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  1. /*
  2. * Duck TrueMotion 1.0 Decoder
  3. * Copyright (C) 2003 Alex Beregszaszi & Mike Melanson
  4. *
  5. * This file is part of FFmpeg.
  6. *
  7. * FFmpeg 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. * FFmpeg 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 FFmpeg; if not, write to the Free Software
  19. * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
  20. */
  21. /**
  22. * @file libavcodec/truemotion1.c
  23. * Duck TrueMotion v1 Video Decoder by
  24. * Alex Beregszaszi and
  25. * Mike Melanson (melanson@pcisys.net)
  26. *
  27. * The TrueMotion v1 decoder presently only decodes 16-bit TM1 data and
  28. * outputs RGB555 (or RGB565) data. 24-bit TM1 data is not supported yet.
  29. */
  30. #include <stdio.h>
  31. #include <stdlib.h>
  32. #include <string.h>
  33. #include "avcodec.h"
  34. #include "dsputil.h"
  35. #include "truemotion1data.h"
  36. typedef struct TrueMotion1Context {
  37. AVCodecContext *avctx;
  38. AVFrame frame;
  39. const uint8_t *buf;
  40. int size;
  41. const uint8_t *mb_change_bits;
  42. int mb_change_bits_row_size;
  43. const uint8_t *index_stream;
  44. int index_stream_size;
  45. int flags;
  46. int x, y, w, h;
  47. uint32_t y_predictor_table[1024];
  48. uint32_t c_predictor_table[1024];
  49. uint32_t fat_y_predictor_table[1024];
  50. uint32_t fat_c_predictor_table[1024];
  51. int compression;
  52. int block_type;
  53. int block_width;
  54. int block_height;
  55. int16_t ydt[8];
  56. int16_t cdt[8];
  57. int16_t fat_ydt[8];
  58. int16_t fat_cdt[8];
  59. int last_deltaset, last_vectable;
  60. unsigned int *vert_pred;
  61. } TrueMotion1Context;
  62. #define FLAG_SPRITE 32
  63. #define FLAG_KEYFRAME 16
  64. #define FLAG_INTERFRAME 8
  65. #define FLAG_INTERPOLATED 4
  66. struct frame_header {
  67. uint8_t header_size;
  68. uint8_t compression;
  69. uint8_t deltaset;
  70. uint8_t vectable;
  71. uint16_t ysize;
  72. uint16_t xsize;
  73. uint16_t checksum;
  74. uint8_t version;
  75. uint8_t header_type;
  76. uint8_t flags;
  77. uint8_t control;
  78. uint16_t xoffset;
  79. uint16_t yoffset;
  80. uint16_t width;
  81. uint16_t height;
  82. };
  83. #define ALGO_NOP 0
  84. #define ALGO_RGB16V 1
  85. #define ALGO_RGB16H 2
  86. #define ALGO_RGB24H 3
  87. /* these are the various block sizes that can occupy a 4x4 block */
  88. #define BLOCK_2x2 0
  89. #define BLOCK_2x4 1
  90. #define BLOCK_4x2 2
  91. #define BLOCK_4x4 3
  92. typedef struct comp_types {
  93. int algorithm;
  94. int block_width; // vres
  95. int block_height; // hres
  96. int block_type;
  97. } comp_types;
  98. /* { valid for metatype }, algorithm, num of deltas, vert res, horiz res */
  99. static const comp_types compression_types[17] = {
  100. { ALGO_NOP, 0, 0, 0 },
  101. { ALGO_RGB16V, 4, 4, BLOCK_4x4 },
  102. { ALGO_RGB16H, 4, 4, BLOCK_4x4 },
  103. { ALGO_RGB16V, 4, 2, BLOCK_4x2 },
  104. { ALGO_RGB16H, 4, 2, BLOCK_4x2 },
  105. { ALGO_RGB16V, 2, 4, BLOCK_2x4 },
  106. { ALGO_RGB16H, 2, 4, BLOCK_2x4 },
  107. { ALGO_RGB16V, 2, 2, BLOCK_2x2 },
  108. { ALGO_RGB16H, 2, 2, BLOCK_2x2 },
  109. { ALGO_NOP, 4, 4, BLOCK_4x4 },
  110. { ALGO_RGB24H, 4, 4, BLOCK_4x4 },
  111. { ALGO_NOP, 4, 2, BLOCK_4x2 },
  112. { ALGO_RGB24H, 4, 2, BLOCK_4x2 },
  113. { ALGO_NOP, 2, 4, BLOCK_2x4 },
  114. { ALGO_RGB24H, 2, 4, BLOCK_2x4 },
  115. { ALGO_NOP, 2, 2, BLOCK_2x2 },
  116. { ALGO_RGB24H, 2, 2, BLOCK_2x2 }
  117. };
  118. static void select_delta_tables(TrueMotion1Context *s, int delta_table_index)
