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730 lines
15 KiB
730 lines
15 KiB
/*
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This file is part of libkdepim.
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Original compface:
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Copyright (c) James Ashton - Sydney University - June 1990.
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Additions for KDE:
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Copyright (c) 2004 Jakob Schröter <js@camaya.net>
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This library is free software; you can redistribute it and/or
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modify it under the terms of the GNU Library General Public
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License as published by the Free Software Foundation; either
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version 2 of the License, or (at your option) any later version.
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This library is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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Library General Public License for more details.
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You should have received a copy of the GNU Library General Public License
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along with this library; see the file COPYING.LIB. If not, write to
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the Free Software Foundation, Inc., 51 Franklin Street, Fifth Floor,
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Boston, MA 02110-1301, USA.
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*/
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#include "kxface.h"
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#include <kdebug.h>
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#include <tqbuffer.h>
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#include <tqcstring.h>
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#include <tqimage.h>
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#include <tqregexp.h>
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#include <tqstring.h>
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#include <tqpainter.h>
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#include <stdlib.h>
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#include <string.h>
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#define GEN(g) F[h] ^= G.g[k]; break
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#define BITSPERDIG 4
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#define DIGITS (PIXELS / BITSPERDIG)
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#define DIGSPERWORD 4
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#define WORDSPERLINE (WIDTH / DIGSPERWORD / BITSPERDIG)
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/* compressed output uses the full range of printable characters.
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* in ascii these are in a contiguous block so we just need to know
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* the first and last. The total number of printables is needed too */
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#define FIRSTPRINT '!'
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#define LASTPRINT '~'
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#define NUMPRINTS (LASTPRINT - FIRSTPRINT + 1)
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/* output line length for compressed data */
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#define MAXLINELEN 78
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/* Portable, very large unsigned integer arithmetic is needed.
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* Implementation uses arrays of WORDs. COMPs must have at least
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* twice as many bits as WORDs to handle intermediate results */
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#define COMP unsigned long
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#define WORDCARRY (1 << BITSPERWORD)
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#define WORDMASK (WORDCARRY - 1)
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#define ERR_OK 0 /* successful completion */
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#define ERR_EXCESS 1 /* completed OK but some input was ignored */
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#define ERR_INSUFF -1 /* insufficient input. Bad face format? */
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#define ERR_INTERNAL -2 /* Arithmetic overflow or buffer overflow */
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#define BLACK 0
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#define GREY 1
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#define WHITE 2
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#define MAX_XFACE_LENGTH 2048
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using namespace KPIM;
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KXFace::KXFace()
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{
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NumProbs = 0;
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}
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KXFace::~KXFace()
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{
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}
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TQString KXFace::fromImage( const TQImage &image )
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{
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if( image.isNull() )
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return TQString();
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TQImage scaledImg = image.smoothScale( 48, 48 );
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TQByteArray ba;
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TQBuffer buffer( ba );
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buffer.open( IO_WriteOnly );
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scaledImg.save( &buffer, "XBM" );
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TQString xbm( ba );
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xbm.remove( 0, xbm.tqfind( "{" ) + 1 );
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xbm.truncate( xbm.tqfind( "}" ) );
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xbm.remove( " " );
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xbm.remove( "," );
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xbm.remove( "0x" );
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xbm.remove( "\n" );
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xbm.truncate( 576 );
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TQCString tmp = TQCString( xbm.latin1() );
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uint len = tmp.length();
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for( uint i=0; i<len; ++i )
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{
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switch( tmp[i] )
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{
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case '1': tmp[i] = '8'; break;
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case '2': tmp[i] = '4'; break;
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case '3': tmp[i] = 'c'; break;
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case '4': tmp[i] = '2'; break;
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case '5': tmp[i] = 'a'; break;
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case '7': tmp[i] = 'e'; break;
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case '8': tmp[i] = '1'; break;
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case 'A':
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case 'a': tmp[i] = '5'; break;
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case 'B':
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case 'b': tmp[i] = 'd'; break;
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case 'C':
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case 'c': tmp[i] = '3'; break;
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case 'D':
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case 'd': tmp[i] = 'b'; break;
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case 'E':
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case 'e': tmp[i] = '7'; break;
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}
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if ( i % 2 )
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{
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char t = tmp[i];
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tmp[i] = tmp[i-1];
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tmp[i-1] = t;
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}
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}
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tmp.tqreplace( TQRegExp( "(\\w{12})" ), "\\1\n" );
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tmp.tqreplace( TQRegExp( "(\\w{4})" ), "0x\\1," );
