
(FPCore (t) :precision binary64 (let* ((t_1 (- 2.0 (/ (/ 2.0 t) (+ 1.0 (/ 1.0 t))))) (t_2 (* t_1 t_1))) (/ (+ 1.0 t_2) (+ 2.0 t_2))))
double code(double t) {
double t_1 = 2.0 - ((2.0 / t) / (1.0 + (1.0 / t)));
double t_2 = t_1 * t_1;
return (1.0 + t_2) / (2.0 + t_2);
}
real(8) function code(t)
real(8), intent (in) :: t
real(8) :: t_1
real(8) :: t_2
t_1 = 2.0d0 - ((2.0d0 / t) / (1.0d0 + (1.0d0 / t)))
t_2 = t_1 * t_1
code = (1.0d0 + t_2) / (2.0d0 + t_2)
end function
public static double code(double t) {
double t_1 = 2.0 - ((2.0 / t) / (1.0 + (1.0 / t)));
double t_2 = t_1 * t_1;
return (1.0 + t_2) / (2.0 + t_2);
}
def code(t): t_1 = 2.0 - ((2.0 / t) / (1.0 + (1.0 / t))) t_2 = t_1 * t_1 return (1.0 + t_2) / (2.0 + t_2)
function code(t) t_1 = Float64(2.0 - Float64(Float64(2.0 / t) / Float64(1.0 + Float64(1.0 / t)))) t_2 = Float64(t_1 * t_1) return Float64(Float64(1.0 + t_2) / Float64(2.0 + t_2)) end
function tmp = code(t) t_1 = 2.0 - ((2.0 / t) / (1.0 + (1.0 / t))); t_2 = t_1 * t_1; tmp = (1.0 + t_2) / (2.0 + t_2); end
code[t_] := Block[{t$95$1 = N[(2.0 - N[(N[(2.0 / t), $MachinePrecision] / N[(1.0 + N[(1.0 / t), $MachinePrecision]), $MachinePrecision]), $MachinePrecision]), $MachinePrecision]}, Block[{t$95$2 = N[(t$95$1 * t$95$1), $MachinePrecision]}, N[(N[(1.0 + t$95$2), $MachinePrecision] / N[(2.0 + t$95$2), $MachinePrecision]), $MachinePrecision]]]
\begin{array}{l}
\\
\begin{array}{l}
t_1 := 2 - \frac{\frac{2}{t}}{1 + \frac{1}{t}}\\
t_2 := t\_1 \cdot t\_1\\
\frac{1 + t\_2}{2 + t\_2}
\end{array}
\end{array}
Sampling outcomes in binary64 precision:
Herbie found 8 alternatives:
| Alternative | Accuracy | Speedup |
|---|
(FPCore (t) :precision binary64 (let* ((t_1 (- 2.0 (/ (/ 2.0 t) (+ 1.0 (/ 1.0 t))))) (t_2 (* t_1 t_1))) (/ (+ 1.0 t_2) (+ 2.0 t_2))))
double code(double t) {
double t_1 = 2.0 - ((2.0 / t) / (1.0 + (1.0 / t)));
double t_2 = t_1 * t_1;
return (1.0 + t_2) / (2.0 + t_2);
}
real(8) function code(t)
real(8), intent (in) :: t
real(8) :: t_1
real(8) :: t_2
t_1 = 2.0d0 - ((2.0d0 / t) / (1.0d0 + (1.0d0 / t)))
t_2 = t_1 * t_1
code = (1.0d0 + t_2) / (2.0d0 + t_2)
end function
public static double code(double t) {
double t_1 = 2.0 - ((2.0 / t) / (1.0 + (1.0 / t)));
double t_2 = t_1 * t_1;
return (1.0 + t_2) / (2.0 + t_2);
}
def code(t): t_1 = 2.0 - ((2.0 / t) / (1.0 + (1.0 / t))) t_2 = t_1 * t_1 return (1.0 + t_2) / (2.0 + t_2)
function code(t) t_1 = Float64(2.0 - Float64(Float64(2.0 / t) / Float64(1.0 + Float64(1.0 / t)))) t_2 = Float64(t_1 * t_1) return Float64(Float64(1.0 + t_2) / Float64(2.0 + t_2)) end
function tmp = code(t) t_1 = 2.0 - ((2.0 / t) / (1.0 + (1.0 / t))); t_2 = t_1 * t_1; tmp = (1.0 + t_2) / (2.0 + t_2); end
