\cos \left(x + \varepsilon\right) - \cos x
\begin{array}{l}
\mathbf{if}\;\varepsilon \leq -0.0030418061005483:\\
\;\;\;\;\cos x \cdot \cos \varepsilon - \left(\cos x + \sin x \cdot \sin \varepsilon\right)\\
\mathbf{elif}\;\varepsilon \leq 0.003293292867343906:\\
\;\;\;\;\sin x \cdot \left(0.16666666666666666 \cdot {\varepsilon}^{3} - \varepsilon\right) + \cos x \cdot \left(0.041666666666666664 \cdot {\varepsilon}^{4} - 0.5 \cdot \left(\varepsilon \cdot \varepsilon\right)\right)\\
\mathbf{else}:\\
\;\;\;\;\left(\cos x \cdot \cos \varepsilon - \sin x \cdot \sin \varepsilon\right) - \cos x\\
\end{array}(FPCore (x eps) :precision binary64 (- (cos (+ x eps)) (cos x)))
(FPCore (x eps)
:precision binary64
(if (<= eps -0.0030418061005483)
(- (* (cos x) (cos eps)) (+ (cos x) (* (sin x) (sin eps))))
(if (<= eps 0.003293292867343906)
(+
(* (sin x) (- (* 0.16666666666666666 (pow eps 3.0)) eps))
(*
(cos x)
(- (* 0.041666666666666664 (pow eps 4.0)) (* 0.5 (* eps eps)))))
(- (- (* (cos x) (cos eps)) (* (sin x) (sin eps))) (cos x)))))double code(double x, double eps) {
return cos(x + eps) - cos(x);
}
double code(double x, double eps) {
double tmp;
if (eps <= -0.0030418061005483) {
tmp = (cos(x) * cos(eps)) - (cos(x) + (sin(x) * sin(eps)));
} else if (eps <= 0.003293292867343906) {
tmp = (sin(x) * ((0.16666666666666666 * pow(eps, 3.0)) - eps)) + (cos(x) * ((0.041666666666666664 * pow(eps, 4.0)) - (0.5 * (eps * eps))));
} else {
tmp = ((cos(x) * cos(eps)) - (sin(x) * sin(eps))) - cos(x);
}
return tmp;
}



Bits error versus x



Bits error versus eps
Results
if eps < -0.0030418061005483Initial program 30.8
rmApplied cos-sum_binary64_2120.8
Applied associate--l-_binary64_160.8
Simplified0.8
if -0.0030418061005483 < eps < 0.00329329286734390608Initial program 49.4
Taylor expanded around 0 0.2
Simplified0.2
if 0.00329329286734390608 < eps Initial program 30.7
rmApplied cos-sum_binary64_2120.8
Final simplification0.5
herbie shell --seed 2020344
(FPCore (x eps)
:name "2cos (problem 3.3.5)"
:precision binary64
(- (cos (+ x eps)) (cos x)))