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  1. /*
  2. * Constants for DV codec
  3. * Copyright (c) 2002 Fabrice Bellard
  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
  23. * Constants for DV codec.
  24. */
  25. #include "libavutil/rational.h"
  26. #include "libavutil/intreadwrite.h"
  27. #include "libavutil/pixdesc.h"
  28. #include "avcodec.h"
  29. #include "dvdata.h"
  30. /* unquant tables (not used directly) */
  31. const uint8_t ff_dv_quant_shifts[22][4] = {
  32. { 3,3,4,4 },
  33. { 3,3,4,4 },
  34. { 2,3,3,4 },
  35. { 2,3,3,4 },
  36. { 2,2,3,3 },
  37. { 2,2,3,3 },
  38. { 1,2,2,3 },
  39. { 1,2,2,3 },
  40. { 1,1,2,2 },
  41. { 1,1,2,2 },
  42. { 0,1,1,2 },
  43. { 0,1,1,2 },
  44. { 0,0,1,1 },
  45. { 0,0,1,1 },
  46. { 0,0,0,1 },
  47. { 0,0,0,0 },
  48. { 0,0,0,0 },
  49. { 0,0,0,0 },
  50. { 0,0,0,0 },
  51. { 0,0,0,0 },
  52. { 0,0,0,0 },
  53. { 0,0,0,0 },
  54. };
  55. const uint8_t ff_dv_quant_offset[4] = { 6, 3, 0, 1 };
  56. const int ff_dv_iweight_88[64] = {
  57. 32768, 16710, 16710, 17735, 17015, 17735, 18197, 18079,
  58. 18079, 18197, 18725, 18559, 19196, 18559, 18725, 19284,
  59. 19108, 19692, 19692, 19108, 19284, 21400, 19645, 20262,
  60. 20214, 20262, 19645, 21400, 22733, 21845, 20867, 20815,
  61. 20815, 20867, 21845, 22733, 23173, 23173, 21400, 21400,
  62. 21400, 23173, 23173, 24600, 23764, 22017, 22017, 23764,
  63. 24600, 25267, 24457, 22672, 24457, 25267, 25971, 25191,
  64. 25191, 25971, 26715, 27962, 26715, 29642, 29642, 31536,
  65. };
  66. const int ff_dv_iweight_248[64] = {
  67. 32768, 17735, 16710, 18079, 18725, 21400, 17735, 19196,
  68. 19108, 21845, 16384, 17735, 18725, 21400, 16710, 18079,
  69. 20262, 23173, 18197, 19692, 18725, 20262, 20815, 23764,
  70. 17735, 19196, 19108, 21845, 20262, 23173, 18197, 19692,
  71. 21400, 24457, 19284, 20867, 21400, 23173, 22017, 25191,
  72. 18725, 20262, 20815, 23764, 21400, 24457, 19284, 20867,
  73. 24457, 27962, 22733, 24600, 25971, 29642, 21400, 23173,
  74. 22017, 25191, 24457, 27962, 22733, 24600, 25971, 29642,
  75. };
  76. /**
  77. * The "inverse" DV100 weights are actually just the spec weights (zig-zagged).
  78. */
  79. const int ff_dv_iweight_1080_y[64] = {
  80. 128, 16, 16, 17, 17, 17, 18, 18,
  81. 18, 18, 18, 18, 19, 18, 18, 19,
  82. 19, 19, 19, 19, 19, 42, 38, 40,
  83. 40, 40, 38, 42, 44, 43, 41, 41,
  84. 41, 41, 43, 44, 45, 45, 42, 42,
  85. 42, 45, 45, 48, 46, 43, 43, 46,
  86. 48, 49, 48, 44, 48, 49, 101, 98,
  87. 98, 101, 104, 109, 104, 116, 116, 123,
  88. };
  89. const int ff_dv_iweight_1080_c[64] = {
  90. 128, 16, 16, 17, 17, 17, 25, 25,
  91. 25, 25, 26, 25, 26, 25, 26, 26,
  92. 26, 27, 27, 26, 26, 42, 38, 40,
  93. 40, 40, 38, 42, 44, 43, 41, 41,
  94. 41, 41, 43, 44, 91, 91, 84, 84,
  95. 84, 91, 91, 96, 93, 86, 86, 93,
  96. 96, 197, 191, 177, 191, 197, 203, 197,
  97. 197, 203, 209, 219, 209, 232, 232, 246,
  98. };
  99. const int ff_dv_iweight_720_y[64] = {
  100. 128, 16, 16, 17, 17, 17, 18, 18,
  101. 18, 18, 18, 18, 19, 18, 18, 19,
  102. 19, 19, 19, 19, 19, 42, 38, 40,
  103. 40, 40, 38, 42, 44, 43, 41, 41,
