Average Error: 5.7 → 0.1
Time: 9.0s
Precision: binary64
\[\]
\[\]
double code(double x, double y, double z, double t) {
	return ((double) (((double) (((double) (((double) (((double) sqrt(((double) (x + 1.0)))) - ((double) sqrt(x)))) + ((double) (((double) sqrt(((double) (y + 1.0)))) - ((double) sqrt(y)))))) + ((double) (((double) sqrt(((double) (z + 1.0)))) - ((double) sqrt(z)))))) + ((double) (((double) sqrt(((double) (t + 1.0)))) - ((double) sqrt(t))))));
}
double code(double x, double y, double z, double t) {
	return ((double) (((double) (((double) (((double) (1.0 / ((double) (((double) sqrt(((double) (1.0 + x)))) + ((double) sqrt(x)))))) + ((double) (1.0 / ((double) (((double) sqrt(((double) (1.0 + y)))) + ((double) sqrt(y)))))))) + ((double) (1.0 / ((double) (((double) sqrt(((double) (1.0 + z)))) + ((double) sqrt(z)))))))) + ((double) (1.0 / ((double) (((double) sqrt(((double) (1.0 + t)))) + ((double) sqrt(t))))))));
}

Error

Bits error versus x

Bits error versus y

Bits error versus z

Bits error versus t

Try it out

Your Program's Arguments

Results

Enter valid numbers for all inputs

Target

Original5.7
Target1.7
Herbie0.1
\[\]

Derivation

  1. Initial program 5.7

    \[\]
  2. Using strategy rm
  3. Applied flip--5.6

    \[\leadsto \]
  4. Simplified4.3

    \[\leadsto \]
  5. Using strategy rm
  6. Applied flip--4.2

    \[\leadsto \]
  7. Simplified3.1

    \[\leadsto \]
  8. Simplified3.1

    \[\leadsto \]
  9. Using strategy rm
  10. Applied flip--3.0

    \[\leadsto \]
  11. Simplified1.7

    \[\leadsto \]
  12. Simplified1.7

    \[\leadsto \]
  13. Using strategy rm
  14. Applied flip--1.7

    \[\leadsto \]
  15. Simplified0.1

    \[\leadsto \]
  16. Final simplification0.1

    \[\leadsto \]

Reproduce

herbie shell --seed 2020180 
(FPCore (x y z t)
  :name "Main:z from "
  :precision binary64

  :herbie-target
  (+ (+ (+ (/ 1.0 (+ (sqrt (+ x 1.0)) (sqrt x))) (/ 1.0 (+ (sqrt (+ y 1.0)) (sqrt y)))) (/ 1.0 (+ (sqrt (+ z 1.0)) (sqrt z)))) (- (sqrt (+ t 1.0)) (sqrt t)))

  (+ (+ (+ (- (sqrt (+ x 1.0)) (sqrt x)) (- (sqrt (+ y 1.0)) (sqrt y))) (- (sqrt (+ z 1.0)) (sqrt z))) (- (sqrt (+ t 1.0)) (sqrt t))))