#include <tgmath.h>
#include <gmp.h>
#include <mpfr.h>
#include <stdio.h>
#include <stdbool.h>

char *name = "_divideComplex, imaginary part";

double f_if(float x_re, float x_im, float y_re, float y_im) {
        float r16604 = x_im;
        float r16605 = y_re;
        float r16606 = r16604 * r16605;
        float r16607 = x_re;
        float r16608 = y_im;
        float r16609 = r16607 * r16608;
        float r16610 = r16606 - r16609;
        float r16611 = r16605 * r16605;
        float r16612 = r16608 * r16608;
        float r16613 = r16611 + r16612;
        float r16614 = r16610 / r16613;
        return r16614;
}

double f_id(double x_re, double x_im, double y_re, double y_im) {
        double r16615 = x_im;
        double r16616 = y_re;
        double r16617 = r16615 * r16616;
        double r16618 = x_re;
        double r16619 = y_im;
        double r16620 = r16618 * r16619;
        double r16621 = r16617 - r16620;
        double r16622 = r16616 * r16616;
        double r16623 = r16619 * r16619;
        double r16624 = r16622 + r16623;
        double r16625 = r16621 / r16624;
        return r16625;
}


double f_of(float x_re, float x_im, float y_re, float y_im) {
        float r16626 = y_re;
        float r16627 = -1935340928.0f;
        bool r16628 = r16626 <= r16627;
        float r16629 = x_im;
        float r16630 = r16629 / r16626;
        float r16631 = y_im;
        float r16632 = r16631 / r16626;
        float r16633 = x_re;
        float r16634 = r16633 / r16626;
        float r16635 = r16632 * r16634;
        float r16636 = r16630 - r16635;
        float r16637 = 9.809288589157073e+19f;
        bool r16638 = r16626 <= r16637;
        float r16639 = r16629 * r16626;
        float r16640 = r16626 * r16626;
        float r16641 = r16631 * r16631;
        float r16642 = r16640 + r16641;
        float r16643 = r16639 / r16642;
        float r16644 = r16626 * r16626;
        float r16645 = r16644 + r16641;
        float r16646 = r16645 / r16631;
        float r16647 = r16633 / r16646;
        float r16648 = r16643 - r16647;
        float r16649 = r16638 ? r16648 : r16636;
        float r16650 = r16628 ? r16636 : r16649;
        return r16650;
}

double f_od(double x_re, double x_im, double y_re, double y_im) {
        double r16651 = y_re;
        double r16652 = -1935340928.0;
        bool r16653 = r16651 <= r16652;
        double r16654 = x_im;
        double r16655 = r16654 / r16651;
        double r16656 = y_im;
        double r16657 = r16656 / r16651;
        double r16658 = x_re;
        double r16659 = r16658 / r16651;
        double r16660 = r16657 * r16659;
        double r16661 = r16655 - r16660;
        double r16662 = 9.809288589157073e+19;
        bool r16663 = r16651 <= r16662;
        double r16664 = r16654 * r16651;
        double r16665 = r16651 * r16651;
        double r16666 = r16656 * r16656;
        double r16667 = r16665 + r16666;
        double r16668 = r16664 / r16667;
        double r16669 = r16651 * r16651;
        double r16670 = r16669 + r16666;
        double r16671 = r16670 / r16656;
        double r16672 = r16658 / r16671;
        double r16673 = r16668 - r16672;
        double r16674 = r16663 ? r16673 : r16661;
        double r16675 = r16653 ? r16661 : r16674;
        return r16675;
}

void mpfr_fmod2(mpfr_t r, mpfr_t n, mpfr_t d, mpfr_rnd_t rmd) {
        mpfr_fmod(r, n, d, rmd);
        if (mpfr_cmp_ui(r, 0) < 0) mpfr_add(r, r, d, rmd);
}


static mpfr_t r16676, r16677, r16678, r16679, r16680, r16681, r16682, r16683, r16684, r16685, r16686;

void setup_mpfr_f_im() {
        mpfr_set_default_prec(144);
        mpfr_init(r16676);
        mpfr_init(r16677);
        mpfr_init(r16678);
        mpfr_init(r16679);
        mpfr_init(r16680);
        mpfr_init(r16681);
        mpfr_init(r16682);
        mpfr_init(r16683);
        mpfr_init(r16684);
        mpfr_init(r16685);
        mpfr_init(r16686);
}

