
(FPCore (ux uy maxCos) :precision binary32 (let* ((t_0 (+ (- 1.0 ux) (* ux maxCos)))) (* (cos (* (* uy 2.0) PI)) (sqrt (- 1.0 (* t_0 t_0))))))
float code(float ux, float uy, float maxCos) {
float t_0 = (1.0f - ux) + (ux * maxCos);
return cosf(((uy * 2.0f) * ((float) M_PI))) * sqrtf((1.0f - (t_0 * t_0)));
}
function code(ux, uy, maxCos) t_0 = Float32(Float32(Float32(1.0) - ux) + Float32(ux * maxCos)) return Float32(cos(Float32(Float32(uy * Float32(2.0)) * Float32(pi))) * sqrt(Float32(Float32(1.0) - Float32(t_0 * t_0)))) end
function tmp = code(ux, uy, maxCos) t_0 = (single(1.0) - ux) + (ux * maxCos); tmp = cos(((uy * single(2.0)) * single(pi))) * sqrt((single(1.0) - (t_0 * t_0))); end
\begin{array}{l}
\\
\begin{array}{l}
t_0 := \left(1 - ux\right) + ux \cdot maxCos\\
\cos \left(\left(uy \cdot 2\right) \cdot \pi\right) \cdot \sqrt{1 - t\_0 \cdot t\_0}
\end{array}
\end{array}
Sampling outcomes in binary32 precision:
Herbie found 14 alternatives:
| Alternative | Accuracy | Speedup |
|---|
(FPCore (ux uy maxCos) :precision binary32 (let* ((t_0 (+ (- 1.0 ux) (* ux maxCos)))) (* (cos (* (* uy 2.0) PI)) (sqrt (- 1.0 (* t_0 t_0))))))
float code(float ux, float uy, float maxCos) {
float t_0 = (1.0f - ux) + (ux * maxCos);
return cosf(((uy * 2.0f) * ((float) M_PI))) * sqrtf((1.0f - (t_0 * t_0)));
}
function code(ux, uy, maxCos) t_0 = Float32(Float32(Float32(1.0) - ux) + Float32(ux * maxCos)) return Float32(cos(Float32(Float32(uy * Float32(2.0)) * Float32(pi))) * sqrt(Float32(Float32(1.0) - Float32(t_0 * t_0)))) end
function tmp = code(ux, uy, maxCos) t_0 = (single(1.0) - ux) + (ux * maxCos); tmp = cos(((uy * single(2.0)) * single(pi))) * sqrt((single(1.0) - (t_0 * t_0))); end
\begin{array}{l}
\\
\begin{array}{l}
t_0 := \left(1 - ux\right) + ux \cdot maxCos\\
\cos \left(\left(uy \cdot 2\right) \cdot \pi\right) \cdot \sqrt{1 - t\_0 \cdot t\_0}
\end{array}
\end{array}
(FPCore (ux uy maxCos)
:precision binary32
(*
(cos (* (* uy 2.0) PI))
(sqrt
(+
(* 2.0 ux)
(* ux (fma (- ux) (pow (+ -1.0 maxCos) 2.0) (* maxCos -2.0)))))))
float code(float ux, float uy, float maxCos) {
return cosf(((uy * 2.0f) * ((float) M_PI))) * sqrtf(((2.0f * ux) + (ux * fmaf(-ux, powf((-1.0f + maxCos), 2.0f), (maxCos * -2.0f)))));
}
function code(ux, uy, maxCos) return Float32(cos(Float32(Float32(uy * Float32(2.0)) * Float32(pi))) * sqrt(Float32(Float32(Float32(2.0) * ux) + Float32(ux * fma(Float32(-ux), (Float32(Float32(-1.0) + maxCos) ^ Float32(2.0)), Float32(maxCos * Float32(-2.0))))))) end
\begin{array}{l}
\\
\cos \left(\left(uy \cdot 2\right) \cdot \pi\right) \cdot \sqrt{2 \cdot ux + ux \cdot \mathsf{fma}\left(-ux, {\left(-1 + maxCos\right)}^{2}, maxCos \cdot -2\right)}
\end{array}
Initial program 56.0%
Taylor expanded in ux around 0 99.3%
associate--l+99.3%
associate-*r*99.3%
mul-1-neg99.3%
sub-neg99.3%
metadata-eval99.3%
+-commutative99.3%
Simplified99.3%
distribute-lft-in99.4%
cancel-sign-sub-inv99.4%
fma-define99.4%
metadata-eval99.4%
Applied egg-rr99.4%
Final simplification99.4%
(FPCore (ux uy maxCos)
:precision binary32
(*
(cos (* (* uy 2.0) PI))
(sqrt
(*
ux
(+ 2.0 (- (* ux (+ -1.0 (* maxCos (- 2.0 maxCos)))) (* 2.0 maxCos)))))))
float code(float ux, float uy, float maxCos) {
return cosf(((uy * 2.0f) * ((float) M_PI))) * sqrtf((ux * (2.0f + ((ux * (-1.0f + (maxCos * (2.0f - maxCos)))) - (2.0f * maxCos)))));
}
