
(FPCore (x) :precision binary32 (atanh x))
float code(float x) {
return atanhf(x);
}
function code(x) return atanh(x) end
function tmp = code(x) tmp = atanh(x); end
\begin{array}{l}
\\
\tanh^{-1} x
\end{array}
Sampling outcomes in binary32 precision:
Herbie found 13 alternatives:
| Alternative | Accuracy | Speedup |
|---|
(FPCore (x) :precision binary32 (* 0.5 (log1p (/ (* 2.0 x) (- 1.0 x)))))
float code(float x) {
return 0.5f * log1pf(((2.0f * x) / (1.0f - x)));
}
function code(x) return Float32(Float32(0.5) * log1p(Float32(Float32(Float32(2.0) * x) / Float32(Float32(1.0) - x)))) end
\begin{array}{l}
\\
0.5 \cdot \mathsf{log1p}\left(\frac{2 \cdot x}{1 - x}\right)
\end{array}
(FPCore (x) :precision binary32 (* 0.5 (log1p (/ (* 2.0 x) (- 1.0 x)))))
float code(float x) {
return 0.5f * log1pf(((2.0f * x) / (1.0f - x)));
}
function code(x) return Float32(Float32(0.5) * log1p(Float32(Float32(Float32(2.0) * x) / Float32(Float32(1.0) - x)))) end
\begin{array}{l}
\\
0.5 \cdot \mathsf{log1p}\left(\frac{2 \cdot x}{1 - x}\right)
\end{array}
Initial program 99.8%
(FPCore (x) :precision binary32 (* 0.5 (log1p (* x (/ 2.0 (- 1.0 x))))))
float code(float x) {
return 0.5f * log1pf((x * (2.0f / (1.0f - x))));
}
function code(x) return Float32(Float32(0.5) * log1p(Float32(x * Float32(Float32(2.0) / Float32(Float32(1.0) - x))))) end
\begin{array}{l}
\\
0.5 \cdot \mathsf{log1p}\left(x \cdot \frac{2}{1 - x}\right)
\end{array}
Initial program 99.8%
*-commutativeN/A
associate-/l*N/A
*-commutativeN/A
*-lowering-*.f32N/A
/-lowering-/.f32N/A
--lowering--.f3299.7%
Applied egg-rr99.7%
Final simplification99.7%
(FPCore (x)
:precision binary32
(*
x
(/
1.0
(/
(-
1.0
(*
x
(*
x
(+
0.3333333333333333
(* x (* x (+ 0.2 (* x (* x 0.14285714285714285)))))))))
(-
1.0
(*
(* x (* x (* x x)))
(+ 0.1111111111111111 (* (* x x) 0.13333333333333333))))))))
float code(float x) {
return x * (1.0f / ((1.0f - (x * (x * (0.3333333333333333f + (x * (x * (0.2f + (x * (x * 0.14285714285714285f))))))))) / (1.0f - ((x * (x * (x * x))) * (0.1111111111111111f + ((x * x) * 0.13333333333333333f))))));
}
real(4) function code(x)
real(4), intent (in) :: x
code = x * (1.0e0 / ((1.0e0 - (x * (x * (0.3333333333333333e0 + (x * (x * (0.2e0 + (x * (x * 0.14285714285714285e0))))))))) / (1.0e0 - ((x * (x * (x * x))) * (0.1111111111111111e0 + ((x * x) * 0.13333333333333333e0))))))
end function
function code(x) return Float32(x * Float32(Float32(1.0) / Float32(Float32(Float32(1.0) - Float32(x * Float32(x * Float32(Float32(0.3333333333333333) + Float32(x * Float32(x * Float32(Float32(0.2) + Float32(x * Float32(x * Float32(0.14285714285714285)))))))))) / Float32(Float32(1.0) - Float32(Float32(x * Float32(x * Float32(x * x))) * Float32(Float32(0.1111111111111111) + Float32(Float32(x * x) * Float32(0.13333333333333333)))))))) end
function tmp = code(x) tmp = x * (single(1.0) / ((single(1.0) - (x * (x * (single(0.3333333333333333) + (x * (x * (single(0.2) + (x * (x * single(0.14285714285714285)))))))))) / (single(1.0) - ((x * (x * (x * x))) * (single(0.1111111111111111) + ((x * x) * single(0.13333333333333333))))))); end
