#include "test_helpers.h"
#include "acb_dirichlet.h"
TEST_FUNCTION_START(acb_dirichlet_platt_local_hardy_z_zeros, state)
{
slong A, B, K, sigma_grid, Ns_max, sigma_interp;
arb_t h, H;
fmpz_t J, T, n;
arb_ptr pa, pb;
slong count, i;
slong maxcount = 50;
slong prec = 128;
arb_init(h);
arb_init(H);
fmpz_init(J);
fmpz_init(T);
fmpz_init(n);
pa = _arb_vec_init(maxcount);
pb = _arb_vec_init(maxcount);
fmpz_set_si(n, 10142);
fmpz_set_si(T, 10000);
A = 8;
B = 128;
fmpz_set_si(J, 1000);
K = 30;
sigma_grid = 63;
arb_set_d(h, 4.5);
Ns_max = 200;
sigma_interp = 21;
arb_one(H);
count = _acb_dirichlet_platt_local_hardy_z_zeros(pa, n, maxcount,
T, A, B, h, J, K, sigma_grid, Ns_max, H, sigma_interp, prec);
acb_dirichlet_hardy_z_zeros(pb, n, count, prec);
if (count != maxcount)
{
flint_printf("FAIL: not enough zeros were isolated\n\n");
flint_printf("count = %wd maxcount = %wd\n\n", count, maxcount);
flint_abort();
}
for (i = 0; i < count; i++)
{
if (!arb_overlaps(pa+i, pb+i))
{
flint_printf("FAIL: overlap\n\n");
flint_printf("observed[%wd] = ", i);
arb_printd(pa+i, 20); flint_printf("\n\n");
flint_printf("expected[%wd] = ", i);
arb_printd(pb+i, 20); flint_printf("\n\n");
flint_abort();
}
}
arb_clear(h);
arb_clear(H);
fmpz_clear(J);
fmpz_clear(T);
fmpz_clear(n);
_arb_vec_clear(pa, maxcount);
_arb_vec_clear(pb, maxcount);
TEST_FUNCTION_END(state);
}