\frac{e^{\frac{-\left|x\right|}{s}}}{\left(s \cdot \left(1 + e^{\frac{-\left|x\right|}{s}}\right)\right) \cdot \left(1 + e^{\frac{-\left|x\right|}{s}}\right)}\frac{1}{s \cdot \left(e^{\frac{\left|x\right|}{s}} + \left(2 + e^{-\frac{\left|x\right|}{s}}\right)\right)}(FPCore (x s) :precision binary32 (/ (exp (/ (- (fabs x)) s)) (* (* s (+ 1.0 (exp (/ (- (fabs x)) s)))) (+ 1.0 (exp (/ (- (fabs x)) s))))))
(FPCore (x s) :precision binary32 (/ 1.0 (* s (+ (exp (/ (fabs x) s)) (+ 2.0 (exp (- (/ (fabs x) s))))))))
float code(float x, float s) {
return expf(-fabsf(x) / s) / ((s * (1.0f + expf(-fabsf(x) / s))) * (1.0f + expf(-fabsf(x) / s)));
}
float code(float x, float s) {
return 1.0f / (s * (expf(fabsf(x) / s) + (2.0f + expf(-(fabsf(x) / s)))));
}



Bits error versus x



Bits error versus s
Results
Initial program 0.1
rmApplied add-log-exp_binary320.2
Applied add-log-exp_binary320.3
Applied sum-log_binary320.1
Simplified0.1
rmApplied associate-/r*_binary320.1
Simplified0.2
Taylor expanded around 0 0.2
Simplified0.1
Final simplification0.1
herbie shell --seed 2021174
(FPCore (x s)
:name "Logistic"
:precision binary32
:pre (<= 0.0 s 1.0651631)
(/ (exp (/ (- (fabs x)) s)) (* (* s (+ 1.0 (exp (/ (- (fabs x)) s)))) (+ 1.0 (exp (/ (- (fabs x)) s))))))