Average Error: 2.0 → 2.0
Time: 5.1s
Precision: 64
\[\left(0.5\right) \cdot \left(\sqrt{\left(\left(2.0\right) \cdot \left(\frac{\left(\sqrt{\left(\frac{\left(re \cdot re\right)}{\left(im \cdot im\right)}\right)}\right)}{re}\right)\right)}\right)\]
\[0.5 \cdot \sqrt{2.0 \cdot \left(\sqrt{re \cdot re + im \cdot im} + re\right)}\]
\left(0.5\right) \cdot \left(\sqrt{\left(\left(2.0\right) \cdot \left(\frac{\left(\sqrt{\left(\frac{\left(re \cdot re\right)}{\left(im \cdot im\right)}\right)}\right)}{re}\right)\right)}\right)
0.5 \cdot \sqrt{2.0 \cdot \left(\sqrt{re \cdot re + im \cdot im} + re\right)}
double f(double re, double im) {
        double r11286 = 0.5;
        double r11287 = /* ERROR: no posit support in C */;
        double r11288 = 2.0;
        double r11289 = /* ERROR: no posit support in C */;
        double r11290 = re;
        double r11291 = r11290 * r11290;
        double r11292 = im;
        double r11293 = r11292 * r11292;
        double r11294 = r11291 + r11293;
        double r11295 = sqrt(r11294);
        double r11296 = r11295 + r11290;
        double r11297 = r11289 * r11296;
        double r11298 = sqrt(r11297);
        double r11299 = r11287 * r11298;
        return r11299;
}

double f(double re, double im) {
        double r11300 = 0.5;
        double r11301 = 2.0;
        double r11302 = re;
        double r11303 = r11302 * r11302;
        double r11304 = im;
        double r11305 = r11304 * r11304;
        double r11306 = r11303 + r11305;
        double r11307 = sqrt(r11306);
        double r11308 = r11307 + r11302;
        double r11309 = r11301 * r11308;
        double r11310 = sqrt(r11309);
        double r11311 = r11300 * r11310;
        return r11311;
}

Error

Bits error versus re

Bits error versus im

Derivation

  1. Initial program 2.0

    \[\left(0.5\right) \cdot \left(\sqrt{\left(\left(2.0\right) \cdot \left(\frac{\left(\sqrt{\left(\frac{\left(re \cdot re\right)}{\left(im \cdot im\right)}\right)}\right)}{re}\right)\right)}\right)\]
  2. Final simplification2.0

    \[\leadsto 0.5 \cdot \sqrt{2.0 \cdot \left(\sqrt{re \cdot re + im \cdot im} + re\right)}\]

Reproduce

herbie shell --seed 2019133 
(FPCore (re im)
  :name "math.sqrt on complex, real part"
  (*.p16 (real->posit16 0.5) (sqrt.p16 (*.p16 (real->posit16 2.0) (+.p16 (sqrt.p16 (+.p16 (*.p16 re re) (*.p16 im im))) re)))))