI) 6))) (* 1/120 (pow (PI) 4)))))))
(* x (PI))
(* x (PI))
(* x (PI))
(* x (PI))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(/ (sin (* tau (* x (PI)))) (* tau (* x (PI))))
(/ (sin (* tau (* x (PI)))) (* tau (* x (PI))))
(/ (sin (* tau (* x (PI)))) (* tau (* x (PI))))
(/ (sin (* tau (* x (PI)))) (* tau (* x (PI))))
(sin (* tau (* x (PI))))
(sin (* tau (* x (PI))))
(sin (* tau (* x (PI))))
(sin (* tau (* x (PI))))
(* tau (* x (PI)))
(* tau (* x (PI)))
(* tau (* x (PI)))
(* tau (* x (PI)))
(/ (sin (* x (PI))) (* x (PI)))
(/ (sin (* x (PI))) (* x (PI)))
(/ (sin (* x (PI))) (* x (PI)))
(/ (sin (* x (PI))) (* x (PI)))
(* x (PI))
(* x (PI))
(* x (PI))
(* x (PI))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(/ (sin (* tau (* x (PI)))) (* tau (* x (PI))))
(/ (sin (* tau (* x (PI)))) (* tau (* x (PI))))
(/ (sin (* tau (* x (PI)))) (* tau (* x (PI))))
(/ (sin (* tau (* x (PI)))) (* tau (* x (PI))))
(sin (* tau (* x (PI))))
(sin (* tau (* x (PI))))
(sin (* tau (* x (PI))))
(sin (* tau (* x (PI))))
(* tau (* x (PI)))
(* tau (* x (PI)))
(* tau (* x (PI)))
(* tau (* x (PI)))
(/ (sin (* x (PI))) (* x (PI)))
(/ (sin (* x (PI))) (* x (PI)))
(/ (sin (* x (PI))) (* x (PI)))
(/ (sin (* x (PI))) (* x (PI)))
(* x (PI))
(* x (PI))
(* x (PI))
(* x (PI))
Outputs
(/ (sin (* x (PI))) (* x (PI)))
(/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x))
(+ (* -1/6 (* (pow tau 2) (* x (* (PI) (sin (* x (PI))))))) (/ (sin (* x (PI))) (* x (PI))))
(fma.f32 (*.f32 (*.f32 tau tau) #s(literal -1/6 binary32)) (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x)) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x)))
(+ (* (pow tau 2) (+ (* -1/6 (* x (* (PI) (sin (* x (PI)))))) (* 1/120 (* (pow tau 2) (* (pow x 3) (* (pow (PI) 3) (sin (* x (PI))))))))) (/ (sin (* x (PI))) (* x (PI))))
(fma.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (fma.f32 (*.f32 #s(literal 1/120 binary32) (*.f32 tau tau)) (*.f32 (pow.f32 (PI.f32) #s(literal 3 binary32)) (pow.f32 x #s(literal 3 binary32))) (*.f32 (*.f32 #s(literal -1/6 binary32) x) (PI.f32)))) (*.f32 tau tau) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x)))
(+ (* (pow tau 2) (+ (* -1/6 (* x (* (PI) (sin (* x (PI)))))) (* (pow tau 2) (+ (* -1/5040 (* (pow tau 2) (* (pow x 5) (* (pow (PI) 5) (sin (* x (PI))))))) (* 1/120 (* (pow x 3) (* (pow (PI) 3) (sin (* x (PI)))))))))) (/ (sin (* x (PI))) (* x (PI))))
(fma.f32 (pow.f32 tau #s(literal 4 binary32)) (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (fma.f32 (*.f32 (pow.f32 x #s(literal 3 binary32)) #s(literal 1/120 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32)) (*.f32 (*.f32 #s(literal -1/5040 binary32) (*.f32 tau tau)) (*.f32 (pow.f32 (PI.f32) #s(literal 5 binary32)) (pow.f32 x #s(literal 5 binary32)))))) (fma.f32 (*.f32 (*.f32 tau tau) #s(literal -1/6 binary32)) (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x)) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x))))
1
#s(literal 1 binary32)
(+ 1 (* -1/6 (* (pow tau 2) (* (pow x 2) (pow (PI) 2)))))
(fma.f32 (*.f32 tau (*.f32 (*.f32 x x) tau)) (*.f32 (*.f32 (PI.f32) (PI.f32)) #s(literal -1/6 binary32)) #s(literal 1 binary32))
(+ 1 (* (pow tau 2) (+ (* -1/6 (* (pow x 2) (pow (PI) 2))) (* 1/120 (* (pow tau 2) (* (pow x 4) (pow (PI) 4)))))))
(fma.f32 (fma.f32 (*.f32 (*.f32 (*.f32 #s(literal -1/6 binary32) x) x) (PI.f32)) (PI.f32) (*.f32 (*.f32 #s(literal 1/120 binary32) (*.f32 tau tau)) (*.f32 (pow.f32 (PI.f32) #s(literal 4 binary32)) (pow.f32 x #s(literal 4 binary32))))) (*.f32 tau tau) #s(literal 1 binary32))
(+ 1 (* (pow tau 2) (+ (* -1/6 (* (pow x 2) (pow (PI) 2))) (* (pow tau 2) (+ (* -1/5040 (* (pow tau 2) (* (pow x 6) (pow (PI) 6)))) (* 1/120 (* (pow x 4) (pow (PI) 4))))))))
(fma.f32 (pow.f32 tau #s(literal 4 binary32)) (fma.f32 (*.f32 (pow.f32 x #s(literal 4 binary32)) #s(literal 1/120 binary32)) (pow.f32 (PI.f32) #s(literal 4 binary32)) (*.f32 (*.f32 #s(literal -1/5040 binary32) (*.f32 tau tau)) (*.f32 (pow.f32 (PI.f32) #s(literal 6 binary32)) (pow.f32 x #s(literal 6 binary32))))) (fma.f32 (*.f32 tau (*.f32 (*.f32 x x) tau)) (*.f32 (*.f32 (PI.f32) (PI.f32)) #s(literal -1/6 binary32)) #s(literal 1 binary32)))
(* tau (* x (PI)))
(*.f32 tau (*.f32 (PI.f32) x))
(* tau (+ (* -1/6 (* (pow tau 2) (* (pow x 3) (pow (PI) 3)))) (* x (PI))))
(*.f32 (fma.f32 (*.f32 (pow.f32 x #s(literal 3 binary32)) (*.f32 tau tau)) (*.f32 (pow.f32 (PI.f32) #s(literal 3 binary32)) #s(literal -1/6 binary32)) (*.f32 (PI.f32) x)) tau)
(* tau (+ (* x (PI)) (* (pow tau 2) (+ (* -1/6 (* (pow x 3) (pow (PI) 3))) (* 1/120 (* (pow tau 2) (* (pow x 5) (pow (PI) 5))))))))
(fma.f32 (pow.f32 tau #s(literal 3 binary32)) (fma.f32 (*.f32 #s(literal 1/120 binary32) (*.f32 tau tau)) (*.f32 (pow.f32 (PI.f32) #s(literal 5 binary32)) (pow.f32 x #s(literal 5 binary32))) (*.f32 (*.f32 #s(literal -1/6 binary32) (pow.f32 (PI.f32) #s(literal 3 binary32))) (pow.f32 x #s(literal 3 binary32)))) (*.f32 tau (*.f32 (PI.f32) x)))
(* tau (+ (* x (PI)) (* (pow tau 2) (+ (* -1/6 (* (pow x 3) (pow (PI) 3))) (* (pow tau 2) (+ (* -1/5040 (* (pow tau 2) (* (pow x 7) (pow (PI) 7)))) (* 1/120 (* (pow x 5) (pow (PI) 5)))))))))
(fma.f32 (pow.f32 tau #s(literal 3 binary32)) (fma.f32 (*.f32 #s(literal -1/6 binary32) (pow.f32 (PI.f32) #s(literal 3 binary32))) (pow.f32 x #s(literal 3 binary32)) (*.f32 (fma.f32 (*.f32 #s(literal 1/120 binary32) (pow.f32 (PI.f32) #s(literal 5 binary32))) (pow.f32 x #s(literal 5 binary32)) (*.f32 (*.f32 #s(literal -1/5040 binary32) (*.f32 tau tau)) (*.f32 (pow.f32 (PI.f32) #s(literal 7 binary32)) (pow.f32 x #s(literal 7 binary32))))) (*.f32 tau tau))) (*.f32 tau (*.f32 (PI.f32) x)))
(* tau (* x (PI)))
(*.f32 tau (*.f32 (PI.f32) x))
(* tau (* x (PI)))
(*.f32 tau (*.f32 (PI.f32) x))
(* tau (* x (PI)))
(*.f32 tau (*.f32 (PI.f32) x))
(* tau (* x (PI)))
(*.f32 tau (*.f32 (PI.f32) x))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (PI.f32) (*.f32 (PI.f32) x))) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 tau x)))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (PI.f32) (*.f32 (PI.f32) x))) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 tau x)))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (PI.f32) (*.f32 (PI.f32) x))) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 tau x)))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (PI.f32) (*.f32 (PI.f32) x))) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 tau x)))
(/ (sin (* tau (* x (PI)))) (* tau (* x (PI))))
(/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 tau (*.f32 (PI.f32) x)))
(/ (sin (* tau (* x (PI)))) (* tau (* x (PI))))
(/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 tau (*.f32 (PI.f32) x)))
(/ (sin (* tau (* x (PI)))) (* tau (* x (PI))))
(/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 tau (*.f32 (PI.f32) x)))
(/ (sin (* tau (* x (PI)))) (* tau (* x (PI))))
(/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 tau (*.f32 (PI.f32) x)))
(sin (* tau (* x (PI))))
(sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))
(sin (* tau (* x (PI))))
(sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))
(sin (* tau (* x (PI))))
(sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))
(sin (* tau (* x (PI))))
(sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))
(* tau (* x (PI)))
(*.f32 tau (*.f32 (PI.f32) x))
(* tau (* x (PI)))
(*.f32 tau (*.f32 (PI.f32) x))
(* tau (* x (PI)))
(*.f32 tau (*.f32 (PI.f32) x))
(* tau (* x (PI)))
(*.f32 tau (*.f32 (PI.f32) x))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (PI.f32) (*.f32 (PI.f32) x))) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 tau x)))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (PI.f32) (*.f32 (PI.f32) x))) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 tau x)))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (PI.f32) (*.f32 (PI.f32) x))) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 tau x)))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (PI.f32) (*.f32 (PI.f32) x))) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 tau x)))
(/ (sin (* tau (* x (PI)))) (* tau (* x (PI))))
(/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 tau (*.f32 (PI.f32) x)))
(/ (sin (* tau (* x (PI)))) (* tau (* x (PI))))
(/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 tau (*.f32 (PI.f32) x)))
(/ (sin (* tau (* x (PI)))) (* tau (* x (PI))))
(/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 tau (*.f32 (PI.f32) x)))
(/ (sin (* tau (* x (PI)))) (* tau (* x (PI))))
(/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 tau (*.f32 (PI.f32) x)))
(sin (* tau (* x (PI))))
(sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))
(sin (* tau (* x (PI))))
(sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))
(sin (* tau (* x (PI))))
(sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))
(sin (* tau (* x (PI))))
(sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))
(* tau (* x (PI)))
(*.f32 tau (*.f32 (PI.f32) x))
(* tau (* x (PI)))
(*.f32 tau (*.f32 (PI.f32) x))
(* tau (* x (PI)))
(*.f32 tau (*.f32 (PI.f32) x))
(* tau (* x (PI)))
(*.f32 tau (*.f32 (PI.f32) x))
1
#s(literal 1 binary32)
(+ 1 (* (pow x 2) (+ (* -1/6 (* (pow tau 2) (pow (PI) 2))) (* -1/6 (pow (PI) 2)))))
(fma.f32 (*.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 (PI.f32) (PI.f32)) #s(literal -1/6 binary32))) (*.f32 x x) #s(literal 1 binary32))
(+ 1 (* (pow x 2) (+ (* -1/6 (* (pow tau 2) (pow (PI) 2))) (+ (* -1/6 (pow (PI) 2)) (* (pow x 2) (+ (* 1/120 (* (pow tau 4) (pow (PI) 4))) (+ (* 1/120 (pow (PI) 4)) (* 1/36 (* (pow tau 2) (pow (PI) 4))))))))))
(fma.f32 (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 (PI.f32) (PI.f32)) #s(literal -1/6 binary32)) (*.f32 (*.f32 (pow.f32 (PI.f32) #s(literal 4 binary32)) (fma.f32 (*.f32 #s(literal 1/36 binary32) tau) tau (fma.f32 (pow.f32 tau #s(literal 4 binary32)) #s(literal 1/120 binary32) #s(literal 1/120 binary32)))) (*.f32 x x))) (*.f32 x x) #s(literal 1 binary32))
(+ 1 (* (pow x 2) (+ (* -1/6 (* (pow tau 2) (pow (PI) 2))) (+ (* -1/6 (pow (PI) 2)) (* (pow x 2) (+ (* 1/120 (* (pow tau 4) (pow (PI) 4))) (+ (* 1/120 (pow (PI) 4)) (+ (* 1/36 (* (pow tau 2) (pow (PI) 4))) (* (pow x 2) (+ (* -1/720 (* (pow tau 2) (pow (PI) 6))) (+ (* -1/720 (* (pow tau 4) (pow (PI) 6))) (+ (* -1/5040 (* (pow tau 6) (pow (PI) 6))) (* -1/5040 (pow (PI) 6))))))))))))))
(fma.f32 (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 (PI.f32) (PI.f32)) #s(literal -1/6 binary32)) (*.f32 (fma.f32 (*.f32 (pow.f32 (PI.f32) #s(literal 6 binary32)) (fma.f32 (pow.f32 tau #s(literal 6 binary32)) #s(literal -1/5040 binary32) (fma.f32 #s(literal -1/720 binary32) (fma.f32 tau tau (pow.f32 tau #s(literal 4 binary32))) #s(literal -1/5040 binary32)))) (*.f32 x x) (*.f32 (pow.f32 (PI.f32) #s(literal 4 binary32)) (fma.f32 (*.f32 #s(literal 1/36 binary32) tau) tau (fma.f32 (pow.f32 tau #s(literal 4 binary32)) #s(literal 1/120 binary32) #s(literal 1/120 binary32))))) (*.f32 x x))) (*.f32 x x) #s(literal 1 binary32))
1
#s(literal 1 binary32)
(+ 1 (* -1/6 (* (pow tau 2) (* (pow x 2) (pow (PI) 2)))))
(fma.f32 (*.f32 tau (*.f32 (*.f32 x x) tau)) (*.f32 (*.f32 (PI.f32) (PI.f32)) #s(literal -1/6 binary32)) #s(literal 1 binary32))
(+ 1 (* (pow x 2) (+ (* -1/6 (* (pow tau 2) (pow (PI) 2))) (* 1/120 (* (pow tau 4) (* (pow x 2) (pow (PI) 4)))))))
(fma.f32 (fma.f32 (*.f32 (pow.f32 tau #s(literal 4 binary32)) #s(literal 1/120 binary32)) (*.f32 (*.f32 (pow.f32 (PI.f32) #s(literal 4 binary32)) x) x) (*.f32 (*.f32 (*.f32 (*.f32 tau tau) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32))) (*.f32 x x) #s(literal 1 binary32))
(+ 1 (* (pow x 2) (+ (* -1/6 (* (pow tau 2) (pow (PI) 2))) (* (pow x 2) (+ (* -1/5040 (* (pow tau 6) (* (pow x 2) (pow (PI) 6)))) (* 1/120 (* (pow tau 4) (pow (PI) 4))))))))
(fma.f32 (fma.f32 (*.f32 (*.f32 (*.f32 tau tau) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32) (*.f32 (fma.f32 (*.f32 (pow.f32 tau #s(literal 4 binary32)) #s(literal 1/120 binary32)) (pow.f32 (PI.f32) #s(literal 4 binary32)) (*.f32 (*.f32 (pow.f32 tau #s(literal 6 binary32)) #s(literal -1/5040 binary32)) (*.f32 (*.f32 (pow.f32 (PI.f32) #s(literal 6 binary32)) x) x))) (*.f32 x x))) (*.f32 x x) #s(literal 1 binary32))
(* tau (* x (PI)))
(*.f32 tau (*.f32 (PI.f32) x))
(* x (+ (* -1/6 (* (pow tau 3) (* (pow x 2) (pow (PI) 3)))) (* tau (PI))))
(fma.f32 (*.f32 tau x) (PI.f32) (*.f32 (*.f32 (pow.f32 tau #s(literal 3 binary32)) #s(literal -1/6 binary32)) (*.f32 (pow.f32 (PI.f32) #s(literal 3 binary32)) (pow.f32 x #s(literal 3 binary32)))))
(* x (+ (* tau (PI)) (* (pow x 2) (+ (* -1/6 (* (pow tau 3) (pow (PI) 3))) (* 1/120 (* (pow tau 5) (* (pow x 2) (pow (PI) 5))))))))
(fma.f32 (*.f32 tau x) (PI.f32) (*.f32 (fma.f32 (*.f32 (pow.f32 tau #s(literal 5 binary32)) #s(literal 1/120 binary32)) (*.f32 (*.f32 (pow.f32 (PI.f32) #s(literal 5 binary32)) x) x) (*.f32 (*.f32 #s(literal -1/6 binary32) (pow.f32 (PI.f32) #s(literal 3 binary32))) (pow.f32 tau #s(literal 3 binary32)))) (pow.f32 x #s(literal 3 binary32))))
(* x (+ (* tau (PI)) (* (pow x 2) (+ (* -1/6 (* (pow tau 3) (pow (PI) 3))) (* (pow x 2) (+ (* -1/5040 (* (pow tau 7) (* (pow x 2) (pow (PI) 7)))) (* 1/120 (* (pow tau 5) (pow (PI) 5)))))))))
(fma.f32 (*.f32 tau x) (PI.f32) (*.f32 (fma.f32 (*.f32 #s(literal -1/6 binary32) (pow.f32 (PI.f32) #s(literal 3 binary32))) (pow.f32 tau #s(literal 3 binary32)) (*.f32 (fma.f32 (*.f32 #s(literal 1/120 binary32) (pow.f32 (PI.f32) #s(literal 5 binary32))) (pow.f32 tau #s(literal 5 binary32)) (*.f32 (*.f32 (pow.f32 tau #s(literal 7 binary32)) #s(literal -1/5040 binary32)) (*.f32 (*.f32 (pow.f32 (PI.f32) #s(literal 7 binary32)) x) x))) (*.f32 x x))) (pow.f32 x #s(literal 3 binary32))))
(* tau (* x (PI)))
(*.f32 tau (*.f32 (PI.f32) x))
(* tau (* x (PI)))
(*.f32 tau (*.f32 (PI.f32) x))
(* tau (* x (PI)))
(*.f32 tau (*.f32 (PI.f32) x))
(* tau (* x (PI)))
(*.f32 tau (*.f32 (PI.f32) x))
1
#s(literal 1 binary32)
(+ 1 (* -1/6 (* (pow x 2) (pow (PI) 2))))
(fma.f32 (*.f32 (*.f32 #s(literal -1/6 binary32) x) x) (*.f32 (PI.f32) (PI.f32)) #s(literal 1 binary32))
(+ 1 (* (pow x 2) (+ (* -1/6 (pow (PI) 2)) (* 1/120 (* (pow x 2) (pow (PI) 4))))))
(fma.f32 (fma.f32 (*.f32 (*.f32 (pow.f32 (PI.f32) #s(literal 4 binary32)) #s(literal 1/120 binary32)) x) x (*.f32 (*.f32 (PI.f32) (PI.f32)) #s(literal -1/6 binary32))) (*.f32 x x) #s(literal 1 binary32))
(+ 1 (* (pow x 2) (+ (* -1/6 (pow (PI) 2)) (* (pow x 2) (+ (* -1/5040 (* (pow x 2) (pow (PI) 6))) (* 1/120 (pow (PI) 4)))))))
(fma.f32 (fma.f32 (*.f32 #s(literal -1/6 binary32) (PI.f32)) (PI.f32) (*.f32 (fma.f32 (*.f32 (*.f32 x x) #s(literal -1/5040 binary32)) (pow.f32 (PI.f32) #s(literal 6 binary32)) (*.f32 (pow.f32 (PI.f32) #s(literal 4 binary32)) #s(literal 1/120 binary32))) (*.f32 x x))) (*.f32 x x) #s(literal 1 binary32))
(* x (PI))
(*.f32 (PI.f32) x)
(* x (PI))
(*.f32 (PI.f32) x)
(* x (PI))
(*.f32 (PI.f32) x)
(* x (PI))
(*.f32 (PI.f32) x)
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (PI.f32) (*.f32 (PI.f32) x))) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 tau x)))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (PI.f32) (*.f32 (PI.f32) x))) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 tau x)))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (PI.f32) (*.f32 (PI.f32) x))) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 tau x)))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (PI.f32) (*.f32 (PI.f32) x))) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 tau x)))
(/ (sin (* tau (* x (PI)))) (* tau (* x (PI))))
(/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 tau (*.f32 (PI.f32) x)))
(/ (sin (* tau (* x (PI)))) (* tau (* x (PI))))
(/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 tau (*.f32 (PI.f32) x)))
(/ (sin (* tau (* x (PI)))) (* tau (* x (PI))))
(/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 tau (*.f32 (PI.f32) x)))
(/ (sin (* tau (* x (PI)))) (* tau (* x (PI))))
(/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 tau (*.f32 (PI.f32) x)))
(sin (* tau (* x (PI))))
(sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))
(sin (* tau (* x (PI))))
(sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))
(sin (* tau (* x (PI))))
(sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))
(sin (* tau (* x (PI))))
(sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))
(* tau (* x (PI)))
(*.f32 tau (*.f32 (PI.f32) x))
(* tau (* x (PI)))
(*.f32 tau (*.f32 (PI.f32) x))
(* tau (* x (PI)))
(*.f32 tau (*.f32 (PI.f32) x))
(* tau (* x (PI)))
(*.f32 tau (*.f32 (PI.f32) x))
(/ (sin (* x (PI))) (* x (PI)))
(/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x))
(/ (sin (* x (PI))) (* x (PI)))
(/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x))
(/ (sin (* x (PI))) (* x (PI)))
(/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x))
(/ (sin (* x (PI))) (* x (PI)))
(/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x))
(* x (PI))
(*.f32 (PI.f32) x)
(* x (PI))
(*.f32 (PI.f32) x)
(* x (PI))
(*.f32 (PI.f32) x)
(* x (PI))
(*.f32 (PI.f32) x)
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (PI.f32) (*.f32 (PI.f32) x))) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 tau x)))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (PI.f32) (*.f32 (PI.f32) x))) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 tau x)))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (PI.f32) (*.f32 (PI.f32) x))) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 tau x)))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (PI.f32) (*.f32 (PI.f32) x))) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 tau x)))
(/ (sin (* tau (* x (PI)))) (* tau (* x (PI))))
(/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 tau (*.f32 (PI.f32) x)))
(/ (sin (* tau (* x (PI)))) (* tau (* x (PI))))
(/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 tau (*.f32 (PI.f32) x)))
(/ (sin (* tau (* x (PI)))) (* tau (* x (PI))))
(/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 tau (*.f32 (PI.f32) x)))
(/ (sin (* tau (* x (PI)))) (* tau (* x (PI))))
(/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 tau (*.f32 (PI.f32) x)))
(sin (* tau (* x (PI))))
(sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))
(sin (* tau (* x (PI))))
(sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))
(sin (* tau (* x (PI))))
(sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))
(sin (* tau (* x (PI))))
(sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))
(* tau (* x (PI)))
(*.f32 tau (*.f32 (PI.f32) x))
(* tau (* x (PI)))
(*.f32 tau (*.f32 (PI.f32) x))
(* tau (* x (PI)))
(*.f32 tau (*.f32 (PI.f32) x))
(* tau (* x (PI)))
(*.f32 tau (*.f32 (PI.f32) x))
(/ (sin (* x (PI))) (* x (PI)))
(/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x))
(/ (sin (* x (PI))) (* x (PI)))
(/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x))
(/ (sin (* x (PI))) (* x (PI)))
(/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x))
(/ (sin (* x (PI))) (* x (PI)))
(/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x))
(* x (PI))
(*.f32 (PI.f32) x)
(* x (PI))
(*.f32 (PI.f32) x)
(* x (PI))
(*.f32 (PI.f32) x)
(* x (PI))
(*.f32 (PI.f32) x)

rewrite169.0ms (1.7%)

Memory
-3.8MiB live, 222.0MiB allocated
Iterations

Useful iterations: 2 (0.0ms)

IterNodesCost
01055
01855
16355
248353
3648553
0811453
Stop Event
iter limit
node limit
iter limit
Counts
6 → 670
Calls
Call 1
Inputs
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
(/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau))
(sin.f32 (*.f32 (*.f32 x (PI.f32)) tau))
(*.f32 (*.f32 x (PI.f32)) tau)
(/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32)))
(*.f32 x (PI.f32))
Outputs
#<batchref>
#<batchref>
#<batchref>
#<batchref>
#<batchref>
#<batchref>
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eval116.0ms (1.1%)

Memory
8.1MiB live, 119.7MiB allocated
Compiler

Compiled 24 307 to 2 341 computations (90.4% saved)

prune162.0ms (1.6%)

Memory
-3.2MiB live, 118.0MiB allocated
Pruning

37 alts after pruning (37 fresh and 0 done)

PrunedKeptTotal
New976371 013
Fresh000
Picked101
Done000
Total977371 014
Accuracy
99.7%
Counts
1 014 → 37
Alt Table
Click to see full alt table
StatusAccuracyProgram
97.4%
(/.f32 (/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (neg.f32 (PI.f32)) x)) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) (*.f32 (PI.f32) x)) (neg.f32 tau))
96.0%
(/.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (pow.f32 (cbrt.f32 (PI.f32)) #s(literal 2 binary32)) x)) (*.f32 (/.f32 (*.f32 tau (*.f32 (PI.f32) x)) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) (cbrt.f32 (PI.f32))))
97.7%
(/.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 tau (*.f32 (PI.f32) x))) (/.f32 (*.f32 (PI.f32) x) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))))
97.8%
(/.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (PI.f32) x)) (/.f32 (*.f32 tau (*.f32 (PI.f32) x)) (sin.f32 (*.f32 (PI.f32) x))))
97.6%
(/.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 tau (*.f32 (PI.f32) x))) (/.f32 (*.f32 (PI.f32) x) (sin.f32 (*.f32 (PI.f32) x))))
96.2%
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (pow.f32 (cbrt.f32 (PI.f32)) #s(literal 2 binary32)) x)) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) (*.f32 (cbrt.f32 (PI.f32)) (*.f32 tau (*.f32 (PI.f32) x))))
97.6%
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 tau (*.f32 (PI.f32) x))) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) (*.f32 (PI.f32) x))
97.5%
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (PI.f32)) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) (*.f32 (*.f32 tau (*.f32 (PI.f32) x)) x))
96.8%
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) x)) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
97.3%
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) (*.f32 (*.f32 tau (*.f32 (PI.f32) x)) (PI.f32)))
97.7%
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (PI.f32) x)) (sin.f32 (*.f32 (PI.f32) x))) (*.f32 tau (*.f32 (PI.f32) x)))
97.4%
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) x) (sin.f32 (*.f32 (PI.f32) x))) (*.f32 (*.f32 tau (*.f32 (PI.f32) x)) (PI.f32)))
97.0%
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) x) (neg.f32 (sin.f32 (*.f32 (PI.f32) x)))) (*.f32 (*.f32 (PI.f32) (*.f32 (PI.f32) x)) (neg.f32 tau)))
97.3%
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) tau) (neg.f32 (sin.f32 (*.f32 (PI.f32) x)))) (*.f32 (*.f32 (PI.f32) x) (*.f32 (neg.f32 (PI.f32)) x)))
96.6%
(/.f32 (*.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) (/.f32 #s(literal 1 binary32) x)) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
97.2%
(*.f32 (/.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x)) (*.f32 tau x)) (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (PI.f32)))
97.1%
(*.f32 (/.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (*.f32 tau (*.f32 (PI.f32) x))) (/.f32 (/.f32 #s(literal 1 binary32) (PI.f32)) (/.f32 #s(literal 1 binary32) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))))))
96.3%
(*.f32 (/.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 tau (*.f32 (PI.f32) x))) (pow.f32 (cbrt.f32 (PI.f32)) #s(literal 2 binary32))) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (cbrt.f32 (PI.f32)) x)))
97.6%
(*.f32 (/.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (neg.f32 (PI.f32)) x)) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
97.0%
(*.f32 (/.f32 (*.f32 (/.f32 #s(literal 1 binary32) x) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) (*.f32 tau (PI.f32))) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
97.0%
(*.f32 (/.f32 (sin.f32 (/.f32 #s(literal 1 binary32) (/.f32 (/.f32 #s(literal 1 binary32) (*.f32 (PI.f32) x)) tau))) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
96.6%
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 (*.f32 tau x) (sqrt.f32 (PI.f32))) (sqrt.f32 (PI.f32)))) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
95.9%
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 (pow.f32 (cbrt.f32 (PI.f32)) #s(literal 2 binary32)) (*.f32 (cbrt.f32 (PI.f32)) x))) (*.f32 x (PI.f32))))
97.0%
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 (*.f32 (*.f32 (sqrt.f32 (PI.f32)) x) (cbrt.f32 (PI.f32))) (pow.f32 (PI.f32) #s(literal 1/6 binary32)))) (*.f32 x (PI.f32))))
70.4%
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) #s(approx (/ (sin (* x (PI))) (* x (PI))) #s(literal 1 binary32)))
97.0%
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 tau (PI.f32)) x)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
97.0%
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 tau x) (PI.f32))) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
97.2%
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 tau (PI.f32)) x)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
97.1%
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 tau x) (PI.f32))) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
97.0%
(*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (*.f32 tau (*.f32 (PI.f32) x)) x)) (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (PI.f32)))
97.6%
(*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 tau (*.f32 (PI.f32) x))) (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (PI.f32) x)))
97.0%
(*.f32 (neg.f32 (sin.f32 (*.f32 (PI.f32) x))) (/.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (PI.f32) x)) (*.f32 (*.f32 (neg.f32 x) tau) (PI.f32))))
97.0%
(*.f32 (neg.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) (/.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (*.f32 (*.f32 (PI.f32) (*.f32 (PI.f32) x)) (neg.f32 tau))))
62.9%
#s(approx (* (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (/ (sin (* x (PI))) (* x (PI)))) (fma.f32 (*.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 (PI.f32) (PI.f32)) #s(literal -1/6 binary32))) (*.f32 x x) #s(literal 1 binary32)))
63.7%
#s(approx (* (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (/ (sin (* x (PI))) (* x (PI)))) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x)))
97.0%
#s(approx (* (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (/ (sin (* x (PI))) (* x (PI)))) (*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (PI.f32) (*.f32 (PI.f32) x))) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 tau x))))
62.9%
#s(approx (* (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (/ (sin (* x (PI))) (* x (PI)))) #s(literal 1 binary32))
Compiler

Compiled 1 592 to 912 computations (42.7% saved)

simplify341.0ms (3.4%)

Memory
-2.3MiB live, 77.6MiB allocated
Algorithm
egg-herbie
Localize:

Found 17 expressions of interest:

NewMetricScoreProgram
cost-diff0
(/.f32 (sin.f32 (*.f32 (PI.f32) x)) x)
cost-diff0
(*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))))
cost-diff160
(*.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) (/.f32 #s(literal 1 binary32) x))
cost-diff192
(/.f32 (*.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) (/.f32 #s(literal 1 binary32) x)) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
cost-diff0
(sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))
cost-diff0
(/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 tau (*.f32 (PI.f32) x)))
cost-diff0
(/.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (neg.f32 (PI.f32)) x))
cost-diff128
(*.f32 (/.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (neg.f32 (PI.f32)) x)) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
cost-diff0
(*.f32 (*.f32 x (PI.f32)) tau)
cost-diff0
(sin.f32 (*.f32 (*.f32 x (PI.f32)) tau))
cost-diff0
(/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 tau x) (PI.f32)))
cost-diff0
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 tau x) (PI.f32))) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
cost-diff0
#s(approx (* (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (/ (sin (* x (PI))) (* x (PI)))) #s(literal 1 binary32))
cost-diff0
(*.f32 tau (*.f32 (PI.f32) x))
cost-diff0
(sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))
cost-diff0
(/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (PI.f32) x))
cost-diff192
(/.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (PI.f32) x)) (/.f32 (*.f32 tau (*.f32 (PI.f32) x)) (sin.f32 (*.f32 (PI.f32) x))))
Iterations

Useful iterations: 1 (0.0ms)

IterNodesCost
042332
075328
1167326
2455326
32014326
43893326
56406326
67261326
77597326
87870326
08030326
Stop Event
iter limit
node limit
iter limit
Calls
Call 1
Inputs
(/.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (PI.f32) x)) (/.f32 (*.f32 tau (*.f32 (PI.f32) x)) (sin.f32 (*.f32 (PI.f32) x))))
(/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (PI.f32) x))
(sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))
(*.f32 tau (*.f32 (PI.f32) x))
tau
(*.f32 (PI.f32) x)
(PI.f32)
x
(/.f32 (*.f32 tau (*.f32 (PI.f32) x)) (sin.f32 (*.f32 (PI.f32) x)))
(sin.f32 (*.f32 (PI.f32) x))
#s(approx (* (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (/ (sin (* x (PI))) (* x (PI)))) #s(literal 1 binary32))
#s(literal 1 binary32)
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 tau x) (PI.f32))) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
(/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 tau x) (PI.f32)))
(sin.f32 (*.f32 (*.f32 x (PI.f32)) tau))
(*.f32 (*.f32 x (PI.f32)) tau)
(*.f32 x (PI.f32))
x
(PI.f32)
tau
(*.f32 (*.f32 tau x) (PI.f32))
(*.f32 tau x)
(/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32)))
(sin.f32 (*.f32 x (PI.f32)))
(*.f32 (/.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (neg.f32 (PI.f32)) x)) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
(/.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (neg.f32 (PI.f32)) x))
(/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 tau (*.f32 (PI.f32) x)))
(sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))
(*.f32 tau (*.f32 (PI.f32) x))
tau
(*.f32 (PI.f32) x)
(PI.f32)
x
(*.f32 (neg.f32 (PI.f32)) x)
(neg.f32 (PI.f32))
(neg.f32 (sin.f32 (*.f32 (PI.f32) x)))
(sin.f32 (*.f32 (PI.f32) x))
(/.f32 (*.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) (/.f32 #s(literal 1 binary32) x)) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
(*.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) (/.f32 #s(literal 1 binary32) x))
(*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))))
(/.f32 (sin.f32 (*.f32 (PI.f32) x)) x)
(sin.f32 (*.f32 (PI.f32) x))
(*.f32 (PI.f32) x)
(PI.f32)
x
(sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))
(*.f32 tau (*.f32 (PI.f32) x))
tau
(/.f32 #s(literal 1 binary32) x)
#s(literal 1 binary32)
(*.f32 (PI.f32) (*.f32 tau (PI.f32)))
(*.f32 tau (PI.f32))
Outputs
(/.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (PI.f32) x)) (/.f32 (*.f32 tau (*.f32 (PI.f32) x)) (sin.f32 (*.f32 (PI.f32) x))))
(*.f32 (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 (PI.f32) tau)) (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) x)))
(/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (PI.f32) x))
(/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 x (PI.f32)))
(sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))
(sin.f32 (*.f32 (*.f32 x (PI.f32)) tau))
(*.f32 tau (*.f32 (PI.f32) x))
(*.f32 (*.f32 x (PI.f32)) tau)
tau
(*.f32 (PI.f32) x)
(*.f32 x (PI.f32))
(PI.f32)
x
(/.f32 (*.f32 tau (*.f32 (PI.f32) x)) (sin.f32 (*.f32 (PI.f32) x)))
(/.f32 (*.f32 (*.f32 x (PI.f32)) tau) (sin.f32 (*.f32 x (PI.f32))))
(sin.f32 (*.f32 (PI.f32) x))
(sin.f32 (*.f32 x (PI.f32)))
#s(approx (* (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (/ (sin (* x (PI))) (* x (PI)))) #s(literal 1 binary32))
#s(literal 1 binary32)
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 tau x) (PI.f32))) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
(*.f32 (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 (PI.f32) tau)) (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) x)))
(/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 tau x) (PI.f32)))
(/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau))
(sin.f32 (*.f32 (*.f32 x (PI.f32)) tau))
(*.f32 (*.f32 x (PI.f32)) tau)
(*.f32 x (PI.f32))
x
(PI.f32)
tau
(*.f32 (*.f32 tau x) (PI.f32))
(*.f32 (*.f32 x (PI.f32)) tau)
(*.f32 tau x)
(*.f32 x tau)
(/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32)))
(sin.f32 (*.f32 x (PI.f32)))
(*.f32 (/.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (neg.f32 (PI.f32)) x)) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
(*.f32 (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 (PI.f32) tau)) (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) x)))
(/.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (neg.f32 (PI.f32)) x))
(/.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (neg.f32 (PI.f32)) x))
(/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 tau (*.f32 (PI.f32) x)))
(/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau))
(sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))
(sin.f32 (*.f32 (*.f32 x (PI.f32)) tau))
(*.f32 tau (*.f32 (PI.f32) x))
(*.f32 (*.f32 x (PI.f32)) tau)
tau
(*.f32 (PI.f32) x)
(*.f32 x (PI.f32))
(PI.f32)
x
(*.f32 (neg.f32 (PI.f32)) x)
(neg.f32 (PI.f32))
(neg.f32 (sin.f32 (*.f32 (PI.f32) x)))
(sin.f32 (*.f32 (neg.f32 (PI.f32)) x))
(sin.f32 (*.f32 (PI.f32) x))
(sin.f32 (*.f32 x (PI.f32)))
(/.f32 (*.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) (/.f32 #s(literal 1 binary32) x)) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
(*.f32 (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 (PI.f32) tau)) (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) x)))
(*.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) (/.f32 #s(literal 1 binary32) x))
(*.f32 (/.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) x) x) (sin.f32 (*.f32 x (PI.f32))))
(*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))))
(*.f32 (/.f32 (sin.f32 (*.f32 x (PI.f32))) x) (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)))
(/.f32 (sin.f32 (*.f32 (PI.f32) x)) x)
(/.f32 (sin.f32 (*.f32 x (PI.f32))) x)
(sin.f32 (*.f32 (PI.f32) x))
(sin.f32 (*.f32 x (PI.f32)))
(*.f32 (PI.f32) x)
(*.f32 x (PI.f32))
(PI.f32)
x
(sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))
(sin.f32 (*.f32 (*.f32 x (PI.f32)) tau))
(*.f32 tau (*.f32 (PI.f32) x))
(*.f32 (*.f32 x (PI.f32)) tau)
tau
(/.f32 #s(literal 1 binary32) x)
#s(literal 1 binary32)
(*.f32 (PI.f32) (*.f32 tau (PI.f32)))
(*.f32 (*.f32 (PI.f32) tau) (PI.f32))
(*.f32 tau (PI.f32))
(*.f32 (PI.f32) tau)

localize330.0ms (3.3%)

Memory
1.1MiB live, 76.7MiB allocated
Localize:

Found 17 expressions of interest:

NewMetricScoreProgram
accuracy0.37521767039534126
(sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))
accuracy0.38671875
(*.f32 (PI.f32) (*.f32 tau (PI.f32)))
accuracy0.39453125
(*.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) (/.f32 #s(literal 1 binary32) x))
accuracy0.4114837890737681
(/.f32 (*.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) (/.f32 #s(literal 1 binary32) x)) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
accuracy0.31640625
(/.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (neg.f32 (PI.f32)) x))
accuracy0.37521767039534126
(sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))
accuracy0.3984375
(/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 tau (*.f32 (PI.f32) x)))
accuracy0.4388275390737681
(*.f32 (/.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (neg.f32 (PI.f32)) x)) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
accuracy0.360038769536884
(/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32)))
accuracy0.37521767039534126
(sin.f32 (*.f32 (*.f32 x (PI.f32)) tau))
accuracy0.3984375
(/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 tau x) (PI.f32)))
accuracy0.4537887695368841
(*.f32 (*.f32 tau x) (PI.f32))
accuracy11.875081606240261
#s(approx (* (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (/ (sin (* x (PI))) (* x (PI)))) #s(literal 1 binary32))
accuracy0.3046875
(*.f32 (PI.f32) x)
accuracy0.32421875
(/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (PI.f32) x))
accuracy0.37521767039534126
(sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))
accuracy0.41443256837909415
(/.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (PI.f32) x)) (/.f32 (*.f32 tau (*.f32 (PI.f32) x)) (sin.f32 (*.f32 (PI.f32) x))))
Samples
63.0ms256×0valid
Compiler

Compiled 643 to 70 computations (89.1% saved)

Precisions
Click to see histograms. Total time spent on operations: 47.0ms
ival-mult: 19.0ms (40% of total)
ival-div: 15.0ms (31.6% of total)
ival-sin: 7.0ms (14.7% of total)
ival-sinu: 4.0ms (8.4% of total)
ival-neg: 2.0ms (4.2% of total)
ival-pi: 1.0ms (2.1% of total)
ival-assert: 0.0ms (0% of total)
ival-true: 0.0ms (0% of total)
exact: 0.0ms (0% of total)

series72.0ms (0.7%)

Memory
-0.5MiB live, 88.9MiB allocated
Counts
20 → 432
Calls
Call 1
Inputs
#s(alt (/.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (PI.f32) x)) (/.f32 (*.f32 tau (*.f32 (PI.f32) x)) (sin.f32 (*.f32 (PI.f32) x)))) (patch (/.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (PI.f32) x)) (/.f32 (*.f32 tau (*.f32 (PI.f32) x)) (sin.f32 (*.f32 (PI.f32) x)))) #<representation binary32>) () ())
#s(alt (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (PI.f32) x)) (patch (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (PI.f32) x)) #<representation binary32>) () ())
#s(alt (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (patch (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) #<representation binary32>) () ())
#s(alt (*.f32 tau (*.f32 (PI.f32) x)) (patch (*.f32 tau (*.f32 (PI.f32) x)) #<representation binary32>) () ())
#s(alt #s(approx (* (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (/ (sin (* x (PI))) (* x (PI)))) #s(literal 1 binary32)) (patch #s(approx (* (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (/ (sin (* x (PI))) (* x (PI)))) #s(literal 1 binary32)) #<representation binary32>) () ())
#s(alt (*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 tau x) (PI.f32))) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32)))) (patch (*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 tau x) (PI.f32))) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32)))) #<representation binary32>) () ())
#s(alt (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 tau x) (PI.f32))) (patch (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 tau x) (PI.f32))) #<representation binary32>) () ())
#s(alt (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (patch (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) #<representation binary32>) () ())
#s(alt (*.f32 (*.f32 x (PI.f32)) tau) (patch (*.f32 (*.f32 x (PI.f32)) tau) #<representation binary32>) () ())
#s(alt (*.f32 (/.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (neg.f32 (PI.f32)) x)) (neg.f32 (sin.f32 (*.f32 (PI.f32) x)))) (patch (*.f32 (/.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (neg.f32 (PI.f32)) x)) (neg.f32 (sin.f32 (*.f32 (PI.f32) x)))) #<representation binary32>) () ())
#s(alt (/.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (neg.f32 (PI.f32)) x)) (patch (/.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (neg.f32 (PI.f32)) x)) #<representation binary32>) () ())
#s(alt (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 tau (*.f32 (PI.f32) x))) (patch (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 tau (*.f32 (PI.f32) x))) #<representation binary32>) () ())
#s(alt (/.f32 (*.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) (/.f32 #s(literal 1 binary32) x)) (*.f32 (PI.f32) (*.f32 tau (PI.f32)))) (patch (/.f32 (*.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) (/.f32 #s(literal 1 binary32) x)) (*.f32 (PI.f32) (*.f32 tau (PI.f32)))) #<representation binary32>) () ())
#s(alt (*.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) (/.f32 #s(literal 1 binary32) x)) (patch (*.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) (/.f32 #s(literal 1 binary32) x)) #<representation binary32>) () ())
#s(alt (*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) (patch (*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) #<representation binary32>) () ())
#s(alt (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (patch (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) #<representation binary32>) () ())
#s(alt (*.f32 (PI.f32) x) (patch (*.f32 (PI.f32) x) #<representation binary32>) () ())
#s(alt (*.f32 (*.f32 tau x) (PI.f32)) (patch (*.f32 (*.f32 tau x) (PI.f32)) #<representation binary32>) () ())
#s(alt (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))) (patch (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))) #<representation binary32>) () ())
#s(alt (*.f32 (PI.f32) (*.f32 tau (PI.f32))) (patch (*.f32 (PI.f32) (*.f32 tau (PI.f32))) #<representation binary32>) () ())
Outputs
#s(alt (/ (sin (* x (PI))) (* x (PI))) (taylor 0 tau) (#s(alt (/.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (PI.f32) x)) (/.f32 (*.f32 tau (*.f32 (PI.f32) x)) (sin.f32 (*.f32 (PI.f32) x)))) (patch (/.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (PI.f32) x)) (/.f32 (*.f32 tau (*.f32 (PI.f32) x)) (sin.f32 (*.f32 (PI.f32) x)))) #<representation binary32>) () ())) ())
#s(alt (+ (* -1/6 (* (pow tau 2) (* x (* (PI) (sin (* x (PI))))))) (/ (sin (* x (PI))) (* x (PI)))) (taylor 0 tau) (#s(alt (/.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (PI.f32) x)) (/.f32 (*.f32 tau (*.f32 (PI.f32) x)) (sin.f32 (*.f32 (PI.f32) x)))) (patch (/.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (PI.f32) x)) (/.f32 (*.f32 tau (*.f32 (PI.f32) x)) (sin.f32 (*.f32 (PI.f32) x)))) #<representation binary32>) () ())) ())
#s(alt (+ (* (pow tau 2) (+ (* -1/6 (* x (* (PI) (sin (* x (PI)))))) (* 1/120 (* (pow tau 2) (* (pow x 3) (* (pow (PI) 3) (sin (* x (PI))))))))) (/ (sin (* x (PI))) (* x (PI)))) (taylor 0 tau) (#s(alt (/.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (PI.f32) x)) (/.f32 (*.f32 tau (*.f32 (PI.f32) x)) (sin.f32 (*.f32 (PI.f32) x)))) (patch (/.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (PI.f32) x)) (/.f32 (*.f32 tau (*.f32 (PI.f32) x)) (sin.f32 (*.f32 (PI.f32) x)))) #<representation binary32>) () ())) ())
#s(alt (+ (* (pow tau 2) (+ (* -1/6 (* x (* (PI) (sin (* x (PI)))))) (* (pow tau 2) (+ (* -1/5040 (* (pow tau 2) (* (pow x 5) (* (pow (PI) 5) (sin (* x (PI))))))) (* 1/120 (* (pow x 3) (* (pow (PI) 3) (sin (* x (PI)))))))))) (/ (sin (* x (PI))) (* x (PI)))) (taylor 0 tau) (#s(alt (/.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (PI.f32) x)) (/.f32 (*.f32 tau (*.f32 (PI.f32) x)) (sin.f32 (*.f32 (PI.f32) x)))) (patch (/.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (PI.f32) x)) (/.f32 (*.f32 tau (*.f32 (PI.f32) x)) (sin.f32 (*.f32 (PI.f32) x)))) #<representation binary32>) () ())) ())
#s(alt tau (taylor 0 tau) (#s(alt (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (PI.f32) x)) (patch (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (PI.f32) x)) #<representation binary32>) () ())) ())
#s(alt (* tau (+ 1 (* -1/6 (* (pow tau 2) (* (pow x 2) (pow (PI) 2)))))) (taylor 0 tau) (#s(alt (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (PI.f32) x)) (patch (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (PI.f32) x)) #<representation binary32>) () ())) ())
#s(alt (* tau (+ 1 (* (pow tau 2) (+ (* -1/6 (* (pow x 2) (pow (PI) 2))) (* 1/120 (* (pow tau 2) (* (pow x 4) (pow (PI) 4)))))))) (taylor 0 tau) (#s(alt (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (PI.f32) x)) (patch (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (PI.f32) x)) #<representation binary32>) () ())) ())
#s(alt (* tau (+ 1 (* (pow tau 2) (+ (* -1/6 (* (pow x 2) (pow (PI) 2))) (* (pow tau 2) (+ (* -1/5040 (* (pow tau 2) (* (pow x 6) (pow (PI) 6)))) (* 1/120 (* (pow x 4) (pow (PI) 4))))))))) (taylor 0 tau) (#s(alt (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (PI.f32) x)) (patch (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (PI.f32) x)) #<representation binary32>) () ())) ())
#s(alt (* tau (* x (PI))) (taylor 0 tau) (#s(alt (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (patch (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) #<representation binary32>) () ())) ())
#s(alt (* tau (+ (* -1/6 (* (pow tau 2) (* (pow x 3) (pow (PI) 3)))) (* x (PI)))) (taylor 0 tau) (#s(alt (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (patch (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) #<representation binary32>) () ())) ())
#s(alt (* tau (+ (* x (PI)) (* (pow tau 2) (+ (* -1/6 (* (pow x 3) (pow (PI) 3))) (* 1/120 (* (pow tau 2) (* (pow x 5) (pow (PI) 5)))))))) (taylor 0 tau) (#s(alt (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (patch (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) #<representation binary32>) () ())) ())
#s(alt (* tau (+ (* x (PI)) (* (pow tau 2) (+ (* -1/6 (* (pow x 3) (pow (PI) 3))) (* (pow tau 2) (+ (* -1/5040 (* (pow tau 2) (* (pow x 7) (pow (PI) 7)))) (* 1/120 (* (pow x 5) (pow (PI) 5))))))))) (taylor 0 tau) (#s(alt (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (patch (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) #<representation binary32>) () ())) ())
#s(alt (* tau (* x (PI))) (taylor 0 tau) (#s(alt (*.f32 tau (*.f32 (PI.f32) x)) (patch (*.f32 tau (*.f32 (PI.f32) x)) #<representation binary32>) () ())) ())
#s(alt (* tau (* x (PI))) (taylor 0 tau) (#s(alt (*.f32 tau (*.f32 (PI.f32) x)) (patch (*.f32 tau (*.f32 (PI.f32) x)) #<representation binary32>) () ())) ())
#s(alt (* tau (* x (PI))) (taylor 0 tau) (#s(alt (*.f32 tau (*.f32 (PI.f32) x)) (patch (*.f32 tau (*.f32 (PI.f32) x)) #<representation binary32>) () ())) ())
#s(alt (* tau (* x (PI))) (taylor 0 tau) (#s(alt (*.f32 tau (*.f32 (PI.f32) x)) (patch (*.f32 tau (*.f32 (PI.f32) x)) #<representation binary32>) () ())) ())
#s(alt (/ (sin (* x (PI))) (* x (PI))) (taylor 0 tau) (#s(alt #s(approx (* (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (/ (sin (* x (PI))) (* x (PI)))) #s(literal 1 binary32)) (patch #s(approx (* (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (/ (sin (* x (PI))) (* x (PI)))) #s(literal 1 binary32)) #<representation binary32>) () ())) ())
#s(alt (+ (* -1/6 (* (pow tau 2) (* x (* (PI) (sin (* x (PI))))))) (/ (sin (* x (PI))) (* x (PI)))) (taylor 0 tau) (#s(alt #s(approx (* (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (/ (sin (* x (PI))) (* x (PI)))) #s(literal 1 binary32)) (patch #s(approx (* (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (/ (sin (* x (PI))) (* x (PI)))) #s(literal 1 binary32)) #<representation binary32>) () ())) ())
#s(alt (+ (* (pow tau 2) (+ (* -1/6 (* x (* (PI) (sin (* x (PI)))))) (* 1/120 (* (pow tau 2) (* (pow x 3) (* (pow (PI) 3) (sin (* x (PI))))))))) (/ (sin (* x (PI))) (* x (PI)))) (taylor 0 tau) (#s(alt #s(approx (* (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (/ (sin (* x (PI))) (* x (PI)))) #s(literal 1 binary32)) (patch #s(approx (* (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (/ (sin (* x (PI))) (* x (PI)))) #s(literal 1 binary32)) #<representation binary32>) () ())) ())
#s(alt (+ (* (pow tau 2) (+ (* -1/6 (* x (* (PI) (sin (* x (PI)))))) (* (pow tau 2) (+ (* -1/5040 (* (pow tau 2) (* (pow x 5) (* (pow (PI) 5) (sin (* x (PI))))))) (* 1/120 (* (pow x 3) (* (pow (PI) 3) (sin (* x (PI)))))))))) (/ (sin (* x (PI))) (* x (PI)))) (taylor 0 tau) (#s(alt #s(approx (* (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (/ (sin (* x (PI))) (* x (PI)))) #s(literal 1 binary32)) (patch #s(approx (* (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (/ (sin (* x (PI))) (* x (PI)))) #s(literal 1 binary32)) #<representation binary32>) () ())) ())
#s(alt (/ (sin (* x (PI))) (* x (PI))) (taylor 0 tau) (#s(alt (*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 tau x) (PI.f32))) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32)))) (patch (*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 tau x) (PI.f32))) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32)))) #<representation binary32>) () ())) ())
#s(alt (+ (* -1/6 (* (pow tau 2) (* x (* (PI) (sin (* x (PI))))))) (/ (sin (* x (PI))) (* x (PI)))) (taylor 0 tau) (#s(alt (*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 tau x) (PI.f32))) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32)))) (patch (*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 tau x) (PI.f32))) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32)))) #<representation binary32>) () ())) ())
#s(alt (+ (* (pow tau 2) (+ (* -1/6 (* x (* (PI) (sin (* x (PI)))))) (* 1/120 (* (pow tau 2) (* (pow x 3) (* (pow (PI) 3) (sin (* x (PI))))))))) (/ (sin (* x (PI))) (* x (PI)))) (taylor 0 tau) (#s(alt (*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 tau x) (PI.f32))) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32)))) (patch (*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 tau x) (PI.f32))) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32)))) #<representation binary32>) () ())) ())
#s(alt (+ (* (pow tau 2) (+ (* -1/6 (* x (* (PI) (sin (* x (PI)))))) (* (pow tau 2) (+ (* -1/5040 (* (pow tau 2) (* (pow x 5) (* (pow (PI) 5) (sin (* x (PI))))))) (* 1/120 (* (pow x 3) (* (pow (PI) 3) (sin (* x (PI)))))))))) (/ (sin (* x (PI))) (* x (PI)))) (taylor 0 tau) (#s(alt (*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 tau x) (PI.f32))) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32)))) (patch (*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 tau x) (PI.f32))) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32)))) #<representation binary32>) () ())) ())
#s(alt 1 (taylor 0 tau) (#s(alt (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 tau x) (PI.f32))) (patch (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 tau x) (PI.f32))) #<representation binary32>) () ())) ())
#s(alt (+ 1 (* -1/6 (* (pow tau 2) (* (pow x 2) (pow (PI) 2))))) (taylor 0 tau) (#s(alt (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 tau x) (PI.f32))) (patch (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 tau x) (PI.f32))) #<representation binary32>) () ())) ())
#s(alt (+ 1 (* (pow tau 2) (+ (* -1/6 (* (pow x 2) (pow (PI) 2))) (* 1/120 (* (pow tau 2) (* (pow x 4) (pow (PI) 4))))))) (taylor 0 tau) (#s(alt (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 tau x) (PI.f32))) (patch (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 tau x) (PI.f32))) #<representation binary32>) () ())) ())
#s(alt (+ 1 (* (pow tau 2) (+ (* -1/6 (* (pow x 2) (pow (PI) 2))) (* (pow tau 2) (+ (* -1/5040 (* (pow tau 2) (* (pow x 6) (pow (PI) 6)))) (* 1/120 (* (pow x 4) (pow (PI) 4)))))))) (taylor 0 tau) (#s(alt (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 tau x) (PI.f32))) (patch (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 tau x) (PI.f32))) #<representation binary32>) () ())) ())
#s(alt (* tau (* x (PI))) (taylor 0 tau) (#s(alt (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (patch (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) #<representation binary32>) () ())) ())
#s(alt (* tau (+ (* -1/6 (* (pow tau 2) (* (pow x 3) (pow (PI) 3)))) (* x (PI)))) (taylor 0 tau) (#s(alt (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (patch (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) #<representation binary32>) () ())) ())
#s(alt (* tau (+ (* x (PI)) (* (pow tau 2) (+ (* -1/6 (* (pow x 3) (pow (PI) 3))) (* 1/120 (* (pow tau 2) (* (pow x 5) (pow (PI) 5)))))))) (taylor 0 tau) (#s(alt (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (patch (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) #<representation binary32>) () ())) ())
#s(alt (* tau (+ (* x (PI)) (* (pow tau 2) (+ (* -1/6 (* (pow x 3) (pow (PI) 3))) (* (pow tau 2) (+ (* -1/5040 (* (pow tau 2) (* (pow x 7) (pow (PI) 7)))) (* 1/120 (* (pow x 5) (pow (PI) 5))))))))) (taylor 0 tau) (#s(alt (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (patch (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) #<representation binary32>) () ())) ())
#s(alt (* tau (* x (PI))) (taylor 0 tau) (#s(alt (*.f32 (*.f32 x (PI.f32)) tau) (patch (*.f32 (*.f32 x (PI.f32)) tau) #<representation binary32>) () ())) ())
#s(alt (* tau (* x (PI))) (taylor 0 tau) (#s(alt (*.f32 (*.f32 x (PI.f32)) tau) (patch (*.f32 (*.f32 x (PI.f32)) tau) #<representation binary32>) () ())) ())
#s(alt (* tau (* x (PI))) (taylor 0 tau) (#s(alt (*.f32 (*.f32 x (PI.f32)) tau) (patch (*.f32 (*.f32 x (PI.f32)) tau) #<representation binary32>) () ())) ())
#s(alt (* tau (* x (PI))) (taylor 0 tau) (#s(alt (*.f32 (*.f32 x (PI.f32)) tau) (patch (*.f32 (*.f32 x (PI.f32)) tau) #<representation binary32>) () ())) ())
#s(alt (/ (sin (* x (PI))) (* x (PI))) (taylor 0 tau) (#s(alt (*.f32 (/.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (neg.f32 (PI.f32)) x)) (neg.f32 (sin.f32 (*.f32 (PI.f32) x)))) (patch (*.f32 (/.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (neg.f32 (PI.f32)) x)) (neg.f32 (sin.f32 (*.f32 (PI.f32) x)))) #<representation binary32>) () ())) ())
#s(alt (+ (* -1/6 (* (pow tau 2) (* x (* (PI) (sin (* x (PI))))))) (/ (sin (* x (PI))) (* x (PI)))) (taylor 0 tau) (#s(alt (*.f32 (/.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (neg.f32 (PI.f32)) x)) (neg.f32 (sin.f32 (*.f32 (PI.f32) x)))) (patch (*.f32 (/.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (neg.f32 (PI.f32)) x)) (neg.f32 (sin.f32 (*.f32 (PI.f32) x)))) #<representation binary32>) () ())) ())
#s(alt (+ (* (pow tau 2) (+ (* -1/6 (* x (* (PI) (sin (* x (PI)))))) (* 1/120 (* (pow tau 2) (* (pow x 3) (* (pow (PI) 3) (sin (* x (PI))))))))) (/ (sin (* x (PI))) (* x (PI)))) (taylor 0 tau) (#s(alt (*.f32 (/.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (neg.f32 (PI.f32)) x)) (neg.f32 (sin.f32 (*.f32 (PI.f32) x)))) (patch (*.f32 (/.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (neg.f32 (PI.f32)) x)) (neg.f32 (sin.f32 (*.f32 (PI.f32) x)))) #<representation binary32>) () ())) ())
#s(alt (+ (* (pow tau 2) (+ (* -1/6 (* x (* (PI) (sin (* x (PI)))))) (* (pow tau 2) (+ (* -1/5040 (* (pow tau 2) (* (pow x 5) (* (pow (PI) 5) (sin (* x (PI))))))) (* 1/120 (* (pow x 3) (* (pow (PI) 3) (sin (* x (PI)))))))))) (/ (sin (* x (PI))) (* x (PI)))) (taylor 0 tau) (#s(alt (*.f32 (/.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (neg.f32 (PI.f32)) x)) (neg.f32 (sin.f32 (*.f32 (PI.f32) x)))) (patch (*.f32 (/.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (neg.f32 (PI.f32)) x)) (neg.f32 (sin.f32 (*.f32 (PI.f32) x)))) #<representation binary32>) () ())) ())
#s(alt (/ -1 (* x (PI))) (taylor 0 tau) (#s(alt (/.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (neg.f32 (PI.f32)) x)) (patch (/.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (neg.f32 (PI.f32)) x)) #<representation binary32>) () ())) ())
#s(alt (- (* 1/6 (* (pow tau 2) (* x (PI)))) (/ 1 (* x (PI)))) (taylor 0 tau) (#s(alt (/.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (neg.f32 (PI.f32)) x)) (patch (/.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (neg.f32 (PI.f32)) x)) #<representation binary32>) () ())) ())
#s(alt (- (* (pow tau 2) (+ (* -1/120 (* (pow tau 2) (* (pow x 3) (pow (PI) 3)))) (* 1/6 (* x (PI))))) (/ 1 (* x (PI)))) (taylor 0 tau) (#s(alt (/.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (neg.f32 (PI.f32)) x)) (patch (/.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (neg.f32 (PI.f32)) x)) #<representation binary32>) () ())) ())
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Calls