function code(ux, uy, maxCos) return Float32(cos(Float32(Float32(uy * Float32(2.0)) * Float32(pi))) * sqrt(Float32(ux * Float32(Float32(2.0) + Float32(Float32(ux * Float32(Float32(-1.0) + Float32(maxCos * Float32(Float32(2.0) - maxCos)))) - Float32(Float32(2.0) * maxCos)))))) end
function tmp = code(ux, uy, maxCos) tmp = cos(((uy * single(2.0)) * single(pi))) * sqrt((ux * (single(2.0) + ((ux * (single(-1.0) + (maxCos * (single(2.0) - maxCos)))) - (single(2.0) * maxCos))))); end
\begin{array}{l}
\\
\cos \left(\left(uy \cdot 2\right) \cdot \pi\right) \cdot \sqrt{ux \cdot \left(2 + \left(ux \cdot \left(-1 + maxCos \cdot \left(2 - maxCos\right)\right) - 2 \cdot maxCos\right)\right)}
\end{array}
Initial program 56.0%
Taylor expanded in ux around 0 99.3%
associate--l+99.3%
associate-*r*99.3%
mul-1-neg99.3%
sub-neg99.3%
metadata-eval99.3%
+-commutative99.3%
Simplified99.3%
Taylor expanded in maxCos around 0 99.3%
Final simplification99.3%
(FPCore (ux uy maxCos) :precision binary32 (* (cos (* (* uy 2.0) PI)) (sqrt (* ux (+ 2.0 (- (* ux (- -1.0 (* maxCos -2.0))) (* 2.0 maxCos)))))))
float code(float ux, float uy, float maxCos) {
return cosf(((uy * 2.0f) * ((float) M_PI))) * sqrtf((ux * (2.0f + ((ux * (-1.0f - (maxCos * -2.0f))) - (2.0f * maxCos)))));
}
function code(ux, uy, maxCos) return Float32(cos(Float32(Float32(uy * Float32(2.0)) * Float32(pi))) * sqrt(Float32(ux * Float32(Float32(2.0) + Float32(Float32(ux * Float32(Float32(-1.0) - Float32(maxCos * Float32(-2.0)))) - Float32(Float32(2.0) * maxCos)))))) end
function tmp = code(ux, uy, maxCos) tmp = cos(((uy * single(2.0)) * single(pi))) * sqrt((ux * (single(2.0) + ((ux * (single(-1.0) - (maxCos * single(-2.0)))) - (single(2.0) * maxCos))))); end
\begin{array}{l}
\\
\cos \left(\left(uy \cdot 2\right) \cdot \pi\right) \cdot \sqrt{ux \cdot \left(2 + \left(ux \cdot \left(-1 - maxCos \cdot -2\right) - 2 \cdot maxCos\right)\right)}
\end{array}
Initial program 56.0%
Taylor expanded in ux around 0 99.3%
associate--l+99.3%
associate-*r*99.3%
mul-1-neg99.3%
sub-neg99.3%
metadata-eval99.3%
+-commutative99.3%
Simplified99.3%
Taylor expanded in maxCos around 0 98.8%
*-commutative98.8%
Simplified98.8%
Final simplification98.8%
(FPCore (ux uy maxCos) :precision binary32 (if (<= maxCos 2.9999999242136255e-5) (* (cos (* (* uy 2.0) PI)) (sqrt (- (* 2.0 ux) (* ux ux)))) (sqrt (* ux (- 2.0 (+ (* 2.0 maxCos) (* ux (pow (+ -1.0 maxCos) 2.0))))))))
float code(float ux, float uy, float maxCos) {
float tmp;
if (maxCos <= 2.9999999242136255e-5f) {
tmp = cosf(((uy * 2.0f) * ((float) M_PI))) * sqrtf(((2.0f * ux) - (ux * ux)));
} else {
tmp = sqrtf((ux * (2.0f - ((2.0f * maxCos) + (ux * powf((-1.0f + maxCos), 2.0f))))));
}
return tmp;
}
function code(ux, uy, maxCos) tmp = Float32(0.0) if (maxCos <= Float32(2.9999999242136255e-5)) tmp = Float32(cos(Float32(Float32(uy * Float32(2.0)) * Float32(pi))) * sqrt(Float32(Float32(Float32(2.0) * ux) - Float32(ux * ux)))); else tmp = sqrt(Float32(ux * Float32(Float32(2.0) - Float32(Float32(Float32(2.0) * maxCos) + Float32(ux * (Float32(Float32(-1.0) + maxCos) ^ Float32(2.0))))))); end return tmp end
function tmp_2 = code(ux, uy, maxCos) tmp = single(0.0); if (maxCos <= single(2.9999999242136255e-5)) tmp = cos(((uy * single(2.0)) * single(pi))) * sqrt(((single(2.0) * ux) - (ux * ux))); else tmp = sqrt((ux * (single(2.0) - ((single(2.0) * maxCos) + (ux * ((single(-1.0) + maxCos) ^ single(2.0))))))); end tmp_2 = tmp; end
