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

char *name = "Octave 3.8, jcobi/1";

double f_if(float alpha, float beta) {
        float r16825 = beta;
        float r16826 = alpha;
        float r16827 = r16825 - r16826;
        float r16828 = r16826 + r16825;
        float r16829 = 2.0f;
        float r16830 = r16828 + r16829;
        float r16831 = r16827 / r16830;
        float r16832 = 1.0f;
        float r16833 = r16831 + r16832;
        float r16834 = r16833 / r16829;
        return r16834;
}

double f_id(double alpha, double beta) {
        double r16835 = beta;
        double r16836 = alpha;
        double r16837 = r16835 - r16836;
        double r16838 = r16836 + r16835;
        double r16839 = 2.0;
        double r16840 = r16838 + r16839;
        double r16841 = r16837 / r16840;
        double r16842 = 1.0;
        double r16843 = r16841 + r16842;
        double r16844 = r16843 / r16839;
        return r16844;
}


double f_of(float alpha, float beta) {
        float r16845 = beta;
        float r16846 = alpha;
        float r16847 = r16845 - r16846;
        float r16848 = r16846 + r16845;
        float r16849 = 2.0f;
        float r16850 = r16848 + r16849;
        float r16851 = r16847 / r16850;
        float r16852 = -0.999996542930603f;
        bool r16853 = r16851 <= r16852;
        float r16854 = r16849 + r16846;
        float r16855 = r16854 + r16845;
        float r16856 = r16845 / r16855;
        float r16857 = 4.0f;
        float r16858 = r16846 * r16846;
        float r16859 = r16857 / r16858;
        float r16860 = 8.0f;
        float r16861 = r16846 * (r16846 * r16846);
        float r16862 = r16860 / r16861;
        float r16863 = r16859 - r16862;
        float r16864 = r16856 - r16863;
        float r16865 = r16849 / r16846;
        float r16866 = r16864 + r16865;
        float r16867 = r16866 / r16849;
        float r16868 = 1.0f;
        float r16869 = r16851 + r16868;
        float r16870 = log(r16869);
        float r16871 = exp(r16870);
        float r16872 = r16871 / r16849;
        float r16873 = r16853 ? r16867 : r16872;
        return r16873;
}

double f_od(double alpha, double beta) {
        double r16874 = beta;
        double r16875 = alpha;
        double r16876 = r16874 - r16875;
        double r16877 = r16875 + r16874;
        double r16878 = 2.0;
        double r16879 = r16877 + r16878;
        double r16880 = r16876 / r16879;
        double r16881 = -0.999996542930603;
        bool r16882 = r16880 <= r16881;
        double r16883 = r16878 + r16875;
        double r16884 = r16883 + r16874;
        double r16885 = r16874 / r16884;
        double r16886 = 4.0;
        double r16887 = r16875 * r16875;
        double r16888 = r16886 / r16887;
        double r16889 = 8.0;
        double r16890 = r16875 * (r16875 * r16875);
        double r16891 = r16889 / r16890;
        double r16892 = r16888 - r16891;
        double r16893 = r16885 - r16892;
        double r16894 = r16878 / r16875;
        double r16895 = r16893 + r16894;
        double r16896 = r16895 / r16878;
        double r16897 = 1.0;
        double r16898 = r16880 + r16897;
        double r16899 = log(r16898);
        double r16900 = exp(r16899);
        double r16901 = r16900 / r16878;
        double r16902 = r16882 ? r16896 : r16901;
        return r16902;
}

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 r16903, r16904, r16905, r16906, r16907, r16908, r16909, r16910, r16911, r16912;

void setup_mpfr_f_im() {
        mpfr_set_default_prec(144);
        mpfr_init(r16903);
        mpfr_init(r16904);
        mpfr_init(r16905);
        mpfr_init(r16906);
        mpfr_init_set_str(r16907, "2.0", 10, MPFR_RNDN);
        mpfr_init(r16908);
        mpfr_init(r16909);
        mpfr_init_set_str(r16910, "1.0", 10, MPFR_RNDN);
        mpfr_init(r16911);
        mpfr_init(r16912);
}

