\begin{array}{l}
\mathbf{if}\;b \geq 0:\\
\;\;\;\;\frac{\left(-b\right) - \sqrt{b \cdot b - \left(4 \cdot a\right) \cdot c}}{2 \cdot a}\\
\mathbf{else}:\\
\;\;\;\;\frac{2 \cdot c}{\left(-b\right) + \sqrt{b \cdot b - \left(4 \cdot a\right) \cdot c}}\\
\end{array}
\begin{array}{l}
t_0 := -0.5 \cdot \frac{b + b}{a}\\
t_1 := \sqrt{b \cdot b - \left(4 \cdot a\right) \cdot c}\\
t_2 := \begin{array}{l}
\mathbf{if}\;b \geq 0:\\
\;\;\;\;\frac{\left(-b\right) - t_1}{a \cdot 2}\\
\mathbf{else}:\\
\;\;\;\;\frac{c \cdot 2}{t_1 - b}\\
\end{array}\\
\mathbf{if}\;t_2 \leq -\infty:\\
\;\;\;\;\begin{array}{l}
\mathbf{if}\;b \geq 0:\\
\;\;\;\;t_0\\
\mathbf{else}:\\
\;\;\;\;\frac{-b}{a}\\
\end{array}\\
\mathbf{else}:\\
\;\;\;\;\begin{array}{l}
t_3 := \sqrt{\mathsf{fma}\left(a, c \cdot -4, b \cdot b\right)}\\
t_4 := -0.5 \cdot \frac{b + t_3}{a}\\
t_5 := \begin{array}{l}
\mathbf{if}\;b \geq 0:\\
\;\;\;\;t_4\\
\mathbf{else}:\\
\;\;\;\;\frac{c \cdot 2}{t_3 - b}\\
\end{array}\\
\mathbf{if}\;t_2 \leq -6.42580675180413 \cdot 10^{-234}:\\
\;\;\;\;t_5\\
\mathbf{elif}\;t_2 \leq 0:\\
\;\;\;\;\begin{array}{l}
\mathbf{if}\;b \geq 0:\\
\;\;\;\;t_4\\
\mathbf{else}:\\
\;\;\;\;\frac{c \cdot 2}{\left(-b\right) - b}\\
\end{array}\\
\mathbf{elif}\;t_2 \leq 1.4747492949816465 \cdot 10^{+292}:\\
\;\;\;\;t_5\\
\mathbf{elif}\;b \geq 0:\\
\;\;\;\;t_0\\
\mathbf{else}:\\
\;\;\;\;\frac{c \cdot 2}{b \cdot -2}\\
\end{array}\\
\end{array}
(FPCore (a b c) :precision binary64 (if (>= b 0.0) (/ (- (- b) (sqrt (- (* b b) (* (* 4.0 a) c)))) (* 2.0 a)) (/ (* 2.0 c) (+ (- b) (sqrt (- (* b b) (* (* 4.0 a) c)))))))
(FPCore (a b c)
:precision binary64
(let* ((t_0 (* -0.5 (/ (+ b b) a)))
(t_1 (sqrt (- (* b b) (* (* 4.0 a) c))))
(t_2
(if (>= b 0.0) (/ (- (- b) t_1) (* a 2.0)) (/ (* c 2.0) (- t_1 b)))))
(if (<= t_2 (- INFINITY))
(if (>= b 0.0) t_0 (/ (- b) a))
(let* ((t_3 (sqrt (fma a (* c -4.0) (* b b))))
(t_4 (* -0.5 (/ (+ b t_3) a)))
(t_5 (if (>= b 0.0) t_4 (/ (* c 2.0) (- t_3 b)))))
(if (<= t_2 -6.42580675180413e-234)
t_5
(if (<= t_2 0.0)
(if (>= b 0.0) t_4 (/ (* c 2.0) (- (- b) b)))
(if (<= t_2 1.4747492949816465e+292)
t_5
(if (>= b 0.0) t_0 (/ (* c 2.0) (* b -2.0))))))))))double code(double a, double b, double c) {
double tmp;
if (b >= 0.0) {
tmp = (-b - sqrt((b * b) - ((4.0 * a) * c))) / (2.0 * a);
} else {
tmp = (2.0 * c) / (-b + sqrt((b * b) - ((4.0 * a) * c)));
}
return tmp;
}
double code(double a, double b, double c) {
double t_0 = -0.5 * ((b + b) / a);
double t_1 = sqrt((b * b) - ((4.0 * a) * c));
double tmp;
if (b >= 0.0) {
tmp = (-b - t_1) / (a * 2.0);
} else {
tmp = (c * 2.0) / (t_1 - b);
}
double t_2 = tmp;
double tmp_2;
if (t_2 <= -((double) INFINITY)) {
double tmp_3;
if (b >= 0.0) {
tmp_3 = t_0;
} else {
tmp_3 = -b / a;
}
tmp_2 = tmp_3;
} else {
double t_3 = sqrt(fma(a, (c * -4.0), (b * b)));
double t_4 = -0.5 * ((b + t_3) / a);
double tmp_4;
if (b >= 0.0) {
tmp_4 = t_4;
} else {
tmp_4 = (c * 2.0) / (t_3 - b);
}
double t_5 = tmp_4;
double tmp_5;
if (t_2 <= -6.42580675180413e-234) {
tmp_5 = t_5;
} else if (t_2 <= 0.0) {
double tmp_6;
if (b >= 0.0) {
tmp_6 = t_4;
} else {
tmp_6 = (c * 2.0) / (-b - b);
}
tmp_5 = tmp_6;
} else if (t_2 <= 1.4747492949816465e+292) {
tmp_5 = t_5;
} else if (b >= 0.0) {
tmp_5 = t_0;
} else {
tmp_5 = (c * 2.0) / (b * -2.0);
}
tmp_2 = tmp_5;
}
return tmp_2;
}



