texturec.cpp 10 KB

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  1. /*
  2. * Copyright 2011-2016 Branimir Karadzic. All rights reserved.
  3. * License: https://github.com/bkaradzic/bgfx#license-bsd-2-clause
  4. */
  5. #include <stdio.h>
  6. #include <stdlib.h>
  7. #include <string.h>
  8. // Just hacking DDS loading code in here.
  9. #include "bgfx_p.h"
  10. #include "image.h"
  11. #include <libsquish/squish.h>
  12. #include <etc1/etc1.h>
  13. #include <nvtt/nvtt.h>
  14. #include <pvrtc/PvrTcEncoder.h>
  15. #include <tinyexr/tinyexr.h>
  16. #define STB_IMAGE_IMPLEMENTATION
  17. #include <stb/stb_image.c>
  18. #if 0
  19. # define BX_TRACE(_format, ...) fprintf(stderr, "" _format "\n", ##__VA_ARGS__)
  20. #endif // DEBUG
  21. #include <bx/bx.h>
  22. #include <bx/allocator.h>
  23. #include <bx/commandline.h>
  24. #include <bx/uint32_t.h>
  25. namespace bgfx
  26. {
  27. const Memory* alloc(uint32_t _size)
  28. {
  29. Memory* mem = (Memory*)::realloc(NULL, sizeof(Memory) + _size);
  30. mem->size = _size;
  31. mem->data = (uint8_t*)mem + sizeof(Memory);
  32. return mem;
  33. }
  34. const Memory* makeRef(const void* _data, uint32_t _size, ReleaseFn _releaseFn, void* _userData)
  35. {
  36. BX_UNUSED(_releaseFn, _userData);
  37. Memory* mem = (Memory*)::realloc(NULL, sizeof(Memory) );
  38. mem->size = _size;
  39. mem->data = (uint8_t*)_data;
  40. return mem;
  41. }
  42. void release(const Memory* _mem)
  43. {
  44. Memory* mem = const_cast<Memory*>(_mem);
  45. ::free(mem);
  46. }
  47. void imageEncodeFromRgba8(void* _dst, const void* _src, uint32_t _width, uint32_t _height, uint8_t _format)
  48. {
  49. TextureFormat::Enum format = TextureFormat::Enum(_format);
  50. switch (format)
  51. {
  52. case TextureFormat::BC1:
  53. case TextureFormat::BC2:
  54. case TextureFormat::BC3:
  55. case TextureFormat::BC4:
  56. case TextureFormat::BC5:
  57. squish::CompressImage( (const uint8_t*)_src, _width, _height, _dst
  58. , format == TextureFormat::BC2 ? squish::kDxt3
  59. : format == TextureFormat::BC3 ? squish::kDxt5
  60. : format == TextureFormat::BC4 ? squish::kBc4
  61. : format == TextureFormat::BC5 ? squish::kBc5
  62. : squish::kDxt1
  63. );
  64. break;
  65. case TextureFormat::BC6H:
  66. nvtt::compressBC6H( (const uint8_t*)_src, _width, _height, 4, _dst);
  67. break;
  68. case TextureFormat::BC7:
  69. nvtt::compressBC7( (const uint8_t*)_src, _width, _height, 4, _dst);
  70. break;
  71. case TextureFormat::ETC1:
  72. etc1_encode_image( (const uint8_t*)_src, _width, _height, 4, _width*4, (uint8_t*)_dst);
  73. break;
  74. case TextureFormat::ETC2:
  75. case TextureFormat::ETC2A:
  76. case TextureFormat::ETC2A1:
  77. case TextureFormat::PTC12:
  78. break;
  79. case TextureFormat::PTC14:
  80. {
  81. using namespace Javelin;
  82. RgbBitmap bmp;
  83. bmp.width = _width;
  84. bmp.height = _height;
  85. bmp.data = (uint8_t*)const_cast<void*>(_src);
  86. PvrTcEncoder::EncodeRgb4Bpp(_dst, bmp);
  87. bmp.data = NULL;
  88. }
  89. break;
  90. case TextureFormat::PTC12A:
  91. break;
  92. case TextureFormat::PTC14A:
  93. {
  94. using namespace Javelin;
  95. RgbaBitmap bmp;
  96. bmp.width = _width;
  97. bmp.height = _height;
  98. bmp.data = (uint8_t*)const_cast<void*>(_src);
  99. PvrTcEncoder::EncodeRgba4Bpp(_dst, bmp);
  100. bmp.data = NULL;
  101. }
  102. break;
  103. case TextureFormat::PTC22:
  104. case TextureFormat::PTC24:
  105. break;
  106. case TextureFormat::BGRA8:
  107. imageSwizzleBgra8(_width, _height, _width*4, _src, _dst);
  108. break;
  109. case TextureFormat::RGBA8:
  110. memcpy(_dst, _src, _width*_height*4);
  111. break;
  112. default:
  113. break;
  114. }
  115. }
  116. void imageEncodeFromRgba32f(void* _dst, const void* _src, uint32_t _width, uint32_t _height, uint8_t _format)
  117. {
  118. TextureFormat::Enum format = TextureFormat::Enum(_format);
