mirror of
https://github.com/nillerusr/source-engine.git
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439 lines
12 KiB
C++
439 lines
12 KiB
C++
//========= Copyright Valve Corporation, All rights reserved. ============//
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//
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// Purpose:
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//
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// $NoKeywords: $
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//
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//=============================================================================//
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#include <stdio.h>
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#include <stdlib.h>
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#include <sys/types.h>
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#include <sys/stat.h>
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#include "vtf/vtf.h"
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#include "tier1/UtlBuffer.h"
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#include "tier1/utlmap.h"
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#include "bitmap/imageformat.h"
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#include "mathlib/vector.h"
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#include <conio.h>
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void Usage( void )
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{
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printf( "Usage: vtfdiff file1.vtf file2.vtf\n" );
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}
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bool LoadFileIntoBuffer( const char *pFileName, CUtlBuffer &buf )
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{
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struct _stat statBuf;
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if( _stat( pFileName, &statBuf ) != 0 )
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{
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goto error;
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}
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buf.EnsureCapacity( statBuf.st_size );
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FILE *fp;
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fp = fopen( pFileName, "rb" );
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if( !fp )
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{
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goto error;
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}
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int nBytesRead = fread( buf.Base(), 1, statBuf.st_size, fp );
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fclose( fp );
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buf.SeekPut( CUtlBuffer::SEEK_HEAD, nBytesRead );
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return true;
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error:
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printf( "Can't find file %s\n", pFileName );
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return false;
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}
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char const * ResourceToString( uint32 uiResType )
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{
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static char chBuffer[256];
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switch ( uiResType )
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{
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case VTF_LEGACY_RSRC_LOW_RES_IMAGE:
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return "VTF_LEGACY_RSRC_LOW_RES_IMAGE";
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case VTF_LEGACY_RSRC_IMAGE:
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return "VTF_LEGACY_RSRC_IMAGE";
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case VTF_RSRC_SHEET:
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return "VTF_RSRC_SHEET";
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case MK_VTF_RSRC_ID( 'C','R','C' ):
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return "CRC";
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case VTF_RSRC_TEXTURE_LOD_SETTINGS:
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return "VTF_RSRC_TEXTURE_LOD_SETTINGS";
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default:
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sprintf( chBuffer, "0x%08X", uiResType );
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return chBuffer;
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}
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return chBuffer;
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}
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void PrintFlags( int flags )
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{
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#define PRNFLAG( flagname ) \
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if ( ( flags & (flagname) ) == (flagname) ) \
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{ \
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flags &=~ (flagname); \
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printf( "%s%s", #flagname + strlen("TEXTUREFLAGS_"), flags ? "|" : "" ); \
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} \
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PRNFLAG( TEXTUREFLAGS_POINTSAMPLE )
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PRNFLAG( TEXTUREFLAGS_TRILINEAR )
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PRNFLAG( TEXTUREFLAGS_CLAMPS )
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PRNFLAG( TEXTUREFLAGS_CLAMPT )
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PRNFLAG( TEXTUREFLAGS_ANISOTROPIC )
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PRNFLAG( TEXTUREFLAGS_HINT_DXT5 )
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PRNFLAG( TEXTUREFLAGS_SRGB )
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PRNFLAG( TEXTUREFLAGS_NORMAL )
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PRNFLAG( TEXTUREFLAGS_NOMIP )
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PRNFLAG( TEXTUREFLAGS_NOLOD )
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PRNFLAG( TEXTUREFLAGS_ALL_MIPS )
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PRNFLAG( TEXTUREFLAGS_PROCEDURAL )
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PRNFLAG( TEXTUREFLAGS_ONEBITALPHA )
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PRNFLAG( TEXTUREFLAGS_EIGHTBITALPHA )
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PRNFLAG( TEXTUREFLAGS_ENVMAP )
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PRNFLAG( TEXTUREFLAGS_RENDERTARGET )
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PRNFLAG( TEXTUREFLAGS_DEPTHRENDERTARGET )
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PRNFLAG( TEXTUREFLAGS_NODEBUGOVERRIDE )
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PRNFLAG( TEXTUREFLAGS_SINGLECOPY )
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PRNFLAG( TEXTUREFLAGS_STAGING_MEMORY )
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PRNFLAG( TEXTUREFLAGS_IMMEDIATE_CLEANUP )
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PRNFLAG( TEXTUREFLAGS_IGNORE_PICMIP )
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PRNFLAG( TEXTUREFLAGS_UNUSED_00400000 )
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PRNFLAG( TEXTUREFLAGS_NODEPTHBUFFER )