\begin{array}{l}
\\
x \cdot \frac{1}{\frac{1 - x \cdot \left(x \cdot \left(0.3333333333333333 + x \cdot \left(x \cdot \left(0.2 + x \cdot \left(x \cdot 0.14285714285714285\right)\right)\right)\right)\right)}{1 - \left(x \cdot \left(x \cdot \left(x \cdot x\right)\right)\right) \cdot \left(0.1111111111111111 + \left(x \cdot x\right) \cdot 0.13333333333333333\right)}}
\end{array}
Initial program 99.8%
flip--N/A
associate-/r/N/A
+-commutativeN/A
distribute-lft-inN/A
+-lowering-+.f32N/A
*-lowering-*.f32N/A
/-lowering-/.f32N/A
*-lowering-*.f32N/A
metadata-evalN/A
--lowering--.f32N/A
*-lowering-*.f32N/A
*-lowering-*.f32N/A
/-lowering-/.f32N/A
*-lowering-*.f32N/A
metadata-evalN/A
--lowering--.f32N/A
*-lowering-*.f3299.8%
Applied egg-rr99.8%
Taylor expanded in x around 0
*-lowering-*.f32N/A
+-lowering-+.f32N/A
*-lowering-*.f32N/A
unpow2N/A
*-lowering-*.f32N/A
+-lowering-+.f32N/A
*-lowering-*.f32N/A
unpow2N/A
*-lowering-*.f32N/A
+-lowering-+.f32N/A
*-commutativeN/A
*-lowering-*.f32N/A
unpow2N/A
*-lowering-*.f3298.3%
Simplified98.3%
flip-+N/A
clear-numN/A
/-lowering-/.f32N/A
/-lowering-/.f32N/A
Applied egg-rr98.3%
Taylor expanded in x around 0
+-lowering-+.f32N/A
*-commutativeN/A
*-lowering-*.f32N/A
unpow2N/A
*-lowering-*.f3298.6%
Simplified98.6%
(FPCore (x)
:precision binary32
(*
x
(/
1.0
(+
1.0
(*
(* x x)
(+
-0.3333333333333333
(*
x
(* x (+ -0.08888888888888889 (* (* x x) -0.04656084656084656))))))))))
float code(float x) {
return x * (1.0f / (1.0f + ((x * x) * (-0.3333333333333333f + (x * (x * (-0.08888888888888889f + ((x * x) * -0.04656084656084656f))))))));
}
real(4) function code(x)
real(4), intent (in) :: x
code = x * (1.0e0 / (1.0e0 + ((x * x) * ((-0.3333333333333333e0) + (x * (x * ((-0.08888888888888889e0) + ((x * x) * (-0.04656084656084656e0)))))))))
end function
function code(x) return Float32(x * Float32(Float32(1.0) / Float32(Float32(1.0) + Float32(Float32(x * x) * Float32(Float32(-0.3333333333333333) + Float32(x * Float32(x * Float32(Float32(-0.08888888888888889) + Float32(Float32(x * x) * Float32(-0.04656084656084656)))))))))) end
function tmp = code(x) tmp = x * (single(1.0) / (single(1.0) + ((x * x) * (single(-0.3333333333333333) + (x * (x * (single(-0.08888888888888889) + ((x * x) * single(-0.04656084656084656))))))))); end
\begin{array}{l}
\\
x \cdot \frac{1}{1 + \left(x \cdot x\right) \cdot \left(-0.3333333333333333 + x \cdot \left(x \cdot \left(-0.08888888888888889 + \left(x \cdot x\right) \cdot -0.04656084656084656\right)\right)\right)}
\end{array}
Initial program 99.8%
flip--N/A
associate-/r/N/A
+-commutativeN/A
distribute-lft-inN/A
+-lowering-+.f32N/A
*-lowering-*.f32N/A
/-lowering-/.f32N/A
*-lowering-*.f32N/A
metadata-evalN/A
--lowering--.f32N/A
*-lowering-*.f32N/A
*-lowering-*.f32N/A
/-lowering-/.f32N/A
*-lowering-*.f32N/A
metadata-evalN/A
--lowering--.f32N/A
*-lowering-*.f3299.8%
Applied egg-rr99.8%
Taylor expanded in x around 0
*-lowering-*.f32N/A