code[t_] := Block[{t$95$1 = N[(2.0 - N[(N[(2.0 / t), $MachinePrecision] / N[(1.0 + N[(1.0 / t), $MachinePrecision]), $MachinePrecision]), $MachinePrecision]), $MachinePrecision]}, Block[{t$95$2 = N[(t$95$1 * t$95$1), $MachinePrecision]}, N[(N[(1.0 + t$95$2), $MachinePrecision] / N[(2.0 + t$95$2), $MachinePrecision]), $MachinePrecision]]]
\begin{array}{l}
\\
\begin{array}{l}
t_1 := 2 - \frac{\frac{2}{t}}{1 + \frac{1}{t}}\\
t_2 := t\_1 \cdot t\_1\\
\frac{1 + t\_2}{2 + t\_2}
\end{array}
\end{array}
(FPCore (t) :precision binary64 (let* ((t_1 (/ 2.0 (+ 1.0 t))) (t_2 (* t_1 (+ t_1 -4.0)))) (/ (+ 5.0 t_2) (+ t_2 6.0))))
double code(double t) {
double t_1 = 2.0 / (1.0 + t);
double t_2 = t_1 * (t_1 + -4.0);
return (5.0 + t_2) / (t_2 + 6.0);
}
real(8) function code(t)
real(8), intent (in) :: t
real(8) :: t_1
real(8) :: t_2
t_1 = 2.0d0 / (1.0d0 + t)
t_2 = t_1 * (t_1 + (-4.0d0))
code = (5.0d0 + t_2) / (t_2 + 6.0d0)
end function
public static double code(double t) {
double t_1 = 2.0 / (1.0 + t);
double t_2 = t_1 * (t_1 + -4.0);
return (5.0 + t_2) / (t_2 + 6.0);
}
def code(t): t_1 = 2.0 / (1.0 + t) t_2 = t_1 * (t_1 + -4.0) return (5.0 + t_2) / (t_2 + 6.0)
function code(t) t_1 = Float64(2.0 / Float64(1.0 + t)) t_2 = Float64(t_1 * Float64(t_1 + -4.0)) return Float64(Float64(5.0 + t_2) / Float64(t_2 + 6.0)) end
function tmp = code(t) t_1 = 2.0 / (1.0 + t); t_2 = t_1 * (t_1 + -4.0); tmp = (5.0 + t_2) / (t_2 + 6.0); end
code[t_] := Block[{t$95$1 = N[(2.0 / N[(1.0 + t), $MachinePrecision]), $MachinePrecision]}, Block[{t$95$2 = N[(t$95$1 * N[(t$95$1 + -4.0), $MachinePrecision]), $MachinePrecision]}, N[(N[(5.0 + t$95$2), $MachinePrecision] / N[(t$95$2 + 6.0), $MachinePrecision]), $MachinePrecision]]]
\begin{array}{l}
\\
\begin{array}{l}
t_1 := \frac{2}{1 + t}\\
t_2 := t\_1 \cdot \left(t\_1 + -4\right)\\
\frac{5 + t\_2}{t\_2 + 6}
\end{array}
\end{array}
Initial program 100.0%
Simplified100.0%
Final simplification100.0%
(FPCore (t)
:precision binary64
(if (<= t -0.5)
(-
0.8333333333333334
(/
(+
0.2222222222222222
(/ (+ -0.037037037037037035 (/ -0.04938271604938271 t)) t))
t))
(if (<= t 0.56)
(+ 0.5 (* t (* t (+ 1.0 (* t -2.0)))))
(+ 0.8333333333333334 (/ -0.2222222222222222 t)))))
double code(double t) {
double tmp;
if (t <= -0.5) {
tmp = 0.8333333333333334 - ((0.2222222222222222 + ((-0.037037037037037035 + (-0.04938271604938271 / t)) / t)) / t);
} else if (t <= 0.56) {
tmp = 0.5 + (t * (t * (1.0 + (t * -2.0))));
} else {
tmp = 0.8333333333333334 + (-0.2222222222222222 / t);
}
return tmp;
}
real(8) function code(t)
real(8), intent (in) :: t
real(8) :: tmp
if (t <= (-0.5d0)) then
tmp = 0.8333333333333334d0 - ((0.2222222222222222d0 + (((-0.037037037037037035d0) + ((-0.04938271604938271d0) / t)) / t)) / t)
else if (t <= 0.56d0) then
tmp = 0.5d0 + (t * (t * (1.0d0 + (t * (-2.0d0)))))
else
tmp = 0.8333333333333334d0 + ((-0.2222222222222222d0) / t)
end if
code = tmp
end function
public static double code(double t) {
double tmp;
if (t <= -0.5) {
