Beckmann Distribution sample, tan2theta, alphax == alphay

Time bar (total: 8.4s)

start0.0ms (0%)

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

analyze96.0ms (1.1%)

Memory
-10.9MiB live, 132.7MiB allocated; 39ms collecting garbage
Algorithm
search
Search
ProbabilityValidUnknownPreconditionInfiniteDomainCan'tIter
0%0%0.2%99.8%0%0%0%0
0%0%0.2%99.8%0%0%0%1
0%0%0.2%99.8%0%0%0%2
0%0%0.2%99.8%0%0%0%3
0%0%0.2%99.8%0%0%0%4
37.5%0.1%0.1%99.8%0%0%0%5
43.7%0.1%0.1%99.8%0%0%0%6
65.6%0.1%0.1%99.8%0%0%0%7
70.3%0.1%0%99.8%0%0%0%8
82%0.1%0%99.8%0%0%0%9
84.8%0.1%0%99.8%0%0%0%10
90.8%0.1%0%99.8%0%0%0%11
92.3%0.2%0%99.8%0%0%0%12
Compiler

Compiled 25 to 18 computations (28% saved)

sample1.7s (20.2%)

Memory
64.2MiB live, 2 759.8MiB allocated; 661ms collecting garbage
Samples
1.3s8 256×0valid
Precisions
Click to see histograms. Total time spent on operations: 985.0ms
const: 396.0ms (40.2% of total)
ival-log: 172.0ms (17.5% of total)
ival-mult: 127.0ms (12.9% of total)
ival-<=: 102.0ms (10.4% of total)
ival-neg: 91.0ms (9.2% of total)
ival-sub: 61.0ms (6.2% of total)
ival-and: 23.0ms (2.3% of total)
exact: 5.0ms (0.5% of total)
adjust: 3.0ms (0.3% of total)
ival-assert: 3.0ms (0.3% of total)
Bogosity

explain191.0ms (2.3%)

Memory
7.9MiB live, 200.5MiB allocated; 24ms collecting garbage
FPErrors
Click to see full error table
Ground TruthOverpredictionsExampleUnderpredictionsExampleSubexpression
1973(0.03569727763533592 0.0028001058381050825)3(0.0002938099787570536 0.012685858644545078)(log.f32 (-.f32 #s(literal 1 binary32) u0))
00-0-u0
00-0-#s(literal 1 binary32)
00-0-(neg.f32 alpha)
00-0-(*.f32 (neg.f32 alpha) alpha)
00-0-alpha
00-0-(-.f32 #s(literal 1 binary32) u0)
00-0-(*.f32 (*.f32 (neg.f32 alpha) alpha) (log.f32 (-.f32 #s(literal 1 binary32) u0)))
Explanations
Click to see full explanations table
OperatorSubexpressionExplanationCount
log.f32(log.f32 (-.f32 #s(literal 1 binary32) u0))sensitivity19710
Confusion
Predicted +Predicted -
+1942
-357
Precision
0.9847715736040609
Recall
0.9897959183673469
Confusion?
Predicted +Predicted MaybePredicted -
+19420
-3849
Precision?
0.9468599033816425
Recall?
1.0
Freqs
test
numberfreq
059
1197
Total Confusion?
Predicted +Predicted MaybePredicted -
+100
-000
Precision?
1.0
Recall?
1.0
Samples
90.0ms512×0valid
Compiler

Compiled 63 to 28 computations (55.6% saved)

Precisions
Click to see histograms. Total time spent on operations: 77.0ms
ival-log: 64.0ms (83.5% of total)
ival-mult: 7.0ms (9.1% of total)
ival-sub: 3.0ms (3.9% of total)
ival-neg: 2.0ms (2.6% of total)
ival-true: 0.0ms (0% of total)
adjust: 0.0ms (0% of total)
exact: 0.0ms (0% of total)
ival-assert: 0.0ms (0% of total)

preprocess256.0ms (3%)

Memory
3.2MiB live, 243.1MiB allocated; 24ms collecting garbage
Iterations

Useful iterations: 0 (0.0ms)

IterNodesCost
02049
15445
212045
322243
441343
577943
6404043
089
0139
1219
2409
3789
41709
54129
622509
755389
086818
Stop Event
iter limit
node limit
iter limit
node limit
Calls
Call 1
Inputs
(*.f32 (*.f32 (neg.f32 alpha) alpha) (log.f32 (-.f32 #s(literal 1 binary32) u0)))
Outputs
(*.f32 (*.f32 (neg.f32 alpha) alpha) (log.f32 (-.f32 #s(literal 1 binary32) u0)))
(*.f32 (log1p.f32 (neg.f32 u0)) (*.f32 (neg.f32 alpha) alpha))
Symmetry

(abs alpha)

Compiler

Compiled 9 to 8 computations (11.1% saved)

eval0.0ms (0%)

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

Compiled 0 to 2 computations (-∞% saved)

prune0.0ms (0%)

Memory
0.8MiB live, 0.8MiB allocated; 0ms collecting garbage
Alt Table
Click to see full alt table
StatusAccuracyProgram
57.7%
(*.f32 (*.f32 (neg.f32 alpha) alpha) (log.f32 (-.f32 #s(literal 1 binary32) u0)))
Compiler

Compiled 9 to 8 computations (11.1% saved)

simplify142.0ms (1.7%)

Memory
3.2MiB live, 93.8MiB allocated; 11ms collecting garbage
Localize:

Found 4 expressions of interest:

NewMetricScoreProgram
cost-diff0
(neg.f32 alpha)
cost-diff0
(*.f32 (neg.f32 alpha) alpha)
cost-diff0
(*.f32 (*.f32 (neg.f32 alpha) alpha) (log.f32 (-.f32 #s(literal 1 binary32) u0)))
cost-diff1
(log.f32 (-.f32 #s(literal 1 binary32) u0))
Iterations

Useful iterations: 0 (0.0ms)

IterNodesCost
0825
01325
12125
24025
37825
417025
541225
6225025
7553825
0868123
Stop Event
iter limit
node limit
iter limit
Calls
Call 1
Inputs
(*.f32 (*.f32 (neg.f32 alpha) alpha) (log.f32 (-.f32 #s(literal 1 binary32) u0)))
(*.f32 (neg.f32 alpha) alpha)
(neg.f32 alpha)
alpha
(log.f32 (-.f32 #s(literal 1 binary32) u0))
(-.f32 #s(literal 1 binary32) u0)
#s(literal 1 binary32)
u0
Outputs
(*.f32 (*.f32 (neg.f32 alpha) alpha) (log.f32 (-.f32 #s(literal 1 binary32) u0)))
(*.f32 (log1p.f32 (neg.f32 u0)) (*.f32 (neg.f32 alpha) alpha))
(*.f32 (neg.f32 alpha) alpha)
(neg.f32 alpha)
alpha
(log.f32 (-.f32 #s(literal 1 binary32) u0))
(log1p.f32 (neg.f32 u0))
(-.f32 #s(literal 1 binary32) u0)
#s(literal 1 binary32)
u0

localize28.0ms (0.3%)

Memory
-21.3MiB live, 23.0MiB allocated; 8ms collecting garbage
Localize:

Found 4 expressions of interest:

NewMetricScoreProgram
accuracy0.0
(*.f32 (neg.f32 alpha) alpha)
accuracy0.0
(neg.f32 alpha)
accuracy0.33984375
(*.f32 (*.f32 (neg.f32 alpha) alpha) (log.f32 (-.f32 #s(literal 1 binary32) u0)))
accuracy13.6107261175564
(log.f32 (-.f32 #s(literal 1 binary32) u0))
Samples
22.0ms256×0valid
Compiler

Compiled 27 to 10 computations (63% saved)

Precisions
Click to see histograms. Total time spent on operations: 15.0ms
ival-mult: 9.0ms (58.1% of total)
ival-log: 3.0ms (19.4% of total)
ival-sub: 1.0ms (6.5% of total)
ival-neg: 1.0ms (6.5% of total)
ival-true: 0.0ms (0% of total)
adjust: 0.0ms (0% of total)
exact: 0.0ms (0% of total)
ival-assert: 0.0ms (0% of total)

series92.0ms (1.1%)

Memory
-0.9MiB live, 54.8MiB allocated; 16ms collecting garbage
Counts
4 → 27
Calls
Call 1
Inputs
(log.f32 (-.f32 #s(literal 1 binary32) u0))
(*.f32 (*.f32 (neg.f32 alpha) alpha) (log.f32 (-.f32 #s(literal 1 binary32) u0)))
(*.f32 (neg.f32 alpha) alpha)
(neg.f32 alpha)
Outputs
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (* -1 (* (pow alpha 2) (log (- 1 u0))))))
#s(approx (* (neg alpha) alpha) #s(hole binary32 (* -1 (pow alpha 2))))
#s(approx (neg alpha) #s(hole binary32 (* -1 alpha)))
#s(approx (log (- 1 u0)) #s(hole binary32 (* -1 u0)))
#s(approx (log (- 1 u0)) #s(hole binary32 (* u0 (- (* -1/2 u0) 1))))
#s(approx (log (- 1 u0)) #s(hole binary32 (* u0 (- (* u0 (- (* -1/3 u0) 1/2)) 1))))
#s(approx (log (- 1 u0)) #s(hole binary32 (* u0 (- (* u0 (- (* u0 (- (* -1/4 u0) 1/3)) 1/2)) 1))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (* (pow alpha 2) u0)))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (* u0 (+ (* 1/2 (* (pow alpha 2) u0)) (pow alpha 2)))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (* u0 (+ (* u0 (+ (* 1/3 (* (pow alpha 2) u0)) (* 1/2 (pow alpha 2)))) (pow alpha 2)))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (* u0 (+ (* u0 (+ (* 1/2 (pow alpha 2)) (* u0 (+ (* 1/4 (* (pow alpha 2) u0)) (* 1/3 (pow alpha 2)))))) (pow alpha 2)))))
#s(approx (log (- 1 u0)) #s(hole binary32 (+ (log -1) (* -1 (log (/ 1 u0))))))
#s(approx (log (- 1 u0)) #s(hole binary32 (- (+ (log -1) (* -1 (log (/ 1 u0)))) (/ 1 u0))))
#s(approx (log (- 1 u0)) #s(hole binary32 (+ (log -1) (+ (* -1 (log (/ 1 u0))) (* -1 (/ (+ 1 (* 1/2 (/ 1 u0))) u0))))))
#s(approx (log (- 1 u0)) #s(hole binary32 (- (+ (log -1) (+ (* -1 (log (/ 1 u0))) (* -1 (/ (+ 1/2 (* 1/3 (/ 1 u0))) (pow u0 2))))) (/ 1 u0))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (* -1 (* (pow alpha 2) (+ (log -1) (* -1 (log (/ 1 u0))))))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (+ (* -1 (* (pow alpha 2) (+ (log -1) (* -1 (log (/ 1 u0)))))) (/ (pow alpha 2) u0))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (+ (* -1 (* (pow alpha 2) (+ (log -1) (* -1 (log (/ 1 u0)))))) (+ (* 1/2 (/ (pow alpha 2) (pow u0 2))) (/ (pow alpha 2) u0)))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (+ (* -1 (* (pow alpha 2) (+ (log -1) (* -1 (log (/ 1 u0)))))) (+ (* 1/3 (/ (pow alpha 2) (pow u0 3))) (+ (* 1/2 (/ (pow alpha 2) (pow u0 2))) (/ (pow alpha 2) u0))))))
#s(approx (log (- 1 u0)) #s(hole binary32 (* -1 (log (/ -1 u0)))))
#s(approx (log (- 1 u0)) #s(hole binary32 (- (* -1 (log (/ -1 u0))) (/ 1 u0))))
#s(approx (log (- 1 u0)) #s(hole binary32 (+ (* -1 (log (/ -1 u0))) (* -1 (/ (+ 1 (* 1/2 (/ 1 u0))) u0)))))
#s(approx (log (- 1 u0)) #s(hole binary32 (+ (* -1 (log (/ -1 u0))) (* -1 (/ (+ 1 (+ (/ 1/3 (pow u0 2)) (* 1/2 (/ 1 u0)))) u0)))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (* (pow alpha 2) (log (/ -1 u0)))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (+ (* (pow alpha 2) (log (/ -1 u0))) (/ (pow alpha 2) u0))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (+ (* -1 (/ (+ (* -1 (pow alpha 2)) (* -1/2 (/ (pow alpha 2) u0))) u0)) (* (pow alpha 2) (log (/ -1 u0))))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (+ (* -1 (/ (+ (* -1 (/ (+ (* 1/3 (/ (pow alpha 2) u0)) (* 1/2 (pow alpha 2))) u0)) (* -1 (pow alpha 2))) u0)) (* (pow alpha 2) (log (/ -1 u0))))))
Calls

6 calls:

TimeVariablePointExpression
55.0ms
alpha
@-inf
((log (- 1 u0)) (* (* (neg alpha) alpha) (log (- 1 u0))) (* (neg alpha) alpha) (neg alpha))
27.0ms
alpha
@0
((log (- 1 u0)) (* (* (neg alpha) alpha) (log (- 1 u0))) (* (neg alpha) alpha) (neg alpha))
7.0ms
alpha
@inf
((log (- 1 u0)) (* (* (neg alpha) alpha) (log (- 1 u0))) (* (neg alpha) alpha) (neg alpha))
1.0ms
u0
@inf
((log (- 1 u0)) (* (* (neg alpha) alpha) (log (- 1 u0))) (* (neg alpha) alpha) (neg alpha))
1.0ms
u0
@0
((log (- 1 u0)) (* (* (neg alpha) alpha) (log (- 1 u0))) (* (neg alpha) alpha) (neg alpha))

simplify265.0ms (3.1%)

Memory
-15.3MiB live, 170.1MiB allocated; 24ms collecting garbage
Iterations

Useful iterations: 0 (0.0ms)

IterNodesCost
0142595
1378570
21304529
35637517
08845503
Stop Event
iter limit
node limit
Counts
27 → 27
Calls
Call 1
Inputs
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (* -1 (* (pow alpha 2) (log (- 1 u0))))))
#s(approx (* (neg alpha) alpha) #s(hole binary32 (* -1 (pow alpha 2))))
#s(approx (neg alpha) #s(hole binary32 (* -1 alpha)))
#s(approx (log (- 1 u0)) #s(hole binary32 (* -1 u0)))
#s(approx (log (- 1 u0)) #s(hole binary32 (* u0 (- (* -1/2 u0) 1))))
#s(approx (log (- 1 u0)) #s(hole binary32 (* u0 (- (* u0 (- (* -1/3 u0) 1/2)) 1))))
#s(approx (log (- 1 u0)) #s(hole binary32 (* u0 (- (* u0 (- (* u0 (- (* -1/4 u0) 1/3)) 1/2)) 1))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (* (pow alpha 2) u0)))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (* u0 (+ (* 1/2 (* (pow alpha 2) u0)) (pow alpha 2)))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (* u0 (+ (* u0 (+ (* 1/3 (* (pow alpha 2) u0)) (* 1/2 (pow alpha 2)))) (pow alpha 2)))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (* u0 (+ (* u0 (+ (* 1/2 (pow alpha 2)) (* u0 (+ (* 1/4 (* (pow alpha 2) u0)) (* 1/3 (pow alpha 2)))))) (pow alpha 2)))))
#s(approx (log (- 1 u0)) #s(hole binary32 (+ (log -1) (* -1 (log (/ 1 u0))))))
#s(approx (log (- 1 u0)) #s(hole binary32 (- (+ (log -1) (* -1 (log (/ 1 u0)))) (/ 1 u0))))
#s(approx (log (- 1 u0)) #s(hole binary32 (+ (log -1) (+ (* -1 (log (/ 1 u0))) (* -1 (/ (+ 1 (* 1/2 (/ 1 u0))) u0))))))
#s(approx (log (- 1 u0)) #s(hole binary32 (- (+ (log -1) (+ (* -1 (log (/ 1 u0))) (* -1 (/ (+ 1/2 (* 1/3 (/ 1 u0))) (pow u0 2))))) (/ 1 u0))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (* -1 (* (pow alpha 2) (+ (log -1) (* -1 (log (/ 1 u0))))))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (+ (* -1 (* (pow alpha 2) (+ (log -1) (* -1 (log (/ 1 u0)))))) (/ (pow alpha 2) u0))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (+ (* -1 (* (pow alpha 2) (+ (log -1) (* -1 (log (/ 1 u0)))))) (+ (* 1/2 (/ (pow alpha 2) (pow u0 2))) (/ (pow alpha 2) u0)))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (+ (* -1 (* (pow alpha 2) (+ (log -1) (* -1 (log (/ 1 u0)))))) (+ (* 1/3 (/ (pow alpha 2) (pow u0 3))) (+ (* 1/2 (/ (pow alpha 2) (pow u0 2))) (/ (pow alpha 2) u0))))))
#s(approx (log (- 1 u0)) #s(hole binary32 (* -1 (log (/ -1 u0)))))
#s(approx (log (- 1 u0)) #s(hole binary32 (- (* -1 (log (/ -1 u0))) (/ 1 u0))))
#s(approx (log (- 1 u0)) #s(hole binary32 (+ (* -1 (log (/ -1 u0))) (* -1 (/ (+ 1 (* 1/2 (/ 1 u0))) u0)))))
#s(approx (log (- 1 u0)) #s(hole binary32 (+ (* -1 (log (/ -1 u0))) (* -1 (/ (+ 1 (+ (/ 1/3 (pow u0 2)) (* 1/2 (/ 1 u0)))) u0)))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (* (pow alpha 2) (log (/ -1 u0)))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (+ (* (pow alpha 2) (log (/ -1 u0))) (/ (pow alpha 2) u0))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (+ (* -1 (/ (+ (* -1 (pow alpha 2)) (* -1/2 (/ (pow alpha 2) u0))) u0)) (* (pow alpha 2) (log (/ -1 u0))))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (+ (* -1 (/ (+ (* -1 (/ (+ (* 1/3 (/ (pow alpha 2) u0)) (* 1/2 (pow alpha 2))) u0)) (* -1 (pow alpha 2))) u0)) (* (pow alpha 2) (log (/ -1 u0))))))
Outputs
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (* -1 (* (pow alpha 2) (log (- 1 u0))))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (*.f32 (neg.f32 alpha) alpha) (log.f32 (-.f32 #s(literal 1 binary32) u0))))
#s(approx (* (neg alpha) alpha) #s(hole binary32 (* -1 (pow alpha 2))))
#s(approx (* (neg alpha) alpha) (*.f32 (neg.f32 alpha) alpha))
#s(approx (neg alpha) #s(hole binary32 (* -1 alpha)))
#s(approx (neg alpha) (neg.f32 alpha))
#s(approx (log (- 1 u0)) #s(hole binary32 (* -1 u0)))
#s(approx (log (- 1 u0)) (neg.f32 u0))
#s(approx (log (- 1 u0)) #s(hole binary32 (* u0 (- (* -1/2 u0) 1))))
#s(approx (log (- 1 u0)) (*.f32 (fma.f32 #s(literal -1/2 binary32) u0 #s(literal -1 binary32)) u0))
#s(approx (log (- 1 u0)) #s(hole binary32 (* u0 (- (* u0 (- (* -1/3 u0) 1/2)) 1))))
#s(approx (log (- 1 u0)) (*.f32 (fma.f32 (fma.f32 #s(literal -1/3 binary32) u0 #s(literal -1/2 binary32)) u0 #s(literal -1 binary32)) u0))
#s(approx (log (- 1 u0)) #s(hole binary32 (* u0 (- (* u0 (- (* u0 (- (* -1/4 u0) 1/3)) 1/2)) 1))))
#s(approx (log (- 1 u0)) (*.f32 (fma.f32 (fma.f32 (fma.f32 #s(literal -1/4 binary32) u0 #s(literal -1/3 binary32)) u0 #s(literal -1/2 binary32)) u0 #s(literal -1 binary32)) u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (* (pow alpha 2) u0)))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (*.f32 alpha alpha) u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (* u0 (+ (* 1/2 (* (pow alpha 2) u0)) (pow alpha 2)))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) (*.f32 (*.f32 alpha alpha) u0)))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (* u0 (+ (* u0 (+ (* 1/3 (* (pow alpha 2) u0)) (* 1/2 (pow alpha 2)))) (pow alpha 2)))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 (*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32))) u0 (*.f32 alpha alpha)) u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (* u0 (+ (* u0 (+ (* 1/2 (pow alpha 2)) (* u0 (+ (* 1/4 (* (pow alpha 2) u0)) (* 1/3 (pow alpha 2)))))) (pow alpha 2)))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 (*.f32 u0 u0) (*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32))) (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) (*.f32 alpha alpha))) u0))
#s(approx (log (- 1 u0)) #s(hole binary32 (+ (log -1) (* -1 (log (/ 1 u0))))))
#s(approx (log (- 1 u0)) (+.f32 (log.f32 u0) (log.f32 #s(literal -1 binary32))))
#s(approx (log (- 1 u0)) #s(hole binary32 (- (+ (log -1) (* -1 (log (/ 1 u0)))) (/ 1 u0))))
#s(approx (log (- 1 u0)) (-.f32 (+.f32 (log.f32 u0) (log.f32 #s(literal -1 binary32))) (/.f32 #s(literal 1 binary32) u0)))
#s(approx (log (- 1 u0)) #s(hole binary32 (+ (log -1) (+ (* -1 (log (/ 1 u0))) (* -1 (/ (+ 1 (* 1/2 (/ 1 u0))) u0))))))
#s(approx (log (- 1 u0)) (-.f32 (+.f32 (log.f32 u0) (log.f32 #s(literal -1 binary32))) (/.f32 (-.f32 (/.f32 #s(literal 1/2 binary32) u0) #s(literal -1 binary32)) u0)))
#s(approx (log (- 1 u0)) #s(hole binary32 (- (+ (log -1) (+ (* -1 (log (/ 1 u0))) (* -1 (/ (+ 1/2 (* 1/3 (/ 1 u0))) (pow u0 2))))) (/ 1 u0))))
#s(approx (log (- 1 u0)) (-.f32 (+.f32 (log.f32 u0) (log.f32 #s(literal -1 binary32))) (/.f32 (-.f32 (/.f32 (-.f32 (/.f32 #s(literal 1/3 binary32) u0) #s(literal -1/2 binary32)) u0) #s(literal -1 binary32)) u0)))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (* -1 (* (pow alpha 2) (+ (log -1) (* -1 (log (/ 1 u0))))))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (+.f32 (log.f32 u0) (log.f32 #s(literal -1 binary32))) (*.f32 (neg.f32 alpha) alpha)))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (+ (* -1 (* (pow alpha 2) (+ (log -1) (* -1 (log (/ 1 u0)))))) (/ (pow alpha 2) u0))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (*.f32 alpha alpha) (-.f32 (/.f32 #s(literal 1 binary32) u0) (+.f32 (log.f32 u0) (log.f32 #s(literal -1 binary32))))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (+ (* -1 (* (pow alpha 2) (+ (log -1) (* -1 (log (/ 1 u0)))))) (+ (* 1/2 (/ (pow alpha 2) (pow u0 2))) (/ (pow alpha 2) u0)))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (*.f32 alpha alpha) (-.f32 (neg.f32 (+.f32 (log.f32 u0) (log.f32 #s(literal -1 binary32)))) (/.f32 (-.f32 (/.f32 #s(literal -1/2 binary32) u0) #s(literal 1 binary32)) u0))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (+ (* -1 (* (pow alpha 2) (+ (log -1) (* -1 (log (/ 1 u0)))))) (+ (* 1/3 (/ (pow alpha 2) (pow u0 3))) (+ (* 1/2 (/ (pow alpha 2) (pow u0 2))) (/ (pow alpha 2) u0))))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (fma.f32 (/.f32 alpha u0) alpha (*.f32 (*.f32 alpha alpha) (-.f32 (/.f32 (/.f32 (-.f32 (/.f32 #s(literal 1/3 binary32) u0) #s(literal -1/2 binary32)) u0) u0) (+.f32 (log.f32 u0) (log.f32 #s(literal -1 binary32)))))))
#s(approx (log (- 1 u0)) #s(hole binary32 (* -1 (log (/ -1 u0)))))
#s(approx (log (- 1 u0)) (neg.f32 (log.f32 (/.f32 #s(literal -1 binary32) u0))))
#s(approx (log (- 1 u0)) #s(hole binary32 (- (* -1 (log (/ -1 u0))) (/ 1 u0))))
#s(approx (log (- 1 u0)) (-.f32 (neg.f32 (log.f32 (/.f32 #s(literal -1 binary32) u0))) (/.f32 #s(literal 1 binary32) u0)))
#s(approx (log (- 1 u0)) #s(hole binary32 (+ (* -1 (log (/ -1 u0))) (* -1 (/ (+ 1 (* 1/2 (/ 1 u0))) u0)))))
#s(approx (log (- 1 u0)) (-.f32 (/.f32 (-.f32 (/.f32 #s(literal -1/2 binary32) u0) #s(literal 1 binary32)) u0) (log.f32 (/.f32 #s(literal -1 binary32) u0))))
#s(approx (log (- 1 u0)) #s(hole binary32 (+ (* -1 (log (/ -1 u0))) (* -1 (/ (+ 1 (+ (/ 1/3 (pow u0 2)) (* 1/2 (/ 1 u0)))) u0)))))
#s(approx (log (- 1 u0)) (-.f32 (/.f32 (-.f32 #s(literal -1 binary32) (/.f32 (-.f32 (/.f32 #s(literal 1/3 binary32) u0) #s(literal -1/2 binary32)) u0)) u0) (log.f32 (/.f32 #s(literal -1 binary32) u0))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (* (pow alpha 2) (log (/ -1 u0)))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (log.f32 (/.f32 #s(literal -1 binary32) u0)) (*.f32 alpha alpha)))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (+ (* (pow alpha 2) (log (/ -1 u0))) (/ (pow alpha 2) u0))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 alpha (fma.f32 (log.f32 (/.f32 #s(literal -1 binary32) u0)) alpha (/.f32 alpha u0))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (+ (* -1 (/ (+ (* -1 (pow alpha 2)) (* -1/2 (/ (pow alpha 2) u0))) u0)) (* (pow alpha 2) (log (/ -1 u0))))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (*.f32 alpha alpha) (-.f32 (log.f32 (/.f32 #s(literal -1 binary32) u0)) (/.f32 (-.f32 (/.f32 #s(literal -1/2 binary32) u0) #s(literal 1 binary32)) u0))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (+ (* -1 (/ (+ (* -1 (/ (+ (* 1/3 (/ (pow alpha 2) u0)) (* 1/2 (pow alpha 2))) u0)) (* -1 (pow alpha 2))) u0)) (* (pow alpha 2) (log (/ -1 u0))))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (fma.f32 (log.f32 (/.f32 #s(literal -1 binary32) u0)) (*.f32 alpha alpha) (*.f32 (/.f32 (*.f32 alpha alpha) u0) (-.f32 (/.f32 (-.f32 (/.f32 #s(literal 1/3 binary32) u0) #s(literal -1/2 binary32)) u0) #s(literal -1 binary32)))))

rewrite41.0ms (0.5%)

Memory
16.9MiB live, 60.7MiB allocated; 8ms collecting garbage
Iterations

Useful iterations: 0 (0.0ms)

IterNodesCost
0819
01319
13719
018719
Stop Event
iter limit
iter limit
iter limit
unsound
iter limit
Counts
4 → 17
Calls
Call 1
Inputs
(log.f32 (-.f32 #s(literal 1 binary32) u0))
(*.f32 (*.f32 (neg.f32 alpha) alpha) (log.f32 (-.f32 #s(literal 1 binary32) u0)))
(*.f32 (neg.f32 alpha) alpha)
(neg.f32 alpha)
Outputs
(log.f32 (-.f32 #s(literal 1 binary32) u0))
(-.f32 (log1p.f32 (*.f32 (neg.f32 u0) u0)) (log1p.f32 u0))
(-.f32 (log.f32 (-.f32 #s(literal 1 binary32) (pow.f32 u0 #s(literal 3 binary32)))) (log1p.f32 (fma.f32 u0 u0 u0)))
(log.f32 (pow.f32 (pow.f32 (-.f32 #s(literal 1 binary32) u0) alpha) (neg.f32 alpha)))
(*.f32 (*.f32 (log.f32 (-.f32 #s(literal 1 binary32) u0)) (neg.f32 alpha)) alpha)
(*.f32 (log.f32 (pow.f32 (-.f32 #s(literal 1 binary32) u0) alpha)) (neg.f32 alpha))
(*.f32 (*.f32 (neg.f32 alpha) alpha) (log.f32 (-.f32 #s(literal 1 binary32) u0)))
(*.f32 (neg.f32 alpha) (log.f32 (pow.f32 (-.f32 #s(literal 1 binary32) u0) alpha)))
(*.f32 alpha (*.f32 (neg.f32 alpha) (log.f32 (-.f32 #s(literal 1 binary32) u0))))
(*.f32 (log.f32 (-.f32 #s(literal 1 binary32) u0)) (*.f32 (neg.f32 alpha) alpha))
(neg.f32 (*.f32 (log.f32 (-.f32 #s(literal 1 binary32) u0)) (*.f32 alpha alpha)))
(neg.f32 (*.f32 (*.f32 alpha alpha) (log.f32 (-.f32 #s(literal 1 binary32) u0))))
(neg.f32 (*.f32 alpha (log.f32 (pow.f32 (-.f32 #s(literal 1 binary32) u0) alpha))))
(*.f32 (neg.f32 alpha) alpha)
(*.f32 alpha (neg.f32 alpha))
(neg.f32 (*.f32 alpha alpha))
(neg.f32 alpha)

eval3.0ms (0%)

Memory
8.5MiB live, 8.5MiB allocated; 0ms collecting garbage
Compiler

Compiled 740 to 166 computations (77.6% saved)

prune6.0ms (0.1%)

Memory
15.4MiB live, 15.4MiB allocated; 0ms collecting garbage
Pruning

11 alts after pruning (10 fresh and 1 done)

PrunedKeptTotal
New341044
Fresh000
Picked011
Done000
Total341145
Accuracy
99.6%
Counts
45 → 11
Alt Table
Click to see full alt table
StatusAccuracyProgram
98.8%
(*.f32 (*.f32 (neg.f32 alpha) alpha) (-.f32 (log1p.f32 (*.f32 (neg.f32 u0) u0)) (log1p.f32 u0)))
57.7%
(*.f32 (*.f32 (neg.f32 alpha) alpha) (log.f32 (-.f32 #s(literal 1 binary32) u0)))
91.5%
(*.f32 (*.f32 (neg.f32 alpha) alpha) #s(approx (log (- 1 u0)) (*.f32 (fma.f32 (fma.f32 (fma.f32 #s(literal -1/4 binary32) u0 #s(literal -1/3 binary32)) u0 #s(literal -1/2 binary32)) u0 #s(literal -1 binary32)) u0)))
89.4%
(*.f32 (*.f32 (neg.f32 alpha) alpha) #s(approx (log (- 1 u0)) (*.f32 (fma.f32 (fma.f32 #s(literal -1/3 binary32) u0 #s(literal -1/2 binary32)) u0 #s(literal -1 binary32)) u0)))
85.0%
(*.f32 (*.f32 (neg.f32 alpha) alpha) #s(approx (log (- 1 u0)) (*.f32 (fma.f32 #s(literal -1/2 binary32) u0 #s(literal -1 binary32)) u0)))
57.7%
(*.f32 (*.f32 (log.f32 (-.f32 #s(literal 1 binary32) u0)) (neg.f32 alpha)) alpha)
39.6%
(*.f32 (neg.f32 alpha) (log.f32 (pow.f32 (-.f32 #s(literal 1 binary32) u0) alpha)))
89.8%
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 (*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32))) u0 (*.f32 alpha alpha)) u0))
91.5%
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 (*.f32 u0 u0) (*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32))) (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) (*.f32 alpha alpha))) u0))
85.1%
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) (*.f32 (*.f32 alpha alpha) u0)))
72.6%
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (*.f32 alpha alpha) u0))
Compiler

Compiled 369 to 276 computations (25.2% saved)

simplify175.0ms (2.1%)

Memory
17.9MiB live, 202.8MiB allocated; 26ms collecting garbage
Localize:

Found 19 expressions of interest:

NewMetricScoreProgram
cost-diff0
(*.f32 u0 u0)
cost-diff0
(*.f32 (fma.f32 (*.f32 u0 u0) (*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32))) (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) (*.f32 alpha alpha))) u0)
cost-diff0
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 (*.f32 u0 u0) (*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32))) (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) (*.f32 alpha alpha))) u0))
cost-diff4
(fma.f32 (*.f32 u0 u0) (*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32))) (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) (*.f32 alpha alpha)))
cost-diff0
(*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)))
cost-diff0
(*.f32 (fma.f32 (*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32))) u0 (*.f32 alpha alpha)) u0)
cost-diff0
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 (*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32))) u0 (*.f32 alpha alpha)) u0))
cost-diff2
(fma.f32 (*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32))) u0 (*.f32 alpha alpha))
cost-diff0
#s(approx (log (- 1 u0)) (*.f32 (fma.f32 #s(literal -1/2 binary32) u0 #s(literal -1 binary32)) u0))
cost-diff0
(neg.f32 alpha)
cost-diff0
(*.f32 (neg.f32 alpha) alpha)
cost-diff0
(*.f32 (*.f32 (neg.f32 alpha) alpha) #s(approx (log (- 1 u0)) (*.f32 (fma.f32 #s(literal -1/2 binary32) u0 #s(literal -1 binary32)) u0)))
cost-diff0
(*.f32 alpha alpha)
cost-diff0
(*.f32 (*.f32 alpha alpha) u0)
cost-diff0
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (*.f32 alpha alpha) u0))
cost-diff0
(-.f32 (log1p.f32 (*.f32 (neg.f32 u0) u0)) (log1p.f32 u0))
cost-diff0
(neg.f32 alpha)
cost-diff0
(*.f32 (neg.f32 alpha) alpha)
cost-diff0
(*.f32 (*.f32 (neg.f32 alpha) alpha) (-.f32 (log1p.f32 (*.f32 (neg.f32 u0) u0)) (log1p.f32 u0)))
Iterations

Useful iterations: 0 (0.0ms)

IterNodesCost
041296
073296
1149296
2554284
32835284
08156273
Stop Event
iter limit
node limit
iter limit
Calls
Call 1
Inputs
(*.f32 (*.f32 (neg.f32 alpha) alpha) (-.f32 (log1p.f32 (*.f32 (neg.f32 u0) u0)) (log1p.f32 u0)))
(*.f32 (neg.f32 alpha) alpha)
(neg.f32 alpha)
alpha
(-.f32 (log1p.f32 (*.f32 (neg.f32 u0) u0)) (log1p.f32 u0))
(log1p.f32 (*.f32 (neg.f32 u0) u0))
(*.f32 (neg.f32 u0) u0)
(neg.f32 u0)
u0
(log1p.f32 u0)
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (*.f32 alpha alpha) u0))
(*.f32 (*.f32 alpha alpha) u0)
(*.f32 alpha alpha)
alpha
u0
(*.f32 (*.f32 (neg.f32 alpha) alpha) #s(approx (log (- 1 u0)) (*.f32 (fma.f32 #s(literal -1/2 binary32) u0 #s(literal -1 binary32)) u0)))
(*.f32 (neg.f32 alpha) alpha)
(neg.f32 alpha)
alpha
#s(approx (log (- 1 u0)) (*.f32 (fma.f32 #s(literal -1/2 binary32) u0 #s(literal -1 binary32)) u0))
(*.f32 (fma.f32 #s(literal -1/2 binary32) u0 #s(literal -1 binary32)) u0)
(fma.f32 #s(literal -1/2 binary32) u0 #s(literal -1 binary32))
#s(literal -1/2 binary32)
u0
#s(literal -1 binary32)
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 (*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32))) u0 (*.f32 alpha alpha)) u0))
(*.f32 (fma.f32 (*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32))) u0 (*.f32 alpha alpha)) u0)
(fma.f32 (*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32))) u0 (*.f32 alpha alpha))
(*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)))
(*.f32 alpha alpha)
alpha
(fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32))
#s(literal 1/3 binary32)
u0
#s(literal 1/2 binary32)
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 (*.f32 u0 u0) (*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32))) (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) (*.f32 alpha alpha))) u0))
(*.f32 (fma.f32 (*.f32 u0 u0) (*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32))) (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) (*.f32 alpha alpha))) u0)
(fma.f32 (*.f32 u0 u0) (*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32))) (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) (*.f32 alpha alpha)))
(*.f32 u0 u0)
u0
(*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)))
(*.f32 alpha alpha)
alpha
(fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32))
#s(literal 1/4 binary32)
#s(literal 1/3 binary32)
(*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) (*.f32 alpha alpha))
(fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))
#s(literal 1/2 binary32)
#s(literal 1 binary32)
Outputs
(*.f32 (*.f32 (neg.f32 alpha) alpha) (-.f32 (log1p.f32 (*.f32 (neg.f32 u0) u0)) (log1p.f32 u0)))
(*.f32 (-.f32 (log1p.f32 (*.f32 (neg.f32 u0) u0)) (log1p.f32 u0)) (*.f32 (neg.f32 alpha) alpha))
(*.f32 (neg.f32 alpha) alpha)
(neg.f32 alpha)
alpha
(-.f32 (log1p.f32 (*.f32 (neg.f32 u0) u0)) (log1p.f32 u0))
(log1p.f32 (*.f32 (neg.f32 u0) u0))
(*.f32 (neg.f32 u0) u0)
(neg.f32 u0)
u0
(log1p.f32 u0)
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (*.f32 alpha alpha) u0))
(*.f32 (*.f32 alpha alpha) u0)
(*.f32 alpha alpha)
alpha
u0
(*.f32 (*.f32 (neg.f32 alpha) alpha) #s(approx (log (- 1 u0)) (*.f32 (fma.f32 #s(literal -1/2 binary32) u0 #s(literal -1 binary32)) u0)))
(*.f32 #s(approx (log (- 1 u0)) (*.f32 (fma.f32 #s(literal -1/2 binary32) u0 #s(literal -1 binary32)) u0)) (*.f32 (neg.f32 alpha) alpha))
(*.f32 (neg.f32 alpha) alpha)
(neg.f32 alpha)
alpha
#s(approx (log (- 1 u0)) (*.f32 (fma.f32 #s(literal -1/2 binary32) u0 #s(literal -1 binary32)) u0))
(*.f32 (fma.f32 #s(literal -1/2 binary32) u0 #s(literal -1 binary32)) u0)
(fma.f32 #s(literal -1/2 binary32) u0 #s(literal -1 binary32))
#s(literal -1/2 binary32)
u0
#s(literal -1 binary32)
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 (*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32))) u0 (*.f32 alpha alpha)) u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) (*.f32 (*.f32 alpha alpha) u0)))
(*.f32 (fma.f32 (*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32))) u0 (*.f32 alpha alpha)) u0)
(*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) (*.f32 (*.f32 alpha alpha) u0))
(fma.f32 (*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32))) u0 (*.f32 alpha alpha))
(*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) (*.f32 alpha alpha))
(*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)))
(*.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) alpha) alpha)
(*.f32 alpha alpha)
alpha
(fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32))
#s(literal 1/3 binary32)
u0
#s(literal 1/2 binary32)
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 (*.f32 u0 u0) (*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32))) (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) (*.f32 alpha alpha))) u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (*.f32 (*.f32 alpha alpha) u0) (fma.f32 (*.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0) u0 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)))))
(*.f32 (fma.f32 (*.f32 u0 u0) (*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32))) (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) (*.f32 alpha alpha))) u0)
(*.f32 (*.f32 (*.f32 alpha alpha) u0) (fma.f32 (*.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0) u0 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))))
(fma.f32 (*.f32 u0 u0) (*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32))) (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) (*.f32 alpha alpha)))
(*.f32 (*.f32 alpha alpha) (fma.f32 (*.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0) u0 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))))
(*.f32 u0 u0)
u0
(*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)))
(*.f32 (*.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) alpha) alpha)
(*.f32 alpha alpha)
alpha
(fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32))
#s(literal 1/4 binary32)
#s(literal 1/3 binary32)
(*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) (*.f32 alpha alpha))
(*.f32 (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) alpha) alpha)
(fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))
#s(literal 1/2 binary32)
#s(literal 1 binary32)

localize105.0ms (1.2%)

Memory
-9.2MiB live, 180.4MiB allocated; 22ms collecting garbage
Localize:

Found 19 expressions of interest:

NewMetricScoreProgram
accuracy0.20703125
(*.f32 (fma.f32 (*.f32 u0 u0) (*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32))) (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) (*.f32 alpha alpha))) u0)
accuracy0.30306625976844204
(*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)))
accuracy0.33203125
(*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) (*.f32 alpha alpha))
accuracy2.131841921494873
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 (*.f32 u0 u0) (*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32))) (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) (*.f32 alpha alpha))) u0))
accuracy0.21875
(*.f32 (fma.f32 (*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32))) u0 (*.f32 alpha alpha)) u0)
accuracy0.23828125
(fma.f32 (*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32))) u0 (*.f32 alpha alpha))
accuracy0.31640625
(*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)))
accuracy2.7718788821099096
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 (*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32))) u0 (*.f32 alpha alpha)) u0))
accuracy0.0
(neg.f32 alpha)
accuracy0.2734375
(*.f32 (fma.f32 #s(literal -1/2 binary32) u0 #s(literal -1 binary32)) u0)
accuracy0.33984375
(*.f32 (*.f32 (neg.f32 alpha) alpha) #s(approx (log (- 1 u0)) (*.f32 (fma.f32 #s(literal -1/2 binary32) u0 #s(literal -1 binary32)) u0)))
accuracy4.226775497022726
#s(approx (log (- 1 u0)) (*.f32 (fma.f32 #s(literal -1/2 binary32) u0 #s(literal -1 binary32)) u0))
accuracy0.0
(*.f32 alpha alpha)
accuracy0.2265625
(*.f32 (*.f32 alpha alpha) u0)
accuracy8.292493695370466
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (*.f32 alpha alpha) u0))
accuracy0.00390625
(log1p.f32 u0)
accuracy0.11166000976844202
(log1p.f32 (*.f32 (neg.f32 u0) u0))
accuracy0.25390625
(-.f32 (log1p.f32 (*.f32 (neg.f32 u0) u0)) (log1p.f32 u0))
accuracy0.33984375
(*.f32 (*.f32 (neg.f32 alpha) alpha) (-.f32 (log1p.f32 (*.f32 (neg.f32 u0) u0)) (log1p.f32 u0)))
Samples
72.0ms251×0valid
5.0ms5exit
Compiler

Compiled 269 to 42 computations (84.4% saved)

Precisions
Click to see histograms. Total time spent on operations: 55.0ms
ival-mult: 30.0ms (54.1% of total)
ival-add: 7.0ms (12.6% of total)
const: 4.0ms (7.2% of total)
ival-log1p: 4.0ms (7.2% of total)
ival-log: 3.0ms (5.4% of total)
adjust: 2.0ms (3.6% of total)
ival-sub: 2.0ms (3.6% of total)
ival-neg: 2.0ms (3.6% of total)
exact: 1.0ms (1.8% of total)
ival-assert: 0.0ms (0% of total)
ival-true: 0.0ms (0% of total)

series171.0ms (2%)

Memory
9.2MiB live, 241.5MiB allocated; 51ms collecting garbage
Counts
22 → 141
Calls
Call 1
Inputs
(*.f32 (*.f32 (neg.f32 alpha) alpha) (-.f32 (log1p.f32 (*.f32 (neg.f32 u0) u0)) (log1p.f32 u0)))
(*.f32 (neg.f32 alpha) alpha)
(neg.f32 alpha)
(-.f32 (log1p.f32 (*.f32 (neg.f32 u0) u0)) (log1p.f32 u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (*.f32 alpha alpha) u0))
(*.f32 (*.f32 alpha alpha) u0)
(*.f32 alpha alpha)
(*.f32 (*.f32 (neg.f32 alpha) alpha) #s(approx (log (- 1 u0)) (*.f32 (fma.f32 #s(literal -1/2 binary32) u0 #s(literal -1 binary32)) u0)))
#s(approx (log (- 1 u0)) (*.f32 (fma.f32 #s(literal -1/2 binary32) u0 #s(literal -1 binary32)) u0))
(fma.f32 (*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32))) u0 (*.f32 alpha alpha))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 (*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32))) u0 (*.f32 alpha alpha)) u0))
(*.f32 (fma.f32 (*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32))) u0 (*.f32 alpha alpha)) u0)
(*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)))
(fma.f32 (*.f32 u0 u0) (*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32))) (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) (*.f32 alpha alpha)))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 (*.f32 u0 u0) (*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32))) (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) (*.f32 alpha alpha))) u0))
(*.f32 (fma.f32 (*.f32 u0 u0) (*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32))) (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) (*.f32 alpha alpha))) u0)
(*.f32 u0 u0)
(log1p.f32 (*.f32 (neg.f32 u0) u0))
(log1p.f32 u0)
(*.f32 (fma.f32 #s(literal -1/2 binary32) u0 #s(literal -1 binary32)) u0)
(*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) (*.f32 alpha alpha))
(*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)))
Outputs
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) #s(hole binary32 (* -1 (* (pow alpha 2) (- (log (+ 1 (* -1 (pow u0 2)))) (log (+ 1 u0)))))))
#s(approx (* (neg alpha) alpha) #s(hole binary32 (* -1 (pow alpha 2))))
#s(approx (neg alpha) #s(hole binary32 (* -1 alpha)))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (* -1 (* (pow alpha 2) (log (- 1 u0))))))
#s(approx (* (* alpha alpha) u0) #s(hole binary32 (* (pow alpha 2) u0)))
#s(approx (* alpha alpha) #s(hole binary32 (pow alpha 2)))
#s(approx (+ (* (* (* alpha alpha) (+ (* 1/3 u0) 1/2)) u0) (* alpha alpha)) #s(hole binary32 (* (pow alpha 2) (+ 1 (* u0 (+ 1/2 (* 1/3 u0)))))))
#s(approx (* (+ (* (* (* alpha alpha) (+ (* 1/3 u0) 1/2)) u0) (* alpha alpha)) u0) #s(hole binary32 (* (pow alpha 2) (* u0 (+ 1 (* u0 (+ 1/2 (* 1/3 u0))))))))
#s(approx (* (* alpha alpha) (+ (* 1/3 u0) 1/2)) #s(hole binary32 (* (pow alpha 2) (+ 1/2 (* 1/3 u0)))))
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) #s(hole binary32 (* (pow alpha 2) (+ 1 (+ (* 1/2 u0) (* (pow u0 2) (+ 1/3 (* 1/4 u0))))))))
#s(approx (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) u0) #s(hole binary32 (* (pow alpha 2) (* u0 (+ 1 (+ (* 1/2 u0) (* (pow u0 2) (+ 1/3 (* 1/4 u0)))))))))
#s(approx (* (+ (* 1/2 u0) 1) (* alpha alpha)) #s(hole binary32 (* (pow alpha 2) (+ 1 (* 1/2 u0)))))
#s(approx (* (* alpha alpha) (+ (* 1/4 u0) 1/3)) #s(hole binary32 (* (pow alpha 2) (+ 1/3 (* 1/4 u0)))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) #s(hole binary32 (* (pow alpha 2) u0)))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) #s(hole binary32 (* u0 (+ (* 1/2 (* (pow alpha 2) u0)) (pow alpha 2)))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) #s(hole binary32 (* u0 (+ (* u0 (+ (* 1/3 (* (pow alpha 2) u0)) (* 1/2 (pow alpha 2)))) (pow alpha 2)))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) #s(hole binary32 (* u0 (+ (* u0 (+ (* 1/2 (pow alpha 2)) (* u0 (+ (* 1/4 (* (pow alpha 2) u0)) (* 1/3 (pow alpha 2)))))) (pow alpha 2)))))
#s(approx (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0))) #s(hole binary32 (* -1 u0)))
#s(approx (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0))) #s(hole binary32 (* u0 (- (* -1/2 u0) 1))))
#s(approx (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0))) #s(hole binary32 (* u0 (- (* u0 (- (* -1/3 u0) 1/2)) 1))))
#s(approx (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0))) #s(hole binary32 (* u0 (- (* u0 (- (* u0 (- (* -1/4 u0) 1/3)) 1/2)) 1))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (* (pow alpha 2) u0)))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (* u0 (+ (* 1/2 (* (pow alpha 2) u0)) (pow alpha 2)))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (* u0 (+ (* u0 (+ (* 1/3 (* (pow alpha 2) u0)) (* 1/2 (pow alpha 2)))) (pow alpha 2)))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (* u0 (+ (* u0 (+ (* 1/2 (pow alpha 2)) (* u0 (+ (* 1/4 (* (pow alpha 2) u0)) (* 1/3 (pow alpha 2)))))) (pow alpha 2)))))
#s(approx (log (- 1 u0)) #s(hole binary32 (* -1 u0)))
#s(approx (log (- 1 u0)) #s(hole binary32 (* u0 (- (* -1/2 u0) 1))))
#s(approx (log (- 1 u0)) #s(hole binary32 (* u0 (- (* u0 (- (* -1/3 u0) 1/2)) 1))))
#s(approx (log (- 1 u0)) #s(hole binary32 (* u0 (- (* u0 (- (* u0 (- (* -1/4 u0) 1/3)) 1/2)) 1))))
#s(approx (+ (* (* (* alpha alpha) (+ (* 1/3 u0) 1/2)) u0) (* alpha alpha)) #s(hole binary32 (pow alpha 2)))
#s(approx (+ (* (* (* alpha alpha) (+ (* 1/3 u0) 1/2)) u0) (* alpha alpha)) #s(hole binary32 (+ (* 1/2 (* (pow alpha 2) u0)) (pow alpha 2))))
#s(approx (+ (* (* (* alpha alpha) (+ (* 1/3 u0) 1/2)) u0) (* alpha alpha)) #s(hole binary32 (+ (* u0 (+ (* 1/3 (* (pow alpha 2) u0)) (* 1/2 (pow alpha 2)))) (pow alpha 2))))
#s(approx (* (+ (* (* (* alpha alpha) (+ (* 1/3 u0) 1/2)) u0) (* alpha alpha)) u0) #s(hole binary32 (* (pow alpha 2) u0)))
#s(approx (* (+ (* (* (* alpha alpha) (+ (* 1/3 u0) 1/2)) u0) (* alpha alpha)) u0) #s(hole binary32 (* u0 (+ (* 1/2 (* (pow alpha 2) u0)) (pow alpha 2)))))
#s(approx (* (+ (* (* (* alpha alpha) (+ (* 1/3 u0) 1/2)) u0) (* alpha alpha)) u0) #s(hole binary32 (* u0 (+ (* u0 (+ (* 1/3 (* (pow alpha 2) u0)) (* 1/2 (pow alpha 2)))) (pow alpha 2)))))
#s(approx (* (* alpha alpha) (+ (* 1/3 u0) 1/2)) #s(hole binary32 (* 1/2 (pow alpha 2))))
#s(approx (* (* alpha alpha) (+ (* 1/3 u0) 1/2)) #s(hole binary32 (+ (* 1/3 (* (pow alpha 2) u0)) (* 1/2 (pow alpha 2)))))
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) #s(hole binary32 (pow alpha 2)))
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) #s(hole binary32 (+ (* 1/2 (* (pow alpha 2) u0)) (pow alpha 2))))
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) #s(hole binary32 (+ (* u0 (+ (* 1/3 (* (pow alpha 2) u0)) (* 1/2 (pow alpha 2)))) (pow alpha 2))))
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) #s(hole binary32 (+ (* u0 (+ (* 1/2 (pow alpha 2)) (* u0 (+ (* 1/4 (* (pow alpha 2) u0)) (* 1/3 (pow alpha 2)))))) (pow alpha 2))))
#s(approx (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) u0) #s(hole binary32 (* (pow alpha 2) u0)))
#s(approx (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) u0) #s(hole binary32 (* u0 (+ (* 1/2 (* (pow alpha 2) u0)) (pow alpha 2)))))
#s(approx (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) u0) #s(hole binary32 (* u0 (+ (* u0 (+ (* 1/3 (* (pow alpha 2) u0)) (* 1/2 (pow alpha 2)))) (pow alpha 2)))))
#s(approx (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) u0) #s(hole binary32 (* u0 (+ (* u0 (+ (* 1/2 (pow alpha 2)) (* u0 (+ (* 1/4 (* (pow alpha 2) u0)) (* 1/3 (pow alpha 2)))))) (pow alpha 2)))))
#s(approx (* u0 u0) #s(hole binary32 (pow u0 2)))
#s(approx (log (+ 1 (* (neg u0) u0))) #s(hole binary32 (* -1 (pow u0 2))))
#s(approx (log (+ 1 (* (neg u0) u0))) #s(hole binary32 (* (pow u0 2) (- (* -1/2 (pow u0 2)) 1))))
#s(approx (log (+ 1 (* (neg u0) u0))) #s(hole binary32 (* (pow u0 2) (- (* (pow u0 2) (- (* -1/3 (pow u0 2)) 1/2)) 1))))
#s(approx (log (+ 1 (* (neg u0) u0))) #s(hole binary32 (* (pow u0 2) (- (* (pow u0 2) (- (* (pow u0 2) (- (* -1/4 (pow u0 2)) 1/3)) 1/2)) 1))))
#s(approx (log (+ 1 u0)) #s(hole binary32 u0))
#s(approx (log (+ 1 u0)) #s(hole binary32 (* u0 (+ 1 (* -1/2 u0)))))
#s(approx (log (+ 1 u0)) #s(hole binary32 (* u0 (+ 1 (* u0 (- (* 1/3 u0) 1/2))))))
#s(approx (log (+ 1 u0)) #s(hole binary32 (* u0 (+ 1 (* u0 (- (* u0 (+ 1/3 (* -1/4 u0))) 1/2))))))
#s(approx (* (+ (* -1/2 u0) -1) u0) #s(hole binary32 (* -1 u0)))
#s(approx (* (+ (* -1/2 u0) -1) u0) #s(hole binary32 (* u0 (- (* -1/2 u0) 1))))
#s(approx (* (+ (* 1/2 u0) 1) (* alpha alpha)) #s(hole binary32 (pow alpha 2)))
#s(approx (* (+ (* 1/2 u0) 1) (* alpha alpha)) #s(hole binary32 (+ (* 1/2 (* (pow alpha 2) u0)) (pow alpha 2))))
#s(approx (* (* alpha alpha) (+ (* 1/4 u0) 1/3)) #s(hole binary32 (* 1/3 (pow alpha 2))))
#s(approx (* (* alpha alpha) (+ (* 1/4 u0) 1/3)) #s(hole binary32 (+ (* 1/4 (* (pow alpha 2) u0)) (* 1/3 (pow alpha 2)))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) #s(hole binary32 (* -1 (* (pow alpha 2) (- (+ (log -1) (* -2 (log (/ 1 u0)))) (* -1 (log (/ 1 u0))))))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) #s(hole binary32 (+ (* -1 (* (pow alpha 2) (- (+ (log -1) (* -2 (log (/ 1 u0)))) (* -1 (log (/ 1 u0)))))) (/ (pow alpha 2) u0))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) #s(hole binary32 (+ (* -1 (* (pow alpha 2) (- (+ (log -1) (* -2 (log (/ 1 u0)))) (* -1 (log (/ 1 u0)))))) (+ (* 1/2 (/ (pow alpha 2) (pow u0 2))) (/ (pow alpha 2) u0)))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) #s(hole binary32 (+ (* -1 (* (pow alpha 2) (- (+ (log -1) (* -2 (log (/ 1 u0)))) (* -1 (log (/ 1 u0)))))) (+ (* 1/3 (/ (pow alpha 2) (pow u0 3))) (+ (* 1/2 (/ (pow alpha 2) (pow u0 2))) (/ (pow alpha 2) u0))))))
#s(approx (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0))) #s(hole binary32 (- (+ (log -1) (* -2 (log (/ 1 u0)))) (* -1 (log (/ 1 u0))))))
#s(approx (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0))) #s(hole binary32 (- (+ (log -1) (* -2 (log (/ 1 u0)))) (+ (* -1 (log (/ 1 u0))) (/ 1 u0)))))
#s(approx (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0))) #s(hole binary32 (- (+ (log -1) (+ (* -2 (log (/ 1 u0))) (* -1 (/ (+ 1 (* 1/2 (/ 1 u0))) u0)))) (* -1 (log (/ 1 u0))))))
#s(approx (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0))) #s(hole binary32 (- (+ (log -1) (+ (* -2 (log (/ 1 u0))) (* -1 (/ (+ 1/2 (* 1/3 (/ 1 u0))) (pow u0 2))))) (+ (* -1 (log (/ 1 u0))) (/ 1 u0)))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (* -1 (* (pow alpha 2) (+ (log -1) (* -1 (log (/ 1 u0))))))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (+ (* -1 (* (pow alpha 2) (+ (log -1) (* -1 (log (/ 1 u0)))))) (/ (pow alpha 2) u0))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (+ (* -1 (* (pow alpha 2) (+ (log -1) (* -1 (log (/ 1 u0)))))) (+ (* 1/2 (/ (pow alpha 2) (pow u0 2))) (/ (pow alpha 2) u0)))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (+ (* -1 (* (pow alpha 2) (+ (log -1) (* -1 (log (/ 1 u0)))))) (+ (* 1/3 (/ (pow alpha 2) (pow u0 3))) (+ (* 1/2 (/ (pow alpha 2) (pow u0 2))) (/ (pow alpha 2) u0))))))
#s(approx (log (- 1 u0)) #s(hole binary32 (+ (log -1) (* -1 (log (/ 1 u0))))))
#s(approx (log (- 1 u0)) #s(hole binary32 (- (+ (log -1) (* -1 (log (/ 1 u0)))) (/ 1 u0))))
#s(approx (log (- 1 u0)) #s(hole binary32 (+ (log -1) (+ (* -1 (log (/ 1 u0))) (* -1 (/ (+ 1 (* 1/2 (/ 1 u0))) u0))))))
#s(approx (log (- 1 u0)) #s(hole binary32 (- (+ (log -1) (+ (* -1 (log (/ 1 u0))) (* -1 (/ (+ 1/2 (* 1/3 (/ 1 u0))) (pow u0 2))))) (/ 1 u0))))
#s(approx (+ (* (* (* alpha alpha) (+ (* 1/3 u0) 1/2)) u0) (* alpha alpha)) #s(hole binary32 (* 1/3 (* (pow alpha 2) (pow u0 2)))))
#s(approx (+ (* (* (* alpha alpha) (+ (* 1/3 u0) 1/2)) u0) (* alpha alpha)) #s(hole binary32 (* (pow u0 2) (+ (* 1/3 (pow alpha 2)) (* 1/2 (/ (pow alpha 2) u0))))))
#s(approx (+ (* (* (* alpha alpha) (+ (* 1/3 u0) 1/2)) u0) (* alpha alpha)) #s(hole binary32 (* (pow u0 2) (+ (* 1/3 (pow alpha 2)) (+ (* 1/2 (/ (pow alpha 2) u0)) (/ (pow alpha 2) (pow u0 2)))))))
#s(approx (* (+ (* (* (* alpha alpha) (+ (* 1/3 u0) 1/2)) u0) (* alpha alpha)) u0) #s(hole binary32 (* 1/3 (* (pow alpha 2) (pow u0 3)))))
#s(approx (* (+ (* (* (* alpha alpha) (+ (* 1/3 u0) 1/2)) u0) (* alpha alpha)) u0) #s(hole binary32 (* (pow u0 3) (+ (* 1/3 (pow alpha 2)) (* 1/2 (/ (pow alpha 2) u0))))))
#s(approx (* (+ (* (* (* alpha alpha) (+ (* 1/3 u0) 1/2)) u0) (* alpha alpha)) u0) #s(hole binary32 (* (pow u0 3) (+ (* 1/3 (pow alpha 2)) (+ (* 1/2 (/ (pow alpha 2) u0)) (/ (pow alpha 2) (pow u0 2)))))))
#s(approx (* (* alpha alpha) (+ (* 1/3 u0) 1/2)) #s(hole binary32 (* 1/3 (* (pow alpha 2) u0))))
#s(approx (* (* alpha alpha) (+ (* 1/3 u0) 1/2)) #s(hole binary32 (* u0 (+ (* 1/3 (pow alpha 2)) (* 1/2 (/ (pow alpha 2) u0))))))
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) #s(hole binary32 (* 1/4 (* (pow alpha 2) (pow u0 3)))))
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) #s(hole binary32 (* (pow u0 3) (+ (* 1/4 (pow alpha 2)) (* 1/3 (/ (pow alpha 2) u0))))))
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) #s(hole binary32 (* (pow u0 3) (+ (* 1/4 (pow alpha 2)) (+ (* 1/3 (/ (pow alpha 2) u0)) (* 1/2 (/ (pow alpha 2) (pow u0 2))))))))
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) #s(hole binary32 (* (pow u0 3) (+ (* 1/4 (pow alpha 2)) (+ (* 1/3 (/ (pow alpha 2) u0)) (+ (* 1/2 (/ (pow alpha 2) (pow u0 2))) (/ (pow alpha 2) (pow u0 3))))))))
#s(approx (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) u0) #s(hole binary32 (* 1/4 (* (pow alpha 2) (pow u0 4)))))
#s(approx (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) u0) #s(hole binary32 (* (pow u0 4) (+ (* 1/4 (pow alpha 2)) (* 1/3 (/ (pow alpha 2) u0))))))
#s(approx (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) u0) #s(hole binary32 (* (pow u0 4) (+ (* 1/4 (pow alpha 2)) (+ (* 1/3 (/ (pow alpha 2) u0)) (* 1/2 (/ (pow alpha 2) (pow u0 2))))))))
#s(approx (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) u0) #s(hole binary32 (* (pow u0 4) (+ (* 1/4 (pow alpha 2)) (+ (* 1/3 (/ (pow alpha 2) u0)) (+ (* 1/2 (/ (pow alpha 2) (pow u0 2))) (/ (pow alpha 2) (pow u0 3))))))))
#s(approx (log (+ 1 (* (neg u0) u0))) #s(hole binary32 (+ (log -1) (* -2 (log (/ 1 u0))))))
#s(approx (log (+ 1 (* (neg u0) u0))) #s(hole binary32 (- (+ (log -1) (* -2 (log (/ 1 u0)))) (/ 1 (pow u0 2)))))
#s(approx (log (+ 1 (* (neg u0) u0))) #s(hole binary32 (+ (log -1) (+ (* -2 (log (/ 1 u0))) (* -1 (/ (+ 1 (* 1/2 (/ 1 (pow u0 2)))) (pow u0 2)))))))
#s(approx (log (+ 1 (* (neg u0) u0))) #s(hole binary32 (- (+ (log -1) (+ (* -2 (log (/ 1 u0))) (* -1 (/ (+ 1/2 (* 1/3 (/ 1 (pow u0 2)))) (pow u0 4))))) (/ 1 (pow u0 2)))))
#s(approx (log (+ 1 u0)) #s(hole binary32 (* -1 (log (/ 1 u0)))))
#s(approx (log (+ 1 u0)) #s(hole binary32 (+ (* -1 (log (/ 1 u0))) (/ 1 u0))))
#s(approx (log (+ 1 u0)) #s(hole binary32 (- (+ (* -1 (log (/ 1 u0))) (/ 1 u0)) (/ 1/2 (pow u0 2)))))
#s(approx (log (+ 1 u0)) #s(hole binary32 (- (+ (* -1 (log (/ 1 u0))) (+ (/ 1 u0) (* 1/3 (/ 1 (pow u0 3))))) (/ 1/2 (pow u0 2)))))
#s(approx (* (+ (* -1/2 u0) -1) u0) #s(hole binary32 (* -1/2 (pow u0 2))))
#s(approx (* (+ (* -1/2 u0) -1) u0) #s(hole binary32 (* -1 (* (pow u0 2) (+ 1/2 (/ 1 u0))))))
#s(approx (* (+ (* 1/2 u0) 1) (* alpha alpha)) #s(hole binary32 (* 1/2 (* (pow alpha 2) u0))))
#s(approx (* (+ (* 1/2 u0) 1) (* alpha alpha)) #s(hole binary32 (* u0 (+ (* 1/2 (pow alpha 2)) (/ (pow alpha 2) u0)))))
#s(approx (* (* alpha alpha) (+ (* 1/4 u0) 1/3)) #s(hole binary32 (* 1/4 (* (pow alpha 2) u0))))
#s(approx (* (* alpha alpha) (+ (* 1/4 u0) 1/3)) #s(hole binary32 (* u0 (+ (* 1/4 (pow alpha 2)) (* 1/3 (/ (pow alpha 2) u0))))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) #s(hole binary32 (* -1 (* (pow alpha 2) (- (* -2 (log (/ -1 u0))) (* -1 (log (/ -1 u0))))))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) #s(hole binary32 (+ (* -1 (* (pow alpha 2) (- (* -2 (log (/ -1 u0))) (* -1 (log (/ -1 u0)))))) (/ (pow alpha 2) u0))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) #s(hole binary32 (+ (* -1 (* (pow alpha 2) (- (* -2 (log (/ -1 u0))) (* -1 (log (/ -1 u0)))))) (* -1 (/ (+ (* -1 (pow alpha 2)) (* -1/2 (/ (pow alpha 2) u0))) u0)))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) #s(hole binary32 (+ (* -1 (* (pow alpha 2) (- (* -2 (log (/ -1 u0))) (* -1 (log (/ -1 u0)))))) (* -1 (/ (+ (* -1 (/ (+ (* 1/3 (/ (pow alpha 2) u0)) (* 1/2 (pow alpha 2))) u0)) (* -1 (pow alpha 2))) u0)))))
#s(approx (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0))) #s(hole binary32 (- (* -2 (log (/ -1 u0))) (* -1 (log (/ -1 u0))))))
#s(approx (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0))) #s(hole binary32 (- (* -2 (log (/ -1 u0))) (+ (* -1 (log (/ -1 u0))) (/ 1 u0)))))
#s(approx (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0))) #s(hole binary32 (- (+ (* -2 (log (/ -1 u0))) (* -1 (/ (+ 1 (* 1/2 (/ 1 u0))) u0))) (* -1 (log (/ -1 u0))))))
#s(approx (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0))) #s(hole binary32 (- (+ (* -2 (log (/ -1 u0))) (* -1 (/ (+ 1 (+ (/ 1/3 (pow u0 2)) (* 1/2 (/ 1 u0)))) u0))) (* -1 (log (/ -1 u0))))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (* (pow alpha 2) (log (/ -1 u0)))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (+ (* (pow alpha 2) (log (/ -1 u0))) (/ (pow alpha 2) u0))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (+ (* -1 (/ (+ (* -1 (pow alpha 2)) (* -1/2 (/ (pow alpha 2) u0))) u0)) (* (pow alpha 2) (log (/ -1 u0))))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (+ (* -1 (/ (+ (* -1 (/ (+ (* 1/3 (/ (pow alpha 2) u0)) (* 1/2 (pow alpha 2))) u0)) (* -1 (pow alpha 2))) u0)) (* (pow alpha 2) (log (/ -1 u0))))))
#s(approx (log (- 1 u0)) #s(hole binary32 (* -1 (log (/ -1 u0)))))
#s(approx (log (- 1 u0)) #s(hole binary32 (- (* -1 (log (/ -1 u0))) (/ 1 u0))))
#s(approx (log (- 1 u0)) #s(hole binary32 (+ (* -1 (log (/ -1 u0))) (* -1 (/ (+ 1 (* 1/2 (/ 1 u0))) u0)))))
#s(approx (log (- 1 u0)) #s(hole binary32 (+ (* -1 (log (/ -1 u0))) (* -1 (/ (+ 1 (+ (/ 1/3 (pow u0 2)) (* 1/2 (/ 1 u0)))) u0)))))
#s(approx (+ (* (* (* alpha alpha) (+ (* 1/3 u0) 1/2)) u0) (* alpha alpha)) #s(hole binary32 (* (pow u0 2) (+ (* -1 (/ (+ (* -1 (/ (pow alpha 2) u0)) (* -1/2 (pow alpha 2))) u0)) (* 1/3 (pow alpha 2))))))
#s(approx (* (+ (* (* (* alpha alpha) (+ (* 1/3 u0) 1/2)) u0) (* alpha alpha)) u0) #s(hole binary32 (* -1 (* (pow u0 3) (+ (* -1/2 (/ (pow alpha 2) u0)) (* -1/3 (pow alpha 2)))))))
#s(approx (* (+ (* (* (* alpha alpha) (+ (* 1/3 u0) 1/2)) u0) (* alpha alpha)) u0) #s(hole binary32 (* -1 (* (pow u0 3) (+ (* -1 (/ (+ (* 1/2 (pow alpha 2)) (/ (pow alpha 2) u0)) u0)) (* -1/3 (pow alpha 2)))))))
#s(approx (* (* alpha alpha) (+ (* 1/3 u0) 1/2)) #s(hole binary32 (* -1 (* u0 (+ (* -1/2 (/ (pow alpha 2) u0)) (* -1/3 (pow alpha 2)))))))
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) #s(hole binary32 (* -1 (* (pow u0 3) (+ (* -1/3 (/ (pow alpha 2) u0)) (* -1/4 (pow alpha 2)))))))
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) #s(hole binary32 (* -1 (* (pow u0 3) (+ (* -1 (/ (+ (* 1/3 (pow alpha 2)) (* 1/2 (/ (pow alpha 2) u0))) u0)) (* -1/4 (pow alpha 2)))))))
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) #s(hole binary32 (* -1 (* (pow u0 3) (+ (* -1 (/ (+ (* -1 (/ (+ (* -1 (/ (pow alpha 2) u0)) (* -1/2 (pow alpha 2))) u0)) (* 1/3 (pow alpha 2))) u0)) (* -1/4 (pow alpha 2)))))))
#s(approx (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) u0) #s(hole binary32 (* (pow u0 4) (+ (* -1 (/ (+ (* -1/2 (/ (pow alpha 2) u0)) (* -1/3 (pow alpha 2))) u0)) (* 1/4 (pow alpha 2))))))
#s(approx (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) u0) #s(hole binary32 (* (pow u0 4) (+ (* -1 (/ (+ (* -1 (/ (+ (* 1/2 (pow alpha 2)) (/ (pow alpha 2) u0)) u0)) (* -1/3 (pow alpha 2))) u0)) (* 1/4 (pow alpha 2))))))
#s(approx (log (+ 1 (* (neg u0) u0))) #s(hole binary32 (+ (log -1) (* -2 (log (/ -1 u0))))))
#s(approx (log (+ 1 (* (neg u0) u0))) #s(hole binary32 (- (+ (log -1) (* -2 (log (/ -1 u0)))) (/ 1 (pow u0 2)))))
#s(approx (log (+ 1 (* (neg u0) u0))) #s(hole binary32 (+ (log -1) (+ (* -2 (log (/ -1 u0))) (* -1 (/ (+ 1 (* 1/2 (/ 1 (pow u0 2)))) (pow u0 2)))))))
#s(approx (log (+ 1 (* (neg u0) u0))) #s(hole binary32 (- (+ (log -1) (+ (* -2 (log (/ -1 u0))) (* -1 (/ (+ 1/2 (* 1/3 (/ 1 (pow u0 2)))) (pow u0 4))))) (/ 1 (pow u0 2)))))
#s(approx (log (+ 1 u0)) #s(hole binary32 (+ (log -1) (* -1 (log (/ -1 u0))))))
#s(approx (log (+ 1 u0)) #s(hole binary32 (+ (log -1) (+ (* -1 (log (/ -1 u0))) (/ 1 u0)))))
#s(approx (log (+ 1 u0)) #s(hole binary32 (+ (log -1) (+ (* -1 (log (/ -1 u0))) (* -1 (/ (- (* 1/2 (/ 1 u0)) 1) u0))))))
#s(approx (log (+ 1 u0)) #s(hole binary32 (+ (log -1) (+ (* -1 (log (/ -1 u0))) (* -1 (/ (- (* -1 (/ (- (* 1/3 (/ 1 u0)) 1/2) u0)) 1) u0))))))
#s(approx (* (+ (* 1/2 u0) 1) (* alpha alpha)) #s(hole binary32 (* -1 (* u0 (+ (* -1 (/ (pow alpha 2) u0)) (* -1/2 (pow alpha 2)))))))
#s(approx (* (* alpha alpha) (+ (* 1/4 u0) 1/3)) #s(hole binary32 (* -1 (* u0 (+ (* -1/3 (/ (pow alpha 2) u0)) (* -1/4 (pow alpha 2)))))))
Calls

