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  1. /*
  2. * DirectDraw Surface image decoder
  3. * Copyright (C) 2015 Vittorio Giovara <vittorio.giovara@gmail.com>
  4. *
  5. * This file is part of Libav.
  6. *
  7. * Libav is free software; you can redistribute it and/or
  8. * modify it under the terms of the GNU Lesser General Public
  9. * License as published by the Free Software Foundation; either
  10. * version 2.1 of the License, or (at your option) any later version.
  11. *
  12. * Libav is distributed in the hope that it will be useful,
  13. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  14. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
  15. * Lesser General Public License for more details.
  16. *
  17. * You should have received a copy of the GNU Lesser General Public
  18. * License along with Libav; if not, write to the Free Software
  19. * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
  20. */
  21. /**
  22. * @file
  23. * DDS decoder
  24. *
  25. * https://msdn.microsoft.com/en-us/library/bb943982%28v=vs.85%29.aspx
  26. */
  27. #include <stdint.h>
  28. #include "libavutil/imgutils.h"
  29. #include "avcodec.h"
  30. #include "bytestream.h"
  31. #include "internal.h"
  32. #include "texturedsp.h"
  33. #include "thread.h"
  34. #define DDPF_FOURCC (1 << 2)
  35. #define DDPF_PALETTE (1 << 5)
  36. #define DDPF_NORMALMAP (1 << 31)
  37. enum DDSPostProc {
  38. DDS_NONE = 0,
  39. DDS_ALPHA_EXP,
  40. DDS_NORMAL_MAP,
  41. DDS_RAW_YCOCG,
  42. DDS_SWAP_ALPHA,
  43. DDS_SWIZZLE_A2XY,
  44. DDS_SWIZZLE_RBXG,
  45. DDS_SWIZZLE_RGXB,
  46. DDS_SWIZZLE_RXBG,
  47. DDS_SWIZZLE_RXGB,
  48. DDS_SWIZZLE_XGBR,
  49. DDS_SWIZZLE_XRBG,
  50. DDS_SWIZZLE_XGXR,
  51. } DDSPostProc;
  52. enum DDSDXGIFormat {
  53. DXGI_FORMAT_R16G16B16A16_TYPELESS = 9,
  54. DXGI_FORMAT_R16G16B16A16_FLOAT = 10,
  55. DXGI_FORMAT_R16G16B16A16_UNORM = 11,
  56. DXGI_FORMAT_R16G16B16A16_UINT = 12,
  57. DXGI_FORMAT_R16G16B16A16_SNORM = 13,
  58. DXGI_FORMAT_R16G16B16A16_SINT = 14,
  59. DXGI_FORMAT_R8G8B8A8_TYPELESS = 27,
  60. DXGI_FORMAT_R8G8B8A8_UNORM = 28,
  61. DXGI_FORMAT_R8G8B8A8_UNORM_SRGB = 29,
  62. DXGI_FORMAT_R8G8B8A8_UINT = 30,
  63. DXGI_FORMAT_R8G8B8A8_SNORM = 31,
  64. DXGI_FORMAT_R8G8B8A8_SINT = 32,
  65. DXGI_FORMAT_BC1_TYPELESS = 70,
  66. DXGI_FORMAT_BC1_UNORM = 71,
  67. DXGI_FORMAT_BC1_UNORM_SRGB = 72,
  68. DXGI_FORMAT_BC2_TYPELESS = 73,
  69. DXGI_FORMAT_BC2_UNORM = 74,
  70. DXGI_FORMAT_BC2_UNORM_SRGB = 75,
  71. DXGI_FORMAT_BC3_TYPELESS = 76,
  72. DXGI_FORMAT_BC3_UNORM = 77,
  73. DXGI_FORMAT_BC3_UNORM_SRGB = 78,
  74. DXGI_FORMAT_BC4_TYPELESS = 79,
  75. DXGI_FORMAT_BC4_UNORM = 80,
  76. DXGI_FORMAT_BC4_SNORM = 81,