tmp = 0.8333333333333334 - ((0.2222222222222222 + ((-0.037037037037037035 + (-0.04938271604938271 / t)) / t)) / t);
} else if (t <= 0.56) {
tmp = 0.5 + (t * (t * (1.0 + (t * -2.0))));
} else {
tmp = 0.8333333333333334 + (-0.2222222222222222 / t);
}
return tmp;
}
def code(t): tmp = 0 if t <= -0.5: tmp = 0.8333333333333334 - ((0.2222222222222222 + ((-0.037037037037037035 + (-0.04938271604938271 / t)) / t)) / t) elif t <= 0.56: tmp = 0.5 + (t * (t * (1.0 + (t * -2.0)))) else: tmp = 0.8333333333333334 + (-0.2222222222222222 / t) return tmp
function code(t) tmp = 0.0 if (t <= -0.5) tmp = Float64(0.8333333333333334 - Float64(Float64(0.2222222222222222 + Float64(Float64(-0.037037037037037035 + Float64(-0.04938271604938271 / t)) / t)) / t)); elseif (t <= 0.56) tmp = Float64(0.5 + Float64(t * Float64(t * Float64(1.0 + Float64(t * -2.0))))); else tmp = Float64(0.8333333333333334 + Float64(-0.2222222222222222 / t)); end return tmp end
function tmp_2 = code(t) tmp = 0.0; if (t <= -0.5) tmp = 0.8333333333333334 - ((0.2222222222222222 + ((-0.037037037037037035 + (-0.04938271604938271 / t)) / t)) / t); elseif (t <= 0.56) tmp = 0.5 + (t * (t * (1.0 + (t * -2.0)))); else tmp = 0.8333333333333334 + (-0.2222222222222222 / t); end tmp_2 = tmp; end
code[t_] := If[LessEqual[t, -0.5], N[(0.8333333333333334 - N[(N[(0.2222222222222222 + N[(N[(-0.037037037037037035 + N[(-0.04938271604938271 / t), $MachinePrecision]), $MachinePrecision] / t), $MachinePrecision]), $MachinePrecision] / t), $MachinePrecision]), $MachinePrecision], If[LessEqual[t, 0.56], N[(0.5 + N[(t * N[(t * N[(1.0 + N[(t * -2.0), $MachinePrecision]), $MachinePrecision]), $MachinePrecision]), $MachinePrecision]), $MachinePrecision], N[(0.8333333333333334 + N[(-0.2222222222222222 / t), $MachinePrecision]), $MachinePrecision]]]
\begin{array}{l}
\\
\begin{array}{l}
\mathbf{if}\;t \leq -0.5:\\
\;\;\;\;0.8333333333333334 - \frac{0.2222222222222222 + \frac{-0.037037037037037035 + \frac{-0.04938271604938271}{t}}{t}}{t}\\
\mathbf{elif}\;t \leq 0.56:\\
\;\;\;\;0.5 + t \cdot \left(t \cdot \left(1 + t \cdot -2\right)\right)\\
\mathbf{else}:\\
\;\;\;\;0.8333333333333334 + \frac{-0.2222222222222222}{t}\\
\end{array}
\end{array}
if t < -0.5Initial program 100.0%
Simplified100.0%
Taylor expanded in t around -inf
mul-1-negN/A
unsub-negN/A
--lowering--.f64N/A
/-lowering-/.f64N/A
Simplified100.0%
if -0.5 < t < 0.56000000000000005Initial program 100.0%
Simplified100.0%
Taylor expanded in t around 0
+-lowering-+.f64N/A
unpow2N/A
associate-*l*N/A
*-lowering-*.f64N/A
*-lowering-*.f64N/A
+-commutativeN/A
+-lowering-+.f64N/A
*-lowering-*.f64100.0%
Simplified100.0%
if 0.56000000000000005 < t Initial program 100.0%
Simplified100.0%
Taylor expanded in t around inf
sub-negN/A
+-lowering-+.f64N/A
associate-*r/N/A
metadata-evalN/A
distribute-neg-fracN/A
/-lowering-/.f64N/A
metadata-eval100.0%
Simplified100.0%
Final simplification100.0%