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PRNFLAG( TEXTUREFLAGS_UNUSED_01000000 )
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PRNFLAG( TEXTUREFLAGS_CLAMPU )
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PRNFLAG( TEXTUREFLAGS_VERTEXTEXTURE )
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PRNFLAG( TEXTUREFLAGS_SSBUMP )
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PRNFLAG( TEXTUREFLAGS_UNUSED_10000000 )
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PRNFLAG( TEXTUREFLAGS_BORDER )
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PRNFLAG( TEXTUREFLAGS_STREAMABLE_COARSE )
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PRNFLAG( TEXTUREFLAGS_STREAMABLE_FINE )
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#undef PRNFLAG
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if ( flags )
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{
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printf( "0x%08X", flags );
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}
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}
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int main( int argc, char **argv )
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{
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if( argc != 3 )
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{
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Usage();
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return 10;
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}
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CUtlBuffer file1;
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CUtlBuffer file2;
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if ( !LoadFileIntoBuffer( argv[1], file1 ) )
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return 21;
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if ( !LoadFileIntoBuffer( argv[2], file2 ) )
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return 22;
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IVTFTexture *pTexture1 = CreateVTFTexture();
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IVTFTexture *pTexture2 = CreateVTFTexture();
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IVTFTexture *arrTextures[2] = { pTexture1, pTexture2 };
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bool bMatch = true;
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if( !pTexture1->Unserialize( file1 ) )
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{
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printf( "error loading %s\n", argv[1] );
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return 31;
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}
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if( !pTexture2->Unserialize( file2 ) )
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{
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printf( "error loading %s\n", argv[2] );
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return 32;
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}
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if( pTexture1->Width() != pTexture2->Width() ||
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pTexture1->Height() != pTexture2->Height() ||
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pTexture1->Depth() != pTexture2->Depth() )
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{
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printf( "%s dimensions differ: %dx%dx%d != %dx%dx%d\n",
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argv[1],
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( int )pTexture1->Width(), ( int )pTexture1->Height(), ( int )pTexture1->Depth(),
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( int )pTexture2->Width(), ( int )pTexture2->Height(), ( int )pTexture2->Depth() );
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bMatch = false;
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}
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if( pTexture1->LowResWidth() != pTexture2->LowResWidth() ||
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pTexture1->LowResHeight() != pTexture2->LowResHeight() )
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{
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printf( "%s lowres dimensions differ: %dx%d != %dx%d\n",
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argv[1],
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( int )pTexture1->LowResWidth(), ( int )pTexture1->LowResHeight(),
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( int )pTexture2->LowResWidth(), ( int )pTexture2->LowResHeight() );
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bMatch = false;
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}
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if( pTexture1->MipCount() != pTexture2->MipCount() )
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{
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printf( "%s differing mipcounts: %d != %d\n",
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argv[1],
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( int )pTexture1->MipCount(), ( int )pTexture2->MipCount() );
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bMatch = false;
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}
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if( pTexture1->FaceCount() != pTexture2->FaceCount() )
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{
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printf( "%s differing facecount: %d != %d\n",
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argv[1],
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( int )pTexture1->FaceCount(), ( int )pTexture2->FaceCount() );
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bMatch = false;
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}
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if( pTexture1->FrameCount() != pTexture2->FrameCount() )
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{
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printf( "%s differing framecount: %d != %d\n",
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argv[1],
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( int )pTexture1->FrameCount(), ( int )pTexture2->FrameCount() );
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bMatch = false;
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}
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if( pTexture1->Flags() != pTexture2->Flags() )
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{
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printf( "%s differing flags: \"",
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argv[1] );
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PrintFlags( pTexture1->Flags() );
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printf( "\" != \"" );
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PrintFlags( pTexture2->Flags() );
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printf( "\"\n" );
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bMatch = false;
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}
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if( pTexture1->BumpScale() != pTexture2->BumpScale() )
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{
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printf( "%s differing bumpscale: %f != %f\n",
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argv[1],
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( float )pTexture1->BumpScale(), ( float )pTexture2->BumpScale() );
