
(FPCore (x) :precision binary64 (- (/ x (+ x 1.0)) (/ (+ x 1.0) (- x 1.0))))
double code(double x) {
return (x / (x + 1.0)) - ((x + 1.0) / (x - 1.0));
}
real(8) function code(x)
real(8), intent (in) :: x
code = (x / (x + 1.0d0)) - ((x + 1.0d0) / (x - 1.0d0))
end function
public static double code(double x) {
return (x / (x + 1.0)) - ((x + 1.0) / (x - 1.0));
}
def code(x): return (x / (x + 1.0)) - ((x + 1.0) / (x - 1.0))
function code(x) return Float64(Float64(x / Float64(x + 1.0)) - Float64(Float64(x + 1.0) / Float64(x - 1.0))) end
function tmp = code(x) tmp = (x / (x + 1.0)) - ((x + 1.0) / (x - 1.0)); end
code[x_] := N[(N[(x / N[(x + 1.0), $MachinePrecision]), $MachinePrecision] - N[(N[(x + 1.0), $MachinePrecision] / N[(x - 1.0), $MachinePrecision]), $MachinePrecision]), $MachinePrecision]
\begin{array}{l}
\\
\frac{x}{x + 1} - \frac{x + 1}{x - 1}
\end{array}
Sampling outcomes in binary64 precision:
Herbie found 10 alternatives:
| Alternative | Accuracy | Speedup |
|---|
(FPCore (x) :precision binary64 (- (/ x (+ x 1.0)) (/ (+ x 1.0) (- x 1.0))))
double code(double x) {
return (x / (x + 1.0)) - ((x + 1.0) / (x - 1.0));
}
real(8) function code(x)
real(8), intent (in) :: x
code = (x / (x + 1.0d0)) - ((x + 1.0d0) / (x - 1.0d0))
end function
public static double code(double x) {
return (x / (x + 1.0)) - ((x + 1.0) / (x - 1.0));
}
def code(x): return (x / (x + 1.0)) - ((x + 1.0) / (x - 1.0))
function code(x) return Float64(Float64(x / Float64(x + 1.0)) - Float64(Float64(x + 1.0) / Float64(x - 1.0))) end
function tmp = code(x) tmp = (x / (x + 1.0)) - ((x + 1.0) / (x - 1.0)); end
code[x_] := N[(N[(x / N[(x + 1.0), $MachinePrecision]), $MachinePrecision] - N[(N[(x + 1.0), $MachinePrecision] / N[(x - 1.0), $MachinePrecision]), $MachinePrecision]), $MachinePrecision]
\begin{array}{l}
\\
\frac{x}{x + 1} - \frac{x + 1}{x - 1}
\end{array}
(FPCore (x) :precision binary64 (/ (+ 3.0 (/ 1.0 x)) (* (/ (+ 1.0 x) x) (- 1.0 x))))
double code(double x) {
return (3.0 + (1.0 / x)) / (((1.0 + x) / x) * (1.0 - x));
}
real(8) function code(x)
real(8), intent (in) :: x
code = (3.0d0 + (1.0d0 / x)) / (((1.0d0 + x) / x) * (1.0d0 - x))
end function
public static double code(double x) {
return (3.0 + (1.0 / x)) / (((1.0 + x) / x) * (1.0 - x));
}
def code(x): return (3.0 + (1.0 / x)) / (((1.0 + x) / x) * (1.0 - x))
function code(x) return Float64(Float64(3.0 + Float64(1.0 / x)) / Float64(Float64(Float64(1.0 + x) / x) * Float64(1.0 - x))) end
function tmp = code(x) tmp = (3.0 + (1.0 / x)) / (((1.0 + x) / x) * (1.0 - x)); end
code[x_] := N[(N[(3.0 + N[(1.0 / x), $MachinePrecision]), $MachinePrecision] / N[(N[(N[(1.0 + x), $MachinePrecision] / x), $MachinePrecision] * N[(1.0 - x), $MachinePrecision]), $MachinePrecision]), $MachinePrecision]
\begin{array}{l}
\\
\frac{3 + \frac{1}{x}}{\frac{1 + x}{x} \cdot \left(1 - x\right)}
\end{array}
Initial program 53.1%
remove-double-neg53.1%
distribute-neg-frac53.1%
distribute-neg-in53.1%
sub-neg53.1%
distribute-frac-neg253.1%
sub-neg53.1%
+-commutative53.1%
unsub-neg53.1%
metadata-eval53.1%
neg-sub053.1%
associate-+l-53.1%
neg-sub053.1%
+-commutative53.1%
unsub-neg53.1%
Simplified53.1%
clear-num53.1%
frac-sub53.3%