(FPCore (t)
:precision binary64
(if (<= t -0.6)
(+
0.8333333333333334
(/ (+ -0.2222222222222222 (/ 0.037037037037037035 t)) t))
(if (<= t 0.56)
(+ 0.5 (* t (* t (+ 1.0 (* t -2.0)))))
(+ 0.8333333333333334 (/ -0.2222222222222222 t)))))
double code(double t) {
double tmp;
if (t <= -0.6) {
tmp = 0.8333333333333334 + ((-0.2222222222222222 + (0.037037037037037035 / t)) / t);
} else if (t <= 0.56) {
tmp = 0.5 + (t * (t * (1.0 + (t * -2.0))));
} else {
tmp = 0.8333333333333334 + (-0.2222222222222222 / t);
}
return tmp;
}
real(8) function code(t)
real(8), intent (in) :: t
real(8) :: tmp
if (t <= (-0.6d0)) then
tmp = 0.8333333333333334d0 + (((-0.2222222222222222d0) + (0.037037037037037035d0 / t)) / t)
else if (t <= 0.56d0) then
tmp = 0.5d0 + (t * (t * (1.0d0 + (t * (-2.0d0)))))
else
tmp = 0.8333333333333334d0 + ((-0.2222222222222222d0) / t)
end if
code = tmp
end function
public static double code(double t) {
double tmp;
if (t <= -0.6) {
tmp = 0.8333333333333334 + ((-0.2222222222222222 + (0.037037037037037035 / t)) / t);
} else if (t <= 0.56) {
tmp = 0.5 + (t * (t * (1.0 + (t * -2.0))));
} else {
tmp = 0.8333333333333334 + (-0.2222222222222222 / t);
}
return tmp;
}
def code(t): tmp = 0 if t <= -0.6: tmp = 0.8333333333333334 + ((-0.2222222222222222 + (0.037037037037037035 / t)) / t) elif t <= 0.56: tmp = 0.5 + (t * (t * (1.0 + (t * -2.0)))) else: tmp = 0.8333333333333334 + (-0.2222222222222222 / t) return tmp
function code(t) tmp = 0.0 if (t <= -0.6) tmp = Float64(0.8333333333333334 + Float64(Float64(-0.2222222222222222 + Float64(0.037037037037037035 / t)) / t)); elseif (t <= 0.56) tmp = Float64(0.5 + Float64(t * Float64(t * Float64(1.0 + Float64(t * -2.0))))); else tmp = Float64(0.8333333333333334 + Float64(-0.2222222222222222 / t)); end return tmp end
function tmp_2 = code(t) tmp = 0.0; if (t <= -0.6) tmp = 0.8333333333333334 + ((-0.2222222222222222 + (0.037037037037037035 / t)) / t); elseif (t <= 0.56) tmp = 0.5 + (t * (t * (1.0 + (t * -2.0)))); else tmp = 0.8333333333333334 + (-0.2222222222222222 / t); end tmp_2 = tmp; end
code[t_] := If[LessEqual[t, -0.6], N[(0.8333333333333334 + N[(N[(-0.2222222222222222 + N[(0.037037037037037035 / t), $MachinePrecision]), $MachinePrecision] / t), $MachinePrecision]), $MachinePrecision], If[LessEqual[t, 0.56], N[(0.5 + N[(t * N[(t * N[(1.0 + N[(t * -2.0), $MachinePrecision]), $MachinePrecision]), $MachinePrecision]), $MachinePrecision]), $MachinePrecision], N[(0.8333333333333334 + N[(-0.2222222222222222 / t), $MachinePrecision]), $MachinePrecision]]]
\begin{array}{l}
\\
\begin{array}{l}
\mathbf{if}\;t \leq -0.6:\\
\;\;\;\;0.8333333333333334 + \frac{-0.2222222222222222 + \frac{0.037037037037037035}{t}}{t}\\
\mathbf{elif}\;t \leq 0.56:\\
\;\;\;\;0.5 + t \cdot \left(t \cdot \left(1 + t \cdot -2\right)\right)\\
\mathbf{else}:\\
\;\;\;\;0.8333333333333334 + \frac{-0.2222222222222222}{t}\\
