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574 lines
17 KiB
574 lines
17 KiB
//========= Copyright Valve Corporation, All rights reserved. ============// |
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// |
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// Purpose: |
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// |
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//===========================================================================// |
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#ifndef IMAGEFORMAT_H |
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#define IMAGEFORMAT_H |
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#ifdef _WIN32 |
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#pragma once |
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#endif |
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#include <stdio.h> |
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enum NormalDecodeMode_t |
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{ |
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NORMAL_DECODE_NONE = 0 |
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}; |
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// Forward declaration |
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#ifdef _WIN32 |
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typedef enum _D3DFORMAT D3DFORMAT; |
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#endif |
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//----------------------------------------------------------------------------- |
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// The various image format types |
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//----------------------------------------------------------------------------- |
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// don't bitch that inline functions aren't used!!!! |
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#pragma warning(disable : 4514) |
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enum ImageFormat |
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{ |
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IMAGE_FORMAT_UNKNOWN = -1, |
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IMAGE_FORMAT_RGBA8888 = 0, |
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IMAGE_FORMAT_ABGR8888, |
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IMAGE_FORMAT_RGB888, |
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IMAGE_FORMAT_BGR888, |
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IMAGE_FORMAT_RGB565, |
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IMAGE_FORMAT_I8, |
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IMAGE_FORMAT_IA88, |
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IMAGE_FORMAT_P8, |
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IMAGE_FORMAT_A8, |
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IMAGE_FORMAT_RGB888_BLUESCREEN, |
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IMAGE_FORMAT_BGR888_BLUESCREEN, |
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IMAGE_FORMAT_ARGB8888, |
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IMAGE_FORMAT_BGRA8888, |
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IMAGE_FORMAT_DXT1, |
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IMAGE_FORMAT_DXT3, |
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IMAGE_FORMAT_DXT5, |
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IMAGE_FORMAT_BGRX8888, |
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IMAGE_FORMAT_BGR565, |
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IMAGE_FORMAT_BGRX5551, |
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IMAGE_FORMAT_BGRA4444, |
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IMAGE_FORMAT_DXT1_ONEBITALPHA, |
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IMAGE_FORMAT_BGRA5551, |
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IMAGE_FORMAT_UV88, |
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IMAGE_FORMAT_UVWQ8888, |
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IMAGE_FORMAT_RGBA16161616F, |
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IMAGE_FORMAT_RGBA16161616, |
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IMAGE_FORMAT_UVLX8888, |
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IMAGE_FORMAT_R32F, // Single-channel 32-bit floating point |
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IMAGE_FORMAT_RGB323232F, |
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IMAGE_FORMAT_RGBA32323232F, |
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// Depth-stencil texture formats for shadow depth mapping |
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IMAGE_FORMAT_NV_DST16, // |
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IMAGE_FORMAT_NV_DST24, // |
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IMAGE_FORMAT_NV_INTZ, // Vendor-specific depth-stencil texture |
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IMAGE_FORMAT_NV_RAWZ, // formats for shadow depth mapping |
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IMAGE_FORMAT_ATI_DST16, // |
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IMAGE_FORMAT_ATI_DST24, // |
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IMAGE_FORMAT_NV_NULL, // Dummy format which takes no video memory |
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// Compressed normal map formats |
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IMAGE_FORMAT_ATI2N, // One-surface ATI2N / DXN format |
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IMAGE_FORMAT_ATI1N, // Two-surface ATI1N format |
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#if defined( _X360 ) |
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// Depth-stencil texture formats |
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IMAGE_FORMAT_X360_DST16, |
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IMAGE_FORMAT_X360_DST24, |
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IMAGE_FORMAT_X360_DST24F, |
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// supporting these specific formats as non-tiled for procedural cpu access |
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IMAGE_FORMAT_LINEAR_BGRX8888, |
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IMAGE_FORMAT_LINEAR_RGBA8888, |
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IMAGE_FORMAT_LINEAR_ABGR8888, |
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IMAGE_FORMAT_LINEAR_ARGB8888, |
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IMAGE_FORMAT_LINEAR_BGRA8888, |
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IMAGE_FORMAT_LINEAR_RGB888, |
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IMAGE_FORMAT_LINEAR_BGR888, |
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IMAGE_FORMAT_LINEAR_BGRX5551, |
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IMAGE_FORMAT_LINEAR_I8, |
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IMAGE_FORMAT_LINEAR_RGBA16161616, |
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IMAGE_FORMAT_LE_BGRX8888, |
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IMAGE_FORMAT_LE_BGRA8888, |