6 calls:

TimeVariablePointExpression
16.0ms
tau
@0
((/ (/ (sin (* tau (* (PI) x))) (* (PI) x)) (/ (* tau (* (PI) x)) (sin (* (PI) x)))) (/ (sin (* tau (* (PI) x))) (* (PI) x)) (sin (* tau (* (PI) x))) (* tau (* (PI) x)) (* (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (/ (sin (* x (PI))) (* x (PI)))) (* (/ (sin (* (* x (PI)) tau)) (* (* tau x) (PI))) (/ (sin (* x (PI))) (* x (PI)))) (/ (sin (* (* x (PI)) tau)) (* (* tau x) (PI))) (sin (* (* x (PI)) tau)) (* (* x (PI)) tau) (* (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) (neg (sin (* (PI) x)))) (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (/ (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (* (PI) (* tau (PI)))) (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ (sin (* (PI) x)) x) (* (PI) x) (* (* tau x) (PI)) (/ (sin (* x (PI))) (* x (PI))) (* (PI) (* tau (PI))))
5.0ms
x
@-inf
((/ (/ (sin (* tau (* (PI) x))) (* (PI) x)) (/ (* tau (* (PI) x)) (sin (* (PI) x)))) (/ (sin (* tau (* (PI) x))) (* (PI) x)) (sin (* tau (* (PI) x))) (* tau (* (PI) x)) (* (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (/ (sin (* x (PI))) (* x (PI)))) (* (/ (sin (* (* x (PI)) tau)) (* (* tau x) (PI))) (/ (sin (* x (PI))) (* x (PI)))) (/ (sin (* (* x (PI)) tau)) (* (* tau x) (PI))) (sin (* (* x (PI)) tau)) (* (* x (PI)) tau) (* (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) (neg (sin (* (PI) x)))) (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (/ (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (* (PI) (* tau (PI)))) (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ (sin (* (PI) x)) x) (* (PI) x) (* (* tau x) (PI)) (/ (sin (* x (PI))) (* x (PI))) (* (PI) (* tau (PI))))
5.0ms
tau
@-inf
((/ (/ (sin (* tau (* (PI) x))) (* (PI) x)) (/ (* tau (* (PI) x)) (sin (* (PI) x)))) (/ (sin (* tau (* (PI) x))) (* (PI) x)) (sin (* tau (* (PI) x))) (* tau (* (PI) x)) (* (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (/ (sin (* x (PI))) (* x (PI)))) (* (/ (sin (* (* x (PI)) tau)) (* (* tau x) (PI))) (/ (sin (* x (PI))) (* x (PI)))) (/ (sin (* (* x (PI)) tau)) (* (* tau x) (PI))) (sin (* (* x (PI)) tau)) (* (* x (PI)) tau) (* (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) (neg (sin (* (PI) x)))) (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (/ (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (* (PI) (* tau (PI)))) (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ (sin (* (PI) x)) x) (* (PI) x) (* (* tau x) (PI)) (/ (sin (* x (PI))) (* x (PI))) (* (PI) (* tau (PI))))
4.0ms
tau
@inf
((/ (/ (sin (* tau (* (PI) x))) (* (PI) x)) (/ (* tau (* (PI) x)) (sin (* (PI) x)))) (/ (sin (* tau (* (PI) x))) (* (PI) x)) (sin (* tau (* (PI) x))) (* tau (* (PI) x)) (* (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (/ (sin (* x (PI))) (* x (PI)))) (* (/ (sin (* (* x (PI)) tau)) (* (* tau x) (PI))) (/ (sin (* x (PI))) (* x (PI)))) (/ (sin (* (* x (PI)) tau)) (* (* tau x) (PI))) (sin (* (* x (PI)) tau)) (* (* x (PI)) tau) (* (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) (neg (sin (* (PI) x)))) (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (/ (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (* (PI) (* tau (PI)))) (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ (sin (* (PI) x)) x) (* (PI) x) (* (* tau x) (PI)) (/ (sin (* x (PI))) (* x (PI))) (* (PI) (* tau (PI))))
4.0ms
x
@inf
((/ (/ (sin (* tau (* (PI) x))) (* (PI) x)) (/ (* tau (* (PI) x)) (sin (* (PI) x)))) (/ (sin (* tau (* (PI) x))) (* (PI) x)) (sin (* tau (* (PI) x))) (* tau (* (PI) x)) (* (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (/ (sin (* x (PI))) (* x (PI)))) (* (/ (sin (* (* x (PI)) tau)) (* (* tau x) (PI))) (/ (sin (* x (PI))) (* x (PI)))) (/ (sin (* (* x (PI)) tau)) (* (* tau x) (PI))) (sin (* (* x (PI)) tau)) (* (* x (PI)) tau) (* (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) (neg (sin (* (PI) x)))) (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (/ (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (* (PI) (* tau (PI)))) (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ (sin (* (PI) x)) x) (* (PI) x) (* (* tau x) (PI)) (/ (sin (* x (PI))) (* x (PI))) (* (PI) (* tau (PI))))

simplify379.0ms (3.7%)

Memory
-11.0MiB live, 257.1MiB allocated
Algorithm
egg-herbie
Iterations

Useful iterations: 0 (0.0ms)

IterNodesCost
03817094
112666930
249216744
082946520
Stop Event
iter limit
node limit
Counts
432 → 430
Calls
Call 1
Inputs
(/ (sin (* x (PI))) (* x (PI)))
(+ (* -1/6 (* (pow tau 2) (* x (* (PI) (sin (* x (PI))))))) (/ (sin (* x (PI))) (* x (PI))))
(+ (* (pow tau 2) (+ (* -1/6 (* x (* (PI) (sin (* x (PI)))))) (* 1/120 (* (pow tau 2) (* (pow x 3) (* (pow (PI) 3) (sin (* x (PI))))))))) (/ (sin (* x (PI))) (* x (PI))))
(+ (* (pow tau 2) (+ (* -1/6 (* x (* (PI) (sin (* x (PI)))))) (* (pow tau 2) (+ (* -1/5040 (* (pow tau 2) (* (pow x 5) (* (pow (PI) 5) (sin (* x (PI))))))) (* 1/120 (* (pow x 3) (* (pow (PI) 3) (sin (* x (PI)))))))))) (/ (sin (* x (PI))) (* x (PI))))
tau
(* tau (+ 1 (* -1/6 (* (pow tau 2) (* (pow x 2) (pow (PI) 2))))))
(* tau (+ 1 (* (pow tau 2) (+ (* -1/6 (* (pow x 2) (pow (PI) 2))) (* 1/120 (* (pow tau 2) (* (pow x 4) (pow (PI) 4))))))))
(* tau (+ 1 (* (pow tau 2) (+ (* -1/6 (* (pow x 2) (pow (PI) 2))) (* (pow tau 2) (+ (* -1/5040 (* (pow tau 2) (* (pow x 6) (pow (PI) 6)))) (* 1/120 (* (pow x 4) (pow (PI) 4)))))))))
(* tau (* x (PI)))
(* tau (+ (* -1/6 (* (pow tau 2) (* (pow x 3) (pow (PI) 3)))) (* x (PI))))
(* tau (+ (* x (PI)) (* (pow tau 2) (+ (* -1/6 (* (pow x 3) (pow (PI) 3))) (* 1/120 (* (pow tau 2) (* (pow x 5) (pow (PI) 5))))))))
(* tau (+ (* x (PI)) (* (pow tau 2) (+ (* -1/6 (* (pow x 3) (pow (PI) 3))) (* (pow tau 2) (+ (* -1/5040 (* (pow tau 2) (* (pow x 7) (pow (PI) 7)))) (* 1/120 (* (pow x 5) (pow (PI) 5)))))))))
(* tau (* x (PI)))
(* tau (* x (PI)))
(* tau (* x (PI)))
(* tau (* x (PI)))
(/ (sin (* x (PI))) (* x (PI)))
(+ (* -1/6 (* (pow tau 2) (* x (* (PI) (sin (* x (PI))))))) (/ (sin (* x (PI))) (* x (PI))))
(+ (* (pow tau 2) (+ (* -1/6 (* x (* (PI) (sin (* x (PI)))))) (* 1/120 (* (pow tau 2) (* (pow x 3) (* (pow (PI) 3) (sin (* x (PI))))))))) (/ (sin (* x (PI))) (* x (PI))))
(+ (* (pow tau 2) (+ (* -1/6 (* x (* (PI) (sin (* x (PI)))))) (* (pow tau 2) (+ (* -1/5040 (* (pow tau 2) (* (pow x 5) (* (pow (PI) 5) (sin (* x (PI))))))) (* 1/120 (* (pow x 3) (* (pow (PI) 3) (sin (* x (PI)))))))))) (/ (sin (* x (PI))) (* x (PI))))
(/ (sin (* x (PI))) (* x (PI)))
(+ (* -1/6 (* (pow tau 2) (* x (* (PI) (sin (* x (PI))))))) (/ (sin (* x (PI))) (* x (PI))))
(+ (* (pow tau 2) (+ (* -1/6 (* x (* (PI) (sin (* x (PI)))))) (* 1/120 (* (pow tau 2) (* (pow x 3) (* (pow (PI) 3) (sin (* x (PI))))))))) (/ (sin (* x (PI))) (* x (PI))))
(+ (* (pow tau 2) (+ (* -1/6 (* x (* (PI) (sin (* x (PI)))))) (* (pow tau 2) (+ (* -1/5040 (* (pow tau 2) (* (pow x 5) (* (pow (PI) 5) (sin (* x (PI))))))) (* 1/120 (* (pow x 3) (* (pow (PI) 3) (sin (* x (PI)))))))))) (/ (sin (* x (PI))) (* x (PI))))
1
(+ 1 (* -1/6 (* (pow tau 2) (* (pow x 2) (pow (PI) 2)))))
(+ 1 (* (pow tau 2) (+ (* -1/6 (* (pow x 2) (pow (PI) 2))) (* 1/120 (* (pow tau 2) (* (pow x 4) (pow (PI) 4)))))))
(+ 1 (* (pow tau 2) (+ (* -1/6 (* (pow x 2) (pow (PI) 2))) (* (pow tau 2) (+ (* -1/5040 (* (pow tau 2) (* (pow x 6) (pow (PI) 6)))) (* 1/120 (* (pow x 4) (pow (PI) 4))))))))
(* tau (* x (PI)))
(* tau (+ (* -1/6 (* (pow tau 2) (* (pow x 3) (pow (PI) 3)))) (* x (PI))))
(* tau (+ (* x (PI)) (* (pow tau 2) (+ (* -1/6 (* (pow x 3) (pow (PI) 3))) (* 1/120 (* (pow tau 2) (* (pow x 5) (pow (PI) 5))))))))
(* tau (+ (* x (PI)) (* (pow tau 2) (+ (* -1/6 (* (pow x 3) (pow (PI) 3))) (* (pow tau 2) (+ (* -1/5040 (* (pow tau 2) (* (pow x 7) (pow (PI) 7)))) (* 1/120 (* (pow x 5) (pow (PI) 5)))))))))
(* tau (* x (PI)))
(* tau (* x (PI)))
(* tau (* x (PI)))
(* tau (* x (PI)))
(/ (sin (* x (PI))) (* x (PI)))
(+ (* -1/6 (* (pow tau 2) (* x (* (PI) (sin (* x (PI))))))) (/ (sin (* x (PI))) (* x (PI))))
(+ (* (pow tau 2) (+ (* -1/6 (* x (* (PI) (sin (* x (PI)))))) (* 1/120 (* (pow tau 2) (* (pow x 3) (* (pow (PI) 3) (sin (* x (PI))))))))) (/ (sin (* x (PI))) (* x (PI))))
(+ (* (pow tau 2) (+ (* -1/6 (* x (* (PI) (sin (* x (PI)))))) (* (pow tau 2) (+ (* -1/5040 (* (pow tau 2) (* (pow x 5) (* (pow (PI) 5) (sin (* x (PI))))))) (* 1/120 (* (pow x 3) (* (pow (PI) 3) (sin (* x (PI)))))))))) (/ (sin (* x (PI))) (* x (PI))))
(/ -1 (* x (PI)))
(- (* 1/6 (* (pow tau 2) (* x (PI)))) (/ 1 (* x (PI))))
(- (* (pow tau 2) (+ (* -1/120 (* (pow tau 2) (* (pow x 3) (pow (PI) 3)))) (* 1/6 (* x (PI))))) (/ 1 (* x (PI))))
(- (* (pow tau 2) (+ (* 1/6 (* x (PI))) (* (pow tau 2) (+ (* -1/120 (* (pow x 3) (pow (PI) 3))) (* 1/5040 (* (pow tau 2) (* (pow x 5) (pow (PI) 5)))))))) (/ 1 (* x (PI))))
1
(+ 1 (* -1/6 (* (pow tau 2) (* (pow x 2) (pow (PI) 2)))))
(+ 1 (* (pow tau 2) (+ (* -1/6 (* (pow x 2) (pow (PI) 2))) (* 1/120 (* (pow tau 2) (* (pow x 4) (pow (PI) 4)))))))
(+ 1 (* (pow tau 2) (+ (* -1/6 (* (pow x 2) (pow (PI) 2))) (* (pow tau 2) (+ (* -1/5040 (* (pow tau 2) (* (pow x 6) (pow (PI) 6)))) (* 1/120 (* (pow x 4) (pow (PI) 4))))))))
(/ (sin (* x (PI))) (* x (PI)))
(+ (* -1/6 (* (pow tau 2) (* x (* (PI) (sin (* x (PI))))))) (/ (sin (* x (PI))) (* x (PI))))
(+ (* (pow tau 2) (+ (* -1/6 (* x (* (PI) (sin (* x (PI)))))) (* 1/120 (* (pow tau 2) (* (pow x 3) (* (pow (PI) 3) (sin (* x (PI))))))))) (/ (sin (* x (PI))) (* x (PI))))
(+ (* (pow tau 2) (+ (* -1/6 (* x (* (PI) (sin (* x (PI)))))) (* (pow tau 2) (+ (* -1/5040 (* (pow tau 2) (* (pow x 5) (* (pow (PI) 5) (sin (* x (PI))))))) (* 1/120 (* (pow x 3) (* (pow (PI) 3) (sin (* x (PI)))))))))) (/ (sin (* x (PI))) (* x (PI))))
(/ (* tau (* (PI) (sin (* x (PI))))) x)
(* tau (+ (* -1/6 (* (pow tau 2) (* x (* (pow (PI) 3) (sin (* x (PI))))))) (/ (* (PI) (sin (* x (PI)))) x)))
(* tau (+ (* (pow tau 2) (+ (* -1/6 (* x (* (pow (PI) 3) (sin (* x (PI)))))) (* 1/120 (* (pow tau 2) (* (pow x 3) (* (pow (PI) 5) (sin (* x (PI))))))))) (/ (* (PI) (sin (* x (PI)))) x)))
(* tau (+ (* (pow tau 2) (+ (* -1/6 (* x (* (pow (PI) 3) (sin (* x (PI)))))) (* (pow tau 2) (+ (* -1/5040 (* (pow tau 2) (* (pow x 5) (* (pow (PI) 7) (sin (* x (PI))))))) (* 1/120 (* (pow x 3) (* (pow (PI) 5) (sin (* x (PI)))))))))) (/ (* (PI) (sin (* x (PI)))) x)))
(* tau (* (PI) (sin (* x (PI)))))
(* tau (+ (* -1/6 (* (pow tau 2) (* (pow x 2) (* (pow (PI) 3) (sin (* x (PI))))))) (* (PI) (sin (* x (PI))))))
(* tau (+ (* (PI) (sin (* x (PI)))) (* (pow tau 2) (+ (* -1/6 (* (pow x 2) (* (pow (PI) 3) (sin (* x (PI)))))) (* 1/120 (* (pow tau 2) (* (pow x 4) (* (pow (PI) 5) (sin (* x (PI)))))))))))
(* tau (+ (* (PI) (sin (* x (PI)))) (* (pow tau 2) (+ (* -1/6 (* (pow x 2) (* (pow (PI) 3) (sin (* x (PI)))))) (* (pow tau 2) (+ (* -1/5040 (* (pow tau 2) (* (pow x 6) (* (pow (PI) 7) (sin (* x (PI))))))) (* 1/120 (* (pow x 4) (* (pow (PI) 5) (sin (* x (PI))))))))))))
(* tau (* x (PI)))
(* tau (* x (PI)))
(* tau (* x (PI)))
(* tau (* x (PI)))
(* tau (pow (PI) 2))
(* tau (pow (PI) 2))
(* tau (pow (PI) 2))
(* tau (pow (PI) 2))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(/ (sin (* tau (* x (PI)))) (* x (PI)))
(/ (sin (* tau (* x (PI)))) (* x (PI)))
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(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(/ (sin (* tau (* x (PI)))) (* x (PI)))
(/ (sin (* tau (* x (PI)))) (* x (PI)))
(/ (sin (* tau (* x (PI)))) (* x (PI)))
(/ (sin (* tau (* x (PI)))) (* x (PI)))
(sin (* tau (* x (PI))))
(sin (* tau (* x (PI))))
(sin (* tau (* x (PI))))
(sin (* tau (* x (PI))))
(* tau (* x (PI)))
(* tau (* x (PI)))
(* tau (* x (PI)))
(* tau (* x (PI)))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(/ (sin (* tau (* x (PI)))) (* tau (* x (PI))))
(/ (sin (* tau (* x (PI)))) (* tau (* x (PI))))
(/ (sin (* tau (* x (PI)))) (* tau (* x (PI))))
(/ (sin (* tau (* x (PI)))) (* tau (* x (PI))))
(sin (* tau (* x (PI))))
(sin (* tau (* x (PI))))
(sin (* tau (* x (PI))))
(sin (* tau (* x (PI))))
(* tau (* x (PI)))
(* tau (* x (PI)))
(* tau (* x (PI)))
(* tau (* x (PI)))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(* -1 (/ (sin (* tau (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2)))))
(* -1 (/ (sin (* tau (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2)))))
(* -1 (/ (sin (* tau (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2)))))
(* -1 (/ (sin (* tau (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2)))))
(/ (sin (* tau (* x (PI)))) (* tau (* x (PI))))
(/ (sin (* tau (* x (PI)))) (* tau (* x (PI))))
(/ (sin (* tau (* x (PI)))) (* tau (* x (PI))))
(/ (sin (* tau (* x (PI)))) (* tau (* x (PI))))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (pow x 2))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (pow x 2))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (pow x 2))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (pow x 2))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) x)
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) x)
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) x)
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) x)
(/ (sin (* x (PI))) x)
(/ (sin (* x (PI))) x)
(/ (sin (* x (PI))) x)
(/ (sin (* x (PI))) x)
(* x (PI))
(* x (PI))
(* x (PI))
(* x (PI))
(* tau (* x (PI)))
(* tau (* x (PI)))
(* tau (* x (PI)))
(* tau (* x (PI)))
(/ (sin (* x (PI))) (* x (PI)))
(/ (sin (* x (PI))) (* x (PI)))
(/ (sin (* x (PI))) (* x (PI)))
(/ (sin (* x (PI))) (* x (PI)))
Outputs
(/ (sin (* x (PI))) (* x (PI)))
(/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x))
(+ (* -1/6 (* (pow tau 2) (* x (* (PI) (sin (* x (PI))))))) (/ (sin (* x (PI))) (* x (PI))))
(fma.f32 (*.f32 (*.f32 tau tau) #s(literal -1/6 binary32)) (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x)) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x)))
(+ (* (pow tau 2) (+ (* -1/6 (* x (* (PI) (sin (* x (PI)))))) (* 1/120 (* (pow tau 2) (* (pow x 3) (* (pow (PI) 3) (sin (* x (PI))))))))) (/ (sin (* x (PI))) (* x (PI))))
(fma.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (fma.f32 (*.f32 #s(literal 1/120 binary32) (*.f32 tau tau)) (*.f32 (pow.f32 (PI.f32) #s(literal 3 binary32)) (pow.f32 x #s(literal 3 binary32))) (*.f32 (*.f32 #s(literal -1/6 binary32) x) (PI.f32)))) (*.f32 tau tau) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x)))
(+ (* (pow tau 2) (+ (* -1/6 (* x (* (PI) (sin (* x (PI)))))) (* (pow tau 2) (+ (* -1/5040 (* (pow tau 2) (* (pow x 5) (* (pow (PI) 5) (sin (* x (PI))))))) (* 1/120 (* (pow x 3) (* (pow (PI) 3) (sin (* x (PI)))))))))) (/ (sin (* x (PI))) (* x (PI))))
(fma.f32 (pow.f32 tau #s(literal 4 binary32)) (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (fma.f32 (*.f32 (pow.f32 x #s(literal 3 binary32)) #s(literal 1/120 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32)) (*.f32 (*.f32 #s(literal -1/5040 binary32) (*.f32 tau tau)) (*.f32 (pow.f32 (PI.f32) #s(literal 5 binary32)) (pow.f32 x #s(literal 5 binary32)))))) (fma.f32 (*.f32 (*.f32 tau tau) #s(literal -1/6 binary32)) (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x)) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x))))
tau
(* tau (+ 1 (* -1/6 (* (pow tau 2) (* (pow x 2) (pow (PI) 2))))))
(fma.f32 (*.f32 (*.f32 (pow.f32 tau #s(literal 3 binary32)) x) x) (*.f32 (*.f32 (PI.f32) (PI.f32)) #s(literal -1/6 binary32)) tau)
(* tau (+ 1 (* (pow tau 2) (+ (* -1/6 (* (pow x 2) (pow (PI) 2))) (* 1/120 (* (pow tau 2) (* (pow x 4) (pow (PI) 4))))))))
(fma.f32 (pow.f32 tau #s(literal 3 binary32)) (fma.f32 (*.f32 (*.f32 #s(literal 1/120 binary32) (*.f32 tau tau)) (pow.f32 (PI.f32) #s(literal 4 binary32))) (pow.f32 x #s(literal 4 binary32)) (*.f32 (*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) #s(literal -1/6 binary32)) x) x)) tau)
(* tau (+ 1 (* (pow tau 2) (+ (* -1/6 (* (pow x 2) (pow (PI) 2))) (* (pow tau 2) (+ (* -1/5040 (* (pow tau 2) (* (pow x 6) (pow (PI) 6)))) (* 1/120 (* (pow x 4) (pow (PI) 4)))))))))
(fma.f32 (pow.f32 tau #s(literal 3 binary32)) (fma.f32 (*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) #s(literal -1/6 binary32)) x) x (*.f32 (fma.f32 (*.f32 (pow.f32 x #s(literal 4 binary32)) #s(literal 1/120 binary32)) (pow.f32 (PI.f32) #s(literal 4 binary32)) (*.f32 (*.f32 #s(literal -1/5040 binary32) (*.f32 tau tau)) (*.f32 (pow.f32 (PI.f32) #s(literal 6 binary32)) (pow.f32 x #s(literal 6 binary32))))) (*.f32 tau tau))) tau)
(* tau (* x (PI)))
(*.f32 tau (*.f32 (PI.f32) x))
(* tau (+ (* -1/6 (* (pow tau 2) (* (pow x 3) (pow (PI) 3)))) (* x (PI))))
(*.f32 (fma.f32 (*.f32 (*.f32 tau tau) #s(literal -1/6 binary32)) (*.f32 (pow.f32 (PI.f32) #s(literal 3 binary32)) (pow.f32 x #s(literal 3 binary32))) (*.f32 (PI.f32) x)) tau)
(* tau (+ (* x (PI)) (* (pow tau 2) (+ (* -1/6 (* (pow x 3) (pow (PI) 3))) (* 1/120 (* (pow tau 2) (* (pow x 5) (pow (PI) 5))))))))
(fma.f32 (pow.f32 tau #s(literal 3 binary32)) (fma.f32 (*.f32 #s(literal 1/120 binary32) (*.f32 tau tau)) (*.f32 (pow.f32 (PI.f32) #s(literal 5 binary32)) (pow.f32 x #s(literal 5 binary32))) (*.f32 (*.f32 (pow.f32 x #s(literal 3 binary32)) #s(literal -1/6 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32)))) (*.f32 tau (*.f32 (PI.f32) x)))
(* tau (+ (* x (PI)) (* (pow tau 2) (+ (* -1/6 (* (pow x 3) (pow (PI) 3))) (* (pow tau 2) (+ (* -1/5040 (* (pow tau 2) (* (pow x 7) (pow (PI) 7)))) (* 1/120 (* (pow x 5) (pow (PI) 5)))))))))
(fma.f32 (pow.f32 tau #s(literal 3 binary32)) (fma.f32 (*.f32 (pow.f32 x #s(literal 3 binary32)) #s(literal -1/6 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32)) (*.f32 (fma.f32 (*.f32 (pow.f32 x #s(literal 5 binary32)) #s(literal 1/120 binary32)) (pow.f32 (PI.f32) #s(literal 5 binary32)) (*.f32 (*.f32 #s(literal -1/5040 binary32) (*.f32 tau tau)) (*.f32 (pow.f32 (PI.f32) #s(literal 7 binary32)) (pow.f32 x #s(literal 7 binary32))))) (*.f32 tau tau))) (*.f32 tau (*.f32 (PI.f32) x)))
(* tau (* x (PI)))
(*.f32 tau (*.f32 (PI.f32) x))
(* tau (* x (PI)))
(*.f32 tau (*.f32 (PI.f32) x))
(* tau (* x (PI)))
(*.f32 tau (*.f32 (PI.f32) x))
(* tau (* x (PI)))
(*.f32 tau (*.f32 (PI.f32) x))
(/ (sin (* x (PI))) (* x (PI)))
(/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x))
(+ (* -1/6 (* (pow tau 2) (* x (* (PI) (sin (* x (PI))))))) (/ (sin (* x (PI))) (* x (PI))))
(fma.f32 (*.f32 (*.f32 tau tau) #s(literal -1/6 binary32)) (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x)) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x)))
(+ (* (pow tau 2) (+ (* -1/6 (* x (* (PI) (sin (* x (PI)))))) (* 1/120 (* (pow tau 2) (* (pow x 3) (* (pow (PI) 3) (sin (* x (PI))))))))) (/ (sin (* x (PI))) (* x (PI))))
(fma.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (fma.f32 (*.f32 #s(literal 1/120 binary32) (*.f32 tau tau)) (*.f32 (pow.f32 (PI.f32) #s(literal 3 binary32)) (pow.f32 x #s(literal 3 binary32))) (*.f32 (*.f32 #s(literal -1/6 binary32) x) (PI.f32)))) (*.f32 tau tau) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x)))
(+ (* (pow tau 2) (+ (* -1/6 (* x (* (PI) (sin (* x (PI)))))) (* (pow tau 2) (+ (* -1/5040 (* (pow tau 2) (* (pow x 5) (* (pow (PI) 5) (sin (* x (PI))))))) (* 1/120 (* (pow x 3) (* (pow (PI) 3) (sin (* x (PI)))))))))) (/ (sin (* x (PI))) (* x (PI))))
(fma.f32 (pow.f32 tau #s(literal 4 binary32)) (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (fma.f32 (*.f32 (pow.f32 x #s(literal 3 binary32)) #s(literal 1/120 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32)) (*.f32 (*.f32 #s(literal -1/5040 binary32) (*.f32 tau tau)) (*.f32 (pow.f32 (PI.f32) #s(literal 5 binary32)) (pow.f32 x #s(literal 5 binary32)))))) (fma.f32 (*.f32 (*.f32 tau tau) #s(literal -1/6 binary32)) (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x)) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x))))
(/ (sin (* x (PI))) (* x (PI)))
(/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x))
(+ (* -1/6 (* (pow tau 2) (* x (* (PI) (sin (* x (PI))))))) (/ (sin (* x (PI))) (* x (PI))))
(fma.f32 (*.f32 (*.f32 tau tau) #s(literal -1/6 binary32)) (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x)) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x)))
(+ (* (pow tau 2) (+ (* -1/6 (* x (* (PI) (sin (* x (PI)))))) (* 1/120 (* (pow tau 2) (* (pow x 3) (* (pow (PI) 3) (sin (* x (PI))))))))) (/ (sin (* x (PI))) (* x (PI))))
(fma.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (fma.f32 (*.f32 #s(literal 1/120 binary32) (*.f32 tau tau)) (*.f32 (pow.f32 (PI.f32) #s(literal 3 binary32)) (pow.f32 x #s(literal 3 binary32))) (*.f32 (*.f32 #s(literal -1/6 binary32) x) (PI.f32)))) (*.f32 tau tau) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x)))
(+ (* (pow tau 2) (+ (* -1/6 (* x (* (PI) (sin (* x (PI)))))) (* (pow tau 2) (+ (* -1/5040 (* (pow tau 2) (* (pow x 5) (* (pow (PI) 5) (sin (* x (PI))))))) (* 1/120 (* (pow x 3) (* (pow (PI) 3) (sin (* x (PI)))))))))) (/ (sin (* x (PI))) (* x (PI))))
(fma.f32 (pow.f32 tau #s(literal 4 binary32)) (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (fma.f32 (*.f32 (pow.f32 x #s(literal 3 binary32)) #s(literal 1/120 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32)) (*.f32 (*.f32 #s(literal -1/5040 binary32) (*.f32 tau tau)) (*.f32 (pow.f32 (PI.f32) #s(literal 5 binary32)) (pow.f32 x #s(literal 5 binary32)))))) (fma.f32 (*.f32 (*.f32 tau tau) #s(literal -1/6 binary32)) (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x)) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x))))
1
#s(literal 1 binary32)
(+ 1 (* -1/6 (* (pow tau 2) (* (pow x 2) (pow (PI) 2)))))
(fma.f32 (*.f32 (*.f32 #s(literal -1/6 binary32) x) x) (*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) tau) tau) #s(literal 1 binary32))
(+ 1 (* (pow tau 2) (+ (* -1/6 (* (pow x 2) (pow (PI) 2))) (* 1/120 (* (pow tau 2) (* (pow x 4) (pow (PI) 4)))))))
(fma.f32 (fma.f32 (*.f32 (*.f32 #s(literal 1/120 binary32) (*.f32 tau tau)) (pow.f32 (PI.f32) #s(literal 4 binary32))) (pow.f32 x #s(literal 4 binary32)) (*.f32 (*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) #s(literal -1/6 binary32)) x) x)) (*.f32 tau tau) #s(literal 1 binary32))
(+ 1 (* (pow tau 2) (+ (* -1/6 (* (pow x 2) (pow (PI) 2))) (* (pow tau 2) (+ (* -1/5040 (* (pow tau 2) (* (pow x 6) (pow (PI) 6)))) (* 1/120 (* (pow x 4) (pow (PI) 4))))))))
(fma.f32 (pow.f32 tau #s(literal 4 binary32)) (fma.f32 (*.f32 (pow.f32 x #s(literal 4 binary32)) #s(literal 1/120 binary32)) (pow.f32 (PI.f32) #s(literal 4 binary32)) (*.f32 (*.f32 #s(literal -1/5040 binary32) (*.f32 tau tau)) (*.f32 (pow.f32 (PI.f32) #s(literal 6 binary32)) (pow.f32 x #s(literal 6 binary32))))) (fma.f32 (*.f32 (*.f32 #s(literal -1/6 binary32) x) x) (*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) tau) tau) #s(literal 1 binary32)))
(* tau (* x (PI)))
(*.f32 tau (*.f32 (PI.f32) x))
(* tau (+ (* -1/6 (* (pow tau 2) (* (pow x 3) (pow (PI) 3)))) (* x (PI))))
(*.f32 (fma.f32 (*.f32 (*.f32 tau tau) #s(literal -1/6 binary32)) (*.f32 (pow.f32 (PI.f32) #s(literal 3 binary32)) (pow.f32 x #s(literal 3 binary32))) (*.f32 (PI.f32) x)) tau)
(* tau (+ (* x (PI)) (* (pow tau 2) (+ (* -1/6 (* (pow x 3) (pow (PI) 3))) (* 1/120 (* (pow tau 2) (* (pow x 5) (pow (PI) 5))))))))
(fma.f32 (pow.f32 tau #s(literal 3 binary32)) (fma.f32 (*.f32 #s(literal 1/120 binary32) (*.f32 tau tau)) (*.f32 (pow.f32 (PI.f32) #s(literal 5 binary32)) (pow.f32 x #s(literal 5 binary32))) (*.f32 (*.f32 (pow.f32 x #s(literal 3 binary32)) #s(literal -1/6 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32)))) (*.f32 tau (*.f32 (PI.f32) x)))
(* tau (+ (* x (PI)) (* (pow tau 2) (+ (* -1/6 (* (pow x 3) (pow (PI) 3))) (* (pow tau 2) (+ (* -1/5040 (* (pow tau 2) (* (pow x 7) (pow (PI) 7)))) (* 1/120 (* (pow x 5) (pow (PI) 5)))))))))
(fma.f32 (pow.f32 tau #s(literal 3 binary32)) (fma.f32 (*.f32 (pow.f32 x #s(literal 3 binary32)) #s(literal -1/6 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32)) (*.f32 (fma.f32 (*.f32 (pow.f32 x #s(literal 5 binary32)) #s(literal 1/120 binary32)) (pow.f32 (PI.f32) #s(literal 5 binary32)) (*.f32 (*.f32 #s(literal -1/5040 binary32) (*.f32 tau tau)) (*.f32 (pow.f32 (PI.f32) #s(literal 7 binary32)) (pow.f32 x #s(literal 7 binary32))))) (*.f32 tau tau))) (*.f32 tau (*.f32 (PI.f32) x)))
(* tau (* x (PI)))
(*.f32 tau (*.f32 (PI.f32) x))
(* tau (* x (PI)))
(*.f32 tau (*.f32 (PI.f32) x))
(* tau (* x (PI)))
(*.f32 tau (*.f32 (PI.f32) x))
(* tau (* x (PI)))
(*.f32 tau (*.f32 (PI.f32) x))
(/ (sin (* x (PI))) (* x (PI)))
(/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x))
(+ (* -1/6 (* (pow tau 2) (* x (* (PI) (sin (* x (PI))))))) (/ (sin (* x (PI))) (* x (PI))))
(fma.f32 (*.f32 (*.f32 tau tau) #s(literal -1/6 binary32)) (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x)) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x)))
(+ (* (pow tau 2) (+ (* -1/6 (* x (* (PI) (sin (* x (PI)))))) (* 1/120 (* (pow tau 2) (* (pow x 3) (* (pow (PI) 3) (sin (* x (PI))))))))) (/ (sin (* x (PI))) (* x (PI))))
(fma.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (fma.f32 (*.f32 #s(literal 1/120 binary32) (*.f32 tau tau)) (*.f32 (pow.f32 (PI.f32) #s(literal 3 binary32)) (pow.f32 x #s(literal 3 binary32))) (*.f32 (*.f32 #s(literal -1/6 binary32) x) (PI.f32)))) (*.f32 tau tau) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x)))
(+ (* (pow tau 2) (+ (* -1/6 (* x (* (PI) (sin (* x (PI)))))) (* (pow tau 2) (+ (* -1/5040 (* (pow tau 2) (* (pow x 5) (* (pow (PI) 5) (sin (* x (PI))))))) (* 1/120 (* (pow x 3) (* (pow (PI) 3) (sin (* x (PI)))))))))) (/ (sin (* x (PI))) (* x (PI))))
(fma.f32 (pow.f32 tau #s(literal 4 binary32)) (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (fma.f32 (*.f32 (pow.f32 x #s(literal 3 binary32)) #s(literal 1/120 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32)) (*.f32 (*.f32 #s(literal -1/5040 binary32) (*.f32 tau tau)) (*.f32 (pow.f32 (PI.f32) #s(literal 5 binary32)) (pow.f32 x #s(literal 5 binary32)))))) (fma.f32 (*.f32 (*.f32 tau tau) #s(literal -1/6 binary32)) (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x)) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x))))
(/ -1 (* x (PI)))
(/.f32 (/.f32 #s(literal -1 binary32) (PI.f32)) x)
(- (* 1/6 (* (pow tau 2) (* x (PI)))) (/ 1 (* x (PI))))
(fma.f32 (*.f32 (*.f32 (*.f32 tau (PI.f32)) tau) #s(literal 1/6 binary32)) x (/.f32 (/.f32 #s(literal -1 binary32) (PI.f32)) x))
(- (* (pow tau 2) (+ (* -1/120 (* (pow tau 2) (* (pow x 3) (pow (PI) 3)))) (* 1/6 (* x (PI))))) (/ 1 (* x (PI))))
(fma.f32 (fma.f32 (*.f32 #s(literal -1/120 binary32) (*.f32 tau tau)) (*.f32 (pow.f32 (PI.f32) #s(literal 3 binary32)) (pow.f32 x #s(literal 3 binary32))) (*.f32 #s(literal 1/6 binary32) (*.f32 (PI.f32) x))) (*.f32 tau tau) (/.f32 (/.f32 #s(literal -1 binary32) (PI.f32)) x))
(- (* (pow tau 2) (+ (* 1/6 (* x (PI))) (* (pow tau 2) (+ (* -1/120 (* (pow x 3) (pow (PI) 3))) (* 1/5040 (* (pow tau 2) (* (pow x 5) (pow (PI) 5)))))))) (/ 1 (* x (PI))))
(fma.f32 (pow.f32 tau #s(literal 4 binary32)) (fma.f32 (*.f32 #s(literal -1/120 binary32) (pow.f32 (PI.f32) #s(literal 3 binary32))) (pow.f32 x #s(literal 3 binary32)) (*.f32 (*.f32 #s(literal 1/5040 binary32) (*.f32 tau tau)) (*.f32 (pow.f32 (PI.f32) #s(literal 5 binary32)) (pow.f32 x #s(literal 5 binary32))))) (fma.f32 (*.f32 (*.f32 (*.f32 tau (PI.f32)) tau) #s(literal 1/6 binary32)) x (/.f32 (/.f32 #s(literal -1 binary32) (PI.f32)) x)))
1
#s(literal 1 binary32)
(+ 1 (* -1/6 (* (pow tau 2) (* (pow x 2) (pow (PI) 2)))))
(fma.f32 (*.f32 (*.f32 #s(literal -1/6 binary32) x) x) (*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) tau) tau) #s(literal 1 binary32))
(+ 1 (* (pow tau 2) (+ (* -1/6 (* (pow x 2) (pow (PI) 2))) (* 1/120 (* (pow tau 2) (* (pow x 4) (pow (PI) 4)))))))
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(*.f32 (*.f32 (PI.f32) (PI.f32)) tau)
1
#s(literal 1 binary32)
(+ 1 (* (pow x 2) (+ (* -1/6 (* (pow tau 2) (pow (PI) 2))) (* -1/6 (pow (PI) 2)))))
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tau
(+ tau (* -1/6 (* (pow tau 3) (* (pow x 2) (pow (PI) 2)))))
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(+ tau (* (pow x 2) (+ (* -1/6 (* (pow tau 3) (pow (PI) 2))) (* (pow x 2) (+ (* -1/5040 (* (pow tau 7) (* (pow x 2) (pow (PI) 6)))) (* 1/120 (* (pow tau 5) (pow (PI) 4))))))))
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(* tau (* x (PI)))
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(* x (+ (* tau (PI)) (* (pow x 2) (+ (* -1/6 (* (pow tau 3) (pow (PI) 3))) (* (pow x 2) (+ (* -1/5040 (* (pow tau 7) (* (pow x 2) (pow (PI) 7)))) (* 1/120 (* (pow tau 5) (pow (PI) 5)))))))))
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1
#s(literal 1 binary32)
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(+ 1 (* (pow x 2) (+ (* -1/6 (* (pow tau 2) (pow (PI) 2))) (+ (* -1/6 (pow (PI) 2)) (* (pow x 2) (+ (* 1/120 (* (pow tau 4) (pow (PI) 4))) (+ (* 1/120 (pow (PI) 4)) (+ (* 1/36 (* (pow tau 2) (pow (PI) 4))) (* (pow x 2) (+ (* -1/720 (* (pow tau 2) (pow (PI) 6))) (+ (* -1/720 (* (pow tau 4) (pow (PI) 6))) (+ (* -1/5040 (* (pow tau 6) (pow (PI) 6))) (* -1/5040 (pow (PI) 6))))))))))))))
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1
#s(literal 1 binary32)
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(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 x x)))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 x x)))
(* -1 (/ (sin (* tau (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2)))))
(/.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (neg.f32 tau)) (*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) x) x))
(* -1 (/ (sin (* tau (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2)))))
(/.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (neg.f32 tau)) (*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) x) x))
(* -1 (/ (sin (* tau (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2)))))
(/.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (neg.f32 tau)) (*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) x) x))
(* -1 (/ (sin (* tau (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2)))))
(/.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (neg.f32 tau)) (*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) x) x))
(/ (sin (* tau (* x (PI)))) (* tau (* x (PI))))
(/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 tau (*.f32 (PI.f32) x)))
(/ (sin (* tau (* x (PI)))) (* tau (* x (PI))))
(/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 tau (*.f32 (PI.f32) x)))
(/ (sin (* tau (* x (PI)))) (* tau (* x (PI))))
(/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 tau (*.f32 (PI.f32) x)))
(/ (sin (* tau (* x (PI)))) (* tau (* x (PI))))
(/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 tau (*.f32 (PI.f32) x)))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 x x)))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 x x)))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 x x)))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 x x)))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (pow x 2))
(*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 x x)) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (pow x 2))
(*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 x x)) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (pow x 2))
(*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 x x)) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (pow x 2))
(*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 x x)) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) x)
(*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) x)
(*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) x)
(*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) x)
(*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))))
(/ (sin (* x (PI))) x)
(/.f32 (sin.f32 (*.f32 (PI.f32) x)) x)
(/ (sin (* x (PI))) x)
(/.f32 (sin.f32 (*.f32 (PI.f32) x)) x)
(/ (sin (* x (PI))) x)
(/.f32 (sin.f32 (*.f32 (PI.f32) x)) x)
(/ (sin (* x (PI))) x)
(/.f32 (sin.f32 (*.f32 (PI.f32) x)) x)
(* x (PI))
(*.f32 (PI.f32) x)
(* x (PI))
(*.f32 (PI.f32) x)
(* x (PI))
(*.f32 (PI.f32) x)
(* x (PI))
(*.f32 (PI.f32) x)
(* tau (* x (PI)))
(*.f32 tau (*.f32 (PI.f32) x))
(* tau (* x (PI)))
(*.f32 tau (*.f32 (PI.f32) x))
(* tau (* x (PI)))
(*.f32 tau (*.f32 (PI.f32) x))
(* tau (* x (PI)))
(*.f32 tau (*.f32 (PI.f32) x))
(/ (sin (* x (PI))) (* x (PI)))
(/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x))
(/ (sin (* x (PI))) (* x (PI)))
(/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x))
(/ (sin (* x (PI))) (* x (PI)))
(/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x))
(/ (sin (* x (PI))) (* x (PI)))
(/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x))

rewrite176.0ms (1.7%)

Memory
10.2MiB live, 252.9MiB allocated
Iterations

Useful iterations: 2 (0.0ms)

IterNodesCost
042241
075235
1270235
21634223
37156223
08155223
Stop Event
iter limit
node limit
iter limit
Counts
20 → 1 700
Calls
Call 1
Inputs
(/.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (PI.f32) x)) (/.f32 (*.f32 tau (*.f32 (PI.f32) x)) (sin.f32 (*.f32 (PI.f32) x))))
(/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (PI.f32) x))
(sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))
(*.f32 tau (*.f32 (PI.f32) x))
#s(approx (* (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (/ (sin (* x (PI))) (* x (PI)))) #s(literal 1 binary32))
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 tau x) (PI.f32))) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
(/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 tau x) (PI.f32)))
(sin.f32 (*.f32 (*.f32 x (PI.f32)) tau))
(*.f32 (*.f32 x (PI.f32)) tau)
(*.f32 (/.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (neg.f32 (PI.f32)) x)) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
(/.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (neg.f32 (PI.f32)) x))
(/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 tau (*.f32 (PI.f32) x)))
(/.f32 (*.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) (/.f32 #s(literal 1 binary32) x)) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
(*.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) (/.f32 #s(literal 1 binary32) x))
(*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))))
(/.f32 (sin.f32 (*.f32 (PI.f32) x)) x)
(*.f32 (PI.f32) x)
(*.f32 (*.f32 tau x) (PI.f32))
(/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32)))
(*.f32 (PI.f32) (*.f32 tau (PI.f32)))
Outputs
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eval288.0ms (2.8%)

Memory
-6.9MiB live, 577.6MiB allocated
Compiler

Compiled 68 129 to 3 875 computations (94.3% saved)

prune122.0ms (1.2%)

Memory
-2.9MiB live, 378.2MiB allocated
Pruning

46 alts after pruning (43 fresh and 3 done)

