Average Error: 37.4 → 0.8
Time: 6.1s
Precision: binary64
\[\sin \left(x + \varepsilon\right) - \sin x\]
\[\sin x \cdot \left(\cos \varepsilon - 1\right) + \left(\sqrt[3]{\cos x} \cdot \sqrt[3]{\cos x}\right) \cdot \left(\sqrt[3]{\cos x} \cdot \sin \varepsilon\right)\]
\sin \left(x + \varepsilon\right) - \sin x
\sin x \cdot \left(\cos \varepsilon - 1\right) + \left(\sqrt[3]{\cos x} \cdot \sqrt[3]{\cos x}\right) \cdot \left(\sqrt[3]{\cos x} \cdot \sin \varepsilon\right)
double code(double x, double eps) {
	return ((double) (((double) sin(((double) (x + eps)))) - ((double) sin(x))));
}
double code(double x, double eps) {
	return ((double) (((double) (((double) sin(x)) * ((double) (((double) cos(eps)) - 1.0)))) + ((double) (((double) (((double) cbrt(((double) cos(x)))) * ((double) cbrt(((double) cos(x)))))) * ((double) (((double) cbrt(((double) cos(x)))) * ((double) sin(eps))))))));
}

Error

Bits error versus x

Bits error versus eps

Try it out

Your Program's Arguments

Results

Enter valid numbers for all inputs

Target

Original37.4
Target15.4
Herbie0.8
\[2 \cdot \left(\cos \left(x + \frac{\varepsilon}{2}\right) \cdot \sin \left(\frac{\varepsilon}{2}\right)\right)\]

Derivation

  1. Initial program 37.4

    \[\sin \left(x + \varepsilon\right) - \sin x\]
  2. Using strategy rm
  3. Applied sin-sum21.9

    \[\leadsto \color{blue}{\left(\sin x \cdot \cos \varepsilon + \cos x \cdot \sin \varepsilon\right)} - \sin x\]
  4. Taylor expanded around inf 21.9

    \[\leadsto \color{blue}{\left(\sin \varepsilon \cdot \cos x + \sin x \cdot \cos \varepsilon\right) - \sin x}\]
  5. Simplified0.4

    \[\leadsto \color{blue}{\sin x \cdot \left(\cos \varepsilon - 1\right) + \cos x \cdot \sin \varepsilon}\]
  6. Using strategy rm
  7. Applied add-cube-cbrt0.8

    \[\leadsto \sin x \cdot \left(\cos \varepsilon - 1\right) + \color{blue}{\left(\left(\sqrt[3]{\cos x} \cdot \sqrt[3]{\cos x}\right) \cdot \sqrt[3]{\cos x}\right)} \cdot \sin \varepsilon\]
  8. Applied associate-*l*0.8

    \[\leadsto \sin x \cdot \left(\cos \varepsilon - 1\right) + \color{blue}{\left(\sqrt[3]{\cos x} \cdot \sqrt[3]{\cos x}\right) \cdot \left(\sqrt[3]{\cos x} \cdot \sin \varepsilon\right)}\]
  9. Final simplification0.8

    \[\leadsto \sin x \cdot \left(\cos \varepsilon - 1\right) + \left(\sqrt[3]{\cos x} \cdot \sqrt[3]{\cos x}\right) \cdot \left(\sqrt[3]{\cos x} \cdot \sin \varepsilon\right)\]

Reproduce

herbie shell --seed 2020168 
(FPCore (x eps)
  :name "2sin (example 3.3)"
  :precision binary64

  :herbie-target
  (* 2.0 (* (cos (+ x (/ eps 2.0))) (sin (/ eps 2.0))))

  (- (sin (+ x eps)) (sin x)))