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#endif |
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IMAGE_FORMAT_DXT1_RUNTIME, |
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IMAGE_FORMAT_DXT5_RUNTIME, |
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NUM_IMAGE_FORMATS |
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}; |
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#if defined( POSIX ) || defined( DX_TO_GL_ABSTRACTION ) |
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typedef enum _D3DFORMAT |
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{ |
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D3DFMT_INDEX16, |
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D3DFMT_D16, |
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D3DFMT_D24S8, |
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D3DFMT_A8R8G8B8, |
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D3DFMT_A4R4G4B4, |
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D3DFMT_X8R8G8B8, |
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D3DFMT_R5G6R5, |
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D3DFMT_X1R5G5B5, |
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D3DFMT_A1R5G5B5, |
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D3DFMT_L8, |
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D3DFMT_A8L8, |
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D3DFMT_A, |
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D3DFMT_DXT1, |
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D3DFMT_DXT3, |
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D3DFMT_DXT5, |
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D3DFMT_V8U8, |
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D3DFMT_Q8W8V8U8, |
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D3DFMT_X8L8V8U8, |
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D3DFMT_A16B16G16R16F, |
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D3DFMT_A16B16G16R16, |
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D3DFMT_R32F, |
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D3DFMT_A32B32G32R32F, |
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D3DFMT_R8G8B8, |
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D3DFMT_D24X4S4, |
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D3DFMT_A8, |
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D3DFMT_R5G6B5, |
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D3DFMT_D15S1, |
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D3DFMT_D24X8, |
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D3DFMT_VERTEXDATA, |
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D3DFMT_INDEX32, |
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// adding fake D3D format names for the vendor specific ones (eases debugging/logging) |
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// NV shadow depth tex |
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D3DFMT_NV_INTZ = 0x5a544e49, // MAKEFOURCC('I','N','T','Z') |
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D3DFMT_NV_RAWZ = 0x5a574152, // MAKEFOURCC('R','A','W','Z') |
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// NV null tex |
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D3DFMT_NV_NULL = 0x4c4c554e, // MAKEFOURCC('N','U','L','L') |
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// ATI shadow depth tex |
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D3DFMT_ATI_D16 = 0x36314644, // MAKEFOURCC('D','F','1','6') |
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D3DFMT_ATI_D24S8 = 0x34324644, // MAKEFOURCC('D','F','2','4') |
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// ATI 1N and 2N compressed tex |
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D3DFMT_ATI_2N = 0x32495441, // MAKEFOURCC('A', 'T', 'I', '2') |
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D3DFMT_ATI_1N = 0x31495441, // MAKEFOURCC('A', 'T', 'I', '1') |
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D3DFMT_UNKNOWN |
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} D3DFORMAT; |
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#endif |
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//----------------------------------------------------------------------------- |
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// Color structures |
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//----------------------------------------------------------------------------- |
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struct BGRA8888_t; |
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struct BGRX8888_t; |
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struct RGBA8888_t; |
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struct RGB888_t; |
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struct BGR888_t; |
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struct BGR565_t; |
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struct BGRA5551_t; |
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struct BGRA4444_t; |
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struct RGBX5551_t; |
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struct BGRA8888_t |
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{ |
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unsigned char b; // change the order of names to change the |
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unsigned char g; // order of the output ARGB or BGRA, etc... |
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unsigned char r; // Last one is MSB, 1st is LSB. |
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unsigned char a; |
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inline BGRA8888_t& operator=( const BGRA8888_t& in ) |
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{ |
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*( unsigned int * )this = *( unsigned int * )∈ |
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return *this; |
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} |
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}; |
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struct BGRX8888_t |
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{ |
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unsigned char b; // change the order of names to change the |
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unsigned char g; // order of the output ARGB or BGRA, etc... |
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unsigned char r; // Last one is MSB, 1st is LSB. |
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unsigned char x; |
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inline BGRX8888_t& operator=( const BGRX8888_t& in ) |
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{ |
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*( unsigned int * )this = *( unsigned int * ) ∈ |
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return *this; |
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} |
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}; |
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struct RGBA8888_t |
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{ |
