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864 lines
21 KiB
C
864 lines
21 KiB
C
/*
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img_mip.c - hl1 and q1 image mips
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Copyright (C) 2007 Uncle Mike
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This program is free software: you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation, either version 3 of the License, or
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(at your option) any later version.
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This program 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
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GNU General Public License for more details.
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*/
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#include "imagelib.h"
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#include "xash3d_mathlib.h"
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#include "wadfile.h"
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#include "studio.h"
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#include "sprite.h"
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#include "qfont.h"
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#include "swaplib.h"
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le_struct_begin( charinfo_swap )
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le_struct_field( charinfo, startoffset )
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le_struct_field( charinfo, charwidth )
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le_struct_end();
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le_struct_begin( qfont_swap )
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le_struct_field( qfont_t, width )
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le_struct_field( qfont_t, height )
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le_struct_field( qfont_t, rowcount )
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le_struct_field( qfont_t, rowheight )
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le_struct_array_child( qfont_t, fontinfo, charinfo_swap, NUM_GLYPHS )
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le_struct_end();
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le_struct_begin( lmp_swap )
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le_struct_field( lmp_t, width )
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le_struct_field( lmp_t, height )
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le_struct_end();
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le_struct_begin( mip_swap )
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le_struct_field( mip_t, width )
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le_struct_field( mip_t, height )
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le_struct_array( mip_t, offsets, 4 )
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le_struct_end();
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le_struct_begin( dwadinfo_swap )
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le_struct_field( dwadinfo_t, ident )
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le_struct_field( dwadinfo_t, numlumps )
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le_struct_field( dwadinfo_t, infotableofs )
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le_struct_end();
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le_struct_begin( dlumpinfo_swap )
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le_struct_field( dlumpinfo_t, filepos )
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le_struct_field( dlumpinfo_t, disksize )
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le_struct_field( dlumpinfo_t, size )
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le_struct_end();
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/*
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============
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Image_LoadPAL
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============
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*/
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qboolean Image_LoadPAL( const char *name, const byte *buffer, fs_offset_t filesize )
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{
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int rendermode = LUMP_NORMAL;
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byte pal[768];
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if( filesize > sizeof( pal ))
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{
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Con_DPrintf( S_ERROR "%s: (%s) have invalid size (%li should be less or equal than %zu)\n", __func__, name, (long)filesize, sizeof( pal ));
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return false;
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}
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else if( filesize < sizeof( pal ) && buffer != NULL )
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{
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// palette might be truncated, fill it with zeros
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memset( pal, 0, sizeof( pal ));
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memcpy( pal, buffer, filesize );
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buffer = pal;
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}
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if( name[0] == '#' )
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{
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// using palette name as rendermode
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if( Q_stristr( name, "normal" ))
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rendermode = LUMP_NORMAL;
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else if( Q_stristr( name, "masked" ))
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rendermode = LUMP_MASKED;
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else if( Q_stristr( name, "gradient" ))
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rendermode = LUMP_GRADIENT;
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else if( Q_stristr( name, "texgamma" ))
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rendermode = LUMP_TEXGAMMA;
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else if( Q_stristr( name, "valve" ))
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{
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rendermode = LUMP_HALFLIFE;
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buffer = NULL; // force to get HL palette
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}
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else if( Q_stristr( name, "id" ))
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{
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rendermode = LUMP_QUAKE1;
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buffer = NULL; // force to get Q1 palette
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}
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}
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// NOTE: image.d_currentpal not cleared with Image_Reset()
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// and stay valid any time before new call of Image_SetPalette
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Image_GetPaletteLMP( buffer, rendermode );
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Image_CopyPalette32bit();
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image.rgba = NULL; // only palette, not real image
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image.size = 1024; // expanded palette
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image.width = image.height = 0;
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image.depth = 1;
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return true;
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}
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/*
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============
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Image_LoadFNT
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============
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*/
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qboolean Image_LoadFNT( const char *name, const byte *buffer, fs_offset_t filesize )
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{
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qfont_t font;
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const byte *pal, *fin;
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size_t size;
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int numcolors;
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if( image.hint == IL_HINT_Q1 )
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return false; // Quake1 doesn't have qfonts
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if( filesize < sizeof( font ))
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return false;
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memcpy( &font, buffer, sizeof( font ));
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le_struct_swap( qfont_swap, &font );
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// last sixty four bytes - what the hell ????
