\sin^{-1} \left(\sqrt{\frac{1 - {\left(\frac{Om}{Omc}\right)}^{2}}{1 + 2 \cdot {\left(\frac{t}{\ell}\right)}^{2}}}\right)
\begin{array}{l}
t_1 := \frac{\ell \cdot \sqrt{0.5}}{t}\\
t_2 := 1 - {\left(\frac{Om}{Omc}\right)}^{2}\\
t_3 := \sqrt{t_2}\\
\mathbf{if}\;\frac{t}{\ell} \leq -1.2850873576773545 \cdot 10^{+64}:\\
\;\;\;\;\sin^{-1} \left(t_3 \cdot \left(-t_1\right)\right)\\
\mathbf{elif}\;\frac{t}{\ell} \leq 1.1091622406717377 \cdot 10^{+85}:\\
\;\;\;\;\sin^{-1} \left(\sqrt{\frac{t_2}{\mathsf{fma}\left(2, {\left(\frac{t}{\ell}\right)}^{2}, 1\right)}}\right)\\
\mathbf{else}:\\
\;\;\;\;\sin^{-1} \left(t_3 \cdot t_1\right)\\
\end{array}
(FPCore (t l Om Omc) :precision binary64 (asin (sqrt (/ (- 1.0 (pow (/ Om Omc) 2.0)) (+ 1.0 (* 2.0 (pow (/ t l) 2.0)))))))
(FPCore (t l Om Omc)
:precision binary64
(let* ((t_1 (/ (* l (sqrt 0.5)) t))
(t_2 (- 1.0 (pow (/ Om Omc) 2.0)))
(t_3 (sqrt t_2)))
(if (<= (/ t l) -1.2850873576773545e+64)
(asin (* t_3 (- t_1)))
(if (<= (/ t l) 1.1091622406717377e+85)
(asin (sqrt (/ t_2 (fma 2.0 (pow (/ t l) 2.0) 1.0))))
(asin (* t_3 t_1))))))double code(double t, double l, double Om, double Omc) {
return asin(sqrt((1.0 - pow((Om / Omc), 2.0)) / (1.0 + (2.0 * pow((t / l), 2.0)))));
}
double code(double t, double l, double Om, double Omc) {
double t_1 = (l * sqrt(0.5)) / t;
double t_2 = 1.0 - pow((Om / Omc), 2.0);
double t_3 = sqrt(t_2);
double tmp;
if ((t / l) <= -1.2850873576773545e+64) {
tmp = asin(t_3 * -t_1);
} else if ((t / l) <= 1.1091622406717377e+85) {
tmp = asin(sqrt(t_2 / fma(2.0, pow((t / l), 2.0), 1.0)));
} else {
tmp = asin(t_3 * t_1);
}
return tmp;
}



Bits error versus t



Bits error versus l



Bits error versus Om



Bits error versus Omc
if (/.f64 t l) < -1.2850873576773545e64Initial program 22.8
Simplified22.8
Taylor expanded in t around -inf 8.5
Simplified0.3
if -1.2850873576773545e64 < (/.f64 t l) < 1.10916224067173772e85Initial program 0.9
Simplified0.9
Applied *-un-lft-identity_binary640.9
if 1.10916224067173772e85 < (/.f64 t l) Initial program 25.6
Simplified25.6
Taylor expanded in t around inf 7.6
Simplified0.3
Final simplification0.7
herbie shell --seed 2022019
(FPCore (t l Om Omc)
:name "Toniolo and Linder, Equation (2)"
:precision binary64
(asin (sqrt (/ (- 1.0 (pow (/ Om Omc) 2.0)) (+ 1.0 (* 2.0 (pow (/ t l) 2.0)))))))