(FPCore (u1 u2) :precision binary64 (+ (* (* (/ 1.0 6.0) (pow (* -2.0 (log u1)) 0.5)) (cos (* (* 2.0 PI) u2))) 0.5))
(FPCore (u1 u2) :precision binary64 (fma (* (sqrt 0.16666666666666666) (sqrt (log (cbrt (/ 1.0 u1))))) (cos (* (* 2.0 PI) u2)) 0.5))
double code(double u1, double u2) {
return (((1.0 / 6.0) * pow((-2.0 * log(u1)), 0.5)) * cos(((2.0 * ((double) M_PI)) * u2))) + 0.5;
}
double code(double u1, double u2) {
return fma((sqrt(0.16666666666666666) * sqrt(log(cbrt((1.0 / u1))))), cos(((2.0 * ((double) M_PI)) * u2)), 0.5);
}
function code(u1, u2) return Float64(Float64(Float64(Float64(1.0 / 6.0) * (Float64(-2.0 * log(u1)) ^ 0.5)) * cos(Float64(Float64(2.0 * pi) * u2))) + 0.5) end
function code(u1, u2) return fma(Float64(sqrt(0.16666666666666666) * sqrt(log(cbrt(Float64(1.0 / u1))))), cos(Float64(Float64(2.0 * pi) * u2)), 0.5) end
code[u1_, u2_] := N[(N[(N[(N[(1.0 / 6.0), $MachinePrecision] * N[Power[N[(-2.0 * N[Log[u1], $MachinePrecision]), $MachinePrecision], 0.5], $MachinePrecision]), $MachinePrecision] * N[Cos[N[(N[(2.0 * Pi), $MachinePrecision] * u2), $MachinePrecision]], $MachinePrecision]), $MachinePrecision] + 0.5), $MachinePrecision]
code[u1_, u2_] := N[(N[(N[Sqrt[0.16666666666666666], $MachinePrecision] * N[Sqrt[N[Log[N[Power[N[(1.0 / u1), $MachinePrecision], 1/3], $MachinePrecision]], $MachinePrecision]], $MachinePrecision]), $MachinePrecision] * N[Cos[N[(N[(2.0 * Pi), $MachinePrecision] * u2), $MachinePrecision]], $MachinePrecision] + 0.5), $MachinePrecision]
\left(\frac{1}{6} \cdot {\left(-2 \cdot \log u1\right)}^{0.5}\right) \cdot \cos \left(\left(2 \cdot \pi\right) \cdot u2\right) + 0.5
\mathsf{fma}\left(\sqrt{0.16666666666666666} \cdot \sqrt{\log \left(\sqrt[3]{\frac{1}{u1}}\right)}, \cos \left(\left(2 \cdot \pi\right) \cdot u2\right), 0.5\right)



Bits error versus u1



Bits error versus u2
Initial program 0.4
Simplified0.4
Applied add-sqr-sqrt_binary640.4
Applied associate-*l*_binary640.3
Applied sqrt-unprod_binary640.3
Simplified0.3
Applied add-log-exp_binary640.3
Simplified0.3
Final simplification0.3
herbie shell --seed 2022137
(FPCore (u1 u2)
:name "normal distribution"
:precision binary64
:pre (and (and (<= 0.0 u1) (<= u1 1.0)) (and (<= 0.0 u2) (<= u2 1.0)))
(+ (* (* (/ 1.0 6.0) (pow (* -2.0 (log u1)) 0.5)) (cos (* (* 2.0 PI) u2))) 0.5))