+-lowering-+.f32N/A
*-lowering-*.f32N/A
unpow2N/A
*-lowering-*.f32N/A
+-lowering-+.f32N/A
*-lowering-*.f32N/A
unpow2N/A
*-lowering-*.f32N/A
+-lowering-+.f32N/A
*-commutativeN/A
*-lowering-*.f32N/A
unpow2N/A
*-lowering-*.f3298.3%
Simplified98.3%
flip-+N/A
clear-numN/A
/-lowering-/.f32N/A
/-lowering-/.f32N/A
Applied egg-rr98.3%
Taylor expanded in x around 0
+-lowering-+.f32N/A
*-lowering-*.f32N/A
unpow2N/A
*-lowering-*.f32N/A
sub-negN/A
metadata-evalN/A
+-commutativeN/A
+-lowering-+.f32N/A
unpow2N/A
associate-*l*N/A
*-lowering-*.f32N/A
*-lowering-*.f32N/A
sub-negN/A
metadata-evalN/A
+-commutativeN/A
+-lowering-+.f32N/A
*-commutativeN/A
*-lowering-*.f32N/A
unpow2N/A
*-lowering-*.f3298.5%
Simplified98.5%
(FPCore (x)
:precision binary32
(+
x
(*
(*
x
(+ 0.3333333333333333 (* x (* x (+ 0.2 (* x (* x 0.14285714285714285)))))))
(* x x))))
float code(float x) {
return x + ((x * (0.3333333333333333f + (x * (x * (0.2f + (x * (x * 0.14285714285714285f))))))) * (x * x));
}
real(4) function code(x)
real(4), intent (in) :: x
code = x + ((x * (0.3333333333333333e0 + (x * (x * (0.2e0 + (x * (x * 0.14285714285714285e0))))))) * (x * x))
end function
function code(x) return Float32(x + Float32(Float32(x * Float32(Float32(0.3333333333333333) + Float32(x * Float32(x * Float32(Float32(0.2) + Float32(x * Float32(x * Float32(0.14285714285714285)))))))) * Float32(x * x))) end
function tmp = code(x) tmp = x + ((x * (single(0.3333333333333333) + (x * (x * (single(0.2) + (x * (x * single(0.14285714285714285)))))))) * (x * x)); end
\begin{array}{l}
\\
x + \left(x \cdot \left(0.3333333333333333 + x \cdot \left(x \cdot \left(0.2 + x \cdot \left(x \cdot 0.14285714285714285\right)\right)\right)\right)\right) \cdot \left(x \cdot x\right)
\end{array}
Initial program 99.8%
flip--N/A
associate-/r/N/A
+-commutativeN/A
distribute-lft-inN/A
+-lowering-+.f32N/A
*-lowering-*.f32N/A
/-lowering-/.f32N/A
*-lowering-*.f32N/A
metadata-evalN/A
--lowering--.f32N/A
*-lowering-*.f32N/A
*-lowering-*.f32N/A
/-lowering-/.f32N/A
*-lowering-*.f32N/A
metadata-evalN/A
--lowering--.f32N/A
*-lowering-*.f3299.8%
Applied egg-rr99.8%
Taylor expanded in x around 0
*-lowering-*.f32N/A
+-lowering-+.f32N/A
*-lowering-*.f32N/A
unpow2N/A
*-lowering-*.f32N/A
+-lowering-+.f32N/A
*-lowering-*.f32N/A
unpow2N/A
*-lowering-*.f32N/A
+-lowering-+.f32N/A
*-commutativeN/A
*-lowering-*.f32N/A
unpow2N/A
*-lowering-*.f3298.3%
Simplified98.3%
+-commutativeN/A
distribute-rgt-inN/A
*-lft-identityN/A
+-lowering-+.f32N/A
Applied egg-rr98.3%
Final simplification98.3%
(FPCore (x)
:precision binary32
(*
x
(+
1.0
(*
(* x x)
(+
0.3333333333333333
(* x (* x (+ 0.2 (* 0.14285714285714285 (* x x))))))))))
float code(float x) {
return x * (1.0f + ((x * x) * (0.3333333333333333f + (x * (x * (0.2f + (0.14285714285714285f * (x * x))))))));
}
real(4) function code(x)
real(4), intent (in) :: x
code = x * (1.0e0 + ((x * x) * (0.3333333333333333e0 + (x * (x * (0.2e0 + (0.14285714285714285e0 * (x * x))))))))
end function