  77. DXGI_FORMAT_BC5_TYPELESS = 82,
  78. DXGI_FORMAT_BC5_UNORM = 83,
  79. DXGI_FORMAT_BC5_SNORM = 84,
  80. DXGI_FORMAT_B5G6R5_UNORM = 85,
  81. DXGI_FORMAT_B8G8R8A8_UNORM = 87,
  82. DXGI_FORMAT_B8G8R8X8_UNORM = 88,
  83. DXGI_FORMAT_B8G8R8A8_TYPELESS = 90,
  84. DXGI_FORMAT_B8G8R8A8_UNORM_SRGB = 91,
  85. DXGI_FORMAT_B8G8R8X8_TYPELESS = 92,
  86. DXGI_FORMAT_B8G8R8X8_UNORM_SRGB = 93,
  87. } DDSDXGIFormat;
  88. typedef struct DDSContext {
  89. TextureDSPContext texdsp;
  90. GetByteContext gbc;
  91. int compressed;
  92. int paletted;
  93. enum DDSPostProc postproc;
  94. const uint8_t *tex_data; // Compressed texture
  95. int tex_ratio; // Compression ratio
  96. /* Pointer to the selected compress or decompress function. */
  97. int (*tex_funct)(uint8_t *dst, ptrdiff_t stride, const uint8_t *block);
  98. } DDSContext;
  99. static int parse_pixel_format(AVCodecContext *avctx)
  100. {
  101. DDSContext *ctx = avctx->priv_data;
  102. GetByteContext *gbc = &ctx->gbc;
  103. char buf[32];
  104. uint32_t flags, fourcc, gimp_tag;
  105. enum DDSDXGIFormat dxgi;
  106. int size, bpp, r, g, b, a;
  107. int alpha_exponent, ycocg_classic, ycocg_scaled, normal_map, array;
  108. /* Alternative DDS implementations use reserved1 as custom header. */
  109. bytestream2_skip(gbc, 4 * 3);
  110. gimp_tag = bytestream2_get_le32(gbc);
  111. alpha_exponent = gimp_tag == MKTAG('A', 'E', 'X', 'P');
  112. ycocg_classic = gimp_tag == MKTAG('Y', 'C', 'G', '1');
  113. ycocg_scaled = gimp_tag == MKTAG('Y', 'C', 'G', '2');
  114. bytestream2_skip(gbc, 4 * 7);
  115. /* Now the real DDPF starts. */
  116. size = bytestream2_get_le32(gbc);
  117. if (size != 32) {
  118. av_log(avctx, AV_LOG_ERROR, "Invalid pixel format header %d.\n", size);
  119. return AVERROR_INVALIDDATA;
  120. }
  121. flags = bytestream2_get_le32(gbc);
  122. ctx->compressed = flags & DDPF_FOURCC;
  123. ctx->paletted = flags & DDPF_PALETTE;
  124. normal_map = flags & DDPF_NORMALMAP;
  125. fourcc = bytestream2_get_le32(gbc);
  126. bpp = bytestream2_get_le32(gbc); // rgbbitcount
  127. r = bytestream2_get_le32(gbc); // rbitmask
  128. g = bytestream2_get_le32(gbc); // gbitmask
  129. b = bytestream2_get_le32(gbc); // bbitmask
  130. a = bytestream2_get_le32(gbc); // abitmask
  131. bytestream2_skip(gbc, 4); // caps
  132. bytestream2_skip(gbc, 4); // caps2
  133. bytestream2_skip(gbc, 4); // caps3
  134. bytestream2_skip(gbc, 4); // caps4
  135. bytestream2_skip(gbc, 4); // reserved2
  136. av_get_codec_tag_string(buf, sizeof(buf), fourcc);
  137. av_log(avctx, AV_LOG_VERBOSE, "fourcc %s bpp %d "
  138. "r 0x%x g 0x%x b 0x%x a 0x%x\n", buf, bpp, r, g, b, a);
  139. if (gimp_tag) {