\begin{array}{l}
\\
\begin{array}{l}
\mathbf{if}\;maxCos \leq 2.9999999242136255 \cdot 10^{-5}:\\
\;\;\;\;\cos \left(\left(uy \cdot 2\right) \cdot \pi\right) \cdot \sqrt{2 \cdot ux - ux \cdot ux}\\
\mathbf{else}:\\
\;\;\;\;\sqrt{ux \cdot \left(2 - \left(2 \cdot maxCos + ux \cdot {\left(-1 + maxCos\right)}^{2}\right)\right)}\\
\end{array}
\end{array}
if maxCos < 2.99999992e-5Initial program 56.3%
Taylor expanded in ux around 0 99.4%
associate--l+99.3%
associate-*r*99.3%
mul-1-neg99.3%
sub-neg99.3%
metadata-eval99.3%
+-commutative99.3%
Simplified99.3%
Taylor expanded in maxCos around 0 98.6%
neg-mul-198.6%
unsub-neg98.6%
Simplified98.6%
sub-neg98.6%
distribute-rgt-in98.7%
*-commutative98.7%
Applied egg-rr98.7%
if 2.99999992e-5 < maxCos Initial program 53.2%
Taylor expanded in ux around 0 98.8%
associate--l+99.1%
associate-*r*99.1%
mul-1-neg99.1%
sub-neg99.1%
metadata-eval99.1%
+-commutative99.1%
Simplified99.1%
Taylor expanded in uy around 0 83.8%
associate--l+84.1%
associate-*r*84.1%
neg-mul-184.1%
sub-neg84.1%
metadata-eval84.1%
Simplified84.1%
Final simplification96.9%
(FPCore (ux uy maxCos)
:precision binary32
(if (<= maxCos 2.9999999242136255e-5)
(* (cos (* (* uy 2.0) PI)) (sqrt (- (* 2.0 ux) (* ux ux))))
(sqrt
(*
ux
(- (+ 2.0 (* ux (+ -1.0 (* maxCos (- 2.0 maxCos))))) (* 2.0 maxCos))))))
float code(float ux, float uy, float maxCos) {
float tmp;
if (maxCos <= 2.9999999242136255e-5f) {
tmp = cosf(((uy * 2.0f) * ((float) M_PI))) * sqrtf(((2.0f * ux) - (ux * ux)));
} else {
tmp = sqrtf((ux * ((2.0f + (ux * (-1.0f + (maxCos * (2.0f - maxCos))))) - (2.0f * maxCos))));
}
return tmp;
}
function code(ux, uy, maxCos) tmp = Float32(0.0) if (maxCos <= Float32(2.9999999242136255e-5)) tmp = Float32(cos(Float32(Float32(uy * Float32(2.0)) * Float32(pi))) * sqrt(Float32(Float32(Float32(2.0) * ux) - Float32(ux * ux)))); else tmp = sqrt(Float32(ux * Float32(Float32(Float32(2.0) + Float32(ux * Float32(Float32(-1.0) + Float32(maxCos * Float32(Float32(2.0) - maxCos))))) - Float32(Float32(2.0) * maxCos)))); end return tmp end
function tmp_2 = code(ux, uy, maxCos) tmp = single(0.0); if (maxCos <= single(2.9999999242136255e-5)) tmp = cos(((uy * single(2.0)) * single(pi))) * sqrt(((single(2.0) * ux) - (ux * ux))); else tmp = sqrt((ux * ((single(2.0) + (ux * (single(-1.0) + (maxCos * (single(2.0) - maxCos))))) - (single(2.0) * maxCos)))); end tmp_2 = tmp; end
\begin{array}{l}
\\
\begin{array}{l}
\mathbf{if}\;maxCos \leq 2.9999999242136255 \cdot 10^{-5}:\\
\;\;\;\;\cos \left(\left(uy \cdot 2\right) \cdot \pi\right) \cdot \sqrt{2 \cdot ux - ux \cdot ux}\\
\mathbf{else}:\\
\;\;\;\;\sqrt{ux \cdot \left(\left(2 + ux \cdot \left(-1 + maxCos \cdot \left(2 - maxCos\right)\right)\right) - 2 \cdot maxCos\right)}\\
\end{array}
\end{array}
if maxCos < 2.99999992e-5Initial program 56.3%
Taylor expanded in ux around 0 99.4%
associate--l+99.3%
associate-*r*99.3%
mul-1-neg99.3%
sub-neg99.3%
metadata-eval99.3%
+-commutative99.3%
Simplified99.3%
Taylor expanded in maxCos around 0 98.6%
neg-mul-198.6%
unsub-neg98.6%
Simplified98.6%
sub-neg98.6%
distribute-rgt-in98.7%
*-commutative98.7%
Applied egg-rr98.7%
if 2.99999992e-5 < maxCos Initial program 53.2%
Taylor expanded in ux around 0 98.8%
associate--l+99.1%
associate-*r*99.1%
mul-1-neg99.1%
sub-neg99.1%
metadata-eval99.1%
+-commutative99.1%
Simplified99.1%