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bMatch = false;
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}
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if( pTexture1->Format() != pTexture2->Format() )
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{
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printf( "%s differing image format: %s != %s\n",
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argv[1],
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ImageLoader::GetName( pTexture1->Format() ),
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ImageLoader::GetName( pTexture2->Format() ) );
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bMatch = false;
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}
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if( pTexture1->LowResFormat() != pTexture2->LowResFormat() )
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{
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Assert(0);
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printf( "%s differing lowres image format: %s != %s\n",
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argv[1],
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ImageLoader::GetName( pTexture1->LowResFormat() ),
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ImageLoader::GetName( pTexture2->LowResFormat() ) );
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bMatch = false;
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}
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const Vector &vReflectivity1 = pTexture1->Reflectivity();
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const Vector &vReflectivity2 = pTexture2->Reflectivity();
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if( !VectorsAreEqual( vReflectivity1, vReflectivity2, 0.0001f ) )
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{
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printf( "%s differing reflectivity: [%f,%f,%f] != [%f,%f,%f]\n",
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argv[1],
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( float )pTexture1->Reflectivity()[0],
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( float )pTexture1->Reflectivity()[1],
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( float )pTexture1->Reflectivity()[2],
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( float )pTexture2->Reflectivity()[0],
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( float )pTexture2->Reflectivity()[1],
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( float )pTexture2->Reflectivity()[2] );
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bMatch = false;
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}
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if ( pTexture1->ComputeTotalSize() != pTexture2->ComputeTotalSize() )
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{
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printf( "%s differing image data size: %d != %d\n",
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argv[1],
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( int )pTexture1->ComputeTotalSize(), ( int )pTexture2->ComputeTotalSize() );
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bMatch = false;
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}
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if ( bMatch )
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{
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unsigned char const *pData1 = pTexture1->ImageData();
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unsigned char const *pData2 = pTexture2->ImageData();
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int const iSize = pTexture1->ComputeTotalSize();
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if( memcmp( pData1, pData2, iSize) != 0 )
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{
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printf( "%s image data different\n", argv[1] );
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if (( pTexture1->Format() == IMAGE_FORMAT_DXT1 ) || ( pTexture1->Format() == IMAGE_FORMAT_DXT3 ) ||
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( pTexture1->Format() == IMAGE_FORMAT_DXT5 ) || ( pTexture1->Format() == IMAGE_FORMAT_ATI2N ) ||
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( pTexture1->Format() == IMAGE_FORMAT_ATI1N ) )
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{
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int i, numOffsetsComplained = 0;
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for( i = 0; i < iSize; i++ )
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{
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if( pData1[i] != pData2[i] )
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{
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printf( "image data at offset %d different\n", i );
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if ( numOffsetsComplained ++ > 10 )
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{
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printf( "image data significantly differs!\n" );
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break;
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}
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}
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}
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}
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else
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{
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for( int iFrame = 0; iFrame < pTexture1->FrameCount(); ++iFrame )
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{
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for ( int iMipLevel = 0; iMipLevel < pTexture1->MipCount(); ++iMipLevel )
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{
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int nMipWidth, nMipHeight, nMipDepth;
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pTexture1->ComputeMipLevelDimensions( iMipLevel, &nMipWidth, &nMipHeight, &nMipDepth );
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for (int iCubeFace = 0; iCubeFace < pTexture1->FrameCount(); ++iCubeFace)
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{
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for ( int z = 0; z < nMipDepth; ++z )
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{
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pData1 = pTexture1->ImageData( iFrame, iCubeFace, iMipLevel, 0, 0, z );
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pData2 = pTexture2->ImageData( iFrame, iCubeFace, iMipLevel, 0, 0, z );
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int nMipSize = pTexture1->ComputeMipSize( iMipLevel );
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if ( memcmp( pData1, pData2, nMipSize ) )
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{
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bool bBreak = false;
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for ( int y = 0; y < nMipHeight; ++y )
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{
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for ( int x = 0; x < nMipWidth; ++x )
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{
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unsigned char const *pData1a = pTexture1->ImageData( iFrame, iCubeFace, iMipLevel, x, y, z );
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unsigned char const *pData2a = pTexture2->ImageData( iFrame, iCubeFace, iMipLevel, x, y, z );
