Average Error: 0.2 → 0.2
Time: 18.7s
Precision: 64
\[\frac{x}{y \cdot 3.0}\]
\[\frac{\frac{x}{3.0}}{y}\]
\frac{x}{y \cdot 3.0}
\frac{\frac{x}{3.0}}{y}
double f(double x, double y) {
        double r36009902 = x;
        double r36009903 = y;
        double r36009904 = 3.0;
        double r36009905 = r36009903 * r36009904;
        double r36009906 = r36009902 / r36009905;
        return r36009906;
}

double f(double x, double y) {
        double r36009907 = x;
        double r36009908 = 3.0;
        double r36009909 = r36009907 / r36009908;
        double r36009910 = y;
        double r36009911 = r36009909 / r36009910;
        return r36009911;
}

Error

Bits error versus x

Bits error versus y

Try it out

Your Program's Arguments

Results

Enter valid numbers for all inputs

Target

Original0.2
Target0.3
Herbie0.2
\[\frac{\frac{x}{y}}{3.0}\]

Derivation

  1. Initial program 0.2

    \[\frac{x}{y \cdot 3.0}\]
  2. Using strategy rm
  3. Applied *-un-lft-identity0.2

    \[\leadsto \frac{\color{blue}{1 \cdot x}}{y \cdot 3.0}\]
  4. Applied times-frac0.3

    \[\leadsto \color{blue}{\frac{1}{y} \cdot \frac{x}{3.0}}\]
  5. Using strategy rm
  6. Applied associate-*l/0.2

    \[\leadsto \color{blue}{\frac{1 \cdot \frac{x}{3.0}}{y}}\]
  7. Simplified0.2

    \[\leadsto \frac{\color{blue}{\frac{x}{3.0}}}{y}\]
  8. Final simplification0.2

    \[\leadsto \frac{\frac{x}{3.0}}{y}\]

Reproduce

herbie shell --seed 2019158 +o rules:numerics
(FPCore (x y)
  :name "Diagrams.Solve.Polynomial:cubForm  from diagrams-solve-0.1, C"

  :herbie-target
  (/ (/ x y) 3.0)

  (/ x (* y 3.0)))