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  1. /*
  2. * The simplest mpeg encoder (well, it was the simplest!)
  3. * Copyright (c) 2000,2001 Fabrice Bellard
  4. * Copyright (c) 2002-2004 Michael Niedermayer <michaelni@gmx.at>
  5. *
  6. * 4MV & hq & B-frame encoding stuff by Michael Niedermayer <michaelni@gmx.at>
  7. *
  8. * This file is part of Libav.
  9. *
  10. * Libav is free software; you can redistribute it and/or
  11. * modify it under the terms of the GNU Lesser General Public
  12. * License as published by the Free Software Foundation; either
  13. * version 2.1 of the License, or (at your option) any later version.
  14. *
  15. * Libav is distributed in the hope that it will be useful,
  16. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  17. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
  18. * Lesser General Public License for more details.
  19. *
  20. * You should have received a copy of the GNU Lesser General Public
  21. * License along with Libav; if not, write to the Free Software
  22. * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
  23. */
  24. /**
  25. * @file
  26. * The simplest mpeg encoder (well, it was the simplest!).
  27. */
  28. #include "libavutil/intmath.h"
  29. #include "libavutil/mathematics.h"
  30. #include "libavutil/opt.h"
  31. #include "avcodec.h"
  32. #include "dsputil.h"
  33. #include "mpegvideo.h"
  34. #include "mpegvideo_common.h"
  35. #include "h263.h"
  36. #include "mjpegenc.h"
  37. #include "msmpeg4.h"
  38. #include "faandct.h"
  39. #include "thread.h"
  40. #include "aandcttab.h"
  41. #include "flv.h"
  42. #include "mpeg4video.h"
  43. #include "internal.h"
  44. #include "bytestream.h"
  45. #include <limits.h>
  46. //#undef NDEBUG
  47. //#include <assert.h>
  48. static int encode_picture(MpegEncContext *s, int picture_number);
  49. static int dct_quantize_refine(MpegEncContext *s, DCTELEM *block, int16_t *weight, DCTELEM *orig, int n, int qscale);
  50. static int sse_mb(MpegEncContext *s);
  51. static void denoise_dct_c(MpegEncContext *s, DCTELEM *block);
  52. static int dct_quantize_trellis_c(MpegEncContext *s, DCTELEM *block, int n, int qscale, int *overflow);
  53. /* enable all paranoid tests for rounding, overflows, etc... */
  54. //#define PARANOID
  55. //#define DEBUG
  56. static uint8_t default_mv_penalty[MAX_FCODE + 1][MAX_MV * 2 + 1];
  57. static uint8_t default_fcode_tab[MAX_MV * 2 + 1];
  58. const AVOption ff_mpv_generic_options[] = {
  59. FF_MPV_COMMON_OPTS
  60. { NULL },
  61. };
  62. void ff_convert_matrix(DSPContext *dsp, int (*qmat)[64],
  63. uint16_t (*qmat16)[2][64],
  64. const uint16_t *quant_matrix,
  65. int bias, int qmin, int qmax, int intra)
  66. {
  67. int qscale;
  68. int shift = 0;
  69. for (qscale = qmin; qscale <= qmax; qscale++) {
  70. int i;
  71. if (dsp->fdct == ff_jpeg_fdct_islow_8 ||
  72. dsp->fdct == ff_jpeg_fdct_islow_10 ||
  73. dsp->fdct == ff_faandct) {
  74. for (i = 0; i < 64; i++) {
  75. const int j = dsp->idct_permutation[i];
  76. /* 16 <= qscale * quant_matrix[i] <= 7905
  77. * Assume x = ff_aanscales[i] * qscale * quant_matrix[i]
  78. * 19952 <= x <= 249205026
  79. * (1 << 36) / 19952 >= (1 << 36) / (x) >= (1 << 36) / 249205026
  80. * 3444240 >= (1 << 36) / (x) >= 275 */
  81. qmat[qscale][i] = (int)((UINT64_C(1) << QMAT_SHIFT) /
  82. (qscale * quant_matrix[j]));
  83. }
  84. } else if (dsp->fdct == ff_fdct_ifast) {
  85. for (i = 0; i < 64; i++) {
  86. const int j = dsp->idct_permutation[i];
  87. /* 16 <= qscale * quant_matrix[i] <= 7905
  88. * Assume x = ff_aanscales[i] * qscale * quant_matrix[i]
  89. * 19952 <= x <= 249205026
  90. * (1 << 36) / 19952 >= (1 << 36) / (x) >= (1 << 36) / 249205026
  91. * 3444240 >= (1 << 36) / (x) >= 275 */
  92. qmat[qscale][i] = (int)((UINT64_C(1) << (QMAT_SHIFT + 14)) /
  93. (ff_aanscales[i] * qscale *
  94. quant_matrix[j]));
  95. }
  96. } else {
  97. for (i = 0; i < 64; i++) {
  98. const int j = dsp->idct_permutation[i];
  99. /* We can safely suppose that 16 <= quant_matrix[i] <= 255
  100. * Assume x = qscale * quant_matrix[i]
  101. * So 16 <= x <= 7905
  102. * so (1 << 19) / 16 >= (1 << 19) / (x) >= (1 << 19) / 7905
  103. * so 32768 >= (1 << 19) / (x) >= 67 */
  104. qmat[qscale][i] = (int)((UINT64_C(1) << QMAT_SHIFT) /
  105. (qscale * quant_matrix[j]));
  106. //qmat [qscale][i] = (1 << QMAT_SHIFT_MMX) /
  107. // (qscale * quant_matrix[i]);
  108. qmat16[qscale][0][i] = (1 << QMAT_SHIFT_MMX) /
  109. (qscale * quant_matrix[j]);
  110. if (qmat16[qscale][0][i] == 0 ||
  111. qmat16[qscale][0][i] == 128 * 256)
  112. qmat16[qscale][0][i] = 128 * 256 - 1;
  113. qmat16[qscale][1][i] =
  114. ROUNDED_DIV(bias << (16 - QUANT_BIAS_SHIFT),
  115. qmat16[qscale][0][i]);
  116. }
  117. }
  118. for (i = intra; i < 64; i++) {
  119. int64_t max = 8191;
  120. if (dsp->fdct == ff_fdct_ifast) {
  121. max = (8191LL * ff_aanscales[i]) >> 14;
  122. }
  123. while (((max * qmat[qscale][i]) >> shift) > INT_MAX) {
  124. shift++;
  125. }
  126. }
  127. }
  128. if (shift) {
  129. av_log(NULL, AV_LOG_INFO,
  130. "Warning, QMAT_SHIFT is larger than %d, overflows possible\n",
  131. QMAT_SHIFT - shift);
  132. }
  133. }
  134. static inline void update_qscale(MpegEncContext *s)
  135. {
  136. s->qscale = (s->lambda * 139 + FF_LAMBDA_SCALE * 64) >>
  137. (FF_LAMBDA_SHIFT + 7);
  138. s->qscale = av_clip(s->qscale, s->avctx->qmin, s->avctx->qmax);
  139. s->lambda2 = (s->lambda * s->lambda + FF_LAMBDA_SCALE / 2) >>
  140. FF_LAMBDA_SHIFT;
  141. }
  142. void ff_write_quant_matrix(PutBitContext *pb, uint16_t *matrix)
  143. {
  144. int i;
  145. if (matrix) {
  146. put_bits(pb, 1, 1);
  147. for (i = 0; i < 64; i++) {
  148. put_bits(pb, 8, matrix[ff_zigzag_direct[i]]);
  149. }
  150. } else
  151. put_bits(pb, 1, 0);
  152. }
  153. /**
  154. * init s->current_picture.qscale_table from s->lambda_table
  155. */
  156. void ff_init_qscale_tab(MpegEncContext *s)
  157. {
  158. int8_t * const qscale_table = s->current_picture.f.qscale_table;
  159. int i;
  160. for (i = 0; i < s->mb_num; i++) {
  161. unsigned int lam = s->lambda_table[s->mb_index2xy[i]];
  162. int qp = (lam * 139 + FF_LAMBDA_SCALE * 64) >> (FF_LAMBDA_SHIFT + 7);
  163. qscale_table[s->mb_index2xy[i]] = av_clip(qp, s->avctx->qmin,
  164. s->avctx->qmax);
  165. }
  166. }
  167. static void copy_picture_attributes(MpegEncContext *s,
  168. AVFrame *dst,
  169. AVFrame *src)
  170. {
  171. int i;
  172. dst->pict_type = src->pict_type;
  173. dst->quality = src->quality;
  174. dst->coded_picture_number = src->coded_picture_number;
  175. dst->display_picture_number = src->display_picture_number;
  176. //dst->reference = src->reference;
  177. dst->pts = src->pts;
  178. dst->interlaced_frame = src->interlaced_frame;
  179. dst->top_field_first = src->top_field_first;
  180. if (s->avctx->me_threshold) {
  181. if (!src->motion_val[0])
  182. av_log(s->avctx, AV_LOG_ERROR, "AVFrame.motion_val not set!\n");
  183. if (!src->mb_type)
  184. av_log(s->avctx, AV_LOG_ERROR, "AVFrame.mb_type not set!\n");
  185. if (!src->ref_index[0])
  186. av_log(s->avctx, AV_LOG_ERROR, "AVFrame.ref_index not set!\n");
  187. if (src->motion_subsample_log2 != dst->motion_subsample_log2)
  188. av_log(s->avctx, AV_LOG_ERROR,
  189. "AVFrame.motion_subsample_log2 doesn't match! (%d!=%d)\n",
  190. src->motion_subsample_log2, dst->motion_subsample_log2);
  191. memcpy(dst->mb_type, src->mb_type,
  192. s->mb_stride * s->mb_height * sizeof(dst->mb_type[0]));
  193. for (i = 0; i < 2; i++) {
  194. int stride = ((16 * s->mb_width ) >>
  195. src->motion_subsample_log2) + 1;
  196. int height = ((16 * s->mb_height) >> src->motion_subsample_log2);
  197. if (src->motion_val[i] &&
  198. src->motion_val[i] != dst->motion_val[i]) {
  199. memcpy(dst->motion_val[i], src->motion_val[i],
  200. 2 * stride * height * sizeof(int16_t));
  201. }
  202. if (src->ref_index[i] && src->ref_index[i] != dst->ref_index[i]) {
  203. memcpy(dst->ref_index[i], src->ref_index[i],
  204. s->mb_stride * 4 * s->mb_height * sizeof(int8_t));
  205. }
  206. }
  207. }
  208. }
  209. static void update_duplicate_context_after_me(MpegEncContext *dst,
  210. MpegEncContext *src)
  211. {
  212. #define COPY(a) dst->a= src->a
  213. COPY(pict_type);
  214. COPY(current_picture);
  215. COPY(f_code);
  216. COPY(b_code);
  217. COPY(qscale);
  218. COPY(lambda);
  219. COPY(lambda2);
  220. COPY(picture_in_gop_number);
  221. COPY(gop_picture_number);
  222. COPY(frame_pred_frame_dct); // FIXME don't set in encode_header
  223. COPY(progressive_frame); // FIXME don't set in encode_header
  224. COPY(partitioned_frame); // FIXME don't set in encode_header
  225. #undef COPY
  226. }
  227. /**
  228. * Set the given MpegEncContext to defaults for encoding.
  229. * the changed fields will not depend upon the prior state of the MpegEncContext.
