| Alternative 1 | |
|---|---|
| Accuracy | 55.9% |
| Cost | 19712 |
\[\frac{1}{\cos \left({\left(\sqrt[3]{x \cdot \frac{0.5}{y}}\right)}^{3}\right)}
\]

(FPCore (x y) :precision binary64 (/ (tan (/ x (* y 2.0))) (sin (/ x (* y 2.0)))))
(FPCore (x y) :precision binary64 (/ 1.0 (cos (pow (pow (cbrt (* x (/ 0.5 y))) 2.0) 1.5))))
double code(double x, double y) {
return tan((x / (y * 2.0))) / sin((x / (y * 2.0)));
}
double code(double x, double y) {
return 1.0 / cos(pow(pow(cbrt((x * (0.5 / y))), 2.0), 1.5));
}
public static double code(double x, double y) {
return Math.tan((x / (y * 2.0))) / Math.sin((x / (y * 2.0)));
}
public static double code(double x, double y) {
return 1.0 / Math.cos(Math.pow(Math.pow(Math.cbrt((x * (0.5 / y))), 2.0), 1.5));
}
function code(x, y) return Float64(tan(Float64(x / Float64(y * 2.0))) / sin(Float64(x / Float64(y * 2.0)))) end
function code(x, y) return Float64(1.0 / cos(((cbrt(Float64(x * Float64(0.5 / y))) ^ 2.0) ^ 1.5))) end
code[x_, y_] := N[(N[Tan[N[(x / N[(y * 2.0), $MachinePrecision]), $MachinePrecision]], $MachinePrecision] / N[Sin[N[(x / N[(y * 2.0), $MachinePrecision]), $MachinePrecision]], $MachinePrecision]), $MachinePrecision]
code[x_, y_] := N[(1.0 / N[Cos[N[Power[N[Power[N[Power[N[(x * N[(0.5 / y), $MachinePrecision]), $MachinePrecision], 1/3], $MachinePrecision], 2.0], $MachinePrecision], 1.5], $MachinePrecision]], $MachinePrecision]), $MachinePrecision]
\frac{\tan \left(\frac{x}{y \cdot 2}\right)}{\sin \left(\frac{x}{y \cdot 2}\right)}
\frac{1}{\cos \left({\left({\left(\sqrt[3]{x \cdot \frac{0.5}{y}}\right)}^{2}\right)}^{1.5}\right)}
Herbie found 6 alternatives:
| Alternative | Accuracy | Speedup |
|---|
Results
| Original | 44.5% |
|---|---|
| Target | 55.3% |
| Herbie | 55.9% |
Initial program 45.9%
Applied egg-rr59.3%
[Start]45.9 | \[ \frac{\tan \left(\frac{x}{y \cdot 2}\right)}{\sin \left(\frac{x}{y \cdot 2}\right)}
\] |
|---|---|
add-log-exp [=>]45.9 | \[ \color{blue}{\log \left(e^{\frac{\tan \left(\frac{x}{y \cdot 2}\right)}{\sin \left(\frac{x}{y \cdot 2}\right)}}\right)}
\] |
*-un-lft-identity [=>]45.9 | \[ \log \color{blue}{\left(1 \cdot e^{\frac{\tan \left(\frac{x}{y \cdot 2}\right)}{\sin \left(\frac{x}{y \cdot 2}\right)}}\right)}
\] |
log-prod [=>]45.9 | \[ \color{blue}{\log 1 + \log \left(e^{\frac{\tan \left(\frac{x}{y \cdot 2}\right)}{\sin \left(\frac{x}{y \cdot 2}\right)}}\right)}
\] |
metadata-eval [=>]45.9 | \[ \color{blue}{0} + \log \left(e^{\frac{\tan \left(\frac{x}{y \cdot 2}\right)}{\sin \left(\frac{x}{y \cdot 2}\right)}}\right)