PrunedKeptTotal
New2 759312 790
Fresh201232
Picked235
Done000
Total2 781462 827
Accuracy
99.8%
Counts
2 827 → 46
Alt Table
Click to see full alt table
StatusAccuracyProgram
97.5%
(/.f32 (/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))) (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau))) tau) (*.f32 x (PI.f32)))
96.6%
(/.f32 (/.f32 (*.f32 (sin.f32 (*.f32 x (PI.f32))) (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau))) (*.f32 (*.f32 (*.f32 (PI.f32) tau) (PI.f32)) x)) x)
96.0%
(/.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (pow.f32 (cbrt.f32 (PI.f32)) #s(literal 2 binary32)) x)) (*.f32 (/.f32 (*.f32 tau (*.f32 (PI.f32) x)) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) (cbrt.f32 (PI.f32))))
97.2%
(/.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (PI.f32) x)) (/.f32 (*.f32 tau (*.f32 (PI.f32) x)) (sin.f32 (/.f32 (PI.f32) (/.f32 #s(literal 1 binary32) x)))))
97.0%
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 x tau)) (sin.f32 (*.f32 x (PI.f32)))) (*.f32 (*.f32 x (PI.f32)) (PI.f32)))
97.3%
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) (*.f32 (*.f32 tau (*.f32 (PI.f32) x)) (PI.f32)))
97.7%
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))) (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau))) (*.f32 (*.f32 x (PI.f32)) tau))
97.0%
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) x) (neg.f32 (sin.f32 (*.f32 (PI.f32) x)))) (*.f32 (*.f32 (PI.f32) (*.f32 (PI.f32) x)) (neg.f32 tau)))
97.3%
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) tau) (neg.f32 (sin.f32 (*.f32 (PI.f32) x)))) (*.f32 (*.f32 (PI.f32) x) (*.f32 (neg.f32 (PI.f32)) x)))
97.1%
(/.f32 (*.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (sin.f32 (/.f32 (*.f32 (PI.f32) tau) (/.f32 #s(literal 1 binary32) x)))) (/.f32 #s(literal 1 binary32) x)) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
96.1%
(/.f32 (*.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) (/.f32 #s(literal 1 binary32) x)) (*.f32 (*.f32 (pow.f32 (cbrt.f32 (PI.f32)) #s(literal 2 binary32)) (*.f32 (PI.f32) tau)) (cbrt.f32 (PI.f32))))
96.6%
(/.f32 (*.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) (/.f32 #s(literal 1 binary32) x)) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
70.1%
(/.f32 (*.f32 (*.f32 #s(approx (/ (sin (* (PI) x)) x) (PI.f32)) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) (/.f32 #s(literal 1 binary32) x)) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
62.7%
(/.f32 (*.f32 #s(approx (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) x) tau)) (/.f32 #s(literal 1 binary32) x)) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
63.4%
(/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (/.f32 (PI.f32) x)) tau)) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
62.7%
(/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
97.3%
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 x (PI.f32)) (/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))) (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau))) tau)))
96.9%
(*.f32 (/.f32 (/.f32 (sin.f32 (/.f32 (*.f32 (PI.f32) tau) (/.f32 #s(literal 1 binary32) x))) (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (neg.f32 (PI.f32)) x)) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
97.0%
(*.f32 (/.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x tau) (PI.f32))) (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (neg.f32 (PI.f32)) x)) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
97.1%
(*.f32 (/.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (*.f32 tau (*.f32 (PI.f32) x))) (/.f32 (/.f32 #s(literal 1 binary32) (PI.f32)) (/.f32 #s(literal 1 binary32) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))))))
97.1%
(*.f32 (/.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (neg.f32 (PI.f32)) x)) (neg.f32 (sin.f32 (/.f32 (PI.f32) (/.f32 #s(literal 1 binary32) x)))))
96.9%
(*.f32 (/.f32 (/.f32 #s(literal 1 binary32) (/.f32 x (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (PI.f32) tau)))) (*.f32 (neg.f32 (PI.f32)) x)) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
96.5%
(*.f32 (/.f32 (*.f32 (sin.f32 (*.f32 x (PI.f32))) (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau))) (*.f32 (*.f32 (*.f32 (PI.f32) tau) (PI.f32)) x)) (/.f32 #s(literal 1 binary32) x))
96.9%
(*.f32 (/.f32 (sin.f32 (/.f32 (*.f32 (PI.f32) tau) (/.f32 #s(literal 1 binary32) x))) (*.f32 (*.f32 tau x) (PI.f32))) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
95.9%
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 (pow.f32 (cbrt.f32 (PI.f32)) #s(literal 2 binary32)) (*.f32 (cbrt.f32 (PI.f32)) x))) (*.f32 x (PI.f32))))
97.0%
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 (*.f32 (*.f32 (sqrt.f32 (PI.f32)) x) (cbrt.f32 (PI.f32))) (pow.f32 (PI.f32) #s(literal 1/6 binary32)))) (*.f32 x (PI.f32))))
70.4%
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) #s(approx (/ (sin (* x (PI))) (* x (PI))) #s(literal 1 binary32)))
95.9%
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 tau x) (PI.f32))) (/.f32 (/.f32 (/.f32 (sin.f32 (*.f32 x (PI.f32))) x) (pow.f32 (cbrt.f32 (PI.f32)) #s(literal 2 binary32))) (cbrt.f32 (PI.f32))))
97.0%
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 tau x) (PI.f32))) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
96.0%
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 tau x) (PI.f32))) (*.f32 (/.f32 (/.f32 (sin.f32 (*.f32 x (PI.f32))) x) (sqrt.f32 (PI.f32))) (/.f32 #s(literal 1 binary32) (sqrt.f32 (PI.f32)))))
70.1%
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 tau x) (PI.f32))) #s(approx (/ (sin (* x (PI))) (* x (PI))) #s(literal 1 binary32)))
97.6%
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 x (PI.f32))) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 (*.f32 x (PI.f32)) tau)))
97.7%
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x tau) (PI.f32))) (*.f32 (*.f32 tau x) (PI.f32))) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
97.2%
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 tau (PI.f32)) x)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
97.0%
(*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (*.f32 tau (*.f32 (PI.f32) x)) x)) (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (PI.f32)))
63.6%
(*.f32 (/.f32 #s(approx (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) #s(literal 1 binary32)) (*.f32 (neg.f32 (PI.f32)) x)) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
96.7%
(*.f32 (/.f32 #s(literal 1 binary32) (*.f32 (*.f32 (PI.f32) tau) (PI.f32))) (*.f32 (/.f32 (/.f32 (sin.f32 (*.f32 x (PI.f32))) x) x) (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau))))
96.9%
(*.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 x tau)) (sin.f32 (*.f32 x (PI.f32)))) (/.f32 #s(literal 1 binary32) (*.f32 (*.f32 x (PI.f32)) (PI.f32))))
97.0%
(*.f32 (neg.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) (/.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (*.f32 (*.f32 (PI.f32) (*.f32 (PI.f32) x)) (neg.f32 tau))))
26.5%
(*.f32 #s(approx (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) (fma.f32 (*.f32 (*.f32 (*.f32 tau (PI.f32)) tau) #s(literal 1/6 binary32)) x (/.f32 (/.f32 #s(literal -1 binary32) (PI.f32)) x))) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
63.5%
(*.f32 #s(approx (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) (/.f32 (/.f32 #s(literal -1 binary32) (PI.f32)) x)) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
62.9%
#s(approx (/ (/ (sin (* tau (* (PI) x))) (* (PI) x)) (/ (* tau (* (PI) x)) (sin (* (PI) x)))) (fma.f32 (*.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 (PI.f32) (PI.f32)) #s(literal -1/6 binary32))) (*.f32 x x) #s(literal 1 binary32)))
63.7%
#s(approx (/ (/ (sin (* tau (* (PI) x))) (* (PI) x)) (/ (* tau (* (PI) x)) (sin (* (PI) x)))) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x)))
96.7%
#s(approx (/ (/ (sin (* tau (* (PI) x))) (* (PI) x)) (/ (* tau (* (PI) x)) (sin (* (PI) x)))) (*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 x x))))
97.0%
#s(approx (* (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (/ (sin (* x (PI))) (* x (PI)))) (*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (PI.f32) (*.f32 (PI.f32) x))) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 tau x))))
62.9%
#s(approx (* (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (/ (sin (* x (PI))) (* x (PI)))) #s(literal 1 binary32))
Compiler

Compiled 1 888 to 1 193 computations (36.8% saved)

simplify82.0ms (0.8%)

Memory
19.7MiB live, 136.1MiB allocated
Algorithm
egg-herbie
Localize:

Found 20 expressions of interest:

NewMetricScoreProgram
cost-diff128
(*.f32 (/.f32 (/.f32 #s(literal 1 binary32) (/.f32 x (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (PI.f32) tau)))) (*.f32 (neg.f32 (PI.f32)) x)) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
cost-diff160
(/.f32 #s(literal 1 binary32) (/.f32 x (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (PI.f32) tau))))
cost-diff192
(/.f32 x (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (PI.f32) tau)))
cost-diff192
(/.f32 (/.f32 #s(literal 1 binary32) (/.f32 x (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (PI.f32) tau)))) (*.f32 (neg.f32 (PI.f32)) x))
cost-diff0
(*.f32 tau (*.f32 (PI.f32) x))
cost-diff0
(sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))
cost-diff0
(neg.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))))
cost-diff320
(*.f32 (neg.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) (/.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (*.f32 (*.f32 (PI.f32) (*.f32 (PI.f32) x)) (neg.f32 tau))))
cost-diff0
(*.f32 (*.f32 (*.f32 tau (PI.f32)) tau) #s(literal 1/6 binary32))
cost-diff0
(fma.f32 (*.f32 (*.f32 (*.f32 tau (PI.f32)) tau) #s(literal 1/6 binary32)) x (/.f32 (/.f32 #s(literal -1 binary32) (PI.f32)) x))
cost-diff0
#s(approx (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) (fma.f32 (*.f32 (*.f32 (*.f32 tau (PI.f32)) tau) #s(literal 1/6 binary32)) x (/.f32 (/.f32 #s(literal -1 binary32) (PI.f32)) x)))
cost-diff0
(*.f32 #s(approx (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) (fma.f32 (*.f32 (*.f32 (*.f32 tau (PI.f32)) tau) #s(literal 1/6 binary32)) x (/.f32 (/.f32 #s(literal -1 binary32) (PI.f32)) x))) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
cost-diff0
(*.f32 (PI.f32) (PI.f32))
cost-diff0
(*.f32 (*.f32 (PI.f32) (PI.f32)) tau)
cost-diff0
#s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau))
cost-diff0
(/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
cost-diff0
(sin.f32 (*.f32 x (PI.f32)))
cost-diff0
(/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32)))
cost-diff0
(*.f32 (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))) (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)))
cost-diff0
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))) (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau))) (*.f32 (*.f32 x (PI.f32)) tau))
Iterations

Useful iterations: 2 (0.0ms)

IterNodesCost
059465
0103459
1218455
2595451
32886451
45884451
08370451
Stop Event
iter limit
node limit
iter limit
Calls
Call 1
Inputs
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))) (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau))) (*.f32 (*.f32 x (PI.f32)) tau))
(*.f32 (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))) (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)))
(/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32)))
(sin.f32 (*.f32 x (PI.f32)))
(*.f32 x (PI.f32))
x
(PI.f32)
(sin.f32 (*.f32 (*.f32 x (PI.f32)) tau))
(*.f32 (*.f32 x (PI.f32)) tau)
tau
(/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
#s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau))
(*.f32 (*.f32 (PI.f32) (PI.f32)) tau)
(*.f32 (PI.f32) (PI.f32))
(PI.f32)
tau
(*.f32 (PI.f32) (*.f32 tau (PI.f32)))
(*.f32 tau (PI.f32))
(*.f32 #s(approx (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) (fma.f32 (*.f32 (*.f32 (*.f32 tau (PI.f32)) tau) #s(literal 1/6 binary32)) x (/.f32 (/.f32 #s(literal -1 binary32) (PI.f32)) x))) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
#s(approx (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) (fma.f32 (*.f32 (*.f32 (*.f32 tau (PI.f32)) tau) #s(literal 1/6 binary32)) x (/.f32 (/.f32 #s(literal -1 binary32) (PI.f32)) x)))
(fma.f32 (*.f32 (*.f32 (*.f32 tau (PI.f32)) tau) #s(literal 1/6 binary32)) x (/.f32 (/.f32 #s(literal -1 binary32) (PI.f32)) x))
(*.f32 (*.f32 (*.f32 tau (PI.f32)) tau) #s(literal 1/6 binary32))
(*.f32 (*.f32 tau (PI.f32)) tau)
(*.f32 tau (PI.f32))
tau
(PI.f32)
#s(literal 1/6 binary32)
x
(/.f32 (/.f32 #s(literal -1 binary32) (PI.f32)) x)
(/.f32 #s(literal -1 binary32) (PI.f32))
#s(literal -1 binary32)
(neg.f32 (sin.f32 (*.f32 (PI.f32) x)))
(sin.f32 (*.f32 (PI.f32) x))
(*.f32 (PI.f32) x)
(*.f32 (neg.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) (/.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (*.f32 (*.f32 (PI.f32) (*.f32 (PI.f32) x)) (neg.f32 tau))))
(neg.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))))
(sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))
(*.f32 tau (*.f32 (PI.f32) x))
tau
(*.f32 (PI.f32) x)
(PI.f32)
x
(/.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (*.f32 (*.f32 (PI.f32) (*.f32 (PI.f32) x)) (neg.f32 tau)))
(/.f32 (sin.f32 (*.f32 (PI.f32) x)) x)
(sin.f32 (*.f32 (PI.f32) x))
(*.f32 (*.f32 (PI.f32) (*.f32 (PI.f32) x)) (neg.f32 tau))
(*.f32 (PI.f32) (*.f32 (PI.f32) x))
(neg.f32 tau)
(*.f32 (/.f32 (/.f32 #s(literal 1 binary32) (/.f32 x (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (PI.f32) tau)))) (*.f32 (neg.f32 (PI.f32)) x)) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
(/.f32 (/.f32 #s(literal 1 binary32) (/.f32 x (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (PI.f32) tau)))) (*.f32 (neg.f32 (PI.f32)) x))
(/.f32 #s(literal 1 binary32) (/.f32 x (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (PI.f32) tau))))
#s(literal 1 binary32)
(/.f32 x (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (PI.f32) tau)))
x
(/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (PI.f32) tau))
(sin.f32 (*.f32 (*.f32 x (PI.f32)) tau))
(*.f32 (*.f32 x (PI.f32)) tau)
(*.f32 x (PI.f32))
(PI.f32)
tau
(*.f32 (PI.f32) tau)
(*.f32 (neg.f32 (PI.f32)) x)
(neg.f32 (PI.f32))
(neg.f32 (sin.f32 (*.f32 (PI.f32) x)))
(sin.f32 (*.f32 (PI.f32) x))
(*.f32 (PI.f32) x)
Outputs
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))) (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau))) (*.f32 (*.f32 x (PI.f32)) tau))
(*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 tau x)) (/.f32 (sin.f32 (*.f32 (*.f32 (PI.f32) x) tau)) (*.f32 (*.f32 (PI.f32) x) (PI.f32))))
(*.f32 (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))) (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)))
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 (PI.f32) x) tau)) (*.f32 (PI.f32) x)) (sin.f32 (*.f32 (PI.f32) x)))
(/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32)))
(/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x))
(sin.f32 (*.f32 x (PI.f32)))
(sin.f32 (*.f32 (PI.f32) x))
(*.f32 x (PI.f32))
(*.f32 (PI.f32) x)
x
(PI.f32)
(sin.f32 (*.f32 (*.f32 x (PI.f32)) tau))
(sin.f32 (*.f32 (*.f32 (PI.f32) x) tau))
(*.f32 (*.f32 x (PI.f32)) tau)
(*.f32 (*.f32 (PI.f32) x) tau)
tau
(/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
(/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32))) (*.f32 (*.f32 tau (PI.f32)) (PI.f32)))
#s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau))
#s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 tau (PI.f32)) (PI.f32)))
(*.f32 (*.f32 (PI.f32) (PI.f32)) tau)
(*.f32 (*.f32 tau (PI.f32)) (PI.f32))
(*.f32 (PI.f32) (PI.f32))
(PI.f32)
tau
(*.f32 (PI.f32) (*.f32 tau (PI.f32)))
(*.f32 (*.f32 tau (PI.f32)) (PI.f32))
(*.f32 tau (PI.f32))
(*.f32 #s(approx (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) (fma.f32 (*.f32 (*.f32 (*.f32 tau (PI.f32)) tau) #s(literal 1/6 binary32)) x (/.f32 (/.f32 #s(literal -1 binary32) (PI.f32)) x))) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
(*.f32 (neg.f32 (sin.f32 (*.f32 (PI.f32) x))) #s(approx (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) (fma.f32 (*.f32 (*.f32 #s(literal 1/6 binary32) x) (PI.f32)) (*.f32 tau tau) (/.f32 (/.f32 #s(literal -1 binary32) (PI.f32)) x))))
#s(approx (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) (fma.f32 (*.f32 (*.f32 (*.f32 tau (PI.f32)) tau) #s(literal 1/6 binary32)) x (/.f32 (/.f32 #s(literal -1 binary32) (PI.f32)) x)))
#s(approx (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) (fma.f32 (*.f32 (*.f32 #s(literal 1/6 binary32) x) (PI.f32)) (*.f32 tau tau) (/.f32 (/.f32 #s(literal -1 binary32) (PI.f32)) x)))
(fma.f32 (*.f32 (*.f32 (*.f32 tau (PI.f32)) tau) #s(literal 1/6 binary32)) x (/.f32 (/.f32 #s(literal -1 binary32) (PI.f32)) x))
(fma.f32 (*.f32 (*.f32 #s(literal 1/6 binary32) x) (PI.f32)) (*.f32 tau tau) (/.f32 (/.f32 #s(literal -1 binary32) (PI.f32)) x))
(*.f32 (*.f32 (*.f32 tau (PI.f32)) tau) #s(literal 1/6 binary32))
(*.f32 #s(literal 1/6 binary32) (*.f32 (*.f32 tau (PI.f32)) tau))
(*.f32 (*.f32 tau (PI.f32)) tau)
(*.f32 tau (PI.f32))
tau
(PI.f32)
#s(literal 1/6 binary32)
x
(/.f32 (/.f32 #s(literal -1 binary32) (PI.f32)) x)
(/.f32 #s(literal -1 binary32) (PI.f32))
#s(literal -1 binary32)
(neg.f32 (sin.f32 (*.f32 (PI.f32) x)))
(sin.f32 (*.f32 (PI.f32) x))
(*.f32 (PI.f32) x)
(*.f32 (neg.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) (/.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (*.f32 (*.f32 (PI.f32) (*.f32 (PI.f32) x)) (neg.f32 tau))))
(*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 tau x)) (/.f32 (sin.f32 (*.f32 (*.f32 (PI.f32) x) tau)) (*.f32 (*.f32 (PI.f32) x) (PI.f32))))
(neg.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))))
(neg.f32 (sin.f32 (*.f32 (*.f32 (PI.f32) x) tau)))
(sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))
(sin.f32 (*.f32 (*.f32 (PI.f32) x) tau))
(*.f32 tau (*.f32 (PI.f32) x))
(*.f32 (*.f32 (PI.f32) x) tau)
tau
(*.f32 (PI.f32) x)
(PI.f32)
x
(/.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (*.f32 (*.f32 (PI.f32) (*.f32 (PI.f32) x)) (neg.f32 tau)))
(/.f32 (/.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (neg.f32 (PI.f32))) (*.f32 x x)) (*.f32 tau (PI.f32)))
(/.f32 (sin.f32 (*.f32 (PI.f32) x)) x)
(sin.f32 (*.f32 (PI.f32) x))
(*.f32 (*.f32 (PI.f32) (*.f32 (PI.f32) x)) (neg.f32 tau))
(*.f32 (*.f32 (neg.f32 (PI.f32)) (PI.f32)) (*.f32 tau x))
(*.f32 (PI.f32) (*.f32 (PI.f32) x))
(*.f32 (*.f32 (PI.f32) x) (PI.f32))
(neg.f32 tau)
(*.f32 (/.f32 (/.f32 #s(literal 1 binary32) (/.f32 x (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (PI.f32) tau)))) (*.f32 (neg.f32 (PI.f32)) x)) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
(*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 tau x)) (/.f32 (sin.f32 (*.f32 (*.f32 (PI.f32) x) tau)) (*.f32 (*.f32 (PI.f32) x) (PI.f32))))
(/.f32 (/.f32 #s(literal 1 binary32) (/.f32 x (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (PI.f32) tau)))) (*.f32 (neg.f32 (PI.f32)) x))
(/.f32 (/.f32 (sin.f32 (*.f32 (*.f32 (PI.f32) x) tau)) (*.f32 tau (PI.f32))) (*.f32 (*.f32 (neg.f32 (PI.f32)) x) x))
(/.f32 #s(literal 1 binary32) (/.f32 x (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (PI.f32) tau))))
(/.f32 (/.f32 (sin.f32 (*.f32 (*.f32 (PI.f32) x) tau)) (*.f32 tau x)) (PI.f32))
#s(literal 1 binary32)
(/.f32 x (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (PI.f32) tau)))
(/.f32 (*.f32 (*.f32 (PI.f32) x) tau) (sin.f32 (*.f32 (*.f32 (PI.f32) x) tau)))
x
(/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (PI.f32) tau))
(/.f32 (sin.f32 (*.f32 (*.f32 (PI.f32) x) tau)) (*.f32 tau (PI.f32)))
(sin.f32 (*.f32 (*.f32 x (PI.f32)) tau))
(sin.f32 (*.f32 (*.f32 (PI.f32) x) tau))
(*.f32 (*.f32 x (PI.f32)) tau)
(*.f32 (*.f32 (PI.f32) x) tau)
(*.f32 x (PI.f32))
(*.f32 (PI.f32) x)
(PI.f32)
tau
(*.f32 (PI.f32) tau)
(*.f32 tau (PI.f32))
(*.f32 (neg.f32 (PI.f32)) x)
(neg.f32 (PI.f32))
(neg.f32 (sin.f32 (*.f32 (PI.f32) x)))
(sin.f32 (*.f32 (PI.f32) x))
(*.f32 (PI.f32) x)

localize138.0ms (1.4%)

Memory
0.1MiB live, 318.6MiB allocated
Localize:

Found 20 expressions of interest:

NewMetricScoreProgram
accuracy0.34375
(*.f32 (PI.f32) tau)
accuracy0.37521767039534126
(sin.f32 (*.f32 (*.f32 x (PI.f32)) tau))
accuracy0.421875
(/.f32 #s(literal 1 binary32) (/.f32 x (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (PI.f32) tau))))
accuracy0.4388275390737681
(*.f32 (/.f32 (/.f32 #s(literal 1 binary32) (/.f32 x (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (PI.f32) tau)))) (*.f32 (neg.f32 (PI.f32)) x)) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
accuracy0.3203125
(/.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (*.f32 (*.f32 (PI.f32) (*.f32 (PI.f32) x)) (neg.f32 tau)))
accuracy0.37521767039534126
(sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))
accuracy0.390625
(*.f32 (PI.f32) (*.f32 (PI.f32) x))
accuracy0.43197250976844204
(*.f32 (neg.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) (/.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (*.f32 (*.f32 (PI.f32) (*.f32 (PI.f32) x)) (neg.f32 tau))))
accuracy0.4388275390737681
(*.f32 #s(approx (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) (fma.f32 (*.f32 (*.f32 (*.f32 tau (PI.f32)) tau) #s(literal 1/6 binary32)) x (/.f32 (/.f32 #s(literal -1 binary32) (PI.f32)) x))) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
accuracy0.4921875
(/.f32 (/.f32 #s(literal -1 binary32) (PI.f32)) x)
accuracy6.547856372887413
#s(approx (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) (fma.f32 (*.f32 (*.f32 (*.f32 tau (PI.f32)) tau) #s(literal 1/6 binary32)) x (/.f32 (/.f32 #s(literal -1 binary32) (PI.f32)) x)))
accuracy16.902390283840074
(fma.f32 (*.f32 (*.f32 (*.f32 tau (PI.f32)) tau) #s(literal 1/6 binary32)) x (/.f32 (/.f32 #s(literal -1 binary32) (PI.f32)) x))
accuracy0.38671875
(*.f32 (PI.f32) (*.f32 tau (PI.f32)))
accuracy0.4114837890737681
(/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
accuracy1.0
(*.f32 (PI.f32) (PI.f32))
accuracy11.585818826992083
#s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau))
accuracy0.3046875
(*.f32 x (PI.f32))
accuracy0.3584175293053261
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))) (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau))) (*.f32 (*.f32 x (PI.f32)) tau))
accuracy0.360038769536884
(/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32)))
accuracy0.37521767039534126
(sin.f32 (*.f32 (*.f32 x (PI.f32)) tau))
Samples
95.0ms256×0valid
Compiler

Compiled 823 to 97 computations (88.2% saved)

Precisions
Click to see histograms. Total time spent on operations: 75.0ms
ival-mult: 30.0ms (40.1% of total)
ival-div: 21.0ms (28.1% of total)
ival-sin: 7.0ms (9.4% of total)
ival-sinu: 5.0ms (6.7% of total)
const: 4.0ms (5.3% of total)
ival-neg: 4.0ms (5.3% of total)
ival-pi: 2.0ms (2.7% of total)
ival-add: 2.0ms (2.7% of total)
ival-assert: 0.0ms (0% of total)
ival-true: 0.0ms (0% of total)
exact: 0.0ms (0% of total)

series128.0ms (1.3%)

Memory
-31.9MiB live, 183.0MiB allocated
Counts
27 → 516
Calls
Call 1
Inputs
#s(alt (/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))) (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau))) (*.f32 (*.f32 x (PI.f32)) tau)) (patch (/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))) (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau))) (*.f32 (*.f32 x (PI.f32)) tau)) #<representation binary32>) () ())
#s(alt (*.f32 (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))) (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau))) (patch (*.f32 (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))) (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau))) #<representation binary32>) () ())
#s(alt (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))) (patch (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))) #<representation binary32>) () ())
#s(alt (sin.f32 (*.f32 x (PI.f32))) (patch (sin.f32 (*.f32 x (PI.f32))) #<representation binary32>) () ())
#s(alt (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (*.f32 (PI.f32) (*.f32 tau (PI.f32)))) (patch (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (*.f32 (PI.f32) (*.f32 tau (PI.f32)))) #<representation binary32>) () ())
#s(alt #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (patch #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) #<representation binary32>) () ())
#s(alt (*.f32 (*.f32 (PI.f32) (PI.f32)) tau) (patch (*.f32 (*.f32 (PI.f32) (PI.f32)) tau) #<representation binary32>) () ())
#s(alt (*.f32 (PI.f32) (PI.f32)) (patch (*.f32 (PI.f32) (PI.f32)) #<representation binary32>) () ())
#s(alt (*.f32 #s(approx (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) (fma.f32 (*.f32 (*.f32 (*.f32 tau (PI.f32)) tau) #s(literal 1/6 binary32)) x (/.f32 (/.f32 #s(literal -1 binary32) (PI.f32)) x))) (neg.f32 (sin.f32 (*.f32 (PI.f32) x)))) (patch (*.f32 #s(approx (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) (fma.f32 (*.f32 (*.f32 (*.f32 tau (PI.f32)) tau) #s(literal 1/6 binary32)) x (/.f32 (/.f32 #s(literal -1 binary32) (PI.f32)) x))) (neg.f32 (sin.f32 (*.f32 (PI.f32) x)))) #<representation binary32>) () ())
#s(alt #s(approx (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) (fma.f32 (*.f32 (*.f32 (*.f32 tau (PI.f32)) tau) #s(literal 1/6 binary32)) x (/.f32 (/.f32 #s(literal -1 binary32) (PI.f32)) x))) (patch #s(approx (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) (fma.f32 (*.f32 (*.f32 (*.f32 tau (PI.f32)) tau) #s(literal 1/6 binary32)) x (/.f32 (/.f32 #s(literal -1 binary32) (PI.f32)) x))) #<representation binary32>) () ())
#s(alt (fma.f32 (*.f32 (*.f32 (*.f32 tau (PI.f32)) tau) #s(literal 1/6 binary32)) x (/.f32 (/.f32 #s(literal -1 binary32) (PI.f32)) x)) (patch (fma.f32 (*.f32 (*.f32 (*.f32 tau (PI.f32)) tau) #s(literal 1/6 binary32)) x (/.f32 (/.f32 #s(literal -1 binary32) (PI.f32)) x)) #<representation binary32>) () ())
#s(alt (*.f32 (*.f32 (*.f32 tau (PI.f32)) tau) #s(literal 1/6 binary32)) (patch (*.f32 (*.f32 (*.f32 tau (PI.f32)) tau) #s(literal 1/6 binary32)) #<representation binary32>) () ())
#s(alt (*.f32 (neg.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) (/.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (*.f32 (*.f32 (PI.f32) (*.f32 (PI.f32) x)) (neg.f32 tau)))) (patch (*.f32 (neg.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) (/.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (*.f32 (*.f32 (PI.f32) (*.f32 (PI.f32) x)) (neg.f32 tau)))) #<representation binary32>) () ())
#s(alt (neg.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) (patch (neg.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) #<representation binary32>) () ())
#s(alt (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (patch (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) #<representation binary32>) () ())
#s(alt (*.f32 tau (*.f32 (PI.f32) x)) (patch (*.f32 tau (*.f32 (PI.f32) x)) #<representation binary32>) () ())
#s(alt (/.f32 (/.f32 #s(literal 1 binary32) (/.f32 x (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (PI.f32) tau)))) (*.f32 (neg.f32 (PI.f32)) x)) (patch (/.f32 (/.f32 #s(literal 1 binary32) (/.f32 x (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (PI.f32) tau)))) (*.f32 (neg.f32 (PI.f32)) x)) #<representation binary32>) () ())
#s(alt (/.f32 x (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (PI.f32) tau))) (patch (/.f32 x (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (PI.f32) tau))) #<representation binary32>) () ())
#s(alt (/.f32 #s(literal 1 binary32) (/.f32 x (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (PI.f32) tau)))) (patch (/.f32 #s(literal 1 binary32) (/.f32 x (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (PI.f32) tau)))) #<representation binary32>) () ())
#s(alt (*.f32 (/.f32 (/.f32 #s(literal 1 binary32) (/.f32 x (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (PI.f32) tau)))) (*.f32 (neg.f32 (PI.f32)) x)) (neg.f32 (sin.f32 (*.f32 (PI.f32) x)))) (patch (*.f32 (/.f32 (/.f32 #s(literal 1 binary32) (/.f32 x (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (PI.f32) tau)))) (*.f32 (neg.f32 (PI.f32)) x)) (neg.f32 (sin.f32 (*.f32 (PI.f32) x)))) #<representation binary32>) () ())
#s(alt (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (patch (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) #<representation binary32>) () ())
#s(alt (*.f32 x (PI.f32)) (patch (*.f32 x (PI.f32)) #<representation binary32>) () ())
#s(alt (*.f32 (PI.f32) (*.f32 tau (PI.f32))) (patch (*.f32 (PI.f32) (*.f32 tau (PI.f32))) #<representation binary32>) () ())
#s(alt (/.f32 (/.f32 #s(literal -1 binary32) (PI.f32)) x) (patch (/.f32 (/.f32 #s(literal -1 binary32) (PI.f32)) x) #<representation binary32>) () ())
#s(alt (*.f32 (PI.f32) (*.f32 (PI.f32) x)) (patch (*.f32 (PI.f32) (*.f32 (PI.f32) x)) #<representation binary32>) () ())
#s(alt (/.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (*.f32 (*.f32 (PI.f32) (*.f32 (PI.f32) x)) (neg.f32 tau))) (patch (/.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (*.f32 (*.f32 (PI.f32) (*.f32 (PI.f32) x)) (neg.f32 tau))) #<representation binary32>) () ())
#s(alt (*.f32 (PI.f32) tau) (patch (*.f32 (PI.f32) tau) #<representation binary32>) () ())
Outputs
#s(alt (/ (sin (* x (PI))) (* x (PI))) (taylor 0 tau) (#s(alt (/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))) (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau))) (*.f32 (*.f32 x (PI.f32)) tau)) (patch (/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))) (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau))) (*.f32 (*.f32 x (PI.f32)) tau)) #<representation binary32>) () ())) ())
#s(alt (+ (* -1/6 (* (pow tau 2) (* x (* (PI) (sin (* x (PI))))))) (/ (sin (* x (PI))) (* x (PI)))) (taylor 0 tau) (#s(alt (/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))) (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau))) (*.f32 (*.f32 x (PI.f32)) tau)) (patch (/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))) (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau))) (*.f32 (*.f32 x (PI.f32)) tau)) #<representation binary32>) () ())) ())
#s(alt (+ (* (pow tau 2) (+ (* -1/6 (* x (* (PI) (sin (* x (PI)))))) (* 1/120 (* (pow tau 2) (* (pow x 3) (* (pow (PI) 3) (sin (* x (PI))))))))) (/ (sin (* x (PI))) (* x (PI)))) (taylor 0 tau) (#s(alt (/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))) (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau))) (*.f32 (*.f32 x (PI.f32)) tau)) (patch (/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))) (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau))) (*.f32 (*.f32 x (PI.f32)) tau)) #<representation binary32>) () ())) ())
#s(alt (+ (* (pow tau 2) (+ (* -1/6 (* x (* (PI) (sin (* x (PI)))))) (* (pow tau 2) (+ (* -1/5040 (* (pow tau 2) (* (pow x 5) (* (pow (PI) 5) (sin (* x (PI))))))) (* 1/120 (* (pow x 3) (* (pow (PI) 3) (sin (* x (PI)))))))))) (/ (sin (* x (PI))) (* x (PI)))) (taylor 0 tau) (#s(alt (/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))) (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau))) (*.f32 (*.f32 x (PI.f32)) tau)) (patch (/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))) (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau))) (*.f32 (*.f32 x (PI.f32)) tau)) #<representation binary32>) () ())) ())
#s(alt (* tau (sin (* x (PI)))) (taylor 0 tau) (#s(alt (*.f32 (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))) (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau))) (patch (*.f32 (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))) (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau))) #<representation binary32>) () ())) ())
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Calls

6 calls:

TimeVariablePointExpression
13.0ms
tau
@-inf
((/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (/ (sin (* x (PI))) (* x (PI))) (sin (* x (PI))) (/ (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (* (PI) (* tau (PI)))) (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (* (* (PI) (PI)) tau) (* (PI) (PI)) (* (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) (neg (sin (* (PI) x)))) (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) (+ (* (* (* (* tau (PI)) tau) 1/6) x) (/ (/ -1 (PI)) x)) (* (* (* tau (PI)) tau) 1/6) (* (neg (sin (* tau (* (PI) x)))) (/ (/ (sin (* (PI) x)) x) (* (* (PI) (* (PI) x)) (neg tau)))) (neg (sin (* tau (* (PI) x)))) (sin (* tau (* (PI) x))) (* tau (* (PI) x)) (/ (/ 1 (/ x (/ (sin (* (* x (PI)) tau)) (* (PI) tau)))) (* (neg (PI)) x)) (/ x (/ (sin (* (* x (PI)) tau)) (* (PI) tau))) (/ 1 (/ x (/ (sin (* (* x (PI)) tau)) (* (PI) tau)))) (* (/ (/ 1 (/ x (/ (sin (* (* x (PI)) tau)) (* (PI) tau)))) (* (neg (PI)) x)) (neg (sin (* (PI) x)))) (sin (* (* x (PI)) tau)) (* x (PI)) (* (PI) (* tau (PI))) (/ (/ -1 (PI)) x) (* (PI) (* (PI) x)) (/ (/ (sin (* (PI) x)) x) (* (* (PI) (* (PI) x)) (neg tau))) (* (PI) tau))
9.0ms
tau
@0
((/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (/ (sin (* x (PI))) (* x (PI))) (sin (* x (PI))) (/ (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (* (PI) (* tau (PI)))) (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (* (* (PI) (PI)) tau) (* (PI) (PI)) (* (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) (neg (sin (* (PI) x)))) (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) (+ (* (* (* (* tau (PI)) tau) 1/6) x) (/ (/ -1 (PI)) x)) (* (* (* tau (PI)) tau) 1/6) (* (neg (sin (* tau (* (PI) x)))) (/ (/ (sin (* (PI) x)) x) (* (* (PI) (* (PI) x)) (neg tau)))) (neg (sin (* tau (* (PI) x)))) (sin (* tau (* (PI) x))) (* tau (* (PI) x)) (/ (/ 1 (/ x (/ (sin (* (* x (PI)) tau)) (* (PI) tau)))) (* (neg (PI)) x)) (/ x (/ (sin (* (* x (PI)) tau)) (* (PI) tau))) (/ 1 (/ x (/ (sin (* (* x (PI)) tau)) (* (PI) tau)))) (* (/ (/ 1 (/ x (/ (sin (* (* x (PI)) tau)) (* (PI) tau)))) (* (neg (PI)) x)) (neg (sin (* (PI) x)))) (sin (* (* x (PI)) tau)) (* x (PI)) (* (PI) (* tau (PI))) (/ (/ -1 (PI)) x) (* (PI) (* (PI) x)) (/ (/ (sin (* (PI) x)) x) (* (* (PI) (* (PI) x)) (neg tau))) (* (PI) tau))
7.0ms
x
@inf
((/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (/ (sin (* x (PI))) (* x (PI))) (sin (* x (PI))) (/ (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (* (PI) (* tau (PI)))) (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (* (* (PI) (PI)) tau) (* (PI) (PI)) (* (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) (neg (sin (* (PI) x)))) (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) (+ (* (* (* (* tau (PI)) tau) 1/6) x) (/ (/ -1 (PI)) x)) (* (* (* tau (PI)) tau) 1/6) (* (neg (sin (* tau (* (PI) x)))) (/ (/ (sin (* (PI) x)) x) (* (* (PI) (* (PI) x)) (neg tau)))) (neg (sin (* tau (* (PI) x)))) (sin (* tau (* (PI) x))) (* tau (* (PI) x)) (/ (/ 1 (/ x (/ (sin (* (* x (PI)) tau)) (* (PI) tau)))) (* (neg (PI)) x)) (/ x (/ (sin (* (* x (PI)) tau)) (* (PI) tau))) (/ 1 (/ x (/ (sin (* (* x (PI)) tau)) (* (PI) tau)))) (* (/ (/ 1 (/ x (/ (sin (* (* x (PI)) tau)) (* (PI) tau)))) (* (neg (PI)) x)) (neg (sin (* (PI) x)))) (sin (* (* x (PI)) tau)) (* x (PI)) (* (PI) (* tau (PI))) (/ (/ -1 (PI)) x) (* (PI) (* (PI) x)) (/ (/ (sin (* (PI) x)) x) (* (* (PI) (* (PI) x)) (neg tau))) (* (PI) tau))
7.0ms
x
@-inf
((/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (/ (sin (* x (PI))) (* x (PI))) (sin (* x (PI))) (/ (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (* (PI) (* tau (PI)))) (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (* (* (PI) (PI)) tau) (* (PI) (PI)) (* (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) (neg (sin (* (PI) x)))) (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) (+ (* (* (* (* tau (PI)) tau) 1/6) x) (/ (/ -1 (PI)) x)) (* (* (* tau (PI)) tau) 1/6) (* (neg (sin (* tau (* (PI) x)))) (/ (/ (sin (* (PI) x)) x) (* (* (PI) (* (PI) x)) (neg tau)))) (neg (sin (* tau (* (PI) x)))) (sin (* tau (* (PI) x))) (* tau (* (PI) x)) (/ (/ 1 (/ x (/ (sin (* (* x (PI)) tau)) (* (PI) tau)))) (* (neg (PI)) x)) (/ x (/ (sin (* (* x (PI)) tau)) (* (PI) tau))) (/ 1 (/ x (/ (sin (* (* x (PI)) tau)) (* (PI) tau)))) (* (/ (/ 1 (/ x (/ (sin (* (* x (PI)) tau)) (* (PI) tau)))) (* (neg (PI)) x)) (neg (sin (* (PI) x)))) (sin (* (* x (PI)) tau)) (* x (PI)) (* (PI) (* tau (PI))) (/ (/ -1 (PI)) x) (* (PI) (* (PI) x)) (/ (/ (sin (* (PI) x)) x) (* (* (PI) (* (PI) x)) (neg tau))) (* (PI) tau))
6.0ms
tau
@inf
((/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (/ (sin (* x (PI))) (* x (PI))) (sin (* x (PI))) (/ (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (* (PI) (* tau (PI)))) (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (* (* (PI) (PI)) tau) (* (PI) (PI)) (* (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) (neg (sin (* (PI) x)))) (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) (+ (* (* (* (* tau (PI)) tau) 1/6) x) (/ (/ -1 (PI)) x)) (* (* (* tau (PI)) tau) 1/6) (* (neg (sin (* tau (* (PI) x)))) (/ (/ (sin (* (PI) x)) x) (* (* (PI) (* (PI) x)) (neg tau)))) (neg (sin (* tau (* (PI) x)))) (sin (* tau (* (PI) x))) (* tau (* (PI) x)) (/ (/ 1 (/ x (/ (sin (* (* x (PI)) tau)) (* (PI) tau)))) (* (neg (PI)) x)) (/ x (/ (sin (* (* x (PI)) tau)) (* (PI) tau))) (/ 1 (/ x (/ (sin (* (* x (PI)) tau)) (* (PI) tau)))) (* (/ (/ 1 (/ x (/ (sin (* (* x (PI)) tau)) (* (PI) tau)))) (* (neg (PI)) x)) (neg (sin (* (PI) x)))) (sin (* (* x (PI)) tau)) (* x (PI)) (* (PI) (* tau (PI))) (/ (/ -1 (PI)) x) (* (PI) (* (PI) x)) (/ (/ (sin (* (PI) x)) x) (* (* (PI) (* (PI) x)) (neg tau))) (* (PI) tau))

simplify266.0ms (2.6%)

Memory
1.1MiB live, 231.1MiB allocated
Algorithm
egg-herbie
Iterations

Useful iterations: 0 (0.0ms)