  230. */
  231. static void MPV_encode_defaults(MpegEncContext *s)
  232. {
  233. int i;
  234. ff_MPV_common_defaults(s);
  235. for (i = -16; i < 16; i++) {
  236. default_fcode_tab[i + MAX_MV] = 1;
  237. }
  238. s->me.mv_penalty = default_mv_penalty;
  239. s->fcode_tab = default_fcode_tab;
  240. }
  241. /* init video encoder */
  242. av_cold int ff_MPV_encode_init(AVCodecContext *avctx)
  243. {
  244. MpegEncContext *s = avctx->priv_data;
  245. int i;
  246. int chroma_h_shift, chroma_v_shift;
  247. MPV_encode_defaults(s);
  248. switch (avctx->codec_id) {
  249. case CODEC_ID_MPEG2VIDEO:
  250. if (avctx->pix_fmt != PIX_FMT_YUV420P &&
  251. avctx->pix_fmt != PIX_FMT_YUV422P) {
  252. av_log(avctx, AV_LOG_ERROR,
  253. "only YUV420 and YUV422 are supported\n");
  254. return -1;
  255. }
  256. break;
  257. case CODEC_ID_LJPEG:
  258. if (avctx->pix_fmt != PIX_FMT_YUVJ420P &&
  259. avctx->pix_fmt != PIX_FMT_YUVJ422P &&
  260. avctx->pix_fmt != PIX_FMT_YUVJ444P &&
  261. avctx->pix_fmt != PIX_FMT_BGRA &&
  262. ((avctx->pix_fmt != PIX_FMT_YUV420P &&
  263. avctx->pix_fmt != PIX_FMT_YUV422P &&
  264. avctx->pix_fmt != PIX_FMT_YUV444P) ||
  265. avctx->strict_std_compliance > FF_COMPLIANCE_UNOFFICIAL)) {
  266. av_log(avctx, AV_LOG_ERROR, "colorspace not supported in LJPEG\n");
  267. return -1;
  268. }
  269. break;
  270. case CODEC_ID_MJPEG:
  271. if (avctx->pix_fmt != PIX_FMT_YUVJ420P &&
  272. avctx->pix_fmt != PIX_FMT_YUVJ422P &&
  273. ((avctx->pix_fmt != PIX_FMT_YUV420P &&
  274. avctx->pix_fmt != PIX_FMT_YUV422P) ||
  275. avctx->strict_std_compliance > FF_COMPLIANCE_UNOFFICIAL)) {
  276. av_log(avctx, AV_LOG_ERROR, "colorspace not supported in jpeg\n");
  277. return -1;
  278. }
  279. break;
  280. default:
  281. if (avctx->pix_fmt != PIX_FMT_YUV420P) {
  282. av_log(avctx, AV_LOG_ERROR, "only YUV420 is supported\n");
  283. return -1;
  284. }
  285. }
  286. switch (avctx->pix_fmt) {
  287. case PIX_FMT_YUVJ422P:
  288. case PIX_FMT_YUV422P:
  289. s->chroma_format = CHROMA_422;
  290. break;
  291. case PIX_FMT_YUVJ420P:
  292. case PIX_FMT_YUV420P:
  293. default:
  294. s->chroma_format = CHROMA_420;
  295. break;
  296. }
  297. s->bit_rate = avctx->bit_rate;
  298. s->width = avctx->width;
  299. s->height = avctx->height;
  300. if (avctx->gop_size > 600 &&
  301. avctx->strict_std_compliance > FF_COMPLIANCE_EXPERIMENTAL) {
  302. av_log(avctx, AV_LOG_ERROR,
  303. "Warning keyframe interval too large! reducing it ...\n");
  304. avctx->gop_size = 600;
  305. }
  306. s->gop_size = avctx->gop_size;
  307. s->avctx = avctx;
  308. s->flags = avctx->flags;
  309. s->flags2 = avctx->flags2;
  310. s->max_b_frames = avctx->max_b_frames;
  311. s->codec_id = avctx->codec->id;
  312. #if FF_API_MPV_GLOBAL_OPTS
  313. if (avctx->luma_elim_threshold)
  314. s->luma_elim_threshold = avctx->luma_elim_threshold;
  315. if (avctx->chroma_elim_threshold)
  316. s->chroma_elim_threshold = avctx->chroma_elim_threshold;
  317. #endif
  318. s->strict_std_compliance = avctx->strict_std_compliance;
  319. s->quarter_sample = (avctx->flags & CODEC_FLAG_QPEL) != 0;
  320. s->mpeg_quant = avctx->mpeg_quant;
  321. s->rtp_mode = !!avctx->rtp_payload_size;
  322. s->intra_dc_precision = avctx->intra_dc_precision;
  323. s->user_specified_pts = AV_NOPTS_VALUE;
  324. if (s->gop_size <= 1) {
  325. s->intra_only = 1;
  326. s->gop_size = 12;
  327. } else {
  328. s->intra_only = 0;
  329. }
  330. s->me_method = avctx->me_method;
  331. /* Fixed QSCALE */
  332. s->fixed_qscale = !!(avctx->flags & CODEC_FLAG_QSCALE);
  333. #if FF_API_MPV_GLOBAL_OPTS
  334. if (s->flags & CODEC_FLAG_QP_RD)
  335. s->mpv_flags |= FF_MPV_FLAG_QP_RD;
  336. #endif
  337. s->adaptive_quant = (s->avctx->lumi_masking ||
  338. s->avctx->dark_masking ||
  339. s->avctx->temporal_cplx_masking ||
  340. s->avctx->spatial_cplx_masking ||
  341. s->avctx->p_masking ||
  342. s->avctx->border_masking ||
  343. (s->mpv_flags & FF_MPV_FLAG_QP_RD)) &&
  344. !s->fixed_qscale;
  345. s->loop_filter = !!(s->flags & CODEC_FLAG_LOOP_FILTER);
  346. if (avctx->rc_max_rate && !avctx->rc_buffer_size) {
  347. av_log(avctx, AV_LOG_ERROR,
  348. "a vbv buffer size is needed, "
  349. "for encoding with a maximum bitrate\n");
  350. return -1;
  351. }
  352. if (avctx->rc_min_rate && avctx->rc_max_rate != avctx->rc_min_rate) {
  353. av_log(avctx, AV_LOG_INFO,
  354. "Warning min_rate > 0 but min_rate != max_rate isn't recommended!\n");
  355. }
  356. if (avctx->rc_min_rate && avctx->rc_min_rate > avctx->bit_rate) {
  357. av_log(avctx, AV_LOG_ERROR, "bitrate below min bitrate\n");
  358. return -1;
  359. }
  360. if (avctx->rc_max_rate && avctx->rc_max_rate < avctx->bit_rate) {
  361. av_log(avctx, AV_LOG_INFO, "bitrate above max bitrate\n");
  362. return -1;
  363. }
  364. if (avctx->rc_max_rate &&
  365. avctx->rc_max_rate == avctx->bit_rate &&
  366. avctx->rc_max_rate != avctx->rc_min_rate) {
  367. av_log(avctx, AV_LOG_INFO,
  368. "impossible bitrate constraints, this will fail\n");
  369. }
  370. if (avctx->rc_buffer_size &&
  371. avctx->bit_rate * (int64_t)avctx->time_base.num >
  372. avctx->rc_buffer_size * (int64_t)avctx->time_base.den) {
  373. av_log(avctx, AV_LOG_ERROR, "VBV buffer too small for bitrate\n");
  374. return -1;
  375. }
  376. if (!s->fixed_qscale &&
  377. avctx->bit_rate * av_q2d(avctx->time_base) >
  378. avctx->bit_rate_tolerance) {
  379. av_log(avctx, AV_LOG_ERROR,
  380. "bitrate tolerance too small for bitrate\n");
  381. return -1;
  382. }
  383. if (s->avctx->rc_max_rate &&
  384. s->avctx->rc_min_rate == s->avctx->rc_max_rate &&
  385. (s->codec_id == CODEC_ID_MPEG1VIDEO ||
  386. s->codec_id == CODEC_ID_MPEG2VIDEO) &&
  387. 90000LL * (avctx->rc_buffer_size - 1) >
  388. s->avctx->rc_max_rate * 0xFFFFLL) {
  389. av_log(avctx, AV_LOG_INFO,
  390. "Warning vbv_delay will be set to 0xFFFF (=VBR) as the "
  391. "specified vbv buffer is too large for the given bitrate!\n");
  392. }
  393. if ((s->flags & CODEC_FLAG_4MV) && s->codec_id != CODEC_ID_MPEG4 &&
  394. s->codec_id != CODEC_ID_H263 && s->codec_id != CODEC_ID_H263P &&
  395. s->codec_id != CODEC_ID_FLV1) {
  396. av_log(avctx, AV_LOG_ERROR, "4MV not supported by codec\n");
  397. return -1;
  398. }
  399. if (s->obmc && s->avctx->mb_decision != FF_MB_DECISION_SIMPLE) {
  400. av_log(avctx, AV_LOG_ERROR,
  401. "OBMC is only supported with simple mb decision\n");
  402. return -1;
  403. }
  404. if (s->quarter_sample && s->codec_id != CODEC_ID_MPEG4) {
  405. av_log(avctx, AV_LOG_ERROR, "qpel not supported by codec\n");
  406. return -1;
  407. }
  408. if (s->max_b_frames &&
  409. s->codec_id != CODEC_ID_MPEG4 &&
  410. s->codec_id != CODEC_ID_MPEG1VIDEO &&
  411. s->codec_id != CODEC_ID_MPEG2VIDEO) {
  412. av_log(avctx, AV_LOG_ERROR, "b frames not supported by codec\n");
  413. return -1;
  414. }
  415. if ((s->codec_id == CODEC_ID_MPEG4 ||
  416. s->codec_id == CODEC_ID_H263 ||
  417. s->codec_id == CODEC_ID_H263P) &&
  418. (avctx->sample_aspect_ratio.num > 255 ||
  419. avctx->sample_aspect_ratio.den > 255)) {
  420. av_log(avctx, AV_LOG_ERROR,
  421. "Invalid pixel aspect ratio %i/%i, limit is 255/255\n",
  422. avctx->sample_aspect_ratio.num, avctx->sample_aspect_ratio.den);
  423. return -1;
  424. }
  425. if ((s->flags & (CODEC_FLAG_INTERLACED_DCT | CODEC_FLAG_INTERLACED_ME)) &&
  426. s->codec_id != CODEC_ID_MPEG4 && s->codec_id != CODEC_ID_MPEG2VIDEO) {
  427. av_log(avctx, AV_LOG_ERROR, "interlacing not supported by codec\n");
  428. return -1;
  429. }
  430. // FIXME mpeg2 uses that too
  431. if (s->mpeg_quant && s->codec_id != CODEC_ID_MPEG4) {
  432. av_log(avctx, AV_LOG_ERROR,
  433. "mpeg2 style quantization not supported by codec\n");
  434. return -1;
  435. }
  436. #if FF_API_MPV_GLOBAL_OPTS
  437. if (s->flags & CODEC_FLAG_CBP_RD)
  438. s->mpv_flags |= FF_MPV_FLAG_CBP_RD;
  439. #endif
  440. if ((s->mpv_flags & FF_MPV_FLAG_CBP_RD) && !avctx->trellis) {
  441. av_log(avctx, AV_LOG_ERROR, "CBP RD needs trellis quant\n");
  442. return -1;
  443. }
  444. if ((s->mpv_flags & FF_MPV_FLAG_QP_RD) &&
  445. s->avctx->mb_decision != FF_MB_DECISION_RD) {
  446. av_log(avctx, AV_LOG_ERROR, "QP RD needs mbd=2\n");
  447. return -1;
  448. }
  449. if (s->avctx->scenechange_threshold < 1000000000 &&
  450. (s->flags & CODEC_FLAG_CLOSED_GOP)) {
  451. av_log(avctx, AV_LOG_ERROR,
  452. "closed gop with scene change detection are not supported yet, "
  453. "set threshold to 1000000000\n");
  454. return -1;
  455. }
  456. if (s->flags & CODEC_FLAG_LOW_DELAY) {
  457. if (s->codec_id != CODEC_ID_MPEG2VIDEO) {