\] |
add-log-exp [<=]45.9 | \[ 0 + \color{blue}{\frac{\tan \left(\frac{x}{y \cdot 2}\right)}{\sin \left(\frac{x}{y \cdot 2}\right)}}
\] |
div-inv [=>]45.0 | \[ 0 + \color{blue}{\tan \left(\frac{x}{y \cdot 2}\right) \cdot \frac{1}{\sin \left(\frac{x}{y \cdot 2}\right)}}
\] |
tan-quot [=>]45.0 | \[ 0 + \color{blue}{\frac{\sin \left(\frac{x}{y \cdot 2}\right)}{\cos \left(\frac{x}{y \cdot 2}\right)}} \cdot \frac{1}{\sin \left(\frac{x}{y \cdot 2}\right)}
\] |
associate-*l/ [=>]45.0 | \[ 0 + \color{blue}{\frac{\sin \left(\frac{x}{y \cdot 2}\right) \cdot \frac{1}{\sin \left(\frac{x}{y \cdot 2}\right)}}{\cos \left(\frac{x}{y \cdot 2}\right)}}
\] |
pow1 [=>]45.0 | \[ 0 + \frac{\color{blue}{{\sin \left(\frac{x}{y \cdot 2}\right)}^{1}} \cdot \frac{1}{\sin \left(\frac{x}{y \cdot 2}\right)}}{\cos \left(\frac{x}{y \cdot 2}\right)}
\] |
inv-pow [=>]45.0 | \[ 0 + \frac{{\sin \left(\frac{x}{y \cdot 2}\right)}^{1} \cdot \color{blue}{{\sin \left(\frac{x}{y \cdot 2}\right)}^{-1}}}{\cos \left(\frac{x}{y \cdot 2}\right)}
\] |
pow-prod-up [=>]59.1 | \[ 0 + \frac{\color{blue}{{\sin \left(\frac{x}{y \cdot 2}\right)}^{\left(1 + -1\right)}}}{\cos \left(\frac{x}{y \cdot 2}\right)}
\] |
metadata-eval [=>]59.1 | \[ 0 + \frac{{\sin \left(\frac{x}{y \cdot 2}\right)}^{\color{blue}{0}}}{\cos \left(\frac{x}{y \cdot 2}\right)}
\] |
metadata-eval [=>]59.1 | \[ 0 + \frac{\color{blue}{1}}{\cos \left(\frac{x}{y \cdot 2}\right)}
\] |
div-inv [=>]59.3 | \[ 0 + \frac{1}{\cos \color{blue}{\left(x \cdot \frac{1}{y \cdot 2}\right)}}
\] |
*-commutative [=>]59.3 | \[ 0 + \frac{1}{\cos \left(x \cdot \frac{1}{\color{blue}{2 \cdot y}}\right)}
\] |
associate-/r* [=>]59.3 | \[ 0 + \frac{1}{\cos \left(x \cdot \color{blue}{\frac{\frac{1}{2}}{y}}\right)}
\] |
metadata-eval [=>]59.3 | \[ 0 + \frac{1}{\cos \left(x \cdot \frac{\color{blue}{0.5}}{y}\right)}
\] |
Applied egg-rr59.6%
[Start]59.3 | \[ 0 + \frac{1}{\cos \left(x \cdot \frac{0.5}{y}\right)}
\] |
|---|---|
add-cube-cbrt [=>]59.7 | \[ 0 + \frac{1}{\cos \color{blue}{\left(\left(\sqrt[3]{x \cdot \frac{0.5}{y}} \cdot \sqrt[3]{x \cdot \frac{0.5}{y}}\right) \cdot \sqrt[3]{x \cdot \frac{0.5}{y}}\right)}}
\] |
pow3 [=>]59.6 | \[ 0 + \frac{1}{\cos \color{blue}{\left({\left(\sqrt[3]{x \cdot \frac{0.5}{y}}\right)}^{3}\right)}}
\] |
Applied egg-rr59.7%
[Start]59.6 | \[ 0 + \frac{1}{\cos \left({\left(\sqrt[3]{x \cdot \frac{0.5}{y}}\right)}^{3}\right)}
\] |
|---|---|