*-un-lft-identity53.3%
Applied egg-rr53.3%
Taylor expanded in x around inf 100.0%
+-commutative100.0%
Simplified100.0%
Final simplification100.0%
(FPCore (x)
:precision binary64
(let* ((t_0 (/ x (+ 1.0 x))))
(if (<= (+ t_0 (/ (+ 1.0 x) (- 1.0 x))) 2e-7)
(/ (+ -3.0 (/ (- -1.0 (/ 3.0 x)) x)) x)
(+ t_0 (* (+ 1.0 x) (/ 1.0 (- 1.0 x)))))))
double code(double x) {
double t_0 = x / (1.0 + x);
double tmp;
if ((t_0 + ((1.0 + x) / (1.0 - x))) <= 2e-7) {
tmp = (-3.0 + ((-1.0 - (3.0 / x)) / x)) / x;
} else {
tmp = t_0 + ((1.0 + x) * (1.0 / (1.0 - x)));
}
return tmp;
}
real(8) function code(x)
real(8), intent (in) :: x
real(8) :: t_0
real(8) :: tmp
t_0 = x / (1.0d0 + x)
if ((t_0 + ((1.0d0 + x) / (1.0d0 - x))) <= 2d-7) then
tmp = ((-3.0d0) + (((-1.0d0) - (3.0d0 / x)) / x)) / x
else
tmp = t_0 + ((1.0d0 + x) * (1.0d0 / (1.0d0 - x)))
end if
code = tmp
end function
public static double code(double x) {
double t_0 = x / (1.0 + x);
double tmp;
if ((t_0 + ((1.0 + x) / (1.0 - x))) <= 2e-7) {
tmp = (-3.0 + ((-1.0 - (3.0 / x)) / x)) / x;
} else {
tmp = t_0 + ((1.0 + x) * (1.0 / (1.0 - x)));
}
return tmp;
}
def code(x): t_0 = x / (1.0 + x) tmp = 0 if (t_0 + ((1.0 + x) / (1.0 - x))) <= 2e-7: tmp = (-3.0 + ((-1.0 - (3.0 / x)) / x)) / x else: tmp = t_0 + ((1.0 + x) * (1.0 / (1.0 - x))) return tmp
function code(x) t_0 = Float64(x / Float64(1.0 + x)) tmp = 0.0 if (Float64(t_0 + Float64(Float64(1.0 + x) / Float64(1.0 - x))) <= 2e-7) tmp = Float64(Float64(-3.0 + Float64(Float64(-1.0 - Float64(3.0 / x)) / x)) / x); else tmp = Float64(t_0 + Float64(Float64(1.0 + x) * Float64(1.0 / Float64(1.0 - x)))); end return tmp end
function tmp_2 = code(x) t_0 = x / (1.0 + x); tmp = 0.0; if ((t_0 + ((1.0 + x) / (1.0 - x))) <= 2e-7) tmp = (-3.0 + ((-1.0 - (3.0 / x)) / x)) / x; else tmp = t_0 + ((1.0 + x) * (1.0 / (1.0 - x))); end tmp_2 = tmp; end
code[x_] := Block[{t$95$0 = N[(x / N[(1.0 + x), $MachinePrecision]), $MachinePrecision]}, If[LessEqual[N[(t$95$0 + N[(N[(1.0 + x), $MachinePrecision] / N[(1.0 - x), $MachinePrecision]), $MachinePrecision]), $MachinePrecision], 2e-7], N[(N[(-3.0 + N[(N[(-1.0 - N[(3.0 / x), $MachinePrecision]), $MachinePrecision] / x), $MachinePrecision]), $MachinePrecision] / x), $MachinePrecision], N[(t$95$0 + N[(N[(1.0 + x), $MachinePrecision] * N[(1.0 / N[(1.0 - x), $MachinePrecision]), $MachinePrecision]), $MachinePrecision]), $MachinePrecision]]]
\begin{array}{l}
\\
\begin{array}{l}
t_0 := \frac{x}{1 + x}\\
\mathbf{if}\;t\_0 + \frac{1 + x}{1 - x} \leq 2 \cdot 10^{-7}:\\
\;\;\;\;\frac{-3 + \frac{-1 - \frac{3}{x}}{x}}{x}\\
\mathbf{else}:\\
\;\;\;\;t\_0 + \left(1 + x\right) \cdot \frac{1}{1 - x}\\
\end{array}
\end{array}
if (-.f64 (/.f64 x (+.f64 x #s(literal 1 binary64))) (/.f64 (+.f64 x #s(literal 1 binary64)) (-.f64 x #s(literal 1 binary64)))) < 1.9999999999999999e-7Initial program 7.7%
remove-double-neg7.7%
distribute-neg-frac7.7%
distribute-neg-in7.7%
sub-neg7.7%
distribute-frac-neg27.7%
sub-neg7.7%
+-commutative7.7%
unsub-neg7.7%
metadata-eval7.7%
neg-sub07.7%
associate-+l-7.7%
neg-sub07.7%
+-commutative7.7%
unsub-neg7.7%
Simplified7.7%
Taylor expanded in x around inf 98.9%
sub-neg98.9%
metadata-eval98.9%
+-commutative98.9%
mul-1-neg98.9%
unsub-neg98.9%