IterNodesCost
05138421
117258243
254028132
080027881
Stop Event
iter limit
node limit
Counts
516 → 516
Calls
Call 1
Inputs
(/ (sin (* x (PI))) (* x (PI)))
(+ (* -1/6 (* (pow tau 2) (* x (* (PI) (sin (* x (PI))))))) (/ (sin (* x (PI))) (* x (PI))))
(+ (* (pow tau 2) (+ (* -1/6 (* x (* (PI) (sin (* x (PI)))))) (* 1/120 (* (pow tau 2) (* (pow x 3) (* (pow (PI) 3) (sin (* x (PI))))))))) (/ (sin (* x (PI))) (* x (PI))))
(+ (* (pow tau 2) (+ (* -1/6 (* x (* (PI) (sin (* x (PI)))))) (* (pow tau 2) (+ (* -1/5040 (* (pow tau 2) (* (pow x 5) (* (pow (PI) 5) (sin (* x (PI))))))) (* 1/120 (* (pow x 3) (* (pow (PI) 3) (sin (* x (PI)))))))))) (/ (sin (* x (PI))) (* x (PI))))
(* tau (sin (* x (PI))))
(* tau (+ (sin (* x (PI))) (* -1/6 (* (pow tau 2) (* (pow x 2) (* (pow (PI) 2) (sin (* x (PI)))))))))
(* tau (+ (sin (* x (PI))) (* (pow tau 2) (+ (* -1/6 (* (pow x 2) (* (pow (PI) 2) (sin (* x (PI)))))) (* 1/120 (* (pow tau 2) (* (pow x 4) (* (pow (PI) 4) (sin (* x (PI)))))))))))
(* tau (+ (sin (* x (PI))) (* (pow tau 2) (+ (* -1/6 (* (pow x 2) (* (pow (PI) 2) (sin (* x (PI)))))) (* (pow tau 2) (+ (* -1/5040 (* (pow tau 2) (* (pow x 6) (* (pow (PI) 6) (sin (* x (PI))))))) (* 1/120 (* (pow x 4) (* (pow (PI) 4) (sin (* x (PI))))))))))))
(/ (sin (* x (PI))) (* x (PI)))
(+ (* -1/6 (* (pow tau 2) (* x (* (PI) (sin (* x (PI))))))) (/ (sin (* x (PI))) (* x (PI))))
(+ (* (pow tau 2) (+ (* -1/6 (* x (* (PI) (sin (* x (PI)))))) (* 1/120 (* (pow tau 2) (* (pow x 3) (* (pow (PI) 3) (sin (* x (PI))))))))) (/ (sin (* x (PI))) (* x (PI))))
(+ (* (pow tau 2) (+ (* -1/6 (* x (* (PI) (sin (* x (PI)))))) (* (pow tau 2) (+ (* -1/5040 (* (pow tau 2) (* (pow x 5) (* (pow (PI) 5) (sin (* x (PI))))))) (* 1/120 (* (pow x 3) (* (pow (PI) 3) (sin (* x (PI)))))))))) (/ (sin (* x (PI))) (* x (PI))))
(/ (* tau (* (PI) (sin (* x (PI))))) x)
(* tau (+ (* -1/6 (* (pow tau 2) (* x (* (pow (PI) 3) (sin (* x (PI))))))) (/ (* (PI) (sin (* x (PI)))) x)))
(* tau (+ (* (pow tau 2) (+ (* -1/6 (* x (* (pow (PI) 3) (sin (* x (PI)))))) (* 1/120 (* (pow tau 2) (* (pow x 3) (* (pow (PI) 5) (sin (* x (PI))))))))) (/ (* (PI) (sin (* x (PI)))) x)))
(* tau (+ (* (pow tau 2) (+ (* -1/6 (* x (* (pow (PI) 3) (sin (* x (PI)))))) (* (pow tau 2) (+ (* -1/5040 (* (pow tau 2) (* (pow x 5) (* (pow (PI) 7) (sin (* x (PI))))))) (* 1/120 (* (pow x 3) (* (pow (PI) 5) (sin (* x (PI)))))))))) (/ (* (PI) (sin (* x (PI)))) x)))
(* tau (pow (PI) 2))
(* tau (pow (PI) 2))
(* tau (pow (PI) 2))
(* tau (pow (PI) 2))
(/ (sin (* x (PI))) (* x (PI)))
(+ (* -1/6 (* (pow tau 2) (* x (* (PI) (sin (* x (PI))))))) (/ (sin (* x (PI))) (* x (PI))))
(+ (* (pow tau 2) (+ (* -1/6 (* x (* (PI) (sin (* x (PI)))))) (* 1/120 (* (pow tau 2) (* (pow x 3) (* (pow (PI) 3) (sin (* x (PI))))))))) (/ (sin (* x (PI))) (* x (PI))))
(+ (* (pow tau 2) (+ (* -1/6 (* x (* (PI) (sin (* x (PI)))))) (* (pow tau 2) (+ (* -1/5040 (* (pow tau 2) (* (pow x 5) (* (pow (PI) 5) (sin (* x (PI))))))) (* 1/120 (* (pow x 3) (* (pow (PI) 3) (sin (* x (PI)))))))))) (/ (sin (* x (PI))) (* x (PI))))
(/ -1 (* x (PI)))
(- (* 1/6 (* (pow tau 2) (* x (PI)))) (/ 1 (* x (PI))))
(- (* (pow tau 2) (+ (* -1/120 (* (pow tau 2) (* (pow x 3) (pow (PI) 3)))) (* 1/6 (* x (PI))))) (/ 1 (* x (PI))))
(- (* (pow tau 2) (+ (* 1/6 (* x (PI))) (* (pow tau 2) (+ (* -1/120 (* (pow x 3) (pow (PI) 3))) (* 1/5040 (* (pow tau 2) (* (pow x 5) (pow (PI) 5)))))))) (/ 1 (* x (PI))))
(/ -1 (* x (PI)))
(- (* 1/6 (* (pow tau 2) (* x (PI)))) (/ 1 (* x (PI))))
(- (* 1/6 (* (pow tau 2) (* x (PI)))) (/ 1 (* x (PI))))
(- (* 1/6 (* (pow tau 2) (* x (PI)))) (/ 1 (* x (PI))))
(* 1/6 (* (pow tau 2) (PI)))
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(* 1/6 (* (pow tau 2) (PI)))
(/ (sin (* x (PI))) (* x (PI)))
(+ (* -1/6 (* (pow tau 2) (* x (* (PI) (sin (* x (PI))))))) (/ (sin (* x (PI))) (* x (PI))))
(+ (* (pow tau 2) (+ (* -1/6 (* x (* (PI) (sin (* x (PI)))))) (* 1/120 (* (pow tau 2) (* (pow x 3) (* (pow (PI) 3) (sin (* x (PI))))))))) (/ (sin (* x (PI))) (* x (PI))))
(+ (* (pow tau 2) (+ (* -1/6 (* x (* (PI) (sin (* x (PI)))))) (* (pow tau 2) (+ (* -1/5040 (* (pow tau 2) (* (pow x 5) (* (pow (PI) 5) (sin (* x (PI))))))) (* 1/120 (* (pow x 3) (* (pow (PI) 3) (sin (* x (PI)))))))))) (/ (sin (* x (PI))) (* x (PI))))
(* -1 (* tau (* x (PI))))
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(* tau (- (* (pow tau 2) (- (* -1/120 (* (pow tau 2) (* (pow x 5) (pow (PI) 5)))) (* -1/6 (* (pow x 3) (pow (PI) 3))))) (* x (PI))))
(* tau (- (* (pow tau 2) (- (* (pow tau 2) (- (* 1/5040 (* (pow tau 2) (* (pow x 7) (pow (PI) 7)))) (* 1/120 (* (pow x 5) (pow (PI) 5))))) (* -1/6 (* (pow x 3) (pow (PI) 3))))) (* x (PI))))
(* tau (* x (PI)))
(* tau (+ (* -1/6 (* (pow tau 2) (* (pow x 3) (pow (PI) 3)))) (* x (PI))))
(* tau (+ (* x (PI)) (* (pow tau 2) (+ (* -1/6 (* (pow x 3) (pow (PI) 3))) (* 1/120 (* (pow tau 2) (* (pow x 5) (pow (PI) 5))))))))
(* tau (+ (* x (PI)) (* (pow tau 2) (+ (* -1/6 (* (pow x 3) (pow (PI) 3))) (* (pow tau 2) (+ (* -1/5040 (* (pow tau 2) (* (pow x 7) (pow (PI) 7)))) (* 1/120 (* (pow x 5) (pow (PI) 5)))))))))
(* tau (* x (PI)))
(* tau (* x (PI)))
(* tau (* x (PI)))
(* tau (* x (PI)))
(/ -1 (* x (PI)))
(- (* 1/6 (* (pow tau 2) (* x (PI)))) (/ 1 (* x (PI))))
(- (* (pow tau 2) (+ (* -1/120 (* (pow tau 2) (* (pow x 3) (pow (PI) 3)))) (* 1/6 (* x (PI))))) (/ 1 (* x (PI))))
(- (* (pow tau 2) (+ (* 1/6 (* x (PI))) (* (pow tau 2) (+ (* -1/120 (* (pow x 3) (pow (PI) 3))) (* 1/5040 (* (pow tau 2) (* (pow x 5) (pow (PI) 5)))))))) (/ 1 (* x (PI))))
1
(+ 1 (* 1/6 (* (pow tau 2) (* (pow x 2) (pow (PI) 2)))))
(+ 1 (* (pow tau 2) (- (* -1 (* (pow tau 2) (+ (* -1/36 (* (pow x 4) (pow (PI) 4))) (* 1/120 (* (pow x 4) (pow (PI) 4)))))) (* -1/6 (* (pow x 2) (pow (PI) 2))))))
(+ 1 (* (pow tau 2) (- (* (pow tau 2) (- (* -1 (* (pow tau 2) (+ (* -1/5040 (* (pow x 6) (pow (PI) 6))) (+ (* 1/720 (* (pow x 6) (pow (PI) 6))) (* 1/6 (* (pow x 2) (* (pow (PI) 2) (+ (* -1/36 (* (pow x 4) (pow (PI) 4))) (* 1/120 (* (pow x 4) (pow (PI) 4))))))))))) (+ (* -1/36 (* (pow x 4) (pow (PI) 4))) (* 1/120 (* (pow x 4) (pow (PI) 4)))))) (* -1/6 (* (pow x 2) (pow (PI) 2))))))
1
(+ 1 (* -1/6 (* (pow tau 2) (* (pow x 2) (pow (PI) 2)))))
(+ 1 (* (pow tau 2) (+ (* -1/6 (* (pow x 2) (pow (PI) 2))) (* 1/120 (* (pow tau 2) (* (pow x 4) (pow (PI) 4)))))))
(+ 1 (* (pow tau 2) (+ (* -1/6 (* (pow x 2) (pow (PI) 2))) (* (pow tau 2) (+ (* -1/5040 (* (pow tau 2) (* (pow x 6) (pow (PI) 6)))) (* 1/120 (* (pow x 4) (pow (PI) 4))))))))
(/ (sin (* x (PI))) (* x (PI)))
(+ (* -1/6 (* (pow tau 2) (* x (* (PI) (sin (* x (PI))))))) (/ (sin (* x (PI))) (* x (PI))))
(+ (* (pow tau 2) (+ (* -1/6 (* x (* (PI) (sin (* x (PI)))))) (* 1/120 (* (pow tau 2) (* (pow x 3) (* (pow (PI) 3) (sin (* x (PI))))))))) (/ (sin (* x (PI))) (* x (PI))))
(+ (* (pow tau 2) (+ (* -1/6 (* x (* (PI) (sin (* x (PI)))))) (* (pow tau 2) (+ (* -1/5040 (* (pow tau 2) (* (pow x 5) (* (pow (PI) 5) (sin (* x (PI))))))) (* 1/120 (* (pow x 3) (* (pow (PI) 3) (sin (* x (PI)))))))))) (/ (sin (* x (PI))) (* x (PI))))
(* tau (* x (PI)))
(* tau (+ (* -1/6 (* (pow tau 2) (* (pow x 3) (pow (PI) 3)))) (* x (PI))))
(* tau (+ (* x (PI)) (* (pow tau 2) (+ (* -1/6 (* (pow x 3) (pow (PI) 3))) (* 1/120 (* (pow tau 2) (* (pow x 5) (pow (PI) 5))))))))
(* tau (+ (* x (PI)) (* (pow tau 2) (+ (* -1/6 (* (pow x 3) (pow (PI) 3))) (* (pow tau 2) (+ (* -1/5040 (* (pow tau 2) (* (pow x 7) (pow (PI) 7)))) (* 1/120 (* (pow x 5) (pow (PI) 5)))))))))
(* tau (pow (PI) 2))
(* tau (pow (PI) 2))
(* tau (pow (PI) 2))
(* tau (pow (PI) 2))
(* -1 (/ (sin (* x (PI))) (* tau (* (pow x 2) (pow (PI) 2)))))
(* -1 (/ (sin (* x (PI))) (* tau (* (pow x 2) (pow (PI) 2)))))
(* -1 (/ (sin (* x (PI))) (* tau (* (pow x 2) (pow (PI) 2)))))
(* -1 (/ (sin (* x (PI))) (* tau (* (pow x 2) (pow (PI) 2)))))
(* tau (PI))
(* tau (PI))
(* tau (PI))
(* tau (PI))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* x (PI)))
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(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
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(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (pow x 2))
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(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
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(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
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(* (pow tau 2) (- (* 1/6 (* x (PI))) (/ 1 (* (pow tau 2) (* x (PI))))))
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(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(* -1 (sin (* tau (* x (PI)))))
(* -1 (sin (* tau (* x (PI)))))
(* -1 (sin (* tau (* x (PI)))))
(* -1 (sin (* tau (* x (PI)))))
(sin (* tau (* x (PI))))
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(sin (* tau (* x (PI))))
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(* tau (* x (PI)))
(* tau (* x (PI)))
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(* -1 (/ (sin (* tau (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2)))))
(* -1 (/ (sin (* tau (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2)))))
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(* -1 (/ (sin (* tau (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2)))))
(/ (* tau (* x (PI))) (sin (* tau (* x (PI)))))
(/ (* tau (* x (PI))) (sin (* tau (* x (PI)))))
(/ (* tau (* x (PI))) (sin (* tau (* x (PI)))))
(/ (* tau (* x (PI))) (sin (* tau (* x (PI)))))
(/ (sin (* tau (* x (PI)))) (* tau (* x (PI))))
(/ (sin (* tau (* x (PI)))) (* tau (* x (PI))))
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(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(sin (* tau (* x (PI))))
(sin (* tau (* x (PI))))
(sin (* tau (* x (PI))))
(sin (* tau (* x (PI))))
(* tau (pow (PI) 2))
(* tau (pow (PI) 2))
(* tau (pow (PI) 2))
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(* -1 (/ (sin (* x (PI))) (* tau (* (pow x 2) (pow (PI) 2)))))
(* -1 (/ (sin (* x (PI))) (* tau (* (pow x 2) (pow (PI) 2)))))
(* -1 (/ (sin (* x (PI))) (* tau (* (pow x 2) (pow (PI) 2)))))
(* -1 (/ (sin (* x (PI))) (* tau (* (pow x 2) (pow (PI) 2)))))
(* tau (PI))
(* tau (PI))
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(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* x (PI)))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* x (PI)))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* x (PI)))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* x (PI)))
(/ (sin (* x (PI))) (* x (PI)))
(/ (sin (* x (PI))) (* x (PI)))
(/ (sin (* x (PI))) (* x (PI)))
(/ (sin (* x (PI))) (* x (PI)))
(sin (* x (PI)))
(sin (* x (PI)))
(sin (* x (PI)))
(sin (* x (PI)))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (pow x 2))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (pow x 2))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (pow x 2))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (pow x 2))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(* -1 (/ (sin (* tau (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2)))))
(* -1 (/ (sin (* tau (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2)))))
(* -1 (/ (sin (* tau (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2)))))
(* -1 (/ (sin (* tau (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2)))))
(* 1/6 (* (pow tau 2) (* x (PI))))
(* -1 (* x (+ (* -1/6 (* (pow tau 2) (PI))) (/ 1 (* (pow x 2) (PI))))))
(* -1 (* x (+ (* -1/6 (* (pow tau 2) (PI))) (/ 1 (* (pow x 2) (PI))))))
(* -1 (* x (+ (* -1/6 (* (pow tau 2) (PI))) (/ 1 (* (pow x 2) (PI))))))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(* -1 (sin (* tau (* x (PI)))))
(* -1 (sin (* tau (* x (PI)))))
(* -1 (sin (* tau (* x (PI)))))
(* -1 (sin (* tau (* x (PI)))))
(sin (* tau (* x (PI))))
(sin (* tau (* x (PI))))
(sin (* tau (* x (PI))))
(sin (* tau (* x (PI))))
(* tau (* x (PI)))
(* tau (* x (PI)))
(* tau (* x (PI)))
(* tau (* x (PI)))
(* -1 (/ (sin (* tau (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2)))))
(* -1 (/ (sin (* tau (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2)))))
(* -1 (/ (sin (* tau (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2)))))
(* -1 (/ (sin (* tau (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2)))))
(/ (* tau (* x (PI))) (sin (* tau (* x (PI)))))
(/ (* tau (* x (PI))) (sin (* tau (* x (PI)))))
(/ (* tau (* x (PI))) (sin (* tau (* x (PI)))))
(/ (* tau (* x (PI))) (sin (* tau (* x (PI)))))
(/ (sin (* tau (* x (PI)))) (* tau (* x (PI))))
(/ (sin (* tau (* x (PI)))) (* tau (* x (PI))))
(/ (sin (* tau (* x (PI)))) (* tau (* x (PI))))
(/ (sin (* tau (* x (PI)))) (* tau (* x (PI))))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(sin (* tau (* x (PI))))
(sin (* tau (* x (PI))))
(sin (* tau (* x (PI))))
(sin (* tau (* x (PI))))
(* x (PI))
(* x (PI))
(* x (PI))
(* x (PI))
(/ -1 (* x (PI)))
(/ -1 (* x (PI)))
(/ -1 (* x (PI)))
(/ -1 (* x (PI)))
(* x (pow (PI) 2))
(* x (pow (PI) 2))
(* x (pow (PI) 2))
(* x (pow (PI) 2))
(* -1 (/ (sin (* x (PI))) (* tau (* (pow x 2) (pow (PI) 2)))))
(* -1 (/ (sin (* x (PI))) (* tau (* (pow x 2) (pow (PI) 2)))))
(* -1 (/ (sin (* x (PI))) (* tau (* (pow x 2) (pow (PI) 2)))))
(* -1 (/ (sin (* x (PI))) (* tau (* (pow x 2) (pow (PI) 2)))))
Outputs
(/ (sin (* x (PI))) (* x (PI)))
(/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x))
(+ (* -1/6 (* (pow tau 2) (* x (* (PI) (sin (* x (PI))))))) (/ (sin (* x (PI))) (* x (PI))))
(fma.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 tau tau)) (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x)) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x)))
(+ (* (pow tau 2) (+ (* -1/6 (* x (* (PI) (sin (* x (PI)))))) (* 1/120 (* (pow tau 2) (* (pow x 3) (* (pow (PI) 3) (sin (* x (PI))))))))) (/ (sin (* x (PI))) (* x (PI))))
(fma.f32 (fma.f32 (*.f32 #s(literal 1/120 binary32) (pow.f32 x #s(literal 3 binary32))) (*.f32 (*.f32 (pow.f32 (PI.f32) #s(literal 3 binary32)) (sin.f32 (*.f32 (PI.f32) x))) (*.f32 tau tau)) (*.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x)) #s(literal -1/6 binary32))) (*.f32 tau tau) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x)))
(+ (* (pow tau 2) (+ (* -1/6 (* x (* (PI) (sin (* x (PI)))))) (* (pow tau 2) (+ (* -1/5040 (* (pow tau 2) (* (pow x 5) (* (pow (PI) 5) (sin (* x (PI))))))) (* 1/120 (* (pow x 3) (* (pow (PI) 3) (sin (* x (PI)))))))))) (/ (sin (* x (PI))) (* x (PI))))
(fma.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 tau tau)) (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x)) (fma.f32 (fma.f32 (*.f32 #s(literal -1/5040 binary32) (*.f32 tau tau)) (*.f32 (*.f32 (pow.f32 (PI.f32) #s(literal 5 binary32)) (sin.f32 (*.f32 (PI.f32) x))) (pow.f32 x #s(literal 5 binary32))) (*.f32 (*.f32 #s(literal 1/120 binary32) (pow.f32 x #s(literal 3 binary32))) (*.f32 (pow.f32 (PI.f32) #s(literal 3 binary32)) (sin.f32 (*.f32 (PI.f32) x))))) (pow.f32 tau #s(literal 4 binary32)) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x))))
(* tau (sin (* x (PI))))
(*.f32 tau (sin.f32 (*.f32 (PI.f32) x)))
(* tau (+ (sin (* x (PI))) (* -1/6 (* (pow tau 2) (* (pow x 2) (* (pow (PI) 2) (sin (* x (PI)))))))))
(*.f32 (fma.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 tau tau)) (*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) (sin.f32 (*.f32 (PI.f32) x))) (*.f32 x x)) (sin.f32 (*.f32 (PI.f32) x))) tau)
(* tau (+ (sin (* x (PI))) (* (pow tau 2) (+ (* -1/6 (* (pow x 2) (* (pow (PI) 2) (sin (* x (PI)))))) (* 1/120 (* (pow tau 2) (* (pow x 4) (* (pow (PI) 4) (sin (* x (PI)))))))))))
(*.f32 (fma.f32 (fma.f32 (*.f32 #s(literal 1/120 binary32) (*.f32 tau tau)) (*.f32 (*.f32 (pow.f32 (PI.f32) #s(literal 4 binary32)) (sin.f32 (*.f32 (PI.f32) x))) (pow.f32 x #s(literal 4 binary32))) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) (sin.f32 (*.f32 (PI.f32) x))))) (*.f32 tau tau) (sin.f32 (*.f32 (PI.f32) x))) tau)
(* tau (+ (sin (* x (PI))) (* (pow tau 2) (+ (* -1/6 (* (pow x 2) (* (pow (PI) 2) (sin (* x (PI)))))) (* (pow tau 2) (+ (* -1/5040 (* (pow tau 2) (* (pow x 6) (* (pow (PI) 6) (sin (* x (PI))))))) (* 1/120 (* (pow x 4) (* (pow (PI) 4) (sin (* x (PI))))))))))))
(*.f32 (fma.f32 (fma.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) (sin.f32 (*.f32 (PI.f32) x))) (*.f32 (fma.f32 (*.f32 #s(literal 1/120 binary32) (pow.f32 x #s(literal 4 binary32))) (*.f32 (pow.f32 (PI.f32) #s(literal 4 binary32)) (sin.f32 (*.f32 (PI.f32) x))) (*.f32 (*.f32 #s(literal -1/5040 binary32) (*.f32 tau tau)) (*.f32 (*.f32 (pow.f32 (PI.f32) #s(literal 6 binary32)) (sin.f32 (*.f32 (PI.f32) x))) (pow.f32 x #s(literal 6 binary32))))) (*.f32 tau tau))) (*.f32 tau tau) (sin.f32 (*.f32 (PI.f32) x))) tau)
(/ (sin (* x (PI))) (* x (PI)))
(/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x))
(+ (* -1/6 (* (pow tau 2) (* x (* (PI) (sin (* x (PI))))))) (/ (sin (* x (PI))) (* x (PI))))
(fma.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 tau tau)) (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x)) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x)))
(+ (* (pow tau 2) (+ (* -1/6 (* x (* (PI) (sin (* x (PI)))))) (* 1/120 (* (pow tau 2) (* (pow x 3) (* (pow (PI) 3) (sin (* x (PI))))))))) (/ (sin (* x (PI))) (* x (PI))))
(fma.f32 (fma.f32 (*.f32 #s(literal 1/120 binary32) (pow.f32 x #s(literal 3 binary32))) (*.f32 (*.f32 (pow.f32 (PI.f32) #s(literal 3 binary32)) (sin.f32 (*.f32 (PI.f32) x))) (*.f32 tau tau)) (*.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x)) #s(literal -1/6 binary32))) (*.f32 tau tau) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x)))
(+ (* (pow tau 2) (+ (* -1/6 (* x (* (PI) (sin (* x (PI)))))) (* (pow tau 2) (+ (* -1/5040 (* (pow tau 2) (* (pow x 5) (* (pow (PI) 5) (sin (* x (PI))))))) (* 1/120 (* (pow x 3) (* (pow (PI) 3) (sin (* x (PI)))))))))) (/ (sin (* x (PI))) (* x (PI))))
(fma.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 tau tau)) (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x)) (fma.f32 (fma.f32 (*.f32 #s(literal -1/5040 binary32) (*.f32 tau tau)) (*.f32 (*.f32 (pow.f32 (PI.f32) #s(literal 5 binary32)) (sin.f32 (*.f32 (PI.f32) x))) (pow.f32 x #s(literal 5 binary32))) (*.f32 (*.f32 #s(literal 1/120 binary32) (pow.f32 x #s(literal 3 binary32))) (*.f32 (pow.f32 (PI.f32) #s(literal 3 binary32)) (sin.f32 (*.f32 (PI.f32) x))))) (pow.f32 tau #s(literal 4 binary32)) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x))))
(/ (* tau (* (PI) (sin (* x (PI))))) x)
(*.f32 (sin.f32 (*.f32 (PI.f32) x)) (/.f32 (*.f32 tau (PI.f32)) x))
(* tau (+ (* -1/6 (* (pow tau 2) (* x (* (pow (PI) 3) (sin (* x (PI))))))) (/ (* (PI) (sin (* x (PI)))) x)))
(*.f32 (fma.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 tau tau)) (*.f32 (*.f32 x (pow.f32 (PI.f32) #s(literal 3 binary32))) (sin.f32 (*.f32 (PI.f32) x))) (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (/.f32 (PI.f32) x))) tau)
(* tau (+ (* (pow tau 2) (+ (* -1/6 (* x (* (pow (PI) 3) (sin (* x (PI)))))) (* 1/120 (* (pow tau 2) (* (pow x 3) (* (pow (PI) 5) (sin (* x (PI))))))))) (/ (* (PI) (sin (* x (PI)))) x)))
(fma.f32 (fma.f32 (*.f32 #s(literal 1/120 binary32) (*.f32 tau tau)) (*.f32 (*.f32 (pow.f32 (PI.f32) #s(literal 5 binary32)) (sin.f32 (*.f32 (PI.f32) x))) (pow.f32 x #s(literal 3 binary32))) (*.f32 (*.f32 #s(literal -1/6 binary32) x) (*.f32 (pow.f32 (PI.f32) #s(literal 3 binary32)) (sin.f32 (*.f32 (PI.f32) x))))) (pow.f32 tau #s(literal 3 binary32)) (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (/.f32 (*.f32 tau (PI.f32)) x)))
(* tau (+ (* (pow tau 2) (+ (* -1/6 (* x (* (pow (PI) 3) (sin (* x (PI)))))) (* (pow tau 2) (+ (* -1/5040 (* (pow tau 2) (* (pow x 5) (* (pow (PI) 7) (sin (* x (PI))))))) (* 1/120 (* (pow x 3) (* (pow (PI) 5) (sin (* x (PI)))))))))) (/ (* (PI) (sin (* x (PI)))) x)))
(fma.f32 (fma.f32 (*.f32 #s(literal -1/6 binary32) x) (*.f32 (pow.f32 (PI.f32) #s(literal 3 binary32)) (sin.f32 (*.f32 (PI.f32) x))) (*.f32 (fma.f32 (*.f32 #s(literal -1/5040 binary32) (*.f32 tau tau)) (*.f32 (*.f32 (pow.f32 (PI.f32) #s(literal 7 binary32)) (sin.f32 (*.f32 (PI.f32) x))) (pow.f32 x #s(literal 5 binary32))) (*.f32 (*.f32 #s(literal 1/120 binary32) (pow.f32 x #s(literal 3 binary32))) (*.f32 (pow.f32 (PI.f32) #s(literal 5 binary32)) (sin.f32 (*.f32 (PI.f32) x))))) (*.f32 tau tau))) (pow.f32 tau #s(literal 3 binary32)) (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (/.f32 (*.f32 tau (PI.f32)) x)))
(* tau (pow (PI) 2))
(*.f32 (*.f32 (PI.f32) (PI.f32)) tau)
(* tau (pow (PI) 2))
(*.f32 (*.f32 (PI.f32) (PI.f32)) tau)
(* tau (pow (PI) 2))
(*.f32 (*.f32 (PI.f32) (PI.f32)) tau)
(* tau (pow (PI) 2))
(*.f32 (*.f32 (PI.f32) (PI.f32)) tau)
(/ (sin (* x (PI))) (* x (PI)))
(/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x))
(+ (* -1/6 (* (pow tau 2) (* x (* (PI) (sin (* x (PI))))))) (/ (sin (* x (PI))) (* x (PI))))
(fma.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 tau tau)) (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x)) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x)))
(+ (* (pow tau 2) (+ (* -1/6 (* x (* (PI) (sin (* x (PI)))))) (* 1/120 (* (pow tau 2) (* (pow x 3) (* (pow (PI) 3) (sin (* x (PI))))))))) (/ (sin (* x (PI))) (* x (PI))))
(fma.f32 (fma.f32 (*.f32 #s(literal 1/120 binary32) (pow.f32 x #s(literal 3 binary32))) (*.f32 (*.f32 (pow.f32 (PI.f32) #s(literal 3 binary32)) (sin.f32 (*.f32 (PI.f32) x))) (*.f32 tau tau)) (*.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x)) #s(literal -1/6 binary32))) (*.f32 tau tau) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x)))
(+ (* (pow tau 2) (+ (* -1/6 (* x (* (PI) (sin (* x (PI)))))) (* (pow tau 2) (+ (* -1/5040 (* (pow tau 2) (* (pow x 5) (* (pow (PI) 5) (sin (* x (PI))))))) (* 1/120 (* (pow x 3) (* (pow (PI) 3) (sin (* x (PI)))))))))) (/ (sin (* x (PI))) (* x (PI))))
(fma.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 tau tau)) (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x)) (fma.f32 (fma.f32 (*.f32 #s(literal -1/5040 binary32) (*.f32 tau tau)) (*.f32 (*.f32 (pow.f32 (PI.f32) #s(literal 5 binary32)) (sin.f32 (*.f32 (PI.f32) x))) (pow.f32 x #s(literal 5 binary32))) (*.f32 (*.f32 #s(literal 1/120 binary32) (pow.f32 x #s(literal 3 binary32))) (*.f32 (pow.f32 (PI.f32) #s(literal 3 binary32)) (sin.f32 (*.f32 (PI.f32) x))))) (pow.f32 tau #s(literal 4 binary32)) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x))))
(/ -1 (* x (PI)))
(/.f32 #s(literal -1 binary32) (*.f32 (PI.f32) x))
(- (* 1/6 (* (pow tau 2) (* x (PI)))) (/ 1 (* x (PI))))
(fma.f32 (*.f32 (*.f32 tau tau) x) (*.f32 (PI.f32) #s(literal 1/6 binary32)) (/.f32 #s(literal -1 binary32) (*.f32 (PI.f32) x)))
(- (* (pow tau 2) (+ (* -1/120 (* (pow tau 2) (* (pow x 3) (pow (PI) 3)))) (* 1/6 (* x (PI))))) (/ 1 (* x (PI))))
(fma.f32 (fma.f32 (*.f32 #s(literal -1/120 binary32) (*.f32 tau tau)) (*.f32 (pow.f32 (PI.f32) #s(literal 3 binary32)) (pow.f32 x #s(literal 3 binary32))) (*.f32 #s(literal 1/6 binary32) (*.f32 (PI.f32) x))) (*.f32 tau tau) (/.f32 #s(literal -1 binary32) (*.f32 (PI.f32) x)))
(- (* (pow tau 2) (+ (* 1/6 (* x (PI))) (* (pow tau 2) (+ (* -1/120 (* (pow x 3) (pow (PI) 3))) (* 1/5040 (* (pow tau 2) (* (pow x 5) (pow (PI) 5)))))))) (/ 1 (* x (PI))))
(fma.f32 (fma.f32 (*.f32 #s(literal 1/6 binary32) x) (PI.f32) (*.f32 (fma.f32 (*.f32 #s(literal 1/5040 binary32) (*.f32 tau tau)) (*.f32 (pow.f32 (PI.f32) #s(literal 5 binary32)) (pow.f32 x #s(literal 5 binary32))) (*.f32 (*.f32 #s(literal -1/120 binary32) (pow.f32 x #s(literal 3 binary32))) (pow.f32 (PI.f32) #s(literal 3 binary32)))) (*.f32 tau tau))) (*.f32 tau tau) (/.f32 #s(literal -1 binary32) (*.f32 (PI.f32) x)))
(/ -1 (* x (PI)))
(/.f32 #s(literal -1 binary32) (*.f32 (PI.f32) x))
(- (* 1/6 (* (pow tau 2) (* x (PI)))) (/ 1 (* x (PI))))
(fma.f32 (*.f32 (*.f32 tau tau) x) (*.f32 (PI.f32) #s(literal 1/6 binary32)) (/.f32 #s(literal -1 binary32) (*.f32 (PI.f32) x)))
(- (* 1/6 (* (pow tau 2) (* x (PI)))) (/ 1 (* x (PI))))
(fma.f32 (*.f32 (*.f32 tau tau) x) (*.f32 (PI.f32) #s(literal 1/6 binary32)) (/.f32 #s(literal -1 binary32) (*.f32 (PI.f32) x)))
(- (* 1/6 (* (pow tau 2) (* x (PI)))) (/ 1 (* x (PI))))
(fma.f32 (*.f32 (*.f32 tau tau) x) (*.f32 (PI.f32) #s(literal 1/6 binary32)) (/.f32 #s(literal -1 binary32) (*.f32 (PI.f32) x)))
(* 1/6 (* (pow tau 2) (PI)))
(*.f32 (*.f32 (*.f32 tau tau) (PI.f32)) #s(literal 1/6 binary32))
(* 1/6 (* (pow tau 2) (PI)))
(*.f32 (*.f32 (*.f32 tau tau) (PI.f32)) #s(literal 1/6 binary32))
(* 1/6 (* (pow tau 2) (PI)))
(*.f32 (*.f32 (*.f32 tau tau) (PI.f32)) #s(literal 1/6 binary32))
(* 1/6 (* (pow tau 2) (PI)))
(*.f32 (*.f32 (*.f32 tau tau) (PI.f32)) #s(literal 1/6 binary32))
(/ (sin (* x (PI))) (* x (PI)))
(/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x))
(+ (* -1/6 (* (pow tau 2) (* x (* (PI) (sin (* x (PI))))))) (/ (sin (* x (PI))) (* x (PI))))
(fma.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 tau tau)) (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x)) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x)))
(+ (* (pow tau 2) (+ (* -1/6 (* x (* (PI) (sin (* x (PI)))))) (* 1/120 (* (pow tau 2) (* (pow x 3) (* (pow (PI) 3) (sin (* x (PI))))))))) (/ (sin (* x (PI))) (* x (PI))))
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(+ (* (pow tau 2) (+ (* -1/6 (* x (* (PI) (sin (* x (PI)))))) (* (pow tau 2) (+ (* -1/5040 (* (pow tau 2) (* (pow x 5) (* (pow (PI) 5) (sin (* x (PI))))))) (* 1/120 (* (pow x 3) (* (pow (PI) 3) (sin (* x (PI)))))))))) (/ (sin (* x (PI))) (* x (PI))))
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1
#s(literal 1 binary32)
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1
#s(literal 1 binary32)
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(* tau (* x (PI)))
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(* tau (+ (* x (PI)) (* (pow tau 2) (+ (* -1/6 (* (pow x 3) (pow (PI) 3))) (* 1/120 (* (pow tau 2) (* (pow x 5) (pow (PI) 5))))))))
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(* tau (+ (* x (PI)) (* (pow tau 2) (+ (* -1/6 (* (pow x 3) (pow (PI) 3))) (* (pow tau 2) (+ (* -1/5040 (* (pow tau 2) (* (pow x 7) (pow (PI) 7)))) (* 1/120 (* (pow x 5) (pow (PI) 5)))))))))
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(* tau (pow (PI) 2))
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(* tau (pow (PI) 2))
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(*.f32 (*.f32 (PI.f32) (PI.f32)) tau)
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(* -1 (/ (sin (* tau (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2)))))
(/.f32 (/.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (neg.f32 tau)) (*.f32 (PI.f32) (PI.f32))) (*.f32 x x))
(* -1 (/ (sin (* tau (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2)))))
(/.f32 (/.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (neg.f32 tau)) (*.f32 (PI.f32) (PI.f32))) (*.f32 x x))
(* -1 (/ (sin (* tau (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2)))))
(/.f32 (/.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (neg.f32 tau)) (*.f32 (PI.f32) (PI.f32))) (*.f32 x x))
(* 1/6 (* (pow tau 2) (* x (PI))))
(*.f32 (*.f32 (*.f32 tau tau) x) (*.f32 (PI.f32) #s(literal 1/6 binary32)))
(* -1 (* x (+ (* -1/6 (* (pow tau 2) (PI))) (/ 1 (* (pow x 2) (PI))))))
(*.f32 (neg.f32 x) (fma.f32 (*.f32 (*.f32 tau tau) (PI.f32)) #s(literal -1/6 binary32) (/.f32 (/.f32 #s(literal 1 binary32) (*.f32 (PI.f32) x)) x)))
(* -1 (* x (+ (* -1/6 (* (pow tau 2) (PI))) (/ 1 (* (pow x 2) (PI))))))
(*.f32 (neg.f32 x) (fma.f32 (*.f32 (*.f32 tau tau) (PI.f32)) #s(literal -1/6 binary32) (/.f32 (/.f32 #s(literal 1 binary32) (*.f32 (PI.f32) x)) x)))
(* -1 (* x (+ (* -1/6 (* (pow tau 2) (PI))) (/ 1 (* (pow x 2) (PI))))))
(*.f32 (neg.f32 x) (fma.f32 (*.f32 (*.f32 tau tau) (PI.f32)) #s(literal -1/6 binary32) (/.f32 (/.f32 #s(literal 1 binary32) (*.f32 (PI.f32) x)) x)))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 x x)) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 x x)) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 x x)) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 x x)) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
(* -1 (sin (* tau (* x (PI)))))
(neg.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))))
(* -1 (sin (* tau (* x (PI)))))
(neg.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))))
(* -1 (sin (* tau (* x (PI)))))
(neg.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))))
(* -1 (sin (* tau (* x (PI)))))
(neg.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))))
(sin (* tau (* x (PI))))
(sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))
(sin (* tau (* x (PI))))
(sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))
(sin (* tau (* x (PI))))
(sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))
(sin (* tau (* x (PI))))
(sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))
(* tau (* x (PI)))
(*.f32 tau (*.f32 (PI.f32) x))
(* tau (* x (PI)))
(*.f32 tau (*.f32 (PI.f32) x))
(* tau (* x (PI)))
(*.f32 tau (*.f32 (PI.f32) x))
(* tau (* x (PI)))
(*.f32 tau (*.f32 (PI.f32) x))
(* -1 (/ (sin (* tau (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2)))))
(/.f32 (/.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (neg.f32 tau)) (*.f32 (PI.f32) (PI.f32))) (*.f32 x x))
(* -1 (/ (sin (* tau (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2)))))
(/.f32 (/.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (neg.f32 tau)) (*.f32 (PI.f32) (PI.f32))) (*.f32 x x))
(* -1 (/ (sin (* tau (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2)))))
(/.f32 (/.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (neg.f32 tau)) (*.f32 (PI.f32) (PI.f32))) (*.f32 x x))
(* -1 (/ (sin (* tau (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2)))))
(/.f32 (/.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (neg.f32 tau)) (*.f32 (PI.f32) (PI.f32))) (*.f32 x x))
(/ (* tau (* x (PI))) (sin (* tau (* x (PI)))))
(/.f32 (*.f32 tau (*.f32 (PI.f32) x)) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))))
(/ (* tau (* x (PI))) (sin (* tau (* x (PI)))))
(/.f32 (*.f32 tau (*.f32 (PI.f32) x)) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))))
(/ (* tau (* x (PI))) (sin (* tau (* x (PI)))))
(/.f32 (*.f32 tau (*.f32 (PI.f32) x)) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))))
(/ (* tau (* x (PI))) (sin (* tau (* x (PI)))))
(/.f32 (*.f32 tau (*.f32 (PI.f32) x)) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))))
(/ (sin (* tau (* x (PI)))) (* tau (* x (PI))))
(/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 tau (*.f32 (PI.f32) x)))
(/ (sin (* tau (* x (PI)))) (* tau (* x (PI))))
(/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 tau (*.f32 (PI.f32) x)))
(/ (sin (* tau (* x (PI)))) (* tau (* x (PI))))
(/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 tau (*.f32 (PI.f32) x)))
(/ (sin (* tau (* x (PI)))) (* tau (* x (PI))))
(/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 tau (*.f32 (PI.f32) x)))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 x x)) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 x x)) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 x x)) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 x x)) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
(sin (* tau (* x (PI))))
(sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))
(sin (* tau (* x (PI))))
(sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))
(sin (* tau (* x (PI))))
(sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))
(sin (* tau (* x (PI))))
(sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))
(* x (PI))
(*.f32 (PI.f32) x)
(* x (PI))
(*.f32 (PI.f32) x)
(* x (PI))
(*.f32 (PI.f32) x)
(* x (PI))
(*.f32 (PI.f32) x)
(/ -1 (* x (PI)))
(/.f32 #s(literal -1 binary32) (*.f32 (PI.f32) x))
(/ -1 (* x (PI)))
(/.f32 #s(literal -1 binary32) (*.f32 (PI.f32) x))
(/ -1 (* x (PI)))
(/.f32 #s(literal -1 binary32) (*.f32 (PI.f32) x))
(/ -1 (* x (PI)))
(/.f32 #s(literal -1 binary32) (*.f32 (PI.f32) x))
(* x (pow (PI) 2))
(*.f32 (*.f32 (PI.f32) (PI.f32)) x)
(* x (pow (PI) 2))
(*.f32 (*.f32 (PI.f32) (PI.f32)) x)
(* x (pow (PI) 2))
(*.f32 (*.f32 (PI.f32) (PI.f32)) x)
(* x (pow (PI) 2))
(*.f32 (*.f32 (PI.f32) (PI.f32)) x)
(* -1 (/ (sin (* x (PI))) (* tau (* (pow x 2) (pow (PI) 2)))))
(/.f32 (/.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (neg.f32 tau)) (*.f32 (PI.f32) (PI.f32))) (*.f32 x x))
(* -1 (/ (sin (* x (PI))) (* tau (* (pow x 2) (pow (PI) 2)))))
(/.f32 (/.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (neg.f32 tau)) (*.f32 (PI.f32) (PI.f32))) (*.f32 x x))
(* -1 (/ (sin (* x (PI))) (* tau (* (pow x 2) (pow (PI) 2)))))
(/.f32 (/.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (neg.f32 tau)) (*.f32 (PI.f32) (PI.f32))) (*.f32 x x))
(* -1 (/ (sin (* x (PI))) (* tau (* (pow x 2) (pow (PI) 2)))))
(/.f32 (/.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (neg.f32 tau)) (*.f32 (PI.f32) (PI.f32))) (*.f32 x x))

rewrite205.0ms (2%)

Memory
-0.3MiB live, 158.6MiB allocated
Iterations

Useful iterations: 2 (0.0ms)

IterNodesCost
059352
0103342
1347338
22201330
08475330
Stop Event
iter limit
node limit
iter limit
Counts
27 → 1 374
Calls
Call 1
Inputs
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))) (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau))) (*.f32 (*.f32 x (PI.f32)) tau))
(*.f32 (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))) (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)))
(/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32)))
(sin.f32 (*.f32 x (PI.f32)))
(/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
#s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau))
(*.f32 (*.f32 (PI.f32) (PI.f32)) tau)
(*.f32 (PI.f32) (PI.f32))
(*.f32 #s(approx (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) (fma.f32 (*.f32 (*.f32 (*.f32 tau (PI.f32)) tau) #s(literal 1/6 binary32)) x (/.f32 (/.f32 #s(literal -1 binary32) (PI.f32)) x))) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
#s(approx (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) (fma.f32 (*.f32 (*.f32 (*.f32 tau (PI.f32)) tau) #s(literal 1/6 binary32)) x (/.f32 (/.f32 #s(literal -1 binary32) (PI.f32)) x)))
(fma.f32 (*.f32 (*.f32 (*.f32 tau (PI.f32)) tau) #s(literal 1/6 binary32)) x (/.f32 (/.f32 #s(literal -1 binary32) (PI.f32)) x))
(*.f32 (*.f32 (*.f32 tau (PI.f32)) tau) #s(literal 1/6 binary32))
(*.f32 (neg.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) (/.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (*.f32 (*.f32 (PI.f32) (*.f32 (PI.f32) x)) (neg.f32 tau))))
(neg.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))))
(sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))
(*.f32 tau (*.f32 (PI.f32) x))
(/.f32 (/.f32 #s(literal 1 binary32) (/.f32 x (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (PI.f32) tau)))) (*.f32 (neg.f32 (PI.f32)) x))
(/.f32 x (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (PI.f32) tau)))
(/.f32 #s(literal 1 binary32) (/.f32 x (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (PI.f32) tau))))
(*.f32 (/.f32 (/.f32 #s(literal 1 binary32) (/.f32 x (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (PI.f32) tau)))) (*.f32 (neg.f32 (PI.f32)) x)) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
(sin.f32 (*.f32 (*.f32 x (PI.f32)) tau))
(*.f32 x (PI.f32))
(*.f32 (PI.f32) (*.f32 tau (PI.f32)))
(/.f32 (/.f32 #s(literal -1 binary32) (PI.f32)) x)
(*.f32 (PI.f32) (*.f32 (PI.f32) x))
(/.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (*.f32 (*.f32 (PI.f32) (*.f32 (PI.f32) x)) (neg.f32 tau)))
(*.f32 (PI.f32) tau)
Outputs
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eval426.0ms (4.2%)

Memory
10.1MiB live, 360.0MiB allocated
Compiler

Compiled 51 103 to 3 902 computations (92.4% saved)

prune206.0ms (2%)

Memory
35.9MiB live, 271.9MiB allocated
Pruning

78 alts after pruning (72 fresh and 6 done)

PrunedKeptTotal
New2 011512 062
Fresh172138
Picked235
Done033
Total2 030782 108
Accuracy
99.8%
Counts
2 108 → 78
Alt Table
Click to see full alt table
StatusAccuracyProgram
62.7%
(/.f32 (/.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (PI.f32)) (PI.f32)) tau)
62.7%
(/.f32 (/.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (PI.f32)) tau) (PI.f32))
97.5%
(/.f32 (/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))) (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau))) tau) (*.f32 x (PI.f32)))
96.6%
(/.f32 (/.f32 (*.f32 (sin.f32 (*.f32 x (PI.f32))) (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau))) (*.f32 (*.f32 (*.f32 (PI.f32) tau) (PI.f32)) x)) x)
96.0%
(/.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (pow.f32 (cbrt.f32 (PI.f32)) #s(literal 2 binary32)) x)) (*.f32 (/.f32 (*.f32 tau (*.f32 (PI.f32) x)) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) (cbrt.f32 (PI.f32))))
62.7%
(/.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (PI.f32)) (*.f32 tau (PI.f32)))
62.9%
(/.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) tau) (*.f32 (PI.f32) (PI.f32)))
62.6%
(/.f32 (/.f32 #s(literal 1 binary32) (/.f32 #s(literal 1 binary32) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
97.1%
(/.f32 (*.f32 (/.f32 (*.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (sin.f32 (*.f32 (PI.f32) x))) (PI.f32)) (/.f32 #s(literal 1 binary32) x)) (*.f32 (*.f32 x (PI.f32)) tau))
97.1%
(/.f32 (*.f32 (/.f32 (sin.f32 (/.f32 (PI.f32) (/.f32 #s(literal 1 binary32) x))) (*.f32 x (PI.f32))) (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau))) (*.f32 (*.f32 x (PI.f32)) tau))
97.0%
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 x tau)) (sin.f32 (*.f32 x (PI.f32)))) (*.f32 (*.f32 x (PI.f32)) (PI.f32)))
97.2%
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))) (sin.f32 (*.f32 (/.f32 (PI.f32) (/.f32 #s(literal 1 binary32) x)) tau))) (*.f32 (*.f32 x (PI.f32)) tau))
97.7%
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))) (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau))) (*.f32 (*.f32 x (PI.f32)) tau))
97.7%
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 tau (*.f32 (PI.f32) x))) (sin.f32 (*.f32 (PI.f32) x))) (*.f32 (PI.f32) x))
97.3%
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) tau) (neg.f32 (sin.f32 (*.f32 (PI.f32) x)))) (*.f32 (*.f32 (PI.f32) x) (*.f32 (neg.f32 (PI.f32)) x)))
96.1%
(/.f32 (*.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) (/.f32 #s(literal 1 binary32) x)) (*.f32 (*.f32 (pow.f32 (cbrt.f32 (PI.f32)) #s(literal 2 binary32)) (*.f32 (PI.f32) tau)) (cbrt.f32 (PI.f32))))
96.6%
(/.f32 (*.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) (/.f32 #s(literal 1 binary32) x)) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
70.1%
(/.f32 (*.f32 (*.f32 #s(approx (/ (sin (* (PI) x)) x) (PI.f32)) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) (/.f32 #s(literal 1 binary32) x)) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
96.7%
(/.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (neg.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))))) (*.f32 (neg.f32 tau) (*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) x) x)))
97.6%
(/.f32 (*.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (sin.f32 (*.f32 (PI.f32) x))) (*.f32 (*.f32 (PI.f32) x) (*.f32 tau (*.f32 (PI.f32) x))))
97.0%
(/.f32 (*.f32 (neg.f32 (sin.f32 (*.f32 (PI.f32) x))) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) (*.f32 (*.f32 (*.f32 (neg.f32 (PI.f32)) x) x) (*.f32 tau (PI.f32))))
70.4%
(/.f32 (*.f32 #s(approx (/ (sin (* x (PI))) (* x (PI))) #s(literal 1 binary32)) (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau))) (*.f32 (*.f32 x (PI.f32)) tau))
62.7%
(/.f32 (*.f32 #s(approx (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) x) tau)) (/.f32 #s(literal 1 binary32) x)) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
96.6%
(/.f32 (neg.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (neg.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))))) (*.f32 (*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) x) tau) x))
63.7%
(/.f32 #s(approx (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (*.f32 tau (sin.f32 (*.f32 (PI.f32) x)))) (*.f32 (*.f32 x (PI.f32)) tau))
62.1%
(/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (pow.f32 (cbrt.f32 (PI.f32)) #s(literal 6 binary32)) tau)) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
62.5%
(/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (*.f32 tau (PI.f32)) (sqrt.f32 (PI.f32))) (sqrt.f32 (PI.f32)))) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
62.7%
(/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (*.f32 (*.f32 (*.f32 tau (PI.f32)) (sqrt.f32 (PI.f32))) (sqrt.f32 (PI.f32))))
62.7%
(/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
97.4%
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 (*.f32 (PI.f32) x) (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (sin.f32 (*.f32 (PI.f32) x)))))
62.7%
(/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (/.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (PI.f32)) tau)))
62.7%
(/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (*.f32 tau (PI.f32)))))
62.7%
(/.f32 #s(literal 1 binary32) (/.f32 tau (/.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (PI.f32)) (PI.f32))))
62.7%
(*.f32 (/.f32 (pow.f32 (PI.f32) #s(literal -2 binary32)) tau) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
62.7%
(*.f32 (/.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (PI.f32)) (PI.f32)) (/.f32 #s(literal 1 binary32) tau))
62.8%
(*.f32 (/.f32 (/.f32 #s(literal 1 binary32) (PI.f32)) tau) (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (PI.f32)))
97.0%
(*.f32 (/.f32 (*.f32 (/.f32 (/.f32 #s(literal 1 binary32) (PI.f32)) tau) (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) x)) (*.f32 (neg.f32 (PI.f32)) x)) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
97.4%
(*.f32 (/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (neg.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))))) (PI.f32)) (/.f32 #s(literal -1 binary32) (*.f32 tau (*.f32 (PI.f32) x))))
96.5%
(*.f32 (/.f32 (*.f32 (sin.f32 (*.f32 x (PI.f32))) (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau))) (*.f32 (*.f32 (*.f32 (PI.f32) tau) (PI.f32)) x)) (/.f32 #s(literal 1 binary32) x))
95.9%
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 (pow.f32 (cbrt.f32 (PI.f32)) #s(literal 2 binary32)) (*.f32 (cbrt.f32 (PI.f32)) x))) (*.f32 x (PI.f32))))
97.0%
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 (*.f32 (*.f32 (sqrt.f32 (PI.f32)) x) (cbrt.f32 (PI.f32))) (pow.f32 (PI.f32) #s(literal 1/6 binary32)))) (*.f32 x (PI.f32))))
97.0%
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 tau x) (PI.f32))) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
70.1%
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 tau x) (PI.f32))) #s(approx (/ (sin (* x (PI))) (* x (PI))) #s(literal 1 binary32)))
97.7%
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x tau) (PI.f32))) (*.f32 (*.f32 tau x) (PI.f32))) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
97.2%
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 tau (PI.f32)) x)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
97.0%
(*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (*.f32 tau (*.f32 (PI.f32) x)) x)) (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (PI.f32)))
97.0%
(*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (*.f32 (*.f32 (neg.f32 (PI.f32)) x) x) (*.f32 tau (PI.f32)))) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
97.5%
(*.f32 (/.f32 (neg.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) (*.f32 (*.f32 (PI.f32) x) (*.f32 tau (*.f32 (PI.f32) x)))) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
96.4%
(*.f32 (/.f32 #s(literal 1 binary32) (/.f32 (/.f32 (neg.f32 x) (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 tau (PI.f32)))) (/.f32 (/.f32 #s(literal 1 binary32) (PI.f32)) x))) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
96.7%
(*.f32 (/.f32 #s(literal 1 binary32) (*.f32 (*.f32 (PI.f32) tau) (PI.f32))) (*.f32 (/.f32 (/.f32 (sin.f32 (*.f32 x (PI.f32))) x) x) (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau))))
96.8%
(*.f32 (/.f32 #s(literal -1 binary32) (*.f32 (/.f32 (neg.f32 x) (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 tau (PI.f32)))) (*.f32 (neg.f32 (PI.f32)) x))) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
96.5%
(*.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (neg.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))))) (/.f32 #s(literal -1 binary32) (*.f32 (*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) x) tau) x)))
97.6%
(*.f32 (*.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (sin.f32 (*.f32 (PI.f32) x))) (/.f32 #s(literal 1 binary32) (*.f32 (*.f32 (PI.f32) x) (*.f32 tau (*.f32 (PI.f32) x)))))
62.8%
(*.f32 (neg.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (PI.f32))) (/.f32 #s(literal -1 binary32) (*.f32 tau (PI.f32))))
97.0%
(*.f32 (neg.f32 (sin.f32 (/.f32 (*.f32 tau (PI.f32)) (/.f32 #s(literal 1 binary32) x)))) (/.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (*.f32 (*.f32 (PI.f32) (*.f32 (PI.f32) x)) (neg.f32 tau))))
96.6%
(*.f32 (neg.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (neg.f32 tau) (*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) x) x))))
96.5%
(*.f32 (neg.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) (/.f32 (neg.f32 (sin.f32 (*.f32 (PI.f32) x))) (*.f32 (*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) x) tau) x)))
70.2%
(*.f32 (neg.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) #s(approx (/ (/ (sin (* (PI) x)) x) (* (* (PI) (* (PI) x)) (neg tau))) (/.f32 (/.f32 #s(literal -1 binary32) (*.f32 (PI.f32) x)) tau)))
62.8%
(*.f32 (neg.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau))) (/.f32 #s(literal -1 binary32) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
63.4%
(*.f32 (neg.f32 #s(approx (sin (* tau (* (PI) x))) (*.f32 tau (*.f32 (PI.f32) x)))) (/.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (*.f32 (*.f32 (PI.f32) (*.f32 (PI.f32) x)) (neg.f32 tau))))
25.5%
(*.f32 #s(approx (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) (fma.f32 (*.f32 (*.f32 (*.f32 tau (PI.f32)) tau) #s(literal 1/6 binary32)) x (/.f32 (/.f32 #s(literal -1 binary32) (PI.f32)) x))) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
26.8%
(*.f32 #s(approx (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) (fma.f32 (*.f32 (*.f32 (*.f32 tau (PI.f32)) tau) #s(literal 1/6 binary32)) x (/.f32 #s(literal 1 binary32) (*.f32 (neg.f32 (PI.f32)) x)))) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
27.1%
(*.f32 #s(approx (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) (fma.f32 (*.f32 (*.f32 (*.f32 tau (PI.f32)) tau) #s(literal 1/6 binary32)) x (*.f32 (/.f32 #s(literal -1 binary32) x) (/.f32 #s(literal 1 binary32) (PI.f32))))) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
25.8%
(*.f32 #s(approx (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) (fma.f32 (*.f32 (*.f32 (*.f32 tau (PI.f32)) tau) #s(literal 1/6 binary32)) x (*.f32 (*.f32 (/.f32 #s(literal -1 binary32) (PI.f32)) #s(literal -1 binary32)) (/.f32 #s(literal -1 binary32) x)))) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
27.6%
(*.f32 #s(approx (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) (fma.f32 (*.f32 (*.f32 (*.f32 tau (PI.f32)) tau) #s(literal 1/6 binary32)) x (*.f32 #s(literal 1 binary32) (/.f32 (/.f32 #s(literal -1 binary32) (PI.f32)) x)))) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
26.3%
(*.f32 #s(approx (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) (fma.f32 (*.f32 (*.f32 tau tau) (PI.f32)) (*.f32 #s(literal 1/6 binary32) x) (/.f32 (/.f32 #s(literal -1 binary32) (PI.f32)) x))) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
27.2%
(*.f32 #s(approx (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) (fma.f32 (*.f32 tau (*.f32 (PI.f32) x)) (*.f32 #s(literal 1/6 binary32) tau) (/.f32 (/.f32 #s(literal -1 binary32) (PI.f32)) x))) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
27.0%
(*.f32 #s(approx (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) (fma.f32 (*.f32 #s(literal 1/6 binary32) (*.f32 (*.f32 tau tau) (PI.f32))) x (/.f32 (/.f32 #s(literal -1 binary32) (PI.f32)) x))) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
63.5%
(*.f32 #s(approx (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) (/.f32 (/.f32 #s(literal -1 binary32) (PI.f32)) x)) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
63.6%
(*.f32 #s(approx (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) (/.f32 #s(literal -1 binary32) (*.f32 (PI.f32) x))) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
78.2%
(*.f32 #s(approx (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) (-.f32 (*.f32 (*.f32 #s(literal 1/6 binary32) x) (*.f32 (*.f32 tau tau) (PI.f32))) (/.f32 (/.f32 #s(literal 1 binary32) (PI.f32)) x))) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
4.8%
(*.f32 #s(approx (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) #s(approx (+ (* (* (* (* tau (PI)) tau) 1/6) x) (/ (/ -1 (PI)) x)) (*.f32 (*.f32 (*.f32 tau tau) x) (*.f32 (PI.f32) #s(literal 1/6 binary32))))) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
62.9%
#s(approx (/ (/ (sin (* tau (* (PI) x))) (* (PI) x)) (/ (* tau (* (PI) x)) (sin (* (PI) x)))) (fma.f32 (*.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 (PI.f32) (PI.f32)) #s(literal -1/6 binary32))) (*.f32 x x) #s(literal 1 binary32)))
63.7%
#s(approx (/ (/ (sin (* tau (* (PI) x))) (* (PI) x)) (/ (* tau (* (PI) x)) (sin (* (PI) x)))) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x)))
96.7%
#s(approx (/ (/ (sin (* tau (* (PI) x))) (* (PI) x)) (/ (* tau (* (PI) x)) (sin (* (PI) x)))) (*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 x x))))
62.0%
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32)))
97.0%
#s(approx (* (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (/ (sin (* x (PI))) (* x (PI)))) (*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (PI.f32) (*.f32 (PI.f32) x))) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 tau x))))
62.9%
#s(approx (* (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (/ (sin (* x (PI))) (* x (PI)))) #s(literal 1 binary32))
Compiler

Compiled 2 940 to 1 964 computations (33.2% saved)

simplify142.0ms (1.4%)

Memory
5.7MiB live, 154.4MiB allocated
Algorithm
egg-herbie
Localize:

Found 20 expressions of interest:

NewMetricScoreProgram
cost-diff0
(sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))
cost-diff0
(/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) tau)
cost-diff0
(*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) tau) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
cost-diff128
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) tau) (neg.f32 (sin.f32 (*.f32 (PI.f32) x)))) (*.f32 (*.f32 (PI.f32) x) (*.f32 (neg.f32 (PI.f32)) x)))
cost-diff0
(pow.f32 (cbrt.f32 (PI.f32)) #s(literal 6 binary32))
cost-diff0
(*.f32 (pow.f32 (cbrt.f32 (PI.f32)) #s(literal 6 binary32)) tau)
cost-diff0
#s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (pow.f32 (cbrt.f32 (PI.f32)) #s(literal 6 binary32)) tau))
cost-diff0
(/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (pow.f32 (cbrt.f32 (PI.f32)) #s(literal 6 binary32)) tau)) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
cost-diff0
(PI.f32)
cost-diff0
(pow.f32 (PI.f32) #s(literal -2 binary32))
cost-diff0
(/.f32 (pow.f32 (PI.f32) #s(literal -2 binary32)) tau)
cost-diff0
(*.f32 (/.f32 (pow.f32 (PI.f32) #s(literal -2 binary32)) tau) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
cost-diff0
(*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32)))
cost-diff0
(fma.f32 tau tau #s(literal 1 binary32))
cost-diff0
(fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32))
cost-diff0
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32)))
cost-diff0
(*.f32 x tau)
cost-diff0
(*.f32 (*.f32 x tau) (PI.f32))
cost-diff0
(sin.f32 (*.f32 (*.f32 x tau) (PI.f32)))
cost-diff192
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x tau) (PI.f32))) (*.f32 (*.f32 tau x) (PI.f32))) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
Iterations

Useful iterations: 1 (0.0ms)

IterNodesCost
063387
0107385
1216377
2544377
32351377
44237377
57602377
08079377
Stop Event
iter limit
node limit
iter limit
Calls
Call 1
Inputs
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x tau) (PI.f32))) (*.f32 (*.f32 tau x) (PI.f32))) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
(/.f32 (sin.f32 (*.f32 (*.f32 x tau) (PI.f32))) (*.f32 (*.f32 tau x) (PI.f32)))
(sin.f32 (*.f32 (*.f32 x tau) (PI.f32)))
(*.f32 (*.f32 x tau) (PI.f32))
(*.f32 x tau)
x
tau
(PI.f32)
(*.f32 (*.f32 tau x) (PI.f32))
(*.f32 tau x)
(/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32)))
(sin.f32 (*.f32 x (PI.f32)))
(*.f32 x (PI.f32))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32)))
(fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32))
(fma.f32 tau tau #s(literal 1 binary32))
tau
#s(literal 1 binary32)
(*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32)))
(*.f32 #s(literal -1/6 binary32) (*.f32 x x))
#s(literal -1/6 binary32)
(*.f32 x x)
x
(*.f32 (PI.f32) (PI.f32))
(PI.f32)
(*.f32 (/.f32 (pow.f32 (PI.f32) #s(literal -2 binary32)) tau) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
(/.f32 (pow.f32 (PI.f32) #s(literal -2 binary32)) tau)
(pow.f32 (PI.f32) #s(literal -2 binary32))
(PI.f32)
#s(literal -2 binary32)
tau
#s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau))
(*.f32 (*.f32 (PI.f32) (PI.f32)) tau)
(*.f32 (PI.f32) (PI.f32))
(/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (pow.f32 (cbrt.f32 (PI.f32)) #s(literal 6 binary32)) tau)) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
#s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (pow.f32 (cbrt.f32 (PI.f32)) #s(literal 6 binary32)) tau))
(*.f32 (pow.f32 (cbrt.f32 (PI.f32)) #s(literal 6 binary32)) tau)
(pow.f32 (cbrt.f32 (PI.f32)) #s(literal 6 binary32))
(cbrt.f32 (PI.f32))
(PI.f32)
#s(literal 6 binary32)
tau
(*.f32 (PI.f32) (*.f32 tau (PI.f32)))
(*.f32 tau (PI.f32))
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) tau) (neg.f32 (sin.f32 (*.f32 (PI.f32) x)))) (*.f32 (*.f32 (PI.f32) x) (*.f32 (neg.f32 (PI.f32)) x)))
(*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) tau) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
(/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) tau)
(sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))
(*.f32 tau (*.f32 (PI.f32) x))
tau
(*.f32 (PI.f32) x)
(PI.f32)
x
(neg.f32 (sin.f32 (*.f32 (PI.f32) x)))
(sin.f32 (*.f32 (PI.f32) x))
(*.f32 (*.f32 (PI.f32) x) (*.f32 (neg.f32 (PI.f32)) x))
(*.f32 (neg.f32 (PI.f32)) x)
(neg.f32 (PI.f32))
Outputs
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x tau) (PI.f32))) (*.f32 (*.f32 tau x) (PI.f32))) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
(*.f32 (/.f32 (/.f32 (sin.f32 (*.f32 (*.f32 (PI.f32) x) tau)) (*.f32 (PI.f32) x)) (*.f32 (*.f32 (PI.f32) x) tau)) (sin.f32 (*.f32 (PI.f32) x)))
(/.f32 (sin.f32 (*.f32 (*.f32 x tau) (PI.f32))) (*.f32 (*.f32 tau x) (PI.f32)))
(/.f32 (/.f32 (sin.f32 (*.f32 (*.f32 (PI.f32) x) tau)) (*.f32 (PI.f32) tau)) x)
(sin.f32 (*.f32 (*.f32 x tau) (PI.f32)))
(sin.f32 (*.f32 (*.f32 (PI.f32) x) tau))
(*.f32 (*.f32 x tau) (PI.f32))
(*.f32 (*.f32 (PI.f32) x) tau)
(*.f32 x tau)
(*.f32 tau x)
x
tau
(PI.f32)
(*.f32 (*.f32 tau x) (PI.f32))
(*.f32 (*.f32 (PI.f32) x) tau)
(*.f32 tau x)
(/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32)))
(/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x))
(sin.f32 (*.f32 x (PI.f32)))
(sin.f32 (*.f32 (PI.f32) x))
(*.f32 x (PI.f32))
(*.f32 (PI.f32) x)
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (*.f32 (fma.f32 tau tau #s(literal 1 binary32)) (PI.f32)) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) #s(literal 1 binary32)))
(fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32))
(fma.f32 (*.f32 (fma.f32 tau tau #s(literal 1 binary32)) (PI.f32)) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) #s(literal 1 binary32))
(fma.f32 tau tau #s(literal 1 binary32))
tau
#s(literal 1 binary32)
(*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32)))
(*.f32 (*.f32 (*.f32 (PI.f32) x) #s(literal -1/6 binary32)) (*.f32 (PI.f32) x))
(*.f32 #s(literal -1/6 binary32) (*.f32 x x))
(*.f32 (*.f32 x x) #s(literal -1/6 binary32))
#s(literal -1/6 binary32)
(*.f32 x x)
x
(*.f32 (PI.f32) (PI.f32))
(PI.f32)
(*.f32 (/.f32 (pow.f32 (PI.f32) #s(literal -2 binary32)) tau) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
(*.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) tau) (PI.f32))) (/.f32 (pow.f32 (PI.f32) #s(literal -2 binary32)) tau))
(/.f32 (pow.f32 (PI.f32) #s(literal -2 binary32)) tau)
(pow.f32 (PI.f32) #s(literal -2 binary32))
(PI.f32)
#s(literal -2 binary32)
tau
#s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau))
#s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) tau) (PI.f32)))
(*.f32 (*.f32 (PI.f32) (PI.f32)) tau)
(*.f32 (*.f32 (PI.f32) tau) (PI.f32))
(*.f32 (PI.f32) (PI.f32))
(/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (pow.f32 (cbrt.f32 (PI.f32)) #s(literal 6 binary32)) tau)) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
(/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (pow.f32 (cbrt.f32 (PI.f32)) #s(literal 6 binary32)) tau)) (*.f32 (*.f32 (PI.f32) tau) (PI.f32)))
#s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (pow.f32 (cbrt.f32 (PI.f32)) #s(literal 6 binary32)) tau))
(*.f32 (pow.f32 (cbrt.f32 (PI.f32)) #s(literal 6 binary32)) tau)
(pow.f32 (cbrt.f32 (PI.f32)) #s(literal 6 binary32))
(cbrt.f32 (PI.f32))
(PI.f32)
#s(literal 6 binary32)
tau
(*.f32 (PI.f32) (*.f32 tau (PI.f32)))
(*.f32 (*.f32 (PI.f32) tau) (PI.f32))
(*.f32 tau (PI.f32))
(*.f32 (PI.f32) tau)
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) tau) (neg.f32 (sin.f32 (*.f32 (PI.f32) x)))) (*.f32 (*.f32 (PI.f32) x) (*.f32 (neg.f32 (PI.f32)) x)))
(*.f32 (/.f32 (/.f32 (sin.f32 (*.f32 (*.f32 (PI.f32) x) tau)) (*.f32 (PI.f32) x)) (*.f32 (*.f32 (PI.f32) x) tau)) (sin.f32 (*.f32 (PI.f32) x)))
(*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) tau) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
(*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (neg.f32 tau)) (sin.f32 (*.f32 (*.f32 (PI.f32) x) tau)))
(/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) tau)
(/.f32 (sin.f32 (*.f32 (*.f32 (PI.f32) x) tau)) tau)
(sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))
(sin.f32 (*.f32 (*.f32 (PI.f32) x) tau))
(*.f32 tau (*.f32 (PI.f32) x))
(*.f32 (*.f32 (PI.f32) x) tau)
tau
(*.f32 (PI.f32) x)
(PI.f32)
x
(neg.f32 (sin.f32 (*.f32 (PI.f32) x)))
(sin.f32 (*.f32 (neg.f32 (PI.f32)) x))
(sin.f32 (*.f32 (PI.f32) x))
(*.f32 (*.f32 (PI.f32) x) (*.f32 (neg.f32 (PI.f32)) x))
(*.f32 (*.f32 (neg.f32 x) x) (*.f32 (PI.f32) (PI.f32)))
(*.f32 (neg.f32 (PI.f32)) x)
(neg.f32 (PI.f32))

localize171.0ms (1.7%)

Memory
-10.6MiB live, 236.8MiB allocated
Localize:

Found 20 expressions of interest:

