\frac{x0}{1 - x1} - x0\mathsf{fma}\left(\sqrt[3]{x0} \cdot \sqrt[3]{x0}, \frac{\sqrt[3]{x0}}{1 - x1}, -x0\right)double f(double x0, double x1) {
double r119809 = x0;
double r119810 = 1.0;
double r119811 = x1;
double r119812 = r119810 - r119811;
double r119813 = r119809 / r119812;
double r119814 = r119813 - r119809;
return r119814;
}
double f(double x0, double x1) {
double r119815 = x0;
double r119816 = cbrt(r119815);
double r119817 = r119816 * r119816;
double r119818 = 1.0;
double r119819 = x1;
double r119820 = r119818 - r119819;
double r119821 = r119816 / r119820;
double r119822 = -r119815;
double r119823 = fma(r119817, r119821, r119822);
return r119823;
}




Bits error versus x0




Bits error versus x1
| Original | 7.9 |
|---|---|
| Target | 0.3 |
| Herbie | 7.0 |
Initial program 7.9
rmApplied *-un-lft-identity7.9
Applied add-cube-cbrt7.9
Applied times-frac8.2
Applied fma-neg7.0
Final simplification7.0
herbie shell --seed 2019195 +o rules:numerics
(FPCore (x0 x1)
:name "(- (/ x0 (- 1 x1)) x0)"
:pre (or (and (== x0 1.855) (== x1 0.000209)) (and (== x0 2.985) (== x1 0.0186)))
:herbie-target
(/ (* x0 x1) (- 1.0 x1))
(- (/ x0 (- 1.0 x1)) x0))