double f_im(double alpha, double beta) {
        mpfr_set_d(r16903, beta, MPFR_RNDN);
        mpfr_set_d(r16904, alpha, MPFR_RNDN);
        mpfr_sub(r16905, r16903, r16904, MPFR_RNDN);
        mpfr_add(r16906, r16904, r16903, MPFR_RNDN);
        ;
        mpfr_add(r16908, r16906, r16907, MPFR_RNDN);
        mpfr_div(r16909, r16905, r16908, MPFR_RNDN);
        ;
        mpfr_add(r16911, r16909, r16910, MPFR_RNDN);
        mpfr_div(r16912, r16911, r16907, MPFR_RNDN);
        return mpfr_get_d(r16912, MPFR_RNDN);
}

static mpfr_t r16913, r16914, r16915, r16916, r16917, r16918, r16919, r16920, r16921, r16922, r16923, r16924, r16925, r16926, r16927, r16928, r16929, r16930, r16931, r16932, r16933, r16934, r16935, r16936, r16937, r16938, r16939, r16940, r16941;

void setup_mpfr_f_fm() {
        mpfr_set_default_prec(144);
        mpfr_init(r16913);
        mpfr_init(r16914);
        mpfr_init(r16915);
        mpfr_init(r16916);
        mpfr_init_set_str(r16917, "2.0", 10, MPFR_RNDN);
        mpfr_init(r16918);
        mpfr_init(r16919);
        mpfr_init_set_str(r16920, "-0.99999654f0", 10, MPFR_RNDN);
        mpfr_init(r16921);
        mpfr_init(r16922);
        mpfr_init(r16923);
        mpfr_init(r16924);
        mpfr_init_set_str(r16925, "4.0", 10, MPFR_RNDN);
        mpfr_init(r16926);
        mpfr_init(r16927);
        mpfr_init_set_str(r16928, "8.0", 10, MPFR_RNDN);
        mpfr_init(r16929);
        mpfr_init(r16930);
        mpfr_init(r16931);
        mpfr_init(r16932);
        mpfr_init(r16933);
        mpfr_init(r16934);
        mpfr_init(r16935);
        mpfr_init_set_str(r16936, "1.0", 10, MPFR_RNDN);
        mpfr_init(r16937);
        mpfr_init(r16938);
        mpfr_init(r16939);
        mpfr_init(r16940);
        mpfr_init(r16941);
}

double f_fm(double alpha, double beta) {
        mpfr_set_d(r16913, beta, MPFR_RNDN);
        mpfr_set_d(r16914, alpha, MPFR_RNDN);
        mpfr_sub(r16915, r16913, r16914, MPFR_RNDN);
        mpfr_add(r16916, r16914, r16913, MPFR_RNDN);
        ;
        mpfr_add(r16918, r16916, r16917, MPFR_RNDN);
        mpfr_div(r16919, r16915, r16918, MPFR_RNDN);
        ;
        mpfr_set_si(r16921, mpfr_cmp(r16919, r16920) <= 0, MPFR_RNDN);
        mpfr_add(r16922, r16917, r16914, MPFR_RNDN);
        mpfr_add(r16923, r16922, r16913, MPFR_RNDN);
        mpfr_div(r16924, r16913, r16923, MPFR_RNDN);
        ;
        mpfr_mul(r16926, r16914, r16914, MPFR_RNDN);
        mpfr_div(r16927, r16925, r16926, MPFR_RNDN);
        ;
        mpfr_mul(r16929, r16914, r16914, MPFR_RNDN); mpfr_mul(r16929, r16929, r16914, MPFR_RNDN);
        mpfr_div(r16930, r16928, r16929, MPFR_RNDN);
        mpfr_sub(r16931, r16927, r16930, MPFR_RNDN);
        mpfr_sub(r16932, r16924, r16931, MPFR_RNDN);
        mpfr_div(r16933, r16917, r16914, MPFR_RNDN);
        mpfr_add(r16934, r16932, r16933, MPFR_RNDN);
        mpfr_div(r16935, r16934, r16917, MPFR_RNDN);
        ;
        mpfr_add(r16937, r16919, r16936, MPFR_RNDN);
        mpfr_log(r16938, r16937, MPFR_RNDN);
        mpfr_exp(r16939, r16938, MPFR_RNDN);
        mpfr_div(r16940, r16939, r16917, MPFR_RNDN);
        if (mpfr_get_si(r16921, MPFR_RNDN)) { mpfr_set(r16941, r16935, MPFR_RNDN); } else { mpfr_set(r16941, r16940, MPFR_RNDN); };
        return mpfr_get_d(r16941, MPFR_RNDN);
}