associate-*r/98.9%
metadata-eval98.9%
Simplified98.9%
if 1.9999999999999999e-7 < (-.f64 (/.f64 x (+.f64 x #s(literal 1 binary64))) (/.f64 (+.f64 x #s(literal 1 binary64)) (-.f64 x #s(literal 1 binary64)))) Initial program 99.9%
remove-double-neg99.9%
distribute-neg-frac99.9%
distribute-neg-in99.9%
sub-neg99.9%
distribute-frac-neg299.9%
sub-neg99.9%
+-commutative99.9%
unsub-neg99.9%
metadata-eval99.9%
neg-sub099.9%
associate-+l-99.9%
neg-sub099.9%
+-commutative99.9%
unsub-neg99.9%
Simplified99.9%
clear-num99.9%
associate-/r/99.9%
Applied egg-rr99.9%
Final simplification99.4%
(FPCore (x) :precision binary64 (let* ((t_0 (+ (/ x (+ 1.0 x)) (/ (+ 1.0 x) (- 1.0 x))))) (if (<= t_0 2e-7) (/ (+ -3.0 (/ (- -1.0 (/ 3.0 x)) x)) x) t_0)))
double code(double x) {
double t_0 = (x / (1.0 + x)) + ((1.0 + x) / (1.0 - x));
double tmp;
if (t_0 <= 2e-7) {
tmp = (-3.0 + ((-1.0 - (3.0 / x)) / x)) / x;
} else {
tmp = t_0;
}
return tmp;
}
real(8) function code(x)
real(8), intent (in) :: x
real(8) :: t_0
real(8) :: tmp
t_0 = (x / (1.0d0 + x)) + ((1.0d0 + x) / (1.0d0 - x))
if (t_0 <= 2d-7) then
tmp = ((-3.0d0) + (((-1.0d0) - (3.0d0 / x)) / x)) / x
else
tmp = t_0
end if
code = tmp
end function
public static double code(double x) {
double t_0 = (x / (1.0 + x)) + ((1.0 + x) / (1.0 - x));
double tmp;
if (t_0 <= 2e-7) {
tmp = (-3.0 + ((-1.0 - (3.0 / x)) / x)) / x;
} else {
tmp = t_0;
}
return tmp;
}
def code(x): t_0 = (x / (1.0 + x)) + ((1.0 + x) / (1.0 - x)) tmp = 0 if t_0 <= 2e-7: tmp = (-3.0 + ((-1.0 - (3.0 / x)) / x)) / x else: tmp = t_0 return tmp
function code(x) t_0 = Float64(Float64(x / Float64(1.0 + x)) + Float64(Float64(1.0 + x) / Float64(1.0 - x))) tmp = 0.0 if (t_0 <= 2e-7) tmp = Float64(Float64(-3.0 + Float64(Float64(-1.0 - Float64(3.0 / x)) / x)) / x); else tmp = t_0; end return tmp end
function tmp_2 = code(x) t_0 = (x / (1.0 + x)) + ((1.0 + x) / (1.0 - x)); tmp = 0.0; if (t_0 <= 2e-7) tmp = (-3.0 + ((-1.0 - (3.0 / x)) / x)) / x; else tmp = t_0; end tmp_2 = tmp; end
code[x_] := Block[{t$95$0 = N[(N[(x / N[(1.0 + x), $MachinePrecision]), $MachinePrecision] + N[(N[(1.0 + x), $MachinePrecision] / N[(1.0 - x), $MachinePrecision]), $MachinePrecision]), $MachinePrecision]}, If[LessEqual[t$95$0, 2e-7], N[(N[(-3.0 + N[(N[(-1.0 - N[(3.0 / x), $MachinePrecision]), $MachinePrecision] / x), $MachinePrecision]), $MachinePrecision] / x), $MachinePrecision], t$95$0]]
\begin{array}{l}
\\
\begin{array}{l}
t_0 := \frac{x}{1 + x} + \frac{1 + x}{1 - x}\\
\mathbf{if}\;t\_0 \leq 2 \cdot 10^{-7}:\\
\;\;\;\;\frac{-3 + \frac{-1 - \frac{3}{x}}{x}}{x}\\
\mathbf{else}:\\
\;\;\;\;t\_0\\
\end{array}
\end{array}
if (-.f64 (/.f64 x (+.f64 x #s(literal 1 binary64))) (/.f64 (+.f64 x #s(literal 1 binary64)) (-.f64 x #s(literal 1 binary64)))) < 1.9999999999999999e-7Initial program 7.7%
remove-double-neg7.7%
distribute-neg-frac7.7%
distribute-neg-in7.7%
sub-neg7.7%
distribute-frac-neg27.7%
sub-neg7.7%
+-commutative7.7%
unsub-neg7.7%
metadata-eval7.7%
neg-sub07.7%
associate-+l-7.7%
neg-sub07.7%
+-commutative7.7%
unsub-neg7.7%
Simplified7.7%
Taylor expanded in x around inf 98.9%
sub-neg98.9%
metadata-eval98.9%
+-commutative98.9%
mul-1-neg98.9%
unsub-neg98.9%
associate-*r/98.9%
metadata-eval98.9%
