
(FPCore (x.re x.im y.re y.im) :precision binary64 (/ (- (* x.im y.re) (* x.re y.im)) (+ (* y.re y.re) (* y.im y.im))))
double code(double x_46_re, double x_46_im, double y_46_re, double y_46_im) {
return ((x_46_im * y_46_re) - (x_46_re * y_46_im)) / ((y_46_re * y_46_re) + (y_46_im * y_46_im));
}
real(8) function code(x_46re, x_46im, y_46re, y_46im)
real(8), intent (in) :: x_46re
real(8), intent (in) :: x_46im
real(8), intent (in) :: y_46re
real(8), intent (in) :: y_46im
code = ((x_46im * y_46re) - (x_46re * y_46im)) / ((y_46re * y_46re) + (y_46im * y_46im))
end function
public static double code(double x_46_re, double x_46_im, double y_46_re, double y_46_im) {
return ((x_46_im * y_46_re) - (x_46_re * y_46_im)) / ((y_46_re * y_46_re) + (y_46_im * y_46_im));
}
def code(x_46_re, x_46_im, y_46_re, y_46_im): return ((x_46_im * y_46_re) - (x_46_re * y_46_im)) / ((y_46_re * y_46_re) + (y_46_im * y_46_im))
function code(x_46_re, x_46_im, y_46_re, y_46_im) return Float64(Float64(Float64(x_46_im * y_46_re) - Float64(x_46_re * y_46_im)) / Float64(Float64(y_46_re * y_46_re) + Float64(y_46_im * y_46_im))) end
function tmp = code(x_46_re, x_46_im, y_46_re, y_46_im) tmp = ((x_46_im * y_46_re) - (x_46_re * y_46_im)) / ((y_46_re * y_46_re) + (y_46_im * y_46_im)); end
code[x$46$re_, x$46$im_, y$46$re_, y$46$im_] := N[(N[(N[(x$46$im * y$46$re), $MachinePrecision] - N[(x$46$re * y$46$im), $MachinePrecision]), $MachinePrecision] / N[(N[(y$46$re * y$46$re), $MachinePrecision] + N[(y$46$im * y$46$im), $MachinePrecision]), $MachinePrecision]), $MachinePrecision]
\begin{array}{l}
\\
\frac{x.im \cdot y.re - x.re \cdot y.im}{y.re \cdot y.re + y.im \cdot y.im}
\end{array}
Sampling outcomes in binary64 precision:
Herbie found 10 alternatives:
| Alternative | Accuracy | Speedup |
|---|
(FPCore (x.re x.im y.re y.im) :precision binary64 (/ (- (* x.im y.re) (* x.re y.im)) (+ (* y.re y.re) (* y.im y.im))))
double code(double x_46_re, double x_46_im, double y_46_re, double y_46_im) {
return ((x_46_im * y_46_re) - (x_46_re * y_46_im)) / ((y_46_re * y_46_re) + (y_46_im * y_46_im));
}
real(8) function code(x_46re, x_46im, y_46re, y_46im)
real(8), intent (in) :: x_46re
real(8), intent (in) :: x_46im
real(8), intent (in) :: y_46re
real(8), intent (in) :: y_46im
code = ((x_46im * y_46re) - (x_46re * y_46im)) / ((y_46re * y_46re) + (y_46im * y_46im))
end function
public static double code(double x_46_re, double x_46_im, double y_46_re, double y_46_im) {
return ((x_46_im * y_46_re) - (x_46_re * y_46_im)) / ((y_46_re * y_46_re) + (y_46_im * y_46_im));
}
def code(x_46_re, x_46_im, y_46_re, y_46_im): return ((x_46_im * y_46_re) - (x_46_re * y_46_im)) / ((y_46_re * y_46_re) + (y_46_im * y_46_im))
function code(x_46_re, x_46_im, y_46_re, y_46_im) return Float64(Float64(Float64(x_46_im * y_46_re) - Float64(x_46_re * y_46_im)) / Float64(Float64(y_46_re * y_46_re) + Float64(y_46_im * y_46_im))) end
function tmp = code(x_46_re, x_46_im, y_46_re, y_46_im) tmp = ((x_46_im * y_46_re) - (x_46_re * y_46_im)) / ((y_46_re * y_46_re) + (y_46_im * y_46_im)); end
code[x$46$re_, x$46$im_, y$46$re_, y$46$im_] := N[(N[(N[(x$46$im * y$46$re), $MachinePrecision] - N[(x$46$re * y$46$im), $MachinePrecision]), $MachinePrecision] / N[(N[(y$46$re * y$46$re), $MachinePrecision] + N[(y$46$im * y$46$im), $MachinePrecision]), $MachinePrecision]), $MachinePrecision]
\begin{array}{l}
\\
\frac{x.im \cdot y.re - x.re \cdot y.im}{y.re \cdot y.re + y.im \cdot y.im}
\end{array}
(FPCore (x.re x.im y.re y.im)
:precision binary64
(let* ((t_0 (pow (hypot y.im y.re) 2.0))
(t_1 (- (* y.re (/ x.im t_0)) (* x.re (/ y.im t_0)))))
(if (<= y.re -2e+109)
(/ (- x.im (* x.re (/ y.im y.re))) y.re)
(if (<= y.re -1.4e-91)
t_1
(if (<= y.re 4.8e-23)
(/ (- (/ (* y.re x.im) y.im) x.re) y.im)
(if (<= y.re 7.2e+96)
t_1
(/ (- x.im (* y.im (/ x.re y.re))) y.re)))))))
double code(double x_46_re, double x_46_im, double y_46_re, double y_46_im) {
double t_0 = pow(hypot(y_46_im, y_46_re), 2.0);
double t_1 = (y_46_re * (x_46_im / t_0)) - (x_46_re * (y_46_im / t_0));
double tmp;
if (y_46_re <= -2e+109) {
tmp = (x_46_im - (x_46_re * (y_46_im / y_46_re))) / y_46_re;
} else if (y_46_re <= -1.4e-91) {
tmp = t_1;
} else if (y_46_re <= 4.8e-23) {
tmp = (((y_46_re * x_46_im) / y_46_im) - x_46_re) / y_46_im;
} else if (y_46_re <= 7.2e+96) {
tmp = t_1;
} else {
tmp = (x_46_im - (y_46_im * (x_46_re / y_46_re))) / y_46_re;
}
return tmp;
}
public static double code(double x_46_re, double x_46_im, double y_46_re, double y_46_im) {
double t_0 = Math.pow(Math.hypot(y_46_im, y_46_re), 2.0);
double t_1 = (y_46_re * (x_46_im / t_0)) - (x_46_re * (y_46_im / t_0));
double tmp;
if (y_46_re <= -2e+109) {
tmp = (x_46_im - (x_46_re * (y_46_im / y_46_re))) / y_46_re;
} else if (y_46_re <= -1.4e-91) {
tmp = t_1;
} else if (y_46_re <= 4.8e-23) {
tmp = (((y_46_re * x_46_im) / y_46_im) - x_46_re) / y_46_im;
} else if (y_46_re <= 7.2e+96) {
tmp = t_1;
} else {
tmp = (x_46_im - (y_46_im * (x_46_re / y_46_re))) / y_46_re;
}
return tmp;
}
def code(x_46_re, x_46_im, y_46_re, y_46_im): t_0 = math.pow(math.hypot(y_46_im, y_46_re), 2.0) t_1 = (y_46_re * (x_46_im / t_0)) - (x_46_re * (y_46_im / t_0)) tmp = 0 if y_46_re <= -2e+109: tmp = (x_46_im - (x_46_re * (y_46_im / y_46_re))) / y_46_re elif y_46_re <= -1.4e-91: tmp = t_1 elif y_46_re <= 4.8e-23: tmp = (((y_46_re * x_46_im) / y_46_im) - x_46_re) / y_46_im elif y_46_re <= 7.2e+96: tmp = t_1 else: tmp = (x_46_im - (y_46_im * (x_46_re / y_46_re))) / y_46_re return tmp