  119. {
  120. int i;
  121. if (delta_table_index > 3)
  122. return;
  123. memcpy(s->ydt, ydts[delta_table_index], 8 * sizeof(int16_t));
  124. memcpy(s->cdt, cdts[delta_table_index], 8 * sizeof(int16_t));
  125. memcpy(s->fat_ydt, fat_ydts[delta_table_index], 8 * sizeof(int16_t));
  126. memcpy(s->fat_cdt, fat_cdts[delta_table_index], 8 * sizeof(int16_t));
  127. /* Y skinny deltas need to be halved for some reason; maybe the
  128. * skinny Y deltas should be modified */
  129. for (i = 0; i < 8; i++)
  130. {
  131. /* drop the lsb before dividing by 2-- net effect: round down
  132. * when dividing a negative number (e.g., -3/2 = -2, not -1) */
  133. s->ydt[i] &= 0xFFFE;
  134. s->ydt[i] /= 2;
  135. }
  136. }
  137. #if HAVE_BIGENDIAN
  138. static int make_ydt15_entry(int p2, int p1, int16_t *ydt)
  139. #else
  140. static int make_ydt15_entry(int p1, int p2, int16_t *ydt)
  141. #endif
  142. {
  143. int lo, hi;
  144. lo = ydt[p1];
  145. lo += (lo << 5) + (lo << 10);
  146. hi = ydt[p2];
  147. hi += (hi << 5) + (hi << 10);
  148. return (lo + (hi << 16)) << 1;
  149. }
  150. #if HAVE_BIGENDIAN
  151. static int make_cdt15_entry(int p2, int p1, int16_t *cdt)
  152. #else
  153. static int make_cdt15_entry(int p1, int p2, int16_t *cdt)
  154. #endif
  155. {
  156. int r, b, lo;
  157. b = cdt[p2];
  158. r = cdt[p1] << 10;
  159. lo = b + r;
  160. return (lo + (lo << 16)) << 1;
  161. }
  162. #if HAVE_BIGENDIAN
  163. static int make_ydt16_entry(int p2, int p1, int16_t *ydt)
  164. #else
  165. static int make_ydt16_entry(int p1, int p2, int16_t *ydt)
  166. #endif
  167. {
  168. int lo, hi;
  169. lo = ydt[p1];
  170. lo += (lo << 6) + (lo << 11);
  171. hi = ydt[p2];
  172. hi += (hi << 6) + (hi << 11);
  173. return (lo + (hi << 16)) << 1;
  174. }
  175. #if HAVE_BIGENDIAN
  176. static int make_cdt16_entry(int p2, int p1, int16_t *cdt)
  177. #else
  178. static int make_cdt16_entry(int p1, int p2, int16_t *cdt)
  179. #endif
  180. {
  181. int r, b, lo;
  182. b = cdt[p2];
  183. r = cdt[p1] << 11;
  184. lo = b + r;
  185. return (lo + (lo << 16)) << 1;
  186. }
  187. #if HAVE_BIGENDIAN
  188. static int make_ydt24_entry(int p2, int p1, int16_t *ydt)
  189. #else
  190. static int make_ydt24_entry(int p1, int p2, int16_t *ydt)
  191. #endif
  192. {
  193. int lo, hi;
  194. lo = ydt[p1];
  195. hi = ydt[p2];
  196. return (lo + (hi << 8) + (hi << 16)) << 1;
  197. }
  198. #if HAVE_BIGENDIAN
  199. static int make_cdt24_entry(int p2, int p1, int16_t *cdt)
  200. #else
  201. static int make_cdt24_entry(int p1, int p2, int16_t *cdt)
  202. #endif
  203. {
  204. int r, b;
  205. b = cdt[p2];
  206. r = cdt[p1]<<16;
  207. return (b+r) << 1;
  208. }
  209. static void gen_vector_table15(TrueMotion1Context *s, const uint8_t *sel_vector_table)
  210. {
  211. int len, i, j;
  212. unsigned char delta_pair;
  213. for (i = 0; i < 1024; i += 4)
  214. {
  215. len = *sel_vector_table++ / 2;
  216. for (j = 0; j < len; j++)
  217. {
  218. delta_pair = *sel_vector_table++;
  219. s->y_predictor_table[i+j] = 0xfffffffe &
  220. make_ydt15_entry(delta_pair >> 4, delta_pair & 0xf, s->ydt);
  221. s->c_predictor_table[i+j] = 0xfffffffe &
  222. make_cdt15_entry(delta_pair >> 4, delta_pair & 0xf, s->cdt);
  223. }
  224. s->y_predictor_table[i+(j-1)] |= 1;
  225. s->c_predictor_table[i+(j-1)] |= 1;
  226. }
  227. }
  228. static void gen_vector_table16(TrueMotion1Context *s, const uint8_t *sel_vector_table)
  229. {
  230. int len, i, j;
  231. unsigned char delta_pair;
