/****************************************************************************** * * M4RI: Linear Algebra over GF(2) * * Copyright (C) 2007 Gregory Bard * Copyright (C) 2007 Martin Albrecht * * Distributed under the terms of the GNU General Public License (GPL) * version 2 or higher. * * This code 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. * * The full text of the GPL is available at: * * http://www.gnu.org/licenses/ ******************************************************************************/ #ifdef HAVE_CONFIG_H #include "config.h" #endif #include #include "misc.h" #include "graycode.h" code **m4ri_codebook = NULL; int m4ri_gray_code(int number, int length) { int lastbit = 0; int res = 0; for(int i = length - 1; i >= 0; --i) { int bit = number & (1 << i); res |= (lastbit >> 1) ^ bit; lastbit = bit; } return res; } void m4ri_build_code(int *ord, int *inc, int l) { for(int i = 0 ; i < (int)__M4RI_TWOPOW(l); ++i) { ord[i] = m4ri_gray_code(i, l); } for(int i = l; i > 0; --i) { for(int j = 1; j < (int)__M4RI_TWOPOW(i) + 1; ++j) { inc[j * __M4RI_TWOPOW(l - i) - 1] = l - i; } } } void m4ri_build_all_codes() { if (m4ri_codebook) { return; } m4ri_codebook=(code**)m4ri_mm_calloc(__M4RI_MAXKAY + 1, sizeof(code*)); for(int k = 1; k < __M4RI_MAXKAY + 1; ++k) { m4ri_codebook[k] = (code*)m4ri_mm_calloc(1, sizeof(code)); m4ri_codebook[k]->ord =(int*)m4ri_mm_calloc(__M4RI_TWOPOW(k), sizeof(int)); m4ri_codebook[k]->inc =(int*)m4ri_mm_calloc(__M4RI_TWOPOW(k), sizeof(int)); m4ri_build_code(m4ri_codebook[k]->ord, m4ri_codebook[k]->inc, k); } } void m4ri_destroy_all_codes() { if (!m4ri_codebook) { return; } for(int i = 1; i < __M4RI_MAXKAY + 1; ++i) { m4ri_mm_free(m4ri_codebook[i]->inc); m4ri_mm_free(m4ri_codebook[i]->ord); m4ri_mm_free(m4ri_codebook[i]); } m4ri_mm_free(m4ri_codebook); m4ri_codebook = NULL; } int m4ri_opt_k(int a, int b, int c) { int n = MIN(a, b); int res = MIN(__M4RI_MAXKAY, MAX(1, (int)(0.75 * (1 + log2_floor(n)))) ); return res; }