\end{array}
\end{array}
if t < -0.599999999999999978Initial program 100.0%
Simplified100.0%
Taylor expanded in t around inf
associate--l+N/A
+-lowering-+.f64N/A
sub-negN/A
+-commutativeN/A
neg-sub0N/A
associate--r-N/A
associate-*r/N/A
metadata-evalN/A
unpow2N/A
associate-/r*N/A
metadata-evalN/A
associate-*r/N/A
div-subN/A
neg-sub0N/A
mul-1-negN/A
associate-*r/N/A
/-lowering-/.f64N/A
Simplified99.7%
if -0.599999999999999978 < t < 0.56000000000000005Initial program 100.0%
Simplified100.0%
Taylor expanded in t around 0
+-lowering-+.f64N/A
unpow2N/A
associate-*l*N/A
*-lowering-*.f64N/A
*-lowering-*.f64N/A
+-commutativeN/A
+-lowering-+.f64N/A
*-lowering-*.f64100.0%
Simplified100.0%
if 0.56000000000000005 < t Initial program 100.0%
Simplified100.0%
Taylor expanded in t around inf
sub-negN/A
+-lowering-+.f64N/A
associate-*r/N/A
metadata-evalN/A
distribute-neg-fracN/A
/-lowering-/.f64N/A
metadata-eval100.0%
Simplified100.0%
Final simplification99.9%
(FPCore (t)
:precision binary64
(if (<= t -0.8)
(+
0.8333333333333334
(/ (+ -0.2222222222222222 (/ 0.037037037037037035 t)) t))
(if (<= t 0.56)
(+ 0.5 (* t t))
(+ 0.8333333333333334 (/ -0.2222222222222222 t)))))
double code(double t) {
double tmp;
if (t <= -0.8) {
tmp = 0.8333333333333334 + ((-0.2222222222222222 + (0.037037037037037035 / t)) / t);
} else if (t <= 0.56) {
tmp = 0.5 + (t * t);
} else {
tmp = 0.8333333333333334 + (-0.2222222222222222 / t);
}
return tmp;
}
real(8) function code(t)
real(8), intent (in) :: t
real(8) :: tmp
if (t <= (-0.8d0)) then
tmp = 0.8333333333333334d0 + (((-0.2222222222222222d0) + (0.037037037037037035d0 / t)) / t)
else if (t <= 0.56d0) then
tmp = 0.5d0 + (t * t)
else
tmp = 0.8333333333333334d0 + ((-0.2222222222222222d0) / t)
end if
code = tmp
end function
public static double code(double t) {
double tmp;
if (t <= -0.8) {
tmp = 0.8333333333333334 + ((-0.2222222222222222 + (0.037037037037037035 / t)) / t);
} else if (t <= 0.56) {
tmp = 0.5 + (t * t);
} else {
tmp = 0.8333333333333334 + (-0.2222222222222222 / t);
}
return tmp;
}
def code(t): tmp = 0 if t <= -0.8: tmp = 0.8333333333333334 + ((-0.2222222222222222 + (0.037037037037037035 / t)) / t) elif t <= 0.56: tmp = 0.5 + (t * t) else: tmp = 0.8333333333333334 + (-0.2222222222222222 / t) return tmp
function code(t) tmp = 0.0 if (t <= -0.8) tmp = Float64(0.8333333333333334 + Float64(Float64(-0.2222222222222222 + Float64(0.037037037037037035 / t)) / t)); elseif (t <= 0.56) tmp = Float64(0.5 + Float64(t * t)); else tmp = Float64(0.8333333333333334 + Float64(-0.2222222222222222 / t)); end return tmp end
function tmp_2 = code(t) tmp = 0.0; if (t <= -0.8) tmp = 0.8333333333333334 + ((-0.2222222222222222 + (0.037037037037037035 / t)) / t); elseif (t <= 0.56) tmp = 0.5 + (t * t); else tmp = 0.8333333333333334 + (-0.2222222222222222 / t); end tmp_2 = tmp; end
