
(FPCore (cosTheta alpha)
:precision binary32
(let* ((t_0 (- (* alpha alpha) 1.0)))
(/
t_0
(* (* (PI) (log (* alpha alpha))) (+ 1.0 (* (* t_0 cosTheta) cosTheta))))))\begin{array}{l}
\\
\begin{array}{l}
t_0 := \alpha \cdot \alpha - 1\\
\frac{t\_0}{\left(\mathsf{PI}\left(\right) \cdot \log \left(\alpha \cdot \alpha\right)\right) \cdot \left(1 + \left(t\_0 \cdot cosTheta\right) \cdot cosTheta\right)}
\end{array}
\end{array}
Sampling outcomes in binary32 precision:
Herbie found 14 alternatives:
| Alternative | Accuracy | Speedup |
|---|
(FPCore (cosTheta alpha)
:precision binary32
(let* ((t_0 (- (* alpha alpha) 1.0)))
(/
t_0
(* (* (PI) (log (* alpha alpha))) (+ 1.0 (* (* t_0 cosTheta) cosTheta))))))\begin{array}{l}
\\
\begin{array}{l}
t_0 := \alpha \cdot \alpha - 1\\
\frac{t\_0}{\left(\mathsf{PI}\left(\right) \cdot \log \left(\alpha \cdot \alpha\right)\right) \cdot \left(1 + \left(t\_0 \cdot cosTheta\right) \cdot cosTheta\right)}
\end{array}
\end{array}
(FPCore (cosTheta alpha) :precision binary32 (/ (+ (* (- alpha 1.0) alpha) (- alpha 1.0)) (* (+ (* (* cosTheta (- (* alpha alpha) 1.0)) cosTheta) 1.0) (* (log (* alpha alpha)) (PI)))))
\begin{array}{l}
\\
\frac{\left(\alpha - 1\right) \cdot \alpha + \left(\alpha - 1\right)}{\left(\left(cosTheta \cdot \left(\alpha \cdot \alpha - 1\right)\right) \cdot cosTheta + 1\right) \cdot \left(\log \left(\alpha \cdot \alpha\right) \cdot \mathsf{PI}\left(\right)\right)}
\end{array}
Initial program 98.2%
lift--.f32N/A
lift-*.f32N/A
difference-of-sqr-1N/A
*-commutativeN/A
distribute-lft-inN/A
lower-+.f32N/A
lower-*.f32N/A
lower--.f32N/A
lower-*.f32N/A
lower--.f3298.2
Applied rewrites98.2%
Final simplification98.2%
(FPCore (cosTheta alpha)
:precision binary32
(let* ((t_0 (- (* alpha alpha) 1.0)))
(/
t_0
(* (* (+ (PI) (PI)) (log alpha)) (+ (* (* cosTheta t_0) cosTheta) 1.0)))))\begin{array}{l}
\\
\begin{array}{l}
t_0 := \alpha \cdot \alpha - 1\\
\frac{t\_0}{\left(\left(\mathsf{PI}\left(\right) + \mathsf{PI}\left(\right)\right) \cdot \log \alpha\right) \cdot \left(\left(cosTheta \cdot t\_0\right) \cdot cosTheta + 1\right)}
\end{array}
\end{array}
Initial program 98.2%
lift-*.f32N/A
lift-log.f32N/A
lift-*.f32N/A
log-prodN/A
distribute-rgt-inN/A
distribute-lft-outN/A
lower-*.f32N/A
lower-log.f32N/A
lower-+.f3298.2
Applied rewrites98.2%
Final simplification98.2%
(FPCore (cosTheta alpha) :precision binary32 (/ (- (* alpha alpha) 1.0) (* (- 1.0 (* cosTheta cosTheta)) (* (log (* alpha alpha)) (PI)))))
\begin{array}{l}
\\