Taylor expanded in maxCos around 0 99.1%
Taylor expanded in uy around 0 83.8%
Final simplification96.9%
(FPCore (ux uy maxCos)
:precision binary32
(if (<= (* uy 2.0) 0.0010999999940395355)
(sqrt
(*
ux
(- (+ 2.0 (* ux (+ -1.0 (* maxCos (- 2.0 maxCos))))) (* 2.0 maxCos))))
(* (cos (* (* uy 2.0) PI)) (sqrt (* 2.0 ux)))))
float code(float ux, float uy, float maxCos) {
float tmp;
if ((uy * 2.0f) <= 0.0010999999940395355f) {
tmp = sqrtf((ux * ((2.0f + (ux * (-1.0f + (maxCos * (2.0f - maxCos))))) - (2.0f * maxCos))));
} else {
tmp = cosf(((uy * 2.0f) * ((float) M_PI))) * sqrtf((2.0f * ux));
}
return tmp;
}
function code(ux, uy, maxCos) tmp = Float32(0.0) if (Float32(uy * Float32(2.0)) <= Float32(0.0010999999940395355)) tmp = sqrt(Float32(ux * Float32(Float32(Float32(2.0) + Float32(ux * Float32(Float32(-1.0) + Float32(maxCos * Float32(Float32(2.0) - maxCos))))) - Float32(Float32(2.0) * maxCos)))); else tmp = Float32(cos(Float32(Float32(uy * Float32(2.0)) * Float32(pi))) * sqrt(Float32(Float32(2.0) * ux))); end return tmp end
function tmp_2 = code(ux, uy, maxCos) tmp = single(0.0); if ((uy * single(2.0)) <= single(0.0010999999940395355)) tmp = sqrt((ux * ((single(2.0) + (ux * (single(-1.0) + (maxCos * (single(2.0) - maxCos))))) - (single(2.0) * maxCos)))); else tmp = cos(((uy * single(2.0)) * single(pi))) * sqrt((single(2.0) * ux)); end tmp_2 = tmp; end
\begin{array}{l}
\\
\begin{array}{l}
\mathbf{if}\;uy \cdot 2 \leq 0.0010999999940395355:\\
\;\;\;\;\sqrt{ux \cdot \left(\left(2 + ux \cdot \left(-1 + maxCos \cdot \left(2 - maxCos\right)\right)\right) - 2 \cdot maxCos\right)}\\
\mathbf{else}:\\
\;\;\;\;\cos \left(\left(uy \cdot 2\right) \cdot \pi\right) \cdot \sqrt{2 \cdot ux}\\
\end{array}
\end{array}
if (*.f32 uy #s(literal 2 binary32)) < 0.0011Initial program 58.5%
Taylor expanded in ux around 0 99.5%
associate--l+99.5%
associate-*r*99.5%
mul-1-neg99.5%
sub-neg99.5%
metadata-eval99.5%
+-commutative99.5%
Simplified99.5%
Taylor expanded in maxCos around 0 99.5%
Taylor expanded in uy around 0 98.3%
if 0.0011 < (*.f32 uy #s(literal 2 binary32)) Initial program 51.4%
Taylor expanded in ux around 0 45.1%
Taylor expanded in maxCos around 0 78.2%
Final simplification91.3%
(FPCore (ux uy maxCos)
:precision binary32
(if (<= maxCos 2.9999999242136255e-5)
(* (cos (* (* uy 2.0) PI)) (sqrt (* ux (- 2.0 ux))))
(sqrt
(*
ux
(- (+ 2.0 (* ux (+ -1.0 (* maxCos (- 2.0 maxCos))))) (* 2.0 maxCos))))))
float code(float ux, float uy, float maxCos) {
float tmp;
if (maxCos <= 2.9999999242136255e-5f) {
tmp = cosf(((uy * 2.0f) * ((float) M_PI))) * sqrtf((ux * (2.0f - ux)));
} else {
tmp = sqrtf((ux * ((2.0f + (ux * (-1.0f + (maxCos * (2.0f - maxCos))))) - (2.0f * maxCos))));
}
return tmp;
}
function code(ux, uy, maxCos) tmp = Float32(0.0) if (maxCos <= Float32(2.9999999242136255e-5)) tmp = Float32(cos(Float32(Float32(uy * Float32(2.0)) * Float32(pi))) * sqrt(Float32(ux * Float32(Float32(2.0) - ux)))); else tmp = sqrt(Float32(ux * Float32(Float32(Float32(2.0) + Float32(ux * Float32(Float32(-1.0) + Float32(maxCos * Float32(Float32(2.0) - maxCos))))) - Float32(Float32(2.0) * maxCos)))); end return tmp end
function tmp_2 = code(ux, uy, maxCos) tmp = single(0.0); if (maxCos <= single(2.9999999242136255e-5)) tmp = cos(((uy * single(2.0)) * single(pi))) * sqrt((ux * (single(2.0) - ux))); else tmp = sqrt((ux * ((single(2.0) + (ux * (single(-1.0) + (maxCos * (single(2.0) - maxCos))))) - (single(2.0) * maxCos)))); end tmp_2 = tmp; end