  458. av_log(avctx, AV_LOG_ERROR,
  459. "low delay forcing is only available for mpeg2\n");
  460. return -1;
  461. }
  462. if (s->max_b_frames != 0) {
  463. av_log(avctx, AV_LOG_ERROR,
  464. "b frames cannot be used with low delay\n");
  465. return -1;
  466. }
  467. }
  468. if (s->q_scale_type == 1) {
  469. if (avctx->qmax > 12) {
  470. av_log(avctx, AV_LOG_ERROR,
  471. "non linear quant only supports qmax <= 12 currently\n");
  472. return -1;
  473. }
  474. }
  475. if (s->avctx->thread_count > 1 &&
  476. s->codec_id != CODEC_ID_MPEG4 &&
  477. s->codec_id != CODEC_ID_MPEG1VIDEO &&
  478. s->codec_id != CODEC_ID_MPEG2VIDEO &&
  479. (s->codec_id != CODEC_ID_H263P)) {
  480. av_log(avctx, AV_LOG_ERROR,
  481. "multi threaded encoding not supported by codec\n");
  482. return -1;
  483. }
  484. if (s->avctx->thread_count < 1) {
  485. av_log(avctx, AV_LOG_ERROR,
  486. "automatic thread number detection not supported by codec,"
  487. "patch welcome\n");
  488. return -1;
  489. }
  490. if (s->avctx->thread_count > 1)
  491. s->rtp_mode = 1;
  492. if (!avctx->time_base.den || !avctx->time_base.num) {
  493. av_log(avctx, AV_LOG_ERROR, "framerate not set\n");
  494. return -1;
  495. }
  496. i = (INT_MAX / 2 + 128) >> 8;
  497. if (avctx->me_threshold >= i) {
  498. av_log(avctx, AV_LOG_ERROR, "me_threshold too large, max is %d\n",
  499. i - 1);
  500. return -1;
  501. }
  502. if (avctx->mb_threshold >= i) {
  503. av_log(avctx, AV_LOG_ERROR, "mb_threshold too large, max is %d\n",
  504. i - 1);
  505. return -1;
  506. }
  507. if (avctx->b_frame_strategy && (avctx->flags & CODEC_FLAG_PASS2)) {
  508. av_log(avctx, AV_LOG_INFO,
  509. "notice: b_frame_strategy only affects the first pass\n");
  510. avctx->b_frame_strategy = 0;
  511. }
  512. i = av_gcd(avctx->time_base.den, avctx->time_base.num);
  513. if (i > 1) {
  514. av_log(avctx, AV_LOG_INFO, "removing common factors from framerate\n");
  515. avctx->time_base.den /= i;
  516. avctx->time_base.num /= i;
  517. //return -1;
  518. }
  519. if (s->mpeg_quant || s->codec_id == CODEC_ID_MPEG1VIDEO ||
  520. s->codec_id == CODEC_ID_MPEG2VIDEO || s->codec_id == CODEC_ID_MJPEG) {
  521. // (a + x * 3 / 8) / x
  522. s->intra_quant_bias = 3 << (QUANT_BIAS_SHIFT - 3);
  523. s->inter_quant_bias = 0;
  524. } else {
  525. s->intra_quant_bias = 0;
  526. // (a - x / 4) / x
  527. s->inter_quant_bias = -(1 << (QUANT_BIAS_SHIFT - 2));
  528. }
  529. if (avctx->intra_quant_bias != FF_DEFAULT_QUANT_BIAS)
  530. s->intra_quant_bias = avctx->intra_quant_bias;
  531. if (avctx->inter_quant_bias != FF_DEFAULT_QUANT_BIAS)
  532. s->inter_quant_bias = avctx->inter_quant_bias;
  533. avcodec_get_chroma_sub_sample(avctx->pix_fmt, &chroma_h_shift,
  534. &chroma_v_shift);
  535. if (avctx->codec_id == CODEC_ID_MPEG4 &&
  536. s->avctx->time_base.den > (1 << 16) - 1) {
  537. av_log(avctx, AV_LOG_ERROR,
  538. "timebase %d/%d not supported by MPEG 4 standard, "
  539. "the maximum admitted value for the timebase denominator "
  540. "is %d\n", s->avctx->time_base.num, s->avctx->time_base.den,
  541. (1 << 16) - 1);
  542. return -1;
  543. }
  544. s->time_increment_bits = av_log2(s->avctx->time_base.den - 1) + 1;
  545. #if FF_API_MPV_GLOBAL_OPTS
  546. if (avctx->flags2 & CODEC_FLAG2_SKIP_RD)
  547. s->mpv_flags |= FF_MPV_FLAG_SKIP_RD;
  548. if (avctx->flags2 & CODEC_FLAG2_STRICT_GOP)
  549. s->mpv_flags |= FF_MPV_FLAG_STRICT_GOP;
  550. if (avctx->quantizer_noise_shaping)
  551. s->quantizer_noise_shaping = avctx->quantizer_noise_shaping;
  552. #endif
  553. switch (avctx->codec->id) {
  554. case CODEC_ID_MPEG1VIDEO:
  555. s->out_format = FMT_MPEG1;
  556. s->low_delay = !!(s->flags & CODEC_FLAG_LOW_DELAY);
  557. avctx->delay = s->low_delay ? 0 : (s->max_b_frames + 1);
  558. break;
  559. case CODEC_ID_MPEG2VIDEO:
  560. s->out_format = FMT_MPEG1;
  561. s->low_delay = !!(s->flags & CODEC_FLAG_LOW_DELAY);
  562. avctx->delay = s->low_delay ? 0 : (s->max_b_frames + 1);
  563. s->rtp_mode = 1;
  564. break;
  565. case CODEC_ID_LJPEG:
  566. case CODEC_ID_MJPEG:
  567. s->out_format = FMT_MJPEG;
  568. s->intra_only = 1; /* force intra only for jpeg */
  569. if (avctx->codec->id == CODEC_ID_LJPEG &&
  570. avctx->pix_fmt == PIX_FMT_BGRA) {
  571. s->mjpeg_vsample[0] = s->mjpeg_hsample[0] =
  572. s->mjpeg_vsample[1] = s->mjpeg_hsample[1] =
  573. s->mjpeg_vsample[2] = s->mjpeg_hsample[2] = 1;
  574. } else {
  575. s->mjpeg_vsample[0] = 2;
  576. s->mjpeg_vsample[1] = 2 >> chroma_v_shift;
  577. s->mjpeg_vsample[2] = 2 >> chroma_v_shift;
  578. s->mjpeg_hsample[0] = 2;
  579. s->mjpeg_hsample[1] = 2 >> chroma_h_shift;
  580. s->mjpeg_hsample[2] = 2 >> chroma_h_shift;
  581. }
  582. if (!(CONFIG_MJPEG_ENCODER || CONFIG_LJPEG_ENCODER) ||
  583. ff_mjpeg_encode_init(s) < 0)
  584. return -1;
  585. avctx->delay = 0;
  586. s->low_delay = 1;
  587. break;
  588. case CODEC_ID_H261:
  589. if (!CONFIG_H261_ENCODER)
  590. return -1;
  591. if (ff_h261_get_picture_format(s->width, s->height) < 0) {
  592. av_log(avctx, AV_LOG_ERROR,
  593. "The specified picture size of %dx%d is not valid for the "
  594. "H.261 codec.\nValid sizes are 176x144, 352x288\n",
  595. s->width, s->height);
  596. return -1;
  597. }
  598. s->out_format = FMT_H261;
  599. avctx->delay = 0;
  600. s->low_delay = 1;
  601. break;
  602. case CODEC_ID_H263:
  603. if (!CONFIG_H263_ENCODER)
  604. return -1;
  605. if (ff_match_2uint16(ff_h263_format, FF_ARRAY_ELEMS(ff_h263_format),
  606. s->width, s->height) == 8) {
  607. av_log(avctx, AV_LOG_INFO,
  608. "The specified picture size of %dx%d is not valid for "
  609. "the H.263 codec.\nValid sizes are 128x96, 176x144, "
  610. "352x288, 704x576, and 1408x1152."
  611. "Try H.263+.\n", s->width, s->height);
  612. return -1;
  613. }
  614. s->out_format = FMT_H263;
  615. avctx->delay = 0;
  616. s->low_delay = 1;
  617. break;
  618. case CODEC_ID_H263P:
  619. s->out_format = FMT_H263;
  620. s->h263_plus = 1;
  621. /* Fx */
  622. s->h263_aic = (avctx->flags & CODEC_FLAG_AC_PRED) ? 1 : 0;
  623. s->modified_quant = s->h263_aic;
  624. s->loop_filter = (avctx->flags & CODEC_FLAG_LOOP_FILTER) ? 1 : 0;
  625. s->unrestricted_mv = s->obmc || s->loop_filter || s->umvplus;
  626. /* /Fx */
  627. /* These are just to be sure */
  628. avctx->delay = 0;
  629. s->low_delay = 1;
  630. break;
  631. case CODEC_ID_FLV1:
  632. s->out_format = FMT_H263;
  633. s->h263_flv = 2; /* format = 1; 11-bit codes */
  634. s->unrestricted_mv = 1;
  635. s->rtp_mode = 0; /* don't allow GOB */
  636. avctx->delay = 0;
  637. s->low_delay = 1;
  638. break;
  639. case CODEC_ID_RV10:
  640. s->out_format = FMT_H263;
  641. avctx->delay = 0;
  642. s->low_delay = 1;
  643. break;
  644. case CODEC_ID_RV20:
  645. s->out_format = FMT_H263;
  646. avctx->delay = 0;
  647. s->low_delay = 1;
  648. s->modified_quant = 1;
  649. s->h263_aic = 1;
  650. s->h263_plus = 1;
  651. s->loop_filter = 1;
  652. s->unrestricted_mv = 0;
  653. break;
  654. case CODEC_ID_MPEG4:
  655. s->out_format = FMT_H263;
  656. s->h263_pred = 1;
  657. s->unrestricted_mv = 1;
  658. s->low_delay = s->max_b_frames ? 0 : 1;
  659. avctx->delay = s->low_delay ? 0 : (s->max_b_frames + 1);
  660. break;
  661. case CODEC_ID_MSMPEG4V2:
  662. s->out_format = FMT_H263;
  663. s->h263_pred = 1;
  664. s->unrestricted_mv = 1;
  665. s->msmpeg4_version = 2;
  666. avctx->delay = 0;
  667. s->low_delay = 1;
  668. break;
  669. case CODEC_ID_MSMPEG4V3:
  670. s->out_format = FMT_H263;
  671. s->h263_pred = 1;
  672. s->unrestricted_mv = 1;
  673. s->msmpeg4_version = 3;
  674. s->flipflop_rounding = 1;
  675. avctx->delay = 0;
  676. s->low_delay = 1;
  677. break;
  678. case CODEC_ID_WMV1:
  679. s->out_format = FMT_H263;
  680. s->h263_pred = 1;
  681. s->unrestricted_mv = 1;
  682. s->msmpeg4_version = 4;
  683. s->flipflop_rounding = 1;
  684. avctx->delay = 0;
  685. s->low_delay = 1;
  686. break;
  687. case CODEC_ID_WMV2:
  688. s->out_format = FMT_H263;
  689. s->h263_pred = 1;
  690. s->unrestricted_mv = 1;
  691. s->msmpeg4_version = 5;
  692. s->flipflop_rounding = 1;
  693. avctx->delay = 0;
  694. s->low_delay = 1;
  695. break;
  696. default:
  697. return -1;
  698. }
  699. avctx->has_b_frames = !s->low_delay;
  700. s->encoding = 1;
  701. s->progressive_frame =
  702. s->progressive_sequence = !(avctx->flags & (CODEC_FLAG_INTERLACED_DCT |
  703. CODEC_FLAG_INTERLACED_ME) ||
  704. s->alternate_scan);
  705. /* init */
  706. if (ff_MPV_common_init(s) < 0)
  707. return -1;
  708. if (!s->dct_quantize)
  709. s->dct_quantize = ff_dct_quantize_c;