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len = tmp.length();
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char *fbuf = (char *)malloc( len + 1 );
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strncpy( fbuf, (const char *)tmp, len );
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fbuf[len] = '\0';
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if ( !( status = setjmp( comp_env ) ) )
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{
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ReadFace( fbuf );
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GenFace();
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CompAll( fbuf );
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}
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TQString ret( fbuf );
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free( fbuf );
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return ret;
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}
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TQImage KXFace::toImage(const TQString &xface)
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{
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if ( xface.length() > MAX_XFACE_LENGTH )
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return TQImage();
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char *fbuf = (char *)malloc( MAX_XFACE_LENGTH );
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memset( fbuf, '\0', MAX_XFACE_LENGTH );
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strncpy( fbuf, xface.latin1(), xface.length() );
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TQCString img;
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if ( !( status = setjmp( comp_env ) ) )
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{
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UnCompAll( fbuf );/* compress otherwise */
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UnGenFace();
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img = WriteFace();
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}
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free( fbuf );
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TQImage p;
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p.loadFromData( img, "XBM" );
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return p;
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}
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//============================================================================
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// more or less original compface 1.4 source
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void KXFace::RevPush(const Prob *p)
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{
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if (NumProbs >= PIXELS * 2 - 1)
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longjmp(comp_env, ERR_INTERNAL);
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ProbBuf[NumProbs++] = (Prob *) p;
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}
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void KXFace::BigPush(Prob *p)
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{
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static unsigned char tmp;
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BigDiv(p->p_range, &tmp);
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BigMul(0);
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BigAdd(tmp + p->p_offset);
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}
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int KXFace::BigPop(register const Prob *p)
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{
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static unsigned char tmp;
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register int i;
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BigDiv(0, &tmp);
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i = 0;
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while ((tmp < p->p_offset) || (tmp >= p->p_range + p->p_offset))
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{
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p++;
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i++;
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}
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BigMul(p->p_range);
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BigAdd(tmp - p->p_offset);
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return i;
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}
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/* Divide B by a storing the result in B and the remainder in the word
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* pointer to by r
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*/
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void KXFace::BigDiv(register unsigned char a, register unsigned char *r)
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{
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register int i;
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register unsigned char *w;
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register COMP c, d;
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a &= WORDMASK;
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if ((a == 1) || (B.b_words == 0))
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{
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*r = 0;
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return;
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}
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if (a == 0) /* treat this as a == WORDCARRY */
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{ /* and just shift everything right a WORD (unsigned char)*/
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i = --B.b_words;
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w = B.b_word;
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*r = *w;
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while (i--)
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{
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*w = *(w + 1);
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w++;
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}
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*w = 0;
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return;
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}
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w = B.b_word + (i = B.b_words);
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c = 0;
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while (i--)
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{
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c <<= BITSPERWORD;
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c += (COMP)*--w;
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d = c / (COMP)a;
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c = c % (COMP)a;
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*w = (unsigned char)(d & WORDMASK);
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}
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*r = c;
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if (B.b_word[B.b_words - 1] == 0)
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B.b_words--;
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}
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/* Multiply a by B storing the result in B
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*/
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void KXFace::BigMul(register unsigned char a)
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{
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register int i;
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register unsigned char *w;
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register COMP c;
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a &= WORDMASK;
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if ((a == 1) || (B.b_words == 0))
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return;
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if (a == 0) /* treat this as a == WORDCARRY */
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{ /* and just shift everything left a WORD (unsigned char) */
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if ((i = B.b_words++) >= MAXWORDS - 1)
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longjmp(comp_env, ERR_INTERNAL);
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w = B.b_word + i;
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while (i--)
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{
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*w = *(w - 1);
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w--;
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}
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*w = 0;
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return;
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}
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i = B.b_words;