NewMetricScoreProgram
accuracy0.34212875976844204
(*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) tau) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
accuracy0.3708000488422101
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) tau) (neg.f32 (sin.f32 (*.f32 (PI.f32) x)))) (*.f32 (*.f32 (PI.f32) x) (*.f32 (neg.f32 (PI.f32)) x)))
accuracy0.37521767039534126
(sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))
accuracy0.4889450195368841
(*.f32 (*.f32 (PI.f32) x) (*.f32 (neg.f32 (PI.f32)) x))
accuracy0.38671875
(*.f32 (PI.f32) (*.f32 tau (PI.f32)))
accuracy0.4114837890737681
(/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (pow.f32 (cbrt.f32 (PI.f32)) #s(literal 6 binary32)) tau)) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
accuracy1.0
(pow.f32 (cbrt.f32 (PI.f32)) #s(literal 6 binary32))
accuracy11.585818826992083
#s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (pow.f32 (cbrt.f32 (PI.f32)) #s(literal 6 binary32)) tau))
accuracy0.4889450195368841
(*.f32 (/.f32 (pow.f32 (PI.f32) #s(literal -2 binary32)) tau) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
accuracy1.0
(pow.f32 (PI.f32) #s(literal -2 binary32))
accuracy1.0
(*.f32 (PI.f32) (PI.f32))
accuracy11.585818826992083
#s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau))
accuracy1.0
(*.f32 (PI.f32) (PI.f32))
accuracy7.165617149190054
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32)))
accuracy19.68086374491981
(fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32))
accuracy26.431436636823165
(fma.f32 tau tau #s(literal 1 binary32))
accuracy0.37521767039534126
(sin.f32 (*.f32 (*.f32 x tau) (PI.f32)))
accuracy0.3984375
(/.f32 (sin.f32 (*.f32 (*.f32 x tau) (PI.f32))) (*.f32 (*.f32 tau x) (PI.f32)))
accuracy0.4537887695368841
(*.f32 (*.f32 x tau) (PI.f32))
accuracy0.4537887695368841
(*.f32 (*.f32 tau x) (PI.f32))
Samples
131.0ms256×0valid
Compiler

Compiled 648 to 102 computations (84.3% saved)

Precisions
Click to see histograms. Total time spent on operations: 113.0ms
ival-mult: 60.0ms (53.2% of total)
ival-div: 14.0ms (12.4% of total)
ival-sin: 13.0ms (11.5% of total)
ival-sinu: 8.0ms (7.1% of total)
ival-pow: 5.0ms (4.4% of total)
const: 4.0ms (3.5% of total)
ival-add: 2.0ms (1.8% of total)
ival-cbrt: 2.0ms (1.8% of total)
ival-neg: 2.0ms (1.8% of total)
ival-pi: 1.0ms (0.9% of total)
ival-assert: 0.0ms (0% of total)
ival-true: 0.0ms (0% of total)
exact: 0.0ms (0% of total)

series46.0ms (0.5%)

Memory
3.2MiB live, 79.3MiB allocated
Counts
26 → 456
Calls
Call 1
Inputs
#s(alt (*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x tau) (PI.f32))) (*.f32 (*.f32 tau x) (PI.f32))) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32)))) (patch (*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x tau) (PI.f32))) (*.f32 (*.f32 tau x) (PI.f32))) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32)))) #<representation binary32>) () ())
#s(alt (sin.f32 (*.f32 (*.f32 x tau) (PI.f32))) (patch (sin.f32 (*.f32 (*.f32 x tau) (PI.f32))) #<representation binary32>) () ())
#s(alt (*.f32 (*.f32 x tau) (PI.f32)) (patch (*.f32 (*.f32 x tau) (PI.f32)) #<representation binary32>) () ())
#s(alt (*.f32 x tau) (patch (*.f32 x tau) #<representation binary32>) () ())
#s(alt #s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32))) (patch #s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32))) #<representation binary32>) () ())
#s(alt (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32)) (patch (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32)) #<representation binary32>) () ())
#s(alt (fma.f32 tau tau #s(literal 1 binary32)) (patch (fma.f32 tau tau #s(literal 1 binary32)) #<representation binary32>) () ())
#s(alt (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) (patch (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) #<representation binary32>) () ())
#s(alt (*.f32 (/.f32 (pow.f32 (PI.f32) #s(literal -2 binary32)) tau) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau))) (patch (*.f32 (/.f32 (pow.f32 (PI.f32) #s(literal -2 binary32)) tau) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau))) #<representation binary32>) () ())
#s(alt (/.f32 (pow.f32 (PI.f32) #s(literal -2 binary32)) tau) (patch (/.f32 (pow.f32 (PI.f32) #s(literal -2 binary32)) tau) #<representation binary32>) () ())
#s(alt (pow.f32 (PI.f32) #s(literal -2 binary32)) (patch (pow.f32 (PI.f32) #s(literal -2 binary32)) #<representation binary32>) () ())
#s(alt (PI.f32) (patch (PI.f32) #<representation binary32>) () ())
#s(alt (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (pow.f32 (cbrt.f32 (PI.f32)) #s(literal 6 binary32)) tau)) (*.f32 (PI.f32) (*.f32 tau (PI.f32)))) (patch (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (pow.f32 (cbrt.f32 (PI.f32)) #s(literal 6 binary32)) tau)) (*.f32 (PI.f32) (*.f32 tau (PI.f32)))) #<representation binary32>) () ())
#s(alt #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (pow.f32 (cbrt.f32 (PI.f32)) #s(literal 6 binary32)) tau)) (patch #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (pow.f32 (cbrt.f32 (PI.f32)) #s(literal 6 binary32)) tau)) #<representation binary32>) () ())
#s(alt (*.f32 (pow.f32 (cbrt.f32 (PI.f32)) #s(literal 6 binary32)) tau) (patch (*.f32 (pow.f32 (cbrt.f32 (PI.f32)) #s(literal 6 binary32)) tau) #<representation binary32>) () ())
#s(alt (pow.f32 (cbrt.f32 (PI.f32)) #s(literal 6 binary32)) (patch (pow.f32 (cbrt.f32 (PI.f32)) #s(literal 6 binary32)) #<representation binary32>) () ())
#s(alt (/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) tau) (neg.f32 (sin.f32 (*.f32 (PI.f32) x)))) (*.f32 (*.f32 (PI.f32) x) (*.f32 (neg.f32 (PI.f32)) x))) (patch (/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) tau) (neg.f32 (sin.f32 (*.f32 (PI.f32) x)))) (*.f32 (*.f32 (PI.f32) x) (*.f32 (neg.f32 (PI.f32)) x))) #<representation binary32>) () ())
#s(alt (*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) tau) (neg.f32 (sin.f32 (*.f32 (PI.f32) x)))) (patch (*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) tau) (neg.f32 (sin.f32 (*.f32 (PI.f32) x)))) #<representation binary32>) () ())
#s(alt (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) tau) (patch (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) tau) #<representation binary32>) () ())
#s(alt (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (patch (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) #<representation binary32>) () ())
#s(alt (*.f32 (*.f32 tau x) (PI.f32)) (patch (*.f32 (*.f32 tau x) (PI.f32)) #<representation binary32>) () ())
#s(alt (/.f32 (sin.f32 (*.f32 (*.f32 x tau) (PI.f32))) (*.f32 (*.f32 tau x) (PI.f32))) (patch (/.f32 (sin.f32 (*.f32 (*.f32 x tau) (PI.f32))) (*.f32 (*.f32 tau x) (PI.f32))) #<representation binary32>) () ())
#s(alt (*.f32 (PI.f32) (PI.f32)) (patch (*.f32 (PI.f32) (PI.f32)) #<representation binary32>) () ())
#s(alt #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (patch #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) #<representation binary32>) () ())
#s(alt (*.f32 (PI.f32) (*.f32 tau (PI.f32))) (patch (*.f32 (PI.f32) (*.f32 tau (PI.f32))) #<representation binary32>) () ())
#s(alt (*.f32 (*.f32 (PI.f32) x) (*.f32 (neg.f32 (PI.f32)) x)) (patch (*.f32 (*.f32 (PI.f32) x) (*.f32 (neg.f32 (PI.f32)) x)) #<representation binary32>) () ())
Outputs
#s(alt (/ (sin (* x (PI))) (* x (PI))) (taylor 0 tau) (#s(alt (*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x tau) (PI.f32))) (*.f32 (*.f32 tau x) (PI.f32))) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32)))) (patch (*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x tau) (PI.f32))) (*.f32 (*.f32 tau x) (PI.f32))) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32)))) #<representation binary32>) () ())) ())
#s(alt (+ (* -1/6 (* (pow tau 2) (* x (* (PI) (sin (* x (PI))))))) (/ (sin (* x (PI))) (* x (PI)))) (taylor 0 tau) (#s(alt (*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x tau) (PI.f32))) (*.f32 (*.f32 tau x) (PI.f32))) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32)))) (patch (*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x tau) (PI.f32))) (*.f32 (*.f32 tau x) (PI.f32))) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32)))) #<representation binary32>) () ())) ())
#s(alt (+ (* (pow tau 2) (+ (* -1/6 (* x (* (PI) (sin (* x (PI)))))) (* 1/120 (* (pow tau 2) (* (pow x 3) (* (pow (PI) 3) (sin (* x (PI))))))))) (/ (sin (* x (PI))) (* x (PI)))) (taylor 0 tau) (#s(alt (*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x tau) (PI.f32))) (*.f32 (*.f32 tau x) (PI.f32))) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32)))) (patch (*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x tau) (PI.f32))) (*.f32 (*.f32 tau x) (PI.f32))) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32)))) #<representation binary32>) () ())) ())
#s(alt (+ (* (pow tau 2) (+ (* -1/6 (* x (* (PI) (sin (* x (PI)))))) (* (pow tau 2) (+ (* -1/5040 (* (pow tau 2) (* (pow x 5) (* (pow (PI) 5) (sin (* x (PI))))))) (* 1/120 (* (pow x 3) (* (pow (PI) 3) (sin (* x (PI)))))))))) (/ (sin (* x (PI))) (* x (PI)))) (taylor 0 tau) (#s(alt (*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x tau) (PI.f32))) (*.f32 (*.f32 tau x) (PI.f32))) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32)))) (patch (*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x tau) (PI.f32))) (*.f32 (*.f32 tau x) (PI.f32))) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32)))) #<representation binary32>) () ())) ())
#s(alt (* tau (* x (PI))) (taylor 0 tau) (#s(alt (sin.f32 (*.f32 (*.f32 x tau) (PI.f32))) (patch (sin.f32 (*.f32 (*.f32 x tau) (PI.f32))) #<representation binary32>) () ())) ())
#s(alt (* tau (+ (* -1/6 (* (pow tau 2) (* (pow x 3) (pow (PI) 3)))) (* x (PI)))) (taylor 0 tau) (#s(alt (sin.f32 (*.f32 (*.f32 x tau) (PI.f32))) (patch (sin.f32 (*.f32 (*.f32 x tau) (PI.f32))) #<representation binary32>) () ())) ())
#s(alt (* tau (+ (* x (PI)) (* (pow tau 2) (+ (* -1/6 (* (pow x 3) (pow (PI) 3))) (* 1/120 (* (pow tau 2) (* (pow x 5) (pow (PI) 5)))))))) (taylor 0 tau) (#s(alt (sin.f32 (*.f32 (*.f32 x tau) (PI.f32))) (patch (sin.f32 (*.f32 (*.f32 x tau) (PI.f32))) #<representation binary32>) () ())) ())
#s(alt (* tau (+ (* x (PI)) (* (pow tau 2) (+ (* -1/6 (* (pow x 3) (pow (PI) 3))) (* (pow tau 2) (+ (* -1/5040 (* (pow tau 2) (* (pow x 7) (pow (PI) 7)))) (* 1/120 (* (pow x 5) (pow (PI) 5))))))))) (taylor 0 tau) (#s(alt (sin.f32 (*.f32 (*.f32 x tau) (PI.f32))) (patch (sin.f32 (*.f32 (*.f32 x tau) (PI.f32))) #<representation binary32>) () ())) ())
#s(alt (* tau (* x (PI))) (taylor 0 tau) (#s(alt (*.f32 (*.f32 x tau) (PI.f32)) (patch (*.f32 (*.f32 x tau) (PI.f32)) #<representation binary32>) () ())) ())
#s(alt (* tau (* x (PI))) (taylor 0 tau) (#s(alt (*.f32 (*.f32 x tau) (PI.f32)) (patch (*.f32 (*.f32 x tau) (PI.f32)) #<representation binary32>) () ())) ())
#s(alt (* tau (* x (PI))) (taylor 0 tau) (#s(alt (*.f32 (*.f32 x tau) (PI.f32)) (patch (*.f32 (*.f32 x tau) (PI.f32)) #<representation binary32>) () ())) ())
#s(alt (* tau (* x (PI))) (taylor 0 tau) (#s(alt (*.f32 (*.f32 x tau) (PI.f32)) (patch (*.f32 (*.f32 x tau) (PI.f32)) #<representation binary32>) () ())) ())
#s(alt (* tau x) (taylor 0 tau) (#s(alt (*.f32 x tau) (patch (*.f32 x tau) #<representation binary32>) () ())) ())
#s(alt (* tau x) (taylor 0 tau) (#s(alt (*.f32 x tau) (patch (*.f32 x tau) #<representation binary32>) () ())) ())
#s(alt (* tau x) (taylor 0 tau) (#s(alt (*.f32 x tau) (patch (*.f32 x tau) #<representation binary32>) () ())) ())
#s(alt (* tau x) (taylor 0 tau) (#s(alt (*.f32 x tau) (patch (*.f32 x tau) #<representation binary32>) () ())) ())
#s(alt (/ (sin (* x (PI))) (* x (PI))) (taylor 0 tau) (#s(alt #s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32))) (patch #s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32))) #<representation binary32>) () ())) ())
#s(alt (+ (* -1/6 (* (pow tau 2) (* x (* (PI) (sin (* x (PI))))))) (/ (sin (* x (PI))) (* x (PI)))) (taylor 0 tau) (#s(alt #s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32))) (patch #s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32))) #<representation binary32>) () ())) ())
#s(alt (+ (* (pow tau 2) (+ (* -1/6 (* x (* (PI) (sin (* x (PI)))))) (* 1/120 (* (pow tau 2) (* (pow x 3) (* (pow (PI) 3) (sin (* x (PI))))))))) (/ (sin (* x (PI))) (* x (PI)))) (taylor 0 tau) (#s(alt #s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32))) (patch #s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32))) #<representation binary32>) () ())) ())
#s(alt (+ (* (pow tau 2) (+ (* -1/6 (* x (* (PI) (sin (* x (PI)))))) (* (pow tau 2) (+ (* -1/5040 (* (pow tau 2) (* (pow x 5) (* (pow (PI) 5) (sin (* x (PI))))))) (* 1/120 (* (pow x 3) (* (pow (PI) 3) (sin (* x (PI)))))))))) (/ (sin (* x (PI))) (* x (PI)))) (taylor 0 tau) (#s(alt #s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32))) (patch #s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32))) #<representation binary32>) () ())) ())
#s(alt (+ 1 (* -1/6 (* (pow x 2) (pow (PI) 2)))) (taylor 0 tau) (#s(alt (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32)) (patch (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32)) #<representation binary32>) () ())) ())
#s(alt (+ 1 (+ (* -1/6 (* (pow tau 2) (* (pow x 2) (pow (PI) 2)))) (* -1/6 (* (pow x 2) (pow (PI) 2))))) (taylor 0 tau) (#s(alt (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32)) (patch (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32)) #<representation binary32>) () ())) ())
#s(alt (+ 1 (+ (* -1/6 (* (pow tau 2) (* (pow x 2) (pow (PI) 2)))) (* -1/6 (* (pow x 2) (pow (PI) 2))))) (taylor 0 tau) (#s(alt (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32)) (patch (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32)) #<representation binary32>) () ())) ())
#s(alt (+ 1 (+ (* -1/6 (* (pow tau 2) (* (pow x 2) (pow (PI) 2)))) (* -1/6 (* (pow x 2) (pow (PI) 2))))) (taylor 0 tau) (#s(alt (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32)) (patch (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32)) #<representation binary32>) () ())) ())
#s(alt 1 (taylor 0 tau) (#s(alt (fma.f32 tau tau #s(literal 1 binary32)) (patch (fma.f32 tau tau #s(literal 1 binary32)) #<representation binary32>) () ())) ())
#s(alt (+ 1 (pow tau 2)) (taylor 0 tau) (#s(alt (fma.f32 tau tau #s(literal 1 binary32)) (patch (fma.f32 tau tau #s(literal 1 binary32)) #<representation binary32>) () ())) ())
#s(alt (+ 1 (pow tau 2)) (taylor 0 tau) (#s(alt (fma.f32 tau tau #s(literal 1 binary32)) (patch (fma.f32 tau tau #s(literal 1 binary32)) #<representation binary32>) () ())) ())
#s(alt (+ 1 (pow tau 2)) (taylor 0 tau) (#s(alt (fma.f32 tau tau #s(literal 1 binary32)) (patch (fma.f32 tau tau #s(literal 1 binary32)) #<representation binary32>) () ())) ())
#s(alt (/ (sin (* x (PI))) (* x (PI))) (taylor 0 tau) (#s(alt (*.f32 (/.f32 (pow.f32 (PI.f32) #s(literal -2 binary32)) tau) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau))) (patch (*.f32 (/.f32 (pow.f32 (PI.f32) #s(literal -2 binary32)) tau) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau))) #<representation binary32>) () ())) ())
#s(alt (+ (* -1/6 (* (pow tau 2) (* x (* (PI) (sin (* x (PI))))))) (/ (sin (* x (PI))) (* x (PI)))) (taylor 0 tau) (#s(alt (*.f32 (/.f32 (pow.f32 (PI.f32) #s(literal -2 binary32)) tau) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau))) (patch (*.f32 (/.f32 (pow.f32 (PI.f32) #s(literal -2 binary32)) tau) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau))) #<representation binary32>) () ())) ())
#s(alt (+ (* (pow tau 2) (+ (* -1/6 (* x (* (PI) (sin (* x (PI)))))) (* 1/120 (* (pow tau 2) (* (pow x 3) (* (pow (PI) 3) (sin (* x (PI))))))))) (/ (sin (* x (PI))) (* x (PI)))) (taylor 0 tau) (#s(alt (*.f32 (/.f32 (pow.f32 (PI.f32) #s(literal -2 binary32)) tau) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau))) (patch (*.f32 (/.f32 (pow.f32 (PI.f32) #s(literal -2 binary32)) tau) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau))) #<representation binary32>) () ())) ())
#s(alt (+ (* (pow tau 2) (+ (* -1/6 (* x (* (PI) (sin (* x (PI)))))) (* (pow tau 2) (+ (* -1/5040 (* (pow tau 2) (* (pow x 5) (* (pow (PI) 5) (sin (* x (PI))))))) (* 1/120 (* (pow x 3) (* (pow (PI) 3) (sin (* x (PI)))))))))) (/ (sin (* x (PI))) (* x (PI)))) (taylor 0 tau) (#s(alt (*.f32 (/.f32 (pow.f32 (PI.f32) #s(literal -2 binary32)) tau) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau))) (patch (*.f32 (/.f32 (pow.f32 (PI.f32) #s(literal -2 binary32)) tau) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau))) #<representation binary32>) () ())) ())
#s(alt (/ 1 (* tau (pow (PI) 2))) (taylor 0 tau) (#s(alt (/.f32 (pow.f32 (PI.f32) #s(literal -2 binary32)) tau) (patch (/.f32 (pow.f32 (PI.f32) #s(literal -2 binary32)) tau) #<representation binary32>) () ())) ())
#s(alt (/ 1 (* tau (pow (PI) 2))) (taylor 0 tau) (#s(alt (/.f32 (pow.f32 (PI.f32) #s(literal -2 binary32)) tau) (patch (/.f32 (pow.f32 (PI.f32) #s(literal -2 binary32)) tau) #<representation binary32>) () ())) ())
#s(alt (/ 1 (* tau (pow (PI) 2))) (taylor 0 tau) (#s(alt (/.f32 (pow.f32 (PI.f32) #s(literal -2 binary32)) tau) (patch (/.f32 (pow.f32 (PI.f32) #s(literal -2 binary32)) tau) #<representation binary32>) () ())) ())
#s(alt (/ 1 (* tau (pow (PI) 2))) (taylor 0 tau) (#s(alt (/.f32 (pow.f32 (PI.f32) #s(literal -2 binary32)) tau) (patch (/.f32 (pow.f32 (PI.f32) #s(literal -2 binary32)) tau) #<representation binary32>) () ())) ())
#s(alt (/ (sin (* x (PI))) (* x (PI))) (taylor 0 tau) (#s(alt (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (pow.f32 (cbrt.f32 (PI.f32)) #s(literal 6 binary32)) tau)) (*.f32 (PI.f32) (*.f32 tau (PI.f32)))) (patch (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (pow.f32 (cbrt.f32 (PI.f32)) #s(literal 6 binary32)) tau)) (*.f32 (PI.f32) (*.f32 tau (PI.f32)))) #<representation binary32>) () ())) ())
#s(alt (+ (* -1/6 (* (pow tau 2) (* x (* (PI) (sin (* x (PI))))))) (/ (sin (* x (PI))) (* x (PI)))) (taylor 0 tau) (#s(alt (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (pow.f32 (cbrt.f32 (PI.f32)) #s(literal 6 binary32)) tau)) (*.f32 (PI.f32) (*.f32 tau (PI.f32)))) (patch (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (pow.f32 (cbrt.f32 (PI.f32)) #s(literal 6 binary32)) tau)) (*.f32 (PI.f32) (*.f32 tau (PI.f32)))) #<representation binary32>) () ())) ())
#s(alt (+ (* (pow tau 2) (+ (* -1/6 (* x (* (PI) (sin (* x (PI)))))) (* 1/120 (* (pow tau 2) (* (pow x 3) (* (pow (PI) 3) (sin (* x (PI))))))))) (/ (sin (* x (PI))) (* x (PI)))) (taylor 0 tau) (#s(alt (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (pow.f32 (cbrt.f32 (PI.f32)) #s(literal 6 binary32)) tau)) (*.f32 (PI.f32) (*.f32 tau (PI.f32)))) (patch (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (pow.f32 (cbrt.f32 (PI.f32)) #s(literal 6 binary32)) tau)) (*.f32 (PI.f32) (*.f32 tau (PI.f32)))) #<representation binary32>) () ())) ())
#s(alt (+ (* (pow tau 2) (+ (* -1/6 (* x (* (PI) (sin (* x (PI)))))) (* (pow tau 2) (+ (* -1/5040 (* (pow tau 2) (* (pow x 5) (* (pow (PI) 5) (sin (* x (PI))))))) (* 1/120 (* (pow x 3) (* (pow (PI) 3) (sin (* x (PI)))))))))) (/ (sin (* x (PI))) (* x (PI)))) (taylor 0 tau) (#s(alt (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (pow.f32 (cbrt.f32 (PI.f32)) #s(literal 6 binary32)) tau)) (*.f32 (PI.f32) (*.f32 tau (PI.f32)))) (patch (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (pow.f32 (cbrt.f32 (PI.f32)) #s(literal 6 binary32)) tau)) (*.f32 (PI.f32) (*.f32 tau (PI.f32)))) #<representation binary32>) () ())) ())
#s(alt (/ (* tau (* (PI) (sin (* x (PI))))) x) (taylor 0 tau) (#s(alt #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (pow.f32 (cbrt.f32 (PI.f32)) #s(literal 6 binary32)) tau)) (patch #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (pow.f32 (cbrt.f32 (PI.f32)) #s(literal 6 binary32)) tau)) #<representation binary32>) () ())) ())
#s(alt (* tau (+ (* -1/6 (* (pow tau 2) (* x (* (pow (PI) 3) (sin (* x (PI))))))) (/ (* (PI) (sin (* x (PI)))) x))) (taylor 0 tau) (#s(alt #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (pow.f32 (cbrt.f32 (PI.f32)) #s(literal 6 binary32)) tau)) (patch #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (pow.f32 (cbrt.f32 (PI.f32)) #s(literal 6 binary32)) tau)) #<representation binary32>) () ())) ())
#s(alt (* tau (+ (* (pow tau 2) (+ (* -1/6 (* x (* (pow (PI) 3) (sin (* x (PI)))))) (* 1/120 (* (pow tau 2) (* (pow x 3) (* (pow (PI) 5) (sin (* x (PI))))))))) (/ (* (PI) (sin (* x (PI)))) x))) (taylor 0 tau) (#s(alt #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (pow.f32 (cbrt.f32 (PI.f32)) #s(literal 6 binary32)) tau)) (patch #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (pow.f32 (cbrt.f32 (PI.f32)) #s(literal 6 binary32)) tau)) #<representation binary32>) () ())) ())
#s(alt (* tau (+ (* (pow tau 2) (+ (* -1/6 (* x (* (pow (PI) 3) (sin (* x (PI)))))) (* (pow tau 2) (+ (* -1/5040 (* (pow tau 2) (* (pow x 5) (* (pow (PI) 7) (sin (* x (PI))))))) (* 1/120 (* (pow x 3) (* (pow (PI) 5) (sin (* x (PI)))))))))) (/ (* (PI) (sin (* x (PI)))) x))) (taylor 0 tau) (#s(alt #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (pow.f32 (cbrt.f32 (PI.f32)) #s(literal 6 binary32)) tau)) (patch #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (pow.f32 (cbrt.f32 (PI.f32)) #s(literal 6 binary32)) tau)) #<representation binary32>) () ())) ())
#s(alt (* tau (pow (PI) 2)) (taylor 0 tau) (#s(alt (*.f32 (pow.f32 (cbrt.f32 (PI.f32)) #s(literal 6 binary32)) tau) (patch (*.f32 (pow.f32 (cbrt.f32 (PI.f32)) #s(literal 6 binary32)) tau) #<representation binary32>) () ())) ())
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#s(alt (/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (pow x 2)) (taylor -inf x) (#s(alt #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (patch #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) #<representation binary32>) () ())) ())
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#s(alt (/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (pow x 2)) (taylor -inf x) (#s(alt #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (patch #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) #<representation binary32>) () ())) ())
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Calls

6 calls:

TimeVariablePointExpression
7.0ms
tau
@inf
((* (/ (sin (* (* x tau) (PI))) (* (* tau x) (PI))) (/ (sin (* x (PI))) (* x (PI)))) (sin (* (* x tau) (PI))) (* (* x tau) (PI)) (* x tau) (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (+ (* (+ (* tau tau) 1) (* (* -1/6 (* x x)) (* (PI) (PI)))) 1) (+ (* tau tau) 1) (* (* -1/6 (* x x)) (* (PI) (PI))) (* (/ (pow (PI) -2) tau) (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x))) (/ (pow (PI) -2) tau) (pow (PI) -2) (PI) (/ (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (* (PI) (* tau (PI)))) (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (* (pow (cbrt (PI)) 6) tau) (pow (cbrt (PI)) 6) (/ (* (/ (sin (* tau (* (PI) x))) tau) (neg (sin (* (PI) x)))) (* (* (PI) x) (* (neg (PI)) x))) (* (/ (sin (* tau (* (PI) x))) tau) (neg (sin (* (PI) x)))) (/ (sin (* tau (* (PI) x))) tau) (sin (* tau (* (PI) x))) (* (* tau x) (PI)) (/ (sin (* (* x tau) (PI))) (* (* tau x) (PI))) (* (PI) (PI)) (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (* (PI) (* tau (PI))) (* (* (PI) x) (* (neg (PI)) x)))
5.0ms
tau
@-inf
((* (/ (sin (* (* x tau) (PI))) (* (* tau x) (PI))) (/ (sin (* x (PI))) (* x (PI)))) (sin (* (* x tau) (PI))) (* (* x tau) (PI)) (* x tau) (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (+ (* (+ (* tau tau) 1) (* (* -1/6 (* x x)) (* (PI) (PI)))) 1) (+ (* tau tau) 1) (* (* -1/6 (* x x)) (* (PI) (PI))) (* (/ (pow (PI) -2) tau) (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x))) (/ (pow (PI) -2) tau) (pow (PI) -2) (PI) (/ (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (* (PI) (* tau (PI)))) (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (* (pow (cbrt (PI)) 6) tau) (pow (cbrt (PI)) 6) (/ (* (/ (sin (* tau (* (PI) x))) tau) (neg (sin (* (PI) x)))) (* (* (PI) x) (* (neg (PI)) x))) (* (/ (sin (* tau (* (PI) x))) tau) (neg (sin (* (PI) x)))) (/ (sin (* tau (* (PI) x))) tau) (sin (* tau (* (PI) x))) (* (* tau x) (PI)) (/ (sin (* (* x tau) (PI))) (* (* tau x) (PI))) (* (PI) (PI)) (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (* (PI) (* tau (PI))) (* (* (PI) x) (* (neg (PI)) x)))
4.0ms
x
@-inf
((* (/ (sin (* (* x tau) (PI))) (* (* tau x) (PI))) (/ (sin (* x (PI))) (* x (PI)))) (sin (* (* x tau) (PI))) (* (* x tau) (PI)) (* x tau) (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (+ (* (+ (* tau tau) 1) (* (* -1/6 (* x x)) (* (PI) (PI)))) 1) (+ (* tau tau) 1) (* (* -1/6 (* x x)) (* (PI) (PI))) (* (/ (pow (PI) -2) tau) (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x))) (/ (pow (PI) -2) tau) (pow (PI) -2) (PI) (/ (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (* (PI) (* tau (PI)))) (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (* (pow (cbrt (PI)) 6) tau) (pow (cbrt (PI)) 6) (/ (* (/ (sin (* tau (* (PI) x))) tau) (neg (sin (* (PI) x)))) (* (* (PI) x) (* (neg (PI)) x))) (* (/ (sin (* tau (* (PI) x))) tau) (neg (sin (* (PI) x)))) (/ (sin (* tau (* (PI) x))) tau) (sin (* tau (* (PI) x))) (* (* tau x) (PI)) (/ (sin (* (* x tau) (PI))) (* (* tau x) (PI))) (* (PI) (PI)) (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (* (PI) (* tau (PI))) (* (* (PI) x) (* (neg (PI)) x)))
4.0ms
x
@inf
((* (/ (sin (* (* x tau) (PI))) (* (* tau x) (PI))) (/ (sin (* x (PI))) (* x (PI)))) (sin (* (* x tau) (PI))) (* (* x tau) (PI)) (* x tau) (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (+ (* (+ (* tau tau) 1) (* (* -1/6 (* x x)) (* (PI) (PI)))) 1) (+ (* tau tau) 1) (* (* -1/6 (* x x)) (* (PI) (PI))) (* (/ (pow (PI) -2) tau) (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x))) (/ (pow (PI) -2) tau) (pow (PI) -2) (PI) (/ (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (* (PI) (* tau (PI)))) (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (* (pow (cbrt (PI)) 6) tau) (pow (cbrt (PI)) 6) (/ (* (/ (sin (* tau (* (PI) x))) tau) (neg (sin (* (PI) x)))) (* (* (PI) x) (* (neg (PI)) x))) (* (/ (sin (* tau (* (PI) x))) tau) (neg (sin (* (PI) x)))) (/ (sin (* tau (* (PI) x))) tau) (sin (* tau (* (PI) x))) (* (* tau x) (PI)) (/ (sin (* (* x tau) (PI))) (* (* tau x) (PI))) (* (PI) (PI)) (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (* (PI) (* tau (PI))) (* (* (PI) x) (* (neg (PI)) x)))
4.0ms
tau
@0
((* (/ (sin (* (* x tau) (PI))) (* (* tau x) (PI))) (/ (sin (* x (PI))) (* x (PI)))) (sin (* (* x tau) (PI))) (* (* x tau) (PI)) (* x tau) (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (+ (* (+ (* tau tau) 1) (* (* -1/6 (* x x)) (* (PI) (PI)))) 1) (+ (* tau tau) 1) (* (* -1/6 (* x x)) (* (PI) (PI))) (* (/ (pow (PI) -2) tau) (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x))) (/ (pow (PI) -2) tau) (pow (PI) -2) (PI) (/ (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (* (PI) (* tau (PI)))) (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (* (pow (cbrt (PI)) 6) tau) (pow (cbrt (PI)) 6) (/ (* (/ (sin (* tau (* (PI) x))) tau) (neg (sin (* (PI) x)))) (* (* (PI) x) (* (neg (PI)) x))) (* (/ (sin (* tau (* (PI) x))) tau) (neg (sin (* (PI) x)))) (/ (sin (* tau (* (PI) x))) tau) (sin (* tau (* (PI) x))) (* (* tau x) (PI)) (/ (sin (* (* x tau) (PI))) (* (* tau x) (PI))) (* (PI) (PI)) (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (* (PI) (* tau (PI))) (* (* (PI) x) (* (neg (PI)) x)))

simplify250.0ms (2.5%)

Memory
-5.8MiB live, 301.5MiB allocated
Algorithm
egg-herbie
Iterations

Useful iterations: 0 (0.0ms)

