\frac{1}{x} - \frac{1}{\tan x}\mathsf{fma}\left(0.0222222222222222231, {x}^{3}, \mathsf{fma}\left(0.00211640211640211654, {x}^{5}, 0.333333333333333315 \cdot x\right)\right)double f(double x) {
double r143600 = 1.0;
double r143601 = x;
double r143602 = r143600 / r143601;
double r143603 = tan(r143601);
double r143604 = r143600 / r143603;
double r143605 = r143602 - r143604;
return r143605;
}
double f(double x) {
double r143606 = 0.022222222222222223;
double r143607 = x;
double r143608 = 3.0;
double r143609 = pow(r143607, r143608);
double r143610 = 0.0021164021164021165;
double r143611 = 5.0;
double r143612 = pow(r143607, r143611);
double r143613 = 0.3333333333333333;
double r143614 = r143613 * r143607;
double r143615 = fma(r143610, r143612, r143614);
double r143616 = fma(r143606, r143609, r143615);
return r143616;
}




Bits error versus x
| Original | 59.9 |
|---|---|
| Target | 0.1 |
| Herbie | 0.3 |
Initial program 59.9
Taylor expanded around 0 0.3
Simplified0.3
Final simplification0.3
herbie shell --seed 2020020 +o rules:numerics
(FPCore (x)
:name "invcot (example 3.9)"
:precision binary64
:pre (and (< -0.026 x) (< x 0.026))
:herbie-target
(if (< (fabs x) 0.026) (* (/ x 3) (+ 1 (/ (* x x) 15))) (- (/ 1 x) (/ 1 (tan x))))
(- (/ 1 x) (/ 1 (tan x))))