  232. for (i = 0; i < 1024; i += 4)
  233. {
  234. len = *sel_vector_table++ / 2;
  235. for (j = 0; j < len; j++)
  236. {
  237. delta_pair = *sel_vector_table++;
  238. s->y_predictor_table[i+j] = 0xfffffffe &
  239. make_ydt16_entry(delta_pair >> 4, delta_pair & 0xf, s->ydt);
  240. s->c_predictor_table[i+j] = 0xfffffffe &
  241. make_cdt16_entry(delta_pair >> 4, delta_pair & 0xf, s->cdt);
  242. }
  243. s->y_predictor_table[i+(j-1)] |= 1;
  244. s->c_predictor_table[i+(j-1)] |= 1;
  245. }
  246. }
  247. static void gen_vector_table24(TrueMotion1Context *s, const uint8_t *sel_vector_table)
  248. {
  249. int len, i, j;
  250. unsigned char delta_pair;
  251. for (i = 0; i < 1024; i += 4)
  252. {
  253. len = *sel_vector_table++ / 2;
  254. for (j = 0; j < len; j++)
  255. {
  256. delta_pair = *sel_vector_table++;
  257. s->y_predictor_table[i+j] = 0xfffffffe &
  258. make_ydt24_entry(delta_pair >> 4, delta_pair & 0xf, s->ydt);
  259. s->c_predictor_table[i+j] = 0xfffffffe &
  260. make_cdt24_entry(delta_pair >> 4, delta_pair & 0xf, s->cdt);
  261. s->fat_y_predictor_table[i+j] = 0xfffffffe &
  262. make_ydt24_entry(delta_pair >> 4, delta_pair & 0xf, s->fat_ydt);
  263. s->fat_c_predictor_table[i+j] = 0xfffffffe &
  264. make_cdt24_entry(delta_pair >> 4, delta_pair & 0xf, s->fat_cdt);
  265. }
  266. s->y_predictor_table[i+(j-1)] |= 1;
  267. s->c_predictor_table[i+(j-1)] |= 1;
  268. s->fat_y_predictor_table[i+(j-1)] |= 1;
  269. s->fat_c_predictor_table[i+(j-1)] |= 1;
  270. }
  271. }
  272. /* Returns the number of bytes consumed from the bytestream. Returns -1 if
  273. * there was an error while decoding the header */
  274. static int truemotion1_decode_header(TrueMotion1Context *s)
  275. {
  276. int i;
  277. struct frame_header header;
  278. uint8_t header_buffer[128]; /* logical maximum size of the header */
  279. const uint8_t *sel_vector_table;
  280. /* There is 1 change bit per 4 pixels, so each change byte represents
  281. * 32 pixels; divide width by 4 to obtain the number of change bits and
  282. * then round up to the nearest byte. */
  283. s->mb_change_bits_row_size = ((s->avctx->width >> 2) + 7) >> 3;
  284. header.header_size = ((s->buf[0] >> 5) | (s->buf[0] << 3)) & 0x7f;
  285. if (s->buf[0] < 0x10)
  286. {
  287. av_log(s->avctx, AV_LOG_ERROR, "invalid header size (%d)\n", s->buf[0]);
  288. return -1;
  289. }
  290. /* unscramble the header bytes with a XOR operation */
  291. memset(header_buffer, 0, 128);
  292. for (i = 1; i < header.header_size; i++)
  293. header_buffer[i - 1] = s->buf[i] ^ s->buf[i + 1];
  294. header.compression = header_buffer[0];
  295. header.deltaset = header_buffer[1];
  296. header.vectable = header_buffer[2];
  297. header.ysize = AV_RL16(&header_buffer[3]);
  298. header.xsize = AV_RL16(&header_buffer[5]);
  299. header.checksum = AV_RL16(&header_buffer[7]);
  300. header.version = header_buffer[9];
  301. header.header_type = header_buffer[10];
  302. header.flags = header_buffer[11];
  303. header.control = header_buffer[12];
  304. /* Version 2 */
  305. if (header.version >= 2)
  306. {
  307. if (header.header_type > 3)
  308. {
  309. av_log(s->avctx, AV_LOG_ERROR, "invalid header type (%d)\n", header.header_type);
  310. return -1;
  311. } else if ((header.header_type == 2) || (header.header_type == 3)) {
  312. s->flags = header.flags;
  313. if (!(s->flags & FLAG_INTERFRAME))
  314. s->flags |= FLAG_KEYFRAME;
  315. } else
  316. s->flags = FLAG_KEYFRAME;
  317. } else /* Version 1 */
  318. s->flags = FLAG_KEYFRAME;
