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PVRLoader.js 5.1 KB

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  1. console.warn( "THREE.PVRLoader: As part of the transition to ES6 Modules, the files in 'examples/js' have been deprecated in r117 (May 2020) and will be deleted in r124 (December 2020). You can find more information about developing using ES6 Modules in https://threejs.org/docs/index.html#manual/en/introduction/Import-via-modules." );
  2. /*
  3. * PVRLoader
  4. * Author: pierre lepers
  5. * Date: 17/09/2014 11:09
  6. *
  7. * PVR v2 (legacy) parser
  8. * TODO : Add Support for PVR v3 format
  9. * TODO : implement loadMipmaps option
  10. */
  11. THREE.PVRLoader = function ( manager ) {
  12. THREE.CompressedTextureLoader.call( this, manager );
  13. };
  14. THREE.PVRLoader.prototype = Object.assign( Object.create( THREE.CompressedTextureLoader.prototype ), {
  15. constructor: THREE.PVRLoader,
  16. parse: function ( buffer, loadMipmaps ) {
  17. var headerLengthInt = 13;
  18. var header = new Uint32Array( buffer, 0, headerLengthInt );
  19. var pvrDatas = {
  20. buffer: buffer,
  21. header: header,
  22. loadMipmaps: loadMipmaps
  23. };
  24. if ( header[ 0 ] === 0x03525650 ) {
  25. // PVR v3
  26. return THREE.PVRLoader._parseV3( pvrDatas );
  27. } else if ( header[ 11 ] === 0x21525650 ) {
  28. // PVR v2
  29. return THREE.PVRLoader._parseV2( pvrDatas );
  30. } else {
  31. console.error( 'THREE.PVRLoader: Unknown PVR format.' );
  32. }
  33. }
  34. } );
  35. THREE.PVRLoader._parseV3 = function ( pvrDatas ) {
  36. var header = pvrDatas.header;
  37. var bpp, format;
  38. var metaLen = header[ 12 ],
  39. pixelFormat = header[ 2 ],
  40. height = header[ 6 ],
  41. width = header[ 7 ],
  42. // numSurfs = header[ 9 ],
  43. numFaces = header[ 10 ],
  44. numMipmaps = header[ 11 ];
  45. switch ( pixelFormat ) {
  46. case 0 : // PVRTC 2bpp RGB
  47. bpp = 2;
  48. format = THREE.RGB_PVRTC_2BPPV1_Format;
  49. break;
  50. case 1 : // PVRTC 2bpp RGBA
  51. bpp = 2;
  52. format = THREE.RGBA_PVRTC_2BPPV1_Format;
  53. break;
  54. case 2 : // PVRTC 4bpp RGB
  55. bpp = 4;
  56. format = THREE.RGB_PVRTC_4BPPV1_Format;
  57. break;
  58. case 3 : // PVRTC 4bpp RGBA
  59. bpp = 4;
  60. format = THREE.RGBA_PVRTC_4BPPV1_Format;
  61. break;
  62. default :
  63. console.error( 'THREE.PVRLoader: Unsupported PVR format:', pixelFormat );
  64. }
  65. pvrDatas.dataPtr = 52 + metaLen;
  66. pvrDatas.bpp = bpp;
  67. pvrDatas.format = format;
  68. pvrDatas.width = width;
  69. pvrDatas.height = height;
  70. pvrDatas.numSurfaces = numFaces;
  71. pvrDatas.numMipmaps = numMipmaps;
  72. pvrDatas.isCubemap = ( numFaces === 6 );
  73. return THREE.PVRLoader._extract( pvrDatas );
  74. };
  75. THREE.PVRLoader._parseV2 = function ( pvrDatas ) {
  76. var header = pvrDatas.header;
  77. var headerLength = header[ 0 ],
  78. height = header[ 1 ],
  79. width = header[ 2 ],
  80. numMipmaps = header[ 3 ],
  81. flags = header[ 4 ],
