
(FPCore (s r) :precision binary32 (+ (/ (* 0.25 (exp (/ (- r) s))) (* (* (* 2.0 PI) s) r)) (/ (* 0.75 (exp (/ (- r) (* 3.0 s)))) (* (* (* 6.0 PI) s) r))))
float code(float s, float r) {
return ((0.25f * expf((-r / s))) / (((2.0f * ((float) M_PI)) * s) * r)) + ((0.75f * expf((-r / (3.0f * s)))) / (((6.0f * ((float) M_PI)) * s) * r));
}
function code(s, r) return Float32(Float32(Float32(Float32(0.25) * exp(Float32(Float32(-r) / s))) / Float32(Float32(Float32(Float32(2.0) * Float32(pi)) * s) * r)) + Float32(Float32(Float32(0.75) * exp(Float32(Float32(-r) / Float32(Float32(3.0) * s)))) / Float32(Float32(Float32(Float32(6.0) * Float32(pi)) * s) * r))) end
function tmp = code(s, r) tmp = ((single(0.25) * exp((-r / s))) / (((single(2.0) * single(pi)) * s) * r)) + ((single(0.75) * exp((-r / (single(3.0) * s)))) / (((single(6.0) * single(pi)) * s) * r)); end
\begin{array}{l}
\\
\frac{0.25 \cdot e^{\frac{-r}{s}}}{\left(\left(2 \cdot \pi\right) \cdot s\right) \cdot r} + \frac{0.75 \cdot e^{\frac{-r}{3 \cdot s}}}{\left(\left(6 \cdot \pi\right) \cdot s\right) \cdot r}
\end{array}
Sampling outcomes in binary32 precision:
Herbie found 13 alternatives:
| Alternative | Accuracy | Speedup |
|---|
(FPCore (s r) :precision binary32 (+ (/ (* 0.25 (exp (/ (- r) s))) (* (* (* 2.0 PI) s) r)) (/ (* 0.75 (exp (/ (- r) (* 3.0 s)))) (* (* (* 6.0 PI) s) r))))
float code(float s, float r) {
return ((0.25f * expf((-r / s))) / (((2.0f * ((float) M_PI)) * s) * r)) + ((0.75f * expf((-r / (3.0f * s)))) / (((6.0f * ((float) M_PI)) * s) * r));
}
function code(s, r) return Float32(Float32(Float32(Float32(0.25) * exp(Float32(Float32(-r) / s))) / Float32(Float32(Float32(Float32(2.0) * Float32(pi)) * s) * r)) + Float32(Float32(Float32(0.75) * exp(Float32(Float32(-r) / Float32(Float32(3.0) * s)))) / Float32(Float32(Float32(Float32(6.0) * Float32(pi)) * s) * r))) end
function tmp = code(s, r) tmp = ((single(0.25) * exp((-r / s))) / (((single(2.0) * single(pi)) * s) * r)) + ((single(0.75) * exp((-r / (single(3.0) * s)))) / (((single(6.0) * single(pi)) * s) * r)); end
\begin{array}{l}
\\
\frac{0.25 \cdot e^{\frac{-r}{s}}}{\left(\left(2 \cdot \pi\right) \cdot s\right) \cdot r} + \frac{0.75 \cdot e^{\frac{-r}{3 \cdot s}}}{\left(\left(6 \cdot \pi\right) \cdot s\right) \cdot r}
\end{array}
(FPCore (s r)
:precision binary32
(let* ((t_0 (/ (- r) s)))
(+
(/ (* 0.25 (exp t_0)) (* r (* s (* 2.0 PI))))
(/ (* 0.75 (exp (/ t_0 3.0))) (* (* s 6.0) (* r PI))))))
float code(float s, float r) {
float t_0 = -r / s;
return ((0.25f * expf(t_0)) / (r * (s * (2.0f * ((float) M_PI))))) + ((0.75f * expf((t_0 / 3.0f))) / ((s * 6.0f) * (r * ((float) M_PI))));
}
function code(s, r) t_0 = Float32(Float32(-r) / s) return Float32(Float32(Float32(Float32(0.25) * exp(t_0)) / Float32(r * Float32(s * Float32(Float32(2.0) * Float32(pi))))) + Float32(Float32(Float32(0.75) * exp(Float32(t_0 / Float32(3.0)))) / Float32(Float32(s * Float32(6.0)) * Float32(r * Float32(pi))))) end
