\frac{\cos th}{\sqrt{2}} \cdot \left(a1 \cdot a1\right) + \frac{\cos th}{\sqrt{2}} \cdot \left(a2 \cdot a2\right)\cos th \cdot \left(\frac{a1 \cdot a1 + a2 \cdot a2}{\left|\sqrt[3]{\sqrt{2}}\right|} \cdot \frac{\frac{1}{\sqrt{\sqrt{2}}}}{\sqrt{\sqrt[3]{\sqrt{2}}}}\right)(FPCore (a1 a2 th) :precision binary64 (+ (* (/ (cos th) (sqrt 2.0)) (* a1 a1)) (* (/ (cos th) (sqrt 2.0)) (* a2 a2))))
(FPCore (a1 a2 th) :precision binary64 (* (cos th) (* (/ (+ (* a1 a1) (* a2 a2)) (fabs (cbrt (sqrt 2.0)))) (/ (/ 1.0 (sqrt (sqrt 2.0))) (sqrt (cbrt (sqrt 2.0)))))))
double code(double a1, double a2, double th) {
return ((cos(th) / sqrt(2.0)) * (a1 * a1)) + ((cos(th) / sqrt(2.0)) * (a2 * a2));
}
double code(double a1, double a2, double th) {
return cos(th) * ((((a1 * a1) + (a2 * a2)) / fabs(cbrt(sqrt(2.0)))) * ((1.0 / sqrt(sqrt(2.0))) / sqrt(cbrt(sqrt(2.0)))));
}



Bits error versus a1



Bits error versus a2



Bits error versus th
Results
Initial program 0.5
Simplified0.5
rmApplied add-sqr-sqrt_binary64_4410.6
Applied associate-/r*_binary64_3630.5
rmApplied add-cube-cbrt_binary64_4540.5
Applied sqrt-prod_binary64_4350.7
Applied div-inv_binary64_4160.5
Applied times-frac_binary64_4250.4
Simplified0.4
Final simplification0.4
herbie shell --seed 2020298
(FPCore (a1 a2 th)
:name "Migdal et al, Equation (64)"
:precision binary64
(+ (* (/ (cos th) (sqrt 2.0)) (* a1 a1)) (* (/ (cos th) (sqrt 2.0)) (* a2 a2))))