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w = B.b_word;
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c = 0;
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while (i--)
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{
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c += (COMP)*w * (COMP)a;
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*(w++) = (unsigned char)(c & WORDMASK);
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c >>= BITSPERWORD;
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}
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if (c)
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{
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if (B.b_words++ >= MAXWORDS)
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longjmp(comp_env, ERR_INTERNAL);
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*w = (COMP)(c & WORDMASK);
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}
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}
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/* Add to a to B storing the result in B
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*/
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void KXFace::BigAdd(unsigned char a)
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{
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register int i;
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register unsigned char *w;
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register COMP c;
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a &= WORDMASK;
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if (a == 0)
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return;
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i = 0;
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w = B.b_word;
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c = a;
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while ((i < B.b_words) && c)
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{
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c += (COMP)*w;
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*w++ = (unsigned char)(c & WORDMASK);
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c >>= BITSPERWORD;
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i++;
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}
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if ((i == B.b_words) && c)
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{
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if (B.b_words++ >= MAXWORDS)
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longjmp(comp_env, ERR_INTERNAL);
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*w = (COMP)(c & WORDMASK);
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}
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}
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void KXFace::BigClear()
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{
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B.b_words = 0;
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}
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TQCString KXFace::WriteFace()
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{
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register char *s;
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register int i, j, bits, digits, words;
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int digsperword = DIGSPERWORD;
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int wordsperline = WORDSPERLINE;
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TQCString t( "#define noname_width 48\n#define noname_height 48\nstatic char noname_bits[] = {\n " );
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j = t.length() - 1;
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s = F;
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bits = digits = words = i = 0;
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t.resize( MAX_XFACE_LENGTH );
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digsperword = 2;
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wordsperline = 15;
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while ( s < F + PIXELS )
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{
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if ( ( bits == 0 ) && ( digits == 0 ) )
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{
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t[j++] = '0';
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t[j++] = 'x';
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}
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if ( *(s++) )
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i = ( i >> 1 ) | 0x8;
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else
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i >>= 1;
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if ( ++bits == BITSPERDIG )
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{
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j++;
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t[j-( ( digits & 1 ) * 2 )] = *(i + HexDigits);
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bits = i = 0;
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if ( ++digits == digsperword )
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{
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if ( s >= F + PIXELS )
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break;
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t[j++] = ',';
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digits = 0;
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if ( ++words == wordsperline )
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{
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t[j++] = '\n';
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t[j++] = ' ';
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words = 0;
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}
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}
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}
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}
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t.resize( j + 1 );
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t += "};\n";
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return t;
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}
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void KXFace::UnCompAll(char *fbuf)
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{
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register char *p;
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BigClear();
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BigRead(fbuf);
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p = F;
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while (p < F + PIXELS)
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*(p++) = 0;
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UnCompress(F, 16, 16, 0);
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UnCompress(F + 16, 16, 16, 0);
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UnCompress(F + 32, 16, 16, 0);
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UnCompress(F + WIDTH * 16, 16, 16, 0);
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UnCompress(F + WIDTH * 16 + 16, 16, 16, 0);
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UnCompress(F + WIDTH * 16 + 32, 16, 16, 0);
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UnCompress(F + WIDTH * 32, 16, 16, 0);
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UnCompress(F + WIDTH * 32 + 16, 16, 16, 0);
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UnCompress(F + WIDTH * 32 + 32, 16, 16, 0);
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}
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void KXFace::UnCompress(char *f, int wid, int hei, int lev)
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{
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switch (BigPop(&levels[lev][0]))
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{
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case WHITE :
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return;
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case BLACK :
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PopGreys(f, wid, hei);
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return;
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default :
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wid /= 2;
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hei /= 2;
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lev++;
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UnCompress(f, wid, hei, lev);
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UnCompress(f + wid, wid, hei, lev);
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UnCompress(f + hei * WIDTH, wid, hei, lev);
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UnCompress(f + wid + hei * WIDTH, wid, hei, lev);
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return;
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}
