#include "test_helpers.h"
#include "fmpq_mpoly.h"
#include "ulong_extras.h"
TEST_FUNCTION_START(fmpq_mpoly_get_set_term_exp_si, state)
{
slong i, j, k;
int result;
for (i = 0; i < 100 * flint_test_multiplier(); i++)
{
fmpq_mpoly_ctx_t ctx;
fmpq_mpoly_t f;
slong len, nvars, index;
flint_bitcnt_t coeff_bits, exp_bits;
fmpq_mpoly_ctx_init_rand(ctx, state, 20);
fmpq_mpoly_init(f, ctx);
nvars = fmpq_mpoly_ctx_nvars(ctx);
len = n_randint(state, 50) + 1;
exp_bits = n_randint(state, 200) + 2;
coeff_bits = n_randint(state, 100) + 1;
do {
fmpq_mpoly_randtest_bits(f, state, len, coeff_bits, exp_bits, ctx);
} while (fmpq_mpoly_length(f, ctx) == 0);
for (j = 0; j < 10; j++)
{
slong * exp1 = (slong *) flint_malloc(ctx->zctx->minfo->nvars*sizeof(slong));
slong * exp2 = (slong *) flint_malloc(ctx->zctx->minfo->nvars*sizeof(slong));
for (k = 0; k < nvars; k++)
{
slong bits = n_randint(state, FLINT_BITS - 1) + 1;
exp1[k] = n_randbits(state, bits);
exp1[k] = FLINT_ABS(exp1[k]);
}
index = n_randint(state, fmpq_mpoly_length(f, ctx));
fmpq_mpoly_set_term_exp_ui(f, index, (ulong *) exp1, ctx);
if (!mpoly_monomials_valid_test(f->zpoly->exps, f->zpoly->length, f->zpoly->bits, ctx->zctx->minfo))
flint_throw(FLINT_ERROR, "Polynomial exponents invalid");
if (mpoly_monomials_overflow_test(f->zpoly->exps, f->zpoly->length, f->zpoly->bits, ctx->zctx->minfo))
flint_throw(FLINT_ERROR, "Polynomial exponents overflow");
fmpq_mpoly_get_term_exp_si(exp2, f, index, ctx);
result = 1;
for (k = 0; k < nvars; k++)
{
result = result
&& exp1[k] == exp2[k]
&& exp1[k] == fmpq_mpoly_get_term_var_exp_si(f, index, k, ctx);
}
if (!result)
{
flint_printf("FAIL\ncheck get and set match\ni = %wd, j = %wd\n", i, j);
fflush(stdout);
flint_abort();
}
flint_free(exp1);
flint_free(exp2);
}
fmpq_mpoly_clear(f, ctx);
fmpq_mpoly_ctx_clear(ctx);
}
TEST_FUNCTION_END(state);
}