\left(\left(\left(x - 0.5\right) \cdot \log x - x\right) + 0.91893853320467001\right) + \frac{\left(\left(y + 7.93650079365100015 \cdot 10^{-4}\right) \cdot z - 0.0027777777777778\right) \cdot z + 0.0833333333333329956}{x}\begin{array}{l}
\mathbf{if}\;x \le 1.7594265253874347 \cdot 10^{138}:\\
\;\;\;\;\left(\log \left(\sqrt[3]{x} \cdot \sqrt[3]{x}\right) \cdot \left(x - 0.5\right) + \left(\left(\log \left(\sqrt[3]{x}\right) \cdot \left(x - 0.5\right) - x\right) + 0.91893853320467001\right)\right) + \left(\left(\left(y + 7.93650079365100015 \cdot 10^{-4}\right) \cdot z - 0.0027777777777778\right) \cdot z + 0.0833333333333329956\right) \cdot \frac{1}{x}\\
\mathbf{else}:\\
\;\;\;\;\left(\log \left(\sqrt[3]{x} \cdot \sqrt[3]{x}\right) \cdot \left(x - 0.5\right) + \left(\left(\log \left(\sqrt[3]{x}\right) \cdot \left(x - 0.5\right) - x\right) + 0.91893853320467001\right)\right) + \frac{1}{x \cdot \left(z \cdot 0.400000000000006406 - {z}^{2} \cdot 0.100952278095241613\right) + 12.000000000000048 \cdot x}\\
\end{array}double code(double x, double y, double z) {
return ((double) (((double) (((double) (((double) (((double) (x - 0.5)) * ((double) log(x)))) - x)) + 0.91893853320467)) + ((double) (((double) (((double) (((double) (((double) (((double) (y + 0.0007936500793651)) * z)) - 0.0027777777777778)) * z)) + 0.083333333333333)) / x))));
}
double code(double x, double y, double z) {
double VAR;
if ((x <= 1.7594265253874347e+138)) {
VAR = ((double) (((double) (((double) (((double) log(((double) (((double) cbrt(x)) * ((double) cbrt(x)))))) * ((double) (x - 0.5)))) + ((double) (((double) (((double) (((double) log(((double) cbrt(x)))) * ((double) (x - 0.5)))) - x)) + 0.91893853320467)))) + ((double) (((double) (((double) (((double) (((double) (((double) (y + 0.0007936500793651)) * z)) - 0.0027777777777778)) * z)) + 0.083333333333333)) * ((double) (1.0 / x))))));
} else {
VAR = ((double) (((double) (((double) (((double) log(((double) (((double) cbrt(x)) * ((double) cbrt(x)))))) * ((double) (x - 0.5)))) + ((double) (((double) (((double) (((double) log(((double) cbrt(x)))) * ((double) (x - 0.5)))) - x)) + 0.91893853320467)))) + ((double) (1.0 / ((double) (((double) (x * ((double) (((double) (z * 0.4000000000000064)) - ((double) (((double) pow(z, 2.0)) * 0.10095227809524161)))))) + ((double) (12.000000000000048 * x))))))));
}
return VAR;
}




Bits error versus x




Bits error versus y




Bits error versus z
Results
| Original | 6.2 |
|---|---|
| Target | 1.2 |
| Herbie | 3.3 |
if x < 1.7594265253874347e+138Initial program 2.1
rmApplied add-cube-cbrt2.1
Applied log-prod2.2
Applied distribute-rgt-in2.1
Applied associate--l+2.1
Applied associate-+l+2.1
rmApplied div-inv2.3
if 1.7594265253874347e+138 < x Initial program 13.8
rmApplied add-cube-cbrt13.8
Applied log-prod13.9
Applied distribute-rgt-in13.9
Applied associate--l+13.8
Applied associate-+l+13.8
rmApplied clear-num13.8
Taylor expanded around 0 12.0
Simplified5.2
Final simplification3.3
herbie shell --seed 2020113
(FPCore (x y z)
:name "Numeric.SpecFunctions:$slogFactorial from math-functions-0.1.5.2, B"
:precision binary64
:herbie-target
(+ (+ (+ (* (- x 0.5) (log x)) (- 0.91893853320467 x)) (/ 0.083333333333333 x)) (* (/ z x) (- (* z (+ y 0.0007936500793651)) 0.0027777777777778)))
(+ (+ (- (* (- x 0.5) (log x)) x) 0.91893853320467) (/ (+ (* (- (* (+ y 0.0007936500793651) z) 0.0027777777777778) z) 0.083333333333333) x)))