\frac{\alpha \cdot \alpha - 1}{\left(1 - cosTheta \cdot cosTheta\right) \cdot \left(\log \left(\alpha \cdot \alpha\right) \cdot \mathsf{PI}\left(\right)\right)}
\end{array}
Initial program 98.2%
Taylor expanded in alpha around 0
mul-1-negN/A
unsub-negN/A
lower--.f32N/A
unpow2N/A
lower-*.f3296.9
Applied rewrites96.9%
Final simplification96.9%
(FPCore (cosTheta alpha) :precision binary32 (/ (- (* alpha alpha) 1.0) (* (* (- 1.0 (* cosTheta cosTheta)) (log alpha)) (* 2.0 (PI)))))
\begin{array}{l}
\\
\frac{\alpha \cdot \alpha - 1}{\left(\left(1 - cosTheta \cdot cosTheta\right) \cdot \log \alpha\right) \cdot \left(2 \cdot \mathsf{PI}\left(\right)\right)}
\end{array}
Initial program 98.2%
Taylor expanded in alpha around 0
mul-1-negN/A
unsub-negN/A
lower--.f32N/A
unpow2N/A
lower-*.f3296.9
Applied rewrites96.9%
Taylor expanded in alpha around 0
associate-*r*N/A
lower-*.f32N/A
lower-*.f32N/A
lower-PI.f32N/A
*-commutativeN/A
lower-*.f32N/A
mul-1-negN/A
unsub-negN/A
lower--.f32N/A
unpow2N/A
lower-*.f32N/A
lower-log.f3296.9
Applied rewrites96.9%
Final simplification96.9%
(FPCore (cosTheta alpha) :precision binary32 (/ (- (* alpha alpha) 1.0) (* (* (log alpha) (PI)) 2.0)))
\begin{array}{l}
\\
\frac{\alpha \cdot \alpha - 1}{\left(\log \alpha \cdot \mathsf{PI}\left(\right)\right) \cdot 2}
\end{array}
Initial program 98.2%
lift-*.f32N/A
lift-log.f32N/A
lift-*.f32N/A
log-prodN/A
distribute-rgt-inN/A
distribute-lft-outN/A
lower-*.f32N/A
lower-log.f32N/A
lower-+.f3298.2
Applied rewrites98.2%
Taylor expanded in cosTheta around 0
*-commutativeN/A
lower-*.f32N/A
*-commutativeN/A
lower-*.f32N/A
lower-log.f32N/A
lower-PI.f3294.2
Applied rewrites94.2%
(FPCore (cosTheta alpha) :precision binary32 (/ (- (* alpha alpha) 1.0) (* (log (* alpha alpha)) (PI))))
\begin{array}{l}
\\
\frac{\alpha \cdot \alpha - 1}{\log \left(\alpha \cdot \alpha\right) \cdot \mathsf{PI}\left(\right)}
\end{array}
Initial program 98.2%
Taylor expanded in alpha around 0
mul-1-negN/A
unsub-negN/A
lower--.f32N/A
unpow2N/A
lower-*.f3296.9
Applied rewrites96.9%
Taylor expanded in cosTheta around 0
*-commutativeN/A
lower-*.f32N/A
lower-log.f32N/A
unpow2N/A
lower-*.f32N/A
lower-PI.f3294.2
Applied rewrites94.2%
(FPCore (cosTheta alpha) :precision binary32 (/ -1.0 (* (* 2.0 (log alpha)) (PI))))
\begin{array}{l}
\\
\frac{-1}{\left(2 \cdot \log \alpha\right) \cdot \mathsf{PI}\left(\right)}
\end{array}
Initial program 98.2%
Taylor expanded in alpha around 0
Applied rewrites68.8%
Taylor expanded in cosTheta around 0
*-commutativeN/A
lower-*.f32N/A
lower-log.f32N/A
unpow2N/A
lower-*.f32N/A
lower-PI.f3267.1
Applied rewrites67.1%
Taylor expanded in alpha around 0
