Average Error: 5.7 → 0
Time: 3.5s
Precision: 64
\[e^{\log a + \log b}\]
\[b \cdot a\]
e^{\log a + \log b}
b \cdot a
double f(double a, double b) {
        double r5257316 = a;
        double r5257317 = log(r5257316);
        double r5257318 = b;
        double r5257319 = log(r5257318);
        double r5257320 = r5257317 + r5257319;
        double r5257321 = exp(r5257320);
        return r5257321;
}

double f(double a, double b) {
        double r5257322 = b;
        double r5257323 = a;
        double r5257324 = r5257322 * r5257323;
        return r5257324;
}

Error

Bits error versus a

Bits error versus b

Try it out

Your Program's Arguments

Results

Enter valid numbers for all inputs

Target

Original5.7
Target0
Herbie0
\[a \cdot b\]

Derivation

  1. Initial program 5.7

    \[e^{\log a + \log b}\]
  2. Simplified0

    \[\leadsto \color{blue}{b \cdot a}\]
  3. Final simplification0

    \[\leadsto b \cdot a\]

Reproduce

herbie shell --seed 2019164 
(FPCore (a b)
  :name "Exp of sum of logs"

  :herbie-target
  (* a b)

  (exp (+ (log a) (log b))))