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

char *name = "NMSE problem 3.2.1, positive";

double f_if(float a, float b_2F2, float c) {
        float r15934 = b_2F2;
        float r15935 = -r15934;
        float r15936 = r15934 * r15934;
        float r15937 = a;
        float r15938 = c;
        float r15939 = r15937 * r15938;
        float r15940 = r15936 - r15939;
        float r15941 = sqrt(r15940);
        float r15942 = r15935 + r15941;
        float r15943 = r15942 / r15937;
        return r15943;
}

double f_id(double a, double b_2F2, double c) {
        double r15944 = b_2F2;
        double r15945 = -r15944;
        double r15946 = r15944 * r15944;
        double r15947 = a;
        double r15948 = c;
        double r15949 = r15947 * r15948;
        double r15950 = r15946 - r15949;
        double r15951 = sqrt(r15950);
        double r15952 = r15945 + r15951;
        double r15953 = r15952 / r15947;
        return r15953;
}


double f_of(float a, float b_2F2, float c) {
        float r15954 = b_2F2;
        float r15955 = -3.2345120336434788e+106f;
        bool r15956 = r15954 <= r15955;
        float r15957 = -2.0f;
        float r15958 = a;
        float r15959 = r15954 / r15958;
        float r15960 = r15957 * r15959;
        float r15961 = 1.135484290896535e-164f;
        bool r15962 = r15954 <= r15961;
        float r15963 = 1.0f;
        float r15964 = -r15954;
        float r15965 = r15954 * r15954;
        float r15966 = c;
        float r15967 = r15958 * r15966;
        float r15968 = r15965 - r15967;
        float r15969 = sqrt(r15968);
        float r15970 = r15964 + r15969;
        float r15971 = r15958 / r15970;
        float r15972 = r15963 / r15971;
        float r15973 = 4.966247580688122e+78f;
        bool r15974 = r15954 <= r15973;
        float r15975 = r15966 * r15958;
        float r15976 = r15964 - r15969;
        float r15977 = r15975 / r15976;
        float r15978 = r15977 / r15958;
        float r15979 = r15964 + r15954;
        float r15980 = r15966 / r15954;
        float r15981 = 0.5f;
        float r15982 = r15958 * r15981;
        float r15983 = r15980 * r15982;
        float r15984 = r15979 - r15983;
        float r15985 = r15984 / r15958;
        float r15986 = r15974 ? r15978 : r15985;
        float r15987 = r15962 ? r15972 : r15986;
        float r15988 = r15956 ? r15960 : r15987;
        return r15988;
}

double f_od(double a, double b_2F2, double c) {
        double r15989 = b_2F2;
        double r15990 = -3.2345120336434788e+106;
        bool r15991 = r15989 <= r15990;
        double r15992 = -2.0;
        double r15993 = a;
        double r15994 = r15989 / r15993;
        double r15995 = r15992 * r15994;
        double r15996 = 1.135484290896535e-164;
        bool r15997 = r15989 <= r15996;
        double r15998 = 1.0;
        double r15999 = -r15989;
        double r16000 = r15989 * r15989;
        double r16001 = c;
        double r16002 = r15993 * r16001;
        double r16003 = r16000 - r16002;
        double r16004 = sqrt(r16003);
        double r16005 = r15999 + r16004;
        double r16006 = r15993 / r16005;
        double r16007 = r15998 / r16006;
        double r16008 = 4.966247580688122e+78;
        bool r16009 = r15989 <= r16008;
        double r16010 = r16001 * r15993;
        double r16011 = r15999 - r16004;
        double r16012 = r16010 / r16011;
        double r16013 = r16012 / r15993;
        double r16014 = r15999 + r15989;
        double r16015 = r16001 / r15989;
        double r16016 = 0.5;
        double r16017 = r15993 * r16016;
        double r16018 = r16015 * r16017;
        double r16019 = r16014 - r16018;
        double r16020 = r16019 / r15993;
        double r16021 = r16009 ? r16013 : r16020;
        double r16022 = r15997 ? r16007 : r16021;
        double r16023 = r15991 ? r15995 : r16022;
        return r16023;
}

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 r16024, r16025, r16026, r16027, r16028, r16029, r16030, r16031, r16032, r16033;

void setup_mpfr_f_im() {
        mpfr_set_default_prec(144);
        mpfr_init(r16024);
        mpfr_init(r16025);
        mpfr_init(r16026);
        mpfr_init(r16027);
        mpfr_init(r16028);
        mpfr_init(r16029);
        mpfr_init(r16030);
        mpfr_init(r16031);
        mpfr_init(r16032);
        mpfr_init(r16033);
}

double f_im(double a, double b_2F2, double c) {
        mpfr_set_d(r16024, b_2F2, MPFR_RNDN);
        mpfr_neg(r16025, r16024, MPFR_RNDN);
        mpfr_sqr(r16026, r16024, MPFR_RNDN);
        mpfr_set_d(r16027, a, MPFR_RNDN);
        mpfr_set_d(r16028, c, MPFR_RNDN);
        mpfr_mul(r16029, r16027, r16028, MPFR_RNDN);
        mpfr_sub(r16030, r16026, r16029, MPFR_RNDN);
        mpfr_sqrt(r16031, r16030, MPFR_RNDN);
        mpfr_add(r16032, r16025, r16031, MPFR_RNDN);
        mpfr_div(r16033, r16032, r16027, MPFR_RNDN);
        return mpfr_get_d(r16033, MPFR_RNDN);
}