  710. if (!s->denoise_dct)
  711. s->denoise_dct = denoise_dct_c;
  712. s->fast_dct_quantize = s->dct_quantize;
  713. if (avctx->trellis)
  714. s->dct_quantize = dct_quantize_trellis_c;
  715. if ((CONFIG_H263P_ENCODER || CONFIG_RV20_ENCODER) && s->modified_quant)
  716. s->chroma_qscale_table = ff_h263_chroma_qscale_table;
  717. s->quant_precision = 5;
  718. ff_set_cmp(&s->dsp, s->dsp.ildct_cmp, s->avctx->ildct_cmp);
  719. ff_set_cmp(&s->dsp, s->dsp.frame_skip_cmp, s->avctx->frame_skip_cmp);
  720. if (CONFIG_H261_ENCODER && s->out_format == FMT_H261)
  721. ff_h261_encode_init(s);
  722. if (CONFIG_H263_ENCODER && s->out_format == FMT_H263)
  723. ff_h263_encode_init(s);
  724. if (CONFIG_MSMPEG4_ENCODER && s->msmpeg4_version)
  725. ff_msmpeg4_encode_init(s);
  726. if ((CONFIG_MPEG1VIDEO_ENCODER || CONFIG_MPEG2VIDEO_ENCODER)
  727. && s->out_format == FMT_MPEG1)
  728. ff_mpeg1_encode_init(s);
  729. /* init q matrix */
  730. for (i = 0; i < 64; i++) {
  731. int j = s->dsp.idct_permutation[i];
  732. if (CONFIG_MPEG4_ENCODER && s->codec_id == CODEC_ID_MPEG4 &&
  733. s->mpeg_quant) {
  734. s->intra_matrix[j] = ff_mpeg4_default_intra_matrix[i];
  735. s->inter_matrix[j] = ff_mpeg4_default_non_intra_matrix[i];
  736. } else if (s->out_format == FMT_H263 || s->out_format == FMT_H261) {
  737. s->intra_matrix[j] =
  738. s->inter_matrix[j] = ff_mpeg1_default_non_intra_matrix[i];
  739. } else {
  740. /* mpeg1/2 */
  741. s->intra_matrix[j] = ff_mpeg1_default_intra_matrix[i];
  742. s->inter_matrix[j] = ff_mpeg1_default_non_intra_matrix[i];
  743. }
  744. if (s->avctx->intra_matrix)
  745. s->intra_matrix[j] = s->avctx->intra_matrix[i];
  746. if (s->avctx->inter_matrix)
  747. s->inter_matrix[j] = s->avctx->inter_matrix[i];
  748. }
  749. /* precompute matrix */
  750. /* for mjpeg, we do include qscale in the matrix */
  751. if (s->out_format != FMT_MJPEG) {
  752. ff_convert_matrix(&s->dsp, s->q_intra_matrix, s->q_intra_matrix16,
  753. s->intra_matrix, s->intra_quant_bias, avctx->qmin,
  754. 31, 1);
  755. ff_convert_matrix(&s->dsp, s->q_inter_matrix, s->q_inter_matrix16,
  756. s->inter_matrix, s->inter_quant_bias, avctx->qmin,
  757. 31, 0);
  758. }
  759. if (ff_rate_control_init(s) < 0)
  760. return -1;
  761. return 0;
  762. }
  763. av_cold int ff_MPV_encode_end(AVCodecContext *avctx)
  764. {
  765. MpegEncContext *s = avctx->priv_data;
  766. ff_rate_control_uninit(s);
  767. ff_MPV_common_end(s);
  768. if ((CONFIG_MJPEG_ENCODER || CONFIG_LJPEG_ENCODER) &&
  769. s->out_format == FMT_MJPEG)
  770. ff_mjpeg_encode_close(s);
  771. av_freep(&avctx->extradata);
  772. return 0;
  773. }
  774. static int get_sae(uint8_t *src, int ref, int stride)
  775. {
  776. int x,y;
  777. int acc = 0;
  778. for (y = 0; y < 16; y++) {
  779. for (x = 0; x < 16; x++) {
  780. acc += FFABS(src[x + y * stride] - ref);
  781. }
  782. }
  783. return acc;
  784. }
  785. static int get_intra_count(MpegEncContext *s, uint8_t *src,
  786. uint8_t *ref, int stride)
  787. {
  788. int x, y, w, h;
  789. int acc = 0;
  790. w = s->width & ~15;
  791. h = s->height & ~15;
  792. for (y = 0; y < h; y += 16) {
  793. for (x = 0; x < w; x += 16) {
  794. int offset = x + y * stride;
  795. int sad = s->dsp.sad[0](NULL, src + offset, ref + offset, stride,
  796. 16);
  797. int mean = (s->dsp.pix_sum(src + offset, stride) + 128) >> 8;
  798. int sae = get_sae(src + offset, mean, stride);
  799. acc += sae + 500 < sad;
  800. }
  801. }
  802. return acc;
  803. }
  804. static int load_input_picture(MpegEncContext *s, AVFrame *pic_arg)
  805. {
  806. AVFrame *pic = NULL;
  807. int64_t pts;
  808. int i;
  809. const int encoding_delay = s->max_b_frames ? s->max_b_frames :
  810. (s->low_delay ? 0 : 1);
  811. int direct = 1;
  812. if (pic_arg) {
  813. pts = pic_arg->pts;
  814. pic_arg->display_picture_number = s->input_picture_number++;
  815. if (pts != AV_NOPTS_VALUE) {
  816. if (s->user_specified_pts != AV_NOPTS_VALUE) {
  817. int64_t time = pts;
  818. int64_t last = s->user_specified_pts;
  819. if (time <= last) {
  820. av_log(s->avctx, AV_LOG_ERROR,
  821. "Error, Invalid timestamp=%"PRId64", "
  822. "last=%"PRId64"\n", pts, s->user_specified_pts);
  823. return -1;
  824. }
  825. if (!s->low_delay && pic_arg->display_picture_number == 1)
  826. s->dts_delta = time - last;
  827. }
  828. s->user_specified_pts = pts;
  829. } else {
  830. if (s->user_specified_pts != AV_NOPTS_VALUE) {
  831. s->user_specified_pts =
  832. pts = s->user_specified_pts + 1;
  833. av_log(s->avctx, AV_LOG_INFO,
  834. "Warning: AVFrame.pts=? trying to guess (%"PRId64")\n",
  835. pts);
  836. } else {
  837. pts = pic_arg->display_picture_number;
  838. }
  839. }
  840. }
  841. if (pic_arg) {
  842. if (encoding_delay && !(s->flags & CODEC_FLAG_INPUT_PRESERVED))
  843. direct = 0;
  844. if (pic_arg->linesize[0] != s->linesize)
  845. direct = 0;
  846. if (pic_arg->linesize[1] != s->uvlinesize)
  847. direct = 0;
  848. if (pic_arg->linesize[2] != s->uvlinesize)
  849. direct = 0;
  850. //av_log(AV_LOG_DEBUG, "%d %d %d %d\n",pic_arg->linesize[0],
  851. // pic_arg->linesize[1], s->linesize, s->uvlinesize);
  852. if (direct) {
  853. i = ff_find_unused_picture(s, 1);
  854. if (i < 0)
  855. return i;
  856. pic = &s->picture[i].f;
  857. pic->reference = 3;
  858. for (i = 0; i < 4; i++) {
  859. pic->data[i] = pic_arg->data[i];
  860. pic->linesize[i] = pic_arg->linesize[i];
  861. }
  862. if (ff_alloc_picture(s, (Picture *) pic, 1) < 0) {
  863. return -1;
  864. }
  865. } else {
  866. i = ff_find_unused_picture(s, 0);
  867. if (i < 0)
  868. return i;
  869. pic = &s->picture[i].f;
  870. pic->reference = 3;
  871. if (ff_alloc_picture(s, (Picture *) pic, 0) < 0) {
  872. return -1;
  873. }
  874. if (pic->data[0] + INPLACE_OFFSET == pic_arg->data[0] &&
  875. pic->data[1] + INPLACE_OFFSET == pic_arg->data[1] &&
  876. pic->data[2] + INPLACE_OFFSET == pic_arg->data[2]) {
  877. // empty
  878. } else {
  879. int h_chroma_shift, v_chroma_shift;
  880. avcodec_get_chroma_sub_sample(s->avctx->pix_fmt, &h_chroma_shift,
  881. &v_chroma_shift);
  882. for (i = 0; i < 3; i++) {
  883. int src_stride = pic_arg->linesize[i];
  884. int dst_stride = i ? s->uvlinesize : s->linesize;
  885. int h_shift = i ? h_chroma_shift : 0;
  886. int v_shift = i ? v_chroma_shift : 0;
  887. int w = s->width >> h_shift;
  888. int h = s->height >> v_shift;
  889. uint8_t *src = pic_arg->data[i];
  890. uint8_t *dst = pic->data[i];
  891. if (!s->avctx->rc_buffer_size)
  892. dst += INPLACE_OFFSET;
  893. if (src_stride == dst_stride)
  894. memcpy(dst, src, src_stride * h);
  895. else {
  896. while (h--) {
  897. memcpy(dst, src, w);
  898. dst += dst_stride;
  899. src += src_stride;
  900. }
  901. }
  902. }
  903. }
  904. }
  905. copy_picture_attributes(s, pic, pic_arg);
  906. pic->pts = pts; // we set this here to avoid modifiying pic_arg
  907. }
  908. /* shift buffer entries */
  909. for (i = 1; i < MAX_PICTURE_COUNT /*s->encoding_delay + 1*/; i++)
  910. s->input_picture[i - 1] = s->input_picture[i];
  911. s->input_picture[encoding_delay] = (Picture*) pic;
  912. return 0;
  913. }
  914. static int skip_check(MpegEncContext *s, Picture *p, Picture *ref)
  915. {
  916. int x, y, plane;
  917. int score = 0;
  918. int64_t score64 = 0;
  919. for (plane = 0; plane < 3; plane++) {
  920. const int stride = p->f.linesize[plane];
  921. const int bw = plane ? 1 : 2;
  922. for (y = 0; y < s->mb_height * bw; y++) {
  923. for (x = 0; x < s->mb_width * bw; x++) {
  924. int off = p->f.type == FF_BUFFER_TYPE_SHARED ? 0 : 16;
  925. uint8_t *dptr = p->f.data[plane] + 8 * (x + y * stride) + off;
  926. uint8_t *rptr = ref->f.data[plane] + 8 * (x + y * stride);
  927. int v = s->dsp.frame_skip_cmp[1](s, dptr, rptr, stride, 8);
  928. switch (s->avctx->frame_skip_exp) {
  929. case 0: score = FFMAX(score, v); break;
  930. case 1: score += FFABS(v); break;
  931. case 2: score += v * v; break;
  932. case 3: score64 += FFABS(v * v * (int64_t)v); break;
  933. case 4: score64 += v * v * (int64_t)(v * v); break;
  934. }
  935. }
  936. }
  937. }
  938. if (score)
  939. score64 = score;
  940. if (score64 < s->avctx->frame_skip_threshold)
  941. return 1;
  942. if (score64 < ((s->avctx->frame_skip_factor * (int64_t)s->lambda) >> 8))
  943. return 1;
  944. return 0;
  945. }
  946. static int estimate_best_b_count(MpegEncContext *s)
  947. {
  948. AVCodec *codec = avcodec_find_encoder(s->avctx->codec_id);
  949. AVCodecContext *c = avcodec_alloc_context3(NULL);
  950. AVFrame input[FF_MAX_B_FRAMES + 2];
