
(FPCore (x) :precision binary32 (asinh x))
float code(float x) {
return asinhf(x);
}
function code(x) return asinh(x) end
function tmp = code(x) tmp = asinh(x); end
\begin{array}{l}
\\
\sinh^{-1} x
\end{array}
Sampling outcomes in binary32 precision:
Herbie found 11 alternatives:
| Alternative | Accuracy | Speedup |
|---|
(FPCore (x) :precision binary32 (copysign (log (+ (fabs x) (sqrt (+ (* x x) 1.0)))) x))
float code(float x) {
return copysignf(logf((fabsf(x) + sqrtf(((x * x) + 1.0f)))), x);
}
function code(x) return copysign(log(Float32(abs(x) + sqrt(Float32(Float32(x * x) + Float32(1.0))))), x) end
function tmp = code(x) tmp = sign(x) * abs(log((abs(x) + sqrt(((x * x) + single(1.0)))))); end
\begin{array}{l}
\\
\mathsf{copysign}\left(\log \left(\left|x\right| + \sqrt{x \cdot x + 1}\right), x\right)
\end{array}
(FPCore (x)
:precision binary32
(let* ((t_0 (copysign (log (+ (fabs x) (sqrt (+ (* x x) 1.0)))) x)))
(if (<= t_0 -0.5)
(copysign (- (log (- (hypot 1.0 x) x))) x)
(if (<= t_0 0.009999999776482582)
(copysign
(+
x
(+
(* -0.16666666666666666 (pow x 3.0))
(+ (* -0.044642857142857144 (pow x 7.0)) (* 0.075 (pow x 5.0)))))
x)
(copysign (* 2.0 (log (sqrt (+ x (hypot 1.0 x))))) x)))))
float code(float x) {
float t_0 = copysignf(logf((fabsf(x) + sqrtf(((x * x) + 1.0f)))), x);
float tmp;
if (t_0 <= -0.5f) {
tmp = copysignf(-logf((hypotf(1.0f, x) - x)), x);
} else if (t_0 <= 0.009999999776482582f) {
tmp = copysignf((x + ((-0.16666666666666666f * powf(x, 3.0f)) + ((-0.044642857142857144f * powf(x, 7.0f)) + (0.075f * powf(x, 5.0f))))), x);
} else {
tmp = copysignf((2.0f * logf(sqrtf((x + hypotf(1.0f, x))))), x);
}
return tmp;
}
function code(x) t_0 = copysign(log(Float32(abs(x) + sqrt(Float32(Float32(x * x) + Float32(1.0))))), x) tmp = Float32(0.0) if (t_0 <= Float32(-0.5)) tmp = copysign(Float32(-log(Float32(hypot(Float32(1.0), x) - x))), x); elseif (t_0 <= Float32(0.009999999776482582)) tmp = copysign(Float32(x + Float32(Float32(Float32(-0.16666666666666666) * (x ^ Float32(3.0))) + Float32(Float32(Float32(-0.044642857142857144) * (x ^ Float32(7.0))) + Float32(Float32(0.075) * (x ^ Float32(5.0)))))), x); else tmp = copysign(Float32(Float32(2.0) * log(sqrt(Float32(x + hypot(Float32(1.0), x))))), x); end return tmp end
function tmp_2 = code(x) t_0 = sign(x) * abs(log((abs(x) + sqrt(((x * x) + single(1.0)))))); tmp = single(0.0); if (t_0 <= single(-0.5)) tmp = sign(x) * abs(-log((hypot(single(1.0), x) - x))); elseif (t_0 <= single(0.009999999776482582)) tmp = sign(x) * abs((x + ((single(-0.16666666666666666) * (x ^ single(3.0))) + ((single(-0.044642857142857144) * (x ^ single(7.0))) + (single(0.075) * (x ^ single(5.0))))))); else tmp = sign(x) * abs((single(2.0) * log(sqrt((x + hypot(single(1.0), x)))))); end tmp_2 = tmp; end
\begin{array}{l}
\\
\begin{array}{l}
t_0 := \mathsf{copysign}\left(\log \left(\left|x\right| + \sqrt{x \cdot x + 1}\right), x\right)\\
\mathbf{if}\;t\_0 \leq -0.5:\\
\;\;\;\;\mathsf{copysign}\left(-\log \left(\mathsf{hypot}\left(1, x\right) - x\right), x\right)\\
\mathbf{elif}\;t\_0 \leq 0.009999999776482582:\\
\;\;\;\;\mathsf{copysign}\left(x + \left(-0.16666666666666666 \cdot {x}^{3} + \left(-0.044642857142857144 \cdot {x}^{7} + 0.075 \cdot {x}^{5}\right)\right), x\right)\\