static mpfr_t r16034, r16035, r16036, r16037, r16038, r16039, r16040, r16041, r16042, r16043, r16044, r16045, r16046, r16047, r16048, r16049, r16050, r16051, r16052, r16053, r16054, r16055, r16056, r16057, r16058, r16059, r16060, r16061, r16062, r16063, r16064, r16065, r16066, r16067, r16068;

void setup_mpfr_f_fm() {
        mpfr_set_default_prec(144);
        mpfr_init(r16034);
        mpfr_init_set_str(r16035, "-3.2345120336434788e+106", 10, MPFR_RNDN);
        mpfr_init(r16036);
        mpfr_init_set_str(r16037, "-2", 10, MPFR_RNDN);
        mpfr_init(r16038);
        mpfr_init(r16039);
        mpfr_init(r16040);
        mpfr_init_set_str(r16041, "1.135484290896535e-164", 10, MPFR_RNDN);
        mpfr_init(r16042);
        mpfr_init_set_str(r16043, "1", 10, MPFR_RNDN);
        mpfr_init(r16044);
        mpfr_init(r16045);
        mpfr_init(r16046);
        mpfr_init(r16047);
        mpfr_init(r16048);
        mpfr_init(r16049);
        mpfr_init(r16050);
        mpfr_init(r16051);
        mpfr_init(r16052);
        mpfr_init_set_str(r16053, "4.966247580688122e+78", 10, MPFR_RNDN);
        mpfr_init(r16054);
        mpfr_init(r16055);
        mpfr_init(r16056);
        mpfr_init(r16057);
        mpfr_init(r16058);
        mpfr_init(r16059);
        mpfr_init(r16060);
        mpfr_init_set_str(r16061, "1/2", 10, MPFR_RNDN);
        mpfr_init(r16062);
        mpfr_init(r16063);
        mpfr_init(r16064);
        mpfr_init(r16065);
        mpfr_init(r16066);
        mpfr_init(r16067);
        mpfr_init(r16068);
}

double f_fm(double a, double b_2F2, double c) {
        mpfr_set_d(r16034, b_2F2, MPFR_RNDN);
        ;
        mpfr_set_si(r16036, mpfr_cmp(r16034, r16035) <= 0, MPFR_RNDN);
        ;
        mpfr_set_d(r16038, a, MPFR_RNDN);
        mpfr_div(r16039, r16034, r16038, MPFR_RNDN);
        mpfr_mul(r16040, r16037, r16039, MPFR_RNDN);
        ;
        mpfr_set_si(r16042, mpfr_cmp(r16034, r16041) <= 0, MPFR_RNDN);
        ;
        mpfr_neg(r16044, r16034, MPFR_RNDN);
        mpfr_sqr(r16045, r16034, MPFR_RNDN);
        mpfr_set_d(r16046, c, MPFR_RNDN);
        mpfr_mul(r16047, r16038, r16046, MPFR_RNDN);
        mpfr_sub(r16048, r16045, r16047, MPFR_RNDN);
        mpfr_sqrt(r16049, r16048, MPFR_RNDN);
        mpfr_add(r16050, r16044, r16049, MPFR_RNDN);
        mpfr_div(r16051, r16038, r16050, MPFR_RNDN);
        mpfr_div(r16052, r16043, r16051, MPFR_RNDN);
        ;
        mpfr_set_si(r16054, mpfr_cmp(r16034, r16053) <= 0, MPFR_RNDN);
        mpfr_mul(r16055, r16046, r16038, MPFR_RNDN);
        mpfr_sub(r16056, r16044, r16049, MPFR_RNDN);
        mpfr_div(r16057, r16055, r16056, MPFR_RNDN);
        mpfr_div(r16058, r16057, r16038, MPFR_RNDN);
        mpfr_add(r16059, r16044, r16034, MPFR_RNDN);
        mpfr_div(r16060, r16046, r16034, MPFR_RNDN);
        ;
        mpfr_mul(r16062, r16038, r16061, MPFR_RNDN);
        mpfr_mul(r16063, r16060, r16062, MPFR_RNDN);
        mpfr_sub(r16064, r16059, r16063, MPFR_RNDN);
        mpfr_div(r16065, r16064, r16038, MPFR_RNDN);
        if (mpfr_get_si(r16054, MPFR_RNDN)) { mpfr_set(r16066, r16058, MPFR_RNDN); } else { mpfr_set(r16066, r16065, MPFR_RNDN); };
        if (mpfr_get_si(r16042, MPFR_RNDN)) { mpfr_set(r16067, r16052, MPFR_RNDN); } else { mpfr_set(r16067, r16066, MPFR_RNDN); };
        if (mpfr_get_si(r16036, MPFR_RNDN)) { mpfr_set(r16068, r16040, MPFR_RNDN); } else { mpfr_set(r16068, r16067, MPFR_RNDN); };
        return mpfr_get_d(r16068, MPFR_RNDN);
}

