140 lines
3.8 KiB
C
140 lines
3.8 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) 2012 Sebastian Pancratz
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******************************************************************************/
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/*
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Demo FLINT program to demonstrate some use of the
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function fmpz_mod_poly_radix() for radix conversion
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over $\mathbf{Z}/n \mathbf{Z}$.
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*/
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#include <stdlib.h>
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#include <stdio.h>
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#include <time.h>
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#include <gmp.h>
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#include "flint.h"
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#include "fmpz_mod_poly.h"
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int main(void)
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{
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const slong n = 12376;
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const slong N = n / 26;
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clock_t c0, c1;
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double c;
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slong i;
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fmpz_t a, m;
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fmpz_mod_poly_t A, B, r, t;
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fmpz_mod_poly_radix_t S;
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fmpz_mod_poly_struct **b;
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FLINT_TEST_INIT(state);
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fmpz_init(a);
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fmpz_init(m);
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fmpz_set_ui(m, 17);
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fmpz_pow_ui(m, m, 26);
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fmpz_mod_poly_init(A, m);
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fmpz_mod_poly_init(B, m);
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fmpz_mod_poly_init(r, m);
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fmpz_mod_poly_init(t, m);
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fmpz_mod_poly_set_coeff_ui(A, 3, 5);
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fmpz_mod_poly_set_coeff_ui(A, 4, 4);
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fmpz_mod_poly_set_coeff_ui(B, 0, 1);
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fmpz_mod_poly_set_coeff_ui(B, 2, 1);
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fmpz_mod_poly_set_coeff_ui(B, 3, 5);
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fmpz_mod_poly_set_coeff_ui(B, 4, 1);
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fmpz_mod_poly_set_coeff_ui(B, 5, 5);
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fmpz_mod_poly_set_coeff_ui(B, 8, 8);
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fmpz_mod_poly_set_coeff_ui(B, 9, 8);
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fmpz_mod_poly_set_coeff_ui(B, 10, 5);
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fmpz_mod_poly_set_coeff_ui(B, 12, 6);
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fmpz_mod_poly_set_coeff_ui(B, 13, 1);
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fmpz_mod_poly_pow(r, A, 3);
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fmpz_set_ui(a, 4);
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fmpz_mod_poly_scalar_mul_fmpz(r, r, a);
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fmpz_mod_poly_pow(t, B, 2);
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fmpz_set_ui(a, 27);
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fmpz_mod_poly_scalar_mul_fmpz(t, t, a);
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fmpz_mod_poly_add(r, r, t);
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b = flint_malloc((N + 1) * sizeof(fmpz_mod_poly_struct *));
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for (i = 0; i <= N; i++)
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{
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b[i] = flint_malloc(sizeof(fmpz_mod_poly_struct));
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fmpz_mod_poly_init(b[i], m);
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}
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fmpz_mod_poly_randtest(t, state, n + 1);
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flint_printf("Radix conversion\n");
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flint_printf("----------------\n");
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flint_printf(" Degree of the radix: %wd\n", fmpz_mod_poly_degree(r));
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flint_printf(" Bit size of the modulus: %wd\n", (slong) fmpz_bits(fmpz_mod_poly_modulus(r)));
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flint_printf(" Degree of the input: %wd\n", fmpz_mod_poly_degree(t));
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c0 = clock();
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fmpz_mod_poly_radix_init(S, r, n + 1);
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c1 = clock();
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c = (double) (c1 - c0) / CLOCKS_PER_SEC;
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flint_printf(" Precomputation: %fs\n", c);
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c0 = clock();
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fmpz_mod_poly_radix(b, t, S);
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c1 = clock();
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c = (double) (c1 - c0) / CLOCKS_PER_SEC;
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flint_printf(" Conversion: %fs\n", c);
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fmpz_clear(a);
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fmpz_clear(m);
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fmpz_mod_poly_clear(A);
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fmpz_mod_poly_clear(B);
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fmpz_mod_poly_clear(r);
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fmpz_mod_poly_clear(t);
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fmpz_mod_poly_radix_clear(S);
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for (i = 0; i <= N; i++)
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{
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fmpz_mod_poly_clear(b[i]);
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flint_free(b[i]);
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}
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flint_free(b);
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flint_randclear(state);
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return EXIT_SUCCESS;
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}
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