metadata-eval [<=]59.6 | \[ 0 + \frac{1}{\cos \left({\left(\sqrt[3]{x \cdot \frac{0.5}{y}}\right)}^{\color{blue}{\left(2 + 1\right)}}\right)}
\] |
pow-prod-up [<=]59.7 | \[ 0 + \frac{1}{\cos \color{blue}{\left({\left(\sqrt[3]{x \cdot \frac{0.5}{y}}\right)}^{2} \cdot {\left(\sqrt[3]{x \cdot \frac{0.5}{y}}\right)}^{1}\right)}}
\] |
pow1 [<=]59.7 | \[ 0 + \frac{1}{\cos \left({\left(\sqrt[3]{x \cdot \frac{0.5}{y}}\right)}^{2} \cdot \color{blue}{\sqrt[3]{x \cdot \frac{0.5}{y}}}\right)}
\] |
Applied egg-rr59.8%
[Start]59.7 | \[ 0 + \frac{1}{\cos \left({\left(\sqrt[3]{x \cdot \frac{0.5}{y}}\right)}^{2} \cdot \sqrt[3]{x \cdot \frac{0.5}{y}}\right)}
\] |
|---|---|
pow1 [=>]59.7 | \[ 0 + \frac{1}{\cos \left(\color{blue}{{\left({\left(\sqrt[3]{x \cdot \frac{0.5}{y}}\right)}^{2}\right)}^{1}} \cdot \sqrt[3]{x \cdot \frac{0.5}{y}}\right)}
\] |
pow1 [=>]59.7 | \[ 0 + \frac{1}{\cos \left({\left({\left(\sqrt[3]{x \cdot \frac{0.5}{y}}\right)}^{2}\right)}^{1} \cdot \color{blue}{{\left(\sqrt[3]{x \cdot \frac{0.5}{y}}\right)}^{1}}\right)}
\] |
metadata-eval [<=]59.7 | \[ 0 + \frac{1}{\cos \left({\left({\left(\sqrt[3]{x \cdot \frac{0.5}{y}}\right)}^{2}\right)}^{1} \cdot {\left(\sqrt[3]{x \cdot \frac{0.5}{y}}\right)}^{\color{blue}{\left(2 \cdot 0.5\right)}}\right)}
\] |
pow-pow [<=]59.7 | \[ 0 + \frac{1}{\cos \left({\left({\left(\sqrt[3]{x \cdot \frac{0.5}{y}}\right)}^{2}\right)}^{1} \cdot \color{blue}{{\left({\left(\sqrt[3]{x \cdot \frac{0.5}{y}}\right)}^{2}\right)}^{0.5}}\right)}
\] |
pow-prod-up [=>]59.8 | \[ 0 + \frac{1}{\cos \color{blue}{\left({\left({\left(\sqrt[3]{x \cdot \frac{0.5}{y}}\right)}^{2}\right)}^{\left(1 + 0.5\right)}\right)}}
\] |
metadata-eval [=>]59.8 | \[ 0 + \frac{1}{\cos \left({\left({\left(\sqrt[3]{x \cdot \frac{0.5}{y}}\right)}^{2}\right)}^{\color{blue}{1.5}}\right)}
\] |
Final simplification59.8%
| Alternative 1 | |
|---|---|
| Accuracy | 55.9% |
| Cost | 19712 |
| Alternative 2 | |
|---|---|
| Accuracy | 56.0% |
| Cost | 19648 |
| Alternative 3 | |
|---|---|
| Accuracy | 56.1% |
| Cost | 6848 |
| Alternative 4 | |
|---|---|
| Accuracy | 56.0% |
| Cost | 6848 |
| Alternative 5 | |
|---|---|
| Accuracy | 55.9% |
| Cost | 64 |
herbie shell --seed 2023161
(FPCore (x y)
:name "Diagrams.TwoD.Layout.CirclePacking:approxRadius from diagrams-contrib-1.3.0.5"
:precision binary64
:herbie-target
(if (< y -1.2303690911306994e+114) 1.0 (if (< y -9.102852406811914e-222) (/ (sin (/ x (* y 2.0))) (* (sin (/ x (* y 2.0))) (log (exp (cos (/ x (* y 2.0))))))) 1.0))
(/ (tan (/ x (* y 2.0))) (sin (/ x (* y 2.0)))))