#include "test_helpers.h"
#include "acb.h"
#include "arb_poly.h"
TEST_FUNCTION_START(arb_poly_evaluate2_acb_rectangular, state)
{
slong iter;
for (iter = 0; iter < 10000 * 0.1 * flint_test_multiplier(); iter++)
{
arb_poly_t f, g;
acb_t x, y1, z1, y2, z2;
acb_init(x);
acb_init(y1);
acb_init(z1);
acb_init(y2);
acb_init(z2);
arb_poly_init(f);
arb_poly_init(g);
acb_randtest(x, state, 2 + n_randint(state, 1000), 5);
arb_poly_randtest(f, state, 2 + n_randint(state, 100), 2 + n_randint(state, 1000), 5);
arb_poly_derivative(g, f, 2 + n_randint(state, 1000));
arb_poly_evaluate2_acb_rectangular(y1, z1, f, x, 2 + n_randint(state, 1000));
arb_poly_evaluate_acb_horner(y2, f, x, 2 + n_randint(state, 1000));
arb_poly_evaluate_acb_horner(z2, g, x, 2 + n_randint(state, 1000));
if (!acb_overlaps(y1, y2) || !acb_overlaps(z1, z2))
{
flint_printf("FAIL\n\n");
flint_printf("f = "); arb_poly_printd(f, 15); flint_printf("\n\n");
flint_printf("g = "); arb_poly_printd(g, 15); flint_printf("\n\n");
flint_printf("x = "); acb_printd(x, 15); flint_printf("\n\n");
flint_printf("y1 = "); acb_printd(y1, 15); flint_printf("\n\n");
flint_printf("z1 = "); acb_printd(z1, 15); flint_printf("\n\n");
flint_printf("y2 = "); acb_printd(y2, 15); flint_printf("\n\n");
flint_printf("z2 = "); acb_printd(z2, 15); flint_printf("\n\n");
flint_abort();
}
arb_poly_clear(f);
arb_poly_clear(g);
acb_clear(x);
acb_clear(y1);
acb_clear(z1);
acb_clear(y2);
acb_clear(z2);
}
TEST_FUNCTION_END(state);
}