\frac{\frac{\left(i \cdot \left(\left(\alpha + \beta\right) + i\right)\right) \cdot \left(\beta \cdot \alpha + i \cdot \left(\left(\alpha + \beta\right) + i\right)\right)}{\left(\left(\alpha + \beta\right) + 2 \cdot i\right) \cdot \left(\left(\alpha + \beta\right) + 2 \cdot i\right)}}{\left(\left(\alpha + \beta\right) + 2 \cdot i\right) \cdot \left(\left(\alpha + \beta\right) + 2 \cdot i\right) - 1}\begin{array}{l}
\mathbf{if}\;\alpha \leq 3.084497531162042 \cdot 10^{+187}:\\
\;\;\;\;\frac{\frac{i \cdot \left(i + \left(\alpha + \beta\right)\right)}{\left(\alpha + \beta\right) + i \cdot 2}}{\left(\left(\alpha + \beta\right) + i \cdot 2\right) + 1} \cdot \frac{\sqrt{i \cdot \left(i + \left(\alpha + \beta\right)\right) + \alpha \cdot \beta} \cdot \frac{\sqrt{i \cdot \left(i + \left(\alpha + \beta\right)\right) + \alpha \cdot \beta}}{\left(\alpha + \beta\right) + i \cdot 2}}{\left(\left(\alpha + \beta\right) + i \cdot 2\right) - 1}\\
\mathbf{else}:\\
\;\;\;\;0\\
\end{array}(FPCore (alpha beta i) :precision binary64 (/ (/ (* (* i (+ (+ alpha beta) i)) (+ (* beta alpha) (* i (+ (+ alpha beta) i)))) (* (+ (+ alpha beta) (* 2.0 i)) (+ (+ alpha beta) (* 2.0 i)))) (- (* (+ (+ alpha beta) (* 2.0 i)) (+ (+ alpha beta) (* 2.0 i))) 1.0)))
(FPCore (alpha beta i)
:precision binary64
(if (<= alpha 3.084497531162042e+187)
(*
(/
(/ (* i (+ i (+ alpha beta))) (+ (+ alpha beta) (* i 2.0)))
(+ (+ (+ alpha beta) (* i 2.0)) 1.0))
(/
(*
(sqrt (+ (* i (+ i (+ alpha beta))) (* alpha beta)))
(/
(sqrt (+ (* i (+ i (+ alpha beta))) (* alpha beta)))
(+ (+ alpha beta) (* i 2.0))))
(- (+ (+ alpha beta) (* i 2.0)) 1.0)))
0.0))double code(double alpha, double beta, double i) {
return (((i * ((alpha + beta) + i)) * ((beta * alpha) + (i * ((alpha + beta) + i)))) / (((alpha + beta) + (2.0 * i)) * ((alpha + beta) + (2.0 * i)))) / ((((alpha + beta) + (2.0 * i)) * ((alpha + beta) + (2.0 * i))) - 1.0);
}
double code(double alpha, double beta, double i) {
double tmp;
if (alpha <= 3.084497531162042e+187) {
tmp = (((i * (i + (alpha + beta))) / ((alpha + beta) + (i * 2.0))) / (((alpha + beta) + (i * 2.0)) + 1.0)) * ((sqrt((i * (i + (alpha + beta))) + (alpha * beta)) * (sqrt((i * (i + (alpha + beta))) + (alpha * beta)) / ((alpha + beta) + (i * 2.0)))) / (((alpha + beta) + (i * 2.0)) - 1.0));
} else {
tmp = 0.0;
}
return tmp;
}



Bits error versus alpha



Bits error versus beta



Bits error versus i
Results
if alpha < 3.08449753116204195e187Initial program 53.2
rmApplied difference-of-sqr-1_binary64_243553.2
Applied times-frac_binary64_247138.1
Applied times-frac_binary64_247136.2
Simplified36.2
Simplified36.2
rmApplied *-un-lft-identity_binary64_246536.2
Applied add-sqr-sqrt_binary64_248736.2
Applied times-frac_binary64_247136.2
Simplified36.2
if 3.08449753116204195e187 < alpha Initial program 64.0
Taylor expanded around inf 46.6
Final simplification37.6
herbie shell --seed 2020355
(FPCore (alpha beta i)
:name "Octave 3.8, jcobi/4"
:precision binary64
:pre (and (> alpha -1.0) (> beta -1.0) (> i 1.0))
(/ (/ (* (* i (+ (+ alpha beta) i)) (+ (* beta alpha) (* i (+ (+ alpha beta) i)))) (* (+ (+ alpha beta) (* 2.0 i)) (+ (+ alpha beta) (* 2.0 i)))) (- (* (+ (+ alpha beta) (* 2.0 i)) (+ (+ alpha beta) (* 2.0 i))) 1.0)))