\frac{1}{\sqrt{x}} - \frac{1}{\sqrt{x + 1}}\frac{1 \cdot \frac{1}{\sqrt{x + 1} + \sqrt{x}}}{\left(\sqrt{x} \cdot \left|\sqrt[3]{x + 1}\right|\right) \cdot \sqrt{\sqrt[3]{x + 1}}}double f(double x) {
double r114503 = 1.0;
double r114504 = x;
double r114505 = sqrt(r114504);
double r114506 = r114503 / r114505;
double r114507 = r114504 + r114503;
double r114508 = sqrt(r114507);
double r114509 = r114503 / r114508;
double r114510 = r114506 - r114509;
return r114510;
}
double f(double x) {
double r114511 = 1.0;
double r114512 = x;
double r114513 = r114512 + r114511;
double r114514 = sqrt(r114513);
double r114515 = sqrt(r114512);
double r114516 = r114514 + r114515;
double r114517 = r114511 / r114516;
double r114518 = r114511 * r114517;
double r114519 = cbrt(r114513);
double r114520 = fabs(r114519);
double r114521 = r114515 * r114520;
double r114522 = sqrt(r114519);
double r114523 = r114521 * r114522;
double r114524 = r114518 / r114523;
return r114524;
}




Bits error versus x
Results
| Original | 20.0 |
|---|---|
| Target | 0.7 |
| Herbie | 0.5 |
Initial program 20.0
rmApplied frac-sub20.0
Simplified20.0
rmApplied flip--19.8
Simplified19.4
Taylor expanded around 0 0.4
rmApplied add-cube-cbrt0.5
Applied sqrt-prod0.5
Applied associate-*r*0.5
Simplified0.5
Final simplification0.5
herbie shell --seed 2020042
(FPCore (x)
:name "2isqrt (example 3.6)"
:precision binary64
:herbie-target
(/ 1 (+ (* (+ x 1) (sqrt x)) (* x (sqrt (+ x 1)))))
(- (/ 1 (sqrt x)) (/ 1 (sqrt (+ x 1)))))