  319. if (s->flags & FLAG_SPRITE) {
  320. av_log(s->avctx, AV_LOG_INFO, "SPRITE frame found, please report the sample to the developers\n");
  321. /* FIXME header.width, height, xoffset and yoffset aren't initialized */
  322. #if 0
  323. s->w = header.width;
  324. s->h = header.height;
  325. s->x = header.xoffset;
  326. s->y = header.yoffset;
  327. #else
  328. return -1;
  329. #endif
  330. } else {
  331. s->w = header.xsize;
  332. s->h = header.ysize;
  333. if (header.header_type < 2) {
  334. if ((s->w < 213) && (s->h >= 176))
  335. {
  336. s->flags |= FLAG_INTERPOLATED;
  337. av_log(s->avctx, AV_LOG_INFO, "INTERPOLATION selected, please report the sample to the developers\n");
  338. }
  339. }
  340. }
  341. if (header.compression >= 17) {
  342. av_log(s->avctx, AV_LOG_ERROR, "invalid compression type (%d)\n", header.compression);
  343. return -1;
  344. }
  345. if ((header.deltaset != s->last_deltaset) ||
  346. (header.vectable != s->last_vectable))
  347. select_delta_tables(s, header.deltaset);
  348. if ((header.compression & 1) && header.header_type)
  349. sel_vector_table = pc_tbl2;
  350. else {
  351. if (header.vectable < 4)
  352. sel_vector_table = tables[header.vectable - 1];
  353. else {
  354. av_log(s->avctx, AV_LOG_ERROR, "invalid vector table id (%d)\n", header.vectable);
  355. return -1;
  356. }
  357. }
  358. // FIXME: where to place this ?!?!
  359. if (compression_types[header.compression].algorithm == ALGO_RGB24H)
  360. s->avctx->pix_fmt = PIX_FMT_RGB32;
  361. else
  362. s->avctx->pix_fmt = PIX_FMT_RGB555; // RGB565 is supported as well
  363. if ((header.deltaset != s->last_deltaset) || (header.vectable != s->last_vectable))
  364. {
  365. if (compression_types[header.compression].algorithm == ALGO_RGB24H)
  366. gen_vector_table24(s, sel_vector_table);
  367. else
  368. if (s->avctx->pix_fmt == PIX_FMT_RGB555)
  369. gen_vector_table15(s, sel_vector_table);
  370. else
  371. gen_vector_table16(s, sel_vector_table);
  372. }
  373. /* set up pointers to the other key data chunks */
  374. s->mb_change_bits = s->buf + header.header_size;
  375. if (s->flags & FLAG_KEYFRAME) {
  376. /* no change bits specified for a keyframe; only index bytes */
  377. s->index_stream = s->mb_change_bits;
  378. } else {
  379. /* one change bit per 4x4 block */
  380. s->index_stream = s->mb_change_bits +
  381. (s->mb_change_bits_row_size * (s->avctx->height >> 2));
  382. }
  383. s->index_stream_size = s->size - (s->index_stream - s->buf);
  384. s->last_deltaset = header.deltaset;
  385. s->last_vectable = header.vectable;
  386. s->compression = header.compression;
  387. s->block_width = compression_types[header.compression].block_width;
  388. s->block_height = compression_types[header.compression].block_height;
  389. s->block_type = compression_types[header.compression].block_type;
  390. if (s->avctx->debug & FF_DEBUG_PICT_INFO)
  391. av_log(s->avctx, AV_LOG_INFO, "tables: %d / %d c:%d %dx%d t:%d %s%s%s%s\n",
  392. s->last_deltaset, s->last_vectable, s->compression, s->block_width,
  393. s->block_height, s->block_type,
  394. s->flags & FLAG_KEYFRAME ? " KEY" : "",
  395. s->flags & FLAG_INTERFRAME ? " INTER" : "",
  396. s->flags & FLAG_SPRITE ? " SPRITE" : "",
  397. s->flags & FLAG_INTERPOLATED ? " INTERPOL" : "");
  398. return header.header_size;
  399. }
  400. static av_cold int truemotion1_decode_init(AVCodecContext *avctx)
  401. {
  402. TrueMotion1Context *s = avctx->priv_data;
  403. s->avctx = avctx;
  404. // FIXME: it may change ?
