/*============================================================================= 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) 2012 Fredrik Johansson ******************************************************************************/ #ifndef FMPCB_MAT_H #define FMPCB_MAT_H #include "fmprb.h" #include "fmpcb.h" #include "fmpz_mat.h" #include "fmpq_mat.h" #include "fmprb_mat.h" typedef struct { fmpcb_struct * entries; long r; long c; fmpcb_struct ** rows; } fmpcb_mat_struct; typedef fmpcb_mat_struct fmpcb_mat_t[1]; #define fmpcb_mat_entry(mat,i,j) ((mat)->rows[i] + (j)) #define fmpcb_mat_nrows(mat) ((mat)->r) #define fmpcb_mat_ncols(mat) ((mat)->c) /* Memory management */ void fmpcb_mat_init(fmpcb_mat_t mat, long r, long c); void fmpcb_mat_clear(fmpcb_mat_t mat); static __inline__ void fmpcb_mat_swap(fmpcb_mat_t mat1, fmpcb_mat_t mat2) { fmpcb_mat_struct t = *mat1; *mat1 = *mat2; *mat2 = t; } /* Conversions */ void fmpcb_mat_set(fmpcb_mat_t dest, const fmpcb_mat_t src); void fmpcb_mat_set_fmpz_mat(fmpcb_mat_t dest, const fmpz_mat_t src); void fmpcb_mat_set_fmpq_mat(fmpcb_mat_t dest, const fmpq_mat_t src, long prec); /* I/O */ void fmpcb_mat_printd(const fmpcb_mat_t mat, long digits); /* Comparisons */ int fmpcb_mat_equal(const fmpcb_mat_t mat1, const fmpcb_mat_t mat2); int fmpcb_mat_contains_fmpq_mat(const fmpcb_mat_t mat1, const fmpq_mat_t mat2); int fmpcb_mat_contains_fmpz_mat(const fmpcb_mat_t mat1, const fmpz_mat_t mat2); /* Special matrices */ void fmpcb_mat_zero(fmpcb_mat_t mat); void fmpcb_mat_one(fmpcb_mat_t mat); /* Arithmetic */ void fmpcb_mat_neg(fmpcb_mat_t dest, const fmpcb_mat_t src); void fmpcb_mat_add(fmpcb_mat_t res, const fmpcb_mat_t mat1, const fmpcb_mat_t mat2, long prec); void fmpcb_mat_sub(fmpcb_mat_t res, const fmpcb_mat_t mat1, const fmpcb_mat_t mat2, long prec); void fmpcb_mat_mul(fmpcb_mat_t res, const fmpcb_mat_t mat1, const fmpcb_mat_t mat2, long prec); void fmpcb_mat_pow_ui(fmpcb_mat_t B, const fmpcb_mat_t A, ulong exp, long prec); /* Solving */ static __inline__ void fmpcb_mat_swap_rows(fmpcb_mat_t mat, long * perm, long r, long s) { if (r != s) { fmpcb_struct * u; long t; if (perm != NULL) { t = perm[s]; perm[s] = perm[r]; perm[r] = t; } u = mat->rows[s]; mat->rows[s] = mat->rows[r]; mat->rows[r] = u; } } long fmpcb_mat_find_pivot_partial(const fmpcb_mat_t mat, long start_row, long end_row, long c); int fmpcb_mat_lu(long * P, fmpcb_mat_t LU, const fmpcb_mat_t A, long prec); void fmpcb_mat_solve_lu_precomp(fmpcb_mat_t X, const long * perm, const fmpcb_mat_t A, const fmpcb_mat_t B, long prec); int fmpcb_mat_solve(fmpcb_mat_t X, const fmpcb_mat_t A, const fmpcb_mat_t B, long prec); int fmpcb_mat_inv(fmpcb_mat_t X, const fmpcb_mat_t A, long prec); void fmpcb_mat_det(fmpcb_t det, const fmpcb_mat_t A, long prec); #endif