\frac{x.re \cdot y.re + x.im \cdot y.im}{y.re \cdot y.re + y.im \cdot y.im}
\begin{array}{l}
\mathbf{if}\;y.im \leq -2.2932503563534942 \cdot 10^{+157}:\\
\;\;\;\;\mathsf{fma}\left(\frac{x.re}{y.im}, y.re, x.im\right) \cdot \frac{-1}{\mathsf{hypot}\left(y.im, y.re\right)}\\
\mathbf{else}:\\
\;\;\;\;\begin{array}{l}
t_0 := \frac{\frac{\mathsf{fma}\left(x.re, y.re, y.im \cdot x.im\right)}{\mathsf{hypot}\left(y.im, y.re\right)}}{\mathsf{hypot}\left(y.im, y.re\right)}\\
\mathbf{if}\;y.im \leq -4.7420300655524546 \cdot 10^{-281}:\\
\;\;\;\;t_0\\
\mathbf{elif}\;y.im \leq 9.846032840487084 \cdot 10^{-148}:\\
\;\;\;\;\mathsf{fma}\left(\frac{y.im}{y.re}, \frac{x.im}{y.re}, \frac{x.re}{y.re}\right)\\
\mathbf{elif}\;y.im \leq 3.9773913574442064 \cdot 10^{+49}:\\
\;\;\;\;t_0\\
\mathbf{else}:\\
\;\;\;\;\mathsf{fma}\left(\frac{x.re}{y.im}, \frac{y.re}{y.im}, \frac{x.im}{y.im}\right)\\
\end{array}\\
\end{array}
(FPCore (x.re x.im y.re y.im) :precision binary64 (/ (+ (* x.re y.re) (* x.im y.im)) (+ (* y.re y.re) (* y.im y.im))))
(FPCore (x.re x.im y.re y.im)
:precision binary64
(if (<= y.im -2.2932503563534942e+157)
(* (fma (/ x.re y.im) y.re x.im) (/ -1.0 (hypot y.im y.re)))
(let* ((t_0
(/
(/ (fma x.re y.re (* y.im x.im)) (hypot y.im y.re))
(hypot y.im y.re))))
(if (<= y.im -4.7420300655524546e-281)
t_0
(if (<= y.im 9.846032840487084e-148)
(fma (/ y.im y.re) (/ x.im y.re) (/ x.re y.re))
(if (<= y.im 3.9773913574442064e+49)
t_0
(fma (/ x.re y.im) (/ y.re y.im) (/ x.im y.im))))))))double code(double x_46_re, double x_46_im, double y_46_re, double y_46_im) {
return ((x_46_re * y_46_re) + (x_46_im * 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) {
double tmp;
if (y_46_im <= -2.2932503563534942e+157) {
tmp = fma((x_46_re / y_46_im), y_46_re, x_46_im) * (-1.0 / hypot(y_46_im, y_46_re));
} else {
double t_0 = (fma(x_46_re, y_46_re, (y_46_im * x_46_im)) / hypot(y_46_im, y_46_re)) / hypot(y_46_im, y_46_re);
double tmp_1;
if (y_46_im <= -4.7420300655524546e-281) {
tmp_1 = t_0;
} else if (y_46_im <= 9.846032840487084e-148) {
tmp_1 = fma((y_46_im / y_46_re), (x_46_im / y_46_re), (x_46_re / y_46_re));
} else if (y_46_im <= 3.9773913574442064e+49) {
tmp_1 = t_0;
} else {
tmp_1 = fma((x_46_re / y_46_im), (y_46_re / y_46_im), (x_46_im / y_46_im));
}
tmp = tmp_1;
}
return tmp;
}



Bits error versus x.re



Bits error versus x.im



Bits error versus y.re



Bits error versus y.im
if y.im < -2.2932503563534942e157Initial program 45.0
Simplified45.0
Applied add-sqr-sqrt_binary6445.0
Applied *-un-lft-identity_binary6445.0
Applied times-frac_binary6445.0
Simplified45.0
Simplified29.3
Taylor expanded in y.im around -inf 11.9
Simplified7.3
if -2.2932503563534942e157 < y.im < -4.7420300655524546e-281 or 9.8460328404870844e-148 < y.im < 3.97739135744420643e49Initial program 18.1
Simplified18.1
Applied add-sqr-sqrt_binary6418.1
Applied *-un-lft-identity_binary6418.1
Applied times-frac_binary6418.1
Simplified18.1
Simplified11.8
Applied associate-*l/_binary6411.7
Simplified11.7
if -4.7420300655524546e-281 < y.im < 9.8460328404870844e-148Initial program 25.1
Simplified25.1
Applied add-sqr-sqrt_binary6425.1
Applied *-un-lft-identity_binary6425.1
Applied times-frac_binary6425.1
Simplified25.1
Simplified14.5
Taylor expanded in y.im around 0 9.6
Simplified7.0
if 3.97739135744420643e49 < y.im Initial program 37.3
Simplified37.3
Applied add-sqr-sqrt_binary6437.4
Applied *-un-lft-identity_binary6437.4
Applied times-frac_binary6437.4
Simplified37.4
Simplified25.5
Taylor expanded in y.im around inf 19.4
Simplified13.4
Final simplification10.8
herbie shell --seed 2021273
(FPCore (x.re x.im y.re y.im)
:name "_divideComplex, real part"
:precision binary64
(/ (+ (* x.re y.re) (* x.im y.im)) (+ (* y.re y.re) (* y.im y.im))))