  405. // if (avctx->bits_per_sample == 24)
  406. // avctx->pix_fmt = PIX_FMT_RGB24;
  407. // else
  408. // avctx->pix_fmt = PIX_FMT_RGB555;
  409. s->frame.data[0] = NULL;
  410. /* there is a vertical predictor for each pixel in a line; each vertical
  411. * predictor is 0 to start with */
  412. s->vert_pred =
  413. (unsigned int *)av_malloc(s->avctx->width * sizeof(unsigned int));
  414. return 0;
  415. }
  416. /*
  417. Block decoding order:
  418. dxi: Y-Y
  419. dxic: Y-C-Y
  420. dxic2: Y-C-Y-C
  421. hres,vres,i,i%vres (0 < i < 4)
  422. 2x2 0: 0 dxic2
  423. 2x2 1: 1 dxi
  424. 2x2 2: 0 dxic2
  425. 2x2 3: 1 dxi
  426. 2x4 0: 0 dxic2
  427. 2x4 1: 1 dxi
  428. 2x4 2: 2 dxi
  429. 2x4 3: 3 dxi
  430. 4x2 0: 0 dxic
  431. 4x2 1: 1 dxi
  432. 4x2 2: 0 dxic
  433. 4x2 3: 1 dxi
  434. 4x4 0: 0 dxic
  435. 4x4 1: 1 dxi
  436. 4x4 2: 2 dxi
  437. 4x4 3: 3 dxi
  438. */
  439. #define GET_NEXT_INDEX() \
  440. {\
  441. if (index_stream_index >= s->index_stream_size) { \
  442. av_log(s->avctx, AV_LOG_INFO, " help! truemotion1 decoder went out of bounds\n"); \
  443. return; \
  444. } \
  445. index = s->index_stream[index_stream_index++] * 4; \
  446. }
  447. #define APPLY_C_PREDICTOR() \
  448. predictor_pair = s->c_predictor_table[index]; \
  449. horiz_pred += (predictor_pair >> 1); \
  450. if (predictor_pair & 1) { \
  451. GET_NEXT_INDEX() \
  452. if (!index) { \
  453. GET_NEXT_INDEX() \
  454. predictor_pair = s->c_predictor_table[index]; \
  455. horiz_pred += ((predictor_pair >> 1) * 5); \
  456. if (predictor_pair & 1) \
  457. GET_NEXT_INDEX() \
  458. else \
  459. index++; \
  460. } \
  461. } else \
  462. index++;
  463. #define APPLY_C_PREDICTOR_24() \
  464. predictor_pair = s->c_predictor_table[index]; \
  465. horiz_pred += (predictor_pair >> 1); \
  466. if (predictor_pair & 1) { \
  467. GET_NEXT_INDEX() \
  468. if (!index) { \
  469. GET_NEXT_INDEX() \
  470. predictor_pair = s->fat_c_predictor_table[index]; \
  471. horiz_pred += (predictor_pair >> 1); \
  472. if (predictor_pair & 1) \
  473. GET_NEXT_INDEX() \
  474. else \
  475. index++; \
  476. } \
  477. } else \
  478. index++;
  479. #define APPLY_Y_PREDICTOR() \
  480. predictor_pair = s->y_predictor_table[index]; \
  481. horiz_pred += (predictor_pair >> 1); \
  482. if (predictor_pair & 1) { \
  483. GET_NEXT_INDEX() \
  484. if (!index) { \
  485. GET_NEXT_INDEX() \
  486. predictor_pair = s->y_predictor_table[index]; \
  487. horiz_pred += ((predictor_pair >> 1) * 5); \
  488. if (predictor_pair & 1) \
  489. GET_NEXT_INDEX() \
  490. else \
  491. index++; \
  492. } \
  493. } else \
  494. index++;
  495. #define APPLY_Y_PREDICTOR_24() \
  496. predictor_pair = s->y_predictor_table[index]; \
  497. horiz_pred += (predictor_pair >> 1); \
  498. if (predictor_pair & 1) { \
  499. GET_NEXT_INDEX() \
  500. if (!index) { \
  501. GET_NEXT_INDEX() \
  502. predictor_pair = s->fat_y_predictor_table[index]; \
  503. horiz_pred += (predictor_pair >> 1); \