6 calls:

TimeVariablePointExpression
67.0ms
alpha
@inf
((* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (* (neg alpha) alpha) (neg alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0))) (* (* (neg alpha) alpha) (log (- 1 u0))) (* (* alpha alpha) u0) (* alpha alpha) (* (* (neg alpha) alpha) (log (- 1 u0))) (log (- 1 u0)) (+ (* (* (* alpha alpha) (+ (* 1/3 u0) 1/2)) u0) (* alpha alpha)) (* (* (neg alpha) alpha) (log (- 1 u0))) (* (+ (* (* (* alpha alpha) (+ (* 1/3 u0) 1/2)) u0) (* alpha alpha)) u0) (* (* alpha alpha) (+ (* 1/3 u0) 1/2)) (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (* (* (neg alpha) alpha) (log (- 1 u0))) (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) u0) (* u0 u0) (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)) (* (+ (* -1/2 u0) -1) u0) (* (+ (* 1/2 u0) 1) (* alpha alpha)) (* (* alpha alpha) (+ (* 1/4 u0) 1/3)))
50.0ms
alpha
@0
((* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (* (neg alpha) alpha) (neg alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0))) (* (* (neg alpha) alpha) (log (- 1 u0))) (* (* alpha alpha) u0) (* alpha alpha) (* (* (neg alpha) alpha) (log (- 1 u0))) (log (- 1 u0)) (+ (* (* (* alpha alpha) (+ (* 1/3 u0) 1/2)) u0) (* alpha alpha)) (* (* (neg alpha) alpha) (log (- 1 u0))) (* (+ (* (* (* alpha alpha) (+ (* 1/3 u0) 1/2)) u0) (* alpha alpha)) u0) (* (* alpha alpha) (+ (* 1/3 u0) 1/2)) (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (* (* (neg alpha) alpha) (log (- 1 u0))) (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) u0) (* u0 u0) (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)) (* (+ (* -1/2 u0) -1) u0) (* (+ (* 1/2 u0) 1) (* alpha alpha)) (* (* alpha alpha) (+ (* 1/4 u0) 1/3)))
38.0ms
alpha
@-inf
((* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (* (neg alpha) alpha) (neg alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0))) (* (* (neg alpha) alpha) (log (- 1 u0))) (* (* alpha alpha) u0) (* alpha alpha) (* (* (neg alpha) alpha) (log (- 1 u0))) (log (- 1 u0)) (+ (* (* (* alpha alpha) (+ (* 1/3 u0) 1/2)) u0) (* alpha alpha)) (* (* (neg alpha) alpha) (log (- 1 u0))) (* (+ (* (* (* alpha alpha) (+ (* 1/3 u0) 1/2)) u0) (* alpha alpha)) u0) (* (* alpha alpha) (+ (* 1/3 u0) 1/2)) (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (* (* (neg alpha) alpha) (log (- 1 u0))) (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) u0) (* u0 u0) (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)) (* (+ (* -1/2 u0) -1) u0) (* (+ (* 1/2 u0) 1) (* alpha alpha)) (* (* alpha alpha) (+ (* 1/4 u0) 1/3)))
4.0ms
u0
@-inf
((* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (* (neg alpha) alpha) (neg alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0))) (* (* (neg alpha) alpha) (log (- 1 u0))) (* (* alpha alpha) u0) (* alpha alpha) (* (* (neg alpha) alpha) (log (- 1 u0))) (log (- 1 u0)) (+ (* (* (* alpha alpha) (+ (* 1/3 u0) 1/2)) u0) (* alpha alpha)) (* (* (neg alpha) alpha) (log (- 1 u0))) (* (+ (* (* (* alpha alpha) (+ (* 1/3 u0) 1/2)) u0) (* alpha alpha)) u0) (* (* alpha alpha) (+ (* 1/3 u0) 1/2)) (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (* (* (neg alpha) alpha) (log (- 1 u0))) (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) u0) (* u0 u0) (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)) (* (+ (* -1/2 u0) -1) u0) (* (+ (* 1/2 u0) 1) (* alpha alpha)) (* (* alpha alpha) (+ (* 1/4 u0) 1/3)))
4.0ms
u0
@inf
((* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (* (neg alpha) alpha) (neg alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0))) (* (* (neg alpha) alpha) (log (- 1 u0))) (* (* alpha alpha) u0) (* alpha alpha) (* (* (neg alpha) alpha) (log (- 1 u0))) (log (- 1 u0)) (+ (* (* (* alpha alpha) (+ (* 1/3 u0) 1/2)) u0) (* alpha alpha)) (* (* (neg alpha) alpha) (log (- 1 u0))) (* (+ (* (* (* alpha alpha) (+ (* 1/3 u0) 1/2)) u0) (* alpha alpha)) u0) (* (* alpha alpha) (+ (* 1/3 u0) 1/2)) (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (* (* (neg alpha) alpha) (log (- 1 u0))) (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) u0) (* u0 u0) (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)) (* (+ (* -1/2 u0) -1) u0) (* (+ (* 1/2 u0) 1) (* alpha alpha)) (* (* alpha alpha) (+ (* 1/4 u0) 1/3)))

simplify174.0ms (2.1%)

Memory
-9.3MiB live, 220.1MiB allocated; 27ms collecting garbage
Iterations

Useful iterations: 0 (0.0ms)

IterNodesCost
04903933
113713591
257463558
084493163
Stop Event
iter limit
node limit
Counts
141 → 141
Calls
Call 1
Inputs
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) #s(hole binary32 (* -1 (* (pow alpha 2) (- (log (+ 1 (* -1 (pow u0 2)))) (log (+ 1 u0)))))))
#s(approx (* (neg alpha) alpha) #s(hole binary32 (* -1 (pow alpha 2))))
#s(approx (neg alpha) #s(hole binary32 (* -1 alpha)))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (* -1 (* (pow alpha 2) (log (- 1 u0))))))
#s(approx (* (* alpha alpha) u0) #s(hole binary32 (* (pow alpha 2) u0)))
#s(approx (* alpha alpha) #s(hole binary32 (pow alpha 2)))
#s(approx (+ (* (* (* alpha alpha) (+ (* 1/3 u0) 1/2)) u0) (* alpha alpha)) #s(hole binary32 (* (pow alpha 2) (+ 1 (* u0 (+ 1/2 (* 1/3 u0)))))))
#s(approx (* (+ (* (* (* alpha alpha) (+ (* 1/3 u0) 1/2)) u0) (* alpha alpha)) u0) #s(hole binary32 (* (pow alpha 2) (* u0 (+ 1 (* u0 (+ 1/2 (* 1/3 u0))))))))
#s(approx (* (* alpha alpha) (+ (* 1/3 u0) 1/2)) #s(hole binary32 (* (pow alpha 2) (+ 1/2 (* 1/3 u0)))))
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) #s(hole binary32 (* (pow alpha 2) (+ 1 (+ (* 1/2 u0) (* (pow u0 2) (+ 1/3 (* 1/4 u0))))))))
#s(approx (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) u0) #s(hole binary32 (* (pow alpha 2) (* u0 (+ 1 (+ (* 1/2 u0) (* (pow u0 2) (+ 1/3 (* 1/4 u0)))))))))
#s(approx (* (+ (* 1/2 u0) 1) (* alpha alpha)) #s(hole binary32 (* (pow alpha 2) (+ 1 (* 1/2 u0)))))
#s(approx (* (* alpha alpha) (+ (* 1/4 u0) 1/3)) #s(hole binary32 (* (pow alpha 2) (+ 1/3 (* 1/4 u0)))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) #s(hole binary32 (* (pow alpha 2) u0)))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) #s(hole binary32 (* u0 (+ (* 1/2 (* (pow alpha 2) u0)) (pow alpha 2)))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) #s(hole binary32 (* u0 (+ (* u0 (+ (* 1/3 (* (pow alpha 2) u0)) (* 1/2 (pow alpha 2)))) (pow alpha 2)))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) #s(hole binary32 (* u0 (+ (* u0 (+ (* 1/2 (pow alpha 2)) (* u0 (+ (* 1/4 (* (pow alpha 2) u0)) (* 1/3 (pow alpha 2)))))) (pow alpha 2)))))
#s(approx (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0))) #s(hole binary32 (* -1 u0)))
#s(approx (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0))) #s(hole binary32 (* u0 (- (* -1/2 u0) 1))))
#s(approx (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0))) #s(hole binary32 (* u0 (- (* u0 (- (* -1/3 u0) 1/2)) 1))))
#s(approx (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0))) #s(hole binary32 (* u0 (- (* u0 (- (* u0 (- (* -1/4 u0) 1/3)) 1/2)) 1))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (* (pow alpha 2) u0)))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (* u0 (+ (* 1/2 (* (pow alpha 2) u0)) (pow alpha 2)))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (* u0 (+ (* u0 (+ (* 1/3 (* (pow alpha 2) u0)) (* 1/2 (pow alpha 2)))) (pow alpha 2)))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (* u0 (+ (* u0 (+ (* 1/2 (pow alpha 2)) (* u0 (+ (* 1/4 (* (pow alpha 2) u0)) (* 1/3 (pow alpha 2)))))) (pow alpha 2)))))
#s(approx (log (- 1 u0)) #s(hole binary32 (* -1 u0)))
#s(approx (log (- 1 u0)) #s(hole binary32 (* u0 (- (* -1/2 u0) 1))))
#s(approx (log (- 1 u0)) #s(hole binary32 (* u0 (- (* u0 (- (* -1/3 u0) 1/2)) 1))))
#s(approx (log (- 1 u0)) #s(hole binary32 (* u0 (- (* u0 (- (* u0 (- (* -1/4 u0) 1/3)) 1/2)) 1))))
#s(approx (+ (* (* (* alpha alpha) (+ (* 1/3 u0) 1/2)) u0) (* alpha alpha)) #s(hole binary32 (pow alpha 2)))
#s(approx (+ (* (* (* alpha alpha) (+ (* 1/3 u0) 1/2)) u0) (* alpha alpha)) #s(hole binary32 (+ (* 1/2 (* (pow alpha 2) u0)) (pow alpha 2))))
#s(approx (+ (* (* (* alpha alpha) (+ (* 1/3 u0) 1/2)) u0) (* alpha alpha)) #s(hole binary32 (+ (* u0 (+ (* 1/3 (* (pow alpha 2) u0)) (* 1/2 (pow alpha 2)))) (pow alpha 2))))
#s(approx (* (+ (* (* (* alpha alpha) (+ (* 1/3 u0) 1/2)) u0) (* alpha alpha)) u0) #s(hole binary32 (* (pow alpha 2) u0)))
#s(approx (* (+ (* (* (* alpha alpha) (+ (* 1/3 u0) 1/2)) u0) (* alpha alpha)) u0) #s(hole binary32 (* u0 (+ (* 1/2 (* (pow alpha 2) u0)) (pow alpha 2)))))
#s(approx (* (+ (* (* (* alpha alpha) (+ (* 1/3 u0) 1/2)) u0) (* alpha alpha)) u0) #s(hole binary32 (* u0 (+ (* u0 (+ (* 1/3 (* (pow alpha 2) u0)) (* 1/2 (pow alpha 2)))) (pow alpha 2)))))
#s(approx (* (* alpha alpha) (+ (* 1/3 u0) 1/2)) #s(hole binary32 (* 1/2 (pow alpha 2))))
#s(approx (* (* alpha alpha) (+ (* 1/3 u0) 1/2)) #s(hole binary32 (+ (* 1/3 (* (pow alpha 2) u0)) (* 1/2 (pow alpha 2)))))
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) #s(hole binary32 (pow alpha 2)))
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) #s(hole binary32 (+ (* 1/2 (* (pow alpha 2) u0)) (pow alpha 2))))
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) #s(hole binary32 (+ (* u0 (+ (* 1/3 (* (pow alpha 2) u0)) (* 1/2 (pow alpha 2)))) (pow alpha 2))))
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) #s(hole binary32 (+ (* u0 (+ (* 1/2 (pow alpha 2)) (* u0 (+ (* 1/4 (* (pow alpha 2) u0)) (* 1/3 (pow alpha 2)))))) (pow alpha 2))))
#s(approx (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) u0) #s(hole binary32 (* (pow alpha 2) u0)))
#s(approx (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) u0) #s(hole binary32 (* u0 (+ (* 1/2 (* (pow alpha 2) u0)) (pow alpha 2)))))
#s(approx (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) u0) #s(hole binary32 (* u0 (+ (* u0 (+ (* 1/3 (* (pow alpha 2) u0)) (* 1/2 (pow alpha 2)))) (pow alpha 2)))))
#s(approx (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) u0) #s(hole binary32 (* u0 (+ (* u0 (+ (* 1/2 (pow alpha 2)) (* u0 (+ (* 1/4 (* (pow alpha 2) u0)) (* 1/3 (pow alpha 2)))))) (pow alpha 2)))))
#s(approx (* u0 u0) #s(hole binary32 (pow u0 2)))
#s(approx (log (+ 1 (* (neg u0) u0))) #s(hole binary32 (* -1 (pow u0 2))))
#s(approx (log (+ 1 (* (neg u0) u0))) #s(hole binary32 (* (pow u0 2) (- (* -1/2 (pow u0 2)) 1))))
#s(approx (log (+ 1 (* (neg u0) u0))) #s(hole binary32 (* (pow u0 2) (- (* (pow u0 2) (- (* -1/3 (pow u0 2)) 1/2)) 1))))
#s(approx (log (+ 1 (* (neg u0) u0))) #s(hole binary32 (* (pow u0 2) (- (* (pow u0 2) (- (* (pow u0 2) (- (* -1/4 (pow u0 2)) 1/3)) 1/2)) 1))))
#s(approx (log (+ 1 u0)) #s(hole binary32 u0))
#s(approx (log (+ 1 u0)) #s(hole binary32 (* u0 (+ 1 (* -1/2 u0)))))
#s(approx (log (+ 1 u0)) #s(hole binary32 (* u0 (+ 1 (* u0 (- (* 1/3 u0) 1/2))))))
#s(approx (log (+ 1 u0)) #s(hole binary32 (* u0 (+ 1 (* u0 (- (* u0 (+ 1/3 (* -1/4 u0))) 1/2))))))
#s(approx (* (+ (* -1/2 u0) -1) u0) #s(hole binary32 (* -1 u0)))
#s(approx (* (+ (* -1/2 u0) -1) u0) #s(hole binary32 (* u0 (- (* -1/2 u0) 1))))
#s(approx (* (+ (* 1/2 u0) 1) (* alpha alpha)) #s(hole binary32 (pow alpha 2)))
#s(approx (* (+ (* 1/2 u0) 1) (* alpha alpha)) #s(hole binary32 (+ (* 1/2 (* (pow alpha 2) u0)) (pow alpha 2))))
#s(approx (* (* alpha alpha) (+ (* 1/4 u0) 1/3)) #s(hole binary32 (* 1/3 (pow alpha 2))))
#s(approx (* (* alpha alpha) (+ (* 1/4 u0) 1/3)) #s(hole binary32 (+ (* 1/4 (* (pow alpha 2) u0)) (* 1/3 (pow alpha 2)))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) #s(hole binary32 (* -1 (* (pow alpha 2) (- (+ (log -1) (* -2 (log (/ 1 u0)))) (* -1 (log (/ 1 u0))))))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) #s(hole binary32 (+ (* -1 (* (pow alpha 2) (- (+ (log -1) (* -2 (log (/ 1 u0)))) (* -1 (log (/ 1 u0)))))) (/ (pow alpha 2) u0))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) #s(hole binary32 (+ (* -1 (* (pow alpha 2) (- (+ (log -1) (* -2 (log (/ 1 u0)))) (* -1 (log (/ 1 u0)))))) (+ (* 1/2 (/ (pow alpha 2) (pow u0 2))) (/ (pow alpha 2) u0)))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) #s(hole binary32 (+ (* -1 (* (pow alpha 2) (- (+ (log -1) (* -2 (log (/ 1 u0)))) (* -1 (log (/ 1 u0)))))) (+ (* 1/3 (/ (pow alpha 2) (pow u0 3))) (+ (* 1/2 (/ (pow alpha 2) (pow u0 2))) (/ (pow alpha 2) u0))))))
#s(approx (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0))) #s(hole binary32 (- (+ (log -1) (* -2 (log (/ 1 u0)))) (* -1 (log (/ 1 u0))))))
#s(approx (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0))) #s(hole binary32 (- (+ (log -1) (* -2 (log (/ 1 u0)))) (+ (* -1 (log (/ 1 u0))) (/ 1 u0)))))
#s(approx (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0))) #s(hole binary32 (- (+ (log -1) (+ (* -2 (log (/ 1 u0))) (* -1 (/ (+ 1 (* 1/2 (/ 1 u0))) u0)))) (* -1 (log (/ 1 u0))))))
#s(approx (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0))) #s(hole binary32 (- (+ (log -1) (+ (* -2 (log (/ 1 u0))) (* -1 (/ (+ 1/2 (* 1/3 (/ 1 u0))) (pow u0 2))))) (+ (* -1 (log (/ 1 u0))) (/ 1 u0)))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (* -1 (* (pow alpha 2) (+ (log -1) (* -1 (log (/ 1 u0))))))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (+ (* -1 (* (pow alpha 2) (+ (log -1) (* -1 (log (/ 1 u0)))))) (/ (pow alpha 2) u0))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (+ (* -1 (* (pow alpha 2) (+ (log -1) (* -1 (log (/ 1 u0)))))) (+ (* 1/2 (/ (pow alpha 2) (pow u0 2))) (/ (pow alpha 2) u0)))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (+ (* -1 (* (pow alpha 2) (+ (log -1) (* -1 (log (/ 1 u0)))))) (+ (* 1/3 (/ (pow alpha 2) (pow u0 3))) (+ (* 1/2 (/ (pow alpha 2) (pow u0 2))) (/ (pow alpha 2) u0))))))
#s(approx (log (- 1 u0)) #s(hole binary32 (+ (log -1) (* -1 (log (/ 1 u0))))))
#s(approx (log (- 1 u0)) #s(hole binary32 (- (+ (log -1) (* -1 (log (/ 1 u0)))) (/ 1 u0))))
#s(approx (log (- 1 u0)) #s(hole binary32 (+ (log -1) (+ (* -1 (log (/ 1 u0))) (* -1 (/ (+ 1 (* 1/2 (/ 1 u0))) u0))))))
#s(approx (log (- 1 u0)) #s(hole binary32 (- (+ (log -1) (+ (* -1 (log (/ 1 u0))) (* -1 (/ (+ 1/2 (* 1/3 (/ 1 u0))) (pow u0 2))))) (/ 1 u0))))
#s(approx (+ (* (* (* alpha alpha) (+ (* 1/3 u0) 1/2)) u0) (* alpha alpha)) #s(hole binary32 (* 1/3 (* (pow alpha 2) (pow u0 2)))))
#s(approx (+ (* (* (* alpha alpha) (+ (* 1/3 u0) 1/2)) u0) (* alpha alpha)) #s(hole binary32 (* (pow u0 2) (+ (* 1/3 (pow alpha 2)) (* 1/2 (/ (pow alpha 2) u0))))))
#s(approx (+ (* (* (* alpha alpha) (+ (* 1/3 u0) 1/2)) u0) (* alpha alpha)) #s(hole binary32 (* (pow u0 2) (+ (* 1/3 (pow alpha 2)) (+ (* 1/2 (/ (pow alpha 2) u0)) (/ (pow alpha 2) (pow u0 2)))))))
#s(approx (* (+ (* (* (* alpha alpha) (+ (* 1/3 u0) 1/2)) u0) (* alpha alpha)) u0) #s(hole binary32 (* 1/3 (* (pow alpha 2) (pow u0 3)))))
#s(approx (* (+ (* (* (* alpha alpha) (+ (* 1/3 u0) 1/2)) u0) (* alpha alpha)) u0) #s(hole binary32 (* (pow u0 3) (+ (* 1/3 (pow alpha 2)) (* 1/2 (/ (pow alpha 2) u0))))))
#s(approx (* (+ (* (* (* alpha alpha) (+ (* 1/3 u0) 1/2)) u0) (* alpha alpha)) u0) #s(hole binary32 (* (pow u0 3) (+ (* 1/3 (pow alpha 2)) (+ (* 1/2 (/ (pow alpha 2) u0)) (/ (pow alpha 2) (pow u0 2)))))))
#s(approx (* (* alpha alpha) (+ (* 1/3 u0) 1/2)) #s(hole binary32 (* 1/3 (* (pow alpha 2) u0))))
#s(approx (* (* alpha alpha) (+ (* 1/3 u0) 1/2)) #s(hole binary32 (* u0 (+ (* 1/3 (pow alpha 2)) (* 1/2 (/ (pow alpha 2) u0))))))
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) #s(hole binary32 (* 1/4 (* (pow alpha 2) (pow u0 3)))))
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) #s(hole binary32 (* (pow u0 3) (+ (* 1/4 (pow alpha 2)) (* 1/3 (/ (pow alpha 2) u0))))))
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) #s(hole binary32 (* (pow u0 3) (+ (* 1/4 (pow alpha 2)) (+ (* 1/3 (/ (pow alpha 2) u0)) (* 1/2 (/ (pow alpha 2) (pow u0 2))))))))
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) #s(hole binary32 (* (pow u0 3) (+ (* 1/4 (pow alpha 2)) (+ (* 1/3 (/ (pow alpha 2) u0)) (+ (* 1/2 (/ (pow alpha 2) (pow u0 2))) (/ (pow alpha 2) (pow u0 3))))))))
#s(approx (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) u0) #s(hole binary32 (* 1/4 (* (pow alpha 2) (pow u0 4)))))
#s(approx (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) u0) #s(hole binary32 (* (pow u0 4) (+ (* 1/4 (pow alpha 2)) (* 1/3 (/ (pow alpha 2) u0))))))
#s(approx (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) u0) #s(hole binary32 (* (pow u0 4) (+ (* 1/4 (pow alpha 2)) (+ (* 1/3 (/ (pow alpha 2) u0)) (* 1/2 (/ (pow alpha 2) (pow u0 2))))))))
#s(approx (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) u0) #s(hole binary32 (* (pow u0 4) (+ (* 1/4 (pow alpha 2)) (+ (* 1/3 (/ (pow alpha 2) u0)) (+ (* 1/2 (/ (pow alpha 2) (pow u0 2))) (/ (pow alpha 2) (pow u0 3))))))))
#s(approx (log (+ 1 (* (neg u0) u0))) #s(hole binary32 (+ (log -1) (* -2 (log (/ 1 u0))))))
#s(approx (log (+ 1 (* (neg u0) u0))) #s(hole binary32 (- (+ (log -1) (* -2 (log (/ 1 u0)))) (/ 1 (pow u0 2)))))
#s(approx (log (+ 1 (* (neg u0) u0))) #s(hole binary32 (+ (log -1) (+ (* -2 (log (/ 1 u0))) (* -1 (/ (+ 1 (* 1/2 (/ 1 (pow u0 2)))) (pow u0 2)))))))
#s(approx (log (+ 1 (* (neg u0) u0))) #s(hole binary32 (- (+ (log -1) (+ (* -2 (log (/ 1 u0))) (* -1 (/ (+ 1/2 (* 1/3 (/ 1 (pow u0 2)))) (pow u0 4))))) (/ 1 (pow u0 2)))))
#s(approx (log (+ 1 u0)) #s(hole binary32 (* -1 (log (/ 1 u0)))))
#s(approx (log (+ 1 u0)) #s(hole binary32 (+ (* -1 (log (/ 1 u0))) (/ 1 u0))))
#s(approx (log (+ 1 u0)) #s(hole binary32 (- (+ (* -1 (log (/ 1 u0))) (/ 1 u0)) (/ 1/2 (pow u0 2)))))
#s(approx (log (+ 1 u0)) #s(hole binary32 (- (+ (* -1 (log (/ 1 u0))) (+ (/ 1 u0) (* 1/3 (/ 1 (pow u0 3))))) (/ 1/2 (pow u0 2)))))
#s(approx (* (+ (* -1/2 u0) -1) u0) #s(hole binary32 (* -1/2 (pow u0 2))))
#s(approx (* (+ (* -1/2 u0) -1) u0) #s(hole binary32 (* -1 (* (pow u0 2) (+ 1/2 (/ 1 u0))))))
#s(approx (* (+ (* 1/2 u0) 1) (* alpha alpha)) #s(hole binary32 (* 1/2 (* (pow alpha 2) u0))))
#s(approx (* (+ (* 1/2 u0) 1) (* alpha alpha)) #s(hole binary32 (* u0 (+ (* 1/2 (pow alpha 2)) (/ (pow alpha 2) u0)))))
#s(approx (* (* alpha alpha) (+ (* 1/4 u0) 1/3)) #s(hole binary32 (* 1/4 (* (pow alpha 2) u0))))
#s(approx (* (* alpha alpha) (+ (* 1/4 u0) 1/3)) #s(hole binary32 (* u0 (+ (* 1/4 (pow alpha 2)) (* 1/3 (/ (pow alpha 2) u0))))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) #s(hole binary32 (* -1 (* (pow alpha 2) (- (* -2 (log (/ -1 u0))) (* -1 (log (/ -1 u0))))))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) #s(hole binary32 (+ (* -1 (* (pow alpha 2) (- (* -2 (log (/ -1 u0))) (* -1 (log (/ -1 u0)))))) (/ (pow alpha 2) u0))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) #s(hole binary32 (+ (* -1 (* (pow alpha 2) (- (* -2 (log (/ -1 u0))) (* -1 (log (/ -1 u0)))))) (* -1 (/ (+ (* -1 (pow alpha 2)) (* -1/2 (/ (pow alpha 2) u0))) u0)))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) #s(hole binary32 (+ (* -1 (* (pow alpha 2) (- (* -2 (log (/ -1 u0))) (* -1 (log (/ -1 u0)))))) (* -1 (/ (+ (* -1 (/ (+ (* 1/3 (/ (pow alpha 2) u0)) (* 1/2 (pow alpha 2))) u0)) (* -1 (pow alpha 2))) u0)))))
#s(approx (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0))) #s(hole binary32 (- (* -2 (log (/ -1 u0))) (* -1 (log (/ -1 u0))))))
#s(approx (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0))) #s(hole binary32 (- (* -2 (log (/ -1 u0))) (+ (* -1 (log (/ -1 u0))) (/ 1 u0)))))
#s(approx (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0))) #s(hole binary32 (- (+ (* -2 (log (/ -1 u0))) (* -1 (/ (+ 1 (* 1/2 (/ 1 u0))) u0))) (* -1 (log (/ -1 u0))))))
#s(approx (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0))) #s(hole binary32 (- (+ (* -2 (log (/ -1 u0))) (* -1 (/ (+ 1 (+ (/ 1/3 (pow u0 2)) (* 1/2 (/ 1 u0)))) u0))) (* -1 (log (/ -1 u0))))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (* (pow alpha 2) (log (/ -1 u0)))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (+ (* (pow alpha 2) (log (/ -1 u0))) (/ (pow alpha 2) u0))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (+ (* -1 (/ (+ (* -1 (pow alpha 2)) (* -1/2 (/ (pow alpha 2) u0))) u0)) (* (pow alpha 2) (log (/ -1 u0))))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (+ (* -1 (/ (+ (* -1 (/ (+ (* 1/3 (/ (pow alpha 2) u0)) (* 1/2 (pow alpha 2))) u0)) (* -1 (pow alpha 2))) u0)) (* (pow alpha 2) (log (/ -1 u0))))))
#s(approx (log (- 1 u0)) #s(hole binary32 (* -1 (log (/ -1 u0)))))
#s(approx (log (- 1 u0)) #s(hole binary32 (- (* -1 (log (/ -1 u0))) (/ 1 u0))))
#s(approx (log (- 1 u0)) #s(hole binary32 (+ (* -1 (log (/ -1 u0))) (* -1 (/ (+ 1 (* 1/2 (/ 1 u0))) u0)))))
#s(approx (log (- 1 u0)) #s(hole binary32 (+ (* -1 (log (/ -1 u0))) (* -1 (/ (+ 1 (+ (/ 1/3 (pow u0 2)) (* 1/2 (/ 1 u0)))) u0)))))
#s(approx (+ (* (* (* alpha alpha) (+ (* 1/3 u0) 1/2)) u0) (* alpha alpha)) #s(hole binary32 (* (pow u0 2) (+ (* -1 (/ (+ (* -1 (/ (pow alpha 2) u0)) (* -1/2 (pow alpha 2))) u0)) (* 1/3 (pow alpha 2))))))
#s(approx (* (+ (* (* (* alpha alpha) (+ (* 1/3 u0) 1/2)) u0) (* alpha alpha)) u0) #s(hole binary32 (* -1 (* (pow u0 3) (+ (* -1/2 (/ (pow alpha 2) u0)) (* -1/3 (pow alpha 2)))))))
#s(approx (* (+ (* (* (* alpha alpha) (+ (* 1/3 u0) 1/2)) u0) (* alpha alpha)) u0) #s(hole binary32 (* -1 (* (pow u0 3) (+ (* -1 (/ (+ (* 1/2 (pow alpha 2)) (/ (pow alpha 2) u0)) u0)) (* -1/3 (pow alpha 2)))))))
#s(approx (* (* alpha alpha) (+ (* 1/3 u0) 1/2)) #s(hole binary32 (* -1 (* u0 (+ (* -1/2 (/ (pow alpha 2) u0)) (* -1/3 (pow alpha 2)))))))
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) #s(hole binary32 (* -1 (* (pow u0 3) (+ (* -1/3 (/ (pow alpha 2) u0)) (* -1/4 (pow alpha 2)))))))
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) #s(hole binary32 (* -1 (* (pow u0 3) (+ (* -1 (/ (+ (* 1/3 (pow alpha 2)) (* 1/2 (/ (pow alpha 2) u0))) u0)) (* -1/4 (pow alpha 2)))))))
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) #s(hole binary32 (* -1 (* (pow u0 3) (+ (* -1 (/ (+ (* -1 (/ (+ (* -1 (/ (pow alpha 2) u0)) (* -1/2 (pow alpha 2))) u0)) (* 1/3 (pow alpha 2))) u0)) (* -1/4 (pow alpha 2)))))))
#s(approx (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) u0) #s(hole binary32 (* (pow u0 4) (+ (* -1 (/ (+ (* -1/2 (/ (pow alpha 2) u0)) (* -1/3 (pow alpha 2))) u0)) (* 1/4 (pow alpha 2))))))
#s(approx (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) u0) #s(hole binary32 (* (pow u0 4) (+ (* -1 (/ (+ (* -1 (/ (+ (* 1/2 (pow alpha 2)) (/ (pow alpha 2) u0)) u0)) (* -1/3 (pow alpha 2))) u0)) (* 1/4 (pow alpha 2))))))
#s(approx (log (+ 1 (* (neg u0) u0))) #s(hole binary32 (+ (log -1) (* -2 (log (/ -1 u0))))))
#s(approx (log (+ 1 (* (neg u0) u0))) #s(hole binary32 (- (+ (log -1) (* -2 (log (/ -1 u0)))) (/ 1 (pow u0 2)))))
#s(approx (log (+ 1 (* (neg u0) u0))) #s(hole binary32 (+ (log -1) (+ (* -2 (log (/ -1 u0))) (* -1 (/ (+ 1 (* 1/2 (/ 1 (pow u0 2)))) (pow u0 2)))))))
#s(approx (log (+ 1 (* (neg u0) u0))) #s(hole binary32 (- (+ (log -1) (+ (* -2 (log (/ -1 u0))) (* -1 (/ (+ 1/2 (* 1/3 (/ 1 (pow u0 2)))) (pow u0 4))))) (/ 1 (pow u0 2)))))
#s(approx (log (+ 1 u0)) #s(hole binary32 (+ (log -1) (* -1 (log (/ -1 u0))))))
#s(approx (log (+ 1 u0)) #s(hole binary32 (+ (log -1) (+ (* -1 (log (/ -1 u0))) (/ 1 u0)))))
#s(approx (log (+ 1 u0)) #s(hole binary32 (+ (log -1) (+ (* -1 (log (/ -1 u0))) (* -1 (/ (- (* 1/2 (/ 1 u0)) 1) u0))))))
#s(approx (log (+ 1 u0)) #s(hole binary32 (+ (log -1) (+ (* -1 (log (/ -1 u0))) (* -1 (/ (- (* -1 (/ (- (* 1/3 (/ 1 u0)) 1/2) u0)) 1) u0))))))
#s(approx (* (+ (* 1/2 u0) 1) (* alpha alpha)) #s(hole binary32 (* -1 (* u0 (+ (* -1 (/ (pow alpha 2) u0)) (* -1/2 (pow alpha 2)))))))
#s(approx (* (* alpha alpha) (+ (* 1/4 u0) 1/3)) #s(hole binary32 (* -1 (* u0 (+ (* -1/3 (/ (pow alpha 2) u0)) (* -1/4 (pow alpha 2)))))))
Outputs
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) #s(hole binary32 (* -1 (* (pow alpha 2) (- (log (+ 1 (* -1 (pow u0 2)))) (log (+ 1 u0)))))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (neg.f32 alpha) alpha) (-.f32 (log1p.f32 (*.f32 (neg.f32 u0) u0)) (log1p.f32 u0))))
#s(approx (* (neg alpha) alpha) #s(hole binary32 (* -1 (pow alpha 2))))
#s(approx (* (neg alpha) alpha) (*.f32 (neg.f32 alpha) alpha))
#s(approx (neg alpha) #s(hole binary32 (* -1 alpha)))
#s(approx (neg alpha) (neg.f32 alpha))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (* -1 (* (pow alpha 2) (log (- 1 u0))))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (*.f32 (neg.f32 alpha) alpha) (log1p.f32 (neg.f32 u0))))
#s(approx (* (* alpha alpha) u0) #s(hole binary32 (* (pow alpha 2) u0)))
#s(approx (* (* alpha alpha) u0) (*.f32 (*.f32 alpha alpha) u0))
#s(approx (* alpha alpha) #s(hole binary32 (pow alpha 2)))
#s(approx (* alpha alpha) (*.f32 alpha alpha))
#s(approx (+ (* (* (* alpha alpha) (+ (* 1/3 u0) 1/2)) u0) (* alpha alpha)) #s(hole binary32 (* (pow alpha 2) (+ 1 (* u0 (+ 1/2 (* 1/3 u0)))))))
#s(approx (+ (* (* (* alpha alpha) (+ (* 1/3 u0) 1/2)) u0) (* alpha alpha)) (*.f32 (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) alpha) alpha))
#s(approx (* (+ (* (* (* alpha alpha) (+ (* 1/3 u0) 1/2)) u0) (* alpha alpha)) u0) #s(hole binary32 (* (pow alpha 2) (* u0 (+ 1 (* u0 (+ 1/2 (* 1/3 u0))))))))
#s(approx (* (+ (* (* (* alpha alpha) (+ (* 1/3 u0) 1/2)) u0) (* alpha alpha)) u0) (*.f32 (*.f32 (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) u0) alpha) alpha))
#s(approx (* (* alpha alpha) (+ (* 1/3 u0) 1/2)) #s(hole binary32 (* (pow alpha 2) (+ 1/2 (* 1/3 u0)))))
#s(approx (* (* alpha alpha) (+ (* 1/3 u0) 1/2)) (*.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) alpha) alpha))
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) #s(hole binary32 (* (pow alpha 2) (+ 1 (+ (* 1/2 u0) (* (pow u0 2) (+ 1/3 (* 1/4 u0))))))))
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0) u0 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))) (*.f32 alpha alpha)))
#s(approx (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) u0) #s(hole binary32 (* (pow alpha 2) (* u0 (+ 1 (+ (* 1/2 u0) (* (pow u0 2) (+ 1/3 (* 1/4 u0)))))))))
#s(approx (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) u0) (*.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0) u0 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))) (*.f32 (*.f32 alpha alpha) u0)))
#s(approx (* (+ (* 1/2 u0) 1) (* alpha alpha)) #s(hole binary32 (* (pow alpha 2) (+ 1 (* 1/2 u0)))))
#s(approx (* (+ (* 1/2 u0) 1) (* alpha alpha)) (*.f32 (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) alpha) alpha))
#s(approx (* (* alpha alpha) (+ (* 1/4 u0) 1/3)) #s(hole binary32 (* (pow alpha 2) (+ 1/3 (* 1/4 u0)))))
#s(approx (* (* alpha alpha) (+ (* 1/4 u0) 1/3)) (*.f32 (*.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) alpha) alpha))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) #s(hole binary32 (* (pow alpha 2) u0)))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 alpha alpha) u0))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) #s(hole binary32 (* u0 (+ (* 1/2 (* (pow alpha 2) u0)) (pow alpha 2)))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) alpha) alpha) u0))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) #s(hole binary32 (* u0 (+ (* u0 (+ (* 1/3 (* (pow alpha 2) u0)) (* 1/2 (pow alpha 2)))) (pow alpha 2)))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) u0) alpha) alpha))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) #s(hole binary32 (* u0 (+ (* u0 (+ (* 1/2 (pow alpha 2)) (* u0 (+ (* 1/4 (* (pow alpha 2) u0)) (* 1/3 (pow alpha 2)))))) (pow alpha 2)))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0) u0 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))) (*.f32 (*.f32 alpha alpha) u0)))
#s(approx (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0))) #s(hole binary32 (* -1 u0)))
#s(approx (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0))) (neg.f32 u0))
#s(approx (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0))) #s(hole binary32 (* u0 (- (* -1/2 u0) 1))))
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#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) #s(hole binary32 (* -1 (* (pow u0 3) (+ (* -1 (/ (+ (* 1/3 (pow alpha 2)) (* 1/2 (/ (pow alpha 2) u0))) u0)) (* -1/4 (pow alpha 2)))))))
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 (fma.f32 #s(literal 1/4 binary32) (*.f32 alpha alpha) (/.f32 (fma.f32 (/.f32 (*.f32 alpha alpha) u0) #s(literal 1/2 binary32) (*.f32 #s(literal 1/3 binary32) (*.f32 alpha alpha))) u0)) (pow.f32 u0 #s(literal 3 binary32))))
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) #s(hole binary32 (* -1 (* (pow u0 3) (+ (* -1 (/ (+ (* -1 (/ (+ (* -1 (/ (pow alpha 2) u0)) (* -1/2 (pow alpha 2))) u0)) (* 1/3 (pow alpha 2))) u0)) (* -1/4 (pow alpha 2)))))))
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 (pow.f32 (neg.f32 u0) #s(literal 3 binary32)) (fma.f32 (*.f32 #s(literal -1/4 binary32) alpha) alpha (*.f32 (/.f32 (fma.f32 #s(literal -1/3 binary32) (*.f32 alpha alpha) (/.f32 (fma.f32 #s(literal -1/2 binary32) (*.f32 alpha alpha) (/.f32 (*.f32 (neg.f32 alpha) alpha) u0)) u0)) u0) #s(literal 1 binary32)))))
#s(approx (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) u0) #s(hole binary32 (* (pow u0 4) (+ (* -1 (/ (+ (* -1/2 (/ (pow alpha 2) u0)) (* -1/3 (pow alpha 2))) u0)) (* 1/4 (pow alpha 2))))))
#s(approx (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) u0) (*.f32 (pow.f32 u0 #s(literal 4 binary32)) (fma.f32 #s(literal 1/4 binary32) (*.f32 alpha alpha) (/.f32 (fma.f32 (/.f32 (*.f32 alpha alpha) u0) #s(literal 1/2 binary32) (*.f32 #s(literal 1/3 binary32) (*.f32 alpha alpha))) u0))))
#s(approx (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) u0) #s(hole binary32 (* (pow u0 4) (+ (* -1 (/ (+ (* -1 (/ (+ (* 1/2 (pow alpha 2)) (/ (pow alpha 2) u0)) u0)) (* -1/3 (pow alpha 2))) u0)) (* 1/4 (pow alpha 2))))))
#s(approx (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) u0) (*.f32 (fma.f32 (*.f32 #s(literal 1/4 binary32) alpha) alpha (/.f32 (fma.f32 #s(literal -1/3 binary32) (*.f32 alpha alpha) (/.f32 (fma.f32 #s(literal -1/2 binary32) (*.f32 alpha alpha) (/.f32 (*.f32 (neg.f32 alpha) alpha) u0)) u0)) (neg.f32 u0))) (pow.f32 u0 #s(literal 4 binary32))))
#s(approx (log (+ 1 (* (neg u0) u0))) #s(hole binary32 (+ (log -1) (* -2 (log (/ -1 u0))))))
#s(approx (log (+ 1 (* (neg u0) u0))) (fma.f32 (log.f32 (/.f32 #s(literal -1 binary32) u0)) #s(literal -2 binary32) (log.f32 #s(literal -1 binary32))))
#s(approx (log (+ 1 (* (neg u0) u0))) #s(hole binary32 (- (+ (log -1) (* -2 (log (/ -1 u0)))) (/ 1 (pow u0 2)))))
#s(approx (log (+ 1 (* (neg u0) u0))) (-.f32 (fma.f32 (log.f32 (/.f32 #s(literal -1 binary32) u0)) #s(literal -2 binary32) (log.f32 #s(literal -1 binary32))) (/.f32 (/.f32 #s(literal 1 binary32) u0) u0)))
#s(approx (log (+ 1 (* (neg u0) u0))) #s(hole binary32 (+ (log -1) (+ (* -2 (log (/ -1 u0))) (* -1 (/ (+ 1 (* 1/2 (/ 1 (pow u0 2)))) (pow u0 2)))))))
#s(approx (log (+ 1 (* (neg u0) u0))) (-.f32 (fma.f32 (log.f32 (/.f32 #s(literal -1 binary32) u0)) #s(literal -2 binary32) (log.f32 #s(literal -1 binary32))) (/.f32 (-.f32 #s(literal 1 binary32) (/.f32 #s(literal -1/2 binary32) (*.f32 u0 u0))) (*.f32 u0 u0))))
#s(approx (log (+ 1 (* (neg u0) u0))) #s(hole binary32 (- (+ (log -1) (+ (* -2 (log (/ -1 u0))) (* -1 (/ (+ 1/2 (* 1/3 (/ 1 (pow u0 2)))) (pow u0 4))))) (/ 1 (pow u0 2)))))
#s(approx (log (+ 1 (* (neg u0) u0))) (+.f32 (fma.f32 (log.f32 (/.f32 #s(literal -1 binary32) u0)) #s(literal -2 binary32) (/.f32 (+.f32 (/.f32 #s(literal -1/3 binary32) (*.f32 u0 u0)) #s(literal -1/2 binary32)) (pow.f32 u0 #s(literal 4 binary32)))) (-.f32 (log.f32 #s(literal -1 binary32)) (/.f32 (/.f32 #s(literal 1 binary32) u0) u0))))
#s(approx (log (+ 1 u0)) #s(hole binary32 (+ (log -1) (* -1 (log (/ -1 u0))))))
#s(approx (log (+ 1 u0)) (-.f32 (log.f32 #s(literal -1 binary32)) (log.f32 (/.f32 #s(literal -1 binary32) u0))))
#s(approx (log (+ 1 u0)) #s(hole binary32 (+ (log -1) (+ (* -1 (log (/ -1 u0))) (/ 1 u0)))))
#s(approx (log (+ 1 u0)) (+.f32 (-.f32 (log.f32 #s(literal -1 binary32)) (log.f32 (/.f32 #s(literal -1 binary32) u0))) (/.f32 #s(literal 1 binary32) u0)))
#s(approx (log (+ 1 u0)) #s(hole binary32 (+ (log -1) (+ (* -1 (log (/ -1 u0))) (* -1 (/ (- (* 1/2 (/ 1 u0)) 1) u0))))))
#s(approx (log (+ 1 u0)) (-.f32 (-.f32 (log.f32 #s(literal -1 binary32)) (log.f32 (/.f32 #s(literal -1 binary32) u0))) (/.f32 (-.f32 (/.f32 #s(literal 1/2 binary32) u0) #s(literal 1 binary32)) u0)))
#s(approx (log (+ 1 u0)) #s(hole binary32 (+ (log -1) (+ (* -1 (log (/ -1 u0))) (* -1 (/ (- (* -1 (/ (- (* 1/3 (/ 1 u0)) 1/2) u0)) 1) u0))))))
#s(approx (log (+ 1 u0)) (-.f32 (-.f32 (log.f32 #s(literal -1 binary32)) (log.f32 (/.f32 #s(literal -1 binary32) u0))) (/.f32 (fma.f32 (/.f32 (-.f32 (/.f32 #s(literal 1/3 binary32) u0) #s(literal 1/2 binary32)) u0) #s(literal -1 binary32) #s(literal -1 binary32)) u0)))
#s(approx (* (+ (* 1/2 u0) 1) (* alpha alpha)) #s(hole binary32 (* -1 (* u0 (+ (* -1 (/ (pow alpha 2) u0)) (* -1/2 (pow alpha 2)))))))
#s(approx (* (+ (* 1/2 u0) 1) (* alpha alpha)) (*.f32 (fma.f32 #s(literal 1/2 binary32) (*.f32 alpha alpha) (/.f32 (*.f32 alpha alpha) u0)) u0))
#s(approx (* (* alpha alpha) (+ (* 1/4 u0) 1/3)) #s(hole binary32 (* -1 (* u0 (+ (* -1/3 (/ (pow alpha 2) u0)) (* -1/4 (pow alpha 2)))))))
#s(approx (* (* alpha alpha) (+ (* 1/4 u0) 1/3)) (*.f32 (fma.f32 (/.f32 (*.f32 alpha alpha) u0) #s(literal 1/3 binary32) (*.f32 #s(literal 1/4 binary32) (*.f32 alpha alpha))) u0))

rewrite118.0ms (1.4%)

Memory
21.9MiB live, 148.5MiB allocated; 32ms collecting garbage
Iterations

Useful iterations: 0 (0.0ms)

IterNodesCost
041244
073236
1269233
02106230
Stop Event
iter limit
iter limit
node limit
iter limit
Counts
22 → 337
Calls
Call 1
Inputs
(*.f32 (*.f32 (neg.f32 alpha) alpha) (-.f32 (log1p.f32 (*.f32 (neg.f32 u0) u0)) (log1p.f32 u0)))
(*.f32 (neg.f32 alpha) alpha)
(neg.f32 alpha)
(-.f32 (log1p.f32 (*.f32 (neg.f32 u0) u0)) (log1p.f32 u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (*.f32 alpha alpha) u0))
(*.f32 (*.f32 alpha alpha) u0)
(*.f32 alpha alpha)
(*.f32 (*.f32 (neg.f32 alpha) alpha) #s(approx (log (- 1 u0)) (*.f32 (fma.f32 #s(literal -1/2 binary32) u0 #s(literal -1 binary32)) u0)))
#s(approx (log (- 1 u0)) (*.f32 (fma.f32 #s(literal -1/2 binary32) u0 #s(literal -1 binary32)) u0))
(fma.f32 (*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32))) u0 (*.f32 alpha alpha))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 (*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32))) u0 (*.f32 alpha alpha)) u0))
(*.f32 (fma.f32 (*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32))) u0 (*.f32 alpha alpha)) u0)
(*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)))
(fma.f32 (*.f32 u0 u0) (*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32))) (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) (*.f32 alpha alpha)))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 (*.f32 u0 u0) (*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32))) (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) (*.f32 alpha alpha))) u0))
(*.f32 (fma.f32 (*.f32 u0 u0) (*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32))) (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) (*.f32 alpha alpha))) u0)
(*.f32 u0 u0)
(log1p.f32 (*.f32 (neg.f32 u0) u0))
(log1p.f32 u0)
(*.f32 (fma.f32 #s(literal -1/2 binary32) u0 #s(literal -1 binary32)) u0)
(*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) (*.f32 alpha alpha))
(*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)))
Outputs
(log.f32 (pow.f32 (pow.f32 (-.f32 #s(literal 1 binary32) u0) alpha) (neg.f32 alpha)))
(*.f32 (*.f32 (log.f32 (-.f32 #s(literal 1 binary32) u0)) (neg.f32 alpha)) alpha)
(*.f32 (log.f32 (pow.f32 (-.f32 #s(literal 1 binary32) u0) alpha)) (neg.f32 alpha))
(*.f32 (log.f32 (-.f32 #s(literal 1 binary32) u0)) (*.f32 (neg.f32 alpha) alpha))
(*.f32 (*.f32 (neg.f32 alpha) alpha) (log.f32 (-.f32 #s(literal 1 binary32) u0)))
(*.f32 (neg.f32 alpha) (log.f32 (pow.f32 (-.f32 #s(literal 1 binary32) u0) alpha)))
(*.f32 alpha (*.f32 (neg.f32 alpha) (log.f32 (-.f32 #s(literal 1 binary32) u0))))
(/.f32 (*.f32 (-.f32 (pow.f32 (log1p.f32 (*.f32 (neg.f32 u0) u0)) #s(literal 2 binary32)) (pow.f32 (log1p.f32 u0) #s(literal 2 binary32))) (*.f32 (neg.f32 alpha) alpha)) (+.f32 (log1p.f32 u0) (log1p.f32 (*.f32 (neg.f32 u0) u0))))
(/.f32 (*.f32 (-.f32 (pow.f32 (log1p.f32 (*.f32 (neg.f32 u0) u0)) #s(literal 3 binary32)) (pow.f32 (log1p.f32 u0) #s(literal 3 binary32))) (*.f32 (neg.f32 alpha) alpha)) (fma.f32 (log1p.f32 u0) (+.f32 (log1p.f32 u0) (log1p.f32 (*.f32 (neg.f32 u0) u0))) (pow.f32 (log1p.f32 (*.f32 (neg.f32 u0) u0)) #s(literal 2 binary32))))
(/.f32 (*.f32 (*.f32 (neg.f32 alpha) alpha) (-.f32 (pow.f32 (log1p.f32 (*.f32 (neg.f32 u0) u0)) #s(literal 2 binary32)) (pow.f32 (log1p.f32 u0) #s(literal 2 binary32)))) (+.f32 (log1p.f32 u0) (log1p.f32 (*.f32 (neg.f32 u0) u0))))
(/.f32 (*.f32 (*.f32 (neg.f32 alpha) alpha) (-.f32 (pow.f32 (log1p.f32 (*.f32 (neg.f32 u0) u0)) #s(literal 3 binary32)) (pow.f32 (log1p.f32 u0) #s(literal 3 binary32)))) (fma.f32 (log1p.f32 u0) (+.f32 (log1p.f32 u0) (log1p.f32 (*.f32 (neg.f32 u0) u0))) (pow.f32 (log1p.f32 (*.f32 (neg.f32 u0) u0)) #s(literal 2 binary32))))
(neg.f32 (*.f32 (log.f32 (-.f32 #s(literal 1 binary32) u0)) (*.f32 alpha alpha)))
(neg.f32 (*.f32 (*.f32 alpha alpha) (log.f32 (-.f32 #s(literal 1 binary32) u0))))
(neg.f32 (*.f32 alpha (log.f32 (pow.f32 (-.f32 #s(literal 1 binary32) u0) alpha))))
(*.f32 (neg.f32 (fabs.f32 alpha)) (fabs.f32 alpha))
(*.f32 (neg.f32 (neg.f32 alpha)) (neg.f32 alpha))
(*.f32 (fabs.f32 alpha) (neg.f32 (fabs.f32 alpha)))
(*.f32 (neg.f32 alpha) (neg.f32 (neg.f32 alpha)))
(*.f32 (neg.f32 alpha) alpha)
(*.f32 alpha (neg.f32 alpha))
(neg.f32 (*.f32 alpha alpha))
(neg.f32 alpha)
(log.f32 (-.f32 #s(literal 1 binary32) u0))
(/.f32 (neg.f32 (-.f32 (pow.f32 (log1p.f32 (*.f32 (neg.f32 u0) u0)) #s(literal 2 binary32)) (pow.f32 (log1p.f32 u0) #s(literal 2 binary32)))) (neg.f32 (+.f32 (log1p.f32 u0) (log1p.f32 (*.f32 (neg.f32 u0) u0)))))
(/.f32 (neg.f32 (-.f32 (pow.f32 (log1p.f32 (*.f32 (neg.f32 u0) u0)) #s(literal 3 binary32)) (pow.f32 (log1p.f32 u0) #s(literal 3 binary32)))) (neg.f32 (fma.f32 (log1p.f32 u0) (+.f32 (log1p.f32 u0) (log1p.f32 (*.f32 (neg.f32 u0) u0))) (pow.f32 (log1p.f32 (*.f32 (neg.f32 u0) u0)) #s(literal 2 binary32)))))
(/.f32 (-.f32 (pow.f32 (log1p.f32 (*.f32 (neg.f32 u0) u0)) #s(literal 2 binary32)) (pow.f32 (log1p.f32 u0) #s(literal 2 binary32))) (+.f32 (log1p.f32 u0) (log1p.f32 (*.f32 (neg.f32 u0) u0))))
(/.f32 (-.f32 (pow.f32 (log1p.f32 (*.f32 (neg.f32 u0) u0)) #s(literal 3 binary32)) (pow.f32 (log1p.f32 u0) #s(literal 3 binary32))) (fma.f32 (log1p.f32 u0) (+.f32 (log1p.f32 u0) (log1p.f32 (*.f32 (neg.f32 u0) u0))) (pow.f32 (log1p.f32 (*.f32 (neg.f32 u0) u0)) #s(literal 2 binary32))))
(-.f32 (/.f32 (pow.f32 (log1p.f32 (*.f32 (neg.f32 u0) u0)) #s(literal 2 binary32)) (+.f32 (log1p.f32 u0) (log1p.f32 (*.f32 (neg.f32 u0) u0)))) (/.f32 (pow.f32 (log1p.f32 u0) #s(literal 2 binary32)) (+.f32 (log1p.f32 u0) (log1p.f32 (*.f32 (neg.f32 u0) u0)))))
(-.f32 (/.f32 (pow.f32 (log1p.f32 (*.f32 (neg.f32 u0) u0)) #s(literal 3 binary32)) (fma.f32 (log1p.f32 u0) (+.f32 (log1p.f32 u0) (log1p.f32 (*.f32 (neg.f32 u0) u0))) (pow.f32 (log1p.f32 (*.f32 (neg.f32 u0) u0)) #s(literal 2 binary32)))) (/.f32 (pow.f32 (log1p.f32 u0) #s(literal 3 binary32)) (fma.f32 (log1p.f32 u0) (+.f32 (log1p.f32 u0) (log1p.f32 (*.f32 (neg.f32 u0) u0))) (pow.f32 (log1p.f32 (*.f32 (neg.f32 u0) u0)) #s(literal 2 binary32)))))
(-.f32 (log.f32 (-.f32 #s(literal 1 binary32) (pow.f32 u0 #s(literal 3 binary32)))) (log1p.f32 (fma.f32 u0 u0 u0)))
(-.f32 (log1p.f32 (*.f32 (neg.f32 u0) u0)) (log1p.f32 u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (*.f32 alpha alpha) u0))
(*.f32 (*.f32 u0 (fabs.f32 alpha)) (fabs.f32 alpha))
(*.f32 (*.f32 u0 (neg.f32 alpha)) (neg.f32 alpha))
(*.f32 (*.f32 u0 alpha) alpha)
(*.f32 (fabs.f32 alpha) (*.f32 (fabs.f32 alpha) u0))
(*.f32 (*.f32 alpha alpha) u0)
(*.f32 u0 (*.f32 alpha alpha))
(*.f32 (neg.f32 alpha) (*.f32 (neg.f32 alpha) u0))
(*.f32 alpha (*.f32 u0 alpha))
(*.f32 (pow.f32 alpha #s(literal 1 binary32)) (pow.f32 alpha #s(literal 1 binary32)))
(*.f32 (neg.f32 (fabs.f32 alpha)) (neg.f32 (fabs.f32 alpha)))
(*.f32 (neg.f32 (neg.f32 alpha)) (neg.f32 (neg.f32 alpha)))
(*.f32 (fabs.f32 (fabs.f32 alpha)) (fabs.f32 (fabs.f32 alpha)))
(*.f32 (fabs.f32 alpha) (fabs.f32 alpha))
(*.f32 (neg.f32 alpha) (neg.f32 alpha))
(*.f32 alpha alpha)
(pow.f32 (fabs.f32 alpha) #s(literal 2 binary32))
(pow.f32 (neg.f32 alpha) #s(literal 2 binary32))
(pow.f32 alpha #s(literal 2 binary32))
(fabs.f32 (*.f32 alpha alpha))
(exp.f32 (*.f32 (log.f32 alpha) #s(literal 2 binary32)))
(neg.f32 (*.f32 (neg.f32 alpha) alpha))
(*.f32 (*.f32 #s(approx (log (- 1 u0)) (*.f32 (fma.f32 #s(literal -1/2 binary32) u0 #s(literal -1 binary32)) u0)) (neg.f32 alpha)) alpha)
(*.f32 (*.f32 #s(approx (log (- 1 u0)) (*.f32 (fma.f32 #s(literal -1/2 binary32) u0 #s(literal -1 binary32)) u0)) alpha) (neg.f32 alpha))
(*.f32 #s(approx (log (- 1 u0)) (*.f32 (fma.f32 #s(literal -1/2 binary32) u0 #s(literal -1 binary32)) u0)) (*.f32 (neg.f32 alpha) alpha))
(*.f32 (*.f32 (neg.f32 alpha) alpha) #s(approx (log (- 1 u0)) (*.f32 (fma.f32 #s(literal -1/2 binary32) u0 #s(literal -1 binary32)) u0)))
(*.f32 (neg.f32 alpha) (*.f32 #s(approx (log (- 1 u0)) (*.f32 (fma.f32 #s(literal -1/2 binary32) u0 #s(literal -1 binary32)) u0)) alpha))
(*.f32 alpha (*.f32 (neg.f32 alpha) #s(approx (log (- 1 u0)) (*.f32 (fma.f32 #s(literal -1/2 binary32) u0 #s(literal -1 binary32)) u0))))
(neg.f32 (*.f32 #s(approx (log (- 1 u0)) (*.f32 (fma.f32 #s(literal -1/2 binary32) u0 #s(literal -1 binary32)) u0)) (*.f32 alpha alpha)))
(neg.f32 (*.f32 (*.f32 alpha alpha) #s(approx (log (- 1 u0)) (*.f32 (fma.f32 #s(literal -1/2 binary32) u0 #s(literal -1 binary32)) u0))))
(neg.f32 (*.f32 alpha (*.f32 #s(approx (log (- 1 u0)) (*.f32 (fma.f32 #s(literal -1/2 binary32) u0 #s(literal -1 binary32)) u0)) alpha)))
#s(approx (log (- 1 u0)) (*.f32 (fma.f32 #s(literal -1/2 binary32) u0 #s(literal -1 binary32)) u0))
(/.f32 (-.f32 (pow.f32 alpha #s(literal 4 binary32)) (pow.f32 (*.f32 (*.f32 u0 alpha) (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) alpha)) #s(literal 2 binary32))) (-.f32 (*.f32 alpha alpha) (*.f32 (*.f32 u0 alpha) (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) alpha))))
(/.f32 (-.f32 (*.f32 (pow.f32 alpha #s(literal 6 binary32)) (pow.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) #s(literal 3 binary32))) (pow.f32 (*.f32 (neg.f32 alpha) alpha) #s(literal 3 binary32))) (+.f32 (pow.f32 (*.f32 (*.f32 u0 alpha) (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) alpha)) #s(literal 2 binary32)) (+.f32 (pow.f32 alpha #s(literal 4 binary32)) (*.f32 (*.f32 (*.f32 u0 alpha) (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) alpha)) (*.f32 (neg.f32 alpha) alpha)))))
(/.f32 (neg.f32 (-.f32 (pow.f32 (*.f32 (*.f32 u0 alpha) (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) alpha)) #s(literal 2 binary32)) (pow.f32 alpha #s(literal 4 binary32)))) (neg.f32 (-.f32 (*.f32 (*.f32 u0 alpha) (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) alpha)) (*.f32 alpha alpha))))
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(fma.f32 (*.f32 alpha alpha) (*.f32 #s(literal 1/4 binary32) u0) (*.f32 #s(literal 1/3 binary32) (*.f32 alpha alpha)))
(fma.f32 (*.f32 alpha alpha) #s(literal 1/3 binary32) (*.f32 #s(literal 1/4 binary32) (*.f32 (*.f32 alpha alpha) u0)))
(fma.f32 u0 (*.f32 #s(literal 1/4 binary32) (*.f32 alpha alpha)) (*.f32 #s(literal 1/3 binary32) (*.f32 alpha alpha)))
(fma.f32 (neg.f32 alpha) (*.f32 (neg.f32 alpha) #s(literal 1/3 binary32)) (*.f32 #s(literal 1/4 binary32) (*.f32 (*.f32 alpha alpha) u0)))
(fma.f32 (neg.f32 alpha) (*.f32 (neg.f32 alpha) (*.f32 #s(literal 1/4 binary32) u0)) (*.f32 #s(literal 1/3 binary32) (*.f32 alpha alpha)))
(fma.f32 alpha (*.f32 alpha (*.f32 #s(literal 1/4 binary32) u0)) (*.f32 #s(literal 1/3 binary32) (*.f32 alpha alpha)))
(fma.f32 alpha (*.f32 alpha #s(literal 1/3 binary32)) (*.f32 #s(literal 1/4 binary32) (*.f32 (*.f32 alpha alpha) u0)))
(+.f32 (*.f32 #s(literal 1/3 binary32) (*.f32 alpha alpha)) (*.f32 #s(literal 1/4 binary32) (*.f32 (*.f32 alpha alpha) u0)))
(+.f32 (*.f32 #s(literal 1/4 binary32) (*.f32 (*.f32 alpha alpha) u0)) (*.f32 #s(literal 1/3 binary32) (*.f32 alpha alpha)))

eval888.0ms (10.6%)

Memory
-157.7MiB live, 263.3MiB allocated; 1.2s collecting garbage
Compiler

Compiled 16 536 to 2 008 computations (87.9% saved)

prune81.0ms (1%)

Memory
-3.4MiB live, 90.0MiB allocated; 51ms collecting garbage
Pruning

33 alts after pruning (28 fresh and 5 done)