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unsigned char r; // change the order of names to change the |
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unsigned char g; // order of the output ARGB or BGRA, etc... |
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unsigned char b; // Last one is MSB, 1st is LSB. |
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unsigned char a; |
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inline RGBA8888_t& operator=( const BGRA8888_t& in ); |
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inline RGBA8888_t& operator=( const RGB888_t& in ); |
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inline RGBA8888_t& operator=( const BGRX8888_t& in ); |
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}; |
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struct RGB888_t |
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{ |
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unsigned char r; |
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unsigned char g; |
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unsigned char b; |
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inline RGB888_t& operator=( const BGRA8888_t& in ) |
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{ |
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r = in.r; |
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g = in.g; |
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b = in.b; |
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return *this; |
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} |
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inline bool operator==( const RGB888_t& in ) const |
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{ |
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return ( r == in.r ) && ( g == in.g ) && ( b == in.b ); |
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} |
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inline bool operator!=( const RGB888_t& in ) const |
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{ |
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return ( r != in.r ) || ( g != in.g ) || ( b != in.b ); |
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} |
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}; |
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struct BGR888_t |
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{ |
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unsigned char b; |
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unsigned char g; |
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unsigned char r; |
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inline BGR888_t& operator=( const BGRA8888_t& in ) |
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{ |
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r = in.r; |
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g = in.g; |
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b = in.b; |
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return *this; |
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} |
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}; |
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// 360 uses this structure for x86 dxt decoding |
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#if defined( _X360 ) |
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#pragma bitfield_order( push, lsb_to_msb ) |
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#endif |
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struct BGR565_t |
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{ |
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unsigned short b : 5; // order of names changes |
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unsigned short g : 6; // byte order of output to 32 bit |
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unsigned short r : 5; |
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inline BGR565_t& operator=( const BGRA8888_t& in ) |
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{ |
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r = in.r >> 3; |
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g = in.g >> 2; |
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b = in.b >> 3; |
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return *this; |
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} |
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inline BGR565_t &Set( int red, int green, int blue ) |
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{ |
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r = red >> 3; |
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g = green >> 2; |
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b = blue >> 3; |
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return *this; |
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} |
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}; |
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#if defined( _X360 ) |
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#pragma bitfield_order( pop ) |
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#endif |
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struct BGRA5551_t |
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{ |
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unsigned short b : 5; // order of names changes |
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unsigned short g : 5; // byte order of output to 32 bit |
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unsigned short r : 5; |
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unsigned short a : 1; |
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inline BGRA5551_t& operator=( const BGRA8888_t& in ) |
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{ |
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r = in.r >> 3; |
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g = in.g >> 3; |
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b = in.b >> 3; |
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a = in.a >> 7; |
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return *this; |
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} |
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}; |
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struct BGRA4444_t |
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{ |
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unsigned short b : 4; // order of names changes |
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unsigned short g : 4; // byte order of output to 32 bit |
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unsigned short r : 4; |
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unsigned short a : 4; |
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inline BGRA4444_t& operator=( const BGRA8888_t& in ) |
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{ |
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r = in.r >> 4; |
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g = in.g >> 4; |
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b = in.b >> 4; |