  504. if (predictor_pair & 1) \
  505. GET_NEXT_INDEX() \
  506. else \
  507. index++; \
  508. } \
  509. } else \
  510. index++;
  511. #define OUTPUT_PIXEL_PAIR() \
  512. *current_pixel_pair = *vert_pred + horiz_pred; \
  513. *vert_pred++ = *current_pixel_pair++;
  514. static void truemotion1_decode_16bit(TrueMotion1Context *s)
  515. {
  516. int y;
  517. int pixels_left; /* remaining pixels on this line */
  518. unsigned int predictor_pair;
  519. unsigned int horiz_pred;
  520. unsigned int *vert_pred;
  521. unsigned int *current_pixel_pair;
  522. unsigned char *current_line = s->frame.data[0];
  523. int keyframe = s->flags & FLAG_KEYFRAME;
  524. /* these variables are for managing the stream of macroblock change bits */
  525. const unsigned char *mb_change_bits = s->mb_change_bits;
  526. unsigned char mb_change_byte;
  527. unsigned char mb_change_byte_mask;
  528. int mb_change_index;
  529. /* these variables are for managing the main index stream */
  530. int index_stream_index = 0; /* yes, the index into the index stream */
  531. int index;
  532. /* clean out the line buffer */
  533. memset(s->vert_pred, 0, s->avctx->width * sizeof(unsigned int));
  534. GET_NEXT_INDEX();
  535. for (y = 0; y < s->avctx->height; y++) {
  536. /* re-init variables for the next line iteration */
  537. horiz_pred = 0;
  538. current_pixel_pair = (unsigned int *)current_line;
  539. vert_pred = s->vert_pred;
  540. mb_change_index = 0;
  541. mb_change_byte = mb_change_bits[mb_change_index++];
  542. mb_change_byte_mask = 0x01;
  543. pixels_left = s->avctx->width;
  544. while (pixels_left > 0) {
  545. if (keyframe || ((mb_change_byte & mb_change_byte_mask) == 0)) {
  546. switch (y & 3) {
  547. case 0:
  548. /* if macroblock width is 2, apply C-Y-C-Y; else
  549. * apply C-Y-Y */
  550. if (s->block_width == 2) {
  551. APPLY_C_PREDICTOR();
  552. APPLY_Y_PREDICTOR();
  553. OUTPUT_PIXEL_PAIR();
  554. APPLY_C_PREDICTOR();
  555. APPLY_Y_PREDICTOR();
  556. OUTPUT_PIXEL_PAIR();
  557. } else {
  558. APPLY_C_PREDICTOR();
  559. APPLY_Y_PREDICTOR();
  560. OUTPUT_PIXEL_PAIR();
  561. APPLY_Y_PREDICTOR();
  562. OUTPUT_PIXEL_PAIR();
  563. }
  564. break;
  565. case 1:
  566. case 3:
  567. /* always apply 2 Y predictors on these iterations */
  568. APPLY_Y_PREDICTOR();
  569. OUTPUT_PIXEL_PAIR();
  570. APPLY_Y_PREDICTOR();
  571. OUTPUT_PIXEL_PAIR();
  572. break;
  573. case 2:
  574. /* this iteration might be C-Y-C-Y, Y-Y, or C-Y-Y
  575. * depending on the macroblock type */
  576. if (s->block_type == BLOCK_2x2) {
  577. APPLY_C_PREDICTOR();
  578. APPLY_Y_PREDICTOR();
  579. OUTPUT_PIXEL_PAIR();
  580. APPLY_C_PREDICTOR();
  581. APPLY_Y_PREDICTOR();
  582. OUTPUT_PIXEL_PAIR();
  583. } else if (s->block_type == BLOCK_4x2) {
  584. APPLY_C_PREDICTOR();
  585. APPLY_Y_PREDICTOR();
  586. OUTPUT_PIXEL_PAIR();
  587. APPLY_Y_PREDICTOR();
  588. OUTPUT_PIXEL_PAIR();
  589. } else {
  590. APPLY_Y_PREDICTOR();
  591. OUTPUT_PIXEL_PAIR();
