\frac{\log \left(1 - x\right)}{\log \left(1 + x\right)}\left(\sqrt[3]{\frac{\log 1 - \left(1 \cdot x + \frac{1}{2} \cdot \frac{{x}^{2}}{{1}^{2}}\right)}{\left(1 \cdot x + \log 1\right) - \frac{1}{2} \cdot \frac{{x}^{2}}{{1}^{2}}}} \cdot \sqrt[3]{\frac{\log 1 - \left(1 \cdot x + \frac{1}{2} \cdot \frac{{x}^{2}}{{1}^{2}}\right)}{\left(1 \cdot x + \log 1\right) - \frac{1}{2} \cdot \frac{{x}^{2}}{{1}^{2}}}}\right) \cdot \sqrt[3]{\frac{\log 1 - \left(1 \cdot x + \frac{1}{2} \cdot \frac{{x}^{2}}{{1}^{2}}\right)}{\left(1 \cdot x + \log 1\right) - \frac{1}{2} \cdot \frac{{x}^{2}}{{1}^{2}}}}double code(double x) {
return (log((1.0 - x)) / log((1.0 + x)));
}
double code(double x) {
return ((cbrt(((log(1.0) - ((1.0 * x) + (0.5 * (pow(x, 2.0) / pow(1.0, 2.0))))) / (((1.0 * x) + log(1.0)) - (0.5 * (pow(x, 2.0) / pow(1.0, 2.0)))))) * cbrt(((log(1.0) - ((1.0 * x) + (0.5 * (pow(x, 2.0) / pow(1.0, 2.0))))) / (((1.0 * x) + log(1.0)) - (0.5 * (pow(x, 2.0) / pow(1.0, 2.0))))))) * cbrt(((log(1.0) - ((1.0 * x) + (0.5 * (pow(x, 2.0) / pow(1.0, 2.0))))) / (((1.0 * x) + log(1.0)) - (0.5 * (pow(x, 2.0) / pow(1.0, 2.0)))))));
}




Bits error versus x
Results
| Original | 61.2 |
|---|---|
| Target | 0.4 |
| Herbie | 0.6 |
Initial program 61.2
Taylor expanded around 0 60.5
Taylor expanded around 0 0.6
rmApplied add-cube-cbrt0.6
Final simplification0.6
herbie shell --seed 2020105
(FPCore (x)
:name "qlog (example 3.10)"
:precision binary64
:pre (and (< -1 x) (< x 1))
:herbie-target
(- (+ (+ (+ 1 x) (/ (* x x) 2)) (* 0.4166666666666667 (pow x 3))))
(/ (log (- 1 x)) (log (+ 1 x))))