x + \frac{e^{y \cdot \log \left(\frac{y}{z + y}\right)}}{y}x + \frac{e^{\left(\left(2 \cdot \log \left(\frac{\sqrt[3]{y}}{\sqrt[3]{z + y}}\right)\right) \cdot 1\right) \cdot y + y \cdot \log \left(\frac{\sqrt[3]{y}}{\sqrt[3]{z + y}}\right)}}{y}double f(double x, double y, double z) {
double r401695 = x;
double r401696 = y;
double r401697 = z;
double r401698 = r401697 + r401696;
double r401699 = r401696 / r401698;
double r401700 = log(r401699);
double r401701 = r401696 * r401700;
double r401702 = exp(r401701);
double r401703 = r401702 / r401696;
double r401704 = r401695 + r401703;
return r401704;
}
double f(double x, double y, double z) {
double r401705 = x;
double r401706 = 2.0;
double r401707 = y;
double r401708 = cbrt(r401707);
double r401709 = z;
double r401710 = r401709 + r401707;
double r401711 = cbrt(r401710);
double r401712 = r401708 / r401711;
double r401713 = log(r401712);
double r401714 = r401706 * r401713;
double r401715 = 1.0;
double r401716 = r401714 * r401715;
double r401717 = r401716 * r401707;
double r401718 = r401707 * r401713;
double r401719 = r401717 + r401718;
double r401720 = exp(r401719);
double r401721 = r401720 / r401707;
double r401722 = r401705 + r401721;
return r401722;
}




Bits error versus x




Bits error versus y




Bits error versus z
Results
| Original | 5.9 |
|---|---|
| Target | 1.1 |
| Herbie | 1.1 |
Initial program 5.9
rmApplied add-cube-cbrt19.6
Applied add-cube-cbrt5.9
Applied times-frac5.9
Applied log-prod2.1
Applied distribute-lft-in2.1
Simplified1.1
Final simplification1.1
herbie shell --seed 2020064 +o rules:numerics
(FPCore (x y z)
:name "Numeric.SpecFunctions:invIncompleteBetaWorker from math-functions-0.1.5.2, G"
:precision binary64
:herbie-target
(if (< (/ y (+ z y)) 7.1154157597908e-315) (+ x (/ (exp (/ -1 z)) y)) (+ x (/ (exp (log (pow (/ y (+ y z)) y))) y)))
(+ x (/ (exp (* y (log (/ y (+ z y))))) y)))