Simplified98.9%
if 1.9999999999999999e-7 < (-.f64 (/.f64 x (+.f64 x #s(literal 1 binary64))) (/.f64 (+.f64 x #s(literal 1 binary64)) (-.f64 x #s(literal 1 binary64)))) Initial program 99.9%
Final simplification99.4%
(FPCore (x) :precision binary64 (if (or (<= x -1.0) (not (<= x 1.0))) (/ (+ -3.0 (/ -1.0 x)) x) (- 1.0 (* x (- (* x (- -1.0 x)) 3.0)))))
double code(double x) {
double tmp;
if ((x <= -1.0) || !(x <= 1.0)) {
tmp = (-3.0 + (-1.0 / x)) / x;
} else {
tmp = 1.0 - (x * ((x * (-1.0 - x)) - 3.0));
}
return tmp;
}
real(8) function code(x)
real(8), intent (in) :: x
real(8) :: tmp
if ((x <= (-1.0d0)) .or. (.not. (x <= 1.0d0))) then
tmp = ((-3.0d0) + ((-1.0d0) / x)) / x
else
tmp = 1.0d0 - (x * ((x * ((-1.0d0) - x)) - 3.0d0))
end if
code = tmp
end function
public static double code(double x) {
double tmp;
if ((x <= -1.0) || !(x <= 1.0)) {
tmp = (-3.0 + (-1.0 / x)) / x;
} else {
tmp = 1.0 - (x * ((x * (-1.0 - x)) - 3.0));
}
return tmp;
}
def code(x): tmp = 0 if (x <= -1.0) or not (x <= 1.0): tmp = (-3.0 + (-1.0 / x)) / x else: tmp = 1.0 - (x * ((x * (-1.0 - x)) - 3.0)) return tmp
function code(x) tmp = 0.0 if ((x <= -1.0) || !(x <= 1.0)) tmp = Float64(Float64(-3.0 + Float64(-1.0 / x)) / x); else tmp = Float64(1.0 - Float64(x * Float64(Float64(x * Float64(-1.0 - x)) - 3.0))); end return tmp end
function tmp_2 = code(x) tmp = 0.0; if ((x <= -1.0) || ~((x <= 1.0))) tmp = (-3.0 + (-1.0 / x)) / x; else tmp = 1.0 - (x * ((x * (-1.0 - x)) - 3.0)); end tmp_2 = tmp; end
code[x_] := If[Or[LessEqual[x, -1.0], N[Not[LessEqual[x, 1.0]], $MachinePrecision]], N[(N[(-3.0 + N[(-1.0 / x), $MachinePrecision]), $MachinePrecision] / x), $MachinePrecision], N[(1.0 - N[(x * N[(N[(x * N[(-1.0 - x), $MachinePrecision]), $MachinePrecision] - 3.0), $MachinePrecision]), $MachinePrecision]), $MachinePrecision]]
\begin{array}{l}
\\
\begin{array}{l}
\mathbf{if}\;x \leq -1 \lor \neg \left(x \leq 1\right):\\
\;\;\;\;\frac{-3 + \frac{-1}{x}}{x}\\
\mathbf{else}:\\
\;\;\;\;1 - x \cdot \left(x \cdot \left(-1 - x\right) - 3\right)\\
\end{array}
\end{array}
if x < -1 or 1 < x Initial program 7.0%
remove-double-neg7.0%
distribute-neg-frac7.0%
distribute-neg-in7.0%
sub-neg7.0%
distribute-frac-neg27.0%
sub-neg7.0%
+-commutative7.0%
unsub-neg7.0%
metadata-eval7.0%
neg-sub07.0%
associate-+l-7.0%
neg-sub07.0%
+-commutative7.0%
unsub-neg7.0%
Simplified7.0%
Taylor expanded in x around inf 99.5%
associate-*r/99.5%
neg-mul-199.5%
distribute-neg-in99.5%
metadata-eval99.5%
distribute-neg-frac99.5%
metadata-eval99.5%
Simplified99.5%
if -1 < x < 1Initial program 99.9%
remove-double-neg99.9%
distribute-neg-frac99.9%
distribute-neg-in99.9%
sub-neg99.9%
distribute-frac-neg299.9%
sub-neg99.9%
+-commutative99.9%
unsub-neg99.9%
metadata-eval99.9%
neg-sub099.9%
associate-+l-99.9%
neg-sub099.9%
+-commutative99.9%
unsub-neg99.9%
Simplified99.9%
div-sub99.9%
associate--r-99.9%
frac-2neg99.9%
metadata-eval99.9%
flip--99.9%
metadata-eval99.9%
metadata-eval99.9%
+-commutative99.9%
distribute-neg-frac299.9%
+-commutative99.9%
distribute-neg-in99.9%
metadata-eval99.9%
sub-neg99.9%
flip-+99.9%
+-commutative99.9%
Applied egg-rr99.9%
Taylor expanded in x around 0 97.6%
*-commutative97.6%