code[t_] := If[LessEqual[t, -0.8], N[(0.8333333333333334 + N[(N[(-0.2222222222222222 + N[(0.037037037037037035 / t), $MachinePrecision]), $MachinePrecision] / t), $MachinePrecision]), $MachinePrecision], If[LessEqual[t, 0.56], N[(0.5 + N[(t * t), $MachinePrecision]), $MachinePrecision], N[(0.8333333333333334 + N[(-0.2222222222222222 / t), $MachinePrecision]), $MachinePrecision]]]
\begin{array}{l}
\\
\begin{array}{l}
\mathbf{if}\;t \leq -0.8:\\
\;\;\;\;0.8333333333333334 + \frac{-0.2222222222222222 + \frac{0.037037037037037035}{t}}{t}\\
\mathbf{elif}\;t \leq 0.56:\\
\;\;\;\;0.5 + t \cdot t\\
\mathbf{else}:\\
\;\;\;\;0.8333333333333334 + \frac{-0.2222222222222222}{t}\\
\end{array}
\end{array}
if t < -0.80000000000000004Initial program 100.0%
Simplified100.0%
Taylor expanded in t around inf
associate--l+N/A
+-lowering-+.f64N/A
sub-negN/A
+-commutativeN/A
neg-sub0N/A
associate--r-N/A
associate-*r/N/A
metadata-evalN/A
unpow2N/A
associate-/r*N/A
metadata-evalN/A
associate-*r/N/A
div-subN/A
neg-sub0N/A
mul-1-negN/A
associate-*r/N/A
/-lowering-/.f64N/A
Simplified99.7%
if -0.80000000000000004 < t < 0.56000000000000005Initial program 100.0%
Simplified100.0%
Taylor expanded in t around 0
+-commutativeN/A
+-lowering-+.f64N/A
unpow2N/A
*-lowering-*.f6499.8%
Simplified99.8%
if 0.56000000000000005 < t Initial program 100.0%
Simplified100.0%
Taylor expanded in t around inf
sub-negN/A
+-lowering-+.f64N/A
associate-*r/N/A
metadata-evalN/A
distribute-neg-fracN/A
/-lowering-/.f64N/A
metadata-eval100.0%
Simplified100.0%
Final simplification99.8%
(FPCore (t) :precision binary64 (let* ((t_1 (+ 0.8333333333333334 (/ -0.2222222222222222 t)))) (if (<= t -0.78) t_1 (if (<= t 0.56) (+ 0.5 (* t t)) t_1))))
double code(double t) {
double t_1 = 0.8333333333333334 + (-0.2222222222222222 / t);
double tmp;
if (t <= -0.78) {
tmp = t_1;
} else if (t <= 0.56) {
tmp = 0.5 + (t * t);
} else {
tmp = t_1;
}
return tmp;
}
real(8) function code(t)
real(8), intent (in) :: t
real(8) :: t_1
real(8) :: tmp
t_1 = 0.8333333333333334d0 + ((-0.2222222222222222d0) / t)
if (t <= (-0.78d0)) then
tmp = t_1
else if (t <= 0.56d0) then
tmp = 0.5d0 + (t * t)
else
tmp = t_1
end if
code = tmp
end function
public static double code(double t) {
double t_1 = 0.8333333333333334 + (-0.2222222222222222 / t);
double tmp;
if (t <= -0.78) {
tmp = t_1;
} else if (t <= 0.56) {
tmp = 0.5 + (t * t);
} else {
tmp = t_1;
}
return tmp;
}
def code(t): t_1 = 0.8333333333333334 + (-0.2222222222222222 / t) tmp = 0 if t <= -0.78: tmp = t_1 elif t <= 0.56: tmp = 0.5 + (t * t) else: tmp = t_1 return tmp
function code(t) t_1 = Float64(0.8333333333333334 + Float64(-0.2222222222222222 / t)) tmp = 0.0 if (t <= -0.78) tmp = t_1; elseif (t <= 0.56) tmp = Float64(0.5 + Float64(t * t)); else tmp = t_1; end return tmp end
