\left(x \cdot \log y + z \cdot \log \left(1 - y\right)\right) - t
\left(\log \left(\sqrt{y}\right) \cdot x + \left(\log \left(\sqrt{y}\right) \cdot x + z \cdot \left({y}^{4} \cdot -0.25 - \left(y + y \cdot \left(y \cdot \left(y \cdot 0.3333333333333333 + 0.5\right)\right)\right)\right)\right)\right) - t(FPCore (x y z t) :precision binary64 (- (+ (* x (log y)) (* z (log (- 1.0 y)))) t))
(FPCore (x y z t)
:precision binary64
(-
(+
(* (log (sqrt y)) x)
(+
(* (log (sqrt y)) x)
(*
z
(-
(* (pow y 4.0) -0.25)
(+ y (* y (* y (+ (* y 0.3333333333333333) 0.5))))))))
t))double code(double x, double y, double z, double t) {
return ((x * log(y)) + (z * log(1.0 - y))) - t;
}
double code(double x, double y, double z, double t) {
return ((log(sqrt(y)) * x) + ((log(sqrt(y)) * x) + (z * ((pow(y, 4.0) * -0.25) - (y + (y * (y * ((y * 0.3333333333333333) + 0.5)))))))) - t;
}




Bits error versus x




Bits error versus y




Bits error versus z




Bits error versus t
Results
| Original | 9.1 |
|---|---|
| Target | 0.3 |
| Herbie | 0.2 |
Initial program 9.1
Taylor expanded around 0 0.2
Simplified0.2
rmApplied add-sqr-sqrt_binary640.2
Applied log-prod_binary640.2
Applied distribute-rgt-in_binary640.2
Applied associate-+l+_binary640.2
Simplified0.2
rmApplied *-commutative_binary640.2
Final simplification0.2
herbie shell --seed 2021118
(FPCore (x y z t)
:name "Numeric.SpecFunctions:invIncompleteBetaWorker from math-functions-0.1.5.2, B"
:precision binary64
:herbie-target
(- (* (- z) (+ (+ (* 0.5 (* y y)) y) (* (/ 0.3333333333333333 (* 1.0 (* 1.0 1.0))) (* y (* y y))))) (- t (* x (log y))))
(- (+ (* x (log y)) (* z (log (- 1.0 y)))) t))