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

char *name = "Cubic critical";

double f_if(float a, float b, float c, float __attribute__((unused)) d) {
        float r23657 = b;
        float r23658 = -r23657;
        float r23659 = r23657 * r23657;
        float r23660 = 3;
        float r23661 = a;
        float r23662 = r23660 * r23661;
        float r23663 = c;
        float r23664 = r23662 * r23663;
        float r23665 = r23659 - r23664;
        float r23666 = sqrt(r23665);
        float r23667 = r23658 + r23666;
        float r23668 = r23667 / r23662;
        return r23668;
}

double f_id(double a, double b, double c, double __attribute__((unused)) d) {
        double r23669 = b;
        double r23670 = -r23669;
        double r23671 = r23669 * r23669;
        double r23672 = 3;
        double r23673 = a;
        double r23674 = r23672 * r23673;
        double r23675 = c;
        double r23676 = r23674 * r23675;
        double r23677 = r23671 - r23676;
        double r23678 = sqrt(r23677);
        double r23679 = r23670 + r23678;
        double r23680 = r23679 / r23674;
        return r23680;
}


double f_of(float a, float b, float c, float __attribute__((unused)) d) {
        float r23681 = -3/2;
        float r23682 = b;
        float r23683 = r23681 / r23682;
        float r23684 = 3;
        float r23685 = r23683 / r23684;
        float r23686 = -2.499194702845655e-90;
        bool r23687 = r23685 <= r23686;
        float r23688 = a;
        float r23689 = r23688 * r23684;
        float r23690 = c;
        float r23691 = r23689 * r23690;
        float r23692 = -r23682;
        float r23693 = r23682 * r23682;
        float r23694 = r23693 - r23691;
        float r23695 = sqrt(r23694);
        float r23696 = r23692 - r23695;
        float r23697 = r23691 / r23696;
        float r23698 = r23697 / r23689;
        float r23699 = 1.5183084991300792e-296;
        bool r23700 = r23685 <= r23699;
        float r23701 = r23690 / r23682;
        float r23702 = r23681 / r23684;
        float r23703 = r23701 * r23702;
        float r23704 = 5140777790.445132;
        bool r23705 = r23685 <= r23704;
        float r23706 = 3/2;
        float r23707 = r23706 * r23688;
        float r23708 = r23682 / r23690;
        float r23709 = r23707 / r23708;
        float r23710 = 2;
        float r23711 = r23710 * r23682;
        float r23712 = r23709 - r23711;
        float r23713 = r23712 / r23689;
        float r23714 = r23695 + r23692;
        float r23715 = 1;
        float r23716 = r23715 / r23689;
        float r23717 = r23714 * r23716;
        float r23718 = r23705 ? r23713 : r23717;
        float r23719 = r23700 ? r23703 : r23718;
        float r23720 = r23687 ? r23698 : r23719;
        return r23720;
}

double f_od(double a, double b, double c, double __attribute__((unused)) d) {
        double r23721 = -3/2;
        double r23722 = b;
        double r23723 = r23721 / r23722;
        double r23724 = 3;
        double r23725 = r23723 / r23724;
        double r23726 = -2.499194702845655e-90;
        bool r23727 = r23725 <= r23726;
        double r23728 = a;
        double r23729 = r23728 * r23724;
        double r23730 = c;
        double r23731 = r23729 * r23730;
        double r23732 = -r23722;
        double r23733 = r23722 * r23722;
        double r23734 = r23733 - r23731;
        double r23735 = sqrt(r23734);
        double r23736 = r23732 - r23735;
        double r23737 = r23731 / r23736;
        double r23738 = r23737 / r23729;
        double r23739 = 1.5183084991300792e-296;
        bool r23740 = r23725 <= r23739;
        double r23741 = r23730 / r23722;
        double r23742 = r23721 / r23724;
        double r23743 = r23741 * r23742;
        double r23744 = 5140777790.445132;
        bool r23745 = r23725 <= r23744;
        double r23746 = 3/2;
        double r23747 = r23746 * r23728;
        double r23748 = r23722 / r23730;
        double r23749 = r23747 / r23748;
        double r23750 = 2;
        double r23751 = r23750 * r23722;
        double r23752 = r23749 - r23751;
        double r23753 = r23752 / r23729;
        double r23754 = r23735 + r23732;
        double r23755 = 1;
        double r23756 = r23755 / r23729;
        double r23757 = r23754 * r23756;
        double r23758 = r23745 ? r23753 : r23757;
        double r23759 = r23740 ? r23743 : r23758;
        double r23760 = r23727 ? r23738 : r23759;
        return r23760;
}