  82. // dataLength = header[ 5 ],
  83. // bpp = header[ 6 ],
  84. // bitmaskRed = header[ 7 ],
  85. // bitmaskGreen = header[ 8 ],
  86. // bitmaskBlue = header[ 9 ],
  87. bitmaskAlpha = header[ 10 ],
  88. // pvrTag = header[ 11 ],
  89. numSurfs = header[ 12 ];
  90. var TYPE_MASK = 0xff;
  91. var PVRTC_2 = 24,
  92. PVRTC_4 = 25;
  93. var formatFlags = flags & TYPE_MASK;
  94. var bpp, format;
  95. var _hasAlpha = bitmaskAlpha > 0;
  96. if ( formatFlags === PVRTC_4 ) {
  97. format = _hasAlpha ? THREE.RGBA_PVRTC_4BPPV1_Format : THREE.RGB_PVRTC_4BPPV1_Format;
  98. bpp = 4;
  99. } else if ( formatFlags === PVRTC_2 ) {
  100. format = _hasAlpha ? THREE.RGBA_PVRTC_2BPPV1_Format : THREE.RGB_PVRTC_2BPPV1_Format;
  101. bpp = 2;
  102. } else {
  103. console.error( 'THREE.PVRLoader: Unknown PVR format:', formatFlags );
  104. }
  105. pvrDatas.dataPtr = headerLength;
  106. pvrDatas.bpp = bpp;
  107. pvrDatas.format = format;
  108. pvrDatas.width = width;
  109. pvrDatas.height = height;
  110. pvrDatas.numSurfaces = numSurfs;
  111. pvrDatas.numMipmaps = numMipmaps + 1;
  112. // guess cubemap type seems tricky in v2
  113. // it juste a pvr containing 6 surface (no explicit cubemap type)
  114. pvrDatas.isCubemap = ( numSurfs === 6 );
  115. return THREE.PVRLoader._extract( pvrDatas );
  116. };
  117. THREE.PVRLoader._extract = function ( pvrDatas ) {
  118. var pvr = {
  119. mipmaps: [],
  120. width: pvrDatas.width,
  121. height: pvrDatas.height,
  122. format: pvrDatas.format,
  123. mipmapCount: pvrDatas.numMipmaps,
  124. isCubemap: pvrDatas.isCubemap
  125. };
  126. var buffer = pvrDatas.buffer;
  127. var dataOffset = pvrDatas.dataPtr,
  128. bpp = pvrDatas.bpp,
  129. numSurfs = pvrDatas.numSurfaces,
  130. dataSize = 0,
  131. blockSize = 0,
  132. blockWidth = 0,
  133. blockHeight = 0,
  134. widthBlocks = 0,
  135. heightBlocks = 0;
  136. if ( bpp === 2 ) {
  137. blockWidth = 8;
  138. blockHeight = 4;
  139. } else {
  140. blockWidth = 4;
  141. blockHeight = 4;
  142. }
  143. blockSize = ( blockWidth * blockHeight ) * bpp / 8;
  144. pvr.mipmaps.length = pvrDatas.numMipmaps * numSurfs;
  145. var mipLevel = 0;
  146. while ( mipLevel < pvrDatas.numMipmaps ) {
  147. var sWidth = pvrDatas.width >> mipLevel,
  148. sHeight = pvrDatas.height >> mipLevel;
  149. widthBlocks = sWidth / blockWidth;
  150. heightBlocks = sHeight / blockHeight;
  151. // Clamp to minimum number of blocks
  152. if ( widthBlocks < 2 ) widthBlocks = 2;
  153. if ( heightBlocks < 2 ) heightBlocks = 2;
  154. dataSize = widthBlocks * heightBlocks * blockSize;
  155. for ( var surfIndex = 0; surfIndex < numSurfs; surfIndex ++ ) {
  156. var byteArray = new Uint8Array( buffer, dataOffset, dataSize );
  157. var mipmap = {
  158. data: byteArray,
  159. width: sWidth,
  160. height: sHeight
  161. };
  162. pvr.mipmaps[ surfIndex * pvrDatas.numMipmaps + mipLevel ] = mipmap;
  163. dataOffset += dataSize;
  164. }
  165. mipLevel ++;
  166. }
  167. return pvr;
  168. };