
(FPCore (x) :precision binary64 (- (/ (PI) 2.0) (* 2.0 (asin (sqrt (/ (- 1.0 x) 2.0))))))
\begin{array}{l}
\\
\frac{\mathsf{PI}\left(\right)}{2} - 2 \cdot \sin^{-1} \left(\sqrt{\frac{1 - x}{2}}\right)
\end{array}
Sampling outcomes in binary64 precision:
Herbie found 5 alternatives:
| Alternative | Accuracy | Speedup |
|---|
(FPCore (x) :precision binary64 (- (/ (PI) 2.0) (* 2.0 (asin (sqrt (/ (- 1.0 x) 2.0))))))
\begin{array}{l}
\\
\frac{\mathsf{PI}\left(\right)}{2} - 2 \cdot \sin^{-1} \left(\sqrt{\frac{1 - x}{2}}\right)
\end{array}
(FPCore (x)
:precision binary64
(let* ((t_0 (acos (sqrt (fma -0.5 x 0.5)))))
(*
(pow (fma (PI) -0.5 (* -2.0 t_0)) -1.0)
(- (* (* (PI) 0.25) (PI)) (* 4.0 (pow t_0 2.0))))))\begin{array}{l}
\\
\begin{array}{l}
t_0 := \cos^{-1} \left(\sqrt{\mathsf{fma}\left(-0.5, x, 0.5\right)}\right)\\
{\left(\mathsf{fma}\left(\mathsf{PI}\left(\right), -0.5, -2 \cdot t\_0\right)\right)}^{-1} \cdot \left(\left(\mathsf{PI}\left(\right) \cdot 0.25\right) \cdot \mathsf{PI}\left(\right) - 4 \cdot {t\_0}^{2}\right)
\end{array}
\end{array}
Initial program 5.5%
lift-asin.f64N/A
asin-acosN/A
lift-PI.f64N/A
lift-/.f64N/A
sub-negN/A
lift-/.f64N/A
div-invN/A
metadata-evalN/A
lower-fma.f64N/A
lower-neg.f64N/A
lower-acos.f647.2
lift-/.f64N/A
lift--.f64N/A
div-subN/A
metadata-evalN/A
sub-negN/A
+-commutativeN/A
div-invN/A
metadata-evalN/A
distribute-rgt-neg-inN/A
metadata-evalN/A
metadata-evalN/A
metadata-evalN/A
lower-fma.f64N/A
Applied rewrites7.2%
Taylor expanded in x around 0
cancel-sign-sub-invN/A
metadata-evalN/A
cancel-sign-sub-invN/A
metadata-evalN/A
sub-negN/A
distribute-lft-inN/A
associate-+r+N/A
Applied rewrites7.2%
Applied rewrites7.2%
Final simplification7.2%
(FPCore (x)
:precision binary64
(let* ((t_0 (acos (sqrt (fma -0.5 x 0.5)))))
(/
1.0
(/
(fma (PI) -0.5 (* -2.0 t_0))
(- (* (* (PI) 0.25) (PI)) (* 4.0 (pow t_0 2.0)))))))\begin{array}{l}
\\
\begin{array}{l}
t_0 := \cos^{-1} \left(\sqrt{\mathsf{fma}\left(-0.5, x, 0.5\right)}\right)\\
\frac{1}{\frac{\mathsf{fma}\left(\mathsf{PI}\left(\right), -0.5, -2 \cdot t\_0\right)}{\left(\mathsf{PI}\left(\right) \cdot 0.25\right) \cdot \mathsf{PI}\left(\right) - 4 \cdot {t\_0}^{2}}}
\end{array}
\end{array}
Initial program 5.5%
lift-asin.f64N/A
asin-acosN/A
lift-PI.f64N/A
lift-/.f64N/A
sub-negN/A
lift-/.f64N/A
div-invN/A
metadata-evalN/A
lower-fma.f64N/A
lower-neg.f64N/A
lower-acos.f647.2
lift-/.f64N/A
lift--.f64N/A
div-subN/A
metadata-evalN/A
sub-negN/A
+-commutativeN/A
div-invN/A
metadata-evalN/A
distribute-rgt-neg-inN/A
metadata-evalN/A
metadata-evalN/A
metadata-evalN/A
lower-fma.f64N/A
Applied rewrites7.2%
Taylor expanded in x around 0
cancel-sign-sub-invN/A
metadata-evalN/A
cancel-sign-sub-invN/A
metadata-evalN/A
sub-negN/A
distribute-lft-inN/A
associate-+r+N/A
Applied rewrites7.2%
Applied rewrites7.2%
Final simplification7.2%
(FPCore (x)
:precision binary64
(let* ((t_0 (acos (sqrt (fma -0.5 x 0.5)))))
(/
(- (* (* (PI) 0.25) (PI)) (* 4.0 (pow t_0 2.0)))
(fma (PI) -0.5 (* -2.0 t_0)))))\begin{array}{l}
\\
\begin{array}{l}
t_0 := \cos^{-1} \left(\sqrt{\mathsf{fma}\left(-0.5, x, 0.5\right)}\right)\\