  592. APPLY_Y_PREDICTOR();
  593. OUTPUT_PIXEL_PAIR();
  594. }
  595. break;
  596. }
  597. } else {
  598. /* skip (copy) four pixels, but reassign the horizontal
  599. * predictor */
  600. *vert_pred++ = *current_pixel_pair++;
  601. horiz_pred = *current_pixel_pair - *vert_pred;
  602. *vert_pred++ = *current_pixel_pair++;
  603. }
  604. if (!keyframe) {
  605. mb_change_byte_mask <<= 1;
  606. /* next byte */
  607. if (!mb_change_byte_mask) {
  608. mb_change_byte = mb_change_bits[mb_change_index++];
  609. mb_change_byte_mask = 0x01;
  610. }
  611. }
  612. pixels_left -= 4;
  613. }
  614. /* next change row */
  615. if (((y + 1) & 3) == 0)
  616. mb_change_bits += s->mb_change_bits_row_size;
  617. current_line += s->frame.linesize[0];
  618. }
  619. }
  620. static void truemotion1_decode_24bit(TrueMotion1Context *s)
  621. {
  622. int y;
  623. int pixels_left; /* remaining pixels on this line */
  624. unsigned int predictor_pair;
  625. unsigned int horiz_pred;
  626. unsigned int *vert_pred;
  627. unsigned int *current_pixel_pair;
  628. unsigned char *current_line = s->frame.data[0];
  629. int keyframe = s->flags & FLAG_KEYFRAME;
  630. /* these variables are for managing the stream of macroblock change bits */
  631. const unsigned char *mb_change_bits = s->mb_change_bits;
  632. unsigned char mb_change_byte;
  633. unsigned char mb_change_byte_mask;
  634. int mb_change_index;
  635. /* these variables are for managing the main index stream */
  636. int index_stream_index = 0; /* yes, the index into the index stream */
  637. int index;
  638. /* clean out the line buffer */
  639. memset(s->vert_pred, 0, s->avctx->width * sizeof(unsigned int));
  640. GET_NEXT_INDEX();
  641. for (y = 0; y < s->avctx->height; y++) {
  642. /* re-init variables for the next line iteration */
  643. horiz_pred = 0;
  644. current_pixel_pair = (unsigned int *)current_line;
  645. vert_pred = s->vert_pred;
  646. mb_change_index = 0;
  647. mb_change_byte = mb_change_bits[mb_change_index++];
  648. mb_change_byte_mask = 0x01;
  649. pixels_left = s->avctx->width;
  650. while (pixels_left > 0) {
  651. if (keyframe || ((mb_change_byte & mb_change_byte_mask) == 0)) {
  652. switch (y & 3) {
  653. case 0:
  654. /* if macroblock width is 2, apply C-Y-C-Y; else
  655. * apply C-Y-Y */
  656. if (s->block_width == 2) {
  657. APPLY_C_PREDICTOR_24();
  658. APPLY_Y_PREDICTOR_24();
  659. OUTPUT_PIXEL_PAIR();
  660. APPLY_C_PREDICTOR_24();
  661. APPLY_Y_PREDICTOR_24();
  662. OUTPUT_PIXEL_PAIR();
  663. } else {
  664. APPLY_C_PREDICTOR_24();
  665. APPLY_Y_PREDICTOR_24();
  666. OUTPUT_PIXEL_PAIR();
  667. APPLY_Y_PREDICTOR_24();
  668. OUTPUT_PIXEL_PAIR();
  669. }
  670. break;
  671. case 1:
  672. case 3:
  673. /* always apply 2 Y predictors on these iterations */
  674. APPLY_Y_PREDICTOR_24();
  675. OUTPUT_PIXEL_PAIR();
  676. APPLY_Y_PREDICTOR_24();
  677. OUTPUT_PIXEL_PAIR();
  678. break;
  679. case 2:
  680. /* this iteration might be C-Y-C-Y, Y-Y, or C-Y-Y