\begin{array}{l}
\\
\begin{array}{l}
\mathbf{if}\;maxCos \leq 2.9999999242136255 \cdot 10^{-5}:\\
\;\;\;\;\cos \left(\left(uy \cdot 2\right) \cdot \pi\right) \cdot \sqrt{ux \cdot \left(2 - ux\right)}\\
\mathbf{else}:\\
\;\;\;\;\sqrt{ux \cdot \left(\left(2 + ux \cdot \left(-1 + maxCos \cdot \left(2 - maxCos\right)\right)\right) - 2 \cdot maxCos\right)}\\
\end{array}
\end{array}
if maxCos < 2.99999992e-5Initial program 56.3%
Taylor expanded in ux around 0 99.4%
associate--l+99.3%
associate-*r*99.3%
mul-1-neg99.3%
sub-neg99.3%
metadata-eval99.3%
+-commutative99.3%
Simplified99.3%
Taylor expanded in maxCos around 0 98.6%
neg-mul-198.6%
unsub-neg98.6%
Simplified98.6%
if 2.99999992e-5 < maxCos Initial program 53.2%
Taylor expanded in ux around 0 98.8%
associate--l+99.1%
associate-*r*99.1%
mul-1-neg99.1%
sub-neg99.1%
metadata-eval99.1%
+-commutative99.1%
Simplified99.1%
Taylor expanded in maxCos around 0 99.1%
Taylor expanded in uy around 0 83.8%
Final simplification96.8%
(FPCore (ux uy maxCos) :precision binary32 (* (cos (* (* uy 2.0) PI)) (sqrt (* ux (- 2.0 (+ ux (* 2.0 maxCos)))))))
float code(float ux, float uy, float maxCos) {
return cosf(((uy * 2.0f) * ((float) M_PI))) * sqrtf((ux * (2.0f - (ux + (2.0f * maxCos)))));
}
function code(ux, uy, maxCos) return Float32(cos(Float32(Float32(uy * Float32(2.0)) * Float32(pi))) * sqrt(Float32(ux * Float32(Float32(2.0) - Float32(ux + Float32(Float32(2.0) * maxCos)))))) end
function tmp = code(ux, uy, maxCos) tmp = cos(((uy * single(2.0)) * single(pi))) * sqrt((ux * (single(2.0) - (ux + (single(2.0) * maxCos))))); end
\begin{array}{l}
\\
\cos \left(\left(uy \cdot 2\right) \cdot \pi\right) \cdot \sqrt{ux \cdot \left(2 - \left(ux + 2 \cdot maxCos\right)\right)}
\end{array}
Initial program 56.0%
Taylor expanded in ux around 0 99.3%
associate--l+99.3%
associate-*r*99.3%
mul-1-neg99.3%
sub-neg99.3%
metadata-eval99.3%
+-commutative99.3%
Simplified99.3%
Taylor expanded in maxCos around 0 98.1%
Final simplification98.1%
(FPCore (ux uy maxCos)
:precision binary32
(if (<= ux 0.00011999999696854502)
(sqrt (* ux (- 2.0 (* 2.0 maxCos))))
(sqrt
(+ 1.0 (* (+ 1.0 (* ux (+ -1.0 maxCos))) (+ -1.0 (- ux (* ux maxCos))))))))
float code(float ux, float uy, float maxCos) {
float tmp;
if (ux <= 0.00011999999696854502f) {
tmp = sqrtf((ux * (2.0f - (2.0f * maxCos))));
} else {
tmp = sqrtf((1.0f + ((1.0f + (ux * (-1.0f + maxCos))) * (-1.0f + (ux - (ux * maxCos))))));
}
return tmp;
}
real(4) function code(ux, uy, maxcos)
real(4), intent (in) :: ux
real(4), intent (in) :: uy
real(4), intent (in) :: maxcos
real(4) :: tmp
if (ux <= 0.00011999999696854502e0) then
tmp = sqrt((ux * (2.0e0 - (2.0e0 * maxcos))))
else
tmp = sqrt((1.0e0 + ((1.0e0 + (ux * ((-1.0e0) + maxcos))) * ((-1.0e0) + (ux - (ux * maxcos))))))
end if
code = tmp
end function
function code(ux, uy, maxCos) tmp = Float32(0.0) if (ux <= Float32(0.00011999999696854502)) tmp = sqrt(Float32(ux * Float32(Float32(2.0) - Float32(Float32(2.0) * maxCos)))); else tmp = sqrt(Float32(Float32(1.0) + Float32(Float32(Float32(1.0) + Float32(ux * Float32(Float32(-1.0) + maxCos))) * Float32(Float32(-1.0) + Float32(ux - Float32(ux * maxCos)))))); end return tmp end
