209 lines
5.9 KiB
C
209 lines
5.9 KiB
C
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/*=============================================================================
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This file is part of FLINT.
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FLINT is free software; you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation; either version 2 of the License, or
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(at your option) any later version.
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FLINT is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with FLINT; if not, write to the Free Software
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Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
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=============================================================================*/
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/******************************************************************************
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Copyright (C) 2010 Sebastian Pancratz
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Copyright (C) 2010 William Hart
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Copyright (C) 2011 Fredrik Johansson
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Copyright (C) 2012 Lina Kulakova
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Copyright (C) 2013 Martin Lee
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******************************************************************************/
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#undef ulong
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#define ulong ulongxx/* interferes with system includes */
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#include <stdlib.h>
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#undef ulong
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#include <gmp.h>
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#define ulong mp_limb_t
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#include "flint.h"
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#include "fmpz_vec.h"
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#include "fmpz_mod_poly.h"
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#include "long_extras.h"
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void
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_fmpz_mod_poly_powmod_x_fmpz_preinv(fmpz * res, const fmpz_t e, const fmpz * f,
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slong lenf, const fmpz* finv, slong lenfinv,
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const fmpz_t p)
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{
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fmpz * T, * Q;
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slong lenT, lenQ;
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slong i, window, l, c;
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lenT = 2 * lenf - 3;
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lenQ = lenT - lenf + 1;
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T = _fmpz_vec_init(lenT + lenQ);
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Q = T + lenT;
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fmpz_one (res);
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l = z_sizeinbase (lenf - 1, 2) - 2;
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window = WORD(0);
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window = (WORD(1) << l);
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c = l;
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i = fmpz_sizeinbase(e, 2) - 2;
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if (i <= l)
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{
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window = WORD(0);
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window = (WORD(1) << i);
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c = i;
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l = i;
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}
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if (c == 0)
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{
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_fmpz_mod_poly_shift_left(T, res, lenf - 1, window);
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_fmpz_mod_poly_divrem_newton_n_preinv(Q, res, T, lenf - 1 + window, f,
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lenf, finv, lenfinv, p);
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c = l + 1;
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window = WORD(0);
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}
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for (; i >= 0; i--)
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{
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_fmpz_mod_poly_sqr(T, res, lenf - 1, p);
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_fmpz_mod_poly_divrem_newton_n_preinv(Q, res, T, 2 * lenf - 3, f, lenf,
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finv, lenfinv, p);
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c--;
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if (fmpz_tstbit(e, i))
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{
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if (window == WORD(0) && i <= l - 1)
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c = i;
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if ( c >= 0)
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window = window | (WORD(1) << c);
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}
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else if (window == WORD(0))
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c = l + 1;
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if (c == 0)
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{
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_fmpz_mod_poly_shift_left(T, res, lenf - 1, window);
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_fmpz_mod_poly_divrem_newton_n_preinv(Q, res, T, lenf - 1 + window,
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f, lenf, finv, lenfinv, p);
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c = l + 1;
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window = WORD(0);
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}
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}
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_fmpz_vec_clear(T, lenT + lenQ);
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}
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void
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fmpz_mod_poly_powmod_x_fmpz_preinv(fmpz_mod_poly_t res, const fmpz_t e,
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const fmpz_mod_poly_t f, const fmpz_mod_poly_t finv)
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{
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slong lenf = f->length;
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slong trunc = lenf - 1;
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fmpz_mod_poly_t tmp;
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if (lenf == 0)
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{
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flint_printf("Exception (fmpz_mod_poly_powmod_x_fmpz_preinv)."
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"Divide by zero\n");
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abort();
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}
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if (fmpz_sgn(e) < 0)
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{
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flint_printf("Exception (fmpz_mod_poly_powmod_x_fmpz_preinv)."
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"Negative exp not implemented\n");
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abort();
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}
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if (lenf == 1)
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{
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fmpz_mod_poly_zero(res);
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return;
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}
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if (lenf == 2)
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{
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fmpz_mod_poly_t r, poly;
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fmpz_mod_poly_init(tmp, &res->p);
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fmpz_mod_poly_init(r, &res->p);
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fmpz_mod_poly_init2(poly, &res->p, 2);
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fmpz_mod_poly_set_coeff_ui (poly, 1, 1);
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fmpz_mod_poly_divrem(tmp, r, poly, f);
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fmpz_mod_poly_powmod_fmpz_binexp_preinv(res, r, e, f, finv);
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fmpz_mod_poly_clear(tmp);
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fmpz_mod_poly_clear(r);
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fmpz_mod_poly_clear(poly);
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return;
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}
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if (fmpz_abs_fits_ui(e))
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{
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ulong exp = fmpz_get_ui(e);
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if (exp <= 2)
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{
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if (exp == UWORD(0))
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{
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fmpz_mod_poly_fit_length(res, 1);
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fmpz_one(res->coeffs);
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_fmpz_mod_poly_set_length(res, 1);
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}
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else if (exp == UWORD(1))
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{
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fmpz_mod_poly_t r;
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fmpz_mod_poly_init2(r, &f->p, 2);
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fmpz_mod_poly_set_coeff_ui(r, 1, 1);
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fmpz_mod_poly_init(tmp, &f->p);
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fmpz_mod_poly_divrem(tmp, res, r, f);
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fmpz_mod_poly_clear(tmp);
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fmpz_mod_poly_clear(r);
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}
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else
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{
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fmpz_mod_poly_init2(tmp, &f->p, 3);
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fmpz_mod_poly_set_coeff_ui(tmp, 1, 1);
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fmpz_mod_poly_mulmod(res, tmp, tmp, f);
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fmpz_mod_poly_clear(tmp);
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}
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return;
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}
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}
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if ((res == f) || (res == finv))
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{
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fmpz_mod_poly_init2(tmp, &f->p, trunc);
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_fmpz_mod_poly_powmod_x_fmpz_preinv(tmp->coeffs, e, f->coeffs, lenf,
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finv->coeffs, finv->length, &f->p);
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fmpz_mod_poly_swap(res, tmp);
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fmpz_mod_poly_clear(tmp);
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}
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else
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{
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fmpz_mod_poly_fit_length(res, trunc);
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_fmpz_mod_poly_powmod_x_fmpz_preinv(res->coeffs, e, f->coeffs, lenf,
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finv->coeffs, finv->length, &f->p);
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}
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_fmpz_mod_poly_set_length(res, trunc);
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_fmpz_mod_poly_normalise(res);
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}
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