\mathbf{else}:\\
\;\;\;\;\mathsf{copysign}\left(2 \cdot \log \left(\sqrt{x + \mathsf{hypot}\left(1, x\right)}\right), x\right)\\
\end{array}
\end{array}
if (copysign.f32 (log.f32 (+.f32 (fabs.f32 x) (sqrt.f32 (+.f32 (*.f32 x x) 1)))) x) < -0.5Initial program 47.2%
+-commutative47.2%
hypot-1-def99.9%
Simplified99.9%
flip-+11.3%
frac-2neg11.3%
log-div11.3%
Applied egg-rr15.8%
sub-neg15.8%
sub-neg15.8%
fma-udef15.8%
unpow215.8%
associate--r+43.6%
+-inverses99.9%
metadata-eval99.9%
metadata-eval99.9%
metadata-eval99.9%
neg-sub099.9%
sub-neg99.9%
+-commutative99.9%
distribute-neg-in99.9%
remove-double-neg99.9%
sub-neg99.9%
Simplified99.9%
if -0.5 < (copysign.f32 (log.f32 (+.f32 (fabs.f32 x) (sqrt.f32 (+.f32 (*.f32 x x) 1)))) x) < 0.00999999978Initial program 19.8%
+-commutative19.8%
hypot-1-def19.9%
Simplified19.9%
*-un-lft-identity19.9%
*-commutative19.9%
log-prod19.9%
*-un-lft-identity19.9%
*-un-lft-identity19.9%
add-sqr-sqrt9.2%
fabs-sqr9.2%
add-sqr-sqrt20.0%
metadata-eval20.0%
Applied egg-rr20.0%
+-rgt-identity20.0%
Simplified20.0%
Taylor expanded in x around 0 100.0%
if 0.00999999978 < (copysign.f32 (log.f32 (+.f32 (fabs.f32 x) (sqrt.f32 (+.f32 (*.f32 x x) 1)))) x) Initial program 63.6%
+-commutative63.6%
hypot-1-def99.9%
Simplified99.9%
add-sqr-sqrt99.9%
pow299.9%
metadata-eval99.9%
log-pow100.0%
metadata-eval100.0%
add-sqr-sqrt100.0%
fabs-sqr100.0%
add-sqr-sqrt100.0%
Applied egg-rr100.0%
Final simplification100.0%
(FPCore (x)
:precision binary32
(let* ((t_0 (copysign (log (+ (fabs x) (sqrt (+ (* x x) 1.0)))) x)))
(if (<= t_0 -0.05999999865889549)
(copysign (- (log (- (hypot 1.0 x) x))) x)
(if (<= t_0 0.009999999776482582)
(copysign (+ x (* -0.16666666666666666 (pow x 3.0))) x)
(copysign (* 2.0 (log (sqrt (+ x (hypot 1.0 x))))) x)))))
float code(float x) {
float t_0 = copysignf(logf((fabsf(x) + sqrtf(((x * x) + 1.0f)))), x);
float tmp;
if (t_0 <= -0.05999999865889549f) {
tmp = copysignf(-logf((hypotf(1.0f, x) - x)), x);
} else if (t_0 <= 0.009999999776482582f) {
tmp = copysignf((x + (-0.16666666666666666f * powf(x, 3.0f))), x);
} else {
tmp = copysignf((2.0f * logf(sqrtf((x + hypotf(1.0f, x))))), x);
}
return tmp;
}
function code(x) t_0 = copysign(log(Float32(abs(x) + sqrt(Float32(Float32(x * x) + Float32(1.0))))), x) tmp = Float32(0.0) if (t_0 <= Float32(-0.05999999865889549)) tmp = copysign(Float32(-log(Float32(hypot(Float32(1.0), x) - x))), x); elseif (t_0 <= Float32(0.009999999776482582)) tmp = copysign(Float32(x + Float32(Float32(-0.16666666666666666) * (x ^ Float32(3.0)))), x); else tmp = copysign(Float32(Float32(2.0) * log(sqrt(Float32(x + hypot(Float32(1.0), x))))), x); end return tmp end
function tmp_2 = code(x) t_0 = sign(x) * abs(log((abs(x) + sqrt(((x * x) + single(1.0)))))); tmp = single(0.0); if (t_0 <= single(-0.05999999865889549)) tmp = sign(x) * abs(-log((hypot(single(1.0), x) - x))); elseif (t_0 <= single(0.009999999776482582)) tmp = sign(x) * abs((x + (single(-0.16666666666666666) * (x ^ single(3.0))))); else tmp = sign(x) * abs((single(2.0) * log(sqrt((x + hypot(single(1.0), x)))))); end tmp_2 = tmp; end
\begin{array}{l}
\\
\begin{array}{l}