PrunedKeptTotal
New50225527
Fresh235
Picked055
Done101
Total50533538
Accuracy
100.0%
Counts
538 → 33
Alt Table
Click to see full alt table
StatusAccuracyProgram
98.3%
(/.f32 (*.f32 (-.f32 (pow.f32 (log1p.f32 (*.f32 (neg.f32 u0) u0)) #s(literal 2 binary32)) (pow.f32 (log1p.f32 u0) #s(literal 2 binary32))) (*.f32 (neg.f32 alpha) alpha)) (+.f32 (log1p.f32 u0) (log1p.f32 (*.f32 (neg.f32 u0) u0))))
98.5%
(*.f32 (*.f32 (neg.f32 alpha) alpha) (/.f32 (-.f32 (pow.f32 (log1p.f32 (*.f32 (neg.f32 u0) u0)) #s(literal 3 binary32)) (pow.f32 (log1p.f32 u0) #s(literal 3 binary32))) (fma.f32 (log1p.f32 u0) (+.f32 (log1p.f32 u0) (log1p.f32 (*.f32 (neg.f32 u0) u0))) (pow.f32 (log1p.f32 (*.f32 (neg.f32 u0) u0)) #s(literal 2 binary32)))))
97.9%
(*.f32 (*.f32 (neg.f32 alpha) alpha) (-.f32 (-.f32 (log.f32 (-.f32 #s(literal 1 binary32) (pow.f32 (*.f32 (neg.f32 u0) u0) #s(literal 2 binary32)))) (log1p.f32 (*.f32 u0 u0))) (log1p.f32 u0)))
98.8%
(*.f32 (*.f32 (neg.f32 alpha) alpha) (-.f32 (log1p.f32 (*.f32 (neg.f32 u0) u0)) (log1p.f32 u0)))
89.4%
(*.f32 (*.f32 (neg.f32 alpha) alpha) (-.f32 (log.f32 (-.f32 #s(literal 1 binary32) (*.f32 u0 u0))) (log1p.f32 u0)))
94.2%
(*.f32 (*.f32 (neg.f32 alpha) alpha) (-.f32 #s(approx (log (+ 1 (* (neg u0) u0))) (*.f32 (*.f32 (fma.f32 (fma.f32 (*.f32 #s(literal -1/3 binary32) u0) u0 #s(literal -1/2 binary32)) (*.f32 u0 u0) #s(literal -1 binary32)) u0) u0)) (log1p.f32 u0)))
91.5%
(*.f32 (*.f32 (neg.f32 alpha) alpha) #s(approx (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0))) (*.f32 (fma.f32 (fma.f32 (fma.f32 #s(literal -1/4 binary32) u0 #s(literal -1/3 binary32)) u0 #s(literal -1/2 binary32)) u0 #s(literal -1 binary32)) u0)))
89.4%
(*.f32 (*.f32 (neg.f32 alpha) alpha) #s(approx (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0))) (*.f32 (fma.f32 (fma.f32 #s(literal -1/3 binary32) u0 #s(literal -1/2 binary32)) u0 #s(literal -1 binary32)) u0)))
85.2%
(*.f32 (*.f32 (neg.f32 alpha) alpha) #s(approx (log (- 1 u0)) (fma.f32 (*.f32 #s(literal -1/2 binary32) u0) u0 (*.f32 #s(literal -1 binary32) u0))))
85.0%
(*.f32 (*.f32 (neg.f32 alpha) alpha) #s(approx (log (- 1 u0)) (*.f32 (fma.f32 #s(literal -1/2 binary32) u0 #s(literal -1 binary32)) u0)))
57.7%
(*.f32 (*.f32 (log.f32 (-.f32 #s(literal 1 binary32) u0)) (neg.f32 alpha)) alpha)
85.1%
(*.f32 (*.f32 #s(approx (log (- 1 u0)) (*.f32 (fma.f32 #s(literal -1/2 binary32) u0 #s(literal -1 binary32)) u0)) (neg.f32 alpha)) alpha)
39.6%
(*.f32 (neg.f32 alpha) (log.f32 (pow.f32 (-.f32 #s(literal 1 binary32) u0) alpha)))
91.4%
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0) u0 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))) (*.f32 (*.f32 alpha alpha) u0)))
89.6%
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) u0) alpha) alpha))
85.1%
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) alpha) alpha) u0))
90.0%
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (fma.f32 (*.f32 alpha alpha) u0 (*.f32 (*.f32 (*.f32 u0 alpha) (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) alpha)) u0)))
91.5%
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 (*.f32 (*.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) alpha) alpha) (*.f32 u0 u0) (*.f32 (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) alpha) alpha)) u0))
89.8%
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 (*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32))) u0 (*.f32 alpha alpha)) u0))
91.8%
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 (*.f32 u0 u0) (*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32))) (fma.f32 (*.f32 alpha alpha) (*.f32 #s(literal 1/2 binary32) u0) (*.f32 (*.f32 alpha alpha) #s(literal 1 binary32)))) u0))
91.6%
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 (*.f32 u0 u0) (*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32))) (/.f32 (*.f32 (fma.f32 (*.f32 #s(literal 1/4 binary32) u0) u0 #s(literal -1 binary32)) (*.f32 alpha alpha)) (fma.f32 #s(literal 1/2 binary32) u0 #s(literal -1 binary32)))) u0))
91.5%
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 (*.f32 u0 u0) (*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32))) (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) (*.f32 alpha alpha))) u0))
91.5%
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 (*.f32 u0 u0) (*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32))) #s(approx (* (+ (* 1/2 u0) 1) (* alpha alpha)) (*.f32 (fma.f32 #s(literal 1/2 binary32) (*.f32 alpha alpha) (/.f32 (*.f32 alpha alpha) u0)) u0))) u0))
85.2%
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 #s(approx (* (* alpha alpha) (+ (* 1/3 u0) 1/2)) (*.f32 #s(literal 1/2 binary32) (*.f32 alpha alpha))) u0 (*.f32 alpha alpha)) u0))
89.9%
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 alpha alpha (*.f32 (*.f32 u0 alpha) (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) alpha))) u0))
85.1%
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) (*.f32 (*.f32 alpha alpha) u0)))
98.9%
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (*.f32 (neg.f32 alpha) alpha) (log1p.f32 (neg.f32 u0))))
72.6%
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (*.f32 u0 alpha) alpha))
72.6%
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (*.f32 alpha alpha) u0))
89.6%
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* (* alpha alpha) (+ (* 1/3 u0) 1/2)) u0) (* alpha alpha)) (*.f32 (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) alpha) alpha)) u0))
91.4%
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0) u0 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))) (*.f32 alpha alpha))) u0))
89.3%
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(approx (* (+ (* (* (* alpha alpha) (+ (* 1/3 u0) 1/2)) u0) (* alpha alpha)) u0) (*.f32 (fma.f32 (*.f32 #s(literal 1/3 binary32) alpha) alpha (/.f32 (fma.f32 #s(literal 1/2 binary32) (*.f32 alpha alpha) (/.f32 (*.f32 alpha alpha) u0)) u0)) (pow.f32 u0 #s(literal 3 binary32)))))
91.0%
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(approx (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) u0) (*.f32 (pow.f32 u0 #s(literal 4 binary32)) (fma.f32 (*.f32 #s(literal 1/4 binary32) alpha) alpha (/.f32 (fma.f32 (*.f32 #s(literal 1/3 binary32) alpha) alpha (/.f32 (fma.f32 #s(literal 1/2 binary32) (*.f32 alpha alpha) (/.f32 (*.f32 alpha alpha) u0)) u0)) u0)))))
Compiler

Compiled 1 755 to 1 181 computations (32.7% saved)

simplify164.0ms (2%)

Memory
-21.8MiB live, 210.5MiB allocated; 25ms collecting garbage
Localize:

Found 19 expressions of interest:

NewMetricScoreProgram
cost-diff0
(-.f32 #s(literal 1 binary32) u0)
cost-diff0
(*.f32 (log.f32 (-.f32 #s(literal 1 binary32) u0)) (neg.f32 alpha))
cost-diff0
(*.f32 (*.f32 (log.f32 (-.f32 #s(literal 1 binary32) u0)) (neg.f32 alpha)) alpha)
cost-diff1
(log.f32 (-.f32 #s(literal 1 binary32) u0))
cost-diff0
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0) u0 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))) (*.f32 alpha alpha)))
cost-diff0
(*.f32 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0) u0 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))) (*.f32 alpha alpha))) u0)
cost-diff0
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0) u0 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))) (*.f32 alpha alpha))) u0))
cost-diff2
(fma.f32 (*.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0) u0 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)))
cost-diff0
(*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) u0)
cost-diff0
(*.f32 (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) u0) alpha)
cost-diff0
(*.f32 (*.f32 (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) u0) alpha) alpha)
cost-diff0
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) u0) alpha) alpha))
cost-diff0
(*.f32 u0 alpha)
cost-diff0
(*.f32 (*.f32 u0 alpha) alpha)
cost-diff0
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (*.f32 u0 alpha) alpha))
cost-diff0
(neg.f32 alpha)
cost-diff0
(*.f32 (neg.f32 alpha) alpha)
cost-diff0
(*.f32 (*.f32 (neg.f32 alpha) alpha) (log1p.f32 (neg.f32 u0)))
cost-diff0
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (*.f32 (neg.f32 alpha) alpha) (log1p.f32 (neg.f32 u0))))
Iterations

Useful iterations: 0 (0.0ms)

IterNodesCost
057351
084348
1163333
2535333
32511329
47717329
08010310
Stop Event
iter limit
node limit
iter limit
Calls
Call 1
Inputs
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (*.f32 (neg.f32 alpha) alpha) (log1p.f32 (neg.f32 u0))))
(*.f32 (*.f32 (neg.f32 alpha) alpha) (log1p.f32 (neg.f32 u0)))
(*.f32 (neg.f32 alpha) alpha)
(neg.f32 alpha)
alpha
(log1p.f32 (neg.f32 u0))
(neg.f32 u0)
u0
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (*.f32 u0 alpha) alpha))
(*.f32 (*.f32 u0 alpha) alpha)
(*.f32 u0 alpha)
u0
alpha
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) u0) alpha) alpha))
(*.f32 (*.f32 (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) u0) alpha) alpha)
(*.f32 (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) u0) alpha)
(*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) u0)
(fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32))
(fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32))
#s(literal 1/3 binary32)
u0
#s(literal 1/2 binary32)
#s(literal 1 binary32)
alpha
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0) u0 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))) (*.f32 alpha alpha))) u0))
(*.f32 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0) u0 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))) (*.f32 alpha alpha))) u0)
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0) u0 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))) (*.f32 alpha alpha)))
(*.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0) u0 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))) (*.f32 alpha alpha))
(fma.f32 (*.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0) u0 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)))
(*.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0)
(fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32))
#s(literal 1/4 binary32)
u0
#s(literal 1/3 binary32)
(fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))
#s(literal 1/2 binary32)
#s(literal 1 binary32)
(*.f32 alpha alpha)
alpha
(*.f32 (*.f32 (log.f32 (-.f32 #s(literal 1 binary32) u0)) (neg.f32 alpha)) alpha)
(*.f32 (log.f32 (-.f32 #s(literal 1 binary32) u0)) (neg.f32 alpha))
(log.f32 (-.f32 #s(literal 1 binary32) u0))
(-.f32 #s(literal 1 binary32) u0)
#s(literal 1 binary32)
u0
(neg.f32 alpha)
alpha
Outputs
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (*.f32 (neg.f32 alpha) alpha) (log1p.f32 (neg.f32 u0))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (*.f32 (log1p.f32 (neg.f32 u0)) (neg.f32 alpha)) alpha))
(*.f32 (*.f32 (neg.f32 alpha) alpha) (log1p.f32 (neg.f32 u0)))
(*.f32 (*.f32 (log1p.f32 (neg.f32 u0)) (neg.f32 alpha)) alpha)
(*.f32 (neg.f32 alpha) alpha)
(neg.f32 alpha)
alpha
(log1p.f32 (neg.f32 u0))
(neg.f32 u0)
u0
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (*.f32 u0 alpha) alpha))
(*.f32 (*.f32 u0 alpha) alpha)
(*.f32 u0 alpha)
u0
alpha
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) u0) alpha) alpha))
(*.f32 (*.f32 (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) u0) alpha) alpha)
(*.f32 (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) u0) alpha)
(*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) u0)
(fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32))
(fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32))
#s(literal 1/3 binary32)
u0
#s(literal 1/2 binary32)
#s(literal 1 binary32)
alpha
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0) u0 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))) (*.f32 alpha alpha))) u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 (*.f32 (fma.f32 (fma.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) alpha) alpha)) u0))
(*.f32 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0) u0 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))) (*.f32 alpha alpha))) u0)
(*.f32 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 (*.f32 (fma.f32 (fma.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) alpha) alpha)) u0)
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0) u0 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))) (*.f32 alpha alpha)))
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 (*.f32 (fma.f32 (fma.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) alpha) alpha))
(*.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0) u0 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))) (*.f32 alpha alpha))
(*.f32 (*.f32 (fma.f32 (fma.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) alpha) alpha)
(fma.f32 (*.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0) u0 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)))
(fma.f32 (fma.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32))
(*.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0)
(fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32))
#s(literal 1/4 binary32)
u0
#s(literal 1/3 binary32)
(fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))
#s(literal 1/2 binary32)
#s(literal 1 binary32)
(*.f32 alpha alpha)
alpha
(*.f32 (*.f32 (log.f32 (-.f32 #s(literal 1 binary32) u0)) (neg.f32 alpha)) alpha)
(*.f32 (*.f32 (log1p.f32 (neg.f32 u0)) (neg.f32 alpha)) alpha)
(*.f32 (log.f32 (-.f32 #s(literal 1 binary32) u0)) (neg.f32 alpha))
(*.f32 (log1p.f32 (neg.f32 u0)) (neg.f32 alpha))
(log.f32 (-.f32 #s(literal 1 binary32) u0))
(log1p.f32 (neg.f32 u0))
(-.f32 #s(literal 1 binary32) u0)
#s(literal 1 binary32)
u0
(neg.f32 alpha)
alpha

localize138.0ms (1.6%)

Memory
12.4MiB live, 201.3MiB allocated; 41ms collecting garbage
Localize:

Found 19 expressions of interest:

NewMetricScoreProgram
accuracy0.0
(neg.f32 alpha)
accuracy0.1953125
(*.f32 (log.f32 (-.f32 #s(literal 1 binary32) u0)) (neg.f32 alpha))
accuracy0.22265625
(*.f32 (*.f32 (log.f32 (-.f32 #s(literal 1 binary32) u0)) (neg.f32 alpha)) alpha)
accuracy13.576891046861977
(log.f32 (-.f32 #s(literal 1 binary32) u0))
accuracy0.20703125
(*.f32 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0) u0 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))) (*.f32 alpha alpha))) u0)
accuracy0.26953125
(*.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0)
accuracy0.3828125
(*.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0) u0 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))) (*.f32 alpha alpha))
accuracy2.131841921494873
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0) u0 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))) (*.f32 alpha alpha))) u0))
accuracy0.19921875
(*.f32 (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) u0) alpha)
accuracy0.23046875
(*.f32 (*.f32 (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) u0) alpha) alpha)
accuracy0.29296875
(*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) u0)
accuracy2.7718788821099096
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) u0) alpha) alpha))
accuracy0.0
(*.f32 u0 alpha)
accuracy0.26171875
(*.f32 (*.f32 u0 alpha) alpha)
accuracy8.292493695370466
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (*.f32 u0 alpha) alpha))
accuracy0.0
(neg.f32 alpha)
accuracy0.0
(log1p.f32 (neg.f32 u0))
accuracy0.0
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (*.f32 (neg.f32 alpha) alpha) (log1p.f32 (neg.f32 u0))))
accuracy0.33984375
(*.f32 (*.f32 (neg.f32 alpha) alpha) (log1p.f32 (neg.f32 u0)))
Samples
84.0ms251×0valid
7.0ms5exit
Compiler

Compiled 275 to 47 computations (82.9% saved)

Precisions
Click to see histograms. Total time spent on operations: 74.0ms
ival-mult: 36.0ms (48.8% of total)
ival-log1p: 11.0ms (14.9% of total)
ival-add: 7.0ms (9.5% of total)
ival-neg: 6.0ms (8.1% of total)
const: 4.0ms (5.4% of total)
ival-log: 4.0ms (5.4% of total)
adjust: 2.0ms (2.7% of total)
ival-sub: 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)

series147.0ms (1.7%)

Memory
32.0MiB live, 258.4MiB allocated; 60ms collecting garbage
Counts
22 → 172
Calls
Call 1
Inputs
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (*.f32 (neg.f32 alpha) alpha) (log1p.f32 (neg.f32 u0))))
(*.f32 (*.f32 (neg.f32 alpha) alpha) (log1p.f32 (neg.f32 u0)))
(*.f32 (neg.f32 alpha) alpha)
(neg.f32 alpha)
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (*.f32 u0 alpha) alpha))
(*.f32 (*.f32 u0 alpha) alpha)
(*.f32 u0 alpha)
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) u0) alpha) alpha))
(*.f32 (*.f32 (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) u0) alpha) alpha)
(*.f32 (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) u0) alpha)
(*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) u0)
(fma.f32 (*.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0) u0 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0) u0 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))) (*.f32 alpha alpha))) u0))
(*.f32 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0) u0 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))) (*.f32 alpha alpha))) u0)
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0) u0 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))) (*.f32 alpha alpha)))
(log.f32 (-.f32 #s(literal 1 binary32) u0))
(*.f32 (*.f32 (log.f32 (-.f32 #s(literal 1 binary32) u0)) (neg.f32 alpha)) alpha)
(*.f32 (log.f32 (-.f32 #s(literal 1 binary32) u0)) (neg.f32 alpha))
(-.f32 #s(literal 1 binary32) u0)
(log1p.f32 (neg.f32 u0))
(*.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0) u0 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))) (*.f32 alpha alpha))
(*.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0)
Outputs
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (* -1 (* (pow alpha 2) (log (- 1 u0))))))
#s(approx (* (* (neg alpha) alpha) (log (+ 1 (neg u0)))) #s(hole binary32 (* -1 (* (pow alpha 2) (log (- 1 u0))))))
#s(approx (* (neg alpha) alpha) #s(hole binary32 (* -1 (pow alpha 2))))
#s(approx (neg alpha) #s(hole binary32 (* -1 alpha)))
#s(approx (* (* u0 alpha) alpha) #s(hole binary32 (* (pow alpha 2) u0)))
#s(approx (* u0 alpha) #s(hole binary32 (* alpha u0)))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) #s(hole binary32 (* -1 (* (pow alpha 2) (- (log (+ 1 (* -1 (pow u0 2)))) (log (+ 1 u0)))))))
#s(approx (* (* (* (+ (* (+ (* 1/3 u0) 1/2) u0) 1) u0) alpha) alpha) #s(hole binary32 (* (pow alpha 2) (* u0 (+ 1 (* u0 (+ 1/2 (* 1/3 u0))))))))
#s(approx (* (* (+ (* (+ (* 1/3 u0) 1/2) u0) 1) u0) alpha) #s(hole binary32 (* alpha (* u0 (+ 1 (* u0 (+ 1/2 (* 1/3 u0))))))))
#s(approx (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) u0) #s(hole binary32 (* (pow alpha 2) (* u0 (+ 1 (+ (* 1/2 u0) (* (pow u0 2) (+ 1/3 (* 1/4 u0)))))))))
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) #s(hole binary32 (* (pow alpha 2) (+ 1 (+ (* 1/2 u0) (* (pow u0 2) (+ 1/3 (* 1/4 u0))))))))
#s(approx (* (* (log (- 1 u0)) (neg alpha)) alpha) #s(hole binary32 (* -1 (* (pow alpha 2) (log (- 1 u0))))))
#s(approx (* (log (- 1 u0)) (neg alpha)) #s(hole binary32 (* -1 (* alpha (log (- 1 u0))))))
#s(approx (* (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (* alpha alpha)) #s(hole binary32 (* (pow alpha 2) (+ 1 (+ (* 1/2 u0) (* (pow u0 2) (+ 1/3 (* 1/4 u0))))))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (* (pow alpha 2) u0)))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (* u0 (+ (* 1/2 (* (pow alpha 2) u0)) (pow alpha 2)))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (* u0 (+ (* u0 (+ (* 1/3 (* (pow alpha 2) u0)) (* 1/2 (pow alpha 2)))) (pow alpha 2)))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (* u0 (+ (* u0 (+ (* 1/2 (pow alpha 2)) (* u0 (+ (* 1/4 (* (pow alpha 2) u0)) (* 1/3 (pow alpha 2)))))) (pow alpha 2)))))
#s(approx (* (* (neg alpha) alpha) (log (+ 1 (neg u0)))) #s(hole binary32 (* (pow alpha 2) u0)))
#s(approx (* (* (neg alpha) alpha) (log (+ 1 (neg u0)))) #s(hole binary32 (* u0 (+ (* 1/2 (* (pow alpha 2) u0)) (pow alpha 2)))))
#s(approx (* (* (neg alpha) alpha) (log (+ 1 (neg u0)))) #s(hole binary32 (* u0 (+ (* u0 (+ (* 1/3 (* (pow alpha 2) u0)) (* 1/2 (pow alpha 2)))) (pow alpha 2)))))
#s(approx (* (* (neg alpha) alpha) (log (+ 1 (neg u0)))) #s(hole binary32 (* u0 (+ (* u0 (+ (* 1/2 (pow alpha 2)) (* u0 (+ (* 1/4 (* (pow alpha 2) u0)) (* 1/3 (pow alpha 2)))))) (pow alpha 2)))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) #s(hole binary32 (* (pow alpha 2) u0)))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) #s(hole binary32 (* u0 (+ (* 1/2 (* (pow alpha 2) u0)) (pow alpha 2)))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) #s(hole binary32 (* u0 (+ (* u0 (+ (* 1/3 (* (pow alpha 2) u0)) (* 1/2 (pow alpha 2)))) (pow alpha 2)))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) #s(hole binary32 (* u0 (+ (* u0 (+ (* 1/2 (pow alpha 2)) (* u0 (+ (* 1/4 (* (pow alpha 2) u0)) (* 1/3 (pow alpha 2)))))) (pow alpha 2)))))
#s(approx (* (* (* (+ (* (+ (* 1/3 u0) 1/2) u0) 1) u0) alpha) alpha) #s(hole binary32 (* (pow alpha 2) u0)))
#s(approx (* (* (* (+ (* (+ (* 1/3 u0) 1/2) u0) 1) u0) alpha) alpha) #s(hole binary32 (* u0 (+ (* 1/2 (* (pow alpha 2) u0)) (pow alpha 2)))))
#s(approx (* (* (* (+ (* (+ (* 1/3 u0) 1/2) u0) 1) u0) alpha) alpha) #s(hole binary32 (* u0 (+ (* u0 (+ (* 1/3 (* (pow alpha 2) u0)) (* 1/2 (pow alpha 2)))) (pow alpha 2)))))
#s(approx (* (* (+ (* (+ (* 1/3 u0) 1/2) u0) 1) u0) alpha) #s(hole binary32 (* alpha u0)))
#s(approx (* (* (+ (* (+ (* 1/3 u0) 1/2) u0) 1) u0) alpha) #s(hole binary32 (* u0 (+ alpha (* 1/2 (* alpha u0))))))
#s(approx (* (* (+ (* (+ (* 1/3 u0) 1/2) u0) 1) u0) alpha) #s(hole binary32 (* u0 (+ alpha (* u0 (+ (* 1/3 (* alpha u0)) (* 1/2 alpha)))))))
#s(approx (* (+ (* (+ (* 1/3 u0) 1/2) u0) 1) u0) #s(hole binary32 u0))
#s(approx (* (+ (* (+ (* 1/3 u0) 1/2) u0) 1) u0) #s(hole binary32 (* u0 (+ 1 (* 1/2 u0)))))
#s(approx (* (+ (* (+ (* 1/3 u0) 1/2) u0) 1) u0) #s(hole binary32 (* u0 (+ 1 (* u0 (+ 1/2 (* 1/3 u0)))))))
#s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) #s(hole binary32 1))
#s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) #s(hole binary32 (+ 1 (* 1/2 u0))))
#s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) #s(hole binary32 (+ 1 (* u0 (+ 1/2 (* 1/3 u0))))))
#s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) #s(hole binary32 (+ 1 (* u0 (+ 1/2 (* u0 (+ 1/3 (* 1/4 u0))))))))
#s(approx (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) u0) #s(hole binary32 (* (pow alpha 2) u0)))
#s(approx (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) u0) #s(hole binary32 (* u0 (+ (* 1/2 (* (pow alpha 2) u0)) (pow alpha 2)))))
#s(approx (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) u0) #s(hole binary32 (* u0 (+ (* u0 (+ (* 1/3 (* (pow alpha 2) u0)) (* 1/2 (pow alpha 2)))) (pow alpha 2)))))
#s(approx (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) u0) #s(hole binary32 (* u0 (+ (* u0 (+ (* 1/2 (pow alpha 2)) (* u0 (+ (* 1/4 (* (pow alpha 2) u0)) (* 1/3 (pow alpha 2)))))) (pow alpha 2)))))
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) #s(hole binary32 (pow alpha 2)))
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) #s(hole binary32 (+ (* 1/2 (* (pow alpha 2) u0)) (pow alpha 2))))
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) #s(hole binary32 (+ (* u0 (+ (* 1/3 (* (pow alpha 2) u0)) (* 1/2 (pow alpha 2)))) (pow alpha 2))))
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) #s(hole binary32 (+ (* u0 (+ (* 1/2 (pow alpha 2)) (* u0 (+ (* 1/4 (* (pow alpha 2) u0)) (* 1/3 (pow alpha 2)))))) (pow alpha 2))))
#s(approx (log (- 1 u0)) #s(hole binary32 (* -1 u0)))
#s(approx (log (- 1 u0)) #s(hole binary32 (* u0 (- (* -1/2 u0) 1))))
#s(approx (log (- 1 u0)) #s(hole binary32 (* u0 (- (* u0 (- (* -1/3 u0) 1/2)) 1))))
#s(approx (log (- 1 u0)) #s(hole binary32 (* u0 (- (* u0 (- (* u0 (- (* -1/4 u0) 1/3)) 1/2)) 1))))
#s(approx (* (* (log (- 1 u0)) (neg alpha)) alpha) #s(hole binary32 (* (pow alpha 2) u0)))
#s(approx (* (* (log (- 1 u0)) (neg alpha)) alpha) #s(hole binary32 (* u0 (+ (* 1/2 (* (pow alpha 2) u0)) (pow alpha 2)))))
#s(approx (* (* (log (- 1 u0)) (neg alpha)) alpha) #s(hole binary32 (* u0 (+ (* u0 (+ (* 1/3 (* (pow alpha 2) u0)) (* 1/2 (pow alpha 2)))) (pow alpha 2)))))
#s(approx (* (* (log (- 1 u0)) (neg alpha)) alpha) #s(hole binary32 (* u0 (+ (* u0 (+ (* 1/2 (pow alpha 2)) (* u0 (+ (* 1/4 (* (pow alpha 2) u0)) (* 1/3 (pow alpha 2)))))) (pow alpha 2)))))
#s(approx (* (log (- 1 u0)) (neg alpha)) #s(hole binary32 (* alpha u0)))
#s(approx (* (log (- 1 u0)) (neg alpha)) #s(hole binary32 (* u0 (+ alpha (* 1/2 (* alpha u0))))))
#s(approx (* (log (- 1 u0)) (neg alpha)) #s(hole binary32 (* u0 (+ alpha (* u0 (+ (* 1/3 (* alpha u0)) (* 1/2 alpha)))))))
#s(approx (* (log (- 1 u0)) (neg alpha)) #s(hole binary32 (* u0 (+ alpha (* u0 (+ (* 1/2 alpha) (* u0 (+ (* 1/4 (* alpha u0)) (* 1/3 alpha)))))))))
#s(approx (- 1 u0) #s(hole binary32 1))
#s(approx (- 1 u0) #s(hole binary32 (+ 1 (* -1 u0))))
#s(approx (log (+ 1 (neg u0))) #s(hole binary32 (* -1 u0)))
#s(approx (log (+ 1 (neg u0))) #s(hole binary32 (* u0 (- (* -1/2 u0) 1))))
#s(approx (log (+ 1 (neg u0))) #s(hole binary32 (* u0 (- (* u0 (- (* -1/3 u0) 1/2)) 1))))
#s(approx (log (+ 1 (neg u0))) #s(hole binary32 (* u0 (- (* u0 (- (* u0 (- (* -1/4 u0) 1/3)) 1/2)) 1))))
#s(approx (* (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (* alpha alpha)) #s(hole binary32 (pow alpha 2)))
#s(approx (* (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (* alpha alpha)) #s(hole binary32 (+ (* 1/2 (* (pow alpha 2) u0)) (pow alpha 2))))
#s(approx (* (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (* alpha alpha)) #s(hole binary32 (+ (* u0 (+ (* 1/3 (* (pow alpha 2) u0)) (* 1/2 (pow alpha 2)))) (pow alpha 2))))
#s(approx (* (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (* alpha alpha)) #s(hole binary32 (+ (* u0 (+ (* 1/2 (pow alpha 2)) (* u0 (+ (* 1/4 (* (pow alpha 2) u0)) (* 1/3 (pow alpha 2)))))) (pow alpha 2))))
#s(approx (* (+ (* 1/4 u0) 1/3) u0) #s(hole binary32 (* 1/3 u0)))
#s(approx (* (+ (* 1/4 u0) 1/3) u0) #s(hole binary32 (* u0 (+ 1/3 (* 1/4 u0)))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (* -1 (* (pow alpha 2) (+ (log -1) (* -1 (log (/ 1 u0))))))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (+ (* -1 (* (pow alpha 2) (+ (log -1) (* -1 (log (/ 1 u0)))))) (/ (pow alpha 2) u0))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (+ (* -1 (* (pow alpha 2) (+ (log -1) (* -1 (log (/ 1 u0)))))) (+ (* 1/2 (/ (pow alpha 2) (pow u0 2))) (/ (pow alpha 2) u0)))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (+ (* -1 (* (pow alpha 2) (+ (log -1) (* -1 (log (/ 1 u0)))))) (+ (* 1/3 (/ (pow alpha 2) (pow u0 3))) (+ (* 1/2 (/ (pow alpha 2) (pow u0 2))) (/ (pow alpha 2) u0))))))
#s(approx (* (* (neg alpha) alpha) (log (+ 1 (neg u0)))) #s(hole binary32 (* -1 (* (pow alpha 2) (+ (log -1) (* -1 (log (/ 1 u0))))))))
#s(approx (* (* (neg alpha) alpha) (log (+ 1 (neg u0)))) #s(hole binary32 (+ (* -1 (* (pow alpha 2) (+ (log -1) (* -1 (log (/ 1 u0)))))) (/ (pow alpha 2) u0))))
#s(approx (* (* (neg alpha) alpha) (log (+ 1 (neg u0)))) #s(hole binary32 (+ (* -1 (* (pow alpha 2) (+ (log -1) (* -1 (log (/ 1 u0)))))) (+ (* 1/2 (/ (pow alpha 2) (pow u0 2))) (/ (pow alpha 2) u0)))))
#s(approx (* (* (neg alpha) alpha) (log (+ 1 (neg u0)))) #s(hole binary32 (+ (* -1 (* (pow alpha 2) (+ (log -1) (* -1 (log (/ 1 u0)))))) (+ (* 1/3 (/ (pow alpha 2) (pow u0 3))) (+ (* 1/2 (/ (pow alpha 2) (pow u0 2))) (/ (pow alpha 2) u0))))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) #s(hole binary32 (* -1 (* (pow alpha 2) (- (+ (log -1) (* -2 (log (/ 1 u0)))) (* -1 (log (/ 1 u0))))))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) #s(hole binary32 (+ (* -1 (* (pow alpha 2) (- (+ (log -1) (* -2 (log (/ 1 u0)))) (* -1 (log (/ 1 u0)))))) (/ (pow alpha 2) u0))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) #s(hole binary32 (+ (* -1 (* (pow alpha 2) (- (+ (log -1) (* -2 (log (/ 1 u0)))) (* -1 (log (/ 1 u0)))))) (+ (* 1/2 (/ (pow alpha 2) (pow u0 2))) (/ (pow alpha 2) u0)))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) #s(hole binary32 (+ (* -1 (* (pow alpha 2) (- (+ (log -1) (* -2 (log (/ 1 u0)))) (* -1 (log (/ 1 u0)))))) (+ (* 1/3 (/ (pow alpha 2) (pow u0 3))) (+ (* 1/2 (/ (pow alpha 2) (pow u0 2))) (/ (pow alpha 2) u0))))))
#s(approx (* (* (* (+ (* (+ (* 1/3 u0) 1/2) u0) 1) u0) alpha) alpha) #s(hole binary32 (* 1/3 (* (pow alpha 2) (pow u0 3)))))
#s(approx (* (* (* (+ (* (+ (* 1/3 u0) 1/2) u0) 1) u0) alpha) alpha) #s(hole binary32 (* (pow u0 3) (+ (* 1/3 (pow alpha 2)) (* 1/2 (/ (pow alpha 2) u0))))))
#s(approx (* (* (* (+ (* (+ (* 1/3 u0) 1/2) u0) 1) u0) alpha) alpha) #s(hole binary32 (* (pow u0 3) (+ (* 1/3 (pow alpha 2)) (+ (* 1/2 (/ (pow alpha 2) u0)) (/ (pow alpha 2) (pow u0 2)))))))
#s(approx (* (* (+ (* (+ (* 1/3 u0) 1/2) u0) 1) u0) alpha) #s(hole binary32 (* 1/3 (* alpha (pow u0 3)))))
#s(approx (* (* (+ (* (+ (* 1/3 u0) 1/2) u0) 1) u0) alpha) #s(hole binary32 (* (pow u0 3) (+ (* 1/3 alpha) (* 1/2 (/ alpha u0))))))
#s(approx (* (* (+ (* (+ (* 1/3 u0) 1/2) u0) 1) u0) alpha) #s(hole binary32 (* (pow u0 3) (+ (* 1/3 alpha) (+ (* 1/2 (/ alpha u0)) (/ alpha (pow u0 2)))))))
#s(approx (* (+ (* (+ (* 1/3 u0) 1/2) u0) 1) u0) #s(hole binary32 (* 1/3 (pow u0 3))))
#s(approx (* (+ (* (+ (* 1/3 u0) 1/2) u0) 1) u0) #s(hole binary32 (* (pow u0 3) (+ 1/3 (* 1/2 (/ 1 u0))))))
#s(approx (* (+ (* (+ (* 1/3 u0) 1/2) u0) 1) u0) #s(hole binary32 (* (pow u0 3) (+ 1/3 (+ (* 1/2 (/ 1 u0)) (/ 1 (pow u0 2)))))))
#s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) #s(hole binary32 (* 1/4 (pow u0 3))))
#s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) #s(hole binary32 (* (pow u0 3) (+ 1/4 (* 1/3 (/ 1 u0))))))
#s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) #s(hole binary32 (* (pow u0 3) (+ 1/4 (+ (/ 1/2 (pow u0 2)) (* 1/3 (/ 1 u0)))))))
#s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) #s(hole binary32 (* (pow u0 3) (+ 1/4 (+ (/ 1/2 (pow u0 2)) (+ (* 1/3 (/ 1 u0)) (/ 1 (pow u0 3))))))))
#s(approx (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) u0) #s(hole binary32 (* 1/4 (* (pow alpha 2) (pow u0 4)))))
#s(approx (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) u0) #s(hole binary32 (* (pow u0 4) (+ (* 1/4 (pow alpha 2)) (* 1/3 (/ (pow alpha 2) u0))))))
#s(approx (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) u0) #s(hole binary32 (* (pow u0 4) (+ (* 1/4 (pow alpha 2)) (+ (* 1/3 (/ (pow alpha 2) u0)) (* 1/2 (/ (pow alpha 2) (pow u0 2))))))))
#s(approx (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) u0) #s(hole binary32 (* (pow u0 4) (+ (* 1/4 (pow alpha 2)) (+ (* 1/3 (/ (pow alpha 2) u0)) (+ (* 1/2 (/ (pow alpha 2) (pow u0 2))) (/ (pow alpha 2) (pow u0 3))))))))
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) #s(hole binary32 (* 1/4 (* (pow alpha 2) (pow u0 3)))))
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) #s(hole binary32 (* (pow u0 3) (+ (* 1/4 (pow alpha 2)) (* 1/3 (/ (pow alpha 2) u0))))))
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) #s(hole binary32 (* (pow u0 3) (+ (* 1/4 (pow alpha 2)) (+ (* 1/3 (/ (pow alpha 2) u0)) (* 1/2 (/ (pow alpha 2) (pow u0 2))))))))
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) #s(hole binary32 (* (pow u0 3) (+ (* 1/4 (pow alpha 2)) (+ (* 1/3 (/ (pow alpha 2) u0)) (+ (* 1/2 (/ (pow alpha 2) (pow u0 2))) (/ (pow alpha 2) (pow u0 3))))))))
#s(approx (log (- 1 u0)) #s(hole binary32 (+ (log -1) (* -1 (log (/ 1 u0))))))
#s(approx (log (- 1 u0)) #s(hole binary32 (- (+ (log -1) (* -1 (log (/ 1 u0)))) (/ 1 u0))))
#s(approx (log (- 1 u0)) #s(hole binary32 (+ (log -1) (+ (* -1 (log (/ 1 u0))) (* -1 (/ (+ 1 (* 1/2 (/ 1 u0))) u0))))))
#s(approx (log (- 1 u0)) #s(hole binary32 (- (+ (log -1) (+ (* -1 (log (/ 1 u0))) (* -1 (/ (+ 1/2 (* 1/3 (/ 1 u0))) (pow u0 2))))) (/ 1 u0))))
#s(approx (* (* (log (- 1 u0)) (neg alpha)) alpha) #s(hole binary32 (* -1 (* (pow alpha 2) (+ (log -1) (* -1 (log (/ 1 u0))))))))
#s(approx (* (* (log (- 1 u0)) (neg alpha)) alpha) #s(hole binary32 (+ (* -1 (* (pow alpha 2) (+ (log -1) (* -1 (log (/ 1 u0)))))) (/ (pow alpha 2) u0))))
#s(approx (* (* (log (- 1 u0)) (neg alpha)) alpha) #s(hole binary32 (+ (* -1 (* (pow alpha 2) (+ (log -1) (* -1 (log (/ 1 u0)))))) (+ (* 1/2 (/ (pow alpha 2) (pow u0 2))) (/ (pow alpha 2) u0)))))
#s(approx (* (* (log (- 1 u0)) (neg alpha)) alpha) #s(hole binary32 (+ (* -1 (* (pow alpha 2) (+ (log -1) (* -1 (log (/ 1 u0)))))) (+ (* 1/3 (/ (pow alpha 2) (pow u0 3))) (+ (* 1/2 (/ (pow alpha 2) (pow u0 2))) (/ (pow alpha 2) u0))))))
#s(approx (* (log (- 1 u0)) (neg alpha)) #s(hole binary32 (* -1 (* alpha (+ (log -1) (* -1 (log (/ 1 u0))))))))
#s(approx (* (log (- 1 u0)) (neg alpha)) #s(hole binary32 (+ (* -1 (* alpha (+ (log -1) (* -1 (log (/ 1 u0)))))) (/ alpha u0))))
#s(approx (* (log (- 1 u0)) (neg alpha)) #s(hole binary32 (+ (* -1 (* alpha (+ (log -1) (* -1 (log (/ 1 u0)))))) (+ (* 1/2 (/ alpha (pow u0 2))) (/ alpha u0)))))
#s(approx (* (log (- 1 u0)) (neg alpha)) #s(hole binary32 (+ (* -1 (* alpha (+ (log -1) (* -1 (log (/ 1 u0)))))) (+ (* 1/3 (/ alpha (pow u0 3))) (+ (* 1/2 (/ alpha (pow u0 2))) (/ alpha u0))))))
#s(approx (- 1 u0) #s(hole binary32 (* -1 u0)))
#s(approx (- 1 u0) #s(hole binary32 (* u0 (- (/ 1 u0) 1))))
#s(approx (log (+ 1 (neg u0))) #s(hole binary32 (+ (log -1) (* -1 (log (/ 1 u0))))))
#s(approx (log (+ 1 (neg u0))) #s(hole binary32 (- (+ (log -1) (* -1 (log (/ 1 u0)))) (/ 1 u0))))
#s(approx (log (+ 1 (neg u0))) #s(hole binary32 (+ (log -1) (+ (* -1 (log (/ 1 u0))) (* -1 (/ (+ 1 (* 1/2 (/ 1 u0))) u0))))))
#s(approx (log (+ 1 (neg u0))) #s(hole binary32 (- (+ (log -1) (+ (* -1 (log (/ 1 u0))) (* -1 (/ (+ 1/2 (* 1/3 (/ 1 u0))) (pow u0 2))))) (/ 1 u0))))
#s(approx (* (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (* alpha alpha)) #s(hole binary32 (* 1/4 (* (pow alpha 2) (pow u0 3)))))
#s(approx (* (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (* alpha alpha)) #s(hole binary32 (* (pow u0 3) (+ (* 1/4 (pow alpha 2)) (* 1/3 (/ (pow alpha 2) u0))))))
#s(approx (* (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (* alpha alpha)) #s(hole binary32 (* (pow u0 3) (+ (* 1/4 (pow alpha 2)) (+ (* 1/3 (/ (pow alpha 2) u0)) (* 1/2 (/ (pow alpha 2) (pow u0 2))))))))
#s(approx (* (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (* alpha alpha)) #s(hole binary32 (* (pow u0 3) (+ (* 1/4 (pow alpha 2)) (+ (* 1/3 (/ (pow alpha 2) u0)) (+ (* 1/2 (/ (pow alpha 2) (pow u0 2))) (/ (pow alpha 2) (pow u0 3))))))))
#s(approx (* (+ (* 1/4 u0) 1/3) u0) #s(hole binary32 (* 1/4 (pow u0 2))))
#s(approx (* (+ (* 1/4 u0) 1/3) u0) #s(hole binary32 (* (pow u0 2) (+ 1/4 (* 1/3 (/ 1 u0))))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (* (pow alpha 2) (log (/ -1 u0)))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (+ (* (pow alpha 2) (log (/ -1 u0))) (/ (pow alpha 2) u0))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (+ (* -1 (/ (+ (* -1 (pow alpha 2)) (* -1/2 (/ (pow alpha 2) u0))) u0)) (* (pow alpha 2) (log (/ -1 u0))))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (+ (* -1 (/ (+ (* -1 (/ (+ (* 1/3 (/ (pow alpha 2) u0)) (* 1/2 (pow alpha 2))) u0)) (* -1 (pow alpha 2))) u0)) (* (pow alpha 2) (log (/ -1 u0))))))
#s(approx (* (* (neg alpha) alpha) (log (+ 1 (neg u0)))) #s(hole binary32 (* (pow alpha 2) (log (/ -1 u0)))))
#s(approx (* (* (neg alpha) alpha) (log (+ 1 (neg u0)))) #s(hole binary32 (+ (* (pow alpha 2) (log (/ -1 u0))) (/ (pow alpha 2) u0))))
#s(approx (* (* (neg alpha) alpha) (log (+ 1 (neg u0)))) #s(hole binary32 (+ (* -1 (/ (+ (* -1 (pow alpha 2)) (* -1/2 (/ (pow alpha 2) u0))) u0)) (* (pow alpha 2) (log (/ -1 u0))))))
#s(approx (* (* (neg alpha) alpha) (log (+ 1 (neg u0)))) #s(hole binary32 (+ (* -1 (/ (+ (* -1 (/ (+ (* 1/3 (/ (pow alpha 2) u0)) (* 1/2 (pow alpha 2))) u0)) (* -1 (pow alpha 2))) u0)) (* (pow alpha 2) (log (/ -1 u0))))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) #s(hole binary32 (* -1 (* (pow alpha 2) (- (* -2 (log (/ -1 u0))) (* -1 (log (/ -1 u0))))))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) #s(hole binary32 (+ (* -1 (* (pow alpha 2) (- (* -2 (log (/ -1 u0))) (* -1 (log (/ -1 u0)))))) (/ (pow alpha 2) u0))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) #s(hole binary32 (+ (* -1 (* (pow alpha 2) (- (* -2 (log (/ -1 u0))) (* -1 (log (/ -1 u0)))))) (* -1 (/ (+ (* -1 (pow alpha 2)) (* -1/2 (/ (pow alpha 2) u0))) u0)))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) #s(hole binary32 (+ (* -1 (* (pow alpha 2) (- (* -2 (log (/ -1 u0))) (* -1 (log (/ -1 u0)))))) (* -1 (/ (+ (* -1 (/ (+ (* 1/3 (/ (pow alpha 2) u0)) (* 1/2 (pow alpha 2))) u0)) (* -1 (pow alpha 2))) u0)))))
#s(approx (* (* (* (+ (* (+ (* 1/3 u0) 1/2) u0) 1) u0) alpha) alpha) #s(hole binary32 (* -1 (* (pow u0 3) (+ (* -1/2 (/ (pow alpha 2) u0)) (* -1/3 (pow alpha 2)))))))
#s(approx (* (* (* (+ (* (+ (* 1/3 u0) 1/2) u0) 1) u0) alpha) alpha) #s(hole binary32 (* -1 (* (pow u0 3) (+ (* -1 (/ (+ (* 1/2 (pow alpha 2)) (/ (pow alpha 2) u0)) u0)) (* -1/3 (pow alpha 2)))))))
#s(approx (* (* (+ (* (+ (* 1/3 u0) 1/2) u0) 1) u0) alpha) #s(hole binary32 (* -1 (* (pow u0 3) (+ (* -1/2 (/ alpha u0)) (* -1/3 alpha))))))
#s(approx (* (* (+ (* (+ (* 1/3 u0) 1/2) u0) 1) u0) alpha) #s(hole binary32 (* -1 (* (pow u0 3) (+ (* -1 (/ (+ (* 1/2 alpha) (/ alpha u0)) u0)) (* -1/3 alpha))))))
#s(approx (* (+ (* (+ (* 1/3 u0) 1/2) u0) 1) u0) #s(hole binary32 (* -1 (* (pow u0 3) (- (* -1 (/ (+ 1/2 (/ 1 u0)) u0)) 1/3)))))
#s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) #s(hole binary32 (* -1 (* (pow u0 3) (- (* -1 (/ (+ 1/3 (* 1/2 (/ 1 u0))) u0)) 1/4)))))
#s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) #s(hole binary32 (* -1 (* (pow u0 3) (- (* -1 (/ (+ 1/3 (+ (* 1/2 (/ 1 u0)) (/ 1 (pow u0 2)))) u0)) 1/4)))))
#s(approx (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) u0) #s(hole binary32 (* (pow u0 4) (+ (* -1 (/ (+ (* -1/2 (/ (pow alpha 2) u0)) (* -1/3 (pow alpha 2))) u0)) (* 1/4 (pow alpha 2))))))
#s(approx (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) u0) #s(hole binary32 (* (pow u0 4) (+ (* -1 (/ (+ (* -1 (/ (+ (* 1/2 (pow alpha 2)) (/ (pow alpha 2) u0)) u0)) (* -1/3 (pow alpha 2))) u0)) (* 1/4 (pow alpha 2))))))
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) #s(hole binary32 (* -1 (* (pow u0 3) (+ (* -1/3 (/ (pow alpha 2) u0)) (* -1/4 (pow alpha 2)))))))
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) #s(hole binary32 (* -1 (* (pow u0 3) (+ (* -1 (/ (+ (* 1/3 (pow alpha 2)) (* 1/2 (/ (pow alpha 2) u0))) u0)) (* -1/4 (pow alpha 2)))))))
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) #s(hole binary32 (* -1 (* (pow u0 3) (+ (* -1 (/ (+ (* -1 (/ (+ (* -1 (/ (pow alpha 2) u0)) (* -1/2 (pow alpha 2))) u0)) (* 1/3 (pow alpha 2))) u0)) (* -1/4 (pow alpha 2)))))))
#s(approx (log (- 1 u0)) #s(hole binary32 (* -1 (log (/ -1 u0)))))
#s(approx (log (- 1 u0)) #s(hole binary32 (- (* -1 (log (/ -1 u0))) (/ 1 u0))))
#s(approx (log (- 1 u0)) #s(hole binary32 (+ (* -1 (log (/ -1 u0))) (* -1 (/ (+ 1 (* 1/2 (/ 1 u0))) u0)))))
#s(approx (log (- 1 u0)) #s(hole binary32 (+ (* -1 (log (/ -1 u0))) (* -1 (/ (+ 1 (+ (/ 1/3 (pow u0 2)) (* 1/2 (/ 1 u0)))) u0)))))
#s(approx (* (* (log (- 1 u0)) (neg alpha)) alpha) #s(hole binary32 (* (pow alpha 2) (log (/ -1 u0)))))
#s(approx (* (* (log (- 1 u0)) (neg alpha)) alpha) #s(hole binary32 (+ (* (pow alpha 2) (log (/ -1 u0))) (/ (pow alpha 2) u0))))
#s(approx (* (* (log (- 1 u0)) (neg alpha)) alpha) #s(hole binary32 (+ (* -1 (/ (+ (* -1 (pow alpha 2)) (* -1/2 (/ (pow alpha 2) u0))) u0)) (* (pow alpha 2) (log (/ -1 u0))))))
#s(approx (* (* (log (- 1 u0)) (neg alpha)) alpha) #s(hole binary32 (+ (* -1 (/ (+ (* -1 (/ (+ (* 1/3 (/ (pow alpha 2) u0)) (* 1/2 (pow alpha 2))) u0)) (* -1 (pow alpha 2))) u0)) (* (pow alpha 2) (log (/ -1 u0))))))
#s(approx (* (log (- 1 u0)) (neg alpha)) #s(hole binary32 (* alpha (log (/ -1 u0)))))
#s(approx (* (log (- 1 u0)) (neg alpha)) #s(hole binary32 (+ (* alpha (log (/ -1 u0))) (/ alpha u0))))
#s(approx (* (log (- 1 u0)) (neg alpha)) #s(hole binary32 (+ (* -1 (/ (+ (* -1 alpha) (* -1/2 (/ alpha u0))) u0)) (* alpha (log (/ -1 u0))))))
#s(approx (* (log (- 1 u0)) (neg alpha)) #s(hole binary32 (+ (* -1 (/ (+ (* -1 alpha) (* -1 (/ (+ (* 1/3 (/ alpha u0)) (* 1/2 alpha)) u0))) u0)) (* alpha (log (/ -1 u0))))))
#s(approx (- 1 u0) #s(hole binary32 (* -1 (* u0 (- 1 (/ 1 u0))))))
#s(approx (log (+ 1 (neg u0))) #s(hole binary32 (* -1 (log (/ -1 u0)))))
#s(approx (log (+ 1 (neg u0))) #s(hole binary32 (- (* -1 (log (/ -1 u0))) (/ 1 u0))))
#s(approx (log (+ 1 (neg u0))) #s(hole binary32 (+ (* -1 (log (/ -1 u0))) (* -1 (/ (+ 1 (* 1/2 (/ 1 u0))) u0)))))
#s(approx (log (+ 1 (neg u0))) #s(hole binary32 (+ (* -1 (log (/ -1 u0))) (* -1 (/ (+ 1 (+ (/ 1/3 (pow u0 2)) (* 1/2 (/ 1 u0)))) u0)))))
#s(approx (* (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (* alpha alpha)) #s(hole binary32 (* -1 (* (pow u0 3) (+ (* -1/3 (/ (pow alpha 2) u0)) (* -1/4 (pow alpha 2)))))))
#s(approx (* (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (* alpha alpha)) #s(hole binary32 (* -1 (* (pow u0 3) (+ (* -1 (/ (+ (* 1/3 (pow alpha 2)) (* 1/2 (/ (pow alpha 2) u0))) u0)) (* -1/4 (pow alpha 2)))))))
#s(approx (* (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (* alpha alpha)) #s(hole binary32 (* -1 (* (pow u0 3) (+ (* -1 (/ (+ (* -1 (/ (+ (* -1 (/ (pow alpha 2) u0)) (* -1/2 (pow alpha 2))) u0)) (* 1/3 (pow alpha 2))) u0)) (* -1/4 (pow alpha 2)))))))
Calls

6 calls:

TimeVariablePointExpression
70.0ms
alpha
@0
((* (* (neg alpha) alpha) (log (- 1 u0))) (* (* (neg alpha) alpha) (log (+ 1 (neg u0)))) (* (neg alpha) alpha) (neg alpha) (* (* (neg alpha) alpha) (log (- 1 u0))) (* (* u0 alpha) alpha) (* u0 alpha) (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (* (* (* (+ (* (+ (* 1/3 u0) 1/2) u0) 1) u0) alpha) alpha) (* (* (+ (* (+ (* 1/3 u0) 1/2) u0) 1) u0) alpha) (* (+ (* (+ (* 1/3 u0) 1/2) u0) 1) u0) (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (* (* (neg alpha) alpha) (log (- 1 u0))) (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) u0) (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (log (- 1 u0)) (* (* (log (- 1 u0)) (neg alpha)) alpha) (* (log (- 1 u0)) (neg alpha)) (- 1 u0) (log (+ 1 (neg u0))) (* (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (* alpha alpha)) (* (+ (* 1/4 u0) 1/3) u0))
35.0ms
alpha
@-inf
((* (* (neg alpha) alpha) (log (- 1 u0))) (* (* (neg alpha) alpha) (log (+ 1 (neg u0)))) (* (neg alpha) alpha) (neg alpha) (* (* (neg alpha) alpha) (log (- 1 u0))) (* (* u0 alpha) alpha) (* u0 alpha) (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (* (* (* (+ (* (+ (* 1/3 u0) 1/2) u0) 1) u0) alpha) alpha) (* (* (+ (* (+ (* 1/3 u0) 1/2) u0) 1) u0) alpha) (* (+ (* (+ (* 1/3 u0) 1/2) u0) 1) u0) (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (* (* (neg alpha) alpha) (log (- 1 u0))) (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) u0) (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (log (- 1 u0)) (* (* (log (- 1 u0)) (neg alpha)) alpha) (* (log (- 1 u0)) (neg alpha)) (- 1 u0) (log (+ 1 (neg u0))) (* (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (* alpha alpha)) (* (+ (* 1/4 u0) 1/3) u0))
30.0ms
alpha
@inf
((* (* (neg alpha) alpha) (log (- 1 u0))) (* (* (neg alpha) alpha) (log (+ 1 (neg u0)))) (* (neg alpha) alpha) (neg alpha) (* (* (neg alpha) alpha) (log (- 1 u0))) (* (* u0 alpha) alpha) (* u0 alpha) (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (* (* (* (+ (* (+ (* 1/3 u0) 1/2) u0) 1) u0) alpha) alpha) (* (* (+ (* (+ (* 1/3 u0) 1/2) u0) 1) u0) alpha) (* (+ (* (+ (* 1/3 u0) 1/2) u0) 1) u0) (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (* (* (neg alpha) alpha) (log (- 1 u0))) (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) u0) (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (log (- 1 u0)) (* (* (log (- 1 u0)) (neg alpha)) alpha) (* (log (- 1 u0)) (neg alpha)) (- 1 u0) (log (+ 1 (neg u0))) (* (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (* alpha alpha)) (* (+ (* 1/4 u0) 1/3) u0))
3.0ms
u0
@-inf
((* (* (neg alpha) alpha) (log (- 1 u0))) (* (* (neg alpha) alpha) (log (+ 1 (neg u0)))) (* (neg alpha) alpha) (neg alpha) (* (* (neg alpha) alpha) (log (- 1 u0))) (* (* u0 alpha) alpha) (* u0 alpha) (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (* (* (* (+ (* (+ (* 1/3 u0) 1/2) u0) 1) u0) alpha) alpha) (* (* (+ (* (+ (* 1/3 u0) 1/2) u0) 1) u0) alpha) (* (+ (* (+ (* 1/3 u0) 1/2) u0) 1) u0) (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (* (* (neg alpha) alpha) (log (- 1 u0))) (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) u0) (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (log (- 1 u0)) (* (* (log (- 1 u0)) (neg alpha)) alpha) (* (log (- 1 u0)) (neg alpha)) (- 1 u0) (log (+ 1 (neg u0))) (* (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (* alpha alpha)) (* (+ (* 1/4 u0) 1/3) u0))
3.0ms
u0
@inf
((* (* (neg alpha) alpha) (log (- 1 u0))) (* (* (neg alpha) alpha) (log (+ 1 (neg u0)))) (* (neg alpha) alpha) (neg alpha) (* (* (neg alpha) alpha) (log (- 1 u0))) (* (* u0 alpha) alpha) (* u0 alpha) (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (* (* (* (+ (* (+ (* 1/3 u0) 1/2) u0) 1) u0) alpha) alpha) (* (* (+ (* (+ (* 1/3 u0) 1/2) u0) 1) u0) alpha) (* (+ (* (+ (* 1/3 u0) 1/2) u0) 1) u0) (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (* (* (neg alpha) alpha) (log (- 1 u0))) (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) u0) (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (log (- 1 u0)) (* (* (log (- 1 u0)) (neg alpha)) alpha) (* (log (- 1 u0)) (neg alpha)) (- 1 u0) (log (+ 1 (neg u0))) (* (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (* alpha alpha)) (* (+ (* 1/4 u0) 1/3) u0))

simplify238.0ms (2.8%)

Memory
-9.2MiB live, 285.8MiB allocated; 109ms collecting garbage
Iterations

Useful iterations: 0 (0.0ms)