function tmp_2 = code(ux, uy, maxCos) tmp = single(0.0); if (ux <= single(0.00011999999696854502)) tmp = sqrt((ux * (single(2.0) - (single(2.0) * maxCos)))); else tmp = sqrt((single(1.0) + ((single(1.0) + (ux * (single(-1.0) + maxCos))) * (single(-1.0) + (ux - (ux * maxCos)))))); end tmp_2 = tmp; end
\begin{array}{l}
\\
\begin{array}{l}
\mathbf{if}\;ux \leq 0.00011999999696854502:\\
\;\;\;\;\sqrt{ux \cdot \left(2 - 2 \cdot maxCos\right)}\\
\mathbf{else}:\\
\;\;\;\;\sqrt{1 + \left(1 + ux \cdot \left(-1 + maxCos\right)\right) \cdot \left(-1 + \left(ux - ux \cdot maxCos\right)\right)}\\
\end{array}
\end{array}
if ux < 1.19999997e-4Initial program 35.2%
associate-*l*35.2%
sub-neg35.2%
+-commutative35.2%
distribute-rgt-neg-in35.2%
fma-define35.2%
Simplified35.3%
Taylor expanded in uy around 0 32.7%
mul-1-neg32.7%
unsub-neg32.7%
sub-neg32.7%
metadata-eval32.7%
distribute-lft-in32.7%
*-commutative32.7%
mul-1-neg32.7%
sub-neg32.7%
*-commutative32.7%
associate--l+32.5%
unpow232.5%
sub-neg32.5%
Simplified32.8%
Taylor expanded in ux around 0 76.5%
if 1.19999997e-4 < ux Initial program 88.5%
associate-*l*88.5%
sub-neg88.5%
+-commutative88.5%
distribute-rgt-neg-in88.5%
fma-define88.3%
Simplified88.5%
Taylor expanded in uy around 0 75.6%
mul-1-neg75.6%
unsub-neg75.6%
sub-neg75.6%
metadata-eval75.6%
distribute-lft-in75.6%
*-commutative75.6%
mul-1-neg75.6%
sub-neg75.6%
*-commutative75.6%
associate--l+75.4%
unpow275.4%
sub-neg75.4%
Simplified75.9%
Final simplification76.3%
(FPCore (ux uy maxCos) :precision binary32 (if (<= ux 0.00011999999696854502) (sqrt (* ux (- 2.0 (* 2.0 maxCos)))) (sqrt (+ 1.0 (* (+ 1.0 (- (* ux maxCos) ux)) (+ ux -1.0))))))
float code(float ux, float uy, float maxCos) {
float tmp;
if (ux <= 0.00011999999696854502f) {
tmp = sqrtf((ux * (2.0f - (2.0f * maxCos))));
} else {
tmp = sqrtf((1.0f + ((1.0f + ((ux * maxCos) - ux)) * (ux + -1.0f))));
}
return tmp;
}
real(4) function code(ux, uy, maxcos)
real(4), intent (in) :: ux
real(4), intent (in) :: uy
real(4), intent (in) :: maxcos
real(4) :: tmp
if (ux <= 0.00011999999696854502e0) then
tmp = sqrt((ux * (2.0e0 - (2.0e0 * maxcos))))
else
tmp = sqrt((1.0e0 + ((1.0e0 + ((ux * maxcos) - ux)) * (ux + (-1.0e0)))))
end if
code = tmp
end function
function code(ux, uy, maxCos) tmp = Float32(0.0) if (ux <= Float32(0.00011999999696854502)) tmp = sqrt(Float32(ux * Float32(Float32(2.0) - Float32(Float32(2.0) * maxCos)))); else tmp = sqrt(Float32(Float32(1.0) + Float32(Float32(Float32(1.0) + Float32(Float32(ux * maxCos) - ux)) * Float32(ux + Float32(-1.0))))); end return tmp end
function tmp_2 = code(ux, uy, maxCos) tmp = single(0.0); if (ux <= single(0.00011999999696854502)) tmp = sqrt((ux * (single(2.0) - (single(2.0) * maxCos)))); else tmp = sqrt((single(1.0) + ((single(1.0) + ((ux * maxCos) - ux)) * (ux + single(-1.0))))); end tmp_2 = tmp; end
\begin{array}{l}
\\
\begin{array}{l}
\mathbf{if}\;ux \leq 0.00011999999696854502:\\
\;\;\;\;\sqrt{ux \cdot \left(2 - 2 \cdot maxCos\right)}\\
\mathbf{else}:\\
\;\;\;\;\sqrt{1 + \left(1 + \left(ux \cdot maxCos - ux\right)\right) \cdot \left(ux + -1\right)}\\
\end{array}
\end{array}
if ux < 1.19999997e-4Initial program 35.2%
associate-*l*35.2%
sub-neg35.2%
+-commutative35.2%
distribute-rgt-neg-in35.2%
fma-define35.2%
Simplified35.3%
Taylor expanded in uy around 0 32.7%
mul-1-neg32.7%
unsub-neg32.7%
sub-neg32.7%
metadata-eval32.7%
distribute-lft-in32.7%
*-commutative32.7%
mul-1-neg32.7%
sub-neg32.7%
*-commutative32.7%
associate--l+32.5%
unpow232.5%
sub-neg32.5%