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size = sizeof( qfont_t ) - 4 + ( font.height * font.width * QCHAR_WIDTH ) + sizeof( short ) + 768 + 64;
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if( size != filesize )
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{
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// oldstyle font: "conchars" or "creditsfont"
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image.width = 256; // hardcoded
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image.height = font.height;
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}
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else
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{
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// Half-Life 1.1.0.0 font style (qfont_t)
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image.width = font.width * QCHAR_WIDTH;
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image.height = font.height;
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}
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if( !Image_LumpValidSize( name ))
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return false;
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fin = buffer + sizeof( font ) - 4;
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pal = fin + (image.width * image.height);
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numcolors = pal[0] | (pal[1] << 8);
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pal += sizeof( short );
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if( numcolors == 768 || numcolors == 256 )
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{
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// g-cont. make sure that is didn't hit anything
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Image_GetPaletteLMP( pal, LUMP_MASKED );
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image.flags |= IMAGE_HAS_ALPHA; // fonts always have transparency
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}
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else
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{
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return false;
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}
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image.type = PF_INDEXED_32; // 32-bit palette
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image.depth = 1;
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return Image_AddIndexedImageToPack( fin, image.width, image.height );
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}
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/*
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======================
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Image_SetMDLPointer
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Transfer buffer pointer before Image_LoadMDL
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======================
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*/
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static void *g_mdltexdata;
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void Image_SetMDLPointer( byte *p )
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{
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g_mdltexdata = p;
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}
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/*
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============
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Image_LoadMDL
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============
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*/
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qboolean Image_LoadMDL( const char *name, const byte *buffer, fs_offset_t filesize )
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{
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byte *fin;
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size_t pixels;
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mstudiotexture_t *pin;
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int flags;
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pin = (mstudiotexture_t *)buffer;
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flags = pin->flags;
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image.width = pin->width;
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image.height = pin->height;
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pixels = image.width * image.height;
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fin = (byte *)g_mdltexdata;
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ASSERT(fin);
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g_mdltexdata = NULL;
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if( !Image_ValidSize( name ))
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return false;
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if( image.hint == IL_HINT_HL )
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{
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if( filesize < ( sizeof( *pin ) + pixels + 768 ))
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return false;
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if( FBitSet( flags, STUDIO_NF_MASKED ))
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{
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byte *pal = fin + pixels;
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Image_GetPaletteLMP( pal, LUMP_MASKED );
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image.flags |= IMAGE_HAS_ALPHA|IMAGE_ONEBIT_ALPHA;
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}
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else Image_GetPaletteLMP( fin + pixels, LUMP_TEXGAMMA );
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}
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else
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{
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return false; // unknown or unsupported mode rejected
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}
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image.type = PF_INDEXED_32; // 32-bit palete
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image.depth = 1;
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return Image_AddIndexedImageToPack( fin, image.width, image.height );
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}
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/*
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============
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Image_LoadSPR
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============
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*/
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qboolean Image_LoadSPR( const char *name, const byte *buffer, fs_offset_t filesize )
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{
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dspriteframe_t pin; // identical for q1\hl sprites
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qboolean truecolor = false;
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byte *fin;
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if( image.hint == IL_HINT_HL )
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{
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if( !image.d_currentpal )
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return false;
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}
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else if( image.hint == IL_HINT_Q1 )
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{
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Image_GetPaletteQ1();
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}
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else
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{
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// unknown mode rejected
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return false;
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}
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memcpy( &pin, buffer, sizeof( dspriteframe_t ));
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image.width = pin.width;
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image.height = pin.height;
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if( filesize < image.width * image.height )
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return false;
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if( filesize == ( image.width * image.height * 4 ))
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truecolor = true;
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// sorry, can't validate palette rendermode
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if( !Image_LumpValidSize( name )) return false;
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image.type = (truecolor) ? PF_RGBA_32 : PF_INDEXED_32; // 32-bit palete
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image.depth = 1;
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// detect alpha-channel by palette type
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switch( image.d_rendermode )
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{
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case LUMP_MASKED:
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SetBits( image.flags, IMAGE_ONEBIT_ALPHA );
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// intentionally fallthrough
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case LUMP_GRADIENT:
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SetBits( image.flags, IMAGE_HAS_ALPHA );
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break;
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case LUMP_QUAKE1:
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SetBits( image.flags, IMAGE_HAS_ALPHA );
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break;
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}
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fin = (byte *)(buffer + sizeof(dspriteframe_t));
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if( truecolor )
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{
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// spr32 support
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image.size = image.width * image.height * 4;
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image.rgba = Mem_Malloc( host.imagepool, image.size );
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memcpy( image.rgba, fin, image.size );
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SetBits( image.flags, IMAGE_HAS_COLOR ); // Color. True Color!
