gBitmap.h 12 KB

123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150151152153154155156157158159160161162163164165166167168169170171172173174175176177178179180181182183184185186187188189190191192193194195196197198199200201202203204205206207208209210211212213214215216217218219220221222223224225226227228229230231232233234235236237238239240241242243244245246247248249250251252253254255256257258259260261262263264265266267268269270271272273274275276277278279280281282283284285286287288289290291292293294295296297298299300301302303304305306307308309310311312313314315316317318319320321322323324325326327328329330
  1. //-----------------------------------------------------------------------------
  2. // Copyright (c) 2012 GarageGames, LLC
  3. //
  4. // Permission is hereby granted, free of charge, to any person obtaining a copy
  5. // of this software and associated documentation files (the "Software"), to
  6. // deal in the Software without restriction, including without limitation the
  7. // rights to use, copy, modify, merge, publish, distribute, sublicense, and/or
  8. // sell copies of the Software, and to permit persons to whom the Software is
  9. // furnished to do so, subject to the following conditions:
  10. //
  11. // The above copyright notice and this permission notice shall be included in
  12. // all copies or substantial portions of the Software.
  13. //
  14. // THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
  15. // IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
  16. // FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
  17. // AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
  18. // LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING
  19. // FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS
  20. // IN THE SOFTWARE.
  21. //-----------------------------------------------------------------------------
  22. #ifndef _GBITMAP_H_
  23. #define _GBITMAP_H_
  24. #ifndef __RESOURCE_H__
  25. #include "core/resource.h"
  26. #endif
  27. #ifndef _SWIZZLE_H_
  28. #include "core/util/swizzle.h"
  29. #endif
  30. #ifndef _TVECTOR_H_
  31. #include "core/util/tVector.h"
  32. #endif
  33. #ifndef _GFXENUMS_H_
  34. #include "gfx/gfxEnums.h" // For the format
  35. #endif
  36. #ifndef _PROFILER_H_
  37. #include "platform/profiler.h"
  38. #endif
  39. //-------------------------------------- Forward decls.
  40. class Stream;
  41. class RectI;
  42. class Point2I;
  43. class ColorI;
  44. class ColorF;
  45. //------------------------------------------------------------------------------
  46. //-------------------------------------- GBitmap
  47. class GBitmap
  48. {
  49. public:
  50. enum Constants
  51. {
  52. /// The maximum mipmap levels we support. The current
  53. /// value lets us support up to 4096 x 4096 images.
  54. c_maxMipLevels = 13
  55. };
  56. struct Registration
  57. {
  58. /// The read function prototype.
  59. typedef bool(*ReadFunc)(Stream &stream, GBitmap *bitmap);
  60. /// The write function prototype. Compression levels are image-specific - see their registration declaration for details.
  61. typedef bool(*WriteFunc)(GBitmap *bitmap, Stream &stream, U32 compressionLevel);
  62. /// Used to sort the registrations so that
  63. /// lookups occur in a fixed order.
  64. U32 priority;
  65. Vector<String> extensions; ///< the list of file extensions for this bitmap type [these should be lower case]
  66. ReadFunc readFunc; ///< the read function to call for this bitmap type
  67. WriteFunc writeFunc; ///< the write function to call for this bitmap type
  68. U32 defaultCompression; ///< the default compression level [levels are image-specific - see their registration declaration for details]
  69. Registration()
  70. {
  71. priority = 0;
  72. VECTOR_SET_ASSOCIATION( extensions );
  73. }
  74. };
  75. /// Load the given bitmap file. It will try known file
  76. /// extensions if one is not specified. If all else fails
  77. /// it will look up the folder hierarchy for a match.
  78. ///
  79. /// Important: Don't do something like this...
  80. ///
  81. /// @code
  82. /// GBitmap* bitmap; // WRONG TYPE!
  83. /// bitmap = GBitmap::load( filename );
  84. /// @endcode
  85. ///
  86. /// Resources are reference-counted and the smart pointer conversion will
  87. /// release the bitmap and thus render the resulting bitmap pointer invalid!
  88. /// The right way is like this:
  89. ///
  90. /// @code
  91. /// Resource<GBitmap> bitmap; // Correct!