  951. const int scale = s->avctx->brd_scale;
  952. int i, j, out_size, p_lambda, b_lambda, lambda2;
  953. int outbuf_size = s->width * s->height; // FIXME
  954. uint8_t *outbuf = av_malloc(outbuf_size);
  955. int64_t best_rd = INT64_MAX;
  956. int best_b_count = -1;
  957. assert(scale >= 0 && scale <= 3);
  958. //emms_c();
  959. //s->next_picture_ptr->quality;
  960. p_lambda = s->last_lambda_for[AV_PICTURE_TYPE_P];
  961. //p_lambda * FFABS(s->avctx->b_quant_factor) + s->avctx->b_quant_offset;
  962. b_lambda = s->last_lambda_for[AV_PICTURE_TYPE_B];
  963. if (!b_lambda) // FIXME we should do this somewhere else
  964. b_lambda = p_lambda;
  965. lambda2 = (b_lambda * b_lambda + (1 << FF_LAMBDA_SHIFT) / 2) >>
  966. FF_LAMBDA_SHIFT;
  967. c->width = s->width >> scale;
  968. c->height = s->height >> scale;
  969. c->flags = CODEC_FLAG_QSCALE | CODEC_FLAG_PSNR |
  970. CODEC_FLAG_INPUT_PRESERVED /*| CODEC_FLAG_EMU_EDGE*/;
  971. c->flags |= s->avctx->flags & CODEC_FLAG_QPEL;
  972. c->mb_decision = s->avctx->mb_decision;
  973. c->me_cmp = s->avctx->me_cmp;
  974. c->mb_cmp = s->avctx->mb_cmp;
  975. c->me_sub_cmp = s->avctx->me_sub_cmp;
  976. c->pix_fmt = PIX_FMT_YUV420P;
  977. c->time_base = s->avctx->time_base;
  978. c->max_b_frames = s->max_b_frames;
  979. if (avcodec_open2(c, codec, NULL) < 0)
  980. return -1;
  981. for (i = 0; i < s->max_b_frames + 2; i++) {
  982. int ysize = c->width * c->height;
  983. int csize = (c->width / 2) * (c->height / 2);
  984. Picture pre_input, *pre_input_ptr = i ? s->input_picture[i - 1] :
  985. s->next_picture_ptr;
  986. avcodec_get_frame_defaults(&input[i]);
  987. input[i].data[0] = av_malloc(ysize + 2 * csize);
  988. input[i].data[1] = input[i].data[0] + ysize;
  989. input[i].data[2] = input[i].data[1] + csize;
  990. input[i].linesize[0] = c->width;
  991. input[i].linesize[1] =
  992. input[i].linesize[2] = c->width / 2;
  993. if (pre_input_ptr && (!i || s->input_picture[i - 1])) {
  994. pre_input = *pre_input_ptr;
  995. if (pre_input.f.type != FF_BUFFER_TYPE_SHARED && i) {
  996. pre_input.f.data[0] += INPLACE_OFFSET;
  997. pre_input.f.data[1] += INPLACE_OFFSET;
  998. pre_input.f.data[2] += INPLACE_OFFSET;
  999. }
  1000. s->dsp.shrink[scale](input[i].data[0], input[i].linesize[0],
  1001. pre_input.f.data[0], pre_input.f.linesize[0],
  1002. c->width, c->height);
  1003. s->dsp.shrink[scale](input[i].data[1], input[i].linesize[1],
  1004. pre_input.f.data[1], pre_input.f.linesize[1],
  1005. c->width >> 1, c->height >> 1);
  1006. s->dsp.shrink[scale](input[i].data[2], input[i].linesize[2],
  1007. pre_input.f.data[2], pre_input.f.linesize[2],
  1008. c->width >> 1, c->height >> 1);
  1009. }
  1010. }
  1011. for (j = 0; j < s->max_b_frames + 1; j++) {
  1012. int64_t rd = 0;
  1013. if (!s->input_picture[j])
  1014. break;
  1015. c->error[0] = c->error[1] = c->error[2] = 0;
  1016. input[0].pict_type = AV_PICTURE_TYPE_I;
  1017. input[0].quality = 1 * FF_QP2LAMBDA;
  1018. out_size = avcodec_encode_video(c, outbuf,
  1019. outbuf_size, &input[0]);
  1020. //rd += (out_size * lambda2) >> FF_LAMBDA_SHIFT;
  1021. for (i = 0; i < s->max_b_frames + 1; i++) {
  1022. int is_p = i % (j + 1) == j || i == s->max_b_frames;
  1023. input[i + 1].pict_type = is_p ?
  1024. AV_PICTURE_TYPE_P : AV_PICTURE_TYPE_B;
  1025. input[i + 1].quality = is_p ? p_lambda : b_lambda;
  1026. out_size = avcodec_encode_video(c, outbuf, outbuf_size,
  1027. &input[i + 1]);
  1028. rd += (out_size * lambda2) >> (FF_LAMBDA_SHIFT - 3);
  1029. }
  1030. /* get the delayed frames */
  1031. while (out_size) {
  1032. out_size = avcodec_encode_video(c, outbuf, outbuf_size, NULL);
  1033. rd += (out_size * lambda2) >> (FF_LAMBDA_SHIFT - 3);
  1034. }
  1035. rd += c->error[0] + c->error[1] + c->error[2];
  1036. if (rd < best_rd) {
  1037. best_rd = rd;
  1038. best_b_count = j;
  1039. }
  1040. }
  1041. av_freep(&outbuf);
  1042. avcodec_close(c);
  1043. av_freep(&c);
  1044. for (i = 0; i < s->max_b_frames + 2; i++) {
  1045. av_freep(&input[i].data[0]);
  1046. }
  1047. return best_b_count;
  1048. }
  1049. static int select_input_picture(MpegEncContext *s)
  1050. {
  1051. int i;
  1052. for (i = 1; i < MAX_PICTURE_COUNT; i++)
  1053. s->reordered_input_picture[i - 1] = s->reordered_input_picture[i];
  1054. s->reordered_input_picture[MAX_PICTURE_COUNT - 1] = NULL;
  1055. /* set next picture type & ordering */
  1056. if (s->reordered_input_picture[0] == NULL && s->input_picture[0]) {
  1057. if (/*s->picture_in_gop_number >= s->gop_size ||*/
  1058. s->next_picture_ptr == NULL || s->intra_only) {
  1059. s->reordered_input_picture[0] = s->input_picture[0];
  1060. s->reordered_input_picture[0]->f.pict_type = AV_PICTURE_TYPE_I;
  1061. s->reordered_input_picture[0]->f.coded_picture_number =
  1062. s->coded_picture_number++;
  1063. } else {
  1064. int b_frames;
  1065. if (s->avctx->frame_skip_threshold || s->avctx->frame_skip_factor) {
  1066. if (s->picture_in_gop_number < s->gop_size &&
  1067. skip_check(s, s->input_picture[0], s->next_picture_ptr)) {
  1068. // FIXME check that te gop check above is +-1 correct
  1069. //av_log(NULL, AV_LOG_DEBUG, "skip %p %"PRId64"\n",
  1070. // s->input_picture[0]->f.data[0],
  1071. // s->input_picture[0]->pts);
  1072. if (s->input_picture[0]->f.type == FF_BUFFER_TYPE_SHARED) {
  1073. for (i = 0; i < 4; i++)
  1074. s->input_picture[0]->f.data[i] = NULL;
  1075. s->input_picture[0]->f.type = 0;
  1076. } else {
  1077. assert(s->input_picture[0]->f.type == FF_BUFFER_TYPE_USER ||
  1078. s->input_picture[0]->f.type == FF_BUFFER_TYPE_INTERNAL);
  1079. s->avctx->release_buffer(s->avctx,
  1080. &s->input_picture[0]->f);
  1081. }
  1082. emms_c();
  1083. ff_vbv_update(s, 0);
  1084. goto no_output_pic;
  1085. }
  1086. }
  1087. if (s->flags & CODEC_FLAG_PASS2) {
  1088. for (i = 0; i < s->max_b_frames + 1; i++) {
  1089. int pict_num = s->input_picture[0]->f.display_picture_number + i;
  1090. if (pict_num >= s->rc_context.num_entries)
  1091. break;
  1092. if (!s->input_picture[i]) {
  1093. s->rc_context.entry[pict_num - 1].new_pict_type = AV_PICTURE_TYPE_P;
  1094. break;
  1095. }
  1096. s->input_picture[i]->f.pict_type =
  1097. s->rc_context.entry[pict_num].new_pict_type;
  1098. }
  1099. }
  1100. if (s->avctx->b_frame_strategy == 0) {
  1101. b_frames = s->max_b_frames;
  1102. while (b_frames && !s->input_picture[b_frames])
  1103. b_frames--;
  1104. } else if (s->avctx->b_frame_strategy == 1) {
  1105. for (i = 1; i < s->max_b_frames + 1; i++) {
  1106. if (s->input_picture[i] &&
  1107. s->input_picture[i]->b_frame_score == 0) {
  1108. s->input_picture[i]->b_frame_score =
  1109. get_intra_count(s,
  1110. s->input_picture[i ]->f.data[0],
  1111. s->input_picture[i - 1]->f.data[0],
  1112. s->linesize) + 1;
  1113. }
  1114. }
  1115. for (i = 0; i < s->max_b_frames + 1; i++) {
  1116. if (s->input_picture[i] == NULL ||
  1117. s->input_picture[i]->b_frame_score - 1 >
  1118. s->mb_num / s->avctx->b_sensitivity)
  1119. break;
  1120. }
  1121. b_frames = FFMAX(0, i - 1);
  1122. /* reset scores */
  1123. for (i = 0; i < b_frames + 1; i++) {
  1124. s->input_picture[i]->b_frame_score = 0;
  1125. }
  1126. } else if (s->avctx->b_frame_strategy == 2) {
  1127. b_frames = estimate_best_b_count(s);
  1128. } else {
  1129. av_log(s->avctx, AV_LOG_ERROR, "illegal b frame strategy\n");
  1130. b_frames = 0;
  1131. }
  1132. emms_c();
  1133. //static int b_count = 0;
  1134. //b_count += b_frames;
  1135. //av_log(s->avctx, AV_LOG_DEBUG, "b_frames: %d\n", b_count);
  1136. for (i = b_frames - 1; i >= 0; i--) {
  1137. int type = s->input_picture[i]->f.pict_type;
  1138. if (type && type != AV_PICTURE_TYPE_B)
  1139. b_frames = i;
  1140. }
  1141. if (s->input_picture[b_frames]->f.pict_type == AV_PICTURE_TYPE_B &&
  1142. b_frames == s->max_b_frames) {
  1143. av_log(s->avctx, AV_LOG_ERROR,
  1144. "warning, too many b frames in a row\n");
  1145. }
  1146. if (s->picture_in_gop_number + b_frames >= s->gop_size) {
  1147. if ((s->mpv_flags & FF_MPV_FLAG_STRICT_GOP) &&
  1148. s->gop_size > s->picture_in_gop_number) {
  1149. b_frames = s->gop_size - s->picture_in_gop_number - 1;
  1150. } else {
  1151. if (s->flags & CODEC_FLAG_CLOSED_GOP)
  1152. b_frames = 0;
  1153. s->input_picture[b_frames]->f.pict_type = AV_PICTURE_TYPE_I;
  1154. }
  1155. }
  1156. if ((s->flags & CODEC_FLAG_CLOSED_GOP) && b_frames &&
  1157. s->input_picture[b_frames]->f.pict_type == AV_PICTURE_TYPE_I)
  1158. b_frames--;
  1159. s->reordered_input_picture[0] = s->input_picture[b_frames];