  119. const float* src = (const float*)_src;
  120. switch (format)
  121. {
  122. case TextureFormat::RGBA8:
  123. {
  124. uint8_t* dst = (uint8_t*)_dst;
  125. for (uint32_t yy = 0; yy < _height; ++yy)
  126. {
  127. for (uint32_t xx = 0; xx < _width; ++xx)
  128. {
  129. const uint32_t offset = (yy*_width + xx) * 4;
  130. const float* input = &src[offset];
  131. uint8_t* output = &dst[offset];
  132. output[0] = uint8_t( (input[0]*0.5f + 0.5f)*255.0f + 0.5f);
  133. output[1] = uint8_t( (input[1]*0.5f + 0.5f)*255.0f + 0.5f);
  134. output[2] = uint8_t( (input[2]*0.5f + 0.5f)*255.0f + 0.5f);
  135. output[3] = uint8_t( (input[3]*0.5f + 0.5f)*255.0f + 0.5f);
  136. }
  137. }
  138. }
  139. break;
  140. case TextureFormat::BC5:
  141. break;
  142. default:
  143. break;
  144. }
  145. }
  146. } // namespace bgfx
  147. void help(const char* _error = NULL)
  148. {
  149. if (NULL != _error)
  150. {
  151. fprintf(stderr, "Error:\n%s\n\n", _error);
  152. }
  153. fprintf(stderr
  154. , "texturec, bgfx texture compiler tool\n"
  155. "Copyright 2011-2016 Branimir Karadzic. All rights reserved.\n"
  156. "License: https://github.com/bkaradzic/bgfx#license-bsd-2-clause\n\n"
  157. );
  158. fprintf(stderr
  159. , "Usage: texturec -f <in> -o <out> -t <format>\n"
  160. "\n"
  161. "Supported input file types:\n"
  162. " *.png Portable Network Graphics\n"
  163. " *.tga Targa\n"
  164. " *.dds Direct Draw Surface\n"
  165. " *.ktx Khronos Texture\n"
  166. " *.pvr PowerVR\n"
  167. "\n"
  168. "Options:\n"
  169. " -f <file path> Input file path.\n"
  170. " -o <file path> Output file path (file will be written in KTX format).\n"
  171. " -t <format> Output format type (BC1/2/3/4/5, ETC1, PVR14, etc.).\n"
  172. " -m, --mips Generate mip-maps.\n"
  173. " -n, --normalmap Input texture is normal map.\n"
  174. "\n"
  175. "For additional information, see https://github.com/bkaradzic/bgfx\n"
  176. );
  177. }
  178. int main(int _argc, const char* _argv[])
  179. {
  180. bx::CommandLine cmdLine(_argc, _argv);
  181. if (cmdLine.hasArg('h', "help") )
  182. {
  183. help();
  184. return EXIT_FAILURE;
  185. }
  186. const char* inputFileName = cmdLine.findOption('f');
  187. if (NULL == inputFileName)
  188. {
  189. help("Input file must be specified.");
  190. return EXIT_FAILURE;
  191. }
  192. const char* outputFileName = cmdLine.findOption('o');
  193. if (NULL == outputFileName)
  194. {
  195. help("Output file must be specified.");
  196. return EXIT_FAILURE;
  197. }
  198. bx::CrtFileReader reader;
  199. if (0 != bx::open(&reader, inputFileName) )
  200. {
  201. help("Failed to open input file.");
  202. return EXIT_FAILURE;
  203. }
  204. const char* type = cmdLine.findOption('t');
  205. bgfx::TextureFormat::Enum format = bgfx::TextureFormat::BGRA8;
  206. if (NULL != type)
  207. {
  208. format = bgfx::getFormat(type);
  209. if (!isValid(format) )
  210. {
  211. help("Invalid format specified.");
  212. return EXIT_FAILURE;
  213. }
  214. }
  215. const bool mips = cmdLine.hasArg('m', "mips");
  216. const bool normalMap = cmdLine.hasArg('n', "normalmap");
  217. uint32_t size = (uint32_t)bx::getSize(&reader);
  218. const bgfx::Memory* mem = bgfx::alloc(size);
  219. bx::read(&reader, mem->data, mem->size);
  220. bx::close(&reader);
  221. {
  222. using namespace bgfx;
  223. uint8_t* decodedImage = NULL;
  224. ImageContainer imageContainer;
  225. bool loaded = imageParse(imageContainer, mem->data, mem->size);
  226. if (!loaded)
  227. {
  228. int width = 0;
  229. int height = 0;
  230. int comp = 0;
  231. decodedImage = stbi_load_from_memory( (uint8_t*)mem->data, mem->size, &width, &height, &comp, 4);
  232. loaded = NULL != decodedImage;
  233. if (loaded)
  234. {
  235. release(mem);
  236. mem = makeRef(decodedImage, width*height*4);
  237. imageContainer.m_data = mem->data;
