\left(1 + t \cdot 2 \cdot 10^{-16}\right) \cdot \left(1 + t \cdot 2 \cdot 10^{-16}\right) + \left(-1 - 2 \cdot \left(t \cdot 2 \cdot 10^{-16}\right)\right)t \cdot \left(t \cdot 3.9999999999999997 \cdot 10^{-32}\right)double f(double t) {
double r102053 = 1.0;
double r102054 = t;
double r102055 = 2e-16;
double r102056 = r102054 * r102055;
double r102057 = r102053 + r102056;
double r102058 = r102057 * r102057;
double r102059 = -1.0;
double r102060 = 2.0;
double r102061 = r102060 * r102056;
double r102062 = r102059 - r102061;
double r102063 = r102058 + r102062;
return r102063;
}
double f(double t) {
double r102064 = t;
double r102065 = 3.9999999999999997e-32;
double r102066 = r102064 * r102065;
double r102067 = r102064 * r102066;
return r102067;
}




Bits error versus t
Results
| Original | 61.8 |
|---|---|
| Target | 50.6 |
| Herbie | 0.3 |
Initial program 61.8
Simplified57.6
Taylor expanded around 0 0.3
rmApplied sqr-pow0.3
Applied associate-*r*0.3
Simplified0.3
Final simplification0.3
herbie shell --seed 2020060 +o rules:numerics
(FPCore (t)
:name "fma_test1"
:precision binary64
:pre (<= 0.9 t 1.1)
:herbie-target
(fma (+ 1 (* t 2e-16)) (+ 1 (* t 2e-16)) (- -1 (* 2 (* t 2e-16))))
(+ (* (+ 1 (* t 2e-16)) (+ 1 (* t 2e-16))) (- -1 (* 2 (* t 2e-16)))))