Simplified97.6%
Taylor expanded in x around 0 97.6%
Final simplification98.6%
(FPCore (x) :precision binary64 (if (or (<= x -1.0) (not (<= x 1.0))) (/ (+ -3.0 (/ (- -1.0 (/ 3.0 x)) x)) x) (- 1.0 (* x (- (* x (- -1.0 x)) 3.0)))))
double code(double x) {
double tmp;
if ((x <= -1.0) || !(x <= 1.0)) {
tmp = (-3.0 + ((-1.0 - (3.0 / x)) / x)) / x;
} else {
tmp = 1.0 - (x * ((x * (-1.0 - x)) - 3.0));
}
return tmp;
}
real(8) function code(x)
real(8), intent (in) :: x
real(8) :: tmp
if ((x <= (-1.0d0)) .or. (.not. (x <= 1.0d0))) then
tmp = ((-3.0d0) + (((-1.0d0) - (3.0d0 / x)) / x)) / x
else
tmp = 1.0d0 - (x * ((x * ((-1.0d0) - x)) - 3.0d0))
end if
code = tmp
end function
public static double code(double x) {
double tmp;
if ((x <= -1.0) || !(x <= 1.0)) {
tmp = (-3.0 + ((-1.0 - (3.0 / x)) / x)) / x;
} else {
tmp = 1.0 - (x * ((x * (-1.0 - x)) - 3.0));
}
return tmp;
}
def code(x): tmp = 0 if (x <= -1.0) or not (x <= 1.0): tmp = (-3.0 + ((-1.0 - (3.0 / x)) / x)) / x else: tmp = 1.0 - (x * ((x * (-1.0 - x)) - 3.0)) return tmp
function code(x) tmp = 0.0 if ((x <= -1.0) || !(x <= 1.0)) tmp = Float64(Float64(-3.0 + Float64(Float64(-1.0 - Float64(3.0 / x)) / x)) / x); else tmp = Float64(1.0 - Float64(x * Float64(Float64(x * Float64(-1.0 - x)) - 3.0))); end return tmp end
function tmp_2 = code(x) tmp = 0.0; if ((x <= -1.0) || ~((x <= 1.0))) tmp = (-3.0 + ((-1.0 - (3.0 / x)) / x)) / x; else tmp = 1.0 - (x * ((x * (-1.0 - x)) - 3.0)); end tmp_2 = tmp; end
code[x_] := If[Or[LessEqual[x, -1.0], N[Not[LessEqual[x, 1.0]], $MachinePrecision]], N[(N[(-3.0 + N[(N[(-1.0 - N[(3.0 / x), $MachinePrecision]), $MachinePrecision] / x), $MachinePrecision]), $MachinePrecision] / x), $MachinePrecision], N[(1.0 - N[(x * N[(N[(x * N[(-1.0 - x), $MachinePrecision]), $MachinePrecision] - 3.0), $MachinePrecision]), $MachinePrecision]), $MachinePrecision]]
\begin{array}{l}
\\
\begin{array}{l}
\mathbf{if}\;x \leq -1 \lor \neg \left(x \leq 1\right):\\
\;\;\;\;\frac{-3 + \frac{-1 - \frac{3}{x}}{x}}{x}\\
\mathbf{else}:\\
\;\;\;\;1 - x \cdot \left(x \cdot \left(-1 - x\right) - 3\right)\\
\end{array}
\end{array}
if x < -1 or 1 < x Initial program 7.0%
remove-double-neg7.0%
distribute-neg-frac7.0%
distribute-neg-in7.0%
sub-neg7.0%
distribute-frac-neg27.0%
sub-neg7.0%
+-commutative7.0%
unsub-neg7.0%
metadata-eval7.0%
neg-sub07.0%
associate-+l-7.0%
neg-sub07.0%
+-commutative7.0%
unsub-neg7.0%
Simplified7.0%
Taylor expanded in x around inf 99.6%
sub-neg99.6%
metadata-eval99.6%
+-commutative99.6%
mul-1-neg99.6%
unsub-neg99.6%
associate-*r/99.6%
metadata-eval99.6%
Simplified99.6%
if -1 < x < 1Initial program 99.9%
remove-double-neg99.9%
distribute-neg-frac99.9%
distribute-neg-in99.9%
sub-neg99.9%
distribute-frac-neg299.9%
sub-neg99.9%
+-commutative99.9%
unsub-neg99.9%
metadata-eval99.9%
neg-sub099.9%
associate-+l-99.9%
neg-sub099.9%
+-commutative99.9%
unsub-neg99.9%
Simplified99.9%
div-sub99.9%
associate--r-99.9%
frac-2neg99.9%
metadata-eval99.9%
flip--99.9%
metadata-eval99.9%
metadata-eval99.9%
+-commutative99.9%
distribute-neg-frac299.9%
+-commutative99.9%
distribute-neg-in99.9%
metadata-eval99.9%
sub-neg99.9%
flip-+99.9%
+-commutative99.9%
Applied egg-rr99.9%
Taylor expanded in x around 0 97.6%