function code(x_46_re, x_46_im, y_46_re, y_46_im) t_0 = hypot(y_46_im, y_46_re) ^ 2.0 t_1 = Float64(Float64(y_46_re * Float64(x_46_im / t_0)) - Float64(x_46_re * Float64(y_46_im / t_0))) tmp = 0.0 if (y_46_re <= -2e+109) tmp = Float64(Float64(x_46_im - Float64(x_46_re * Float64(y_46_im / y_46_re))) / y_46_re); elseif (y_46_re <= -1.4e-91) tmp = t_1; elseif (y_46_re <= 4.8e-23) tmp = Float64(Float64(Float64(Float64(y_46_re * x_46_im) / y_46_im) - x_46_re) / y_46_im); elseif (y_46_re <= 7.2e+96) tmp = t_1; else tmp = Float64(Float64(x_46_im - Float64(y_46_im * Float64(x_46_re / y_46_re))) / y_46_re); end return tmp end
function tmp_2 = code(x_46_re, x_46_im, y_46_re, y_46_im) t_0 = hypot(y_46_im, y_46_re) ^ 2.0; t_1 = (y_46_re * (x_46_im / t_0)) - (x_46_re * (y_46_im / t_0)); tmp = 0.0; if (y_46_re <= -2e+109) tmp = (x_46_im - (x_46_re * (y_46_im / y_46_re))) / y_46_re; elseif (y_46_re <= -1.4e-91) tmp = t_1; elseif (y_46_re <= 4.8e-23) tmp = (((y_46_re * x_46_im) / y_46_im) - x_46_re) / y_46_im; elseif (y_46_re <= 7.2e+96) tmp = t_1; else tmp = (x_46_im - (y_46_im * (x_46_re / y_46_re))) / y_46_re; end tmp_2 = tmp; end
code[x$46$re_, x$46$im_, y$46$re_, y$46$im_] := Block[{t$95$0 = N[Power[N[Sqrt[y$46$im ^ 2 + y$46$re ^ 2], $MachinePrecision], 2.0], $MachinePrecision]}, Block[{t$95$1 = N[(N[(y$46$re * N[(x$46$im / t$95$0), $MachinePrecision]), $MachinePrecision] - N[(x$46$re * N[(y$46$im / t$95$0), $MachinePrecision]), $MachinePrecision]), $MachinePrecision]}, If[LessEqual[y$46$re, -2e+109], N[(N[(x$46$im - N[(x$46$re * N[(y$46$im / y$46$re), $MachinePrecision]), $MachinePrecision]), $MachinePrecision] / y$46$re), $MachinePrecision], If[LessEqual[y$46$re, -1.4e-91], t$95$1, If[LessEqual[y$46$re, 4.8e-23], N[(N[(N[(N[(y$46$re * x$46$im), $MachinePrecision] / y$46$im), $MachinePrecision] - x$46$re), $MachinePrecision] / y$46$im), $MachinePrecision], If[LessEqual[y$46$re, 7.2e+96], t$95$1, N[(N[(x$46$im - N[(y$46$im * N[(x$46$re / y$46$re), $MachinePrecision]), $MachinePrecision]), $MachinePrecision] / y$46$re), $MachinePrecision]]]]]]]
\begin{array}{l}
\\
\begin{array}{l}
t_0 := {\left(\mathsf{hypot}\left(y.im, y.re\right)\right)}^{2}\\
t_1 := y.re \cdot \frac{x.im}{t\_0} - x.re \cdot \frac{y.im}{t\_0}\\
\mathbf{if}\;y.re \leq -2 \cdot 10^{+109}:\\
\;\;\;\;\frac{x.im - x.re \cdot \frac{y.im}{y.re}}{y.re}\\
\mathbf{elif}\;y.re \leq -1.4 \cdot 10^{-91}:\\
\;\;\;\;t\_1\\
\mathbf{elif}\;y.re \leq 4.8 \cdot 10^{-23}:\\
\;\;\;\;\frac{\frac{y.re \cdot x.im}{y.im} - x.re}{y.im}\\
\mathbf{elif}\;y.re \leq 7.2 \cdot 10^{+96}:\\
\;\;\;\;t\_1\\
\mathbf{else}:\\
\;\;\;\;\frac{x.im - y.im \cdot \frac{x.re}{y.re}}{y.re}\\
\end{array}
\end{array}
if y.re < -1.99999999999999996e109Initial program 41.1%
Taylor expanded in y.re around inf 80.7%
remove-double-neg80.7%
mul-1-neg80.7%
neg-mul-180.7%
distribute-lft-in80.7%
distribute-lft-in80.7%
mul-1-neg80.7%
unsub-neg80.7%
neg-mul-180.7%
mul-1-neg80.7%
remove-double-neg80.7%
associate-/l*87.3%
Simplified87.3%
if -1.99999999999999996e109 < y.re < -1.4e-91 or 4.79999999999999993e-23 < y.re < 7.20000000000000026e96Initial program 75.2%
Taylor expanded in x.im around 0 75.2%
+-commutative75.2%
mul-1-neg75.2%
unsub-neg75.2%
Simplified83.2%
if -1.4e-91 < y.re < 4.79999999999999993e-23Initial program 63.4%
Taylor expanded in y.re around 0 79.7%
+-commutative79.7%
mul-1-neg79.7%
unsub-neg79.7%
unpow279.7%
associate-/r*89.0%
+-rgt-identity89.0%
div-sub90.9%
+-rgt-identity90.9%
*-commutative90.9%
Simplified90.9%
if 7.20000000000000026e96 < y.re Initial program 30.8%
Taylor expanded in y.re around inf 81.4%
remove-double-neg81.4%
mul-1-neg81.4%
neg-mul-181.4%
distribute-lft-in81.4%
distribute-lft-in81.4%
mul-1-neg81.4%
unsub-neg81.4%
neg-mul-181.4%
mul-1-neg81.4%
remove-double-neg81.4%
associate-/l*89.5%
Simplified89.5%
clear-num88.9%
un-div-inv88.9%
Applied egg-rr88.9%
associate-/r/91.7%
Simplified91.7%
Final simplification88.4%
(FPCore (x.re x.im y.re y.im)
:precision binary64
(let* ((t_0 (/ (- x.im (* x.re (/ y.im y.re))) y.re)))
(if (<= y.re -1.75e+64)
t_0
(if (<= y.re -6.9e-74)
(/ (* y.re x.im) (+ (* y.re y.re) (* y.im y.im)))
(if (<= y.re -1.05e-84)
t_0
(if (<= y.re 3.4e-14)
(/ (- (/ (* y.re x.im) y.im) x.re) y.im)
(/ (- x.im (* y.im (/ x.re y.re))) y.re)))))))
double code(double x_46_re, double x_46_im, double y_46_re, double y_46_im) {
double t_0 = (x_46_im - (x_46_re * (y_46_im / y_46_re))) / y_46_re;
double tmp;
if (y_46_re <= -1.75e+64) {
tmp = t_0;
} else if (y_46_re <= -6.9e-74) {
tmp = (y_46_re * x_46_im) / ((y_46_re * y_46_re) + (y_46_im * y_46_im));
} else if (y_46_re <= -1.05e-84) {
tmp = t_0;
} else if (y_46_re <= 3.4e-14) {
tmp = (((y_46_re * x_46_im) / y_46_im) - x_46_re) / y_46_im;
} else {
tmp = (x_46_im - (y_46_im * (x_46_re / y_46_re))) / y_46_re;
}
return tmp;
}
real(8) function code(x_46re, x_46im, y_46re, y_46im)
real(8), intent (in) :: x_46re
real(8), intent (in) :: x_46im
real(8), intent (in) :: y_46re
real(8), intent (in) :: y_46im
real(8) :: t_0
real(8) :: tmp