  1160. if (s->reordered_input_picture[0]->f.pict_type != AV_PICTURE_TYPE_I)
  1161. s->reordered_input_picture[0]->f.pict_type = AV_PICTURE_TYPE_P;
  1162. s->reordered_input_picture[0]->f.coded_picture_number =
  1163. s->coded_picture_number++;
  1164. for (i = 0; i < b_frames; i++) {
  1165. s->reordered_input_picture[i + 1] = s->input_picture[i];
  1166. s->reordered_input_picture[i + 1]->f.pict_type =
  1167. AV_PICTURE_TYPE_B;
  1168. s->reordered_input_picture[i + 1]->f.coded_picture_number =
  1169. s->coded_picture_number++;
  1170. }
  1171. }
  1172. }
  1173. no_output_pic:
  1174. if (s->reordered_input_picture[0]) {
  1175. s->reordered_input_picture[0]->f.reference =
  1176. s->reordered_input_picture[0]->f.pict_type !=
  1177. AV_PICTURE_TYPE_B ? 3 : 0;
  1178. ff_copy_picture(&s->new_picture, s->reordered_input_picture[0]);
  1179. if (s->reordered_input_picture[0]->f.type == FF_BUFFER_TYPE_SHARED ||
  1180. s->avctx->rc_buffer_size) {
  1181. // input is a shared pix, so we can't modifiy it -> alloc a new
  1182. // one & ensure that the shared one is reuseable
  1183. Picture *pic;
  1184. int i = ff_find_unused_picture(s, 0);
  1185. if (i < 0)
  1186. return i;
  1187. pic = &s->picture[i];
  1188. pic->f.reference = s->reordered_input_picture[0]->f.reference;
  1189. if (ff_alloc_picture(s, pic, 0) < 0) {
  1190. return -1;
  1191. }
  1192. /* mark us unused / free shared pic */
  1193. if (s->reordered_input_picture[0]->f.type == FF_BUFFER_TYPE_INTERNAL)
  1194. s->avctx->release_buffer(s->avctx,
  1195. &s->reordered_input_picture[0]->f);
  1196. for (i = 0; i < 4; i++)
  1197. s->reordered_input_picture[0]->f.data[i] = NULL;
  1198. s->reordered_input_picture[0]->f.type = 0;
  1199. copy_picture_attributes(s, &pic->f,
  1200. &s->reordered_input_picture[0]->f);
  1201. s->current_picture_ptr = pic;
  1202. } else {
  1203. // input is not a shared pix -> reuse buffer for current_pix
  1204. assert(s->reordered_input_picture[0]->f.type ==
  1205. FF_BUFFER_TYPE_USER ||
  1206. s->reordered_input_picture[0]->f.type ==
  1207. FF_BUFFER_TYPE_INTERNAL);
  1208. s->current_picture_ptr = s->reordered_input_picture[0];
  1209. for (i = 0; i < 4; i++) {
  1210. s->new_picture.f.data[i] += INPLACE_OFFSET;
  1211. }
  1212. }
  1213. ff_copy_picture(&s->current_picture, s->current_picture_ptr);
  1214. s->picture_number = s->new_picture.f.display_picture_number;
  1215. //printf("dpn:%d\n", s->picture_number);
  1216. } else {
  1217. memset(&s->new_picture, 0, sizeof(Picture));
  1218. }
  1219. return 0;
  1220. }
  1221. int ff_MPV_encode_picture(AVCodecContext *avctx, AVPacket *pkt,
  1222. const AVFrame *pic_arg, int *got_packet)
  1223. {
  1224. MpegEncContext *s = avctx->priv_data;
  1225. int i, stuffing_count, ret;
  1226. int context_count = s->slice_context_count;
  1227. s->picture_in_gop_number++;
  1228. if (load_input_picture(s, pic_arg) < 0)
  1229. return -1;
  1230. if (select_input_picture(s) < 0) {
  1231. return -1;
  1232. }
  1233. /* output? */
  1234. if (s->new_picture.f.data[0]) {
  1235. if (!pkt->data &&
  1236. (ret = ff_alloc_packet(pkt, s->mb_width*s->mb_height*MAX_MB_BYTES)) < 0)
  1237. return ret;
  1238. if (s->mb_info) {
  1239. s->mb_info_ptr = av_packet_new_side_data(pkt,
  1240. AV_PKT_DATA_H263_MB_INFO,
  1241. s->mb_width*s->mb_height*12);
  1242. s->prev_mb_info = s->last_mb_info = s->mb_info_size = 0;
  1243. }
  1244. for (i = 0; i < context_count; i++) {
  1245. int start_y = s->thread_context[i]->start_mb_y;
  1246. int end_y = s->thread_context[i]-> end_mb_y;
  1247. int h = s->mb_height;
  1248. uint8_t *start = pkt->data + (size_t)(((int64_t) pkt->size) * start_y / h);
  1249. uint8_t *end = pkt->data + (size_t)(((int64_t) pkt->size) * end_y / h);
  1250. init_put_bits(&s->thread_context[i]->pb, start, end - start);
  1251. }
  1252. s->pict_type = s->new_picture.f.pict_type;
  1253. //emms_c();
  1254. //printf("qs:%f %f %d\n", s->new_picture.quality,
  1255. // s->current_picture.quality, s->qscale);
  1256. ff_MPV_frame_start(s, avctx);
  1257. vbv_retry:
  1258. if (encode_picture(s, s->picture_number) < 0)
  1259. return -1;
  1260. avctx->header_bits = s->header_bits;
  1261. avctx->mv_bits = s->mv_bits;
  1262. avctx->misc_bits = s->misc_bits;
  1263. avctx->i_tex_bits = s->i_tex_bits;
  1264. avctx->p_tex_bits = s->p_tex_bits;
  1265. avctx->i_count = s->i_count;
  1266. // FIXME f/b_count in avctx
  1267. avctx->p_count = s->mb_num - s->i_count - s->skip_count;
  1268. avctx->skip_count = s->skip_count;
  1269. ff_MPV_frame_end(s);
  1270. if (CONFIG_MJPEG_ENCODER && s->out_format == FMT_MJPEG)
  1271. ff_mjpeg_encode_picture_trailer(s);
  1272. if (avctx->rc_buffer_size) {
  1273. RateControlContext *rcc = &s->rc_context;
  1274. int max_size = rcc->buffer_index * avctx->rc_max_available_vbv_use;
  1275. if (put_bits_count(&s->pb) > max_size &&
  1276. s->lambda < s->avctx->lmax) {
  1277. s->next_lambda = FFMAX(s->lambda + 1, s->lambda *
  1278. (s->qscale + 1) / s->qscale);
  1279. if (s->adaptive_quant) {
  1280. int i;
  1281. for (i = 0; i < s->mb_height * s->mb_stride; i++)
  1282. s->lambda_table[i] =
  1283. FFMAX(s->lambda_table[i] + 1,
  1284. s->lambda_table[i] * (s->qscale + 1) /
  1285. s->qscale);
  1286. }
  1287. s->mb_skipped = 0; // done in MPV_frame_start()
  1288. // done in encode_picture() so we must undo it
  1289. if (s->pict_type == AV_PICTURE_TYPE_P) {
  1290. if (s->flipflop_rounding ||
  1291. s->codec_id == CODEC_ID_H263P ||
  1292. s->codec_id == CODEC_ID_MPEG4)
  1293. s->no_rounding ^= 1;
  1294. }
  1295. if (s->pict_type != AV_PICTURE_TYPE_B) {
  1296. s->time_base = s->last_time_base;
  1297. s->last_non_b_time = s->time - s->pp_time;
  1298. }
  1299. //av_log(NULL, AV_LOG_ERROR, "R:%d ", s->next_lambda);
  1300. for (i = 0; i < context_count; i++) {
  1301. PutBitContext *pb = &s->thread_context[i]->pb;
  1302. init_put_bits(pb, pb->buf, pb->buf_end - pb->buf);
  1303. }
  1304. goto vbv_retry;
  1305. }
  1306. assert(s->avctx->rc_max_rate);
  1307. }
  1308. if (s->flags & CODEC_FLAG_PASS1)
  1309. ff_write_pass1_stats(s);
  1310. for (i = 0; i < 4; i++) {
  1311. s->current_picture_ptr->f.error[i] = s->current_picture.f.error[i];
  1312. avctx->error[i] += s->current_picture_ptr->f.error[i];
  1313. }
  1314. if (s->flags & CODEC_FLAG_PASS1)
  1315. assert(avctx->header_bits + avctx->mv_bits + avctx->misc_bits +
  1316. avctx->i_tex_bits + avctx->p_tex_bits ==
  1317. put_bits_count(&s->pb));
  1318. flush_put_bits(&s->pb);
  1319. s->frame_bits = put_bits_count(&s->pb);
  1320. stuffing_count = ff_vbv_update(s, s->frame_bits);
  1321. if (stuffing_count) {
  1322. if (s->pb.buf_end - s->pb.buf - (put_bits_count(&s->pb) >> 3) <
  1323. stuffing_count + 50) {
  1324. av_log(s->avctx, AV_LOG_ERROR, "stuffing too large\n");
  1325. return -1;
  1326. }
  1327. switch (s->codec_id) {
  1328. case CODEC_ID_MPEG1VIDEO:
  1329. case CODEC_ID_MPEG2VIDEO:
  1330. while (stuffing_count--) {
  1331. put_bits(&s->pb, 8, 0);
  1332. }
  1333. break;
  1334. case CODEC_ID_MPEG4:
  1335. put_bits(&s->pb, 16, 0);
  1336. put_bits(&s->pb, 16, 0x1C3);
  1337. stuffing_count -= 4;
  1338. while (stuffing_count--) {
  1339. put_bits(&s->pb, 8, 0xFF);
  1340. }
  1341. break;
  1342. default:
  1343. av_log(s->avctx, AV_LOG_ERROR, "vbv buffer overflow\n");
  1344. }
  1345. flush_put_bits(&s->pb);
  1346. s->frame_bits = put_bits_count(&s->pb);
  1347. }
  1348. /* update mpeg1/2 vbv_delay for CBR */
  1349. if (s->avctx->rc_max_rate &&
  1350. s->avctx->rc_min_rate == s->avctx->rc_max_rate &&
  1351. s->out_format == FMT_MPEG1 &&
  1352. 90000LL * (avctx->rc_buffer_size - 1) <=
  1353. s->avctx->rc_max_rate * 0xFFFFLL) {
  1354. int vbv_delay, min_delay;
  1355. double inbits = s->avctx->rc_max_rate *
  1356. av_q2d(s->avctx->time_base);
  1357. int minbits = s->frame_bits - 8 *
  1358. (s->vbv_delay_ptr - s->pb.buf - 1);
  1359. double bits = s->rc_context.buffer_index + minbits - inbits;
  1360. if (bits < 0)
  1361. av_log(s->avctx, AV_LOG_ERROR,
  1362. "Internal error, negative bits\n");
  1363. assert(s->repeat_first_field == 0);
  1364. vbv_delay = bits * 90000 / s->avctx->rc_max_rate;
  1365. min_delay = (minbits * 90000LL + s->avctx->rc_max_rate - 1) /
  1366. s->avctx->rc_max_rate;
  1367. vbv_delay = FFMAX(vbv_delay, min_delay);
  1368. assert(vbv_delay < 0xFFFF);
  1369. s->vbv_delay_ptr[0] &= 0xF8;
  1370. s->vbv_delay_ptr[0] |= vbv_delay >> 13;
  1371. s->vbv_delay_ptr[1] = vbv_delay >> 5;
  1372. s->vbv_delay_ptr[2] &= 0x07;
  1373. s->vbv_delay_ptr[2] |= vbv_delay << 3;
  1374. avctx->vbv_delay = vbv_delay * 300;