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 r23761, r23762, r23763, r23764, r23765, r23766, r23767, r23768, r23769, r23770, r23771, r23772;

void setup_mpfr_f_im() {
        mpfr_set_default_prec(3408);
        mpfr_init(r23761);
        mpfr_init(r23762);
        mpfr_init(r23763);
        mpfr_init_set_str(r23764, "3", 10, MPFR_RNDN);
        mpfr_init(r23765);
        mpfr_init(r23766);
        mpfr_init(r23767);
        mpfr_init(r23768);
        mpfr_init(r23769);
        mpfr_init(r23770);
        mpfr_init(r23771);
        mpfr_init(r23772);
}

double f_im(double a, double b, double c, double __attribute__((unused)) d) {
        mpfr_set_d(r23761, b, MPFR_RNDN);
        mpfr_neg(r23762, r23761, MPFR_RNDN);
        mpfr_mul(r23763, r23761, r23761, MPFR_RNDN);
        ;
        mpfr_set_d(r23765, a, MPFR_RNDN);
        mpfr_mul(r23766, r23764, r23765, MPFR_RNDN);
        mpfr_set_d(r23767, c, MPFR_RNDN);
        mpfr_mul(r23768, r23766, r23767, MPFR_RNDN);
        mpfr_sub(r23769, r23763, r23768, MPFR_RNDN);
        mpfr_sqrt(r23770, r23769, MPFR_RNDN);
        mpfr_add(r23771, r23762, r23770, MPFR_RNDN);
        mpfr_div(r23772, r23771, r23766, MPFR_RNDN);
        return mpfr_get_d(r23772, MPFR_RNDN);
}

static mpfr_t r23773, r23774, r23775, r23776, r23777, r23778, r23779, r23780, r23781, r23782, r23783, r23784, r23785, r23786, r23787, r23788, r23789, r23790, r23791, r23792, r23793, r23794, r23795, r23796, r23797, r23798, r23799, r23800, r23801, r23802, r23803, r23804, r23805, r23806, r23807, r23808, r23809, r23810, r23811, r23812;

void setup_mpfr_f_fm() {
        mpfr_set_default_prec(3408);
        mpfr_init_set_str(r23773, "-3/2", 10, MPFR_RNDN);
        mpfr_init(r23774);
        mpfr_init(r23775);
        mpfr_init_set_str(r23776, "3", 10, MPFR_RNDN);
        mpfr_init(r23777);
        mpfr_init_set_str(r23778, "-2.499194702845655e-90", 10, MPFR_RNDN);
        mpfr_init(r23779);
        mpfr_init(r23780);
        mpfr_init(r23781);
        mpfr_init(r23782);
        mpfr_init(r23783);
        mpfr_init(r23784);
        mpfr_init(r23785);
        mpfr_init(r23786);
        mpfr_init(r23787);
        mpfr_init(r23788);
        mpfr_init(r23789);
        mpfr_init(r23790);
        mpfr_init_set_str(r23791, "1.5183084991300792e-296", 10, MPFR_RNDN);
        mpfr_init(r23792);
        mpfr_init(r23793);
        mpfr_init(r23794);
        mpfr_init(r23795);
        mpfr_init_set_str(r23796, "5140777790.445132", 10, MPFR_RNDN);
        mpfr_init(r23797);
        mpfr_init_set_str(r23798, "3/2", 10, MPFR_RNDN);
        mpfr_init(r23799);
        mpfr_init(r23800);
        mpfr_init(r23801);
        mpfr_init_set_str(r23802, "2", 10, MPFR_RNDN);
        mpfr_init(r23803);
        mpfr_init(r23804);
        mpfr_init(r23805);
        mpfr_init(r23806);
        mpfr_init_set_str(r23807, "1", 10, MPFR_RNDN);
        mpfr_init(r23808);
        mpfr_init(r23809);
        mpfr_init(r23810);
        mpfr_init(r23811);
        mpfr_init(r23812);
}

