0.5 \cdot \sqrt{2 \cdot \left(\sqrt{re \cdot re + im \cdot im} - re\right)}\begin{array}{l}
\mathbf{if}\;re \leq -2.314214383594253 \cdot 10^{+124}:\\
\;\;\;\;0.5 \cdot \sqrt{2 \cdot \left(re \cdot -2\right)}\\
\mathbf{elif}\;re \leq -2.8173110054179868 \cdot 10^{-58}:\\
\;\;\;\;0.5 \cdot \sqrt{2 \cdot \left(\sqrt{re \cdot re + im \cdot im} - re\right)}\\
\mathbf{elif}\;re \leq 1.6159376490511677 \cdot 10^{+50}:\\
\;\;\;\;0.5 \cdot \sqrt{2 \cdot im}\\
\mathbf{else}:\\
\;\;\;\;0.5 \cdot \frac{\sqrt{2 \cdot \left(im \cdot im\right)}}{\sqrt{re + \sqrt{re \cdot re + im \cdot im}}}\\
\end{array}(FPCore (re im) :precision binary64 (* 0.5 (sqrt (* 2.0 (- (sqrt (+ (* re re) (* im im))) re)))))
(FPCore (re im)
:precision binary64
(if (<= re -2.314214383594253e+124)
(* 0.5 (sqrt (* 2.0 (* re -2.0))))
(if (<= re -2.8173110054179868e-58)
(* 0.5 (sqrt (* 2.0 (- (sqrt (+ (* re re) (* im im))) re))))
(if (<= re 1.6159376490511677e+50)
(* 0.5 (sqrt (* 2.0 im)))
(*
0.5
(/
(sqrt (* 2.0 (* im im)))
(sqrt (+ re (sqrt (+ (* re re) (* im im)))))))))))double code(double re, double im) {
return ((double) (0.5 * ((double) sqrt(((double) (2.0 * ((double) (((double) sqrt(((double) (((double) (re * re)) + ((double) (im * im)))))) - re))))))));
}
double code(double re, double im) {
double tmp;
if ((re <= -2.314214383594253e+124)) {
tmp = ((double) (0.5 * ((double) sqrt(((double) (2.0 * ((double) (re * -2.0))))))));
} else {
double tmp_1;
if ((re <= -2.8173110054179868e-58)) {
tmp_1 = ((double) (0.5 * ((double) sqrt(((double) (2.0 * ((double) (((double) sqrt(((double) (((double) (re * re)) + ((double) (im * im)))))) - re))))))));
} else {
double tmp_2;
if ((re <= 1.6159376490511677e+50)) {
tmp_2 = ((double) (0.5 * ((double) sqrt(((double) (2.0 * im))))));
} else {
tmp_2 = ((double) (0.5 * (((double) sqrt(((double) (2.0 * ((double) (im * im)))))) / ((double) sqrt(((double) (re + ((double) sqrt(((double) (((double) (re * re)) + ((double) (im * im)))))))))))));
}
tmp_1 = tmp_2;
}
tmp = tmp_1;
}
return tmp;
}



Bits error versus re



Bits error versus im
Results
if re < -2.31421438359425285e124Initial program 55.5
Taylor expanded around -inf 8.9
Simplified8.9
if -2.31421438359425285e124 < re < -2.8173110054179868e-58Initial program 16.5
if -2.8173110054179868e-58 < re < 1.6159376490511677e50Initial program 32.2
Taylor expanded around 0 16.1
rmApplied add-exp-log_binary6419.5
rmApplied pow1/2_binary6419.5
Applied log-pow_binary6419.5
Applied exp-prod_binary6419.8
Taylor expanded around inf 19.6
Simplified16.2
if 1.6159376490511677e50 < re Initial program 58.4
rmApplied flip--_binary6458.4
Applied associate-*r/_binary6458.4
Applied sqrt-div_binary6458.4
Simplified41.1
Simplified41.1
Final simplification20.3
herbie shell --seed 2020205
(FPCore (re im)
:name "math.sqrt on complex, imaginary part, im greater than 0 branch"
:precision binary64
:pre (> im 0.0)
(* 0.5 (sqrt (* 2.0 (- (sqrt (+ (* re re) (* im im))) re)))))