  140. av_get_codec_tag_string(buf, sizeof(buf), gimp_tag);
  141. av_log(avctx, AV_LOG_VERBOSE, "and GIMP-DDS tag %s\n", buf);
  142. }
  143. if (ctx->compressed)
  144. avctx->pix_fmt = AV_PIX_FMT_RGBA;
  145. if (ctx->compressed) {
  146. switch (fourcc) {
  147. case MKTAG('D', 'X', 'T', '1'):
  148. ctx->tex_ratio = 8;
  149. ctx->tex_funct = ctx->texdsp.dxt1a_block;
  150. break;
  151. case MKTAG('D', 'X', 'T', '2'):
  152. ctx->tex_ratio = 16;
  153. ctx->tex_funct = ctx->texdsp.dxt2_block;
  154. break;
  155. case MKTAG('D', 'X', 'T', '3'):
  156. ctx->tex_ratio = 16;
  157. ctx->tex_funct = ctx->texdsp.dxt3_block;
  158. break;
  159. case MKTAG('D', 'X', 'T', '4'):
  160. ctx->tex_ratio = 16;
  161. ctx->tex_funct = ctx->texdsp.dxt4_block;
  162. break;
  163. case MKTAG('D', 'X', 'T', '5'):
  164. ctx->tex_ratio = 16;
  165. if (ycocg_scaled)
  166. ctx->tex_funct = ctx->texdsp.dxt5ys_block;
  167. else if (ycocg_classic)
  168. ctx->tex_funct = ctx->texdsp.dxt5y_block;
  169. else
  170. ctx->tex_funct = ctx->texdsp.dxt5_block;
  171. break;
  172. case MKTAG('R', 'X', 'G', 'B'):
  173. ctx->tex_ratio = 16;
  174. ctx->tex_funct = ctx->texdsp.dxt5_block;
  175. /* This format may be considered as a normal map,
  176. * but it is handled differently in a separate postproc. */
  177. ctx->postproc = DDS_SWIZZLE_RXGB;
  178. normal_map = 0;
  179. break;
  180. case MKTAG('A', 'T', 'I', '1'):
  181. case MKTAG('B', 'C', '4', 'U'):
  182. ctx->tex_ratio = 8;
  183. ctx->tex_funct = ctx->texdsp.rgtc1u_block;
  184. break;
  185. case MKTAG('B', 'C', '4', 'S'):
  186. ctx->tex_ratio = 8;
  187. ctx->tex_funct = ctx->texdsp.rgtc1s_block;
  188. break;
  189. case MKTAG('A', 'T', 'I', '2'):
  190. /* RGT2 variant with swapped R and G (3Dc)*/
  191. ctx->tex_ratio = 16;
  192. ctx->tex_funct = ctx->texdsp.dxn3dc_block;
  193. break;
  194. case MKTAG('B', 'C', '5', 'U'):
  195. ctx->tex_ratio = 16;
  196. ctx->tex_funct = ctx->texdsp.rgtc2u_block;
  197. break;
  198. case MKTAG('B', 'C', '5', 'S'):
  199. ctx->tex_ratio = 16;
  200. ctx->tex_funct = ctx->texdsp.rgtc2s_block;
  201. break;
  202. case MKTAG('U', 'Y', 'V', 'Y'):
  203. ctx->compressed = 0;
  204. avctx->pix_fmt = AV_PIX_FMT_UYVY422;
  205. break;
  206. case MKTAG('Y', 'U', 'Y', '2'):
  207. ctx->compressed = 0;
  208. avctx->pix_fmt = AV_PIX_FMT_YUYV422;
  209. break;
  210. case MKTAG('P', '8', ' ', ' '):
  211. /* ATI Palette8, same as normal palette */
  212. ctx->compressed = 0;
  213. ctx->paletted = 1;
  214. avctx->pix_fmt = AV_PIX_FMT_PAL8;
  215. break;
  216. case MKTAG('D', 'X', '1', '0'):
  217. /* DirectX 10 extra header */
  218. dxgi = bytestream2_get_le32(gbc);