double f_fm(double a, double b, double c, double __attribute__((unused)) d) {
        ;
        mpfr_set_d(r23774, b, MPFR_RNDN);
        mpfr_div(r23775, r23773, r23774, MPFR_RNDN);
        ;
        mpfr_div(r23777, r23775, r23776, MPFR_RNDN);
        ;
        mpfr_set_si(r23779, mpfr_cmp(r23777, r23778) <= 0, MPFR_RNDN);
        mpfr_set_d(r23780, a, MPFR_RNDN);
        mpfr_mul(r23781, r23780, r23776, MPFR_RNDN);
        mpfr_set_d(r23782, c, MPFR_RNDN);
        mpfr_mul(r23783, r23781, r23782, MPFR_RNDN);
        mpfr_neg(r23784, r23774, MPFR_RNDN);
        mpfr_mul(r23785, r23774, r23774, MPFR_RNDN);
        mpfr_sub(r23786, r23785, r23783, MPFR_RNDN);
        mpfr_sqrt(r23787, r23786, MPFR_RNDN);
        mpfr_sub(r23788, r23784, r23787, MPFR_RNDN);
        mpfr_div(r23789, r23783, r23788, MPFR_RNDN);
        mpfr_div(r23790, r23789, r23781, MPFR_RNDN);
        ;
        mpfr_set_si(r23792, mpfr_cmp(r23777, r23791) <= 0, MPFR_RNDN);
        mpfr_div(r23793, r23782, r23774, MPFR_RNDN);
        mpfr_div(r23794, r23773, r23776, MPFR_RNDN);
        mpfr_mul(r23795, r23793, r23794, MPFR_RNDN);
        ;
        mpfr_set_si(r23797, mpfr_cmp(r23777, r23796) <= 0, MPFR_RNDN);
        ;
        mpfr_mul(r23799, r23798, r23780, MPFR_RNDN);
        mpfr_div(r23800, r23774, r23782, MPFR_RNDN);
        mpfr_div(r23801, r23799, r23800, MPFR_RNDN);
        ;
        mpfr_mul(r23803, r23802, r23774, MPFR_RNDN);
        mpfr_sub(r23804, r23801, r23803, MPFR_RNDN);
        mpfr_div(r23805, r23804, r23781, MPFR_RNDN);
        mpfr_add(r23806, r23787, r23784, MPFR_RNDN);
        ;
        mpfr_div(r23808, r23807, r23781, MPFR_RNDN);
        mpfr_mul(r23809, r23806, r23808, MPFR_RNDN);
        if (mpfr_get_si(r23797, MPFR_RNDN)) { mpfr_set(r23810, r23805, MPFR_RNDN); } else { mpfr_set(r23810, r23809, MPFR_RNDN); };
        if (mpfr_get_si(r23792, MPFR_RNDN)) { mpfr_set(r23811, r23795, MPFR_RNDN); } else { mpfr_set(r23811, r23810, MPFR_RNDN); };
        if (mpfr_get_si(r23779, MPFR_RNDN)) { mpfr_set(r23812, r23790, MPFR_RNDN); } else { mpfr_set(r23812, r23811, MPFR_RNDN); };
        return mpfr_get_d(r23812, MPFR_RNDN);
}

static mpfr_t r23813, r23814, r23815, r23816, r23817, r23818, r23819, r23820, r23821, r23822, r23823, r23824, r23825, r23826, r23827, r23828, r23829, r23830, r23831, r23832, r23833, r23834, r23835, r23836, r23837, r23838, r23839, r23840, r23841, r23842, r23843, r23844, r23845, r23846, r23847, r23848, r23849, r23850, r23851, r23852;