  104. 41, 41, 43, 44, 68, 68, 63, 63,
  105. 63, 68, 68, 96, 92, 86, 86, 92,
  106. 96, 98, 96, 88, 96, 98, 202, 196,
  107. 196, 202, 208, 218, 208, 232, 232, 246,
  108. };
  109. const int ff_dv_iweight_720_c[64] = {
  110. 128, 24, 24, 26, 26, 26, 36, 36,
  111. 36, 36, 36, 36, 38, 36, 36, 38,
  112. 38, 38, 38, 38, 38, 84, 76, 80,
  113. 80, 80, 76, 84, 88, 86, 82, 82,
  114. 82, 82, 86, 88, 182, 182, 168, 168,
  115. 168, 182, 182, 192, 186, 192, 172, 186,
  116. 192, 394, 382, 354, 382, 394, 406, 394,
  117. 394, 406, 418, 438, 418, 464, 464, 492,
  118. };
  119. static DVwork_chunk work_chunks_dv25pal [1*12*27];
  120. static DVwork_chunk work_chunks_dv25pal411[1*12*27];
  121. static DVwork_chunk work_chunks_dv25ntsc [1*10*27];
  122. static DVwork_chunk work_chunks_dv50pal [2*12*27];
  123. static DVwork_chunk work_chunks_dv50ntsc [2*10*27];
  124. static DVwork_chunk work_chunks_dv100palp [2*12*27];
  125. static DVwork_chunk work_chunks_dv100ntscp[2*10*27];
  126. static DVwork_chunk work_chunks_dv100pali [4*12*27];
  127. static DVwork_chunk work_chunks_dv100ntsci[4*10*27];
  128. static uint32_t dv_idct_factor_sd [2*2*22*64];
  129. static uint32_t dv_idct_factor_hd1080[2*4*16*64];
  130. static uint32_t dv_idct_factor_hd720 [2*4*16*64];
  131. static const uint8_t dv_audio_shuffle525[10][9] = {
  132. { 0, 30, 60, 20, 50, 80, 10, 40, 70 }, /* 1st channel */
  133. { 6, 36, 66, 26, 56, 86, 16, 46, 76 },
  134. { 12, 42, 72, 2, 32, 62, 22, 52, 82 },
  135. { 18, 48, 78, 8, 38, 68, 28, 58, 88 },
  136. { 24, 54, 84, 14, 44, 74, 4, 34, 64 },
  137. { 1, 31, 61, 21, 51, 81, 11, 41, 71 }, /* 2nd channel */
  138. { 7, 37, 67, 27, 57, 87, 17, 47, 77 },
  139. { 13, 43, 73, 3, 33, 63, 23, 53, 83 },
  140. { 19, 49, 79, 9, 39, 69, 29, 59, 89 },
  141. { 25, 55, 85, 15, 45, 75, 5, 35, 65 },
  142. };
  143. static const uint8_t dv_audio_shuffle625[12][9] = {
  144. { 0, 36, 72, 26, 62, 98, 16, 52, 88}, /* 1st channel */
  145. { 6, 42, 78, 32, 68, 104, 22, 58, 94},
  146. { 12, 48, 84, 2, 38, 74, 28, 64, 100},
  147. { 18, 54, 90, 8, 44, 80, 34, 70, 106},
  148. { 24, 60, 96, 14, 50, 86, 4, 40, 76},
  149. { 30, 66, 102, 20, 56, 92, 10, 46, 82},
  150. { 1, 37, 73, 27, 63, 99, 17, 53, 89}, /* 2nd channel */
  151. { 7, 43, 79, 33, 69, 105, 23, 59, 95},
  152. { 13, 49, 85, 3, 39, 75, 29, 65, 101},
  153. { 19, 55, 91, 9, 45, 81, 35, 71, 107},
  154. { 25, 61, 97, 15, 51, 87, 5, 41, 77},
  155. { 31, 67, 103, 21, 57, 93, 11, 47, 83},
  156. };
  157. /* macroblock bit budgets */
  158. static const uint8_t block_sizes_dv2550[8] = {
  159. 112, 112, 112, 112, 80, 80, 0, 0,
  160. };
  161. static const uint8_t block_sizes_dv100[8] = {
  162. 80, 80, 80, 80, 80, 80, 64, 64,
  163. };
  164. static const DVprofile dv_profiles[] = {
  165. { .dsf = 0,
  166. .video_stype = 0x0,
  167. .frame_size = 120000, /* IEC 61834, SMPTE-314M - 525/60 (NTSC) */
  168. .difseg_size = 10,
  169. .n_difchan = 1,
  170. .time_base = { 1001, 30000 },
  171. .ltc_divisor = 30,
  172. .height = 480,
  173. .width = 720,
  174. .sar = {{8, 9}, {32, 27}},