function code(x) return Float32(x * Float32(Float32(1.0) + Float32(Float32(x * x) * Float32(Float32(0.3333333333333333) + Float32(x * Float32(x * Float32(Float32(0.2) + Float32(Float32(0.14285714285714285) * Float32(x * x))))))))) end
function tmp = code(x) tmp = x * (single(1.0) + ((x * x) * (single(0.3333333333333333) + (x * (x * (single(0.2) + (single(0.14285714285714285) * (x * x)))))))); end
\begin{array}{l}
\\
x \cdot \left(1 + \left(x \cdot x\right) \cdot \left(0.3333333333333333 + x \cdot \left(x \cdot \left(0.2 + 0.14285714285714285 \cdot \left(x \cdot x\right)\right)\right)\right)\right)
\end{array}
Initial program 99.8%
Taylor expanded in x around 0
*-lowering-*.f32N/A
+-lowering-+.f32N/A
*-lowering-*.f32N/A
unpow2N/A
*-lowering-*.f32N/A
+-lowering-+.f32N/A
unpow2N/A
associate-*l*N/A
*-commutativeN/A
*-lowering-*.f32N/A
*-commutativeN/A
*-lowering-*.f32N/A
+-lowering-+.f32N/A
*-commutativeN/A
*-lowering-*.f32N/A
unpow2N/A
*-lowering-*.f3298.3%
Simplified98.3%
Final simplification98.3%
(FPCore (x)
:precision binary32
(*
x
(/
1.0
(+
1.0
(* x (* x (+ -0.3333333333333333 (* (* x x) -0.08888888888888889))))))))
float code(float x) {
return x * (1.0f / (1.0f + (x * (x * (-0.3333333333333333f + ((x * x) * -0.08888888888888889f))))));
}
real(4) function code(x)
real(4), intent (in) :: x
code = x * (1.0e0 / (1.0e0 + (x * (x * ((-0.3333333333333333e0) + ((x * x) * (-0.08888888888888889e0)))))))
end function
function code(x) return Float32(x * Float32(Float32(1.0) / Float32(Float32(1.0) + Float32(x * Float32(x * Float32(Float32(-0.3333333333333333) + Float32(Float32(x * x) * Float32(-0.08888888888888889)))))))) end
function tmp = code(x) tmp = x * (single(1.0) / (single(1.0) + (x * (x * (single(-0.3333333333333333) + ((x * x) * single(-0.08888888888888889))))))); end
\begin{array}{l}
\\
x \cdot \frac{1}{1 + x \cdot \left(x \cdot \left(-0.3333333333333333 + \left(x \cdot x\right) \cdot -0.08888888888888889\right)\right)}
\end{array}
Initial program 99.8%
flip--N/A
associate-/r/N/A
+-commutativeN/A
distribute-lft-inN/A
+-lowering-+.f32N/A
*-lowering-*.f32N/A
/-lowering-/.f32N/A
*-lowering-*.f32N/A
metadata-evalN/A
--lowering--.f32N/A
*-lowering-*.f32N/A
*-lowering-*.f32N/A
/-lowering-/.f32N/A
*-lowering-*.f32N/A
metadata-evalN/A
--lowering--.f32N/A
*-lowering-*.f3299.8%
Applied egg-rr99.8%
Taylor expanded in x around 0
*-lowering-*.f32N/A
+-lowering-+.f32N/A
*-lowering-*.f32N/A
unpow2N/A
*-lowering-*.f32N/A
+-lowering-+.f32N/A
*-lowering-*.f32N/A
unpow2N/A
*-lowering-*.f32N/A
+-lowering-+.f32N/A
*-commutativeN/A
*-lowering-*.f32N/A
unpow2N/A
*-lowering-*.f3298.3%
Simplified98.3%
flip-+N/A
clear-numN/A
/-lowering-/.f32N/A
/-lowering-/.f32N/A
Applied egg-rr98.3%
Taylor expanded in x around 0
+-lowering-+.f32N/A
unpow2N/A
associate-*l*N/A
*-lowering-*.f32N/A
*-lowering-*.f32N/A
sub-negN/A
metadata-evalN/A
+-commutativeN/A
+-lowering-+.f32N/A
*-commutativeN/A
*-lowering-*.f32N/A
unpow2N/A
*-lowering-*.f3298.0%
Simplified98.0%
(FPCore (x) :precision binary32 (+ x (* x (* (* x x) (+ 0.3333333333333333 (* 0.2 (* x x)))))))