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return true;
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}
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return Image_AddIndexedImageToPack( fin, image.width, image.height );
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}
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/*
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============
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Image_LoadLMP
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============
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*/
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qboolean Image_LoadLMP( const char *name, const byte *buffer, fs_offset_t filesize )
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{
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lmp_t lmp;
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byte *fin, *pal;
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int rendermode;
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int i, pixels;
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if( filesize < sizeof( lmp ))
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return false;
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// valve software trick (particle palette)
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if( Q_stristr( name, "palette.lmp" ))
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return Image_LoadPAL( name, buffer, filesize );
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// id software trick (image without header)
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if( Q_stristr( name, "conchars" ) && filesize == 16384 )
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{
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image.width = image.height = 128;
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rendermode = LUMP_QUAKE1;
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filesize += sizeof( lmp );
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fin = (byte *)buffer;
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// need to remap transparent color from first to last entry
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for( i = 0; i < 16384; i++ ) if( !fin[i] ) fin[i] = 0xFF;
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}
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else
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{
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fin = (byte *)buffer;
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memcpy( &lmp, fin, sizeof( lmp ));
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le_struct_swap( lmp_swap, &lmp );
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image.width = lmp.width;
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image.height = lmp.height;
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rendermode = LUMP_NORMAL;
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fin += sizeof( lmp );
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}
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pixels = image.width * image.height;
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if( filesize < sizeof( lmp ) + pixels )
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return false;
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if( !Image_ValidSize( name ))
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return false;
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if( image.hint != IL_HINT_Q1 && filesize > (int)sizeof(lmp) + pixels )
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{
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int numcolors;
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// HACKHACK: console background image shouldn't be transparent
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if( !Q_stristr( name, "conback" ))
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{
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for( i = 0; i < pixels; i++ )
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{
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if( fin[i] == 255 )
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{
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image.flags |= IMAGE_HAS_ALPHA;
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rendermode = LUMP_MASKED;
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break;
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}
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}
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}
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pal = fin + pixels;
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numcolors = pal[0] | (pal[1] << 8);
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if( numcolors != 256 ) pal = NULL; // corrupted lump ?
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else pal += sizeof( short );
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}
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else if( image.hint != IL_HINT_HL )
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{
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image.flags |= IMAGE_HAS_ALPHA;
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rendermode = LUMP_QUAKE1;
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pal = NULL;
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}
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else
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{
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// unknown mode rejected
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return false;
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}
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Image_GetPaletteLMP( pal, rendermode );
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image.type = PF_INDEXED_32; // 32-bit palete
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image.depth = 1;
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return Image_AddIndexedImageToPack( fin, image.width, image.height );
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}
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static int Image_FindBestBlack( const uint *pal )
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{
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int min_color = 32;
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int best_black = -1;
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for( int i = 0; i < 256; i++ )
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{
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int color = pal[i] & 0xFFFFFF;
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if( color < min_color )
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{
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min_color = color;
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best_black = i;
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}
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}
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return best_black;
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}
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/*
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=============
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Image_LoadMIP
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=============
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*/
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qboolean Image_LoadMIP( const char *name, const byte *buffer, fs_offset_t filesize )
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{
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mip_t mip;
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qboolean hl_texture;
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byte *fin, *pal;
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int ofs[4], rendermode;
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int i, pixels, numcolors;
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uint reflectivity[3] = { 0, 0, 0 };
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if( filesize < sizeof( mip ))
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return false;
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memcpy( &mip, buffer, sizeof( mip ));
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if( !Image_CheckFlag( IL_HOST_ENDIAN ))
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le_struct_swap( mip_swap, &mip );
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image.width = mip.width;
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image.height = mip.height;
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if( !Image_ValidSize( name ))
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return false;
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memcpy( ofs, mip.offsets, sizeof( ofs ));
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pixels = image.width * image.height;
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if( image.hint != IL_HINT_Q1 && filesize >= (int)sizeof(mip) + ((pixels * 85)>>6) + sizeof(short) + 768)
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{
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// half-life 1.0.0.1 mip version with palette
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fin = (byte *)buffer + mip.offsets[0];
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pal = (byte *)buffer + mip.offsets[0] + (((image.width * image.height) * 85)>>6);
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numcolors = pal[0] | (pal[1] << 8);
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if( numcolors != 256 ) pal = NULL; // corrupted mip ?