  175. .work_chunks = &work_chunks_dv25ntsc[0],
  176. .idct_factor = &dv_idct_factor_sd[0],
  177. .pix_fmt = PIX_FMT_YUV411P,
  178. .bpm = 6,
  179. .block_sizes = block_sizes_dv2550,
  180. .audio_stride = 90,
  181. .audio_min_samples = { 1580, 1452, 1053 }, /* for 48, 44.1 and 32kHz */
  182. .audio_samples_dist = { 1600, 1602, 1602, 1602, 1602 }, /* per SMPTE-314M */
  183. .audio_shuffle = dv_audio_shuffle525,
  184. },
  185. { .dsf = 1,
  186. .video_stype = 0x0,
  187. .frame_size = 144000, /* IEC 61834 - 625/50 (PAL) */
  188. .difseg_size = 12,
  189. .n_difchan = 1,
  190. .time_base = { 1, 25 },
  191. .ltc_divisor = 25,
  192. .height = 576,
  193. .width = 720,
  194. .sar = {{16, 15}, {64, 45}},
  195. .work_chunks = &work_chunks_dv25pal[0],
  196. .idct_factor = &dv_idct_factor_sd[0],
  197. .pix_fmt = PIX_FMT_YUV420P,
  198. .bpm = 6,
  199. .block_sizes = block_sizes_dv2550,
  200. .audio_stride = 108,
  201. .audio_min_samples = { 1896, 1742, 1264 }, /* for 48, 44.1 and 32kHz */
  202. .audio_samples_dist = { 1920, 1920, 1920, 1920, 1920 },
  203. .audio_shuffle = dv_audio_shuffle625,
  204. },
  205. { .dsf = 1,
  206. .video_stype = 0x0,
  207. .frame_size = 144000, /* SMPTE-314M - 625/50 (PAL) */
  208. .difseg_size = 12,
  209. .n_difchan = 1,
  210. .time_base = { 1, 25 },
  211. .ltc_divisor = 25,
  212. .height = 576,
  213. .width = 720,
  214. .sar = {{16, 15}, {64, 45}},
  215. .work_chunks = &work_chunks_dv25pal411[0],
  216. .idct_factor = &dv_idct_factor_sd[0],
  217. .pix_fmt = PIX_FMT_YUV411P,
  218. .bpm = 6,
  219. .block_sizes = block_sizes_dv2550,
  220. .audio_stride = 108,
  221. .audio_min_samples = { 1896, 1742, 1264 }, /* for 48, 44.1 and 32kHz */
  222. .audio_samples_dist = { 1920, 1920, 1920, 1920, 1920 },
  223. .audio_shuffle = dv_audio_shuffle625,
  224. },
  225. { .dsf = 0,
  226. .video_stype = 0x4,
  227. .frame_size = 240000, /* SMPTE-314M - 525/60 (NTSC) 50 Mbps */
  228. .difseg_size = 10, /* also known as "DVCPRO50" */
  229. .n_difchan = 2,
  230. .time_base = { 1001, 30000 },
  231. .ltc_divisor = 30,
  232. .height = 480,
  233. .width = 720,
  234. .sar = {{8, 9}, {32, 27}},
  235. .work_chunks = &work_chunks_dv50ntsc[0],
  236. .idct_factor = &dv_idct_factor_sd[0],
  237. .pix_fmt = PIX_FMT_YUV422P,
  238. .bpm = 6,
  239. .block_sizes = block_sizes_dv2550,
  240. .audio_stride = 90,
  241. .audio_min_samples = { 1580, 1452, 1053 }, /* for 48, 44.1 and 32kHz */
  242. .audio_samples_dist = { 1600, 1602, 1602, 1602, 1602 }, /* per SMPTE-314M */
  243. .audio_shuffle = dv_audio_shuffle525,
  244. },
  245. { .dsf = 1,
  246. .video_stype = 0x4,
  247. .frame_size = 288000, /* SMPTE-314M - 625/50 (PAL) 50 Mbps */
  248. .difseg_size = 12, /* also known as "DVCPRO50" */
  249. .n_difchan = 2,
  250. .time_base = { 1, 25 },
  251. .ltc_divisor = 25,
  252. .height = 576,
  253. .width = 720,
  254. .sar = {{16, 15}, {64, 45}},
  255. .work_chunks = &work_chunks_dv50pal[0],
  256. .idct_factor = &dv_idct_factor_sd[0],
  257. .pix_fmt = PIX_FMT_YUV422P,
  258. .bpm = 6,
  259. .block_sizes = block_sizes_dv2550,
  260. .audio_stride = 108,
