\left(x.re \cdot x.re - x.im \cdot x.im\right) \cdot x.im + \left(x.re \cdot x.im + x.im \cdot x.re\right) \cdot x.re
\left(3 \cdot \left(x.im \cdot x.re\right)\right) \cdot x.re - {x.im}^{3}double f(double x_re, double x_im) {
double r831 = x_re;
double r832 = r831 * r831;
double r833 = x_im;
double r834 = r833 * r833;
double r835 = r832 - r834;
double r836 = r835 * r833;
double r837 = r831 * r833;
double r838 = r833 * r831;
double r839 = r837 + r838;
double r840 = r839 * r831;
double r841 = r836 + r840;
return r841;
}
double f(double x_re, double x_im) {
double r842 = 3.0;
double r843 = x_im;
double r844 = x_re;
double r845 = r843 * r844;
double r846 = r842 * r845;
double r847 = r846 * r844;
double r848 = pow(r843, r842);
double r849 = r847 - r848;
return r849;
}




Bits error versus x.re




Bits error versus x.im
Results
| Original | 7.7 |
|---|---|
| Target | 0.2 |
| Herbie | 0.2 |
Initial program 7.7
Simplified7.7
rmApplied associate-*r*0.2
rmApplied associate-*r*0.2
Final simplification0.2
herbie shell --seed 2020025
(FPCore (x.re x.im)
:name "math.cube on complex, imaginary part"
:precision binary64
:herbie-target
(+ (* (* x.re x.im) (* 2 x.re)) (* (* x.im (- x.re x.im)) (+ x.re x.im)))
(+ (* (- (* x.re x.re) (* x.im x.im)) x.im) (* (+ (* x.re x.im) (* x.im x.re)) x.re)))