Average Error: 25.3 → 22.6
Time: 3.7s
Precision: binary64
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\[\]
double code(double a, double b, double c, double d) {
	return ((double) (((double) (((double) (b * c)) - ((double) (a * d)))) / ((double) (((double) (c * c)) + ((double) (d * d))))));
}
double code(double a, double b, double c, double d) {
	return ((double) (((double) (((double) (c * ((double) (b / ((double) sqrt(((double) (((double) (c * c)) + ((double) (d * d)))))))))) - ((double) (d * ((double) (a / ((double) sqrt(((double) (((double) (c * c)) + ((double) (d * d)))))))))))) / ((double) sqrt(((double) (((double) (c * c)) + ((double) (d * d))))))));
}

Error

Bits error versus a

Bits error versus b

Bits error versus c

Bits error versus d

Try it out

Your Program's Arguments

Results

Enter valid numbers for all inputs

Target

Original25.3
Target0.4
Herbie22.6
\[\]

Derivation

  1. Initial program 25.3

    \[\]
  2. Using strategy rm
  3. Applied add-sqr-sqrt25.3

    \[\leadsto \]
  4. Applied associate-/r*25.3

    \[\leadsto \]
  5. Using strategy rm
  6. Applied div-sub25.3

    \[\leadsto \]
  7. Simplified24.2

    \[\leadsto \]
  8. Simplified22.6

    \[\leadsto \]
  9. Final simplification22.6

    \[\leadsto \]

Reproduce

herbie shell --seed 2020192 
(FPCore (a b c d)
  :name "Complex division, imag part"
  :precision binary64

  :herbie-target
  (if (< (fabs d) (fabs c)) (/ (- b (* a (/ d c))) (+ c (* d (/ d c)))) (/ (+ (neg a) (* b (/ c d))) (+ d (* c (/ c d)))))

  (/ (- (* b c) (* a d)) (+ (* c c) (* d d))))