  261. .audio_min_samples = { 1896, 1742, 1264 }, /* for 48, 44.1 and 32kHz */
  262. .audio_samples_dist = { 1920, 1920, 1920, 1920, 1920 },
  263. .audio_shuffle = dv_audio_shuffle625,
  264. },
  265. { .dsf = 0,
  266. .video_stype = 0x14,
  267. .frame_size = 480000, /* SMPTE-370M - 1080i60 100 Mbps */
  268. .difseg_size = 10, /* also known as "DVCPRO HD" */
  269. .n_difchan = 4,
  270. .time_base = { 1001, 30000 },
  271. .ltc_divisor = 30,
  272. .height = 1080,
  273. .width = 1280,
  274. .sar = {{1, 1}, {3, 2}},
  275. .work_chunks = &work_chunks_dv100ntsci[0],
  276. .idct_factor = &dv_idct_factor_hd1080[0],
  277. .pix_fmt = PIX_FMT_YUV422P,
  278. .bpm = 8,
  279. .block_sizes = block_sizes_dv100,
  280. .audio_stride = 90,
  281. .audio_min_samples = { 1580, 1452, 1053 }, /* for 48, 44.1 and 32kHz */
  282. .audio_samples_dist = { 1600, 1602, 1602, 1602, 1602 }, /* per SMPTE-314M */
  283. .audio_shuffle = dv_audio_shuffle525,
  284. },
  285. { .dsf = 1,
  286. .video_stype = 0x14,
  287. .frame_size = 576000, /* SMPTE-370M - 1080i50 100 Mbps */
  288. .difseg_size = 12, /* also known as "DVCPRO HD" */
  289. .n_difchan = 4,
  290. .time_base = { 1, 25 },
  291. .ltc_divisor = 25,
  292. .height = 1080,
  293. .width = 1440,
  294. .sar = {{1, 1}, {4, 3}},
  295. .work_chunks = &work_chunks_dv100pali[0],
  296. .idct_factor = &dv_idct_factor_hd1080[0],
  297. .pix_fmt = PIX_FMT_YUV422P,
  298. .bpm = 8,
  299. .block_sizes = block_sizes_dv100,
  300. .audio_stride = 108,
  301. .audio_min_samples = { 1896, 1742, 1264 }, /* for 48, 44.1 and 32kHz */
  302. .audio_samples_dist = { 1920, 1920, 1920, 1920, 1920 },
  303. .audio_shuffle = dv_audio_shuffle625,
  304. },
  305. { .dsf = 0,
  306. .video_stype = 0x18,
  307. .frame_size = 240000, /* SMPTE-370M - 720p60 100 Mbps */
  308. .difseg_size = 10, /* also known as "DVCPRO HD" */
  309. .n_difchan = 2,
  310. .time_base = { 1001, 60000 },
  311. .ltc_divisor = 60,
  312. .height = 720,
  313. .width = 960,
  314. .sar = {{1, 1}, {4, 3}},
  315. .work_chunks = &work_chunks_dv100ntscp[0],
  316. .idct_factor = &dv_idct_factor_hd720[0],
  317. .pix_fmt = PIX_FMT_YUV422P,
  318. .bpm = 8,
  319. .block_sizes = block_sizes_dv100,
  320. .audio_stride = 90,
  321. .audio_min_samples = { 1580, 1452, 1053 }, /* for 48, 44.1 and 32kHz */
  322. .audio_samples_dist = { 1600, 1602, 1602, 1602, 1602 }, /* per SMPTE-314M */
  323. .audio_shuffle = dv_audio_shuffle525,
  324. },
  325. { .dsf = 1,
  326. .video_stype = 0x18,
  327. .frame_size = 288000, /* SMPTE-370M - 720p50 100 Mbps */
  328. .difseg_size = 12, /* also known as "DVCPRO HD" */
  329. .n_difchan = 2,
  330. .time_base = { 1, 50 },
  331. .ltc_divisor = 50,
  332. .height = 720,
  333. .width = 960,
  334. .sar = {{1, 1}, {4, 3}},
  335. .work_chunks = &work_chunks_dv100palp[0],
  336. .idct_factor = &dv_idct_factor_hd720[0],
  337. .pix_fmt = PIX_FMT_YUV422P,
  338. .bpm = 8,
  339. .block_sizes = block_sizes_dv100,
  340. .audio_stride = 90,
  341. .audio_min_samples = { 1896, 1742, 1264 }, /* for 48, 44.1 and 32kHz */