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else pal += sizeof( short ); // skip colorsize
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hl_texture = true;
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// setup rendermode
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if( Q_strrchr( name, '{' ))
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{
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// NOTE: decals with 'blue base' can be interpret as colored decals
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if( !Image_CheckFlag( IL_LOAD_DECAL ) || ( pal && pal[765] == 0 && pal[766] == 0 && pal[767] == 255 ))
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{
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SetBits( image.flags, IMAGE_ONEBIT_ALPHA );
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rendermode = LUMP_MASKED;
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}
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else
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{
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// classic gradient decals
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SetBits( image.flags, IMAGE_COLORINDEX );
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rendermode = LUMP_GRADIENT;
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}
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SetBits( image.flags, IMAGE_HAS_ALPHA );
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}
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else
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{
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// NOTE: we can have luma-pixels if quake1 texture
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// converted into the hl texture but palette leave unchanged
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// this is a good reason for using fullbright pixels
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const int pal_type = Image_ComparePalette( pal );
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if( pal_type == PAL_QUAKE1 )
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{
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// check for luma pixels (but ignore liquid textures because they have no lightmap)
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if( mip.name[0] != '*' && mip.name[0] != '!' )
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{
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for( i = 0; i < image.width * image.height; i++ )
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{
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if( fin[i] > 224 )
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{
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SetBits( image.flags, IMAGE_HAS_LUMA );
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image.black_pixel = 0;
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break;
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}
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}
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}
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SetBits( image.flags, IMAGE_QUAKEPAL );
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// if texture was converted from quake to half-life with no palette changes
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// then applying texgamma might make it too dark or even outright broken
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rendermode = LUMP_NORMAL;
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}
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else
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{
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// half-life mips need texgamma applied
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rendermode = LUMP_TEXGAMMA;
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// three checks here: check if we can load luma, check the texture name and, finally,
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// validate that palette isn't NULL
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if( Image_CheckFlag( IL_ALLOW_WAD3_LUMA )
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&& ( mip.name[0] == '~' || ( mip.name[0] == '+' && isdigit( mip.name[1] ) && mip.name[2] == '~' ))
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&& pal != NULL )
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{
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SetBits( image.flags, IMAGE_HAS_LUMA );
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}
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}
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}
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Image_GetPaletteLMP( pal, rendermode );
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image.d_currentpal[255] &= 0xFFFFFF;
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if( rendermode == LUMP_TEXGAMMA && FBitSet( image.flags, IMAGE_HAS_LUMA ))
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{
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// thanks to Unkle Mike for an idea of looking best black pixel
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image.black_pixel = Image_FindBestBlack( image.d_currentpal );
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// failed to find good pixel, refuse to load luma
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if( image.black_pixel == -1 )
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ClearBits( image.flags, IMAGE_HAS_LUMA );
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}
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}
|
|
else if( image.hint != IL_HINT_HL && filesize >= (int)sizeof(mip) + ((pixels * 85)>>6))
|
|
{
|
|
// quake1 1.01 mip version without palette
|
|
fin = (byte *)buffer + mip.offsets[0];
|
|
pal = NULL; // clear palette
|
|
rendermode = LUMP_NORMAL;
|
|
|
|
hl_texture = false;
|
|
|
|
// check for luma and alpha pixels
|
|
// don't apply luma to water surfaces because they have no lightmap
|
|
if( !image.custom_palette && mip.name[0] != '*' && mip.name[0] != '!' )
|
|
{
|
|
for( i = 0; i < image.width * image.height; i++ )
|
|
{
|
|
if( fin[i] > 224 && fin[i] != 255 )
|
|
{
|
|
SetBits( image.flags, IMAGE_HAS_LUMA );
|
|
image.black_pixel = 0;
|
|
break;
|
|
}
|
|
}
|
|
}
|
|
|
|
// Arcane Dimensions has the transparent textures
|
|
if( Q_strrchr( name, '{' ))
|
|
{
|
|
for( i = 0; i < image.width * image.height; i++ )
|
|
{
|
|
if( fin[i] == 255 )
|
|
{
|
|
// don't set ONEBIT_ALPHA flag for some reasons
|
|
image.flags |= IMAGE_HAS_ALPHA;
|
|
break;
|
|
}
|
|
}
|
|
}
|
|
|
|
SetBits( image.flags, IMAGE_QUAKEPAL );
|
|
Image_GetPaletteQ1();
|
|
}
|
|
else
|
|
{
|
|
return false; // unknown or unsupported mode rejected
|
|
}
|
|
|
|
// check for quake-sky texture
|
|
if( !Q_strncmp( mip.name, "sky", 3 ) && image.width == ( image.height * 2 ))
|
|
{
|
|
// g-cont: we need to run additional checks for palette type and colors ?