t_0 := \mathsf{copysign}\left(\log \left(\left|x\right| + \sqrt{x \cdot x + 1}\right), x\right)\\
\mathbf{if}\;t\_0 \leq -0.05999999865889549:\\
\;\;\;\;\mathsf{copysign}\left(-\log \left(\mathsf{hypot}\left(1, x\right) - x\right), x\right)\\
\mathbf{elif}\;t\_0 \leq 0.009999999776482582:\\
\;\;\;\;\mathsf{copysign}\left(x + -0.16666666666666666 \cdot {x}^{3}, x\right)\\
\mathbf{else}:\\
\;\;\;\;\mathsf{copysign}\left(2 \cdot \log \left(\sqrt{x + \mathsf{hypot}\left(1, x\right)}\right), x\right)\\
\end{array}
\end{array}
if (copysign.f32 (log.f32 (+.f32 (fabs.f32 x) (sqrt.f32 (+.f32 (*.f32 x x) 1)))) x) < -0.0599999987Initial program 48.0%
+-commutative48.0%
hypot-1-def99.8%
Simplified99.8%
flip-+12.5%
frac-2neg12.5%
log-div12.5%
Applied egg-rr17.0%
sub-neg17.0%
sub-neg17.0%
fma-udef16.9%
unpow216.9%
associate--r+44.4%
+-inverses99.8%
metadata-eval99.8%
metadata-eval99.8%
metadata-eval99.8%
neg-sub099.8%
sub-neg99.8%
+-commutative99.8%
distribute-neg-in99.8%
remove-double-neg99.8%
sub-neg99.8%
Simplified99.8%
if -0.0599999987 < (copysign.f32 (log.f32 (+.f32 (fabs.f32 x) (sqrt.f32 (+.f32 (*.f32 x x) 1)))) x) < 0.00999999978Initial program 19.2%
+-commutative19.2%
hypot-1-def19.2%
Simplified19.2%
*-un-lft-identity19.2%
*-commutative19.2%
log-prod19.2%
*-un-lft-identity19.2%
*-un-lft-identity19.2%
add-sqr-sqrt9.3%
fabs-sqr9.3%
add-sqr-sqrt19.5%
metadata-eval19.5%
Applied egg-rr19.5%
+-rgt-identity19.5%
Simplified19.5%
Taylor expanded in x around 0 99.9%
*-commutative99.9%
Simplified99.9%
if 0.00999999978 < (copysign.f32 (log.f32 (+.f32 (fabs.f32 x) (sqrt.f32 (+.f32 (*.f32 x x) 1)))) x) Initial program 63.6%
+-commutative63.6%
hypot-1-def99.9%
Simplified99.9%
add-sqr-sqrt99.9%
pow299.9%
metadata-eval99.9%
log-pow100.0%
metadata-eval100.0%
add-sqr-sqrt100.0%
fabs-sqr100.0%
add-sqr-sqrt100.0%
Applied egg-rr100.0%
Final simplification99.9%
(FPCore (x)
:precision binary32
(if (<= x -2.0)
(copysign (log (/ -0.5 x)) x)
(if (<= x 0.009999999776482582)
(copysign (+ x (* -0.16666666666666666 (pow x 3.0))) x)
(copysign (log (+ x (hypot 1.0 x))) x))))
float code(float x) {
float tmp;
if (x <= -2.0f) {
tmp = copysignf(logf((-0.5f / x)), x);
} else if (x <= 0.009999999776482582f) {
tmp = copysignf((x + (-0.16666666666666666f * powf(x, 3.0f))), x);
} else {
tmp = copysignf(logf((x + hypotf(1.0f, x))), x);
}
return tmp;
}
function code(x) tmp = Float32(0.0) if (x <= Float32(-2.0)) tmp = copysign(log(Float32(Float32(-0.5) / x)), x); elseif (x <= Float32(0.009999999776482582)) tmp = copysign(Float32(x + Float32(Float32(-0.16666666666666666) * (x ^ Float32(3.0)))), x); else tmp = copysign(log(Float32(x + hypot(Float32(1.0), x))), x); end return tmp end
function tmp_2 = code(x) tmp = single(0.0); if (x <= single(-2.0)) tmp = sign(x) * abs(log((single(-0.5) / x))); elseif (x <= single(0.009999999776482582)) tmp = sign(x) * abs((x + (single(-0.16666666666666666) * (x ^ single(3.0))))); else tmp = sign(x) * abs(log((x + hypot(single(1.0), x)))); end tmp_2 = tmp; end
\begin{array}{l}
\\
\begin{array}{l}
\mathbf{if}\;x \leq -2:\\
\;\;\;\;\mathsf{copysign}\left(\log \left(\frac{-0.5}{x}\right), x\right)\\
\mathbf{elif}\;x \leq 0.009999999776482582:\\
\;\;\;\;\mathsf{copysign}\left(x + -0.16666666666666666 \cdot {x}^{3}, x\right)\\
