#include "test_helpers.h"
#include "ca_mat.h"
TEST_FUNCTION_START(ca_mat_nonsingular_solve_adjugate, state)
{
slong iter;
for (iter = 0; iter < 1000 * 0.1 * flint_test_multiplier(); iter++)
{
ca_ctx_t ctx;
ca_mat_t A, X, B, AX;
slong n, c;
truth_t success;
ca_ctx_init(ctx);
n = n_randint(state, 6);
c = n_randint(state, 6);
ca_mat_init(A, n, n, ctx);
ca_mat_init(B, n, c, ctx);
ca_mat_init(X, n, c, ctx);
ca_mat_init(AX, n, c, ctx);
if (n_randint(state, 2) || n > 3)
ca_mat_randtest_rational(A, state, 5, ctx);
else
ca_mat_randtest(A, state, 1, 5, ctx);
ca_mat_randtest(X, state, 1, 5, ctx);
if (n_randint(state, 2) || n > 3)
ca_mat_randtest_rational(B, state, 5, ctx);
else
ca_mat_randtest(B, state, 1, 5, ctx);
success = ca_mat_nonsingular_solve_adjugate(X, A, B, ctx);
if (success == T_TRUE)
{
ca_mat_mul(AX, A, X, ctx);
if (ca_mat_check_equal(AX, B, ctx) == T_FALSE)
{
flint_printf("FAIL (solve)\n\n");
flint_printf("A = "); ca_mat_print(A, ctx); flint_printf("\n");
flint_printf("B = "); ca_mat_print(B, ctx); flint_printf("\n");
flint_printf("X = "); ca_mat_print(X, ctx); flint_printf("\n");
flint_printf("AX = "); ca_mat_print(AX, ctx); flint_printf("\n");
flint_abort();
}
}
else if (success == T_FALSE)
{
ca_t det;
ca_init(det, ctx);
ca_mat_det(det, A, ctx);
if (ca_check_is_zero(det, ctx) == T_FALSE)
{
flint_printf("FAIL (singular)\n\n");
flint_printf("A = "); ca_mat_print(A, ctx); flint_printf("\n");
flint_printf("det = "); ca_print(det, ctx); flint_printf("\n");
flint_abort();
}
ca_clear(det, ctx);
}
ca_mat_clear(A, ctx);
ca_mat_clear(B, ctx);
ca_mat_clear(X, ctx);
ca_mat_clear(AX, ctx);
ca_ctx_clear(ctx);
}
TEST_FUNCTION_END(state);
}