(FPCore (re im) :precision binary64 (/ (log (sqrt (+ (* re re) (* im im)))) (log 10.0)))
(FPCore (re im) :precision binary64 (* (/ 1.0 (sqrt (log 10.0))) (* (log (hypot re im)) (pow (log 10.0) -0.5))))
double code(double re, double im) {
return log(sqrt(((re * re) + (im * im)))) / log(10.0);
}
double code(double re, double im) {
return (1.0 / sqrt(log(10.0))) * (log(hypot(re, im)) * pow(log(10.0), -0.5));
}
public static double code(double re, double im) {
return Math.log(Math.sqrt(((re * re) + (im * im)))) / Math.log(10.0);
}
public static double code(double re, double im) {
return (1.0 / Math.sqrt(Math.log(10.0))) * (Math.log(Math.hypot(re, im)) * Math.pow(Math.log(10.0), -0.5));
}
def code(re, im): return math.log(math.sqrt(((re * re) + (im * im)))) / math.log(10.0)
def code(re, im): return (1.0 / math.sqrt(math.log(10.0))) * (math.log(math.hypot(re, im)) * math.pow(math.log(10.0), -0.5))
function code(re, im) return Float64(log(sqrt(Float64(Float64(re * re) + Float64(im * im)))) / log(10.0)) end
function code(re, im) return Float64(Float64(1.0 / sqrt(log(10.0))) * Float64(log(hypot(re, im)) * (log(10.0) ^ -0.5))) end
function tmp = code(re, im) tmp = log(sqrt(((re * re) + (im * im)))) / log(10.0); end
function tmp = code(re, im) tmp = (1.0 / sqrt(log(10.0))) * (log(hypot(re, im)) * (log(10.0) ^ -0.5)); end
code[re_, im_] := N[(N[Log[N[Sqrt[N[(N[(re * re), $MachinePrecision] + N[(im * im), $MachinePrecision]), $MachinePrecision]], $MachinePrecision]], $MachinePrecision] / N[Log[10.0], $MachinePrecision]), $MachinePrecision]
code[re_, im_] := N[(N[(1.0 / N[Sqrt[N[Log[10.0], $MachinePrecision]], $MachinePrecision]), $MachinePrecision] * N[(N[Log[N[Sqrt[re ^ 2 + im ^ 2], $MachinePrecision]], $MachinePrecision] * N[Power[N[Log[10.0], $MachinePrecision], -0.5], $MachinePrecision]), $MachinePrecision]), $MachinePrecision]
\frac{\log \left(\sqrt{re \cdot re + im \cdot im}\right)}{\log 10}
\frac{1}{\sqrt{\log 10}} \cdot \left(\log \left(\mathsf{hypot}\left(re, im\right)\right) \cdot {\log 10}^{-0.5}\right)



Bits error versus re



Bits error versus im
Results
Initial program 32.7
Simplified0.6
Applied egg-rr0.5
Applied egg-rr0.4
Final simplification0.4
herbie shell --seed 2022155
(FPCore (re im)
:name "math.log10 on complex, real part"
:precision binary64
(/ (log (sqrt (+ (* re re) (* im im)))) (log 10.0)))