\frac{\left(1 + \frac{1}{\varepsilon}\right) \cdot e^{-\left(1 - \varepsilon\right) \cdot x} - \left(\frac{1}{\varepsilon} - 1\right) \cdot e^{-\left(1 + \varepsilon\right) \cdot x}}{2}\begin{array}{l}
\mathbf{if}\;x \le 154.4482937142435:\\
\;\;\;\;\frac{\frac{\sqrt[3]{{\left(\left(-1 \cdot 1\right) \cdot {x}^{4} + \left(0.66666666666666674 \cdot {x}^{3} + 2\right) \cdot \left(0.66666666666666674 \cdot {x}^{3} + 2\right)\right)}^{3}}}{{x}^{2} \cdot \left(0.66666666666666674 \cdot x + 1\right) + 2}}{2}\\
\mathbf{else}:\\
\;\;\;\;\frac{\left(1 + \frac{1}{\varepsilon}\right) \cdot e^{-\left(1 - \varepsilon\right) \cdot x} - \left(\left(\frac{1}{\varepsilon} - 1\right) \cdot \sqrt{e^{-\left(1 + \varepsilon\right) \cdot x}}\right) \cdot \sqrt{e^{-\left(1 + \varepsilon\right) \cdot x}}}{2}\\
\end{array}double code(double x, double eps) {
return ((((1.0 + (1.0 / eps)) * exp(-((1.0 - eps) * x))) - (((1.0 / eps) - 1.0) * exp(-((1.0 + eps) * x)))) / 2.0);
}
double code(double x, double eps) {
double VAR;
if ((x <= 154.4482937142435)) {
VAR = ((cbrt(pow(((-(1.0 * 1.0) * pow(x, 4.0)) + (((0.6666666666666667 * pow(x, 3.0)) + 2.0) * ((0.6666666666666667 * pow(x, 3.0)) + 2.0))), 3.0)) / ((pow(x, 2.0) * ((0.6666666666666667 * x) + 1.0)) + 2.0)) / 2.0);
} else {
VAR = ((((1.0 + (1.0 / eps)) * exp(-((1.0 - eps) * x))) - ((((1.0 / eps) - 1.0) * sqrt(exp(-((1.0 + eps) * x)))) * sqrt(exp(-((1.0 + eps) * x))))) / 2.0);
}
return VAR;
}



Bits error versus x



Bits error versus eps
Results
if x < 154.4482937142435Initial program 38.9
Taylor expanded around 0 1.2
rmApplied flip--1.2
Simplified1.2
Simplified1.2
rmApplied add-cbrt-cube1.2
Simplified1.2
if 154.4482937142435 < x Initial program 0.2
rmApplied add-sqr-sqrt0.2
Applied associate-*r*0.2
Final simplification1.0
herbie shell --seed 2020100
(FPCore (x eps)
:name "NMSE Section 6.1 mentioned, A"
:precision binary64
(/ (- (* (+ 1 (/ 1 eps)) (exp (- (* (- 1 eps) x)))) (* (- (/ 1 eps) 1) (exp (- (* (+ 1 eps) x))))) 2))