float code(float x) {
return x + (x * ((x * x) * (0.3333333333333333f + (0.2f * (x * x)))));
}
real(4) function code(x)
real(4), intent (in) :: x
code = x + (x * ((x * x) * (0.3333333333333333e0 + (0.2e0 * (x * x)))))
end function
function code(x) return Float32(x + Float32(x * Float32(Float32(x * x) * Float32(Float32(0.3333333333333333) + Float32(Float32(0.2) * Float32(x * x)))))) end
function tmp = code(x) tmp = x + (x * ((x * x) * (single(0.3333333333333333) + (single(0.2) * (x * x))))); end
\begin{array}{l}
\\
x + x \cdot \left(\left(x \cdot x\right) \cdot \left(0.3333333333333333 + 0.2 \cdot \left(x \cdot x\right)\right)\right)
\end{array}
Initial program 99.8%
Taylor expanded in x around 0
*-lowering-*.f32N/A
+-lowering-+.f32N/A
*-lowering-*.f32N/A
unpow2N/A
*-lowering-*.f32N/A
+-lowering-+.f32N/A
*-commutativeN/A
*-lowering-*.f32N/A
unpow2N/A
*-lowering-*.f3297.7%
Simplified97.7%
+-commutativeN/A
distribute-rgt-inN/A
*-lft-identityN/A
+-lowering-+.f32N/A
*-commutativeN/A
*-lowering-*.f32N/A
*-lowering-*.f32N/A
*-lowering-*.f32N/A
+-lowering-+.f32N/A
*-lowering-*.f32N/A
*-lowering-*.f3297.8%
Applied egg-rr97.8%
Final simplification97.8%
(FPCore (x) :precision binary32 (* x (+ 1.0 (* (* x x) (+ 0.3333333333333333 (* 0.2 (* x x)))))))
float code(float x) {
return x * (1.0f + ((x * x) * (0.3333333333333333f + (0.2f * (x * x)))));
}
real(4) function code(x)
real(4), intent (in) :: x
code = x * (1.0e0 + ((x * x) * (0.3333333333333333e0 + (0.2e0 * (x * x)))))
end function
function code(x) return Float32(x * Float32(Float32(1.0) + Float32(Float32(x * x) * Float32(Float32(0.3333333333333333) + Float32(Float32(0.2) * Float32(x * x)))))) end
function tmp = code(x) tmp = x * (single(1.0) + ((x * x) * (single(0.3333333333333333) + (single(0.2) * (x * x))))); end
\begin{array}{l}
\\
x \cdot \left(1 + \left(x \cdot x\right) \cdot \left(0.3333333333333333 + 0.2 \cdot \left(x \cdot x\right)\right)\right)
\end{array}
Initial program 99.8%
Taylor expanded in x around 0
*-lowering-*.f32N/A
+-lowering-+.f32N/A
*-lowering-*.f32N/A
unpow2N/A
*-lowering-*.f32N/A
+-lowering-+.f32N/A
*-commutativeN/A
*-lowering-*.f32N/A
unpow2N/A
*-lowering-*.f3297.7%
Simplified97.7%
Final simplification97.7%
(FPCore (x) :precision binary32 (* x (/ 1.0 (+ 1.0 (* (* x x) -0.3333333333333333)))))
float code(float x) {
return x * (1.0f / (1.0f + ((x * x) * -0.3333333333333333f)));
}
real(4) function code(x)
real(4), intent (in) :: x
code = x * (1.0e0 / (1.0e0 + ((x * x) * (-0.3333333333333333e0))))
end function
function code(x) return Float32(x * Float32(Float32(1.0) / Float32(Float32(1.0) + Float32(Float32(x * x) * Float32(-0.3333333333333333))))) end
function tmp = code(x) tmp = x * (single(1.0) / (single(1.0) + ((x * x) * single(-0.3333333333333333)))); end
\begin{array}{l}
\\
x \cdot \frac{1}{1 + \left(x \cdot x\right) \cdot -0.3333333333333333}
\end{array}
Initial program 99.8%
flip--N/A
associate-/r/N/A
+-commutativeN/A
distribute-lft-inN/A
+-lowering-+.f32N/A