Applied rewrites67.1%
Final simplification67.1%
(FPCore (cosTheta alpha) :precision binary32 (fma (/ 1.0 (* (* (* cosTheta (* alpha alpha)) cosTheta) (PI))) (/ (* alpha alpha) (/ 0.0 0.0)) (/ -1.0 (* (* (- 1.0 (* cosTheta cosTheta)) (PI)) (/ 0.0 0.0)))))
\begin{array}{l}
\\
\mathsf{fma}\left(\frac{1}{\left(\left(cosTheta \cdot \left(\alpha \cdot \alpha\right)\right) \cdot cosTheta\right) \cdot \mathsf{PI}\left(\right)}, \frac{\alpha \cdot \alpha}{\frac{0}{0}}, \frac{-1}{\left(\left(1 - cosTheta \cdot cosTheta\right) \cdot \mathsf{PI}\left(\right)\right) \cdot \frac{0}{0}}\right)
\end{array}
Initial program 98.2%
Applied rewrites-0.0%
Taylor expanded in alpha around 0
mul-1-negN/A
unsub-negN/A
lower--.f32N/A
unpow2N/A
lower-*.f32-0.0
Applied rewrites-0.0%
Taylor expanded in alpha around inf
unpow2N/A
associate-*r*N/A
lower-*.f32N/A
lower-*.f32N/A
unpow2N/A
lower-*.f32-0.0
Applied rewrites0.0%
Final simplification-0.0%
(FPCore (cosTheta alpha) :precision binary32 (fma (/ 1.0 (* (* (* (fma alpha alpha -1.0) cosTheta) cosTheta) (PI))) (/ (* alpha alpha) (/ 0.0 0.0)) (/ -1.0 (* (* 1.0 (PI)) (/ 0.0 0.0)))))
\begin{array}{l}
\\
\mathsf{fma}\left(\frac{1}{\left(\left(\mathsf{fma}\left(\alpha, \alpha, -1\right) \cdot cosTheta\right) \cdot cosTheta\right) \cdot \mathsf{PI}\left(\right)}, \frac{\alpha \cdot \alpha}{\frac{0}{0}}, \frac{-1}{\left(1 \cdot \mathsf{PI}\left(\right)\right) \cdot \frac{0}{0}}\right)
\end{array}
Initial program 98.2%
Applied rewrites-0.0%
Applied rewrites-0.0%
Taylor expanded in cosTheta around inf
*-commutativeN/A
unpow2N/A
associate-*r*N/A
lower-*.f32N/A
lower-*.f32N/A
sub-negN/A
unpow2N/A
metadata-evalN/A
lower-fma.f32-0.0
Applied rewrites-0.0%
Taylor expanded in cosTheta around 0
Applied rewrites-0.0%
Final simplification-0.0%
(FPCore (cosTheta alpha) :precision binary32 (fma (/ alpha (* (fma (* (fma alpha alpha -1.0) cosTheta) cosTheta 1.0) (PI))) (/ alpha (/ 0.0 0.0)) (/ -1.0 (* (* 1.0 (PI)) (/ 0.0 0.0)))))
\begin{array}{l}
\\
\mathsf{fma}\left(\frac{\alpha}{\mathsf{fma}\left(\mathsf{fma}\left(\alpha, \alpha, -1\right) \cdot cosTheta, cosTheta, 1\right) \cdot \mathsf{PI}\left(\right)}, \frac{\alpha}{\frac{0}{0}}, \frac{-1}{\left(1 \cdot \mathsf{PI}\left(\right)\right) \cdot \frac{0}{0}}\right)
\end{array}
Initial program 98.2%
Applied rewrites-0.0%
Taylor expanded in cosTheta around 0
Applied rewrites-0.0%
Final simplification-0.0%
(FPCore (cosTheta alpha) :precision binary32 (fma (/ 1.0 (* 1.0 (PI))) (/ (* alpha alpha) (/ 0.0 0.0)) (/ -1.0 (* (* (- 1.0 (* cosTheta cosTheta)) (PI)) (/ 0.0 0.0)))))