\mathbf{else}:\\
\;\;\;\;\mathsf{copysign}\left(\log \left(x + \mathsf{hypot}\left(1, x\right)\right), x\right)\\
\end{array}
\end{array}
if x < -2Initial program 44.8%
+-commutative44.8%
hypot-1-def100.0%
Simplified100.0%
*-un-lft-identity100.0%
*-commutative100.0%
log-prod100.0%
*-un-lft-identity100.0%
*-un-lft-identity100.0%
add-sqr-sqrt-0.0%
fabs-sqr-0.0%
add-sqr-sqrt12.8%
metadata-eval12.8%
Applied egg-rr12.8%
+-rgt-identity12.8%
Simplified12.8%
Taylor expanded in x around -inf 97.6%
if -2 < x < 0.00999999978Initial program 21.6%
+-commutative21.6%
hypot-1-def21.7%
Simplified21.7%
*-un-lft-identity21.7%
*-commutative21.7%
log-prod21.7%
*-un-lft-identity21.7%
*-un-lft-identity21.7%
add-sqr-sqrt9.0%
fabs-sqr9.0%
add-sqr-sqrt21.8%
metadata-eval21.8%
Applied egg-rr21.8%
+-rgt-identity21.8%
Simplified21.8%
Taylor expanded in x around 0 98.5%
*-commutative98.5%
Simplified98.5%
if 0.00999999978 < x Initial program 63.6%
+-commutative63.6%
hypot-1-def99.9%
Simplified99.9%
*-un-lft-identity99.9%
*-commutative99.9%
log-prod99.9%
*-un-lft-identity99.9%
*-un-lft-identity99.9%
add-sqr-sqrt100.0%
fabs-sqr100.0%
add-sqr-sqrt99.9%
metadata-eval99.9%
Applied egg-rr99.9%
+-rgt-identity99.9%
Simplified99.9%
Final simplification98.6%
(FPCore (x)
:precision binary32
(if (<= x -0.05999999865889549)
(copysign (- (log (- (hypot 1.0 x) x))) x)
(if (<= x 0.009999999776482582)
(copysign (+ x (* -0.16666666666666666 (pow x 3.0))) x)
(copysign (log (+ x (hypot 1.0 x))) x))))
float code(float x) {
float tmp;
if (x <= -0.05999999865889549f) {
tmp = copysignf(-logf((hypotf(1.0f, x) - x)), x);
} else if (x <= 0.009999999776482582f) {
tmp = copysignf((x + (-0.16666666666666666f * powf(x, 3.0f))), x);
} else {
tmp = copysignf(logf((x + hypotf(1.0f, x))), x);
}
return tmp;
}
function code(x) tmp = Float32(0.0) if (x <= Float32(-0.05999999865889549)) tmp = copysign(Float32(-log(Float32(hypot(Float32(1.0), x) - x))), x); elseif (x <= Float32(0.009999999776482582)) tmp = copysign(Float32(x + Float32(Float32(-0.16666666666666666) * (x ^ Float32(3.0)))), x); else tmp = copysign(log(Float32(x + hypot(Float32(1.0), x))), x); end return tmp end
function tmp_2 = code(x) tmp = single(0.0); if (x <= single(-0.05999999865889549)) tmp = sign(x) * abs(-log((hypot(single(1.0), x) - x))); elseif (x <= single(0.009999999776482582)) tmp = sign(x) * abs((x + (single(-0.16666666666666666) * (x ^ single(3.0))))); else tmp = sign(x) * abs(log((x + hypot(single(1.0), x)))); end tmp_2 = tmp; end
\begin{array}{l}
\\
\begin{array}{l}
\mathbf{if}\;x \leq -0.05999999865889549:\\
\;\;\;\;\mathsf{copysign}\left(-\log \left(\mathsf{hypot}\left(1, x\right) - x\right), x\right)\\
\mathbf{elif}\;x \leq 0.009999999776482582:\\
\;\;\;\;\mathsf{copysign}\left(x + -0.16666666666666666 \cdot {x}^{3}, x\right)\\
\mathbf{else}:\\
\;\;\;\;\mathsf{copysign}\left(\log \left(x + \mathsf{hypot}\left(1, x\right)\right), x\right)\\
\end{array}
\end{array}
if x < -0.0599999987Initial program 48.0%
+-commutative48.0%
hypot-1-def99.8%
Simplified99.8%
flip-+12.5%
frac-2neg12.5%
log-div12.5%
Applied egg-rr17.0%
sub-neg17.0%
sub-neg17.0%
fma-udef16.9%
unpow216.9%
associate--r+44.4%
+-inverses99.8%
metadata-eval99.8%