|
|
image.flags |= IMAGE_QUAKESKY;
|
|
}
|
|
|
|
// check for half-life water texture
|
|
if( pal != NULL )
|
|
{
|
|
if( hl_texture && ( mip.name[0] == '!' || !Q_strnicmp( mip.name, "water", 5 )))
|
|
{
|
|
// grab the fog color
|
|
image.fogParams[0] = pal[3*3+0];
|
|
image.fogParams[1] = pal[3*3+1];
|
|
image.fogParams[2] = pal[3*3+2];
|
|
|
|
// grab the fog density
|
|
image.fogParams[3] = pal[4*3+0];
|
|
}
|
|
else if( hl_texture && ( rendermode == LUMP_GRADIENT ))
|
|
{
|
|
// grab the decal color
|
|
image.fogParams[0] = pal[255*3+0];
|
|
image.fogParams[1] = pal[255*3+1];
|
|
image.fogParams[2] = pal[255*3+2];
|
|
|
|
// calc the decal reflectivity
|
|
image.fogParams[3] = VectorAvg( image.fogParams );
|
|
}
|
|
else
|
|
{
|
|
// calc texture reflectivity
|
|
for( i = 0; i < 256; i++ )
|
|
{
|
|
reflectivity[0] += pal[i*3+0];
|
|
reflectivity[1] += pal[i*3+1];
|
|
reflectivity[2] += pal[i*3+2];
|
|
}
|
|
|
|
VectorDivide( reflectivity, 256, image.fogParams );
|
|
}
|
|
}
|
|
|
|
image.type = PF_INDEXED_32; // 32-bit palete
|
|
image.depth = 1;
|
|
|
|
return Image_AddIndexedImageToPack( fin, image.width, image.height );
|
|
}
|
|
|
|
/*
|
|
============
|
|
Image_LoadWAD
|
|
============
|
|
*/
|
|
qboolean Image_LoadWAD( const char *name, const byte *buffer, fs_offset_t filesize )
|
|
{
|
|
dwadinfo_t whdr;
|
|
const unsigned char *mipdata;
|
|
int i, j;
|
|
|
|
if( !buffer || filesize < sizeof( dwadinfo_t ))
|
|
return false;
|
|
|
|
memcpy( &whdr, buffer, sizeof( whdr ));
|
|
le_struct_swap( dwadinfo_swap, &whdr );
|
|
if( whdr.numlumps <= 0 || whdr.infotableofs <= 0 || whdr.infotableofs >= (int)filesize )
|
|
return false;
|
|
|
|
for( i = 0; i < whdr.numlumps; ++i )
|
|
{
|
|
const unsigned char *pixels, *palette, *use_palette;
|
|
unsigned char grad_palette[256 * 3];
|
|
dlumpinfo_t lump;
|
|
int mip_size;
|
|
mip_t mip;
|
|
uint32_t width, height, offset0;
|
|
uint32_t m0size, m1size, m2size, m3size;
|
|
qboolean alpha_mode = false;
|
|
unsigned char frontR = 0, frontG = 0, frontB = 0;
|
|
float t;
|
|
byte idx;
|
|
|
|
memcpy( &lump, buffer + whdr.infotableofs + i * sizeof( dlumpinfo_t ), sizeof( lump ));
|
|
le_struct_swap( dlumpinfo_swap, &lump );
|
|
|
|
if( lump.type != TYP_MIPTEX && lump.type != TYP_PALETTE )
|
|
continue;
|
|
|
|
// get lump data and validate
|
|
mipdata = (const unsigned char *)buffer + lump.filepos;
|
|
mip_size = lump.disksize;
|
|
if( lump.filepos < 0 || lump.filepos + mip_size > (int)filesize )
|
|
continue;
|
|
|
|
memcpy( &mip, mipdata, sizeof( mip ));
|
|
le_struct_swap( mip_swap, &mip );
|
|
width = mip.width;
|
|
height = mip.height;
|
|
|
|
if( width <= 0 || height <= 0 || width > 256 || height > 256 )
|
|
continue;