\begin{array}{l}
\\
\mathsf{fma}\left(\frac{1}{1 \cdot \mathsf{PI}\left(\right)}, \frac{\alpha \cdot \alpha}{\frac{0}{0}}, \frac{-1}{\left(\left(1 - cosTheta \cdot cosTheta\right) \cdot \mathsf{PI}\left(\right)\right) \cdot \frac{0}{0}}\right)
\end{array}
Initial program 98.2%
Applied rewrites-0.0%
Taylor expanded in alpha around 0
mul-1-negN/A
unsub-negN/A
lower--.f32N/A
unpow2N/A
lower-*.f32-0.0
Applied rewrites-0.0%
Taylor expanded in cosTheta around 0
Applied rewrites0.0%
Final simplification-0.0%
(FPCore (cosTheta alpha) :precision binary32 (fma (/ 1.0 (PI)) (/ (* alpha alpha) (/ 0.0 0.0)) (/ -1.0 (* (* (- 1.0 (* cosTheta cosTheta)) (PI)) (/ 0.0 0.0)))))
\begin{array}{l}
\\
\mathsf{fma}\left(\frac{1}{\mathsf{PI}\left(\right)}, \frac{\alpha \cdot \alpha}{\frac{0}{0}}, \frac{-1}{\left(\left(1 - cosTheta \cdot cosTheta\right) \cdot \mathsf{PI}\left(\right)\right) \cdot \frac{0}{0}}\right)
\end{array}
Initial program 98.2%
Applied rewrites-0.0%
Taylor expanded in alpha around 0
mul-1-negN/A
unsub-negN/A
lower--.f32N/A
unpow2N/A
lower-*.f32-0.0
Applied rewrites-0.0%
Taylor expanded in cosTheta around 0
lower-PI.f32-0.0
Applied rewrites0.0%
Final simplification-0.0%
(FPCore (cosTheta alpha) :precision binary32 (fma (/ alpha (PI)) (/ alpha (/ 0.0 0.0)) (/ -1.0 (* (* 1.0 (PI)) (/ 0.0 0.0)))))
\begin{array}{l}
\\
\mathsf{fma}\left(\frac{\alpha}{\mathsf{PI}\left(\right)}, \frac{\alpha}{\frac{0}{0}}, \frac{-1}{\left(1 \cdot \mathsf{PI}\left(\right)\right) \cdot \frac{0}{0}}\right)
\end{array}
Initial program 98.2%
Applied rewrites-0.0%
Taylor expanded in cosTheta around 0
lower-/.f32N/A
lower-PI.f32-0.0
Applied rewrites-0.0%
Taylor expanded in cosTheta around 0
Applied rewrites0.0%
Final simplification-0.0%
(FPCore (cosTheta alpha) :precision binary32 (/ (fma alpha alpha -1.0) (* (PI) (/ 0.0 0.0))))
\begin{array}{l}
\\
\frac{\mathsf{fma}\left(\alpha, \alpha, -1\right)}{\mathsf{PI}\left(\right) \cdot \frac{0}{0}}
\end{array}
Initial program 98.2%
lift--.f32N/A
sub-negN/A
lift-*.f32N/A
lower-fma.f32N/A
metadata-eval12.4
lift-*.f32N/A
lift-*.f32N/A
associate-*l*N/A
*-commutativeN/A
associate-*r*N/A
lower-*.f32N/A
Applied rewrites-0.0%
Taylor expanded in cosTheta around 0
lower-PI.f32-0.0
Applied rewrites-0.0%
herbie shell --seed 2024285
(FPCore (cosTheta alpha)
:name "GTR1 distribution"
:precision binary32
:pre (and (and (<= 0.0 cosTheta) (<= cosTheta 1.0)) (and (<= 0.0001 alpha) (<= alpha 1.0)))
(/ (- (* alpha alpha) 1.0) (* (* (PI) (log (* alpha alpha))) (+ 1.0 (* (* (- (* alpha alpha) 1.0) cosTheta) cosTheta)))))