void setup_mpfr_f_dm() {
        mpfr_set_default_prec(3408);
        mpfr_init_set_str(r23813, "-3/2", 10, MPFR_RNDN);
        mpfr_init(r23814);
        mpfr_init(r23815);
        mpfr_init_set_str(r23816, "3", 10, MPFR_RNDN);
        mpfr_init(r23817);
        mpfr_init_set_str(r23818, "-2.499194702845655e-90", 10, MPFR_RNDN);
        mpfr_init(r23819);
        mpfr_init(r23820);
        mpfr_init(r23821);
        mpfr_init(r23822);
        mpfr_init(r23823);
        mpfr_init(r23824);
        mpfr_init(r23825);
        mpfr_init(r23826);
        mpfr_init(r23827);
        mpfr_init(r23828);
        mpfr_init(r23829);
        mpfr_init(r23830);
        mpfr_init_set_str(r23831, "1.5183084991300792e-296", 10, MPFR_RNDN);
        mpfr_init(r23832);
        mpfr_init(r23833);
        mpfr_init(r23834);
        mpfr_init(r23835);
        mpfr_init_set_str(r23836, "5140777790.445132", 10, MPFR_RNDN);
        mpfr_init(r23837);
        mpfr_init_set_str(r23838, "3/2", 10, MPFR_RNDN);
        mpfr_init(r23839);
        mpfr_init(r23840);
        mpfr_init(r23841);
        mpfr_init_set_str(r23842, "2", 10, MPFR_RNDN);
        mpfr_init(r23843);
        mpfr_init(r23844);
        mpfr_init(r23845);
        mpfr_init(r23846);
        mpfr_init_set_str(r23847, "1", 10, MPFR_RNDN);
        mpfr_init(r23848);
        mpfr_init(r23849);
        mpfr_init(r23850);
        mpfr_init(r23851);
        mpfr_init(r23852);
}

double f_dm(double a, double b, double c, double __attribute__((unused)) d) {
        ;
        mpfr_set_d(r23814, b, MPFR_RNDN);
        mpfr_div(r23815, r23813, r23814, MPFR_RNDN);
        ;
        mpfr_div(r23817, r23815, r23816, MPFR_RNDN);
        ;
        mpfr_set_si(r23819, mpfr_cmp(r23817, r23818) <= 0, MPFR_RNDN);
        mpfr_set_d(r23820, a, MPFR_RNDN);
        mpfr_mul(r23821, r23820, r23816, MPFR_RNDN);
        mpfr_set_d(r23822, c, MPFR_RNDN);
        mpfr_mul(r23823, r23821, r23822, MPFR_RNDN);
        mpfr_neg(r23824, r23814, MPFR_RNDN);
        mpfr_mul(r23825, r23814, r23814, MPFR_RNDN);
        mpfr_sub(r23826, r23825, r23823, MPFR_RNDN);
        mpfr_sqrt(r23827, r23826, MPFR_RNDN);
        mpfr_sub(r23828, r23824, r23827, MPFR_RNDN);
        mpfr_div(r23829, r23823, r23828, MPFR_RNDN);
        mpfr_div(r23830, r23829, r23821, MPFR_RNDN);
        ;
        mpfr_set_si(r23832, mpfr_cmp(r23817, r23831) <= 0, MPFR_RNDN);
        mpfr_div(r23833, r23822, r23814, MPFR_RNDN);
        mpfr_div(r23834, r23813, r23816, MPFR_RNDN);
        mpfr_mul(r23835, r23833, r23834, MPFR_RNDN);
        ;
        mpfr_set_si(r23837, mpfr_cmp(r23817, r23836) <= 0, MPFR_RNDN);
        ;
        mpfr_mul(r23839, r23838, r23820, MPFR_RNDN);
        mpfr_div(r23840, r23814, r23822, MPFR_RNDN);
        mpfr_div(r23841, r23839, r23840, MPFR_RNDN);
        ;
        mpfr_mul(r23843, r23842, r23814, MPFR_RNDN);
        mpfr_sub(r23844, r23841, r23843, MPFR_RNDN);
        mpfr_div(r23845, r23844, r23821, MPFR_RNDN);
        mpfr_add(r23846, r23827, r23824, MPFR_RNDN);
        ;
        mpfr_div(r23848, r23847, r23821, MPFR_RNDN);
        mpfr_mul(r23849, r23846, r23848, MPFR_RNDN);
        if (mpfr_get_si(r23837, MPFR_RNDN)) { mpfr_set(r23850, r23845, MPFR_RNDN); } else { mpfr_set(r23850, r23849, MPFR_RNDN); };
        if (mpfr_get_si(r23832, MPFR_RNDN)) { mpfr_set(r23851, r23835, MPFR_RNDN); } else { mpfr_set(r23851, r23850, MPFR_RNDN); };
        if (mpfr_get_si(r23819, MPFR_RNDN)) { mpfr_set(r23852, r23830, MPFR_RNDN); } else { mpfr_set(r23852, r23851, MPFR_RNDN); };
        return mpfr_get_d(r23852, MPFR_RNDN);
}