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}
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void KXFace::BigWrite(register char *fbuf)
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{
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static unsigned char tmp;
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static char buf[DIGITS];
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register char *s;
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register int i;
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s = buf;
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while (B.b_words > 0)
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{
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BigDiv(NUMPRINTS, &tmp);
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*(s++) = tmp + FIRSTPRINT;
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}
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i = 7; // leave room for the field name on the first line
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*(fbuf++) = ' ';
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while (s-- > buf)
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{
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if (i == 0)
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*(fbuf++) = ' ';
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*(fbuf++) = *s;
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if (++i >= MAXLINELEN)
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{
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*(fbuf++) = '\n';
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i = 0;
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}
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}
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if (i > 0)
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*(fbuf++) = '\n';
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*(fbuf++) = '\0';
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}
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void KXFace::BigRead(register char *fbuf)
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{
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register int c;
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while (*fbuf != '\0')
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{
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c = *(fbuf++);
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if ((c < FIRSTPRINT) || (c > LASTPRINT))
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continue;
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BigMul(NUMPRINTS);
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BigAdd((unsigned char)(c - FIRSTPRINT));
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}
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}
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void KXFace::ReadFace(char *fbuf)
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{
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register int c, i;
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register char *s, *t;
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t = s = fbuf;
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for(i = strlen(s); i > 0; i--)
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{
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c = (int)*(s++);
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if ((c >= '0') && (c <= '9'))
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{
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if (t >= fbuf + DIGITS)
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{
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status = ERR_EXCESS;
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break;
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}
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*(t++) = c - '0';
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}
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else if ((c >= 'A') && (c <= 'F'))
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{
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if (t >= fbuf + DIGITS)
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{
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status = ERR_EXCESS;
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break;
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}
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*(t++) = c - 'A' + 10;
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}
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else if ((c >= 'a') && (c <= 'f'))
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{
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if (t >= fbuf + DIGITS)
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{
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status = ERR_EXCESS;
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break;
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}
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*(t++) = c - 'a' + 10;
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}
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else if (((c == 'x') || (c == 'X')) && (t > fbuf) && (*(t-1) == 0))
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t--;
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}
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if (t < fbuf + DIGITS)
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longjmp(comp_env, ERR_INSUFF);
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s = fbuf;
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t = F;
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c = 1 << (BITSPERDIG - 1);
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while (t < F + PIXELS)
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{
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*(t++) = (*s & c) ? 1 : 0;
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if ((c >>= 1) == 0)
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{
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s++;
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c = 1 << (BITSPERDIG - 1);
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}
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}
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}
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void KXFace::GenFace()
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{
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static char newp[PIXELS];
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register char *f1;
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register char *f2;
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register int i;
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f1 = newp;
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f2 = F;
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i = PIXELS;
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while (i-- > 0)
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*(f1++) = *(f2++);
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Gen(newp);
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}
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void KXFace::UnGenFace()
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{
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Gen(F);
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}
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// static
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void KXFace::Gen(register char *f)
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{
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register int m, l, k, j, i, h;
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for (j = 0; j < HEIGHT; j++)
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{
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for (i = 0; i < WIDTH; i++)
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{
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h = i + j * WIDTH;
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k = 0;
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for (l = i - 2; l <= i + 2; l++)
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for (m = j - 2; m <= j; m++)
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{
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if ((l >= i) && (m == j))
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|
continue;
|
|
if ((l > 0) && (l <= WIDTH) && (m > 0))
|
|
k = *(f + l + m * WIDTH) ? k * 2 + 1 : k * 2;
|
|
}
|
|
switch (i)
|
|
{
|
|
case 1 :
|
|
switch (j)
|
|
{
|
|
case 1 : GEN(g_22);
|
|
case 2 : GEN(g_21);
|
|
default : GEN(g_20);
|
|
}
|
|
break;
|
|
case 2 :
|
|
switch (j)
|
|
{
|
|
case 1 : GEN(g_12);
|
|
case 2 : GEN(g_11);
|
|
default : GEN(g_10);
|
|
}
|
|
break;
|
|
case WIDTH - 1 :
|
|
switch (j)
|
|
{
|
|
case 1 : GEN(g_42);
|
|
case 2 : GEN(g_41);
|
|
default : GEN(g_40);
|
|
}
|
|
break;
|
|
/* i runs from 0 to WIDTH-1, so case can never occur. I leave the code in
|
|
because it appears exactly like this in the original compface code.