  238. imageContainer.m_size = mem->size;
  239. imageContainer.m_offset = 0;
  240. imageContainer.m_width = width;
  241. imageContainer.m_height = height;
  242. imageContainer.m_depth = 1;
  243. imageContainer.m_format = bgfx::TextureFormat::RGBA8;
  244. imageContainer.m_numMips = 1;
  245. imageContainer.m_hasAlpha = true;
  246. imageContainer.m_cubeMap = false;
  247. imageContainer.m_ktx = false;
  248. imageContainer.m_ktxLE = false;
  249. imageContainer.m_srgb = false;
  250. }
  251. }
  252. if (loaded)
  253. {
  254. bx::CrtAllocator allocator;
  255. const Memory* output = NULL;
  256. ImageMip mip;
  257. if (imageGetRawData(imageContainer, 0, 0, mem->data, mem->size, mip) )
  258. {
  259. uint8_t numMips = mips
  260. ? imageGetNumMips(format, mip.m_width, mip.m_height)
  261. : 1
  262. ;
  263. void* temp = NULL;
  264. if (normalMap)
  265. {
  266. uint32_t size = imageGetSize(TextureFormat::RGBA32F, mip.m_width, mip.m_height);
  267. temp = BX_ALLOC(&allocator, size);
  268. float* rgba = (float*)temp;
  269. imageDecodeToRgba32f(&allocator
  270. , rgba
  271. , mip.m_data
  272. , mip.m_width
  273. , mip.m_height
  274. , mip.m_width*mip.m_bpp/8
  275. , mip.m_format
  276. );
  277. for (uint32_t yy = 0; yy < mip.m_height; ++yy)
  278. {
  279. for (uint32_t xx = 0; xx < mip.m_width; ++xx)
  280. {
  281. const uint32_t offset = (yy*mip.m_width + xx) * 4;
  282. float* inout = &rgba[offset];
  283. inout[0] = inout[0] * 2.0f/255.0f - 1.0f;
  284. inout[1] = inout[1] * 2.0f/255.0f - 1.0f;
  285. inout[2] = inout[2] * 2.0f/255.0f - 1.0f;
  286. inout[3] = inout[3] * 2.0f/255.0f - 1.0f;
  287. }
  288. }
  289. imageContainer.m_numMips = numMips;
  290. imageContainer.m_size = imageGetSize(format, mip.m_width, mip.m_height, 0, false, numMips);
  291. imageContainer.m_format = format;
  292. output = alloc(imageContainer.m_size);
  293. imageEncodeFromRgba32f(output->data, rgba, mip.m_width, mip.m_height, format);
  294. for (uint8_t lod = 1; lod < numMips; ++lod)
  295. {
  296. imageRgba32fDownsample2x2NormalMap(mip.m_width, mip.m_height, mip.m_width*16, rgba, rgba);
  297. ImageMip dstMip;
  298. imageGetRawData(imageContainer, 0, lod, output->data, output->size, dstMip);
  299. uint8_t* data = const_cast<uint8_t*>(dstMip.m_data);
  300. imageEncodeFromRgba32f(data, rgba, dstMip.m_width, dstMip.m_height, format);
  301. }
  302. }
  303. else
  304. {
  305. uint32_t size = imageGetSize(TextureFormat::RGBA8, mip.m_width, mip.m_height);
  306. temp = BX_ALLOC(&allocator, size);
  307. uint8_t* rgba = (uint8_t*)temp;
  308. imageDecodeToRgba8(rgba
  309. , mip.m_data
  310. , mip.m_width
  311. , mip.m_height
  312. , mip.m_width*mip.m_bpp/8
  313. , mip.m_format
  314. );
  315. imageContainer.m_numMips = numMips;
  316. imageContainer.m_size = imageGetSize(format, mip.m_width, mip.m_height, 0, false, numMips);
  317. imageContainer.m_format = format;
  318. output = alloc(imageContainer.m_size);
  319. imageEncodeFromRgba8(output->data, rgba, mip.m_width, mip.m_height, format);
  320. for (uint8_t lod = 1; lod < numMips; ++lod)
  321. {
  322. imageRgba8Downsample2x2(mip.m_width, mip.m_height, mip.m_width*4, rgba, rgba);
  323. ImageMip dstMip;
  324. imageGetRawData(imageContainer, 0, lod, output->data, output->size, dstMip);
  325. uint8_t* data = const_cast<uint8_t*>(dstMip.m_data);
  326. imageEncodeFromRgba8(data, rgba, dstMip.m_width, dstMip.m_height, format);
  327. }
  328. }
  329. BX_FREE(&allocator, temp);
  330. }
  331. if (NULL != output)
  332. {
  333. bx::CrtFileWriter writer;
  334. if (0 == bx::open(&writer, outputFileName) )
  335. {
  336. if (NULL != bx::stristr(outputFileName, ".ktx") )
  337. {
  338. imageWriteKtx(&writer, imageContainer, output->data, output->size);
  339. }
  340. bx::close(&writer);
  341. }
  342. release(output);
  343. }
  344. }
  345. release(mem);
  346. }
  347. return EXIT_SUCCESS;
  348. }