double f_im(double x_re, double x_im, double y_re, double y_im) {
        mpfr_set_d(r16676, x_im, MPFR_RNDN);
        mpfr_set_d(r16677, y_re, MPFR_RNDN);
        mpfr_mul(r16678, r16676, r16677, MPFR_RNDN);
        mpfr_set_d(r16679, x_re, MPFR_RNDN);
        mpfr_set_d(r16680, y_im, MPFR_RNDN);
        mpfr_mul(r16681, r16679, r16680, MPFR_RNDN);
        mpfr_sub(r16682, r16678, r16681, MPFR_RNDN);
        mpfr_mul(r16683, r16677, r16677, MPFR_RNDN);
        mpfr_mul(r16684, r16680, r16680, MPFR_RNDN);
        mpfr_add(r16685, r16683, r16684, MPFR_RNDN);
        mpfr_div(r16686, r16682, r16685, MPFR_RNDN);
        return mpfr_get_d(r16686, MPFR_RNDN);
}

static mpfr_t r16687, r16688, r16689, r16690, r16691, r16692, r16693, r16694, r16695, r16696, r16697, r16698, r16699, r16700, r16701, r16702, r16703, r16704, r16705, r16706, r16707, r16708, r16709, r16710, r16711;

void setup_mpfr_f_fm() {
        mpfr_set_default_prec(144);
        mpfr_init(r16687);
        mpfr_init_set_str(r16688, "-1.9353409f+09", 10, MPFR_RNDN);
        mpfr_init(r16689);
        mpfr_init(r16690);
        mpfr_init(r16691);
        mpfr_init(r16692);
        mpfr_init(r16693);
        mpfr_init(r16694);
        mpfr_init(r16695);
        mpfr_init(r16696);
        mpfr_init(r16697);
        mpfr_init_set_str(r16698, "9.809289f+19", 10, MPFR_RNDN);
        mpfr_init(r16699);
        mpfr_init(r16700);
        mpfr_init(r16701);
        mpfr_init(r16702);
        mpfr_init(r16703);
        mpfr_init(r16704);
        mpfr_init(r16705);
        mpfr_init(r16706);
        mpfr_init(r16707);
        mpfr_init(r16708);
        mpfr_init(r16709);
        mpfr_init(r16710);
        mpfr_init(r16711);
}

double f_fm(double x_re, double x_im, double y_re, double y_im) {
        mpfr_set_d(r16687, y_re, MPFR_RNDN);
        ;
        mpfr_set_si(r16689, mpfr_cmp(r16687, r16688) <= 0, MPFR_RNDN);
        mpfr_set_d(r16690, x_im, MPFR_RNDN);
        mpfr_div(r16691, r16690, r16687, MPFR_RNDN);
        mpfr_set_d(r16692, y_im, MPFR_RNDN);
        mpfr_div(r16693, r16692, r16687, MPFR_RNDN);
        mpfr_set_d(r16694, x_re, MPFR_RNDN);
        mpfr_div(r16695, r16694, r16687, MPFR_RNDN);
        mpfr_mul(r16696, r16693, r16695, MPFR_RNDN);
        mpfr_sub(r16697, r16691, r16696, MPFR_RNDN);
        ;
        mpfr_set_si(r16699, mpfr_cmp(r16687, r16698) <= 0, MPFR_RNDN);
        mpfr_mul(r16700, r16690, r16687, MPFR_RNDN);
        mpfr_mul(r16701, r16687, r16687, MPFR_RNDN);
        mpfr_mul(r16702, r16692, r16692, MPFR_RNDN);
        mpfr_add(r16703, r16701, r16702, MPFR_RNDN);
        mpfr_div(r16704, r16700, r16703, MPFR_RNDN);
        mpfr_sqr(r16705, r16687, MPFR_RNDN);
        mpfr_add(r16706, r16705, r16702, MPFR_RNDN);
        mpfr_div(r16707, r16706, r16692, MPFR_RNDN);
        mpfr_div(r16708, r16694, r16707, MPFR_RNDN);
        mpfr_sub(r16709, r16704, r16708, MPFR_RNDN);
        if (mpfr_get_si(r16699, MPFR_RNDN)) { mpfr_set(r16710, r16709, MPFR_RNDN); } else { mpfr_set(r16710, r16697, MPFR_RNDN); };
        if (mpfr_get_si(r16689, MPFR_RNDN)) { mpfr_set(r16711, r16697, MPFR_RNDN); } else { mpfr_set(r16711, r16710, MPFR_RNDN); };
        return mpfr_get_d(r16711, MPFR_RNDN);
}