Simplified32.8%
Taylor expanded in ux around 0 76.5%
if 1.19999997e-4 < ux Initial program 88.5%
associate-*l*88.5%
sub-neg88.5%
+-commutative88.5%
distribute-rgt-neg-in88.5%
fma-define88.3%
Simplified88.5%
Taylor expanded in uy around 0 75.6%
mul-1-neg75.6%
unsub-neg75.6%
sub-neg75.6%
metadata-eval75.6%
distribute-lft-in75.6%
*-commutative75.6%
mul-1-neg75.6%
sub-neg75.6%
*-commutative75.6%
associate--l+75.4%
unpow275.4%
sub-neg75.4%
Simplified75.9%
Taylor expanded in maxCos around 0 73.3%
neg-mul-173.3%
Simplified73.3%
Final simplification75.2%
(FPCore (ux uy maxCos) :precision binary32 (sqrt (* ux (- (+ 2.0 (* ux (+ -1.0 (* maxCos (- 2.0 maxCos))))) (* 2.0 maxCos)))))
float code(float ux, float uy, float maxCos) {
return sqrtf((ux * ((2.0f + (ux * (-1.0f + (maxCos * (2.0f - maxCos))))) - (2.0f * maxCos))));
}
real(4) function code(ux, uy, maxcos)
real(4), intent (in) :: ux
real(4), intent (in) :: uy
real(4), intent (in) :: maxcos
code = sqrt((ux * ((2.0e0 + (ux * ((-1.0e0) + (maxcos * (2.0e0 - maxcos))))) - (2.0e0 * maxcos))))
end function
function code(ux, uy, maxCos) return sqrt(Float32(ux * Float32(Float32(Float32(2.0) + Float32(ux * Float32(Float32(-1.0) + Float32(maxCos * Float32(Float32(2.0) - maxCos))))) - Float32(Float32(2.0) * maxCos)))) end
function tmp = code(ux, uy, maxCos) tmp = sqrt((ux * ((single(2.0) + (ux * (single(-1.0) + (maxCos * (single(2.0) - maxCos))))) - (single(2.0) * maxCos)))); end
\begin{array}{l}
\\
\sqrt{ux \cdot \left(\left(2 + ux \cdot \left(-1 + maxCos \cdot \left(2 - maxCos\right)\right)\right) - 2 \cdot maxCos\right)}
\end{array}
Initial program 56.0%
Taylor expanded in ux around 0 99.3%
associate--l+99.3%
associate-*r*99.3%
mul-1-neg99.3%
sub-neg99.3%
metadata-eval99.3%
+-commutative99.3%
Simplified99.3%
Taylor expanded in maxCos around 0 99.3%
Taylor expanded in uy around 0 80.9%
Final simplification80.9%
(FPCore (ux uy maxCos) :precision binary32 (if (<= ux 0.0003429999924264848) (sqrt (* ux (- 2.0 (* 2.0 maxCos)))) (sqrt (+ 1.0 (* (- 1.0 ux) (+ ux -1.0))))))
float code(float ux, float uy, float maxCos) {
float tmp;
if (ux <= 0.0003429999924264848f) {
tmp = sqrtf((ux * (2.0f - (2.0f * maxCos))));
} else {
tmp = sqrtf((1.0f + ((1.0f - ux) * (ux + -1.0f))));
}
return tmp;
}
real(4) function code(ux, uy, maxcos)
real(4), intent (in) :: ux
real(4), intent (in) :: uy
real(4), intent (in) :: maxcos
real(4) :: tmp
if (ux <= 0.0003429999924264848e0) then
tmp = sqrt((ux * (2.0e0 - (2.0e0 * maxcos))))
else
tmp = sqrt((1.0e0 + ((1.0e0 - ux) * (ux + (-1.0e0)))))
end if
code = tmp
end function
function code(ux, uy, maxCos) tmp = Float32(0.0) if (ux <= Float32(0.0003429999924264848)) tmp = sqrt(Float32(ux * Float32(Float32(2.0) - Float32(Float32(2.0) * maxCos)))); else tmp = sqrt(Float32(Float32(1.0) + Float32(Float32(Float32(1.0) - ux) * Float32(ux + Float32(-1.0))))); end return tmp end
function tmp_2 = code(ux, uy, maxCos) tmp = single(0.0); if (ux <= single(0.0003429999924264848)) tmp = sqrt((ux * (single(2.0) - (single(2.0) * maxCos)))); else tmp = sqrt((single(1.0) + ((single(1.0) - ux) * (ux + single(-1.0))))); end tmp_2 = tmp; end
\begin{array}{l}
\\
\begin{array}{l}
\mathbf{if}\;ux \leq 0.0003429999924264848:\\
\;\;\;\;\sqrt{ux \cdot \left(2 - 2 \cdot maxCos\right)}\\
\mathbf{else}:\\
\;\;\;\;\sqrt{1 + \left(1 - ux\right) \cdot \left(ux + -1\right)}\\
\end{array}
