\frac{\left(-b\right) + \sqrt{b \cdot b - \left(4 \cdot a\right) \cdot c}}{2 \cdot a}\frac{1}{2} \cdot \frac{\frac{c \cdot 4}{1}}{\left(-b\right) - \sqrt{b \cdot b - \left(4 \cdot a\right) \cdot c}}double f(double a, double b, double c) {
double r36529 = b;
double r36530 = -r36529;
double r36531 = r36529 * r36529;
double r36532 = 4.0;
double r36533 = a;
double r36534 = r36532 * r36533;
double r36535 = c;
double r36536 = r36534 * r36535;
double r36537 = r36531 - r36536;
double r36538 = sqrt(r36537);
double r36539 = r36530 + r36538;
double r36540 = 2.0;
double r36541 = r36540 * r36533;
double r36542 = r36539 / r36541;
return r36542;
}
double f(double a, double b, double c) {
double r36543 = 1.0;
double r36544 = 2.0;
double r36545 = r36543 / r36544;
double r36546 = c;
double r36547 = 4.0;
double r36548 = r36546 * r36547;
double r36549 = r36548 / r36543;
double r36550 = b;
double r36551 = -r36550;
double r36552 = r36550 * r36550;
double r36553 = a;
double r36554 = r36547 * r36553;
double r36555 = r36554 * r36546;
double r36556 = r36552 - r36555;
double r36557 = sqrt(r36556);
double r36558 = r36551 - r36557;
double r36559 = r36549 / r36558;
double r36560 = r36545 * r36559;
return r36560;
}



Bits error versus a



Bits error versus b



Bits error versus c
Results
Initial program 52.9
rmApplied flip-+52.9
Simplified0.4
rmApplied *-un-lft-identity0.4
Applied *-un-lft-identity0.4
Applied times-frac0.4
Applied times-frac0.4
Simplified0.4
Simplified0.4
rmApplied associate-/r*0.2
Simplified0.1
Final simplification0.1
herbie shell --seed 2019346 +o rules:numerics
(FPCore (a b c)
:name "Quadratic roots, wide range"
:precision binary64
:pre (and (< 4.9303800000000003e-32 a 2.02824e+31) (< 4.9303800000000003e-32 b 2.02824e+31) (< 4.9303800000000003e-32 c 2.02824e+31))
(/ (+ (- b) (sqrt (- (* b b) (* (* 4 a) c)))) (* 2 a)))