static mpfr_t r16712, r16713, r16714, r16715, r16716, r16717, r16718, r16719, r16720, r16721, r16722, r16723, r16724, r16725, r16726, r16727, r16728, r16729, r16730, r16731, r16732, r16733, r16734, r16735, r16736;

void setup_mpfr_f_dm() {
        mpfr_set_default_prec(144);
        mpfr_init(r16712);
        mpfr_init_set_str(r16713, "-1.9353409f+09", 10, MPFR_RNDN);
        mpfr_init(r16714);
        mpfr_init(r16715);
        mpfr_init(r16716);
        mpfr_init(r16717);
        mpfr_init(r16718);
        mpfr_init(r16719);
        mpfr_init(r16720);
        mpfr_init(r16721);
        mpfr_init(r16722);
        mpfr_init_set_str(r16723, "9.809289f+19", 10, MPFR_RNDN);
        mpfr_init(r16724);
        mpfr_init(r16725);
        mpfr_init(r16726);
        mpfr_init(r16727);
        mpfr_init(r16728);
        mpfr_init(r16729);
        mpfr_init(r16730);
        mpfr_init(r16731);
        mpfr_init(r16732);
        mpfr_init(r16733);
        mpfr_init(r16734);
        mpfr_init(r16735);
        mpfr_init(r16736);
}

double f_dm(double x_re, double x_im, double y_re, double y_im) {
        mpfr_set_d(r16712, y_re, MPFR_RNDN);
        ;
        mpfr_set_si(r16714, mpfr_cmp(r16712, r16713) <= 0, MPFR_RNDN);
        mpfr_set_d(r16715, x_im, MPFR_RNDN);
        mpfr_div(r16716, r16715, r16712, MPFR_RNDN);
        mpfr_set_d(r16717, y_im, MPFR_RNDN);
        mpfr_div(r16718, r16717, r16712, MPFR_RNDN);
        mpfr_set_d(r16719, x_re, MPFR_RNDN);
        mpfr_div(r16720, r16719, r16712, MPFR_RNDN);
        mpfr_mul(r16721, r16718, r16720, MPFR_RNDN);
        mpfr_sub(r16722, r16716, r16721, MPFR_RNDN);
        ;
        mpfr_set_si(r16724, mpfr_cmp(r16712, r16723) <= 0, MPFR_RNDN);
        mpfr_mul(r16725, r16715, r16712, MPFR_RNDN);
        mpfr_mul(r16726, r16712, r16712, MPFR_RNDN);
        mpfr_mul(r16727, r16717, r16717, MPFR_RNDN);
        mpfr_add(r16728, r16726, r16727, MPFR_RNDN);
        mpfr_div(r16729, r16725, r16728, MPFR_RNDN);
        mpfr_sqr(r16730, r16712, MPFR_RNDN);
        mpfr_add(r16731, r16730, r16727, MPFR_RNDN);
        mpfr_div(r16732, r16731, r16717, MPFR_RNDN);
        mpfr_div(r16733, r16719, r16732, MPFR_RNDN);
        mpfr_sub(r16734, r16729, r16733, MPFR_RNDN);
        if (mpfr_get_si(r16724, MPFR_RNDN)) { mpfr_set(r16735, r16734, MPFR_RNDN); } else { mpfr_set(r16735, r16722, MPFR_RNDN); };
        if (mpfr_get_si(r16714, MPFR_RNDN)) { mpfr_set(r16736, r16722, MPFR_RNDN); } else { mpfr_set(r16736, r16735, MPFR_RNDN); };
        return mpfr_get_d(r16736, MPFR_RNDN);
}