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a = in.a >> 4; |
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return *this; |
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} |
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}; |
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struct RGBX5551_t |
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{ |
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unsigned short r : 5; |
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unsigned short g : 5; |
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unsigned short b : 5; |
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unsigned short x : 1; |
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inline RGBX5551_t& operator=( const BGRA8888_t& in ) |
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{ |
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r = in.r >> 3; |
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g = in.g >> 3; |
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b = in.b >> 3; |
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return *this; |
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} |
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}; |
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//----------------------------------------------------------------------------- |
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// Conversion assignments |
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//----------------------------------------------------------------------------- |
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RGBA8888_t& RGBA8888_t::operator=( const BGRA8888_t& in ) |
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{ |
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r = in.r; |
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g = in.g; |
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b = in.b; |
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a = in.a; |
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return *this; |
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} |
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RGBA8888_t& RGBA8888_t::operator=( const RGB888_t& in ) |
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{ |
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r = in.r; |
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g = in.g; |
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b = in.b; |
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a = 0xFF; |
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return *this; |
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} |
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RGBA8888_t& RGBA8888_t::operator=( const BGRX8888_t& in ) |
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{ |
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r = in.r; |
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g = in.g; |
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b = in.b; |
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a = 0xFF; |
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return *this; |
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} |
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//----------------------------------------------------------------------------- |
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// some important constants |
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//----------------------------------------------------------------------------- |
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#define ARTWORK_GAMMA ( 2.2f ) |
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#define IMAGE_MAX_DIM ( 2048 ) |
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//----------------------------------------------------------------------------- |
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// information about each image format |
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//----------------------------------------------------------------------------- |
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struct ImageFormatInfo_t |
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{ |
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const char* m_pName; |
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int m_NumBytes; |
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int m_NumRedBits; |
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int m_NumGreeBits; |
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int m_NumBlueBits; |
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int m_NumAlphaBits; |
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bool m_IsCompressed; |
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}; |
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//----------------------------------------------------------------------------- |
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// Various methods related to pixelmaps and color formats |
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//----------------------------------------------------------------------------- |
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namespace ImageLoader |
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{ |
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bool GetInfo( const char *fileName, int *width, int *height, enum ImageFormat *imageFormat, float *sourceGamma ); |
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int GetMemRequired( int width, int height, int depth, ImageFormat imageFormat, bool mipmap ); |
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int GetMipMapLevelByteOffset( int width, int height, enum ImageFormat imageFormat, int skipMipLevels ); |
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void GetMipMapLevelDimensions( int *width, int *height, int skipMipLevels ); |
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int GetNumMipMapLevels( int width, int height, int depth = 1 ); |
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bool Load( unsigned char *imageData, const char *fileName, int width, int height, enum ImageFormat imageFormat, float targetGamma, bool mipmap ); |
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bool Load( unsigned char *imageData, FILE *fp, int width, int height, |
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enum ImageFormat imageFormat, float targetGamma, bool mipmap ); |
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// convert from any image format to any other image format. |
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// return false if the conversion cannot be performed. |
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// Strides denote the number of bytes per each line, |
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// by default assumes width * # of bytes per pixel |
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bool ConvertImageFormat( const unsigned char *src, enum ImageFormat srcImageFormat, |
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unsigned char *dst, enum ImageFormat dstImageFormat, |