IterNodesCost
05384966
114784527
258834470
083203987
Stop Event
iter limit
node limit
Counts
172 → 172
Calls
Call 1
Inputs
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (* -1 (* (pow alpha 2) (log (- 1 u0))))))
#s(approx (* (* (neg alpha) alpha) (log (+ 1 (neg u0)))) #s(hole binary32 (* -1 (* (pow alpha 2) (log (- 1 u0))))))
#s(approx (* (neg alpha) alpha) #s(hole binary32 (* -1 (pow alpha 2))))
#s(approx (neg alpha) #s(hole binary32 (* -1 alpha)))
#s(approx (* (* u0 alpha) alpha) #s(hole binary32 (* (pow alpha 2) u0)))
#s(approx (* u0 alpha) #s(hole binary32 (* alpha u0)))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) #s(hole binary32 (* -1 (* (pow alpha 2) (- (log (+ 1 (* -1 (pow u0 2)))) (log (+ 1 u0)))))))
#s(approx (* (* (* (+ (* (+ (* 1/3 u0) 1/2) u0) 1) u0) alpha) alpha) #s(hole binary32 (* (pow alpha 2) (* u0 (+ 1 (* u0 (+ 1/2 (* 1/3 u0))))))))
#s(approx (* (* (+ (* (+ (* 1/3 u0) 1/2) u0) 1) u0) alpha) #s(hole binary32 (* alpha (* u0 (+ 1 (* u0 (+ 1/2 (* 1/3 u0))))))))
#s(approx (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) u0) #s(hole binary32 (* (pow alpha 2) (* u0 (+ 1 (+ (* 1/2 u0) (* (pow u0 2) (+ 1/3 (* 1/4 u0)))))))))
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) #s(hole binary32 (* (pow alpha 2) (+ 1 (+ (* 1/2 u0) (* (pow u0 2) (+ 1/3 (* 1/4 u0))))))))
#s(approx (* (* (log (- 1 u0)) (neg alpha)) alpha) #s(hole binary32 (* -1 (* (pow alpha 2) (log (- 1 u0))))))
#s(approx (* (log (- 1 u0)) (neg alpha)) #s(hole binary32 (* -1 (* alpha (log (- 1 u0))))))
#s(approx (* (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (* alpha alpha)) #s(hole binary32 (* (pow alpha 2) (+ 1 (+ (* 1/2 u0) (* (pow u0 2) (+ 1/3 (* 1/4 u0))))))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (* (pow alpha 2) u0)))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (* u0 (+ (* 1/2 (* (pow alpha 2) u0)) (pow alpha 2)))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (* u0 (+ (* u0 (+ (* 1/3 (* (pow alpha 2) u0)) (* 1/2 (pow alpha 2)))) (pow alpha 2)))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (* u0 (+ (* u0 (+ (* 1/2 (pow alpha 2)) (* u0 (+ (* 1/4 (* (pow alpha 2) u0)) (* 1/3 (pow alpha 2)))))) (pow alpha 2)))))
#s(approx (* (* (neg alpha) alpha) (log (+ 1 (neg u0)))) #s(hole binary32 (* (pow alpha 2) u0)))
#s(approx (* (* (neg alpha) alpha) (log (+ 1 (neg u0)))) #s(hole binary32 (* u0 (+ (* 1/2 (* (pow alpha 2) u0)) (pow alpha 2)))))
#s(approx (* (* (neg alpha) alpha) (log (+ 1 (neg u0)))) #s(hole binary32 (* u0 (+ (* u0 (+ (* 1/3 (* (pow alpha 2) u0)) (* 1/2 (pow alpha 2)))) (pow alpha 2)))))
#s(approx (* (* (neg alpha) alpha) (log (+ 1 (neg u0)))) #s(hole binary32 (* u0 (+ (* u0 (+ (* 1/2 (pow alpha 2)) (* u0 (+ (* 1/4 (* (pow alpha 2) u0)) (* 1/3 (pow alpha 2)))))) (pow alpha 2)))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) #s(hole binary32 (* (pow alpha 2) u0)))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) #s(hole binary32 (* u0 (+ (* 1/2 (* (pow alpha 2) u0)) (pow alpha 2)))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) #s(hole binary32 (* u0 (+ (* u0 (+ (* 1/3 (* (pow alpha 2) u0)) (* 1/2 (pow alpha 2)))) (pow alpha 2)))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) #s(hole binary32 (* u0 (+ (* u0 (+ (* 1/2 (pow alpha 2)) (* u0 (+ (* 1/4 (* (pow alpha 2) u0)) (* 1/3 (pow alpha 2)))))) (pow alpha 2)))))
#s(approx (* (* (* (+ (* (+ (* 1/3 u0) 1/2) u0) 1) u0) alpha) alpha) #s(hole binary32 (* (pow alpha 2) u0)))
#s(approx (* (* (* (+ (* (+ (* 1/3 u0) 1/2) u0) 1) u0) alpha) alpha) #s(hole binary32 (* u0 (+ (* 1/2 (* (pow alpha 2) u0)) (pow alpha 2)))))
#s(approx (* (* (* (+ (* (+ (* 1/3 u0) 1/2) u0) 1) u0) alpha) alpha) #s(hole binary32 (* u0 (+ (* u0 (+ (* 1/3 (* (pow alpha 2) u0)) (* 1/2 (pow alpha 2)))) (pow alpha 2)))))
#s(approx (* (* (+ (* (+ (* 1/3 u0) 1/2) u0) 1) u0) alpha) #s(hole binary32 (* alpha u0)))
#s(approx (* (* (+ (* (+ (* 1/3 u0) 1/2) u0) 1) u0) alpha) #s(hole binary32 (* u0 (+ alpha (* 1/2 (* alpha u0))))))
#s(approx (* (* (+ (* (+ (* 1/3 u0) 1/2) u0) 1) u0) alpha) #s(hole binary32 (* u0 (+ alpha (* u0 (+ (* 1/3 (* alpha u0)) (* 1/2 alpha)))))))
#s(approx (* (+ (* (+ (* 1/3 u0) 1/2) u0) 1) u0) #s(hole binary32 u0))
#s(approx (* (+ (* (+ (* 1/3 u0) 1/2) u0) 1) u0) #s(hole binary32 (* u0 (+ 1 (* 1/2 u0)))))
#s(approx (* (+ (* (+ (* 1/3 u0) 1/2) u0) 1) u0) #s(hole binary32 (* u0 (+ 1 (* u0 (+ 1/2 (* 1/3 u0)))))))
#s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) #s(hole binary32 1))
#s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) #s(hole binary32 (+ 1 (* 1/2 u0))))
#s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) #s(hole binary32 (+ 1 (* u0 (+ 1/2 (* 1/3 u0))))))
#s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) #s(hole binary32 (+ 1 (* u0 (+ 1/2 (* u0 (+ 1/3 (* 1/4 u0))))))))
#s(approx (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) u0) #s(hole binary32 (* (pow alpha 2) u0)))
#s(approx (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) u0) #s(hole binary32 (* u0 (+ (* 1/2 (* (pow alpha 2) u0)) (pow alpha 2)))))
#s(approx (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) u0) #s(hole binary32 (* u0 (+ (* u0 (+ (* 1/3 (* (pow alpha 2) u0)) (* 1/2 (pow alpha 2)))) (pow alpha 2)))))
#s(approx (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) u0) #s(hole binary32 (* u0 (+ (* u0 (+ (* 1/2 (pow alpha 2)) (* u0 (+ (* 1/4 (* (pow alpha 2) u0)) (* 1/3 (pow alpha 2)))))) (pow alpha 2)))))
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) #s(hole binary32 (pow alpha 2)))
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) #s(hole binary32 (+ (* 1/2 (* (pow alpha 2) u0)) (pow alpha 2))))
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) #s(hole binary32 (+ (* u0 (+ (* 1/3 (* (pow alpha 2) u0)) (* 1/2 (pow alpha 2)))) (pow alpha 2))))
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) #s(hole binary32 (+ (* u0 (+ (* 1/2 (pow alpha 2)) (* u0 (+ (* 1/4 (* (pow alpha 2) u0)) (* 1/3 (pow alpha 2)))))) (pow alpha 2))))
#s(approx (log (- 1 u0)) #s(hole binary32 (* -1 u0)))
#s(approx (log (- 1 u0)) #s(hole binary32 (* u0 (- (* -1/2 u0) 1))))
#s(approx (log (- 1 u0)) #s(hole binary32 (* u0 (- (* u0 (- (* -1/3 u0) 1/2)) 1))))
#s(approx (log (- 1 u0)) #s(hole binary32 (* u0 (- (* u0 (- (* u0 (- (* -1/4 u0) 1/3)) 1/2)) 1))))
#s(approx (* (* (log (- 1 u0)) (neg alpha)) alpha) #s(hole binary32 (* (pow alpha 2) u0)))
#s(approx (* (* (log (- 1 u0)) (neg alpha)) alpha) #s(hole binary32 (* u0 (+ (* 1/2 (* (pow alpha 2) u0)) (pow alpha 2)))))
#s(approx (* (* (log (- 1 u0)) (neg alpha)) alpha) #s(hole binary32 (* u0 (+ (* u0 (+ (* 1/3 (* (pow alpha 2) u0)) (* 1/2 (pow alpha 2)))) (pow alpha 2)))))
#s(approx (* (* (log (- 1 u0)) (neg alpha)) alpha) #s(hole binary32 (* u0 (+ (* u0 (+ (* 1/2 (pow alpha 2)) (* u0 (+ (* 1/4 (* (pow alpha 2) u0)) (* 1/3 (pow alpha 2)))))) (pow alpha 2)))))
#s(approx (* (log (- 1 u0)) (neg alpha)) #s(hole binary32 (* alpha u0)))
#s(approx (* (log (- 1 u0)) (neg alpha)) #s(hole binary32 (* u0 (+ alpha (* 1/2 (* alpha u0))))))
#s(approx (* (log (- 1 u0)) (neg alpha)) #s(hole binary32 (* u0 (+ alpha (* u0 (+ (* 1/3 (* alpha u0)) (* 1/2 alpha)))))))
#s(approx (* (log (- 1 u0)) (neg alpha)) #s(hole binary32 (* u0 (+ alpha (* u0 (+ (* 1/2 alpha) (* u0 (+ (* 1/4 (* alpha u0)) (* 1/3 alpha)))))))))
#s(approx (- 1 u0) #s(hole binary32 1))
#s(approx (- 1 u0) #s(hole binary32 (+ 1 (* -1 u0))))
#s(approx (log (+ 1 (neg u0))) #s(hole binary32 (* -1 u0)))
#s(approx (log (+ 1 (neg u0))) #s(hole binary32 (* u0 (- (* -1/2 u0) 1))))
#s(approx (log (+ 1 (neg u0))) #s(hole binary32 (* u0 (- (* u0 (- (* -1/3 u0) 1/2)) 1))))
#s(approx (log (+ 1 (neg u0))) #s(hole binary32 (* u0 (- (* u0 (- (* u0 (- (* -1/4 u0) 1/3)) 1/2)) 1))))
#s(approx (* (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (* alpha alpha)) #s(hole binary32 (pow alpha 2)))
#s(approx (* (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (* alpha alpha)) #s(hole binary32 (+ (* 1/2 (* (pow alpha 2) u0)) (pow alpha 2))))
#s(approx (* (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (* alpha alpha)) #s(hole binary32 (+ (* u0 (+ (* 1/3 (* (pow alpha 2) u0)) (* 1/2 (pow alpha 2)))) (pow alpha 2))))
#s(approx (* (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (* alpha alpha)) #s(hole binary32 (+ (* u0 (+ (* 1/2 (pow alpha 2)) (* u0 (+ (* 1/4 (* (pow alpha 2) u0)) (* 1/3 (pow alpha 2)))))) (pow alpha 2))))
#s(approx (* (+ (* 1/4 u0) 1/3) u0) #s(hole binary32 (* 1/3 u0)))
#s(approx (* (+ (* 1/4 u0) 1/3) u0) #s(hole binary32 (* u0 (+ 1/3 (* 1/4 u0)))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (* -1 (* (pow alpha 2) (+ (log -1) (* -1 (log (/ 1 u0))))))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (+ (* -1 (* (pow alpha 2) (+ (log -1) (* -1 (log (/ 1 u0)))))) (/ (pow alpha 2) u0))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (+ (* -1 (* (pow alpha 2) (+ (log -1) (* -1 (log (/ 1 u0)))))) (+ (* 1/2 (/ (pow alpha 2) (pow u0 2))) (/ (pow alpha 2) u0)))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (+ (* -1 (* (pow alpha 2) (+ (log -1) (* -1 (log (/ 1 u0)))))) (+ (* 1/3 (/ (pow alpha 2) (pow u0 3))) (+ (* 1/2 (/ (pow alpha 2) (pow u0 2))) (/ (pow alpha 2) u0))))))
#s(approx (* (* (neg alpha) alpha) (log (+ 1 (neg u0)))) #s(hole binary32 (* -1 (* (pow alpha 2) (+ (log -1) (* -1 (log (/ 1 u0))))))))
#s(approx (* (* (neg alpha) alpha) (log (+ 1 (neg u0)))) #s(hole binary32 (+ (* -1 (* (pow alpha 2) (+ (log -1) (* -1 (log (/ 1 u0)))))) (/ (pow alpha 2) u0))))
#s(approx (* (* (neg alpha) alpha) (log (+ 1 (neg u0)))) #s(hole binary32 (+ (* -1 (* (pow alpha 2) (+ (log -1) (* -1 (log (/ 1 u0)))))) (+ (* 1/2 (/ (pow alpha 2) (pow u0 2))) (/ (pow alpha 2) u0)))))
#s(approx (* (* (neg alpha) alpha) (log (+ 1 (neg u0)))) #s(hole binary32 (+ (* -1 (* (pow alpha 2) (+ (log -1) (* -1 (log (/ 1 u0)))))) (+ (* 1/3 (/ (pow alpha 2) (pow u0 3))) (+ (* 1/2 (/ (pow alpha 2) (pow u0 2))) (/ (pow alpha 2) u0))))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) #s(hole binary32 (* -1 (* (pow alpha 2) (- (+ (log -1) (* -2 (log (/ 1 u0)))) (* -1 (log (/ 1 u0))))))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) #s(hole binary32 (+ (* -1 (* (pow alpha 2) (- (+ (log -1) (* -2 (log (/ 1 u0)))) (* -1 (log (/ 1 u0)))))) (/ (pow alpha 2) u0))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) #s(hole binary32 (+ (* -1 (* (pow alpha 2) (- (+ (log -1) (* -2 (log (/ 1 u0)))) (* -1 (log (/ 1 u0)))))) (+ (* 1/2 (/ (pow alpha 2) (pow u0 2))) (/ (pow alpha 2) u0)))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) #s(hole binary32 (+ (* -1 (* (pow alpha 2) (- (+ (log -1) (* -2 (log (/ 1 u0)))) (* -1 (log (/ 1 u0)))))) (+ (* 1/3 (/ (pow alpha 2) (pow u0 3))) (+ (* 1/2 (/ (pow alpha 2) (pow u0 2))) (/ (pow alpha 2) u0))))))
#s(approx (* (* (* (+ (* (+ (* 1/3 u0) 1/2) u0) 1) u0) alpha) alpha) #s(hole binary32 (* 1/3 (* (pow alpha 2) (pow u0 3)))))
#s(approx (* (* (* (+ (* (+ (* 1/3 u0) 1/2) u0) 1) u0) alpha) alpha) #s(hole binary32 (* (pow u0 3) (+ (* 1/3 (pow alpha 2)) (* 1/2 (/ (pow alpha 2) u0))))))
#s(approx (* (* (* (+ (* (+ (* 1/3 u0) 1/2) u0) 1) u0) alpha) alpha) #s(hole binary32 (* (pow u0 3) (+ (* 1/3 (pow alpha 2)) (+ (* 1/2 (/ (pow alpha 2) u0)) (/ (pow alpha 2) (pow u0 2)))))))
#s(approx (* (* (+ (* (+ (* 1/3 u0) 1/2) u0) 1) u0) alpha) #s(hole binary32 (* 1/3 (* alpha (pow u0 3)))))
#s(approx (* (* (+ (* (+ (* 1/3 u0) 1/2) u0) 1) u0) alpha) #s(hole binary32 (* (pow u0 3) (+ (* 1/3 alpha) (* 1/2 (/ alpha u0))))))
#s(approx (* (* (+ (* (+ (* 1/3 u0) 1/2) u0) 1) u0) alpha) #s(hole binary32 (* (pow u0 3) (+ (* 1/3 alpha) (+ (* 1/2 (/ alpha u0)) (/ alpha (pow u0 2)))))))
#s(approx (* (+ (* (+ (* 1/3 u0) 1/2) u0) 1) u0) #s(hole binary32 (* 1/3 (pow u0 3))))
#s(approx (* (+ (* (+ (* 1/3 u0) 1/2) u0) 1) u0) #s(hole binary32 (* (pow u0 3) (+ 1/3 (* 1/2 (/ 1 u0))))))
#s(approx (* (+ (* (+ (* 1/3 u0) 1/2) u0) 1) u0) #s(hole binary32 (* (pow u0 3) (+ 1/3 (+ (* 1/2 (/ 1 u0)) (/ 1 (pow u0 2)))))))
#s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) #s(hole binary32 (* 1/4 (pow u0 3))))
#s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) #s(hole binary32 (* (pow u0 3) (+ 1/4 (* 1/3 (/ 1 u0))))))
#s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) #s(hole binary32 (* (pow u0 3) (+ 1/4 (+ (/ 1/2 (pow u0 2)) (* 1/3 (/ 1 u0)))))))
#s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) #s(hole binary32 (* (pow u0 3) (+ 1/4 (+ (/ 1/2 (pow u0 2)) (+ (* 1/3 (/ 1 u0)) (/ 1 (pow u0 3))))))))
#s(approx (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) u0) #s(hole binary32 (* 1/4 (* (pow alpha 2) (pow u0 4)))))
#s(approx (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) u0) #s(hole binary32 (* (pow u0 4) (+ (* 1/4 (pow alpha 2)) (* 1/3 (/ (pow alpha 2) u0))))))
#s(approx (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) u0) #s(hole binary32 (* (pow u0 4) (+ (* 1/4 (pow alpha 2)) (+ (* 1/3 (/ (pow alpha 2) u0)) (* 1/2 (/ (pow alpha 2) (pow u0 2))))))))
#s(approx (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) u0) #s(hole binary32 (* (pow u0 4) (+ (* 1/4 (pow alpha 2)) (+ (* 1/3 (/ (pow alpha 2) u0)) (+ (* 1/2 (/ (pow alpha 2) (pow u0 2))) (/ (pow alpha 2) (pow u0 3))))))))
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) #s(hole binary32 (* 1/4 (* (pow alpha 2) (pow u0 3)))))
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) #s(hole binary32 (* (pow u0 3) (+ (* 1/4 (pow alpha 2)) (* 1/3 (/ (pow alpha 2) u0))))))
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) #s(hole binary32 (* (pow u0 3) (+ (* 1/4 (pow alpha 2)) (+ (* 1/3 (/ (pow alpha 2) u0)) (* 1/2 (/ (pow alpha 2) (pow u0 2))))))))
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) #s(hole binary32 (* (pow u0 3) (+ (* 1/4 (pow alpha 2)) (+ (* 1/3 (/ (pow alpha 2) u0)) (+ (* 1/2 (/ (pow alpha 2) (pow u0 2))) (/ (pow alpha 2) (pow u0 3))))))))
#s(approx (log (- 1 u0)) #s(hole binary32 (+ (log -1) (* -1 (log (/ 1 u0))))))
#s(approx (log (- 1 u0)) #s(hole binary32 (- (+ (log -1) (* -1 (log (/ 1 u0)))) (/ 1 u0))))
#s(approx (log (- 1 u0)) #s(hole binary32 (+ (log -1) (+ (* -1 (log (/ 1 u0))) (* -1 (/ (+ 1 (* 1/2 (/ 1 u0))) u0))))))
#s(approx (log (- 1 u0)) #s(hole binary32 (- (+ (log -1) (+ (* -1 (log (/ 1 u0))) (* -1 (/ (+ 1/2 (* 1/3 (/ 1 u0))) (pow u0 2))))) (/ 1 u0))))
#s(approx (* (* (log (- 1 u0)) (neg alpha)) alpha) #s(hole binary32 (* -1 (* (pow alpha 2) (+ (log -1) (* -1 (log (/ 1 u0))))))))
#s(approx (* (* (log (- 1 u0)) (neg alpha)) alpha) #s(hole binary32 (+ (* -1 (* (pow alpha 2) (+ (log -1) (* -1 (log (/ 1 u0)))))) (/ (pow alpha 2) u0))))
#s(approx (* (* (log (- 1 u0)) (neg alpha)) alpha) #s(hole binary32 (+ (* -1 (* (pow alpha 2) (+ (log -1) (* -1 (log (/ 1 u0)))))) (+ (* 1/2 (/ (pow alpha 2) (pow u0 2))) (/ (pow alpha 2) u0)))))
#s(approx (* (* (log (- 1 u0)) (neg alpha)) alpha) #s(hole binary32 (+ (* -1 (* (pow alpha 2) (+ (log -1) (* -1 (log (/ 1 u0)))))) (+ (* 1/3 (/ (pow alpha 2) (pow u0 3))) (+ (* 1/2 (/ (pow alpha 2) (pow u0 2))) (/ (pow alpha 2) u0))))))
#s(approx (* (log (- 1 u0)) (neg alpha)) #s(hole binary32 (* -1 (* alpha (+ (log -1) (* -1 (log (/ 1 u0))))))))
#s(approx (* (log (- 1 u0)) (neg alpha)) #s(hole binary32 (+ (* -1 (* alpha (+ (log -1) (* -1 (log (/ 1 u0)))))) (/ alpha u0))))
#s(approx (* (log (- 1 u0)) (neg alpha)) #s(hole binary32 (+ (* -1 (* alpha (+ (log -1) (* -1 (log (/ 1 u0)))))) (+ (* 1/2 (/ alpha (pow u0 2))) (/ alpha u0)))))
#s(approx (* (log (- 1 u0)) (neg alpha)) #s(hole binary32 (+ (* -1 (* alpha (+ (log -1) (* -1 (log (/ 1 u0)))))) (+ (* 1/3 (/ alpha (pow u0 3))) (+ (* 1/2 (/ alpha (pow u0 2))) (/ alpha u0))))))
#s(approx (- 1 u0) #s(hole binary32 (* -1 u0)))
#s(approx (- 1 u0) #s(hole binary32 (* u0 (- (/ 1 u0) 1))))
#s(approx (log (+ 1 (neg u0))) #s(hole binary32 (+ (log -1) (* -1 (log (/ 1 u0))))))
#s(approx (log (+ 1 (neg u0))) #s(hole binary32 (- (+ (log -1) (* -1 (log (/ 1 u0)))) (/ 1 u0))))
#s(approx (log (+ 1 (neg u0))) #s(hole binary32 (+ (log -1) (+ (* -1 (log (/ 1 u0))) (* -1 (/ (+ 1 (* 1/2 (/ 1 u0))) u0))))))
#s(approx (log (+ 1 (neg u0))) #s(hole binary32 (- (+ (log -1) (+ (* -1 (log (/ 1 u0))) (* -1 (/ (+ 1/2 (* 1/3 (/ 1 u0))) (pow u0 2))))) (/ 1 u0))))
#s(approx (* (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (* alpha alpha)) #s(hole binary32 (* 1/4 (* (pow alpha 2) (pow u0 3)))))
#s(approx (* (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (* alpha alpha)) #s(hole binary32 (* (pow u0 3) (+ (* 1/4 (pow alpha 2)) (* 1/3 (/ (pow alpha 2) u0))))))
#s(approx (* (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (* alpha alpha)) #s(hole binary32 (* (pow u0 3) (+ (* 1/4 (pow alpha 2)) (+ (* 1/3 (/ (pow alpha 2) u0)) (* 1/2 (/ (pow alpha 2) (pow u0 2))))))))
#s(approx (* (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (* alpha alpha)) #s(hole binary32 (* (pow u0 3) (+ (* 1/4 (pow alpha 2)) (+ (* 1/3 (/ (pow alpha 2) u0)) (+ (* 1/2 (/ (pow alpha 2) (pow u0 2))) (/ (pow alpha 2) (pow u0 3))))))))
#s(approx (* (+ (* 1/4 u0) 1/3) u0) #s(hole binary32 (* 1/4 (pow u0 2))))
#s(approx (* (+ (* 1/4 u0) 1/3) u0) #s(hole binary32 (* (pow u0 2) (+ 1/4 (* 1/3 (/ 1 u0))))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (* (pow alpha 2) (log (/ -1 u0)))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (+ (* (pow alpha 2) (log (/ -1 u0))) (/ (pow alpha 2) u0))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (+ (* -1 (/ (+ (* -1 (pow alpha 2)) (* -1/2 (/ (pow alpha 2) u0))) u0)) (* (pow alpha 2) (log (/ -1 u0))))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (+ (* -1 (/ (+ (* -1 (/ (+ (* 1/3 (/ (pow alpha 2) u0)) (* 1/2 (pow alpha 2))) u0)) (* -1 (pow alpha 2))) u0)) (* (pow alpha 2) (log (/ -1 u0))))))
#s(approx (* (* (neg alpha) alpha) (log (+ 1 (neg u0)))) #s(hole binary32 (* (pow alpha 2) (log (/ -1 u0)))))
#s(approx (* (* (neg alpha) alpha) (log (+ 1 (neg u0)))) #s(hole binary32 (+ (* (pow alpha 2) (log (/ -1 u0))) (/ (pow alpha 2) u0))))
#s(approx (* (* (neg alpha) alpha) (log (+ 1 (neg u0)))) #s(hole binary32 (+ (* -1 (/ (+ (* -1 (pow alpha 2)) (* -1/2 (/ (pow alpha 2) u0))) u0)) (* (pow alpha 2) (log (/ -1 u0))))))
#s(approx (* (* (neg alpha) alpha) (log (+ 1 (neg u0)))) #s(hole binary32 (+ (* -1 (/ (+ (* -1 (/ (+ (* 1/3 (/ (pow alpha 2) u0)) (* 1/2 (pow alpha 2))) u0)) (* -1 (pow alpha 2))) u0)) (* (pow alpha 2) (log (/ -1 u0))))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) #s(hole binary32 (* -1 (* (pow alpha 2) (- (* -2 (log (/ -1 u0))) (* -1 (log (/ -1 u0))))))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) #s(hole binary32 (+ (* -1 (* (pow alpha 2) (- (* -2 (log (/ -1 u0))) (* -1 (log (/ -1 u0)))))) (/ (pow alpha 2) u0))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) #s(hole binary32 (+ (* -1 (* (pow alpha 2) (- (* -2 (log (/ -1 u0))) (* -1 (log (/ -1 u0)))))) (* -1 (/ (+ (* -1 (pow alpha 2)) (* -1/2 (/ (pow alpha 2) u0))) u0)))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) #s(hole binary32 (+ (* -1 (* (pow alpha 2) (- (* -2 (log (/ -1 u0))) (* -1 (log (/ -1 u0)))))) (* -1 (/ (+ (* -1 (/ (+ (* 1/3 (/ (pow alpha 2) u0)) (* 1/2 (pow alpha 2))) u0)) (* -1 (pow alpha 2))) u0)))))
#s(approx (* (* (* (+ (* (+ (* 1/3 u0) 1/2) u0) 1) u0) alpha) alpha) #s(hole binary32 (* -1 (* (pow u0 3) (+ (* -1/2 (/ (pow alpha 2) u0)) (* -1/3 (pow alpha 2)))))))
#s(approx (* (* (* (+ (* (+ (* 1/3 u0) 1/2) u0) 1) u0) alpha) alpha) #s(hole binary32 (* -1 (* (pow u0 3) (+ (* -1 (/ (+ (* 1/2 (pow alpha 2)) (/ (pow alpha 2) u0)) u0)) (* -1/3 (pow alpha 2)))))))
#s(approx (* (* (+ (* (+ (* 1/3 u0) 1/2) u0) 1) u0) alpha) #s(hole binary32 (* -1 (* (pow u0 3) (+ (* -1/2 (/ alpha u0)) (* -1/3 alpha))))))
#s(approx (* (* (+ (* (+ (* 1/3 u0) 1/2) u0) 1) u0) alpha) #s(hole binary32 (* -1 (* (pow u0 3) (+ (* -1 (/ (+ (* 1/2 alpha) (/ alpha u0)) u0)) (* -1/3 alpha))))))
#s(approx (* (+ (* (+ (* 1/3 u0) 1/2) u0) 1) u0) #s(hole binary32 (* -1 (* (pow u0 3) (- (* -1 (/ (+ 1/2 (/ 1 u0)) u0)) 1/3)))))
#s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) #s(hole binary32 (* -1 (* (pow u0 3) (- (* -1 (/ (+ 1/3 (* 1/2 (/ 1 u0))) u0)) 1/4)))))
#s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) #s(hole binary32 (* -1 (* (pow u0 3) (- (* -1 (/ (+ 1/3 (+ (* 1/2 (/ 1 u0)) (/ 1 (pow u0 2)))) u0)) 1/4)))))
#s(approx (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) u0) #s(hole binary32 (* (pow u0 4) (+ (* -1 (/ (+ (* -1/2 (/ (pow alpha 2) u0)) (* -1/3 (pow alpha 2))) u0)) (* 1/4 (pow alpha 2))))))
#s(approx (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) u0) #s(hole binary32 (* (pow u0 4) (+ (* -1 (/ (+ (* -1 (/ (+ (* 1/2 (pow alpha 2)) (/ (pow alpha 2) u0)) u0)) (* -1/3 (pow alpha 2))) u0)) (* 1/4 (pow alpha 2))))))
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) #s(hole binary32 (* -1 (* (pow u0 3) (+ (* -1/3 (/ (pow alpha 2) u0)) (* -1/4 (pow alpha 2)))))))
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) #s(hole binary32 (* -1 (* (pow u0 3) (+ (* -1 (/ (+ (* 1/3 (pow alpha 2)) (* 1/2 (/ (pow alpha 2) u0))) u0)) (* -1/4 (pow alpha 2)))))))
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) #s(hole binary32 (* -1 (* (pow u0 3) (+ (* -1 (/ (+ (* -1 (/ (+ (* -1 (/ (pow alpha 2) u0)) (* -1/2 (pow alpha 2))) u0)) (* 1/3 (pow alpha 2))) u0)) (* -1/4 (pow alpha 2)))))))
#s(approx (log (- 1 u0)) #s(hole binary32 (* -1 (log (/ -1 u0)))))
#s(approx (log (- 1 u0)) #s(hole binary32 (- (* -1 (log (/ -1 u0))) (/ 1 u0))))
#s(approx (log (- 1 u0)) #s(hole binary32 (+ (* -1 (log (/ -1 u0))) (* -1 (/ (+ 1 (* 1/2 (/ 1 u0))) u0)))))
#s(approx (log (- 1 u0)) #s(hole binary32 (+ (* -1 (log (/ -1 u0))) (* -1 (/ (+ 1 (+ (/ 1/3 (pow u0 2)) (* 1/2 (/ 1 u0)))) u0)))))
#s(approx (* (* (log (- 1 u0)) (neg alpha)) alpha) #s(hole binary32 (* (pow alpha 2) (log (/ -1 u0)))))
#s(approx (* (* (log (- 1 u0)) (neg alpha)) alpha) #s(hole binary32 (+ (* (pow alpha 2) (log (/ -1 u0))) (/ (pow alpha 2) u0))))
#s(approx (* (* (log (- 1 u0)) (neg alpha)) alpha) #s(hole binary32 (+ (* -1 (/ (+ (* -1 (pow alpha 2)) (* -1/2 (/ (pow alpha 2) u0))) u0)) (* (pow alpha 2) (log (/ -1 u0))))))
#s(approx (* (* (log (- 1 u0)) (neg alpha)) alpha) #s(hole binary32 (+ (* -1 (/ (+ (* -1 (/ (+ (* 1/3 (/ (pow alpha 2) u0)) (* 1/2 (pow alpha 2))) u0)) (* -1 (pow alpha 2))) u0)) (* (pow alpha 2) (log (/ -1 u0))))))
#s(approx (* (log (- 1 u0)) (neg alpha)) #s(hole binary32 (* alpha (log (/ -1 u0)))))
#s(approx (* (log (- 1 u0)) (neg alpha)) #s(hole binary32 (+ (* alpha (log (/ -1 u0))) (/ alpha u0))))
#s(approx (* (log (- 1 u0)) (neg alpha)) #s(hole binary32 (+ (* -1 (/ (+ (* -1 alpha) (* -1/2 (/ alpha u0))) u0)) (* alpha (log (/ -1 u0))))))
#s(approx (* (log (- 1 u0)) (neg alpha)) #s(hole binary32 (+ (* -1 (/ (+ (* -1 alpha) (* -1 (/ (+ (* 1/3 (/ alpha u0)) (* 1/2 alpha)) u0))) u0)) (* alpha (log (/ -1 u0))))))
#s(approx (- 1 u0) #s(hole binary32 (* -1 (* u0 (- 1 (/ 1 u0))))))
#s(approx (log (+ 1 (neg u0))) #s(hole binary32 (* -1 (log (/ -1 u0)))))
#s(approx (log (+ 1 (neg u0))) #s(hole binary32 (- (* -1 (log (/ -1 u0))) (/ 1 u0))))
#s(approx (log (+ 1 (neg u0))) #s(hole binary32 (+ (* -1 (log (/ -1 u0))) (* -1 (/ (+ 1 (* 1/2 (/ 1 u0))) u0)))))
#s(approx (log (+ 1 (neg u0))) #s(hole binary32 (+ (* -1 (log (/ -1 u0))) (* -1 (/ (+ 1 (+ (/ 1/3 (pow u0 2)) (* 1/2 (/ 1 u0)))) u0)))))
#s(approx (* (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (* alpha alpha)) #s(hole binary32 (* -1 (* (pow u0 3) (+ (* -1/3 (/ (pow alpha 2) u0)) (* -1/4 (pow alpha 2)))))))
#s(approx (* (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (* alpha alpha)) #s(hole binary32 (* -1 (* (pow u0 3) (+ (* -1 (/ (+ (* 1/3 (pow alpha 2)) (* 1/2 (/ (pow alpha 2) u0))) u0)) (* -1/4 (pow alpha 2)))))))
#s(approx (* (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (* alpha alpha)) #s(hole binary32 (* -1 (* (pow u0 3) (+ (* -1 (/ (+ (* -1 (/ (+ (* -1 (/ (pow alpha 2) u0)) (* -1/2 (pow alpha 2))) u0)) (* 1/3 (pow alpha 2))) u0)) (* -1/4 (pow alpha 2)))))))
Outputs
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (* -1 (* (pow alpha 2) (log (- 1 u0))))))
#s(approx (* (* (log (- 1 u0)) (neg alpha)) alpha) (*.f32 (*.f32 (neg.f32 alpha) alpha) (log1p.f32 (neg.f32 u0))))
#s(approx (* (* (neg alpha) alpha) (log (+ 1 (neg u0)))) #s(hole binary32 (* -1 (* (pow alpha 2) (log (- 1 u0))))))
#s(approx (* (* (log (- 1 u0)) (neg alpha)) alpha) (*.f32 (*.f32 (neg.f32 alpha) alpha) (log1p.f32 (neg.f32 u0))))
#s(approx (* (neg alpha) alpha) #s(hole binary32 (* -1 (pow alpha 2))))
#s(approx (* (neg alpha) alpha) (*.f32 (neg.f32 alpha) alpha))
#s(approx (neg alpha) #s(hole binary32 (* -1 alpha)))
#s(approx (neg alpha) (neg.f32 alpha))
#s(approx (* (* u0 alpha) alpha) #s(hole binary32 (* (pow alpha 2) u0)))
#s(approx (* (* u0 alpha) alpha) (*.f32 (*.f32 alpha alpha) u0))
#s(approx (* u0 alpha) #s(hole binary32 (* alpha u0)))
#s(approx (* u0 alpha) (*.f32 u0 alpha))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) #s(hole binary32 (* -1 (* (pow alpha 2) (- (log (+ 1 (* -1 (pow u0 2)))) (log (+ 1 u0)))))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (-.f32 (log1p.f32 (*.f32 (neg.f32 u0) u0)) (log1p.f32 u0)) (neg.f32 alpha)) alpha))
#s(approx (* (* (* (+ (* (+ (* 1/3 u0) 1/2) u0) 1) u0) alpha) alpha) #s(hole binary32 (* (pow alpha 2) (* u0 (+ 1 (* u0 (+ 1/2 (* 1/3 u0))))))))
#s(approx (* (* (* (+ (* (+ (* 1/3 u0) 1/2) u0) 1) u0) alpha) alpha) (*.f32 (*.f32 alpha (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32))) (*.f32 u0 alpha)))
#s(approx (* (* (+ (* (+ (* 1/3 u0) 1/2) u0) 1) u0) alpha) #s(hole binary32 (* alpha (* u0 (+ 1 (* u0 (+ 1/2 (* 1/3 u0))))))))
#s(approx (* (* (+ (* (+ (* 1/3 u0) 1/2) u0) 1) u0) alpha) (*.f32 (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) alpha) u0))
#s(approx (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) u0) #s(hole binary32 (* (pow alpha 2) (* u0 (+ 1 (+ (* 1/2 u0) (* (pow u0 2) (+ 1/3 (* 1/4 u0)))))))))
#s(approx (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) u0) (*.f32 (*.f32 (fma.f32 (fma.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) (*.f32 alpha alpha)) u0))
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) #s(hole binary32 (* (pow alpha 2) (+ 1 (+ (* 1/2 u0) (* (pow u0 2) (+ 1/3 (* 1/4 u0))))))))
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 (fma.f32 (fma.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) (*.f32 alpha alpha)))
#s(approx (* (* (log (- 1 u0)) (neg alpha)) alpha) #s(hole binary32 (* -1 (* (pow alpha 2) (log (- 1 u0))))))
#s(approx (* (* (log (- 1 u0)) (neg alpha)) alpha) (*.f32 (*.f32 (neg.f32 alpha) alpha) (log1p.f32 (neg.f32 u0))))
#s(approx (* (log (- 1 u0)) (neg alpha)) #s(hole binary32 (* -1 (* alpha (log (- 1 u0))))))
#s(approx (* (log (- 1 u0)) (neg alpha)) (*.f32 (neg.f32 alpha) (log1p.f32 (neg.f32 u0))))
#s(approx (* (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (* alpha alpha)) #s(hole binary32 (* (pow alpha 2) (+ 1 (+ (* 1/2 u0) (* (pow u0 2) (+ 1/3 (* 1/4 u0))))))))
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 (fma.f32 (fma.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) (*.f32 alpha alpha)))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (* (pow alpha 2) u0)))
#s(approx (* (* (log (- 1 u0)) (neg alpha)) alpha) (*.f32 (*.f32 alpha alpha) u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (* u0 (+ (* 1/2 (* (pow alpha 2) u0)) (pow alpha 2)))))
#s(approx (* (* (log (- 1 u0)) (neg alpha)) alpha) (*.f32 (*.f32 (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) alpha) alpha) u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (* u0 (+ (* u0 (+ (* 1/3 (* (pow alpha 2) u0)) (* 1/2 (pow alpha 2)))) (pow alpha 2)))))
#s(approx (* (* (log (- 1 u0)) (neg alpha)) alpha) (*.f32 (fma.f32 (fma.f32 (*.f32 (*.f32 alpha alpha) u0) #s(literal 1/3 binary32) (*.f32 (*.f32 alpha alpha) #s(literal 1/2 binary32))) u0 (*.f32 alpha alpha)) u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (* u0 (+ (* u0 (+ (* 1/2 (pow alpha 2)) (* u0 (+ (* 1/4 (* (pow alpha 2) u0)) (* 1/3 (pow alpha 2)))))) (pow alpha 2)))))
#s(approx (* (* (log (- 1 u0)) (neg alpha)) alpha) (*.f32 (*.f32 (fma.f32 (fma.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) (*.f32 alpha alpha)) u0))
#s(approx (* (* (neg alpha) alpha) (log (+ 1 (neg u0)))) #s(hole binary32 (* (pow alpha 2) u0)))
#s(approx (* (* (log (- 1 u0)) (neg alpha)) alpha) (*.f32 (*.f32 alpha alpha) u0))
#s(approx (* (* (neg alpha) alpha) (log (+ 1 (neg u0)))) #s(hole binary32 (* u0 (+ (* 1/2 (* (pow alpha 2) u0)) (pow alpha 2)))))
#s(approx (* (* (log (- 1 u0)) (neg alpha)) alpha) (*.f32 (*.f32 (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) alpha) alpha) u0))
#s(approx (* (* (neg alpha) alpha) (log (+ 1 (neg u0)))) #s(hole binary32 (* u0 (+ (* u0 (+ (* 1/3 (* (pow alpha 2) u0)) (* 1/2 (pow alpha 2)))) (pow alpha 2)))))
#s(approx (* (* (log (- 1 u0)) (neg alpha)) alpha) (*.f32 (fma.f32 (fma.f32 (*.f32 (*.f32 alpha alpha) u0) #s(literal 1/3 binary32) (*.f32 (*.f32 alpha alpha) #s(literal 1/2 binary32))) u0 (*.f32 alpha alpha)) u0))
#s(approx (* (* (neg alpha) alpha) (log (+ 1 (neg u0)))) #s(hole binary32 (* u0 (+ (* u0 (+ (* 1/2 (pow alpha 2)) (* u0 (+ (* 1/4 (* (pow alpha 2) u0)) (* 1/3 (pow alpha 2)))))) (pow alpha 2)))))
#s(approx (* (* (log (- 1 u0)) (neg alpha)) alpha) (*.f32 (*.f32 (fma.f32 (fma.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) (*.f32 alpha alpha)) u0))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) #s(hole binary32 (* (pow alpha 2) u0)))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 alpha alpha) u0))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) #s(hole binary32 (* u0 (+ (* 1/2 (* (pow alpha 2) u0)) (pow alpha 2)))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) alpha) alpha) u0))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) #s(hole binary32 (* u0 (+ (* u0 (+ (* 1/3 (* (pow alpha 2) u0)) (* 1/2 (pow alpha 2)))) (pow alpha 2)))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (fma.f32 (fma.f32 (*.f32 (*.f32 alpha alpha) u0) #s(literal 1/3 binary32) (*.f32 (*.f32 alpha alpha) #s(literal 1/2 binary32))) u0 (*.f32 alpha alpha)) u0))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) #s(hole binary32 (* u0 (+ (* u0 (+ (* 1/2 (pow alpha 2)) (* u0 (+ (* 1/4 (* (pow alpha 2) u0)) (* 1/3 (pow alpha 2)))))) (pow alpha 2)))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (fma.f32 (fma.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) (*.f32 alpha alpha)) u0))
#s(approx (* (* (* (+ (* (+ (* 1/3 u0) 1/2) u0) 1) u0) alpha) alpha) #s(hole binary32 (* (pow alpha 2) u0)))
#s(approx (* (* (* (+ (* (+ (* 1/3 u0) 1/2) u0) 1) u0) alpha) alpha) (*.f32 (*.f32 alpha alpha) u0))
#s(approx (* (* (* (+ (* (+ (* 1/3 u0) 1/2) u0) 1) u0) alpha) alpha) #s(hole binary32 (* u0 (+ (* 1/2 (* (pow alpha 2) u0)) (pow alpha 2)))))
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#s(approx (* (* (log (- 1 u0)) (neg alpha)) alpha) (fma.f32 (log.f32 (/.f32 #s(literal -1 binary32) u0)) (*.f32 alpha alpha) (/.f32 (fma.f32 alpha alpha (*.f32 (/.f32 (*.f32 alpha alpha) u0) #s(literal 1/2 binary32))) u0)))
#s(approx (* (* (neg alpha) alpha) (log (+ 1 (neg u0)))) #s(hole binary32 (+ (* -1 (/ (+ (* -1 (/ (+ (* 1/3 (/ (pow alpha 2) u0)) (* 1/2 (pow alpha 2))) u0)) (* -1 (pow alpha 2))) u0)) (* (pow alpha 2) (log (/ -1 u0))))))
#s(approx (* (* (log (- 1 u0)) (neg alpha)) alpha) (-.f32 (*.f32 (log.f32 (/.f32 #s(literal -1 binary32) u0)) (*.f32 alpha alpha)) (/.f32 (-.f32 (/.f32 (fma.f32 (*.f32 #s(literal -1/2 binary32) alpha) alpha (*.f32 (/.f32 (*.f32 alpha alpha) u0) #s(literal -1/3 binary32))) u0) (*.f32 alpha alpha)) u0)))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) #s(hole binary32 (* -1 (* (pow alpha 2) (- (* -2 (log (/ -1 u0))) (* -1 (log (/ -1 u0))))))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (log.f32 (/.f32 #s(literal -1 binary32) u0)) (*.f32 alpha alpha)))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) #s(hole binary32 (+ (* -1 (* (pow alpha 2) (- (* -2 (log (/ -1 u0))) (* -1 (log (/ -1 u0)))))) (/ (pow alpha 2) u0))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (fma.f32 (log.f32 (/.f32 #s(literal -1 binary32) u0)) (*.f32 alpha alpha) (/.f32 (*.f32 alpha alpha) u0)))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) #s(hole binary32 (+ (* -1 (* (pow alpha 2) (- (* -2 (log (/ -1 u0))) (* -1 (log (/ -1 u0)))))) (* -1 (/ (+ (* -1 (pow alpha 2)) (* -1/2 (/ (pow alpha 2) u0))) u0)))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (fma.f32 (log.f32 (/.f32 #s(literal -1 binary32) u0)) (*.f32 alpha alpha) (/.f32 (fma.f32 alpha alpha (*.f32 (/.f32 (*.f32 alpha alpha) u0) #s(literal 1/2 binary32))) u0)))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) #s(hole binary32 (+ (* -1 (* (pow alpha 2) (- (* -2 (log (/ -1 u0))) (* -1 (log (/ -1 u0)))))) (* -1 (/ (+ (* -1 (/ (+ (* 1/3 (/ (pow alpha 2) u0)) (* 1/2 (pow alpha 2))) u0)) (* -1 (pow alpha 2))) u0)))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (-.f32 (*.f32 (log.f32 (/.f32 #s(literal -1 binary32) u0)) (*.f32 alpha alpha)) (/.f32 (-.f32 (/.f32 (fma.f32 (*.f32 #s(literal -1/2 binary32) alpha) alpha (*.f32 (/.f32 (*.f32 alpha alpha) u0) #s(literal -1/3 binary32))) u0) (*.f32 alpha alpha)) u0)))
#s(approx (* (* (* (+ (* (+ (* 1/3 u0) 1/2) u0) 1) u0) alpha) alpha) #s(hole binary32 (* -1 (* (pow u0 3) (+ (* -1/2 (/ (pow alpha 2) u0)) (* -1/3 (pow alpha 2)))))))
#s(approx (* (* (* (+ (* (+ (* 1/3 u0) 1/2) u0) 1) u0) alpha) alpha) (*.f32 (fma.f32 (/.f32 (*.f32 alpha alpha) u0) #s(literal 1/2 binary32) (*.f32 (*.f32 alpha alpha) #s(literal 1/3 binary32))) (pow.f32 u0 #s(literal 3 binary32))))
#s(approx (* (* (* (+ (* (+ (* 1/3 u0) 1/2) u0) 1) u0) alpha) alpha) #s(hole binary32 (* -1 (* (pow u0 3) (+ (* -1 (/ (+ (* 1/2 (pow alpha 2)) (/ (pow alpha 2) u0)) u0)) (* -1/3 (pow alpha 2)))))))
#s(approx (* (* (* (+ (* (+ (* 1/3 u0) 1/2) u0) 1) u0) alpha) alpha) (*.f32 (fma.f32 (*.f32 #s(literal 1/3 binary32) alpha) alpha (/.f32 (fma.f32 (*.f32 #s(literal 1/2 binary32) alpha) alpha (/.f32 (*.f32 alpha alpha) u0)) u0)) (pow.f32 u0 #s(literal 3 binary32))))
#s(approx (* (* (+ (* (+ (* 1/3 u0) 1/2) u0) 1) u0) alpha) #s(hole binary32 (* -1 (* (pow u0 3) (+ (* -1/2 (/ alpha u0)) (* -1/3 alpha))))))
#s(approx (* (* (+ (* (+ (* 1/3 u0) 1/2) u0) 1) u0) alpha) (*.f32 (fma.f32 (/.f32 alpha u0) #s(literal 1/2 binary32) (*.f32 #s(literal 1/3 binary32) alpha)) (pow.f32 u0 #s(literal 3 binary32))))
#s(approx (* (* (+ (* (+ (* 1/3 u0) 1/2) u0) 1) u0) alpha) #s(hole binary32 (* -1 (* (pow u0 3) (+ (* -1 (/ (+ (* 1/2 alpha) (/ alpha u0)) u0)) (* -1/3 alpha))))))
#s(approx (* (* (+ (* (+ (* 1/3 u0) 1/2) u0) 1) u0) alpha) (*.f32 (fma.f32 #s(literal 1/3 binary32) alpha (/.f32 (fma.f32 #s(literal 1/2 binary32) alpha (/.f32 alpha u0)) u0)) (pow.f32 u0 #s(literal 3 binary32))))
#s(approx (* (+ (* (+ (* 1/3 u0) 1/2) u0) 1) u0) #s(hole binary32 (* -1 (* (pow u0 3) (- (* -1 (/ (+ 1/2 (/ 1 u0)) u0)) 1/3)))))
#s(approx (* (+ (* (+ (* 1/3 u0) 1/2) u0) 1) u0) (*.f32 (pow.f32 (neg.f32 u0) #s(literal 3 binary32)) (-.f32 (/.f32 (fma.f32 (/.f32 #s(literal 1 binary32) u0) #s(literal -1 binary32) #s(literal -1/2 binary32)) u0) #s(literal 1/3 binary32))))
#s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) #s(hole binary32 (* -1 (* (pow u0 3) (- (* -1 (/ (+ 1/3 (* 1/2 (/ 1 u0))) u0)) 1/4)))))
#s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (*.f32 (pow.f32 (neg.f32 u0) #s(literal 3 binary32)) (-.f32 (/.f32 (+.f32 (/.f32 #s(literal -1/2 binary32) u0) #s(literal -1/3 binary32)) u0) #s(literal 1/4 binary32))))
#s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) #s(hole binary32 (* -1 (* (pow u0 3) (- (* -1 (/ (+ 1/3 (+ (* 1/2 (/ 1 u0)) (/ 1 (pow u0 2)))) u0)) 1/4)))))
#s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (*.f32 (pow.f32 (neg.f32 u0) #s(literal 3 binary32)) (-.f32 (/.f32 (-.f32 (/.f32 (fma.f32 (/.f32 #s(literal 1 binary32) u0) #s(literal -1 binary32) #s(literal -1/2 binary32)) u0) #s(literal 1/3 binary32)) u0) #s(literal 1/4 binary32))))
#s(approx (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) u0) #s(hole binary32 (* (pow u0 4) (+ (* -1 (/ (+ (* -1/2 (/ (pow alpha 2) u0)) (* -1/3 (pow alpha 2))) u0)) (* 1/4 (pow alpha 2))))))
#s(approx (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) u0) (*.f32 (fma.f32 (*.f32 alpha alpha) #s(literal 1/4 binary32) (/.f32 (fma.f32 (/.f32 (*.f32 alpha alpha) u0) #s(literal 1/2 binary32) (*.f32 (*.f32 alpha alpha) #s(literal 1/3 binary32))) u0)) (pow.f32 u0 #s(literal 4 binary32))))
#s(approx (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) u0) #s(hole binary32 (* (pow u0 4) (+ (* -1 (/ (+ (* -1 (/ (+ (* 1/2 (pow alpha 2)) (/ (pow alpha 2) u0)) u0)) (* -1/3 (pow alpha 2))) u0)) (* 1/4 (pow alpha 2))))))
#s(approx (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) u0) (*.f32 (fma.f32 (*.f32 #s(literal 1/4 binary32) alpha) alpha (/.f32 (fma.f32 (*.f32 #s(literal 1/3 binary32) alpha) alpha (/.f32 (fma.f32 (*.f32 #s(literal 1/2 binary32) alpha) alpha (/.f32 (*.f32 alpha alpha) u0)) u0)) u0)) (pow.f32 u0 #s(literal 4 binary32))))
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) #s(hole binary32 (* -1 (* (pow u0 3) (+ (* -1/3 (/ (pow alpha 2) u0)) (* -1/4 (pow alpha 2)))))))
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 (fma.f32 (/.f32 (*.f32 alpha alpha) u0) #s(literal 1/3 binary32) (*.f32 (*.f32 alpha alpha) #s(literal 1/4 binary32))) (pow.f32 u0 #s(literal 3 binary32))))
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) #s(hole binary32 (* -1 (* (pow u0 3) (+ (* -1 (/ (+ (* 1/3 (pow alpha 2)) (* 1/2 (/ (pow alpha 2) u0))) u0)) (* -1/4 (pow alpha 2)))))))
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 (fma.f32 (*.f32 alpha alpha) #s(literal 1/4 binary32) (/.f32 (fma.f32 (/.f32 (*.f32 alpha alpha) u0) #s(literal 1/2 binary32) (*.f32 (*.f32 alpha alpha) #s(literal 1/3 binary32))) u0)) (pow.f32 u0 #s(literal 3 binary32))))
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) #s(hole binary32 (* -1 (* (pow u0 3) (+ (* -1 (/ (+ (* -1 (/ (+ (* -1 (/ (pow alpha 2) u0)) (* -1/2 (pow alpha 2))) u0)) (* 1/3 (pow alpha 2))) u0)) (* -1/4 (pow alpha 2)))))))
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 (fma.f32 (*.f32 #s(literal 1/4 binary32) alpha) alpha (/.f32 (fma.f32 (*.f32 #s(literal 1/3 binary32) alpha) alpha (/.f32 (fma.f32 (*.f32 #s(literal 1/2 binary32) alpha) alpha (/.f32 (*.f32 alpha alpha) u0)) u0)) u0)) (pow.f32 u0 #s(literal 3 binary32))))
#s(approx (log (- 1 u0)) #s(hole binary32 (* -1 (log (/ -1 u0)))))
#s(approx (log (- 1 u0)) (neg.f32 (log.f32 (/.f32 #s(literal -1 binary32) u0))))
#s(approx (log (- 1 u0)) #s(hole binary32 (- (* -1 (log (/ -1 u0))) (/ 1 u0))))
#s(approx (log (- 1 u0)) (-.f32 (neg.f32 (log.f32 (/.f32 #s(literal -1 binary32) u0))) (/.f32 #s(literal 1 binary32) u0)))
#s(approx (log (- 1 u0)) #s(hole binary32 (+ (* -1 (log (/ -1 u0))) (* -1 (/ (+ 1 (* 1/2 (/ 1 u0))) u0)))))
#s(approx (log (- 1 u0)) (-.f32 (/.f32 (-.f32 (/.f32 #s(literal -1/2 binary32) u0) #s(literal 1 binary32)) u0) (log.f32 (/.f32 #s(literal -1 binary32) u0))))
#s(approx (log (- 1 u0)) #s(hole binary32 (+ (* -1 (log (/ -1 u0))) (* -1 (/ (+ 1 (+ (/ 1/3 (pow u0 2)) (* 1/2 (/ 1 u0)))) u0)))))
#s(approx (log (- 1 u0)) (-.f32 (/.f32 (fma.f32 (/.f32 (-.f32 (/.f32 #s(literal 1/3 binary32) u0) #s(literal -1/2 binary32)) u0) #s(literal -1 binary32) #s(literal -1 binary32)) u0) (log.f32 (/.f32 #s(literal -1 binary32) u0))))
#s(approx (* (* (log (- 1 u0)) (neg alpha)) alpha) #s(hole binary32 (* (pow alpha 2) (log (/ -1 u0)))))
#s(approx (* (* (log (- 1 u0)) (neg alpha)) alpha) (*.f32 (log.f32 (/.f32 #s(literal -1 binary32) u0)) (*.f32 alpha alpha)))
#s(approx (* (* (log (- 1 u0)) (neg alpha)) alpha) #s(hole binary32 (+ (* (pow alpha 2) (log (/ -1 u0))) (/ (pow alpha 2) u0))))
#s(approx (* (* (log (- 1 u0)) (neg alpha)) alpha) (fma.f32 (log.f32 (/.f32 #s(literal -1 binary32) u0)) (*.f32 alpha alpha) (/.f32 (*.f32 alpha alpha) u0)))
#s(approx (* (* (log (- 1 u0)) (neg alpha)) alpha) #s(hole binary32 (+ (* -1 (/ (+ (* -1 (pow alpha 2)) (* -1/2 (/ (pow alpha 2) u0))) u0)) (* (pow alpha 2) (log (/ -1 u0))))))
#s(approx (* (* (log (- 1 u0)) (neg alpha)) alpha) (fma.f32 (log.f32 (/.f32 #s(literal -1 binary32) u0)) (*.f32 alpha alpha) (/.f32 (fma.f32 alpha alpha (*.f32 (/.f32 (*.f32 alpha alpha) u0) #s(literal 1/2 binary32))) u0)))
#s(approx (* (* (log (- 1 u0)) (neg alpha)) alpha) #s(hole binary32 (+ (* -1 (/ (+ (* -1 (/ (+ (* 1/3 (/ (pow alpha 2) u0)) (* 1/2 (pow alpha 2))) u0)) (* -1 (pow alpha 2))) u0)) (* (pow alpha 2) (log (/ -1 u0))))))
#s(approx (* (* (log (- 1 u0)) (neg alpha)) alpha) (-.f32 (*.f32 (log.f32 (/.f32 #s(literal -1 binary32) u0)) (*.f32 alpha alpha)) (/.f32 (-.f32 (/.f32 (fma.f32 (*.f32 #s(literal -1/2 binary32) alpha) alpha (*.f32 (/.f32 (*.f32 alpha alpha) u0) #s(literal -1/3 binary32))) u0) (*.f32 alpha alpha)) u0)))
#s(approx (* (log (- 1 u0)) (neg alpha)) #s(hole binary32 (* alpha (log (/ -1 u0)))))
#s(approx (* (log (- 1 u0)) (neg alpha)) (*.f32 (log.f32 (/.f32 #s(literal -1 binary32) u0)) alpha))
#s(approx (* (log (- 1 u0)) (neg alpha)) #s(hole binary32 (+ (* alpha (log (/ -1 u0))) (/ alpha u0))))
#s(approx (* (log (- 1 u0)) (neg alpha)) (fma.f32 (log.f32 (/.f32 #s(literal -1 binary32) u0)) alpha (/.f32 alpha u0)))
#s(approx (* (log (- 1 u0)) (neg alpha)) #s(hole binary32 (+ (* -1 (/ (+ (* -1 alpha) (* -1/2 (/ alpha u0))) u0)) (* alpha (log (/ -1 u0))))))
#s(approx (* (log (- 1 u0)) (neg alpha)) (fma.f32 (log.f32 (/.f32 #s(literal -1 binary32) u0)) alpha (/.f32 (fma.f32 (/.f32 alpha u0) #s(literal -1/2 binary32) (neg.f32 alpha)) (neg.f32 u0))))
#s(approx (* (log (- 1 u0)) (neg alpha)) #s(hole binary32 (+ (* -1 (/ (+ (* -1 alpha) (* -1 (/ (+ (* 1/3 (/ alpha u0)) (* 1/2 alpha)) u0))) u0)) (* alpha (log (/ -1 u0))))))
#s(approx (* (log (- 1 u0)) (neg alpha)) (fma.f32 (log.f32 (/.f32 #s(literal -1 binary32) u0)) alpha (/.f32 (fma.f32 #s(literal 1 binary32) alpha (/.f32 (fma.f32 (/.f32 alpha u0) #s(literal 1/3 binary32) (*.f32 #s(literal 1/2 binary32) alpha)) u0)) u0)))
#s(approx (- 1 u0) #s(hole binary32 (* -1 (* u0 (- 1 (/ 1 u0))))))
#s(approx (- 1 u0) (*.f32 (-.f32 #s(literal 1 binary32) (/.f32 #s(literal 1 binary32) u0)) (neg.f32 u0)))
#s(approx (log (+ 1 (neg u0))) #s(hole binary32 (* -1 (log (/ -1 u0)))))
#s(approx (log (- 1 u0)) (neg.f32 (log.f32 (/.f32 #s(literal -1 binary32) u0))))
#s(approx (log (+ 1 (neg u0))) #s(hole binary32 (- (* -1 (log (/ -1 u0))) (/ 1 u0))))
#s(approx (log (- 1 u0)) (-.f32 (neg.f32 (log.f32 (/.f32 #s(literal -1 binary32) u0))) (/.f32 #s(literal 1 binary32) u0)))
#s(approx (log (+ 1 (neg u0))) #s(hole binary32 (+ (* -1 (log (/ -1 u0))) (* -1 (/ (+ 1 (* 1/2 (/ 1 u0))) u0)))))
#s(approx (log (- 1 u0)) (-.f32 (/.f32 (-.f32 (/.f32 #s(literal -1/2 binary32) u0) #s(literal 1 binary32)) u0) (log.f32 (/.f32 #s(literal -1 binary32) u0))))
#s(approx (log (+ 1 (neg u0))) #s(hole binary32 (+ (* -1 (log (/ -1 u0))) (* -1 (/ (+ 1 (+ (/ 1/3 (pow u0 2)) (* 1/2 (/ 1 u0)))) u0)))))
#s(approx (log (- 1 u0)) (-.f32 (/.f32 (fma.f32 (/.f32 (-.f32 (/.f32 #s(literal 1/3 binary32) u0) #s(literal -1/2 binary32)) u0) #s(literal -1 binary32) #s(literal -1 binary32)) u0) (log.f32 (/.f32 #s(literal -1 binary32) u0))))
#s(approx (* (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (* alpha alpha)) #s(hole binary32 (* -1 (* (pow u0 3) (+ (* -1/3 (/ (pow alpha 2) u0)) (* -1/4 (pow alpha 2)))))))
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 (fma.f32 (/.f32 (*.f32 alpha alpha) u0) #s(literal 1/3 binary32) (*.f32 (*.f32 alpha alpha) #s(literal 1/4 binary32))) (pow.f32 u0 #s(literal 3 binary32))))
#s(approx (* (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (* alpha alpha)) #s(hole binary32 (* -1 (* (pow u0 3) (+ (* -1 (/ (+ (* 1/3 (pow alpha 2)) (* 1/2 (/ (pow alpha 2) u0))) u0)) (* -1/4 (pow alpha 2)))))))
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 (fma.f32 (*.f32 alpha alpha) #s(literal 1/4 binary32) (/.f32 (fma.f32 (/.f32 (*.f32 alpha alpha) u0) #s(literal 1/2 binary32) (*.f32 (*.f32 alpha alpha) #s(literal 1/3 binary32))) u0)) (pow.f32 u0 #s(literal 3 binary32))))
#s(approx (* (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (* alpha alpha)) #s(hole binary32 (* -1 (* (pow u0 3) (+ (* -1 (/ (+ (* -1 (/ (+ (* -1 (/ (pow alpha 2) u0)) (* -1/2 (pow alpha 2))) u0)) (* 1/3 (pow alpha 2))) u0)) (* -1/4 (pow alpha 2)))))))
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 (fma.f32 (*.f32 #s(literal 1/4 binary32) alpha) alpha (/.f32 (fma.f32 (*.f32 #s(literal 1/3 binary32) alpha) alpha (/.f32 (fma.f32 (*.f32 #s(literal 1/2 binary32) alpha) alpha (/.f32 (*.f32 alpha alpha) u0)) u0)) u0)) (pow.f32 u0 #s(literal 3 binary32))))

rewrite210.0ms (2.5%)

Memory
0.1MiB live, 234.0MiB allocated; 38ms collecting garbage
Iterations

Useful iterations: 0 (0.0ms)

IterNodesCost
057307
084299
1291284
22165276
09169257
Stop Event
iter limit
node limit
iter limit
Counts
22 → 471
Calls
Call 1
Inputs
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (*.f32 (neg.f32 alpha) alpha) (log1p.f32 (neg.f32 u0))))
(*.f32 (*.f32 (neg.f32 alpha) alpha) (log1p.f32 (neg.f32 u0)))
(*.f32 (neg.f32 alpha) alpha)
(neg.f32 alpha)
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (*.f32 u0 alpha) alpha))
(*.f32 (*.f32 u0 alpha) alpha)
(*.f32 u0 alpha)
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) u0) alpha) alpha))
(*.f32 (*.f32 (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) u0) alpha) alpha)
(*.f32 (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) u0) alpha)
(*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) u0)
(fma.f32 (*.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0) u0 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0) u0 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))) (*.f32 alpha alpha))) u0))
(*.f32 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0) u0 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))) (*.f32 alpha alpha))) u0)
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0) u0 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))) (*.f32 alpha alpha)))
(log.f32 (-.f32 #s(literal 1 binary32) u0))
(*.f32 (*.f32 (log.f32 (-.f32 #s(literal 1 binary32) u0)) (neg.f32 alpha)) alpha)
(*.f32 (log.f32 (-.f32 #s(literal 1 binary32) u0)) (neg.f32 alpha))
(-.f32 #s(literal 1 binary32) u0)
(log1p.f32 (neg.f32 u0))
(*.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0) u0 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))) (*.f32 alpha alpha))
(*.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0)
Outputs
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 alpha (*.f32 (log1p.f32 u0) alpha)))
(log.f32 (pow.f32 (pow.f32 (-.f32 u0 #s(literal -1 binary32)) alpha) alpha))
(*.f32 (*.f32 (log1p.f32 u0) (neg.f32 alpha)) alpha)
(*.f32 (*.f32 (log1p.f32 u0) alpha) (neg.f32 alpha))
(*.f32 (*.f32 alpha alpha) (log1p.f32 u0))
(*.f32 (log1p.f32 u0) (*.f32 alpha alpha))
(*.f32 (neg.f32 alpha) (*.f32 (log1p.f32 u0) alpha))
(*.f32 alpha (*.f32 (neg.f32 alpha) (log1p.f32 u0)))
(*.f32 alpha (*.f32 (log1p.f32 u0) alpha))
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(+.f32 (/.f32 (*.f32 (pow.f32 alpha #s(literal 6 binary32)) (pow.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) #s(literal 3 binary32))) (fma.f32 (pow.f32 alpha #s(literal 4 binary32)) (pow.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) #s(literal 2 binary32)) (-.f32 (*.f32 (pow.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) #s(literal 2 binary32)) (pow.f32 (*.f32 u0 alpha) #s(literal 4 binary32))) (*.f32 (*.f32 (*.f32 (pow.f32 (*.f32 u0 alpha) #s(literal 2 binary32)) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32))) (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) alpha)) alpha)))) (/.f32 (*.f32 (pow.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) #s(literal 3 binary32)) (pow.f32 (*.f32 u0 alpha) #s(literal 6 binary32))) (fma.f32 (pow.f32 alpha #s(literal 4 binary32)) (pow.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) #s(literal 2 binary32)) (-.f32 (*.f32 (pow.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) #s(literal 2 binary32)) (pow.f32 (*.f32 u0 alpha) #s(literal 4 binary32))) (*.f32 (*.f32 (*.f32 (pow.f32 (*.f32 u0 alpha) #s(literal 2 binary32)) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32))) (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) alpha)) alpha)))))
(+.f32 (/.f32 (*.f32 (pow.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) #s(literal 3 binary32)) (pow.f32 (*.f32 u0 alpha) #s(literal 6 binary32))) (fma.f32 (pow.f32 alpha #s(literal 4 binary32)) (pow.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) #s(literal 2 binary32)) (-.f32 (*.f32 (pow.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) #s(literal 2 binary32)) (pow.f32 (*.f32 u0 alpha) #s(literal 4 binary32))) (*.f32 (*.f32 (*.f32 (pow.f32 (*.f32 u0 alpha) #s(literal 2 binary32)) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32))) (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) alpha)) alpha)))) (/.f32 (*.f32 (pow.f32 alpha #s(literal 6 binary32)) (pow.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) #s(literal 3 binary32))) (fma.f32 (pow.f32 alpha #s(literal 4 binary32)) (pow.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) #s(literal 2 binary32)) (-.f32 (*.f32 (pow.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) #s(literal 2 binary32)) (pow.f32 (*.f32 u0 alpha) #s(literal 4 binary32))) (*.f32 (*.f32 (*.f32 (pow.f32 (*.f32 u0 alpha) #s(literal 2 binary32)) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32))) (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) alpha)) alpha)))))
(+.f32 (/.f32 (*.f32 (pow.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) #s(literal 2 binary32)) (pow.f32 (*.f32 u0 alpha) #s(literal 4 binary32))) (*.f32 (*.f32 alpha alpha) (fma.f32 u0 (fma.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0 #s(literal 1/2 binary32)) #s(literal 1 binary32)))) (/.f32 (*.f32 (*.f32 (neg.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))) (*.f32 alpha alpha)) (*.f32 (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) alpha) alpha)) (*.f32 (*.f32 alpha alpha) (fma.f32 u0 (fma.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0 #s(literal 1/2 binary32)) #s(literal 1 binary32)))))
(+.f32 (*.f32 (*.f32 u0 (fma.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0 #s(literal 1/2 binary32))) (*.f32 alpha alpha)) (*.f32 #s(literal 1 binary32) (*.f32 alpha alpha)))
(+.f32 (*.f32 (*.f32 alpha alpha) (*.f32 u0 (fma.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0 #s(literal 1/2 binary32)))) (*.f32 alpha alpha))
(+.f32 (/.f32 (*.f32 (pow.f32 alpha #s(literal 6 binary32)) (pow.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) #s(literal 3 binary32))) (fma.f32 (*.f32 (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) alpha) alpha) (*.f32 (*.f32 alpha alpha) (fma.f32 u0 (fma.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0 #s(literal 1/2 binary32)) #s(literal 1 binary32))) (*.f32 (pow.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) #s(literal 2 binary32)) (pow.f32 (*.f32 u0 alpha) #s(literal 4 binary32))))) (/.f32 (*.f32 (pow.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) #s(literal 3 binary32)) (pow.f32 (*.f32 u0 alpha) #s(literal 6 binary32))) (fma.f32 (*.f32 (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) alpha) alpha) (*.f32 (*.f32 alpha alpha) (fma.f32 u0 (fma.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0 #s(literal 1/2 binary32)) #s(literal 1 binary32))) (*.f32 (pow.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) #s(literal 2 binary32)) (pow.f32 (*.f32 u0 alpha) #s(literal 4 binary32))))))
(+.f32 (/.f32 (*.f32 (pow.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) #s(literal 3 binary32)) (pow.f32 (*.f32 u0 alpha) #s(literal 6 binary32))) (fma.f32 (*.f32 (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) alpha) alpha) (*.f32 (*.f32 alpha alpha) (fma.f32 u0 (fma.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0 #s(literal 1/2 binary32)) #s(literal 1 binary32))) (*.f32 (pow.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) #s(literal 2 binary32)) (pow.f32 (*.f32 u0 alpha) #s(literal 4 binary32))))) (/.f32 (*.f32 (pow.f32 alpha #s(literal 6 binary32)) (pow.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) #s(literal 3 binary32))) (fma.f32 (*.f32 (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) alpha) alpha) (*.f32 (*.f32 alpha alpha) (fma.f32 u0 (fma.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0 #s(literal 1/2 binary32)) #s(literal 1 binary32))) (*.f32 (pow.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) #s(literal 2 binary32)) (pow.f32 (*.f32 u0 alpha) #s(literal 4 binary32))))))
(+.f32 (*.f32 (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) alpha) alpha) (*.f32 (pow.f32 (*.f32 u0 alpha) #s(literal 2 binary32)) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32))))
(+.f32 (*.f32 (pow.f32 (*.f32 u0 alpha) #s(literal 2 binary32)) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32))) (*.f32 (neg.f32 (neg.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)))) (*.f32 alpha alpha)))
(+.f32 (*.f32 (pow.f32 (*.f32 u0 alpha) #s(literal 2 binary32)) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32))) (*.f32 (neg.f32 (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) alpha)) alpha))
(+.f32 (*.f32 (pow.f32 (*.f32 u0 alpha) #s(literal 2 binary32)) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32))) (*.f32 (neg.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))) (*.f32 alpha alpha)))
(+.f32 (*.f32 (pow.f32 (*.f32 u0 alpha) #s(literal 2 binary32)) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32))) (*.f32 (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) alpha) alpha))
(*.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0)
(*.f32 u0 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)))
(/.f32 (fma.f32 #s(literal 1/64 binary32) (pow.f32 u0 #s(literal 6 binary32)) (pow.f32 (*.f32 #s(literal 1/3 binary32) u0) #s(literal 3 binary32))) (+.f32 (pow.f32 (*.f32 #s(literal 1/2 binary32) u0) #s(literal 4 binary32)) (-.f32 (*.f32 #s(literal 1/9 binary32) (*.f32 u0 u0)) (*.f32 (*.f32 (*.f32 #s(literal 1/4 binary32) u0) u0) (*.f32 #s(literal 1/3 binary32) u0)))))
(/.f32 (fma.f32 #s(literal 1/27 binary32) (pow.f32 u0 #s(literal 3 binary32)) (*.f32 #s(literal 1/64 binary32) (pow.f32 u0 #s(literal 6 binary32)))) (fma.f32 #s(literal 1/9 binary32) (*.f32 u0 u0) (-.f32 (pow.f32 (*.f32 #s(literal 1/2 binary32) u0) #s(literal 4 binary32)) (*.f32 (*.f32 #s(literal 1/3 binary32) u0) (*.f32 (*.f32 #s(literal 1/4 binary32) u0) u0)))))
(/.f32 (neg.f32 (*.f32 (fma.f32 #s(literal 1/16 binary32) (*.f32 u0 u0) #s(literal -1/9 binary32)) u0)) (neg.f32 (-.f32 (*.f32 #s(literal 1/4 binary32) u0) #s(literal 1/3 binary32))))
(/.f32 (neg.f32 (*.f32 (fma.f32 #s(literal 1/64 binary32) (pow.f32 u0 #s(literal 3 binary32)) #s(literal 1/27 binary32)) u0)) (neg.f32 (fma.f32 #s(literal 1/16 binary32) (*.f32 u0 u0) (-.f32 #s(literal 1/9 binary32) (*.f32 u0 #s(literal 1/12 binary32))))))
(/.f32 (neg.f32 (*.f32 u0 (fma.f32 #s(literal 1/16 binary32) (*.f32 u0 u0) #s(literal -1/9 binary32)))) (neg.f32 (-.f32 (*.f32 #s(literal 1/4 binary32) u0) #s(literal 1/3 binary32))))
(/.f32 (neg.f32 (*.f32 u0 (fma.f32 #s(literal 1/64 binary32) (pow.f32 u0 #s(literal 3 binary32)) #s(literal 1/27 binary32)))) (neg.f32 (fma.f32 #s(literal 1/16 binary32) (*.f32 u0 u0) (-.f32 #s(literal 1/9 binary32) (*.f32 u0 #s(literal 1/12 binary32))))))
(/.f32 (*.f32 (fma.f32 #s(literal 1/16 binary32) (*.f32 u0 u0) #s(literal -1/9 binary32)) u0) (-.f32 (*.f32 #s(literal 1/4 binary32) u0) #s(literal 1/3 binary32)))
(/.f32 (*.f32 (fma.f32 #s(literal 1/64 binary32) (pow.f32 u0 #s(literal 3 binary32)) #s(literal 1/27 binary32)) u0) (fma.f32 #s(literal 1/16 binary32) (*.f32 u0 u0) (-.f32 #s(literal 1/9 binary32) (*.f32 u0 #s(literal 1/12 binary32)))))
(/.f32 (*.f32 u0 (fma.f32 #s(literal 1/16 binary32) (*.f32 u0 u0) #s(literal -1/9 binary32))) (-.f32 (*.f32 #s(literal 1/4 binary32) u0) #s(literal 1/3 binary32)))
(/.f32 (*.f32 u0 (fma.f32 #s(literal 1/64 binary32) (pow.f32 u0 #s(literal 3 binary32)) #s(literal 1/27 binary32))) (fma.f32 #s(literal 1/16 binary32) (*.f32 u0 u0) (-.f32 #s(literal 1/9 binary32) (*.f32 u0 #s(literal 1/12 binary32)))))
(fma.f32 (neg.f32 (neg.f32 (*.f32 #s(literal 1/2 binary32) u0))) (neg.f32 (neg.f32 (*.f32 #s(literal 1/2 binary32) u0))) (*.f32 #s(literal 1/3 binary32) u0))
(fma.f32 (pow.f32 (*.f32 #s(literal 1/2 binary32) u0) #s(literal 1 binary32)) (pow.f32 (*.f32 #s(literal 1/2 binary32) u0) #s(literal 1 binary32)) (*.f32 #s(literal 1/3 binary32) u0))
(fma.f32 (pow.f32 (*.f32 #s(literal 1/2 binary32) u0) #s(literal 1 binary32)) (*.f32 #s(literal 1/2 binary32) u0) (*.f32 #s(literal 1/3 binary32) u0))
(fma.f32 (*.f32 (*.f32 #s(literal 1/2 binary32) u0) u0) #s(literal 1/2 binary32) (*.f32 #s(literal 1/3 binary32) u0))
(fma.f32 (neg.f32 (*.f32 #s(literal 1/2 binary32) u0)) (neg.f32 (*.f32 #s(literal 1/2 binary32) u0)) (*.f32 #s(literal 1/3 binary32) u0))
(fma.f32 (*.f32 (*.f32 #s(literal 1/4 binary32) u0) u0) #s(literal 1 binary32) (*.f32 #s(literal 1/3 binary32) u0))
(fma.f32 (*.f32 #s(literal 1/2 binary32) u0) (*.f32 #s(literal 1/2 binary32) u0) (*.f32 #s(literal 1/3 binary32) u0))
(fma.f32 (*.f32 #s(literal 1/4 binary32) u0) u0 (*.f32 #s(literal 1/3 binary32) u0))
(fma.f32 (*.f32 u0 u0) #s(literal 1/4 binary32) (*.f32 #s(literal 1/3 binary32) u0))
(fma.f32 #s(literal 1/4 binary32) (*.f32 u0 u0) (*.f32 #s(literal 1/3 binary32) u0))
(fma.f32 #s(literal 1/2 binary32) (*.f32 u0 (*.f32 #s(literal 1/2 binary32) u0)) (*.f32 #s(literal 1/3 binary32) u0))
(fma.f32 #s(literal 1/3 binary32) u0 (*.f32 (*.f32 #s(literal 1/4 binary32) u0) u0))
(fma.f32 u0 (*.f32 #s(literal 1/4 binary32) u0) (*.f32 #s(literal 1/3 binary32) u0))
(fma.f32 u0 #s(literal 1/3 binary32) (*.f32 (*.f32 #s(literal 1/4 binary32) u0) u0))
(fma.f32 #s(literal 1 binary32) (*.f32 (*.f32 #s(literal 1/4 binary32) u0) u0) (*.f32 #s(literal 1/3 binary32) u0))
(+.f32 (*.f32 (*.f32 #s(literal 1/4 binary32) u0) u0) (*.f32 #s(literal 1/3 binary32) u0))
(+.f32 (*.f32 #s(literal 1/3 binary32) u0) (*.f32 (*.f32 #s(literal 1/4 binary32) u0) u0))

eval61.0ms (0.7%)

