\sqrt[3]{\frac{1}{2 \cdot a} \cdot \left(\left(-g\right) + \sqrt{g \cdot g - h \cdot h}\right)} + \sqrt[3]{\frac{1}{2 \cdot a} \cdot \left(\left(-g\right) - \sqrt{g \cdot g - h \cdot h}\right)}
\begin{array}{l}
t_0 := \sqrt{g \cdot g - h \cdot h}\\
\frac{\sqrt[3]{t_0 - g}}{\sqrt[3]{2 \cdot a}} + \frac{\sqrt[3]{-0.5 \cdot \left(g + t_0\right)}}{\sqrt[3]{a}}
\end{array}
(FPCore (g h a) :precision binary64 (+ (cbrt (* (/ 1.0 (* 2.0 a)) (+ (- g) (sqrt (- (* g g) (* h h)))))) (cbrt (* (/ 1.0 (* 2.0 a)) (- (- g) (sqrt (- (* g g) (* h h))))))))
(FPCore (g h a)
:precision binary64
(let* ((t_0 (sqrt (- (* g g) (* h h)))))
(+
(/ (cbrt (- t_0 g)) (cbrt (* 2.0 a)))
(/ (cbrt (* -0.5 (+ g t_0))) (cbrt a)))))double code(double g, double h, double a) {
return cbrt((1.0 / (2.0 * a)) * (-g + sqrt((g * g) - (h * h)))) + cbrt((1.0 / (2.0 * a)) * (-g - sqrt((g * g) - (h * h))));
}
double code(double g, double h, double a) {
double t_0 = sqrt((g * g) - (h * h));
return (cbrt(t_0 - g) / cbrt(2.0 * a)) + (cbrt(-0.5 * (g + t_0)) / cbrt(a));
}



Bits error versus g



Bits error versus h



Bits error versus a
Results
Initial program 35.4
Simplified35.4
rmApplied associate-*l/_binary6435.4
Applied cbrt-div_binary6433.5
Simplified33.5
rmApplied cbrt-div_binary6431.9
Final simplification31.9
herbie shell --seed 2021202
(FPCore (g h a)
:name "2-ancestry mixing, positive discriminant"
:precision binary64
(+ (cbrt (* (/ 1.0 (* 2.0 a)) (+ (- g) (sqrt (- (* g g) (* h h)))))) (cbrt (* (/ 1.0 (* 2.0 a)) (- (- g) (sqrt (- (* g g) (* h h))))))))