metadata-eval99.8%
metadata-eval99.8%
neg-sub099.8%
sub-neg99.8%
+-commutative99.8%
distribute-neg-in99.8%
remove-double-neg99.8%
sub-neg99.8%
Simplified99.8%
if -0.0599999987 < x < 0.00999999978Initial program 19.2%
+-commutative19.2%
hypot-1-def19.2%
Simplified19.2%
*-un-lft-identity19.2%
*-commutative19.2%
log-prod19.2%
*-un-lft-identity19.2%
*-un-lft-identity19.2%
add-sqr-sqrt9.3%
fabs-sqr9.3%
add-sqr-sqrt19.5%
metadata-eval19.5%
Applied egg-rr19.5%
+-rgt-identity19.5%
Simplified19.5%
Taylor expanded in x around 0 99.9%
*-commutative99.9%
Simplified99.9%
if 0.00999999978 < x Initial program 63.6%
+-commutative63.6%
hypot-1-def99.9%
Simplified99.9%
*-un-lft-identity99.9%
*-commutative99.9%
log-prod99.9%
*-un-lft-identity99.9%
*-un-lft-identity99.9%
add-sqr-sqrt100.0%
fabs-sqr100.0%
add-sqr-sqrt99.9%
metadata-eval99.9%
Applied egg-rr99.9%
+-rgt-identity99.9%
Simplified99.9%
Final simplification99.9%
(FPCore (x)
:precision binary32
(if (<= x -2.0)
(copysign (log (/ -0.5 x)) x)
(if (<= x 1.0)
(copysign (+ x (* -0.16666666666666666 (pow x 3.0))) x)
(copysign (log (+ (+ x x) (/ 0.5 x))) x))))
float code(float x) {
float tmp;
if (x <= -2.0f) {
tmp = copysignf(logf((-0.5f / x)), x);
} else if (x <= 1.0f) {
tmp = copysignf((x + (-0.16666666666666666f * powf(x, 3.0f))), x);
} else {
tmp = copysignf(logf(((x + x) + (0.5f / x))), x);
}
return tmp;
}
function code(x) tmp = Float32(0.0) if (x <= Float32(-2.0)) tmp = copysign(log(Float32(Float32(-0.5) / x)), x); elseif (x <= Float32(1.0)) tmp = copysign(Float32(x + Float32(Float32(-0.16666666666666666) * (x ^ Float32(3.0)))), x); else tmp = copysign(log(Float32(Float32(x + x) + Float32(Float32(0.5) / x))), x); end return tmp end
function tmp_2 = code(x) tmp = single(0.0); if (x <= single(-2.0)) tmp = sign(x) * abs(log((single(-0.5) / x))); elseif (x <= single(1.0)) tmp = sign(x) * abs((x + (single(-0.16666666666666666) * (x ^ single(3.0))))); else tmp = sign(x) * abs(log(((x + x) + (single(0.5) / x)))); end tmp_2 = tmp; end
\begin{array}{l}
\\
\begin{array}{l}
\mathbf{if}\;x \leq -2:\\
\;\;\;\;\mathsf{copysign}\left(\log \left(\frac{-0.5}{x}\right), x\right)\\
\mathbf{elif}\;x \leq 1:\\
\;\;\;\;\mathsf{copysign}\left(x + -0.16666666666666666 \cdot {x}^{3}, x\right)\\
\mathbf{else}:\\
\;\;\;\;\mathsf{copysign}\left(\log \left(\left(x + x\right) + \frac{0.5}{x}\right), x\right)\\
\end{array}
\end{array}
if x < -2Initial program 44.8%
+-commutative44.8%
hypot-1-def100.0%
Simplified100.0%
*-un-lft-identity100.0%
*-commutative100.0%
log-prod100.0%
*-un-lft-identity100.0%
*-un-lft-identity100.0%
add-sqr-sqrt-0.0%
fabs-sqr-0.0%
add-sqr-sqrt12.8%
metadata-eval12.8%
Applied egg-rr12.8%
+-rgt-identity12.8%
Simplified12.8%
Taylor expanded in x around -inf 97.6%
if -2 < x < 1Initial program 22.2%
+-commutative22.2%
hypot-1-def22.2%
Simplified22.2%
*-un-lft-identity22.2%
*-commutative22.2%
log-prod22.2%
*-un-lft-identity22.2%
*-un-lft-identity22.2%
add-sqr-sqrt9.7%
fabs-sqr9.7%
add-sqr-sqrt22.4%
metadata-eval22.4%
Applied egg-rr22.4%
+-rgt-identity22.4%
Simplified22.4%
Taylor expanded in x around 0 98.0%
*-commutative98.0%
Simplified98.0%
if 1 < x Initial program 63.2%
+-commutative63.2%
hypot-1-def100.0%
