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git-svn-id: svn+ssh://svn.code.sf.net/p/wsjt/wsjt/branches/wsjtx@6437 ab8295b8-cf94-4d9e-aec4-7959e3be5d79
114 lines
4.3 KiB
C
Executable File
114 lines
4.3 KiB
C
Executable File
/* MOD2DENSE.H - Interface to module for handling dense mod2 matrices. */
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/* Copyright (c) 1995-2012 by Radford M. Neal.
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*
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* Permission is granted for anyone to copy, use, modify, and distribute
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* these programs and accompanying documents for any purpose, provided
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* this copyright notice is retained and prominently displayed, and note
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* is made of any changes made to these programs. These programs and
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* documents are distributed without any warranty, express or implied.
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* As the programs were written for research purposes only, they have not
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* been tested to the degree that would be advisable in any important
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* application. All use of these programs is entirely at the user's own
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* risk.
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*/
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/* This module implements operations on matrices of mod2 elements (bits,
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with addition and multiplication being done modulo 2). The matrices
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are stored with consecutive bits of a column packed into words, and
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the procedures are implemented where possible using bit operations
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on these words. This is an appropriate representation when the matrices
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are dense (ie, 0s and 1s are about equally frequent).
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All procedures in this module display an error message on standard
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error and terminate the program if passed an invalid argument (indicative
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of a programming error), or if memory cannot be allocated. Errors from
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invalid contents of a file result in an error code being returned to the
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caller, with no message being printed by this module.
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*/
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#include <stdint.h> /* Has the definition of uint32_t used below */
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/* PACKING OF BITS INTO WORDS. Bits are packed into 32-bit words, with
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the low-order bit coming first. */
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typedef uint32_t mod2word; /* Data type that holds packed bits. If uint32_t
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doesn't exist, change it to unsigned long */
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#define mod2_wordsize 32 /* Number of bits that fit in a mod2word. Can't
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be increased without changing intio module */
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#define mod2_wordsize_shift 5 /* Amount to shift by to divide by wordsize */
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#define mod2_wordsize_mask 0x1f /* What to AND with to produce mod wordsize */
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/* Extract the i'th bit of a mod2word. */
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#define mod2_getbit(w,i) (((w)>>(i))&1)
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/* Make a word like w, but with the i'th bit set to 1 (if it wasn't already). */
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#define mod2_setbit1(w,i) ((w)|(1<<(i)))
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/* Make a word like w, but with the i'th bit set to 0 (if it wasn't already). */
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#define mod2_setbit0(w,i) ((w)&(~(1<<(i))))
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/* STRUCTURE REPRESENTING A DENSE MATRIX. These structures are dynamically
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allocated using mod2dense_allocate (or by other procedures that call
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mod2dense_allocate). They should be freed with mod2dense_free when no
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longer required.
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Direct access to this structure should be avoided except in low-level
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routines. Use the macros and procedures defined below instead. */
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typedef struct
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{
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int n_rows; /* Number of rows in the matrix */
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int n_cols; /* Number of columns in the matrix */
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int n_words; /* Number of words used to store a column of bits */
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mod2word **col; /* Pointer to array of pointers to columns */
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mod2word *bits; /* Pointer to storage block for bits in this matrix
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(pieces of this block are pointed to from col) */
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} mod2dense;
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/* MACROS. */
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#define mod2dense_rows(m) ((m)->n_rows) /* Get the number of rows or columns */
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#define mod2dense_cols(m) ((m)->n_cols) /* in a matrix */
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/* PROCEDURES. */
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mod2dense *mod2dense_allocate (int, int);
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void mod2dense_free (mod2dense *);
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void mod2dense_clear (mod2dense *);
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void mod2dense_copy (mod2dense *, mod2dense *);
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void mod2dense_copyrows (mod2dense*, mod2dense *, int *);
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void mod2dense_copycols (mod2dense*, mod2dense *, int *);
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void mod2dense_print (FILE *, mod2dense *);
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int mod2dense_write (FILE *, mod2dense *);
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mod2dense *mod2dense_read (FILE *);
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int mod2dense_get (mod2dense *, int, int);
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void mod2dense_set (mod2dense *, int, int, int);
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int mod2dense_flip(mod2dense *, int, int);
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void mod2dense_transpose (mod2dense *, mod2dense *);
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void mod2dense_add (mod2dense *, mod2dense *, mod2dense *);
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void mod2dense_multiply (mod2dense *, mod2dense *, mod2dense *);
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int mod2dense_equal (mod2dense *, mod2dense *);
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int mod2dense_invert (mod2dense *, mod2dense *);
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int mod2dense_forcibly_invert (mod2dense *, mod2dense *, int *, int *);
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int mod2dense_invert_selected (mod2dense *, mod2dense *, int *, int *);
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