t_0 = (x_46im - (x_46re * (y_46im / y_46re))) / y_46re
if (y_46re <= (-1.75d+64)) then
tmp = t_0
else if (y_46re <= (-6.9d-74)) then
tmp = (y_46re * x_46im) / ((y_46re * y_46re) + (y_46im * y_46im))
else if (y_46re <= (-1.05d-84)) then
tmp = t_0
else if (y_46re <= 3.4d-14) then
tmp = (((y_46re * x_46im) / y_46im) - x_46re) / y_46im
else
tmp = (x_46im - (y_46im * (x_46re / y_46re))) / y_46re
end if
code = tmp
end function
public static double code(double x_46_re, double x_46_im, double y_46_re, double y_46_im) {
double t_0 = (x_46_im - (x_46_re * (y_46_im / y_46_re))) / y_46_re;
double tmp;
if (y_46_re <= -1.75e+64) {
tmp = t_0;
} else if (y_46_re <= -6.9e-74) {
tmp = (y_46_re * x_46_im) / ((y_46_re * y_46_re) + (y_46_im * y_46_im));
} else if (y_46_re <= -1.05e-84) {
tmp = t_0;
} else if (y_46_re <= 3.4e-14) {
tmp = (((y_46_re * x_46_im) / y_46_im) - x_46_re) / y_46_im;
} else {
tmp = (x_46_im - (y_46_im * (x_46_re / y_46_re))) / y_46_re;
}
return tmp;
}
def code(x_46_re, x_46_im, y_46_re, y_46_im): t_0 = (x_46_im - (x_46_re * (y_46_im / y_46_re))) / y_46_re tmp = 0 if y_46_re <= -1.75e+64: tmp = t_0 elif y_46_re <= -6.9e-74: tmp = (y_46_re * x_46_im) / ((y_46_re * y_46_re) + (y_46_im * y_46_im)) elif y_46_re <= -1.05e-84: tmp = t_0 elif y_46_re <= 3.4e-14: tmp = (((y_46_re * x_46_im) / y_46_im) - x_46_re) / y_46_im else: tmp = (x_46_im - (y_46_im * (x_46_re / y_46_re))) / y_46_re return tmp
function code(x_46_re, x_46_im, y_46_re, y_46_im) t_0 = Float64(Float64(x_46_im - Float64(x_46_re * Float64(y_46_im / y_46_re))) / y_46_re) tmp = 0.0 if (y_46_re <= -1.75e+64) tmp = t_0; elseif (y_46_re <= -6.9e-74) tmp = Float64(Float64(y_46_re * x_46_im) / Float64(Float64(y_46_re * y_46_re) + Float64(y_46_im * y_46_im))); elseif (y_46_re <= -1.05e-84) tmp = t_0; elseif (y_46_re <= 3.4e-14) tmp = Float64(Float64(Float64(Float64(y_46_re * x_46_im) / y_46_im) - x_46_re) / y_46_im); else tmp = Float64(Float64(x_46_im - Float64(y_46_im * Float64(x_46_re / y_46_re))) / y_46_re); end return tmp end
function tmp_2 = code(x_46_re, x_46_im, y_46_re, y_46_im) t_0 = (x_46_im - (x_46_re * (y_46_im / y_46_re))) / y_46_re; tmp = 0.0; if (y_46_re <= -1.75e+64) tmp = t_0; elseif (y_46_re <= -6.9e-74) tmp = (y_46_re * x_46_im) / ((y_46_re * y_46_re) + (y_46_im * y_46_im)); elseif (y_46_re <= -1.05e-84) tmp = t_0; elseif (y_46_re <= 3.4e-14) tmp = (((y_46_re * x_46_im) / y_46_im) - x_46_re) / y_46_im; else tmp = (x_46_im - (y_46_im * (x_46_re / y_46_re))) / y_46_re; end tmp_2 = tmp; end
code[x$46$re_, x$46$im_, y$46$re_, y$46$im_] := Block[{t$95$0 = N[(N[(x$46$im - N[(x$46$re * N[(y$46$im / y$46$re), $MachinePrecision]), $MachinePrecision]), $MachinePrecision] / y$46$re), $MachinePrecision]}, If[LessEqual[y$46$re, -1.75e+64], t$95$0, If[LessEqual[y$46$re, -6.9e-74], N[(N[(y$46$re * x$46$im), $MachinePrecision] / N[(N[(y$46$re * y$46$re), $MachinePrecision] + N[(y$46$im * y$46$im), $MachinePrecision]), $MachinePrecision]), $MachinePrecision], If[LessEqual[y$46$re, -1.05e-84], t$95$0, If[LessEqual[y$46$re, 3.4e-14], N[(N[(N[(N[(y$46$re * x$46$im), $MachinePrecision] / y$46$im), $MachinePrecision] - x$46$re), $MachinePrecision] / y$46$im), $MachinePrecision], N[(N[(x$46$im - N[(y$46$im * N[(x$46$re / y$46$re), $MachinePrecision]), $MachinePrecision]), $MachinePrecision] / y$46$re), $MachinePrecision]]]]]]
\begin{array}{l}
\\
\begin{array}{l}
t_0 := \frac{x.im - x.re \cdot \frac{y.im}{y.re}}{y.re}\\
\mathbf{if}\;y.re \leq -1.75 \cdot 10^{+64}:\\
\;\;\;\;t\_0\\
\mathbf{elif}\;y.re \leq -6.9 \cdot 10^{-74}:\\
\;\;\;\;\frac{y.re \cdot x.im}{y.re \cdot y.re + y.im \cdot y.im}\\
\mathbf{elif}\;y.re \leq -1.05 \cdot 10^{-84}:\\
\;\;\;\;t\_0\\
\mathbf{elif}\;y.re \leq 3.4 \cdot 10^{-14}:\\
\;\;\;\;\frac{\frac{y.re \cdot x.im}{y.im} - x.re}{y.im}\\
\mathbf{else}:\\
\;\;\;\;\frac{x.im - y.im \cdot \frac{x.re}{y.re}}{y.re}\\
\end{array}
\end{array}
if y.re < -1.7499999999999999e64 or -6.89999999999999981e-74 < y.re < -1.04999999999999999e-84Initial program 46.2%
Taylor expanded in y.re around inf 74.7%
remove-double-neg74.7%
mul-1-neg74.7%
neg-mul-174.7%
distribute-lft-in74.7%
distribute-lft-in74.7%
mul-1-neg74.7%
unsub-neg74.7%
neg-mul-174.7%
mul-1-neg74.7%
remove-double-neg74.7%
associate-/l*81.7%
Simplified81.7%
if -1.7499999999999999e64 < y.re < -6.89999999999999981e-74Initial program 88.2%
Taylor expanded in x.im around inf 77.8%
*-commutative77.8%
Simplified77.8%
if -1.04999999999999999e-84 < y.re < 3.40000000000000003e-14Initial program 63.8%
Taylor expanded in y.re around 0 79.8%
+-commutative79.8%
mul-1-neg79.8%
unsub-neg79.8%
unpow279.8%
associate-/r*89.0%
+-rgt-identity89.0%
div-sub90.9%
+-rgt-identity90.9%
*-commutative90.9%
Simplified90.9%
if 3.40000000000000003e-14 < y.re Initial program 45.1%
Taylor expanded in y.re around inf 72.5%
remove-double-neg72.5%
mul-1-neg72.5%
neg-mul-172.5%
distribute-lft-in72.5%
distribute-lft-in72.5%
mul-1-neg72.5%
unsub-neg72.5%
neg-mul-172.5%
mul-1-neg72.5%
remove-double-neg72.5%
associate-/l*78.7%
Simplified78.7%
clear-num78.4%
un-div-inv78.4%
Applied egg-rr78.4%
associate-/r/81.2%
Simplified81.2%
Final simplification84.9%
(FPCore (x.re x.im y.re y.im)
:precision binary64
(if (<= y.re -1.2e+78)
(/ (- x.im (* x.re (/ y.im y.re))) y.re)
