Average Error: 0.4 → 0.0
Time: 13.9s
Precision: 64
\[1 \le a \le 2 \le b \le 4 \le c \le 8 \le d \le 16 \le e \le 32\]
\[\left(\left(\left(e + d\right) + c\right) + b\right) + a\]
\[\log \left(e^{d} \cdot \left(\left(e^{a} \cdot e^{b}\right) \cdot \left(e^{c} \cdot e^{e}\right)\right)\right)\]
\left(\left(\left(e + d\right) + c\right) + b\right) + a
\log \left(e^{d} \cdot \left(\left(e^{a} \cdot e^{b}\right) \cdot \left(e^{c} \cdot e^{e}\right)\right)\right)
double f(double a, double b, double c, double d, double e) {
        double r5741233 = e;
        double r5741234 = d;
        double r5741235 = r5741233 + r5741234;
        double r5741236 = c;
        double r5741237 = r5741235 + r5741236;
        double r5741238 = b;
        double r5741239 = r5741237 + r5741238;
        double r5741240 = a;
        double r5741241 = r5741239 + r5741240;
        return r5741241;
}

double f(double a, double b, double c, double d, double e) {
        double r5741242 = d;
        double r5741243 = exp(r5741242);
        double r5741244 = a;
        double r5741245 = exp(r5741244);
        double r5741246 = b;
        double r5741247 = exp(r5741246);
        double r5741248 = r5741245 * r5741247;
        double r5741249 = c;
        double r5741250 = exp(r5741249);
        double r5741251 = e;
        double r5741252 = exp(r5741251);
        double r5741253 = r5741250 * r5741252;
        double r5741254 = r5741248 * r5741253;
        double r5741255 = r5741243 * r5741254;
        double r5741256 = log(r5741255);
        return r5741256;
}

Error

Bits error versus a

Bits error versus b

Bits error versus c

Bits error versus d

Bits error versus e

Try it out

Your Program's Arguments

Results

Enter valid numbers for all inputs

Target

Original0.4
Target0.2
Herbie0.0
\[\left(d + \left(c + \left(a + b\right)\right)\right) + e\]

Derivation

  1. Initial program 0.4

    \[\left(\left(\left(e + d\right) + c\right) + b\right) + a\]
  2. Using strategy rm
  3. Applied add-log-exp0.4

    \[\leadsto \left(\left(\left(e + d\right) + c\right) + b\right) + \color{blue}{\log \left(e^{a}\right)}\]
  4. Applied add-log-exp0.4

    \[\leadsto \left(\left(\left(e + d\right) + c\right) + \color{blue}{\log \left(e^{b}\right)}\right) + \log \left(e^{a}\right)\]
  5. Applied add-log-exp0.4

    \[\leadsto \left(\left(\left(e + d\right) + \color{blue}{\log \left(e^{c}\right)}\right) + \log \left(e^{b}\right)\right) + \log \left(e^{a}\right)\]
  6. Applied add-log-exp0.4

    \[\leadsto \left(\left(\left(e + \color{blue}{\log \left(e^{d}\right)}\right) + \log \left(e^{c}\right)\right) + \log \left(e^{b}\right)\right) + \log \left(e^{a}\right)\]
  7. Applied add-log-exp0.4

    \[\leadsto \left(\left(\left(\color{blue}{\log \left(e^{e}\right)} + \log \left(e^{d}\right)\right) + \log \left(e^{c}\right)\right) + \log \left(e^{b}\right)\right) + \log \left(e^{a}\right)\]
  8. Applied sum-log0.4

    \[\leadsto \left(\left(\color{blue}{\log \left(e^{e} \cdot e^{d}\right)} + \log \left(e^{c}\right)\right) + \log \left(e^{b}\right)\right) + \log \left(e^{a}\right)\]
  9. Applied sum-log0.3

    \[\leadsto \left(\color{blue}{\log \left(\left(e^{e} \cdot e^{d}\right) \cdot e^{c}\right)} + \log \left(e^{b}\right)\right) + \log \left(e^{a}\right)\]
  10. Applied sum-log0.3