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int width, int height, int srcStride = 0, int dstStride = 0 ); |
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// must be used in conjunction with ConvertImageFormat() to pre-swap and post-swap |
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void PreConvertSwapImageData( unsigned char *pImageData, int nImageSize, ImageFormat imageFormat, int width = 0, int stride = 0 ); |
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void PostConvertSwapImageData( unsigned char *pImageData, int nImageSize, ImageFormat imageFormat, int width = 0, int stride = 0 ); |
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void ByteSwapImageData( unsigned char *pImageData, int nImageSize, ImageFormat imageFormat, int width = 0, int stride = 0 ); |
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bool IsFormatValidForConversion( ImageFormat fmt ); |
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//----------------------------------------------------------------------------- |
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// convert back and forth from D3D format to ImageFormat, regardless of |
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// whether it's supported or not |
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//----------------------------------------------------------------------------- |
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ImageFormat D3DFormatToImageFormat( D3DFORMAT format ); |
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D3DFORMAT ImageFormatToD3DFormat( ImageFormat format ); |
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// Flags for ResampleRGBA8888 |
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enum |
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{ |
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RESAMPLE_NORMALMAP = 0x1, |
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RESAMPLE_ALPHATEST = 0x2, |
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RESAMPLE_NICE_FILTER = 0x4, |
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RESAMPLE_CLAMPS = 0x8, |
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RESAMPLE_CLAMPT = 0x10, |
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RESAMPLE_CLAMPU = 0x20, |
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}; |
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struct ResampleInfo_t |
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{ |
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ResampleInfo_t() : m_nFlags(0), m_flAlphaThreshhold(0.4f), m_flAlphaHiFreqThreshhold(0.4f), m_nSrcDepth(1), m_nDestDepth(1) |
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{ |
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m_flColorScale[0] = 1.0f, m_flColorScale[1] = 1.0f, m_flColorScale[2] = 1.0f, m_flColorScale[3] = 1.0f; |
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m_flColorGoal[0] = 0.0f, m_flColorGoal[1] = 0.0f, m_flColorGoal[2] = 0.0f, m_flColorGoal[3] = 0.0f; |
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} |
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unsigned char *m_pSrc; |
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unsigned char *m_pDest; |
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int m_nSrcWidth; |
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int m_nSrcHeight; |
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int m_nSrcDepth; |
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int m_nDestWidth; |
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int m_nDestHeight; |
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int m_nDestDepth; |
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float m_flSrcGamma; |
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float m_flDestGamma; |
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float m_flColorScale[4]; // Color scale factors RGBA |
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float m_flColorGoal[4]; // Color goal values RGBA DestColor = ColorGoal + scale * (SrcColor - ColorGoal) |
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float m_flAlphaThreshhold; |
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float m_flAlphaHiFreqThreshhold; |
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int m_nFlags; |
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}; |
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bool ResampleRGBA8888( const ResampleInfo_t &info ); |
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bool ResampleRGBA16161616( const ResampleInfo_t &info ); |
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bool ResampleRGB323232F( const ResampleInfo_t &info ); |
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void ConvertNormalMapRGBA8888ToDUDVMapUVLX8888( const unsigned char *src, int width, int height, |
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unsigned char *dst_ ); |
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void ConvertNormalMapRGBA8888ToDUDVMapUVWQ8888( const unsigned char *src, int width, int height, |
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unsigned char *dst_ ); |
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void ConvertNormalMapRGBA8888ToDUDVMapUV88( const unsigned char *src, int width, int height, |
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unsigned char *dst_ ); |
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void ConvertIA88ImageToNormalMapRGBA8888( const unsigned char *src, int width, |
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int height, unsigned char *dst, |
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float bumpScale ); |
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void NormalizeNormalMapRGBA8888( unsigned char *src, int numTexels ); |
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//----------------------------------------------------------------------------- |
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// Gamma correction |
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//----------------------------------------------------------------------------- |
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void GammaCorrectRGBA8888( unsigned char *src, unsigned char* dst, |
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int width, int height, int depth, float srcGamma, float dstGamma ); |
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//----------------------------------------------------------------------------- |
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// Makes a gamma table |
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//----------------------------------------------------------------------------- |
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void ConstructGammaTable( unsigned char* pTable, float srcGamma, float dstGamma ); |
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//----------------------------------------------------------------------------- |
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// Gamma corrects using a previously constructed gamma table |
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//----------------------------------------------------------------------------- |