  1375. }
  1376. s->total_bits += s->frame_bits;
  1377. avctx->frame_bits = s->frame_bits;
  1378. pkt->pts = s->current_picture.f.pts;
  1379. if (!s->low_delay) {
  1380. if (!s->current_picture.f.coded_picture_number)
  1381. pkt->dts = pkt->pts - s->dts_delta;
  1382. else
  1383. pkt->dts = s->reordered_pts;
  1384. s->reordered_pts = s->input_picture[0]->f.pts;
  1385. } else
  1386. pkt->dts = pkt->pts;
  1387. if (s->current_picture.f.key_frame)
  1388. pkt->flags |= AV_PKT_FLAG_KEY;
  1389. if (s->mb_info)
  1390. av_packet_shrink_side_data(pkt, AV_PKT_DATA_H263_MB_INFO, s->mb_info_size);
  1391. } else {
  1392. assert((put_bits_ptr(&s->pb) == s->pb.buf));
  1393. s->frame_bits = 0;
  1394. }
  1395. assert((s->frame_bits & 7) == 0);
  1396. pkt->size = s->frame_bits / 8;
  1397. *got_packet = !!pkt->size;
  1398. return 0;
  1399. }
  1400. static inline void dct_single_coeff_elimination(MpegEncContext *s,
  1401. int n, int threshold)
  1402. {
  1403. static const char tab[64] = {
  1404. 3, 2, 2, 1, 1, 1, 1, 1,
  1405. 1, 1, 1, 1, 1, 1, 1, 1,
  1406. 1, 1, 1, 1, 1, 1, 1, 1,
  1407. 0, 0, 0, 0, 0, 0, 0, 0,
  1408. 0, 0, 0, 0, 0, 0, 0, 0,
  1409. 0, 0, 0, 0, 0, 0, 0, 0,
  1410. 0, 0, 0, 0, 0, 0, 0, 0,
  1411. 0, 0, 0, 0, 0, 0, 0, 0
  1412. };
  1413. int score = 0;
  1414. int run = 0;
  1415. int i;
  1416. DCTELEM *block = s->block[n];
  1417. const int last_index = s->block_last_index[n];
  1418. int skip_dc;
  1419. if (threshold < 0) {
  1420. skip_dc = 0;
  1421. threshold = -threshold;
  1422. } else
  1423. skip_dc = 1;
  1424. /* Are all we could set to zero already zero? */
  1425. if (last_index <= skip_dc - 1)
  1426. return;
  1427. for (i = 0; i <= last_index; i++) {
  1428. const int j = s->intra_scantable.permutated[i];
  1429. const int level = FFABS(block[j]);
  1430. if (level == 1) {
  1431. if (skip_dc && i == 0)
  1432. continue;
  1433. score += tab[run];
  1434. run = 0;
  1435. } else if (level > 1) {
  1436. return;
  1437. } else {
  1438. run++;
  1439. }
  1440. }
  1441. if (score >= threshold)
  1442. return;
  1443. for (i = skip_dc; i <= last_index; i++) {
  1444. const int j = s->intra_scantable.permutated[i];
  1445. block[j] = 0;
  1446. }
  1447. if (block[0])
  1448. s->block_last_index[n] = 0;
  1449. else
  1450. s->block_last_index[n] = -1;
  1451. }
  1452. static inline void clip_coeffs(MpegEncContext *s, DCTELEM *block,
  1453. int last_index)
  1454. {
  1455. int i;
  1456. const int maxlevel = s->max_qcoeff;
  1457. const int minlevel = s->min_qcoeff;
  1458. int overflow = 0;
  1459. if (s->mb_intra) {
  1460. i = 1; // skip clipping of intra dc
  1461. } else
  1462. i = 0;
  1463. for (; i <= last_index; i++) {
  1464. const int j = s->intra_scantable.permutated[i];
  1465. int level = block[j];
  1466. if (level > maxlevel) {
  1467. level = maxlevel;
  1468. overflow++;
  1469. } else if (level < minlevel) {
  1470. level = minlevel;
  1471. overflow++;
  1472. }
  1473. block[j] = level;
  1474. }
  1475. if (overflow && s->avctx->mb_decision == FF_MB_DECISION_SIMPLE)
  1476. av_log(s->avctx, AV_LOG_INFO,
  1477. "warning, clipping %d dct coefficients to %d..%d\n",
  1478. overflow, minlevel, maxlevel);
  1479. }
  1480. static void get_visual_weight(int16_t *weight, uint8_t *ptr, int stride)
  1481. {
  1482. int x, y;
  1483. // FIXME optimize
  1484. for (y = 0; y < 8; y++) {
  1485. for (x = 0; x < 8; x++) {
  1486. int x2, y2;
  1487. int sum = 0;
  1488. int sqr = 0;
  1489. int count = 0;
  1490. for (y2 = FFMAX(y - 1, 0); y2 < FFMIN(8, y + 2); y2++) {
  1491. for (x2= FFMAX(x - 1, 0); x2 < FFMIN(8, x + 2); x2++) {
  1492. int v = ptr[x2 + y2 * stride];
  1493. sum += v;
  1494. sqr += v * v;
  1495. count++;
  1496. }
  1497. }
  1498. weight[x + 8 * y]= (36 * ff_sqrt(count * sqr - sum * sum)) / count;
  1499. }
  1500. }
  1501. }
  1502. static av_always_inline void encode_mb_internal(MpegEncContext *s,
  1503. int motion_x, int motion_y,
  1504. int mb_block_height,
  1505. int mb_block_count)
  1506. {
  1507. int16_t weight[8][64];
  1508. DCTELEM orig[8][64];
  1509. const int mb_x = s->mb_x;
  1510. const int mb_y = s->mb_y;
  1511. int i;
  1512. int skip_dct[8];
  1513. int dct_offset = s->linesize * 8; // default for progressive frames
  1514. uint8_t *ptr_y, *ptr_cb, *ptr_cr;
  1515. int wrap_y, wrap_c;
  1516. for (i = 0; i < mb_block_count; i++)
  1517. skip_dct[i] = s->skipdct;
  1518. if (s->adaptive_quant) {
  1519. const int last_qp = s->qscale;
  1520. const int mb_xy = mb_x + mb_y * s->mb_stride;
  1521. s->lambda = s->lambda_table[mb_xy];
  1522. update_qscale(s);
  1523. if (!(s->mpv_flags & FF_MPV_FLAG_QP_RD)) {
  1524. s->qscale = s->current_picture_ptr->f.qscale_table[mb_xy];
  1525. s->dquant = s->qscale - last_qp;
  1526. if (s->out_format == FMT_H263) {
  1527. s->dquant = av_clip(s->dquant, -2, 2);
  1528. if (s->codec_id == CODEC_ID_MPEG4) {
  1529. if (!s->mb_intra) {
  1530. if (s->pict_type == AV_PICTURE_TYPE_B) {
  1531. if (s->dquant & 1 || s->mv_dir & MV_DIRECT)
  1532. s->dquant = 0;
  1533. }
  1534. if (s->mv_type == MV_TYPE_8X8)
  1535. s->dquant = 0;
  1536. }
  1537. }
  1538. }
  1539. }
  1540. ff_set_qscale(s, last_qp + s->dquant);
  1541. } else if (s->mpv_flags & FF_MPV_FLAG_QP_RD)
  1542. ff_set_qscale(s, s->qscale + s->dquant);
  1543. wrap_y = s->linesize;
  1544. wrap_c = s->uvlinesize;
  1545. ptr_y = s->new_picture.f.data[0] +
  1546. (mb_y * 16 * wrap_y) + mb_x * 16;
  1547. ptr_cb = s->new_picture.f.data[1] +
  1548. (mb_y * mb_block_height * wrap_c) + mb_x * 8;
  1549. ptr_cr = s->new_picture.f.data[2] +
  1550. (mb_y * mb_block_height * wrap_c) + mb_x * 8;
  1551. if (mb_x * 16 + 16 > s->width || mb_y * 16 + 16 > s->height) {
  1552. uint8_t *ebuf = s->edge_emu_buffer + 32;
  1553. s->dsp.emulated_edge_mc(ebuf, ptr_y, wrap_y, 16, 16, mb_x * 16,
  1554. mb_y * 16, s->width, s->height);
  1555. ptr_y = ebuf;
  1556. s->dsp.emulated_edge_mc(ebuf + 18 * wrap_y, ptr_cb, wrap_c, 8,
  1557. mb_block_height, mb_x * 8, mb_y * 8,
  1558. s->width >> 1, s->height >> 1);
  1559. ptr_cb = ebuf + 18 * wrap_y;
  1560. s->dsp.emulated_edge_mc(ebuf + 18 * wrap_y + 8, ptr_cr, wrap_c, 8,
  1561. mb_block_height, mb_x * 8, mb_y * 8,
  1562. s->width >> 1, s->height >> 1);
  1563. ptr_cr = ebuf + 18 * wrap_y + 8;
  1564. }
  1565. if (s->mb_intra) {
  1566. if (s->flags & CODEC_FLAG_INTERLACED_DCT) {
  1567. int progressive_score, interlaced_score;
  1568. s->interlaced_dct = 0;
  1569. progressive_score = s->dsp.ildct_cmp[4](s, ptr_y,
  1570. NULL, wrap_y, 8) +
  1571. s->dsp.ildct_cmp[4](s, ptr_y + wrap_y * 8,
  1572. NULL, wrap_y, 8) - 400;
  1573. if (progressive_score > 0) {
  1574. interlaced_score = s->dsp.ildct_cmp[4](s, ptr_y,
  1575. NULL, wrap_y * 2, 8) +
  1576. s->dsp.ildct_cmp[4](s, ptr_y + wrap_y,
  1577. NULL, wrap_y * 2, 8);
  1578. if (progressive_score > interlaced_score) {
  1579. s->interlaced_dct = 1;
  1580. dct_offset = wrap_y;
  1581. wrap_y <<= 1;
  1582. if (s->chroma_format == CHROMA_422)
  1583. wrap_c <<= 1;
  1584. }
  1585. }
  1586. }
  1587. s->dsp.get_pixels(s->block[0], ptr_y , wrap_y);
  1588. s->dsp.get_pixels(s->block[1], ptr_y + 8 , wrap_y);
  1589. s->dsp.get_pixels(s->block[2], ptr_y + dct_offset , wrap_y);
  1590. s->dsp.get_pixels(s->block[3], ptr_y + dct_offset + 8 , wrap_y);
  1591. if (s->flags & CODEC_FLAG_GRAY) {
  1592. skip_dct[4] = 1;
  1593. skip_dct[5] = 1;
  1594. } else {
  1595. s->dsp.get_pixels(s->block[4], ptr_cb, wrap_c);
  1596. s->dsp.get_pixels(s->block[5], ptr_cr, wrap_c);
  1597. if (!s->chroma_y_shift) { /* 422 */
  1598. s->dsp.get_pixels(s->block[6],
  1599. ptr_cb + (dct_offset >> 1), wrap_c);
  1600. s->dsp.get_pixels(s->block[7],
  1601. ptr_cr + (dct_offset >> 1), wrap_c);
  1602. }
  1603. }
  1604. } else {
  1605. op_pixels_func (*op_pix)[4];
  1606. qpel_mc_func (*op_qpix)[16];
  1607. uint8_t *dest_y, *dest_cb, *dest_cr;
  1608. dest_y = s->dest[0];
  1609. dest_cb = s->dest[1];
  1610. dest_cr = s->dest[2];
  1611. if ((!s->no_rounding) || s->pict_type == AV_PICTURE_TYPE_B) {
  1612. op_pix = s->dsp.put_pixels_tab;
  1613. op_qpix = s->dsp.put_qpel_pixels_tab;
  1614. } else {
  1615. op_pix = s->dsp.put_no_rnd_pixels_tab;
  1616. op_qpix = s->dsp.put_no_rnd_qpel_pixels_tab;
  1617. }
  1618. if (s->mv_dir & MV_DIR_FORWARD) {
  1619. MPV_motion(s, dest_y, dest_cb, dest_cr, 0, s->last_picture.f.data,
  1620. op_pix, op_qpix);
  1621. op_pix = s->dsp.avg_pixels_tab;
  1622. op_qpix = s->dsp.avg_qpel_pixels_tab;
  1623. }
  1624. if (s->mv_dir & MV_DIR_BACKWARD) {
  1625. MPV_motion(s, dest_y, dest_cb, dest_cr, 1, s->next_picture.f.data,