  92. /// bitmap = GBitmap::load( filename );
  93. /// @endcode
  94. ///
  95. static Resource<GBitmap> load(const Torque::Path &path);
  96. protected:
  97. static Resource<GBitmap> _load(const Torque::Path &path);
  98. static Resource<GBitmap> _search(const Torque::Path &path);
  99. public:
  100. GBitmap();
  101. GBitmap(const GBitmap&);
  102. GBitmap(const U32 in_width,
  103. const U32 in_height,
  104. const bool in_extrudeMipLevels = false,
  105. const GFXFormat in_format = GFXFormatR8G8B8 );
  106. // This builds a GBitmap with the R8G8B8A8 format using the passed in
  107. // data (assumes that there is width * height * 4 U8's in data)
  108. GBitmap(const U32 in_width,
  109. const U32 in_height,
  110. const U8* data );
  111. virtual ~GBitmap();
  112. static void sRegisterFormat( const Registration &reg );
  113. static const Registration* sFindRegInfo( const String &extension );
  114. /// Find the first file matching the registered extensions
  115. /// skipping the original.
  116. static bool sFindFile( const Torque::Path &path, Torque::Path *outPath );
  117. /// Given a path to a file, try all known extensions. If the file exists on disk, fill in path
  118. /// with the correct extension and return true. Otherwise, return false.
  119. static bool sFindFiles( const Torque::Path &path, Vector<Torque::Path> *outFoundPaths );
  120. /// Returns a space separated string of all registered extensions.
  121. static String sGetExtensionList();
  122. void allocateBitmap(const U32 in_width,
  123. const U32 in_height,
  124. const bool in_extrudeMipLevels = false,
  125. const GFXFormat in_format = GFXFormatR8G8B8 );
  126. void extrudeMipLevels(bool clearBorders = false);
  127. void extrudeMipLevelsDetail();
  128. U32 getNumMipLevels() const { return mNumMipLevels; }
  129. GBitmap *createPaddedBitmap() const;
  130. GBitmap *createPow2Bitmap() const;
  131. /// Copies a color channel by index into the first channel
  132. /// of the output bitmap. The output bitmap must be the same
  133. /// dimensions as the source.
  134. void copyChannel( U32 index, GBitmap *outBitmap ) const;
  135. void copyRect(const GBitmap *in, const RectI &srcRect, const Point2I &dstPoint, const U32 srcMipLevel = 0, const U32 dstMipLevel = 0);
  136. GFXFormat getFormat() const { return mInternalFormat; }
  137. bool setFormat(GFXFormat fmt);
  138. U32 getWidth(const U32 in_mipLevel = 0) const;
  139. U32 getHeight(const U32 in_mipLevel = 0) const;
  140. U32 getDepth(const U32 in_mipLevel = 0) const;
  141. U8* getAddress(const S32 in_x, const S32 in_y, const U32 mipLevel = 0);
  142. const U8* getAddress(const S32 in_x, const S32 in_y, const U32 mipLevel = 0) const;
  143. const U8* getBits(const U32 in_mipLevel = 0) const;
  144. U8* getWritableBits(const U32 in_mipLevel = 0);
  145. U32 getByteSize() const { return mByteSize; }
  146. U32 getBytesPerPixel() const { return mBytesPerPixel; }
  147. /// Use these functions to set and get the mHasTransparency value
  148. /// This is used to indicate that this bitmap has pixels that have
  149. /// an alpha value less than 255 (used by the auto-Material mapper)
  150. bool getHasTransparency() const { return mHasTransparency; }
  151. void setHasTransparency(bool hasTransparency) { mHasTransparency = hasTransparency; }
  152. /// In general you will want to use this function if there is not a
  153. /// good spot in the bitmap loader(s) to check the alpha value of
  154. /// the pixels. This function uses the texture format to loop over
  155. /// the bitmap bits and to check for alpha values less than 255
  156. bool checkForTransparency();
  157. ColorF sampleTexel(F32 u, F32 v) const;
  158. bool getColor(const U32 x, const U32 y, ColorI& rColor) const;
  159. bool setColor(const U32 x, const U32 y, const ColorI& rColor);
  160. /// This method will combine bitmapA and bitmapB using the operation specified
  161. /// by combineOp. The result will be stored in the bitmap that this method is
  162. /// called on. The size of the resulting bitmap will be the larger of A and B.
  163. /// The format of the resulting bitmap will be the format of A or B, whichever
  164. /// has a larger byte size.
  165. ///
  166. /// @note There are some restrictions on ops and formats that will probably change
  167. /// based on how we use this function.
  168. bool combine( const GBitmap *bitmapA, const GBitmap *bitmapB, const GFXTextureOp combineOp );
  169. /// Fills the first mip level of the bitmap with the specified color.
  170. void fill( const ColorI &rColor );
  171. /// An optimized version of fill().