IterNodesCost
03647468
112307153
249316907
082076662
Stop Event
iter limit
node limit
Counts
456 → 456
Calls
Call 1
Inputs
(/ (sin (* x (PI))) (* x (PI)))
(+ (* -1/6 (* (pow tau 2) (* x (* (PI) (sin (* x (PI))))))) (/ (sin (* x (PI))) (* x (PI))))
(+ (* (pow tau 2) (+ (* -1/6 (* x (* (PI) (sin (* x (PI)))))) (* 1/120 (* (pow tau 2) (* (pow x 3) (* (pow (PI) 3) (sin (* x (PI))))))))) (/ (sin (* x (PI))) (* x (PI))))
(+ (* (pow tau 2) (+ (* -1/6 (* x (* (PI) (sin (* x (PI)))))) (* (pow tau 2) (+ (* -1/5040 (* (pow tau 2) (* (pow x 5) (* (pow (PI) 5) (sin (* x (PI))))))) (* 1/120 (* (pow x 3) (* (pow (PI) 3) (sin (* x (PI)))))))))) (/ (sin (* x (PI))) (* x (PI))))
(* tau (* x (PI)))
(* tau (+ (* -1/6 (* (pow tau 2) (* (pow x 3) (pow (PI) 3)))) (* x (PI))))
(* tau (+ (* x (PI)) (* (pow tau 2) (+ (* -1/6 (* (pow x 3) (pow (PI) 3))) (* 1/120 (* (pow tau 2) (* (pow x 5) (pow (PI) 5))))))))
(* tau (+ (* x (PI)) (* (pow tau 2) (+ (* -1/6 (* (pow x 3) (pow (PI) 3))) (* (pow tau 2) (+ (* -1/5040 (* (pow tau 2) (* (pow x 7) (pow (PI) 7)))) (* 1/120 (* (pow x 5) (pow (PI) 5)))))))))
(* tau (* x (PI)))
(* tau (* x (PI)))
(* tau (* x (PI)))
(* tau (* x (PI)))
(* tau x)
(* tau x)
(* tau x)
(* tau x)
(/ (sin (* x (PI))) (* x (PI)))
(+ (* -1/6 (* (pow tau 2) (* x (* (PI) (sin (* x (PI))))))) (/ (sin (* x (PI))) (* x (PI))))
(+ (* (pow tau 2) (+ (* -1/6 (* x (* (PI) (sin (* x (PI)))))) (* 1/120 (* (pow tau 2) (* (pow x 3) (* (pow (PI) 3) (sin (* x (PI))))))))) (/ (sin (* x (PI))) (* x (PI))))
(+ (* (pow tau 2) (+ (* -1/6 (* x (* (PI) (sin (* x (PI)))))) (* (pow tau 2) (+ (* -1/5040 (* (pow tau 2) (* (pow x 5) (* (pow (PI) 5) (sin (* x (PI))))))) (* 1/120 (* (pow x 3) (* (pow (PI) 3) (sin (* x (PI)))))))))) (/ (sin (* x (PI))) (* x (PI))))
(+ 1 (* -1/6 (* (pow x 2) (pow (PI) 2))))
(+ 1 (+ (* -1/6 (* (pow tau 2) (* (pow x 2) (pow (PI) 2)))) (* -1/6 (* (pow x 2) (pow (PI) 2)))))
(+ 1 (+ (* -1/6 (* (pow tau 2) (* (pow x 2) (pow (PI) 2)))) (* -1/6 (* (pow x 2) (pow (PI) 2)))))
(+ 1 (+ (* -1/6 (* (pow tau 2) (* (pow x 2) (pow (PI) 2)))) (* -1/6 (* (pow x 2) (pow (PI) 2)))))
1
(+ 1 (pow tau 2))
(+ 1 (pow tau 2))
(+ 1 (pow tau 2))
(/ (sin (* x (PI))) (* x (PI)))
(+ (* -1/6 (* (pow tau 2) (* x (* (PI) (sin (* x (PI))))))) (/ (sin (* x (PI))) (* x (PI))))
(+ (* (pow tau 2) (+ (* -1/6 (* x (* (PI) (sin (* x (PI)))))) (* 1/120 (* (pow tau 2) (* (pow x 3) (* (pow (PI) 3) (sin (* x (PI))))))))) (/ (sin (* x (PI))) (* x (PI))))
(+ (* (pow tau 2) (+ (* -1/6 (* x (* (PI) (sin (* x (PI)))))) (* (pow tau 2) (+ (* -1/5040 (* (pow tau 2) (* (pow x 5) (* (pow (PI) 5) (sin (* x (PI))))))) (* 1/120 (* (pow x 3) (* (pow (PI) 3) (sin (* x (PI)))))))))) (/ (sin (* x (PI))) (* x (PI))))
(/ 1 (* tau (pow (PI) 2)))
(/ 1 (* tau (pow (PI) 2)))
(/ 1 (* tau (pow (PI) 2)))
(/ 1 (* tau (pow (PI) 2)))
(/ (sin (* x (PI))) (* x (PI)))
(+ (* -1/6 (* (pow tau 2) (* x (* (PI) (sin (* x (PI))))))) (/ (sin (* x (PI))) (* x (PI))))
(+ (* (pow tau 2) (+ (* -1/6 (* x (* (PI) (sin (* x (PI)))))) (* 1/120 (* (pow tau 2) (* (pow x 3) (* (pow (PI) 3) (sin (* x (PI))))))))) (/ (sin (* x (PI))) (* x (PI))))
(+ (* (pow tau 2) (+ (* -1/6 (* x (* (PI) (sin (* x (PI)))))) (* (pow tau 2) (+ (* -1/5040 (* (pow tau 2) (* (pow x 5) (* (pow (PI) 5) (sin (* x (PI))))))) (* 1/120 (* (pow x 3) (* (pow (PI) 3) (sin (* x (PI)))))))))) (/ (sin (* x (PI))) (* x (PI))))
(/ (* tau (* (PI) (sin (* x (PI))))) x)
(* tau (+ (* -1/6 (* (pow tau 2) (* x (* (pow (PI) 3) (sin (* x (PI))))))) (/ (* (PI) (sin (* x (PI)))) x)))
(* tau (+ (* (pow tau 2) (+ (* -1/6 (* x (* (pow (PI) 3) (sin (* x (PI)))))) (* 1/120 (* (pow tau 2) (* (pow x 3) (* (pow (PI) 5) (sin (* x (PI))))))))) (/ (* (PI) (sin (* x (PI)))) x)))
(* tau (+ (* (pow tau 2) (+ (* -1/6 (* x (* (pow (PI) 3) (sin (* x (PI)))))) (* (pow tau 2) (+ (* -1/5040 (* (pow tau 2) (* (pow x 5) (* (pow (PI) 7) (sin (* x (PI))))))) (* 1/120 (* (pow x 3) (* (pow (PI) 5) (sin (* x (PI)))))))))) (/ (* (PI) (sin (* x (PI)))) x)))
(* tau (pow (PI) 2))
(* tau (pow (PI) 2))
(* tau (pow (PI) 2))
(* tau (pow (PI) 2))
(/ (sin (* x (PI))) (* x (PI)))
(+ (* -1/6 (* (pow tau 2) (* x (* (PI) (sin (* x (PI))))))) (/ (sin (* x (PI))) (* x (PI))))
(+ (* (pow tau 2) (+ (* -1/6 (* x (* (PI) (sin (* x (PI)))))) (* 1/120 (* (pow tau 2) (* (pow x 3) (* (pow (PI) 3) (sin (* x (PI))))))))) (/ (sin (* x (PI))) (* x (PI))))
(+ (* (pow tau 2) (+ (* -1/6 (* x (* (PI) (sin (* x (PI)))))) (* (pow tau 2) (+ (* -1/5040 (* (pow tau 2) (* (pow x 5) (* (pow (PI) 5) (sin (* x (PI))))))) (* 1/120 (* (pow x 3) (* (pow (PI) 3) (sin (* x (PI)))))))))) (/ (sin (* x (PI))) (* x (PI))))
(* -1 (* x (* (PI) (sin (* x (PI))))))
(+ (* -1 (* x (* (PI) (sin (* x (PI)))))) (* 1/6 (* (pow tau 2) (* (pow x 3) (* (pow (PI) 3) (sin (* x (PI))))))))
(+ (* -1 (* x (* (PI) (sin (* x (PI)))))) (* (pow tau 2) (+ (* -1/120 (* (pow tau 2) (* (pow x 5) (* (pow (PI) 5) (sin (* x (PI))))))) (* 1/6 (* (pow x 3) (* (pow (PI) 3) (sin (* x (PI)))))))))
(+ (* -1 (* x (* (PI) (sin (* x (PI)))))) (* (pow tau 2) (+ (* 1/6 (* (pow x 3) (* (pow (PI) 3) (sin (* x (PI)))))) (* (pow tau 2) (+ (* -1/120 (* (pow x 5) (* (pow (PI) 5) (sin (* x (PI)))))) (* 1/5040 (* (pow tau 2) (* (pow x 7) (* (pow (PI) 7) (sin (* x (PI))))))))))))
(* x (PI))
(+ (* -1/6 (* (pow tau 2) (* (pow x 3) (pow (PI) 3)))) (* x (PI)))
(+ (* x (PI)) (* (pow tau 2) (+ (* -1/6 (* (pow x 3) (pow (PI) 3))) (* 1/120 (* (pow tau 2) (* (pow x 5) (pow (PI) 5)))))))
(+ (* x (PI)) (* (pow tau 2) (+ (* -1/6 (* (pow x 3) (pow (PI) 3))) (* (pow tau 2) (+ (* -1/5040 (* (pow tau 2) (* (pow x 7) (pow (PI) 7)))) (* 1/120 (* (pow x 5) (pow (PI) 5))))))))
(* tau (* x (PI)))
(* tau (+ (* -1/6 (* (pow tau 2) (* (pow x 3) (pow (PI) 3)))) (* x (PI))))
(* tau (+ (* x (PI)) (* (pow tau 2) (+ (* -1/6 (* (pow x 3) (pow (PI) 3))) (* 1/120 (* (pow tau 2) (* (pow x 5) (pow (PI) 5))))))))
(* tau (+ (* x (PI)) (* (pow tau 2) (+ (* -1/6 (* (pow x 3) (pow (PI) 3))) (* (pow tau 2) (+ (* -1/5040 (* (pow tau 2) (* (pow x 7) (pow (PI) 7)))) (* 1/120 (* (pow x 5) (pow (PI) 5)))))))))
(* tau (* x (PI)))
(* tau (* x (PI)))
(* tau (* x (PI)))
(* tau (* x (PI)))
1
(+ 1 (* -1/6 (* (pow tau 2) (* (pow x 2) (pow (PI) 2)))))
(+ 1 (* (pow tau 2) (+ (* -1/6 (* (pow x 2) (pow (PI) 2))) (* 1/120 (* (pow tau 2) (* (pow x 4) (pow (PI) 4)))))))
(+ 1 (* (pow tau 2) (+ (* -1/6 (* (pow x 2) (pow (PI) 2))) (* (pow tau 2) (+ (* -1/5040 (* (pow tau 2) (* (pow x 6) (pow (PI) 6)))) (* 1/120 (* (pow x 4) (pow (PI) 4))))))))
(/ (* tau (* (PI) (sin (* x (PI))))) x)
(* tau (+ (* -1/6 (* (pow tau 2) (* x (* (pow (PI) 3) (sin (* x (PI))))))) (/ (* (PI) (sin (* x (PI)))) x)))
(* tau (+ (* (pow tau 2) (+ (* -1/6 (* x (* (pow (PI) 3) (sin (* x (PI)))))) (* 1/120 (* (pow tau 2) (* (pow x 3) (* (pow (PI) 5) (sin (* x (PI))))))))) (/ (* (PI) (sin (* x (PI)))) x)))
(* tau (+ (* (pow tau 2) (+ (* -1/6 (* x (* (pow (PI) 3) (sin (* x (PI)))))) (* (pow tau 2) (+ (* -1/5040 (* (pow tau 2) (* (pow x 5) (* (pow (PI) 7) (sin (* x (PI))))))) (* 1/120 (* (pow x 3) (* (pow (PI) 5) (sin (* x (PI)))))))))) (/ (* (PI) (sin (* x (PI)))) x)))
(* tau (pow (PI) 2))
(* tau (pow (PI) 2))
(* tau (pow (PI) 2))
(* tau (pow (PI) 2))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(sin (* tau (* x (PI))))
(sin (* tau (* x (PI))))
(sin (* tau (* x (PI))))
(sin (* tau (* x (PI))))
(* tau (* x (PI)))
(* tau (* x (PI)))
(* tau (* x (PI)))
(* tau (* x (PI)))
(* tau x)
(* tau x)
(* tau x)
(* tau x)
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(* -1/6 (* (pow tau 2) (* (pow x 2) (pow (PI) 2))))
(* (pow tau 2) (+ (* -1/6 (* (pow x 2) (pow (PI) 2))) (+ (* -1/6 (/ (* (pow x 2) (pow (PI) 2)) (pow tau 2))) (/ 1 (pow tau 2)))))
(* (pow tau 2) (+ (* -1/6 (* (pow x 2) (pow (PI) 2))) (+ (* -1/6 (/ (* (pow x 2) (pow (PI) 2)) (pow tau 2))) (/ 1 (pow tau 2)))))
(* (pow tau 2) (+ (* -1/6 (* (pow x 2) (pow (PI) 2))) (+ (* -1/6 (/ (* (pow x 2) (pow (PI) 2)) (pow tau 2))) (/ 1 (pow tau 2)))))
(pow tau 2)
(* (pow tau 2) (+ 1 (/ 1 (pow tau 2))))
(* (pow tau 2) (+ 1 (/ 1 (pow tau 2))))
(* (pow tau 2) (+ 1 (/ 1 (pow tau 2))))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(/ 1 (* tau (pow (PI) 2)))
(/ 1 (* tau (pow (PI) 2)))
(/ 1 (* tau (pow (PI) 2)))
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(sin (* tau (* x (PI))))
(* tau (* x (PI)))
(* tau (* x (PI)))
(* tau (* x (PI)))
(* tau (* x (PI)))
(* tau x)
(* tau x)
(* tau x)
(* tau x)
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(* -1/6 (* (pow x 2) (* (pow (PI) 2) (+ 1 (pow tau 2)))))
(* (pow x 2) (+ (* -1/6 (* (pow (PI) 2) (+ 1 (pow tau 2)))) (/ 1 (pow x 2))))
(* (pow x 2) (+ (* -1/6 (* (pow (PI) 2) (+ 1 (pow tau 2)))) (/ 1 (pow x 2))))
(* (pow x 2) (+ (* -1/6 (* (pow (PI) 2) (+ 1 (pow tau 2)))) (/ 1 (pow x 2))))
(* -1/6 (* (pow x 2) (pow (PI) 2)))
(* -1/6 (* (pow x 2) (pow (PI) 2)))
(* -1/6 (* (pow x 2) (pow (PI) 2)))
(* -1/6 (* (pow x 2) (pow (PI) 2)))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (pow x 2))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (pow x 2))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (pow x 2))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (pow x 2))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(* -1 (/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) tau))
(* -1 (/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) tau))
(* -1 (/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) tau))
(* -1 (/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) tau))
(/ (sin (* tau (* x (PI)))) tau)
(/ (sin (* tau (* x (PI)))) tau)
(/ (sin (* tau (* x (PI)))) tau)
(/ (sin (* tau (* x (PI)))) tau)
(sin (* tau (* x (PI))))
(sin (* tau (* x (PI))))
(sin (* tau (* x (PI))))
(sin (* tau (* x (PI))))
(* tau (* x (PI)))
(* tau (* x (PI)))
(* tau (* x (PI)))
(* tau (* x (PI)))
(/ (sin (* tau (* x (PI)))) (* tau (* x (PI))))
(/ (sin (* tau (* x (PI)))) (* tau (* x (PI))))
(/ (sin (* tau (* x (PI)))) (* tau (* x (PI))))
(/ (sin (* tau (* x (PI)))) (* tau (* x (PI))))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (pow x 2))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (pow x 2))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (pow x 2))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (pow x 2))
(* -1 (* (pow x 2) (pow (PI) 2)))
(* -1 (* (pow x 2) (pow (PI) 2)))
(* -1 (* (pow x 2) (pow (PI) 2)))
(* -1 (* (pow x 2) (pow (PI) 2)))
Outputs
(/ (sin (* x (PI))) (* x (PI)))
(/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x))
(+ (* -1/6 (* (pow tau 2) (* x (* (PI) (sin (* x (PI))))))) (/ (sin (* x (PI))) (* x (PI))))
(fma.f32 (*.f32 (*.f32 tau tau) #s(literal -1/6 binary32)) (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x)) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x)))
(+ (* (pow tau 2) (+ (* -1/6 (* x (* (PI) (sin (* x (PI)))))) (* 1/120 (* (pow tau 2) (* (pow x 3) (* (pow (PI) 3) (sin (* x (PI))))))))) (/ (sin (* x (PI))) (* x (PI))))
(fma.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (fma.f32 (*.f32 (*.f32 #s(literal 1/120 binary32) tau) tau) (*.f32 (pow.f32 (PI.f32) #s(literal 3 binary32)) (pow.f32 x #s(literal 3 binary32))) (*.f32 (*.f32 #s(literal -1/6 binary32) x) (PI.f32)))) (*.f32 tau tau) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x)))
(+ (* (pow tau 2) (+ (* -1/6 (* x (* (PI) (sin (* x (PI)))))) (* (pow tau 2) (+ (* -1/5040 (* (pow tau 2) (* (pow x 5) (* (pow (PI) 5) (sin (* x (PI))))))) (* 1/120 (* (pow x 3) (* (pow (PI) 3) (sin (* x (PI)))))))))) (/ (sin (* x (PI))) (* x (PI))))
(fma.f32 (pow.f32 tau #s(literal 4 binary32)) (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (fma.f32 (*.f32 (pow.f32 x #s(literal 3 binary32)) #s(literal 1/120 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32)) (*.f32 (*.f32 #s(literal -1/5040 binary32) (*.f32 tau tau)) (*.f32 (pow.f32 (PI.f32) #s(literal 5 binary32)) (pow.f32 x #s(literal 5 binary32)))))) (fma.f32 (*.f32 (*.f32 tau tau) #s(literal -1/6 binary32)) (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x)) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x))))
(* tau (* x (PI)))
(*.f32 tau (*.f32 (PI.f32) x))
(* tau (+ (* -1/6 (* (pow tau 2) (* (pow x 3) (pow (PI) 3)))) (* x (PI))))
(*.f32 (*.f32 (fma.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 tau (*.f32 (*.f32 x x) tau))) (pow.f32 (PI.f32) #s(literal 3 binary32)) (PI.f32)) x) tau)
(* tau (+ (* x (PI)) (* (pow tau 2) (+ (* -1/6 (* (pow x 3) (pow (PI) 3))) (* 1/120 (* (pow tau 2) (* (pow x 5) (pow (PI) 5))))))))
(fma.f32 (pow.f32 tau #s(literal 3 binary32)) (fma.f32 (*.f32 (*.f32 #s(literal 1/120 binary32) tau) tau) (*.f32 (pow.f32 (PI.f32) #s(literal 5 binary32)) (pow.f32 x #s(literal 5 binary32))) (*.f32 (*.f32 #s(literal -1/6 binary32) (pow.f32 (PI.f32) #s(literal 3 binary32))) (pow.f32 x #s(literal 3 binary32)))) (*.f32 tau (*.f32 (PI.f32) x)))
(* tau (+ (* x (PI)) (* (pow tau 2) (+ (* -1/6 (* (pow x 3) (pow (PI) 3))) (* (pow tau 2) (+ (* -1/5040 (* (pow tau 2) (* (pow x 7) (pow (PI) 7)))) (* 1/120 (* (pow x 5) (pow (PI) 5)))))))))
(fma.f32 (pow.f32 tau #s(literal 3 binary32)) (fma.f32 (*.f32 #s(literal -1/6 binary32) (pow.f32 (PI.f32) #s(literal 3 binary32))) (pow.f32 x #s(literal 3 binary32)) (*.f32 (fma.f32 (*.f32 #s(literal 1/120 binary32) (pow.f32 (PI.f32) #s(literal 5 binary32))) (pow.f32 x #s(literal 5 binary32)) (*.f32 (*.f32 #s(literal -1/5040 binary32) (*.f32 tau tau)) (*.f32 (pow.f32 (PI.f32) #s(literal 7 binary32)) (pow.f32 x #s(literal 7 binary32))))) (*.f32 tau tau))) (*.f32 tau (*.f32 (PI.f32) x)))
(* tau (* x (PI)))
(*.f32 tau (*.f32 (PI.f32) x))
(* tau (* x (PI)))
(*.f32 tau (*.f32 (PI.f32) x))
(* tau (* x (PI)))
(*.f32 tau (*.f32 (PI.f32) x))
(* tau (* x (PI)))
(*.f32 tau (*.f32 (PI.f32) x))
(* tau x)
(*.f32 tau x)
(* tau x)
(*.f32 tau x)
(* tau x)
(*.f32 tau x)
(* tau x)
(*.f32 tau x)
(/ (sin (* x (PI))) (* x (PI)))
(/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x))
(+ (* -1/6 (* (pow tau 2) (* x (* (PI) (sin (* x (PI))))))) (/ (sin (* x (PI))) (* x (PI))))
(fma.f32 (*.f32 (*.f32 tau tau) #s(literal -1/6 binary32)) (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x)) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x)))
(+ (* (pow tau 2) (+ (* -1/6 (* x (* (PI) (sin (* x (PI)))))) (* 1/120 (* (pow tau 2) (* (pow x 3) (* (pow (PI) 3) (sin (* x (PI))))))))) (/ (sin (* x (PI))) (* x (PI))))
(fma.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (fma.f32 (*.f32 (*.f32 #s(literal 1/120 binary32) tau) tau) (*.f32 (pow.f32 (PI.f32) #s(literal 3 binary32)) (pow.f32 x #s(literal 3 binary32))) (*.f32 (*.f32 #s(literal -1/6 binary32) x) (PI.f32)))) (*.f32 tau tau) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x)))
(+ (* (pow tau 2) (+ (* -1/6 (* x (* (PI) (sin (* x (PI)))))) (* (pow tau 2) (+ (* -1/5040 (* (pow tau 2) (* (pow x 5) (* (pow (PI) 5) (sin (* x (PI))))))) (* 1/120 (* (pow x 3) (* (pow (PI) 3) (sin (* x (PI)))))))))) (/ (sin (* x (PI))) (* x (PI))))
(fma.f32 (pow.f32 tau #s(literal 4 binary32)) (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (fma.f32 (*.f32 (pow.f32 x #s(literal 3 binary32)) #s(literal 1/120 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32)) (*.f32 (*.f32 #s(literal -1/5040 binary32) (*.f32 tau tau)) (*.f32 (pow.f32 (PI.f32) #s(literal 5 binary32)) (pow.f32 x #s(literal 5 binary32)))))) (fma.f32 (*.f32 (*.f32 tau tau) #s(literal -1/6 binary32)) (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x)) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x))))
(+ 1 (* -1/6 (* (pow x 2) (pow (PI) 2))))
(fma.f32 (*.f32 (*.f32 (*.f32 #s(literal -1/6 binary32) x) x) (PI.f32)) (PI.f32) #s(literal 1 binary32))
(+ 1 (+ (* -1/6 (* (pow tau 2) (* (pow x 2) (pow (PI) 2)))) (* -1/6 (* (pow x 2) (pow (PI) 2)))))
(fma.f32 (*.f32 (*.f32 #s(literal -1/6 binary32) x) x) (*.f32 (*.f32 (fma.f32 tau tau #s(literal 1 binary32)) (PI.f32)) (PI.f32)) #s(literal 1 binary32))
(+ 1 (+ (* -1/6 (* (pow tau 2) (* (pow x 2) (pow (PI) 2)))) (* -1/6 (* (pow x 2) (pow (PI) 2)))))
(fma.f32 (*.f32 (*.f32 #s(literal -1/6 binary32) x) x) (*.f32 (*.f32 (fma.f32 tau tau #s(literal 1 binary32)) (PI.f32)) (PI.f32)) #s(literal 1 binary32))
(+ 1 (+ (* -1/6 (* (pow tau 2) (* (pow x 2) (pow (PI) 2)))) (* -1/6 (* (pow x 2) (pow (PI) 2)))))
(fma.f32 (*.f32 (*.f32 #s(literal -1/6 binary32) x) x) (*.f32 (*.f32 (fma.f32 tau tau #s(literal 1 binary32)) (PI.f32)) (PI.f32)) #s(literal 1 binary32))
1
#s(literal 1 binary32)
(+ 1 (pow tau 2))
(fma.f32 tau tau #s(literal 1 binary32))
(+ 1 (pow tau 2))
(fma.f32 tau tau #s(literal 1 binary32))
(+ 1 (pow tau 2))
(fma.f32 tau tau #s(literal 1 binary32))
(/ (sin (* x (PI))) (* x (PI)))
(/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x))
(+ (* -1/6 (* (pow tau 2) (* x (* (PI) (sin (* x (PI))))))) (/ (sin (* x (PI))) (* x (PI))))
(fma.f32 (*.f32 (*.f32 tau tau) #s(literal -1/6 binary32)) (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x)) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x)))
(+ (* (pow tau 2) (+ (* -1/6 (* x (* (PI) (sin (* x (PI)))))) (* 1/120 (* (pow tau 2) (* (pow x 3) (* (pow (PI) 3) (sin (* x (PI))))))))) (/ (sin (* x (PI))) (* x (PI))))
(fma.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (fma.f32 (*.f32 (*.f32 #s(literal 1/120 binary32) tau) tau) (*.f32 (pow.f32 (PI.f32) #s(literal 3 binary32)) (pow.f32 x #s(literal 3 binary32))) (*.f32 (*.f32 #s(literal -1/6 binary32) x) (PI.f32)))) (*.f32 tau tau) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x)))
(+ (* (pow tau 2) (+ (* -1/6 (* x (* (PI) (sin (* x (PI)))))) (* (pow tau 2) (+ (* -1/5040 (* (pow tau 2) (* (pow x 5) (* (pow (PI) 5) (sin (* x (PI))))))) (* 1/120 (* (pow x 3) (* (pow (PI) 3) (sin (* x (PI)))))))))) (/ (sin (* x (PI))) (* x (PI))))
(fma.f32 (pow.f32 tau #s(literal 4 binary32)) (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (fma.f32 (*.f32 (pow.f32 x #s(literal 3 binary32)) #s(literal 1/120 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32)) (*.f32 (*.f32 #s(literal -1/5040 binary32) (*.f32 tau tau)) (*.f32 (pow.f32 (PI.f32) #s(literal 5 binary32)) (pow.f32 x #s(literal 5 binary32)))))) (fma.f32 (*.f32 (*.f32 tau tau) #s(literal -1/6 binary32)) (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x)) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x))))
(/ 1 (* tau (pow (PI) 2)))
(/.f32 #s(literal 1 binary32) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau))
(/ 1 (* tau (pow (PI) 2)))
(/.f32 #s(literal 1 binary32) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau))
(/ 1 (* tau (pow (PI) 2)))
(/.f32 #s(literal 1 binary32) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau))
(/ 1 (* tau (pow (PI) 2)))
(/.f32 #s(literal 1 binary32) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau))
(/ (sin (* x (PI))) (* x (PI)))
(/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x))
(+ (* -1/6 (* (pow tau 2) (* x (* (PI) (sin (* x (PI))))))) (/ (sin (* x (PI))) (* x (PI))))
(fma.f32 (*.f32 (*.f32 tau tau) #s(literal -1/6 binary32)) (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x)) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x)))
(+ (* (pow tau 2) (+ (* -1/6 (* x (* (PI) (sin (* x (PI)))))) (* 1/120 (* (pow tau 2) (* (pow x 3) (* (pow (PI) 3) (sin (* x (PI))))))))) (/ (sin (* x (PI))) (* x (PI))))
(fma.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (fma.f32 (*.f32 (*.f32 #s(literal 1/120 binary32) tau) tau) (*.f32 (pow.f32 (PI.f32) #s(literal 3 binary32)) (pow.f32 x #s(literal 3 binary32))) (*.f32 (*.f32 #s(literal -1/6 binary32) x) (PI.f32)))) (*.f32 tau tau) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x)))
(+ (* (pow tau 2) (+ (* -1/6 (* x (* (PI) (sin (* x (PI)))))) (* (pow tau 2) (+ (* -1/5040 (* (pow tau 2) (* (pow x 5) (* (pow (PI) 5) (sin (* x (PI))))))) (* 1/120 (* (pow x 3) (* (pow (PI) 3) (sin (* x (PI)))))))))) (/ (sin (* x (PI))) (* x (PI))))
(fma.f32 (pow.f32 tau #s(literal 4 binary32)) (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (fma.f32 (*.f32 (pow.f32 x #s(literal 3 binary32)) #s(literal 1/120 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32)) (*.f32 (*.f32 #s(literal -1/5040 binary32) (*.f32 tau tau)) (*.f32 (pow.f32 (PI.f32) #s(literal 5 binary32)) (pow.f32 x #s(literal 5 binary32)))))) (fma.f32 (*.f32 (*.f32 tau tau) #s(literal -1/6 binary32)) (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x)) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x))))
(/ (* tau (* (PI) (sin (* x (PI))))) x)
(*.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (/.f32 (PI.f32) x)) tau)
(* tau (+ (* -1/6 (* (pow tau 2) (* x (* (pow (PI) 3) (sin (* x (PI))))))) (/ (* (PI) (sin (* x (PI)))) x)))
(*.f32 (fma.f32 (*.f32 (*.f32 (*.f32 tau tau) #s(literal -1/6 binary32)) x) (*.f32 (pow.f32 (PI.f32) #s(literal 3 binary32)) (sin.f32 (*.f32 (PI.f32) x))) (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (/.f32 (PI.f32) x))) tau)
(* tau (+ (* (pow tau 2) (+ (* -1/6 (* x (* (pow (PI) 3) (sin (* x (PI)))))) (* 1/120 (* (pow tau 2) (* (pow x 3) (* (pow (PI) 5) (sin (* x (PI))))))))) (/ (* (PI) (sin (* x (PI)))) x)))
(*.f32 (fma.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (fma.f32 (*.f32 (*.f32 #s(literal 1/120 binary32) tau) tau) (*.f32 (pow.f32 (PI.f32) #s(literal 5 binary32)) (pow.f32 x #s(literal 3 binary32))) (*.f32 (*.f32 #s(literal -1/6 binary32) x) (pow.f32 (PI.f32) #s(literal 3 binary32))))) (*.f32 tau tau) (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (/.f32 (PI.f32) x))) tau)
(* tau (+ (* (pow tau 2) (+ (* -1/6 (* x (* (pow (PI) 3) (sin (* x (PI)))))) (* (pow tau 2) (+ (* -1/5040 (* (pow tau 2) (* (pow x 5) (* (pow (PI) 7) (sin (* x (PI))))))) (* 1/120 (* (pow x 3) (* (pow (PI) 5) (sin (* x (PI)))))))))) (/ (* (PI) (sin (* x (PI)))) x)))
(*.f32 (fma.f32 (pow.f32 tau #s(literal 4 binary32)) (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (fma.f32 (*.f32 (pow.f32 x #s(literal 3 binary32)) #s(literal 1/120 binary32)) (pow.f32 (PI.f32) #s(literal 5 binary32)) (*.f32 (*.f32 #s(literal -1/5040 binary32) (*.f32 tau tau)) (*.f32 (pow.f32 (PI.f32) #s(literal 7 binary32)) (pow.f32 x #s(literal 5 binary32)))))) (fma.f32 (*.f32 (*.f32 (*.f32 tau tau) #s(literal -1/6 binary32)) x) (*.f32 (pow.f32 (PI.f32) #s(literal 3 binary32)) (sin.f32 (*.f32 (PI.f32) x))) (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (/.f32 (PI.f32) x)))) tau)
(* tau (pow (PI) 2))
(*.f32 (*.f32 (PI.f32) (PI.f32)) tau)
(* tau (pow (PI) 2))
(*.f32 (*.f32 (PI.f32) (PI.f32)) tau)
(* tau (pow (PI) 2))
(*.f32 (*.f32 (PI.f32) (PI.f32)) tau)
(* tau (pow (PI) 2))
(*.f32 (*.f32 (PI.f32) (PI.f32)) tau)
(/ (sin (* x (PI))) (* x (PI)))
(/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x))
(+ (* -1/6 (* (pow tau 2) (* x (* (PI) (sin (* x (PI))))))) (/ (sin (* x (PI))) (* x (PI))))
(fma.f32 (*.f32 (*.f32 tau tau) #s(literal -1/6 binary32)) (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x)) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x)))
(+ (* (pow tau 2) (+ (* -1/6 (* x (* (PI) (sin (* x (PI)))))) (* 1/120 (* (pow tau 2) (* (pow x 3) (* (pow (PI) 3) (sin (* x (PI))))))))) (/ (sin (* x (PI))) (* x (PI))))
(fma.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (fma.f32 (*.f32 (*.f32 #s(literal 1/120 binary32) tau) tau) (*.f32 (pow.f32 (PI.f32) #s(literal 3 binary32)) (pow.f32 x #s(literal 3 binary32))) (*.f32 (*.f32 #s(literal -1/6 binary32) x) (PI.f32)))) (*.f32 tau tau) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x)))
(+ (* (pow tau 2) (+ (* -1/6 (* x (* (PI) (sin (* x (PI)))))) (* (pow tau 2) (+ (* -1/5040 (* (pow tau 2) (* (pow x 5) (* (pow (PI) 5) (sin (* x (PI))))))) (* 1/120 (* (pow x 3) (* (pow (PI) 3) (sin (* x (PI)))))))))) (/ (sin (* x (PI))) (* x (PI))))
(fma.f32 (pow.f32 tau #s(literal 4 binary32)) (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (fma.f32 (*.f32 (pow.f32 x #s(literal 3 binary32)) #s(literal 1/120 binary32)) (pow.f32 (PI.f32) #s(literal 3 binary32)) (*.f32 (*.f32 #s(literal -1/5040 binary32) (*.f32 tau tau)) (*.f32 (pow.f32 (PI.f32) #s(literal 5 binary32)) (pow.f32 x #s(literal 5 binary32)))))) (fma.f32 (*.f32 (*.f32 tau tau) #s(literal -1/6 binary32)) (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x)) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x))))
(* -1 (* x (* (PI) (sin (* x (PI))))))
(*.f32 (*.f32 (neg.f32 x) (PI.f32)) (sin.f32 (*.f32 (PI.f32) x)))
(+ (* -1 (* x (* (PI) (sin (* x (PI)))))) (* 1/6 (* (pow tau 2) (* (pow x 3) (* (pow (PI) 3) (sin (* x (PI))))))))
(*.f32 (sin.f32 (*.f32 (PI.f32) x)) (-.f32 (*.f32 (*.f32 #s(literal 1/6 binary32) (*.f32 tau tau)) (*.f32 (pow.f32 (PI.f32) #s(literal 3 binary32)) (pow.f32 x #s(literal 3 binary32)))) (*.f32 (PI.f32) x)))
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(* tau (+ (* x (PI)) (* (pow tau 2) (+ (* -1/6 (* (pow x 3) (pow (PI) 3))) (* (pow tau 2) (+ (* -1/5040 (* (pow tau 2) (* (pow x 7) (pow (PI) 7)))) (* 1/120 (* (pow x 5) (pow (PI) 5)))))))))
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1
#s(literal 1 binary32)
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(* tau (pow (PI) 2))
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(* tau (pow (PI) 2))
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(*.f32 tau (*.f32 (PI.f32) x))
(* tau x)
(*.f32 tau x)
(* tau x)
(*.f32 tau x)
(* tau x)
(*.f32 tau x)
(* tau x)
(*.f32 tau x)
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#s(literal 1 binary32)
(+ 1 (* (pow x 2) (+ (* -1/6 (* (pow tau 2) (pow (PI) 2))) (* -1/6 (pow (PI) 2)))))
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(+ 1 (* (pow x 2) (+ (* -1/6 (* (pow tau 2) (pow (PI) 2))) (+ (* -1/6 (pow (PI) 2)) (* (pow x 2) (+ (* 1/120 (* (pow tau 4) (pow (PI) 4))) (+ (* 1/120 (pow (PI) 4)) (+ (* 1/36 (* (pow tau 2) (pow (PI) 4))) (* (pow x 2) (+ (* -1/720 (* (pow tau 2) (pow (PI) 6))) (+ (* -1/720 (* (pow tau 4) (pow (PI) 6))) (+ (* -1/5040 (* (pow tau 6) (pow (PI) 6))) (* -1/5040 (pow (PI) 6))))))))))))))
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#s(literal 1 binary32)
(+ 1 (* -1/6 (* (pow x 2) (* (pow (PI) 2) (+ 1 (pow tau 2))))))
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(+ 1 (* -1/6 (* (pow x 2) (* (pow (PI) 2) (+ 1 (pow tau 2))))))
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(+ 1 (* -1/6 (* (pow x 2) (* (pow (PI) 2) (+ 1 (pow tau 2))))))
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(* -1/6 (* (pow x 2) (pow (PI) 2)))
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(* -1/6 (* (pow x 2) (pow (PI) 2)))
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(* -1/6 (* (pow x 2) (pow (PI) 2)))
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(* -1/6 (* (pow x 2) (pow (PI) 2)))
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#s(literal 1 binary32)
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(+ 1 (* (pow x 2) (+ (* -1/6 (* (pow tau 2) (pow (PI) 2))) (+ (* -1/6 (pow (PI) 2)) (* (pow x 2) (+ (* 1/120 (* (pow tau 4) (pow (PI) 4))) (+ (* 1/120 (pow (PI) 4)) (* 1/36 (* (pow tau 2) (pow (PI) 4))))))))))
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(+ 1 (* (pow x 2) (+ (* -1/6 (* (pow tau 2) (pow (PI) 2))) (+ (* -1/6 (pow (PI) 2)) (* (pow x 2) (+ (* 1/120 (* (pow tau 4) (pow (PI) 4))) (+ (* 1/120 (pow (PI) 4)) (+ (* 1/36 (* (pow tau 2) (pow (PI) 4))) (* (pow x 2) (+ (* -1/720 (* (pow tau 2) (pow (PI) 6))) (+ (* -1/720 (* (pow tau 4) (pow (PI) 6))) (+ (* -1/5040 (* (pow tau 6) (pow (PI) 6))) (* -1/5040 (pow (PI) 6))))))))))))))
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#s(literal 1 binary32)
(+ 1 (* (pow x 2) (+ (* -1/6 (* (pow tau 2) (pow (PI) 2))) (* -1/6 (pow (PI) 2)))))
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(+ 1 (* (pow x 2) (+ (* -1/6 (* (pow tau 2) (pow (PI) 2))) (+ (* -1/6 (pow (PI) 2)) (* (pow x 2) (+ (* 1/120 (* (pow tau 4) (pow (PI) 4))) (+ (* 1/120 (pow (PI) 4)) (* 1/36 (* (pow tau 2) (pow (PI) 4))))))))))
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(+ 1 (* (pow x 2) (+ (* -1/6 (* (pow tau 2) (pow (PI) 2))) (+ (* -1/6 (pow (PI) 2)) (* (pow x 2) (+ (* 1/120 (* (pow tau 4) (pow (PI) 4))) (+ (* 1/120 (pow (PI) 4)) (+ (* 1/36 (* (pow tau 2) (pow (PI) 4))) (* (pow x 2) (+ (* -1/720 (* (pow tau 2) (pow (PI) 6))) (+ (* -1/720 (* (pow tau 4) (pow (PI) 6))) (+ (* -1/5040 (* (pow tau 6) (pow (PI) 6))) (* -1/5040 (pow (PI) 6))))))))))))))
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(* tau (pow (PI) 2))
(*.f32 (*.f32 (PI.f32) (PI.f32)) tau)
(+ (* tau (pow (PI) 2)) (* (pow x 2) (+ (* -1/6 (* tau (pow (PI) 4))) (* -1/6 (* (pow tau 3) (pow (PI) 4))))))
(fma.f32 (*.f32 (*.f32 (pow.f32 (PI.f32) #s(literal 4 binary32)) #s(literal -1/6 binary32)) (+.f32 (pow.f32 tau #s(literal 3 binary32)) tau)) (*.f32 x x) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau))
(+ (* tau (pow (PI) 2)) (* (pow x 2) (+ (* -1/6 (* tau (pow (PI) 4))) (+ (* -1/6 (* (pow tau 3) (pow (PI) 4))) (* (pow x 2) (+ (* 1/120 (* tau (pow (PI) 6))) (+ (* 1/120 (* (pow tau 5) (pow (PI) 6))) (* 1/36 (* (pow tau 3) (pow (PI) 6))))))))))
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(+ (* tau (pow (PI) 2)) (* (pow x 2) (+ (* -1/6 (* tau (pow (PI) 4))) (+ (* -1/6 (* (pow tau 3) (pow (PI) 4))) (* (pow x 2) (+ (* 1/120 (* tau (pow (PI) 6))) (+ (* 1/120 (* (pow tau 5) (pow (PI) 6))) (+ (* 1/36 (* (pow tau 3) (pow (PI) 6))) (* (pow x 2) (+ (* -1/720 (* (pow tau 3) (pow (PI) 8))) (+ (* -1/720 (* (pow tau 5) (pow (PI) 8))) (+ (* -1/5040 (* tau (pow (PI) 8))) (* -1/5040 (* (pow tau 7) (pow (PI) 8)))))))))))))))
(fma.f32 (fma.f32 (*.f32 (pow.f32 (PI.f32) #s(literal 4 binary32)) (+.f32 (pow.f32 tau #s(literal 3 binary32)) tau)) #s(literal -1/6 binary32) (*.f32 (fma.f32 (*.f32 (pow.f32 (PI.f32) #s(literal 8 binary32)) (fma.f32 #s(literal -1/720 binary32) (+.f32 (pow.f32 tau #s(literal 3 binary32)) (pow.f32 tau #s(literal 5 binary32))) (*.f32 #s(literal -1/5040 binary32) (+.f32 (pow.f32 tau #s(literal 7 binary32)) tau)))) (*.f32 x x) (*.f32 (pow.f32 (PI.f32) #s(literal 6 binary32)) (fma.f32 #s(literal 1/120 binary32) (+.f32 tau (pow.f32 tau #s(literal 5 binary32))) (*.f32 (pow.f32 tau #s(literal 3 binary32)) #s(literal 1/36 binary32))))) (*.f32 x x))) (*.f32 x x) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau))
1
#s(literal 1 binary32)
(+ 1 (* (pow x 2) (+ (* -1/6 (* (pow tau 2) (pow (PI) 2))) (* -1/6 (pow (PI) 2)))))
(fma.f32 (*.f32 (*.f32 #s(literal -1/6 binary32) x) x) (*.f32 (*.f32 (fma.f32 tau tau #s(literal 1 binary32)) (PI.f32)) (PI.f32)) #s(literal 1 binary32))
(+ 1 (* (pow x 2) (+ (* -1/6 (* (pow tau 2) (pow (PI) 2))) (+ (* -1/6 (pow (PI) 2)) (* (pow x 2) (+ (* 1/120 (* (pow tau 4) (pow (PI) 4))) (+ (* 1/120 (pow (PI) 4)) (* 1/36 (* (pow tau 2) (pow (PI) 4))))))))))
(fma.f32 (fma.f32 (*.f32 #s(literal -1/6 binary32) (fma.f32 tau tau #s(literal 1 binary32))) (*.f32 (PI.f32) (PI.f32)) (*.f32 (*.f32 (pow.f32 (PI.f32) #s(literal 4 binary32)) (fma.f32 (*.f32 #s(literal 1/36 binary32) tau) tau (fma.f32 (pow.f32 tau #s(literal 4 binary32)) #s(literal 1/120 binary32) #s(literal 1/120 binary32)))) (*.f32 x x))) (*.f32 x x) #s(literal 1 binary32))
(+ 1 (* (pow x 2) (+ (* -1/6 (* (pow tau 2) (pow (PI) 2))) (+ (* -1/6 (pow (PI) 2)) (* (pow x 2) (+ (* 1/120 (* (pow tau 4) (pow (PI) 4))) (+ (* 1/120 (pow (PI) 4)) (+ (* 1/36 (* (pow tau 2) (pow (PI) 4))) (* (pow x 2) (+ (* -1/720 (* (pow tau 2) (pow (PI) 6))) (+ (* -1/720 (* (pow tau 4) (pow (PI) 6))) (+ (* -1/5040 (* (pow tau 6) (pow (PI) 6))) (* -1/5040 (pow (PI) 6))))))))))))))
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(* -1 (* (pow x 2) (pow (PI) 2)))
(*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) x) (neg.f32 x))
(* (pow x 2) (+ (* -1 (* (pow x 2) (+ (* -1/6 (* (pow tau 2) (pow (PI) 4))) (* -1/6 (pow (PI) 4))))) (* -1 (pow (PI) 2))))
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(* (pow x 2) (+ (* -1 (pow (PI) 2)) (* (pow x 2) (+ (* -1 (* (pow x 2) (+ (* 1/120 (* (pow tau 4) (pow (PI) 6))) (+ (* 1/120 (pow (PI) 6)) (* 1/36 (* (pow tau 2) (pow (PI) 6))))))) (* -1 (+ (* -1/6 (* (pow tau 2) (pow (PI) 4))) (* -1/6 (pow (PI) 4))))))))
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(* (pow x 2) (+ (* -1 (pow (PI) 2)) (* (pow x 2) (+ (* -1 (+ (* -1/6 (* (pow tau 2) (pow (PI) 4))) (* -1/6 (pow (PI) 4)))) (* (pow x 2) (+ (* -1 (* (pow x 2) (+ (* -1/720 (* (pow tau 2) (pow (PI) 8))) (+ (* -1/720 (* (pow tau 4) (pow (PI) 8))) (+ (* -1/5040 (* (pow tau 6) (pow (PI) 8))) (* -1/5040 (pow (PI) 8))))))) (* -1 (+ (* 1/120 (* (pow tau 4) (pow (PI) 6))) (+ (* 1/120 (pow (PI) 6)) (* 1/36 (* (pow tau 2) (pow (PI) 6))))))))))))
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(* x (PI))
(*.f32 (PI.f32) x)
(* x (+ (PI) (* -1/6 (* (pow tau 2) (* (pow x 2) (pow (PI) 3))))))
(*.f32 (fma.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 tau (*.f32 (*.f32 x x) tau))) (pow.f32 (PI.f32) #s(literal 3 binary32)) (PI.f32)) x)
(* x (+ (PI) (* (pow x 2) (+ (* -1/6 (* (pow tau 2) (pow (PI) 3))) (* 1/120 (* (pow tau 4) (* (pow x 2) (pow (PI) 5))))))))
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(* x (+ (PI) (* (pow x 2) (+ (* -1/6 (* (pow tau 2) (pow (PI) 3))) (* (pow x 2) (+ (* -1/5040 (* (pow tau 6) (* (pow x 2) (pow (PI) 7)))) (* 1/120 (* (pow tau 4) (pow (PI) 5)))))))))
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(* tau (* x (PI)))
(*.f32 tau (*.f32 (PI.f32) x))
(* x (+ (* -1/6 (* (pow tau 3) (* (pow x 2) (pow (PI) 3)))) (* tau (PI))))
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(* x (+ (* tau (PI)) (* (pow x 2) (+ (* -1/6 (* (pow tau 3) (pow (PI) 3))) (* 1/120 (* (pow tau 5) (* (pow x 2) (pow (PI) 5))))))))
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(* x (+ (* tau (PI)) (* (pow x 2) (+ (* -1/6 (* (pow tau 3) (pow (PI) 3))) (* (pow x 2) (+ (* -1/5040 (* (pow tau 7) (* (pow x 2) (pow (PI) 7)))) (* 1/120 (* (pow tau 5) (pow (PI) 5)))))))))
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(* tau (* x (PI)))
(*.f32 tau (*.f32 (PI.f32) x))
(* tau (* x (PI)))
(*.f32 tau (*.f32 (PI.f32) x))
(* tau (* x (PI)))
(*.f32 tau (*.f32 (PI.f32) x))
(* tau (* x (PI)))
(*.f32 tau (*.f32 (PI.f32) x))
1
#s(literal 1 binary32)
(+ 1 (* -1/6 (* (pow tau 2) (* (pow x 2) (pow (PI) 2)))))
(fma.f32 (*.f32 (*.f32 #s(literal -1/6 binary32) x) x) (*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) tau) tau) #s(literal 1 binary32))
(+ 1 (* (pow x 2) (+ (* -1/6 (* (pow tau 2) (pow (PI) 2))) (* 1/120 (* (pow tau 4) (* (pow x 2) (pow (PI) 4)))))))
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(* -1/6 (* (pow x 2) (* (pow (PI) 2) (+ 1 (pow tau 2)))))
(*.f32 (*.f32 (*.f32 #s(literal -1/6 binary32) x) x) (*.f32 (*.f32 (fma.f32 tau tau #s(literal 1 binary32)) (PI.f32)) (PI.f32)))
(* (pow x 2) (+ (* -1/6 (* (pow (PI) 2) (+ 1 (pow tau 2)))) (/ 1 (pow x 2))))
(fma.f32 (*.f32 (*.f32 #s(literal -1/6 binary32) x) x) (*.f32 (*.f32 (fma.f32 tau tau #s(literal 1 binary32)) (PI.f32)) (PI.f32)) #s(literal 1 binary32))
(* (pow x 2) (+ (* -1/6 (* (pow (PI) 2) (+ 1 (pow tau 2)))) (/ 1 (pow x 2))))
(fma.f32 (*.f32 (*.f32 #s(literal -1/6 binary32) x) x) (*.f32 (*.f32 (fma.f32 tau tau #s(literal 1 binary32)) (PI.f32)) (PI.f32)) #s(literal 1 binary32))
(* (pow x 2) (+ (* -1/6 (* (pow (PI) 2) (+ 1 (pow tau 2)))) (/ 1 (pow x 2))))
(fma.f32 (*.f32 (*.f32 #s(literal -1/6 binary32) x) x) (*.f32 (*.f32 (fma.f32 tau tau #s(literal 1 binary32)) (PI.f32)) (PI.f32)) #s(literal 1 binary32))
(* -1/6 (* (pow x 2) (pow (PI) 2)))
(*.f32 (*.f32 (*.f32 (*.f32 #s(literal -1/6 binary32) x) x) (PI.f32)) (PI.f32))
(* -1/6 (* (pow x 2) (pow (PI) 2)))
(*.f32 (*.f32 (*.f32 (*.f32 #s(literal -1/6 binary32) x) x) (PI.f32)) (PI.f32))
(* -1/6 (* (pow x 2) (pow (PI) 2)))
(*.f32 (*.f32 (*.f32 (*.f32 #s(literal -1/6 binary32) x) x) (PI.f32)) (PI.f32))
(* -1/6 (* (pow x 2) (pow (PI) 2)))
(*.f32 (*.f32 (*.f32 (*.f32 #s(literal -1/6 binary32) x) x) (PI.f32)) (PI.f32))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 x x)))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 x x)))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 x x)))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 x x)))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 x x)))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 x x)))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 x x)))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 x x)))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (pow x 2))
(*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 x x)) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (pow x 2))
(*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 x x)) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (pow x 2))
(*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 x x)) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (pow x 2))
(*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 x x)) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 x x)))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 x x)))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 x x)))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (* tau (* (pow x 2) (pow (PI) 2))))
(*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 x x)))
(* -1 (/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) tau))
(*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (neg.f32 tau)) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))))
(* -1 (/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) tau))
(*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (neg.f32 tau)) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))))
(* -1 (/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) tau))
(*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (neg.f32 tau)) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))))
(* -1 (/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) tau))
(*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (neg.f32 tau)) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))))
(/ (sin (* tau (* x (PI)))) tau)
(/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) tau)
(/ (sin (* tau (* x (PI)))) tau)
(/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) tau)
(/ (sin (* tau (* x (PI)))) tau)
(/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) tau)
(/ (sin (* tau (* x (PI)))) tau)
(/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) tau)
(sin (* tau (* x (PI))))
(sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))
(sin (* tau (* x (PI))))
(sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))
(sin (* tau (* x (PI))))
(sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))
(sin (* tau (* x (PI))))
(sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))
(* tau (* x (PI)))
(*.f32 tau (*.f32 (PI.f32) x))
(* tau (* x (PI)))
(*.f32 tau (*.f32 (PI.f32) x))
(* tau (* x (PI)))
(*.f32 tau (*.f32 (PI.f32) x))
(* tau (* x (PI)))
(*.f32 tau (*.f32 (PI.f32) x))
(/ (sin (* tau (* x (PI)))) (* tau (* x (PI))))
(/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 tau (*.f32 (PI.f32) x)))
(/ (sin (* tau (* x (PI)))) (* tau (* x (PI))))
(/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 tau (*.f32 (PI.f32) x)))
(/ (sin (* tau (* x (PI)))) (* tau (* x (PI))))
(/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 tau (*.f32 (PI.f32) x)))
(/ (sin (* tau (* x (PI)))) (* tau (* x (PI))))
(/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 tau (*.f32 (PI.f32) x)))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (pow x 2))
(*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 x x)) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (pow x 2))
(*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 x x)) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (pow x 2))
(*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 x x)) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))))
(/ (* (sin (* tau (* x (PI)))) (sin (* x (PI)))) (pow x 2))
(*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 x x)) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))))
(* -1 (* (pow x 2) (pow (PI) 2)))
(*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) x) (neg.f32 x))
(* -1 (* (pow x 2) (pow (PI) 2)))
(*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) x) (neg.f32 x))
(* -1 (* (pow x 2) (pow (PI) 2)))
(*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) x) (neg.f32 x))
(* -1 (* (pow x 2) (pow (PI) 2)))
(*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) x) (neg.f32 x))

rewrite164.0ms (1.6%)

Memory
4.2MiB live, 241.8MiB allocated
Iterations

Useful iterations: 1 (0.0ms)

IterNodesCost
063309
0107297
1341281
21937281
08383281
Stop Event
iter limit
node limit
iter limit
Counts
26 → 1 283
Calls
Call 1
Inputs
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x tau) (PI.f32))) (*.f32 (*.f32 tau x) (PI.f32))) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
(sin.f32 (*.f32 (*.f32 x tau) (PI.f32)))
(*.f32 (*.f32 x tau) (PI.f32))
(*.f32 x tau)
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32)))
(fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32))
(fma.f32 tau tau #s(literal 1 binary32))
(*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32)))
(*.f32 (/.f32 (pow.f32 (PI.f32) #s(literal -2 binary32)) tau) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
(/.f32 (pow.f32 (PI.f32) #s(literal -2 binary32)) tau)
(pow.f32 (PI.f32) #s(literal -2 binary32))
(PI.f32)
(/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (pow.f32 (cbrt.f32 (PI.f32)) #s(literal 6 binary32)) tau)) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
#s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (pow.f32 (cbrt.f32 (PI.f32)) #s(literal 6 binary32)) tau))
(*.f32 (pow.f32 (cbrt.f32 (PI.f32)) #s(literal 6 binary32)) tau)
(pow.f32 (cbrt.f32 (PI.f32)) #s(literal 6 binary32))
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) tau) (neg.f32 (sin.f32 (*.f32 (PI.f32) x)))) (*.f32 (*.f32 (PI.f32) x) (*.f32 (neg.f32 (PI.f32)) x)))
(*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) tau) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
(/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) tau)
(sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))
(*.f32 (*.f32 tau x) (PI.f32))
(/.f32 (sin.f32 (*.f32 (*.f32 x tau) (PI.f32))) (*.f32 (*.f32 tau x) (PI.f32)))
(*.f32 (PI.f32) (PI.f32))
#s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau))
(*.f32 (PI.f32) (*.f32 tau (PI.f32)))
(*.f32 (*.f32 (PI.f32) x) (*.f32 (neg.f32 (PI.f32)) x))
Outputs
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eval251.0ms (2.5%)

Memory
9.4MiB live, 472.6MiB allocated
Compiler

Compiled 53 096 to 5 147 computations (90.3% saved)

prune165.0ms (1.6%)

Memory
43.7MiB live, 435.4MiB allocated
Pruning

116 alts after pruning (108 fresh and 8 done)

PrunedKeptTotal
New2 321562 377
Fresh155267
Picked325
Done066
Total2 3391162 455
Accuracy
99.8%
Counts
2 455 → 116
Alt Table
Click to see full alt table
StatusAccuracyProgram
62.7%
(/.f32 (/.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) tau) (PI.f32))) (PI.f32)) (PI.f32)) tau)
97.1%
(/.f32 (/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x)) (sin.f32 (*.f32 (*.f32 tau x) (PI.f32)))) tau) (*.f32 (PI.f32) x))
96.6%
(/.f32 (/.f32 (*.f32 (sin.f32 (*.f32 x (PI.f32))) (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau))) (*.f32 (*.f32 (*.f32 (PI.f32) tau) (PI.f32)) x)) x)
62.7%
(/.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (PI.f32)) (*.f32 tau (PI.f32)))
62.7%
(/.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) tau) (PI.f32))) tau) (*.f32 (PI.f32) (PI.f32)))
97.1%
(/.f32 (*.f32 (/.f32 (*.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (sin.f32 (*.f32 (PI.f32) x))) (PI.f32)) (/.f32 #s(literal 1 binary32) x)) (*.f32 (*.f32 x (PI.f32)) tau))
97.1%
(/.f32 (*.f32 (/.f32 (sin.f32 (/.f32 (PI.f32) (/.f32 #s(literal 1 binary32) x))) (*.f32 x (PI.f32))) (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau))) (*.f32 (*.f32 x (PI.f32)) tau))
97.4%
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 tau x) (PI.f32))) (*.f32 tau x)) (sin.f32 (*.f32 (PI.f32) x))) (*.f32 (*.f32 (PI.f32) x) (PI.f32)))
97.2%
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))) (sin.f32 (*.f32 (/.f32 (PI.f32) (/.f32 #s(literal 1 binary32) x)) tau))) (*.f32 (*.f32 x (PI.f32)) tau))
97.7%
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))) (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau))) (*.f32 (*.f32 x (PI.f32)) tau))
97.7%
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 tau (*.f32 (PI.f32) x))) (sin.f32 (*.f32 (PI.f32) x))) (*.f32 (PI.f32) x))
96.0%
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) tau) (neg.f32 (sin.f32 (*.f32 (*.f32 (PI.f32) (log.f32 (E.f32))) x)))) (*.f32 (*.f32 (PI.f32) x) (*.f32 (neg.f32 (PI.f32)) x)))
96.2%
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) tau) (neg.f32 (sin.f32 (*.f32 (PI.f32) x)))) (*.f32 (*.f32 (*.f32 (PI.f32) (log.f32 (E.f32))) x) (*.f32 (neg.f32 (PI.f32)) x)))
97.3%
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) tau) (neg.f32 (sin.f32 (*.f32 (PI.f32) x)))) (*.f32 (*.f32 (PI.f32) x) (*.f32 (neg.f32 (PI.f32)) x)))
96.1%
(/.f32 (*.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) (/.f32 #s(literal 1 binary32) x)) (*.f32 (*.f32 (pow.f32 (cbrt.f32 (PI.f32)) #s(literal 2 binary32)) (*.f32 (PI.f32) tau)) (cbrt.f32 (PI.f32))))
96.6%
(/.f32 (*.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) (/.f32 #s(literal 1 binary32) x)) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
70.1%
(/.f32 (*.f32 (*.f32 #s(approx (/ (sin (* (PI) x)) x) (PI.f32)) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) (/.f32 #s(literal 1 binary32) x)) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
96.7%
(/.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (neg.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))))) (*.f32 (neg.f32 tau) (*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) x) x)))
97.6%
(/.f32 (*.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (sin.f32 (*.f32 (PI.f32) x))) (*.f32 (*.f32 (PI.f32) x) (*.f32 tau (*.f32 (PI.f32) x))))
97.0%
(/.f32 (*.f32 (neg.f32 (sin.f32 (*.f32 (PI.f32) x))) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) (*.f32 (*.f32 (*.f32 (neg.f32 (PI.f32)) x) x) (*.f32 tau (PI.f32))))
70.4%
(/.f32 (*.f32 #s(approx (/ (sin (* x (PI))) (* x (PI))) #s(literal 1 binary32)) (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau))) (*.f32 (*.f32 x (PI.f32)) tau))
62.7%
(/.f32 (*.f32 #s(approx (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) x) tau)) (/.f32 #s(literal 1 binary32) x)) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
97.5%
(/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (/.f32 (*.f32 (*.f32 tau x) (PI.f32)) (sin.f32 (*.f32 (*.f32 tau x) (PI.f32)))) (*.f32 (PI.f32) x)))
96.6%
(/.f32 (neg.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (neg.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))))) (*.f32 (*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) x) tau) x))
62.7%
(/.f32 (neg.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) tau) (PI.f32)))) (*.f32 (*.f32 (neg.f32 (PI.f32)) (PI.f32)) tau))
63.7%
(/.f32 #s(approx (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (*.f32 tau (sin.f32 (*.f32 (PI.f32) x)))) (*.f32 (*.f32 x (PI.f32)) tau))
62.5%
(/.f32 #s(approx (* (/ (sin (* tau (* (PI) x))) tau) (neg (sin (* (PI) x)))) (*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) x) (neg.f32 x))) (*.f32 (*.f32 (PI.f32) x) (*.f32 (neg.f32 (PI.f32)) x)))
62.6%
(/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (/.f32 #s(literal 1 binary32) (/.f32 (/.f32 #s(literal 1 binary32) (PI.f32)) (/.f32 tau (/.f32 #s(literal 1 binary32) (PI.f32)))))) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
62.1%
(/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (pow.f32 (cbrt.f32 (PI.f32)) #s(literal 6 binary32)) tau)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau))
62.5%
(/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (*.f32 (PI.f32) tau) (sqrt.f32 (PI.f32))) (sqrt.f32 (PI.f32)))) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
62.7%
(/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (*.f32 (*.f32 (*.f32 tau (PI.f32)) (sqrt.f32 (PI.f32))) (sqrt.f32 (PI.f32))))
62.7%
(/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
62.8%
(/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (/.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) tau) (PI.f32))) (PI.f32)) tau)))
62.7%
(/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (*.f32 tau (PI.f32)))))
62.7%
(/.f32 #s(literal 1 binary32) (/.f32 tau (/.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) tau) (PI.f32))) (PI.f32)) (PI.f32))))
62.7%
(/.f32 #s(literal -1 binary32) (*.f32 (neg.f32 tau) (/.f32 (*.f32 (PI.f32) (PI.f32)) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) tau) (PI.f32))))))
62.5%
(*.f32 (/.f32 (pow.f32 (sqrt.f32 (PI.f32)) #s(literal -4 binary32)) tau) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
62.7%
(*.f32 (/.f32 (/.f32 (/.f32 #s(literal 1 binary32) (PI.f32)) tau) (PI.f32)) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
97.4%
(*.f32 (/.f32 (/.f32 (sin.f32 (*.f32 (*.f32 tau x) (PI.f32))) (*.f32 (*.f32 tau x) (PI.f32))) x) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (PI.f32)))
97.0%
(*.f32 (/.f32 (/.f32 (sin.f32 (*.f32 (*.f32 tau x) (PI.f32))) tau) (PI.f32)) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (*.f32 (PI.f32) x) x)))
62.7%
(*.f32 (/.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (PI.f32)) (PI.f32)) (/.f32 #s(literal 1 binary32) tau))
62.7%
(*.f32 (/.f32 (/.f32 #s(literal 1 binary32) (*.f32 (PI.f32) (PI.f32))) tau) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
62.7%
(*.f32 (/.f32 (/.f32 #s(literal 1 binary32) (PI.f32)) (*.f32 (PI.f32) tau)) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
62.8%
(*.f32 (/.f32 (/.f32 #s(literal 1 binary32) (PI.f32)) tau) (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (PI.f32)))
62.7%
(*.f32 (/.f32 (/.f32 #s(literal 1 binary32) tau) (*.f32 (PI.f32) (PI.f32))) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
97.0%
(*.f32 (/.f32 (*.f32 (/.f32 (/.f32 #s(literal 1 binary32) (PI.f32)) tau) (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) x)) (*.f32 (neg.f32 (PI.f32)) x)) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
97.4%
(*.f32 (/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (neg.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))))) (PI.f32)) (/.f32 #s(literal -1 binary32) (*.f32 tau (*.f32 (PI.f32) x))))
96.5%
(*.f32 (/.f32 (*.f32 (sin.f32 (*.f32 x (PI.f32))) (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau))) (*.f32 (*.f32 (*.f32 (PI.f32) tau) (PI.f32)) x)) (/.f32 #s(literal 1 binary32) x))
97.0%
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 tau x) (PI.f32))) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
70.1%
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 tau x) (PI.f32))) #s(approx (/ (sin (* x (PI))) (* x (PI))) #s(literal 1 binary32)))
96.1%
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x tau) (PI.f32))) (*.f32 (pow.f32 (cbrt.f32 (PI.f32)) #s(literal 2 binary32)) (*.f32 (cbrt.f32 (PI.f32)) (*.f32 tau x)))) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
94.3%
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x tau) (PI.f32))) (*.f32 (*.f32 tau x) (*.f32 (pow.f32 (pow.f32 (PI.f32) #s(literal 1/6 binary32)) #s(literal 3 binary32)) (pow.f32 (pow.f32 (PI.f32) #s(literal 1/6 binary32)) #s(literal 3 binary32))))) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
96.2%
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x tau) (PI.f32))) (*.f32 (*.f32 tau x) (PI.f32))) (/.f32 (sin.f32 (*.f32 x (exp.f32 (log.f32 (PI.f32))))) (*.f32 x (PI.f32))))
95.1%
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x tau) (PI.f32))) (*.f32 (*.f32 tau x) (PI.f32))) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (*.f32 (cbrt.f32 (pow.f32 (cbrt.f32 (PI.f32)) #s(literal 8 binary32))) (cbrt.f32 (cbrt.f32 (PI.f32)))))))
97.7%
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x tau) (PI.f32))) (*.f32 (*.f32 tau x) (PI.f32))) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
97.2%
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 tau (PI.f32)) x)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
97.4%
(*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (*.f32 (PI.f32) x) (PI.f32))) (/.f32 (sin.f32 (*.f32 (*.f32 tau x) (PI.f32))) (*.f32 tau x)))
97.0%
(*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (*.f32 (*.f32 (neg.f32 (PI.f32)) x) x) (*.f32 tau (PI.f32)))) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
97.5%
(*.f32 (/.f32 (neg.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) (*.f32 (*.f32 (PI.f32) x) (*.f32 tau (*.f32 (PI.f32) x)))) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
96.4%
(*.f32 (/.f32 #s(literal 1 binary32) (/.f32 (/.f32 (neg.f32 x) (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 tau (PI.f32)))) (/.f32 (/.f32 #s(literal 1 binary32) (PI.f32)) x))) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
62.7%
(*.f32 (/.f32 #s(literal 1 binary32) (/.f32 (*.f32 (PI.f32) (PI.f32)) (/.f32 #s(literal 1 binary32) tau))) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
62.7%
(*.f32 (/.f32 #s(literal 1 binary32) (/.f32 (*.f32 (PI.f32) tau) (/.f32 #s(literal 1 binary32) (PI.f32)))) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
62.7%
(*.f32 (/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (/.f32 (/.f32 #s(literal 1 binary32) (PI.f32)) tau))) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
96.7%
(*.f32 (/.f32 #s(literal 1 binary32) (*.f32 (*.f32 (PI.f32) tau) (PI.f32))) (*.f32 (/.f32 (/.f32 (sin.f32 (*.f32 x (PI.f32))) x) x) (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau))))
62.7%
(*.f32 (/.f32 #s(literal 1 binary32) (*.f32 (*.f32 (PI.f32) tau) (PI.f32))) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
96.8%
(*.f32 (/.f32 #s(literal -1 binary32) (*.f32 (/.f32 (neg.f32 x) (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 tau (PI.f32)))) (*.f32 (neg.f32 (PI.f32)) x))) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
62.7%
(*.f32 (*.f32 (/.f32 (/.f32 #s(literal 1 binary32) (PI.f32)) tau) (/.f32 #s(literal 1 binary32) (PI.f32))) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
96.5%
(*.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (neg.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))))) (/.f32 #s(literal -1 binary32) (*.f32 (*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) x) tau) x)))
97.6%
(*.f32 (*.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (sin.f32 (*.f32 (PI.f32) x))) (/.f32 #s(literal 1 binary32) (*.f32 (*.f32 (PI.f32) x) (*.f32 tau (*.f32 (PI.f32) x)))))
62.8%
(*.f32 (neg.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (PI.f32))) (/.f32 #s(literal -1 binary32) (*.f32 tau (PI.f32))))
97.0%
(*.f32 (neg.f32 (sin.f32 (/.f32 (*.f32 tau (PI.f32)) (/.f32 #s(literal 1 binary32) x)))) (/.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (*.f32 (*.f32 (PI.f32) (*.f32 (PI.f32) x)) (neg.f32 tau))))
96.6%
(*.f32 (neg.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (neg.f32 tau) (*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) x) x))))
96.5%
(*.f32 (neg.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) (/.f32 (neg.f32 (sin.f32 (*.f32 (PI.f32) x))) (*.f32 (*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) x) tau) x)))
70.2%
(*.f32 (neg.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) #s(approx (/ (/ (sin (* (PI) x)) x) (* (* (PI) (* (PI) x)) (neg tau))) (/.f32 (/.f32 #s(literal -1 binary32) (*.f32 (PI.f32) x)) tau)))
63.4%
(*.f32 (neg.f32 #s(approx (sin (* tau (* (PI) x))) (*.f32 tau (*.f32 (PI.f32) x)))) (/.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (*.f32 (*.f32 (PI.f32) (*.f32 (PI.f32) x)) (neg.f32 tau))))
26.9%
(*.f32 #s(approx (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) (fma.f32 (*.f32 (*.f32 (*.f32 tau (PI.f32)) tau) #s(literal 1/6 binary32)) x (/.f32 (/.f32 #s(literal -1 binary32) (PI.f32)) x))) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
26.1%
(*.f32 #s(approx (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) (fma.f32 (*.f32 (*.f32 (*.f32 tau (PI.f32)) tau) #s(literal 1/6 binary32)) x (/.f32 #s(literal 1 binary32) (*.f32 (neg.f32 (PI.f32)) x)))) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
26.9%
(*.f32 #s(approx (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) (fma.f32 (*.f32 (*.f32 (*.f32 tau (PI.f32)) tau) #s(literal 1/6 binary32)) x (*.f32 (/.f32 #s(literal -1 binary32) x) (/.f32 #s(literal 1 binary32) (PI.f32))))) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
27.3%
(*.f32 #s(approx (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) (fma.f32 (*.f32 (*.f32 (*.f32 tau (PI.f32)) tau) #s(literal 1/6 binary32)) x (*.f32 (*.f32 (/.f32 #s(literal -1 binary32) (PI.f32)) #s(literal -1 binary32)) (/.f32 #s(literal -1 binary32) x)))) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
26.6%
(*.f32 #s(approx (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) (fma.f32 (*.f32 (*.f32 (*.f32 tau (PI.f32)) tau) #s(literal 1/6 binary32)) x (*.f32 #s(literal 1 binary32) (/.f32 (/.f32 #s(literal -1 binary32) (PI.f32)) x)))) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
26.3%
(*.f32 #s(approx (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) (fma.f32 (*.f32 (*.f32 tau tau) (PI.f32)) (*.f32 #s(literal 1/6 binary32) x) (/.f32 (/.f32 #s(literal -1 binary32) (PI.f32)) x))) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
27.2%
(*.f32 #s(approx (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) (fma.f32 (*.f32 tau (*.f32 (PI.f32) x)) (*.f32 #s(literal 1/6 binary32) tau) (/.f32 (/.f32 #s(literal -1 binary32) (PI.f32)) x))) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
25.6%
(*.f32 #s(approx (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) (fma.f32 (*.f32 #s(literal 1/6 binary32) (*.f32 (*.f32 tau tau) (PI.f32))) x (/.f32 (/.f32 #s(literal -1 binary32) (PI.f32)) x))) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
63.5%
(*.f32 #s(approx (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) (/.f32 (/.f32 #s(literal -1 binary32) (PI.f32)) x)) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
63.6%
(*.f32 #s(approx (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) (/.f32 #s(literal -1 binary32) (*.f32 (PI.f32) x))) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
78.2%
(*.f32 #s(approx (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) (-.f32 (*.f32 (*.f32 #s(literal 1/6 binary32) x) (*.f32 (*.f32 tau tau) (PI.f32))) (/.f32 (/.f32 #s(literal 1 binary32) (PI.f32)) x))) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
4.8%
(*.f32 #s(approx (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) #s(approx (+ (* (* (* (* tau (PI)) tau) 1/6) x) (/ (/ -1 (PI)) x)) (*.f32 (*.f32 (*.f32 tau tau) x) (*.f32 (PI.f32) #s(literal 1/6 binary32))))) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
62.9%
#s(approx (/ (/ (sin (* tau (* (PI) x))) (* (PI) x)) (/ (* tau (* (PI) x)) (sin (* (PI) x)))) (fma.f32 (*.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 (PI.f32) (PI.f32)) #s(literal -1/6 binary32))) (*.f32 x x) #s(literal 1 binary32)))
63.7%
#s(approx (/ (/ (sin (* tau (* (PI) x))) (* (PI) x)) (/ (* tau (* (PI) x)) (sin (* (PI) x)))) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x)))
96.7%
#s(approx (/ (/ (sin (* tau (* (PI) x))) (* (PI) x)) (/ (* tau (* (PI) x)) (sin (* (PI) x)))) (*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 x x))))
62.9%
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 (*.f32 tau tau) #s(literal 1 binary32) #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32)))
62.9%
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (/.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 #s(literal -1/6 binary32) x)) (/.f32 #s(literal 1 binary32) x)) #s(literal 1 binary32)))
62.9%
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) #s(literal 1 binary32)))
62.9%
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 #s(literal -1/6 binary32) x)) x) #s(literal 1 binary32)))
61.9%
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32)))
62.9%
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (fabs.f32 (PI.f32)) (PI.f32))) #s(literal 1 binary32)))
5.2%
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (exp.f32 (log.f32 (PI.f32))) (PI.f32))) #s(literal 1 binary32)))
62.9%
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (fabs.f32 (PI.f32)))) #s(literal 1 binary32)))
52.1%
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32)))
62.9%
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (PI.f32) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32))) #s(literal 1 binary32)))
48.1%
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 #s(literal 1 binary32) (*.f32 tau tau) #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32)))
62.9%
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (/.f32 #s(literal 1 binary32) (/.f32 #s(literal 1 binary32) (fma.f32 tau tau #s(literal 1 binary32)))) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32)))
43.7%
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (+.f32 (*.f32 tau tau) #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32)))
62.9%
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (*.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32))) (PI.f32) #s(literal 1 binary32)))
46.8%
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (*.f32 (*.f32 (*.f32 (fma.f32 tau tau #s(literal 1 binary32)) #s(literal -1/6 binary32)) (*.f32 x x)) (PI.f32)) (PI.f32) #s(literal 1 binary32)))
62.9%
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (*.f32 (*.f32 (PI.f32) (PI.f32)) (fma.f32 tau tau #s(literal 1 binary32))) #s(literal 1 binary32)))
41.8%
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (*.f32 (*.f32 #s(literal -1/6 binary32) x) x) (*.f32 (*.f32 (fma.f32 tau tau #s(literal 1 binary32)) (PI.f32)) (PI.f32)) #s(literal 1 binary32)))
62.9%
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 (*.f32 (fma.f32 tau tau #s(literal 1 binary32)) #s(literal -1/6 binary32)) (*.f32 x x)) #s(literal 1 binary32)))
31.4%
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 #s(approx (+ (* tau tau) 1) #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32)))
7.3%
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 (*.f32 (PI.f32) x) #s(literal 2 binary32)) (fma.f32 tau tau #s(literal 1 binary32))) #s(literal 1 binary32)))
41.2%
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (+.f32 (*.f32 (*.f32 (fma.f32 tau tau #s(literal 1 binary32)) #s(literal -1/6 binary32)) (pow.f32 (*.f32 (PI.f32) x) #s(literal 2 binary32))) #s(literal 1 binary32)))
62.9%
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) #s(approx (+ (* (+ (* tau tau) 1) (* (* -1/6 (* x x)) (* (PI) (PI)))) 1) (fma.f32 (*.f32 (*.f32 (*.f32 #s(literal -1/6 binary32) x) x) (PI.f32)) (PI.f32) #s(literal 1 binary32))))
4.7%
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) #s(approx (+ (* (+ (* tau tau) 1) (* (* -1/6 (* x x)) (* (PI) (PI)))) 1) (*.f32 (*.f32 (*.f32 (*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) tau) tau) #s(literal -1/6 binary32)) x) x)))
5.0%
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) #s(approx (+ (* (+ (* tau tau) 1) (* (* -1/6 (* x x)) (* (PI) (PI)))) 1) (*.f32 (*.f32 (*.f32 #s(literal -1/6 binary32) x) x) (*.f32 (*.f32 (fma.f32 tau tau #s(literal 1 binary32)) (PI.f32)) (PI.f32)))))
97.0%
#s(approx (* (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (/ (sin (* x (PI))) (* x (PI)))) (*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (PI.f32) (*.f32 (PI.f32) x))) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 tau x))))
62.9%
#s(approx (* (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (/ (sin (* x (PI))) (* x (PI)))) #s(literal 1 binary32))
Compiler

Compiled 5 580 to 2 122 computations (62% saved)

regimes222.0ms (2.2%)