Memory
7.4MiB live, 109.7MiB allocated; 10ms collecting garbage
Compiler

Compiled 30 086 to 2 973 computations (90.1% saved)

prune75.0ms (0.9%)

Memory
-2.0MiB live, 90.7MiB allocated; 6ms collecting garbage
Pruning

43 alts after pruning (36 fresh and 7 done)

PrunedKeptTotal
New56123584
Fresh101323
Picked235
Done145
Total57443617
Accuracy
100.0%
Counts
617 → 43
Alt Table
Click to see full alt table
StatusAccuracyProgram
98.3%
(/.f32 (*.f32 (-.f32 (pow.f32 (log1p.f32 (*.f32 (neg.f32 u0) u0)) #s(literal 2 binary32)) (pow.f32 (log1p.f32 u0) #s(literal 2 binary32))) (*.f32 (neg.f32 alpha) alpha)) (+.f32 (log1p.f32 u0) (log1p.f32 (*.f32 (neg.f32 u0) u0))))
98.8%
(*.f32 (*.f32 (neg.f32 alpha) alpha) (-.f32 (log1p.f32 (*.f32 (neg.f32 u0) u0)) (log1p.f32 u0)))
89.4%
(*.f32 (*.f32 (neg.f32 alpha) alpha) (-.f32 (log.f32 (-.f32 #s(literal 1 binary32) (*.f32 u0 u0))) (log1p.f32 u0)))
94.2%
(*.f32 (*.f32 (neg.f32 alpha) alpha) (-.f32 #s(approx (log (+ 1 (* (neg u0) u0))) (*.f32 (*.f32 (fma.f32 (fma.f32 (*.f32 #s(literal -1/3 binary32) u0) u0 #s(literal -1/2 binary32)) (*.f32 u0 u0) #s(literal -1 binary32)) u0) u0)) (log1p.f32 u0)))
91.5%
(*.f32 (*.f32 (neg.f32 alpha) alpha) #s(approx (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0))) (*.f32 (fma.f32 (fma.f32 (fma.f32 #s(literal -1/4 binary32) u0 #s(literal -1/3 binary32)) u0 #s(literal -1/2 binary32)) u0 #s(literal -1 binary32)) u0)))
85.0%
(*.f32 (*.f32 (neg.f32 alpha) alpha) #s(approx (log (- 1 u0)) (*.f32 (fma.f32 #s(literal -1/2 binary32) u0 #s(literal -1 binary32)) u0)))
54.3%
(*.f32 (*.f32 (log.f32 (/.f32 (-.f32 (*.f32 #s(literal 1 binary32) (-.f32 u0 #s(literal -1 binary32))) (*.f32 (-.f32 u0 #s(literal -1 binary32)) (*.f32 u0 u0))) (*.f32 (-.f32 u0 #s(literal -1 binary32)) (-.f32 u0 #s(literal -1 binary32))))) (neg.f32 alpha)) alpha)
56.2%
(*.f32 (*.f32 (log.f32 #s(approx (- 1 u0) (*.f32 (-.f32 (/.f32 #s(literal 1 binary32) u0) #s(literal 1 binary32)) u0))) (neg.f32 alpha)) alpha)
91.6%
(*.f32 (*.f32 #s(approx (log (- 1 u0)) (*.f32 (fma.f32 (fma.f32 (fma.f32 #s(literal -1/4 binary32) u0 #s(literal -1/3 binary32)) u0 #s(literal -1/2 binary32)) u0 #s(literal -1 binary32)) u0)) (neg.f32 alpha)) alpha)
37.6%
(*.f32 (log.f32 (pow.f32 (-.f32 #s(literal 1 binary32) u0) (neg.f32 alpha))) alpha)
91.8%
(*.f32 #s(approx (* (log (- 1 u0)) (neg alpha)) (*.f32 (fma.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) alpha) u0 (*.f32 #s(literal 1/2 binary32) alpha)) u0 alpha) u0)) alpha)
85.2%
(*.f32 #s(approx (* (log (- 1 u0)) (neg alpha)) (*.f32 (fma.f32 (*.f32 u0 alpha) #s(literal 1/2 binary32) alpha) u0)) alpha)
99.0%
(*.f32 #s(approx (* (log (- 1 u0)) (neg alpha)) (*.f32 (neg.f32 alpha) (log1p.f32 (neg.f32 u0)))) alpha)
89.5%
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) (*.f32 (*.f32 u0 alpha) alpha)))
91.4%
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0) u0 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))) (*.f32 (*.f32 alpha alpha) u0)))
91.5%
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (fma.f32 (fma.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) (*.f32 alpha alpha)) u0))
89.5%
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) (*.f32 u0 alpha)) alpha))
89.4%
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) u0) (*.f32 alpha alpha)))
89.7%
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0 u0) alpha) alpha))
89.6%
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) u0) alpha) alpha))
85.1%
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) alpha) alpha) u0))
85.1%
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 #s(approx (* (+ (* (+ (* 1/3 u0) 1/2) u0) 1) u0) (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) u0)) alpha) alpha))
89.3%
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 #s(approx (* (* (+ (* (+ (* 1/3 u0) 1/2) u0) 1) u0) alpha) (*.f32 (fma.f32 #s(literal 1/3 binary32) alpha (/.f32 (fma.f32 #s(literal 1/2 binary32) alpha (/.f32 alpha u0)) u0)) (pow.f32 u0 #s(literal 3 binary32)))) alpha))
89.5%
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 u0 (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) (*.f32 alpha alpha))))
89.3%
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) #s(approx (* (* (* (+ (* (+ (* 1/3 u0) 1/2) u0) 1) u0) alpha) alpha) (*.f32 (fma.f32 (*.f32 #s(literal 1/3 binary32) alpha) alpha (/.f32 (fma.f32 (*.f32 #s(literal 1/2 binary32) alpha) alpha (/.f32 (*.f32 alpha alpha) u0)) u0)) (pow.f32 u0 #s(literal 3 binary32)))))
90.0%
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (fma.f32 (*.f32 alpha alpha) u0 (*.f32 (*.f32 (*.f32 u0 alpha) (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) alpha)) u0)))
91.5%
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 (*.f32 (*.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) alpha) alpha) (*.f32 u0 u0) (*.f32 (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) alpha) alpha)) u0))
89.8%
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 (*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32))) u0 (*.f32 alpha alpha)) u0))
91.8%
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 (*.f32 u0 u0) (*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32))) (fma.f32 (*.f32 alpha alpha) (*.f32 #s(literal 1/2 binary32) u0) (*.f32 (*.f32 alpha alpha) #s(literal 1 binary32)))) u0))
91.6%
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 (*.f32 u0 u0) (*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32))) (/.f32 (*.f32 (fma.f32 (*.f32 #s(literal 1/4 binary32) u0) u0 #s(literal -1 binary32)) (*.f32 alpha alpha)) (fma.f32 #s(literal 1/2 binary32) u0 #s(literal -1 binary32)))) u0))
85.2%
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 #s(approx (* (* alpha alpha) (+ (* 1/3 u0) 1/2)) (*.f32 #s(literal 1/2 binary32) (*.f32 alpha alpha))) u0 (*.f32 alpha alpha)) u0))
85.1%
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) (*.f32 (*.f32 alpha alpha) u0)))
98.9%
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (*.f32 (neg.f32 alpha) alpha) (log1p.f32 (neg.f32 u0))))
72.6%
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (*.f32 u0 alpha) alpha))
72.6%
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (*.f32 alpha alpha) u0))
89.6%
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* (* alpha alpha) (+ (* 1/3 u0) 1/2)) u0) (* alpha alpha)) (*.f32 (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) alpha) alpha)) u0))
91.8%
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (+.f32 (*.f32 (*.f32 alpha alpha) (*.f32 u0 (fma.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0 #s(literal 1/2 binary32)))) (*.f32 alpha alpha))) u0))
89.4%
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 (fma.f32 #s(approx (* (+ (* 1/4 u0) 1/3) u0) (*.f32 #s(literal 1/3 binary32) u0)) u0 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))) (*.f32 alpha alpha))) u0))
91.4%
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 (fma.f32 u0 #s(literal 1/2 binary32) (+.f32 #s(literal 1 binary32) (*.f32 (*.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0) u0))) (*.f32 alpha alpha))) u0))
91.0%
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 (/.f32 (*.f32 (*.f32 alpha alpha) (fma.f32 u0 (fma.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0 #s(literal 1/2 binary32)) #s(literal 1 binary32))) (*.f32 (fma.f32 u0 (fma.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0 #s(literal 1/2 binary32)) #s(literal 1 binary32)) alpha)) (/.f32 (*.f32 (*.f32 alpha alpha) (fma.f32 u0 (fma.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0 #s(literal 1/2 binary32)) #s(literal 1 binary32))) alpha))) u0))
91.5%
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 (-.f32 (*.f32 u0 (fma.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0 #s(literal 1/2 binary32))) #s(literal -1 binary32)) (*.f32 alpha alpha))) u0))
91.7%
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 (*.f32 (fma.f32 u0 (fma.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0 #s(literal 1/2 binary32)) #s(literal 1 binary32)) alpha) alpha)) u0))
85.0%
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 #s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))) (*.f32 alpha alpha))) u0))
Compiler

Compiled 2 657 to 1 755 computations (33.9% saved)

simplify142.0ms (1.7%)

Memory
-0.7MiB live, 147.6MiB allocated; 22ms collecting garbage
Localize:

Found 20 expressions of interest:

NewMetricScoreProgram
cost-diff0
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 (*.f32 u0 u0) (*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32))) (fma.f32 (*.f32 alpha alpha) (*.f32 #s(literal 1/2 binary32) u0) (*.f32 (*.f32 alpha alpha) #s(literal 1 binary32)))) u0))
cost-diff2
(*.f32 (*.f32 alpha alpha) #s(literal 1 binary32))
cost-diff2
(fma.f32 (*.f32 alpha alpha) (*.f32 #s(literal 1/2 binary32) u0) (*.f32 (*.f32 alpha alpha) #s(literal 1 binary32)))
cost-diff6
(fma.f32 (*.f32 u0 u0) (*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32))) (fma.f32 (*.f32 alpha alpha) (*.f32 #s(literal 1/2 binary32) u0) (*.f32 (*.f32 alpha alpha) #s(literal 1 binary32))))
cost-diff0
(*.f32 (fma.f32 (fma.f32 (fma.f32 #s(literal -1/4 binary32) u0 #s(literal -1/3 binary32)) u0 #s(literal -1/2 binary32)) u0 #s(literal -1 binary32)) u0)
cost-diff0
#s(approx (log (- 1 u0)) (*.f32 (fma.f32 (fma.f32 (fma.f32 #s(literal -1/4 binary32) u0 #s(literal -1/3 binary32)) u0 #s(literal -1/2 binary32)) u0 #s(literal -1 binary32)) u0))
cost-diff0
(*.f32 #s(approx (log (- 1 u0)) (*.f32 (fma.f32 (fma.f32 (fma.f32 #s(literal -1/4 binary32) u0 #s(literal -1/3 binary32)) u0 #s(literal -1/2 binary32)) u0 #s(literal -1 binary32)) u0)) (neg.f32 alpha))
cost-diff0
(*.f32 (*.f32 #s(approx (log (- 1 u0)) (*.f32 (fma.f32 (fma.f32 (fma.f32 #s(literal -1/4 binary32) u0 #s(literal -1/3 binary32)) u0 #s(literal -1/2 binary32)) u0 #s(literal -1 binary32)) u0)) (neg.f32 alpha)) alpha)
cost-diff0
(fma.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0 u0)
cost-diff0
(*.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0 u0) alpha)
cost-diff0
(*.f32 (*.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0 u0) alpha) alpha)
cost-diff0
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0 u0) alpha) alpha))
cost-diff0
(*.f32 #s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))) (*.f32 alpha alpha))
cost-diff0
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 #s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))) (*.f32 alpha alpha)))
cost-diff0
(*.f32 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 #s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))) (*.f32 alpha alpha))) u0)
cost-diff0
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 #s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))) (*.f32 alpha alpha))) u0))
cost-diff0
(neg.f32 alpha)
cost-diff0
(*.f32 (neg.f32 alpha) (log1p.f32 (neg.f32 u0)))
cost-diff0
#s(approx (* (log (- 1 u0)) (neg alpha)) (*.f32 (neg.f32 alpha) (log1p.f32 (neg.f32 u0))))
cost-diff0
(*.f32 #s(approx (* (log (- 1 u0)) (neg alpha)) (*.f32 (neg.f32 alpha) (log1p.f32 (neg.f32 u0)))) alpha)
Iterations

Useful iterations: 0 (0.0ms)

IterNodesCost
072550
0109528
1219523
2753488
33340481
08163467
Stop Event
iter limit
node limit
iter limit
Calls
Call 1
Inputs
(*.f32 #s(approx (* (log (- 1 u0)) (neg alpha)) (*.f32 (neg.f32 alpha) (log1p.f32 (neg.f32 u0)))) alpha)
#s(approx (* (log (- 1 u0)) (neg alpha)) (*.f32 (neg.f32 alpha) (log1p.f32 (neg.f32 u0))))
(*.f32 (neg.f32 alpha) (log1p.f32 (neg.f32 u0)))
(neg.f32 alpha)
alpha
(log1p.f32 (neg.f32 u0))
(neg.f32 u0)
u0
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 #s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))) (*.f32 alpha alpha))) u0))
(*.f32 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 #s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))) (*.f32 alpha alpha))) u0)
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 #s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))) (*.f32 alpha alpha)))
(*.f32 #s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))) (*.f32 alpha alpha))
#s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)))
(fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))
#s(literal 1/2 binary32)
u0
#s(literal 1 binary32)
(*.f32 alpha alpha)
alpha
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0 u0) alpha) alpha))
(*.f32 (*.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0 u0) alpha) alpha)
(*.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0 u0) alpha)
(fma.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0 u0)
(*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0)
(fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32))
#s(literal 1/3 binary32)
u0
#s(literal 1/2 binary32)
alpha
(*.f32 (*.f32 #s(approx (log (- 1 u0)) (*.f32 (fma.f32 (fma.f32 (fma.f32 #s(literal -1/4 binary32) u0 #s(literal -1/3 binary32)) u0 #s(literal -1/2 binary32)) u0 #s(literal -1 binary32)) u0)) (neg.f32 alpha)) alpha)
(*.f32 #s(approx (log (- 1 u0)) (*.f32 (fma.f32 (fma.f32 (fma.f32 #s(literal -1/4 binary32) u0 #s(literal -1/3 binary32)) u0 #s(literal -1/2 binary32)) u0 #s(literal -1 binary32)) u0)) (neg.f32 alpha))
#s(approx (log (- 1 u0)) (*.f32 (fma.f32 (fma.f32 (fma.f32 #s(literal -1/4 binary32) u0 #s(literal -1/3 binary32)) u0 #s(literal -1/2 binary32)) u0 #s(literal -1 binary32)) u0))
(*.f32 (fma.f32 (fma.f32 (fma.f32 #s(literal -1/4 binary32) u0 #s(literal -1/3 binary32)) u0 #s(literal -1/2 binary32)) u0 #s(literal -1 binary32)) u0)
(fma.f32 (fma.f32 (fma.f32 #s(literal -1/4 binary32) u0 #s(literal -1/3 binary32)) u0 #s(literal -1/2 binary32)) u0 #s(literal -1 binary32))
(fma.f32 (fma.f32 #s(literal -1/4 binary32) u0 #s(literal -1/3 binary32)) u0 #s(literal -1/2 binary32))
(fma.f32 #s(literal -1/4 binary32) u0 #s(literal -1/3 binary32))
#s(literal -1/4 binary32)
u0
#s(literal -1/3 binary32)
#s(literal -1/2 binary32)
#s(literal -1 binary32)
(neg.f32 alpha)
alpha
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 (*.f32 u0 u0) (*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32))) (fma.f32 (*.f32 alpha alpha) (*.f32 #s(literal 1/2 binary32) u0) (*.f32 (*.f32 alpha alpha) #s(literal 1 binary32)))) u0))
(*.f32 (fma.f32 (*.f32 u0 u0) (*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32))) (fma.f32 (*.f32 alpha alpha) (*.f32 #s(literal 1/2 binary32) u0) (*.f32 (*.f32 alpha alpha) #s(literal 1 binary32)))) u0)
(fma.f32 (*.f32 u0 u0) (*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32))) (fma.f32 (*.f32 alpha alpha) (*.f32 #s(literal 1/2 binary32) u0) (*.f32 (*.f32 alpha alpha) #s(literal 1 binary32))))
(*.f32 u0 u0)
u0
(*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)))
(*.f32 alpha alpha)
alpha
(fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32))
#s(literal 1/4 binary32)
#s(literal 1/3 binary32)
(fma.f32 (*.f32 alpha alpha) (*.f32 #s(literal 1/2 binary32) u0) (*.f32 (*.f32 alpha alpha) #s(literal 1 binary32)))
(*.f32 #s(literal 1/2 binary32) u0)
#s(literal 1/2 binary32)
(*.f32 (*.f32 alpha alpha) #s(literal 1 binary32))
#s(literal 1 binary32)
Outputs
(*.f32 #s(approx (* (log (- 1 u0)) (neg alpha)) (*.f32 (neg.f32 alpha) (log1p.f32 (neg.f32 u0)))) alpha)
#s(approx (* (log (- 1 u0)) (neg alpha)) (*.f32 (neg.f32 alpha) (log1p.f32 (neg.f32 u0))))
(*.f32 (neg.f32 alpha) (log1p.f32 (neg.f32 u0)))
(neg.f32 alpha)
alpha
(log1p.f32 (neg.f32 u0))
(neg.f32 u0)
u0
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 #s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))) (*.f32 alpha alpha))) u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 (*.f32 alpha alpha) #s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))))) u0))
(*.f32 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 #s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))) (*.f32 alpha alpha))) u0)
(*.f32 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 (*.f32 alpha alpha) #s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))))) u0)
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 #s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))) (*.f32 alpha alpha)))
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 (*.f32 alpha alpha) #s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)))))
(*.f32 #s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))) (*.f32 alpha alpha))
(*.f32 (*.f32 alpha alpha) #s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))))
#s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)))
(fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))
#s(literal 1/2 binary32)
u0
#s(literal 1 binary32)
(*.f32 alpha alpha)
alpha
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0 u0) alpha) alpha))
(*.f32 (*.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0 u0) alpha) alpha)
(*.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0 u0) alpha)
(fma.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0 u0)
(*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0)
(fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32))
#s(literal 1/3 binary32)
u0
#s(literal 1/2 binary32)
alpha
(*.f32 (*.f32 #s(approx (log (- 1 u0)) (*.f32 (fma.f32 (fma.f32 (fma.f32 #s(literal -1/4 binary32) u0 #s(literal -1/3 binary32)) u0 #s(literal -1/2 binary32)) u0 #s(literal -1 binary32)) u0)) (neg.f32 alpha)) alpha)
(*.f32 #s(approx (log (- 1 u0)) (*.f32 (fma.f32 (fma.f32 (fma.f32 #s(literal -1/4 binary32) u0 #s(literal -1/3 binary32)) u0 #s(literal -1/2 binary32)) u0 #s(literal -1 binary32)) u0)) (*.f32 (neg.f32 alpha) alpha))
(*.f32 #s(approx (log (- 1 u0)) (*.f32 (fma.f32 (fma.f32 (fma.f32 #s(literal -1/4 binary32) u0 #s(literal -1/3 binary32)) u0 #s(literal -1/2 binary32)) u0 #s(literal -1 binary32)) u0)) (neg.f32 alpha))
#s(approx (log (- 1 u0)) (*.f32 (fma.f32 (fma.f32 (fma.f32 #s(literal -1/4 binary32) u0 #s(literal -1/3 binary32)) u0 #s(literal -1/2 binary32)) u0 #s(literal -1 binary32)) u0))
(*.f32 (fma.f32 (fma.f32 (fma.f32 #s(literal -1/4 binary32) u0 #s(literal -1/3 binary32)) u0 #s(literal -1/2 binary32)) u0 #s(literal -1 binary32)) u0)
(fma.f32 (fma.f32 (fma.f32 #s(literal -1/4 binary32) u0 #s(literal -1/3 binary32)) u0 #s(literal -1/2 binary32)) u0 #s(literal -1 binary32))
(fma.f32 (fma.f32 #s(literal -1/4 binary32) u0 #s(literal -1/3 binary32)) u0 #s(literal -1/2 binary32))
(fma.f32 #s(literal -1/4 binary32) u0 #s(literal -1/3 binary32))
#s(literal -1/4 binary32)
u0
#s(literal -1/3 binary32)
#s(literal -1/2 binary32)
#s(literal -1 binary32)
(neg.f32 alpha)
alpha
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 (*.f32 u0 u0) (*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32))) (fma.f32 (*.f32 alpha alpha) (*.f32 #s(literal 1/2 binary32) u0) (*.f32 (*.f32 alpha alpha) #s(literal 1 binary32)))) u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (*.f32 (*.f32 alpha alpha) u0) (fma.f32 (fma.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32))))
(*.f32 (fma.f32 (*.f32 u0 u0) (*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32))) (fma.f32 (*.f32 alpha alpha) (*.f32 #s(literal 1/2 binary32) u0) (*.f32 (*.f32 alpha alpha) #s(literal 1 binary32)))) u0)
(*.f32 (*.f32 (*.f32 alpha alpha) u0) (fma.f32 (fma.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)))
(fma.f32 (*.f32 u0 u0) (*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32))) (fma.f32 (*.f32 alpha alpha) (*.f32 #s(literal 1/2 binary32) u0) (*.f32 (*.f32 alpha alpha) #s(literal 1 binary32))))
(*.f32 (*.f32 alpha alpha) (fma.f32 (fma.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)))
(*.f32 u0 u0)
u0
(*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)))
(*.f32 (*.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) alpha) alpha)
(*.f32 alpha alpha)
alpha
(fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32))
#s(literal 1/4 binary32)
#s(literal 1/3 binary32)
(fma.f32 (*.f32 alpha alpha) (*.f32 #s(literal 1/2 binary32) u0) (*.f32 (*.f32 alpha alpha) #s(literal 1 binary32)))
(*.f32 (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) alpha) alpha)
(*.f32 #s(literal 1/2 binary32) u0)
#s(literal 1/2 binary32)
(*.f32 (*.f32 alpha alpha) #s(literal 1 binary32))
(*.f32 alpha alpha)
#s(literal 1 binary32)

localize209.0ms (2.5%)

Memory
3.5MiB live, 240.5MiB allocated; 29ms collecting garbage
Localize:

Found 20 expressions of interest:

NewMetricScoreProgram
accuracy0.20703125
(*.f32 (fma.f32 (*.f32 u0 u0) (*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32))) (fma.f32 (*.f32 alpha alpha) (*.f32 #s(literal 1/2 binary32) u0) (*.f32 (*.f32 alpha alpha) #s(literal 1 binary32)))) u0)
accuracy0.2421875
(fma.f32 (*.f32 alpha alpha) (*.f32 #s(literal 1/2 binary32) u0) (*.f32 (*.f32 alpha alpha) #s(literal 1 binary32)))
accuracy0.30306625976844204
(*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)))
accuracy2.131841921494873
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 (*.f32 u0 u0) (*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32))) (fma.f32 (*.f32 alpha alpha) (*.f32 #s(literal 1/2 binary32) u0) (*.f32 (*.f32 alpha alpha) #s(literal 1 binary32)))) u0))
accuracy0.1953125
(*.f32 #s(approx (log (- 1 u0)) (*.f32 (fma.f32 (fma.f32 (fma.f32 #s(literal -1/4 binary32) u0 #s(literal -1/3 binary32)) u0 #s(literal -1/2 binary32)) u0 #s(literal -1 binary32)) u0)) (neg.f32 alpha))
accuracy0.22265625
(*.f32 (*.f32 #s(approx (log (- 1 u0)) (*.f32 (fma.f32 (fma.f32 (fma.f32 #s(literal -1/4 binary32) u0 #s(literal -1/3 binary32)) u0 #s(literal -1/2 binary32)) u0 #s(literal -1 binary32)) u0)) (neg.f32 alpha)) alpha)
accuracy0.2734375
(*.f32 (fma.f32 (fma.f32 (fma.f32 #s(literal -1/4 binary32) u0 #s(literal -1/3 binary32)) u0 #s(literal -1/2 binary32)) u0 #s(literal -1 binary32)) u0)
accuracy2.1409720211676566
#s(approx (log (- 1 u0)) (*.f32 (fma.f32 (fma.f32 (fma.f32 #s(literal -1/4 binary32) u0 #s(literal -1/3 binary32)) u0 #s(literal -1/2 binary32)) u0 #s(literal -1 binary32)) u0))
accuracy0.19921875
(*.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0 u0) alpha)
accuracy0.23046875
(*.f32 (*.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0 u0) alpha) alpha)
accuracy0.26171875
(*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0)
accuracy2.7718788821099096
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0 u0) alpha) alpha))
accuracy0.20703125
(*.f32 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 #s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))) (*.f32 alpha alpha))) u0)
accuracy0.3828125
(*.f32 #s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))) (*.f32 alpha alpha))
accuracy2.131841921494873
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 #s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))) (*.f32 alpha alpha))) u0))
accuracy4.055017739192794
#s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)))
accuracy0.0
(log1p.f32 (neg.f32 u0))
accuracy0.0
#s(approx (* (log (- 1 u0)) (neg alpha)) (*.f32 (neg.f32 alpha) (log1p.f32 (neg.f32 u0))))
accuracy0.1953125
(*.f32 (neg.f32 alpha) (log1p.f32 (neg.f32 u0)))
accuracy0.22265625
(*.f32 #s(approx (* (log (- 1 u0)) (neg alpha)) (*.f32 (neg.f32 alpha) (log1p.f32 (neg.f32 u0)))) alpha)
Samples
158.0ms251×0valid
15.0ms5exit
Compiler

Compiled 394 to 61 computations (84.5% saved)

Precisions
Click to see histograms. Total time spent on operations: 107.0ms
ival-mult: 61.0ms (57.1% of total)
ival-add: 13.0ms (12.2% of total)
adjust: 10.0ms (9.4% of total)
const: 8.0ms (7.5% of total)
ival-log1p: 6.0ms (5.6% of total)
ival-log: 4.0ms (3.7% of total)
ival-sub: 3.0ms (2.8% of total)
ival-neg: 2.0ms (1.9% of total)
exact: 1.0ms (0.9% of total)
ival-assert: 0.0ms (0% of total)
ival-true: 0.0ms (0% of total)

series122.0ms (1.4%)

Memory
-5.3MiB live, 138.4MiB allocated; 20ms collecting garbage
Counts
25 → 209
Calls
Call 1
Inputs
(*.f32 #s(approx (* (log (- 1 u0)) (neg alpha)) (*.f32 (neg.f32 alpha) (log1p.f32 (neg.f32 u0)))) alpha)
#s(approx (* (log (- 1 u0)) (neg alpha)) (*.f32 (neg.f32 alpha) (log1p.f32 (neg.f32 u0))))
(*.f32 (neg.f32 alpha) (log1p.f32 (neg.f32 u0)))
(neg.f32 alpha)
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 #s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))) (*.f32 alpha alpha))) u0))
(*.f32 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 #s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))) (*.f32 alpha alpha))) u0)
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 #s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))) (*.f32 alpha alpha)))
(*.f32 #s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))) (*.f32 alpha alpha))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0 u0) alpha) alpha))
(*.f32 (*.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0 u0) alpha) alpha)
(*.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0 u0) alpha)
(fma.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0 u0)
(*.f32 (*.f32 #s(approx (log (- 1 u0)) (*.f32 (fma.f32 (fma.f32 (fma.f32 #s(literal -1/4 binary32) u0 #s(literal -1/3 binary32)) u0 #s(literal -1/2 binary32)) u0 #s(literal -1 binary32)) u0)) (neg.f32 alpha)) alpha)
(*.f32 #s(approx (log (- 1 u0)) (*.f32 (fma.f32 (fma.f32 (fma.f32 #s(literal -1/4 binary32) u0 #s(literal -1/3 binary32)) u0 #s(literal -1/2 binary32)) u0 #s(literal -1 binary32)) u0)) (neg.f32 alpha))
#s(approx (log (- 1 u0)) (*.f32 (fma.f32 (fma.f32 (fma.f32 #s(literal -1/4 binary32) u0 #s(literal -1/3 binary32)) u0 #s(literal -1/2 binary32)) u0 #s(literal -1 binary32)) u0))
(*.f32 (fma.f32 (fma.f32 (fma.f32 #s(literal -1/4 binary32) u0 #s(literal -1/3 binary32)) u0 #s(literal -1/2 binary32)) u0 #s(literal -1 binary32)) u0)
(fma.f32 (*.f32 u0 u0) (*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32))) (fma.f32 (*.f32 alpha alpha) (*.f32 #s(literal 1/2 binary32) u0) (*.f32 (*.f32 alpha alpha) #s(literal 1 binary32))))
(fma.f32 (*.f32 alpha alpha) (*.f32 #s(literal 1/2 binary32) u0) (*.f32 (*.f32 alpha alpha) #s(literal 1 binary32)))
(*.f32 (*.f32 alpha alpha) #s(literal 1 binary32))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 (*.f32 u0 u0) (*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32))) (fma.f32 (*.f32 alpha alpha) (*.f32 #s(literal 1/2 binary32) u0) (*.f32 (*.f32 alpha alpha) #s(literal 1 binary32)))) u0))
(log1p.f32 (neg.f32 u0))
#s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)))
(*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0)
(*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)))
(*.f32 (fma.f32 (*.f32 u0 u0) (*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32))) (fma.f32 (*.f32 alpha alpha) (*.f32 #s(literal 1/2 binary32) u0) (*.f32 (*.f32 alpha alpha) #s(literal 1 binary32)))) u0)
Outputs
#s(approx (* (* (log (- 1 u0)) (neg alpha)) alpha) #s(hole binary32 (* -1 (* (pow alpha 2) (log (- 1 u0))))))
#s(approx (* (log (- 1 u0)) (neg alpha)) #s(hole binary32 (* -1 (* alpha (log (- 1 u0))))))
#s(approx (* (neg alpha) (log (+ 1 (neg u0)))) #s(hole binary32 (* -1 (* alpha (log (- 1 u0))))))
#s(approx (neg alpha) #s(hole binary32 (* -1 alpha)))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (* -1 (* (pow alpha 2) (log (- 1 u0))))))
#s(approx (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) u0) #s(hole binary32 (* (pow alpha 2) (* u0 (+ 1 (+ (* 1/2 u0) (* (pow u0 2) (+ 1/3 (* 1/4 u0)))))))))
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) #s(hole binary32 (* (pow alpha 2) (+ 1 (+ (* 1/2 u0) (* (pow u0 2) (+ 1/3 (* 1/4 u0))))))))
#s(approx (* (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (* alpha alpha)) #s(hole binary32 (* (pow alpha 2) (+ 1 (+ (* 1/2 u0) (* (pow u0 2) (+ 1/3 (* 1/4 u0))))))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) #s(hole binary32 (* -1 (* (pow alpha 2) (- (log (+ 1 (* -1 (pow u0 2)))) (log (+ 1 u0)))))))
#s(approx (* (* (+ (* (* (+ (* 1/3 u0) 1/2) u0) u0) u0) alpha) alpha) #s(hole binary32 (* (pow alpha 2) (+ u0 (* (pow u0 2) (+ 1/2 (* 1/3 u0)))))))
#s(approx (* (+ (* (* (+ (* 1/3 u0) 1/2) u0) u0) u0) alpha) #s(hole binary32 (* alpha (+ u0 (* (pow u0 2) (+ 1/2 (* 1/3 u0)))))))
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (+ (* (* alpha alpha) (* 1/2 u0)) (* (* alpha alpha) 1))) #s(hole binary32 (* (pow alpha 2) (+ 1 (+ (* 1/2 u0) (* (pow u0 2) (+ 1/3 (* 1/4 u0))))))))
#s(approx (+ (* (* alpha alpha) (* 1/2 u0)) (* (* alpha alpha) 1)) #s(hole binary32 (* (pow alpha 2) (+ 1 (* 1/2 u0)))))
#s(approx (* (* alpha alpha) 1) #s(hole binary32 (pow alpha 2)))
#s(approx (* (* alpha alpha) (+ (* 1/4 u0) 1/3)) #s(hole binary32 (* (pow alpha 2) (+ 1/3 (* 1/4 u0)))))
#s(approx (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (+ (* (* alpha alpha) (* 1/2 u0)) (* (* alpha alpha) 1))) u0) #s(hole binary32 (* (pow alpha 2) (* u0 (+ 1 (+ (* 1/2 u0) (* (pow u0 2) (+ 1/3 (* 1/4 u0)))))))))
#s(approx (* (* (log (- 1 u0)) (neg alpha)) alpha) #s(hole binary32 (* (pow alpha 2) u0)))
#s(approx (* (* (log (- 1 u0)) (neg alpha)) alpha) #s(hole binary32 (* u0 (+ (* 1/2 (* (pow alpha 2) u0)) (pow alpha 2)))))
#s(approx (* (* (log (- 1 u0)) (neg alpha)) alpha) #s(hole binary32 (* u0 (+ (* u0 (+ (* 1/3 (* (pow alpha 2) u0)) (* 1/2 (pow alpha 2)))) (pow alpha 2)))))
#s(approx (* (* (log (- 1 u0)) (neg alpha)) alpha) #s(hole binary32 (* u0 (+ (* u0 (+ (* 1/2 (pow alpha 2)) (* u0 (+ (* 1/4 (* (pow alpha 2) u0)) (* 1/3 (pow alpha 2)))))) (pow alpha 2)))))
#s(approx (* (log (- 1 u0)) (neg alpha)) #s(hole binary32 (* alpha u0)))
#s(approx (* (log (- 1 u0)) (neg alpha)) #s(hole binary32 (* u0 (+ alpha (* 1/2 (* alpha u0))))))
#s(approx (* (log (- 1 u0)) (neg alpha)) #s(hole binary32 (* u0 (+ alpha (* u0 (+ (* 1/3 (* alpha u0)) (* 1/2 alpha)))))))
#s(approx (* (log (- 1 u0)) (neg alpha)) #s(hole binary32 (* u0 (+ alpha (* u0 (+ (* 1/2 alpha) (* u0 (+ (* 1/4 (* alpha u0)) (* 1/3 alpha)))))))))
#s(approx (* (neg alpha) (log (+ 1 (neg u0)))) #s(hole binary32 (* alpha u0)))
#s(approx (* (neg alpha) (log (+ 1 (neg u0)))) #s(hole binary32 (* u0 (+ alpha (* 1/2 (* alpha u0))))))
#s(approx (* (neg alpha) (log (+ 1 (neg u0)))) #s(hole binary32 (* u0 (+ alpha (* u0 (+ (* 1/3 (* alpha u0)) (* 1/2 alpha)))))))
#s(approx (* (neg alpha) (log (+ 1 (neg u0)))) #s(hole binary32 (* u0 (+ alpha (* u0 (+ (* 1/2 alpha) (* u0 (+ (* 1/4 (* alpha u0)) (* 1/3 alpha)))))))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (* (pow alpha 2) u0)))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (* u0 (+ (* 1/2 (* (pow alpha 2) u0)) (pow alpha 2)))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (* u0 (+ (* u0 (+ (* 1/3 (* (pow alpha 2) u0)) (* 1/2 (pow alpha 2)))) (pow alpha 2)))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (* u0 (+ (* u0 (+ (* 1/2 (pow alpha 2)) (* u0 (+ (* 1/4 (* (pow alpha 2) u0)) (* 1/3 (pow alpha 2)))))) (pow alpha 2)))))
#s(approx (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) u0) #s(hole binary32 (* (pow alpha 2) u0)))
#s(approx (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) u0) #s(hole binary32 (* u0 (+ (* 1/2 (* (pow alpha 2) u0)) (pow alpha 2)))))
#s(approx (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) u0) #s(hole binary32 (* u0 (+ (* u0 (+ (* 1/3 (* (pow alpha 2) u0)) (* 1/2 (pow alpha 2)))) (pow alpha 2)))))
#s(approx (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) u0) #s(hole binary32 (* u0 (+ (* u0 (+ (* 1/2 (pow alpha 2)) (* u0 (+ (* 1/4 (* (pow alpha 2) u0)) (* 1/3 (pow alpha 2)))))) (pow alpha 2)))))
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) #s(hole binary32 (pow alpha 2)))
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) #s(hole binary32 (+ (* 1/2 (* (pow alpha 2) u0)) (pow alpha 2))))
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) #s(hole binary32 (+ (* u0 (+ (* 1/3 (* (pow alpha 2) u0)) (* 1/2 (pow alpha 2)))) (pow alpha 2))))
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) #s(hole binary32 (+ (* u0 (+ (* 1/2 (pow alpha 2)) (* u0 (+ (* 1/4 (* (pow alpha 2) u0)) (* 1/3 (pow alpha 2)))))) (pow alpha 2))))
#s(approx (* (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (* alpha alpha)) #s(hole binary32 (pow alpha 2)))
#s(approx (* (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (* alpha alpha)) #s(hole binary32 (+ (* 1/2 (* (pow alpha 2) u0)) (pow alpha 2))))
#s(approx (* (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (* alpha alpha)) #s(hole binary32 (+ (* u0 (+ (* 1/3 (* (pow alpha 2) u0)) (* 1/2 (pow alpha 2)))) (pow alpha 2))))
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#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) #s(hole binary32 (* (pow alpha 2) u0)))
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#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) #s(hole binary32 (* u0 (+ (* u0 (+ (* 1/3 (* (pow alpha 2) u0)) (* 1/2 (pow alpha 2)))) (pow alpha 2)))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) #s(hole binary32 (* u0 (+ (* u0 (+ (* 1/2 (pow alpha 2)) (* u0 (+ (* 1/4 (* (pow alpha 2) u0)) (* 1/3 (pow alpha 2)))))) (pow alpha 2)))))
#s(approx (* (* (+ (* (* (+ (* 1/3 u0) 1/2) u0) u0) u0) alpha) alpha) #s(hole binary32 (* (pow alpha 2) u0)))
#s(approx (* (* (+ (* (* (+ (* 1/3 u0) 1/2) u0) u0) u0) alpha) alpha) #s(hole binary32 (* u0 (+ (* 1/2 (* (pow alpha 2) u0)) (pow alpha 2)))))
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#s(approx (log (- 1 u0)) #s(hole binary32 (* -1 u0)))
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#s(approx (+ (* (* alpha alpha) (* 1/2 u0)) (* (* alpha alpha) 1)) #s(hole binary32 (pow alpha 2)))
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#s(approx (log (+ 1 (neg u0))) #s(hole binary32 (* -1 u0)))
#s(approx (log (+ 1 (neg u0))) #s(hole binary32 (* u0 (- (* -1/2 u0) 1))))
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#s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) #s(hole binary32 (+ 1 (* 1/2 u0))))
#s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) #s(hole binary32 (+ 1 (* u0 (+ 1/2 (* 1/3 u0))))))
#s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) #s(hole binary32 (+ 1 (* u0 (+ 1/2 (* u0 (+ 1/3 (* 1/4 u0))))))))
#s(approx (* (+ (* 1/3 u0) 1/2) u0) #s(hole binary32 (* 1/2 u0)))
#s(approx (* (+ (* 1/3 u0) 1/2) u0) #s(hole binary32 (* u0 (+ 1/2 (* 1/3 u0)))))
#s(approx (* (* alpha alpha) (+ (* 1/4 u0) 1/3)) #s(hole binary32 (* 1/3 (pow alpha 2))))
#s(approx (* (* alpha alpha) (+ (* 1/4 u0) 1/3)) #s(hole binary32 (+ (* 1/4 (* (pow alpha 2) u0)) (* 1/3 (pow alpha 2)))))
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#s(approx (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (+ (* (* alpha alpha) (* 1/2 u0)) (* (* alpha alpha) 1))) u0) #s(hole binary32 (* u0 (+ (* u0 (+ (* 1/2 (pow alpha 2)) (* u0 (+ (* 1/4 (* (pow alpha 2) u0)) (* 1/3 (pow alpha 2)))))) (pow alpha 2)))))
#s(approx (* (* (log (- 1 u0)) (neg alpha)) alpha) #s(hole binary32 (* -1 (* (pow alpha 2) (+ (log -1) (* -1 (log (/ 1 u0))))))))
#s(approx (* (* (log (- 1 u0)) (neg alpha)) alpha) #s(hole binary32 (+ (* -1 (* (pow alpha 2) (+ (log -1) (* -1 (log (/ 1 u0)))))) (/ (pow alpha 2) u0))))
#s(approx (* (* (log (- 1 u0)) (neg alpha)) alpha) #s(hole binary32 (+ (* -1 (* (pow alpha 2) (+ (log -1) (* -1 (log (/ 1 u0)))))) (+ (* 1/2 (/ (pow alpha 2) (pow u0 2))) (/ (pow alpha 2) u0)))))
#s(approx (* (* (log (- 1 u0)) (neg alpha)) alpha) #s(hole binary32 (+ (* -1 (* (pow alpha 2) (+ (log -1) (* -1 (log (/ 1 u0)))))) (+ (* 1/3 (/ (pow alpha 2) (pow u0 3))) (+ (* 1/2 (/ (pow alpha 2) (pow u0 2))) (/ (pow alpha 2) u0))))))
#s(approx (* (log (- 1 u0)) (neg alpha)) #s(hole binary32 (* -1 (* alpha (+ (log -1) (* -1 (log (/ 1 u0))))))))
#s(approx (* (log (- 1 u0)) (neg alpha)) #s(hole binary32 (+ (* -1 (* alpha (+ (log -1) (* -1 (log (/ 1 u0)))))) (/ alpha u0))))
#s(approx (* (log (- 1 u0)) (neg alpha)) #s(hole binary32 (+ (* -1 (* alpha (+ (log -1) (* -1 (log (/ 1 u0)))))) (+ (* 1/2 (/ alpha (pow u0 2))) (/ alpha u0)))))
#s(approx (* (log (- 1 u0)) (neg alpha)) #s(hole binary32 (+ (* -1 (* alpha (+ (log -1) (* -1 (log (/ 1 u0)))))) (+ (* 1/3 (/ alpha (pow u0 3))) (+ (* 1/2 (/ alpha (pow u0 2))) (/ alpha u0))))))
#s(approx (* (neg alpha) (log (+ 1 (neg u0)))) #s(hole binary32 (* -1 (* alpha (+ (log -1) (* -1 (log (/ 1 u0))))))))
#s(approx (* (neg alpha) (log (+ 1 (neg u0)))) #s(hole binary32 (+ (* -1 (* alpha (+ (log -1) (* -1 (log (/ 1 u0)))))) (/ alpha u0))))
#s(approx (* (neg alpha) (log (+ 1 (neg u0)))) #s(hole binary32 (+ (* -1 (* alpha (+ (log -1) (* -1 (log (/ 1 u0)))))) (+ (* 1/2 (/ alpha (pow u0 2))) (/ alpha u0)))))
#s(approx (* (neg alpha) (log (+ 1 (neg u0)))) #s(hole binary32 (+ (* -1 (* alpha (+ (log -1) (* -1 (log (/ 1 u0)))))) (+ (* 1/3 (/ alpha (pow u0 3))) (+ (* 1/2 (/ alpha (pow u0 2))) (/ alpha u0))))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (* -1 (* (pow alpha 2) (+ (log -1) (* -1 (log (/ 1 u0))))))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (+ (* -1 (* (pow alpha 2) (+ (log -1) (* -1 (log (/ 1 u0)))))) (/ (pow alpha 2) u0))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (+ (* -1 (* (pow alpha 2) (+ (log -1) (* -1 (log (/ 1 u0)))))) (+ (* 1/2 (/ (pow alpha 2) (pow u0 2))) (/ (pow alpha 2) u0)))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (+ (* -1 (* (pow alpha 2) (+ (log -1) (* -1 (log (/ 1 u0)))))) (+ (* 1/3 (/ (pow alpha 2) (pow u0 3))) (+ (* 1/2 (/ (pow alpha 2) (pow u0 2))) (/ (pow alpha 2) u0))))))
#s(approx (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) u0) #s(hole binary32 (* 1/4 (* (pow alpha 2) (pow u0 4)))))
#s(approx (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) u0) #s(hole binary32 (* (pow u0 4) (+ (* 1/4 (pow alpha 2)) (* 1/3 (/ (pow alpha 2) u0))))))
#s(approx (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) u0) #s(hole binary32 (* (pow u0 4) (+ (* 1/4 (pow alpha 2)) (+ (* 1/3 (/ (pow alpha 2) u0)) (* 1/2 (/ (pow alpha 2) (pow u0 2))))))))
#s(approx (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) u0) #s(hole binary32 (* (pow u0 4) (+ (* 1/4 (pow alpha 2)) (+ (* 1/3 (/ (pow alpha 2) u0)) (+ (* 1/2 (/ (pow alpha 2) (pow u0 2))) (/ (pow alpha 2) (pow u0 3))))))))
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) #s(hole binary32 (* 1/4 (* (pow alpha 2) (pow u0 3)))))
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) #s(hole binary32 (* (pow u0 3) (+ (* 1/4 (pow alpha 2)) (* 1/3 (/ (pow alpha 2) u0))))))
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) #s(hole binary32 (* (pow u0 3) (+ (* 1/4 (pow alpha 2)) (+ (* 1/3 (/ (pow alpha 2) u0)) (* 1/2 (/ (pow alpha 2) (pow u0 2))))))))
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) #s(hole binary32 (* (pow u0 3) (+ (* 1/4 (pow alpha 2)) (+ (* 1/3 (/ (pow alpha 2) u0)) (+ (* 1/2 (/ (pow alpha 2) (pow u0 2))) (/ (pow alpha 2) (pow u0 3))))))))
#s(approx (* (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (* alpha alpha)) #s(hole binary32 (* 1/4 (* (pow alpha 2) (pow u0 3)))))
#s(approx (* (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (* alpha alpha)) #s(hole binary32 (* (pow u0 3) (+ (* 1/4 (pow alpha 2)) (* 1/3 (/ (pow alpha 2) u0))))))
#s(approx (* (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (* alpha alpha)) #s(hole binary32 (* (pow u0 3) (+ (* 1/4 (pow alpha 2)) (+ (* 1/3 (/ (pow alpha 2) u0)) (* 1/2 (/ (pow alpha 2) (pow u0 2))))))))
#s(approx (* (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (* alpha alpha)) #s(hole binary32 (* (pow u0 3) (+ (* 1/4 (pow alpha 2)) (+ (* 1/3 (/ (pow alpha 2) u0)) (+ (* 1/2 (/ (pow alpha 2) (pow u0 2))) (/ (pow alpha 2) (pow u0 3))))))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) #s(hole binary32 (* -1 (* (pow alpha 2) (- (+ (log -1) (* -2 (log (/ 1 u0)))) (* -1 (log (/ 1 u0))))))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) #s(hole binary32 (+ (* -1 (* (pow alpha 2) (- (+ (log -1) (* -2 (log (/ 1 u0)))) (* -1 (log (/ 1 u0)))))) (/ (pow alpha 2) u0))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) #s(hole binary32 (+ (* -1 (* (pow alpha 2) (- (+ (log -1) (* -2 (log (/ 1 u0)))) (* -1 (log (/ 1 u0)))))) (+ (* 1/2 (/ (pow alpha 2) (pow u0 2))) (/ (pow alpha 2) u0)))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) #s(hole binary32 (+ (* -1 (* (pow alpha 2) (- (+ (log -1) (* -2 (log (/ 1 u0)))) (* -1 (log (/ 1 u0)))))) (+ (* 1/3 (/ (pow alpha 2) (pow u0 3))) (+ (* 1/2 (/ (pow alpha 2) (pow u0 2))) (/ (pow alpha 2) u0))))))
#s(approx (* (* (+ (* (* (+ (* 1/3 u0) 1/2) u0) u0) u0) alpha) alpha) #s(hole binary32 (* 1/3 (* (pow alpha 2) (pow u0 3)))))
#s(approx (* (* (+ (* (* (+ (* 1/3 u0) 1/2) u0) u0) u0) alpha) alpha) #s(hole binary32 (* (pow u0 3) (+ (* 1/3 (pow alpha 2)) (* 1/2 (/ (pow alpha 2) u0))))))
#s(approx (* (* (+ (* (* (+ (* 1/3 u0) 1/2) u0) u0) u0) alpha) alpha) #s(hole binary32 (* (pow u0 3) (+ (* 1/3 (pow alpha 2)) (+ (* 1/2 (/ (pow alpha 2) u0)) (/ (pow alpha 2) (pow u0 2)))))))
#s(approx (* (+ (* (* (+ (* 1/3 u0) 1/2) u0) u0) u0) alpha) #s(hole binary32 (* 1/3 (* alpha (pow u0 3)))))
#s(approx (* (+ (* (* (+ (* 1/3 u0) 1/2) u0) u0) u0) alpha) #s(hole binary32 (* (pow u0 3) (+ (* 1/3 alpha) (* 1/2 (/ alpha u0))))))
#s(approx (* (+ (* (* (+ (* 1/3 u0) 1/2) u0) u0) u0) alpha) #s(hole binary32 (* (pow u0 3) (+ (* 1/3 alpha) (+ (* 1/2 (/ alpha u0)) (/ alpha (pow u0 2)))))))
#s(approx (+ (* (* (+ (* 1/3 u0) 1/2) u0) u0) u0) #s(hole binary32 (* 1/3 (pow u0 3))))
#s(approx (+ (* (* (+ (* 1/3 u0) 1/2) u0) u0) u0) #s(hole binary32 (* (pow u0 3) (+ 1/3 (* 1/2 (/ 1 u0))))))
#s(approx (+ (* (* (+ (* 1/3 u0) 1/2) u0) u0) u0) #s(hole binary32 (* (pow u0 3) (+ 1/3 (+ (* 1/2 (/ 1 u0)) (/ 1 (pow u0 2)))))))
#s(approx (log (- 1 u0)) #s(hole binary32 (+ (log -1) (* -1 (log (/ 1 u0))))))
#s(approx (log (- 1 u0)) #s(hole binary32 (- (+ (log -1) (* -1 (log (/ 1 u0)))) (/ 1 u0))))
#s(approx (log (- 1 u0)) #s(hole binary32 (+ (log -1) (+ (* -1 (log (/ 1 u0))) (* -1 (/ (+ 1 (* 1/2 (/ 1 u0))) u0))))))
#s(approx (log (- 1 u0)) #s(hole binary32 (- (+ (log -1) (+ (* -1 (log (/ 1 u0))) (* -1 (/ (+ 1/2 (* 1/3 (/ 1 u0))) (pow u0 2))))) (/ 1 u0))))
#s(approx (* (+ (* (+ (* (+ (* -1/4 u0) -1/3) u0) -1/2) u0) -1) u0) #s(hole binary32 (* -1/4 (pow u0 4))))
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#s(approx (* (+ (* (+ (* (+ (* -1/4 u0) -1/3) u0) -1/2) u0) -1) u0) #s(hole binary32 (* (pow u0 4) (- (* -1 (/ (+ 1/3 (* 1/2 (/ 1 u0))) u0)) 1/4))))
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#s(approx (+ (* (* alpha alpha) (* 1/2 u0)) (* (* alpha alpha) 1)) #s(hole binary32 (* 1/2 (* (pow alpha 2) u0))))
#s(approx (+ (* (* alpha alpha) (* 1/2 u0)) (* (* alpha alpha) 1)) #s(hole binary32 (* u0 (+ (* 1/2 (pow alpha 2)) (/ (pow alpha 2) u0)))))
#s(approx (log (+ 1 (neg u0))) #s(hole binary32 (+ (log -1) (* -1 (log (/ 1 u0))))))
#s(approx (log (+ 1 (neg u0))) #s(hole binary32 (- (+ (log -1) (* -1 (log (/ 1 u0)))) (/ 1 u0))))
#s(approx (log (+ 1 (neg u0))) #s(hole binary32 (+ (log -1) (+ (* -1 (log (/ 1 u0))) (* -1 (/ (+ 1 (* 1/2 (/ 1 u0))) u0))))))
#s(approx (log (+ 1 (neg u0))) #s(hole binary32 (- (+ (log -1) (+ (* -1 (log (/ 1 u0))) (* -1 (/ (+ 1/2 (* 1/3 (/ 1 u0))) (pow u0 2))))) (/ 1 u0))))
#s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) #s(hole binary32 (* 1/4 (pow u0 3))))
#s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) #s(hole binary32 (* (pow u0 3) (+ 1/4 (* 1/3 (/ 1 u0))))))
#s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) #s(hole binary32 (* (pow u0 3) (+ 1/4 (+ (/ 1/2 (pow u0 2)) (* 1/3 (/ 1 u0)))))))
#s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) #s(hole binary32 (* (pow u0 3) (+ 1/4 (+ (/ 1/2 (pow u0 2)) (+ (* 1/3 (/ 1 u0)) (/ 1 (pow u0 3))))))))
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#s(approx (* (* alpha alpha) (+ (* 1/4 u0) 1/3)) #s(hole binary32 (* 1/4 (* (pow alpha 2) u0))))
#s(approx (* (* alpha alpha) (+ (* 1/4 u0) 1/3)) #s(hole binary32 (* u0 (+ (* 1/4 (pow alpha 2)) (* 1/3 (/ (pow alpha 2) u0))))))
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#s(approx (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (+ (* (* alpha alpha) (* 1/2 u0)) (* (* alpha alpha) 1))) u0) #s(hole binary32 (* (pow u0 4) (+ (* 1/4 (pow alpha 2)) (+ (* 1/3 (/ (pow alpha 2) u0)) (+ (* 1/2 (/ (pow alpha 2) (pow u0 2))) (/ (pow alpha 2) (pow u0 3))))))))
#s(approx (* (* (log (- 1 u0)) (neg alpha)) alpha) #s(hole binary32 (* (pow alpha 2) (log (/ -1 u0)))))
#s(approx (* (* (log (- 1 u0)) (neg alpha)) alpha) #s(hole binary32 (+ (* (pow alpha 2) (log (/ -1 u0))) (/ (pow alpha 2) u0))))
#s(approx (* (* (log (- 1 u0)) (neg alpha)) alpha) #s(hole binary32 (+ (* -1 (/ (+ (* -1 (pow alpha 2)) (* -1/2 (/ (pow alpha 2) u0))) u0)) (* (pow alpha 2) (log (/ -1 u0))))))
#s(approx (* (* (log (- 1 u0)) (neg alpha)) alpha) #s(hole binary32 (+ (* -1 (/ (+ (* -1 (/ (+ (* 1/3 (/ (pow alpha 2) u0)) (* 1/2 (pow alpha 2))) u0)) (* -1 (pow alpha 2))) u0)) (* (pow alpha 2) (log (/ -1 u0))))))
#s(approx (* (log (- 1 u0)) (neg alpha)) #s(hole binary32 (* alpha (log (/ -1 u0)))))
#s(approx (* (log (- 1 u0)) (neg alpha)) #s(hole binary32 (+ (* alpha (log (/ -1 u0))) (/ alpha u0))))
#s(approx (* (log (- 1 u0)) (neg alpha)) #s(hole binary32 (+ (* -1 (/ (+ (* -1 alpha) (* -1/2 (/ alpha u0))) u0)) (* alpha (log (/ -1 u0))))))
#s(approx (* (log (- 1 u0)) (neg alpha)) #s(hole binary32 (+ (* -1 (/ (+ (* -1 alpha) (* -1 (/ (+ (* 1/3 (/ alpha u0)) (* 1/2 alpha)) u0))) u0)) (* alpha (log (/ -1 u0))))))
#s(approx (* (neg alpha) (log (+ 1 (neg u0)))) #s(hole binary32 (* alpha (log (/ -1 u0)))))
#s(approx (* (neg alpha) (log (+ 1 (neg u0)))) #s(hole binary32 (+ (* alpha (log (/ -1 u0))) (/ alpha u0))))
#s(approx (* (neg alpha) (log (+ 1 (neg u0)))) #s(hole binary32 (+ (* -1 (/ (+ (* -1 alpha) (* -1/2 (/ alpha u0))) u0)) (* alpha (log (/ -1 u0))))))
#s(approx (* (neg alpha) (log (+ 1 (neg u0)))) #s(hole binary32 (+ (* -1 (/ (+ (* -1 alpha) (* -1 (/ (+ (* 1/3 (/ alpha u0)) (* 1/2 alpha)) u0))) u0)) (* alpha (log (/ -1 u0))))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (* (pow alpha 2) (log (/ -1 u0)))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (+ (* (pow alpha 2) (log (/ -1 u0))) (/ (pow alpha 2) u0))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (+ (* -1 (/ (+ (* -1 (pow alpha 2)) (* -1/2 (/ (pow alpha 2) u0))) u0)) (* (pow alpha 2) (log (/ -1 u0))))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (+ (* -1 (/ (+ (* -1 (/ (+ (* 1/3 (/ (pow alpha 2) u0)) (* 1/2 (pow alpha 2))) u0)) (* -1 (pow alpha 2))) u0)) (* (pow alpha 2) (log (/ -1 u0))))))
#s(approx (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) u0) #s(hole binary32 (* (pow u0 4) (+ (* -1 (/ (+ (* -1/2 (/ (pow alpha 2) u0)) (* -1/3 (pow alpha 2))) u0)) (* 1/4 (pow alpha 2))))))
#s(approx (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) u0) #s(hole binary32 (* (pow u0 4) (+ (* -1 (/ (+ (* -1 (/ (+ (* 1/2 (pow alpha 2)) (/ (pow alpha 2) u0)) u0)) (* -1/3 (pow alpha 2))) u0)) (* 1/4 (pow alpha 2))))))
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) #s(hole binary32 (* -1 (* (pow u0 3) (+ (* -1/3 (/ (pow alpha 2) u0)) (* -1/4 (pow alpha 2)))))))
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) #s(hole binary32 (* -1 (* (pow u0 3) (+ (* -1 (/ (+ (* 1/3 (pow alpha 2)) (* 1/2 (/ (pow alpha 2) u0))) u0)) (* -1/4 (pow alpha 2)))))))
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) #s(hole binary32 (* -1 (* (pow u0 3) (+ (* -1 (/ (+ (* -1 (/ (+ (* -1 (/ (pow alpha 2) u0)) (* -1/2 (pow alpha 2))) u0)) (* 1/3 (pow alpha 2))) u0)) (* -1/4 (pow alpha 2)))))))
#s(approx (* (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (* alpha alpha)) #s(hole binary32 (* -1 (* (pow u0 3) (+ (* -1/3 (/ (pow alpha 2) u0)) (* -1/4 (pow alpha 2)))))))
#s(approx (* (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (* alpha alpha)) #s(hole binary32 (* -1 (* (pow u0 3) (+ (* -1 (/ (+ (* 1/3 (pow alpha 2)) (* 1/2 (/ (pow alpha 2) u0))) u0)) (* -1/4 (pow alpha 2)))))))
#s(approx (* (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (* alpha alpha)) #s(hole binary32 (* -1 (* (pow u0 3) (+ (* -1 (/ (+ (* -1 (/ (+ (* -1 (/ (pow alpha 2) u0)) (* -1/2 (pow alpha 2))) u0)) (* 1/3 (pow alpha 2))) u0)) (* -1/4 (pow alpha 2)))))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) #s(hole binary32 (* -1 (* (pow alpha 2) (- (* -2 (log (/ -1 u0))) (* -1 (log (/ -1 u0))))))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) #s(hole binary32 (+ (* -1 (* (pow alpha 2) (- (* -2 (log (/ -1 u0))) (* -1 (log (/ -1 u0)))))) (/ (pow alpha 2) u0))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) #s(hole binary32 (+ (* -1 (* (pow alpha 2) (- (* -2 (log (/ -1 u0))) (* -1 (log (/ -1 u0)))))) (* -1 (/ (+ (* -1 (pow alpha 2)) (* -1/2 (/ (pow alpha 2) u0))) u0)))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) #s(hole binary32 (+ (* -1 (* (pow alpha 2) (- (* -2 (log (/ -1 u0))) (* -1 (log (/ -1 u0)))))) (* -1 (/ (+ (* -1 (/ (+ (* 1/3 (/ (pow alpha 2) u0)) (* 1/2 (pow alpha 2))) u0)) (* -1 (pow alpha 2))) u0)))))
#s(approx (* (* (+ (* (* (+ (* 1/3 u0) 1/2) u0) u0) u0) alpha) alpha) #s(hole binary32 (* -1 (* (pow u0 3) (+ (* -1/2 (/ (pow alpha 2) u0)) (* -1/3 (pow alpha 2)))))))
#s(approx (* (* (+ (* (* (+ (* 1/3 u0) 1/2) u0) u0) u0) alpha) alpha) #s(hole binary32 (* -1 (* (pow u0 3) (+ (* -1 (/ (+ (* 1/2 (pow alpha 2)) (/ (pow alpha 2) u0)) u0)) (* -1/3 (pow alpha 2)))))))
#s(approx (* (+ (* (* (+ (* 1/3 u0) 1/2) u0) u0) u0) alpha) #s(hole binary32 (* -1 (* (pow u0 3) (+ (* -1/2 (/ alpha u0)) (* -1/3 alpha))))))
#s(approx (* (+ (* (* (+ (* 1/3 u0) 1/2) u0) u0) u0) alpha) #s(hole binary32 (* -1 (* (pow u0 3) (+ (* -1 (/ (+ (* 1/2 alpha) (/ alpha u0)) u0)) (* -1/3 alpha))))))
#s(approx (+ (* (* (+ (* 1/3 u0) 1/2) u0) u0) u0) #s(hole binary32 (* -1 (* (pow u0 3) (- (* -1 (/ (+ 1/2 (/ 1 u0)) u0)) 1/3)))))
#s(approx (log (- 1 u0)) #s(hole binary32 (* -1 (log (/ -1 u0)))))
#s(approx (log (- 1 u0)) #s(hole binary32 (- (* -1 (log (/ -1 u0))) (/ 1 u0))))
#s(approx (log (- 1 u0)) #s(hole binary32 (+ (* -1 (log (/ -1 u0))) (* -1 (/ (+ 1 (* 1/2 (/ 1 u0))) u0)))))
#s(approx (log (- 1 u0)) #s(hole binary32 (+ (* -1 (log (/ -1 u0))) (* -1 (/ (+ 1 (+ (/ 1/3 (pow u0 2)) (* 1/2 (/ 1 u0)))) u0)))))
#s(approx (* (+ (* (+ (* (+ (* -1/4 u0) -1/3) u0) -1/2) u0) -1) u0) #s(hole binary32 (* (pow u0 4) (- (* -1 (/ (+ 1/3 (+ (* 1/2 (/ 1 u0)) (/ 1 (pow u0 2)))) u0)) 1/4))))
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (+ (* (* alpha alpha) (* 1/2 u0)) (* (* alpha alpha) 1))) #s(hole binary32 (* -1 (* (pow u0 3) (+ (* -1/3 (/ (pow alpha 2) u0)) (* -1/4 (pow alpha 2)))))))
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (+ (* (* alpha alpha) (* 1/2 u0)) (* (* alpha alpha) 1))) #s(hole binary32 (* -1 (* (pow u0 3) (+ (* -1 (/ (+ (* 1/3 (pow alpha 2)) (* 1/2 (/ (pow alpha 2) u0))) u0)) (* -1/4 (pow alpha 2)))))))
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (+ (* (* alpha alpha) (* 1/2 u0)) (* (* alpha alpha) 1))) #s(hole binary32 (* -1 (* (pow u0 3) (+ (* -1 (/ (+ (* -1 (/ (+ (* -1 (/ (pow alpha 2) u0)) (* -1/2 (pow alpha 2))) u0)) (* 1/3 (pow alpha 2))) u0)) (* -1/4 (pow alpha 2)))))))
#s(approx (+ (* (* alpha alpha) (* 1/2 u0)) (* (* alpha alpha) 1)) #s(hole binary32 (* -1 (* u0 (+ (* -1 (/ (pow alpha 2) u0)) (* -1/2 (pow alpha 2)))))))
#s(approx (log (+ 1 (neg u0))) #s(hole binary32 (* -1 (log (/ -1 u0)))))
#s(approx (log (+ 1 (neg u0))) #s(hole binary32 (- (* -1 (log (/ -1 u0))) (/ 1 u0))))
#s(approx (log (+ 1 (neg u0))) #s(hole binary32 (+ (* -1 (log (/ -1 u0))) (* -1 (/ (+ 1 (* 1/2 (/ 1 u0))) u0)))))
#s(approx (log (+ 1 (neg u0))) #s(hole binary32 (+ (* -1 (log (/ -1 u0))) (* -1 (/ (+ 1 (+ (/ 1/3 (pow u0 2)) (* 1/2 (/ 1 u0)))) u0)))))
#s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) #s(hole binary32 (* -1 (* (pow u0 3) (- (* -1 (/ (+ 1/3 (* 1/2 (/ 1 u0))) u0)) 1/4)))))
#s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) #s(hole binary32 (* -1 (* (pow u0 3) (- (* -1 (/ (+ 1/3 (+ (* 1/2 (/ 1 u0)) (/ 1 (pow u0 2)))) u0)) 1/4)))))
#s(approx (* (* alpha alpha) (+ (* 1/4 u0) 1/3)) #s(hole binary32 (* -1 (* u0 (+ (* -1/3 (/ (pow alpha 2) u0)) (* -1/4 (pow alpha 2)))))))
#s(approx (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (+ (* (* alpha alpha) (* 1/2 u0)) (* (* alpha alpha) 1))) u0) #s(hole binary32 (* (pow u0 4) (+ (* -1 (/ (+ (* -1/2 (/ (pow alpha 2) u0)) (* -1/3 (pow alpha 2))) u0)) (* 1/4 (pow alpha 2))))))
#s(approx (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (+ (* (* alpha alpha) (* 1/2 u0)) (* (* alpha alpha) 1))) u0) #s(hole binary32 (* (pow u0 4) (+ (* -1 (/ (+ (* -1 (/ (+ (* 1/2 (pow alpha 2)) (/ (pow alpha 2) u0)) u0)) (* -1/3 (pow alpha 2))) u0)) (* 1/4 (pow alpha 2))))))
Calls

