/*
Copyright (C) 2019 Daniel Schultz
This file is part of FLINT.
FLINT is free software: you can redistribute it and/or modify it under
the terms of the GNU Lesser General Public License (LGPL) as published
by the Free Software Foundation; either version 2.1 of the License, or
(at your option) any later version. See .
*/
#include
#include
#include "nmod_mpoly.h"
int
main(void)
{
slong i, j, k;
FLINT_TEST_INIT(state);
flint_printf("univar....");
fflush(stdout);
/* Check mpoly -> mpoly_univar -> mpoly */
for (i = 0; i < 50 * flint_test_multiplier(); i++)
{
nmod_mpoly_ctx_t ctx;
nmod_mpoly_t f, g, h;
nmod_mpoly_univar_t fx, gx;
slong len1, len2, n;
flint_bitcnt_t exp_bits1, exp_bits2, bits;
mp_limb_t modulus;
modulus = n_randint(state, FLINT_BITS - 2) + 2;
modulus = n_randbits(state, modulus);
nmod_mpoly_ctx_init_rand(ctx, state, 20, modulus);
nmod_mpoly_init(f, ctx);
nmod_mpoly_init(g, ctx);
nmod_mpoly_init(h, ctx);
nmod_mpoly_univar_init(fx, ctx);
nmod_mpoly_univar_init(gx, ctx);
len1 = n_randint(state, 50);
len2 = n_randint(state, 50);
exp_bits1 = n_randint(state, 3*FLINT_BITS) + 1;
exp_bits2 = n_randint(state, 3*FLINT_BITS) + 1;
for (j = 0; j < ctx->minfo->nvars; j++)
{
nmod_mpoly_randtest_bits(f, state, len1, exp_bits1, ctx);
nmod_mpoly_randtest_bits(g, state, len2, exp_bits2, ctx);
nmod_mpoly_to_univar(fx, f, j, ctx);
nmod_mpoly_univar_assert_canonical(fx, ctx);
nmod_mpoly_from_univar(g, fx, j, ctx);
nmod_mpoly_assert_canonical(g, ctx);
if (!nmod_mpoly_equal(f, g, ctx))
{
printf("FAIL\n");
flint_printf("Check mpoly -> mpoly_univar -> mpoly\ni: %wd j: %wd\n",i,j);
flint_abort();
}
bits = mpoly_fix_bits(f->bits + n_randint(state, FLINT_BITS), ctx->minfo);
_nmod_mpoly_from_univar(h, bits, fx, j, ctx);
nmod_mpoly_assert_canonical(h, ctx);
if (h->bits != bits || !nmod_mpoly_equal(f, h, ctx))
{
printf("FAIL\n");
flint_printf("Check mpoly -> mpoly_univar -> mpoly with bits\ni: %wd j: %wd\n",i,j);
flint_abort();
}
if (!nmod_mpoly_univar_degree_fits_si(fx, ctx))
continue;
n = nmod_mpoly_univar_length(fx, ctx);
nmod_mpoly_univar_fit_length(gx, n, ctx);
gx->length = n;
for (k = 0; k < n; k++)
{
nmod_mpoly_univar_swap_term_coeff(gx->coeffs + k, fx, k, ctx);
fmpz_set_si(gx->exps + k, nmod_mpoly_univar_get_term_exp_si(fx, k, ctx));
}
nmod_mpoly_from_univar(g, gx, j, ctx);
if (!nmod_mpoly_equal(f, g, ctx))
{
printf("FAIL\n");
flint_printf("Check construction\ni: %wd j: %wd\n",i,j);
flint_abort();
}
}
nmod_mpoly_clear(f, ctx);
nmod_mpoly_clear(g, ctx);
nmod_mpoly_clear(h, ctx);
nmod_mpoly_univar_clear(gx, ctx);
nmod_mpoly_univar_clear(fx, ctx);
nmod_mpoly_ctx_clear(ctx);
}
FLINT_TEST_CLEANUP(state);
printf("PASS\n");
return 0;
}