\frac{x.im \cdot y.re - x.re \cdot y.im}{y.re \cdot y.re + y.im \cdot y.im}\frac{\frac{1}{\frac{\sqrt{{y.re}^{2} + {y.im}^{2}}}{y.re \cdot x.im - y.im \cdot x.re}}}{\sqrt{y.re \cdot y.re + y.im \cdot y.im}}(FPCore (x.re x.im y.re y.im) :precision binary64 (/ (- (* x.im y.re) (* x.re y.im)) (+ (* y.re y.re) (* y.im y.im))))
(FPCore (x.re x.im y.re y.im)
:precision binary64
(/
(/
1.0
(/
(sqrt (+ (pow y.re 2.0) (pow y.im 2.0)))
(- (* y.re x.im) (* y.im x.re))))
(sqrt (+ (* y.re y.re) (* y.im y.im)))))double code(double x_46_re, double x_46_im, double y_46_re, double y_46_im) {
return ((x_46_im * y_46_re) - (x_46_re * y_46_im)) / ((y_46_re * y_46_re) + (y_46_im * y_46_im));
}
double code(double x_46_re, double x_46_im, double y_46_re, double y_46_im) {
return (1.0 / (sqrt(pow(y_46_re, 2.0) + pow(y_46_im, 2.0)) / ((y_46_re * x_46_im) - (y_46_im * x_46_re)))) / sqrt((y_46_re * y_46_re) + (y_46_im * y_46_im));
}



Bits error versus x.re



Bits error versus x.im



Bits error versus y.re



Bits error versus y.im
Results
Initial program 26.1
rmApplied add-sqr-sqrt_binary64_178326.1
Applied associate-/r*_binary64_170826.1
Simplified26.1
rmApplied clear-num_binary64_176126.1
Simplified26.1
Final simplification26.1
herbie shell --seed 2020281
(FPCore (x.re x.im y.re y.im)
:name "_divideComplex, imaginary part"
:precision binary64
(/ (- (* x.im y.re) (* x.re y.im)) (+ (* y.re y.re) (* y.im y.im))))