\frac{x - lo}{hi - lo}
\left(1 + \frac{hi}{lo} \cdot \log \left(e^{1 + \frac{hi}{lo}}\right)\right) - \left(\frac{x}{lo} + \frac{x}{lo} \cdot \left(\frac{hi}{lo} \cdot \frac{hi}{lo}\right)\right)
(FPCore (lo hi x) :precision binary64 (/ (- x lo) (- hi lo)))
(FPCore (lo hi x) :precision binary64 (- (+ 1.0 (* (/ hi lo) (log (exp (+ 1.0 (/ hi lo)))))) (+ (/ x lo) (* (/ x lo) (* (/ hi lo) (/ hi lo))))))
double code(double lo, double hi, double x) {
return (x - lo) / (hi - lo);
}
double code(double lo, double hi, double x) {
return (1.0 + ((hi / lo) * log(exp(1.0 + (hi / lo))))) - ((x / lo) + ((x / lo) * ((hi / lo) * (hi / lo))));
}



Bits error versus lo



Bits error versus hi



Bits error versus x
Results
Initial program 62.0
Taylor expanded in hi around 0 64.0
Simplified51.9
Taylor expanded in hi around inf 51.9
Applied add-log-exp_binary6451.9
Applied add-log-exp_binary6451.9
Applied sum-log_binary6451.9
Simplified51.9
Applied +-commutative_binary6451.9
Final simplification51.9
herbie shell --seed 2021329
(FPCore (lo hi x)
:name "(/ (- x lo) (- hi lo))"
:precision binary64
:pre (and (< lo -1e+308) (> hi 1e+308))
(/ (- x lo) (- hi lo)))