\frac{\left(\mathsf{PI}\left(\right) \cdot 0.25\right) \cdot \mathsf{PI}\left(\right) - 4 \cdot {t\_0}^{2}}{\mathsf{fma}\left(\mathsf{PI}\left(\right), -0.5, -2 \cdot t\_0\right)}
\end{array}
\end{array}
Initial program 5.5%
lift-asin.f64N/A
asin-acosN/A
lift-PI.f64N/A
lift-/.f64N/A
sub-negN/A
lift-/.f64N/A
div-invN/A
metadata-evalN/A
lower-fma.f64N/A
lower-neg.f64N/A
lower-acos.f647.2
lift-/.f64N/A
lift--.f64N/A
div-subN/A
metadata-evalN/A
sub-negN/A
+-commutativeN/A
div-invN/A
metadata-evalN/A
distribute-rgt-neg-inN/A
metadata-evalN/A
metadata-evalN/A
metadata-evalN/A
lower-fma.f64N/A
Applied rewrites7.2%
Taylor expanded in x around 0
cancel-sign-sub-invN/A
metadata-evalN/A
cancel-sign-sub-invN/A
metadata-evalN/A
sub-negN/A
distribute-lft-inN/A
associate-+r+N/A
Applied rewrites7.2%
Applied rewrites7.2%
Final simplification7.2%
(FPCore (x) :precision binary64 (fma -0.5 (PI) (* (acos (sqrt (fma x -0.5 0.5))) 2.0)))
\begin{array}{l}
\\
\mathsf{fma}\left(-0.5, \mathsf{PI}\left(\right), \cos^{-1} \left(\sqrt{\mathsf{fma}\left(x, -0.5, 0.5\right)}\right) \cdot 2\right)
\end{array}
Initial program 5.5%
lift-asin.f64N/A
asin-acosN/A
lift-PI.f64N/A
lift-/.f64N/A
sub-negN/A
lift-/.f64N/A
div-invN/A
metadata-evalN/A
lower-fma.f64N/A
lower-neg.f64N/A
lower-acos.f647.2
lift-/.f64N/A
lift--.f64N/A
div-subN/A
metadata-evalN/A
sub-negN/A
+-commutativeN/A
div-invN/A
metadata-evalN/A
distribute-rgt-neg-inN/A
metadata-evalN/A
metadata-evalN/A
metadata-evalN/A
lower-fma.f64N/A
Applied rewrites7.2%
Taylor expanded in x around 0
cancel-sign-sub-invN/A
metadata-evalN/A
cancel-sign-sub-invN/A
metadata-evalN/A
sub-negN/A
distribute-lft-inN/A
associate-+r+N/A
Applied rewrites7.2%
(FPCore (x) :precision binary64 (fma -0.5 (PI) (* (acos (sqrt 0.5)) 2.0)))
\begin{array}{l}
\\
\mathsf{fma}\left(-0.5, \mathsf{PI}\left(\right), \cos^{-1} \left(\sqrt{0.5}\right) \cdot 2\right)
\end{array}
Initial program 5.5%
lift-asin.f64N/A
asin-acosN/A
lift-PI.f64N/A
lift-/.f64N/A
sub-negN/A
lift-/.f64N/A
div-invN/A
metadata-evalN/A
lower-fma.f64N/A
lower-neg.f64N/A
lower-acos.f647.2
lift-/.f64N/A
lift--.f64N/A
div-subN/A
metadata-evalN/A
sub-negN/A
+-commutativeN/A
div-invN/A
metadata-evalN/A
distribute-rgt-neg-inN/A
metadata-evalN/A
metadata-evalN/A
metadata-evalN/A
lower-fma.f64N/A
Applied rewrites7.2%
Taylor expanded in x around 0
cancel-sign-sub-invN/A
metadata-evalN/A
cancel-sign-sub-invN/A
metadata-evalN/A
sub-negN/A
distribute-lft-inN/A
associate-+r+N/A
Applied rewrites7.2%
Taylor expanded in x around 0
Applied rewrites5.4%
(FPCore (x) :precision binary64 (asin x))
double code(double x) {
return asin(x);
}
real(8) function code(x)
real(8), intent (in) :: x
code = asin(x)
end function
public static double code(double x) {
return Math.asin(x);
}
def code(x): return math.asin(x)
function code(x) return asin(x) end
function tmp = code(x) tmp = asin(x); end
code[x_] := N[ArcSin[x], $MachinePrecision]
\begin{array}{l}
\\
\sin^{-1} x
\end{array}
herbie shell --seed 2024244
(FPCore (x)
:name "Ian Simplification"
:precision binary64
:alt
(! :herbie-platform default (asin x))
(- (/ (PI) 2.0) (* 2.0 (asin (sqrt (/ (- 1.0 x) 2.0))))))