*-commutative97.6%
Simplified97.6%
Taylor expanded in x around 0 97.6%
Final simplification98.6%
(FPCore (x) :precision binary64 (if (or (<= x -1.0) (not (<= x 1.0))) (/ -3.0 x) (+ 1.0 (* x (+ x 3.0)))))
double code(double x) {
double tmp;
if ((x <= -1.0) || !(x <= 1.0)) {
tmp = -3.0 / x;
} else {
tmp = 1.0 + (x * (x + 3.0));
}
return tmp;
}
real(8) function code(x)
real(8), intent (in) :: x
real(8) :: tmp
if ((x <= (-1.0d0)) .or. (.not. (x <= 1.0d0))) then
tmp = (-3.0d0) / x
else
tmp = 1.0d0 + (x * (x + 3.0d0))
end if
code = tmp
end function
public static double code(double x) {
double tmp;
if ((x <= -1.0) || !(x <= 1.0)) {
tmp = -3.0 / x;
} else {
tmp = 1.0 + (x * (x + 3.0));
}
return tmp;
}
def code(x): tmp = 0 if (x <= -1.0) or not (x <= 1.0): tmp = -3.0 / x else: tmp = 1.0 + (x * (x + 3.0)) return tmp
function code(x) tmp = 0.0 if ((x <= -1.0) || !(x <= 1.0)) tmp = Float64(-3.0 / x); else tmp = Float64(1.0 + Float64(x * Float64(x + 3.0))); end return tmp end
function tmp_2 = code(x) tmp = 0.0; if ((x <= -1.0) || ~((x <= 1.0))) tmp = -3.0 / x; else tmp = 1.0 + (x * (x + 3.0)); end tmp_2 = tmp; end
code[x_] := If[Or[LessEqual[x, -1.0], N[Not[LessEqual[x, 1.0]], $MachinePrecision]], N[(-3.0 / x), $MachinePrecision], N[(1.0 + N[(x * N[(x + 3.0), $MachinePrecision]), $MachinePrecision]), $MachinePrecision]]
\begin{array}{l}
\\
\begin{array}{l}
\mathbf{if}\;x \leq -1 \lor \neg \left(x \leq 1\right):\\
\;\;\;\;\frac{-3}{x}\\
\mathbf{else}:\\
\;\;\;\;1 + x \cdot \left(x + 3\right)\\
\end{array}
\end{array}
if x < -1 or 1 < x Initial program 7.0%
remove-double-neg7.0%
distribute-neg-frac7.0%
distribute-neg-in7.0%
sub-neg7.0%
distribute-frac-neg27.0%
sub-neg7.0%
+-commutative7.0%
unsub-neg7.0%
metadata-eval7.0%
neg-sub07.0%
associate-+l-7.0%
neg-sub07.0%
+-commutative7.0%
unsub-neg7.0%
Simplified7.0%
Taylor expanded in x around inf 99.0%
if -1 < x < 1Initial program 99.9%
remove-double-neg99.9%
distribute-neg-frac99.9%
distribute-neg-in99.9%
sub-neg99.9%
distribute-frac-neg299.9%
sub-neg99.9%
+-commutative99.9%
unsub-neg99.9%
metadata-eval99.9%
neg-sub099.9%
associate-+l-99.9%
neg-sub099.9%
+-commutative99.9%
unsub-neg99.9%
Simplified99.9%
Taylor expanded in x around 0 97.6%
Final simplification98.3%
(FPCore (x) :precision binary64 (if (or (<= x -1.0) (not (<= x 1.0))) (/ (+ -3.0 (/ -1.0 x)) x) (+ 1.0 (* x (+ x 3.0)))))
double code(double x) {
double tmp;
if ((x <= -1.0) || !(x <= 1.0)) {
tmp = (-3.0 + (-1.0 / x)) / x;
} else {
tmp = 1.0 + (x * (x + 3.0));
}
return tmp;
}
real(8) function code(x)
real(8), intent (in) :: x
real(8) :: tmp
if ((x <= (-1.0d0)) .or. (.not. (x <= 1.0d0))) then
tmp = ((-3.0d0) + ((-1.0d0) / x)) / x
else
tmp = 1.0d0 + (x * (x + 3.0d0))
end if
code = tmp
end function
public static double code(double x) {
double tmp;
if ((x <= -1.0) || !(x <= 1.0)) {
tmp = (-3.0 + (-1.0 / x)) / x;
} else {
tmp = 1.0 + (x * (x + 3.0));
}
return tmp;
}
def code(x): tmp = 0 if (x <= -1.0) or not (x <= 1.0): tmp = (-3.0 + (-1.0 / x)) / x else: tmp = 1.0 + (x * (x + 3.0)) return tmp
function code(x) tmp = 0.0 if ((x <= -1.0) || !(x <= 1.0)) tmp = Float64(Float64(-3.0 + Float64(-1.0 / x)) / x); else tmp = Float64(1.0 + Float64(x * Float64(x + 3.0))); end return tmp end