  342. .audio_samples_dist = { 1920, 1920, 1920, 1920, 1920 },
  343. .audio_shuffle = dv_audio_shuffle625,
  344. },
  345. { .dsf = 1,
  346. .video_stype = 0x1,
  347. .frame_size = 144000, /* IEC 61883-5 - 625/50 (PAL) */
  348. .difseg_size = 12,
  349. .n_difchan = 1,
  350. .time_base = { 1, 25 },
  351. .ltc_divisor = 25,
  352. .height = 576,
  353. .width = 720,
  354. .sar = {{16, 15}, {64, 45}},
  355. .work_chunks = &work_chunks_dv25pal[0],
  356. .idct_factor = &dv_idct_factor_sd[0],
  357. .pix_fmt = PIX_FMT_YUV420P,
  358. .bpm = 6,
  359. .block_sizes = block_sizes_dv2550,
  360. .audio_stride = 108,
  361. .audio_min_samples = { 1896, 1742, 1264 }, /* for 48, 44.1 and 32kHz */
  362. .audio_samples_dist = { 1920, 1920, 1920, 1920, 1920 },
  363. .audio_shuffle = dv_audio_shuffle625,
  364. }
  365. };
  366. const DVprofile* avpriv_dv_frame_profile2(AVCodecContext* codec, const DVprofile *sys,
  367. const uint8_t* frame, unsigned buf_size)
  368. {
  369. int i, dsf, stype;
  370. if(buf_size < DV_PROFILE_BYTES)
  371. return NULL;
  372. dsf = (frame[3] & 0x80) >> 7;
  373. stype = frame[80 * 5 + 48 + 3] & 0x1f;
  374. /* 576i50 25Mbps 4:1:1 is a special case */
  375. if (dsf == 1 && stype == 0 && frame[4] & 0x07 /* the APT field */) {
  376. return &dv_profiles[2];
  377. }
  378. if(stype == 0 && codec && codec->codec_tag==AV_RL32("dvsd") && codec->coded_width==720 && codec->coded_height==576)
  379. return &dv_profiles[1];
  380. for (i = 0; i < FF_ARRAY_ELEMS(dv_profiles); i++)
  381. if (dsf == dv_profiles[i].dsf && stype == dv_profiles[i].video_stype)
  382. return &dv_profiles[i];
  383. /* check if old sys matches and assumes corrupted input */
  384. if (sys && buf_size == sys->frame_size)
  385. return sys;
  386. /* hack for trac issue #217, dv files created with QuickTime 3 */
  387. if ((frame[3] & 0x7f) == 0x3f && frame[80 * 5 + 48 + 3] == 0xff)
  388. return &dv_profiles[dsf];
  389. return NULL;
  390. }
  391. const DVprofile* avpriv_dv_frame_profile(const DVprofile *sys,
  392. const uint8_t* frame, unsigned buf_size)
  393. {
  394. return avpriv_dv_frame_profile2(NULL, sys, frame, buf_size);
  395. }
  396. const DVprofile* avpriv_dv_codec_profile(AVCodecContext* codec)
  397. {
  398. int i;
  399. int w, h;
  400. if (codec->coded_width || codec->coded_height) {
  401. w = codec->coded_width;
  402. h = codec->coded_height;
  403. } else {
  404. w = codec->width;
  405. h = codec->height;
  406. }
  407. for (i=0; i<FF_ARRAY_ELEMS(dv_profiles); i++)
  408. if (h == dv_profiles[i].height &&
  409. codec->pix_fmt == dv_profiles[i].pix_fmt &&
  410. w == dv_profiles[i].width)
  411. return &dv_profiles[i];
  412. return NULL;
  413. }
  414. void ff_dv_print_profiles(void *logctx, int loglevel)
  415. {
  416. int i;
  417. for (i = 0; i < FF_ARRAY_ELEMS(dv_profiles); i++) {
  418. const DVprofile *p = &dv_profiles[i];
  419. av_log(logctx, loglevel, "Frame size: %dx%d; pixel format: %s, "
  420. "framerate: %d/%d\n", p->width, p->height, av_get_pix_fmt_name(p->pix_fmt),
  421. p->time_base.den, p->time_base.num);
  422. }
  423. }