Average Error: 0.0 → 0.0
Time: 1.6s
Precision: binary64
\[\frac{a - \left(\left(\left(b + c\right) + d\right) + e\right)}{\ell}\]
\[\frac{a - \left(\left(\left(b + c\right) + d\right) + e\right)}{\ell}\]
\frac{a - \left(\left(\left(b + c\right) + d\right) + e\right)}{\ell}
\frac{a - \left(\left(\left(b + c\right) + d\right) + e\right)}{\ell}
double code(double a, double b, double c, double d, double e, double l) {
	return ((double) (((double) (a - ((double) (((double) (((double) (b + c)) + d)) + e)))) / l));
}
double code(double a, double b, double c, double d, double e, double l) {
	return ((double) (((double) (a - ((double) (((double) (((double) (b + c)) + d)) + e)))) / l));
}

Error

Bits error versus a

Bits error versus b

Bits error versus c

Bits error versus d

Bits error versus e

Bits error versus l

Try it out

Your Program's Arguments

Results

Enter valid numbers for all inputs

Derivation

  1. Initial program 0.0

    \[\frac{a - \left(\left(\left(b + c\right) + d\right) + e\right)}{\ell}\]
  2. Final simplification0.0

    \[\leadsto \frac{a - \left(\left(\left(b + c\right) + d\right) + e\right)}{\ell}\]

Reproduce

herbie shell --seed 2020153 
(FPCore (a b c d e l)
  :name "(/ (- a (+ (+ (+ b c) d) e)) l)"
  :precision binary64
  (/ (- a (+ (+ (+ b c) d) e)) l))