  219. bytestream2_skip(gbc, 4); // resourceDimension
  220. bytestream2_skip(gbc, 4); // miscFlag
  221. array = bytestream2_get_le32(gbc);
  222. bytestream2_skip(gbc, 4); // miscFlag2
  223. if (array != 0)
  224. av_log(avctx, AV_LOG_VERBOSE,
  225. "Found array of size %d (ignored).\n", array);
  226. /* Only BC[1-5] are actually compressed. */
  227. ctx->compressed = (dxgi >= 70) && (dxgi <= 84);
  228. av_log(avctx, AV_LOG_VERBOSE, "DXGI format %d.\n", dxgi);
  229. switch (dxgi) {
  230. /* RGB types. */
  231. case DXGI_FORMAT_R16G16B16A16_TYPELESS:
  232. case DXGI_FORMAT_R16G16B16A16_FLOAT:
  233. case DXGI_FORMAT_R16G16B16A16_UNORM:
  234. case DXGI_FORMAT_R16G16B16A16_UINT:
  235. case DXGI_FORMAT_R16G16B16A16_SNORM:
  236. case DXGI_FORMAT_R16G16B16A16_SINT:
  237. avctx->pix_fmt = AV_PIX_FMT_BGRA64;
  238. break;
  239. case DXGI_FORMAT_R8G8B8A8_UNORM_SRGB:
  240. avctx->colorspace = AVCOL_SPC_RGB;
  241. case DXGI_FORMAT_R8G8B8A8_TYPELESS:
  242. case DXGI_FORMAT_R8G8B8A8_UNORM:
  243. case DXGI_FORMAT_R8G8B8A8_UINT:
  244. case DXGI_FORMAT_R8G8B8A8_SNORM:
  245. case DXGI_FORMAT_R8G8B8A8_SINT:
  246. avctx->pix_fmt = AV_PIX_FMT_BGRA;
  247. break;
  248. case DXGI_FORMAT_B8G8R8A8_UNORM_SRGB:
  249. avctx->colorspace = AVCOL_SPC_RGB;
  250. case DXGI_FORMAT_B8G8R8A8_TYPELESS:
  251. case DXGI_FORMAT_B8G8R8A8_UNORM:
  252. avctx->pix_fmt = AV_PIX_FMT_RGBA;
  253. break;
  254. case DXGI_FORMAT_B8G8R8X8_UNORM_SRGB:
  255. avctx->colorspace = AVCOL_SPC_RGB;
  256. case DXGI_FORMAT_B8G8R8X8_TYPELESS:
  257. case DXGI_FORMAT_B8G8R8X8_UNORM:
  258. avctx->pix_fmt = AV_PIX_FMT_RGBA; // opaque
  259. break;
  260. case DXGI_FORMAT_B5G6R5_UNORM:
  261. avctx->pix_fmt = AV_PIX_FMT_RGB565LE;
  262. break;
  263. /* Texture types. */
  264. case DXGI_FORMAT_BC1_UNORM_SRGB:
  265. avctx->colorspace = AVCOL_SPC_RGB;
  266. case DXGI_FORMAT_BC1_TYPELESS:
  267. case DXGI_FORMAT_BC1_UNORM:
  268. ctx->tex_ratio = 8;
  269. ctx->tex_funct = ctx->texdsp.dxt1a_block;
  270. break;
  271. case DXGI_FORMAT_BC2_UNORM_SRGB:
  272. avctx->colorspace = AVCOL_SPC_RGB;
  273. case DXGI_FORMAT_BC2_TYPELESS:
  274. case DXGI_FORMAT_BC2_UNORM:
  275. ctx->tex_ratio = 16;
  276. ctx->tex_funct = ctx->texdsp.dxt3_block;
  277. break;
  278. case DXGI_FORMAT_BC3_UNORM_SRGB:
  279. avctx->colorspace = AVCOL_SPC_RGB;
  280. case DXGI_FORMAT_BC3_TYPELESS:
  281. case DXGI_FORMAT_BC3_UNORM:
  282. ctx->tex_ratio = 16;
  283. ctx->tex_funct = ctx->texdsp.dxt5_block;
  284. break;
  285. case DXGI_FORMAT_BC4_TYPELESS:
  286. case DXGI_FORMAT_BC4_UNORM:
  287. ctx->tex_ratio = 8;
  288. ctx->tex_funct = ctx->texdsp.rgtc1u_block;
  289. break;
  290. case DXGI_FORMAT_BC4_SNORM:
  291. ctx->tex_ratio = 8;
  292. ctx->tex_funct = ctx->texdsp.rgtc1s_block;
  293. break;
  294. case DXGI_FORMAT_BC5_TYPELESS:
  295. case DXGI_FORMAT_BC5_UNORM:
  296. ctx->tex_ratio = 16;
  297. ctx->tex_funct = ctx->texdsp.rgtc2u_block;
  298. break;
  299. case DXGI_FORMAT_BC5_SNORM:
  300. ctx->tex_ratio = 16;
  301. ctx->tex_funct = ctx->texdsp.rgtc2s_block;
  302. break;
  303. default:
  304. av_log(avctx, AV_LOG_ERROR,
  305. "Unsupported DXGI format %d.\n", dxgi);
  306. return AVERROR_INVALIDDATA;
  307. }
  308. break;
  309. default:
  310. av_log(avctx, AV_LOG_ERROR, "Unsupported %s fourcc.\n", buf);
  311. return AVERROR_INVALIDDATA;
  312. }
  313. } else if (ctx->paletted) {
  314. if (bpp == 8) {
  315. avctx->pix_fmt = AV_PIX_FMT_PAL8;
  316. } else {
  317. av_log(avctx, AV_LOG_ERROR, "Unsupported palette bpp %d.\n", bpp);
  318. return AVERROR_INVALIDDATA;
  319. }
  320. } else {
  321. /* 8 bpp */
  322. if (bpp == 8 && r == 0xff && g == 0 && b == 0 && a == 0)
  323. avctx->pix_fmt = AV_PIX_FMT_GRAY8;
  324. /* 16 bpp */
  325. else if (bpp == 16 && r == 0xff && g == 0 && b == 0 && a == 0xff00)
  326. avctx->pix_fmt = AV_PIX_FMT_YA8;
  327. else if (bpp == 16 && r == 0xffff && g == 0 && b == 0 && a == 0)
  328. avctx->pix_fmt = AV_PIX_FMT_GRAY16LE;
  329. else if (bpp == 16 && r == 0xf800 && g == 0x7e0 && b == 0x1f && a == 0)
  330. avctx->pix_fmt = AV_PIX_FMT_RGB565LE;
  331. /* 24 bpp */
  332. else if (bpp == 24 && r == 0xff0000 && g == 0xff00 && b == 0xff && a == 0)
  333. avctx->pix_fmt = AV_PIX_FMT_BGR24;
  334. /* 32 bpp */
  335. else if (bpp == 32 && r == 0xff0000 && g == 0xff00 && b == 0xff && a == 0)
  336. avctx->pix_fmt = AV_PIX_FMT_RGBA; // opaque
  337. else if (bpp == 32 && r == 0xff && g == 0xff00 && b == 0xff0000 && a == 0)
  338. avctx->pix_fmt = AV_PIX_FMT_BGRA; // opaque
  339. else if (bpp == 32 && r == 0xff0000 && g == 0xff00 && b == 0xff && a == 0xff000000)
  340. avctx->pix_fmt = AV_PIX_FMT_RGBA;
  341. else if (bpp == 32 && r == 0xff && g == 0xff00 && b == 0xff0000 && a == 0xff000000)
  342. avctx->pix_fmt = AV_PIX_FMT_BGRA;
  343. /* give up */
  344. else {
  345. av_log(avctx, AV_LOG_ERROR, "Unknown pixel format "
  346. "[bpp %d r 0x%x g 0x%x b 0x%x a 0x%x].\n", bpp, r, g, b, a);
  347. return AVERROR_INVALIDDATA;
  348. }
  349. }
  350. /* Set any remaining post-proc that should happen before frame is ready. */
  351. if (alpha_exponent)
  352. ctx->postproc = DDS_ALPHA_EXP;
  353. else if (normal_map)
  354. ctx->postproc = DDS_NORMAL_MAP;
  355. else if (ycocg_classic && !ctx->compressed)
  356. ctx->postproc = DDS_RAW_YCOCG;
  357. else if (avctx->pix_fmt == AV_PIX_FMT_YA8)
