\frac{\log \left(\sqrt{re \cdot re + im \cdot im}\right)}{\log 10}\begin{array}{l}
\mathbf{if}\;re \le -8.26694151572358616 \cdot 10^{143}:\\
\;\;\;\;\frac{\frac{1}{2}}{\sqrt{\log 10}} \cdot \left(\sqrt{\frac{1}{\log 10}} \cdot \left(-2 \cdot \log \left(\frac{-1}{re}\right)\right)\right)\\
\mathbf{elif}\;re \le 7.6934269159483143 \cdot 10^{-4}:\\
\;\;\;\;\frac{\frac{1}{2}}{\sqrt{\log 10}} \cdot \log \left({\left(re \cdot re + im \cdot im\right)}^{\left(\frac{1}{\sqrt{\log 10}}\right)}\right)\\
\mathbf{else}:\\
\;\;\;\;\frac{\frac{1}{2}}{\sqrt{\log 10}} \cdot \left(\left(\sqrt{\frac{1}{\log 10}} \cdot \log re\right) \cdot 2\right)\\
\end{array}double code(double re, double im) {
return ((double) (((double) log(((double) sqrt(((double) (((double) (re * re)) + ((double) (im * im)))))))) / ((double) log(10.0))));
}
double code(double re, double im) {
double VAR;
if ((re <= -8.266941515723586e+143)) {
VAR = ((double) (((double) (0.5 / ((double) sqrt(((double) log(10.0)))))) * ((double) (((double) sqrt(((double) (1.0 / ((double) log(10.0)))))) * ((double) (-2.0 * ((double) log(((double) (-1.0 / re))))))))));
} else {
double VAR_1;
if ((re <= 0.0007693426915948314)) {
VAR_1 = ((double) (((double) (0.5 / ((double) sqrt(((double) log(10.0)))))) * ((double) log(((double) pow(((double) (((double) (re * re)) + ((double) (im * im)))), ((double) (1.0 / ((double) sqrt(((double) log(10.0))))))))))));
} else {
VAR_1 = ((double) (((double) (0.5 / ((double) sqrt(((double) log(10.0)))))) * ((double) (((double) (((double) sqrt(((double) (1.0 / ((double) log(10.0)))))) * ((double) log(re)))) * 2.0))));
}
VAR = VAR_1;
}
return VAR;
}



Bits error versus re



Bits error versus im
Results
if re < -8.26694151572358616e143Initial program 60.9
rmApplied add-sqr-sqrt60.9
Applied pow1/260.9
Applied log-pow60.9
Applied times-frac60.9
Taylor expanded around -inf 7.6
Simplified7.6
if -8.26694151572358616e143 < re < 7.6934269159483143e-4Initial program 22.4
rmApplied add-sqr-sqrt22.4
Applied pow1/222.4
Applied log-pow22.4
Applied times-frac22.4
rmApplied add-log-exp22.4
Simplified22.2
if 7.6934269159483143e-4 < re Initial program 38.9
rmApplied add-sqr-sqrt38.9
Applied pow1/238.9
Applied log-pow38.9
Applied times-frac38.9
Taylor expanded around inf 13.1
Simplified13.1
Final simplification18.0
herbie shell --seed 2020149
(FPCore (re im)
:name "math.log10 on complex, real part"
:precision binary64
(/ (log (sqrt (+ (* re re) (* im im)))) (log 10.0)))