\end{array}
if ux < 3.42999992e-4Initial program 38.3%
associate-*l*38.3%
sub-neg38.3%
+-commutative38.3%
distribute-rgt-neg-in38.3%
fma-define38.3%
Simplified38.3%
Taylor expanded in uy around 0 35.5%
mul-1-neg35.5%
unsub-neg35.5%
sub-neg35.5%
metadata-eval35.5%
distribute-lft-in35.5%
*-commutative35.5%
mul-1-neg35.5%
sub-neg35.5%
*-commutative35.5%
associate--l+35.2%
unpow235.2%
sub-neg35.2%
Simplified35.6%
Taylor expanded in ux around 0 75.7%
if 3.42999992e-4 < ux Initial program 90.4%
associate-*l*90.4%
sub-neg90.4%
+-commutative90.4%
distribute-rgt-neg-in90.4%
fma-define90.2%
Simplified90.5%
Taylor expanded in uy around 0 76.6%
mul-1-neg76.6%
unsub-neg76.6%
sub-neg76.6%
metadata-eval76.6%
distribute-lft-in76.6%
*-commutative76.6%
mul-1-neg76.6%
sub-neg76.6%
*-commutative76.6%
associate--l+76.4%
unpow276.4%
sub-neg76.4%
Simplified76.9%
Taylor expanded in maxCos around 0 74.0%
Final simplification75.1%
(FPCore (ux uy maxCos) :precision binary32 (sqrt (* ux (- 2.0 (* 2.0 maxCos)))))
float code(float ux, float uy, float maxCos) {
return sqrtf((ux * (2.0f - (2.0f * maxCos))));
}
real(4) function code(ux, uy, maxcos)
real(4), intent (in) :: ux
real(4), intent (in) :: uy
real(4), intent (in) :: maxcos
code = sqrt((ux * (2.0e0 - (2.0e0 * maxcos))))
end function
function code(ux, uy, maxCos) return sqrt(Float32(ux * Float32(Float32(2.0) - Float32(Float32(2.0) * maxCos)))) end
function tmp = code(ux, uy, maxCos) tmp = sqrt((ux * (single(2.0) - (single(2.0) * maxCos)))); end
\begin{array}{l}
\\
\sqrt{ux \cdot \left(2 - 2 \cdot maxCos\right)}
\end{array}
Initial program 56.0%
associate-*l*56.0%
sub-neg56.0%
+-commutative56.0%
distribute-rgt-neg-in56.0%
fma-define55.9%
Simplified56.1%
Taylor expanded in uy around 0 49.4%
mul-1-neg49.4%
unsub-neg49.4%
sub-neg49.4%
metadata-eval49.4%
distribute-lft-in49.4%
*-commutative49.4%
mul-1-neg49.4%
sub-neg49.4%
*-commutative49.4%
associate--l+49.2%
unpow249.2%
sub-neg49.2%
Simplified49.7%
Taylor expanded in ux around 0 65.8%
Final simplification65.8%
(FPCore (ux uy maxCos) :precision binary32 (sqrt (* 2.0 ux)))
float code(float ux, float uy, float maxCos) {
return sqrtf((2.0f * ux));
}
real(4) function code(ux, uy, maxcos)
real(4), intent (in) :: ux
real(4), intent (in) :: uy
real(4), intent (in) :: maxcos
code = sqrt((2.0e0 * ux))
end function
function code(ux, uy, maxCos) return sqrt(Float32(Float32(2.0) * ux)) end
function tmp = code(ux, uy, maxCos) tmp = sqrt((single(2.0) * ux)); end
\begin{array}{l}
\\
\sqrt{2 \cdot ux}
\end{array}
Initial program 56.0%
associate-*l*56.0%
sub-neg56.0%
+-commutative56.0%
distribute-rgt-neg-in56.0%
fma-define55.9%
Simplified56.1%
Taylor expanded in uy around 0 49.4%
mul-1-neg49.4%
unsub-neg49.4%
sub-neg49.4%
metadata-eval49.4%
distribute-lft-in49.4%
*-commutative49.4%
mul-1-neg49.4%
sub-neg49.4%
*-commutative49.4%
associate--l+49.2%
unpow249.2%
sub-neg49.2%
Simplified49.7%
Taylor expanded in ux around 0 65.8%
Taylor expanded in maxCos around 0 62.8%
*-commutative62.8%
Simplified62.8%
Final simplification62.8%
herbie shell --seed 2024066
(FPCore (ux uy maxCos)
:name "UniformSampleCone, x"
:precision binary32
:pre (and (and (and (<= 2.328306437e-10 ux) (<= ux 1.0)) (and (<= 2.328306437e-10 uy) (<= uy 1.0))) (and (<= 0.0 maxCos) (<= maxCos 1.0)))
(* (cos (* (* uy 2.0) PI)) (sqrt (- 1.0 (* (+ (- 1.0 ux) (* ux maxCos)) (+ (- 1.0 ux) (* ux maxCos)))))))