  681. * depending on the macroblock type */
  682. if (s->block_type == BLOCK_2x2) {
  683. APPLY_C_PREDICTOR_24();
  684. APPLY_Y_PREDICTOR_24();
  685. OUTPUT_PIXEL_PAIR();
  686. APPLY_C_PREDICTOR_24();
  687. APPLY_Y_PREDICTOR_24();
  688. OUTPUT_PIXEL_PAIR();
  689. } else if (s->block_type == BLOCK_4x2) {
  690. APPLY_C_PREDICTOR_24();
  691. APPLY_Y_PREDICTOR_24();
  692. OUTPUT_PIXEL_PAIR();
  693. APPLY_Y_PREDICTOR_24();
  694. OUTPUT_PIXEL_PAIR();
  695. } else {
  696. APPLY_Y_PREDICTOR_24();
  697. OUTPUT_PIXEL_PAIR();
  698. APPLY_Y_PREDICTOR_24();
  699. OUTPUT_PIXEL_PAIR();
  700. }
  701. break;
  702. }
  703. } else {
  704. /* skip (copy) four pixels, but reassign the horizontal
  705. * predictor */
  706. *vert_pred++ = *current_pixel_pair++;
  707. horiz_pred = *current_pixel_pair - *vert_pred;
  708. *vert_pred++ = *current_pixel_pair++;
  709. }
  710. if (!keyframe) {
  711. mb_change_byte_mask <<= 1;
  712. /* next byte */
  713. if (!mb_change_byte_mask) {
  714. mb_change_byte = mb_change_bits[mb_change_index++];
  715. mb_change_byte_mask = 0x01;
  716. }
  717. }
  718. pixels_left -= 4;
  719. }
  720. /* next change row */
  721. if (((y + 1) & 3) == 0)
  722. mb_change_bits += s->mb_change_bits_row_size;
  723. current_line += s->frame.linesize[0];
  724. }
  725. }
  726. static int truemotion1_decode_frame(AVCodecContext *avctx,
  727. void *data, int *data_size,
  728. AVPacket *avpkt)
  729. {
  730. const uint8_t *buf = avpkt->data;
  731. int buf_size = avpkt->size;
  732. TrueMotion1Context *s = avctx->priv_data;
  733. s->buf = buf;
  734. s->size = buf_size;
  735. if (truemotion1_decode_header(s) == -1)
  736. return -1;
  737. s->frame.reference = 1;
  738. s->frame.buffer_hints = FF_BUFFER_HINTS_VALID |
  739. FF_BUFFER_HINTS_PRESERVE | FF_BUFFER_HINTS_REUSABLE;
  740. if (avctx->reget_buffer(avctx, &s->frame) < 0) {
  741. av_log(s->avctx, AV_LOG_ERROR, "get_buffer() failed\n");
  742. return -1;
  743. }
  744. if (compression_types[s->compression].algorithm == ALGO_RGB24H) {
  745. truemotion1_decode_24bit(s);
  746. } else if (compression_types[s->compression].algorithm != ALGO_NOP) {
  747. truemotion1_decode_16bit(s);
  748. }
  749. *data_size = sizeof(AVFrame);
  750. *(AVFrame*)data = s->frame;
  751. /* report that the buffer was completely consumed */
  752. return buf_size;
  753. }
  754. static av_cold int truemotion1_decode_end(AVCodecContext *avctx)
  755. {
  756. TrueMotion1Context *s = avctx->priv_data;
  757. if (s->frame.data[0])
  758. avctx->release_buffer(avctx, &s->frame);
  759. av_free(s->vert_pred);
  760. return 0;
  761. }
  762. AVCodec truemotion1_decoder = {
  763. "truemotion1",
  764. CODEC_TYPE_VIDEO,
  765. CODEC_ID_TRUEMOTION1,
  766. sizeof(TrueMotion1Context),
  767. truemotion1_decode_init,
  768. NULL,
  769. truemotion1_decode_end,
  770. truemotion1_decode_frame,
  771. CODEC_CAP_DR1,
  772. .long_name = NULL_IF_CONFIG_SMALL("Duck TrueMotion 1.0"),
  773. };