Bits error versus a



Bits error versus b



Bits error versus c
if (if (>=.f64 b 0) (/.f64 (-.f64 (neg.f64 b) (sqrt.f64 (-.f64 (*.f64 b b) (*.f64 (*.f64 4 a) c)))) (*.f64 2 a)) (/.f64 (*.f64 2 c) (+.f64 (neg.f64 b) (sqrt.f64 (-.f64 (*.f64 b b) (*.f64 (*.f64 4 a) c)))))) < -inf.0Initial program 64.0
Simplified64.0
Taylor expanded in a around 0 16.8
Taylor expanded in c around 0 16.8
Simplified16.8
if -inf.0 < (if (>=.f64 b 0) (/.f64 (-.f64 (neg.f64 b) (sqrt.f64 (-.f64 (*.f64 b b) (*.f64 (*.f64 4 a) c)))) (*.f64 2 a)) (/.f64 (*.f64 2 c) (+.f64 (neg.f64 b) (sqrt.f64 (-.f64 (*.f64 b b) (*.f64 (*.f64 4 a) c)))))) < -6.42580675180413052e-234 or 0.0 < (if (>=.f64 b 0) (/.f64 (-.f64 (neg.f64 b) (sqrt.f64 (-.f64 (*.f64 b b) (*.f64 (*.f64 4 a) c)))) (*.f64 2 a)) (/.f64 (*.f64 2 c) (+.f64 (neg.f64 b) (sqrt.f64 (-.f64 (*.f64 b b) (*.f64 (*.f64 4 a) c)))))) < 1.4747492949816465e292Initial program 2.5
Simplified2.5
if -6.42580675180413052e-234 < (if (>=.f64 b 0) (/.f64 (-.f64 (neg.f64 b) (sqrt.f64 (-.f64 (*.f64 b b) (*.f64 (*.f64 4 a) c)))) (*.f64 2 a)) (/.f64 (*.f64 2 c) (+.f64 (neg.f64 b) (sqrt.f64 (-.f64 (*.f64 b b) (*.f64 (*.f64 4 a) c)))))) < 0.0Initial program 35.4
Simplified35.3
Taylor expanded in b around -inf 10.9
if 1.4747492949816465e292 < (if (>=.f64 b 0) (/.f64 (-.f64 (neg.f64 b) (sqrt.f64 (-.f64 (*.f64 b b) (*.f64 (*.f64 4 a) c)))) (*.f64 2 a)) (/.f64 (*.f64 2 c) (+.f64 (neg.f64 b) (sqrt.f64 (-.f64 (*.f64 b b) (*.f64 (*.f64 4 a) c)))))) Initial program 61.9
Simplified61.5
Taylor expanded in a around 0 18.7
Taylor expanded in b around -inf 12.8
Simplified12.8
Applied *-commutative_binary6412.8
Final simplification6.5
herbie shell --seed 2021280
(FPCore (a b c)
:name "jeff quadratic root 1"
:precision binary64
(if (>= b 0.0) (/ (- (- b) (sqrt (- (* b b) (* (* 4.0 a) c)))) (* 2.0 a)) (/ (* 2.0 c) (+ (- b) (sqrt (- (* b b) (* (* 4.0 a) c)))))))