e^{\log \left(\sqrt{x.re \cdot x.re + x.im \cdot x.im}\right) \cdot y.re - \tan^{-1}_* \frac{x.im}{x.re} \cdot y.im} \cdot \cos \left(\log \left(\sqrt{x.re \cdot x.re + x.im \cdot x.im}\right) \cdot y.im + \tan^{-1}_* \frac{x.im}{x.re} \cdot y.re\right)\begin{array}{l}
\mathbf{if}\;x.re \leq -1.9459793054640932 \cdot 10^{+18}:\\
\;\;\;\;e^{\log \left(-x.re\right) \cdot y.re - \tan^{-1}_* \frac{x.im}{x.re} \cdot y.im}\\
\mathbf{elif}\;x.re \leq -8.430888126662982 \cdot 10^{-44}:\\
\;\;\;\;e^{y.re \cdot \log \left(\sqrt{x.re \cdot x.re + x.im \cdot x.im}\right) - \tan^{-1}_* \frac{x.im}{x.re} \cdot y.im}\\
\mathbf{elif}\;x.re \leq 3.92947659999936 \cdot 10^{-310}:\\
\;\;\;\;e^{\log \left(-x.re\right) \cdot y.re - \tan^{-1}_* \frac{x.im}{x.re} \cdot y.im}\\
\mathbf{elif}\;x.re \leq 4.850736462389239 \cdot 10^{-194} \lor \neg \left(x.re \leq 2.3965001777473233 \cdot 10^{-78}\right):\\
\;\;\;\;e^{y.re \cdot \log x.re - \tan^{-1}_* \frac{x.im}{x.re} \cdot y.im}\\
\mathbf{else}:\\
\;\;\;\;e^{y.re \cdot \log \left(\sqrt{x.re \cdot x.re + x.im \cdot x.im}\right) - \tan^{-1}_* \frac{x.im}{x.re} \cdot y.im} \cdot \cos \left(y.re \cdot \tan^{-1}_* \frac{x.im}{x.re} + y.im \cdot \log x.re\right)\\
\end{array}(FPCore (x.re x.im y.re y.im)
:precision binary64
(*
(exp
(-
(* (log (sqrt (+ (* x.re x.re) (* x.im x.im)))) y.re)
(* (atan2 x.im x.re) y.im)))
(cos
(+
(* (log (sqrt (+ (* x.re x.re) (* x.im x.im)))) y.im)
(* (atan2 x.im x.re) y.re)))))(FPCore (x.re x.im y.re y.im)
:precision binary64
(if (<= x.re -1.9459793054640932e+18)
(exp (- (* (log (- x.re)) y.re) (* (atan2 x.im x.re) y.im)))
(if (<= x.re -8.430888126662982e-44)
(exp
(-
(* y.re (log (sqrt (+ (* x.re x.re) (* x.im x.im)))))
(* (atan2 x.im x.re) y.im)))
(if (<= x.re 3.92947659999936e-310)
(exp (- (* (log (- x.re)) y.re) (* (atan2 x.im x.re) y.im)))
(if (or (<= x.re 4.850736462389239e-194)
(not (<= x.re 2.3965001777473233e-78)))
(exp (- (* y.re (log x.re)) (* (atan2 x.im x.re) y.im)))
(*
(exp
(-
(* y.re (log (sqrt (+ (* x.re x.re) (* x.im x.im)))))
(* (atan2 x.im x.re) y.im)))
(cos (+ (* y.re (atan2 x.im x.re)) (* y.im (log x.re))))))))))double code(double x_46_re, double x_46_im, double y_46_re, double y_46_im) {
return exp((log(sqrt((x_46_re * x_46_re) + (x_46_im * x_46_im))) * y_46_re) - (atan2(x_46_im, x_46_re) * y_46_im)) * cos((log(sqrt((x_46_re * x_46_re) + (x_46_im * x_46_im))) * y_46_im) + (atan2(x_46_im, x_46_re) * y_46_re));
}
double code(double x_46_re, double x_46_im, double y_46_re, double y_46_im) {
double tmp;
if (x_46_re <= -1.9459793054640932e+18) {
tmp = exp((log(-x_46_re) * y_46_re) - (atan2(x_46_im, x_46_re) * y_46_im));
} else if (x_46_re <= -8.430888126662982e-44) {
tmp = exp((y_46_re * log(sqrt((x_46_re * x_46_re) + (x_46_im * x_46_im)))) - (atan2(x_46_im, x_46_re) * y_46_im));
} else if (x_46_re <= 3.92947659999936e-310) {
tmp = exp((log(-x_46_re) * y_46_re) - (atan2(x_46_im, x_46_re) * y_46_im));
} else if ((x_46_re <= 4.850736462389239e-194) || !(x_46_re <= 2.3965001777473233e-78)) {
tmp = exp((y_46_re * log(x_46_re)) - (atan2(x_46_im, x_46_re) * y_46_im));
} else {
tmp = exp((y_46_re * log(sqrt((x_46_re * x_46_re) + (x_46_im * x_46_im)))) - (atan2(x_46_im, x_46_re) * y_46_im)) * cos((y_46_re * atan2(x_46_im, x_46_re)) + (y_46_im * log(x_46_re)));
}
return tmp;
}



Bits error versus x.re



Bits error versus x.im



Bits error versus y.re



Bits error versus y.im
Results
if x.re < -1945979305464093200 or -8.43088812666298239e-44 < x.re < 3.929476599999359e-310Initial program 33.7
Taylor expanded around 0 18.3
Taylor expanded around -inf 5.7
Simplified5.7
if -1945979305464093200 < x.re < -8.43088812666298239e-44Initial program 15.1
Taylor expanded around 0 9.5
if 3.929476599999359e-310 < x.re < 4.85073646238923922e-194 or 2.39650017774732326e-78 < x.re Initial program 37.6
Taylor expanded around 0 24.4
Taylor expanded around inf 12.1
if 4.85073646238923922e-194 < x.re < 2.39650017774732326e-78Initial program 21.0
Taylor expanded around inf 12.6
Simplified12.6
Final simplification9.2
herbie shell --seed 2020295
(FPCore (x.re x.im y.re y.im)
:name "powComplex, real part"
:precision binary64
(* (exp (- (* (log (sqrt (+ (* x.re x.re) (* x.im x.im)))) y.re) (* (atan2 x.im x.re) y.im))) (cos (+ (* (log (sqrt (+ (* x.re x.re) (* x.im x.im)))) y.im) (* (atan2 x.im x.re) y.re)))))