function tmp_2 = code(x) tmp = 0.0; if ((x <= -1.0) || ~((x <= 1.0))) tmp = (-3.0 + (-1.0 / x)) / x; else tmp = 1.0 + (x * (x + 3.0)); end tmp_2 = tmp; end
code[x_] := If[Or[LessEqual[x, -1.0], N[Not[LessEqual[x, 1.0]], $MachinePrecision]], N[(N[(-3.0 + N[(-1.0 / x), $MachinePrecision]), $MachinePrecision] / x), $MachinePrecision], N[(1.0 + N[(x * N[(x + 3.0), $MachinePrecision]), $MachinePrecision]), $MachinePrecision]]
\begin{array}{l}
\\
\begin{array}{l}
\mathbf{if}\;x \leq -1 \lor \neg \left(x \leq 1\right):\\
\;\;\;\;\frac{-3 + \frac{-1}{x}}{x}\\
\mathbf{else}:\\
\;\;\;\;1 + x \cdot \left(x + 3\right)\\
\end{array}
\end{array}
if x < -1 or 1 < x Initial program 7.0%
remove-double-neg7.0%
distribute-neg-frac7.0%
distribute-neg-in7.0%
sub-neg7.0%
distribute-frac-neg27.0%
sub-neg7.0%
+-commutative7.0%
unsub-neg7.0%
metadata-eval7.0%
neg-sub07.0%
associate-+l-7.0%
neg-sub07.0%
+-commutative7.0%
unsub-neg7.0%
Simplified7.0%
Taylor expanded in x around inf 99.5%
associate-*r/99.5%
neg-mul-199.5%
distribute-neg-in99.5%
metadata-eval99.5%
distribute-neg-frac99.5%
metadata-eval99.5%
Simplified99.5%
if -1 < x < 1Initial program 99.9%
remove-double-neg99.9%
distribute-neg-frac99.9%
distribute-neg-in99.9%
sub-neg99.9%
distribute-frac-neg299.9%
sub-neg99.9%
+-commutative99.9%
unsub-neg99.9%
metadata-eval99.9%
neg-sub099.9%
associate-+l-99.9%
neg-sub099.9%
+-commutative99.9%
unsub-neg99.9%
Simplified99.9%
Taylor expanded in x around 0 97.6%
Final simplification98.5%
(FPCore (x) :precision binary64 (if (or (<= x -1.0) (not (<= x 1.0))) (/ -3.0 x) (+ 1.0 (* x 3.0))))
double code(double x) {
double tmp;
if ((x <= -1.0) || !(x <= 1.0)) {
tmp = -3.0 / x;
} else {
tmp = 1.0 + (x * 3.0);
}
return tmp;
}
real(8) function code(x)
real(8), intent (in) :: x
real(8) :: tmp
if ((x <= (-1.0d0)) .or. (.not. (x <= 1.0d0))) then
tmp = (-3.0d0) / x
else
tmp = 1.0d0 + (x * 3.0d0)
end if
code = tmp
end function
public static double code(double x) {
double tmp;
if ((x <= -1.0) || !(x <= 1.0)) {
tmp = -3.0 / x;
} else {
tmp = 1.0 + (x * 3.0);
}
return tmp;
}
def code(x): tmp = 0 if (x <= -1.0) or not (x <= 1.0): tmp = -3.0 / x else: tmp = 1.0 + (x * 3.0) return tmp
function code(x) tmp = 0.0 if ((x <= -1.0) || !(x <= 1.0)) tmp = Float64(-3.0 / x); else tmp = Float64(1.0 + Float64(x * 3.0)); end return tmp end
function tmp_2 = code(x) tmp = 0.0; if ((x <= -1.0) || ~((x <= 1.0))) tmp = -3.0 / x; else tmp = 1.0 + (x * 3.0); end tmp_2 = tmp; end
code[x_] := If[Or[LessEqual[x, -1.0], N[Not[LessEqual[x, 1.0]], $MachinePrecision]], N[(-3.0 / x), $MachinePrecision], N[(1.0 + N[(x * 3.0), $MachinePrecision]), $MachinePrecision]]
\begin{array}{l}
\\
\begin{array}{l}
\mathbf{if}\;x \leq -1 \lor \neg \left(x \leq 1\right):\\
\;\;\;\;\frac{-3}{x}\\
\mathbf{else}:\\
\;\;\;\;1 + x \cdot 3\\
\end{array}
\end{array}
if x < -1 or 1 < x Initial program 7.0%
remove-double-neg7.0%
distribute-neg-frac7.0%
distribute-neg-in7.0%
sub-neg7.0%
distribute-frac-neg27.0%
sub-neg7.0%
+-commutative7.0%
unsub-neg7.0%
metadata-eval7.0%
neg-sub07.0%
associate-+l-7.0%
neg-sub07.0%
+-commutative7.0%
unsub-neg7.0%
Simplified7.0%
Taylor expanded in x around inf 99.0%