  358. ctx->postproc = DDS_SWAP_ALPHA;
  359. /* ATI/NVidia variants sometimes add swizzling in bpp. */
  360. switch (bpp) {
  361. case MKTAG('A', '2', 'X', 'Y'):
  362. ctx->postproc = DDS_SWIZZLE_A2XY;
  363. break;
  364. case MKTAG('x', 'G', 'B', 'R'):
  365. ctx->postproc = DDS_SWIZZLE_XGBR;
  366. break;
  367. case MKTAG('x', 'R', 'B', 'G'):
  368. ctx->postproc = DDS_SWIZZLE_XRBG;
  369. break;
  370. case MKTAG('R', 'B', 'x', 'G'):
  371. ctx->postproc = DDS_SWIZZLE_RBXG;
  372. break;
  373. case MKTAG('R', 'G', 'x', 'B'):
  374. ctx->postproc = DDS_SWIZZLE_RGXB;
  375. break;
  376. case MKTAG('R', 'x', 'B', 'G'):
  377. ctx->postproc = DDS_SWIZZLE_RXBG;
  378. break;
  379. case MKTAG('x', 'G', 'x', 'R'):
  380. ctx->postproc = DDS_SWIZZLE_XGXR;
  381. break;
  382. case MKTAG('A', '2', 'D', '5'):
  383. ctx->postproc = DDS_NORMAL_MAP;
  384. break;
  385. }
  386. return 0;
  387. }
  388. static int decompress_texture_thread(AVCodecContext *avctx, void *arg,
  389. int block_nb, int thread_nb)
  390. {
  391. DDSContext *ctx = avctx->priv_data;
  392. AVFrame *frame = arg;
  393. int x = (TEXTURE_BLOCK_W * block_nb) % avctx->coded_width;
  394. int y = TEXTURE_BLOCK_H * (TEXTURE_BLOCK_W * block_nb / avctx->coded_width);
  395. uint8_t *p = frame->data[0] + x * 4 + y * frame->linesize[0];
  396. const uint8_t *d = ctx->tex_data + block_nb * ctx->tex_ratio;
  397. ctx->tex_funct(p, frame->linesize[0], d);
  398. return 0;
  399. }
  400. static void do_swizzle(AVFrame *frame, int x, int y)
  401. {
  402. int i;
  403. for (i = 0; i < frame->linesize[0] * frame->height; i += 4) {
  404. uint8_t *src = frame->data[0] + i;
  405. FFSWAP(uint8_t, src[x], src[y]);
  406. }
  407. }
  408. static void run_postproc(AVCodecContext *avctx, AVFrame *frame)
  409. {
  410. DDSContext *ctx = avctx->priv_data;
  411. int i, x_off;
  412. switch (ctx->postproc) {
  413. case DDS_ALPHA_EXP:
  414. /* Alpha-exponential mode divides each channel by the maximum
  415. * R, G or B value, and stores the multiplying factor in the
  416. * alpha channel. */
  417. av_log(avctx, AV_LOG_DEBUG, "Post-processing alpha exponent.\n");
  418. for (i = 0; i < frame->linesize[0] * frame->height; i += 4) {
  419. uint8_t *src = frame->data[0] + i;
  420. int r = src[0];
  421. int g = src[1];
  422. int b = src[2];
  423. int a = src[3];
  424. src[0] = r * a / 255;
  425. src[1] = g * a / 255;
  426. src[2] = b * a / 255;
  427. src[3] = 255;
  428. }
  429. break;
  430. case DDS_NORMAL_MAP:
  431. /* Normal maps work in the XYZ color space and they encode
  432. * X in R or in A, depending on the texture type, Y in G and
  433. * derive Z with a square root of the distance.