(if (<= y.re -6e-119)
(/ (- (* y.re x.im) (* x.re y.im)) (+ (* y.re y.re) (* y.im y.im)))
(if (<= y.re 1.8e-19)
(/ (- (/ (* y.re x.im) y.im) x.re) y.im)
(/ (- x.im (* y.im (/ x.re y.re))) y.re)))))
double code(double x_46_re, double x_46_im, double y_46_re, double y_46_im) {
double tmp;
if (y_46_re <= -1.2e+78) {
tmp = (x_46_im - (x_46_re * (y_46_im / y_46_re))) / y_46_re;
} else if (y_46_re <= -6e-119) {
tmp = ((y_46_re * x_46_im) - (x_46_re * y_46_im)) / ((y_46_re * y_46_re) + (y_46_im * y_46_im));
} else if (y_46_re <= 1.8e-19) {
tmp = (((y_46_re * x_46_im) / y_46_im) - x_46_re) / y_46_im;
} else {
tmp = (x_46_im - (y_46_im * (x_46_re / y_46_re))) / y_46_re;
}
return tmp;
}
real(8) function code(x_46re, x_46im, y_46re, y_46im)
real(8), intent (in) :: x_46re
real(8), intent (in) :: x_46im
real(8), intent (in) :: y_46re
real(8), intent (in) :: y_46im
real(8) :: tmp
if (y_46re <= (-1.2d+78)) then
tmp = (x_46im - (x_46re * (y_46im / y_46re))) / y_46re
else if (y_46re <= (-6d-119)) then
tmp = ((y_46re * x_46im) - (x_46re * y_46im)) / ((y_46re * y_46re) + (y_46im * y_46im))
else if (y_46re <= 1.8d-19) then
tmp = (((y_46re * x_46im) / y_46im) - x_46re) / y_46im
else
tmp = (x_46im - (y_46im * (x_46re / y_46re))) / y_46re
end if
code = tmp
end function
public static double code(double x_46_re, double x_46_im, double y_46_re, double y_46_im) {
double tmp;
if (y_46_re <= -1.2e+78) {
tmp = (x_46_im - (x_46_re * (y_46_im / y_46_re))) / y_46_re;
} else if (y_46_re <= -6e-119) {
tmp = ((y_46_re * x_46_im) - (x_46_re * y_46_im)) / ((y_46_re * y_46_re) + (y_46_im * y_46_im));
} else if (y_46_re <= 1.8e-19) {
tmp = (((y_46_re * x_46_im) / y_46_im) - x_46_re) / y_46_im;
} else {
tmp = (x_46_im - (y_46_im * (x_46_re / y_46_re))) / y_46_re;
}
return tmp;
}
def code(x_46_re, x_46_im, y_46_re, y_46_im): tmp = 0 if y_46_re <= -1.2e+78: tmp = (x_46_im - (x_46_re * (y_46_im / y_46_re))) / y_46_re elif y_46_re <= -6e-119: tmp = ((y_46_re * x_46_im) - (x_46_re * y_46_im)) / ((y_46_re * y_46_re) + (y_46_im * y_46_im)) elif y_46_re <= 1.8e-19: tmp = (((y_46_re * x_46_im) / y_46_im) - x_46_re) / y_46_im else: tmp = (x_46_im - (y_46_im * (x_46_re / y_46_re))) / y_46_re return tmp
function code(x_46_re, x_46_im, y_46_re, y_46_im) tmp = 0.0 if (y_46_re <= -1.2e+78) tmp = Float64(Float64(x_46_im - Float64(x_46_re * Float64(y_46_im / y_46_re))) / y_46_re); elseif (y_46_re <= -6e-119) tmp = Float64(Float64(Float64(y_46_re * x_46_im) - Float64(x_46_re * y_46_im)) / Float64(Float64(y_46_re * y_46_re) + Float64(y_46_im * y_46_im))); elseif (y_46_re <= 1.8e-19) tmp = Float64(Float64(Float64(Float64(y_46_re * x_46_im) / y_46_im) - x_46_re) / y_46_im); else tmp = Float64(Float64(x_46_im - Float64(y_46_im * Float64(x_46_re / y_46_re))) / y_46_re); end return tmp end
function tmp_2 = code(x_46_re, x_46_im, y_46_re, y_46_im) tmp = 0.0; if (y_46_re <= -1.2e+78) tmp = (x_46_im - (x_46_re * (y_46_im / y_46_re))) / y_46_re; elseif (y_46_re <= -6e-119) tmp = ((y_46_re * x_46_im) - (x_46_re * y_46_im)) / ((y_46_re * y_46_re) + (y_46_im * y_46_im)); elseif (y_46_re <= 1.8e-19) tmp = (((y_46_re * x_46_im) / y_46_im) - x_46_re) / y_46_im; else tmp = (x_46_im - (y_46_im * (x_46_re / y_46_re))) / y_46_re; end tmp_2 = tmp; end
code[x$46$re_, x$46$im_, y$46$re_, y$46$im_] := If[LessEqual[y$46$re, -1.2e+78], N[(N[(x$46$im - N[(x$46$re * N[(y$46$im / y$46$re), $MachinePrecision]), $MachinePrecision]), $MachinePrecision] / y$46$re), $MachinePrecision], If[LessEqual[y$46$re, -6e-119], N[(N[(N[(y$46$re * x$46$im), $MachinePrecision] - N[(x$46$re * y$46$im), $MachinePrecision]), $MachinePrecision] / N[(N[(y$46$re * y$46$re), $MachinePrecision] + N[(y$46$im * y$46$im), $MachinePrecision]), $MachinePrecision]), $MachinePrecision], If[LessEqual[y$46$re, 1.8e-19], N[(N[(N[(N[(y$46$re * x$46$im), $MachinePrecision] / y$46$im), $MachinePrecision] - x$46$re), $MachinePrecision] / y$46$im), $MachinePrecision], N[(N[(x$46$im - N[(y$46$im * N[(x$46$re / y$46$re), $MachinePrecision]), $MachinePrecision]), $MachinePrecision] / y$46$re), $MachinePrecision]]]]
\begin{array}{l}
\\
\begin{array}{l}
\mathbf{if}\;y.re \leq -1.2 \cdot 10^{+78}:\\
\;\;\;\;\frac{x.im - x.re \cdot \frac{y.im}{y.re}}{y.re}\\
\mathbf{elif}\;y.re \leq -6 \cdot 10^{-119}:\\
\;\;\;\;\frac{y.re \cdot x.im - x.re \cdot y.im}{y.re \cdot y.re + y.im \cdot y.im}\\
\mathbf{elif}\;y.re \leq 1.8 \cdot 10^{-19}:\\
\;\;\;\;\frac{\frac{y.re \cdot x.im}{y.im} - x.re}{y.im}\\
\mathbf{else}:\\
\;\;\;\;\frac{x.im - y.im \cdot \frac{x.re}{y.re}}{y.re}\\
\end{array}
\end{array}
if y.re < -1.1999999999999999e78Initial program 39.9%
Taylor expanded in y.re around inf 73.2%
remove-double-neg73.2%
mul-1-neg73.2%
neg-mul-173.2%
distribute-lft-in73.2%
distribute-lft-in73.2%
mul-1-neg73.2%
unsub-neg73.2%
neg-mul-173.2%
mul-1-neg73.2%
remove-double-neg73.2%
associate-/l*78.7%
Simplified78.7%
if -1.1999999999999999e78 < y.re < -6.0000000000000004e-119Initial program 88.7%
if -6.0000000000000004e-119 < y.re < 1.8000000000000001e-19Initial program 62.3%
Taylor expanded in y.re around 0 79.0%
+-commutative79.0%
mul-1-neg79.0%
unsub-neg79.0%
unpow279.0%
associate-/r*88.6%
+-rgt-identity88.6%
div-sub90.6%
+-rgt-identity90.6%
*-commutative90.6%
Simplified90.6%
