#include "test_helpers.h"
#include "acb_mat.h"
#include "acb_theta.h"
TEST_FUNCTION_START(acb_theta_jet_naive_00, state)
{
slong iter;
for (iter = 0; iter < 10 * flint_test_multiplier(); iter++)
{
slong prec = ACB_THETA_LOW_PREC + n_randint(state, 100);
slong bits = n_randint(state, 4);
slong ord = n_randint(state, 3);
slong g = 1 + n_randint(state, 3);
slong n2 = 1 << (2 * g);
slong nb = acb_theta_jet_nb(ord, g);
acb_mat_t tau;
acb_ptr z, dth, test;
acb_mat_init(tau, g, g);
z = _acb_vec_init(g);
dth = _acb_vec_init(nb);
test = _acb_vec_init(nb * n2);
acb_siegel_randtest_reduced(tau, state, prec, bits);
acb_siegel_randtest_vec(z, state, g, prec);
acb_theta_jet_naive_00(dth, z, tau, ord, prec);
acb_theta_jet_naive_all(test, z, tau, ord, prec);
if (!_acb_vec_overlaps(dth, test, nb))
{
flint_printf("FAIL (overlap)\n");
flint_printf("g = %wd, prec = %wd, ord = %wd\n", g, prec, ord);
acb_mat_printd(tau, 5);
_acb_vec_printd(z, g, 5);
flint_printf("jet_naive_00:\n");
_acb_vec_printd(dth, nb, 5);
flint_printf("jet_naive_all:\n");
_acb_vec_printd(test, nb, 5);
flint_abort();
}
acb_mat_clear(tau);
_acb_vec_clear(z, g);
_acb_vec_clear(dth, nb);
_acb_vec_clear(test, nb * n2);
}
TEST_FUNCTION_END(state);
}