Average Error: 12.7 → 2.7
Time: 1.9s
Precision: 64
\[\frac{x \cdot \left(y - z\right)}{y}\]
\[\begin{array}{l} \mathbf{if}\;x \le 2.4857861731751071 \cdot 10^{-237} \lor \neg \left(x \le 3.88642851771522225 \cdot 10^{-82}\right):\\ \;\;\;\;\frac{x}{\frac{y}{y - z}}\\ \mathbf{else}:\\ \;\;\;\;\left(x \cdot \left(y - z\right)\right) \cdot \frac{1}{y}\\ \end{array}\]
\frac{x \cdot \left(y - z\right)}{y}
\begin{array}{l}
\mathbf{if}\;x \le 2.4857861731751071 \cdot 10^{-237} \lor \neg \left(x \le 3.88642851771522225 \cdot 10^{-82}\right):\\
\;\;\;\;\frac{x}{\frac{y}{y - z}}\\

\mathbf{else}:\\
\;\;\;\;\left(x \cdot \left(y - z\right)\right) \cdot \frac{1}{y}\\

\end{array}
double code(double x, double y, double z) {
	return ((double) (((double) (x * ((double) (y - z)))) / y));
}
double code(double x, double y, double z) {
	double VAR;
	if (((x <= 2.485786173175107e-237) || !(x <= 3.886428517715222e-82))) {
		VAR = ((double) (x / ((double) (y / ((double) (y - z))))));
	} else {
		VAR = ((double) (((double) (x * ((double) (y - z)))) * ((double) (1.0 / y))));
	}
	return VAR;
}

Error

Bits error versus x

Bits error versus y

Bits error versus z

Try it out

Your Program's Arguments

Results

Enter valid numbers for all inputs

Target

Original12.7
Target3.0
Herbie2.7
\[\begin{array}{l} \mathbf{if}\;z \lt -2.060202331921739 \cdot 10^{104}:\\ \;\;\;\;x - \frac{z \cdot x}{y}\\ \mathbf{elif}\;z \lt 1.69397660138285259 \cdot 10^{213}:\\ \;\;\;\;\frac{x}{\frac{y}{y - z}}\\ \mathbf{else}:\\ \;\;\;\;\left(y - z\right) \cdot \frac{x}{y}\\ \end{array}\]

Derivation

  1. Split input into 2 regimes
  2. if x < 2.485786173175107e-237 or 3.886428517715222e-82 < x

    1. Initial program 14.2

      \[\frac{x \cdot \left(y - z\right)}{y}\]
    2. Using strategy rm
    3. Applied associate-/l*2.4

      \[\leadsto \color{blue}{\frac{x}{\frac{y}{y - z}}}\]

    if 2.485786173175107e-237 < x < 3.886428517715222e-82

    1. Initial program 4.4

      \[\frac{x \cdot \left(y - z\right)}{y}\]
    2. Using strategy rm
    3. Applied div-inv4.6

      \[\leadsto \color{blue}{\left(x \cdot \left(y - z\right)\right) \cdot \frac{1}{y}}\]
  3. Recombined 2 regimes into one program.
  4. Final simplification2.7

    \[\leadsto \begin{array}{l} \mathbf{if}\;x \le 2.4857861731751071 \cdot 10^{-237} \lor \neg \left(x \le 3.88642851771522225 \cdot 10^{-82}\right):\\ \;\;\;\;\frac{x}{\frac{y}{y - z}}\\ \mathbf{else}:\\ \;\;\;\;\left(x \cdot \left(y - z\right)\right) \cdot \frac{1}{y}\\ \end{array}\]

Reproduce

herbie shell --seed 2020140 
(FPCore (x y z)
  :name "Diagrams.Backend.Cairo.Internal:setTexture from diagrams-cairo-1.3.0.3"
  :precision binary64

  :herbie-target
  (if (< z -2.060202331921739e+104) (- x (/ (* z x) y)) (if (< z 1.6939766013828526e+213) (/ x (/ y (- y z))) (* (- y z) (/ x y))))

  (/ (* x (- y z)) y))