if 1.8000000000000001e-19 < y.re Initial program 45.1%
Taylor expanded in y.re around inf 72.5%
remove-double-neg72.5%
mul-1-neg72.5%
neg-mul-172.5%
distribute-lft-in72.5%
distribute-lft-in72.5%
mul-1-neg72.5%
unsub-neg72.5%
neg-mul-172.5%
mul-1-neg72.5%
remove-double-neg72.5%
associate-/l*78.7%
Simplified78.7%
clear-num78.4%
un-div-inv78.4%
Applied egg-rr78.4%
associate-/r/81.2%
Simplified81.2%
Final simplification85.8%
(FPCore (x.re x.im y.re y.im) :precision binary64 (if (or (<= y.im -9.1e+18) (not (<= y.im 4.8e+61))) (/ x.re (- y.im)) (/ (- x.im (* x.re (/ y.im y.re))) y.re)))
double code(double x_46_re, double x_46_im, double y_46_re, double y_46_im) {
double tmp;
if ((y_46_im <= -9.1e+18) || !(y_46_im <= 4.8e+61)) {
tmp = x_46_re / -y_46_im;
} else {
tmp = (x_46_im - (x_46_re * (y_46_im / y_46_re))) / y_46_re;
}
return tmp;
}
real(8) function code(x_46re, x_46im, y_46re, y_46im)
real(8), intent (in) :: x_46re
real(8), intent (in) :: x_46im
real(8), intent (in) :: y_46re
real(8), intent (in) :: y_46im
real(8) :: tmp
if ((y_46im <= (-9.1d+18)) .or. (.not. (y_46im <= 4.8d+61))) then
tmp = x_46re / -y_46im
else
tmp = (x_46im - (x_46re * (y_46im / y_46re))) / y_46re
end if
code = tmp
end function
public static double code(double x_46_re, double x_46_im, double y_46_re, double y_46_im) {
double tmp;
if ((y_46_im <= -9.1e+18) || !(y_46_im <= 4.8e+61)) {
tmp = x_46_re / -y_46_im;
} else {
tmp = (x_46_im - (x_46_re * (y_46_im / y_46_re))) / y_46_re;
}
return tmp;
}
def code(x_46_re, x_46_im, y_46_re, y_46_im): tmp = 0 if (y_46_im <= -9.1e+18) or not (y_46_im <= 4.8e+61): tmp = x_46_re / -y_46_im else: tmp = (x_46_im - (x_46_re * (y_46_im / y_46_re))) / y_46_re return tmp
function code(x_46_re, x_46_im, y_46_re, y_46_im) tmp = 0.0 if ((y_46_im <= -9.1e+18) || !(y_46_im <= 4.8e+61)) tmp = Float64(x_46_re / Float64(-y_46_im)); else tmp = Float64(Float64(x_46_im - Float64(x_46_re * Float64(y_46_im / y_46_re))) / y_46_re); end return tmp end
function tmp_2 = code(x_46_re, x_46_im, y_46_re, y_46_im) tmp = 0.0; if ((y_46_im <= -9.1e+18) || ~((y_46_im <= 4.8e+61))) tmp = x_46_re / -y_46_im; else tmp = (x_46_im - (x_46_re * (y_46_im / y_46_re))) / y_46_re; end tmp_2 = tmp; end
code[x$46$re_, x$46$im_, y$46$re_, y$46$im_] := If[Or[LessEqual[y$46$im, -9.1e+18], N[Not[LessEqual[y$46$im, 4.8e+61]], $MachinePrecision]], N[(x$46$re / (-y$46$im)), $MachinePrecision], N[(N[(x$46$im - N[(x$46$re * N[(y$46$im / y$46$re), $MachinePrecision]), $MachinePrecision]), $MachinePrecision] / y$46$re), $MachinePrecision]]
\begin{array}{l}
\\
\begin{array}{l}
\mathbf{if}\;y.im \leq -9.1 \cdot 10^{+18} \lor \neg \left(y.im \leq 4.8 \cdot 10^{+61}\right):\\
\;\;\;\;\frac{x.re}{-y.im}\\
\mathbf{else}:\\
\;\;\;\;\frac{x.im - x.re \cdot \frac{y.im}{y.re}}{y.re}\\
\end{array}
\end{array}
if y.im < -9.1e18 or 4.7999999999999998e61 < y.im Initial program 35.7%
Taylor expanded in y.re around 0 69.6%
associate-*r/69.6%
neg-mul-169.6%
Simplified69.6%
if -9.1e18 < y.im < 4.7999999999999998e61Initial program 74.9%
Taylor expanded in y.re around inf 75.8%
remove-double-neg75.8%
mul-1-neg75.8%
neg-mul-175.8%
distribute-lft-in75.8%
distribute-lft-in75.8%
mul-1-neg75.8%
unsub-neg75.8%
neg-mul-175.8%
mul-1-neg75.8%
remove-double-neg75.8%
associate-/l*76.5%
Simplified76.5%
Final simplification73.6%
(FPCore (x.re x.im y.re y.im) :precision binary64 (if (or (<= y.im -6.8e+16) (not (<= y.im 1.1e+62))) (/ x.re (- y.im)) (/ (- x.im (* y.im (/ x.re y.re))) y.re)))
double code(double x_46_re, double x_46_im, double y_46_re, double y_46_im) {
double tmp;
if ((y_46_im <= -6.8e+16) || !(y_46_im <= 1.1e+62)) {
tmp = x_46_re / -y_46_im;
} else {
tmp = (x_46_im - (y_46_im * (x_46_re / y_46_re))) / y_46_re;
}
return tmp;
}
real(8) function code(x_46re, x_46im, y_46re, y_46im)
real(8), intent (in) :: x_46re
real(8), intent (in) :: x_46im
real(8), intent (in) :: y_46re
real(8), intent (in) :: y_46im
real(8) :: tmp
if ((y_46im <= (-6.8d+16)) .or. (.not. (y_46im <= 1.1d+62))) then
tmp = x_46re / -y_46im
else
tmp = (x_46im - (y_46im * (x_46re / y_46re))) / y_46re
end if
code = tmp
end function
public static double code(double x_46_re, double x_46_im, double y_46_re, double y_46_im) {
double tmp;
if ((y_46_im <= -6.8e+16) || !(y_46_im <= 1.1e+62)) {
tmp = x_46_re / -y_46_im;
} else {
tmp = (x_46_im - (y_46_im * (x_46_re / y_46_re))) / y_46_re;
}
return tmp;
}
def code(x_46_re, x_46_im, y_46_re, y_46_im): tmp = 0 if (y_46_im <= -6.8e+16) or not (y_46_im <= 1.1e+62): tmp = x_46_re / -y_46_im else: tmp = (x_46_im - (y_46_im * (x_46_re / y_46_re))) / y_46_re return tmp
function code(x_46_re, x_46_im, y_46_re, y_46_im) tmp = 0.0 if ((y_46_im <= -6.8e+16) || !(y_46_im <= 1.1e+62)) tmp = Float64(x_46_re / Float64(-y_46_im)); else tmp = Float64(Float64(x_46_im - Float64(y_46_im * Float64(x_46_re / y_46_re))) / y_46_re); end return tmp end
function tmp_2 = code(x_46_re, x_46_im, y_46_re, y_46_im) tmp = 0.0; if ((y_46_im <= -6.8e+16) || ~((y_46_im <= 1.1e+62))) tmp = x_46_re / -y_46_im; else tmp = (x_46_im - (y_46_im * (x_46_re / y_46_re))) / y_46_re; end tmp_2 = tmp; end
