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8310a3fbad
git-svn-id: svn://svn.code.sf.net/p/irrlicht/code/trunk@6000 dfc29bdd-3216-0410-991c-e03cc46cb475
230 lines
5.8 KiB
C++
230 lines
5.8 KiB
C++
// Copyright (C) 2002-2012 Nikolaus Gebhardt
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// This file is part of the "Irrlicht Engine".
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// For conditions of distribution and use, see copyright notice in irrlicht.h
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#include "CImageLoaderPCX.h"
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#ifdef _IRR_COMPILE_WITH_PCX_LOADER_
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#include "IReadFile.h"
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#include "SColor.h"
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#include "CColorConverter.h"
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#include "CImage.h"
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#include "os.h"
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#include "irrString.h"
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namespace irr
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{
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namespace video
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{
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//! constructor
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CImageLoaderPCX::CImageLoaderPCX()
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{
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#ifdef _DEBUG
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setDebugName("CImageLoaderPCX");
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#endif
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}
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//! returns true if the file maybe is able to be loaded by this class
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//! based on the file extension (e.g. ".tga")
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bool CImageLoaderPCX::isALoadableFileExtension(const io::path& filename) const
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{
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return core::hasFileExtension ( filename, "pcx" );
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}
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//! returns true if the file maybe is able to be loaded by this class
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bool CImageLoaderPCX::isALoadableFileFormat(io::IReadFile* file) const
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{
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u8 headerID;
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file->read(&headerID, sizeof(headerID));
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return headerID == 0x0a;
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}
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//! creates a image from the file
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IImage* CImageLoaderPCX::loadImage(io::IReadFile* file) const
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{
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SPCXHeader header;
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s32* paletteData = 0;
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file->read(&header, sizeof(header));
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#ifdef __BIG_ENDIAN__
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header.XMin = os::Byteswap::byteswap(header.XMin);
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header.YMin = os::Byteswap::byteswap(header.YMin);
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header.XMax = os::Byteswap::byteswap(header.XMax);
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header.YMax = os::Byteswap::byteswap(header.YMax);
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header.HorizDPI = os::Byteswap::byteswap(header.HorizDPI);
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header.VertDPI = os::Byteswap::byteswap(header.VertDPI);
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header.BytesPerLine = os::Byteswap::byteswap(header.BytesPerLine);
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header.PaletteType = os::Byteswap::byteswap(header.PaletteType);
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header.HScrSize = os::Byteswap::byteswap(header.HScrSize);
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header.VScrSize = os::Byteswap::byteswap(header.VScrSize);
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#endif
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//! return if the header is wrong
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if (header.Manufacturer != 0x0a && header.Encoding != 0x01)
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return 0;
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// return if this isn't a supported type
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if ((header.BitsPerPixel != 8) && (header.BitsPerPixel != 4) && (header.BitsPerPixel != 1))
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{
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os::Printer::log("Unsupported bits per pixel in PCX file.",
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file->getFileName(), irr::ELL_WARNING);
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return 0;
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}
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// read palette
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if( (header.BitsPerPixel == 8) && (header.Planes == 1) )
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{
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// the palette indicator (usually a 0x0c is found infront of the actual palette data)
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// is ignored because some exporters seem to forget to write it. This would result in
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// no image loaded before, now only wrong colors will be set.
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const long pos = file->getPos();
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file->seek( file->getSize()-256*3, false );
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u8 *tempPalette = new u8[768];
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paletteData = new s32[256];
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file->read( tempPalette, 768 );
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for( s32 i=0; i<256; i++ )
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{
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paletteData[i] = (0xff000000 |
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(tempPalette[i*3+0] << 16) |
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(tempPalette[i*3+1] << 8) |
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(tempPalette[i*3+2]));
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}
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delete [] tempPalette;
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file->seek(pos);
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}
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else if( header.BitsPerPixel == 4 )
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{
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paletteData = new s32[16];
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for( s32 i=0; i<16; i++ )
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{
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paletteData[i] = (0xff000000 |
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(header.Palette[i*3+0] << 16) |
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(header.Palette[i*3+1] << 8) |
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(header.Palette[i*3+2]));
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}
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}
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// read image data
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const s32 width = header.XMax - header.XMin + 1;
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const s32 height = header.YMax - header.YMin + 1;
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const s32 imagebytes = header.BytesPerLine * header.Planes * header.BitsPerPixel * height / 8;
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u8* PCXData = new u8[imagebytes];
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u8 cnt, value;
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s32 lineoffset=0, linestart=0, nextmode=1;
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for(s32 offset = 0; offset < imagebytes; offset += cnt)
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{
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file->read(&cnt, 1);
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if( !((cnt & 0xc0) == 0xc0) )
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{
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value = cnt;
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cnt = 1;
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}
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else
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{
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cnt &= 0x3f;
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file->read(&value, 1);
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}
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if (header.Planes==1)
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memset(PCXData+offset, value, cnt);
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else
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{
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for (u8 i=0; i<cnt; ++i)
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{
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PCXData[linestart+lineoffset]=value;
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lineoffset += 3;
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if (lineoffset>=3*header.BytesPerLine)
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{
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lineoffset=nextmode;
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if (++nextmode==3)
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nextmode=0;
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if (lineoffset==0)
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linestart += 3*header.BytesPerLine;
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}
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}
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}
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}
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// create image
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video::IImage* image = 0;
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s32 pad = (header.BytesPerLine - width * header.BitsPerPixel / 8) * header.Planes;
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if (pad < 0)
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pad = -pad;
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if (header.BitsPerPixel==8)
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{
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switch(header.Planes) // TODO: Other formats
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{
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case 1:
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image = new CImage(ECF_A1R5G5B5, core::dimension2d<u32>(width, height));
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if (image)
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CColorConverter::convert8BitTo16Bit(PCXData, (s16*)image->getData(), width, height, paletteData, pad);
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break;
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case 3:
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image = new CImage(ECF_R8G8B8, core::dimension2d<u32>(width, height));
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if (image)
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CColorConverter::convert24BitTo24Bit(PCXData, (u8*)image->getData(), width, height, pad);
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break;
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}
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}
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else if (header.BitsPerPixel==4)
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{
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if (header.Planes==1)
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{
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image = new CImage(ECF_A1R5G5B5, core::dimension2d<u32>(width, height));
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if (image)
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CColorConverter::convert4BitTo16Bit(PCXData, (s16*)image->getData(), width, height, paletteData, pad);
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}
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}
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else if (header.BitsPerPixel==1)
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{
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if (header.Planes==4)
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{
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image = new CImage(ECF_A1R5G5B5, core::dimension2d<u32>(width, height));
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if (image)
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CColorConverter::convert4BitTo16Bit(PCXData, (s16*)image->getData(), width, height, paletteData, pad);
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}
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else if (header.Planes==1)
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{
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image = new CImage(ECF_A1R5G5B5, core::dimension2d<u32>(width, height));
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if (image)
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CColorConverter::convert1BitTo16Bit(PCXData, (s16*)image->getData(), width, height, pad);
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}
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}
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// clean up
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delete [] paletteData;
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delete [] PCXData;
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return image;
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}
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//! creates a loader which is able to load pcx images
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IImageLoader* createImageLoaderPCX()
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{
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return new CImageLoaderPCX();
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}
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} // end namespace video
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} // end namespace irr
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#endif
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