\sqrt{-\log \left(1 - u1\right)} \cdot \cos \left(\left(2 \cdot \pi\right) \cdot u2\right)
\begin{array}{l}
t_0 := \log \left(2 \cdot \pi\right) - \log u2\\
\sqrt{-\mathsf{log1p}\left(-u1\right)} \cdot \cos \left(e^{\frac{\log \left(\left(2 \cdot \pi\right) \cdot u2\right) \cdot t_0}{t_0}}\right)
\end{array}
(FPCore (cosTheta_i u1 u2) :precision binary32 (* (sqrt (- (log (- 1.0 u1)))) (cos (* (* 2.0 PI) u2))))
(FPCore (cosTheta_i u1 u2)
:precision binary32
(let* ((t_0 (- (log (* 2.0 PI)) (log u2))))
(*
(sqrt (- (log1p (- u1))))
(cos (exp (/ (* (log (* (* 2.0 PI) u2)) t_0) t_0))))))float code(float cosTheta_i, float u1, float u2) {
return sqrtf(-logf(1.0f - u1)) * cosf((2.0f * ((float) M_PI)) * u2);
}
float code(float cosTheta_i, float u1, float u2) {
float t_0 = logf(2.0f * ((float) M_PI)) - logf(u2);
return sqrtf(-log1pf(-u1)) * cosf(expf((logf((2.0f * ((float) M_PI)) * u2) * t_0) / t_0));
}



Bits error versus cosTheta_i



Bits error versus u1



Bits error versus u2
Results
Initial program 13.7
Simplified0.3
Applied add-exp-log_binary320.3
Applied add-exp-log_binary320.3
Applied prod-exp_binary320.3
Applied flip-+_binary320.4
Simplified0.3
Final simplification0.3
herbie shell --seed 2021280
(FPCore (cosTheta_i u1 u2)
:name "Beckmann Sample, near normal, slope_x"
:precision binary32
:pre (and (and (and (> cosTheta_i 0.9999) (<= cosTheta_i 1.0)) (and (<= 2.328306437e-10 u1) (<= u1 1.0))) (and (<= 2.328306437e-10 u2) (<= u2 1.0)))
(* (sqrt (- (log (- 1.0 u1)))) (cos (* (* 2.0 PI) u2))))