\frac{1}{x} - \frac{1}{\tan x}0.02222222222222222307030925492199457949027 \cdot {x}^{3} + \left(0.002116402116402116544841005563171165704262 \cdot {x}^{5} + 0.3333333333333333148296162562473909929395 \cdot x\right)double f(double x) {
double r167983 = 1.0;
double r167984 = x;
double r167985 = r167983 / r167984;
double r167986 = tan(r167984);
double r167987 = r167983 / r167986;
double r167988 = r167985 - r167987;
return r167988;
}
double f(double x) {
double r167989 = 0.022222222222222223;
double r167990 = x;
double r167991 = 3.0;
double r167992 = pow(r167990, r167991);
double r167993 = r167989 * r167992;
double r167994 = 0.0021164021164021165;
double r167995 = 5.0;
double r167996 = pow(r167990, r167995);
double r167997 = r167994 * r167996;
double r167998 = 0.3333333333333333;
double r167999 = r167998 * r167990;
double r168000 = r167997 + r167999;
double r168001 = r167993 + r168000;
return r168001;
}




Bits error versus x
Results
| Original | 60.0 |
|---|---|
| Target | 0.1 |
| Herbie | 0.3 |
Initial program 60.0
Taylor expanded around 0 0.3
Final simplification0.3
herbie shell --seed 2019347
(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))))