function tmp = code(s, r) t_0 = -r / s; tmp = ((single(0.25) * exp(t_0)) / (r * (s * (single(2.0) * single(pi))))) + ((single(0.75) * exp((t_0 / single(3.0)))) / ((s * single(6.0)) * (r * single(pi)))); end
\begin{array}{l}
\\
\begin{array}{l}
t_0 := \frac{-r}{s}\\
\frac{0.25 \cdot e^{t_0}}{r \cdot \left(s \cdot \left(2 \cdot \pi\right)\right)} + \frac{0.75 \cdot e^{\frac{t_0}{3}}}{\left(s \cdot 6\right) \cdot \left(r \cdot \pi\right)}
\end{array}
\end{array}
Initial program 99.4%
add-cbrt-cube99.4%
*-commutative99.4%
*-commutative99.4%
*-commutative99.4%
Applied egg-rr99.4%
associate-*l*99.4%
associate-/r*99.4%
associate-/r*99.4%
associate-/r*99.4%
Simplified99.4%
associate-*r*99.4%
add-cbrt-cube99.4%
Applied egg-rr99.4%
Taylor expanded in s around 0 99.4%
associate-*r*99.5%
*-commutative99.5%
Simplified99.5%
Final simplification99.5%
(FPCore (s r) :precision binary32 (* (/ (/ 0.125 (* r PI)) s) (+ (exp (/ (- r) s)) (exp (* (/ r s) -0.3333333333333333)))))
float code(float s, float r) {
return ((0.125f / (r * ((float) M_PI))) / s) * (expf((-r / s)) + expf(((r / s) * -0.3333333333333333f)));
}
function code(s, r) return Float32(Float32(Float32(Float32(0.125) / Float32(r * Float32(pi))) / s) * Float32(exp(Float32(Float32(-r) / s)) + exp(Float32(Float32(r / s) * Float32(-0.3333333333333333))))) end
function tmp = code(s, r) tmp = ((single(0.125) / (r * single(pi))) / s) * (exp((-r / s)) + exp(((r / s) * single(-0.3333333333333333)))); end
\begin{array}{l}
\\
\frac{\frac{0.125}{r \cdot \pi}}{s} \cdot \left(e^{\frac{-r}{s}} + e^{\frac{r}{s} \cdot -0.3333333333333333}\right)
\end{array}
Initial program 99.4%
associate-*l/96.7%
associate-*l/96.7%
associate-*l*96.7%
associate-*l*96.6%
associate-/r*96.6%
metadata-eval96.6%
metadata-eval96.6%
associate-/r*96.6%
associate-*l*96.6%
associate-*l*96.6%
distribute-lft-out96.6%
Simplified96.5%
Taylor expanded in r around inf 96.7%
Final simplification96.7%
(FPCore (s r) :precision binary32 (* 0.125 (/ (+ (exp (/ (- r) s)) (exp (* (/ r s) -0.3333333333333333))) (* s (* r PI)))))
float code(float s, float r) {
return 0.125f * ((expf((-r / s)) + expf(((r / s) * -0.3333333333333333f))) / (s * (r * ((float) M_PI))));
}
function code(s, r) return Float32(Float32(0.125) * Float32(Float32(exp(Float32(Float32(-r) / s)) + exp(Float32(Float32(r / s) * Float32(-0.3333333333333333)))) / Float32(s * Float32(r * Float32(pi))))) end
function tmp = code(s, r) tmp = single(0.125) * ((exp((-r / s)) + exp(((r / s) * single(-0.3333333333333333)))) / (s * (r * single(pi)))); end
\begin{array}{l}
\\
0.125 \cdot \frac{e^{\frac{-r}{s}} + e^{\frac{r}{s} \cdot -0.3333333333333333}}{s \cdot \left(r \cdot \pi\right)}
\end{array}
Initial program 99.4%
associate-*l/96.7%
associate-*l/96.7%
associate-*l*96.7%
associate-*l*96.6%
associate-/r*96.6%
metadata-eval96.6%
metadata-eval96.6%
associate-/r*96.6%
associate-*l*96.6%
associate-*l*96.6%
distribute-lft-out96.6%
Simplified96.5%
Taylor expanded in r around inf 99.4%
Final simplification99.4%
(FPCore (s r) :precision binary32 (/ 0.25 (* s (log1p (expm1 (* r PI))))))
