
(FPCore (s u) :precision binary32 (* (* 3.0 s) (log (/ 1.0 (- 1.0 (/ (- u 0.25) 0.75))))))
float code(float s, float u) {
return (3.0f * s) * logf((1.0f / (1.0f - ((u - 0.25f) / 0.75f))));
}
real(4) function code(s, u)
real(4), intent (in) :: s
real(4), intent (in) :: u
code = (3.0e0 * s) * log((1.0e0 / (1.0e0 - ((u - 0.25e0) / 0.75e0))))
end function
function code(s, u) return Float32(Float32(Float32(3.0) * s) * log(Float32(Float32(1.0) / Float32(Float32(1.0) - Float32(Float32(u - Float32(0.25)) / Float32(0.75)))))) end
function tmp = code(s, u) tmp = (single(3.0) * s) * log((single(1.0) / (single(1.0) - ((u - single(0.25)) / single(0.75))))); end
\begin{array}{l}
\\
\left(3 \cdot s\right) \cdot \log \left(\frac{1}{1 - \frac{u - 0.25}{0.75}}\right)
\end{array}
Sampling outcomes in binary32 precision:
Herbie found 7 alternatives:
| Alternative | Accuracy | Speedup |
|---|
(FPCore (s u) :precision binary32 (* (* 3.0 s) (log (/ 1.0 (- 1.0 (/ (- u 0.25) 0.75))))))
float code(float s, float u) {
return (3.0f * s) * logf((1.0f / (1.0f - ((u - 0.25f) / 0.75f))));
}
real(4) function code(s, u)
real(4), intent (in) :: s
real(4), intent (in) :: u
code = (3.0e0 * s) * log((1.0e0 / (1.0e0 - ((u - 0.25e0) / 0.75e0))))
end function
function code(s, u) return Float32(Float32(Float32(3.0) * s) * log(Float32(Float32(1.0) / Float32(Float32(1.0) - Float32(Float32(u - Float32(0.25)) / Float32(0.75)))))) end
function tmp = code(s, u) tmp = (single(3.0) * s) * log((single(1.0) / (single(1.0) - ((u - single(0.25)) / single(0.75))))); end
\begin{array}{l}
\\
\left(3 \cdot s\right) \cdot \log \left(\frac{1}{1 - \frac{u - 0.25}{0.75}}\right)
\end{array}
(FPCore (s u) :precision binary32 (* s (* (log1p (/ (- 0.25 u) 0.75)) -3.0)))
float code(float s, float u) {
return s * (log1pf(((0.25f - u) / 0.75f)) * -3.0f);
}
function code(s, u) return Float32(s * Float32(log1p(Float32(Float32(Float32(0.25) - u) / Float32(0.75))) * Float32(-3.0))) end
\begin{array}{l}
\\
s \cdot \left(\mathsf{log1p}\left(\frac{0.25 - u}{0.75}\right) \cdot -3\right)
\end{array}
Initial program 95.6%
associate-*l*95.6%
*-commutative95.6%
associate-*l*95.7%
log-rec96.7%
distribute-lft-neg-out96.7%
distribute-rgt-neg-in96.7%
sub-neg96.7%
log1p-def98.4%
distribute-neg-frac98.4%
sub-neg98.4%
+-commutative98.4%
distribute-neg-in98.4%
metadata-eval98.4%
metadata-eval98.4%
unsub-neg98.4%
metadata-eval98.4%
Simplified98.4%
Final simplification98.4%
(FPCore (s u) :precision binary32 (* -3.0 (* s (log (+ 1.3333333333333333 (* u -1.3333333333333333))))))
float code(float s, float u) {
return -3.0f * (s * logf((1.3333333333333333f + (u * -1.3333333333333333f))));
}
real(4) function code(s, u)
real(4), intent (in) :: s
real(4), intent (in) :: u
code = (-3.0e0) * (s * log((1.3333333333333333e0 + (u * (-1.3333333333333333e0)))))
end function
function code(s, u) return Float32(Float32(-3.0) * Float32(s * log(Float32(Float32(1.3333333333333333) + Float32(u * Float32(-1.3333333333333333)))))) end
