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/*
* PARSEC - TGA Format Functions
*
* $Author: uberlinuxguy $ - $Date: 2004/09/26 03:43:42 $
*
* Orginally written by:
* Copyright (c) Markus Hadwiger <msh@parsec.org> 1998-2001
*
* This program 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.
*
* This program 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 this program; if not, write to the Free Software
* Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
*/
// C library
#include <stddef.h>
#include <stdio.h>
#include <stdlib.h>
#include <string.h>
// compilation flags/debug support
#include "config.h"
#include "debug.h"
// general definitions
#include "general.h"
#include "objstruc.h"
// global externals
#include "globals.h"
// local module header
#include "img_tga.h"
// proprietary module headers
#include "con_aux.h"
#include "e_color.h"
#include "e_supp.h"
#include "img_api.h"
#include "img_conv.h"
#include "img_load.h"
#include "img_supp.h"
#include "sys_file.h"
// string constants -----------------------------------------------------------
//
static const char err_read_header[] = "error reading tga header.";
static const char err_read_data[] = "error reading tga image data.";
static const char err_header_invalid[] = "tga header invalid.";
static const char err_write_header[] = "error writing tga header.";
static const char err_write_raw_image[] = "error writing raw tga image data.";
static const char err_write_raw_frame[] = "error writing tga raw frame.";
static const char err_write_rep_frame[] = "error writing tga rep frame.";
static const char no_tex_file_mem[] = "texture file too big.";
// tga file types -------------------------------------------------------------
//
#define TGA_NULL 0
#define TGA_CMAP 1
#define TGA_TRUE 2
#define TGA_MONO 3
#define TGA_CMAP_RLE 9
#define TGA_TRUE_RLE 10
#define TGA_MONO_RLE 11
// tga file header ------------------------------------------------------------
//
struct tga_header_s {
byte IDLength;
byte CMapType;
byte ImgType;
byte CMapStartLo;
byte CMapStartHi;
byte CMapLengthLo;
byte CMapLengthHi;
byte CMapDepth;
byte XOffSetLo;
byte XOffSetHi;
byte YOffSetLo;
byte YOffSetHi;
byte WidthLo;
byte WidthHi;
byte HeightLo;
byte HeightHi;
byte PixelDepth;
byte ImageDescriptor;
};
//NOTE:
// the word members of struct tga_header_s are separated into their lo- and
// hi-bytes for independence from endianness and structure packing.
#define GET_CMAPSTART(s) MAKE_WORD( (s)->CMapStartLo, (s)->CMapStartHi )
#define GET_CMAPLENGTH(s) MAKE_WORD( (s)->CMapLengthLo, (s)->CMapLengthHi )
#define GET_XOFFSET(s) MAKE_WORD( (s)->XOffsetLo, (s)->XOffsetHi )
#define GET_YOFFSET(s) MAKE_WORD( (s)->YOffsetLo, (s)->YOffsetHi )
#define GET_WIDTH(s) MAKE_WORD( (s)->WidthLo, (s)->WidthHi )
#define GET_HEIGHT(s) MAKE_WORD( (s)->HeightLo, (s)->HeightHi )
// valid values of AUXDATA_SCREENSHOT_SUBFORMAT when output format is tga -----
//
#define SCREENSHOT_SUBFORMAT_COMPRESSED 0
#define SCREENSHOT_SUBFORMAT_UNCOMPRESSED 1
// save buffer in tga format --------------------------------------------------
//
int TGA_SaveBuffer( const char *filename, char *buff, int width, int height )
{
ASSERT( filename != NULL );
ASSERT( buff != NULL );
ASSERT( width > 0 );
ASSERT( height > 0 );
FILE *fp = fopen(filename, "wb");
if (fp == NULL) {
MSGOUT("Error opening file \"%s\" for writing.\n", filename);
return FALSE;
}
word cmapstart = 0;
word cmaplength = 0;
word xoffset = 0;
word yoffset = 0;
// fill header
tga_header_s header;
header.IDLength = 0; // no image id field
header.CMapType = 0; // no color map
header.ImgType = TGA_TRUE_RLE; // rle compressed true color