6 calls:

TimeVariablePointExpression
51.0ms
alpha
@0
((* (* (log (- 1 u0)) (neg alpha)) alpha) (* (log (- 1 u0)) (neg alpha)) (* (neg alpha) (log (+ 1 (neg u0)))) (neg alpha) (* (* (neg alpha) alpha) (log (- 1 u0))) (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) u0) (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (* (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (* alpha alpha)) (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (* (* (+ (* (* (+ (* 1/3 u0) 1/2) u0) u0) u0) alpha) alpha) (* (+ (* (* (+ (* 1/3 u0) 1/2) u0) u0) u0) alpha) (+ (* (* (+ (* 1/3 u0) 1/2) u0) u0) u0) (* (* (log (- 1 u0)) (neg alpha)) alpha) (* (log (- 1 u0)) (neg alpha)) (log (- 1 u0)) (* (+ (* (+ (* (+ (* -1/4 u0) -1/3) u0) -1/2) u0) -1) u0) (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (+ (* (* alpha alpha) (* 1/2 u0)) (* (* alpha alpha) 1))) (+ (* (* alpha alpha) (* 1/2 u0)) (* (* alpha alpha) 1)) (* (* alpha alpha) 1) (* (* (neg alpha) alpha) (log (- 1 u0))) (log (+ 1 (neg u0))) (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (* (+ (* 1/3 u0) 1/2) u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3)) (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (+ (* (* alpha alpha) (* 1/2 u0)) (* (* alpha alpha) 1))) u0))
31.0ms
alpha
@inf
((* (* (log (- 1 u0)) (neg alpha)) alpha) (* (log (- 1 u0)) (neg alpha)) (* (neg alpha) (log (+ 1 (neg u0)))) (neg alpha) (* (* (neg alpha) alpha) (log (- 1 u0))) (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) u0) (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (* (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (* alpha alpha)) (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (* (* (+ (* (* (+ (* 1/3 u0) 1/2) u0) u0) u0) alpha) alpha) (* (+ (* (* (+ (* 1/3 u0) 1/2) u0) u0) u0) alpha) (+ (* (* (+ (* 1/3 u0) 1/2) u0) u0) u0) (* (* (log (- 1 u0)) (neg alpha)) alpha) (* (log (- 1 u0)) (neg alpha)) (log (- 1 u0)) (* (+ (* (+ (* (+ (* -1/4 u0) -1/3) u0) -1/2) u0) -1) u0) (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (+ (* (* alpha alpha) (* 1/2 u0)) (* (* alpha alpha) 1))) (+ (* (* alpha alpha) (* 1/2 u0)) (* (* alpha alpha) 1)) (* (* alpha alpha) 1) (* (* (neg alpha) alpha) (log (- 1 u0))) (log (+ 1 (neg u0))) (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (* (+ (* 1/3 u0) 1/2) u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3)) (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (+ (* (* alpha alpha) (* 1/2 u0)) (* (* alpha alpha) 1))) u0))
27.0ms
alpha
@-inf
((* (* (log (- 1 u0)) (neg alpha)) alpha) (* (log (- 1 u0)) (neg alpha)) (* (neg alpha) (log (+ 1 (neg u0)))) (neg alpha) (* (* (neg alpha) alpha) (log (- 1 u0))) (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) u0) (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (* (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (* alpha alpha)) (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (* (* (+ (* (* (+ (* 1/3 u0) 1/2) u0) u0) u0) alpha) alpha) (* (+ (* (* (+ (* 1/3 u0) 1/2) u0) u0) u0) alpha) (+ (* (* (+ (* 1/3 u0) 1/2) u0) u0) u0) (* (* (log (- 1 u0)) (neg alpha)) alpha) (* (log (- 1 u0)) (neg alpha)) (log (- 1 u0)) (* (+ (* (+ (* (+ (* -1/4 u0) -1/3) u0) -1/2) u0) -1) u0) (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (+ (* (* alpha alpha) (* 1/2 u0)) (* (* alpha alpha) 1))) (+ (* (* alpha alpha) (* 1/2 u0)) (* (* alpha alpha) 1)) (* (* alpha alpha) 1) (* (* (neg alpha) alpha) (log (- 1 u0))) (log (+ 1 (neg u0))) (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (* (+ (* 1/3 u0) 1/2) u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3)) (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (+ (* (* alpha alpha) (* 1/2 u0)) (* (* alpha alpha) 1))) u0))
3.0ms
u0
@-inf
((* (* (log (- 1 u0)) (neg alpha)) alpha) (* (log (- 1 u0)) (neg alpha)) (* (neg alpha) (log (+ 1 (neg u0)))) (neg alpha) (* (* (neg alpha) alpha) (log (- 1 u0))) (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) u0) (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (* (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (* alpha alpha)) (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (* (* (+ (* (* (+ (* 1/3 u0) 1/2) u0) u0) u0) alpha) alpha) (* (+ (* (* (+ (* 1/3 u0) 1/2) u0) u0) u0) alpha) (+ (* (* (+ (* 1/3 u0) 1/2) u0) u0) u0) (* (* (log (- 1 u0)) (neg alpha)) alpha) (* (log (- 1 u0)) (neg alpha)) (log (- 1 u0)) (* (+ (* (+ (* (+ (* -1/4 u0) -1/3) u0) -1/2) u0) -1) u0) (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (+ (* (* alpha alpha) (* 1/2 u0)) (* (* alpha alpha) 1))) (+ (* (* alpha alpha) (* 1/2 u0)) (* (* alpha alpha) 1)) (* (* alpha alpha) 1) (* (* (neg alpha) alpha) (log (- 1 u0))) (log (+ 1 (neg u0))) (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (* (+ (* 1/3 u0) 1/2) u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3)) (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (+ (* (* alpha alpha) (* 1/2 u0)) (* (* alpha alpha) 1))) u0))
3.0ms
u0
@inf
((* (* (log (- 1 u0)) (neg alpha)) alpha) (* (log (- 1 u0)) (neg alpha)) (* (neg alpha) (log (+ 1 (neg u0)))) (neg alpha) (* (* (neg alpha) alpha) (log (- 1 u0))) (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) u0) (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (* (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (* alpha alpha)) (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (* (* (+ (* (* (+ (* 1/3 u0) 1/2) u0) u0) u0) alpha) alpha) (* (+ (* (* (+ (* 1/3 u0) 1/2) u0) u0) u0) alpha) (+ (* (* (+ (* 1/3 u0) 1/2) u0) u0) u0) (* (* (log (- 1 u0)) (neg alpha)) alpha) (* (log (- 1 u0)) (neg alpha)) (log (- 1 u0)) (* (+ (* (+ (* (+ (* -1/4 u0) -1/3) u0) -1/2) u0) -1) u0) (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (+ (* (* alpha alpha) (* 1/2 u0)) (* (* alpha alpha) 1))) (+ (* (* alpha alpha) (* 1/2 u0)) (* (* alpha alpha) 1)) (* (* alpha alpha) 1) (* (* (neg alpha) alpha) (log (- 1 u0))) (log (+ 1 (neg u0))) (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (* (+ (* 1/3 u0) 1/2) u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3)) (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (+ (* (* alpha alpha) (* 1/2 u0)) (* (* alpha alpha) 1))) u0))

simplify158.0ms (1.9%)

Memory
-20.8MiB live, 170.6MiB allocated; 15ms collecting garbage
Iterations

Useful iterations: 0 (0.0ms)

IterNodesCost
05976312
116455748
265885682
081795045
Stop Event
iter limit
node limit
Counts
209 → 209
Calls
Call 1
Inputs
#s(approx (* (* (log (- 1 u0)) (neg alpha)) alpha) #s(hole binary32 (* -1 (* (pow alpha 2) (log (- 1 u0))))))
#s(approx (* (log (- 1 u0)) (neg alpha)) #s(hole binary32 (* -1 (* alpha (log (- 1 u0))))))
#s(approx (* (neg alpha) (log (+ 1 (neg u0)))) #s(hole binary32 (* -1 (* alpha (log (- 1 u0))))))
#s(approx (neg alpha) #s(hole binary32 (* -1 alpha)))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (* -1 (* (pow alpha 2) (log (- 1 u0))))))
#s(approx (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) u0) #s(hole binary32 (* (pow alpha 2) (* u0 (+ 1 (+ (* 1/2 u0) (* (pow u0 2) (+ 1/3 (* 1/4 u0)))))))))
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) #s(hole binary32 (* (pow alpha 2) (+ 1 (+ (* 1/2 u0) (* (pow u0 2) (+ 1/3 (* 1/4 u0))))))))
#s(approx (* (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (* alpha alpha)) #s(hole binary32 (* (pow alpha 2) (+ 1 (+ (* 1/2 u0) (* (pow u0 2) (+ 1/3 (* 1/4 u0))))))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) #s(hole binary32 (* -1 (* (pow alpha 2) (- (log (+ 1 (* -1 (pow u0 2)))) (log (+ 1 u0)))))))
#s(approx (* (* (+ (* (* (+ (* 1/3 u0) 1/2) u0) u0) u0) alpha) alpha) #s(hole binary32 (* (pow alpha 2) (+ u0 (* (pow u0 2) (+ 1/2 (* 1/3 u0)))))))
#s(approx (* (+ (* (* (+ (* 1/3 u0) 1/2) u0) u0) u0) alpha) #s(hole binary32 (* alpha (+ u0 (* (pow u0 2) (+ 1/2 (* 1/3 u0)))))))
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (+ (* (* alpha alpha) (* 1/2 u0)) (* (* alpha alpha) 1))) #s(hole binary32 (* (pow alpha 2) (+ 1 (+ (* 1/2 u0) (* (pow u0 2) (+ 1/3 (* 1/4 u0))))))))
#s(approx (+ (* (* alpha alpha) (* 1/2 u0)) (* (* alpha alpha) 1)) #s(hole binary32 (* (pow alpha 2) (+ 1 (* 1/2 u0)))))
#s(approx (* (* alpha alpha) 1) #s(hole binary32 (pow alpha 2)))
#s(approx (* (* alpha alpha) (+ (* 1/4 u0) 1/3)) #s(hole binary32 (* (pow alpha 2) (+ 1/3 (* 1/4 u0)))))
#s(approx (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (+ (* (* alpha alpha) (* 1/2 u0)) (* (* alpha alpha) 1))) u0) #s(hole binary32 (* (pow alpha 2) (* u0 (+ 1 (+ (* 1/2 u0) (* (pow u0 2) (+ 1/3 (* 1/4 u0)))))))))
#s(approx (* (* (log (- 1 u0)) (neg alpha)) alpha) #s(hole binary32 (* (pow alpha 2) u0)))
#s(approx (* (* (log (- 1 u0)) (neg alpha)) alpha) #s(hole binary32 (* u0 (+ (* 1/2 (* (pow alpha 2) u0)) (pow alpha 2)))))
#s(approx (* (* (log (- 1 u0)) (neg alpha)) alpha) #s(hole binary32 (* u0 (+ (* u0 (+ (* 1/3 (* (pow alpha 2) u0)) (* 1/2 (pow alpha 2)))) (pow alpha 2)))))
#s(approx (* (* (log (- 1 u0)) (neg alpha)) alpha) #s(hole binary32 (* u0 (+ (* u0 (+ (* 1/2 (pow alpha 2)) (* u0 (+ (* 1/4 (* (pow alpha 2) u0)) (* 1/3 (pow alpha 2)))))) (pow alpha 2)))))
#s(approx (* (log (- 1 u0)) (neg alpha)) #s(hole binary32 (* alpha u0)))
#s(approx (* (log (- 1 u0)) (neg alpha)) #s(hole binary32 (* u0 (+ alpha (* 1/2 (* alpha u0))))))
#s(approx (* (log (- 1 u0)) (neg alpha)) #s(hole binary32 (* u0 (+ alpha (* u0 (+ (* 1/3 (* alpha u0)) (* 1/2 alpha)))))))
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#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (* u0 (+ (* u0 (+ (* 1/3 (* (pow alpha 2) u0)) (* 1/2 (pow alpha 2)))) (pow alpha 2)))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (* u0 (+ (* u0 (+ (* 1/2 (pow alpha 2)) (* u0 (+ (* 1/4 (* (pow alpha 2) u0)) (* 1/3 (pow alpha 2)))))) (pow alpha 2)))))
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#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) #s(hole binary32 (* (pow alpha 2) u0)))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) #s(hole binary32 (* u0 (+ (* 1/2 (* (pow alpha 2) u0)) (pow alpha 2)))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) #s(hole binary32 (* u0 (+ (* u0 (+ (* 1/3 (* (pow alpha 2) u0)) (* 1/2 (pow alpha 2)))) (pow alpha 2)))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) #s(hole binary32 (* u0 (+ (* u0 (+ (* 1/2 (pow alpha 2)) (* u0 (+ (* 1/4 (* (pow alpha 2) u0)) (* 1/3 (pow alpha 2)))))) (pow alpha 2)))))
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#s(approx (* (* (+ (* (* (+ (* 1/3 u0) 1/2) u0) u0) u0) alpha) alpha) #s(hole binary32 (* u0 (+ (* 1/2 (* (pow alpha 2) u0)) (pow alpha 2)))))
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#s(approx (log (- 1 u0)) #s(hole binary32 (* -1 u0)))
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#s(approx (* (+ (* (+ (* (+ (* -1/4 u0) -1/3) u0) -1/2) u0) -1) u0) #s(hole binary32 (* u0 (- (* -1/2 u0) 1))))
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#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (+ (* (* alpha alpha) (* 1/2 u0)) (* (* alpha alpha) 1))) #s(hole binary32 (+ (* u0 (+ (* 1/3 (* (pow alpha 2) u0)) (* 1/2 (pow alpha 2)))) (pow alpha 2))))
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (+ (* (* alpha alpha) (* 1/2 u0)) (* (* alpha alpha) 1))) #s(hole binary32 (+ (* u0 (+ (* 1/2 (pow alpha 2)) (* u0 (+ (* 1/4 (* (pow alpha 2) u0)) (* 1/3 (pow alpha 2)))))) (pow alpha 2))))
#s(approx (+ (* (* alpha alpha) (* 1/2 u0)) (* (* alpha alpha) 1)) #s(hole binary32 (pow alpha 2)))
#s(approx (+ (* (* alpha alpha) (* 1/2 u0)) (* (* alpha alpha) 1)) #s(hole binary32 (+ (* 1/2 (* (pow alpha 2) u0)) (pow alpha 2))))
#s(approx (log (+ 1 (neg u0))) #s(hole binary32 (* -1 u0)))
#s(approx (log (+ 1 (neg u0))) #s(hole binary32 (* u0 (- (* -1/2 u0) 1))))
#s(approx (log (+ 1 (neg u0))) #s(hole binary32 (* u0 (- (* u0 (- (* -1/3 u0) 1/2)) 1))))
#s(approx (log (+ 1 (neg u0))) #s(hole binary32 (* u0 (- (* u0 (- (* u0 (- (* -1/4 u0) 1/3)) 1/2)) 1))))
#s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) #s(hole binary32 1))
#s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) #s(hole binary32 (+ 1 (* 1/2 u0))))
#s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) #s(hole binary32 (+ 1 (* u0 (+ 1/2 (* 1/3 u0))))))
#s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) #s(hole binary32 (+ 1 (* u0 (+ 1/2 (* u0 (+ 1/3 (* 1/4 u0))))))))
#s(approx (* (+ (* 1/3 u0) 1/2) u0) #s(hole binary32 (* 1/2 u0)))
#s(approx (* (+ (* 1/3 u0) 1/2) u0) #s(hole binary32 (* u0 (+ 1/2 (* 1/3 u0)))))
#s(approx (* (* alpha alpha) (+ (* 1/4 u0) 1/3)) #s(hole binary32 (* 1/3 (pow alpha 2))))
#s(approx (* (* alpha alpha) (+ (* 1/4 u0) 1/3)) #s(hole binary32 (+ (* 1/4 (* (pow alpha 2) u0)) (* 1/3 (pow alpha 2)))))
#s(approx (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (+ (* (* alpha alpha) (* 1/2 u0)) (* (* alpha alpha) 1))) u0) #s(hole binary32 (* (pow alpha 2) u0)))
#s(approx (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (+ (* (* alpha alpha) (* 1/2 u0)) (* (* alpha alpha) 1))) u0) #s(hole binary32 (* u0 (+ (* 1/2 (* (pow alpha 2) u0)) (pow alpha 2)))))
#s(approx (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (+ (* (* alpha alpha) (* 1/2 u0)) (* (* alpha alpha) 1))) u0) #s(hole binary32 (* u0 (+ (* u0 (+ (* 1/3 (* (pow alpha 2) u0)) (* 1/2 (pow alpha 2)))) (pow alpha 2)))))
#s(approx (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (+ (* (* alpha alpha) (* 1/2 u0)) (* (* alpha alpha) 1))) u0) #s(hole binary32 (* u0 (+ (* u0 (+ (* 1/2 (pow alpha 2)) (* u0 (+ (* 1/4 (* (pow alpha 2) u0)) (* 1/3 (pow alpha 2)))))) (pow alpha 2)))))
#s(approx (* (* (log (- 1 u0)) (neg alpha)) alpha) #s(hole binary32 (* -1 (* (pow alpha 2) (+ (log -1) (* -1 (log (/ 1 u0))))))))
#s(approx (* (* (log (- 1 u0)) (neg alpha)) alpha) #s(hole binary32 (+ (* -1 (* (pow alpha 2) (+ (log -1) (* -1 (log (/ 1 u0)))))) (/ (pow alpha 2) u0))))
#s(approx (* (* (log (- 1 u0)) (neg alpha)) alpha) #s(hole binary32 (+ (* -1 (* (pow alpha 2) (+ (log -1) (* -1 (log (/ 1 u0)))))) (+ (* 1/2 (/ (pow alpha 2) (pow u0 2))) (/ (pow alpha 2) u0)))))
#s(approx (* (* (log (- 1 u0)) (neg alpha)) alpha) #s(hole binary32 (+ (* -1 (* (pow alpha 2) (+ (log -1) (* -1 (log (/ 1 u0)))))) (+ (* 1/3 (/ (pow alpha 2) (pow u0 3))) (+ (* 1/2 (/ (pow alpha 2) (pow u0 2))) (/ (pow alpha 2) u0))))))
#s(approx (* (log (- 1 u0)) (neg alpha)) #s(hole binary32 (* -1 (* alpha (+ (log -1) (* -1 (log (/ 1 u0))))))))
#s(approx (* (log (- 1 u0)) (neg alpha)) #s(hole binary32 (+ (* -1 (* alpha (+ (log -1) (* -1 (log (/ 1 u0)))))) (/ alpha u0))))
#s(approx (* (log (- 1 u0)) (neg alpha)) #s(hole binary32 (+ (* -1 (* alpha (+ (log -1) (* -1 (log (/ 1 u0)))))) (+ (* 1/2 (/ alpha (pow u0 2))) (/ alpha u0)))))
#s(approx (* (log (- 1 u0)) (neg alpha)) #s(hole binary32 (+ (* -1 (* alpha (+ (log -1) (* -1 (log (/ 1 u0)))))) (+ (* 1/3 (/ alpha (pow u0 3))) (+ (* 1/2 (/ alpha (pow u0 2))) (/ alpha u0))))))
#s(approx (* (neg alpha) (log (+ 1 (neg u0)))) #s(hole binary32 (* -1 (* alpha (+ (log -1) (* -1 (log (/ 1 u0))))))))
#s(approx (* (neg alpha) (log (+ 1 (neg u0)))) #s(hole binary32 (+ (* -1 (* alpha (+ (log -1) (* -1 (log (/ 1 u0)))))) (/ alpha u0))))
#s(approx (* (neg alpha) (log (+ 1 (neg u0)))) #s(hole binary32 (+ (* -1 (* alpha (+ (log -1) (* -1 (log (/ 1 u0)))))) (+ (* 1/2 (/ alpha (pow u0 2))) (/ alpha u0)))))
#s(approx (* (neg alpha) (log (+ 1 (neg u0)))) #s(hole binary32 (+ (* -1 (* alpha (+ (log -1) (* -1 (log (/ 1 u0)))))) (+ (* 1/3 (/ alpha (pow u0 3))) (+ (* 1/2 (/ alpha (pow u0 2))) (/ alpha u0))))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (* -1 (* (pow alpha 2) (+ (log -1) (* -1 (log (/ 1 u0))))))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (+ (* -1 (* (pow alpha 2) (+ (log -1) (* -1 (log (/ 1 u0)))))) (/ (pow alpha 2) u0))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (+ (* -1 (* (pow alpha 2) (+ (log -1) (* -1 (log (/ 1 u0)))))) (+ (* 1/2 (/ (pow alpha 2) (pow u0 2))) (/ (pow alpha 2) u0)))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (+ (* -1 (* (pow alpha 2) (+ (log -1) (* -1 (log (/ 1 u0)))))) (+ (* 1/3 (/ (pow alpha 2) (pow u0 3))) (+ (* 1/2 (/ (pow alpha 2) (pow u0 2))) (/ (pow alpha 2) u0))))))
#s(approx (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) u0) #s(hole binary32 (* 1/4 (* (pow alpha 2) (pow u0 4)))))
#s(approx (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) u0) #s(hole binary32 (* (pow u0 4) (+ (* 1/4 (pow alpha 2)) (* 1/3 (/ (pow alpha 2) u0))))))
#s(approx (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) u0) #s(hole binary32 (* (pow u0 4) (+ (* 1/4 (pow alpha 2)) (+ (* 1/3 (/ (pow alpha 2) u0)) (* 1/2 (/ (pow alpha 2) (pow u0 2))))))))
#s(approx (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) u0) #s(hole binary32 (* (pow u0 4) (+ (* 1/4 (pow alpha 2)) (+ (* 1/3 (/ (pow alpha 2) u0)) (+ (* 1/2 (/ (pow alpha 2) (pow u0 2))) (/ (pow alpha 2) (pow u0 3))))))))
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) #s(hole binary32 (* 1/4 (* (pow alpha 2) (pow u0 3)))))
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) #s(hole binary32 (* (pow u0 3) (+ (* 1/4 (pow alpha 2)) (* 1/3 (/ (pow alpha 2) u0))))))
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) #s(hole binary32 (* (pow u0 3) (+ (* 1/4 (pow alpha 2)) (+ (* 1/3 (/ (pow alpha 2) u0)) (* 1/2 (/ (pow alpha 2) (pow u0 2))))))))
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) #s(hole binary32 (* (pow u0 3) (+ (* 1/4 (pow alpha 2)) (+ (* 1/3 (/ (pow alpha 2) u0)) (+ (* 1/2 (/ (pow alpha 2) (pow u0 2))) (/ (pow alpha 2) (pow u0 3))))))))
#s(approx (* (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (* alpha alpha)) #s(hole binary32 (* 1/4 (* (pow alpha 2) (pow u0 3)))))
#s(approx (* (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (* alpha alpha)) #s(hole binary32 (* (pow u0 3) (+ (* 1/4 (pow alpha 2)) (* 1/3 (/ (pow alpha 2) u0))))))
#s(approx (* (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (* alpha alpha)) #s(hole binary32 (* (pow u0 3) (+ (* 1/4 (pow alpha 2)) (+ (* 1/3 (/ (pow alpha 2) u0)) (* 1/2 (/ (pow alpha 2) (pow u0 2))))))))
#s(approx (* (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (* alpha alpha)) #s(hole binary32 (* (pow u0 3) (+ (* 1/4 (pow alpha 2)) (+ (* 1/3 (/ (pow alpha 2) u0)) (+ (* 1/2 (/ (pow alpha 2) (pow u0 2))) (/ (pow alpha 2) (pow u0 3))))))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) #s(hole binary32 (* -1 (* (pow alpha 2) (- (+ (log -1) (* -2 (log (/ 1 u0)))) (* -1 (log (/ 1 u0))))))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) #s(hole binary32 (+ (* -1 (* (pow alpha 2) (- (+ (log -1) (* -2 (log (/ 1 u0)))) (* -1 (log (/ 1 u0)))))) (/ (pow alpha 2) u0))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) #s(hole binary32 (+ (* -1 (* (pow alpha 2) (- (+ (log -1) (* -2 (log (/ 1 u0)))) (* -1 (log (/ 1 u0)))))) (+ (* 1/2 (/ (pow alpha 2) (pow u0 2))) (/ (pow alpha 2) u0)))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) #s(hole binary32 (+ (* -1 (* (pow alpha 2) (- (+ (log -1) (* -2 (log (/ 1 u0)))) (* -1 (log (/ 1 u0)))))) (+ (* 1/3 (/ (pow alpha 2) (pow u0 3))) (+ (* 1/2 (/ (pow alpha 2) (pow u0 2))) (/ (pow alpha 2) u0))))))
#s(approx (* (* (+ (* (* (+ (* 1/3 u0) 1/2) u0) u0) u0) alpha) alpha) #s(hole binary32 (* 1/3 (* (pow alpha 2) (pow u0 3)))))
#s(approx (* (* (+ (* (* (+ (* 1/3 u0) 1/2) u0) u0) u0) alpha) alpha) #s(hole binary32 (* (pow u0 3) (+ (* 1/3 (pow alpha 2)) (* 1/2 (/ (pow alpha 2) u0))))))
#s(approx (* (* (+ (* (* (+ (* 1/3 u0) 1/2) u0) u0) u0) alpha) alpha) #s(hole binary32 (* (pow u0 3) (+ (* 1/3 (pow alpha 2)) (+ (* 1/2 (/ (pow alpha 2) u0)) (/ (pow alpha 2) (pow u0 2)))))))
#s(approx (* (+ (* (* (+ (* 1/3 u0) 1/2) u0) u0) u0) alpha) #s(hole binary32 (* 1/3 (* alpha (pow u0 3)))))
#s(approx (* (+ (* (* (+ (* 1/3 u0) 1/2) u0) u0) u0) alpha) #s(hole binary32 (* (pow u0 3) (+ (* 1/3 alpha) (* 1/2 (/ alpha u0))))))
#s(approx (* (+ (* (* (+ (* 1/3 u0) 1/2) u0) u0) u0) alpha) #s(hole binary32 (* (pow u0 3) (+ (* 1/3 alpha) (+ (* 1/2 (/ alpha u0)) (/ alpha (pow u0 2)))))))
#s(approx (+ (* (* (+ (* 1/3 u0) 1/2) u0) u0) u0) #s(hole binary32 (* 1/3 (pow u0 3))))
#s(approx (+ (* (* (+ (* 1/3 u0) 1/2) u0) u0) u0) #s(hole binary32 (* (pow u0 3) (+ 1/3 (* 1/2 (/ 1 u0))))))
#s(approx (+ (* (* (+ (* 1/3 u0) 1/2) u0) u0) u0) #s(hole binary32 (* (pow u0 3) (+ 1/3 (+ (* 1/2 (/ 1 u0)) (/ 1 (pow u0 2)))))))
#s(approx (log (- 1 u0)) #s(hole binary32 (+ (log -1) (* -1 (log (/ 1 u0))))))
#s(approx (log (- 1 u0)) #s(hole binary32 (- (+ (log -1) (* -1 (log (/ 1 u0)))) (/ 1 u0))))
#s(approx (log (- 1 u0)) #s(hole binary32 (+ (log -1) (+ (* -1 (log (/ 1 u0))) (* -1 (/ (+ 1 (* 1/2 (/ 1 u0))) u0))))))
#s(approx (log (- 1 u0)) #s(hole binary32 (- (+ (log -1) (+ (* -1 (log (/ 1 u0))) (* -1 (/ (+ 1/2 (* 1/3 (/ 1 u0))) (pow u0 2))))) (/ 1 u0))))
#s(approx (* (+ (* (+ (* (+ (* -1/4 u0) -1/3) u0) -1/2) u0) -1) u0) #s(hole binary32 (* -1/4 (pow u0 4))))
#s(approx (* (+ (* (+ (* (+ (* -1/4 u0) -1/3) u0) -1/2) u0) -1) u0) #s(hole binary32 (* -1 (* (pow u0 4) (+ 1/4 (* 1/3 (/ 1 u0)))))))
#s(approx (* (+ (* (+ (* (+ (* -1/4 u0) -1/3) u0) -1/2) u0) -1) u0) #s(hole binary32 (* (pow u0 4) (- (* -1 (/ (+ 1/3 (* 1/2 (/ 1 u0))) u0)) 1/4))))
#s(approx (* (+ (* (+ (* (+ (* -1/4 u0) -1/3) u0) -1/2) u0) -1) u0) #s(hole binary32 (* (pow u0 4) (- (* -1 (/ (+ 1/2 (/ 1 u0)) (pow u0 2))) (+ 1/4 (* 1/3 (/ 1 u0)))))))
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#s(approx (+ (* (* alpha alpha) (* 1/2 u0)) (* (* alpha alpha) 1)) #s(hole binary32 (* 1/2 (* (pow alpha 2) u0))))
#s(approx (+ (* (* alpha alpha) (* 1/2 u0)) (* (* alpha alpha) 1)) #s(hole binary32 (* u0 (+ (* 1/2 (pow alpha 2)) (/ (pow alpha 2) u0)))))
#s(approx (log (+ 1 (neg u0))) #s(hole binary32 (+ (log -1) (* -1 (log (/ 1 u0))))))
#s(approx (log (+ 1 (neg u0))) #s(hole binary32 (- (+ (log -1) (* -1 (log (/ 1 u0)))) (/ 1 u0))))
#s(approx (log (+ 1 (neg u0))) #s(hole binary32 (+ (log -1) (+ (* -1 (log (/ 1 u0))) (* -1 (/ (+ 1 (* 1/2 (/ 1 u0))) u0))))))
#s(approx (log (+ 1 (neg u0))) #s(hole binary32 (- (+ (log -1) (+ (* -1 (log (/ 1 u0))) (* -1 (/ (+ 1/2 (* 1/3 (/ 1 u0))) (pow u0 2))))) (/ 1 u0))))
#s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) #s(hole binary32 (* 1/4 (pow u0 3))))
#s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) #s(hole binary32 (* (pow u0 3) (+ 1/4 (* 1/3 (/ 1 u0))))))
#s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) #s(hole binary32 (* (pow u0 3) (+ 1/4 (+ (/ 1/2 (pow u0 2)) (* 1/3 (/ 1 u0)))))))
#s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) #s(hole binary32 (* (pow u0 3) (+ 1/4 (+ (/ 1/2 (pow u0 2)) (+ (* 1/3 (/ 1 u0)) (/ 1 (pow u0 3))))))))
#s(approx (* (+ (* 1/3 u0) 1/2) u0) #s(hole binary32 (* 1/3 (pow u0 2))))
#s(approx (* (+ (* 1/3 u0) 1/2) u0) #s(hole binary32 (* (pow u0 2) (+ 1/3 (* 1/2 (/ 1 u0))))))
#s(approx (* (* alpha alpha) (+ (* 1/4 u0) 1/3)) #s(hole binary32 (* 1/4 (* (pow alpha 2) u0))))
#s(approx (* (* alpha alpha) (+ (* 1/4 u0) 1/3)) #s(hole binary32 (* u0 (+ (* 1/4 (pow alpha 2)) (* 1/3 (/ (pow alpha 2) u0))))))
#s(approx (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (+ (* (* alpha alpha) (* 1/2 u0)) (* (* alpha alpha) 1))) u0) #s(hole binary32 (* 1/4 (* (pow alpha 2) (pow u0 4)))))
#s(approx (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (+ (* (* alpha alpha) (* 1/2 u0)) (* (* alpha alpha) 1))) u0) #s(hole binary32 (* (pow u0 4) (+ (* 1/4 (pow alpha 2)) (* 1/3 (/ (pow alpha 2) u0))))))
#s(approx (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (+ (* (* alpha alpha) (* 1/2 u0)) (* (* alpha alpha) 1))) u0) #s(hole binary32 (* (pow u0 4) (+ (* 1/4 (pow alpha 2)) (+ (* 1/3 (/ (pow alpha 2) u0)) (* 1/2 (/ (pow alpha 2) (pow u0 2))))))))
#s(approx (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (+ (* (* alpha alpha) (* 1/2 u0)) (* (* alpha alpha) 1))) u0) #s(hole binary32 (* (pow u0 4) (+ (* 1/4 (pow alpha 2)) (+ (* 1/3 (/ (pow alpha 2) u0)) (+ (* 1/2 (/ (pow alpha 2) (pow u0 2))) (/ (pow alpha 2) (pow u0 3))))))))
#s(approx (* (* (log (- 1 u0)) (neg alpha)) alpha) #s(hole binary32 (* (pow alpha 2) (log (/ -1 u0)))))
#s(approx (* (* (log (- 1 u0)) (neg alpha)) alpha) #s(hole binary32 (+ (* (pow alpha 2) (log (/ -1 u0))) (/ (pow alpha 2) u0))))
#s(approx (* (* (log (- 1 u0)) (neg alpha)) alpha) #s(hole binary32 (+ (* -1 (/ (+ (* -1 (pow alpha 2)) (* -1/2 (/ (pow alpha 2) u0))) u0)) (* (pow alpha 2) (log (/ -1 u0))))))
#s(approx (* (* (log (- 1 u0)) (neg alpha)) alpha) #s(hole binary32 (+ (* -1 (/ (+ (* -1 (/ (+ (* 1/3 (/ (pow alpha 2) u0)) (* 1/2 (pow alpha 2))) u0)) (* -1 (pow alpha 2))) u0)) (* (pow alpha 2) (log (/ -1 u0))))))
#s(approx (* (log (- 1 u0)) (neg alpha)) #s(hole binary32 (* alpha (log (/ -1 u0)))))
#s(approx (* (log (- 1 u0)) (neg alpha)) #s(hole binary32 (+ (* alpha (log (/ -1 u0))) (/ alpha u0))))
#s(approx (* (log (- 1 u0)) (neg alpha)) #s(hole binary32 (+ (* -1 (/ (+ (* -1 alpha) (* -1/2 (/ alpha u0))) u0)) (* alpha (log (/ -1 u0))))))
#s(approx (* (log (- 1 u0)) (neg alpha)) #s(hole binary32 (+ (* -1 (/ (+ (* -1 alpha) (* -1 (/ (+ (* 1/3 (/ alpha u0)) (* 1/2 alpha)) u0))) u0)) (* alpha (log (/ -1 u0))))))
#s(approx (* (neg alpha) (log (+ 1 (neg u0)))) #s(hole binary32 (* alpha (log (/ -1 u0)))))
#s(approx (* (neg alpha) (log (+ 1 (neg u0)))) #s(hole binary32 (+ (* alpha (log (/ -1 u0))) (/ alpha u0))))
#s(approx (* (neg alpha) (log (+ 1 (neg u0)))) #s(hole binary32 (+ (* -1 (/ (+ (* -1 alpha) (* -1/2 (/ alpha u0))) u0)) (* alpha (log (/ -1 u0))))))
#s(approx (* (neg alpha) (log (+ 1 (neg u0)))) #s(hole binary32 (+ (* -1 (/ (+ (* -1 alpha) (* -1 (/ (+ (* 1/3 (/ alpha u0)) (* 1/2 alpha)) u0))) u0)) (* alpha (log (/ -1 u0))))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (* (pow alpha 2) (log (/ -1 u0)))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (+ (* (pow alpha 2) (log (/ -1 u0))) (/ (pow alpha 2) u0))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (+ (* -1 (/ (+ (* -1 (pow alpha 2)) (* -1/2 (/ (pow alpha 2) u0))) u0)) (* (pow alpha 2) (log (/ -1 u0))))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (+ (* -1 (/ (+ (* -1 (/ (+ (* 1/3 (/ (pow alpha 2) u0)) (* 1/2 (pow alpha 2))) u0)) (* -1 (pow alpha 2))) u0)) (* (pow alpha 2) (log (/ -1 u0))))))
#s(approx (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) u0) #s(hole binary32 (* (pow u0 4) (+ (* -1 (/ (+ (* -1/2 (/ (pow alpha 2) u0)) (* -1/3 (pow alpha 2))) u0)) (* 1/4 (pow alpha 2))))))
#s(approx (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) u0) #s(hole binary32 (* (pow u0 4) (+ (* -1 (/ (+ (* -1 (/ (+ (* 1/2 (pow alpha 2)) (/ (pow alpha 2) u0)) u0)) (* -1/3 (pow alpha 2))) u0)) (* 1/4 (pow alpha 2))))))
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) #s(hole binary32 (* -1 (* (pow u0 3) (+ (* -1/3 (/ (pow alpha 2) u0)) (* -1/4 (pow alpha 2)))))))
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) #s(hole binary32 (* -1 (* (pow u0 3) (+ (* -1 (/ (+ (* 1/3 (pow alpha 2)) (* 1/2 (/ (pow alpha 2) u0))) u0)) (* -1/4 (pow alpha 2)))))))
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) #s(hole binary32 (* -1 (* (pow u0 3) (+ (* -1 (/ (+ (* -1 (/ (+ (* -1 (/ (pow alpha 2) u0)) (* -1/2 (pow alpha 2))) u0)) (* 1/3 (pow alpha 2))) u0)) (* -1/4 (pow alpha 2)))))))
#s(approx (* (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (* alpha alpha)) #s(hole binary32 (* -1 (* (pow u0 3) (+ (* -1/3 (/ (pow alpha 2) u0)) (* -1/4 (pow alpha 2)))))))
#s(approx (* (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (* alpha alpha)) #s(hole binary32 (* -1 (* (pow u0 3) (+ (* -1 (/ (+ (* 1/3 (pow alpha 2)) (* 1/2 (/ (pow alpha 2) u0))) u0)) (* -1/4 (pow alpha 2)))))))
#s(approx (* (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (* alpha alpha)) #s(hole binary32 (* -1 (* (pow u0 3) (+ (* -1 (/ (+ (* -1 (/ (+ (* -1 (/ (pow alpha 2) u0)) (* -1/2 (pow alpha 2))) u0)) (* 1/3 (pow alpha 2))) u0)) (* -1/4 (pow alpha 2)))))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) #s(hole binary32 (* -1 (* (pow alpha 2) (- (* -2 (log (/ -1 u0))) (* -1 (log (/ -1 u0))))))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) #s(hole binary32 (+ (* -1 (* (pow alpha 2) (- (* -2 (log (/ -1 u0))) (* -1 (log (/ -1 u0)))))) (/ (pow alpha 2) u0))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) #s(hole binary32 (+ (* -1 (* (pow alpha 2) (- (* -2 (log (/ -1 u0))) (* -1 (log (/ -1 u0)))))) (* -1 (/ (+ (* -1 (pow alpha 2)) (* -1/2 (/ (pow alpha 2) u0))) u0)))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) #s(hole binary32 (+ (* -1 (* (pow alpha 2) (- (* -2 (log (/ -1 u0))) (* -1 (log (/ -1 u0)))))) (* -1 (/ (+ (* -1 (/ (+ (* 1/3 (/ (pow alpha 2) u0)) (* 1/2 (pow alpha 2))) u0)) (* -1 (pow alpha 2))) u0)))))
#s(approx (* (* (+ (* (* (+ (* 1/3 u0) 1/2) u0) u0) u0) alpha) alpha) #s(hole binary32 (* -1 (* (pow u0 3) (+ (* -1/2 (/ (pow alpha 2) u0)) (* -1/3 (pow alpha 2)))))))
#s(approx (* (* (+ (* (* (+ (* 1/3 u0) 1/2) u0) u0) u0) alpha) alpha) #s(hole binary32 (* -1 (* (pow u0 3) (+ (* -1 (/ (+ (* 1/2 (pow alpha 2)) (/ (pow alpha 2) u0)) u0)) (* -1/3 (pow alpha 2)))))))
#s(approx (* (+ (* (* (+ (* 1/3 u0) 1/2) u0) u0) u0) alpha) #s(hole binary32 (* -1 (* (pow u0 3) (+ (* -1/2 (/ alpha u0)) (* -1/3 alpha))))))
#s(approx (* (+ (* (* (+ (* 1/3 u0) 1/2) u0) u0) u0) alpha) #s(hole binary32 (* -1 (* (pow u0 3) (+ (* -1 (/ (+ (* 1/2 alpha) (/ alpha u0)) u0)) (* -1/3 alpha))))))
#s(approx (+ (* (* (+ (* 1/3 u0) 1/2) u0) u0) u0) #s(hole binary32 (* -1 (* (pow u0 3) (- (* -1 (/ (+ 1/2 (/ 1 u0)) u0)) 1/3)))))
#s(approx (log (- 1 u0)) #s(hole binary32 (* -1 (log (/ -1 u0)))))
#s(approx (log (- 1 u0)) #s(hole binary32 (- (* -1 (log (/ -1 u0))) (/ 1 u0))))
#s(approx (log (- 1 u0)) #s(hole binary32 (+ (* -1 (log (/ -1 u0))) (* -1 (/ (+ 1 (* 1/2 (/ 1 u0))) u0)))))
#s(approx (log (- 1 u0)) #s(hole binary32 (+ (* -1 (log (/ -1 u0))) (* -1 (/ (+ 1 (+ (/ 1/3 (pow u0 2)) (* 1/2 (/ 1 u0)))) u0)))))
#s(approx (* (+ (* (+ (* (+ (* -1/4 u0) -1/3) u0) -1/2) u0) -1) u0) #s(hole binary32 (* (pow u0 4) (- (* -1 (/ (+ 1/3 (+ (* 1/2 (/ 1 u0)) (/ 1 (pow u0 2)))) u0)) 1/4))))
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (+ (* (* alpha alpha) (* 1/2 u0)) (* (* alpha alpha) 1))) #s(hole binary32 (* -1 (* (pow u0 3) (+ (* -1/3 (/ (pow alpha 2) u0)) (* -1/4 (pow alpha 2)))))))
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (+ (* (* alpha alpha) (* 1/2 u0)) (* (* alpha alpha) 1))) #s(hole binary32 (* -1 (* (pow u0 3) (+ (* -1 (/ (+ (* 1/3 (pow alpha 2)) (* 1/2 (/ (pow alpha 2) u0))) u0)) (* -1/4 (pow alpha 2)))))))
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (+ (* (* alpha alpha) (* 1/2 u0)) (* (* alpha alpha) 1))) #s(hole binary32 (* -1 (* (pow u0 3) (+ (* -1 (/ (+ (* -1 (/ (+ (* -1 (/ (pow alpha 2) u0)) (* -1/2 (pow alpha 2))) u0)) (* 1/3 (pow alpha 2))) u0)) (* -1/4 (pow alpha 2)))))))
#s(approx (+ (* (* alpha alpha) (* 1/2 u0)) (* (* alpha alpha) 1)) #s(hole binary32 (* -1 (* u0 (+ (* -1 (/ (pow alpha 2) u0)) (* -1/2 (pow alpha 2)))))))
#s(approx (log (+ 1 (neg u0))) #s(hole binary32 (* -1 (log (/ -1 u0)))))
#s(approx (log (+ 1 (neg u0))) #s(hole binary32 (- (* -1 (log (/ -1 u0))) (/ 1 u0))))
#s(approx (log (+ 1 (neg u0))) #s(hole binary32 (+ (* -1 (log (/ -1 u0))) (* -1 (/ (+ 1 (* 1/2 (/ 1 u0))) u0)))))
#s(approx (log (+ 1 (neg u0))) #s(hole binary32 (+ (* -1 (log (/ -1 u0))) (* -1 (/ (+ 1 (+ (/ 1/3 (pow u0 2)) (* 1/2 (/ 1 u0)))) u0)))))
#s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) #s(hole binary32 (* -1 (* (pow u0 3) (- (* -1 (/ (+ 1/3 (* 1/2 (/ 1 u0))) u0)) 1/4)))))
#s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) #s(hole binary32 (* -1 (* (pow u0 3) (- (* -1 (/ (+ 1/3 (+ (* 1/2 (/ 1 u0)) (/ 1 (pow u0 2)))) u0)) 1/4)))))
#s(approx (* (* alpha alpha) (+ (* 1/4 u0) 1/3)) #s(hole binary32 (* -1 (* u0 (+ (* -1/3 (/ (pow alpha 2) u0)) (* -1/4 (pow alpha 2)))))))
#s(approx (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (+ (* (* alpha alpha) (* 1/2 u0)) (* (* alpha alpha) 1))) u0) #s(hole binary32 (* (pow u0 4) (+ (* -1 (/ (+ (* -1/2 (/ (pow alpha 2) u0)) (* -1/3 (pow alpha 2))) u0)) (* 1/4 (pow alpha 2))))))
#s(approx (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (+ (* (* alpha alpha) (* 1/2 u0)) (* (* alpha alpha) 1))) u0) #s(hole binary32 (* (pow u0 4) (+ (* -1 (/ (+ (* -1 (/ (+ (* 1/2 (pow alpha 2)) (/ (pow alpha 2) u0)) u0)) (* -1/3 (pow alpha 2))) u0)) (* 1/4 (pow alpha 2))))))
Outputs
#s(approx (* (* (log (- 1 u0)) (neg alpha)) alpha) #s(hole binary32 (* -1 (* (pow alpha 2) (log (- 1 u0))))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (*.f32 (neg.f32 alpha) alpha) (log1p.f32 (neg.f32 u0))))
#s(approx (* (log (- 1 u0)) (neg alpha)) #s(hole binary32 (* -1 (* alpha (log (- 1 u0))))))
#s(approx (* (neg alpha) (log (+ 1 (neg u0)))) (*.f32 (neg.f32 alpha) (log1p.f32 (neg.f32 u0))))
#s(approx (* (neg alpha) (log (+ 1 (neg u0)))) #s(hole binary32 (* -1 (* alpha (log (- 1 u0))))))
#s(approx (* (neg alpha) (log (+ 1 (neg u0)))) (*.f32 (neg.f32 alpha) (log1p.f32 (neg.f32 u0))))
#s(approx (neg alpha) #s(hole binary32 (* -1 alpha)))
#s(approx (neg alpha) (neg.f32 alpha))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(hole binary32 (* -1 (* (pow alpha 2) (log (- 1 u0))))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (*.f32 (neg.f32 alpha) alpha) (log1p.f32 (neg.f32 u0))))
#s(approx (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) u0) #s(hole binary32 (* (pow alpha 2) (* u0 (+ 1 (+ (* 1/2 u0) (* (pow u0 2) (+ 1/3 (* 1/4 u0)))))))))
#s(approx (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (+ (* (* alpha alpha) (* 1/2 u0)) (* (* alpha alpha) 1))) u0) (*.f32 (*.f32 (*.f32 alpha alpha) u0) (fma.f32 (fma.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32))))
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) #s(hole binary32 (* (pow alpha 2) (+ 1 (+ (* 1/2 u0) (* (pow u0 2) (+ 1/3 (* 1/4 u0))))))))
#s(approx (* (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (* alpha alpha)) (*.f32 (*.f32 alpha alpha) (fma.f32 (fma.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32))))
#s(approx (* (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (* alpha alpha)) #s(hole binary32 (* (pow alpha 2) (+ 1 (+ (* 1/2 u0) (* (pow u0 2) (+ 1/3 (* 1/4 u0))))))))
#s(approx (* (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (* alpha alpha)) (*.f32 (*.f32 alpha alpha) (fma.f32 (fma.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) #s(hole binary32 (* -1 (* (pow alpha 2) (- (log (+ 1 (* -1 (pow u0 2)))) (log (+ 1 u0)))))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (neg.f32 alpha) alpha) (-.f32 (log1p.f32 (*.f32 (neg.f32 u0) u0)) (log1p.f32 u0))))
#s(approx (* (* (+ (* (* (+ (* 1/3 u0) 1/2) u0) u0) u0) alpha) alpha) #s(hole binary32 (* (pow alpha 2) (+ u0 (* (pow u0 2) (+ 1/2 (* 1/3 u0)))))))
#s(approx (* (* (+ (* (* (+ (* 1/3 u0) 1/2) u0) u0) u0) alpha) alpha) (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) (*.f32 (*.f32 alpha alpha) u0)))
#s(approx (* (+ (* (* (+ (* 1/3 u0) 1/2) u0) u0) u0) alpha) #s(hole binary32 (* alpha (+ u0 (* (pow u0 2) (+ 1/2 (* 1/3 u0)))))))
#s(approx (* (+ (* (* (+ (* 1/3 u0) 1/2) u0) u0) u0) alpha) (*.f32 (*.f32 alpha (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32))) u0))
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (+ (* (* alpha alpha) (* 1/2 u0)) (* (* alpha alpha) 1))) #s(hole binary32 (* (pow alpha 2) (+ 1 (+ (* 1/2 u0) (* (pow u0 2) (+ 1/3 (* 1/4 u0))))))))
#s(approx (* (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (* alpha alpha)) (*.f32 (*.f32 alpha alpha) (fma.f32 (fma.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32))))
#s(approx (+ (* (* alpha alpha) (* 1/2 u0)) (* (* alpha alpha) 1)) #s(hole binary32 (* (pow alpha 2) (+ 1 (* 1/2 u0)))))
#s(approx (+ (* (* alpha alpha) (* 1/2 u0)) (* (* alpha alpha) 1)) (*.f32 (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) alpha) alpha))
#s(approx (* (* alpha alpha) 1) #s(hole binary32 (pow alpha 2)))
#s(approx (* (* alpha alpha) 1) (*.f32 alpha alpha))
#s(approx (* (* alpha alpha) (+ (* 1/4 u0) 1/3)) #s(hole binary32 (* (pow alpha 2) (+ 1/3 (* 1/4 u0)))))
#s(approx (* (* alpha alpha) (+ (* 1/4 u0) 1/3)) (*.f32 (*.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) alpha) alpha))
#s(approx (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (+ (* (* alpha alpha) (* 1/2 u0)) (* (* alpha alpha) 1))) u0) #s(hole binary32 (* (pow alpha 2) (* u0 (+ 1 (+ (* 1/2 u0) (* (pow u0 2) (+ 1/3 (* 1/4 u0)))))))))
#s(approx (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (+ (* (* alpha alpha) (* 1/2 u0)) (* (* alpha alpha) 1))) u0) (*.f32 (*.f32 (*.f32 alpha alpha) u0) (fma.f32 (fma.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32))))
#s(approx (* (* (log (- 1 u0)) (neg alpha)) alpha) #s(hole binary32 (* (pow alpha 2) u0)))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (*.f32 alpha alpha) u0))
#s(approx (* (* (log (- 1 u0)) (neg alpha)) alpha) #s(hole binary32 (* u0 (+ (* 1/2 (* (pow alpha 2) u0)) (pow alpha 2)))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (*.f32 u0 (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) alpha)) alpha))
#s(approx (* (* (log (- 1 u0)) (neg alpha)) alpha) #s(hole binary32 (* u0 (+ (* u0 (+ (* 1/3 (* (pow alpha 2) u0)) (* 1/2 (pow alpha 2)))) (pow alpha 2)))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 (fma.f32 (*.f32 (*.f32 alpha alpha) u0) #s(literal 1/3 binary32) (*.f32 (*.f32 alpha alpha) #s(literal 1/2 binary32))) u0 (*.f32 alpha alpha)) u0))
#s(approx (* (* (log (- 1 u0)) (neg alpha)) alpha) #s(hole binary32 (* u0 (+ (* u0 (+ (* 1/2 (pow alpha 2)) (* u0 (+ (* 1/4 (* (pow alpha 2) u0)) (* 1/3 (pow alpha 2)))))) (pow alpha 2)))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (*.f32 (*.f32 alpha alpha) u0) (fma.f32 (fma.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32))))
#s(approx (* (log (- 1 u0)) (neg alpha)) #s(hole binary32 (* alpha u0)))
#s(approx (* (neg alpha) (log (+ 1 (neg u0)))) (*.f32 alpha u0))
#s(approx (* (log (- 1 u0)) (neg alpha)) #s(hole binary32 (* u0 (+ alpha (* 1/2 (* alpha u0))))))
#s(approx (* (neg alpha) (log (+ 1 (neg u0)))) (*.f32 (fma.f32 (*.f32 alpha u0) #s(literal 1/2 binary32) alpha) u0))
#s(approx (* (log (- 1 u0)) (neg alpha)) #s(hole binary32 (* u0 (+ alpha (* u0 (+ (* 1/3 (* alpha u0)) (* 1/2 alpha)))))))
#s(approx (* (neg alpha) (log (+ 1 (neg u0)))) (*.f32 (fma.f32 (fma.f32 (*.f32 alpha u0) #s(literal 1/3 binary32) (*.f32 #s(literal 1/2 binary32) alpha)) u0 alpha) u0))
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#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) #s(hole binary32 (* -1 (* (pow u0 3) (+ (* -1 (/ (+ (* 1/3 (pow alpha 2)) (* 1/2 (/ (pow alpha 2) u0))) u0)) (* -1/4 (pow alpha 2)))))))
#s(approx (* (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (* alpha alpha)) (*.f32 (fma.f32 (*.f32 #s(literal 1/4 binary32) alpha) alpha (/.f32 (fma.f32 (/.f32 (*.f32 alpha alpha) u0) #s(literal 1/2 binary32) (*.f32 (*.f32 alpha alpha) #s(literal 1/3 binary32))) u0)) (pow.f32 u0 #s(literal 3 binary32))))
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) #s(hole binary32 (* -1 (* (pow u0 3) (+ (* -1 (/ (+ (* -1 (/ (+ (* -1 (/ (pow alpha 2) u0)) (* -1/2 (pow alpha 2))) u0)) (* 1/3 (pow alpha 2))) u0)) (* -1/4 (pow alpha 2)))))))
#s(approx (* (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (* alpha alpha)) (*.f32 (fma.f32 (*.f32 #s(literal 1/4 binary32) alpha) alpha (/.f32 (fma.f32 (*.f32 #s(literal 1/3 binary32) alpha) alpha (/.f32 (fma.f32 (*.f32 #s(literal 1/2 binary32) alpha) alpha (/.f32 (*.f32 alpha alpha) u0)) u0)) u0)) (pow.f32 u0 #s(literal 3 binary32))))
#s(approx (* (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (* alpha alpha)) #s(hole binary32 (* -1 (* (pow u0 3) (+ (* -1/3 (/ (pow alpha 2) u0)) (* -1/4 (pow alpha 2)))))))
#s(approx (* (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (* alpha alpha)) (*.f32 (fma.f32 (/.f32 (*.f32 alpha alpha) u0) #s(literal 1/3 binary32) (*.f32 (*.f32 alpha alpha) #s(literal 1/4 binary32))) (pow.f32 u0 #s(literal 3 binary32))))
#s(approx (* (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (* alpha alpha)) #s(hole binary32 (* -1 (* (pow u0 3) (+ (* -1 (/ (+ (* 1/3 (pow alpha 2)) (* 1/2 (/ (pow alpha 2) u0))) u0)) (* -1/4 (pow alpha 2)))))))
#s(approx (* (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (* alpha alpha)) (*.f32 (fma.f32 (*.f32 #s(literal 1/4 binary32) alpha) alpha (/.f32 (fma.f32 (/.f32 (*.f32 alpha alpha) u0) #s(literal 1/2 binary32) (*.f32 (*.f32 alpha alpha) #s(literal 1/3 binary32))) u0)) (pow.f32 u0 #s(literal 3 binary32))))
#s(approx (* (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (* alpha alpha)) #s(hole binary32 (* -1 (* (pow u0 3) (+ (* -1 (/ (+ (* -1 (/ (+ (* -1 (/ (pow alpha 2) u0)) (* -1/2 (pow alpha 2))) u0)) (* 1/3 (pow alpha 2))) u0)) (* -1/4 (pow alpha 2)))))))
#s(approx (* (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (* alpha alpha)) (*.f32 (fma.f32 (*.f32 #s(literal 1/4 binary32) alpha) alpha (/.f32 (fma.f32 (*.f32 #s(literal 1/3 binary32) alpha) alpha (/.f32 (fma.f32 (*.f32 #s(literal 1/2 binary32) alpha) alpha (/.f32 (*.f32 alpha alpha) u0)) u0)) u0)) (pow.f32 u0 #s(literal 3 binary32))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) #s(hole binary32 (* -1 (* (pow alpha 2) (- (* -2 (log (/ -1 u0))) (* -1 (log (/ -1 u0))))))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (log.f32 (/.f32 #s(literal -1 binary32) u0)) (*.f32 alpha alpha)))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) #s(hole binary32 (+ (* -1 (* (pow alpha 2) (- (* -2 (log (/ -1 u0))) (* -1 (log (/ -1 u0)))))) (/ (pow alpha 2) u0))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (fma.f32 (log.f32 (/.f32 #s(literal -1 binary32) u0)) (*.f32 alpha alpha) (/.f32 (*.f32 alpha alpha) u0)))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) #s(hole binary32 (+ (* -1 (* (pow alpha 2) (- (* -2 (log (/ -1 u0))) (* -1 (log (/ -1 u0)))))) (* -1 (/ (+ (* -1 (pow alpha 2)) (* -1/2 (/ (pow alpha 2) u0))) u0)))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (fma.f32 (log.f32 (/.f32 #s(literal -1 binary32) u0)) (*.f32 alpha alpha) (/.f32 (fma.f32 alpha alpha (*.f32 (/.f32 (*.f32 alpha alpha) u0) #s(literal 1/2 binary32))) u0)))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) #s(hole binary32 (+ (* -1 (* (pow alpha 2) (- (* -2 (log (/ -1 u0))) (* -1 (log (/ -1 u0)))))) (* -1 (/ (+ (* -1 (/ (+ (* 1/3 (/ (pow alpha 2) u0)) (* 1/2 (pow alpha 2))) u0)) (* -1 (pow alpha 2))) u0)))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (-.f32 (*.f32 (log.f32 (/.f32 #s(literal -1 binary32) u0)) (*.f32 alpha alpha)) (/.f32 (neg.f32 (fma.f32 alpha alpha (/.f32 (fma.f32 (/.f32 (*.f32 alpha alpha) u0) #s(literal 1/3 binary32) (*.f32 (*.f32 alpha alpha) #s(literal 1/2 binary32))) u0))) u0)))
#s(approx (* (* (+ (* (* (+ (* 1/3 u0) 1/2) u0) u0) u0) alpha) alpha) #s(hole binary32 (* -1 (* (pow u0 3) (+ (* -1/2 (/ (pow alpha 2) u0)) (* -1/3 (pow alpha 2)))))))
#s(approx (* (* (+ (* (* (+ (* 1/3 u0) 1/2) u0) u0) u0) alpha) alpha) (*.f32 (fma.f32 (/.f32 (*.f32 alpha alpha) u0) #s(literal 1/2 binary32) (*.f32 (*.f32 alpha alpha) #s(literal 1/3 binary32))) (pow.f32 u0 #s(literal 3 binary32))))
#s(approx (* (* (+ (* (* (+ (* 1/3 u0) 1/2) u0) u0) u0) alpha) alpha) #s(hole binary32 (* -1 (* (pow u0 3) (+ (* -1 (/ (+ (* 1/2 (pow alpha 2)) (/ (pow alpha 2) u0)) u0)) (* -1/3 (pow alpha 2)))))))
#s(approx (* (* (+ (* (* (+ (* 1/3 u0) 1/2) u0) u0) u0) alpha) alpha) (*.f32 (fma.f32 (*.f32 #s(literal 1/3 binary32) alpha) alpha (/.f32 (fma.f32 (*.f32 #s(literal 1/2 binary32) alpha) alpha (/.f32 (*.f32 alpha alpha) u0)) u0)) (pow.f32 u0 #s(literal 3 binary32))))
#s(approx (* (+ (* (* (+ (* 1/3 u0) 1/2) u0) u0) u0) alpha) #s(hole binary32 (* -1 (* (pow u0 3) (+ (* -1/2 (/ alpha u0)) (* -1/3 alpha))))))
#s(approx (* (+ (* (* (+ (* 1/3 u0) 1/2) u0) u0) u0) alpha) (*.f32 (fma.f32 (/.f32 alpha u0) #s(literal 1/2 binary32) (*.f32 #s(literal 1/3 binary32) alpha)) (pow.f32 u0 #s(literal 3 binary32))))
#s(approx (* (+ (* (* (+ (* 1/3 u0) 1/2) u0) u0) u0) alpha) #s(hole binary32 (* -1 (* (pow u0 3) (+ (* -1 (/ (+ (* 1/2 alpha) (/ alpha u0)) u0)) (* -1/3 alpha))))))
#s(approx (* (+ (* (* (+ (* 1/3 u0) 1/2) u0) u0) u0) alpha) (*.f32 (fma.f32 #s(literal 1/3 binary32) alpha (/.f32 (fma.f32 #s(literal 1/2 binary32) alpha (/.f32 alpha u0)) u0)) (pow.f32 u0 #s(literal 3 binary32))))
#s(approx (+ (* (* (+ (* 1/3 u0) 1/2) u0) u0) u0) #s(hole binary32 (* -1 (* (pow u0 3) (- (* -1 (/ (+ 1/2 (/ 1 u0)) u0)) 1/3)))))
#s(approx (+ (* (* (+ (* 1/3 u0) 1/2) u0) u0) u0) (*.f32 (pow.f32 (neg.f32 u0) #s(literal 3 binary32)) (-.f32 (/.f32 (fma.f32 (/.f32 #s(literal 1 binary32) u0) #s(literal -1 binary32) #s(literal -1/2 binary32)) u0) #s(literal 1/3 binary32))))
#s(approx (log (- 1 u0)) #s(hole binary32 (* -1 (log (/ -1 u0)))))
#s(approx (log (+ 1 (neg u0))) (neg.f32 (log.f32 (/.f32 #s(literal -1 binary32) u0))))
#s(approx (log (- 1 u0)) #s(hole binary32 (- (* -1 (log (/ -1 u0))) (/ 1 u0))))
#s(approx (log (+ 1 (neg u0))) (-.f32 (neg.f32 (log.f32 (/.f32 #s(literal -1 binary32) u0))) (/.f32 #s(literal 1 binary32) u0)))
#s(approx (log (- 1 u0)) #s(hole binary32 (+ (* -1 (log (/ -1 u0))) (* -1 (/ (+ 1 (* 1/2 (/ 1 u0))) u0)))))
#s(approx (log (+ 1 (neg u0))) (-.f32 (/.f32 (fma.f32 (/.f32 #s(literal 1/2 binary32) u0) #s(literal -1 binary32) #s(literal -1 binary32)) u0) (log.f32 (/.f32 #s(literal -1 binary32) u0))))
#s(approx (log (- 1 u0)) #s(hole binary32 (+ (* -1 (log (/ -1 u0))) (* -1 (/ (+ 1 (+ (/ 1/3 (pow u0 2)) (* 1/2 (/ 1 u0)))) u0)))))
#s(approx (log (+ 1 (neg u0))) (-.f32 (/.f32 (fma.f32 (/.f32 (-.f32 (/.f32 #s(literal 1/3 binary32) u0) #s(literal -1/2 binary32)) u0) #s(literal -1 binary32) #s(literal -1 binary32)) u0) (log.f32 (/.f32 #s(literal -1 binary32) u0))))
#s(approx (* (+ (* (+ (* (+ (* -1/4 u0) -1/3) u0) -1/2) u0) -1) u0) #s(hole binary32 (* (pow u0 4) (- (* -1 (/ (+ 1/3 (+ (* 1/2 (/ 1 u0)) (/ 1 (pow u0 2)))) u0)) 1/4))))
#s(approx (* (+ (* (+ (* (+ (* -1/4 u0) -1/3) u0) -1/2) u0) -1) u0) (*.f32 (-.f32 (/.f32 (-.f32 (/.f32 (fma.f32 (/.f32 #s(literal 1 binary32) u0) #s(literal -1 binary32) #s(literal -1/2 binary32)) u0) #s(literal 1/3 binary32)) u0) #s(literal 1/4 binary32)) (pow.f32 u0 #s(literal 4 binary32))))
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (+ (* (* alpha alpha) (* 1/2 u0)) (* (* alpha alpha) 1))) #s(hole binary32 (* -1 (* (pow u0 3) (+ (* -1/3 (/ (pow alpha 2) u0)) (* -1/4 (pow alpha 2)))))))
#s(approx (* (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (* alpha alpha)) (*.f32 (fma.f32 (/.f32 (*.f32 alpha alpha) u0) #s(literal 1/3 binary32) (*.f32 (*.f32 alpha alpha) #s(literal 1/4 binary32))) (pow.f32 u0 #s(literal 3 binary32))))
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (+ (* (* alpha alpha) (* 1/2 u0)) (* (* alpha alpha) 1))) #s(hole binary32 (* -1 (* (pow u0 3) (+ (* -1 (/ (+ (* 1/3 (pow alpha 2)) (* 1/2 (/ (pow alpha 2) u0))) u0)) (* -1/4 (pow alpha 2)))))))
#s(approx (* (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (* alpha alpha)) (*.f32 (fma.f32 (*.f32 #s(literal 1/4 binary32) alpha) alpha (/.f32 (fma.f32 (/.f32 (*.f32 alpha alpha) u0) #s(literal 1/2 binary32) (*.f32 (*.f32 alpha alpha) #s(literal 1/3 binary32))) u0)) (pow.f32 u0 #s(literal 3 binary32))))
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (+ (* (* alpha alpha) (* 1/2 u0)) (* (* alpha alpha) 1))) #s(hole binary32 (* -1 (* (pow u0 3) (+ (* -1 (/ (+ (* -1 (/ (+ (* -1 (/ (pow alpha 2) u0)) (* -1/2 (pow alpha 2))) u0)) (* 1/3 (pow alpha 2))) u0)) (* -1/4 (pow alpha 2)))))))
#s(approx (* (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (* alpha alpha)) (*.f32 (fma.f32 (*.f32 #s(literal 1/4 binary32) alpha) alpha (/.f32 (fma.f32 (*.f32 #s(literal 1/3 binary32) alpha) alpha (/.f32 (fma.f32 (*.f32 #s(literal 1/2 binary32) alpha) alpha (/.f32 (*.f32 alpha alpha) u0)) u0)) u0)) (pow.f32 u0 #s(literal 3 binary32))))
#s(approx (+ (* (* alpha alpha) (* 1/2 u0)) (* (* alpha alpha) 1)) #s(hole binary32 (* -1 (* u0 (+ (* -1 (/ (pow alpha 2) u0)) (* -1/2 (pow alpha 2)))))))
#s(approx (+ (* (* alpha alpha) (* 1/2 u0)) (* (* alpha alpha) 1)) (*.f32 (fma.f32 (*.f32 #s(literal 1/2 binary32) alpha) alpha (/.f32 (*.f32 alpha alpha) u0)) u0))
#s(approx (log (+ 1 (neg u0))) #s(hole binary32 (* -1 (log (/ -1 u0)))))
#s(approx (log (+ 1 (neg u0))) (neg.f32 (log.f32 (/.f32 #s(literal -1 binary32) u0))))
#s(approx (log (+ 1 (neg u0))) #s(hole binary32 (- (* -1 (log (/ -1 u0))) (/ 1 u0))))
#s(approx (log (+ 1 (neg u0))) (-.f32 (neg.f32 (log.f32 (/.f32 #s(literal -1 binary32) u0))) (/.f32 #s(literal 1 binary32) u0)))
#s(approx (log (+ 1 (neg u0))) #s(hole binary32 (+ (* -1 (log (/ -1 u0))) (* -1 (/ (+ 1 (* 1/2 (/ 1 u0))) u0)))))
#s(approx (log (+ 1 (neg u0))) (-.f32 (/.f32 (fma.f32 (/.f32 #s(literal 1/2 binary32) u0) #s(literal -1 binary32) #s(literal -1 binary32)) u0) (log.f32 (/.f32 #s(literal -1 binary32) u0))))
#s(approx (log (+ 1 (neg u0))) #s(hole binary32 (+ (* -1 (log (/ -1 u0))) (* -1 (/ (+ 1 (+ (/ 1/3 (pow u0 2)) (* 1/2 (/ 1 u0)))) u0)))))
#s(approx (log (+ 1 (neg u0))) (-.f32 (/.f32 (fma.f32 (/.f32 (-.f32 (/.f32 #s(literal 1/3 binary32) u0) #s(literal -1/2 binary32)) u0) #s(literal -1 binary32) #s(literal -1 binary32)) u0) (log.f32 (/.f32 #s(literal -1 binary32) u0))))
#s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) #s(hole binary32 (* -1 (* (pow u0 3) (- (* -1 (/ (+ 1/3 (* 1/2 (/ 1 u0))) u0)) 1/4)))))
#s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (*.f32 (pow.f32 (neg.f32 u0) #s(literal 3 binary32)) (-.f32 (/.f32 (fma.f32 (/.f32 #s(literal 1/2 binary32) u0) #s(literal -1 binary32) #s(literal -1/3 binary32)) u0) #s(literal 1/4 binary32))))
#s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) #s(hole binary32 (* -1 (* (pow u0 3) (- (* -1 (/ (+ 1/3 (+ (* 1/2 (/ 1 u0)) (/ 1 (pow u0 2)))) u0)) 1/4)))))
#s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (*.f32 (pow.f32 (neg.f32 u0) #s(literal 3 binary32)) (-.f32 (/.f32 (-.f32 (/.f32 (fma.f32 (/.f32 #s(literal 1 binary32) u0) #s(literal -1 binary32) #s(literal -1/2 binary32)) u0) #s(literal 1/3 binary32)) u0) #s(literal 1/4 binary32))))
#s(approx (* (* alpha alpha) (+ (* 1/4 u0) 1/3)) #s(hole binary32 (* -1 (* u0 (+ (* -1/3 (/ (pow alpha 2) u0)) (* -1/4 (pow alpha 2)))))))
#s(approx (* (* alpha alpha) (+ (* 1/4 u0) 1/3)) (*.f32 (fma.f32 (/.f32 (*.f32 alpha alpha) u0) #s(literal 1/3 binary32) (*.f32 (*.f32 alpha alpha) #s(literal 1/4 binary32))) u0))
#s(approx (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (+ (* (* alpha alpha) (* 1/2 u0)) (* (* alpha alpha) 1))) u0) #s(hole binary32 (* (pow u0 4) (+ (* -1 (/ (+ (* -1/2 (/ (pow alpha 2) u0)) (* -1/3 (pow alpha 2))) u0)) (* 1/4 (pow alpha 2))))))
#s(approx (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (+ (* (* alpha alpha) (* 1/2 u0)) (* (* alpha alpha) 1))) u0) (*.f32 (fma.f32 (*.f32 #s(literal 1/4 binary32) alpha) alpha (/.f32 (fma.f32 (/.f32 (*.f32 alpha alpha) u0) #s(literal 1/2 binary32) (*.f32 (*.f32 alpha alpha) #s(literal 1/3 binary32))) u0)) (pow.f32 u0 #s(literal 4 binary32))))
#s(approx (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (+ (* (* alpha alpha) (* 1/2 u0)) (* (* alpha alpha) 1))) u0) #s(hole binary32 (* (pow u0 4) (+ (* -1 (/ (+ (* -1 (/ (+ (* 1/2 (pow alpha 2)) (/ (pow alpha 2) u0)) u0)) (* -1/3 (pow alpha 2))) u0)) (* 1/4 (pow alpha 2))))))
#s(approx (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (+ (* (* alpha alpha) (* 1/2 u0)) (* (* alpha alpha) 1))) u0) (*.f32 (fma.f32 (*.f32 #s(literal 1/4 binary32) alpha) alpha (/.f32 (fma.f32 (*.f32 #s(literal 1/3 binary32) alpha) alpha (/.f32 (fma.f32 (*.f32 #s(literal 1/2 binary32) alpha) alpha (/.f32 (*.f32 alpha alpha) u0)) u0)) u0)) (pow.f32 u0 #s(literal 4 binary32))))

rewrite131.0ms (1.6%)