  434. *
  435. * http://www.realtimecollisiondetection.net/blog/?p=28 */
  436. av_log(avctx, AV_LOG_DEBUG, "Post-processing normal map.\n");
  437. x_off = ctx->tex_ratio == 8 ? 0 : 3;
  438. for (i = 0; i < frame->linesize[0] * frame->height; i += 4) {
  439. uint8_t *src = frame->data[0] + i;
  440. int x = src[x_off];
  441. int y = src[1];
  442. int z = 127;
  443. int d = (255 * 255 - x * x - y * y) / 2;
  444. if (d > 0)
  445. z = rint(sqrtf(d));
  446. src[0] = x;
  447. src[1] = y;
  448. src[2] = z;
  449. src[3] = 255;
  450. }
  451. break;
  452. case DDS_RAW_YCOCG:
  453. /* Data is Y-Co-Cg-A and not RGBA, but they are represented
  454. * with the same masks in the DDPF header. */
  455. av_log(avctx, AV_LOG_DEBUG, "Post-processing raw YCoCg.\n");
  456. for (i = 0; i < frame->linesize[0] * frame->height; i += 4) {
  457. uint8_t *src = frame->data[0] + i;
  458. int a = src[0];
  459. int cg = src[1] - 128;
  460. int co = src[2] - 128;
  461. int y = src[3];
  462. src[0] = av_clip_uint8(y + co - cg);
  463. src[1] = av_clip_uint8(y + cg);
  464. src[2] = av_clip_uint8(y - co - cg);
  465. src[3] = a;
  466. }
  467. break;
  468. case DDS_SWAP_ALPHA:
  469. /* Alpha and Luma are stored swapped. */
  470. av_log(avctx, AV_LOG_DEBUG, "Post-processing swapped Luma/Alpha.\n");
  471. for (i = 0; i < frame->linesize[0] * frame->height; i += 2) {
  472. uint8_t *src = frame->data[0] + i;
  473. FFSWAP(uint8_t, src[0], src[1]);
  474. }
  475. break;
  476. case DDS_SWIZZLE_A2XY:
  477. /* Swap R and G, often used to restore a standard RGTC2. */
  478. av_log(avctx, AV_LOG_DEBUG, "Post-processing A2XY swizzle.\n");
  479. do_swizzle(frame, 0, 1);
  480. break;
  481. case DDS_SWIZZLE_RBXG:
  482. /* Swap G and A, then B and new A (G). */
  483. av_log(avctx, AV_LOG_DEBUG, "Post-processing RBXG swizzle.\n");
  484. do_swizzle(frame, 1, 3);
  485. do_swizzle(frame, 2, 3);
  486. break;
  487. case DDS_SWIZZLE_RGXB:
  488. /* Swap B and A. */
  489. av_log(avctx, AV_LOG_DEBUG, "Post-processing RGXB swizzle.\n");
  490. do_swizzle(frame, 2, 3);
  491. break;
  492. case DDS_SWIZZLE_RXBG:
  493. /* Swap G and A. */
  494. av_log(avctx, AV_LOG_DEBUG, "Post-processing RXBG swizzle.\n");
  495. do_swizzle(frame, 1, 3);
  496. break;
  497. case DDS_SWIZZLE_RXGB:
  498. /* Swap R and A (misleading name). */
  499. av_log(avctx, AV_LOG_DEBUG, "Post-processing RXGB swizzle.\n");
  500. do_swizzle(frame, 0, 3);
  501. break;
  502. case DDS_SWIZZLE_XGBR:
  503. /* Swap B and A, then R and new A (B). */
  504. av_log(avctx, AV_LOG_DEBUG, "Post-processing XGBR swizzle.\n");
  505. do_swizzle(frame, 2, 3);
  506. do_swizzle(frame, 0, 3);
  507. break;
  508. case DDS_SWIZZLE_XGXR:
  509. /* Swap G and A, then R and new A (G), then new R (G) and new G (A).