header.CMapStartLo = LO_BYTE( cmapstart );
header.CMapStartHi = HI_BYTE( cmapstart );
header.CMapLengthLo = LO_BYTE( cmaplength );
header.CMapLengthHi = HI_BYTE( cmaplength );
header.CMapDepth = 0;
header.XOffSetLo = LO_BYTE( xoffset );
header.XOffSetHi = HI_BYTE( xoffset );
header.YOffSetLo = LO_BYTE( yoffset );
header.YOffSetHi = HI_BYTE( yoffset );
header.WidthLo = LO_BYTE( width ); // width in pixels
header.WidthHi = HI_BYTE( width );
header.HeightLo = LO_BYTE( height ); // height in pixels
header.HeightHi = HI_BYTE( height );
header.PixelDepth = 24; // RGB888 image
header.ImageDescriptor = 0x20; // top left scan order
// allow uncompressed images
if ( AUXDATA_SCREENSHOT_SUBFORMAT == SCREENSHOT_SUBFORMAT_UNCOMPRESSED )
header.ImgType = TGA_TRUE; // uncompressed true color image
// write header
size_t numwritten = fwrite( &header, 1, sizeof( header ), fp );
if ( numwritten != sizeof( header ) ) {
MSGOUT( err_write_header );
fclose(fp);
return FALSE;
}
if ( AUXDATA_SCREENSHOT_SUBFORMAT == SCREENSHOT_SUBFORMAT_UNCOMPRESSED ) {
// 24-bit pixels
size_t datasize = width * height * 3;
// swap (R,G,B) byte-order
byte *curswp = (byte *) buff;
byte *beyond = curswp + datasize;
for ( ; curswp < beyond; curswp += 3 ) {
curswp[ 0 ] ^= curswp[ 2 ];
curswp[ 2 ] ^= curswp[ 0 ];
curswp[ 0 ] ^= curswp[ 2 ];
}
// write uncompressed data
numwritten = fwrite( buff, 1, datasize, fp );
if ( numwritten != datasize ) {
MSGOUT( err_write_raw_image );
fclose(fp);
return FALSE;
}
} else {
ASSERT( AUXDATA_SCREENSHOT_SUBFORMAT == SCREENSHOT_SUBFORMAT_COMPRESSED );
// compress and save each line separately
byte *img = (byte *) buff;
for ( int line = 0; line < height; line++ ) {
// process all columns of current line
int curcol = 0;
while ( curcol < width ) {
byte cur_r;
byte cur_g;
byte cur_b;
int copycount = 0;
byte *copyfrom = img;
while ( ( copycount < 128 ) && ( curcol < width ) ) {
// fetch current pixel
cur_r = img[ 0 ];
cur_g = img[ 1 ];
cur_b = img[ 2 ];
// advance one to the right
img += 3;
curcol++;
// count last pixel in line
if ( curcol == width ) {
copycount++;
break;
}
// stop if identical pixels found
if ( ( img[ 0 ] == cur_r ) &&
( img[ 1 ] == cur_g ) &&
( img[ 2 ] == cur_b ) )
break;
// count unequal pixels
copycount++;
}
// save raw frame
if ( copycount > 0 ) {
byte cpcnt = ( copycount - 1 );
if ( fwrite( &cpcnt, 1, 1, fp ) != 1 ) {
MSGOUT( err_write_raw_frame );
fclose(fp);
return FALSE;
}
// swap (R,G,B) byte-order
byte *curswp = copyfrom;
byte *beyond = copyfrom + copycount * 3;
for ( ; curswp < beyond; curswp += 3 ) {
curswp[ 0 ] ^= curswp[ 2 ];
curswp[ 2 ] ^= curswp[ 0 ];
curswp[ 0 ] ^= curswp[ 2 ];
}
if ( fwrite( copyfrom, 3, copycount, fp ) != (size_t)copycount ) {
MSGOUT( err_write_raw_frame );
fclose(fp);
return FALSE;
}
}
// continue copying if count overflowed
if ( ( copycount == 128 ) || ( curcol == width ) )
continue;
// create rep frame
int repcount = 1;
byte *reppix = img;
while ( ( img[ 0 ] == cur_r ) &&
( img[ 1 ] == cur_g ) &&
( img[ 2 ] == cur_b ) &&
( repcount < 128 ) && ( curcol < width ) ) {
// count duplicate pixel and advance
repcount++;
img += 3;
curcol++;
}
// we found at least two identical pixels
ASSERT( repcount > 1 );
// swap (R,G,B) byte-order
reppix[ 0 ] ^= reppix[ 2 ];
reppix[ 2 ] ^= reppix[ 0 ];
reppix[ 0 ] ^= reppix[ 2 ];
// save rep frame
byte rpcnt = ( repcount - 1 ) | 0x80;
if ( fwrite( &rpcnt, 1, 1, fp ) != 1 ) {
MSGOUT( err_write_rep_frame );
fclose(fp);
return FALSE;
}
if ( fwrite( reppix, 3, 1, fp ) != 1 ) {
MSGOUT( err_write_rep_frame );
fclose(fp);
return FALSE;
}
}
}
}
fclose(fp);
return TRUE;
}
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