Memory
14.4MiB live, 160.7MiB allocated; 23ms collecting garbage
Iterations

Useful iterations: 0 (0.0ms)

IterNodesCost
072479
0109450
1414439
03151423
Stop Event
iter limit
iter limit
node limit
iter limit
Counts
25 → 408
Calls
Call 1
Inputs
(*.f32 #s(approx (* (log (- 1 u0)) (neg alpha)) (*.f32 (neg.f32 alpha) (log1p.f32 (neg.f32 u0)))) alpha)
#s(approx (* (log (- 1 u0)) (neg alpha)) (*.f32 (neg.f32 alpha) (log1p.f32 (neg.f32 u0))))
(*.f32 (neg.f32 alpha) (log1p.f32 (neg.f32 u0)))
(neg.f32 alpha)
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 #s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))) (*.f32 alpha alpha))) u0))
(*.f32 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 #s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))) (*.f32 alpha alpha))) u0)
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 #s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))) (*.f32 alpha alpha)))
(*.f32 #s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))) (*.f32 alpha alpha))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0 u0) alpha) alpha))
(*.f32 (*.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0 u0) alpha) alpha)
(*.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0 u0) alpha)
(fma.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0 u0)
(*.f32 (*.f32 #s(approx (log (- 1 u0)) (*.f32 (fma.f32 (fma.f32 (fma.f32 #s(literal -1/4 binary32) u0 #s(literal -1/3 binary32)) u0 #s(literal -1/2 binary32)) u0 #s(literal -1 binary32)) u0)) (neg.f32 alpha)) alpha)
(*.f32 #s(approx (log (- 1 u0)) (*.f32 (fma.f32 (fma.f32 (fma.f32 #s(literal -1/4 binary32) u0 #s(literal -1/3 binary32)) u0 #s(literal -1/2 binary32)) u0 #s(literal -1 binary32)) u0)) (neg.f32 alpha))
#s(approx (log (- 1 u0)) (*.f32 (fma.f32 (fma.f32 (fma.f32 #s(literal -1/4 binary32) u0 #s(literal -1/3 binary32)) u0 #s(literal -1/2 binary32)) u0 #s(literal -1 binary32)) u0))
(*.f32 (fma.f32 (fma.f32 (fma.f32 #s(literal -1/4 binary32) u0 #s(literal -1/3 binary32)) u0 #s(literal -1/2 binary32)) u0 #s(literal -1 binary32)) u0)
(fma.f32 (*.f32 u0 u0) (*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32))) (fma.f32 (*.f32 alpha alpha) (*.f32 #s(literal 1/2 binary32) u0) (*.f32 (*.f32 alpha alpha) #s(literal 1 binary32))))
(fma.f32 (*.f32 alpha alpha) (*.f32 #s(literal 1/2 binary32) u0) (*.f32 (*.f32 alpha alpha) #s(literal 1 binary32)))
(*.f32 (*.f32 alpha alpha) #s(literal 1 binary32))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 (*.f32 u0 u0) (*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32))) (fma.f32 (*.f32 alpha alpha) (*.f32 #s(literal 1/2 binary32) u0) (*.f32 (*.f32 alpha alpha) #s(literal 1 binary32)))) u0))
(log1p.f32 (neg.f32 u0))
#s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)))
(*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0)
(*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)))
(*.f32 (fma.f32 (*.f32 u0 u0) (*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32))) (fma.f32 (*.f32 alpha alpha) (*.f32 #s(literal 1/2 binary32) u0) (*.f32 (*.f32 alpha alpha) #s(literal 1 binary32)))) u0)
Outputs
(*.f32 #s(approx (* (log (- 1 u0)) (neg alpha)) (*.f32 (log1p.f32 (neg.f32 u0)) (neg.f32 alpha))) alpha)
(*.f32 alpha #s(approx (* (log (- 1 u0)) (neg alpha)) (*.f32 (log1p.f32 (neg.f32 u0)) (neg.f32 alpha))))
#s(approx (* (log (- 1 u0)) (neg alpha)) (*.f32 (log1p.f32 (neg.f32 u0)) (neg.f32 alpha)))
(log.f32 (pow.f32 (-.f32 (neg.f32 u0) #s(literal -1 binary32)) (neg.f32 alpha)))
(*.f32 (log1p.f32 (neg.f32 u0)) (neg.f32 alpha))
(*.f32 (neg.f32 alpha) (log1p.f32 (neg.f32 u0)))
(*.f32 alpha (neg.f32 (log1p.f32 (neg.f32 u0))))
(neg.f32 (*.f32 (log1p.f32 (neg.f32 u0)) alpha))
(neg.f32 alpha)
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 (*.f32 alpha alpha) #s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))))) u0))
(*.f32 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 (*.f32 alpha alpha) #s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))))) u0)
(*.f32 u0 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 (*.f32 alpha alpha) #s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))))))
#s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 (*.f32 alpha alpha) #s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)))))
(*.f32 (*.f32 #s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))) (fabs.f32 alpha)) (fabs.f32 alpha))
(*.f32 (*.f32 #s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))) (neg.f32 alpha)) (neg.f32 alpha))
(*.f32 (*.f32 #s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))) #s(literal 1 binary32)) (*.f32 alpha alpha))
(*.f32 (*.f32 #s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))) alpha) alpha)
(*.f32 (fabs.f32 alpha) (*.f32 (fabs.f32 alpha) #s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)))))
(*.f32 (*.f32 (*.f32 alpha alpha) #s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)))) #s(literal 1 binary32))
(*.f32 (*.f32 alpha alpha) (*.f32 #s(literal 1 binary32) #s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)))))
(*.f32 (*.f32 alpha alpha) #s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))))
(*.f32 #s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))) (*.f32 alpha alpha))
(*.f32 (neg.f32 alpha) (*.f32 (neg.f32 alpha) #s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)))))
(*.f32 alpha (*.f32 #s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))) alpha))
(*.f32 #s(literal 1 binary32) (*.f32 (*.f32 alpha alpha) #s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (*.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0 u0) alpha) alpha))
(*.f32 (*.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0 u0) (fabs.f32 alpha)) (fabs.f32 alpha))
(*.f32 (*.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0 u0) (neg.f32 alpha)) (neg.f32 alpha))
(*.f32 (*.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0 u0) #s(literal 1 binary32)) (*.f32 alpha alpha))
(*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) (*.f32 u0 (*.f32 alpha alpha)))
(*.f32 (*.f32 (*.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0 u0) alpha) alpha) #s(literal 1 binary32))
(*.f32 (*.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0 u0) alpha) alpha)
(*.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0 u0) (*.f32 alpha alpha))
(*.f32 (*.f32 alpha alpha) (fma.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0 u0))
(*.f32 alpha (*.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0 u0) alpha))
(/.f32 (*.f32 (-.f32 (pow.f32 (*.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0) #s(literal 2 binary32)) (*.f32 u0 u0)) (*.f32 alpha alpha)) (-.f32 (*.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0) u0))
(/.f32 (*.f32 (+.f32 (pow.f32 u0 #s(literal 3 binary32)) (pow.f32 (*.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0) #s(literal 3 binary32))) (*.f32 alpha alpha)) (fma.f32 u0 (-.f32 u0 (*.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0)) (pow.f32 (*.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0) #s(literal 2 binary32))))
(*.f32 (*.f32 alpha (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32))) u0)
(*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) (*.f32 u0 alpha))
(*.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0 u0) alpha)
(*.f32 alpha (fma.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0 u0))
(/.f32 (*.f32 (-.f32 (pow.f32 (*.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0) #s(literal 2 binary32)) (*.f32 u0 u0)) alpha) (-.f32 (*.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0) u0))
(/.f32 (*.f32 (+.f32 (pow.f32 u0 #s(literal 3 binary32)) (pow.f32 (*.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0) #s(literal 3 binary32))) alpha) (fma.f32 u0 (-.f32 u0 (*.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0)) (pow.f32 (*.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0) #s(literal 2 binary32))))
(/.f32 (*.f32 alpha (-.f32 (pow.f32 (*.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0) #s(literal 2 binary32)) (*.f32 u0 u0))) (-.f32 (*.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0) u0))
(/.f32 (*.f32 alpha (+.f32 (pow.f32 u0 #s(literal 3 binary32)) (pow.f32 (*.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0) #s(literal 3 binary32)))) (fma.f32 u0 (-.f32 u0 (*.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0)) (pow.f32 (*.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0) #s(literal 2 binary32))))
(fma.f32 (*.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0) alpha (*.f32 u0 alpha))
(fma.f32 alpha (*.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0) (*.f32 alpha u0))
(fma.f32 alpha u0 (*.f32 alpha (*.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0)))
(fma.f32 u0 alpha (*.f32 (*.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0) alpha))
(+.f32 (*.f32 (*.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0) alpha) (*.f32 u0 alpha))
(+.f32 (*.f32 alpha (*.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0)) (*.f32 alpha u0))
(+.f32 (*.f32 alpha u0) (*.f32 alpha (*.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0)))
(+.f32 (*.f32 u0 alpha) (*.f32 (*.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0) alpha))
(*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) u0)
(*.f32 u0 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)))
(/.f32 (-.f32 (*.f32 u0 u0) (pow.f32 (*.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0) #s(literal 2 binary32))) (-.f32 u0 (*.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0)))
(/.f32 (neg.f32 (-.f32 (pow.f32 (*.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0) #s(literal 2 binary32)) (*.f32 u0 u0))) (neg.f32 (-.f32 (*.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0) u0)))
(/.f32 (neg.f32 (+.f32 (pow.f32 u0 #s(literal 3 binary32)) (pow.f32 (*.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0) #s(literal 3 binary32)))) (neg.f32 (fma.f32 u0 (-.f32 u0 (*.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0)) (pow.f32 (*.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0) #s(literal 2 binary32)))))
(/.f32 (-.f32 (pow.f32 (*.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0) #s(literal 2 binary32)) (*.f32 u0 u0)) (-.f32 (*.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0) u0))
(/.f32 (+.f32 (pow.f32 u0 #s(literal 3 binary32)) (pow.f32 (*.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0) #s(literal 3 binary32))) (fma.f32 u0 u0 (-.f32 (pow.f32 (*.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0) #s(literal 2 binary32)) (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) (pow.f32 u0 #s(literal 3 binary32))))))
(/.f32 (+.f32 (pow.f32 u0 #s(literal 3 binary32)) (pow.f32 (*.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0) #s(literal 3 binary32))) (fma.f32 u0 (-.f32 u0 (*.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0)) (pow.f32 (*.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0) #s(literal 2 binary32))))
(-.f32 (/.f32 (pow.f32 (*.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0) #s(literal 2 binary32)) (-.f32 (*.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0) u0)) (/.f32 (*.f32 u0 u0) (-.f32 (*.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0) u0)))
(-.f32 u0 (*.f32 (neg.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0)) u0))
(-.f32 u0 (*.f32 (neg.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32))) (*.f32 u0 u0)))
(-.f32 u0 (*.f32 (neg.f32 u0) (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0)))
(fma.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) (fabs.f32 u0)) (fabs.f32 u0) u0)
(fma.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) (neg.f32 u0)) (neg.f32 u0) u0)
(fma.f32 (*.f32 u0 u0) (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0)
(fma.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0 u0)
(fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) (*.f32 u0 u0) u0)
(fma.f32 u0 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0)
(+.f32 (/.f32 (pow.f32 (*.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0) #s(literal 3 binary32)) (fma.f32 u0 (-.f32 u0 (*.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0)) (pow.f32 (*.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0) #s(literal 2 binary32)))) (/.f32 (pow.f32 u0 #s(literal 3 binary32)) (fma.f32 u0 (-.f32 u0 (*.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0)) (pow.f32 (*.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0) #s(literal 2 binary32)))))
(+.f32 (*.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0) u0)
(+.f32 u0 (*.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0))
(*.f32 (*.f32 #s(approx (log (- 1 u0)) (*.f32 (fma.f32 (fma.f32 (fma.f32 #s(literal -1/4 binary32) u0 #s(literal -1/3 binary32)) u0 #s(literal -1/2 binary32)) u0 #s(literal -1 binary32)) u0)) alpha) (neg.f32 alpha))
(*.f32 (*.f32 #s(approx (log (- 1 u0)) (*.f32 (fma.f32 (fma.f32 (fma.f32 #s(literal -1/4 binary32) u0 #s(literal -1/3 binary32)) u0 #s(literal -1/2 binary32)) u0 #s(literal -1 binary32)) u0)) (neg.f32 alpha)) alpha)
(*.f32 #s(approx (log (- 1 u0)) (*.f32 (fma.f32 (fma.f32 (fma.f32 #s(literal -1/4 binary32) u0 #s(literal -1/3 binary32)) u0 #s(literal -1/2 binary32)) u0 #s(literal -1 binary32)) u0)) (*.f32 (neg.f32 alpha) alpha))
(*.f32 (*.f32 (neg.f32 alpha) alpha) #s(approx (log (- 1 u0)) (*.f32 (fma.f32 (fma.f32 (fma.f32 #s(literal -1/4 binary32) u0 #s(literal -1/3 binary32)) u0 #s(literal -1/2 binary32)) u0 #s(literal -1 binary32)) u0)))
(*.f32 (neg.f32 alpha) (*.f32 #s(approx (log (- 1 u0)) (*.f32 (fma.f32 (fma.f32 (fma.f32 #s(literal -1/4 binary32) u0 #s(literal -1/3 binary32)) u0 #s(literal -1/2 binary32)) u0 #s(literal -1 binary32)) u0)) alpha))
(*.f32 alpha (*.f32 #s(approx (log (- 1 u0)) (*.f32 (fma.f32 (fma.f32 (fma.f32 #s(literal -1/4 binary32) u0 #s(literal -1/3 binary32)) u0 #s(literal -1/2 binary32)) u0 #s(literal -1 binary32)) u0)) (neg.f32 alpha)))
(neg.f32 (*.f32 #s(approx (log (- 1 u0)) (*.f32 (fma.f32 (fma.f32 (fma.f32 #s(literal -1/4 binary32) u0 #s(literal -1/3 binary32)) u0 #s(literal -1/2 binary32)) u0 #s(literal -1 binary32)) u0)) (*.f32 alpha alpha)))
(neg.f32 (*.f32 alpha (*.f32 #s(approx (log (- 1 u0)) (*.f32 (fma.f32 (fma.f32 (fma.f32 #s(literal -1/4 binary32) u0 #s(literal -1/3 binary32)) u0 #s(literal -1/2 binary32)) u0 #s(literal -1 binary32)) u0)) alpha)))
(neg.f32 (*.f32 (*.f32 #s(approx (log (- 1 u0)) (*.f32 (fma.f32 (fma.f32 (fma.f32 #s(literal -1/4 binary32) u0 #s(literal -1/3 binary32)) u0 #s(literal -1/2 binary32)) u0 #s(literal -1 binary32)) u0)) alpha) alpha))
(*.f32 (neg.f32 #s(approx (log (- 1 u0)) (*.f32 (fma.f32 (fma.f32 (fma.f32 #s(literal -1/4 binary32) u0 #s(literal -1/3 binary32)) u0 #s(literal -1/2 binary32)) u0 #s(literal -1 binary32)) u0))) alpha)
(*.f32 #s(approx (log (- 1 u0)) (*.f32 (fma.f32 (fma.f32 (fma.f32 #s(literal -1/4 binary32) u0 #s(literal -1/3 binary32)) u0 #s(literal -1/2 binary32)) u0 #s(literal -1 binary32)) u0)) (neg.f32 alpha))
(*.f32 (neg.f32 alpha) #s(approx (log (- 1 u0)) (*.f32 (fma.f32 (fma.f32 (fma.f32 #s(literal -1/4 binary32) u0 #s(literal -1/3 binary32)) u0 #s(literal -1/2 binary32)) u0 #s(literal -1 binary32)) u0)))
(neg.f32 (*.f32 #s(approx (log (- 1 u0)) (*.f32 (fma.f32 (fma.f32 (fma.f32 #s(literal -1/4 binary32) u0 #s(literal -1/3 binary32)) u0 #s(literal -1/2 binary32)) u0 #s(literal -1 binary32)) u0)) alpha))
#s(approx (log (- 1 u0)) (*.f32 (fma.f32 (fma.f32 (fma.f32 #s(literal -1/4 binary32) u0 #s(literal -1/3 binary32)) u0 #s(literal -1/2 binary32)) u0 #s(literal -1 binary32)) u0))
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(/.f32 (*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/16 binary32) (*.f32 u0 u0) #s(literal -1/9 binary32))) (-.f32 (*.f32 #s(literal 1/4 binary32) u0) #s(literal 1/3 binary32)))
(/.f32 (*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/64 binary32) (pow.f32 u0 #s(literal 3 binary32)) #s(literal 1/27 binary32))) (-.f32 (fma.f32 #s(literal 1/16 binary32) (*.f32 u0 u0) #s(literal 1/9 binary32)) (*.f32 u0 #s(literal 1/12 binary32))))
(/.f32 (-.f32 (*.f32 (*.f32 (*.f32 (*.f32 alpha alpha) #s(literal 1/4 binary32)) u0) (*.f32 (*.f32 (*.f32 alpha alpha) #s(literal 1/4 binary32)) u0)) (*.f32 (*.f32 (*.f32 alpha alpha) #s(literal 1/3 binary32)) (*.f32 (*.f32 alpha alpha) #s(literal 1/3 binary32)))) (-.f32 (*.f32 (*.f32 (*.f32 alpha alpha) #s(literal 1/4 binary32)) u0) (*.f32 (*.f32 alpha alpha) #s(literal 1/3 binary32))))
(/.f32 (+.f32 (pow.f32 (*.f32 (*.f32 (*.f32 alpha alpha) #s(literal 1/4 binary32)) u0) #s(literal 3 binary32)) (pow.f32 (*.f32 (*.f32 alpha alpha) #s(literal 1/3 binary32)) #s(literal 3 binary32))) (fma.f32 (*.f32 (*.f32 (*.f32 alpha alpha) #s(literal 1/4 binary32)) u0) (*.f32 (*.f32 (*.f32 alpha alpha) #s(literal 1/4 binary32)) u0) (-.f32 (*.f32 (*.f32 (*.f32 alpha alpha) #s(literal 1/3 binary32)) (*.f32 (*.f32 alpha alpha) #s(literal 1/3 binary32))) (*.f32 (*.f32 (*.f32 (*.f32 alpha alpha) #s(literal 1/4 binary32)) u0) (*.f32 (*.f32 alpha alpha) #s(literal 1/3 binary32))))))
(-.f32 (*.f32 (*.f32 (*.f32 alpha alpha) #s(literal 1/4 binary32)) u0) (*.f32 #s(literal -1/3 binary32) (*.f32 alpha alpha)))
(-.f32 (*.f32 (*.f32 (*.f32 alpha alpha) #s(literal 1/4 binary32)) u0) (*.f32 (*.f32 (neg.f32 alpha) alpha) #s(literal 1/3 binary32)))
(fma.f32 (*.f32 (*.f32 alpha alpha) #s(literal 1/4 binary32)) u0 (*.f32 (*.f32 alpha alpha) #s(literal 1/3 binary32)))
(fma.f32 (*.f32 #s(literal 1/3 binary32) (fabs.f32 alpha)) (fabs.f32 alpha) (*.f32 (*.f32 (*.f32 alpha alpha) #s(literal 1/4 binary32)) u0))
(fma.f32 (*.f32 #s(literal 1/3 binary32) (neg.f32 alpha)) (neg.f32 alpha) (*.f32 (*.f32 (*.f32 alpha alpha) #s(literal 1/4 binary32)) u0))
(fma.f32 (*.f32 (*.f32 #s(literal 1/4 binary32) u0) (fabs.f32 alpha)) (fabs.f32 alpha) (*.f32 (*.f32 alpha alpha) #s(literal 1/3 binary32)))
(fma.f32 (*.f32 (*.f32 #s(literal 1/4 binary32) u0) (neg.f32 alpha)) (neg.f32 alpha) (*.f32 (*.f32 alpha alpha) #s(literal 1/3 binary32)))
(fma.f32 (*.f32 (*.f32 #s(literal 1/4 binary32) u0) #s(literal 1 binary32)) (*.f32 alpha alpha) (*.f32 (*.f32 alpha alpha) #s(literal 1/3 binary32)))
(fma.f32 (*.f32 (*.f32 alpha alpha) u0) #s(literal 1/4 binary32) (*.f32 (*.f32 alpha alpha) #s(literal 1/3 binary32)))
(fma.f32 (*.f32 #s(literal 1/3 binary32) alpha) alpha (*.f32 (*.f32 (*.f32 alpha alpha) #s(literal 1/4 binary32)) u0))
(fma.f32 (*.f32 (*.f32 #s(literal 1/4 binary32) u0) alpha) alpha (*.f32 (*.f32 alpha alpha) #s(literal 1/3 binary32)))
(fma.f32 (*.f32 (*.f32 alpha alpha) #s(literal 1/3 binary32)) #s(literal 1 binary32) (*.f32 (*.f32 (*.f32 alpha alpha) #s(literal 1/4 binary32)) u0))
(fma.f32 (*.f32 (*.f32 (*.f32 alpha alpha) #s(literal 1/4 binary32)) u0) #s(literal 1 binary32) (*.f32 (*.f32 alpha alpha) #s(literal 1/3 binary32)))
(fma.f32 (fabs.f32 alpha) (*.f32 (fabs.f32 alpha) #s(literal 1/3 binary32)) (*.f32 (*.f32 (*.f32 alpha alpha) #s(literal 1/4 binary32)) u0))
(fma.f32 (fabs.f32 alpha) (*.f32 (fabs.f32 alpha) (*.f32 #s(literal 1/4 binary32) u0)) (*.f32 (*.f32 alpha alpha) #s(literal 1/3 binary32)))
(fma.f32 (*.f32 alpha alpha) (*.f32 #s(literal 1 binary32) (*.f32 #s(literal 1/4 binary32) u0)) (*.f32 (*.f32 alpha alpha) #s(literal 1/3 binary32)))
(fma.f32 (*.f32 alpha alpha) #s(literal 1/3 binary32) (*.f32 (*.f32 (*.f32 alpha alpha) #s(literal 1/4 binary32)) u0))
(fma.f32 (*.f32 alpha alpha) (*.f32 #s(literal 1/4 binary32) u0) (*.f32 (*.f32 alpha alpha) #s(literal 1/3 binary32)))
(fma.f32 #s(literal 1/3 binary32) (*.f32 alpha alpha) (*.f32 (*.f32 (*.f32 alpha alpha) #s(literal 1/4 binary32)) u0))
(fma.f32 (*.f32 #s(literal 1/4 binary32) u0) (*.f32 alpha alpha) (*.f32 (*.f32 alpha alpha) #s(literal 1/3 binary32)))
(fma.f32 #s(literal 1/4 binary32) (*.f32 u0 (*.f32 alpha alpha)) (*.f32 (*.f32 alpha alpha) #s(literal 1/3 binary32)))
(fma.f32 (neg.f32 alpha) (*.f32 (neg.f32 alpha) #s(literal 1/3 binary32)) (*.f32 (*.f32 (*.f32 alpha alpha) #s(literal 1/4 binary32)) u0))
(fma.f32 (neg.f32 alpha) (*.f32 (neg.f32 alpha) (*.f32 #s(literal 1/4 binary32) u0)) (*.f32 (*.f32 alpha alpha) #s(literal 1/3 binary32)))
(fma.f32 alpha (*.f32 alpha #s(literal 1/3 binary32)) (*.f32 (*.f32 (*.f32 alpha alpha) #s(literal 1/4 binary32)) u0))
(fma.f32 alpha (*.f32 alpha (*.f32 #s(literal 1/4 binary32) u0)) (*.f32 (*.f32 alpha alpha) #s(literal 1/3 binary32)))
(fma.f32 u0 (*.f32 #s(literal 1/4 binary32) (*.f32 alpha alpha)) (*.f32 (*.f32 alpha alpha) #s(literal 1/3 binary32)))
(fma.f32 #s(literal 1 binary32) (*.f32 (*.f32 alpha alpha) #s(literal 1/3 binary32)) (*.f32 (*.f32 (*.f32 alpha alpha) #s(literal 1/4 binary32)) u0))
(fma.f32 #s(literal 1 binary32) (*.f32 (*.f32 (*.f32 alpha alpha) #s(literal 1/4 binary32)) u0) (*.f32 (*.f32 alpha alpha) #s(literal 1/3 binary32)))
(+.f32 (*.f32 (*.f32 alpha alpha) #s(literal 1/3 binary32)) (*.f32 (*.f32 (*.f32 alpha alpha) #s(literal 1/4 binary32)) u0))
(+.f32 (*.f32 (*.f32 (*.f32 alpha alpha) #s(literal 1/4 binary32)) u0) (*.f32 (*.f32 alpha alpha) #s(literal 1/3 binary32)))
(*.f32 (fma.f32 (pow.f32 (*.f32 u0 alpha) #s(literal 2 binary32)) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) (*.f32 (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) alpha) alpha)) u0)
(*.f32 u0 (fma.f32 (pow.f32 (*.f32 u0 alpha) #s(literal 2 binary32)) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) (*.f32 (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) alpha) alpha)))
(/.f32 (*.f32 (-.f32 (pow.f32 (*.f32 (pow.f32 (*.f32 u0 alpha) #s(literal 2 binary32)) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32))) #s(literal 2 binary32)) (*.f32 (pow.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) #s(literal 2 binary32)) (pow.f32 alpha #s(literal 4 binary32)))) u0) (-.f32 (*.f32 (pow.f32 (*.f32 u0 alpha) #s(literal 2 binary32)) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32))) (*.f32 (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) alpha) alpha)))
(/.f32 (*.f32 (fma.f32 (pow.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) #s(literal 3 binary32)) (pow.f32 alpha #s(literal 6 binary32)) (pow.f32 (*.f32 (pow.f32 (*.f32 u0 alpha) #s(literal 2 binary32)) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32))) #s(literal 3 binary32))) u0) (fma.f32 (*.f32 (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) alpha) alpha) (-.f32 (*.f32 (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) alpha) alpha) (*.f32 (pow.f32 (*.f32 u0 alpha) #s(literal 2 binary32)) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)))) (pow.f32 (*.f32 (pow.f32 (*.f32 u0 alpha) #s(literal 2 binary32)) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32))) #s(literal 2 binary32))))
(/.f32 (*.f32 u0 (-.f32 (pow.f32 (*.f32 (pow.f32 (*.f32 u0 alpha) #s(literal 2 binary32)) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32))) #s(literal 2 binary32)) (*.f32 (pow.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) #s(literal 2 binary32)) (pow.f32 alpha #s(literal 4 binary32))))) (-.f32 (*.f32 (pow.f32 (*.f32 u0 alpha) #s(literal 2 binary32)) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32))) (*.f32 (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) alpha) alpha)))
(/.f32 (*.f32 u0 (fma.f32 (pow.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) #s(literal 3 binary32)) (pow.f32 alpha #s(literal 6 binary32)) (pow.f32 (*.f32 (pow.f32 (*.f32 u0 alpha) #s(literal 2 binary32)) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32))) #s(literal 3 binary32)))) (fma.f32 (*.f32 (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) alpha) alpha) (-.f32 (*.f32 (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) alpha) alpha) (*.f32 (pow.f32 (*.f32 u0 alpha) #s(literal 2 binary32)) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)))) (pow.f32 (*.f32 (pow.f32 (*.f32 u0 alpha) #s(literal 2 binary32)) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32))) #s(literal 2 binary32))))
(fma.f32 (fma.f32 (*.f32 (*.f32 alpha alpha) u0) #s(literal 1/2 binary32) (*.f32 (pow.f32 (*.f32 u0 alpha) #s(literal 2 binary32)) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)))) u0 (*.f32 (*.f32 alpha alpha) u0))
(fma.f32 (*.f32 (pow.f32 (*.f32 u0 alpha) #s(literal 2 binary32)) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32))) u0 (*.f32 (*.f32 (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) alpha) alpha) u0))
(fma.f32 (*.f32 (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) alpha) alpha) u0 (*.f32 (*.f32 (pow.f32 (*.f32 u0 alpha) #s(literal 2 binary32)) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32))) u0))
(fma.f32 u0 (fma.f32 (*.f32 (*.f32 alpha alpha) u0) #s(literal 1/2 binary32) (*.f32 (pow.f32 (*.f32 u0 alpha) #s(literal 2 binary32)) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)))) (*.f32 u0 (*.f32 alpha alpha)))
(fma.f32 u0 (*.f32 (pow.f32 (*.f32 u0 alpha) #s(literal 2 binary32)) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32))) (*.f32 u0 (*.f32 (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) alpha) alpha)))
(fma.f32 u0 (*.f32 (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) alpha) alpha) (*.f32 u0 (*.f32 (pow.f32 (*.f32 u0 alpha) #s(literal 2 binary32)) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)))))
(+.f32 (*.f32 (fma.f32 (*.f32 (*.f32 alpha alpha) u0) #s(literal 1/2 binary32) (*.f32 (pow.f32 (*.f32 u0 alpha) #s(literal 2 binary32)) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)))) u0) (*.f32 (*.f32 alpha alpha) u0))
(+.f32 (*.f32 (*.f32 (pow.f32 (*.f32 u0 alpha) #s(literal 2 binary32)) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32))) u0) (*.f32 (*.f32 (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) alpha) alpha) u0))
(+.f32 (*.f32 (*.f32 (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) alpha) alpha) u0) (*.f32 (*.f32 (pow.f32 (*.f32 u0 alpha) #s(literal 2 binary32)) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32))) u0))
(+.f32 (*.f32 u0 (fma.f32 (*.f32 (*.f32 alpha alpha) u0) #s(literal 1/2 binary32) (*.f32 (pow.f32 (*.f32 u0 alpha) #s(literal 2 binary32)) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32))))) (*.f32 u0 (*.f32 alpha alpha)))
(+.f32 (*.f32 u0 (*.f32 (pow.f32 (*.f32 u0 alpha) #s(literal 2 binary32)) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)))) (*.f32 u0 (*.f32 (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) alpha) alpha)))
(+.f32 (*.f32 u0 (*.f32 (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) alpha) alpha)) (*.f32 u0 (*.f32 (pow.f32 (*.f32 u0 alpha) #s(literal 2 binary32)) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)))))

eval51.0ms (0.6%)

Memory
13.8MiB live, 104.6MiB allocated; 8ms collecting garbage
Compiler

Compiled 20 124 to 2 280 computations (88.7% saved)

prune62.0ms (0.7%)

Memory
-31.3MiB live, 114.6MiB allocated; 12ms collecting garbage
Pruning

51 alts after pruning (41 fresh and 10 done)

PrunedKeptTotal
New51217529
Fresh72431
Picked145
Done167
Total52151572
Accuracy
100.0%
Counts
572 → 51
Alt Table
Click to see full alt table
StatusAccuracyProgram
98.8%
(*.f32 (*.f32 (neg.f32 alpha) alpha) (-.f32 (log1p.f32 (*.f32 (neg.f32 u0) u0)) (log1p.f32 u0)))
89.4%
(*.f32 (*.f32 (neg.f32 alpha) alpha) (-.f32 (log.f32 (-.f32 #s(literal 1 binary32) (*.f32 u0 u0))) (log1p.f32 u0)))
94.2%
(*.f32 (*.f32 (neg.f32 alpha) alpha) (-.f32 #s(approx (log (+ 1 (* (neg u0) u0))) (*.f32 (*.f32 (fma.f32 (fma.f32 (*.f32 #s(literal -1/3 binary32) u0) u0 #s(literal -1/2 binary32)) (*.f32 u0 u0) #s(literal -1 binary32)) u0) u0)) (log1p.f32 u0)))
91.5%
(*.f32 (*.f32 (neg.f32 alpha) alpha) #s(approx (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0))) (*.f32 (fma.f32 (fma.f32 (fma.f32 #s(literal -1/4 binary32) u0 #s(literal -1/3 binary32)) u0 #s(literal -1/2 binary32)) u0 #s(literal -1 binary32)) u0)))
85.0%
(*.f32 (*.f32 (neg.f32 alpha) alpha) #s(approx (log (- 1 u0)) (*.f32 (fma.f32 #s(literal -1/2 binary32) u0 #s(literal -1 binary32)) u0)))
54.3%
(*.f32 (*.f32 (log.f32 (/.f32 (-.f32 (*.f32 #s(literal 1 binary32) (-.f32 u0 #s(literal -1 binary32))) (*.f32 (-.f32 u0 #s(literal -1 binary32)) (*.f32 u0 u0))) (*.f32 (-.f32 u0 #s(literal -1 binary32)) (-.f32 u0 #s(literal -1 binary32))))) (neg.f32 alpha)) alpha)
56.2%
(*.f32 (*.f32 (log.f32 #s(approx (- 1 u0) (*.f32 (-.f32 (/.f32 #s(literal 1 binary32) u0) #s(literal 1 binary32)) u0))) (neg.f32 alpha)) alpha)
91.7%
(*.f32 (*.f32 #s(approx (log (- 1 u0)) (fma.f32 (*.f32 (fma.f32 (fma.f32 #s(literal -1/4 binary32) u0 #s(literal -1/3 binary32)) u0 #s(literal -1/2 binary32)) u0) u0 (*.f32 #s(literal -1 binary32) u0))) (neg.f32 alpha)) alpha)
91.6%
(*.f32 (*.f32 #s(approx (log (- 1 u0)) (*.f32 (fma.f32 (fma.f32 (fma.f32 #s(literal -1/4 binary32) u0 #s(literal -1/3 binary32)) u0 #s(literal -1/2 binary32)) u0 #s(literal -1 binary32)) u0)) (neg.f32 alpha)) alpha)
91.6%
(*.f32 (*.f32 #s(approx (log (- 1 u0)) #s(approx (* (+ (* (+ (* (+ (* -1/4 u0) -1/3) u0) -1/2) u0) -1) u0) (*.f32 (-.f32 (*.f32 (fma.f32 (fma.f32 #s(literal -1/4 binary32) u0 #s(literal -1/3 binary32)) u0 #s(literal -1/2 binary32)) u0) #s(literal 1 binary32)) u0))) (neg.f32 alpha)) alpha)
37.6%
(*.f32 (log.f32 (pow.f32 (-.f32 #s(literal 1 binary32) u0) (neg.f32 alpha))) alpha)
91.8%
(*.f32 #s(approx (* (neg alpha) (log (+ 1 (neg u0)))) (*.f32 (fma.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) alpha) u0 (*.f32 #s(literal 1/2 binary32) alpha)) u0 alpha) u0)) alpha)
85.2%
(*.f32 #s(approx (* (neg alpha) (log (+ 1 (neg u0)))) (*.f32 (fma.f32 (*.f32 alpha u0) #s(literal 1/2 binary32) alpha) u0)) alpha)
99.0%
(*.f32 #s(approx (* (log (- 1 u0)) (neg alpha)) (*.f32 (neg.f32 alpha) (log1p.f32 (neg.f32 u0)))) alpha)
89.4%
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (/.f32 (*.f32 (-.f32 (pow.f32 (*.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0) #s(literal 2 binary32)) (*.f32 u0 u0)) (*.f32 alpha alpha)) (-.f32 (*.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0) u0)))
89.5%
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) (*.f32 (*.f32 u0 alpha) alpha)))
89.5%
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) (*.f32 u0 (*.f32 alpha alpha))))
89.7%
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0 u0) (*.f32 alpha alpha)))
91.4%
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0) u0 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))) (*.f32 (*.f32 alpha alpha) u0)))
89.8%
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (fma.f32 (*.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0) alpha (*.f32 u0 alpha)) alpha))
89.9%
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (fma.f32 u0 alpha (*.f32 (*.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0) alpha)) alpha))
91.5%
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (fma.f32 (fma.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) (*.f32 alpha alpha)) u0))
89.5%
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) (*.f32 u0 alpha)) alpha))
89.4%
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) u0) (*.f32 alpha alpha)))
89.7%
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0 u0) alpha) alpha))
85.2%
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (fma.f32 #s(approx (* (+ (* 1/3 u0) 1/2) u0) (*.f32 #s(literal 1/2 binary32) u0)) u0 u0) alpha) alpha))
85.1%
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) alpha) alpha) u0))
91.5%
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (*.f32 alpha alpha) u0) (fma.f32 (fma.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32))))
85.1%
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 #s(approx (+ (* (* (+ (* 1/3 u0) 1/2) u0) u0) u0) (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) u0)) alpha) alpha))
85.1%
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 u0 (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) alpha)) alpha))
89.3%
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 #s(approx (* (+ (* (* (+ (* 1/3 u0) 1/2) u0) u0) u0) alpha) (*.f32 (fma.f32 #s(literal 1/3 binary32) alpha (/.f32 (fma.f32 #s(literal 1/2 binary32) alpha (/.f32 alpha u0)) u0)) (pow.f32 u0 #s(literal 3 binary32)))) alpha))
89.5%
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 u0 (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) (*.f32 alpha alpha))))
89.3%
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) #s(approx (* (* (+ (* (* (+ (* 1/3 u0) 1/2) u0) u0) u0) alpha) alpha) (*.f32 (fma.f32 (*.f32 #s(literal 1/3 binary32) alpha) alpha (/.f32 (fma.f32 (*.f32 #s(literal 1/2 binary32) alpha) alpha (/.f32 (*.f32 alpha alpha) u0)) u0)) (pow.f32 u0 #s(literal 3 binary32)))))
90.0%
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (fma.f32 (*.f32 alpha alpha) u0 (*.f32 (*.f32 (*.f32 u0 alpha) (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) alpha)) u0)))
91.5%
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 (*.f32 (*.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) alpha) alpha) (*.f32 u0 u0) (*.f32 (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) alpha) alpha)) u0))
89.8%
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 (*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32))) u0 (*.f32 alpha alpha)) u0))
91.6%
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 (*.f32 u0 u0) (*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32))) (/.f32 (*.f32 (fma.f32 (*.f32 u0 u0) #s(literal 1/4 binary32) #s(literal -1 binary32)) (*.f32 alpha alpha)) (fma.f32 #s(literal 1/2 binary32) u0 #s(literal -1 binary32)))) u0))
91.8%
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 (*.f32 u0 u0) (*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32))) (*.f32 alpha (fma.f32 (*.f32 alpha u0) #s(literal 1/2 binary32) alpha))) u0))
85.2%
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 #s(approx (* (* alpha alpha) (+ (* 1/3 u0) 1/2)) (*.f32 #s(literal 1/2 binary32) (*.f32 alpha alpha))) u0 (*.f32 alpha alpha)) u0))
85.1%
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) (*.f32 (*.f32 alpha alpha) u0)))
98.9%
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (*.f32 (neg.f32 alpha) alpha) (log1p.f32 (neg.f32 u0))))
72.6%
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (*.f32 u0 alpha) alpha))
72.6%
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (*.f32 alpha alpha) u0))
89.6%
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* (* alpha alpha) (+ (* 1/3 u0) 1/2)) u0) (* alpha alpha)) (*.f32 (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) alpha) alpha)) u0))
91.8%
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (+.f32 (*.f32 (*.f32 alpha alpha) (*.f32 u0 (fma.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0 #s(literal 1/2 binary32)))) (*.f32 alpha alpha))) u0))
89.4%
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 (fma.f32 #s(approx (* (+ (* 1/4 u0) 1/3) u0) (*.f32 #s(literal 1/3 binary32) u0)) u0 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))) (*.f32 alpha alpha))) u0))
91.4%
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 (fma.f32 u0 #s(literal 1/2 binary32) (+.f32 #s(literal 1 binary32) (*.f32 (*.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0) u0))) (*.f32 alpha alpha))) u0))
91.0%
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 (/.f32 (*.f32 (*.f32 alpha alpha) (fma.f32 u0 (fma.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0 #s(literal 1/2 binary32)) #s(literal 1 binary32))) (*.f32 (fma.f32 u0 (fma.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0 #s(literal 1/2 binary32)) #s(literal 1 binary32)) alpha)) (/.f32 (*.f32 (*.f32 alpha alpha) (fma.f32 u0 (fma.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0 #s(literal 1/2 binary32)) #s(literal 1 binary32))) alpha))) u0))
91.5%
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 (-.f32 (*.f32 u0 (fma.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0 #s(literal 1/2 binary32))) #s(literal -1 binary32)) (*.f32 alpha alpha))) u0))
91.7%
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 (*.f32 (fma.f32 u0 (fma.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0 #s(literal 1/2 binary32)) #s(literal 1 binary32)) alpha) alpha)) u0))
85.0%
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 #s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))) (*.f32 alpha alpha))) u0))
Compiler

Compiled 4 119 to 1 548 computations (62.4% saved)

regimes117.0ms (1.4%)

Memory
-3.0MiB live, 184.8MiB allocated; 13ms collecting garbage
Counts
76 → 1
Calls
Call 1
Inputs
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (*.f32 alpha alpha) u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (*.f32 u0 alpha) alpha))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 #s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))) (*.f32 alpha alpha))) u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) (*.f32 (*.f32 alpha alpha) u0)))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 u0 (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) alpha)) alpha))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 #s(approx (* (+ (* (+ (* 1/3 u0) 1/2) u0) 1) u0) (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) u0)) alpha) alpha))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 #s(approx (+ (* (* (+ (* 1/3 u0) 1/2) u0) u0) u0) (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) u0)) alpha) alpha))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) alpha) alpha) u0))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (fma.f32 #s(approx (* (+ (* 1/3 u0) 1/2) u0) (*.f32 #s(literal 1/2 binary32) u0)) u0 u0) alpha) alpha))
(*.f32 #s(approx (* (log (- 1 u0)) (neg alpha)) (*.f32 (fma.f32 (*.f32 u0 alpha) #s(literal 1/2 binary32) alpha) u0)) alpha)
(*.f32 #s(approx (* (neg alpha) (log (+ 1 (neg u0)))) (*.f32 (fma.f32 (*.f32 alpha u0) #s(literal 1/2 binary32) alpha) u0)) alpha)
(*.f32 (*.f32 #s(approx (log (- 1 u0)) (*.f32 (fma.f32 #s(literal -1/2 binary32) u0 #s(literal -1 binary32)) u0)) (neg.f32 alpha)) alpha)
(*.f32 (*.f32 (neg.f32 alpha) alpha) #s(approx (log (- 1 u0)) (*.f32 (fma.f32 #s(literal -1/2 binary32) u0 #s(literal -1 binary32)) u0)))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 #s(approx (* (* alpha alpha) (+ (* 1/3 u0) 1/2)) (*.f32 #s(literal 1/2 binary32) (*.f32 alpha alpha))) u0 (*.f32 alpha alpha)) u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* (* alpha alpha) (+ (* 1/3 u0) 1/2)) u0) (* alpha alpha)) (*.f32 (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) alpha) alpha)) u0))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 u0 (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) (*.f32 alpha alpha))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) u0) alpha) alpha))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0 u0) alpha) alpha))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) u0) (*.f32 alpha alpha)))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) (*.f32 u0 alpha)) alpha))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0 u0) (*.f32 alpha alpha)))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) (*.f32 u0 (*.f32 alpha alpha))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) (*.f32 (*.f32 u0 alpha) alpha)))
(*.f32 (*.f32 (neg.f32 alpha) alpha) #s(approx (log (- 1 u0)) (fma.f32 (*.f32 #s(literal -1/2 binary32) u0) u0 (*.f32 #s(literal -1 binary32) u0))))
(*.f32 (*.f32 (neg.f32 alpha) alpha) #s(approx (log (- 1 u0)) (*.f32 (fma.f32 (fma.f32 #s(literal -1/3 binary32) u0 #s(literal -1/2 binary32)) u0 #s(literal -1 binary32)) u0)))
(*.f32 (*.f32 (neg.f32 alpha) alpha) #s(approx (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0))) (*.f32 (fma.f32 (fma.f32 #s(literal -1/3 binary32) u0 #s(literal -1/2 binary32)) u0 #s(literal -1 binary32)) u0)))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 (fma.f32 #s(approx (* (+ (* 1/4 u0) 1/3) u0) (*.f32 #s(literal 1/3 binary32) u0)) u0 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))) (*.f32 alpha alpha))) u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 alpha alpha (*.f32 (*.f32 u0 alpha) (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) alpha))) u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 (*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32))) u0 (*.f32 alpha alpha)) u0))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (fma.f32 u0 alpha (*.f32 (*.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0) alpha)) alpha))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (fma.f32 (*.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0) alpha (*.f32 u0 alpha)) alpha))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 (*.f32 (fma.f32 u0 (fma.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0 #s(literal 1/2 binary32)) #s(literal 1 binary32)) alpha) alpha)) u0))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (*.f32 alpha alpha) u0) (fma.f32 (fma.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (fma.f32 (fma.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) (*.f32 alpha alpha)) u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 (-.f32 (*.f32 u0 (fma.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0 #s(literal 1/2 binary32))) #s(literal -1 binary32)) (*.f32 alpha alpha))) u0))
(*.f32 (*.f32 #s(approx (log (- 1 u0)) (*.f32 (fma.f32 (fma.f32 (fma.f32 #s(literal -1/4 binary32) u0 #s(literal -1/3 binary32)) u0 #s(literal -1/2 binary32)) u0 #s(literal -1 binary32)) u0)) (neg.f32 alpha)) alpha)
(*.f32 (*.f32 (neg.f32 alpha) alpha) #s(approx (log (- 1 u0)) (*.f32 (fma.f32 (fma.f32 (fma.f32 #s(literal -1/4 binary32) u0 #s(literal -1/3 binary32)) u0 #s(literal -1/2 binary32)) u0 #s(literal -1 binary32)) u0)))
(*.f32 (*.f32 (neg.f32 alpha) alpha) #s(approx (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0))) (*.f32 (fma.f32 (fma.f32 (fma.f32 #s(literal -1/4 binary32) u0 #s(literal -1/3 binary32)) u0 #s(literal -1/2 binary32)) u0 #s(literal -1 binary32)) u0)))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (fma.f32 (*.f32 alpha alpha) u0 (*.f32 (*.f32 (*.f32 u0 alpha) (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) alpha)) u0)))
(*.f32 (*.f32 #s(approx (log (- 1 u0)) #s(approx (* (+ (* (+ (* (+ (* -1/4 u0) -1/3) u0) -1/2) u0) -1) u0) (*.f32 (-.f32 (*.f32 (fma.f32 (fma.f32 #s(literal -1/4 binary32) u0 #s(literal -1/3 binary32)) u0 #s(literal -1/2 binary32)) u0) #s(literal 1 binary32)) u0))) (neg.f32 alpha)) alpha)
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0) u0 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))) (*.f32 alpha alpha))) u0))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0) u0 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))) (*.f32 (*.f32 alpha alpha) u0)))
(*.f32 #s(approx (* (log (- 1 u0)) (neg alpha)) (*.f32 (fma.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) alpha) u0 (*.f32 #s(literal 1/2 binary32) alpha)) u0 alpha) u0)) alpha)
(*.f32 #s(approx (* (neg alpha) (log (+ 1 (neg u0)))) (*.f32 (fma.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) alpha) u0 (*.f32 #s(literal 1/2 binary32) alpha)) u0 alpha) u0)) alpha)
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 (fma.f32 u0 #s(literal 1/2 binary32) (+.f32 #s(literal 1 binary32) (*.f32 (*.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0) u0))) (*.f32 alpha alpha))) u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (+.f32 (*.f32 (*.f32 alpha alpha) (*.f32 u0 (fma.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0 #s(literal 1/2 binary32)))) (*.f32 alpha alpha))) u0))
(*.f32 (*.f32 #s(approx (log (- 1 u0)) (fma.f32 (*.f32 (fma.f32 (fma.f32 #s(literal -1/4 binary32) u0 #s(literal -1/3 binary32)) u0 #s(literal -1/2 binary32)) u0) u0 (*.f32 #s(literal -1 binary32) u0))) (neg.f32 alpha)) alpha)
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 (*.f32 u0 u0) (*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32))) (*.f32 alpha (fma.f32 (*.f32 alpha u0) #s(literal 1/2 binary32) alpha))) u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 (*.f32 u0 u0) (*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32))) (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) (*.f32 alpha alpha))) u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 (*.f32 (*.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) alpha) alpha) (*.f32 u0 u0) (*.f32 (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) alpha) alpha)) u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 (*.f32 u0 u0) (*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32))) (fma.f32 (*.f32 alpha alpha) (*.f32 #s(literal 1/2 binary32) u0) (*.f32 (*.f32 alpha alpha) #s(literal 1 binary32)))) u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 (*.f32 u0 u0) (*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32))) #s(approx (* (+ (* 1/2 u0) 1) (* alpha alpha)) (*.f32 (fma.f32 #s(literal 1/2 binary32) (*.f32 alpha alpha) (/.f32 (*.f32 alpha alpha) u0)) u0))) u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 (*.f32 u0 u0) (*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32))) (/.f32 (*.f32 (fma.f32 (*.f32 #s(literal 1/4 binary32) u0) u0 #s(literal -1 binary32)) (*.f32 alpha alpha)) (fma.f32 #s(literal 1/2 binary32) u0 #s(literal -1 binary32)))) u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 (*.f32 u0 u0) (*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32))) (/.f32 (*.f32 (fma.f32 (*.f32 u0 u0) #s(literal 1/4 binary32) #s(literal -1 binary32)) (*.f32 alpha alpha)) (fma.f32 #s(literal 1/2 binary32) u0 #s(literal -1 binary32)))) u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 (/.f32 (*.f32 (*.f32 alpha alpha) (fma.f32 u0 (fma.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0 #s(literal 1/2 binary32)) #s(literal 1 binary32))) (*.f32 (fma.f32 u0 (fma.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0 #s(literal 1/2 binary32)) #s(literal 1 binary32)) alpha)) (/.f32 (*.f32 (*.f32 alpha alpha) (fma.f32 u0 (fma.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0 #s(literal 1/2 binary32)) #s(literal 1 binary32))) alpha))) u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (*.f32 (neg.f32 alpha) alpha) (log1p.f32 (neg.f32 u0))))
(*.f32 #s(approx (* (log (- 1 u0)) (neg alpha)) (*.f32 (neg.f32 alpha) (log1p.f32 (neg.f32 u0)))) alpha)
(*.f32 (*.f32 (log.f32 (-.f32 #s(literal 1 binary32) u0)) (neg.f32 alpha)) alpha)
(*.f32 (*.f32 (neg.f32 alpha) alpha) (log.f32 (-.f32 #s(literal 1 binary32) u0)))
(*.f32 (*.f32 (log.f32 #s(approx (- 1 u0) (*.f32 (-.f32 (/.f32 #s(literal 1 binary32) u0) #s(literal 1 binary32)) u0))) (neg.f32 alpha)) alpha)
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 #s(approx (* (* (+ (* (+ (* 1/3 u0) 1/2) u0) 1) u0) alpha) (*.f32 (fma.f32 #s(literal 1/3 binary32) alpha (/.f32 (fma.f32 #s(literal 1/2 binary32) alpha (/.f32 alpha u0)) u0)) (pow.f32 u0 #s(literal 3 binary32)))) alpha))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 #s(approx (* (+ (* (* (+ (* 1/3 u0) 1/2) u0) u0) u0) alpha) (*.f32 (fma.f32 #s(literal 1/3 binary32) alpha (/.f32 (fma.f32 #s(literal 1/2 binary32) alpha (/.f32 alpha u0)) u0)) (pow.f32 u0 #s(literal 3 binary32)))) alpha))
(*.f32 (*.f32 (neg.f32 alpha) alpha) (-.f32 #s(approx (log (+ 1 (* (neg u0) u0))) (*.f32 (*.f32 (fma.f32 (fma.f32 (*.f32 #s(literal -1/3 binary32) u0) u0 #s(literal -1/2 binary32)) (*.f32 u0 u0) #s(literal -1 binary32)) u0) u0)) (log1p.f32 u0)))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(approx (* (+ (* (* (* alpha alpha) (+ (* 1/3 u0) 1/2)) u0) (* alpha alpha)) u0) (*.f32 (fma.f32 (*.f32 #s(literal 1/3 binary32) alpha) alpha (/.f32 (fma.f32 #s(literal 1/2 binary32) (*.f32 alpha alpha) (/.f32 (*.f32 alpha alpha) u0)) u0)) (pow.f32 u0 #s(literal 3 binary32)))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) #s(approx (* (* (* (+ (* (+ (* 1/3 u0) 1/2) u0) 1) u0) alpha) alpha) (*.f32 (fma.f32 (*.f32 #s(literal 1/3 binary32) alpha) alpha (/.f32 (fma.f32 (*.f32 #s(literal 1/2 binary32) alpha) alpha (/.f32 (*.f32 alpha alpha) u0)) u0)) (pow.f32 u0 #s(literal 3 binary32)))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) #s(approx (* (* (+ (* (* (+ (* 1/3 u0) 1/2) u0) u0) u0) alpha) alpha) (*.f32 (fma.f32 (*.f32 #s(literal 1/3 binary32) alpha) alpha (/.f32 (fma.f32 (*.f32 #s(literal 1/2 binary32) alpha) alpha (/.f32 (*.f32 alpha alpha) u0)) u0)) (pow.f32 u0 #s(literal 3 binary32)))))
(*.f32 (*.f32 (log.f32 (/.f32 (-.f32 (*.f32 #s(literal 1 binary32) (-.f32 u0 #s(literal -1 binary32))) (*.f32 (-.f32 u0 #s(literal -1 binary32)) (*.f32 u0 u0))) (*.f32 (-.f32 u0 #s(literal -1 binary32)) (-.f32 u0 #s(literal -1 binary32))))) (neg.f32 alpha)) alpha)
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (/.f32 (*.f32 (-.f32 (pow.f32 (*.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0) #s(literal 2 binary32)) (*.f32 u0 u0)) (*.f32 alpha alpha)) (-.f32 (*.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0) u0)))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) #s(approx (* (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) u0) (*.f32 (pow.f32 u0 #s(literal 4 binary32)) (fma.f32 (*.f32 #s(literal 1/4 binary32) alpha) alpha (/.f32 (fma.f32 (*.f32 #s(literal 1/3 binary32) alpha) alpha (/.f32 (fma.f32 #s(literal 1/2 binary32) (*.f32 alpha alpha) (/.f32 (*.f32 alpha alpha) u0)) u0)) u0)))))
(*.f32 (log.f32 (pow.f32 (-.f32 #s(literal 1 binary32) u0) (neg.f32 alpha))) alpha)
(*.f32 (neg.f32 alpha) (log.f32 (pow.f32 (-.f32 #s(literal 1 binary32) u0) alpha)))
(*.f32 (*.f32 (neg.f32 alpha) alpha) (-.f32 (log1p.f32 (*.f32 (neg.f32 u0) u0)) (log1p.f32 u0)))
(*.f32 (*.f32 (neg.f32 alpha) alpha) (-.f32 (log.f32 (-.f32 #s(literal 1 binary32) (*.f32 u0 u0))) (log1p.f32 u0)))
(*.f32 (*.f32 (neg.f32 alpha) alpha) (-.f32 (-.f32 (log.f32 (-.f32 #s(literal 1 binary32) (pow.f32 (*.f32 (neg.f32 u0) u0) #s(literal 2 binary32)))) (log1p.f32 (*.f32 u0 u0))) (log1p.f32 u0)))
(/.f32 (*.f32 (-.f32 (pow.f32 (log1p.f32 (*.f32 (neg.f32 u0) u0)) #s(literal 2 binary32)) (pow.f32 (log1p.f32 u0) #s(literal 2 binary32))) (*.f32 (neg.f32 alpha) alpha)) (+.f32 (log1p.f32 u0) (log1p.f32 (*.f32 (neg.f32 u0) u0))))
(*.f32 (*.f32 (neg.f32 alpha) alpha) (/.f32 (-.f32 (pow.f32 (log1p.f32 (*.f32 (neg.f32 u0) u0)) #s(literal 3 binary32)) (pow.f32 (log1p.f32 u0) #s(literal 3 binary32))) (fma.f32 (log1p.f32 u0) (+.f32 (log1p.f32 u0) (log1p.f32 (*.f32 (neg.f32 u0) u0))) (pow.f32 (log1p.f32 (*.f32 (neg.f32 u0) u0)) #s(literal 2 binary32)))))
Outputs
(*.f32 #s(approx (* (log (- 1 u0)) (neg alpha)) (*.f32 (neg.f32 alpha) (log1p.f32 (neg.f32 u0)))) alpha)
Calls

6 calls:

21.0ms
(log.f32 (-.f32 #s(literal 1 binary32) u0))
20.0ms
(*.f32 (neg.f32 alpha) alpha)
19.0ms
alpha
18.0ms
u0
17.0ms
(-.f32 #s(literal 1 binary32) u0)
Results
AccuracySegmentsBranch
99.0%1(-.f32 #s(literal 1 binary32) u0)
99.0%1(log.f32 (-.f32 #s(literal 1 binary32) u0))
99.0%1(*.f32 (neg.f32 alpha) alpha)
99.0%1(*.f32 (*.f32 (neg.f32 alpha) alpha) (log.f32 (-.f32 #s(literal 1 binary32) u0)))
99.0%1alpha
99.0%1u0
Compiler

Compiled 22 to 25 computations (-13.6% saved)

regimes112.0ms (1.3%)

Memory
36.8MiB live, 129.4MiB allocated; 5ms collecting garbage
Counts
56 → 1
Calls
Call 1
Inputs
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (*.f32 alpha alpha) u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (*.f32 u0 alpha) alpha))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 #s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))) (*.f32 alpha alpha))) u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) (*.f32 (*.f32 alpha alpha) u0)))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 u0 (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) alpha)) alpha))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 #s(approx (* (+ (* (+ (* 1/3 u0) 1/2) u0) 1) u0) (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) u0)) alpha) alpha))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 #s(approx (+ (* (* (+ (* 1/3 u0) 1/2) u0) u0) u0) (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) u0)) alpha) alpha))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) alpha) alpha) u0))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (fma.f32 #s(approx (* (+ (* 1/3 u0) 1/2) u0) (*.f32 #s(literal 1/2 binary32) u0)) u0 u0) alpha) alpha))
(*.f32 #s(approx (* (log (- 1 u0)) (neg alpha)) (*.f32 (fma.f32 (*.f32 u0 alpha) #s(literal 1/2 binary32) alpha) u0)) alpha)
(*.f32 #s(approx (* (neg alpha) (log (+ 1 (neg u0)))) (*.f32 (fma.f32 (*.f32 alpha u0) #s(literal 1/2 binary32) alpha) u0)) alpha)
(*.f32 (*.f32 #s(approx (log (- 1 u0)) (*.f32 (fma.f32 #s(literal -1/2 binary32) u0 #s(literal -1 binary32)) u0)) (neg.f32 alpha)) alpha)
(*.f32 (*.f32 (neg.f32 alpha) alpha) #s(approx (log (- 1 u0)) (*.f32 (fma.f32 #s(literal -1/2 binary32) u0 #s(literal -1 binary32)) u0)))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 #s(approx (* (* alpha alpha) (+ (* 1/3 u0) 1/2)) (*.f32 #s(literal 1/2 binary32) (*.f32 alpha alpha))) u0 (*.f32 alpha alpha)) u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* (* alpha alpha) (+ (* 1/3 u0) 1/2)) u0) (* alpha alpha)) (*.f32 (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) alpha) alpha)) u0))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 u0 (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) (*.f32 alpha alpha))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) u0) alpha) alpha))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0 u0) alpha) alpha))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) u0) (*.f32 alpha alpha)))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) (*.f32 u0 alpha)) alpha))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0 u0) (*.f32 alpha alpha)))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) (*.f32 u0 (*.f32 alpha alpha))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) (*.f32 (*.f32 u0 alpha) alpha)))
(*.f32 (*.f32 (neg.f32 alpha) alpha) #s(approx (log (- 1 u0)) (fma.f32 (*.f32 #s(literal -1/2 binary32) u0) u0 (*.f32 #s(literal -1 binary32) u0))))
(*.f32 (*.f32 (neg.f32 alpha) alpha) #s(approx (log (- 1 u0)) (*.f32 (fma.f32 (fma.f32 #s(literal -1/3 binary32) u0 #s(literal -1/2 binary32)) u0 #s(literal -1 binary32)) u0)))
(*.f32 (*.f32 (neg.f32 alpha) alpha) #s(approx (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0))) (*.f32 (fma.f32 (fma.f32 #s(literal -1/3 binary32) u0 #s(literal -1/2 binary32)) u0 #s(literal -1 binary32)) u0)))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 (fma.f32 #s(approx (* (+ (* 1/4 u0) 1/3) u0) (*.f32 #s(literal 1/3 binary32) u0)) u0 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))) (*.f32 alpha alpha))) u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 alpha alpha (*.f32 (*.f32 u0 alpha) (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) alpha))) u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 (*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32))) u0 (*.f32 alpha alpha)) u0))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (fma.f32 u0 alpha (*.f32 (*.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0) alpha)) alpha))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (fma.f32 (*.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0) alpha (*.f32 u0 alpha)) alpha))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 (*.f32 (fma.f32 u0 (fma.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0 #s(literal 1/2 binary32)) #s(literal 1 binary32)) alpha) alpha)) u0))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (*.f32 alpha alpha) u0) (fma.f32 (fma.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (fma.f32 (fma.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) (*.f32 alpha alpha)) u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 (-.f32 (*.f32 u0 (fma.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0 #s(literal 1/2 binary32))) #s(literal -1 binary32)) (*.f32 alpha alpha))) u0))
(*.f32 (*.f32 #s(approx (log (- 1 u0)) (*.f32 (fma.f32 (fma.f32 (fma.f32 #s(literal -1/4 binary32) u0 #s(literal -1/3 binary32)) u0 #s(literal -1/2 binary32)) u0 #s(literal -1 binary32)) u0)) (neg.f32 alpha)) alpha)
(*.f32 (*.f32 (neg.f32 alpha) alpha) #s(approx (log (- 1 u0)) (*.f32 (fma.f32 (fma.f32 (fma.f32 #s(literal -1/4 binary32) u0 #s(literal -1/3 binary32)) u0 #s(literal -1/2 binary32)) u0 #s(literal -1 binary32)) u0)))
(*.f32 (*.f32 (neg.f32 alpha) alpha) #s(approx (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0))) (*.f32 (fma.f32 (fma.f32 (fma.f32 #s(literal -1/4 binary32) u0 #s(literal -1/3 binary32)) u0 #s(literal -1/2 binary32)) u0 #s(literal -1 binary32)) u0)))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (fma.f32 (*.f32 alpha alpha) u0 (*.f32 (*.f32 (*.f32 u0 alpha) (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) alpha)) u0)))
(*.f32 (*.f32 #s(approx (log (- 1 u0)) #s(approx (* (+ (* (+ (* (+ (* -1/4 u0) -1/3) u0) -1/2) u0) -1) u0) (*.f32 (-.f32 (*.f32 (fma.f32 (fma.f32 #s(literal -1/4 binary32) u0 #s(literal -1/3 binary32)) u0 #s(literal -1/2 binary32)) u0) #s(literal 1 binary32)) u0))) (neg.f32 alpha)) alpha)
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0) u0 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))) (*.f32 alpha alpha))) u0))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0) u0 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))) (*.f32 (*.f32 alpha alpha) u0)))
(*.f32 #s(approx (* (log (- 1 u0)) (neg alpha)) (*.f32 (fma.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) alpha) u0 (*.f32 #s(literal 1/2 binary32) alpha)) u0 alpha) u0)) alpha)
(*.f32 #s(approx (* (neg alpha) (log (+ 1 (neg u0)))) (*.f32 (fma.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) alpha) u0 (*.f32 #s(literal 1/2 binary32) alpha)) u0 alpha) u0)) alpha)
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 (fma.f32 u0 #s(literal 1/2 binary32) (+.f32 #s(literal 1 binary32) (*.f32 (*.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0) u0))) (*.f32 alpha alpha))) u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (+.f32 (*.f32 (*.f32 alpha alpha) (*.f32 u0 (fma.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0 #s(literal 1/2 binary32)))) (*.f32 alpha alpha))) u0))
(*.f32 (*.f32 #s(approx (log (- 1 u0)) (fma.f32 (*.f32 (fma.f32 (fma.f32 #s(literal -1/4 binary32) u0 #s(literal -1/3 binary32)) u0 #s(literal -1/2 binary32)) u0) u0 (*.f32 #s(literal -1 binary32) u0))) (neg.f32 alpha)) alpha)
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 (*.f32 u0 u0) (*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32))) (*.f32 alpha (fma.f32 (*.f32 alpha u0) #s(literal 1/2 binary32) alpha))) u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 (*.f32 u0 u0) (*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32))) (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) (*.f32 alpha alpha))) u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 (*.f32 (*.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) alpha) alpha) (*.f32 u0 u0) (*.f32 (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) alpha) alpha)) u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 (*.f32 u0 u0) (*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32))) (fma.f32 (*.f32 alpha alpha) (*.f32 #s(literal 1/2 binary32) u0) (*.f32 (*.f32 alpha alpha) #s(literal 1 binary32)))) u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 (*.f32 u0 u0) (*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32))) #s(approx (* (+ (* 1/2 u0) 1) (* alpha alpha)) (*.f32 (fma.f32 #s(literal 1/2 binary32) (*.f32 alpha alpha) (/.f32 (*.f32 alpha alpha) u0)) u0))) u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 (*.f32 u0 u0) (*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32))) (/.f32 (*.f32 (fma.f32 (*.f32 #s(literal 1/4 binary32) u0) u0 #s(literal -1 binary32)) (*.f32 alpha alpha)) (fma.f32 #s(literal 1/2 binary32) u0 #s(literal -1 binary32)))) u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 (*.f32 u0 u0) (*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32))) (/.f32 (*.f32 (fma.f32 (*.f32 u0 u0) #s(literal 1/4 binary32) #s(literal -1 binary32)) (*.f32 alpha alpha)) (fma.f32 #s(literal 1/2 binary32) u0 #s(literal -1 binary32)))) u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 (/.f32 (*.f32 (*.f32 alpha alpha) (fma.f32 u0 (fma.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0 #s(literal 1/2 binary32)) #s(literal 1 binary32))) (*.f32 (fma.f32 u0 (fma.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0 #s(literal 1/2 binary32)) #s(literal 1 binary32)) alpha)) (/.f32 (*.f32 (*.f32 alpha alpha) (fma.f32 u0 (fma.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0 #s(literal 1/2 binary32)) #s(literal 1 binary32))) alpha))) u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (*.f32 (neg.f32 alpha) alpha) (log1p.f32 (neg.f32 u0))))
Outputs
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (*.f32 (neg.f32 alpha) alpha) (log1p.f32 (neg.f32 u0))))
Calls

