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



Bits error versus x



Bits error versus y



Bits error versus z



Bits error versus t
Results
Initial program 7.2
Taylor expanded around 0 0.4
rmApplied add-cube-cbrt0.4
Applied log-prod0.4
Applied distribute-lft-in0.4
Applied associate-+l+0.4
Simplified0.4
Final simplification0.4
herbie shell --seed 2020060
(FPCore (x y z t)
:name "Statistics.Distribution.Beta:$cdensity from math-functions-0.1.5.2"
:precision binary64
(- (+ (* (- x 1) (log y)) (* (- z 1) (log (- 1 y)))) t))