(FPCore (a1 a2 b1 b2) :precision binary64 (/ (* a1 a2) (* b1 b2)))
(FPCore (a1 a2 b1 b2)
:precision binary64
(let* ((t_0 (/ (* a1 a2) (* b1 b2))))
(if (<= t_0 (- INFINITY))
(pow (* (/ b1 a1) (/ b2 a2)) -1.0)
(if (<= t_0 -5e-300)
t_0
(if (<= t_0 0.0)
(/ (/ a1 b1) (/ b2 a2))
(if (<= t_0 5e+295) t_0 (/ (/ a2 b2) (/ b1 a1))))))))double code(double a1, double a2, double b1, double b2) {
return (a1 * a2) / (b1 * b2);
}
double code(double a1, double a2, double b1, double b2) {
double t_0 = (a1 * a2) / (b1 * b2);
double tmp;
if (t_0 <= -((double) INFINITY)) {
tmp = pow(((b1 / a1) * (b2 / a2)), -1.0);
} else if (t_0 <= -5e-300) {
tmp = t_0;
} else if (t_0 <= 0.0) {
tmp = (a1 / b1) / (b2 / a2);
} else if (t_0 <= 5e+295) {
tmp = t_0;
} else {
tmp = (a2 / b2) / (b1 / a1);
}
return tmp;
}
public static double code(double a1, double a2, double b1, double b2) {
return (a1 * a2) / (b1 * b2);
}
public static double code(double a1, double a2, double b1, double b2) {
double t_0 = (a1 * a2) / (b1 * b2);
double tmp;
if (t_0 <= -Double.POSITIVE_INFINITY) {
tmp = Math.pow(((b1 / a1) * (b2 / a2)), -1.0);
} else if (t_0 <= -5e-300) {
tmp = t_0;
} else if (t_0 <= 0.0) {
tmp = (a1 / b1) / (b2 / a2);
} else if (t_0 <= 5e+295) {
tmp = t_0;
} else {
tmp = (a2 / b2) / (b1 / a1);
}
return tmp;
}
def code(a1, a2, b1, b2): return (a1 * a2) / (b1 * b2)
def code(a1, a2, b1, b2): t_0 = (a1 * a2) / (b1 * b2) tmp = 0 if t_0 <= -math.inf: tmp = math.pow(((b1 / a1) * (b2 / a2)), -1.0) elif t_0 <= -5e-300: tmp = t_0 elif t_0 <= 0.0: tmp = (a1 / b1) / (b2 / a2) elif t_0 <= 5e+295: tmp = t_0 else: tmp = (a2 / b2) / (b1 / a1) return tmp
function code(a1, a2, b1, b2) return Float64(Float64(a1 * a2) / Float64(b1 * b2)) end
function code(a1, a2, b1, b2) t_0 = Float64(Float64(a1 * a2) / Float64(b1 * b2)) tmp = 0.0 if (t_0 <= Float64(-Inf)) tmp = Float64(Float64(b1 / a1) * Float64(b2 / a2)) ^ -1.0; elseif (t_0 <= -5e-300) tmp = t_0; elseif (t_0 <= 0.0) tmp = Float64(Float64(a1 / b1) / Float64(b2 / a2)); elseif (t_0 <= 5e+295) tmp = t_0; else tmp = Float64(Float64(a2 / b2) / Float64(b1 / a1)); end return tmp end
function tmp = code(a1, a2, b1, b2) tmp = (a1 * a2) / (b1 * b2); end
function tmp_2 = code(a1, a2, b1, b2) t_0 = (a1 * a2) / (b1 * b2); tmp = 0.0; if (t_0 <= -Inf) tmp = ((b1 / a1) * (b2 / a2)) ^ -1.0; elseif (t_0 <= -5e-300) tmp = t_0; elseif (t_0 <= 0.0) tmp = (a1 / b1) / (b2 / a2); elseif (t_0 <= 5e+295) tmp = t_0; else tmp = (a2 / b2) / (b1 / a1); end tmp_2 = tmp; end
code[a1_, a2_, b1_, b2_] := N[(N[(a1 * a2), $MachinePrecision] / N[(b1 * b2), $MachinePrecision]), $MachinePrecision]
code[a1_, a2_, b1_, b2_] := Block[{t$95$0 = N[(N[(a1 * a2), $MachinePrecision] / N[(b1 * b2), $MachinePrecision]), $MachinePrecision]}, If[LessEqual[t$95$0, (-Infinity)], N[Power[N[(N[(b1 / a1), $MachinePrecision] * N[(b2 / a2), $MachinePrecision]), $MachinePrecision], -1.0], $MachinePrecision], If[LessEqual[t$95$0, -5e-300], t$95$0, If[LessEqual[t$95$0, 0.0], N[(N[(a1 / b1), $MachinePrecision] / N[(b2 / a2), $MachinePrecision]), $MachinePrecision], If[LessEqual[t$95$0, 5e+295], t$95$0, N[(N[(a2 / b2), $MachinePrecision] / N[(b1 / a1), $MachinePrecision]), $MachinePrecision]]]]]]
\frac{a1 \cdot a2}{b1 \cdot b2}
\begin{array}{l}
t_0 := \frac{a1 \cdot a2}{b1 \cdot b2}\\
\mathbf{if}\;t_0 \leq -\infty:\\
\;\;\;\;{\left(\frac{b1}{a1} \cdot \frac{b2}{a2}\right)}^{-1}\\
\mathbf{elif}\;t_0 \leq -5 \cdot 10^{-300}:\\
\;\;\;\;t_0\\
\mathbf{elif}\;t_0 \leq 0:\\
\;\;\;\;\frac{\frac{a1}{b1}}{\frac{b2}{a2}}\\
\mathbf{elif}\;t_0 \leq 5 \cdot 10^{+295}:\\
\;\;\;\;t_0\\
\mathbf{else}:\\
\;\;\;\;\frac{\frac{a2}{b2}}{\frac{b1}{a1}}\\
\end{array}
Results
| Original | 11.1 |
|---|---|
| Target | 11.5 |
| Herbie | 2.1 |
if (/.f64 (*.f64 a1 a2) (*.f64 b1 b2)) < -inf.0Initial program 64.0
Applied egg-rr10.5
if -inf.0 < (/.f64 (*.f64 a1 a2) (*.f64 b1 b2)) < -4.99999999999999996e-300 or 0.0 < (/.f64 (*.f64 a1 a2) (*.f64 b1 b2)) < 4.99999999999999991e295Initial program 0.8
Applied egg-rr14.8
Taylor expanded in a2 around 0 0.8
if -4.99999999999999996e-300 < (/.f64 (*.f64 a1 a2) (*.f64 b1 b2)) < 0.0Initial program 13.0
Applied egg-rr3.2
Applied egg-rr2.6
if 4.99999999999999991e295 < (/.f64 (*.f64 a1 a2) (*.f64 b1 b2)) Initial program 60.2
Applied egg-rr15.9
Applied egg-rr5.7
Final simplification2.1
herbie shell --seed 2022185
(FPCore (a1 a2 b1 b2)
:name "Quotient of products"
:precision binary64
:herbie-target
(* (/ a1 b1) (/ a2 b2))
(/ (* a1 a2) (* b1 b2)))