static mpfr_t r16942, r16943, r16944, r16945, r16946, r16947, r16948, r16949, r16950, r16951, r16952, r16953, r16954, r16955, r16956, r16957, r16958, r16959, r16960, r16961, r16962, r16963, r16964, r16965, r16966, r16967, r16968, r16969, r16970;

void setup_mpfr_f_dm() {
        mpfr_set_default_prec(144);
        mpfr_init(r16942);
        mpfr_init(r16943);
        mpfr_init(r16944);
        mpfr_init(r16945);
        mpfr_init_set_str(r16946, "2.0", 10, MPFR_RNDN);
        mpfr_init(r16947);
        mpfr_init(r16948);
        mpfr_init_set_str(r16949, "-0.99999654f0", 10, MPFR_RNDN);
        mpfr_init(r16950);
        mpfr_init(r16951);
        mpfr_init(r16952);
        mpfr_init(r16953);
        mpfr_init_set_str(r16954, "4.0", 10, MPFR_RNDN);
        mpfr_init(r16955);
        mpfr_init(r16956);
        mpfr_init_set_str(r16957, "8.0", 10, MPFR_RNDN);
        mpfr_init(r16958);
        mpfr_init(r16959);
        mpfr_init(r16960);
        mpfr_init(r16961);
        mpfr_init(r16962);
        mpfr_init(r16963);
        mpfr_init(r16964);
        mpfr_init_set_str(r16965, "1.0", 10, MPFR_RNDN);
        mpfr_init(r16966);
        mpfr_init(r16967);
        mpfr_init(r16968);
        mpfr_init(r16969);
        mpfr_init(r16970);
}

double f_dm(double alpha, double beta) {
        mpfr_set_d(r16942, beta, MPFR_RNDN);
        mpfr_set_d(r16943, alpha, MPFR_RNDN);
        mpfr_sub(r16944, r16942, r16943, MPFR_RNDN);
        mpfr_add(r16945, r16943, r16942, MPFR_RNDN);
        ;
        mpfr_add(r16947, r16945, r16946, MPFR_RNDN);
        mpfr_div(r16948, r16944, r16947, MPFR_RNDN);
        ;
        mpfr_set_si(r16950, mpfr_cmp(r16948, r16949) <= 0, MPFR_RNDN);
        mpfr_add(r16951, r16946, r16943, MPFR_RNDN);
        mpfr_add(r16952, r16951, r16942, MPFR_RNDN);
        mpfr_div(r16953, r16942, r16952, MPFR_RNDN);
        ;
        mpfr_mul(r16955, r16943, r16943, MPFR_RNDN);
        mpfr_div(r16956, r16954, r16955, MPFR_RNDN);
        ;
        mpfr_mul(r16958, r16943, r16943, MPFR_RNDN); mpfr_mul(r16958, r16958, r16943, MPFR_RNDN);
        mpfr_div(r16959, r16957, r16958, MPFR_RNDN);
        mpfr_sub(r16960, r16956, r16959, MPFR_RNDN);
        mpfr_sub(r16961, r16953, r16960, MPFR_RNDN);
        mpfr_div(r16962, r16946, r16943, MPFR_RNDN);
        mpfr_add(r16963, r16961, r16962, MPFR_RNDN);
        mpfr_div(r16964, r16963, r16946, MPFR_RNDN);
        ;
        mpfr_add(r16966, r16948, r16965, MPFR_RNDN);
        mpfr_log(r16967, r16966, MPFR_RNDN);
        mpfr_exp(r16968, r16967, MPFR_RNDN);
        mpfr_div(r16969, r16968, r16946, MPFR_RNDN);
        if (mpfr_get_si(r16950, MPFR_RNDN)) { mpfr_set(r16970, r16964, MPFR_RNDN); } else { mpfr_set(r16970, r16969, MPFR_RNDN); };
        return mpfr_get_d(r16970, MPFR_RNDN);
}