function tmp_2 = code(t) t_1 = 0.8333333333333334 + (-0.2222222222222222 / t); tmp = 0.0; if (t <= -0.78) tmp = t_1; elseif (t <= 0.56) tmp = 0.5 + (t * t); else tmp = t_1; end tmp_2 = tmp; end
code[t_] := Block[{t$95$1 = N[(0.8333333333333334 + N[(-0.2222222222222222 / t), $MachinePrecision]), $MachinePrecision]}, If[LessEqual[t, -0.78], t$95$1, If[LessEqual[t, 0.56], N[(0.5 + N[(t * t), $MachinePrecision]), $MachinePrecision], t$95$1]]]
\begin{array}{l}
\\
\begin{array}{l}
t_1 := 0.8333333333333334 + \frac{-0.2222222222222222}{t}\\
\mathbf{if}\;t \leq -0.78:\\
\;\;\;\;t\_1\\
\mathbf{elif}\;t \leq 0.56:\\
\;\;\;\;0.5 + t \cdot t\\
\mathbf{else}:\\
\;\;\;\;t\_1\\
\end{array}
\end{array}
if t < -0.78000000000000003 or 0.56000000000000005 < t Initial program 100.0%
Simplified100.0%
Taylor expanded in t around inf
sub-negN/A
+-lowering-+.f64N/A
associate-*r/N/A
metadata-evalN/A
distribute-neg-fracN/A
/-lowering-/.f64N/A
metadata-eval99.6%
Simplified99.6%
if -0.78000000000000003 < t < 0.56000000000000005Initial program 100.0%
Simplified100.0%
Taylor expanded in t around 0
+-commutativeN/A
+-lowering-+.f64N/A
unpow2N/A
*-lowering-*.f6499.8%
Simplified99.8%
Final simplification99.7%
(FPCore (t) :precision binary64 (let* ((t_1 (+ 0.8333333333333334 (/ -0.2222222222222222 t)))) (if (<= t -0.49) t_1 (if (<= t 0.68) 0.5 t_1))))
double code(double t) {
double t_1 = 0.8333333333333334 + (-0.2222222222222222 / t);
double tmp;
if (t <= -0.49) {
tmp = t_1;
} else if (t <= 0.68) {
tmp = 0.5;
} else {
tmp = t_1;
}
return tmp;
}
real(8) function code(t)
real(8), intent (in) :: t
real(8) :: t_1
real(8) :: tmp
t_1 = 0.8333333333333334d0 + ((-0.2222222222222222d0) / t)
if (t <= (-0.49d0)) then
tmp = t_1
else if (t <= 0.68d0) then
tmp = 0.5d0
else
tmp = t_1
end if
code = tmp
end function
public static double code(double t) {
double t_1 = 0.8333333333333334 + (-0.2222222222222222 / t);
double tmp;
if (t <= -0.49) {
tmp = t_1;
} else if (t <= 0.68) {
tmp = 0.5;
} else {
tmp = t_1;
}
return tmp;
}
def code(t): t_1 = 0.8333333333333334 + (-0.2222222222222222 / t) tmp = 0 if t <= -0.49: tmp = t_1 elif t <= 0.68: tmp = 0.5 else: tmp = t_1 return tmp
function code(t) t_1 = Float64(0.8333333333333334 + Float64(-0.2222222222222222 / t)) tmp = 0.0 if (t <= -0.49) tmp = t_1; elseif (t <= 0.68) tmp = 0.5; else tmp = t_1; end return tmp end
function tmp_2 = code(t) t_1 = 0.8333333333333334 + (-0.2222222222222222 / t); tmp = 0.0; if (t <= -0.49) tmp = t_1; elseif (t <= 0.68) tmp = 0.5; else tmp = t_1; end tmp_2 = tmp; end
code[t_] := Block[{t$95$1 = N[(0.8333333333333334 + N[(-0.2222222222222222 / t), $MachinePrecision]), $MachinePrecision]}, If[LessEqual[t, -0.49], t$95$1, If[LessEqual[t, 0.68], 0.5, t$95$1]]]
\begin{array}{l}
\\
\begin{array}{l}
t_1 := 0.8333333333333334 + \frac{-0.2222222222222222}{t}\\
\mathbf{if}\;t \leq -0.49:\\
\;\;\;\;t\_1\\
\mathbf{elif}\;t \leq 0.68:\\