float code(float s, float r) {
return 0.25f / (s * log1pf(expm1f((r * ((float) M_PI)))));
}
function code(s, r) return Float32(Float32(0.25) / Float32(s * log1p(expm1(Float32(r * Float32(pi)))))) end
\begin{array}{l}
\\
\frac{0.25}{s \cdot \mathsf{log1p}\left(\mathsf{expm1}\left(r \cdot \pi\right)\right)}
\end{array}
Initial program 99.4%
associate-*l/96.7%
associate-*l/96.7%
associate-*l*96.7%
associate-*l*96.6%
associate-/r*96.6%
metadata-eval96.6%
metadata-eval96.6%
associate-/r*96.6%
associate-*l*96.6%
associate-*l*96.6%
distribute-lft-out96.6%
Simplified96.5%
Taylor expanded in r around 0 8.6%
log1p-expm1-u47.8%
*-commutative47.8%
Applied egg-rr47.8%
Final simplification47.8%
(FPCore (s r) :precision binary32 (* (/ 0.125 (* s PI)) (+ (/ (exp (/ (- r) s)) r) (/ (+ (* (/ r s) -0.3333333333333333) 1.0) r))))
float code(float s, float r) {
return (0.125f / (s * ((float) M_PI))) * ((expf((-r / s)) / r) + ((((r / s) * -0.3333333333333333f) + 1.0f) / r));
}
function code(s, r) return Float32(Float32(Float32(0.125) / Float32(s * Float32(pi))) * Float32(Float32(exp(Float32(Float32(-r) / s)) / r) + Float32(Float32(Float32(Float32(r / s) * Float32(-0.3333333333333333)) + Float32(1.0)) / r))) end
function tmp = code(s, r) tmp = (single(0.125) / (s * single(pi))) * ((exp((-r / s)) / r) + ((((r / s) * single(-0.3333333333333333)) + single(1.0)) / r)); end
\begin{array}{l}
\\
\frac{0.125}{s \cdot \pi} \cdot \left(\frac{e^{\frac{-r}{s}}}{r} + \frac{\frac{r}{s} \cdot -0.3333333333333333 + 1}{r}\right)
\end{array}
Initial program 99.4%
times-frac99.4%
times-frac99.4%
associate-*l*99.3%
associate-/r*99.3%
metadata-eval99.3%
metadata-eval99.3%
associate-/r*99.3%
associate-*l*99.3%
distribute-lft-out99.3%
Simplified99.2%
Taylor expanded in r around 0 9.2%
Final simplification9.2%
(FPCore (s r) :precision binary32 (* (/ (/ 0.125 (* r PI)) s) (+ (exp (/ (- r) s)) (+ (* (/ r s) -0.3333333333333333) 1.0))))
float code(float s, float r) {
return ((0.125f / (r * ((float) M_PI))) / s) * (expf((-r / s)) + (((r / s) * -0.3333333333333333f) + 1.0f));
}
function code(s, r) return Float32(Float32(Float32(Float32(0.125) / Float32(r * Float32(pi))) / s) * Float32(exp(Float32(Float32(-r) / s)) + Float32(Float32(Float32(r / s) * Float32(-0.3333333333333333)) + Float32(1.0)))) end
function tmp = code(s, r) tmp = ((single(0.125) / (r * single(pi))) / s) * (exp((-r / s)) + (((r / s) * single(-0.3333333333333333)) + single(1.0))); end
\begin{array}{l}
\\
\frac{\frac{0.125}{r \cdot \pi}}{s} \cdot \left(e^{\frac{-r}{s}} + \left(\frac{r}{s} \cdot -0.3333333333333333 + 1\right)\right)
\end{array}
Initial program 99.4%
associate-*l/96.7%
associate-*l/96.7%
associate-*l*96.7%
associate-*l*96.6%
associate-/r*96.6%
metadata-eval96.6%
metadata-eval96.6%
associate-/r*96.6%
associate-*l*96.6%
associate-*l*96.6%
distribute-lft-out96.6%
Simplified96.5%
Taylor expanded in r around 0 9.2%
Final simplification9.2%
(FPCore (s r) :precision binary32 (* 0.125 (/ (+ (exp (/ (- r) s)) 1.0) (* r (* s PI)))))
