/*============================================================================= This file is part of FLINT. FLINT is free software; you can redistribute it and/or modify it under the terms of the GNU General Public License as published by the Free Software Foundation; either version 2 of the License, or (at your option) any later version. FLINT is distributed in the hope that it will be useful, but WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for more details. You should have received a copy of the GNU General Public License along with FLINT; if not, write to the Free Software Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA =============================================================================*/ /****************************************************************************** Copyright (C) 2007 David Howden Copyright (C) 2007, 2008, 2009, 2010 William Hart Copyright (C) 2008 Richard Howell-Peak Copyright (C) 2011 Fredrik Johansson Copyright (C) 2012 Lina Kulakova ******************************************************************************/ #include "fmpz.h" #include "fmpz_mod_poly.h" #include "ulong_extras.h" void fmpz_mod_poly_powpowmod(fmpz_mod_poly_t res, const fmpz_mod_poly_t pol, const fmpz_t exp, ulong exp2, const fmpz_mod_poly_t f) { fmpz_mod_poly_t pow; ulong i; fmpz_mod_poly_init(pow, &f->p); fmpz_mod_poly_powmod_fmpz_binexp(pow, pol, exp, f); fmpz_mod_poly_set(res, pow); if (!fmpz_mod_poly_equal(pow, pol)) for (i = 1; i < exp2; i++) fmpz_mod_poly_powmod_fmpz_binexp(res, res, exp, f); fmpz_mod_poly_clear(pow); } int fmpz_mod_poly_is_irreducible_rabin(const fmpz_mod_poly_t f) { if (fmpz_mod_poly_length(f) > 2) { const slong n = fmpz_mod_poly_degree(f); fmpz_mod_poly_t a, x, x_p; fmpz_mod_poly_init(a, &f->p); fmpz_mod_poly_init(x, &f->p); fmpz_mod_poly_init(x_p, &f->p); fmpz_mod_poly_set_coeff_ui(x, 1, 1); /* Compute x^q mod f */ fmpz_mod_poly_powpowmod(x_p, x, &f->p, n, f); if (!fmpz_mod_poly_is_zero(x_p)) fmpz_mod_poly_make_monic(x_p, x_p); /* Now do the irreducibility test */ if (!fmpz_mod_poly_equal(x_p, x)) { fmpz_mod_poly_clear(a); fmpz_mod_poly_clear(x); fmpz_mod_poly_clear(x_p); return 0; } else { n_factor_t factors; slong i; n_factor_init(&factors); n_factor(&factors, n, 1); for (i = 0; i < factors.num; i++) { fmpz_mod_poly_powpowmod(a, x, &f->p, n / factors.p[i], f); fmpz_mod_poly_sub(a, a, x); if (!fmpz_mod_poly_is_zero(a)) fmpz_mod_poly_make_monic(a, a); fmpz_mod_poly_gcd(a, a, f); if (a->length != 1) { fmpz_mod_poly_clear(a); fmpz_mod_poly_clear(x); fmpz_mod_poly_clear(x_p); return 0; } } } fmpz_mod_poly_clear(a); fmpz_mod_poly_clear(x); fmpz_mod_poly_clear(x_p); } return 1; }