if -1 < x < 1Initial program 99.9%
remove-double-neg99.9%
distribute-neg-frac99.9%
distribute-neg-in99.9%
sub-neg99.9%
distribute-frac-neg299.9%
sub-neg99.9%
+-commutative99.9%
unsub-neg99.9%
metadata-eval99.9%
neg-sub099.9%
associate-+l-99.9%
neg-sub099.9%
+-commutative99.9%
unsub-neg99.9%
Simplified99.9%
Taylor expanded in x around 0 97.1%
Final simplification98.1%
(FPCore (x) :precision binary64 (if (or (<= x -1.0) (not (<= x 1.0))) (/ -3.0 x) (+ 1.0 x)))
double code(double x) {
double tmp;
if ((x <= -1.0) || !(x <= 1.0)) {
tmp = -3.0 / x;
} else {
tmp = 1.0 + x;
}
return tmp;
}
real(8) function code(x)
real(8), intent (in) :: x
real(8) :: tmp
if ((x <= (-1.0d0)) .or. (.not. (x <= 1.0d0))) then
tmp = (-3.0d0) / x
else
tmp = 1.0d0 + x
end if
code = tmp
end function
public static double code(double x) {
double tmp;
if ((x <= -1.0) || !(x <= 1.0)) {
tmp = -3.0 / x;
} else {
tmp = 1.0 + x;
}
return tmp;
}
def code(x): tmp = 0 if (x <= -1.0) or not (x <= 1.0): tmp = -3.0 / x else: tmp = 1.0 + x return tmp
function code(x) tmp = 0.0 if ((x <= -1.0) || !(x <= 1.0)) tmp = Float64(-3.0 / x); else tmp = Float64(1.0 + x); end return tmp end
function tmp_2 = code(x) tmp = 0.0; if ((x <= -1.0) || ~((x <= 1.0))) tmp = -3.0 / x; else tmp = 1.0 + x; end tmp_2 = tmp; end
code[x_] := If[Or[LessEqual[x, -1.0], N[Not[LessEqual[x, 1.0]], $MachinePrecision]], N[(-3.0 / x), $MachinePrecision], N[(1.0 + x), $MachinePrecision]]
\begin{array}{l}
\\
\begin{array}{l}
\mathbf{if}\;x \leq -1 \lor \neg \left(x \leq 1\right):\\
\;\;\;\;\frac{-3}{x}\\
\mathbf{else}:\\
\;\;\;\;1 + x\\
\end{array}
\end{array}
if x < -1 or 1 < x Initial program 7.0%
remove-double-neg7.0%
distribute-neg-frac7.0%
distribute-neg-in7.0%
sub-neg7.0%
distribute-frac-neg27.0%
sub-neg7.0%
+-commutative7.0%
unsub-neg7.0%
metadata-eval7.0%
neg-sub07.0%
associate-+l-7.0%
neg-sub07.0%
+-commutative7.0%
unsub-neg7.0%
Simplified7.0%
Taylor expanded in x around inf 99.0%
if -1 < x < 1Initial program 99.9%
remove-double-neg99.9%
distribute-neg-frac99.9%
distribute-neg-in99.9%
sub-neg99.9%
distribute-frac-neg299.9%
sub-neg99.9%
+-commutative99.9%
unsub-neg99.9%
metadata-eval99.9%
neg-sub099.9%
associate-+l-99.9%
neg-sub099.9%
+-commutative99.9%
unsub-neg99.9%
Simplified99.9%
Taylor expanded in x around 0 95.6%
Taylor expanded in x around 0 95.4%
Final simplification97.2%
(FPCore (x) :precision binary64 1.0)
double code(double x) {
return 1.0;
}
real(8) function code(x)
real(8), intent (in) :: x
code = 1.0d0
end function
public static double code(double x) {
return 1.0;
}
def code(x): return 1.0
function code(x) return 1.0 end
function tmp = code(x) tmp = 1.0; end
code[x_] := 1.0
\begin{array}{l}
\\
1
\end{array}
Initial program 53.1%
remove-double-neg53.1%
distribute-neg-frac53.1%
distribute-neg-in53.1%
sub-neg53.1%
distribute-frac-neg253.1%
sub-neg53.1%
+-commutative53.1%
unsub-neg53.1%
metadata-eval53.1%
neg-sub053.1%
associate-+l-53.1%
neg-sub053.1%
+-commutative53.1%
unsub-neg53.1%
Simplified53.1%
Taylor expanded in x around 0 49.2%
Final simplification49.2%
herbie shell --seed 2024074
(FPCore (x)
:name "Asymptote C"
:precision binary64
(- (/ x (+ x 1.0)) (/ (+ x 1.0) (- x 1.0))))