float code(float s, float r) {
return 0.125f * ((expf((-r / s)) + 1.0f) / (r * (s * ((float) M_PI))));
}
function code(s, r) return Float32(Float32(0.125) * Float32(Float32(exp(Float32(Float32(-r) / s)) + Float32(1.0)) / Float32(r * Float32(s * Float32(pi))))) end
function tmp = code(s, r) tmp = single(0.125) * ((exp((-r / s)) + single(1.0)) / (r * (s * single(pi)))); end
\begin{array}{l}
\\
0.125 \cdot \frac{e^{\frac{-r}{s}} + 1}{r \cdot \left(s \cdot \pi\right)}
\end{array}
Initial program 99.4%
times-frac99.4%
times-frac99.4%
associate-*l*99.3%
associate-/r*99.3%
metadata-eval99.3%
metadata-eval99.3%
associate-/r*99.3%
associate-*l*99.3%
distribute-lft-out99.3%
Simplified99.2%
Taylor expanded in r around 0 9.0%
Taylor expanded in r around inf 9.0%
+-commutative9.0%
mul-1-neg9.0%
distribute-frac-neg9.0%
*-commutative9.0%
associate-*l*9.0%
*-commutative9.0%
Simplified9.0%
Final simplification9.0%
(FPCore (s r) :precision binary32 (* 0.125 (/ (+ (exp (/ (- r) s)) 1.0) (* s (* r PI)))))
float code(float s, float r) {
return 0.125f * ((expf((-r / s)) + 1.0f) / (s * (r * ((float) M_PI))));
}
function code(s, r) return Float32(Float32(0.125) * Float32(Float32(exp(Float32(Float32(-r) / s)) + Float32(1.0)) / Float32(s * Float32(r * Float32(pi))))) end
function tmp = code(s, r) tmp = single(0.125) * ((exp((-r / s)) + single(1.0)) / (s * (r * single(pi)))); end
\begin{array}{l}
\\
0.125 \cdot \frac{e^{\frac{-r}{s}} + 1}{s \cdot \left(r \cdot \pi\right)}
\end{array}
Initial program 99.4%
times-frac99.4%
times-frac99.4%
associate-*l*99.3%
associate-/r*99.3%
metadata-eval99.3%
metadata-eval99.3%
associate-/r*99.3%
associate-*l*99.3%
distribute-lft-out99.3%
Simplified99.2%
Taylor expanded in r around 0 9.0%
Taylor expanded in r around inf 9.0%
+-commutative9.0%
mul-1-neg9.0%
distribute-frac-neg9.0%
Simplified9.0%
Final simplification9.0%
(FPCore (s r) :precision binary32 (* (/ (/ 0.125 (* r PI)) s) (+ (exp (/ (- r) s)) 1.0)))
float code(float s, float r) {
return ((0.125f / (r * ((float) M_PI))) / s) * (expf((-r / s)) + 1.0f);
}
function code(s, r) return Float32(Float32(Float32(Float32(0.125) / Float32(r * Float32(pi))) / s) * Float32(exp(Float32(Float32(-r) / s)) + Float32(1.0))) end
function tmp = code(s, r) tmp = ((single(0.125) / (r * single(pi))) / s) * (exp((-r / s)) + single(1.0)); end
\begin{array}{l}
\\
\frac{\frac{0.125}{r \cdot \pi}}{s} \cdot \left(e^{\frac{-r}{s}} + 1\right)
\end{array}
Initial program 99.4%
associate-*l/96.7%
associate-*l/96.7%
associate-*l*96.7%
associate-*l*96.6%
associate-/r*96.6%
metadata-eval96.6%
metadata-eval96.6%
associate-/r*96.6%
associate-*l*96.6%
associate-*l*96.6%
distribute-lft-out96.6%
Simplified96.5%
Taylor expanded in r around 0 9.0%
Final simplification9.0%
(FPCore (s r) :precision binary32 (/ 0.25 (* r (* s PI))))
float code(float s, float r) {
return 0.25f / (r * (s * ((float) M_PI)));
}
function code(s, r) return Float32(Float32(0.25) / Float32(r * Float32(s * Float32(pi)))) end
function tmp = code(s, r) tmp = single(0.25) / (r * (s * single(pi))); end