  172. void fillWhite();
  173. //-------------------------------------- Internal data/operators
  174. void deleteImage();
  175. //-------------------------------------- Input/Output interface
  176. /// Read a bitmap from a stream
  177. /// @param bmType This is a file extension to describe the type of the data [i.e. "png" for PNG file, etc]
  178. /// @param ioStream The stream to read from
  179. bool readBitmap( const String &bmType, Stream &ioStream );
  180. /// Write a bitmap to a stream
  181. /// @param bmType This is a file extension to describe the type of the data [i.e. "png" for PNG file, etc]
  182. /// @param ioStream The stream to read from
  183. /// @param compressionLevel Image format-specific compression level. If set to U32_MAX, we use the default compression defined when the format was registered.
  184. bool writeBitmap( const String &bmType, Stream &ioStream, U32 compressionLevel = U32_MAX );
  185. bool readMNG(Stream& io_rStream); // located in bitmapMng.cc
  186. bool writeMNG(Stream& io_rStream) const;
  187. bool read(Stream& io_rStream);
  188. bool write(Stream& io_rStream) const;
  189. template<class T, dsize_t mapLength>
  190. void swizzle(const Swizzle<T,mapLength> *s);
  191. static Vector<Registration> sRegistrations;
  192. private:
  193. GFXFormat mInternalFormat;
  194. U8* mBits; // Master bytes
  195. U32 mByteSize;
  196. U32 mWidth;
  197. U32 mHeight;
  198. U32 mBytesPerPixel;
  199. U32 mNumMipLevels;
  200. U32 mMipLevelOffsets[c_maxMipLevels];
  201. bool mHasTransparency;
  202. static const U32 csFileVersion;
  203. };
  204. //------------------------------------------------------------------------------
  205. //-------------------------------------- Inlines
  206. //
  207. inline U32 GBitmap::getWidth(const U32 in_mipLevel) const
  208. {
  209. AssertFatal(in_mipLevel < mNumMipLevels,
  210. avar("GBitmap::getWidth: mip level out of range: (%d, %d)",
  211. in_mipLevel, mNumMipLevels));
  212. U32 retVal = mWidth >> in_mipLevel;
  213. return (retVal != 0) ? retVal : 1;
  214. }
  215. inline U32 GBitmap::getHeight(const U32 in_mipLevel) const
  216. {
  217. AssertFatal(in_mipLevel < mNumMipLevels,
  218. avar("Bitmap::getHeight: mip level out of range: (%d, %d)",
  219. in_mipLevel, mNumMipLevels));
  220. U32 retVal = mHeight >> in_mipLevel;
  221. return (retVal != 0) ? retVal : 1;
  222. }
  223. inline const U8* GBitmap::getBits(const U32 in_mipLevel) const
  224. {
  225. AssertFatal(in_mipLevel < mNumMipLevels,
  226. avar("GBitmap::getBits: mip level out of range: (%d, %d)",
  227. in_mipLevel, mNumMipLevels));
  228. return &mBits[mMipLevelOffsets[in_mipLevel]];
  229. }
  230. inline U8* GBitmap::getWritableBits(const U32 in_mipLevel)
  231. {
  232. AssertFatal(in_mipLevel < mNumMipLevels,
  233. avar("GBitmap::getWritableBits: mip level out of range: (%d, %d)",
  234. in_mipLevel, mNumMipLevels));
  235. return &mBits[mMipLevelOffsets[in_mipLevel]];
  236. }
  237. inline U8* GBitmap::getAddress(const S32 in_x, const S32 in_y, const U32 mipLevel)
  238. {
  239. return (getWritableBits(mipLevel) + ((in_y * getWidth(mipLevel)) + in_x) * mBytesPerPixel);
  240. }
  241. inline const U8* GBitmap::getAddress(const S32 in_x, const S32 in_y, const U32 mipLevel) const
  242. {
  243. return (getBits(mipLevel) + ((in_y * getWidth(mipLevel)) + in_x) * mBytesPerPixel);
  244. }
  245. template<class T, dsize_t mapLength>
  246. void GBitmap::swizzle(const Swizzle<T,mapLength> *s )
  247. {
  248. const U32 memSize = getWidth() * getHeight() * mBytesPerPixel;
  249. void *b = dMalloc(memSize);
  250. s->ToBuffer(b, getWritableBits(), memSize);
  251. dMemcpy(getWritableBits(), b, memSize);
  252. dFree(b);
  253. }
  254. #endif //_GBITMAP_H_