|
|
|
|
offset0 = mip.offsets[0];
|
|
if( offset0 == 0 || offset0 + width * height > (uint32_t)mip_size )
|
|
continue;
|
|
|
|
pixels = mipdata + offset0;
|
|
m0size = width * height;
|
|
m1size = m0size / 4;
|
|
m2size = m0size / 16;
|
|
m3size = m0size / 64;
|
|
palette = mipdata + 0x28 + m0size + m1size + m2size + m3size + 2;
|
|
use_palette = palette;
|
|
|
|
// handle gradient palette
|
|
if( lump.type == TYP_PALETTE )
|
|
{
|
|
// gradient palette
|
|
const unsigned char *frontColorPtr = palette + 255 * 3;
|
|
frontR = frontColorPtr[0];
|
|
frontG = frontColorPtr[1];
|
|
frontB = frontColorPtr[2];
|
|
for( j = 0; j < 256; ++j )
|
|
{
|
|
t = j / 255.0f;
|
|
grad_palette[j * 3 + 0] = (unsigned char)( frontR * t );
|
|
grad_palette[j * 3 + 1] = (unsigned char)( frontG * t );
|
|
grad_palette[j * 3 + 2] = (unsigned char)( frontB * t );
|
|
}
|
|
use_palette = grad_palette;
|
|
alpha_mode = true; // gradient
|
|
}
|
|
|
|
// prepare image structure
|
|
Image_Reset();
|
|
image.width = width;
|
|
image.height = height;
|
|
image.type = PF_RGBA_32;
|
|
image.flags = IMAGE_HAS_COLOR | IMAGE_HAS_ALPHA;
|
|
image.size = width * height * 4;
|
|
image.rgba = Mem_Malloc( host.imagepool, image.size );
|
|
image.palette = NULL;
|
|
|
|
// convert indexed pixels to RGBA
|
|
for( j = 0; j < (int)( width * height ); ++j )
|
|
{
|
|
idx = pixels[j];
|
|
image.rgba[j * 4 + 0] = use_palette[idx * 3 + 0];
|
|
image.rgba[j * 4 + 1] = use_palette[idx * 3 + 1];
|
|
image.rgba[j * 4 + 2] = use_palette[idx * 3 + 2];
|
|
if( alpha_mode )
|
|
image.rgba[j * 4 + 3] = idx; // soft transparency
|
|
else
|
|
image.rgba[j * 4 + 3] = ( idx == 255 ) ? 0 : 255; // classic
|
|
}
|
|
return true;
|
|
}
|
|
return false;
|
|
}
|
|
|
|
/*
|
|
============
|
|
Image_SaveWAD
|
|
============
|
|
*/
|
|
qboolean Image_SaveWAD( const char *name, rgbdata_t *pix )
|
|
{
|
|
int m0size, m1size, m2size, m3size;
|
|
byte *mip1_data = NULL, *mip2_data = NULL, *mip3_data = NULL;
|
|
const byte *palette;
|
|
byte grad_palette[256 * 3];
|
|
file_t *f;
|
|
dwadinfo_t header;
|
|
mip_t miptex;
|
|
long infotableofs;
|
|
dlumpinfo_t lump;
|
|
fs_offset_t pad;
|
|
int i;
|
|
qboolean result = false;
|
|
int lump_type = ( pix->flags & IMAGE_GRADIENT_DECAL ) ? TYP_PALETTE : TYP_MIPTEX;
|
|
short palette_size = 256;
|
|
int infotableofs32 = 0;
|
|
|
|
if( !pix || !pix->buffer )
|
|
return false;
|
|
|
|
palette = pix->palette ? pix->palette : (const byte *)image.palette;
|
|
|
|
m0size = pix->width * pix->height;
|
|
m1size = m0size / 4;
|
|
m2size = m0size / 16;
|
|
m3size = m0size / 64;
|
|
|
|
mip1_data = (byte *)Mem_Malloc( host.imagepool, m1size );
|
|
mip2_data = (byte *)Mem_Malloc( host.imagepool, m2size );
|
|