\begin{array}{l}
\\
\frac{0.25}{r \cdot \left(s \cdot \pi\right)}
\end{array}
Initial program 99.4%
associate-*l/96.7%
associate-*l/96.7%
associate-*l*96.7%
associate-*l*96.6%
associate-/r*96.6%
metadata-eval96.6%
metadata-eval96.6%
associate-/r*96.6%
associate-*l*96.6%
associate-*l*96.6%
distribute-lft-out96.6%
Simplified96.5%
Taylor expanded in r around 0 8.6%
pow18.6%
associate-*r*8.6%
Applied egg-rr8.6%
unpow18.6%
*-commutative8.6%
associate-*l*8.6%
Simplified8.6%
Final simplification8.6%
(FPCore (s r) :precision binary32 (/ 0.25 (* s (* r PI))))
float code(float s, float r) {
return 0.25f / (s * (r * ((float) M_PI)));
}
function code(s, r) return Float32(Float32(0.25) / Float32(s * Float32(r * Float32(pi)))) end
function tmp = code(s, r) tmp = single(0.25) / (s * (r * single(pi))); end
\begin{array}{l}
\\
\frac{0.25}{s \cdot \left(r \cdot \pi\right)}
\end{array}
Initial program 99.4%
associate-*l/96.7%
associate-*l/96.7%
associate-*l*96.7%
associate-*l*96.6%
associate-/r*96.6%
metadata-eval96.6%
metadata-eval96.6%
associate-/r*96.6%
associate-*l*96.6%
associate-*l*96.6%
distribute-lft-out96.6%
Simplified96.5%
Taylor expanded in r around 0 8.6%
Final simplification8.6%
(FPCore (s r) :precision binary32 (/ (/ 0.25 s) (* r PI)))
float code(float s, float r) {
return (0.25f / s) / (r * ((float) M_PI));
}
function code(s, r) return Float32(Float32(Float32(0.25) / s) / Float32(r * Float32(pi))) end
function tmp = code(s, r) tmp = (single(0.25) / s) / (r * single(pi)); end
\begin{array}{l}
\\
\frac{\frac{0.25}{s}}{r \cdot \pi}
\end{array}
Initial program 99.4%
associate-*l/96.7%
associate-*l/96.7%
associate-*l*96.7%
associate-*l*96.6%
associate-/r*96.6%
metadata-eval96.6%
metadata-eval96.6%
associate-/r*96.6%
associate-*l*96.6%
associate-*l*96.6%
distribute-lft-out96.6%
Simplified96.5%
Taylor expanded in r around 0 8.6%
associate-/r*8.6%
*-commutative8.6%
Simplified8.6%
Final simplification8.6%
(FPCore (s r) :precision binary32 (/ 0.25 (* PI (* r s))))
float code(float s, float r) {
return 0.25f / (((float) M_PI) * (r * s));
}
function code(s, r) return Float32(Float32(0.25) / Float32(Float32(pi) * Float32(r * s))) end
function tmp = code(s, r) tmp = single(0.25) / (single(pi) * (r * s)); end
\begin{array}{l}
\\
\frac{0.25}{\pi \cdot \left(r \cdot s\right)}
\end{array}
Initial program 99.4%
associate-*l/96.7%
associate-*l/96.7%
associate-*l*96.7%
associate-*l*96.6%
associate-/r*96.6%
metadata-eval96.6%
metadata-eval96.6%
associate-/r*96.6%
associate-*l*96.6%
associate-*l*96.6%
distribute-lft-out96.6%
Simplified96.5%
Taylor expanded in r around 0 8.6%
*-un-lft-identity8.6%
associate-*r*8.6%
Applied egg-rr8.6%
Final simplification8.6%
herbie shell --seed 2023182
(FPCore (s r)
:name "Disney BSSRDF, PDF of scattering profile"
:precision binary32
:pre (and (and (<= 0.0 s) (<= s 256.0)) (and (< 1e-6 r) (< r 1000000.0)))
(+ (/ (* 0.25 (exp (/ (- r) s))) (* (* (* 2.0 PI) s) r)) (/ (* 0.75 (exp (/ (- r) (* 3.0 s)))) (* (* (* 6.0 PI) s) r))))