/*============================================================================= 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) 2011 Fredrik Johansson ******************************************************************************/ #include #include "flint.h" #include "ulong_extras.h" #include "nmod_vec.h" #include "nmod_poly.h" void _nmod_poly_cosh_series(mp_ptr f, mp_srcptr h, slong n, nmod_t mod) { mp_ptr g = _nmod_vec_init(n); _nmod_poly_exp_expinv_series(f, g, h, n, mod); _nmod_vec_add(f, f, g, n, mod); _nmod_vec_scalar_mul_nmod(f, f, n, n_invmod(UWORD(2), mod.n), mod); _nmod_vec_clear(g); } void nmod_poly_cosh_series(nmod_poly_t g, const nmod_poly_t h, slong n) { mp_ptr g_coeffs, h_coeffs; nmod_poly_t t1; slong h_len; h_len = h->length; if (h_len > 0 && h->coeffs[0] != UWORD(0)) { flint_printf("Exception (nmod_poly_cosh_series). Constant term != 0.\n"); abort(); } if (h_len == 1 || n < 2) { nmod_poly_zero(g); if (n > 0) nmod_poly_set_coeff_ui(g, 0, UWORD(1)); return; } if (h_len < n) { h_coeffs = _nmod_vec_init(n); flint_mpn_copyi(h_coeffs, h->coeffs, h_len); flint_mpn_zero(h_coeffs + h_len, n - h_len); } else h_coeffs = h->coeffs; if (h == g && h_len >= n) { nmod_poly_init2(t1, h->mod.n, n); g_coeffs = t1->coeffs; } else { nmod_poly_fit_length(g, n); g_coeffs = g->coeffs; } _nmod_poly_cosh_series(g_coeffs, h_coeffs, n, h->mod); if (h == g && h_len >= n) { nmod_poly_swap(g, t1); nmod_poly_clear(t1); } g->length = n; if (h_len < n) _nmod_vec_clear(h_coeffs); _nmod_poly_normalise(g); }