Simplified100.0%
Taylor expanded in x around inf 99.9%
rem-square-sqrt99.9%
fabs-sqr99.9%
rem-square-sqrt99.9%
associate-+r+100.0%
associate-*r/100.0%
metadata-eval100.0%
Simplified100.0%
Final simplification98.4%
(FPCore (x)
:precision binary32
(if (<= x -2.0)
(copysign (log (/ -0.5 x)) x)
(if (<= x 1.0)
(copysign (+ x (* -0.16666666666666666 (pow x 3.0))) x)
(copysign (log (+ x x)) x))))
float code(float x) {
float tmp;
if (x <= -2.0f) {
tmp = copysignf(logf((-0.5f / x)), x);
} else if (x <= 1.0f) {
tmp = copysignf((x + (-0.16666666666666666f * powf(x, 3.0f))), x);
} else {
tmp = copysignf(logf((x + x)), x);
}
return tmp;
}
function code(x) tmp = Float32(0.0) if (x <= Float32(-2.0)) tmp = copysign(log(Float32(Float32(-0.5) / x)), x); elseif (x <= Float32(1.0)) tmp = copysign(Float32(x + Float32(Float32(-0.16666666666666666) * (x ^ Float32(3.0)))), x); else tmp = copysign(log(Float32(x + x)), x); end return tmp end
function tmp_2 = code(x) tmp = single(0.0); if (x <= single(-2.0)) tmp = sign(x) * abs(log((single(-0.5) / x))); elseif (x <= single(1.0)) tmp = sign(x) * abs((x + (single(-0.16666666666666666) * (x ^ single(3.0))))); else tmp = sign(x) * abs(log((x + x))); end tmp_2 = tmp; end
\begin{array}{l}
\\
\begin{array}{l}
\mathbf{if}\;x \leq -2:\\
\;\;\;\;\mathsf{copysign}\left(\log \left(\frac{-0.5}{x}\right), x\right)\\
\mathbf{elif}\;x \leq 1:\\
\;\;\;\;\mathsf{copysign}\left(x + -0.16666666666666666 \cdot {x}^{3}, x\right)\\
\mathbf{else}:\\
\;\;\;\;\mathsf{copysign}\left(\log \left(x + x\right), x\right)\\
\end{array}
\end{array}
if x < -2Initial program 44.8%
+-commutative44.8%
hypot-1-def100.0%
Simplified100.0%
*-un-lft-identity100.0%
*-commutative100.0%
log-prod100.0%
*-un-lft-identity100.0%
*-un-lft-identity100.0%
add-sqr-sqrt-0.0%
fabs-sqr-0.0%
add-sqr-sqrt12.8%
metadata-eval12.8%
Applied egg-rr12.8%
+-rgt-identity12.8%
Simplified12.8%
Taylor expanded in x around -inf 97.6%
if -2 < x < 1Initial program 22.2%
+-commutative22.2%
hypot-1-def22.2%
Simplified22.2%
*-un-lft-identity22.2%
*-commutative22.2%
log-prod22.2%
*-un-lft-identity22.2%
*-un-lft-identity22.2%
add-sqr-sqrt9.7%
fabs-sqr9.7%
add-sqr-sqrt22.4%
metadata-eval22.4%
Applied egg-rr22.4%
+-rgt-identity22.4%
Simplified22.4%
Taylor expanded in x around 0 98.0%
*-commutative98.0%
Simplified98.0%
if 1 < x Initial program 63.2%
+-commutative63.2%
hypot-1-def100.0%
Simplified100.0%
Taylor expanded in x around inf 99.2%
rem-square-sqrt99.1%
fabs-sqr99.1%
rem-square-sqrt99.2%
Simplified99.2%
Final simplification98.2%
(FPCore (x) :precision binary32 (if (<= x -2.0) (copysign (log (- x)) x) (if (<= x 1.0) (copysign x x) (copysign (log (+ x x)) x))))
float code(float x) {
float tmp;
if (x <= -2.0f) {
tmp = copysignf(logf(-x), x);
} else if (x <= 1.0f) {
tmp = copysignf(x, x);
} else {
tmp = copysignf(logf((x + x)), x);
}
return tmp;
}
function code(x) tmp = Float32(0.0) if (x <= Float32(-2.0)) tmp = copysign(log(Float32(-x)), x); elseif (x <= Float32(1.0)) tmp = copysign(x, x); else tmp = copysign(log(Float32(x + x)), x); end return tmp end
function tmp_2 = code(x) tmp = single(0.0); if (x <= single(-2.0)) tmp = sign(x) * abs(log(-x)); elseif (x <= single(1.0)) tmp = sign(x) * abs(x); else tmp = sign(x) * abs(log((x + x))); end tmp_2 = tmp; end