code[x$46$re_, x$46$im_, y$46$re_, y$46$im_] := If[Or[LessEqual[y$46$im, -6.8e+16], N[Not[LessEqual[y$46$im, 1.1e+62]], $MachinePrecision]], N[(x$46$re / (-y$46$im)), $MachinePrecision], N[(N[(x$46$im - N[(y$46$im * N[(x$46$re / y$46$re), $MachinePrecision]), $MachinePrecision]), $MachinePrecision] / y$46$re), $MachinePrecision]]
\begin{array}{l}
\\
\begin{array}{l}
\mathbf{if}\;y.im \leq -6.8 \cdot 10^{+16} \lor \neg \left(y.im \leq 1.1 \cdot 10^{+62}\right):\\
\;\;\;\;\frac{x.re}{-y.im}\\
\mathbf{else}:\\
\;\;\;\;\frac{x.im - y.im \cdot \frac{x.re}{y.re}}{y.re}\\
\end{array}
\end{array}
if y.im < -6.8e16 or 1.10000000000000007e62 < y.im Initial program 35.7%
Taylor expanded in y.re around 0 69.6%
associate-*r/69.6%
neg-mul-169.6%
Simplified69.6%
if -6.8e16 < y.im < 1.10000000000000007e62Initial program 74.9%
Taylor expanded in y.re around inf 75.8%
remove-double-neg75.8%
mul-1-neg75.8%
neg-mul-175.8%
distribute-lft-in75.8%
distribute-lft-in75.8%
mul-1-neg75.8%
unsub-neg75.8%
neg-mul-175.8%
mul-1-neg75.8%
remove-double-neg75.8%
associate-/l*76.5%
Simplified76.5%
clear-num76.3%
un-div-inv76.4%
Applied egg-rr76.4%
associate-/r/76.6%
Simplified76.6%
Final simplification73.6%
(FPCore (x.re x.im y.re y.im)
:precision binary64
(if (<= y.re -2.8e-42)
(/ (- x.im (* x.re (/ y.im y.re))) y.re)
(if (<= y.re 8e-12)
(/ (- (* y.re (/ x.im y.im)) x.re) y.im)
(/ (- x.im (* y.im (/ x.re y.re))) y.re))))
double code(double x_46_re, double x_46_im, double y_46_re, double y_46_im) {
double tmp;
if (y_46_re <= -2.8e-42) {
tmp = (x_46_im - (x_46_re * (y_46_im / y_46_re))) / y_46_re;
} else if (y_46_re <= 8e-12) {
tmp = ((y_46_re * (x_46_im / y_46_im)) - x_46_re) / y_46_im;
} else {
tmp = (x_46_im - (y_46_im * (x_46_re / y_46_re))) / y_46_re;
}
return tmp;
}
real(8) function code(x_46re, x_46im, y_46re, y_46im)
real(8), intent (in) :: x_46re
real(8), intent (in) :: x_46im
real(8), intent (in) :: y_46re
real(8), intent (in) :: y_46im
real(8) :: tmp
if (y_46re <= (-2.8d-42)) then
tmp = (x_46im - (x_46re * (y_46im / y_46re))) / y_46re
else if (y_46re <= 8d-12) then
tmp = ((y_46re * (x_46im / y_46im)) - x_46re) / y_46im
else
tmp = (x_46im - (y_46im * (x_46re / y_46re))) / y_46re
end if
code = tmp
end function
public static double code(double x_46_re, double x_46_im, double y_46_re, double y_46_im) {
double tmp;
if (y_46_re <= -2.8e-42) {
tmp = (x_46_im - (x_46_re * (y_46_im / y_46_re))) / y_46_re;
} else if (y_46_re <= 8e-12) {
tmp = ((y_46_re * (x_46_im / y_46_im)) - x_46_re) / y_46_im;
} else {
tmp = (x_46_im - (y_46_im * (x_46_re / y_46_re))) / y_46_re;
}
return tmp;
}
def code(x_46_re, x_46_im, y_46_re, y_46_im): tmp = 0 if y_46_re <= -2.8e-42: tmp = (x_46_im - (x_46_re * (y_46_im / y_46_re))) / y_46_re elif y_46_re <= 8e-12: tmp = ((y_46_re * (x_46_im / y_46_im)) - x_46_re) / y_46_im else: tmp = (x_46_im - (y_46_im * (x_46_re / y_46_re))) / y_46_re return tmp
function code(x_46_re, x_46_im, y_46_re, y_46_im) tmp = 0.0 if (y_46_re <= -2.8e-42) tmp = Float64(Float64(x_46_im - Float64(x_46_re * Float64(y_46_im / y_46_re))) / y_46_re); elseif (y_46_re <= 8e-12) tmp = Float64(Float64(Float64(y_46_re * Float64(x_46_im / y_46_im)) - x_46_re) / y_46_im); else tmp = Float64(Float64(x_46_im - Float64(y_46_im * Float64(x_46_re / y_46_re))) / y_46_re); end return tmp end
function tmp_2 = code(x_46_re, x_46_im, y_46_re, y_46_im) tmp = 0.0; if (y_46_re <= -2.8e-42) tmp = (x_46_im - (x_46_re * (y_46_im / y_46_re))) / y_46_re; elseif (y_46_re <= 8e-12) tmp = ((y_46_re * (x_46_im / y_46_im)) - x_46_re) / y_46_im; else tmp = (x_46_im - (y_46_im * (x_46_re / y_46_re))) / y_46_re; end tmp_2 = tmp; end
code[x$46$re_, x$46$im_, y$46$re_, y$46$im_] := If[LessEqual[y$46$re, -2.8e-42], N[(N[(x$46$im - N[(x$46$re * N[(y$46$im / y$46$re), $MachinePrecision]), $MachinePrecision]), $MachinePrecision] / y$46$re), $MachinePrecision], If[LessEqual[y$46$re, 8e-12], N[(N[(N[(y$46$re * N[(x$46$im / y$46$im), $MachinePrecision]), $MachinePrecision] - x$46$re), $MachinePrecision] / y$46$im), $MachinePrecision], N[(N[(x$46$im - N[(y$46$im * N[(x$46$re / y$46$re), $MachinePrecision]), $MachinePrecision]), $MachinePrecision] / y$46$re), $MachinePrecision]]]
\begin{array}{l}
\\
\begin{array}{l}
\mathbf{if}\;y.re \leq -2.8 \cdot 10^{-42}:\\
\;\;\;\;\frac{x.im - x.re \cdot \frac{y.im}{y.re}}{y.re}\\
\mathbf{elif}\;y.re \leq 8 \cdot 10^{-12}:\\
\;\;\;\;\frac{y.re \cdot \frac{x.im}{y.im} - x.re}{y.im}\\
\mathbf{else}:\\
\;\;\;\;\frac{x.im - y.im \cdot \frac{x.re}{y.re}}{y.re}\\
\end{array}
\end{array}
if y.re < -2.79999999999999998e-42Initial program 61.3%
Taylor expanded in y.re around inf 72.0%
remove-double-neg72.0%
mul-1-neg72.0%
neg-mul-172.0%
distribute-lft-in72.0%
distribute-lft-in72.0%
mul-1-neg72.0%
unsub-neg72.0%
neg-mul-172.0%
mul-1-neg72.0%
remove-double-neg72.0%
associate-/l*75.4%
Simplified75.4%
if -2.79999999999999998e-42 < y.re < 7.99999999999999984e-12Initial program 65.2%
Taylor expanded in y.re around 0 77.4%
+-commutative77.4%
mul-1-neg77.4%
unsub-neg77.4%
unpow277.4%
associate-/r*85.8%
div-sub88.4%
*-commutative88.4%
associate-/l*85.9%
Simplified85.9%
if 7.99999999999999984e-12 < y.re Initial program 45.1%
Taylor expanded in y.re around inf 72.5%
remove-double-neg72.5%
mul-1-neg72.5%
neg-mul-172.5%
distribute-lft-in72.5%
distribute-lft-in72.5%
mul-1-neg72.5%
unsub-neg72.5%
neg-mul-172.5%
mul-1-neg72.5%
remove-double-neg72.5%
