\frac{\log \left(\sqrt{re \cdot re + im \cdot im}\right) \cdot \log base + \tan^{-1}_* \frac{im}{re} \cdot 0}{\log base \cdot \log base + 0 \cdot 0}\begin{array}{l}
\mathbf{if}\;re \leq -1.1631929203516236 \cdot 10^{+119}:\\
\;\;\;\;\frac{\log \left(-re\right)}{\log base}\\
\mathbf{elif}\;re \leq -1.1637338402804801 \cdot 10^{-200}:\\
\;\;\;\;\frac{\log \left(\sqrt{\sqrt{re \cdot re + im \cdot im}} \cdot \sqrt{\sqrt{re \cdot re + im \cdot im}}\right)}{\log base}\\
\mathbf{elif}\;re \leq 1.977245760406704 \cdot 10^{-239}:\\
\;\;\;\;\frac{0.5}{\frac{\log base}{2 \cdot \log im}}\\
\mathbf{elif}\;re \leq 3.1146883802374637 \cdot 10^{+62}:\\
\;\;\;\;\frac{\log \left(\sqrt{\sqrt{re \cdot re + im \cdot im}} \cdot \sqrt{\sqrt{re \cdot re + im \cdot im}}\right)}{\log base}\\
\mathbf{else}:\\
\;\;\;\;\frac{\log re}{\log base}\\
\end{array}(FPCore (re im base) :precision binary64 (/ (+ (* (log (sqrt (+ (* re re) (* im im)))) (log base)) (* (atan2 im re) 0.0)) (+ (* (log base) (log base)) (* 0.0 0.0))))
(FPCore (re im base)
:precision binary64
(if (<= re -1.1631929203516236e+119)
(/ (log (- re)) (log base))
(if (<= re -1.1637338402804801e-200)
(/
(log
(*
(sqrt (sqrt (+ (* re re) (* im im))))
(sqrt (sqrt (+ (* re re) (* im im))))))
(log base))
(if (<= re 1.977245760406704e-239)
(/ 0.5 (/ (log base) (* 2.0 (log im))))
(if (<= re 3.1146883802374637e+62)
(/
(log
(*
(sqrt (sqrt (+ (* re re) (* im im))))
(sqrt (sqrt (+ (* re re) (* im im))))))
(log base))
(/ (log re) (log base)))))))double code(double re, double im, double base) {
return ((log(sqrt((re * re) + (im * im))) * log(base)) + (atan2(im, re) * 0.0)) / ((log(base) * log(base)) + (0.0 * 0.0));
}
double code(double re, double im, double base) {
double tmp;
if (re <= -1.1631929203516236e+119) {
tmp = log(-re) / log(base);
} else if (re <= -1.1637338402804801e-200) {
tmp = log(sqrt(sqrt((re * re) + (im * im))) * sqrt(sqrt((re * re) + (im * im)))) / log(base);
} else if (re <= 1.977245760406704e-239) {
tmp = 0.5 / (log(base) / (2.0 * log(im)));
} else if (re <= 3.1146883802374637e+62) {
tmp = log(sqrt(sqrt((re * re) + (im * im))) * sqrt(sqrt((re * re) + (im * im)))) / log(base);
} else {
tmp = log(re) / log(base);
}
return tmp;
}



Bits error versus re



Bits error versus im



Bits error versus base
Results
if re < -1.16319292035162362e119Initial program 55.4
Simplified55.3
Taylor expanded around -inf 8.7
Simplified8.7
if -1.16319292035162362e119 < re < -1.1637338402804801e-200 or 1.977245760406704e-239 < re < 3.1146883802374637e62Initial program 18.6
Simplified18.5
rmApplied add-sqr-sqrt_binary64_77218.5
if -1.1637338402804801e-200 < re < 1.977245760406704e-239Initial program 31.1
Simplified31.1
rmApplied pow1/2_binary64_82831.1
Applied log-pow_binary64_83731.1
Applied associate-/l*_binary64_69831.1
Taylor expanded around 0 33.7
if 3.1146883802374637e62 < re Initial program 44.8
Simplified44.8
Taylor expanded around inf 10.7
Final simplification17.7
herbie shell --seed 2020299
(FPCore (re im base)
:name "math.log/2 on complex, real part"
:precision binary64
(/ (+ (* (log (sqrt (+ (* re re) (* im im)))) (log base)) (* (atan2 im re) 0.0)) (+ (* (log base) (log base)) (* 0.0 0.0))))