  510. * This variant does not store any B component. */
  511. av_log(avctx, AV_LOG_DEBUG, "Post-processing XGXR swizzle.\n");
  512. do_swizzle(frame, 1, 3);
  513. do_swizzle(frame, 0, 3);
  514. do_swizzle(frame, 0, 1);
  515. break;
  516. case DDS_SWIZZLE_XRBG:
  517. /* Swap G and A, then R and new A (G). */
  518. av_log(avctx, AV_LOG_DEBUG, "Post-processing XRBG swizzle.\n");
  519. do_swizzle(frame, 1, 3);
  520. do_swizzle(frame, 0, 3);
  521. break;
  522. }
  523. }
  524. static int dds_decode(AVCodecContext *avctx, void *data,
  525. int *got_frame, AVPacket *avpkt)
  526. {
  527. DDSContext *ctx = avctx->priv_data;
  528. GetByteContext *gbc = &ctx->gbc;
  529. AVFrame *frame = data;
  530. int blocks, mipmap;
  531. int ret;
  532. ff_texturedsp_init(&ctx->texdsp);
  533. bytestream2_init(gbc, avpkt->data, avpkt->size);
  534. if (bytestream2_get_bytes_left(gbc) < 128) {
  535. av_log(avctx, AV_LOG_ERROR, "Frame is too small (%d).",
  536. bytestream2_get_bytes_left(gbc));
  537. return AVERROR_INVALIDDATA;
  538. }
  539. if (bytestream2_get_le32(gbc) != MKTAG('D', 'D', 'S', ' ') ||
  540. bytestream2_get_le32(gbc) != 124) { // header size
  541. av_log(avctx, AV_LOG_ERROR, "Invalid DDS header.");
  542. return AVERROR_INVALIDDATA;
  543. }
  544. bytestream2_skip(gbc, 4); // flags
  545. avctx->height = bytestream2_get_le32(gbc);
  546. avctx->width = bytestream2_get_le32(gbc);
  547. ret = av_image_check_size(avctx->width, avctx->height, 0, avctx);
  548. if (ret < 0) {
  549. av_log(avctx, AV_LOG_ERROR, "Invalid image size %dx%d.\n",
  550. avctx->width, avctx->height);
  551. return ret;
  552. }
  553. /* Since codec is based on 4x4 blocks, size is aligned to 4. */
  554. avctx->coded_width = FFALIGN(avctx->width, TEXTURE_BLOCK_W);
  555. avctx->coded_height = FFALIGN(avctx->height, TEXTURE_BLOCK_H);
  556. bytestream2_skip(gbc, 4); // pitch
  557. bytestream2_skip(gbc, 4); // depth
  558. mipmap = bytestream2_get_le32(gbc);
  559. if (mipmap != 0)
  560. av_log(avctx, AV_LOG_VERBOSE, "Found %d mipmaps (ignored).\n", mipmap);
  561. /* Extract pixel format information, considering additional elements
  562. * in reserved1 and reserved2. */
  563. ret = parse_pixel_format(avctx);
  564. if (ret < 0)
  565. return ret;
  566. ret = ff_get_buffer(avctx, frame, 0);
  567. if (ret < 0)
  568. return ret;
  569. if (ctx->compressed) {
  570. /* Use the decompress function on the texture, one block per thread. */
  571. ctx->tex_data = gbc->buffer;
  572. blocks = avctx->coded_width * avctx->coded_height / (TEXTURE_BLOCK_W * TEXTURE_BLOCK_H);
  573. avctx->execute2(avctx, decompress_texture_thread, frame, NULL, blocks);
  574. } else {
  575. int linesize = av_image_get_linesize(avctx->pix_fmt, frame->width, 0);
  576. if (ctx->paletted) {
  577. int i;
  578. uint32_t *p = (uint32_t *)frame->data[1];
  579. /* Use the first 1024 bytes as palette, then copy the rest. */
  580. for (i = 0; i < 256; i++)
  581. p[i] = bytestream2_get_le32(gbc);
  582. frame->palette_has_changed = 1;
  583. }
  584. av_image_copy_plane(frame->data[0], frame->linesize[0],
  585. gbc->buffer, linesize,
  586. linesize, frame->height);
  587. }
  588. /* Run any post processing here if needed. */
  589. if (avctx->pix_fmt == AV_PIX_FMT_RGBA || avctx->pix_fmt == AV_PIX_FMT_YA8)
  590. run_postproc(avctx, frame);
  591. /* Frame is ready to be output. */
  592. frame->pict_type = AV_PICTURE_TYPE_I;
  593. frame->key_frame = 1;
  594. *got_frame = 1;
  595. return avpkt->size;
  596. }
  597. AVCodec ff_dds_decoder = {
  598. .name = "dds",
  599. .long_name = NULL_IF_CONFIG_SMALL("DirectDraw Surface image decoder"),
  600. .type = AVMEDIA_TYPE_VIDEO,
  601. .id = AV_CODEC_ID_DDS,
  602. .decode = dds_decode,
  603. .priv_data_size = sizeof(DDSContext),
  604. .capabilities = CODEC_CAP_DR1 | CODEC_CAP_SLICE_THREADS,
  605. .caps_internal = FF_CODEC_CAP_INIT_THREADSAFE
  606. };