\begin{array}{l}
\\
\begin{array}{l}
\mathbf{if}\;x \leq -2:\\
\;\;\;\;\mathsf{copysign}\left(\log \left(-x\right), x\right)\\
\mathbf{elif}\;x \leq 1:\\
\;\;\;\;\mathsf{copysign}\left(x, x\right)\\
\mathbf{else}:\\
\;\;\;\;\mathsf{copysign}\left(\log \left(x + x\right), x\right)\\
\end{array}
\end{array}
if x < -2Initial program 44.8%
+-commutative44.8%
hypot-1-def100.0%
Simplified100.0%
Taylor expanded in x around -inf 44.6%
mul-1-neg44.6%
Simplified44.6%
if -2 < x < 1Initial program 22.2%
+-commutative22.2%
hypot-1-def22.2%
Simplified22.2%
Taylor expanded in x around 0 18.8%
log1p-def93.8%
rem-square-sqrt42.6%
fabs-sqr42.6%
rem-square-sqrt93.5%
Simplified93.5%
Taylor expanded in x around 0 97.1%
if 1 < x Initial program 63.2%
+-commutative63.2%
hypot-1-def100.0%
Simplified100.0%
Taylor expanded in x around inf 99.2%
rem-square-sqrt99.1%
fabs-sqr99.1%
rem-square-sqrt99.2%
Simplified99.2%
Final simplification85.1%
(FPCore (x) :precision binary32 (if (<= x -2.0) (copysign (log (/ -0.5 x)) x) (if (<= x 1.0) (copysign x x) (copysign (log (+ x x)) x))))
float code(float x) {
float tmp;
if (x <= -2.0f) {
tmp = copysignf(logf((-0.5f / x)), x);
} else if (x <= 1.0f) {
tmp = copysignf(x, x);
} else {
tmp = copysignf(logf((x + x)), x);
}
return tmp;
}
function code(x) tmp = Float32(0.0) if (x <= Float32(-2.0)) tmp = copysign(log(Float32(Float32(-0.5) / x)), x); elseif (x <= Float32(1.0)) tmp = copysign(x, x); else tmp = copysign(log(Float32(x + x)), x); end return tmp end
function tmp_2 = code(x) tmp = single(0.0); if (x <= single(-2.0)) tmp = sign(x) * abs(log((single(-0.5) / x))); elseif (x <= single(1.0)) tmp = sign(x) * abs(x); else tmp = sign(x) * abs(log((x + x))); end tmp_2 = tmp; end
\begin{array}{l}
\\
\begin{array}{l}
\mathbf{if}\;x \leq -2:\\
\;\;\;\;\mathsf{copysign}\left(\log \left(\frac{-0.5}{x}\right), x\right)\\
\mathbf{elif}\;x \leq 1:\\
\;\;\;\;\mathsf{copysign}\left(x, x\right)\\
\mathbf{else}:\\
\;\;\;\;\mathsf{copysign}\left(\log \left(x + x\right), x\right)\\
\end{array}
\end{array}
if x < -2Initial program 44.8%
+-commutative44.8%
hypot-1-def100.0%
Simplified100.0%
*-un-lft-identity100.0%
*-commutative100.0%
log-prod100.0%
*-un-lft-identity100.0%
*-un-lft-identity100.0%
add-sqr-sqrt-0.0%
fabs-sqr-0.0%
add-sqr-sqrt12.8%
metadata-eval12.8%
Applied egg-rr12.8%
+-rgt-identity12.8%
Simplified12.8%
Taylor expanded in x around -inf 97.6%
if -2 < x < 1Initial program 22.2%
+-commutative22.2%
hypot-1-def22.2%
Simplified22.2%
Taylor expanded in x around 0 18.8%
log1p-def93.8%
rem-square-sqrt42.6%
fabs-sqr42.6%
rem-square-sqrt93.5%
Simplified93.5%
Taylor expanded in x around 0 97.1%
if 1 < x Initial program 63.2%
+-commutative63.2%
hypot-1-def100.0%
Simplified100.0%
Taylor expanded in x around inf 99.2%
rem-square-sqrt99.1%
fabs-sqr99.1%
rem-square-sqrt99.2%
Simplified99.2%
Final simplification97.7%
(FPCore (x) :precision binary32 (if (<= x -0.5) (copysign (log (- x)) x) (copysign (log1p x) x)))
float code(float x) {
float tmp;
if (x <= -0.5f) {
tmp = copysignf(logf(-x), x);
} else {
tmp = copysignf(log1pf(x), x);
}
return tmp;
}