*-lowering-*.f32N/A
/-lowering-/.f32N/A
*-lowering-*.f32N/A
metadata-evalN/A
--lowering--.f32N/A
*-lowering-*.f32N/A
*-lowering-*.f32N/A
/-lowering-/.f32N/A
*-lowering-*.f32N/A
metadata-evalN/A
--lowering--.f32N/A
*-lowering-*.f3299.8%
Applied egg-rr99.8%
Taylor expanded in x around 0
*-lowering-*.f32N/A
+-lowering-+.f32N/A
*-lowering-*.f32N/A
unpow2N/A
*-lowering-*.f32N/A
+-lowering-+.f32N/A
*-lowering-*.f32N/A
unpow2N/A
*-lowering-*.f32N/A
+-lowering-+.f32N/A
*-commutativeN/A
*-lowering-*.f32N/A
unpow2N/A
*-lowering-*.f3298.3%
Simplified98.3%
flip-+N/A
clear-numN/A
/-lowering-/.f32N/A
/-lowering-/.f32N/A
Applied egg-rr98.3%
Taylor expanded in x around 0
+-lowering-+.f32N/A
*-commutativeN/A
*-lowering-*.f32N/A
unpow2N/A
*-lowering-*.f3297.3%
Simplified97.3%
(FPCore (x) :precision binary32 (+ x (* x (* 0.3333333333333333 (* x x)))))
float code(float x) {
return x + (x * (0.3333333333333333f * (x * x)));
}
real(4) function code(x)
real(4), intent (in) :: x
code = x + (x * (0.3333333333333333e0 * (x * x)))
end function
function code(x) return Float32(x + Float32(x * Float32(Float32(0.3333333333333333) * Float32(x * x)))) end
function tmp = code(x) tmp = x + (x * (single(0.3333333333333333) * (x * x))); end
\begin{array}{l}
\\
x + x \cdot \left(0.3333333333333333 \cdot \left(x \cdot x\right)\right)
\end{array}
Initial program 99.8%
Taylor expanded in x around 0
*-lowering-*.f32N/A
+-lowering-+.f32N/A
*-lowering-*.f32N/A
unpow2N/A
*-lowering-*.f32N/A
+-lowering-+.f32N/A
*-commutativeN/A
*-lowering-*.f32N/A
unpow2N/A
*-lowering-*.f3297.7%
Simplified97.7%
Taylor expanded in x around 0
Simplified97.1%
+-commutativeN/A
distribute-rgt-inN/A
*-lft-identityN/A
+-lowering-+.f32N/A
*-commutativeN/A
*-lowering-*.f32N/A
*-lowering-*.f32N/A
*-lowering-*.f3297.2%
Applied egg-rr97.2%
Final simplification97.2%
(FPCore (x) :precision binary32 (* x (+ 1.0 (* 0.3333333333333333 (* x x)))))
float code(float x) {
return x * (1.0f + (0.3333333333333333f * (x * x)));
}
real(4) function code(x)
real(4), intent (in) :: x
code = x * (1.0e0 + (0.3333333333333333e0 * (x * x)))
end function
function code(x) return Float32(x * Float32(Float32(1.0) + Float32(Float32(0.3333333333333333) * Float32(x * x)))) end
function tmp = code(x) tmp = x * (single(1.0) + (single(0.3333333333333333) * (x * x))); end
\begin{array}{l}
\\
x \cdot \left(1 + 0.3333333333333333 \cdot \left(x \cdot x\right)\right)
\end{array}
Initial program 99.8%
Taylor expanded in x around 0
*-lowering-*.f32N/A
+-lowering-+.f32N/A
*-lowering-*.f32N/A
unpow2N/A
*-lowering-*.f3297.1%
Simplified97.1%
(FPCore (x) :precision binary32 x)
float code(float x) {
return x;
}
real(4) function code(x)
real(4), intent (in) :: x
code = x
end function
function code(x) return x end
function tmp = code(x) tmp = x; end
\begin{array}{l}
\\
x
\end{array}
Initial program 99.8%
Taylor expanded in x around 0
Simplified95.7%
herbie shell --seed 2024158
(FPCore (x)
:name "Rust f32::atanh"
:precision binary32
(* 0.5 (log1p (/ (* 2.0 x) (- 1.0 x)))))