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if ( memcmp( pData1a, pData2a, ImageLoader::SizeInBytes( pTexture1->Format() ) ) )
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{
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printf( "Frame %d Mip level %d Face %d Z-slice %d texel (%d,%d) different!\n",
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iFrame, iMipLevel, iCubeFace, z, x, y );
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bBreak = true;
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break;
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}
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}
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if ( bBreak )
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break;
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}
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}
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}
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}
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}
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}
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}
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bMatch = false;
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}
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}
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// Lowres data
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{
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int iDummy, iSize1, iSize2;
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pTexture1->LowResFileInfo( &iDummy, &iSize1 );
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pTexture2->LowResFileInfo( &iDummy, &iSize2 );
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if ( iSize1 != iSize2 )
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{
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printf( "%s differing low res image data size: %d != %d\n", argv[1], iSize1, iSize2 );
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bMatch = false;
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}
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if ( bMatch )
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{
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if ( memcmp( pTexture1->LowResImageData(), pTexture2->LowResImageData(), iSize1 ) != 0 )
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{
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printf( "%s differing low res image data\n",
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argv[1] );
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bMatch = false;
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}
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}
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}
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// Check other resources
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{
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int numRes1 = pTexture1->GetResourceTypes( NULL, 0 );
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int numRes2 = pTexture2->GetResourceTypes( NULL, 0 );
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// List of resource types checked or insignificant diffs
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typedef CUtlMap< int, bool > MapResTypes;
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MapResTypes mapTypes( DefLessFunc( int ) );
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mapTypes.Insert( VTF_LEGACY_RSRC_LOW_RES_IMAGE, true );
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mapTypes.Insert( VTF_LEGACY_RSRC_IMAGE, true );
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mapTypes.Insert( MK_VTF_RSRC_ID( 'C','R','C' ), true );
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uint32 *puiresbuffer = ( uint32 * ) stackalloc( ( numRes1 + numRes2 ) * sizeof( uint32 ) );
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int arrNums[2] = { numRes1, numRes2 };
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for ( int itx = 0; itx < 2; ++ itx )
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{
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arrTextures[itx]->GetResourceTypes( puiresbuffer, arrNums[itx] );
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while ( arrNums[itx] --> 0 )
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{
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uint32 uiResType = puiresbuffer[ arrNums[itx] ];
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if ( mapTypes.Find( uiResType ) != mapTypes.InvalidIndex() )
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continue;
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mapTypes.Insert( uiResType, true );
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size_t numBytes1, numBytes2;
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void const *pvResData1 = pTexture1->GetResourceData( uiResType, &numBytes1 );
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void const *pvResData2 = pTexture2->GetResourceData( uiResType, &numBytes2 );
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if ( !pvResData1 != !pvResData2 )
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{
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printf( "%s different resource %s %s\n",
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argv[1],
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ResourceToString( uiResType ),
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pvResData1 ? "present" : "missing" );
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bMatch = false;
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}
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else if ( numBytes1 != numBytes2 )
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{
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printf( "%s different resource %s size %lld != %lld\n",
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argv[1],
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ResourceToString( uiResType ),
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(long long)numBytes1, (long long)numBytes2 );
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bMatch = false;
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}
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else if ( memcmp( pvResData1, pvResData2, numBytes1 ) != 0 )
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{
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printf( "%s different resource %s data\n",
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argv[1],
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ResourceToString( uiResType ) );
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bMatch = false;
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}
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}
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}
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}
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if( bMatch )
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{
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return 0;
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}
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else
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{
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return 1;
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}
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}
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