mip3_data = (byte *)Mem_Malloc( host.imagepool, m3size );
|
|
if( !mip1_data || !mip2_data || !mip3_data )
|
|
goto cleanup;
|
|
|
|
Image_GenerateMipmaps( pix->buffer, pix->width, pix->height, mip1_data, mip2_data, mip3_data );
|
|
|
|
memset( &miptex, 0, sizeof( mip_t ));
|
|
Q_strncpy( miptex.name, "{LOGO", sizeof( miptex.name ));
|
|
miptex.width = pix->width;
|
|
miptex.height = pix->height;
|
|
miptex.offsets[0] = sizeof( mip_t );
|
|
miptex.offsets[1] = miptex.offsets[0] + m0size;
|
|
miptex.offsets[2] = miptex.offsets[1] + m1size;
|
|
miptex.offsets[3] = miptex.offsets[2] + m2size;
|
|
|
|
f = FS_Open( name, "wb", false );
|
|
if( !f )
|
|
goto cleanup;
|
|
|
|
memset( &header, 0, sizeof( header ));
|
|
header.ident = IDWAD3HEADER;
|
|
header.numlumps = 1;
|
|
|
|
le_struct_swap( dwadinfo_swap, &header );
|
|
FS_Write( f, &header, sizeof( header ));
|
|
le_struct_swap( mip_swap, &miptex );
|
|
FS_Write( f, &miptex, sizeof( mip_t ));
|
|
le_struct_swap( mip_swap, &miptex );
|
|
FS_Write( f, pix->buffer, m0size );
|
|
FS_Write( f, mip1_data, m1size );
|
|
FS_Write( f, mip2_data, m2size );
|
|
FS_Write( f, mip3_data, m3size );
|
|
palette_size = LittleShort( palette_size );
|
|
FS_Write( f, &palette_size, sizeof( short ));
|
|
|
|
if( lump_type == TYP_PALETTE )
|
|
{
|
|
const byte *frontColorPtr = palette + 255 * 3;
|
|
for( i = 0; i < 256; ++i )
|
|
{
|
|
float t = i / 255.0f;
|
|
grad_palette[i * 3 + 0] = (byte)( frontColorPtr[0] * t );
|
|
grad_palette[i * 3 + 1] = (byte)( frontColorPtr[1] * t );
|
|
grad_palette[i * 3 + 2] = (byte)( frontColorPtr[2] * t );
|
|
}
|
|
FS_Write( f, grad_palette, 256 * 3 );
|
|
}
|
|
else
|
|
{
|
|
FS_Write( f, palette, 256 * 3 );
|
|
}
|
|
|
|
// padding up to a multiple of 4
|
|
pad = (( FS_Tell( f ) + 3 ) & ~3 ) - FS_Tell( f );
|
|
for( i = 0; i < pad; ++i )
|
|
FS_Write( f, (const void *)&(char){0}, 1 );
|
|
|
|
infotableofs = FS_Tell( f );
|
|
memset( &lump, 0, sizeof( lump ));
|
|
lump.filepos = sizeof( dwadinfo_t );
|
|
lump.disksize = (int)( miptex.offsets[3] + m3size + sizeof( short ) + 256 * 3 );
|
|
lump.size = lump.disksize;
|
|
lump.type = (char)lump_type;
|
|
lump.attribs = 0;
|
|
Q_strncpy( lump.name, "tempdecal", sizeof( lump.name ));
|
|
le_struct_swap( dlumpinfo_swap, &lump );
|
|
FS_Write( f, &lump, sizeof( lump ));
|
|
|
|
FS_Seek( f, offsetof( dwadinfo_t, infotableofs ), SEEK_SET );
|
|
infotableofs32 = LittleLong((int)infotableofs );
|
|
FS_Write( f, &infotableofs32, sizeof( int ));
|
|
|
|
FS_Close( f );
|
|
result = true;
|
|
|
|
cleanup:
|
|
if( mip1_data )
|
|
Mem_Free( mip1_data );
|
|
if( mip2_data )
|
|
Mem_Free( mip2_data );
|
|
if( mip3_data )
|
|
Mem_Free( mip3_data );
|
|
return result;
|
|
}
|