Memory
1.4MiB live, 439.5MiB allocated
Counts
176 → 1
Calls
Call 1
Inputs
#s(approx (* (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (/ (sin (* x (PI))) (* x (PI)))) #s(literal 1 binary32))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) #s(approx (+ (* (+ (* tau tau) 1) (* (* -1/6 (* x x)) (* (PI) (PI)))) 1) (fma.f32 (*.f32 (*.f32 (*.f32 #s(literal -1/6 binary32) x) x) (PI.f32)) (PI.f32) #s(literal 1 binary32))))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 #s(approx (+ (* tau tau) 1) #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) #s(approx (+ (* (+ (* tau tau) 1) (* (* -1/6 (* x x)) (* (PI) (PI)))) 1) (*.f32 (*.f32 (*.f32 (*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) tau) tau) #s(literal -1/6 binary32)) x) x)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) #s(approx (+ (* (+ (* tau tau) 1) (* (* -1/6 (* x x)) (* (PI) (PI)))) 1) (*.f32 (*.f32 (*.f32 #s(literal -1/6 binary32) x) x) (*.f32 (*.f32 (fma.f32 tau tau #s(literal 1 binary32)) (PI.f32)) (PI.f32)))))
(/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
#s(approx (* (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (/ (sin (* x (PI))) (* x (PI)))) (fma.f32 (*.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 (PI.f32) (PI.f32)) #s(literal -1/6 binary32))) (*.f32 x x) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 (*.f32 (fma.f32 tau tau #s(literal 1 binary32)) #s(literal -1/6 binary32)) (*.f32 x x)) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (*.f32 (*.f32 #s(literal -1/6 binary32) x) x) (*.f32 (*.f32 (fma.f32 tau tau #s(literal 1 binary32)) (PI.f32)) (PI.f32)) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (*.f32 (*.f32 (PI.f32) (PI.f32)) (fma.f32 tau tau #s(literal 1 binary32))) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (*.f32 (*.f32 (*.f32 (fma.f32 tau tau #s(literal 1 binary32)) #s(literal -1/6 binary32)) (*.f32 x x)) (PI.f32)) (PI.f32) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (*.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32))) (PI.f32) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (PI.f32) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32))) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 #s(literal -1/6 binary32) x)) x) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) #s(literal 1 binary32)))
#s(approx (/ (/ (sin (* tau (* (PI) x))) (* (PI) x)) (/ (* tau (* (PI) x)) (sin (* (PI) x)))) (fma.f32 (*.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 (PI.f32) (PI.f32)) #s(literal -1/6 binary32))) (*.f32 x x) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (+.f32 (*.f32 tau tau) #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (fabs.f32 (PI.f32)))) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (fabs.f32 (PI.f32)) (PI.f32))) #s(literal 1 binary32)))
(/.f32 (neg.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) tau) (PI.f32)))) (*.f32 (*.f32 (neg.f32 (PI.f32)) (PI.f32)) tau))
(*.f32 (/.f32 #s(literal 1 binary32) (*.f32 (*.f32 (PI.f32) tau) (PI.f32))) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 #s(literal 1 binary32) (*.f32 tau tau) #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 (*.f32 tau tau) #s(literal 1 binary32) #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32)))
(/.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) tau) (PI.f32))) tau) (*.f32 (PI.f32) (PI.f32)))
(/.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) tau) (*.f32 (PI.f32) (PI.f32)))
(/.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (PI.f32)) (*.f32 tau (PI.f32)))
(*.f32 (neg.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau))) (/.f32 #s(literal -1 binary32) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
(*.f32 (/.f32 (/.f32 #s(literal 1 binary32) tau) (*.f32 (PI.f32) (PI.f32))) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
(*.f32 (/.f32 (/.f32 #s(literal 1 binary32) (PI.f32)) (*.f32 (PI.f32) tau)) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
(*.f32 (/.f32 (/.f32 #s(literal 1 binary32) (*.f32 (PI.f32) (PI.f32))) tau) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
(/.f32 (/.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) tau) (PI.f32))) (PI.f32)) (PI.f32)) tau)
(/.f32 (/.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (PI.f32)) tau) (PI.f32))
(/.f32 (/.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (PI.f32)) (PI.f32)) tau)
(*.f32 (neg.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (PI.f32))) (/.f32 #s(literal -1 binary32) (*.f32 tau (PI.f32))))
(/.f32 #s(literal -1 binary32) (*.f32 (neg.f32 tau) (/.f32 (*.f32 (PI.f32) (PI.f32)) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) tau) (PI.f32))))))
(/.f32 #s(approx (* (/ (sin (* tau (* (PI) x))) tau) (neg (sin (* (PI) x)))) (*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) x) (neg.f32 x))) (*.f32 (*.f32 (PI.f32) x) (*.f32 (neg.f32 (PI.f32)) x)))
(*.f32 (/.f32 (/.f32 #s(literal 1 binary32) (PI.f32)) tau) (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (PI.f32)))
(*.f32 (/.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (PI.f32)) (PI.f32)) (/.f32 #s(literal 1 binary32) tau))
(*.f32 (/.f32 (/.f32 (/.f32 #s(literal 1 binary32) (PI.f32)) tau) (PI.f32)) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
(/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (*.f32 tau (PI.f32)))))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (/.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 #s(literal -1/6 binary32) x)) (/.f32 #s(literal 1 binary32) x)) #s(literal 1 binary32)))
(/.f32 (*.f32 #s(approx (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) x) tau)) (/.f32 #s(literal 1 binary32) x)) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
(*.f32 (*.f32 (/.f32 (/.f32 #s(literal 1 binary32) (PI.f32)) tau) (/.f32 #s(literal 1 binary32) (PI.f32))) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
(*.f32 (/.f32 #s(literal 1 binary32) (/.f32 (*.f32 (PI.f32) tau) (/.f32 #s(literal 1 binary32) (PI.f32)))) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
(*.f32 (/.f32 #s(literal 1 binary32) (/.f32 (*.f32 (PI.f32) (PI.f32)) (/.f32 #s(literal 1 binary32) tau))) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
(/.f32 (/.f32 #s(literal 1 binary32) (/.f32 #s(literal 1 binary32) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (/.f32 #s(literal 1 binary32) (/.f32 #s(literal 1 binary32) (fma.f32 tau tau #s(literal 1 binary32)))) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32)))
(/.f32 #s(literal 1 binary32) (/.f32 tau (/.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) tau) (PI.f32))) (PI.f32)) (PI.f32))))
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(/.f32 (/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))) (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau))) tau) (*.f32 x (PI.f32)))
(/.f32 (/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x)) (sin.f32 (*.f32 (*.f32 tau x) (PI.f32)))) tau) (*.f32 (PI.f32) x))
(/.f32 (/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (neg.f32 (PI.f32)) x)) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) (*.f32 (PI.f32) x)) (neg.f32 tau))
(*.f32 (/.f32 #s(literal 1 binary32) (*.f32 (*.f32 (PI.f32) tau) (PI.f32))) (*.f32 (/.f32 (/.f32 (sin.f32 (*.f32 x (PI.f32))) x) x) (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau))))
(*.f32 (/.f32 (*.f32 (/.f32 #s(literal 1 binary32) x) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) (*.f32 tau (PI.f32))) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
(/.f32 (*.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) (/.f32 #s(literal 1 binary32) x)) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
(/.f32 (*.f32 (/.f32 (*.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (sin.f32 (*.f32 (PI.f32) x))) (PI.f32)) (/.f32 #s(literal 1 binary32) x)) (*.f32 (*.f32 x (PI.f32)) tau))
(*.f32 (/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (neg.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))))) (PI.f32)) (/.f32 #s(literal -1 binary32) (*.f32 tau (*.f32 (PI.f32) x))))
(*.f32 (/.f32 #s(literal -1 binary32) (*.f32 (/.f32 (neg.f32 x) (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 tau (PI.f32)))) (*.f32 (neg.f32 (PI.f32)) x))) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
(*.f32 (/.f32 (sin.f32 (/.f32 (*.f32 (PI.f32) tau) (/.f32 #s(literal 1 binary32) x))) (*.f32 (*.f32 tau x) (PI.f32))) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 x (PI.f32)) (/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))) (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau))) tau)))
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))) (sin.f32 (*.f32 (/.f32 (PI.f32) (/.f32 #s(literal 1 binary32) x)) tau))) (*.f32 (*.f32 x (PI.f32)) tau))
(/.f32 (*.f32 (/.f32 (sin.f32 (/.f32 (PI.f32) (/.f32 #s(literal 1 binary32) x))) (*.f32 x (PI.f32))) (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau))) (*.f32 (*.f32 x (PI.f32)) tau))
(*.f32 (neg.f32 (sin.f32 (/.f32 (*.f32 tau (PI.f32)) (/.f32 #s(literal 1 binary32) x)))) (/.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (*.f32 (*.f32 (PI.f32) (*.f32 (PI.f32) x)) (neg.f32 tau))))
(*.f32 (/.f32 (*.f32 (/.f32 (/.f32 #s(literal 1 binary32) (PI.f32)) tau) (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) x)) (*.f32 (neg.f32 (PI.f32)) x)) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
(*.f32 (/.f32 (/.f32 #s(literal 1 binary32) (/.f32 x (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (PI.f32) tau)))) (*.f32 (neg.f32 (PI.f32)) x)) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
(*.f32 (/.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (neg.f32 (PI.f32)) x)) (neg.f32 (sin.f32 (/.f32 (PI.f32) (/.f32 #s(literal 1 binary32) x)))))
(*.f32 (/.f32 (/.f32 (sin.f32 (/.f32 (*.f32 (PI.f32) tau) (/.f32 #s(literal 1 binary32) x))) (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (neg.f32 (PI.f32)) x)) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
(/.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (PI.f32) x)) (/.f32 (*.f32 tau (*.f32 (PI.f32) x)) (sin.f32 (/.f32 (PI.f32) (/.f32 #s(literal 1 binary32) x)))))
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 (*.f32 tau x) (sqrt.f32 (PI.f32))) (sqrt.f32 (PI.f32)))) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
(*.f32 (/.f32 (sin.f32 (/.f32 #s(literal 1 binary32) (/.f32 (/.f32 #s(literal 1 binary32) (*.f32 (PI.f32) x)) tau))) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
(*.f32 (/.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (*.f32 tau (*.f32 (PI.f32) x))) (/.f32 (/.f32 #s(literal 1 binary32) (PI.f32)) (/.f32 #s(literal 1 binary32) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))))))
(/.f32 (*.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (sin.f32 (/.f32 (*.f32 (PI.f32) tau) (/.f32 #s(literal 1 binary32) x)))) (/.f32 #s(literal 1 binary32) x)) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
(*.f32 (/.f32 #s(literal 1 binary32) (/.f32 (/.f32 (neg.f32 x) (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 tau (PI.f32)))) (/.f32 (/.f32 #s(literal 1 binary32) (PI.f32)) x))) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 tau x) (PI.f32))) (*.f32 (/.f32 (/.f32 (sin.f32 (*.f32 x (PI.f32))) x) (sqrt.f32 (PI.f32))) (/.f32 #s(literal 1 binary32) (sqrt.f32 (PI.f32)))))
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) tau) (neg.f32 (sin.f32 (*.f32 (PI.f32) x)))) (*.f32 (*.f32 (*.f32 (PI.f32) (log.f32 (E.f32))) x) (*.f32 (neg.f32 (PI.f32)) x)))
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) tau) (neg.f32 (sin.f32 (*.f32 (*.f32 (PI.f32) (log.f32 (E.f32))) x)))) (*.f32 (*.f32 (PI.f32) x) (*.f32 (neg.f32 (PI.f32)) x)))
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x tau) (PI.f32))) (*.f32 (*.f32 tau x) (PI.f32))) (/.f32 (sin.f32 (*.f32 x (exp.f32 (log.f32 (PI.f32))))) (*.f32 x (PI.f32))))
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 (*.f32 (*.f32 (sqrt.f32 (PI.f32)) x) (cbrt.f32 (PI.f32))) (pow.f32 (PI.f32) #s(literal 1/6 binary32)))) (*.f32 x (PI.f32))))
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x tau) (PI.f32))) (*.f32 (pow.f32 (cbrt.f32 (PI.f32)) #s(literal 2 binary32)) (*.f32 (cbrt.f32 (PI.f32)) (*.f32 tau x)))) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 (pow.f32 (cbrt.f32 (PI.f32)) #s(literal 2 binary32)) (*.f32 (cbrt.f32 (PI.f32)) x))) (*.f32 x (PI.f32))))
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (pow.f32 (cbrt.f32 (PI.f32)) #s(literal 2 binary32)) x)) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) (*.f32 (cbrt.f32 (PI.f32)) (*.f32 tau (*.f32 (PI.f32) x))))
(*.f32 (/.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 tau (*.f32 (PI.f32) x))) (pow.f32 (cbrt.f32 (PI.f32)) #s(literal 2 binary32))) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (cbrt.f32 (PI.f32)) x)))
(/.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (pow.f32 (cbrt.f32 (PI.f32)) #s(literal 2 binary32)) x)) (*.f32 (/.f32 (*.f32 tau (*.f32 (PI.f32) x)) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) (cbrt.f32 (PI.f32))))
(/.f32 (*.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) (/.f32 #s(literal 1 binary32) x)) (*.f32 (*.f32 (pow.f32 (cbrt.f32 (PI.f32)) #s(literal 2 binary32)) (*.f32 (PI.f32) tau)) (cbrt.f32 (PI.f32))))
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 tau x) (PI.f32))) (/.f32 (/.f32 (/.f32 (sin.f32 (*.f32 x (PI.f32))) x) (pow.f32 (cbrt.f32 (PI.f32)) #s(literal 2 binary32))) (cbrt.f32 (PI.f32))))
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x tau) (PI.f32))) (*.f32 (*.f32 tau x) (*.f32 (pow.f32 (pow.f32 (PI.f32) #s(literal 1/6 binary32)) #s(literal 3 binary32)) (pow.f32 (pow.f32 (PI.f32) #s(literal 1/6 binary32)) #s(literal 3 binary32))))) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x tau) (PI.f32))) (*.f32 (*.f32 tau x) (PI.f32))) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (*.f32 (cbrt.f32 (pow.f32 (cbrt.f32 (PI.f32)) #s(literal 8 binary32))) (cbrt.f32 (cbrt.f32 (PI.f32)))))))
Outputs
(/.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (PI.f32) x)) (/.f32 (*.f32 tau (*.f32 (PI.f32) x)) (sin.f32 (*.f32 (PI.f32) x))))
Calls

4 calls:

61.0ms
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
54.0ms
x
50.0ms
(*.f32 x (PI.f32))
49.0ms
tau
Results
AccuracySegmentsBranch
97.8%1x
97.8%1tau
97.8%1(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
97.8%1(*.f32 x (PI.f32))
Compiler

Compiled 26 to 18 computations (30.8% saved)

regimes161.0ms (1.6%)

Memory
-27.1MiB live, 365.5MiB allocated
Counts
136 → 1
Calls
Call 1
Inputs
#s(approx (* (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (/ (sin (* x (PI))) (* x (PI)))) #s(literal 1 binary32))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) #s(approx (+ (* (+ (* tau tau) 1) (* (* -1/6 (* x x)) (* (PI) (PI)))) 1) (fma.f32 (*.f32 (*.f32 (*.f32 #s(literal -1/6 binary32) x) x) (PI.f32)) (PI.f32) #s(literal 1 binary32))))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 #s(approx (+ (* tau tau) 1) #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) #s(approx (+ (* (+ (* tau tau) 1) (* (* -1/6 (* x x)) (* (PI) (PI)))) 1) (*.f32 (*.f32 (*.f32 (*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) tau) tau) #s(literal -1/6 binary32)) x) x)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) #s(approx (+ (* (+ (* tau tau) 1) (* (* -1/6 (* x x)) (* (PI) (PI)))) 1) (*.f32 (*.f32 (*.f32 #s(literal -1/6 binary32) x) x) (*.f32 (*.f32 (fma.f32 tau tau #s(literal 1 binary32)) (PI.f32)) (PI.f32)))))
(/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
#s(approx (* (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (/ (sin (* x (PI))) (* x (PI)))) (fma.f32 (*.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 (PI.f32) (PI.f32)) #s(literal -1/6 binary32))) (*.f32 x x) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 (*.f32 (fma.f32 tau tau #s(literal 1 binary32)) #s(literal -1/6 binary32)) (*.f32 x x)) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (*.f32 (*.f32 #s(literal -1/6 binary32) x) x) (*.f32 (*.f32 (fma.f32 tau tau #s(literal 1 binary32)) (PI.f32)) (PI.f32)) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (*.f32 (*.f32 (PI.f32) (PI.f32)) (fma.f32 tau tau #s(literal 1 binary32))) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (*.f32 (*.f32 (*.f32 (fma.f32 tau tau #s(literal 1 binary32)) #s(literal -1/6 binary32)) (*.f32 x x)) (PI.f32)) (PI.f32) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (*.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32))) (PI.f32) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (PI.f32) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32))) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 #s(literal -1/6 binary32) x)) x) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) #s(literal 1 binary32)))
#s(approx (/ (/ (sin (* tau (* (PI) x))) (* (PI) x)) (/ (* tau (* (PI) x)) (sin (* (PI) x)))) (fma.f32 (*.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 (PI.f32) (PI.f32)) #s(literal -1/6 binary32))) (*.f32 x x) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (+.f32 (*.f32 tau tau) #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (fabs.f32 (PI.f32)))) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (fabs.f32 (PI.f32)) (PI.f32))) #s(literal 1 binary32)))
(/.f32 (neg.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) tau) (PI.f32)))) (*.f32 (*.f32 (neg.f32 (PI.f32)) (PI.f32)) tau))
(*.f32 (/.f32 #s(literal 1 binary32) (*.f32 (*.f32 (PI.f32) tau) (PI.f32))) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 #s(literal 1 binary32) (*.f32 tau tau) #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 (*.f32 tau tau) #s(literal 1 binary32) #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32)))
(/.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) tau) (PI.f32))) tau) (*.f32 (PI.f32) (PI.f32)))
(/.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) tau) (*.f32 (PI.f32) (PI.f32)))
(/.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (PI.f32)) (*.f32 tau (PI.f32)))
(*.f32 (neg.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau))) (/.f32 #s(literal -1 binary32) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
(*.f32 (/.f32 (/.f32 #s(literal 1 binary32) tau) (*.f32 (PI.f32) (PI.f32))) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
(*.f32 (/.f32 (/.f32 #s(literal 1 binary32) (PI.f32)) (*.f32 (PI.f32) tau)) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
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(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 tau (*.f32 (PI.f32) x))) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) (*.f32 (PI.f32) x))
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 tau x) (PI.f32))) (*.f32 tau x)) (sin.f32 (*.f32 (PI.f32) x))) (*.f32 (*.f32 (PI.f32) x) (PI.f32)))
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 x tau)) (sin.f32 (*.f32 x (PI.f32)))) (*.f32 (*.f32 x (PI.f32)) (PI.f32)))
(/.f32 (/.f32 (*.f32 (sin.f32 (*.f32 x (PI.f32))) (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau))) (*.f32 (*.f32 (*.f32 (PI.f32) tau) (PI.f32)) x)) x)
(*.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (neg.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))))) (/.f32 #s(literal -1 binary32) (*.f32 (*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) x) tau) x)))
(*.f32 (neg.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) (/.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (*.f32 (*.f32 (PI.f32) (*.f32 (PI.f32) x)) (neg.f32 tau))))
(*.f32 (neg.f32 (sin.f32 (*.f32 (PI.f32) x))) (/.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (PI.f32) x)) (*.f32 (*.f32 (neg.f32 x) tau) (PI.f32))))
(*.f32 (/.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (neg.f32 (PI.f32)) x)) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
(*.f32 (/.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x tau) (PI.f32))) (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (neg.f32 (PI.f32)) x)) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) tau) (neg.f32 (sin.f32 (*.f32 (PI.f32) x)))) (*.f32 (*.f32 (PI.f32) x) (*.f32 (neg.f32 (PI.f32)) x)))
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) x) (neg.f32 (sin.f32 (*.f32 (PI.f32) x)))) (*.f32 (*.f32 (PI.f32) (*.f32 (PI.f32) x)) (neg.f32 tau)))
(*.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 x tau)) (sin.f32 (*.f32 x (PI.f32)))) (/.f32 #s(literal 1 binary32) (*.f32 (*.f32 x (PI.f32)) (PI.f32))))
(*.f32 (/.f32 (*.f32 (sin.f32 (*.f32 x (PI.f32))) (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau))) (*.f32 (*.f32 (*.f32 (PI.f32) tau) (PI.f32)) x)) (/.f32 #s(literal 1 binary32) x))
(/.f32 #s(literal 1 binary32) (/.f32 (*.f32 (*.f32 (PI.f32) x) (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (sin.f32 (*.f32 (PI.f32) x)))))
(*.f32 (/.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x)) (*.f32 tau x)) (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (PI.f32)))
(*.f32 (/.f32 (/.f32 (sin.f32 (*.f32 (*.f32 tau x) (PI.f32))) tau) (PI.f32)) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (*.f32 (PI.f32) x) x)))
(*.f32 (/.f32 (/.f32 (sin.f32 (*.f32 (*.f32 tau x) (PI.f32))) (*.f32 (*.f32 tau x) (PI.f32))) x) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (PI.f32)))
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) x)) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
(/.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 tau (*.f32 (PI.f32) x))) (/.f32 (*.f32 (PI.f32) x) (sin.f32 (*.f32 (PI.f32) x))))
Outputs
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (PI.f32) x)) (sin.f32 (*.f32 (PI.f32) x))) (*.f32 tau (*.f32 (PI.f32) x)))
Calls

4 calls:

40.0ms
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
38.0ms
x
37.0ms
tau
37.0ms
(*.f32 x (PI.f32))
Results
AccuracySegmentsBranch
97.7%1x
97.7%1tau
97.7%1(*.f32 x (PI.f32))
97.7%1(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
Compiler

Compiled 26 to 18 computations (30.8% saved)

regimes218.0ms (2.2%)

Memory
-0.2MiB live, 241.2MiB allocated
Counts
113 → 1
Calls
Call 1
Inputs
#s(approx (* (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (/ (sin (* x (PI))) (* x (PI)))) #s(literal 1 binary32))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) #s(approx (+ (* (+ (* tau tau) 1) (* (* -1/6 (* x x)) (* (PI) (PI)))) 1) (fma.f32 (*.f32 (*.f32 (*.f32 #s(literal -1/6 binary32) x) x) (PI.f32)) (PI.f32) #s(literal 1 binary32))))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 #s(approx (+ (* tau tau) 1) #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) #s(approx (+ (* (+ (* tau tau) 1) (* (* -1/6 (* x x)) (* (PI) (PI)))) 1) (*.f32 (*.f32 (*.f32 (*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) tau) tau) #s(literal -1/6 binary32)) x) x)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) #s(approx (+ (* (+ (* tau tau) 1) (* (* -1/6 (* x x)) (* (PI) (PI)))) 1) (*.f32 (*.f32 (*.f32 #s(literal -1/6 binary32) x) x) (*.f32 (*.f32 (fma.f32 tau tau #s(literal 1 binary32)) (PI.f32)) (PI.f32)))))
(/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
#s(approx (* (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (/ (sin (* x (PI))) (* x (PI)))) (fma.f32 (*.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 (PI.f32) (PI.f32)) #s(literal -1/6 binary32))) (*.f32 x x) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 (*.f32 (fma.f32 tau tau #s(literal 1 binary32)) #s(literal -1/6 binary32)) (*.f32 x x)) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (*.f32 (*.f32 #s(literal -1/6 binary32) x) x) (*.f32 (*.f32 (fma.f32 tau tau #s(literal 1 binary32)) (PI.f32)) (PI.f32)) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (*.f32 (*.f32 (PI.f32) (PI.f32)) (fma.f32 tau tau #s(literal 1 binary32))) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (*.f32 (*.f32 (*.f32 (fma.f32 tau tau #s(literal 1 binary32)) #s(literal -1/6 binary32)) (*.f32 x x)) (PI.f32)) (PI.f32) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (*.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32))) (PI.f32) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (PI.f32) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32))) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 #s(literal -1/6 binary32) x)) x) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) #s(literal 1 binary32)))
#s(approx (/ (/ (sin (* tau (* (PI) x))) (* (PI) x)) (/ (* tau (* (PI) x)) (sin (* (PI) x)))) (fma.f32 (*.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 (PI.f32) (PI.f32)) #s(literal -1/6 binary32))) (*.f32 x x) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (+.f32 (*.f32 tau tau) #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (fabs.f32 (PI.f32)))) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (fabs.f32 (PI.f32)) (PI.f32))) #s(literal 1 binary32)))
(/.f32 (neg.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) tau) (PI.f32)))) (*.f32 (*.f32 (neg.f32 (PI.f32)) (PI.f32)) tau))
(*.f32 (/.f32 #s(literal 1 binary32) (*.f32 (*.f32 (PI.f32) tau) (PI.f32))) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 #s(literal 1 binary32) (*.f32 tau tau) #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 (*.f32 tau tau) #s(literal 1 binary32) #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32)))
(/.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) tau) (PI.f32))) tau) (*.f32 (PI.f32) (PI.f32)))
(/.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) tau) (*.f32 (PI.f32) (PI.f32)))
(/.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (PI.f32)) (*.f32 tau (PI.f32)))
(*.f32 (neg.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau))) (/.f32 #s(literal -1 binary32) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
(*.f32 (/.f32 (/.f32 #s(literal 1 binary32) tau) (*.f32 (PI.f32) (PI.f32))) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
(*.f32 (/.f32 (/.f32 #s(literal 1 binary32) (PI.f32)) (*.f32 (PI.f32) tau)) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
(*.f32 (/.f32 (/.f32 #s(literal 1 binary32) (*.f32 (PI.f32) (PI.f32))) tau) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
(/.f32 (/.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) tau) (PI.f32))) (PI.f32)) (PI.f32)) tau)
(/.f32 (/.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (PI.f32)) tau) (PI.f32))
(/.f32 (/.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (PI.f32)) (PI.f32)) tau)
(*.f32 (neg.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (PI.f32))) (/.f32 #s(literal -1 binary32) (*.f32 tau (PI.f32))))
(/.f32 #s(literal -1 binary32) (*.f32 (neg.f32 tau) (/.f32 (*.f32 (PI.f32) (PI.f32)) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) tau) (PI.f32))))))
(/.f32 #s(approx (* (/ (sin (* tau (* (PI) x))) tau) (neg (sin (* (PI) x)))) (*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) x) (neg.f32 x))) (*.f32 (*.f32 (PI.f32) x) (*.f32 (neg.f32 (PI.f32)) x)))
(*.f32 (/.f32 (/.f32 #s(literal 1 binary32) (PI.f32)) tau) (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (PI.f32)))
(*.f32 (/.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (PI.f32)) (PI.f32)) (/.f32 #s(literal 1 binary32) tau))
(*.f32 (/.f32 (/.f32 (/.f32 #s(literal 1 binary32) (PI.f32)) tau) (PI.f32)) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
(/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (*.f32 tau (PI.f32)))))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (/.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 #s(literal -1/6 binary32) x)) (/.f32 #s(literal 1 binary32) x)) #s(literal 1 binary32)))
(/.f32 (*.f32 #s(approx (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) x) tau)) (/.f32 #s(literal 1 binary32) x)) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
(*.f32 (*.f32 (/.f32 (/.f32 #s(literal 1 binary32) (PI.f32)) tau) (/.f32 #s(literal 1 binary32) (PI.f32))) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
(*.f32 (/.f32 #s(literal 1 binary32) (/.f32 (*.f32 (PI.f32) tau) (/.f32 #s(literal 1 binary32) (PI.f32)))) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
(*.f32 (/.f32 #s(literal 1 binary32) (/.f32 (*.f32 (PI.f32) (PI.f32)) (/.f32 #s(literal 1 binary32) tau))) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
(/.f32 (/.f32 #s(literal 1 binary32) (/.f32 #s(literal 1 binary32) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (/.f32 #s(literal 1 binary32) (/.f32 #s(literal 1 binary32) (fma.f32 tau tau #s(literal 1 binary32)))) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32)))
(/.f32 #s(literal 1 binary32) (/.f32 tau (/.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) tau) (PI.f32))) (PI.f32)) (PI.f32))))
(/.f32 #s(literal 1 binary32) (/.f32 tau (/.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (PI.f32)) (PI.f32))))
(/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (/.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) tau) (PI.f32))) (PI.f32)) tau)))
(/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (/.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (PI.f32)) tau)))
(/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (*.f32 (*.f32 (*.f32 tau (PI.f32)) (sqrt.f32 (PI.f32))) (sqrt.f32 (PI.f32))))
(/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (*.f32 tau (PI.f32)) (sqrt.f32 (PI.f32))) (sqrt.f32 (PI.f32)))) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
(/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (*.f32 (PI.f32) tau) (sqrt.f32 (PI.f32))) (sqrt.f32 (PI.f32)))) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
(*.f32 (/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (/.f32 (/.f32 #s(literal 1 binary32) (PI.f32)) tau))) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
(/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (/.f32 #s(literal 1 binary32) (/.f32 (/.f32 #s(literal 1 binary32) (PI.f32)) (/.f32 tau (/.f32 #s(literal 1 binary32) (PI.f32)))))) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
#s(approx (* (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (/ (sin (* x (PI))) (* x (PI)))) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x)))
#s(approx (/ (/ (sin (* tau (* (PI) x))) (* (PI) x)) (/ (* tau (* (PI) x)) (sin (* (PI) x)))) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 (*.f32 (PI.f32) x) #s(literal 2 binary32)) (fma.f32 tau tau #s(literal 1 binary32))) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (+.f32 (*.f32 (*.f32 (fma.f32 tau tau #s(literal 1 binary32)) #s(literal -1/6 binary32)) (pow.f32 (*.f32 (PI.f32) x) #s(literal 2 binary32))) #s(literal 1 binary32)))
(*.f32 (/.f32 (pow.f32 (PI.f32) #s(literal -2 binary32)) tau) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
(*.f32 #s(approx (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) (/.f32 #s(literal -1 binary32) (*.f32 (PI.f32) x))) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
(*.f32 (/.f32 #s(approx (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) #s(literal 1 binary32)) (*.f32 (neg.f32 (PI.f32)) x)) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
(/.f32 #s(approx (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (*.f32 tau (sin.f32 (*.f32 (PI.f32) x)))) (*.f32 (*.f32 x (PI.f32)) tau))
(*.f32 #s(approx (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) #s(approx (+ (* (* (* (* tau (PI)) tau) 1/6) x) (/ (/ -1 (PI)) x)) (*.f32 (*.f32 (*.f32 tau tau) x) (*.f32 (PI.f32) #s(literal 1/6 binary32))))) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
(*.f32 #s(approx (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) (/.f32 (/.f32 #s(literal -1 binary32) (PI.f32)) x)) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 tau x) (PI.f32))) #s(approx (/ (sin (* x (PI))) (* x (PI))) #s(literal 1 binary32)))
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) #s(approx (/ (sin (* x (PI))) (* x (PI))) #s(literal 1 binary32)))
(/.f32 (*.f32 #s(approx (/ (sin (* x (PI))) (* x (PI))) #s(literal 1 binary32)) (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau))) (*.f32 (*.f32 x (PI.f32)) tau))
(*.f32 (/.f32 (pow.f32 (sqrt.f32 (PI.f32)) #s(literal -4 binary32)) tau) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
(*.f32 (neg.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) #s(approx (/ (/ (sin (* (PI) x)) x) (* (* (PI) (* (PI) x)) (neg tau))) (/.f32 (/.f32 #s(literal -1 binary32) (*.f32 (PI.f32) x)) tau)))
(/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (/.f32 (PI.f32) x)) tau)) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
(*.f32 #s(approx (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) (fma.f32 (*.f32 (*.f32 (*.f32 tau (PI.f32)) tau) #s(literal 1/6 binary32)) x (/.f32 #s(literal 1 binary32) (*.f32 (neg.f32 (PI.f32)) x)))) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
(/.f32 (*.f32 (*.f32 #s(approx (/ (sin (* (PI) x)) x) (PI.f32)) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) (/.f32 #s(literal 1 binary32) x)) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
(*.f32 #s(approx (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) (fma.f32 (*.f32 #s(literal 1/6 binary32) (*.f32 (*.f32 tau tau) (PI.f32))) x (/.f32 (/.f32 #s(literal -1 binary32) (PI.f32)) x))) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
(*.f32 #s(approx (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) (fma.f32 (*.f32 tau (*.f32 (PI.f32) x)) (*.f32 #s(literal 1/6 binary32) tau) (/.f32 (/.f32 #s(literal -1 binary32) (PI.f32)) x))) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
(*.f32 #s(approx (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) (fma.f32 (*.f32 (*.f32 tau tau) (PI.f32)) (*.f32 #s(literal 1/6 binary32) x) (/.f32 (/.f32 #s(literal -1 binary32) (PI.f32)) x))) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
(*.f32 #s(approx (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) (fma.f32 (*.f32 (*.f32 (*.f32 tau (PI.f32)) tau) #s(literal 1/6 binary32)) x (/.f32 (/.f32 #s(literal -1 binary32) (PI.f32)) x))) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
(*.f32 #s(approx (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) (-.f32 (*.f32 (*.f32 #s(literal 1/6 binary32) x) (*.f32 (*.f32 tau tau) (PI.f32))) (/.f32 (/.f32 #s(literal 1 binary32) (PI.f32)) x))) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
(*.f32 #s(approx (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) (fma.f32 (*.f32 (*.f32 (*.f32 tau (PI.f32)) tau) #s(literal 1/6 binary32)) x (*.f32 #s(literal 1 binary32) (/.f32 (/.f32 #s(literal -1 binary32) (PI.f32)) x)))) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
(*.f32 #s(approx (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) (fma.f32 (*.f32 (*.f32 (*.f32 tau (PI.f32)) tau) #s(literal 1/6 binary32)) x (*.f32 (/.f32 #s(literal -1 binary32) x) (/.f32 #s(literal 1 binary32) (PI.f32))))) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
(*.f32 (neg.f32 #s(approx (sin (* tau (* (PI) x))) (*.f32 tau (*.f32 (PI.f32) x)))) (/.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (*.f32 (*.f32 (PI.f32) (*.f32 (PI.f32) x)) (neg.f32 tau))))
(*.f32 #s(approx (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) (fma.f32 (*.f32 (*.f32 (*.f32 tau (PI.f32)) tau) #s(literal 1/6 binary32)) x (*.f32 (*.f32 (/.f32 #s(literal -1 binary32) (PI.f32)) #s(literal -1 binary32)) (/.f32 #s(literal -1 binary32) x)))) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
(/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (pow.f32 (cbrt.f32 (PI.f32)) #s(literal 6 binary32)) tau)) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
(/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (pow.f32 (cbrt.f32 (PI.f32)) #s(literal 6 binary32)) tau)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (exp.f32 (log.f32 (PI.f32))) (PI.f32))) #s(literal 1 binary32)))
(/.f32 (*.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (sin.f32 (*.f32 (PI.f32) x))) (*.f32 (*.f32 (PI.f32) x) (*.f32 tau (*.f32 (PI.f32) x))))
(*.f32 (neg.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) (/.f32 (neg.f32 (sin.f32 (*.f32 (PI.f32) x))) (*.f32 (*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) x) tau) x)))
(*.f32 (neg.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (neg.f32 tau) (*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) x) x))))
(*.f32 (/.f32 (neg.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) (*.f32 (*.f32 (PI.f32) x) (*.f32 tau (*.f32 (PI.f32) x)))) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
(*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (*.f32 (*.f32 (neg.f32 (PI.f32)) x) x) (*.f32 tau (PI.f32)))) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
(/.f32 (neg.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (neg.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))))) (*.f32 (*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) x) tau) x))
(/.f32 (*.f32 (neg.f32 (sin.f32 (*.f32 (PI.f32) x))) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) (*.f32 (*.f32 (*.f32 (neg.f32 (PI.f32)) x) x) (*.f32 tau (PI.f32))))
(/.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (neg.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))))) (*.f32 (neg.f32 tau) (*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) x) x)))
(*.f32 (*.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (sin.f32 (*.f32 (PI.f32) x))) (/.f32 #s(literal 1 binary32) (*.f32 (*.f32 (PI.f32) x) (*.f32 tau (*.f32 (PI.f32) x)))))
#s(approx (* (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (/ (sin (* x (PI))) (* x (PI)))) (*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (PI.f32) (*.f32 (PI.f32) x))) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 tau x))))
#s(approx (/ (/ (sin (* tau (* (PI) x))) (* (PI) x)) (/ (* tau (* (PI) x)) (sin (* (PI) x)))) (*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 x x))))
(*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 tau (*.f32 (PI.f32) x))) (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (PI.f32) x)))
(*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (*.f32 tau (*.f32 (PI.f32) x)) x)) (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (PI.f32)))
(*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (*.f32 (PI.f32) x) (PI.f32))) (/.f32 (sin.f32 (*.f32 (*.f32 tau x) (PI.f32))) (*.f32 tau x)))
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 tau x) (PI.f32))) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 tau (PI.f32)) x)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x tau) (PI.f32))) (*.f32 (*.f32 tau x) (PI.f32))) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 x (PI.f32))) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 (*.f32 x (PI.f32)) tau)))
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 tau x) (PI.f32))) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 tau (PI.f32)) x)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
(/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (/.f32 (*.f32 (*.f32 tau x) (PI.f32)) (sin.f32 (*.f32 (*.f32 tau x) (PI.f32)))) (*.f32 (PI.f32) x)))
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) x) (sin.f32 (*.f32 (PI.f32) x))) (*.f32 (*.f32 tau (*.f32 (PI.f32) x)) (PI.f32)))
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 tau (*.f32 (PI.f32) x))) (sin.f32 (*.f32 (PI.f32) x))) (*.f32 (PI.f32) x))
Outputs
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x tau) (PI.f32))) (*.f32 (*.f32 tau x) (PI.f32))) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
Calls

4 calls:

113.0ms
(*.f32 x (PI.f32))
35.0ms
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
33.0ms
x
30.0ms
tau
Results
AccuracySegmentsBranch
97.7%1x
97.7%1tau
97.7%1(*.f32 x (PI.f32))
97.7%1(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
Compiler

Compiled 26 to 18 computations (30.8% saved)

regimes149.0ms (1.5%)

Memory
23.8MiB live, 214.4MiB allocated
Counts
105 → 1
Calls
Call 1
Inputs
#s(approx (* (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (/ (sin (* x (PI))) (* x (PI)))) #s(literal 1 binary32))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) #s(approx (+ (* (+ (* tau tau) 1) (* (* -1/6 (* x x)) (* (PI) (PI)))) 1) (fma.f32 (*.f32 (*.f32 (*.f32 #s(literal -1/6 binary32) x) x) (PI.f32)) (PI.f32) #s(literal 1 binary32))))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 #s(approx (+ (* tau tau) 1) #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) #s(approx (+ (* (+ (* tau tau) 1) (* (* -1/6 (* x x)) (* (PI) (PI)))) 1) (*.f32 (*.f32 (*.f32 (*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) tau) tau) #s(literal -1/6 binary32)) x) x)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) #s(approx (+ (* (+ (* tau tau) 1) (* (* -1/6 (* x x)) (* (PI) (PI)))) 1) (*.f32 (*.f32 (*.f32 #s(literal -1/6 binary32) x) x) (*.f32 (*.f32 (fma.f32 tau tau #s(literal 1 binary32)) (PI.f32)) (PI.f32)))))
(/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
#s(approx (* (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (/ (sin (* x (PI))) (* x (PI)))) (fma.f32 (*.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 (PI.f32) (PI.f32)) #s(literal -1/6 binary32))) (*.f32 x x) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 (*.f32 (fma.f32 tau tau #s(literal 1 binary32)) #s(literal -1/6 binary32)) (*.f32 x x)) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (*.f32 (*.f32 #s(literal -1/6 binary32) x) x) (*.f32 (*.f32 (fma.f32 tau tau #s(literal 1 binary32)) (PI.f32)) (PI.f32)) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (*.f32 (*.f32 (PI.f32) (PI.f32)) (fma.f32 tau tau #s(literal 1 binary32))) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (*.f32 (*.f32 (*.f32 (fma.f32 tau tau #s(literal 1 binary32)) #s(literal -1/6 binary32)) (*.f32 x x)) (PI.f32)) (PI.f32) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (*.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32))) (PI.f32) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (PI.f32) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32))) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 #s(literal -1/6 binary32) x)) x) #s(literal 1 binary32)))
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#s(approx (* (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (/ (sin (* x (PI))) (* x (PI)))) (*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (PI.f32) (*.f32 (PI.f32) x))) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 tau x))))
#s(approx (/ (/ (sin (* tau (* (PI) x))) (* (PI) x)) (/ (* tau (* (PI) x)) (sin (* (PI) x)))) (*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 x x))))
(*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 tau (*.f32 (PI.f32) x))) (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (PI.f32) x)))
(*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (*.f32 tau (*.f32 (PI.f32) x)) x)) (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (PI.f32)))
(*.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (*.f32 (PI.f32) x) (PI.f32))) (/.f32 (sin.f32 (*.f32 (*.f32 tau x) (PI.f32))) (*.f32 tau x)))
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 tau x) (PI.f32))) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 tau (PI.f32)) x)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
Outputs
(/.f32 (*.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (sin.f32 (*.f32 (PI.f32) x))) (*.f32 (*.f32 (PI.f32) x) (*.f32 tau (*.f32 (PI.f32) x))))
Calls

4 calls:

53.0ms
x
34.0ms
tau
29.0ms
(*.f32 x (PI.f32))
28.0ms
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
Results
AccuracySegmentsBranch
97.6%1x
97.6%1tau
97.6%1(*.f32 x (PI.f32))
97.6%1(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
Compiler

Compiled 26 to 18 computations (30.8% saved)

regimes139.0ms (1.4%)

Memory
2.2MiB live, 198.3MiB allocated
Counts
89 → 1
Calls
Call 1
Inputs
#s(approx (* (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (/ (sin (* x (PI))) (* x (PI)))) #s(literal 1 binary32))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) #s(approx (+ (* (+ (* tau tau) 1) (* (* -1/6 (* x x)) (* (PI) (PI)))) 1) (fma.f32 (*.f32 (*.f32 (*.f32 #s(literal -1/6 binary32) x) x) (PI.f32)) (PI.f32) #s(literal 1 binary32))))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 #s(approx (+ (* tau tau) 1) #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) #s(approx (+ (* (+ (* tau tau) 1) (* (* -1/6 (* x x)) (* (PI) (PI)))) 1) (*.f32 (*.f32 (*.f32 (*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) tau) tau) #s(literal -1/6 binary32)) x) x)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) #s(approx (+ (* (+ (* tau tau) 1) (* (* -1/6 (* x x)) (* (PI) (PI)))) 1) (*.f32 (*.f32 (*.f32 #s(literal -1/6 binary32) x) x) (*.f32 (*.f32 (fma.f32 tau tau #s(literal 1 binary32)) (PI.f32)) (PI.f32)))))
(/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
#s(approx (* (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (/ (sin (* x (PI))) (* x (PI)))) (fma.f32 (*.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 (PI.f32) (PI.f32)) #s(literal -1/6 binary32))) (*.f32 x x) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 (*.f32 (fma.f32 tau tau #s(literal 1 binary32)) #s(literal -1/6 binary32)) (*.f32 x x)) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (*.f32 (*.f32 #s(literal -1/6 binary32) x) x) (*.f32 (*.f32 (fma.f32 tau tau #s(literal 1 binary32)) (PI.f32)) (PI.f32)) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (*.f32 (*.f32 (PI.f32) (PI.f32)) (fma.f32 tau tau #s(literal 1 binary32))) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (*.f32 (*.f32 (*.f32 (fma.f32 tau tau #s(literal 1 binary32)) #s(literal -1/6 binary32)) (*.f32 x x)) (PI.f32)) (PI.f32) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (*.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32))) (PI.f32) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (PI.f32) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32))) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 #s(literal -1/6 binary32) x)) x) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) #s(literal 1 binary32)))
#s(approx (/ (/ (sin (* tau (* (PI) x))) (* (PI) x)) (/ (* tau (* (PI) x)) (sin (* (PI) x)))) (fma.f32 (*.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 (PI.f32) (PI.f32)) #s(literal -1/6 binary32))) (*.f32 x x) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (+.f32 (*.f32 tau tau) #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (fabs.f32 (PI.f32)))) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (fabs.f32 (PI.f32)) (PI.f32))) #s(literal 1 binary32)))
(/.f32 (neg.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) tau) (PI.f32)))) (*.f32 (*.f32 (neg.f32 (PI.f32)) (PI.f32)) tau))
(*.f32 (/.f32 #s(literal 1 binary32) (*.f32 (*.f32 (PI.f32) tau) (PI.f32))) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 #s(literal 1 binary32) (*.f32 tau tau) #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 (*.f32 tau tau) #s(literal 1 binary32) #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32)))
(/.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) tau) (PI.f32))) tau) (*.f32 (PI.f32) (PI.f32)))
(/.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) tau) (*.f32 (PI.f32) (PI.f32)))
(/.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (PI.f32)) (*.f32 tau (PI.f32)))
(*.f32 (neg.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau))) (/.f32 #s(literal -1 binary32) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
(*.f32 (/.f32 (/.f32 #s(literal 1 binary32) tau) (*.f32 (PI.f32) (PI.f32))) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
(*.f32 (/.f32 (/.f32 #s(literal 1 binary32) (PI.f32)) (*.f32 (PI.f32) tau)) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
(*.f32 (/.f32 (/.f32 #s(literal 1 binary32) (*.f32 (PI.f32) (PI.f32))) tau) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
(/.f32 (/.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) tau) (PI.f32))) (PI.f32)) (PI.f32)) tau)
(/.f32 (/.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (PI.f32)) tau) (PI.f32))
(/.f32 (/.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (PI.f32)) (PI.f32)) tau)
(*.f32 (neg.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (PI.f32))) (/.f32 #s(literal -1 binary32) (*.f32 tau (PI.f32))))
(/.f32 #s(literal -1 binary32) (*.f32 (neg.f32 tau) (/.f32 (*.f32 (PI.f32) (PI.f32)) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) tau) (PI.f32))))))
(/.f32 #s(approx (* (/ (sin (* tau (* (PI) x))) tau) (neg (sin (* (PI) x)))) (*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) x) (neg.f32 x))) (*.f32 (*.f32 (PI.f32) x) (*.f32 (neg.f32 (PI.f32)) x)))
(*.f32 (/.f32 (/.f32 #s(literal 1 binary32) (PI.f32)) tau) (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (PI.f32)))
(*.f32 (/.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (PI.f32)) (PI.f32)) (/.f32 #s(literal 1 binary32) tau))
(*.f32 (/.f32 (/.f32 (/.f32 #s(literal 1 binary32) (PI.f32)) tau) (PI.f32)) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
(/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (*.f32 tau (PI.f32)))))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (/.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 #s(literal -1/6 binary32) x)) (/.f32 #s(literal 1 binary32) x)) #s(literal 1 binary32)))
(/.f32 (*.f32 #s(approx (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) x) tau)) (/.f32 #s(literal 1 binary32) x)) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
(*.f32 (*.f32 (/.f32 (/.f32 #s(literal 1 binary32) (PI.f32)) tau) (/.f32 #s(literal 1 binary32) (PI.f32))) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
(*.f32 (/.f32 #s(literal 1 binary32) (/.f32 (*.f32 (PI.f32) tau) (/.f32 #s(literal 1 binary32) (PI.f32)))) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
(*.f32 (/.f32 #s(literal 1 binary32) (/.f32 (*.f32 (PI.f32) (PI.f32)) (/.f32 #s(literal 1 binary32) tau))) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
(/.f32 (/.f32 #s(literal 1 binary32) (/.f32 #s(literal 1 binary32) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (/.f32 #s(literal 1 binary32) (/.f32 #s(literal 1 binary32) (fma.f32 tau tau #s(literal 1 binary32)))) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32)))
(/.f32 #s(literal 1 binary32) (/.f32 tau (/.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) tau) (PI.f32))) (PI.f32)) (PI.f32))))
(/.f32 #s(literal 1 binary32) (/.f32 tau (/.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (PI.f32)) (PI.f32))))
(/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (/.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) tau) (PI.f32))) (PI.f32)) tau)))
(/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (/.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (PI.f32)) tau)))
(/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (*.f32 (*.f32 (*.f32 tau (PI.f32)) (sqrt.f32 (PI.f32))) (sqrt.f32 (PI.f32))))
(/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (*.f32 tau (PI.f32)) (sqrt.f32 (PI.f32))) (sqrt.f32 (PI.f32)))) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
(/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (*.f32 (PI.f32) tau) (sqrt.f32 (PI.f32))) (sqrt.f32 (PI.f32)))) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
(*.f32 (/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (/.f32 (/.f32 #s(literal 1 binary32) (PI.f32)) tau))) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
(/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (/.f32 #s(literal 1 binary32) (/.f32 (/.f32 #s(literal 1 binary32) (PI.f32)) (/.f32 tau (/.f32 #s(literal 1 binary32) (PI.f32)))))) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
#s(approx (* (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (/ (sin (* x (PI))) (* x (PI)))) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x)))
#s(approx (/ (/ (sin (* tau (* (PI) x))) (* (PI) x)) (/ (* tau (* (PI) x)) (sin (* (PI) x)))) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 (*.f32 (PI.f32) x) #s(literal 2 binary32)) (fma.f32 tau tau #s(literal 1 binary32))) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (+.f32 (*.f32 (*.f32 (fma.f32 tau tau #s(literal 1 binary32)) #s(literal -1/6 binary32)) (pow.f32 (*.f32 (PI.f32) x) #s(literal 2 binary32))) #s(literal 1 binary32)))
(*.f32 (/.f32 (pow.f32 (PI.f32) #s(literal -2 binary32)) tau) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
(*.f32 #s(approx (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) (/.f32 #s(literal -1 binary32) (*.f32 (PI.f32) x))) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
(*.f32 (/.f32 #s(approx (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) #s(literal 1 binary32)) (*.f32 (neg.f32 (PI.f32)) x)) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
(/.f32 #s(approx (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (*.f32 tau (sin.f32 (*.f32 (PI.f32) x)))) (*.f32 (*.f32 x (PI.f32)) tau))
(*.f32 #s(approx (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) #s(approx (+ (* (* (* (* tau (PI)) tau) 1/6) x) (/ (/ -1 (PI)) x)) (*.f32 (*.f32 (*.f32 tau tau) x) (*.f32 (PI.f32) #s(literal 1/6 binary32))))) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
(*.f32 #s(approx (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) (/.f32 (/.f32 #s(literal -1 binary32) (PI.f32)) x)) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 tau x) (PI.f32))) #s(approx (/ (sin (* x (PI))) (* x (PI))) #s(literal 1 binary32)))
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) #s(approx (/ (sin (* x (PI))) (* x (PI))) #s(literal 1 binary32)))
(/.f32 (*.f32 #s(approx (/ (sin (* x (PI))) (* x (PI))) #s(literal 1 binary32)) (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau))) (*.f32 (*.f32 x (PI.f32)) tau))
(*.f32 (/.f32 (pow.f32 (sqrt.f32 (PI.f32)) #s(literal -4 binary32)) tau) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
(*.f32 (neg.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) #s(approx (/ (/ (sin (* (PI) x)) x) (* (* (PI) (* (PI) x)) (neg tau))) (/.f32 (/.f32 #s(literal -1 binary32) (*.f32 (PI.f32) x)) tau)))
(/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (/.f32 (PI.f32) x)) tau)) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
(*.f32 #s(approx (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) (fma.f32 (*.f32 (*.f32 (*.f32 tau (PI.f32)) tau) #s(literal 1/6 binary32)) x (/.f32 #s(literal 1 binary32) (*.f32 (neg.f32 (PI.f32)) x)))) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
(/.f32 (*.f32 (*.f32 #s(approx (/ (sin (* (PI) x)) x) (PI.f32)) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) (/.f32 #s(literal 1 binary32) x)) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
(*.f32 #s(approx (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) (fma.f32 (*.f32 #s(literal 1/6 binary32) (*.f32 (*.f32 tau tau) (PI.f32))) x (/.f32 (/.f32 #s(literal -1 binary32) (PI.f32)) x))) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
(*.f32 #s(approx (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) (fma.f32 (*.f32 tau (*.f32 (PI.f32) x)) (*.f32 #s(literal 1/6 binary32) tau) (/.f32 (/.f32 #s(literal -1 binary32) (PI.f32)) x))) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
(*.f32 #s(approx (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) (fma.f32 (*.f32 (*.f32 tau tau) (PI.f32)) (*.f32 #s(literal 1/6 binary32) x) (/.f32 (/.f32 #s(literal -1 binary32) (PI.f32)) x))) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
(*.f32 #s(approx (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) (fma.f32 (*.f32 (*.f32 (*.f32 tau (PI.f32)) tau) #s(literal 1/6 binary32)) x (/.f32 (/.f32 #s(literal -1 binary32) (PI.f32)) x))) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
(*.f32 #s(approx (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) (-.f32 (*.f32 (*.f32 #s(literal 1/6 binary32) x) (*.f32 (*.f32 tau tau) (PI.f32))) (/.f32 (/.f32 #s(literal 1 binary32) (PI.f32)) x))) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
(*.f32 #s(approx (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) (fma.f32 (*.f32 (*.f32 (*.f32 tau (PI.f32)) tau) #s(literal 1/6 binary32)) x (*.f32 #s(literal 1 binary32) (/.f32 (/.f32 #s(literal -1 binary32) (PI.f32)) x)))) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
(*.f32 #s(approx (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) (fma.f32 (*.f32 (*.f32 (*.f32 tau (PI.f32)) tau) #s(literal 1/6 binary32)) x (*.f32 (/.f32 #s(literal -1 binary32) x) (/.f32 #s(literal 1 binary32) (PI.f32))))) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
(*.f32 (neg.f32 #s(approx (sin (* tau (* (PI) x))) (*.f32 tau (*.f32 (PI.f32) x)))) (/.f32 (/.f32 (sin.f32 (*.f32 (PI.f32) x)) x) (*.f32 (*.f32 (PI.f32) (*.f32 (PI.f32) x)) (neg.f32 tau))))
(*.f32 #s(approx (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) (fma.f32 (*.f32 (*.f32 (*.f32 tau (PI.f32)) tau) #s(literal 1/6 binary32)) x (*.f32 (*.f32 (/.f32 #s(literal -1 binary32) (PI.f32)) #s(literal -1 binary32)) (/.f32 #s(literal -1 binary32) x)))) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
(/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (pow.f32 (cbrt.f32 (PI.f32)) #s(literal 6 binary32)) tau)) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
(/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (pow.f32 (cbrt.f32 (PI.f32)) #s(literal 6 binary32)) tau)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (exp.f32 (log.f32 (PI.f32))) (PI.f32))) #s(literal 1 binary32)))
Outputs
(*.f32 #s(approx (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) (-.f32 (*.f32 (*.f32 #s(literal 1/6 binary32) x) (*.f32 (*.f32 tau tau) (PI.f32))) (/.f32 (/.f32 #s(literal 1 binary32) (PI.f32)) x))) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
Calls

4 calls:

50.0ms
(*.f32 x (PI.f32))
32.0ms
x
28.0ms
tau
25.0ms
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
Results
AccuracySegmentsBranch
78.2%1x
78.2%1(*.f32 x (PI.f32))
78.2%1tau
78.2%1(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
Compiler

Compiled 26 to 18 computations (30.8% saved)

regimes105.0ms (1%)

Memory
0.5MiB live, 154.7MiB allocated
Counts
81 → 1
Calls
Call 1
Inputs
#s(approx (* (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (/ (sin (* x (PI))) (* x (PI)))) #s(literal 1 binary32))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) #s(approx (+ (* (+ (* tau tau) 1) (* (* -1/6 (* x x)) (* (PI) (PI)))) 1) (fma.f32 (*.f32 (*.f32 (*.f32 #s(literal -1/6 binary32) x) x) (PI.f32)) (PI.f32) #s(literal 1 binary32))))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 #s(approx (+ (* tau tau) 1) #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) #s(approx (+ (* (+ (* tau tau) 1) (* (* -1/6 (* x x)) (* (PI) (PI)))) 1) (*.f32 (*.f32 (*.f32 (*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) tau) tau) #s(literal -1/6 binary32)) x) x)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) #s(approx (+ (* (+ (* tau tau) 1) (* (* -1/6 (* x x)) (* (PI) (PI)))) 1) (*.f32 (*.f32 (*.f32 #s(literal -1/6 binary32) x) x) (*.f32 (*.f32 (fma.f32 tau tau #s(literal 1 binary32)) (PI.f32)) (PI.f32)))))
(/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
#s(approx (* (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (/ (sin (* x (PI))) (* x (PI)))) (fma.f32 (*.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 (PI.f32) (PI.f32)) #s(literal -1/6 binary32))) (*.f32 x x) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 (*.f32 (fma.f32 tau tau #s(literal 1 binary32)) #s(literal -1/6 binary32)) (*.f32 x x)) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (*.f32 (*.f32 #s(literal -1/6 binary32) x) x) (*.f32 (*.f32 (fma.f32 tau tau #s(literal 1 binary32)) (PI.f32)) (PI.f32)) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (*.f32 (*.f32 (PI.f32) (PI.f32)) (fma.f32 tau tau #s(literal 1 binary32))) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (*.f32 (*.f32 (*.f32 (fma.f32 tau tau #s(literal 1 binary32)) #s(literal -1/6 binary32)) (*.f32 x x)) (PI.f32)) (PI.f32) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (*.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32))) (PI.f32) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (PI.f32) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32))) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 #s(literal -1/6 binary32) x)) x) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) #s(literal 1 binary32)))
#s(approx (/ (/ (sin (* tau (* (PI) x))) (* (PI) x)) (/ (* tau (* (PI) x)) (sin (* (PI) x)))) (fma.f32 (*.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 (PI.f32) (PI.f32)) #s(literal -1/6 binary32))) (*.f32 x x) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (+.f32 (*.f32 tau tau) #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (fabs.f32 (PI.f32)))) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (fabs.f32 (PI.f32)) (PI.f32))) #s(literal 1 binary32)))
(/.f32 (neg.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) tau) (PI.f32)))) (*.f32 (*.f32 (neg.f32 (PI.f32)) (PI.f32)) tau))
(*.f32 (/.f32 #s(literal 1 binary32) (*.f32 (*.f32 (PI.f32) tau) (PI.f32))) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 #s(literal 1 binary32) (*.f32 tau tau) #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 (*.f32 tau tau) #s(literal 1 binary32) #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32)))
(/.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) tau) (PI.f32))) tau) (*.f32 (PI.f32) (PI.f32)))
(/.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) tau) (*.f32 (PI.f32) (PI.f32)))
(/.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (PI.f32)) (*.f32 tau (PI.f32)))
(*.f32 (neg.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau))) (/.f32 #s(literal -1 binary32) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
(*.f32 (/.f32 (/.f32 #s(literal 1 binary32) tau) (*.f32 (PI.f32) (PI.f32))) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
(*.f32 (/.f32 (/.f32 #s(literal 1 binary32) (PI.f32)) (*.f32 (PI.f32) tau)) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
(*.f32 (/.f32 (/.f32 #s(literal 1 binary32) (*.f32 (PI.f32) (PI.f32))) tau) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
(/.f32 (/.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) tau) (PI.f32))) (PI.f32)) (PI.f32)) tau)
(/.f32 (/.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (PI.f32)) tau) (PI.f32))
(/.f32 (/.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (PI.f32)) (PI.f32)) tau)
(*.f32 (neg.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (PI.f32))) (/.f32 #s(literal -1 binary32) (*.f32 tau (PI.f32))))
(/.f32 #s(literal -1 binary32) (*.f32 (neg.f32 tau) (/.f32 (*.f32 (PI.f32) (PI.f32)) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) tau) (PI.f32))))))
(/.f32 #s(approx (* (/ (sin (* tau (* (PI) x))) tau) (neg (sin (* (PI) x)))) (*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) x) (neg.f32 x))) (*.f32 (*.f32 (PI.f32) x) (*.f32 (neg.f32 (PI.f32)) x)))
(*.f32 (/.f32 (/.f32 #s(literal 1 binary32) (PI.f32)) tau) (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (PI.f32)))
(*.f32 (/.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (PI.f32)) (PI.f32)) (/.f32 #s(literal 1 binary32) tau))
(*.f32 (/.f32 (/.f32 (/.f32 #s(literal 1 binary32) (PI.f32)) tau) (PI.f32)) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
(/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (*.f32 tau (PI.f32)))))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (/.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 #s(literal -1/6 binary32) x)) (/.f32 #s(literal 1 binary32) x)) #s(literal 1 binary32)))
(/.f32 (*.f32 #s(approx (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) x) tau)) (/.f32 #s(literal 1 binary32) x)) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
(*.f32 (*.f32 (/.f32 (/.f32 #s(literal 1 binary32) (PI.f32)) tau) (/.f32 #s(literal 1 binary32) (PI.f32))) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
(*.f32 (/.f32 #s(literal 1 binary32) (/.f32 (*.f32 (PI.f32) tau) (/.f32 #s(literal 1 binary32) (PI.f32)))) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
(*.f32 (/.f32 #s(literal 1 binary32) (/.f32 (*.f32 (PI.f32) (PI.f32)) (/.f32 #s(literal 1 binary32) tau))) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
(/.f32 (/.f32 #s(literal 1 binary32) (/.f32 #s(literal 1 binary32) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (/.f32 #s(literal 1 binary32) (/.f32 #s(literal 1 binary32) (fma.f32 tau tau #s(literal 1 binary32)))) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32)))
(/.f32 #s(literal 1 binary32) (/.f32 tau (/.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) tau) (PI.f32))) (PI.f32)) (PI.f32))))
(/.f32 #s(literal 1 binary32) (/.f32 tau (/.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (PI.f32)) (PI.f32))))
(/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (/.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) tau) (PI.f32))) (PI.f32)) tau)))
(/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (/.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (PI.f32)) tau)))
(/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (*.f32 (*.f32 (*.f32 tau (PI.f32)) (sqrt.f32 (PI.f32))) (sqrt.f32 (PI.f32))))
(/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (*.f32 tau (PI.f32)) (sqrt.f32 (PI.f32))) (sqrt.f32 (PI.f32)))) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
(/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (*.f32 (PI.f32) tau) (sqrt.f32 (PI.f32))) (sqrt.f32 (PI.f32)))) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
(*.f32 (/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (/.f32 (/.f32 #s(literal 1 binary32) (PI.f32)) tau))) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
(/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (/.f32 #s(literal 1 binary32) (/.f32 (/.f32 #s(literal 1 binary32) (PI.f32)) (/.f32 tau (/.f32 #s(literal 1 binary32) (PI.f32)))))) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
#s(approx (* (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (/ (sin (* x (PI))) (* x (PI)))) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x)))
#s(approx (/ (/ (sin (* tau (* (PI) x))) (* (PI) x)) (/ (* tau (* (PI) x)) (sin (* (PI) x)))) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 (*.f32 (PI.f32) x) #s(literal 2 binary32)) (fma.f32 tau tau #s(literal 1 binary32))) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (+.f32 (*.f32 (*.f32 (fma.f32 tau tau #s(literal 1 binary32)) #s(literal -1/6 binary32)) (pow.f32 (*.f32 (PI.f32) x) #s(literal 2 binary32))) #s(literal 1 binary32)))
(*.f32 (/.f32 (pow.f32 (PI.f32) #s(literal -2 binary32)) tau) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
(*.f32 #s(approx (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) (/.f32 #s(literal -1 binary32) (*.f32 (PI.f32) x))) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
(*.f32 (/.f32 #s(approx (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) #s(literal 1 binary32)) (*.f32 (neg.f32 (PI.f32)) x)) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
(/.f32 #s(approx (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (*.f32 tau (sin.f32 (*.f32 (PI.f32) x)))) (*.f32 (*.f32 x (PI.f32)) tau))
(*.f32 #s(approx (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) #s(approx (+ (* (* (* (* tau (PI)) tau) 1/6) x) (/ (/ -1 (PI)) x)) (*.f32 (*.f32 (*.f32 tau tau) x) (*.f32 (PI.f32) #s(literal 1/6 binary32))))) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
(*.f32 #s(approx (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) (/.f32 (/.f32 #s(literal -1 binary32) (PI.f32)) x)) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 tau x) (PI.f32))) #s(approx (/ (sin (* x (PI))) (* x (PI))) #s(literal 1 binary32)))
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) #s(approx (/ (sin (* x (PI))) (* x (PI))) #s(literal 1 binary32)))
(/.f32 (*.f32 #s(approx (/ (sin (* x (PI))) (* x (PI))) #s(literal 1 binary32)) (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau))) (*.f32 (*.f32 x (PI.f32)) tau))
(*.f32 (/.f32 (pow.f32 (sqrt.f32 (PI.f32)) #s(literal -4 binary32)) tau) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
(*.f32 (neg.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) #s(approx (/ (/ (sin (* (PI) x)) x) (* (* (PI) (* (PI) x)) (neg tau))) (/.f32 (/.f32 #s(literal -1 binary32) (*.f32 (PI.f32) x)) tau)))
(/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (sin.f32 (*.f32 (PI.f32) x)) (/.f32 (PI.f32) x)) tau)) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
(*.f32 #s(approx (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) (fma.f32 (*.f32 (*.f32 (*.f32 tau (PI.f32)) tau) #s(literal 1/6 binary32)) x (/.f32 #s(literal 1 binary32) (*.f32 (neg.f32 (PI.f32)) x)))) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
(/.f32 (*.f32 (*.f32 #s(approx (/ (sin (* (PI) x)) x) (PI.f32)) (sin.f32 (*.f32 tau (*.f32 (PI.f32) x)))) (/.f32 #s(literal 1 binary32) x)) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
(*.f32 #s(approx (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) (fma.f32 (*.f32 #s(literal 1/6 binary32) (*.f32 (*.f32 tau tau) (PI.f32))) x (/.f32 (/.f32 #s(literal -1 binary32) (PI.f32)) x))) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
(*.f32 #s(approx (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) (fma.f32 (*.f32 tau (*.f32 (PI.f32) x)) (*.f32 #s(literal 1/6 binary32) tau) (/.f32 (/.f32 #s(literal -1 binary32) (PI.f32)) x))) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
(*.f32 #s(approx (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) (fma.f32 (*.f32 (*.f32 tau tau) (PI.f32)) (*.f32 #s(literal 1/6 binary32) x) (/.f32 (/.f32 #s(literal -1 binary32) (PI.f32)) x))) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
(*.f32 #s(approx (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) (fma.f32 (*.f32 (*.f32 (*.f32 tau (PI.f32)) tau) #s(literal 1/6 binary32)) x (/.f32 (/.f32 #s(literal -1 binary32) (PI.f32)) x))) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
Outputs
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) #s(approx (/ (sin (* x (PI))) (* x (PI))) #s(literal 1 binary32)))
Calls

4 calls:

28.0ms
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
25.0ms
(*.f32 x (PI.f32))
25.0ms
tau
24.0ms
x
Results
AccuracySegmentsBranch
70.4%1x
70.4%1(*.f32 x (PI.f32))
70.4%1tau
70.4%1(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
Compiler

Compiled 26 to 18 computations (30.8% saved)

regimes145.0ms (1.4%)

Memory
15.5MiB live, 138.5MiB allocated
Counts
70 → 1
Calls
Call 1
Inputs
#s(approx (* (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (/ (sin (* x (PI))) (* x (PI)))) #s(literal 1 binary32))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) #s(approx (+ (* (+ (* tau tau) 1) (* (* -1/6 (* x x)) (* (PI) (PI)))) 1) (fma.f32 (*.f32 (*.f32 (*.f32 #s(literal -1/6 binary32) x) x) (PI.f32)) (PI.f32) #s(literal 1 binary32))))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 #s(approx (+ (* tau tau) 1) #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) #s(approx (+ (* (+ (* tau tau) 1) (* (* -1/6 (* x x)) (* (PI) (PI)))) 1) (*.f32 (*.f32 (*.f32 (*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) tau) tau) #s(literal -1/6 binary32)) x) x)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) #s(approx (+ (* (+ (* tau tau) 1) (* (* -1/6 (* x x)) (* (PI) (PI)))) 1) (*.f32 (*.f32 (*.f32 #s(literal -1/6 binary32) x) x) (*.f32 (*.f32 (fma.f32 tau tau #s(literal 1 binary32)) (PI.f32)) (PI.f32)))))
(/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
#s(approx (* (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (/ (sin (* x (PI))) (* x (PI)))) (fma.f32 (*.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 (PI.f32) (PI.f32)) #s(literal -1/6 binary32))) (*.f32 x x) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 (*.f32 (fma.f32 tau tau #s(literal 1 binary32)) #s(literal -1/6 binary32)) (*.f32 x x)) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (*.f32 (*.f32 #s(literal -1/6 binary32) x) x) (*.f32 (*.f32 (fma.f32 tau tau #s(literal 1 binary32)) (PI.f32)) (PI.f32)) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (*.f32 (*.f32 (PI.f32) (PI.f32)) (fma.f32 tau tau #s(literal 1 binary32))) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (*.f32 (*.f32 (*.f32 (fma.f32 tau tau #s(literal 1 binary32)) #s(literal -1/6 binary32)) (*.f32 x x)) (PI.f32)) (PI.f32) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (*.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32))) (PI.f32) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (PI.f32) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32))) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 #s(literal -1/6 binary32) x)) x) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) #s(literal 1 binary32)))
#s(approx (/ (/ (sin (* tau (* (PI) x))) (* (PI) x)) (/ (* tau (* (PI) x)) (sin (* (PI) x)))) (fma.f32 (*.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 (PI.f32) (PI.f32)) #s(literal -1/6 binary32))) (*.f32 x x) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (+.f32 (*.f32 tau tau) #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (fabs.f32 (PI.f32)))) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (fabs.f32 (PI.f32)) (PI.f32))) #s(literal 1 binary32)))
(/.f32 (neg.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) tau) (PI.f32)))) (*.f32 (*.f32 (neg.f32 (PI.f32)) (PI.f32)) tau))
(*.f32 (/.f32 #s(literal 1 binary32) (*.f32 (*.f32 (PI.f32) tau) (PI.f32))) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 #s(literal 1 binary32) (*.f32 tau tau) #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 (*.f32 tau tau) #s(literal 1 binary32) #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32)))
(/.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) tau) (PI.f32))) tau) (*.f32 (PI.f32) (PI.f32)))
(/.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) tau) (*.f32 (PI.f32) (PI.f32)))
(/.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (PI.f32)) (*.f32 tau (PI.f32)))
(*.f32 (neg.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau))) (/.f32 #s(literal -1 binary32) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
(*.f32 (/.f32 (/.f32 #s(literal 1 binary32) tau) (*.f32 (PI.f32) (PI.f32))) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
(*.f32 (/.f32 (/.f32 #s(literal 1 binary32) (PI.f32)) (*.f32 (PI.f32) tau)) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
(*.f32 (/.f32 (/.f32 #s(literal 1 binary32) (*.f32 (PI.f32) (PI.f32))) tau) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
(/.f32 (/.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) tau) (PI.f32))) (PI.f32)) (PI.f32)) tau)
(/.f32 (/.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (PI.f32)) tau) (PI.f32))
(/.f32 (/.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (PI.f32)) (PI.f32)) tau)
(*.f32 (neg.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (PI.f32))) (/.f32 #s(literal -1 binary32) (*.f32 tau (PI.f32))))
(/.f32 #s(literal -1 binary32) (*.f32 (neg.f32 tau) (/.f32 (*.f32 (PI.f32) (PI.f32)) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) tau) (PI.f32))))))
(/.f32 #s(approx (* (/ (sin (* tau (* (PI) x))) tau) (neg (sin (* (PI) x)))) (*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) x) (neg.f32 x))) (*.f32 (*.f32 (PI.f32) x) (*.f32 (neg.f32 (PI.f32)) x)))
(*.f32 (/.f32 (/.f32 #s(literal 1 binary32) (PI.f32)) tau) (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (PI.f32)))
(*.f32 (/.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (PI.f32)) (PI.f32)) (/.f32 #s(literal 1 binary32) tau))
(*.f32 (/.f32 (/.f32 (/.f32 #s(literal 1 binary32) (PI.f32)) tau) (PI.f32)) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
(/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (*.f32 tau (PI.f32)))))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (/.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 #s(literal -1/6 binary32) x)) (/.f32 #s(literal 1 binary32) x)) #s(literal 1 binary32)))
(/.f32 (*.f32 #s(approx (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) x) tau)) (/.f32 #s(literal 1 binary32) x)) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
(*.f32 (*.f32 (/.f32 (/.f32 #s(literal 1 binary32) (PI.f32)) tau) (/.f32 #s(literal 1 binary32) (PI.f32))) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
(*.f32 (/.f32 #s(literal 1 binary32) (/.f32 (*.f32 (PI.f32) tau) (/.f32 #s(literal 1 binary32) (PI.f32)))) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
(*.f32 (/.f32 #s(literal 1 binary32) (/.f32 (*.f32 (PI.f32) (PI.f32)) (/.f32 #s(literal 1 binary32) tau))) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
(/.f32 (/.f32 #s(literal 1 binary32) (/.f32 #s(literal 1 binary32) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (/.f32 #s(literal 1 binary32) (/.f32 #s(literal 1 binary32) (fma.f32 tau tau #s(literal 1 binary32)))) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32)))
(/.f32 #s(literal 1 binary32) (/.f32 tau (/.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) tau) (PI.f32))) (PI.f32)) (PI.f32))))
(/.f32 #s(literal 1 binary32) (/.f32 tau (/.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (PI.f32)) (PI.f32))))
(/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (/.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) tau) (PI.f32))) (PI.f32)) tau)))
(/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (/.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (PI.f32)) tau)))
(/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (*.f32 (*.f32 (*.f32 tau (PI.f32)) (sqrt.f32 (PI.f32))) (sqrt.f32 (PI.f32))))
(/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (*.f32 tau (PI.f32)) (sqrt.f32 (PI.f32))) (sqrt.f32 (PI.f32)))) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
(/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (*.f32 (PI.f32) tau) (sqrt.f32 (PI.f32))) (sqrt.f32 (PI.f32)))) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
(*.f32 (/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (/.f32 (/.f32 #s(literal 1 binary32) (PI.f32)) tau))) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
(/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (/.f32 #s(literal 1 binary32) (/.f32 (/.f32 #s(literal 1 binary32) (PI.f32)) (/.f32 tau (/.f32 #s(literal 1 binary32) (PI.f32)))))) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
#s(approx (* (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (/ (sin (* x (PI))) (* x (PI)))) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x)))
#s(approx (/ (/ (sin (* tau (* (PI) x))) (* (PI) x)) (/ (* tau (* (PI) x)) (sin (* (PI) x)))) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 (*.f32 (PI.f32) x) #s(literal 2 binary32)) (fma.f32 tau tau #s(literal 1 binary32))) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (+.f32 (*.f32 (*.f32 (fma.f32 tau tau #s(literal 1 binary32)) #s(literal -1/6 binary32)) (pow.f32 (*.f32 (PI.f32) x) #s(literal 2 binary32))) #s(literal 1 binary32)))
(*.f32 (/.f32 (pow.f32 (PI.f32) #s(literal -2 binary32)) tau) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
(*.f32 #s(approx (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) (/.f32 #s(literal -1 binary32) (*.f32 (PI.f32) x))) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
(*.f32 (/.f32 #s(approx (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) #s(literal 1 binary32)) (*.f32 (neg.f32 (PI.f32)) x)) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
(/.f32 #s(approx (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (*.f32 tau (sin.f32 (*.f32 (PI.f32) x)))) (*.f32 (*.f32 x (PI.f32)) tau))
(*.f32 #s(approx (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) #s(approx (+ (* (* (* (* tau (PI)) tau) 1/6) x) (/ (/ -1 (PI)) x)) (*.f32 (*.f32 (*.f32 tau tau) x) (*.f32 (PI.f32) #s(literal 1/6 binary32))))) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
(*.f32 #s(approx (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) (/.f32 (/.f32 #s(literal -1 binary32) (PI.f32)) x)) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 tau x) (PI.f32))) #s(approx (/ (sin (* x (PI))) (* x (PI))) #s(literal 1 binary32)))
Outputs
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 tau x) (PI.f32))) #s(approx (/ (sin (* x (PI))) (* x (PI))) #s(literal 1 binary32)))
Calls

4 calls:

81.0ms
x
23.0ms
(*.f32 x (PI.f32))
20.0ms
tau
18.0ms
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
Results
AccuracySegmentsBranch
70.1%1(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
70.1%1x
70.1%1tau
70.1%1(*.f32 x (PI.f32))
Compiler

Compiled 26 to 18 computations (30.8% saved)

regimes88.0ms (0.9%)

Memory
14.8MiB live, 171.5MiB allocated
Counts
69 → 1
Calls
Call 1
Inputs
#s(approx (* (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (/ (sin (* x (PI))) (* x (PI)))) #s(literal 1 binary32))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) #s(approx (+ (* (+ (* tau tau) 1) (* (* -1/6 (* x x)) (* (PI) (PI)))) 1) (fma.f32 (*.f32 (*.f32 (*.f32 #s(literal -1/6 binary32) x) x) (PI.f32)) (PI.f32) #s(literal 1 binary32))))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 #s(approx (+ (* tau tau) 1) #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) #s(approx (+ (* (+ (* tau tau) 1) (* (* -1/6 (* x x)) (* (PI) (PI)))) 1) (*.f32 (*.f32 (*.f32 (*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) tau) tau) #s(literal -1/6 binary32)) x) x)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) #s(approx (+ (* (+ (* tau tau) 1) (* (* -1/6 (* x x)) (* (PI) (PI)))) 1) (*.f32 (*.f32 (*.f32 #s(literal -1/6 binary32) x) x) (*.f32 (*.f32 (fma.f32 tau tau #s(literal 1 binary32)) (PI.f32)) (PI.f32)))))
(/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
#s(approx (* (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (/ (sin (* x (PI))) (* x (PI)))) (fma.f32 (*.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 (PI.f32) (PI.f32)) #s(literal -1/6 binary32))) (*.f32 x x) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 (*.f32 (fma.f32 tau tau #s(literal 1 binary32)) #s(literal -1/6 binary32)) (*.f32 x x)) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (*.f32 (*.f32 #s(literal -1/6 binary32) x) x) (*.f32 (*.f32 (fma.f32 tau tau #s(literal 1 binary32)) (PI.f32)) (PI.f32)) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (*.f32 (*.f32 (PI.f32) (PI.f32)) (fma.f32 tau tau #s(literal 1 binary32))) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (*.f32 (*.f32 (*.f32 (fma.f32 tau tau #s(literal 1 binary32)) #s(literal -1/6 binary32)) (*.f32 x x)) (PI.f32)) (PI.f32) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (*.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32))) (PI.f32) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (PI.f32) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32))) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 #s(literal -1/6 binary32) x)) x) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) #s(literal 1 binary32)))
#s(approx (/ (/ (sin (* tau (* (PI) x))) (* (PI) x)) (/ (* tau (* (PI) x)) (sin (* (PI) x)))) (fma.f32 (*.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 (PI.f32) (PI.f32)) #s(literal -1/6 binary32))) (*.f32 x x) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (+.f32 (*.f32 tau tau) #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (fabs.f32 (PI.f32)))) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (fabs.f32 (PI.f32)) (PI.f32))) #s(literal 1 binary32)))
(/.f32 (neg.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) tau) (PI.f32)))) (*.f32 (*.f32 (neg.f32 (PI.f32)) (PI.f32)) tau))
(*.f32 (/.f32 #s(literal 1 binary32) (*.f32 (*.f32 (PI.f32) tau) (PI.f32))) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 #s(literal 1 binary32) (*.f32 tau tau) #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 (*.f32 tau tau) #s(literal 1 binary32) #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32)))
(/.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) tau) (PI.f32))) tau) (*.f32 (PI.f32) (PI.f32)))
(/.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) tau) (*.f32 (PI.f32) (PI.f32)))
(/.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (PI.f32)) (*.f32 tau (PI.f32)))
(*.f32 (neg.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau))) (/.f32 #s(literal -1 binary32) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
(*.f32 (/.f32 (/.f32 #s(literal 1 binary32) tau) (*.f32 (PI.f32) (PI.f32))) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
(*.f32 (/.f32 (/.f32 #s(literal 1 binary32) (PI.f32)) (*.f32 (PI.f32) tau)) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
(*.f32 (/.f32 (/.f32 #s(literal 1 binary32) (*.f32 (PI.f32) (PI.f32))) tau) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
(/.f32 (/.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) tau) (PI.f32))) (PI.f32)) (PI.f32)) tau)
(/.f32 (/.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (PI.f32)) tau) (PI.f32))
(/.f32 (/.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (PI.f32)) (PI.f32)) tau)
(*.f32 (neg.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (PI.f32))) (/.f32 #s(literal -1 binary32) (*.f32 tau (PI.f32))))
(/.f32 #s(literal -1 binary32) (*.f32 (neg.f32 tau) (/.f32 (*.f32 (PI.f32) (PI.f32)) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) tau) (PI.f32))))))
(/.f32 #s(approx (* (/ (sin (* tau (* (PI) x))) tau) (neg (sin (* (PI) x)))) (*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) x) (neg.f32 x))) (*.f32 (*.f32 (PI.f32) x) (*.f32 (neg.f32 (PI.f32)) x)))
(*.f32 (/.f32 (/.f32 #s(literal 1 binary32) (PI.f32)) tau) (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (PI.f32)))
(*.f32 (/.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (PI.f32)) (PI.f32)) (/.f32 #s(literal 1 binary32) tau))
(*.f32 (/.f32 (/.f32 (/.f32 #s(literal 1 binary32) (PI.f32)) tau) (PI.f32)) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
(/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (*.f32 tau (PI.f32)))))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (/.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 #s(literal -1/6 binary32) x)) (/.f32 #s(literal 1 binary32) x)) #s(literal 1 binary32)))
(/.f32 (*.f32 #s(approx (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) x) tau)) (/.f32 #s(literal 1 binary32) x)) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
(*.f32 (*.f32 (/.f32 (/.f32 #s(literal 1 binary32) (PI.f32)) tau) (/.f32 #s(literal 1 binary32) (PI.f32))) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
(*.f32 (/.f32 #s(literal 1 binary32) (/.f32 (*.f32 (PI.f32) tau) (/.f32 #s(literal 1 binary32) (PI.f32)))) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
(*.f32 (/.f32 #s(literal 1 binary32) (/.f32 (*.f32 (PI.f32) (PI.f32)) (/.f32 #s(literal 1 binary32) tau))) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
(/.f32 (/.f32 #s(literal 1 binary32) (/.f32 #s(literal 1 binary32) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (/.f32 #s(literal 1 binary32) (/.f32 #s(literal 1 binary32) (fma.f32 tau tau #s(literal 1 binary32)))) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32)))
(/.f32 #s(literal 1 binary32) (/.f32 tau (/.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) tau) (PI.f32))) (PI.f32)) (PI.f32))))
(/.f32 #s(literal 1 binary32) (/.f32 tau (/.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (PI.f32)) (PI.f32))))
(/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (/.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) tau) (PI.f32))) (PI.f32)) tau)))
(/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (/.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (PI.f32)) tau)))
(/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (*.f32 (*.f32 (*.f32 tau (PI.f32)) (sqrt.f32 (PI.f32))) (sqrt.f32 (PI.f32))))
(/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (*.f32 tau (PI.f32)) (sqrt.f32 (PI.f32))) (sqrt.f32 (PI.f32)))) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
(/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (*.f32 (PI.f32) tau) (sqrt.f32 (PI.f32))) (sqrt.f32 (PI.f32)))) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
(*.f32 (/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (/.f32 (/.f32 #s(literal 1 binary32) (PI.f32)) tau))) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
(/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (/.f32 #s(literal 1 binary32) (/.f32 (/.f32 #s(literal 1 binary32) (PI.f32)) (/.f32 tau (/.f32 #s(literal 1 binary32) (PI.f32)))))) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
#s(approx (* (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (/ (sin (* x (PI))) (* x (PI)))) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x)))
#s(approx (/ (/ (sin (* tau (* (PI) x))) (* (PI) x)) (/ (* tau (* (PI) x)) (sin (* (PI) x)))) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 (*.f32 (PI.f32) x) #s(literal 2 binary32)) (fma.f32 tau tau #s(literal 1 binary32))) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (+.f32 (*.f32 (*.f32 (fma.f32 tau tau #s(literal 1 binary32)) #s(literal -1/6 binary32)) (pow.f32 (*.f32 (PI.f32) x) #s(literal 2 binary32))) #s(literal 1 binary32)))
(*.f32 (/.f32 (pow.f32 (PI.f32) #s(literal -2 binary32)) tau) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
(*.f32 #s(approx (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) (/.f32 #s(literal -1 binary32) (*.f32 (PI.f32) x))) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
(*.f32 (/.f32 #s(approx (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) #s(literal 1 binary32)) (*.f32 (neg.f32 (PI.f32)) x)) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
(/.f32 #s(approx (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (*.f32 tau (sin.f32 (*.f32 (PI.f32) x)))) (*.f32 (*.f32 x (PI.f32)) tau))
(*.f32 #s(approx (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) #s(approx (+ (* (* (* (* tau (PI)) tau) 1/6) x) (/ (/ -1 (PI)) x)) (*.f32 (*.f32 (*.f32 tau tau) x) (*.f32 (PI.f32) #s(literal 1/6 binary32))))) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
(*.f32 #s(approx (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) (/.f32 (/.f32 #s(literal -1 binary32) (PI.f32)) x)) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
Outputs
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (+.f32 (*.f32 (*.f32 (fma.f32 tau tau #s(literal 1 binary32)) #s(literal -1/6 binary32)) (pow.f32 (*.f32 (PI.f32) x) #s(literal 2 binary32))) #s(literal 1 binary32)))
Calls

4 calls:

25.0ms
(*.f32 x (PI.f32))
24.0ms
x
19.0ms
tau
18.0ms
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
Results
AccuracySegmentsBranch
64.2%1(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
64.2%1tau
64.2%1x
64.2%1(*.f32 x (PI.f32))
Compiler

Compiled 26 to 18 computations (30.8% saved)

regimes72.0ms (0.7%)

Memory
-5.1MiB live, 115.2MiB allocated
Counts
62 → 1
Calls
Call 1
Inputs
#s(approx (* (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (/ (sin (* x (PI))) (* x (PI)))) #s(literal 1 binary32))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) #s(approx (+ (* (+ (* tau tau) 1) (* (* -1/6 (* x x)) (* (PI) (PI)))) 1) (fma.f32 (*.f32 (*.f32 (*.f32 #s(literal -1/6 binary32) x) x) (PI.f32)) (PI.f32) #s(literal 1 binary32))))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 #s(approx (+ (* tau tau) 1) #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) #s(approx (+ (* (+ (* tau tau) 1) (* (* -1/6 (* x x)) (* (PI) (PI)))) 1) (*.f32 (*.f32 (*.f32 (*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) tau) tau) #s(literal -1/6 binary32)) x) x)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) #s(approx (+ (* (+ (* tau tau) 1) (* (* -1/6 (* x x)) (* (PI) (PI)))) 1) (*.f32 (*.f32 (*.f32 #s(literal -1/6 binary32) x) x) (*.f32 (*.f32 (fma.f32 tau tau #s(literal 1 binary32)) (PI.f32)) (PI.f32)))))
(/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
#s(approx (* (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (/ (sin (* x (PI))) (* x (PI)))) (fma.f32 (*.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 (PI.f32) (PI.f32)) #s(literal -1/6 binary32))) (*.f32 x x) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 (*.f32 (fma.f32 tau tau #s(literal 1 binary32)) #s(literal -1/6 binary32)) (*.f32 x x)) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (*.f32 (*.f32 #s(literal -1/6 binary32) x) x) (*.f32 (*.f32 (fma.f32 tau tau #s(literal 1 binary32)) (PI.f32)) (PI.f32)) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (*.f32 (*.f32 (PI.f32) (PI.f32)) (fma.f32 tau tau #s(literal 1 binary32))) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (*.f32 (*.f32 (*.f32 (fma.f32 tau tau #s(literal 1 binary32)) #s(literal -1/6 binary32)) (*.f32 x x)) (PI.f32)) (PI.f32) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (*.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32))) (PI.f32) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (PI.f32) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32))) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 #s(literal -1/6 binary32) x)) x) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) #s(literal 1 binary32)))
#s(approx (/ (/ (sin (* tau (* (PI) x))) (* (PI) x)) (/ (* tau (* (PI) x)) (sin (* (PI) x)))) (fma.f32 (*.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 (PI.f32) (PI.f32)) #s(literal -1/6 binary32))) (*.f32 x x) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (+.f32 (*.f32 tau tau) #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (fabs.f32 (PI.f32)))) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (fabs.f32 (PI.f32)) (PI.f32))) #s(literal 1 binary32)))
(/.f32 (neg.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) tau) (PI.f32)))) (*.f32 (*.f32 (neg.f32 (PI.f32)) (PI.f32)) tau))
(*.f32 (/.f32 #s(literal 1 binary32) (*.f32 (*.f32 (PI.f32) tau) (PI.f32))) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 #s(literal 1 binary32) (*.f32 tau tau) #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 (*.f32 tau tau) #s(literal 1 binary32) #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32)))
(/.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) tau) (PI.f32))) tau) (*.f32 (PI.f32) (PI.f32)))
(/.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) tau) (*.f32 (PI.f32) (PI.f32)))
(/.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (PI.f32)) (*.f32 tau (PI.f32)))
(*.f32 (neg.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau))) (/.f32 #s(literal -1 binary32) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
(*.f32 (/.f32 (/.f32 #s(literal 1 binary32) tau) (*.f32 (PI.f32) (PI.f32))) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
(*.f32 (/.f32 (/.f32 #s(literal 1 binary32) (PI.f32)) (*.f32 (PI.f32) tau)) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
(*.f32 (/.f32 (/.f32 #s(literal 1 binary32) (*.f32 (PI.f32) (PI.f32))) tau) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
(/.f32 (/.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) tau) (PI.f32))) (PI.f32)) (PI.f32)) tau)
(/.f32 (/.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (PI.f32)) tau) (PI.f32))
(/.f32 (/.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (PI.f32)) (PI.f32)) tau)
(*.f32 (neg.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (PI.f32))) (/.f32 #s(literal -1 binary32) (*.f32 tau (PI.f32))))
(/.f32 #s(literal -1 binary32) (*.f32 (neg.f32 tau) (/.f32 (*.f32 (PI.f32) (PI.f32)) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) tau) (PI.f32))))))
(/.f32 #s(approx (* (/ (sin (* tau (* (PI) x))) tau) (neg (sin (* (PI) x)))) (*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) x) (neg.f32 x))) (*.f32 (*.f32 (PI.f32) x) (*.f32 (neg.f32 (PI.f32)) x)))
(*.f32 (/.f32 (/.f32 #s(literal 1 binary32) (PI.f32)) tau) (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (PI.f32)))
(*.f32 (/.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (PI.f32)) (PI.f32)) (/.f32 #s(literal 1 binary32) tau))
(*.f32 (/.f32 (/.f32 (/.f32 #s(literal 1 binary32) (PI.f32)) tau) (PI.f32)) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
(/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (*.f32 tau (PI.f32)))))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (/.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 #s(literal -1/6 binary32) x)) (/.f32 #s(literal 1 binary32) x)) #s(literal 1 binary32)))
(/.f32 (*.f32 #s(approx (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) x) tau)) (/.f32 #s(literal 1 binary32) x)) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
(*.f32 (*.f32 (/.f32 (/.f32 #s(literal 1 binary32) (PI.f32)) tau) (/.f32 #s(literal 1 binary32) (PI.f32))) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
(*.f32 (/.f32 #s(literal 1 binary32) (/.f32 (*.f32 (PI.f32) tau) (/.f32 #s(literal 1 binary32) (PI.f32)))) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
(*.f32 (/.f32 #s(literal 1 binary32) (/.f32 (*.f32 (PI.f32) (PI.f32)) (/.f32 #s(literal 1 binary32) tau))) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
(/.f32 (/.f32 #s(literal 1 binary32) (/.f32 #s(literal 1 binary32) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (/.f32 #s(literal 1 binary32) (/.f32 #s(literal 1 binary32) (fma.f32 tau tau #s(literal 1 binary32)))) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32)))
(/.f32 #s(literal 1 binary32) (/.f32 tau (/.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) tau) (PI.f32))) (PI.f32)) (PI.f32))))
(/.f32 #s(literal 1 binary32) (/.f32 tau (/.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (PI.f32)) (PI.f32))))
(/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (/.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) tau) (PI.f32))) (PI.f32)) tau)))
(/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (/.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (PI.f32)) tau)))
(/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (*.f32 (*.f32 (*.f32 tau (PI.f32)) (sqrt.f32 (PI.f32))) (sqrt.f32 (PI.f32))))
(/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (*.f32 tau (PI.f32)) (sqrt.f32 (PI.f32))) (sqrt.f32 (PI.f32)))) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
(/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (*.f32 (PI.f32) tau) (sqrt.f32 (PI.f32))) (sqrt.f32 (PI.f32)))) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
(*.f32 (/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (/.f32 (/.f32 #s(literal 1 binary32) (PI.f32)) tau))) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
(/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (/.f32 #s(literal 1 binary32) (/.f32 (/.f32 #s(literal 1 binary32) (PI.f32)) (/.f32 tau (/.f32 #s(literal 1 binary32) (PI.f32)))))) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
#s(approx (* (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (/ (sin (* x (PI))) (* x (PI)))) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x)))
#s(approx (/ (/ (sin (* tau (* (PI) x))) (* (PI) x)) (/ (* tau (* (PI) x)) (sin (* (PI) x)))) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 #s(literal -1/6 binary32) (*.f32 (pow.f32 (*.f32 (PI.f32) x) #s(literal 2 binary32)) (fma.f32 tau tau #s(literal 1 binary32))) #s(literal 1 binary32)))
Outputs
#s(approx (* (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (/ (sin (* x (PI))) (* x (PI)))) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x)))
Calls

4 calls:

19.0ms
(*.f32 x (PI.f32))
17.0ms
x
16.0ms
tau
16.0ms
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
Results
AccuracySegmentsBranch
63.7%1x
63.7%1tau
63.7%1(*.f32 x (PI.f32))
63.7%1(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
Compiler

Compiled 26 to 18 computations (30.8% saved)

regimes93.0ms (0.9%)

Memory
-24.5MiB live, 108.1MiB allocated
Accuracy

Total -19.0b remaining (-160.2%)

Threshold costs -19b (-160.2%)

Counts
59 → 1
Calls
Call 1
Inputs
#s(approx (* (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (/ (sin (* x (PI))) (* x (PI)))) #s(literal 1 binary32))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) #s(approx (+ (* (+ (* tau tau) 1) (* (* -1/6 (* x x)) (* (PI) (PI)))) 1) (fma.f32 (*.f32 (*.f32 (*.f32 #s(literal -1/6 binary32) x) x) (PI.f32)) (PI.f32) #s(literal 1 binary32))))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 #s(approx (+ (* tau tau) 1) #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) #s(approx (+ (* (+ (* tau tau) 1) (* (* -1/6 (* x x)) (* (PI) (PI)))) 1) (*.f32 (*.f32 (*.f32 (*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) tau) tau) #s(literal -1/6 binary32)) x) x)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) #s(approx (+ (* (+ (* tau tau) 1) (* (* -1/6 (* x x)) (* (PI) (PI)))) 1) (*.f32 (*.f32 (*.f32 #s(literal -1/6 binary32) x) x) (*.f32 (*.f32 (fma.f32 tau tau #s(literal 1 binary32)) (PI.f32)) (PI.f32)))))
(/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
#s(approx (* (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (/ (sin (* x (PI))) (* x (PI)))) (fma.f32 (*.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 (PI.f32) (PI.f32)) #s(literal -1/6 binary32))) (*.f32 x x) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 (*.f32 (fma.f32 tau tau #s(literal 1 binary32)) #s(literal -1/6 binary32)) (*.f32 x x)) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (*.f32 (*.f32 #s(literal -1/6 binary32) x) x) (*.f32 (*.f32 (fma.f32 tau tau #s(literal 1 binary32)) (PI.f32)) (PI.f32)) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (*.f32 (*.f32 (PI.f32) (PI.f32)) (fma.f32 tau tau #s(literal 1 binary32))) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (*.f32 (*.f32 (*.f32 (fma.f32 tau tau #s(literal 1 binary32)) #s(literal -1/6 binary32)) (*.f32 x x)) (PI.f32)) (PI.f32) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (*.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32))) (PI.f32) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (PI.f32) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32))) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 #s(literal -1/6 binary32) x)) x) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 (*.f32 (*.f32 x x) #s(literal -1/6 binary32)) (PI.f32)) (PI.f32)) #s(literal 1 binary32)))
#s(approx (/ (/ (sin (* tau (* (PI) x))) (* (PI) x)) (/ (* tau (* (PI) x)) (sin (* (PI) x)))) (fma.f32 (*.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 (PI.f32) (PI.f32)) #s(literal -1/6 binary32))) (*.f32 x x) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (+.f32 (*.f32 tau tau) #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (fabs.f32 (PI.f32)))) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (fabs.f32 (PI.f32)) (PI.f32))) #s(literal 1 binary32)))
(/.f32 (neg.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) tau) (PI.f32)))) (*.f32 (*.f32 (neg.f32 (PI.f32)) (PI.f32)) tau))
(*.f32 (/.f32 #s(literal 1 binary32) (*.f32 (*.f32 (PI.f32) tau) (PI.f32))) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 #s(literal 1 binary32) (*.f32 tau tau) #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 (*.f32 tau tau) #s(literal 1 binary32) #s(literal 1 binary32)) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32)))
(/.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) tau) (PI.f32))) tau) (*.f32 (PI.f32) (PI.f32)))
(/.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) tau) (*.f32 (PI.f32) (PI.f32)))
(/.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (PI.f32)) (*.f32 tau (PI.f32)))
(*.f32 (neg.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau))) (/.f32 #s(literal -1 binary32) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
(*.f32 (/.f32 (/.f32 #s(literal 1 binary32) tau) (*.f32 (PI.f32) (PI.f32))) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
(*.f32 (/.f32 (/.f32 #s(literal 1 binary32) (PI.f32)) (*.f32 (PI.f32) tau)) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
(*.f32 (/.f32 (/.f32 #s(literal 1 binary32) (*.f32 (PI.f32) (PI.f32))) tau) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
(/.f32 (/.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) tau) (PI.f32))) (PI.f32)) (PI.f32)) tau)
(/.f32 (/.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (PI.f32)) tau) (PI.f32))
(/.f32 (/.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (PI.f32)) (PI.f32)) tau)
(*.f32 (neg.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (PI.f32))) (/.f32 #s(literal -1 binary32) (*.f32 tau (PI.f32))))
(/.f32 #s(literal -1 binary32) (*.f32 (neg.f32 tau) (/.f32 (*.f32 (PI.f32) (PI.f32)) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) tau) (PI.f32))))))
(/.f32 #s(approx (* (/ (sin (* tau (* (PI) x))) tau) (neg (sin (* (PI) x)))) (*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) x) (neg.f32 x))) (*.f32 (*.f32 (PI.f32) x) (*.f32 (neg.f32 (PI.f32)) x)))
(*.f32 (/.f32 (/.f32 #s(literal 1 binary32) (PI.f32)) tau) (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (PI.f32)))
(*.f32 (/.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (PI.f32)) (PI.f32)) (/.f32 #s(literal 1 binary32) tau))
(*.f32 (/.f32 (/.f32 (/.f32 #s(literal 1 binary32) (PI.f32)) tau) (PI.f32)) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
(/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (*.f32 tau (PI.f32)))))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (fma.f32 tau tau #s(literal 1 binary32)) (/.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) (*.f32 #s(literal -1/6 binary32) x)) (/.f32 #s(literal 1 binary32) x)) #s(literal 1 binary32)))
(/.f32 (*.f32 #s(approx (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (*.f32 (*.f32 (*.f32 (PI.f32) (PI.f32)) x) tau)) (/.f32 #s(literal 1 binary32) x)) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
(*.f32 (*.f32 (/.f32 (/.f32 #s(literal 1 binary32) (PI.f32)) tau) (/.f32 #s(literal 1 binary32) (PI.f32))) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
(*.f32 (/.f32 #s(literal 1 binary32) (/.f32 (*.f32 (PI.f32) tau) (/.f32 #s(literal 1 binary32) (PI.f32)))) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
(*.f32 (/.f32 #s(literal 1 binary32) (/.f32 (*.f32 (PI.f32) (PI.f32)) (/.f32 #s(literal 1 binary32) tau))) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
(/.f32 (/.f32 #s(literal 1 binary32) (/.f32 #s(literal 1 binary32) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (fma.f32 (/.f32 #s(literal 1 binary32) (/.f32 #s(literal 1 binary32) (fma.f32 tau tau #s(literal 1 binary32)))) (*.f32 (*.f32 #s(literal -1/6 binary32) (*.f32 x x)) (*.f32 (PI.f32) (PI.f32))) #s(literal 1 binary32)))
(/.f32 #s(literal 1 binary32) (/.f32 tau (/.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) tau) (PI.f32))) (PI.f32)) (PI.f32))))
(/.f32 #s(literal 1 binary32) (/.f32 tau (/.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (PI.f32)) (PI.f32))))
(/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (/.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) tau) (PI.f32))) (PI.f32)) tau)))
(/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (/.f32 (/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (PI.f32)) tau)))
(/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)) (*.f32 (*.f32 (*.f32 tau (PI.f32)) (sqrt.f32 (PI.f32))) (sqrt.f32 (PI.f32))))
(/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (*.f32 tau (PI.f32)) (sqrt.f32 (PI.f32))) (sqrt.f32 (PI.f32)))) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
(/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (*.f32 (PI.f32) tau) (sqrt.f32 (PI.f32))) (sqrt.f32 (PI.f32)))) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
(*.f32 (/.f32 #s(literal 1 binary32) (/.f32 (PI.f32) (/.f32 (/.f32 #s(literal 1 binary32) (PI.f32)) tau))) #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (*.f32 (*.f32 (PI.f32) (PI.f32)) tau)))
(/.f32 #s(approx (* (* (/ (sin (* (PI) x)) x) (sin (* tau (* (PI) x)))) (/ 1 x)) (/.f32 #s(literal 1 binary32) (/.f32 (/.f32 #s(literal 1 binary32) (PI.f32)) (/.f32 tau (/.f32 #s(literal 1 binary32) (PI.f32)))))) (*.f32 (PI.f32) (*.f32 tau (PI.f32))))
Outputs
#s(approx (* (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (/ (sin (* x (PI))) (* x (PI)))) #s(literal 1 binary32))
Calls

4 calls:

40.0ms
tau
19.0ms
(*.f32 x (PI.f32))
17.0ms
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
15.0ms
x
Results
AccuracySegmentsBranch
62.9%1tau
62.9%1x
62.9%1(*.f32 x (PI.f32))
62.9%1(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
Compiler

Compiled 26 to 18 computations (30.8% saved)

simplify28.0ms (0.3%)

Memory
11.0MiB live, 49.8MiB allocated
Algorithm
egg-herbie
Iterations

Useful iterations: 0 (0.0ms)

IterNodesCost
072258
1105258
2120258
3136258
4148258
5157258
6189258
7235258
Stop Event
saturated
Calls
Call 1
Inputs
(/.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (PI.f32) x)) (/.f32 (*.f32 tau (*.f32 (PI.f32) x)) (sin.f32 (*.f32 (PI.f32) x))))
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (PI.f32) x)) (sin.f32 (*.f32 (PI.f32) x))) (*.f32 tau (*.f32 (PI.f32) x)))
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x tau) (PI.f32))) (*.f32 (*.f32 tau x) (PI.f32))) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
(/.f32 (*.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (sin.f32 (*.f32 (PI.f32) x))) (*.f32 (*.f32 (PI.f32) x) (*.f32 tau (*.f32 (PI.f32) x))))
(*.f32 #s(approx (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) (-.f32 (*.f32 (*.f32 #s(literal 1/6 binary32) x) (*.f32 (*.f32 tau tau) (PI.f32))) (/.f32 (/.f32 #s(literal 1 binary32) (PI.f32)) x))) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) #s(approx (/ (sin (* x (PI))) (* x (PI))) #s(literal 1 binary32)))
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 tau x) (PI.f32))) #s(approx (/ (sin (* x (PI))) (* x (PI))) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (+.f32 (*.f32 (*.f32 (fma.f32 tau tau #s(literal 1 binary32)) #s(literal -1/6 binary32)) (pow.f32 (*.f32 (PI.f32) x) #s(literal 2 binary32))) #s(literal 1 binary32)))
#s(approx (* (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (/ (sin (* x (PI))) (* x (PI)))) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x)))
#s(approx (* (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (/ (sin (* x (PI))) (* x (PI)))) #s(literal 1 binary32))
Outputs
(/.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (PI.f32) x)) (/.f32 (*.f32 tau (*.f32 (PI.f32) x)) (sin.f32 (*.f32 (PI.f32) x))))
(/.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 x (PI.f32))) (/.f32 (*.f32 (*.f32 x (PI.f32)) tau) (sin.f32 (*.f32 x (PI.f32)))))
(/.f32 (*.f32 (/.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (*.f32 (PI.f32) x)) (sin.f32 (*.f32 (PI.f32) x))) (*.f32 tau (*.f32 (PI.f32) x)))
(/.f32 (*.f32 (sin.f32 (*.f32 x (PI.f32))) (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 x (PI.f32)))) (*.f32 (*.f32 x (PI.f32)) tau))
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x tau) (PI.f32))) (*.f32 (*.f32 tau x) (PI.f32))) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
(*.f32 (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))) (/.f32 (sin.f32 (*.f32 (*.f32 x tau) (PI.f32))) (*.f32 (*.f32 x tau) (PI.f32))))
(/.f32 (*.f32 (sin.f32 (*.f32 tau (*.f32 (PI.f32) x))) (sin.f32 (*.f32 (PI.f32) x))) (*.f32 (*.f32 (PI.f32) x) (*.f32 tau (*.f32 (PI.f32) x))))
(/.f32 (*.f32 (sin.f32 (*.f32 x (PI.f32))) (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau))) (*.f32 (*.f32 (*.f32 x (PI.f32)) tau) (*.f32 x (PI.f32))))
(*.f32 #s(approx (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) (-.f32 (*.f32 (*.f32 #s(literal 1/6 binary32) x) (*.f32 (*.f32 tau tau) (PI.f32))) (/.f32 (/.f32 #s(literal 1 binary32) (PI.f32)) x))) (neg.f32 (sin.f32 (*.f32 (PI.f32) x))))
(*.f32 (neg.f32 (sin.f32 (*.f32 x (PI.f32)))) #s(approx (/ (/ (sin (* tau (* (PI) x))) (* tau (* (PI) x))) (* (neg (PI)) x)) (-.f32 (*.f32 (*.f32 (*.f32 tau tau) (PI.f32)) (*.f32 #s(literal 1/6 binary32) x)) (/.f32 (/.f32 #s(literal 1 binary32) (PI.f32)) x))))
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)) #s(approx (/ (sin (* x (PI))) (* x (PI))) #s(literal 1 binary32)))
(*.f32 #s(approx (/ (sin (* x (PI))) (* x (PI))) #s(literal 1 binary32)) (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x (PI.f32)) tau)))
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 tau x) (PI.f32))) #s(approx (/ (sin (* x (PI))) (* x (PI))) #s(literal 1 binary32)))
(*.f32 (/.f32 (sin.f32 (*.f32 (*.f32 x (PI.f32)) tau)) (*.f32 (*.f32 x tau) (PI.f32))) #s(approx (/ (sin (* x (PI))) (* x (PI))) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (+.f32 (*.f32 (*.f32 (fma.f32 tau tau #s(literal 1 binary32)) #s(literal -1/6 binary32)) (pow.f32 (*.f32 (PI.f32) x) #s(literal 2 binary32))) #s(literal 1 binary32)))
#s(approx (/ (* (/ (sin (* x (PI))) (* x (PI))) (sin (* (* x (PI)) tau))) (* (* x (PI)) tau)) (+.f32 (*.f32 (pow.f32 (*.f32 x (PI.f32)) #s(literal 2 binary32)) (*.f32 #s(literal -1/6 binary32) (fma.f32 tau tau #s(literal 1 binary32)))) #s(literal 1 binary32)))
#s(approx (* (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (/ (sin (* x (PI))) (* x (PI)))) (/.f32 (sin.f32 (*.f32 (PI.f32) x)) (*.f32 (PI.f32) x)))
#s(approx (* (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (/ (sin (* x (PI))) (* x (PI)))) (/.f32 (sin.f32 (*.f32 x (PI.f32))) (*.f32 x (PI.f32))))
#s(approx (* (/ (sin (* (* x (PI)) tau)) (* (* x (PI)) tau)) (/ (sin (* x (PI))) (* x (PI)))) #s(literal 1 binary32))

soundness1.8s (18%)

Memory
-61.9MiB live, 996.1MiB allocated
Iterations

Useful iterations: 2 (0.0ms)

IterNodesCost
03817094
112666930
249216744
082946520
042241
075235
1270235
21634223
37156223
08155223
063309
0107297
1341281
21937281
08383281
01961582
16201562
224071538
341371538
448711538
555501538
659401538
759711538
859711538
088161486
01055
01855
16355
248353
3648553
0811453
05138421
117258243
254028132
080027881
059352
0103342
1347338
22201330
08475330
Stop Event
fuel
iter limit
node limit
iter limit
iter limit
node limit
iter limit
node limit
iter limit
iter limit
node limit
iter limit
node limit
iter limit
iter limit
node limit
iter limit
iter limit
node limit
Compiler

Compiled 551 to 237 computations (57% saved)

preprocess82.0ms (0.8%)

Memory
-9.0MiB live, 148.4MiB allocated
Remove

(abs x)

(abs tau)

Compiler

Compiled 1 206 to 516 computations (57.2% saved)

end0.0ms (0%)

Memory
0.0MiB live, 0.0MiB allocated

Profiling

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