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void GammaCorrectRGBA8888( unsigned char* pSrc, unsigned char* pDst, |
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int width, int height, int depth, unsigned char* pGammaTable ); |
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//----------------------------------------------------------------------------- |
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// Generates a number of mipmap levels |
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//----------------------------------------------------------------------------- |
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void GenerateMipmapLevels( unsigned char* pSrc, unsigned char* pDst, int width, |
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int height, int depth, ImageFormat imageFormat, float srcGamma, float dstGamma, |
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int numLevels = 0 ); |
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// Low quality mipmap generation, but way faster. |
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void GenerateMipmapLevelsLQ( unsigned char* pSrc, unsigned char* pDst, int width, int height, |
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ImageFormat imageFormat, int numLevels ); |
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//----------------------------------------------------------------------------- |
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// operations on square images (src and dst can be the same) |
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//----------------------------------------------------------------------------- |
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bool RotateImageLeft( const unsigned char *src, unsigned char *dst, |
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int widthHeight, ImageFormat imageFormat ); |
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bool RotateImage180( const unsigned char *src, unsigned char *dst, |
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int widthHeight, ImageFormat imageFormat ); |
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bool FlipImageVertically( void *pSrc, void *pDst, int nWidth, int nHeight, ImageFormat imageFormat, int nDstStride = 0 ); |
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bool FlipImageHorizontally( void *pSrc, void *pDst, int nWidth, int nHeight, ImageFormat imageFormat, int nDstStride = 0 ); |
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bool SwapAxes( unsigned char *src, |
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int widthHeight, ImageFormat imageFormat ); |
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//----------------------------------------------------------------------------- |
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// Returns info about each image format |
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//----------------------------------------------------------------------------- |
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ImageFormatInfo_t const& ImageFormatInfo( ImageFormat fmt ); |
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//----------------------------------------------------------------------------- |
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// Gets the name of the image format |
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//----------------------------------------------------------------------------- |
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inline char const* GetName( ImageFormat fmt ) |
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{ |
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return ImageFormatInfo(fmt).m_pName; |
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} |
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//----------------------------------------------------------------------------- |
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// Gets the size of the image format in bytes |
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//----------------------------------------------------------------------------- |
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inline int SizeInBytes( ImageFormat fmt ) |
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{ |
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return ImageFormatInfo(fmt).m_NumBytes; |
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} |
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//----------------------------------------------------------------------------- |
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// Does the image format support transparency? |
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//----------------------------------------------------------------------------- |
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inline bool IsTransparent( ImageFormat fmt ) |
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{ |
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return ImageFormatInfo(fmt).m_NumAlphaBits > 0; |
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} |
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//----------------------------------------------------------------------------- |
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// Is the image format compressed? |
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//----------------------------------------------------------------------------- |
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inline bool IsCompressed( ImageFormat fmt ) |
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{ |
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return ImageFormatInfo(fmt).m_IsCompressed; |
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} |
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//----------------------------------------------------------------------------- |
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// Is any channel > 8 bits? |
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//----------------------------------------------------------------------------- |
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inline bool HasChannelLargerThan8Bits( ImageFormat fmt ) |
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{ |
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ImageFormatInfo_t info = ImageFormatInfo(fmt); |
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return ( info.m_NumRedBits > 8 || info.m_NumGreeBits > 8 || info.m_NumBlueBits > 8 || info.m_NumAlphaBits > 8 ); |
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} |
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inline bool IsRuntimeCompressed( ImageFormat fmt ) |
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{ |
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return ( fmt == IMAGE_FORMAT_DXT1_RUNTIME ) || ( fmt == IMAGE_FORMAT_DXT5_RUNTIME ); |
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} |
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} // end namespace ImageLoader |
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#endif // IMAGEFORMAT_H
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