|
|
case WIDTH :
|
|
switch (j)
|
|
{
|
|
case 1 : GEN(g_32);
|
|
case 2 : GEN(g_31);
|
|
default : GEN(g_30);
|
|
}
|
|
break;
|
|
*/
|
|
default :
|
|
switch (j)
|
|
{
|
|
case 1 : GEN(g_02);
|
|
case 2 : GEN(g_01);
|
|
default : GEN(g_00);
|
|
}
|
|
break;
|
|
}
|
|
}
|
|
}
|
|
}
|
|
|
|
void KXFace::PopGreys(char *f, int wid, int hei)
|
|
{
|
|
if (wid > 3)
|
|
{
|
|
wid /= 2;
|
|
hei /= 2;
|
|
PopGreys(f, wid, hei);
|
|
PopGreys(f + wid, wid, hei);
|
|
PopGreys(f + WIDTH * hei, wid, hei);
|
|
PopGreys(f + WIDTH * hei + wid, wid, hei);
|
|
}
|
|
else
|
|
{
|
|
wid = BigPop(freqs);
|
|
if (wid & 1)
|
|
*f = 1;
|
|
if (wid & 2)
|
|
*(f + 1) = 1;
|
|
if (wid & 4)
|
|
*(f + WIDTH) = 1;
|
|
if (wid & 8)
|
|
*(f + WIDTH + 1) = 1;
|
|
}
|
|
}
|
|
|
|
void KXFace::CompAll(char *fbuf)
|
|
{
|
|
Compress(F, 16, 16, 0);
|
|
Compress(F + 16, 16, 16, 0);
|
|
Compress(F + 32, 16, 16, 0);
|
|
Compress(F + WIDTH * 16, 16, 16, 0);
|
|
Compress(F + WIDTH * 16 + 16, 16, 16, 0);
|
|
Compress(F + WIDTH * 16 + 32, 16, 16, 0);
|
|
Compress(F + WIDTH * 32, 16, 16, 0);
|
|
Compress(F + WIDTH * 32 + 16, 16, 16, 0);
|
|
Compress(F + WIDTH * 32 + 32, 16, 16, 0);
|
|
BigClear();
|
|
while (NumProbs > 0)
|
|
BigPush(ProbBuf[--NumProbs]);
|
|
BigWrite(fbuf);
|
|
}
|
|
|
|
void KXFace::Compress(register char *f, register int wid, register int hei, register int lev)
|
|
{
|
|
if (AllWhite(f, wid, hei))
|
|
{
|
|
RevPush(&levels[lev][WHITE]);
|
|
return;
|
|
}
|
|
if (AllBlack(f, wid, hei))
|
|
{
|
|
RevPush(&levels[lev][BLACK]);
|
|
PushGreys(f, wid, hei);
|
|
return;
|
|
}
|
|
RevPush(&levels[lev][GREY]);
|
|
wid /= 2;
|
|
hei /= 2;
|
|
lev++;
|
|
Compress(f, wid, hei, lev);
|
|
Compress(f + wid, wid, hei, lev);
|
|
Compress(f + hei * WIDTH, wid, hei, lev);
|
|
Compress(f + wid + hei * WIDTH, wid, hei, lev);
|
|
}
|
|
|
|
int KXFace::AllWhite(char *f, int wid, int hei)
|
|
{
|
|
return ((*f == 0) && Same(f, wid, hei));
|
|
}
|
|
|
|
int KXFace::AllBlack(char *f, int wid, int hei)
|
|
{
|
|
if (wid > 3)
|
|
{
|
|
wid /= 2;
|
|
hei /= 2;
|
|
return (AllBlack(f, wid, hei) && AllBlack(f + wid, wid, hei) &&
|
|
AllBlack(f + WIDTH * hei, wid, hei) &&
|
|
AllBlack(f + WIDTH * hei + wid, wid, hei));
|
|
}
|
|
else
|
|
return (*f || *(f + 1) || *(f + WIDTH) || *(f + WIDTH + 1));
|
|
}
|
|
|
|
int KXFace::Same(register char *f, register int wid, register int hei)
|
|
{
|
|
register char val, *row;
|
|
register int x;
|
|
|
|
val = *f;
|
|
while (hei--)
|
|
{
|
|
row = f;
|
|
x = wid;
|
|
while (x--)
|
|
if (*(row++) != val)
|
|
return(0);
|
|
f += WIDTH;
|
|
}
|
|
return 1;
|
|
}
|
|
|
|
void KXFace::PushGreys(char *f, int wid, int hei)
|
|
{
|
|
if (wid > 3)
|
|
{
|
|
wid /= 2;
|
|
hei /= 2;
|
|
PushGreys(f, wid, hei);
|
|
PushGreys(f + wid, wid, hei);
|
|
PushGreys(f + WIDTH * hei, wid, hei);
|
|
PushGreys(f + WIDTH * hei + wid, wid, hei);
|
|
}
|
|
else
|
|
RevPush(freqs + *f + 2 * *(f + 1) + 4 * *(f + WIDTH) +
|
|
8 * *(f + WIDTH + 1));
|
|
}
|
|
|
|
|
|
#include "kxface.moc"
|