#include "test_helpers.h"
#include "fmpz.h"
#include "aprcl.h"
TEST_FUNCTION_START(aprcl_unity_zp_aut_inv, state)
{
ulong i, j;
for (i = 0; i < 10 * flint_test_multiplier(); i++)
{
ulong ind, q, p, k, x;
fmpz_t n;
unity_zp f, g, h;
n_factor_t q_factors;
n_factor_init(&q_factors);
q = n_randprime(state, 2 + n_randint(state, 6), 0);
while (q < 3)
q = n_randprime(state, 2 + n_randint(state, 6), 0);
n_factor(&q_factors, q - 1, 1);
ind = n_randint(state, q_factors.num);
p = q_factors.p[ind];
k = q_factors.exp[ind];
x = n_randint(state, n_pow(p, k));
while (n_gcd(p, x) != 1 || x == 0)
x = n_randint(state, n_pow(p, k));
fmpz_init(n);
fmpz_randtest_unsigned(n, state, 200);
while (fmpz_equal_ui(n, 0) != 0)
fmpz_randtest_unsigned(n, state, 200);
unity_zp_init(f, p, k, n);
unity_zp_init(g, p, k, n);
unity_zp_init(h, p, k, n);
for (j = 0; j < 100; j++)
{
ulong ind;
fmpz_t val;
fmpz_init(val);
ind = n_randint(state, n_pow(p, k));
fmpz_randtest_unsigned(val, state, 200);
unity_zp_coeff_set_fmpz(g, ind, val);
fmpz_clear(val);
}
unity_zp_reduce_cyclotomic(h, g);
unity_zp_aut_inv(f, h, x);
unity_zp_aut(g, f, x);
if (unity_zp_equal(h, g) == 0)
{
flint_printf("FAIL\n");
fflush(stdout);
flint_abort();
}
fmpz_clear(n);
unity_zp_clear(f);
unity_zp_clear(g);
unity_zp_clear(h);
}
TEST_FUNCTION_END(state);
}