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8310a3fbad
git-svn-id: svn://svn.code.sf.net/p/irrlicht/code/trunk@6000 dfc29bdd-3216-0410-991c-e03cc46cb475
138 lines
3.8 KiB
C++
138 lines
3.8 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 "CImageWriterBMP.h"
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#ifdef _IRR_COMPILE_WITH_BMP_WRITER_
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#include "CImageLoaderBMP.h"
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#include "IWriteFile.h"
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#include "CColorConverter.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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IImageWriter* createImageWriterBMP()
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{
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return new CImageWriterBMP;
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}
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CImageWriterBMP::CImageWriterBMP()
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{
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#ifdef _DEBUG
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setDebugName("CImageWriterBMP");
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#endif
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}
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bool CImageWriterBMP::isAWriteableFileExtension(const io::path& filename) const
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{
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return core::hasFileExtension ( filename, "bmp" );
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}
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bool CImageWriterBMP::writeImage(io::IWriteFile* file, IImage* image, u32 param) const
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{
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// we always write 24-bit color because nothing really reads 32-bit
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SBMPHeader imageHeader;
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imageHeader.Id = 0x4d42;
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imageHeader.Reserved = 0;
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imageHeader.BitmapDataOffset = sizeof(imageHeader);
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imageHeader.BitmapHeaderSize = 0x28;
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imageHeader.Width = image->getDimension().Width;
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imageHeader.Height = image->getDimension().Height;
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imageHeader.Planes = 1;
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imageHeader.BPP = 24;
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imageHeader.Compression = 0;
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imageHeader.PixelPerMeterX = 0;
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imageHeader.PixelPerMeterY = 0;
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imageHeader.Colors = 0;
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imageHeader.ImportantColors = 0;
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// data size is rounded up to next larger 4 bytes boundary
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imageHeader.BitmapDataSize = imageHeader.Width * imageHeader.BPP / 8;
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imageHeader.BitmapDataSize = (imageHeader.BitmapDataSize + 3) & ~3;
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imageHeader.BitmapDataSize *= imageHeader.Height;
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// file size is data size plus offset to data
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imageHeader.FileSize = imageHeader.BitmapDataOffset + imageHeader.BitmapDataSize;
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// bitmaps are stored upside down and padded so we always do this
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void (*CColorConverter_convertFORMATtoFORMAT)(const void*, s32, void*) = 0;
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switch(image->getColorFormat())
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{
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case ECF_R8G8B8:
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CColorConverter_convertFORMATtoFORMAT
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= CColorConverter::convert_R8G8B8toR8G8B8;
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break;
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case ECF_A8R8G8B8:
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CColorConverter_convertFORMATtoFORMAT
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= CColorConverter::convert_A8R8G8B8toB8G8R8;
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break;
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case ECF_A1R5G5B5:
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CColorConverter_convertFORMATtoFORMAT
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= CColorConverter::convert_A1R5G5B5toR8G8B8;
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break;
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case ECF_R5G6B5:
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CColorConverter_convertFORMATtoFORMAT
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= CColorConverter::convert_R5G6B5toR8G8B8;
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break;
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#ifndef _DEBUG
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default:
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break;
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#endif
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}
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// couldn't find a color converter
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if (!CColorConverter_convertFORMATtoFORMAT)
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return false;
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// write the bitmap header
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if (file->write(&imageHeader, sizeof(imageHeader)) != sizeof(imageHeader))
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return false;
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u8* scan_lines = (u8*)image->getData();
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if (!scan_lines)
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return false;
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// size of one pixel in bytes
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u32 pixel_size = image->getBytesPerPixel();
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// length of one row of the source image in bytes
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u32 row_stride = (pixel_size * imageHeader.Width);
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// length of one row in bytes, rounded up to nearest 4-byte boundary
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size_t row_size = ((3 * imageHeader.Width) + 3) & ~3;
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// allocate and clear memory for our scan line
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u8* row_pointer = new u8[row_size];
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memset(row_pointer, 0, row_size);
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// convert the image to 24-bit BGR and flip it over
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s32 y;
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for (y = imageHeader.Height - 1; 0 <= y; --y)
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{
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if (image->getColorFormat()==ECF_R8G8B8)
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CColorConverter::convert24BitTo24Bit(&scan_lines[y * row_stride], row_pointer, imageHeader.Width, 1, 0, false, true);
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else
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// source, length [pixels], destination
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CColorConverter_convertFORMATtoFORMAT(&scan_lines[y * row_stride], imageHeader.Width, row_pointer);
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if (file->write(row_pointer, row_size) < row_size)
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break;
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}
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// clean up our scratch area
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delete [] row_pointer;
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return y < 0;
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}
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} // namespace video
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} // namespace irr
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#endif
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