function tmp = code(s, u) tmp = single(-3.0) * (s * log((single(1.3333333333333333) + (u * single(-1.3333333333333333))))); end
\begin{array}{l}
\\
-3 \cdot \left(s \cdot \log \left(1.3333333333333333 + u \cdot -1.3333333333333333\right)\right)
\end{array}
Initial program 95.6%
*-commutative95.6%
log-rec96.7%
distribute-lft-neg-out96.7%
distribute-rgt-neg-in96.7%
Simplified96.8%
Taylor expanded in s around 0 96.4%
Final simplification96.4%
(FPCore (s u) :precision binary32 (* -3.0 (* s (log1p (* (- 0.25 u) 1.3333333333333333)))))
float code(float s, float u) {
return -3.0f * (s * log1pf(((0.25f - u) * 1.3333333333333333f)));
}
function code(s, u) return Float32(Float32(-3.0) * Float32(s * log1p(Float32(Float32(Float32(0.25) - u) * Float32(1.3333333333333333))))) end
\begin{array}{l}
\\
-3 \cdot \left(s \cdot \mathsf{log1p}\left(\left(0.25 - u\right) \cdot 1.3333333333333333\right)\right)
\end{array}
Initial program 95.6%
associate-*l*95.6%
*-commutative95.6%
associate-*l*95.7%
log-rec96.7%
distribute-lft-neg-out96.7%
distribute-rgt-neg-in96.7%
sub-neg96.7%
log1p-def98.4%
distribute-neg-frac98.4%
sub-neg98.4%
+-commutative98.4%
distribute-neg-in98.4%
metadata-eval98.4%
metadata-eval98.4%
unsub-neg98.4%
metadata-eval98.4%
Simplified98.4%
Taylor expanded in s around 0 96.5%
log1p-def97.9%
Simplified97.9%
Final simplification97.9%
(FPCore (s u) :precision binary32 (* s (* -3.0 (log1p (* (- 0.25 u) 1.3333333333333333)))))
float code(float s, float u) {
return s * (-3.0f * log1pf(((0.25f - u) * 1.3333333333333333f)));
}
function code(s, u) return Float32(s * Float32(Float32(-3.0) * log1p(Float32(Float32(Float32(0.25) - u) * Float32(1.3333333333333333))))) end
\begin{array}{l}
\\
s \cdot \left(-3 \cdot \mathsf{log1p}\left(\left(0.25 - u\right) \cdot 1.3333333333333333\right)\right)
\end{array}
Initial program 95.6%
associate-*l*95.6%
*-commutative95.6%
associate-*l*95.7%
log-rec96.7%
distribute-lft-neg-out96.7%
distribute-rgt-neg-in96.7%
sub-neg96.7%
log1p-def98.4%
distribute-neg-frac98.4%
sub-neg98.4%
+-commutative98.4%
distribute-neg-in98.4%
metadata-eval98.4%
metadata-eval98.4%
unsub-neg98.4%
metadata-eval98.4%
Simplified98.4%
expm1-log1p-u78.2%
expm1-udef76.4%
div-inv76.3%
metadata-eval76.3%
Applied egg-rr76.3%
expm1-def78.0%
expm1-log1p98.1%
*-commutative98.1%
Simplified98.1%
Final simplification98.1%
(FPCore (s u) :precision binary32 (* 3.0 (* s (log 1.3333333333333333))))
float code(float s, float u) {
return 3.0f * (s * logf(1.3333333333333333f));
}
real(4) function code(s, u)
real(4), intent (in) :: s
real(4), intent (in) :: u
code = 3.0e0 * (s * log(1.3333333333333333e0))
end function
function code(s, u) return Float32(Float32(3.0) * Float32(s * log(Float32(1.3333333333333333)))) end
function tmp = code(s, u) tmp = single(3.0) * (s * log(single(1.3333333333333333))); end
\begin{array}{l}
\\
3 \cdot \left(s \cdot \log 1.3333333333333333\right)