6 calls:

41.0ms
(log.f32 (-.f32 #s(literal 1 binary32) u0))
16.0ms
alpha
14.0ms
(*.f32 (neg.f32 alpha) alpha)
14.0ms
u0
13.0ms
(-.f32 #s(literal 1 binary32) u0)
Results
AccuracySegmentsBranch
98.9%1(-.f32 #s(literal 1 binary32) u0)
98.9%1(log.f32 (-.f32 #s(literal 1 binary32) u0))
98.9%1(*.f32 (neg.f32 alpha) alpha)
98.9%1(*.f32 (*.f32 (neg.f32 alpha) alpha) (log.f32 (-.f32 #s(literal 1 binary32) u0)))
98.9%1alpha
98.9%1u0
Compiler

Compiled 22 to 25 computations (-13.6% saved)

regimes98.0ms (1.2%)

Memory
11.1MiB live, 153.2MiB allocated; 10ms collecting garbage
Counts
55 → 1
Calls
Call 1
Inputs
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (*.f32 alpha alpha) u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (*.f32 u0 alpha) alpha))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 #s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))) (*.f32 alpha alpha))) u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) (*.f32 (*.f32 alpha alpha) u0)))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 u0 (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) alpha)) alpha))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 #s(approx (* (+ (* (+ (* 1/3 u0) 1/2) u0) 1) u0) (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) u0)) alpha) alpha))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 #s(approx (+ (* (* (+ (* 1/3 u0) 1/2) u0) u0) u0) (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) u0)) alpha) alpha))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) alpha) alpha) u0))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (fma.f32 #s(approx (* (+ (* 1/3 u0) 1/2) u0) (*.f32 #s(literal 1/2 binary32) u0)) u0 u0) alpha) alpha))
(*.f32 #s(approx (* (log (- 1 u0)) (neg alpha)) (*.f32 (fma.f32 (*.f32 u0 alpha) #s(literal 1/2 binary32) alpha) u0)) alpha)
(*.f32 #s(approx (* (neg alpha) (log (+ 1 (neg u0)))) (*.f32 (fma.f32 (*.f32 alpha u0) #s(literal 1/2 binary32) alpha) u0)) alpha)
(*.f32 (*.f32 #s(approx (log (- 1 u0)) (*.f32 (fma.f32 #s(literal -1/2 binary32) u0 #s(literal -1 binary32)) u0)) (neg.f32 alpha)) alpha)
(*.f32 (*.f32 (neg.f32 alpha) alpha) #s(approx (log (- 1 u0)) (*.f32 (fma.f32 #s(literal -1/2 binary32) u0 #s(literal -1 binary32)) u0)))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 #s(approx (* (* alpha alpha) (+ (* 1/3 u0) 1/2)) (*.f32 #s(literal 1/2 binary32) (*.f32 alpha alpha))) u0 (*.f32 alpha alpha)) u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* (* alpha alpha) (+ (* 1/3 u0) 1/2)) u0) (* alpha alpha)) (*.f32 (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) alpha) alpha)) u0))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 u0 (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) (*.f32 alpha alpha))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) u0) alpha) alpha))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0 u0) alpha) alpha))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) u0) (*.f32 alpha alpha)))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) (*.f32 u0 alpha)) alpha))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0 u0) (*.f32 alpha alpha)))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) (*.f32 u0 (*.f32 alpha alpha))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) (*.f32 (*.f32 u0 alpha) alpha)))
(*.f32 (*.f32 (neg.f32 alpha) alpha) #s(approx (log (- 1 u0)) (fma.f32 (*.f32 #s(literal -1/2 binary32) u0) u0 (*.f32 #s(literal -1 binary32) u0))))
(*.f32 (*.f32 (neg.f32 alpha) alpha) #s(approx (log (- 1 u0)) (*.f32 (fma.f32 (fma.f32 #s(literal -1/3 binary32) u0 #s(literal -1/2 binary32)) u0 #s(literal -1 binary32)) u0)))
(*.f32 (*.f32 (neg.f32 alpha) alpha) #s(approx (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0))) (*.f32 (fma.f32 (fma.f32 #s(literal -1/3 binary32) u0 #s(literal -1/2 binary32)) u0 #s(literal -1 binary32)) u0)))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 (fma.f32 #s(approx (* (+ (* 1/4 u0) 1/3) u0) (*.f32 #s(literal 1/3 binary32) u0)) u0 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))) (*.f32 alpha alpha))) u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 alpha alpha (*.f32 (*.f32 u0 alpha) (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) alpha))) u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 (*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32))) u0 (*.f32 alpha alpha)) u0))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (fma.f32 u0 alpha (*.f32 (*.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0) alpha)) alpha))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (fma.f32 (*.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0) alpha (*.f32 u0 alpha)) alpha))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 (*.f32 (fma.f32 u0 (fma.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0 #s(literal 1/2 binary32)) #s(literal 1 binary32)) alpha) alpha)) u0))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (*.f32 alpha alpha) u0) (fma.f32 (fma.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (fma.f32 (fma.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) (*.f32 alpha alpha)) u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 (-.f32 (*.f32 u0 (fma.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0 #s(literal 1/2 binary32))) #s(literal -1 binary32)) (*.f32 alpha alpha))) u0))
(*.f32 (*.f32 #s(approx (log (- 1 u0)) (*.f32 (fma.f32 (fma.f32 (fma.f32 #s(literal -1/4 binary32) u0 #s(literal -1/3 binary32)) u0 #s(literal -1/2 binary32)) u0 #s(literal -1 binary32)) u0)) (neg.f32 alpha)) alpha)
(*.f32 (*.f32 (neg.f32 alpha) alpha) #s(approx (log (- 1 u0)) (*.f32 (fma.f32 (fma.f32 (fma.f32 #s(literal -1/4 binary32) u0 #s(literal -1/3 binary32)) u0 #s(literal -1/2 binary32)) u0 #s(literal -1 binary32)) u0)))
(*.f32 (*.f32 (neg.f32 alpha) alpha) #s(approx (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0))) (*.f32 (fma.f32 (fma.f32 (fma.f32 #s(literal -1/4 binary32) u0 #s(literal -1/3 binary32)) u0 #s(literal -1/2 binary32)) u0 #s(literal -1 binary32)) u0)))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (fma.f32 (*.f32 alpha alpha) u0 (*.f32 (*.f32 (*.f32 u0 alpha) (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) alpha)) u0)))
(*.f32 (*.f32 #s(approx (log (- 1 u0)) #s(approx (* (+ (* (+ (* (+ (* -1/4 u0) -1/3) u0) -1/2) u0) -1) u0) (*.f32 (-.f32 (*.f32 (fma.f32 (fma.f32 #s(literal -1/4 binary32) u0 #s(literal -1/3 binary32)) u0 #s(literal -1/2 binary32)) u0) #s(literal 1 binary32)) u0))) (neg.f32 alpha)) alpha)
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0) u0 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))) (*.f32 alpha alpha))) u0))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0) u0 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))) (*.f32 (*.f32 alpha alpha) u0)))
(*.f32 #s(approx (* (log (- 1 u0)) (neg alpha)) (*.f32 (fma.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) alpha) u0 (*.f32 #s(literal 1/2 binary32) alpha)) u0 alpha) u0)) alpha)
(*.f32 #s(approx (* (neg alpha) (log (+ 1 (neg u0)))) (*.f32 (fma.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) alpha) u0 (*.f32 #s(literal 1/2 binary32) alpha)) u0 alpha) u0)) alpha)
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 (fma.f32 u0 #s(literal 1/2 binary32) (+.f32 #s(literal 1 binary32) (*.f32 (*.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0) u0))) (*.f32 alpha alpha))) u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (+.f32 (*.f32 (*.f32 alpha alpha) (*.f32 u0 (fma.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0 #s(literal 1/2 binary32)))) (*.f32 alpha alpha))) u0))
(*.f32 (*.f32 #s(approx (log (- 1 u0)) (fma.f32 (*.f32 (fma.f32 (fma.f32 #s(literal -1/4 binary32) u0 #s(literal -1/3 binary32)) u0 #s(literal -1/2 binary32)) u0) u0 (*.f32 #s(literal -1 binary32) u0))) (neg.f32 alpha)) alpha)
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 (*.f32 u0 u0) (*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32))) (*.f32 alpha (fma.f32 (*.f32 alpha u0) #s(literal 1/2 binary32) alpha))) u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 (*.f32 u0 u0) (*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32))) (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) (*.f32 alpha alpha))) u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 (*.f32 (*.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) alpha) alpha) (*.f32 u0 u0) (*.f32 (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) alpha) alpha)) u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 (*.f32 u0 u0) (*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32))) (fma.f32 (*.f32 alpha alpha) (*.f32 #s(literal 1/2 binary32) u0) (*.f32 (*.f32 alpha alpha) #s(literal 1 binary32)))) u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 (*.f32 u0 u0) (*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32))) #s(approx (* (+ (* 1/2 u0) 1) (* alpha alpha)) (*.f32 (fma.f32 #s(literal 1/2 binary32) (*.f32 alpha alpha) (/.f32 (*.f32 alpha alpha) u0)) u0))) u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 (*.f32 u0 u0) (*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32))) (/.f32 (*.f32 (fma.f32 (*.f32 #s(literal 1/4 binary32) u0) u0 #s(literal -1 binary32)) (*.f32 alpha alpha)) (fma.f32 #s(literal 1/2 binary32) u0 #s(literal -1 binary32)))) u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 (*.f32 u0 u0) (*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32))) (/.f32 (*.f32 (fma.f32 (*.f32 u0 u0) #s(literal 1/4 binary32) #s(literal -1 binary32)) (*.f32 alpha alpha)) (fma.f32 #s(literal 1/2 binary32) u0 #s(literal -1 binary32)))) u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 (/.f32 (*.f32 (*.f32 alpha alpha) (fma.f32 u0 (fma.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0 #s(literal 1/2 binary32)) #s(literal 1 binary32))) (*.f32 (fma.f32 u0 (fma.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0 #s(literal 1/2 binary32)) #s(literal 1 binary32)) alpha)) (/.f32 (*.f32 (*.f32 alpha alpha) (fma.f32 u0 (fma.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0 #s(literal 1/2 binary32)) #s(literal 1 binary32))) alpha))) u0))
Outputs
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (+.f32 (*.f32 (*.f32 alpha alpha) (*.f32 u0 (fma.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0 #s(literal 1/2 binary32)))) (*.f32 alpha alpha))) u0))
Calls

6 calls:

25.0ms
u0
15.0ms
(*.f32 (*.f32 (neg.f32 alpha) alpha) (log.f32 (-.f32 #s(literal 1 binary32) u0)))
15.0ms
(log.f32 (-.f32 #s(literal 1 binary32) u0))
14.0ms
alpha
14.0ms
(*.f32 (neg.f32 alpha) alpha)
Results
AccuracySegmentsBranch
91.8%1(-.f32 #s(literal 1 binary32) u0)
91.8%1(log.f32 (-.f32 #s(literal 1 binary32) u0))
91.8%1(*.f32 (neg.f32 alpha) alpha)
91.8%1(*.f32 (*.f32 (neg.f32 alpha) alpha) (log.f32 (-.f32 #s(literal 1 binary32) u0)))
91.8%1alpha
91.8%1u0
Compiler

Compiled 22 to 25 computations (-13.6% saved)

regimes84.0ms (1%)

Memory
-40.6MiB live, 110.7MiB allocated; 16ms collecting garbage
Counts
45 → 1
Calls
Call 1
Inputs
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (*.f32 alpha alpha) u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (*.f32 u0 alpha) alpha))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 #s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))) (*.f32 alpha alpha))) u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) (*.f32 (*.f32 alpha alpha) u0)))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 u0 (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) alpha)) alpha))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 #s(approx (* (+ (* (+ (* 1/3 u0) 1/2) u0) 1) u0) (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) u0)) alpha) alpha))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 #s(approx (+ (* (* (+ (* 1/3 u0) 1/2) u0) u0) u0) (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) u0)) alpha) alpha))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) alpha) alpha) u0))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (fma.f32 #s(approx (* (+ (* 1/3 u0) 1/2) u0) (*.f32 #s(literal 1/2 binary32) u0)) u0 u0) alpha) alpha))
(*.f32 #s(approx (* (log (- 1 u0)) (neg alpha)) (*.f32 (fma.f32 (*.f32 u0 alpha) #s(literal 1/2 binary32) alpha) u0)) alpha)
(*.f32 #s(approx (* (neg alpha) (log (+ 1 (neg u0)))) (*.f32 (fma.f32 (*.f32 alpha u0) #s(literal 1/2 binary32) alpha) u0)) alpha)
(*.f32 (*.f32 #s(approx (log (- 1 u0)) (*.f32 (fma.f32 #s(literal -1/2 binary32) u0 #s(literal -1 binary32)) u0)) (neg.f32 alpha)) alpha)
(*.f32 (*.f32 (neg.f32 alpha) alpha) #s(approx (log (- 1 u0)) (*.f32 (fma.f32 #s(literal -1/2 binary32) u0 #s(literal -1 binary32)) u0)))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 #s(approx (* (* alpha alpha) (+ (* 1/3 u0) 1/2)) (*.f32 #s(literal 1/2 binary32) (*.f32 alpha alpha))) u0 (*.f32 alpha alpha)) u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* (* alpha alpha) (+ (* 1/3 u0) 1/2)) u0) (* alpha alpha)) (*.f32 (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) alpha) alpha)) u0))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 u0 (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) (*.f32 alpha alpha))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) u0) alpha) alpha))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0 u0) alpha) alpha))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) u0) (*.f32 alpha alpha)))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) (*.f32 u0 alpha)) alpha))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0 u0) (*.f32 alpha alpha)))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) (*.f32 u0 (*.f32 alpha alpha))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) (*.f32 (*.f32 u0 alpha) alpha)))
(*.f32 (*.f32 (neg.f32 alpha) alpha) #s(approx (log (- 1 u0)) (fma.f32 (*.f32 #s(literal -1/2 binary32) u0) u0 (*.f32 #s(literal -1 binary32) u0))))
(*.f32 (*.f32 (neg.f32 alpha) alpha) #s(approx (log (- 1 u0)) (*.f32 (fma.f32 (fma.f32 #s(literal -1/3 binary32) u0 #s(literal -1/2 binary32)) u0 #s(literal -1 binary32)) u0)))
(*.f32 (*.f32 (neg.f32 alpha) alpha) #s(approx (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0))) (*.f32 (fma.f32 (fma.f32 #s(literal -1/3 binary32) u0 #s(literal -1/2 binary32)) u0 #s(literal -1 binary32)) u0)))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 (fma.f32 #s(approx (* (+ (* 1/4 u0) 1/3) u0) (*.f32 #s(literal 1/3 binary32) u0)) u0 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))) (*.f32 alpha alpha))) u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 alpha alpha (*.f32 (*.f32 u0 alpha) (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) alpha))) u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 (*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32))) u0 (*.f32 alpha alpha)) u0))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (fma.f32 u0 alpha (*.f32 (*.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0) alpha)) alpha))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (fma.f32 (*.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0) alpha (*.f32 u0 alpha)) alpha))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 (*.f32 (fma.f32 u0 (fma.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0 #s(literal 1/2 binary32)) #s(literal 1 binary32)) alpha) alpha)) u0))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (*.f32 alpha alpha) u0) (fma.f32 (fma.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (fma.f32 (fma.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) (*.f32 alpha alpha)) u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 (-.f32 (*.f32 u0 (fma.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0 #s(literal 1/2 binary32))) #s(literal -1 binary32)) (*.f32 alpha alpha))) u0))
(*.f32 (*.f32 #s(approx (log (- 1 u0)) (*.f32 (fma.f32 (fma.f32 (fma.f32 #s(literal -1/4 binary32) u0 #s(literal -1/3 binary32)) u0 #s(literal -1/2 binary32)) u0 #s(literal -1 binary32)) u0)) (neg.f32 alpha)) alpha)
(*.f32 (*.f32 (neg.f32 alpha) alpha) #s(approx (log (- 1 u0)) (*.f32 (fma.f32 (fma.f32 (fma.f32 #s(literal -1/4 binary32) u0 #s(literal -1/3 binary32)) u0 #s(literal -1/2 binary32)) u0 #s(literal -1 binary32)) u0)))
(*.f32 (*.f32 (neg.f32 alpha) alpha) #s(approx (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0))) (*.f32 (fma.f32 (fma.f32 (fma.f32 #s(literal -1/4 binary32) u0 #s(literal -1/3 binary32)) u0 #s(literal -1/2 binary32)) u0 #s(literal -1 binary32)) u0)))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (fma.f32 (*.f32 alpha alpha) u0 (*.f32 (*.f32 (*.f32 u0 alpha) (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) alpha)) u0)))
(*.f32 (*.f32 #s(approx (log (- 1 u0)) #s(approx (* (+ (* (+ (* (+ (* -1/4 u0) -1/3) u0) -1/2) u0) -1) u0) (*.f32 (-.f32 (*.f32 (fma.f32 (fma.f32 #s(literal -1/4 binary32) u0 #s(literal -1/3 binary32)) u0 #s(literal -1/2 binary32)) u0) #s(literal 1 binary32)) u0))) (neg.f32 alpha)) alpha)
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0) u0 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))) (*.f32 alpha alpha))) u0))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0) u0 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))) (*.f32 (*.f32 alpha alpha) u0)))
(*.f32 #s(approx (* (log (- 1 u0)) (neg alpha)) (*.f32 (fma.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) alpha) u0 (*.f32 #s(literal 1/2 binary32) alpha)) u0 alpha) u0)) alpha)
(*.f32 #s(approx (* (neg alpha) (log (+ 1 (neg u0)))) (*.f32 (fma.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) alpha) u0 (*.f32 #s(literal 1/2 binary32) alpha)) u0 alpha) u0)) alpha)
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 (fma.f32 u0 #s(literal 1/2 binary32) (+.f32 #s(literal 1 binary32) (*.f32 (*.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0) u0))) (*.f32 alpha alpha))) u0))
Outputs
(*.f32 #s(approx (* (log (- 1 u0)) (neg alpha)) (*.f32 (fma.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) alpha) u0 (*.f32 #s(literal 1/2 binary32) alpha)) u0 alpha) u0)) alpha)
Calls

6 calls:

20.0ms
(*.f32 (neg.f32 alpha) alpha)
16.0ms
(-.f32 #s(literal 1 binary32) u0)
14.0ms
u0
11.0ms
alpha
11.0ms
(log.f32 (-.f32 #s(literal 1 binary32) u0))
Results
AccuracySegmentsBranch
91.8%1(*.f32 (neg.f32 alpha) alpha)
91.8%1(*.f32 (*.f32 (neg.f32 alpha) alpha) (log.f32 (-.f32 #s(literal 1 binary32) u0)))
91.8%1alpha
91.8%1(-.f32 #s(literal 1 binary32) u0)
91.8%1(log.f32 (-.f32 #s(literal 1 binary32) u0))
91.8%1u0
Compiler

Compiled 22 to 25 computations (-13.6% saved)

regimes68.0ms (0.8%)

Memory
35.8MiB live, 127.5MiB allocated; 4ms collecting garbage
Counts
42 → 1
Calls
Call 1
Inputs
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (*.f32 alpha alpha) u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (*.f32 u0 alpha) alpha))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 #s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))) (*.f32 alpha alpha))) u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) (*.f32 (*.f32 alpha alpha) u0)))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 u0 (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) alpha)) alpha))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 #s(approx (* (+ (* (+ (* 1/3 u0) 1/2) u0) 1) u0) (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) u0)) alpha) alpha))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 #s(approx (+ (* (* (+ (* 1/3 u0) 1/2) u0) u0) u0) (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) u0)) alpha) alpha))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) alpha) alpha) u0))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (fma.f32 #s(approx (* (+ (* 1/3 u0) 1/2) u0) (*.f32 #s(literal 1/2 binary32) u0)) u0 u0) alpha) alpha))
(*.f32 #s(approx (* (log (- 1 u0)) (neg alpha)) (*.f32 (fma.f32 (*.f32 u0 alpha) #s(literal 1/2 binary32) alpha) u0)) alpha)
(*.f32 #s(approx (* (neg alpha) (log (+ 1 (neg u0)))) (*.f32 (fma.f32 (*.f32 alpha u0) #s(literal 1/2 binary32) alpha) u0)) alpha)
(*.f32 (*.f32 #s(approx (log (- 1 u0)) (*.f32 (fma.f32 #s(literal -1/2 binary32) u0 #s(literal -1 binary32)) u0)) (neg.f32 alpha)) alpha)
(*.f32 (*.f32 (neg.f32 alpha) alpha) #s(approx (log (- 1 u0)) (*.f32 (fma.f32 #s(literal -1/2 binary32) u0 #s(literal -1 binary32)) u0)))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 #s(approx (* (* alpha alpha) (+ (* 1/3 u0) 1/2)) (*.f32 #s(literal 1/2 binary32) (*.f32 alpha alpha))) u0 (*.f32 alpha alpha)) u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* (* alpha alpha) (+ (* 1/3 u0) 1/2)) u0) (* alpha alpha)) (*.f32 (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) alpha) alpha)) u0))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 u0 (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) (*.f32 alpha alpha))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) u0) alpha) alpha))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0 u0) alpha) alpha))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) u0) (*.f32 alpha alpha)))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) (*.f32 u0 alpha)) alpha))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0 u0) (*.f32 alpha alpha)))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) (*.f32 u0 (*.f32 alpha alpha))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) (*.f32 (*.f32 u0 alpha) alpha)))
(*.f32 (*.f32 (neg.f32 alpha) alpha) #s(approx (log (- 1 u0)) (fma.f32 (*.f32 #s(literal -1/2 binary32) u0) u0 (*.f32 #s(literal -1 binary32) u0))))
(*.f32 (*.f32 (neg.f32 alpha) alpha) #s(approx (log (- 1 u0)) (*.f32 (fma.f32 (fma.f32 #s(literal -1/3 binary32) u0 #s(literal -1/2 binary32)) u0 #s(literal -1 binary32)) u0)))
(*.f32 (*.f32 (neg.f32 alpha) alpha) #s(approx (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0))) (*.f32 (fma.f32 (fma.f32 #s(literal -1/3 binary32) u0 #s(literal -1/2 binary32)) u0 #s(literal -1 binary32)) u0)))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 (fma.f32 #s(approx (* (+ (* 1/4 u0) 1/3) u0) (*.f32 #s(literal 1/3 binary32) u0)) u0 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))) (*.f32 alpha alpha))) u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 alpha alpha (*.f32 (*.f32 u0 alpha) (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) alpha))) u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 (*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32))) u0 (*.f32 alpha alpha)) u0))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (fma.f32 u0 alpha (*.f32 (*.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0) alpha)) alpha))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (fma.f32 (*.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0) alpha (*.f32 u0 alpha)) alpha))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 (*.f32 (fma.f32 u0 (fma.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0 #s(literal 1/2 binary32)) #s(literal 1 binary32)) alpha) alpha)) u0))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (*.f32 alpha alpha) u0) (fma.f32 (fma.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (fma.f32 (fma.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) (*.f32 alpha alpha)) u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 (-.f32 (*.f32 u0 (fma.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0 #s(literal 1/2 binary32))) #s(literal -1 binary32)) (*.f32 alpha alpha))) u0))
(*.f32 (*.f32 #s(approx (log (- 1 u0)) (*.f32 (fma.f32 (fma.f32 (fma.f32 #s(literal -1/4 binary32) u0 #s(literal -1/3 binary32)) u0 #s(literal -1/2 binary32)) u0 #s(literal -1 binary32)) u0)) (neg.f32 alpha)) alpha)
(*.f32 (*.f32 (neg.f32 alpha) alpha) #s(approx (log (- 1 u0)) (*.f32 (fma.f32 (fma.f32 (fma.f32 #s(literal -1/4 binary32) u0 #s(literal -1/3 binary32)) u0 #s(literal -1/2 binary32)) u0 #s(literal -1 binary32)) u0)))
(*.f32 (*.f32 (neg.f32 alpha) alpha) #s(approx (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0))) (*.f32 (fma.f32 (fma.f32 (fma.f32 #s(literal -1/4 binary32) u0 #s(literal -1/3 binary32)) u0 #s(literal -1/2 binary32)) u0 #s(literal -1 binary32)) u0)))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (fma.f32 (*.f32 alpha alpha) u0 (*.f32 (*.f32 (*.f32 u0 alpha) (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) alpha)) u0)))
(*.f32 (*.f32 #s(approx (log (- 1 u0)) #s(approx (* (+ (* (+ (* (+ (* -1/4 u0) -1/3) u0) -1/2) u0) -1) u0) (*.f32 (-.f32 (*.f32 (fma.f32 (fma.f32 #s(literal -1/4 binary32) u0 #s(literal -1/3 binary32)) u0 #s(literal -1/2 binary32)) u0) #s(literal 1 binary32)) u0))) (neg.f32 alpha)) alpha)
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0) u0 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))) (*.f32 alpha alpha))) u0))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0) u0 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))) (*.f32 (*.f32 alpha alpha) u0)))
Outputs
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 (*.f32 (fma.f32 u0 (fma.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0 #s(literal 1/2 binary32)) #s(literal 1 binary32)) alpha) alpha)) u0))
Calls

6 calls:

13.0ms
alpha
12.0ms
u0
11.0ms
(*.f32 (neg.f32 alpha) alpha)
10.0ms
(log.f32 (-.f32 #s(literal 1 binary32) u0))
10.0ms
(-.f32 #s(literal 1 binary32) u0)
Results
AccuracySegmentsBranch
91.7%1(*.f32 (*.f32 (neg.f32 alpha) alpha) (log.f32 (-.f32 #s(literal 1 binary32) u0)))
91.7%1alpha
91.7%1(*.f32 (neg.f32 alpha) alpha)
91.7%1u0
91.7%1(-.f32 #s(literal 1 binary32) u0)
91.7%1(log.f32 (-.f32 #s(literal 1 binary32) u0))
Compiler

Compiled 22 to 25 computations (-13.6% saved)

regimes58.0ms (0.7%)

Memory
-12.3MiB live, 130.7MiB allocated; 11ms collecting garbage
Counts
31 → 1
Calls
Call 1
Inputs
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (*.f32 alpha alpha) u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (*.f32 u0 alpha) alpha))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 #s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))) (*.f32 alpha alpha))) u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) (*.f32 (*.f32 alpha alpha) u0)))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 u0 (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) alpha)) alpha))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 #s(approx (* (+ (* (+ (* 1/3 u0) 1/2) u0) 1) u0) (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) u0)) alpha) alpha))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 #s(approx (+ (* (* (+ (* 1/3 u0) 1/2) u0) u0) u0) (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) u0)) alpha) alpha))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) alpha) alpha) u0))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (fma.f32 #s(approx (* (+ (* 1/3 u0) 1/2) u0) (*.f32 #s(literal 1/2 binary32) u0)) u0 u0) alpha) alpha))
(*.f32 #s(approx (* (log (- 1 u0)) (neg alpha)) (*.f32 (fma.f32 (*.f32 u0 alpha) #s(literal 1/2 binary32) alpha) u0)) alpha)
(*.f32 #s(approx (* (neg alpha) (log (+ 1 (neg u0)))) (*.f32 (fma.f32 (*.f32 alpha u0) #s(literal 1/2 binary32) alpha) u0)) alpha)
(*.f32 (*.f32 #s(approx (log (- 1 u0)) (*.f32 (fma.f32 #s(literal -1/2 binary32) u0 #s(literal -1 binary32)) u0)) (neg.f32 alpha)) alpha)
(*.f32 (*.f32 (neg.f32 alpha) alpha) #s(approx (log (- 1 u0)) (*.f32 (fma.f32 #s(literal -1/2 binary32) u0 #s(literal -1 binary32)) u0)))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 #s(approx (* (* alpha alpha) (+ (* 1/3 u0) 1/2)) (*.f32 #s(literal 1/2 binary32) (*.f32 alpha alpha))) u0 (*.f32 alpha alpha)) u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* (* alpha alpha) (+ (* 1/3 u0) 1/2)) u0) (* alpha alpha)) (*.f32 (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) alpha) alpha)) u0))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 u0 (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) (*.f32 alpha alpha))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) u0) alpha) alpha))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0 u0) alpha) alpha))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) u0) (*.f32 alpha alpha)))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) (*.f32 u0 alpha)) alpha))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0 u0) (*.f32 alpha alpha)))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) (*.f32 u0 (*.f32 alpha alpha))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) (*.f32 (*.f32 u0 alpha) alpha)))
(*.f32 (*.f32 (neg.f32 alpha) alpha) #s(approx (log (- 1 u0)) (fma.f32 (*.f32 #s(literal -1/2 binary32) u0) u0 (*.f32 #s(literal -1 binary32) u0))))
(*.f32 (*.f32 (neg.f32 alpha) alpha) #s(approx (log (- 1 u0)) (*.f32 (fma.f32 (fma.f32 #s(literal -1/3 binary32) u0 #s(literal -1/2 binary32)) u0 #s(literal -1 binary32)) u0)))
(*.f32 (*.f32 (neg.f32 alpha) alpha) #s(approx (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0))) (*.f32 (fma.f32 (fma.f32 #s(literal -1/3 binary32) u0 #s(literal -1/2 binary32)) u0 #s(literal -1 binary32)) u0)))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 (fma.f32 #s(approx (* (+ (* 1/4 u0) 1/3) u0) (*.f32 #s(literal 1/3 binary32) u0)) u0 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))) (*.f32 alpha alpha))) u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 alpha alpha (*.f32 (*.f32 u0 alpha) (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) alpha))) u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 (*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32))) u0 (*.f32 alpha alpha)) u0))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (fma.f32 u0 alpha (*.f32 (*.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0) alpha)) alpha))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (fma.f32 (*.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0) alpha (*.f32 u0 alpha)) alpha))
Outputs
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (fma.f32 u0 alpha (*.f32 (*.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0) alpha)) alpha))
Calls

6 calls:

13.0ms
(*.f32 (neg.f32 alpha) alpha)
10.0ms
(-.f32 #s(literal 1 binary32) u0)
9.0ms
(*.f32 (*.f32 (neg.f32 alpha) alpha) (log.f32 (-.f32 #s(literal 1 binary32) u0)))
8.0ms
alpha
8.0ms
u0
Results
AccuracySegmentsBranch
89.9%1(*.f32 (*.f32 (neg.f32 alpha) alpha) (log.f32 (-.f32 #s(literal 1 binary32) u0)))
89.9%1alpha
89.9%1u0
89.9%1(-.f32 #s(literal 1 binary32) u0)
89.9%1(log.f32 (-.f32 #s(literal 1 binary32) u0))
89.9%1(*.f32 (neg.f32 alpha) alpha)
Compiler

Compiled 22 to 25 computations (-13.6% saved)

regimes48.0ms (0.6%)

Memory
-8.2MiB live, 92.3MiB allocated; 4ms collecting garbage
Counts
29 → 1
Calls
Call 1
Inputs
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (*.f32 alpha alpha) u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (*.f32 u0 alpha) alpha))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 #s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))) (*.f32 alpha alpha))) u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) (*.f32 (*.f32 alpha alpha) u0)))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 u0 (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) alpha)) alpha))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 #s(approx (* (+ (* (+ (* 1/3 u0) 1/2) u0) 1) u0) (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) u0)) alpha) alpha))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 #s(approx (+ (* (* (+ (* 1/3 u0) 1/2) u0) u0) u0) (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) u0)) alpha) alpha))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) alpha) alpha) u0))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (fma.f32 #s(approx (* (+ (* 1/3 u0) 1/2) u0) (*.f32 #s(literal 1/2 binary32) u0)) u0 u0) alpha) alpha))
(*.f32 #s(approx (* (log (- 1 u0)) (neg alpha)) (*.f32 (fma.f32 (*.f32 u0 alpha) #s(literal 1/2 binary32) alpha) u0)) alpha)
(*.f32 #s(approx (* (neg alpha) (log (+ 1 (neg u0)))) (*.f32 (fma.f32 (*.f32 alpha u0) #s(literal 1/2 binary32) alpha) u0)) alpha)
(*.f32 (*.f32 #s(approx (log (- 1 u0)) (*.f32 (fma.f32 #s(literal -1/2 binary32) u0 #s(literal -1 binary32)) u0)) (neg.f32 alpha)) alpha)
(*.f32 (*.f32 (neg.f32 alpha) alpha) #s(approx (log (- 1 u0)) (*.f32 (fma.f32 #s(literal -1/2 binary32) u0 #s(literal -1 binary32)) u0)))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 #s(approx (* (* alpha alpha) (+ (* 1/3 u0) 1/2)) (*.f32 #s(literal 1/2 binary32) (*.f32 alpha alpha))) u0 (*.f32 alpha alpha)) u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* (* alpha alpha) (+ (* 1/3 u0) 1/2)) u0) (* alpha alpha)) (*.f32 (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) alpha) alpha)) u0))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 u0 (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) (*.f32 alpha alpha))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) u0) alpha) alpha))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0 u0) alpha) alpha))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) u0) (*.f32 alpha alpha)))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) (*.f32 u0 alpha)) alpha))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0 u0) (*.f32 alpha alpha)))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) (*.f32 u0 (*.f32 alpha alpha))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) (*.f32 (*.f32 u0 alpha) alpha)))
(*.f32 (*.f32 (neg.f32 alpha) alpha) #s(approx (log (- 1 u0)) (fma.f32 (*.f32 #s(literal -1/2 binary32) u0) u0 (*.f32 #s(literal -1 binary32) u0))))
(*.f32 (*.f32 (neg.f32 alpha) alpha) #s(approx (log (- 1 u0)) (*.f32 (fma.f32 (fma.f32 #s(literal -1/3 binary32) u0 #s(literal -1/2 binary32)) u0 #s(literal -1 binary32)) u0)))
(*.f32 (*.f32 (neg.f32 alpha) alpha) #s(approx (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0))) (*.f32 (fma.f32 (fma.f32 #s(literal -1/3 binary32) u0 #s(literal -1/2 binary32)) u0 #s(literal -1 binary32)) u0)))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 (fma.f32 #s(approx (* (+ (* 1/4 u0) 1/3) u0) (*.f32 #s(literal 1/3 binary32) u0)) u0 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))) (*.f32 alpha alpha))) u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 alpha alpha (*.f32 (*.f32 u0 alpha) (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) alpha))) u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 (*.f32 (*.f32 alpha alpha) (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32))) u0 (*.f32 alpha alpha)) u0))
Outputs
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 alpha alpha (*.f32 (*.f32 u0 alpha) (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) alpha))) u0))
Calls

6 calls:

9.0ms
(*.f32 (neg.f32 alpha) alpha)
9.0ms
alpha
8.0ms
u0
7.0ms
(log.f32 (-.f32 #s(literal 1 binary32) u0))
7.0ms
(-.f32 #s(literal 1 binary32) u0)
Results
AccuracySegmentsBranch
89.9%1(-.f32 #s(literal 1 binary32) u0)
89.9%1(log.f32 (-.f32 #s(literal 1 binary32) u0))
89.9%1(*.f32 (neg.f32 alpha) alpha)
89.9%1(*.f32 (*.f32 (neg.f32 alpha) alpha) (log.f32 (-.f32 #s(literal 1 binary32) u0)))
89.9%1alpha
89.9%1u0
Compiler

Compiled 22 to 25 computations (-13.6% saved)

regimes59.0ms (0.7%)

Memory
-17.9MiB live, 75.2MiB allocated; 3ms collecting garbage
Counts
27 → 1
Calls
Call 1
Inputs
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (*.f32 alpha alpha) u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (*.f32 u0 alpha) alpha))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 #s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))) (*.f32 alpha alpha))) u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) (*.f32 (*.f32 alpha alpha) u0)))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 u0 (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) alpha)) alpha))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 #s(approx (* (+ (* (+ (* 1/3 u0) 1/2) u0) 1) u0) (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) u0)) alpha) alpha))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 #s(approx (+ (* (* (+ (* 1/3 u0) 1/2) u0) u0) u0) (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) u0)) alpha) alpha))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) alpha) alpha) u0))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (fma.f32 #s(approx (* (+ (* 1/3 u0) 1/2) u0) (*.f32 #s(literal 1/2 binary32) u0)) u0 u0) alpha) alpha))
(*.f32 #s(approx (* (log (- 1 u0)) (neg alpha)) (*.f32 (fma.f32 (*.f32 u0 alpha) #s(literal 1/2 binary32) alpha) u0)) alpha)
(*.f32 #s(approx (* (neg alpha) (log (+ 1 (neg u0)))) (*.f32 (fma.f32 (*.f32 alpha u0) #s(literal 1/2 binary32) alpha) u0)) alpha)
(*.f32 (*.f32 #s(approx (log (- 1 u0)) (*.f32 (fma.f32 #s(literal -1/2 binary32) u0 #s(literal -1 binary32)) u0)) (neg.f32 alpha)) alpha)
(*.f32 (*.f32 (neg.f32 alpha) alpha) #s(approx (log (- 1 u0)) (*.f32 (fma.f32 #s(literal -1/2 binary32) u0 #s(literal -1 binary32)) u0)))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 #s(approx (* (* alpha alpha) (+ (* 1/3 u0) 1/2)) (*.f32 #s(literal 1/2 binary32) (*.f32 alpha alpha))) u0 (*.f32 alpha alpha)) u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* (* alpha alpha) (+ (* 1/3 u0) 1/2)) u0) (* alpha alpha)) (*.f32 (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) alpha) alpha)) u0))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 u0 (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) (*.f32 alpha alpha))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) u0) alpha) alpha))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0 u0) alpha) alpha))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) u0) (*.f32 alpha alpha)))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) (*.f32 u0 alpha)) alpha))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0 u0) (*.f32 alpha alpha)))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) (*.f32 u0 (*.f32 alpha alpha))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) (*.f32 (*.f32 u0 alpha) alpha)))
(*.f32 (*.f32 (neg.f32 alpha) alpha) #s(approx (log (- 1 u0)) (fma.f32 (*.f32 #s(literal -1/2 binary32) u0) u0 (*.f32 #s(literal -1 binary32) u0))))
(*.f32 (*.f32 (neg.f32 alpha) alpha) #s(approx (log (- 1 u0)) (*.f32 (fma.f32 (fma.f32 #s(literal -1/3 binary32) u0 #s(literal -1/2 binary32)) u0 #s(literal -1 binary32)) u0)))
(*.f32 (*.f32 (neg.f32 alpha) alpha) #s(approx (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0))) (*.f32 (fma.f32 (fma.f32 #s(literal -1/3 binary32) u0 #s(literal -1/2 binary32)) u0 #s(literal -1 binary32)) u0)))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 (fma.f32 #s(approx (* (+ (* 1/4 u0) 1/3) u0) (*.f32 #s(literal 1/3 binary32) u0)) u0 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))) (*.f32 alpha alpha))) u0))
Outputs
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0 u0) (*.f32 alpha alpha)))
Calls

6 calls:

20.0ms
(*.f32 (*.f32 (neg.f32 alpha) alpha) (log.f32 (-.f32 #s(literal 1 binary32) u0)))
9.0ms
(-.f32 #s(literal 1 binary32) u0)
7.0ms
alpha
7.0ms
(*.f32 (neg.f32 alpha) alpha)
7.0ms
u0
Results
AccuracySegmentsBranch
89.7%1(-.f32 #s(literal 1 binary32) u0)
89.7%1(log.f32 (-.f32 #s(literal 1 binary32) u0))
89.7%1(*.f32 (neg.f32 alpha) alpha)
89.7%1(*.f32 (*.f32 (neg.f32 alpha) alpha) (log.f32 (-.f32 #s(literal 1 binary32) u0)))
89.7%1u0
89.7%1alpha
Compiler

Compiled 22 to 25 computations (-13.6% saved)

regimes35.0ms (0.4%)

Memory
23.1MiB live, 70.0MiB allocated; 2ms collecting garbage
Counts
20 → 1
Calls
Call 1
Inputs
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (*.f32 alpha alpha) u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (*.f32 u0 alpha) alpha))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 #s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))) (*.f32 alpha alpha))) u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) (*.f32 (*.f32 alpha alpha) u0)))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 u0 (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) alpha)) alpha))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 #s(approx (* (+ (* (+ (* 1/3 u0) 1/2) u0) 1) u0) (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) u0)) alpha) alpha))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 #s(approx (+ (* (* (+ (* 1/3 u0) 1/2) u0) u0) u0) (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) u0)) alpha) alpha))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) alpha) alpha) u0))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (fma.f32 #s(approx (* (+ (* 1/3 u0) 1/2) u0) (*.f32 #s(literal 1/2 binary32) u0)) u0 u0) alpha) alpha))
(*.f32 #s(approx (* (log (- 1 u0)) (neg alpha)) (*.f32 (fma.f32 (*.f32 u0 alpha) #s(literal 1/2 binary32) alpha) u0)) alpha)
(*.f32 #s(approx (* (neg alpha) (log (+ 1 (neg u0)))) (*.f32 (fma.f32 (*.f32 alpha u0) #s(literal 1/2 binary32) alpha) u0)) alpha)
(*.f32 (*.f32 #s(approx (log (- 1 u0)) (*.f32 (fma.f32 #s(literal -1/2 binary32) u0 #s(literal -1 binary32)) u0)) (neg.f32 alpha)) alpha)
(*.f32 (*.f32 (neg.f32 alpha) alpha) #s(approx (log (- 1 u0)) (*.f32 (fma.f32 #s(literal -1/2 binary32) u0 #s(literal -1 binary32)) u0)))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 #s(approx (* (* alpha alpha) (+ (* 1/3 u0) 1/2)) (*.f32 #s(literal 1/2 binary32) (*.f32 alpha alpha))) u0 (*.f32 alpha alpha)) u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* (* alpha alpha) (+ (* 1/3 u0) 1/2)) u0) (* alpha alpha)) (*.f32 (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) alpha) alpha)) u0))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 u0 (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) (*.f32 alpha alpha))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) u0) alpha) alpha))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0 u0) alpha) alpha))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) u0) (*.f32 alpha alpha)))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) (*.f32 u0 alpha)) alpha))
Outputs
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0 u0) alpha) alpha))
Calls

6 calls:

7.0ms
(-.f32 #s(literal 1 binary32) u0)
6.0ms
alpha
6.0ms
(*.f32 (neg.f32 alpha) alpha)
6.0ms
u0
5.0ms
(log.f32 (-.f32 #s(literal 1 binary32) u0))
Results
AccuracySegmentsBranch
89.7%1(*.f32 (neg.f32 alpha) alpha)
89.7%1u0
89.7%1(-.f32 #s(literal 1 binary32) u0)
89.7%1(log.f32 (-.f32 #s(literal 1 binary32) u0))
89.7%1(*.f32 (*.f32 (neg.f32 alpha) alpha) (log.f32 (-.f32 #s(literal 1 binary32) u0)))
89.7%1alpha
Compiler

Compiled 22 to 25 computations (-13.6% saved)

regimes31.0ms (0.4%)

Memory
2.2MiB live, 53.0MiB allocated; 3ms collecting garbage
Counts
17 → 1
Calls
Call 1
Inputs
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (*.f32 alpha alpha) u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (*.f32 u0 alpha) alpha))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 #s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))) (*.f32 alpha alpha))) u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) (*.f32 (*.f32 alpha alpha) u0)))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 u0 (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) alpha)) alpha))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 #s(approx (* (+ (* (+ (* 1/3 u0) 1/2) u0) 1) u0) (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) u0)) alpha) alpha))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 #s(approx (+ (* (* (+ (* 1/3 u0) 1/2) u0) u0) u0) (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) u0)) alpha) alpha))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) alpha) alpha) u0))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (fma.f32 #s(approx (* (+ (* 1/3 u0) 1/2) u0) (*.f32 #s(literal 1/2 binary32) u0)) u0 u0) alpha) alpha))
(*.f32 #s(approx (* (log (- 1 u0)) (neg alpha)) (*.f32 (fma.f32 (*.f32 u0 alpha) #s(literal 1/2 binary32) alpha) u0)) alpha)
(*.f32 #s(approx (* (neg alpha) (log (+ 1 (neg u0)))) (*.f32 (fma.f32 (*.f32 alpha u0) #s(literal 1/2 binary32) alpha) u0)) alpha)
(*.f32 (*.f32 #s(approx (log (- 1 u0)) (*.f32 (fma.f32 #s(literal -1/2 binary32) u0 #s(literal -1 binary32)) u0)) (neg.f32 alpha)) alpha)
(*.f32 (*.f32 (neg.f32 alpha) alpha) #s(approx (log (- 1 u0)) (*.f32 (fma.f32 #s(literal -1/2 binary32) u0 #s(literal -1 binary32)) u0)))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 #s(approx (* (* alpha alpha) (+ (* 1/3 u0) 1/2)) (*.f32 #s(literal 1/2 binary32) (*.f32 alpha alpha))) u0 (*.f32 alpha alpha)) u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* (* alpha alpha) (+ (* 1/3 u0) 1/2)) u0) (* alpha alpha)) (*.f32 (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) alpha) alpha)) u0))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 u0 (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) (*.f32 alpha alpha))))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) u0) alpha) alpha))
Outputs
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* (* alpha alpha) (+ (* 1/3 u0) 1/2)) u0) (* alpha alpha)) (*.f32 (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) alpha) alpha)) u0))
Calls

6 calls:

6.0ms
(-.f32 #s(literal 1 binary32) u0)
5.0ms
alpha
5.0ms
(*.f32 (neg.f32 alpha) alpha)
5.0ms
u0
5.0ms
(log.f32 (-.f32 #s(literal 1 binary32) u0))
Results
AccuracySegmentsBranch
89.6%1(*.f32 (neg.f32 alpha) alpha)
89.6%1(*.f32 (*.f32 (neg.f32 alpha) alpha) (log.f32 (-.f32 #s(literal 1 binary32) u0)))
89.6%1u0
89.6%1(-.f32 #s(literal 1 binary32) u0)
89.6%1(log.f32 (-.f32 #s(literal 1 binary32) u0))
89.6%1alpha
Compiler

Compiled 22 to 25 computations (-13.6% saved)

regimes26.0ms (0.3%)

Memory
0.6MiB live, 47.7MiB allocated; 1ms collecting garbage
Counts
14 → 1
Calls
Call 1
Inputs
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (*.f32 alpha alpha) u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (*.f32 u0 alpha) alpha))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 #s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))) (*.f32 alpha alpha))) u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) (*.f32 (*.f32 alpha alpha) u0)))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 u0 (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) alpha)) alpha))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 #s(approx (* (+ (* (+ (* 1/3 u0) 1/2) u0) 1) u0) (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) u0)) alpha) alpha))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 #s(approx (+ (* (* (+ (* 1/3 u0) 1/2) u0) u0) u0) (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) u0)) alpha) alpha))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) alpha) alpha) u0))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (fma.f32 #s(approx (* (+ (* 1/3 u0) 1/2) u0) (*.f32 #s(literal 1/2 binary32) u0)) u0 u0) alpha) alpha))
(*.f32 #s(approx (* (log (- 1 u0)) (neg alpha)) (*.f32 (fma.f32 (*.f32 u0 alpha) #s(literal 1/2 binary32) alpha) u0)) alpha)
(*.f32 #s(approx (* (neg alpha) (log (+ 1 (neg u0)))) (*.f32 (fma.f32 (*.f32 alpha u0) #s(literal 1/2 binary32) alpha) u0)) alpha)
(*.f32 (*.f32 #s(approx (log (- 1 u0)) (*.f32 (fma.f32 #s(literal -1/2 binary32) u0 #s(literal -1 binary32)) u0)) (neg.f32 alpha)) alpha)
(*.f32 (*.f32 (neg.f32 alpha) alpha) #s(approx (log (- 1 u0)) (*.f32 (fma.f32 #s(literal -1/2 binary32) u0 #s(literal -1 binary32)) u0)))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 #s(approx (* (* alpha alpha) (+ (* 1/3 u0) 1/2)) (*.f32 #s(literal 1/2 binary32) (*.f32 alpha alpha))) u0 (*.f32 alpha alpha)) u0))
Outputs
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 #s(approx (* (* alpha alpha) (+ (* 1/3 u0) 1/2)) (*.f32 #s(literal 1/2 binary32) (*.f32 alpha alpha))) u0 (*.f32 alpha alpha)) u0))
Calls

6 calls:

5.0ms
(*.f32 (*.f32 (neg.f32 alpha) alpha) (log.f32 (-.f32 #s(literal 1 binary32) u0)))
4.0ms
alpha
4.0ms
(*.f32 (neg.f32 alpha) alpha)
4.0ms
u0
4.0ms
(log.f32 (-.f32 #s(literal 1 binary32) u0))
Results
AccuracySegmentsBranch
85.2%1(-.f32 #s(literal 1 binary32) u0)
85.2%1(log.f32 (-.f32 #s(literal 1 binary32) u0))
85.2%1(*.f32 (neg.f32 alpha) alpha)
85.2%1(*.f32 (*.f32 (neg.f32 alpha) alpha) (log.f32 (-.f32 #s(literal 1 binary32) u0)))
85.2%1alpha
85.2%1u0
Compiler

Compiled 22 to 25 computations (-13.6% saved)

regimes25.0ms (0.3%)

Memory
0.7MiB live, 47.9MiB allocated; 1ms collecting garbage
Counts
13 → 1
Calls
Call 1
Inputs
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (*.f32 alpha alpha) u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (*.f32 u0 alpha) alpha))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 #s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))) (*.f32 alpha alpha))) u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) (*.f32 (*.f32 alpha alpha) u0)))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 u0 (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) alpha)) alpha))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 #s(approx (* (+ (* (+ (* 1/3 u0) 1/2) u0) 1) u0) (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) u0)) alpha) alpha))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 #s(approx (+ (* (* (+ (* 1/3 u0) 1/2) u0) u0) u0) (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) u0)) alpha) alpha))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) alpha) alpha) u0))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (fma.f32 #s(approx (* (+ (* 1/3 u0) 1/2) u0) (*.f32 #s(literal 1/2 binary32) u0)) u0 u0) alpha) alpha))
(*.f32 #s(approx (* (log (- 1 u0)) (neg alpha)) (*.f32 (fma.f32 (*.f32 u0 alpha) #s(literal 1/2 binary32) alpha) u0)) alpha)
(*.f32 #s(approx (* (neg alpha) (log (+ 1 (neg u0)))) (*.f32 (fma.f32 (*.f32 alpha u0) #s(literal 1/2 binary32) alpha) u0)) alpha)
(*.f32 (*.f32 #s(approx (log (- 1 u0)) (*.f32 (fma.f32 #s(literal -1/2 binary32) u0 #s(literal -1 binary32)) u0)) (neg.f32 alpha)) alpha)
(*.f32 (*.f32 (neg.f32 alpha) alpha) #s(approx (log (- 1 u0)) (*.f32 (fma.f32 #s(literal -1/2 binary32) u0 #s(literal -1 binary32)) u0)))
Outputs
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (fma.f32 #s(approx (* (+ (* 1/3 u0) 1/2) u0) (*.f32 #s(literal 1/2 binary32) u0)) u0 u0) alpha) alpha))
Calls

6 calls:

5.0ms
alpha
4.0ms
(*.f32 (neg.f32 alpha) alpha)
4.0ms
u0
4.0ms
(log.f32 (-.f32 #s(literal 1 binary32) u0))
4.0ms
(-.f32 #s(literal 1 binary32) u0)
Results
AccuracySegmentsBranch
85.2%1u0
85.2%1(*.f32 (neg.f32 alpha) alpha)
85.2%1(*.f32 (*.f32 (neg.f32 alpha) alpha) (log.f32 (-.f32 #s(literal 1 binary32) u0)))
85.2%1alpha
85.2%1(-.f32 #s(literal 1 binary32) u0)
85.2%1(log.f32 (-.f32 #s(literal 1 binary32) u0))
Compiler

Compiled 22 to 25 computations (-13.6% saved)

regimes18.0ms (0.2%)

Memory
-5.0MiB live, 42.3MiB allocated; 2ms collecting garbage
Counts
8 → 1
Calls
Call 1
Inputs
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (*.f32 alpha alpha) u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (*.f32 u0 alpha) alpha))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 #s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))) (*.f32 alpha alpha))) u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) (*.f32 (*.f32 alpha alpha) u0)))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 u0 (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) alpha)) alpha))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 #s(approx (* (+ (* (+ (* 1/3 u0) 1/2) u0) 1) u0) (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) u0)) alpha) alpha))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 #s(approx (+ (* (* (+ (* 1/3 u0) 1/2) u0) u0) u0) (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) u0)) alpha) alpha))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) alpha) alpha) u0))
Outputs
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 #s(approx (* (+ (* (+ (* 1/3 u0) 1/2) u0) 1) u0) (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) u0)) alpha) alpha))
Calls

6 calls:

4.0ms
(-.f32 #s(literal 1 binary32) u0)
3.0ms
(*.f32 (neg.f32 alpha) alpha)
3.0ms
u0
3.0ms
alpha
3.0ms
(log.f32 (-.f32 #s(literal 1 binary32) u0))
Results
AccuracySegmentsBranch
85.1%1(*.f32 (*.f32 (neg.f32 alpha) alpha) (log.f32 (-.f32 #s(literal 1 binary32) u0)))
85.1%1u0
85.1%1(-.f32 #s(literal 1 binary32) u0)
85.1%1(log.f32 (-.f32 #s(literal 1 binary32) u0))
85.1%1alpha
85.1%1(*.f32 (neg.f32 alpha) alpha)
Compiler

Compiled 22 to 25 computations (-13.6% saved)

regimes32.0ms (0.4%)

Memory
-25.7MiB live, 30.6MiB allocated; 37ms collecting garbage
Counts
5 → 1
Calls
Call 1
Inputs
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (*.f32 alpha alpha) u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (*.f32 u0 alpha) alpha))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 #s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))) (*.f32 alpha alpha))) u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) (*.f32 (*.f32 alpha alpha) u0)))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 u0 (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) alpha)) alpha))
Outputs
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 u0 (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) alpha)) alpha))
Calls

6 calls:

21.0ms
alpha
2.0ms
(*.f32 (neg.f32 alpha) alpha)
2.0ms
u0
2.0ms
(log.f32 (-.f32 #s(literal 1 binary32) u0))
2.0ms
(-.f32 #s(literal 1 binary32) u0)
Results
AccuracySegmentsBranch
85.1%1(*.f32 (*.f32 (neg.f32 alpha) alpha) (log.f32 (-.f32 #s(literal 1 binary32) u0)))
85.1%1alpha
85.1%1u0
85.1%1(-.f32 #s(literal 1 binary32) u0)
85.1%1(log.f32 (-.f32 #s(literal 1 binary32) u0))
85.1%1(*.f32 (neg.f32 alpha) alpha)
Compiler

Compiled 22 to 25 computations (-13.6% saved)

regimes11.0ms (0.1%)

Memory
28.3MiB live, 28.3MiB allocated; 0ms collecting garbage
Counts
4 → 1
Calls
Call 1
Inputs
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (*.f32 alpha alpha) u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (*.f32 u0 alpha) alpha))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 #s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))) (*.f32 alpha alpha))) u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) (*.f32 (*.f32 alpha alpha) u0)))
Outputs
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) (*.f32 (*.f32 alpha alpha) u0)))
Calls

6 calls:

2.0ms
alpha
2.0ms
(*.f32 (neg.f32 alpha) alpha)
2.0ms
u0
2.0ms
(log.f32 (-.f32 #s(literal 1 binary32) u0))
2.0ms
(-.f32 #s(literal 1 binary32) u0)
Results
AccuracySegmentsBranch
85.1%1(*.f32 (*.f32 (neg.f32 alpha) alpha) (log.f32 (-.f32 #s(literal 1 binary32) u0)))
85.1%1u0
85.1%1alpha
85.1%1(-.f32 #s(literal 1 binary32) u0)
85.1%1(log.f32 (-.f32 #s(literal 1 binary32) u0))
85.1%1(*.f32 (neg.f32 alpha) alpha)
Compiler

Compiled 22 to 25 computations (-13.6% saved)

regimes12.0ms (0.1%)

Memory
-24.0MiB live, 24.8MiB allocated; 3ms collecting garbage
Counts
3 → 1
Calls
Call 1
Inputs
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (*.f32 alpha alpha) u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (*.f32 u0 alpha) alpha))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 #s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))) (*.f32 alpha alpha))) u0))
Outputs
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 #s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))) (*.f32 alpha alpha))) u0))
Calls

6 calls:

4.0ms
alpha
2.0ms
(log.f32 (-.f32 #s(literal 1 binary32) u0))
2.0ms
(*.f32 (neg.f32 alpha) alpha)
2.0ms
u0
1.0ms
(-.f32 #s(literal 1 binary32) u0)
Results
AccuracySegmentsBranch
85.0%1(*.f32 (neg.f32 alpha) alpha)
85.0%1(*.f32 (*.f32 (neg.f32 alpha) alpha) (log.f32 (-.f32 #s(literal 1 binary32) u0)))
85.0%1alpha
85.0%1u0
85.0%1(-.f32 #s(literal 1 binary32) u0)
85.0%1(log.f32 (-.f32 #s(literal 1 binary32) u0))
Compiler

Compiled 22 to 25 computations (-13.6% saved)

regimes8.0ms (0.1%)

Memory
20.3MiB live, 20.3MiB allocated; 0ms collecting garbage
Accuracy

Total -0.1b remaining (-0.7%)

Threshold costs -0.1b (-0.7%)

Counts
2 → 1
Calls
Call 1
Inputs
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (*.f32 alpha alpha) u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (*.f32 u0 alpha) alpha))
Outputs
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (*.f32 alpha alpha) u0))
Calls

6 calls:

1.0ms
(log.f32 (-.f32 #s(literal 1 binary32) u0))
1.0ms
(*.f32 (*.f32 (neg.f32 alpha) alpha) (log.f32 (-.f32 #s(literal 1 binary32) u0)))
1.0ms
u0
1.0ms
alpha
1.0ms
(-.f32 #s(literal 1 binary32) u0)
Results
AccuracySegmentsBranch
72.6%1(*.f32 (*.f32 (neg.f32 alpha) alpha) (log.f32 (-.f32 #s(literal 1 binary32) u0)))
72.6%1u0
72.6%1alpha
72.6%1(*.f32 (neg.f32 alpha) alpha)
72.6%1(-.f32 #s(literal 1 binary32) u0)
72.6%1(log.f32 (-.f32 #s(literal 1 binary32) u0))
Compiler

Compiled 22 to 25 computations (-13.6% saved)

simplify50.0ms (0.6%)

Memory
-9.0MiB live, 83.8MiB allocated; 5ms collecting garbage
Iterations

Useful iterations: 2 (0.0ms)

IterNodesCost
0127547
1218545
2635525
32908525
Stop Event
node limit
Calls
Call 1
Inputs
(*.f32 #s(approx (* (log (- 1 u0)) (neg alpha)) (*.f32 (neg.f32 alpha) (log1p.f32 (neg.f32 u0)))) alpha)
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (*.f32 (neg.f32 alpha) alpha) (log1p.f32 (neg.f32 u0))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (+.f32 (*.f32 (*.f32 alpha alpha) (*.f32 u0 (fma.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0 #s(literal 1/2 binary32)))) (*.f32 alpha alpha))) u0))
(*.f32 #s(approx (* (log (- 1 u0)) (neg alpha)) (*.f32 (fma.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) alpha) u0 (*.f32 #s(literal 1/2 binary32) alpha)) u0 alpha) u0)) alpha)
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 (*.f32 (fma.f32 u0 (fma.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0 #s(literal 1/2 binary32)) #s(literal 1 binary32)) alpha) alpha)) u0))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (fma.f32 u0 alpha (*.f32 (*.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0) alpha)) alpha))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 alpha alpha (*.f32 (*.f32 u0 alpha) (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) alpha))) u0))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0 u0) (*.f32 alpha alpha)))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0 u0) alpha) alpha))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* (* alpha alpha) (+ (* 1/3 u0) 1/2)) u0) (* alpha alpha)) (*.f32 (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) alpha) alpha)) u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 #s(approx (* (* alpha alpha) (+ (* 1/3 u0) 1/2)) (*.f32 #s(literal 1/2 binary32) (*.f32 alpha alpha))) u0 (*.f32 alpha alpha)) u0))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (fma.f32 #s(approx (* (+ (* 1/3 u0) 1/2) u0) (*.f32 #s(literal 1/2 binary32) u0)) u0 u0) alpha) alpha))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 #s(approx (* (+ (* (+ (* 1/3 u0) 1/2) u0) 1) u0) (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) u0)) alpha) alpha))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 u0 (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) alpha)) alpha))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) (*.f32 (*.f32 alpha alpha) u0)))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 #s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))) (*.f32 alpha alpha))) u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (*.f32 alpha alpha) u0))
Outputs
(*.f32 #s(approx (* (log (- 1 u0)) (neg alpha)) (*.f32 (neg.f32 alpha) (log1p.f32 (neg.f32 u0)))) alpha)
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (*.f32 (neg.f32 alpha) alpha) (log1p.f32 (neg.f32 u0))))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (+.f32 (*.f32 (*.f32 alpha alpha) (*.f32 u0 (fma.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0 #s(literal 1/2 binary32)))) (*.f32 alpha alpha))) u0))
(*.f32 #s(approx (* (log (- 1 u0)) (neg alpha)) (*.f32 (fma.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) alpha) u0 (*.f32 #s(literal 1/2 binary32) alpha)) u0 alpha) u0)) alpha)
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 (*.f32 (fma.f32 u0 (fma.f32 (fma.f32 #s(literal 1/4 binary32) u0 #s(literal 1/3 binary32)) u0 #s(literal 1/2 binary32)) #s(literal 1 binary32)) alpha) alpha)) u0))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (fma.f32 u0 alpha (*.f32 (*.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0) alpha)) alpha))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 alpha alpha (*.f32 (*.f32 u0 alpha) (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) alpha))) u0))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0 u0) (*.f32 alpha alpha)))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (fma.f32 (*.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0) u0 u0) alpha) alpha))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* (* alpha alpha) (+ (* 1/3 u0) 1/2)) u0) (* alpha alpha)) (*.f32 (*.f32 (fma.f32 (fma.f32 #s(literal 1/3 binary32) u0 #s(literal 1/2 binary32)) u0 #s(literal 1 binary32)) alpha) alpha)) u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 #s(approx (* (* alpha alpha) (+ (* 1/3 u0) 1/2)) (*.f32 #s(literal 1/2 binary32) (*.f32 alpha alpha))) u0 (*.f32 alpha alpha)) u0))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 (fma.f32 #s(approx (* (+ (* 1/3 u0) 1/2) u0) (*.f32 #s(literal 1/2 binary32) u0)) u0 u0) alpha) alpha))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 #s(approx (* (+ (* (+ (* 1/3 u0) 1/2) u0) 1) u0) (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) u0)) alpha) alpha))
#s(approx (* (* (neg alpha) alpha) (- (log (+ 1 (* (neg u0) u0))) (log (+ 1 u0)))) (*.f32 (*.f32 u0 (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) alpha)) alpha))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32)) (*.f32 (*.f32 alpha alpha) u0)))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 #s(approx (+ (* (* u0 u0) (* (* alpha alpha) (+ (* 1/4 u0) 1/3))) (* (+ (* 1/2 u0) 1) (* alpha alpha))) (*.f32 #s(approx (+ (* (* (+ (* 1/4 u0) 1/3) u0) u0) (+ (* 1/2 u0) 1)) (fma.f32 #s(literal 1/2 binary32) u0 #s(literal 1 binary32))) (*.f32 alpha alpha))) u0))
#s(approx (* (* (neg alpha) alpha) (log (- 1 u0))) (*.f32 (*.f32 alpha alpha) u0))

derivations1.0s (12.2%)

Memory
16.5MiB live, 710.5MiB allocated; 89ms collecting garbage
Stop Event
fuel
Compiler

Compiled 553 to 131 computations (76.3% saved)

preprocess54.0ms (0.6%)

Memory
9.8MiB live, 108.3MiB allocated; 23ms collecting garbage
Remove

(abs alpha)

Compiler

Compiled 1 156 to 304 computations (73.7% saved)

end0.0ms (0%)

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

Profiling

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