\left(\left(3 + \frac{2}{r \cdot r}\right) - \frac{\left(0.125 \cdot \left(3 - 2 \cdot v\right)\right) \cdot \left(\left(\left(w \cdot w\right) \cdot r\right) \cdot r\right)}{1 - v}\right) - 4.5\left(\frac{2}{r \cdot r} + -1.5\right) - \left(0.375 + v \cdot -0.25\right) \cdot \left(\left(\frac{r \cdot w}{\sqrt[3]{1 - v} \cdot \sqrt[3]{1 - v}} \cdot \frac{1}{\sqrt[3]{1 - v}}\right) \cdot \frac{r}{\frac{1}{w}}\right)(FPCore (v w r) :precision binary64 (- (- (+ 3.0 (/ 2.0 (* r r))) (/ (* (* 0.125 (- 3.0 (* 2.0 v))) (* (* (* w w) r) r)) (- 1.0 v))) 4.5))
(FPCore (v w r)
:precision binary64
(-
(+ (/ 2.0 (* r r)) -1.5)
(*
(+ 0.375 (* v -0.25))
(*
(*
(/ (* r w) (* (cbrt (- 1.0 v)) (cbrt (- 1.0 v))))
(/ 1.0 (cbrt (- 1.0 v))))
(/ r (/ 1.0 w))))))double code(double v, double w, double r) {
return ((3.0 + (2.0 / (r * r))) - (((0.125 * (3.0 - (2.0 * v))) * (((w * w) * r) * r)) / (1.0 - v))) - 4.5;
}
double code(double v, double w, double r) {
return ((2.0 / (r * r)) + -1.5) - ((0.375 + (v * -0.25)) * ((((r * w) / (cbrt(1.0 - v) * cbrt(1.0 - v))) * (1.0 / cbrt(1.0 - v))) * (r / (1.0 / w))));
}



Bits error versus v



Bits error versus w



Bits error versus r
Results
Initial program 12.4
Simplified8.3
rmApplied associate-*r*_binary643.5
Simplified3.5
rmApplied add-cube-cbrt_binary643.6
Applied times-frac_binary642.6
Applied *-un-lft-identity_binary642.6
Applied times-frac_binary640.8
Simplified0.8
rmApplied div-inv_binary640.8
Applied *-un-lft-identity_binary640.8
Applied times-frac_binary640.5
Applied associate-*r*_binary640.5
Final simplification0.5
herbie shell --seed 2021139
(FPCore (v w r)
:name "Rosa's TurbineBenchmark"
:precision binary64
(- (- (+ 3.0 (/ 2.0 (* r r))) (/ (* (* 0.125 (- 3.0 (* 2.0 v))) (* (* (* w w) r) r)) (- 1.0 v))) 4.5))