function code(x) tmp = Float32(0.0) if (x <= Float32(-0.5)) tmp = copysign(log(Float32(-x)), x); else tmp = copysign(log1p(x), x); end return tmp end
\begin{array}{l}
\\
\begin{array}{l}
\mathbf{if}\;x \leq -0.5:\\
\;\;\;\;\mathsf{copysign}\left(\log \left(-x\right), x\right)\\
\mathbf{else}:\\
\;\;\;\;\mathsf{copysign}\left(\mathsf{log1p}\left(x\right), x\right)\\
\end{array}
\end{array}
if x < -0.5Initial program 47.2%
+-commutative47.2%
hypot-1-def99.9%
Simplified99.9%
Taylor expanded in x around -inf 43.9%
mul-1-neg43.9%
Simplified43.9%
if -0.5 < x Initial program 35.1%
+-commutative35.1%
hypot-1-def47.8%
Simplified47.8%
Taylor expanded in x around 0 27.1%
log1p-def77.5%
rem-square-sqrt43.6%
fabs-sqr43.6%
rem-square-sqrt77.5%
Simplified77.5%
Final simplification69.1%
(FPCore (x) :precision binary32 (if (<= x 1.0) (copysign x x) (copysign (log1p x) x)))
float code(float x) {
float tmp;
if (x <= 1.0f) {
tmp = copysignf(x, x);
} else {
tmp = copysignf(log1pf(x), x);
}
return tmp;
}
function code(x) tmp = Float32(0.0) if (x <= Float32(1.0)) tmp = copysign(x, x); else tmp = copysign(log1p(x), x); end return tmp end
\begin{array}{l}
\\
\begin{array}{l}
\mathbf{if}\;x \leq 1:\\
\;\;\;\;\mathsf{copysign}\left(x, x\right)\\
\mathbf{else}:\\
\;\;\;\;\mathsf{copysign}\left(\mathsf{log1p}\left(x\right), x\right)\\
\end{array}
\end{array}
if x < 1Initial program 29.4%
+-commutative29.4%
hypot-1-def47.2%
Simplified47.2%
Taylor expanded in x around 0 27.1%
log1p-def78.0%
rem-square-sqrt28.9%
fabs-sqr28.9%
rem-square-sqrt63.5%
Simplified63.5%
Taylor expanded in x around 0 69.4%
if 1 < x Initial program 63.2%
+-commutative63.2%
hypot-1-def100.0%
Simplified100.0%
Taylor expanded in x around 0 43.7%
log1p-def43.7%
rem-square-sqrt43.7%
fabs-sqr43.7%
rem-square-sqrt43.7%
Simplified43.7%
Final simplification62.8%
(FPCore (x) :precision binary32 (copysign x x))
float code(float x) {
return copysignf(x, x);
}
function code(x) return copysign(x, x) end
function tmp = code(x) tmp = sign(x) * abs(x); end
\begin{array}{l}
\\
\mathsf{copysign}\left(x, x\right)
\end{array}
Initial program 38.1%
+-commutative38.1%
hypot-1-def60.8%
Simplified60.8%
Taylor expanded in x around 0 31.4%
log1p-def69.2%
rem-square-sqrt32.7%
fabs-sqr32.7%
rem-square-sqrt58.4%
Simplified58.4%
Taylor expanded in x around 0 54.5%
Final simplification54.5%
(FPCore (x) :precision binary32 (let* ((t_0 (/ 1.0 (fabs x)))) (copysign (log1p (+ (fabs x) (/ (fabs x) (+ (hypot 1.0 t_0) t_0)))) x)))
float code(float x) {
float t_0 = 1.0f / fabsf(x);
return copysignf(log1pf((fabsf(x) + (fabsf(x) / (hypotf(1.0f, t_0) + t_0)))), x);
}
function code(x) t_0 = Float32(Float32(1.0) / abs(x)) return copysign(log1p(Float32(abs(x) + Float32(abs(x) / Float32(hypot(Float32(1.0), t_0) + t_0)))), x) end
\begin{array}{l}
\\
\begin{array}{l}
t_0 := \frac{1}{\left|x\right|}\\
\mathsf{copysign}\left(\mathsf{log1p}\left(\left|x\right| + \frac{\left|x\right|}{\mathsf{hypot}\left(1, t\_0\right) + t\_0}\right), x\right)
\end{array}
\end{array}
herbie shell --seed 2024027
(FPCore (x)
:name "Rust f32::asinh"
:precision binary32
:herbie-target
(copysign (log1p (+ (fabs x) (/ (fabs x) (+ (hypot 1.0 (/ 1.0 (fabs x))) (/ 1.0 (fabs x)))))) x)
(copysign (log (+ (fabs x) (sqrt (+ (* x x) 1.0)))) x))