\;\;\;\;0.5\\
\mathbf{else}:\\
\;\;\;\;t\_1\\
\end{array}
\end{array}
if t < -0.48999999999999999 or 0.680000000000000049 < t Initial program 100.0%
Simplified100.0%
Taylor expanded in t around inf
sub-negN/A
+-lowering-+.f64N/A
associate-*r/N/A
metadata-evalN/A
distribute-neg-fracN/A
/-lowering-/.f64N/A
metadata-eval99.6%
Simplified99.6%
if -0.48999999999999999 < t < 0.680000000000000049Initial program 100.0%
Simplified100.0%
Taylor expanded in t around 0
Simplified99.3%
(FPCore (t) :precision binary64 (if (<= t -0.33) 0.8333333333333334 (if (<= t 1.0) 0.5 0.8333333333333334)))
double code(double t) {
double tmp;
if (t <= -0.33) {
tmp = 0.8333333333333334;
} else if (t <= 1.0) {
tmp = 0.5;
} else {
tmp = 0.8333333333333334;
}
return tmp;
}
real(8) function code(t)
real(8), intent (in) :: t
real(8) :: tmp
if (t <= (-0.33d0)) then
tmp = 0.8333333333333334d0
else if (t <= 1.0d0) then
tmp = 0.5d0
else
tmp = 0.8333333333333334d0
end if
code = tmp
end function
public static double code(double t) {
double tmp;
if (t <= -0.33) {
tmp = 0.8333333333333334;
} else if (t <= 1.0) {
tmp = 0.5;
} else {
tmp = 0.8333333333333334;
}
return tmp;
}
def code(t): tmp = 0 if t <= -0.33: tmp = 0.8333333333333334 elif t <= 1.0: tmp = 0.5 else: tmp = 0.8333333333333334 return tmp
function code(t) tmp = 0.0 if (t <= -0.33) tmp = 0.8333333333333334; elseif (t <= 1.0) tmp = 0.5; else tmp = 0.8333333333333334; end return tmp end
function tmp_2 = code(t) tmp = 0.0; if (t <= -0.33) tmp = 0.8333333333333334; elseif (t <= 1.0) tmp = 0.5; else tmp = 0.8333333333333334; end tmp_2 = tmp; end
code[t_] := If[LessEqual[t, -0.33], 0.8333333333333334, If[LessEqual[t, 1.0], 0.5, 0.8333333333333334]]
\begin{array}{l}
\\
\begin{array}{l}
\mathbf{if}\;t \leq -0.33:\\
\;\;\;\;0.8333333333333334\\
\mathbf{elif}\;t \leq 1:\\
\;\;\;\;0.5\\
\mathbf{else}:\\
\;\;\;\;0.8333333333333334\\
\end{array}
\end{array}
if t < -0.330000000000000016 or 1 < t Initial program 100.0%
Simplified100.0%
Taylor expanded in t around inf
Simplified98.7%
if -0.330000000000000016 < t < 1Initial program 100.0%
Simplified100.0%
Taylor expanded in t around 0
Simplified99.3%
(FPCore (t) :precision binary64 0.5)
double code(double t) {
return 0.5;
}
real(8) function code(t)
real(8), intent (in) :: t
code = 0.5d0
end function
public static double code(double t) {
return 0.5;
}
def code(t): return 0.5
function code(t) return 0.5 end
function tmp = code(t) tmp = 0.5; end
code[t_] := 0.5
\begin{array}{l}
\\
0.5
\end{array}
Initial program 100.0%
Simplified100.0%
Taylor expanded in t around 0
Simplified65.7%
herbie shell --seed 2024161
(FPCore (t)
:name "Kahan p13 Example 2"
:precision binary64
(/ (+ 1.0 (* (- 2.0 (/ (/ 2.0 t) (+ 1.0 (/ 1.0 t)))) (- 2.0 (/ (/ 2.0 t) (+ 1.0 (/ 1.0 t)))))) (+ 2.0 (* (- 2.0 (/ (/ 2.0 t) (+ 1.0 (/ 1.0 t)))) (- 2.0 (/ (/ 2.0 t) (+ 1.0 (/ 1.0 t))))))))