associate-/l*78.7%
Simplified78.7%
clear-num78.4%
un-div-inv78.4%
Applied egg-rr78.4%
associate-/r/81.2%
Simplified81.2%
Final simplification81.9%
(FPCore (x.re x.im y.re y.im)
:precision binary64
(if (<= y.re -3.4e-43)
(/ (- x.im (* x.re (/ y.im y.re))) y.re)
(if (<= y.re 5.3e-21)
(/ (- (/ (* y.re x.im) y.im) x.re) y.im)
(/ (- x.im (* y.im (/ x.re y.re))) y.re))))
double code(double x_46_re, double x_46_im, double y_46_re, double y_46_im) {
double tmp;
if (y_46_re <= -3.4e-43) {
tmp = (x_46_im - (x_46_re * (y_46_im / y_46_re))) / y_46_re;
} else if (y_46_re <= 5.3e-21) {
tmp = (((y_46_re * x_46_im) / y_46_im) - x_46_re) / y_46_im;
} else {
tmp = (x_46_im - (y_46_im * (x_46_re / y_46_re))) / y_46_re;
}
return tmp;
}
real(8) function code(x_46re, x_46im, y_46re, y_46im)
real(8), intent (in) :: x_46re
real(8), intent (in) :: x_46im
real(8), intent (in) :: y_46re
real(8), intent (in) :: y_46im
real(8) :: tmp
if (y_46re <= (-3.4d-43)) then
tmp = (x_46im - (x_46re * (y_46im / y_46re))) / y_46re
else if (y_46re <= 5.3d-21) then
tmp = (((y_46re * x_46im) / y_46im) - x_46re) / y_46im
else
tmp = (x_46im - (y_46im * (x_46re / y_46re))) / y_46re
end if
code = tmp
end function
public static double code(double x_46_re, double x_46_im, double y_46_re, double y_46_im) {
double tmp;
if (y_46_re <= -3.4e-43) {
tmp = (x_46_im - (x_46_re * (y_46_im / y_46_re))) / y_46_re;
} else if (y_46_re <= 5.3e-21) {
tmp = (((y_46_re * x_46_im) / y_46_im) - x_46_re) / y_46_im;
} else {
tmp = (x_46_im - (y_46_im * (x_46_re / y_46_re))) / y_46_re;
}
return tmp;
}
def code(x_46_re, x_46_im, y_46_re, y_46_im): tmp = 0 if y_46_re <= -3.4e-43: tmp = (x_46_im - (x_46_re * (y_46_im / y_46_re))) / y_46_re elif y_46_re <= 5.3e-21: tmp = (((y_46_re * x_46_im) / y_46_im) - x_46_re) / y_46_im else: tmp = (x_46_im - (y_46_im * (x_46_re / y_46_re))) / y_46_re return tmp
function code(x_46_re, x_46_im, y_46_re, y_46_im) tmp = 0.0 if (y_46_re <= -3.4e-43) tmp = Float64(Float64(x_46_im - Float64(x_46_re * Float64(y_46_im / y_46_re))) / y_46_re); elseif (y_46_re <= 5.3e-21) tmp = Float64(Float64(Float64(Float64(y_46_re * x_46_im) / y_46_im) - x_46_re) / y_46_im); else tmp = Float64(Float64(x_46_im - Float64(y_46_im * Float64(x_46_re / y_46_re))) / y_46_re); end return tmp end
function tmp_2 = code(x_46_re, x_46_im, y_46_re, y_46_im) tmp = 0.0; if (y_46_re <= -3.4e-43) tmp = (x_46_im - (x_46_re * (y_46_im / y_46_re))) / y_46_re; elseif (y_46_re <= 5.3e-21) tmp = (((y_46_re * x_46_im) / y_46_im) - x_46_re) / y_46_im; else tmp = (x_46_im - (y_46_im * (x_46_re / y_46_re))) / y_46_re; end tmp_2 = tmp; end
code[x$46$re_, x$46$im_, y$46$re_, y$46$im_] := If[LessEqual[y$46$re, -3.4e-43], N[(N[(x$46$im - N[(x$46$re * N[(y$46$im / y$46$re), $MachinePrecision]), $MachinePrecision]), $MachinePrecision] / y$46$re), $MachinePrecision], If[LessEqual[y$46$re, 5.3e-21], N[(N[(N[(N[(y$46$re * x$46$im), $MachinePrecision] / y$46$im), $MachinePrecision] - x$46$re), $MachinePrecision] / y$46$im), $MachinePrecision], N[(N[(x$46$im - N[(y$46$im * N[(x$46$re / y$46$re), $MachinePrecision]), $MachinePrecision]), $MachinePrecision] / y$46$re), $MachinePrecision]]]
\begin{array}{l}
\\
\begin{array}{l}
\mathbf{if}\;y.re \leq -3.4 \cdot 10^{-43}:\\
\;\;\;\;\frac{x.im - x.re \cdot \frac{y.im}{y.re}}{y.re}\\
\mathbf{elif}\;y.re \leq 5.3 \cdot 10^{-21}:\\
\;\;\;\;\frac{\frac{y.re \cdot x.im}{y.im} - x.re}{y.im}\\
\mathbf{else}:\\
\;\;\;\;\frac{x.im - y.im \cdot \frac{x.re}{y.re}}{y.re}\\
\end{array}
\end{array}
if y.re < -3.4000000000000001e-43Initial program 61.3%
Taylor expanded in y.re around inf 72.0%
remove-double-neg72.0%
mul-1-neg72.0%
neg-mul-172.0%
distribute-lft-in72.0%
distribute-lft-in72.0%
mul-1-neg72.0%
unsub-neg72.0%
neg-mul-172.0%
mul-1-neg72.0%
remove-double-neg72.0%
associate-/l*75.4%
Simplified75.4%
if -3.4000000000000001e-43 < y.re < 5.2999999999999999e-21Initial program 65.2%
Taylor expanded in y.re around 0 77.4%
+-commutative77.4%
mul-1-neg77.4%
unsub-neg77.4%
unpow277.4%
associate-/r*85.8%
+-rgt-identity85.8%
div-sub88.4%
+-rgt-identity88.4%
*-commutative88.4%
Simplified88.4%
if 5.2999999999999999e-21 < y.re Initial program 45.1%
Taylor expanded in y.re around inf 72.5%
remove-double-neg72.5%
mul-1-neg72.5%
neg-mul-172.5%
distribute-lft-in72.5%
distribute-lft-in72.5%
mul-1-neg72.5%
unsub-neg72.5%
neg-mul-172.5%
mul-1-neg72.5%
remove-double-neg72.5%
associate-/l*78.7%
Simplified78.7%
clear-num78.4%
un-div-inv78.4%
Applied egg-rr78.4%
associate-/r/81.2%
Simplified81.2%
Final simplification83.0%
(FPCore (x.re x.im y.re y.im) :precision binary64 (if (or (<= y.re -1.32e-33) (not (<= y.re 2.3e+21))) (/ x.im y.re) (/ x.re (- y.im))))
double code(double x_46_re, double x_46_im, double y_46_re, double y_46_im) {
double tmp;
if ((y_46_re <= -1.32e-33) || !(y_46_re <= 2.3e+21)) {
tmp = x_46_im / y_46_re;
} else {
tmp = x_46_re / -y_46_im;
}
return tmp;
}
real(8) function code(x_46re, x_46im, y_46re, y_46im)
real(8), intent (in) :: x_46re
real(8), intent (in) :: x_46im
real(8), intent (in) :: y_46re
real(8), intent (in) :: y_46im
real(8) :: tmp
if ((y_46re <= (-1.32d-33)) .or. (.not. (y_46re <= 2.3d+21))) then
tmp = x_46im / y_46re
else
tmp = x_46re / -y_46im
end if
code = tmp
end function