\end{array}
Initial program 95.6%
associate-*l*95.6%
*-commutative95.6%
associate-*l*95.7%
log-rec96.7%
distribute-lft-neg-out96.7%
distribute-rgt-neg-in96.7%
sub-neg96.7%
log1p-def98.4%
distribute-neg-frac98.4%
sub-neg98.4%
+-commutative98.4%
distribute-neg-in98.4%
metadata-eval98.4%
metadata-eval98.4%
unsub-neg98.4%
metadata-eval98.4%
Simplified98.4%
add-sqr-sqrt97.8%
sqrt-unprod98.4%
swap-sqr98.3%
pow298.3%
div-inv98.0%
metadata-eval98.0%
metadata-eval98.0%
Applied egg-rr98.0%
Taylor expanded in u around 0 28.4%
*-commutative28.4%
Simplified28.4%
Final simplification28.4%
(FPCore (s u) :precision binary32 (* (log 1.3333333333333333) (* s 3.0)))
float code(float s, float u) {
return logf(1.3333333333333333f) * (s * 3.0f);
}
real(4) function code(s, u)
real(4), intent (in) :: s
real(4), intent (in) :: u
code = log(1.3333333333333333e0) * (s * 3.0e0)
end function
function code(s, u) return Float32(log(Float32(1.3333333333333333)) * Float32(s * Float32(3.0))) end
function tmp = code(s, u) tmp = log(single(1.3333333333333333)) * (s * single(3.0)); end
\begin{array}{l}
\\
\log 1.3333333333333333 \cdot \left(s \cdot 3\right)
\end{array}
Initial program 95.6%
associate-*l*95.6%
*-commutative95.6%
associate-*l*95.7%
log-rec96.7%
distribute-lft-neg-out96.7%
distribute-rgt-neg-in96.7%
sub-neg96.7%
log1p-def98.4%
distribute-neg-frac98.4%
sub-neg98.4%
+-commutative98.4%
distribute-neg-in98.4%
metadata-eval98.4%
metadata-eval98.4%
unsub-neg98.4%
metadata-eval98.4%
Simplified98.4%
add-sqr-sqrt97.8%
sqrt-unprod98.4%
swap-sqr98.3%
pow298.3%
div-inv98.0%
metadata-eval98.0%
metadata-eval98.0%
Applied egg-rr98.0%
Taylor expanded in u around 0 28.4%
associate-*r*28.4%
*-commutative28.4%
Simplified28.4%
Final simplification28.4%
(FPCore (s u) :precision binary32 (* s (log 0.421875)))
float code(float s, float u) {
return s * logf(0.421875f);
}
real(4) function code(s, u)
real(4), intent (in) :: s
real(4), intent (in) :: u
code = s * log(0.421875e0)
end function
function code(s, u) return Float32(s * log(Float32(0.421875))) end
function tmp = code(s, u) tmp = s * log(single(0.421875)); end
\begin{array}{l}
\\
s \cdot \log 0.421875
\end{array}
Initial program 95.6%
associate-*l*95.6%
*-commutative95.6%
associate-*l*95.7%
log-rec96.7%
distribute-lft-neg-out96.7%
distribute-rgt-neg-in96.7%
sub-neg96.7%
log1p-def98.4%
distribute-neg-frac98.4%
sub-neg98.4%
+-commutative98.4%
distribute-neg-in98.4%
metadata-eval98.4%
metadata-eval98.4%
unsub-neg98.4%
metadata-eval98.4%
Simplified98.4%
add-log-exp97.4%
log1p-udef96.2%
exp-to-pow96.3%
div-inv96.2%
metadata-eval96.2%
Applied egg-rr96.2%
Taylor expanded in u around 0 7.9%
Final simplification7.9%
herbie shell --seed 2023207
(FPCore (s u)
:name "Disney BSSRDF, sample scattering profile, upper"
:precision binary32
:pre (and (and (<= 0.0 s) (<= s 256.0)) (and (<= 0.25 u) (<= u 1.0)))
(* (* 3.0 s) (log (/ 1.0 (- 1.0 (/ (- u 0.25) 0.75))))))