static mpfr_t r16069, r16070, r16071, r16072, r16073, r16074, r16075, r16076, r16077, r16078, r16079, r16080, r16081, r16082, r16083, r16084, r16085, r16086, r16087, r16088, r16089, r16090, r16091, r16092, r16093, r16094, r16095, r16096, r16097, r16098, r16099, r16100, r16101, r16102, r16103;

void setup_mpfr_f_dm() {
        mpfr_set_default_prec(144);
        mpfr_init(r16069);
        mpfr_init_set_str(r16070, "-3.2345120336434788e+106", 10, MPFR_RNDN);
        mpfr_init(r16071);
        mpfr_init_set_str(r16072, "-2", 10, MPFR_RNDN);
        mpfr_init(r16073);
        mpfr_init(r16074);
        mpfr_init(r16075);
        mpfr_init_set_str(r16076, "1.135484290896535e-164", 10, MPFR_RNDN);
        mpfr_init(r16077);
        mpfr_init_set_str(r16078, "1", 10, MPFR_RNDN);
        mpfr_init(r16079);
        mpfr_init(r16080);
        mpfr_init(r16081);
        mpfr_init(r16082);
        mpfr_init(r16083);
        mpfr_init(r16084);
        mpfr_init(r16085);
        mpfr_init(r16086);
        mpfr_init(r16087);
        mpfr_init_set_str(r16088, "4.966247580688122e+78", 10, MPFR_RNDN);
        mpfr_init(r16089);
        mpfr_init(r16090);
        mpfr_init(r16091);
        mpfr_init(r16092);
        mpfr_init(r16093);
        mpfr_init(r16094);
        mpfr_init(r16095);
        mpfr_init_set_str(r16096, "1/2", 10, MPFR_RNDN);
        mpfr_init(r16097);
        mpfr_init(r16098);
        mpfr_init(r16099);
        mpfr_init(r16100);
        mpfr_init(r16101);
        mpfr_init(r16102);
        mpfr_init(r16103);
}

double f_dm(double a, double b_2F2, double c) {
        mpfr_set_d(r16069, b_2F2, MPFR_RNDN);
        ;
        mpfr_set_si(r16071, mpfr_cmp(r16069, r16070) <= 0, MPFR_RNDN);
        ;
        mpfr_set_d(r16073, a, MPFR_RNDN);
        mpfr_div(r16074, r16069, r16073, MPFR_RNDN);
        mpfr_mul(r16075, r16072, r16074, MPFR_RNDN);
        ;
        mpfr_set_si(r16077, mpfr_cmp(r16069, r16076) <= 0, MPFR_RNDN);
        ;
        mpfr_neg(r16079, r16069, MPFR_RNDN);
        mpfr_sqr(r16080, r16069, MPFR_RNDN);
        mpfr_set_d(r16081, c, MPFR_RNDN);
        mpfr_mul(r16082, r16073, r16081, MPFR_RNDN);
        mpfr_sub(r16083, r16080, r16082, MPFR_RNDN);
        mpfr_sqrt(r16084, r16083, MPFR_RNDN);
        mpfr_add(r16085, r16079, r16084, MPFR_RNDN);
        mpfr_div(r16086, r16073, r16085, MPFR_RNDN);
        mpfr_div(r16087, r16078, r16086, MPFR_RNDN);
        ;
        mpfr_set_si(r16089, mpfr_cmp(r16069, r16088) <= 0, MPFR_RNDN);
        mpfr_mul(r16090, r16081, r16073, MPFR_RNDN);
        mpfr_sub(r16091, r16079, r16084, MPFR_RNDN);
        mpfr_div(r16092, r16090, r16091, MPFR_RNDN);
        mpfr_div(r16093, r16092, r16073, MPFR_RNDN);
        mpfr_add(r16094, r16079, r16069, MPFR_RNDN);
        mpfr_div(r16095, r16081, r16069, MPFR_RNDN);
        ;
        mpfr_mul(r16097, r16073, r16096, MPFR_RNDN);
        mpfr_mul(r16098, r16095, r16097, MPFR_RNDN);
        mpfr_sub(r16099, r16094, r16098, MPFR_RNDN);
        mpfr_div(r16100, r16099, r16073, MPFR_RNDN);
        if (mpfr_get_si(r16089, MPFR_RNDN)) { mpfr_set(r16101, r16093, MPFR_RNDN); } else { mpfr_set(r16101, r16100, MPFR_RNDN); };
        if (mpfr_get_si(r16077, MPFR_RNDN)) { mpfr_set(r16102, r16087, MPFR_RNDN); } else { mpfr_set(r16102, r16101, MPFR_RNDN); };
        if (mpfr_get_si(r16071, MPFR_RNDN)) { mpfr_set(r16103, r16075, MPFR_RNDN); } else { mpfr_set(r16103, r16102, MPFR_RNDN); };
        return mpfr_get_d(r16103, MPFR_RNDN);
}