    \[\leadsto \color{blue}{\log \left(\left(\left(e^{e} \cdot e^{d}\right) \cdot e^{c}\right) \cdot e^{b}\right)} + \log \left(e^{a}\right)\]
  11. Applied sum-log0.0

    \[\leadsto \color{blue}{\log \left(\left(\left(\left(e^{e} \cdot e^{d}\right) \cdot e^{c}\right) \cdot e^{b}\right) \cdot e^{a}\right)}\]
  12. Simplified0.3

    \[\leadsto \log \color{blue}{\left(e^{\left(\left(b + a\right) + \left(c + e\right)\right) + d}\right)}\]
  13. Using strategy rm
  14. Applied add-log-exp0.3

    \[\leadsto \log \left(e^{\left(\left(b + a\right) + \left(c + e\right)\right) + \color{blue}{\log \left(e^{d}\right)}}\right)\]
  15. Applied add-log-exp0.3

    \[\leadsto \log \left(e^{\left(\left(b + a\right) + \left(c + \color{blue}{\log \left(e^{e}\right)}\right)\right) + \log \left(e^{d}\right)}\right)\]
  16. Applied add-log-exp0.3

    \[\leadsto \log \left(e^{\left(\left(b + a\right) + \left(\color{blue}{\log \left(e^{c}\right)} + \log \left(e^{e}\right)\right)\right) + \log \left(e^{d}\right)}\right)\]
  17. Applied sum-log0.3

    \[\leadsto \log \left(e^{\left(\left(b + a\right) + \color{blue}{\log \left(e^{c} \cdot e^{e}\right)}\right) + \log \left(e^{d}\right)}\right)\]
  18. Applied add-log-exp0.3

    \[\leadsto \log \left(e^{\left(\left(b + \color{blue}{\log \left(e^{a}\right)}\right) + \log \left(e^{c} \cdot e^{e}\right)\right) + \log \left(e^{d}\right)}\right)\]
  19. Applied add-log-exp0.3

    \[\leadsto \log \left(e^{\left(\left(\color{blue}{\log \left(e^{b}\right)} + \log \left(e^{a}\right)\right) + \log \left(e^{c} \cdot e^{e}\right)\right) + \log \left(e^{d}\right)}\right)\]
  20. Applied sum-log0.3

    \[\leadsto \log \left(e^{\left(\color{blue}{\log \left(e^{b} \cdot e^{a}\right)} + \log \left(e^{c} \cdot e^{e}\right)\right) + \log \left(e^{d}\right)}\right)\]
  21. Applied sum-log0.2

    \[\leadsto \log \left(e^{\color{blue}{\log \left(\left(e^{b} \cdot e^{a}\right) \cdot \left(e^{c} \cdot e^{e}\right)\right)} + \log \left(e^{d}\right)}\right)\]
  22. Applied sum-log0.0

    \[\leadsto \log \left(e^{\color{blue}{\log \left(\left(\left(e^{b} \cdot e^{a}\right) \cdot \left(e^{c} \cdot e^{e}\right)\right) \cdot e^{d}\right)}}\right)\]
  23. Applied rem-exp-log0.0

    \[\leadsto \log \color{blue}{\left(\left(\left(e^{b} \cdot e^{a}\right) \cdot \left(e^{c} \cdot e^{e}\right)\right) \cdot e^{d}\right)}\]
  24. Final simplification0.0

    \[\leadsto \log \left(e^{d} \cdot \left(\left(e^{a} \cdot e^{b}\right) \cdot \left(e^{c} \cdot e^{e}\right)\right)\right)\]

Reproduce

herbie shell --seed 2019158 
(FPCore (a b c d e)
  :name "Expression 1, p15"
  :pre (<= 1 a 2 b 4 c 8 d 16 e 32)

  :herbie-target
  (+ (+ d (+ c (+ a b))) e)

  (+ (+ (+ (+ e d) c) b) a))