/*============================================================================= This file is part of ARB. ARB 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. ARB 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 ARB; if not, write to the Free Software Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA =============================================================================*/ /****************************************************************************** Copyright (C) 2013 Fredrik Johansson ******************************************************************************/ #include "fmprb_poly.h" void _fmprb_poly_evaluate2_rectangular(fmprb_t y, fmprb_t z, fmprb_srcptr poly, long len, const fmprb_t x, long prec) { long i, j, m, r; fmprb_ptr xs; fmprb_t s, t, c; if (len < 3) { if (len == 0) { fmprb_zero(y); fmprb_zero(z); } else if (len == 1) { fmprb_set_round(y, poly + 0, prec); fmprb_zero(z); } else if (len == 2) { fmprb_mul(y, x, poly + 1, prec); fmprb_add(y, y, poly + 0, prec); fmprb_set_round(z, poly + 1, prec); } return; } m = n_sqrt(len) + 1; m *= 1; r = (len + m - 1) / m; xs = _fmprb_vec_init(m + 1); fmprb_init(s); fmprb_init(t); fmprb_init(c); _fmprb_vec_set_powers(xs, x, m + 1, prec); fmprb_set(y, poly + (r - 1) * m); for (j = 1; (r - 1) * m + j < len; j++) fmprb_addmul(y, xs + j, poly + (r - 1) * m + j, prec); for (i = r - 2; i >= 0; i--) { fmprb_set(s, poly + i * m); for (j = 1; j < m; j++) fmprb_addmul(s, xs + j, poly + i * m + j, prec); fmprb_mul(y, y, xs + m, prec); fmprb_add(y, y, s, prec); } len -= 1; r = (len + m - 1) / m; fmprb_mul_ui(z, poly + (r - 1) * m + 1, (r - 1) * m + 1, FMPR_PREC_EXACT); for (j = 1; (r - 1) * m + j < len; j++) { fmprb_mul_ui(c, poly + (r - 1) * m + j + 1, (r - 1) * m + j + 1, FMPR_PREC_EXACT); fmprb_addmul(z, xs + j, c, prec); } for (i = r - 2; i >= 0; i--) { fmprb_mul_ui(s, poly + i * m + 1, i * m + 1, FMPR_PREC_EXACT); for (j = 1; j < m; j++) { fmprb_mul_ui(c, poly + i * m + j + 1, i * m + j + 1, FMPR_PREC_EXACT); fmprb_addmul(s, xs + j, c, prec); } fmprb_mul(z, z, xs + m, prec); fmprb_add(z, z, s, prec); } _fmprb_vec_clear(xs, m + 1); fmprb_clear(s); fmprb_clear(t); fmprb_clear(c); } void fmprb_poly_evaluate2_rectangular(fmprb_t r, fmprb_t s, const fmprb_poly_t f, const fmprb_t a, long prec) { _fmprb_poly_evaluate2_rectangular(r, s, f->coeffs, f->length, a, prec); }