public static double code(double x_46_re, double x_46_im, double y_46_re, double y_46_im) {
double tmp;
if ((y_46_re <= -1.32e-33) || !(y_46_re <= 2.3e+21)) {
tmp = x_46_im / y_46_re;
} else {
tmp = x_46_re / -y_46_im;
}
return tmp;
}
def code(x_46_re, x_46_im, y_46_re, y_46_im): tmp = 0 if (y_46_re <= -1.32e-33) or not (y_46_re <= 2.3e+21): tmp = x_46_im / y_46_re else: tmp = x_46_re / -y_46_im return tmp
function code(x_46_re, x_46_im, y_46_re, y_46_im) tmp = 0.0 if ((y_46_re <= -1.32e-33) || !(y_46_re <= 2.3e+21)) tmp = Float64(x_46_im / y_46_re); else tmp = Float64(x_46_re / Float64(-y_46_im)); end return tmp end
function tmp_2 = code(x_46_re, x_46_im, y_46_re, y_46_im) tmp = 0.0; if ((y_46_re <= -1.32e-33) || ~((y_46_re <= 2.3e+21))) tmp = x_46_im / y_46_re; else tmp = x_46_re / -y_46_im; end tmp_2 = tmp; end
code[x$46$re_, x$46$im_, y$46$re_, y$46$im_] := If[Or[LessEqual[y$46$re, -1.32e-33], N[Not[LessEqual[y$46$re, 2.3e+21]], $MachinePrecision]], N[(x$46$im / y$46$re), $MachinePrecision], N[(x$46$re / (-y$46$im)), $MachinePrecision]]
\begin{array}{l}
\\
\begin{array}{l}
\mathbf{if}\;y.re \leq -1.32 \cdot 10^{-33} \lor \neg \left(y.re \leq 2.3 \cdot 10^{+21}\right):\\
\;\;\;\;\frac{x.im}{y.re}\\
\mathbf{else}:\\
\;\;\;\;\frac{x.re}{-y.im}\\
\end{array}
\end{array}
if y.re < -1.31999999999999993e-33 or 2.3e21 < y.re Initial program 50.6%
Taylor expanded in y.re around inf 69.3%
if -1.31999999999999993e-33 < y.re < 2.3e21Initial program 66.0%
Taylor expanded in y.re around 0 62.3%
associate-*r/62.3%
neg-mul-162.3%
Simplified62.3%
Final simplification65.8%
(FPCore (x.re x.im y.re y.im) :precision binary64 (if (<= y.im 7.5e+113) (/ x.im y.re) (/ x.re y.im)))
double code(double x_46_re, double x_46_im, double y_46_re, double y_46_im) {
double tmp;
if (y_46_im <= 7.5e+113) {
tmp = x_46_im / y_46_re;
} else {
tmp = x_46_re / y_46_im;
}
return tmp;
}
real(8) function code(x_46re, x_46im, y_46re, y_46im)
real(8), intent (in) :: x_46re
real(8), intent (in) :: x_46im
real(8), intent (in) :: y_46re
real(8), intent (in) :: y_46im
real(8) :: tmp
if (y_46im <= 7.5d+113) then
tmp = x_46im / y_46re
else
tmp = x_46re / y_46im
end if
code = tmp
end function
public static double code(double x_46_re, double x_46_im, double y_46_re, double y_46_im) {
double tmp;
if (y_46_im <= 7.5e+113) {
tmp = x_46_im / y_46_re;
} else {
tmp = x_46_re / y_46_im;
}
return tmp;
}
def code(x_46_re, x_46_im, y_46_re, y_46_im): tmp = 0 if y_46_im <= 7.5e+113: tmp = x_46_im / y_46_re else: tmp = x_46_re / y_46_im return tmp
function code(x_46_re, x_46_im, y_46_re, y_46_im) tmp = 0.0 if (y_46_im <= 7.5e+113) tmp = Float64(x_46_im / y_46_re); else tmp = Float64(x_46_re / y_46_im); end return tmp end
function tmp_2 = code(x_46_re, x_46_im, y_46_re, y_46_im) tmp = 0.0; if (y_46_im <= 7.5e+113) tmp = x_46_im / y_46_re; else tmp = x_46_re / y_46_im; end tmp_2 = tmp; end
code[x$46$re_, x$46$im_, y$46$re_, y$46$im_] := If[LessEqual[y$46$im, 7.5e+113], N[(x$46$im / y$46$re), $MachinePrecision], N[(x$46$re / y$46$im), $MachinePrecision]]
\begin{array}{l}
\\
\begin{array}{l}
\mathbf{if}\;y.im \leq 7.5 \cdot 10^{+113}:\\
\;\;\;\;\frac{x.im}{y.re}\\
\mathbf{else}:\\
\;\;\;\;\frac{x.re}{y.im}\\
\end{array}
\end{array}
if y.im < 7.5000000000000001e113Initial program 63.0%
Taylor expanded in y.re around inf 48.6%
if 7.5000000000000001e113 < y.im Initial program 30.1%
Taylor expanded in x.im around 0 30.3%
*-commutative30.3%
associate-/l*36.9%
associate-*r*36.9%
*-commutative36.9%
associate-*r/36.9%
mul-1-neg36.9%
rem-square-sqrt36.9%
+-commutative36.9%
unpow236.9%
unpow236.9%
hypot-undefine36.9%
+-commutative36.9%
unpow236.9%
unpow236.9%
hypot-undefine36.9%
unpow236.9%
Simplified36.9%
unpow236.9%
hypot-undefine36.9%
hypot-undefine36.9%
add-sqr-sqrt36.9%
+-commutative36.9%
sqr-neg36.9%
neg-mul-136.9%
associate-*l*36.9%
metadata-eval36.9%
add-sqr-sqrt0.0%
sqrt-unprod23.3%
sqr-neg23.3%
sqrt-prod23.3%
add-sqr-sqrt23.3%
cancel-sign-sub-inv23.3%
*-un-lft-identity23.3%
difference-of-squares31.6%
Applied egg-rr31.6%
Taylor expanded in y.im around inf 31.0%
Final simplification46.1%
(FPCore (x.re x.im y.re y.im) :precision binary64 (/ x.im y.re))
double code(double x_46_re, double x_46_im, double y_46_re, double y_46_im) {
return x_46_im / y_46_re;
}
real(8) function code(x_46re, x_46im, y_46re, y_46im)
real(8), intent (in) :: x_46re
real(8), intent (in) :: x_46im
real(8), intent (in) :: y_46re
real(8), intent (in) :: y_46im
code = x_46im / y_46re
end function
public static double code(double x_46_re, double x_46_im, double y_46_re, double y_46_im) {
return x_46_im / y_46_re;
}
def code(x_46_re, x_46_im, y_46_re, y_46_im): return x_46_im / y_46_re
function code(x_46_re, x_46_im, y_46_re, y_46_im) return Float64(x_46_im / y_46_re) end
function tmp = code(x_46_re, x_46_im, y_46_re, y_46_im) tmp = x_46_im / y_46_re; end
code[x$46$re_, x$46$im_, y$46$re_, y$46$im_] := N[(x$46$im / y$46$re), $MachinePrecision]
\begin{array}{l}
\\
\frac{x.im}{y.re}
\end{array}
Initial program 58.2%
Taylor expanded in y.re around inf 43.9%
Final simplification43.9%
herbie shell --seed 2024071
(FPCore (x.re x.im y.re y.im)
:name "_divideComplex, imaginary part"
:precision binary64
(/ (- (* x.im y.re) (* x.re y.im)) (+ (* y.re y.re) (* y.im y.im))))