\cos^{-1} \left({\left(\left(\cosh a\right) \bmod \left(a \cdot a\right)\right)}^{\left(\mathsf{log1p}\left(a\right)\right)}\right)\cos^{-1} \left({\left(\log \left(\sqrt{e^{\left(\left(\cosh a\right) \bmod \left(a \cdot a\right)\right)}}\right) + \log \left(\sqrt{e^{\left(\left(\cosh a\right) \bmod \left(a \cdot a\right)\right)}}\right)\right)}^{\left(\mathsf{log1p}\left(a\right)\right)}\right)double f(double a) {
double r14304 = a;
double r14305 = cosh(r14304);
double r14306 = r14304 * r14304;
double r14307 = fmod(r14305, r14306);
double r14308 = log1p(r14304);
double r14309 = pow(r14307, r14308);
double r14310 = acos(r14309);
return r14310;
}
double f(double a) {
double r14311 = a;
double r14312 = cosh(r14311);
double r14313 = r14311 * r14311;
double r14314 = fmod(r14312, r14313);
double r14315 = exp(r14314);
double r14316 = sqrt(r14315);
double r14317 = log(r14316);
double r14318 = r14317 + r14317;
double r14319 = log1p(r14311);
double r14320 = pow(r14318, r14319);
double r14321 = acos(r14320);
return r14321;
}



Bits error versus a
Initial program 61.2
rmApplied add-log-exp60.3
rmApplied add-sqr-sqrt60.3
Applied log-prod60.3
Final simplification60.3
herbie shell --seed 2019326 +o rules:numerics
(FPCore (a)
:name "Random Jason Timeout Test 012"
:precision binary64
(acos (pow (fmod (cosh a) (* a a)) (log1p a))))