\left(\left(\cosh c\right) \bmod \left(\mathsf{log1p}\left(a\right)\right)\right)e^{\left(\sqrt[3]{\log \left(\left(\cosh c\right) \bmod \left(\mathsf{log1p}\left(a\right)\right)\right)} \cdot \sqrt[3]{\log \left(\left(\cosh c\right) \bmod \left(\mathsf{log1p}\left(a\right)\right)\right)}\right) \cdot \sqrt[3]{\sqrt[3]{{\left(\sqrt[3]{{\left(\log \left(\left(\cosh c\right) \bmod \left(\mathsf{log1p}\left(a\right)\right)\right)\right)}^{3}}\right)}^{3}}}}double f(double a, double c) {
double r102 = c;
double r103 = cosh(r102);
double r104 = a;
double r105 = log1p(r104);
double r106 = fmod(r103, r105);
return r106;
}
double f(double a, double c) {
double r107 = c;
double r108 = cosh(r107);
double r109 = a;
double r110 = log1p(r109);
double r111 = fmod(r108, r110);
double r112 = log(r111);
double r113 = cbrt(r112);
double r114 = r113 * r113;
double r115 = 3.0;
double r116 = pow(r112, r115);
double r117 = cbrt(r116);
double r118 = pow(r117, r115);
double r119 = cbrt(r118);
double r120 = cbrt(r119);
double r121 = r114 * r120;
double r122 = exp(r121);
return r122;
}



Bits error versus a



Bits error versus c
Initial program 34.0
rmApplied add-exp-log34.0
rmApplied add-cube-cbrt34.0
rmApplied add-cbrt-cube34.0
Simplified34.0
rmApplied add-cbrt-cube34.0
Simplified34.0
Final simplification34.0
herbie shell --seed 2020025
(FPCore (a c)
:name "Random Jason Timeout Test 004"
:precision binary64
(fmod (cosh c) (log1p a)))