  1626. op_pix, op_qpix);
  1627. }
  1628. if (s->flags & CODEC_FLAG_INTERLACED_DCT) {
  1629. int progressive_score, interlaced_score;
  1630. s->interlaced_dct = 0;
  1631. progressive_score = s->dsp.ildct_cmp[0](s, dest_y,
  1632. ptr_y, wrap_y,
  1633. 8) +
  1634. s->dsp.ildct_cmp[0](s, dest_y + wrap_y * 8,
  1635. ptr_y + wrap_y * 8, wrap_y,
  1636. 8) - 400;
  1637. if (s->avctx->ildct_cmp == FF_CMP_VSSE)
  1638. progressive_score -= 400;
  1639. if (progressive_score > 0) {
  1640. interlaced_score = s->dsp.ildct_cmp[0](s, dest_y,
  1641. ptr_y,
  1642. wrap_y * 2, 8) +
  1643. s->dsp.ildct_cmp[0](s, dest_y + wrap_y,
  1644. ptr_y + wrap_y,
  1645. wrap_y * 2, 8);
  1646. if (progressive_score > interlaced_score) {
  1647. s->interlaced_dct = 1;
  1648. dct_offset = wrap_y;
  1649. wrap_y <<= 1;
  1650. if (s->chroma_format == CHROMA_422)
  1651. wrap_c <<= 1;
  1652. }
  1653. }
  1654. }
  1655. s->dsp.diff_pixels(s->block[0], ptr_y, dest_y, wrap_y);
  1656. s->dsp.diff_pixels(s->block[1], ptr_y + 8, dest_y + 8, wrap_y);
  1657. s->dsp.diff_pixels(s->block[2], ptr_y + dct_offset,
  1658. dest_y + dct_offset, wrap_y);
  1659. s->dsp.diff_pixels(s->block[3], ptr_y + dct_offset + 8,
  1660. dest_y + dct_offset + 8, wrap_y);
  1661. if (s->flags & CODEC_FLAG_GRAY) {
  1662. skip_dct[4] = 1;
  1663. skip_dct[5] = 1;
  1664. } else {
  1665. s->dsp.diff_pixels(s->block[4], ptr_cb, dest_cb, wrap_c);
  1666. s->dsp.diff_pixels(s->block[5], ptr_cr, dest_cr, wrap_c);
  1667. if (!s->chroma_y_shift) { /* 422 */
  1668. s->dsp.diff_pixels(s->block[6], ptr_cb + (dct_offset >> 1),
  1669. dest_cb + (dct_offset >> 1), wrap_c);
  1670. s->dsp.diff_pixels(s->block[7], ptr_cr + (dct_offset >> 1),
  1671. dest_cr + (dct_offset >> 1), wrap_c);
  1672. }
  1673. }
  1674. /* pre quantization */
  1675. if (s->current_picture.mc_mb_var[s->mb_stride * mb_y + mb_x] <
  1676. 2 * s->qscale * s->qscale) {
  1677. // FIXME optimize
  1678. if (s->dsp.sad[1](NULL, ptr_y , dest_y,
  1679. wrap_y, 8) < 20 * s->qscale)
  1680. skip_dct[0] = 1;
  1681. if (s->dsp.sad[1](NULL, ptr_y + 8,
  1682. dest_y + 8, wrap_y, 8) < 20 * s->qscale)
  1683. skip_dct[1] = 1;
  1684. if (s->dsp.sad[1](NULL, ptr_y + dct_offset,
  1685. dest_y + dct_offset, wrap_y, 8) < 20 * s->qscale)
  1686. skip_dct[2] = 1;
  1687. if (s->dsp.sad[1](NULL, ptr_y + dct_offset + 8,
  1688. dest_y + dct_offset + 8,
  1689. wrap_y, 8) < 20 * s->qscale)
  1690. skip_dct[3] = 1;
  1691. if (s->dsp.sad[1](NULL, ptr_cb, dest_cb,
  1692. wrap_c, 8) < 20 * s->qscale)
  1693. skip_dct[4] = 1;
  1694. if (s->dsp.sad[1](NULL, ptr_cr, dest_cr,
  1695. wrap_c, 8) < 20 * s->qscale)
  1696. skip_dct[5] = 1;
  1697. if (!s->chroma_y_shift) { /* 422 */
  1698. if (s->dsp.sad[1](NULL, ptr_cb + (dct_offset >> 1),
  1699. dest_cb + (dct_offset >> 1),
  1700. wrap_c, 8) < 20 * s->qscale)
  1701. skip_dct[6] = 1;
  1702. if (s->dsp.sad[1](NULL, ptr_cr + (dct_offset >> 1),
  1703. dest_cr + (dct_offset >> 1),
  1704. wrap_c, 8) < 20 * s->qscale)
  1705. skip_dct[7] = 1;
  1706. }
  1707. }
  1708. }
  1709. if (s->quantizer_noise_shaping) {
  1710. if (!skip_dct[0])
  1711. get_visual_weight(weight[0], ptr_y , wrap_y);
  1712. if (!skip_dct[1])
  1713. get_visual_weight(weight[1], ptr_y + 8, wrap_y);
  1714. if (!skip_dct[2])
  1715. get_visual_weight(weight[2], ptr_y + dct_offset , wrap_y);
  1716. if (!skip_dct[3])
  1717. get_visual_weight(weight[3], ptr_y + dct_offset + 8, wrap_y);
  1718. if (!skip_dct[4])
  1719. get_visual_weight(weight[4], ptr_cb , wrap_c);
  1720. if (!skip_dct[5])
  1721. get_visual_weight(weight[5], ptr_cr , wrap_c);
  1722. if (!s->chroma_y_shift) { /* 422 */
  1723. if (!skip_dct[6])
  1724. get_visual_weight(weight[6], ptr_cb + (dct_offset >> 1),
  1725. wrap_c);
  1726. if (!skip_dct[7])
  1727. get_visual_weight(weight[7], ptr_cr + (dct_offset >> 1),
  1728. wrap_c);
  1729. }
  1730. memcpy(orig[0], s->block[0], sizeof(DCTELEM) * 64 * mb_block_count);
  1731. }
  1732. /* DCT & quantize */
  1733. assert(s->out_format != FMT_MJPEG || s->qscale == 8);
  1734. {
  1735. for (i = 0; i < mb_block_count; i++) {
  1736. if (!skip_dct[i]) {
  1737. int overflow;
  1738. s->block_last_index[i] = s->dct_quantize(s, s->block[i], i, s->qscale, &overflow);
  1739. // FIXME we could decide to change to quantizer instead of
  1740. // clipping
  1741. // JS: I don't think that would be a good idea it could lower
  1742. // quality instead of improve it. Just INTRADC clipping
  1743. // deserves changes in quantizer
  1744. if (overflow)
  1745. clip_coeffs(s, s->block[i], s->block_last_index[i]);
  1746. } else
  1747. s->block_last_index[i] = -1;
  1748. }
  1749. if (s->quantizer_noise_shaping) {
  1750. for (i = 0; i < mb_block_count; i++) {
  1751. if (!skip_dct[i]) {
  1752. s->block_last_index[i] =
  1753. dct_quantize_refine(s, s->block[i], weight[i],
  1754. orig[i], i, s->qscale);
  1755. }
  1756. }
  1757. }
  1758. if (s->luma_elim_threshold && !s->mb_intra)
  1759. for (i = 0; i < 4; i++)
  1760. dct_single_coeff_elimination(s, i, s->luma_elim_threshold);
  1761. if (s->chroma_elim_threshold && !s->mb_intra)
  1762. for (i = 4; i < mb_block_count; i++)
  1763. dct_single_coeff_elimination(s, i, s->chroma_elim_threshold);
  1764. if (s->mpv_flags & FF_MPV_FLAG_CBP_RD) {
  1765. for (i = 0; i < mb_block_count; i++) {
  1766. if (s->block_last_index[i] == -1)
  1767. s->coded_score[i] = INT_MAX / 256;
  1768. }
  1769. }
  1770. }
  1771. if ((s->flags & CODEC_FLAG_GRAY) && s->mb_intra) {
  1772. s->block_last_index[4] =
  1773. s->block_last_index[5] = 0;
  1774. s->block[4][0] =
  1775. s->block[5][0] = (1024 + s->c_dc_scale / 2) / s->c_dc_scale;
  1776. }
  1777. // non c quantize code returns incorrect block_last_index FIXME
  1778. if (s->alternate_scan && s->dct_quantize != ff_dct_quantize_c) {
  1779. for (i = 0; i < mb_block_count; i++) {
  1780. int j;
  1781. if (s->block_last_index[i] > 0) {
  1782. for (j = 63; j > 0; j--) {
  1783. if (s->block[i][s->intra_scantable.permutated[j]])
  1784. break;
  1785. }
  1786. s->block_last_index[i] = j;
  1787. }
  1788. }
  1789. }
  1790. /* huffman encode */
  1791. switch(s->codec_id){ //FIXME funct ptr could be slightly faster
  1792. case CODEC_ID_MPEG1VIDEO:
  1793. case CODEC_ID_MPEG2VIDEO:
  1794. if (CONFIG_MPEG1VIDEO_ENCODER || CONFIG_MPEG2VIDEO_ENCODER)
  1795. ff_mpeg1_encode_mb(s, s->block, motion_x, motion_y);
  1796. break;
  1797. case CODEC_ID_MPEG4:
  1798. if (CONFIG_MPEG4_ENCODER)
  1799. ff_mpeg4_encode_mb(s, s->block, motion_x, motion_y);
  1800. break;
  1801. case CODEC_ID_MSMPEG4V2:
  1802. case CODEC_ID_MSMPEG4V3:
  1803. case CODEC_ID_WMV1:
  1804. if (CONFIG_MSMPEG4_ENCODER)
  1805. ff_msmpeg4_encode_mb(s, s->block, motion_x, motion_y);
  1806. break;
  1807. case CODEC_ID_WMV2:
  1808. if (CONFIG_WMV2_ENCODER)
  1809. ff_wmv2_encode_mb(s, s->block, motion_x, motion_y);
  1810. break;
  1811. case CODEC_ID_H261:
  1812. if (CONFIG_H261_ENCODER)
  1813. ff_h261_encode_mb(s, s->block, motion_x, motion_y);
  1814. break;
  1815. case CODEC_ID_H263:
  1816. case CODEC_ID_H263P:
  1817. case CODEC_ID_FLV1:
  1818. case CODEC_ID_RV10:
  1819. case CODEC_ID_RV20:
  1820. if (CONFIG_H263_ENCODER)
  1821. ff_h263_encode_mb(s, s->block, motion_x, motion_y);
  1822. break;
  1823. case CODEC_ID_MJPEG:
  1824. if (CONFIG_MJPEG_ENCODER)
  1825. ff_mjpeg_encode_mb(s, s->block);
  1826. break;
  1827. default:
  1828. assert(0);
  1829. }
  1830. }
  1831. static av_always_inline void encode_mb(MpegEncContext *s, int motion_x, int motion_y)
  1832. {
  1833. if (s->chroma_format == CHROMA_420) encode_mb_internal(s, motion_x, motion_y, 8, 6);
  1834. else encode_mb_internal(s, motion_x, motion_y, 16, 8);
  1835. }
  1836. static inline void copy_context_before_encode(MpegEncContext *d, MpegEncContext *s, int type){
  1837. int i;
  1838. memcpy(d->last_mv, s->last_mv, 2*2*2*sizeof(int)); //FIXME is memcpy faster than a loop?
  1839. /* mpeg1 */
  1840. d->mb_skip_run= s->mb_skip_run;
  1841. for(i=0; i<3; i++)
  1842. d->last_dc[i] = s->last_dc[i];
  1843. /* statistics */
  1844. d->mv_bits= s->mv_bits;
  1845. d->i_tex_bits= s->i_tex_bits;
  1846. d->p_tex_bits= s->p_tex_bits;
  1847. d->i_count= s->i_count;
  1848. d->f_count= s->f_count;
  1849. d->b_count= s->b_count;
  1850. d->skip_count= s->skip_count;
  1851. d->misc_bits= s->misc_bits;
  1852. d->last_bits= 0;
  1853. d->mb_skipped= 0;
  1854. d->qscale= s->qscale;
  1855. d->dquant= s->dquant;
  1856. d->esc3_level_length= s->esc3_level_length;
  1857. }
  1858. static inline void copy_context_after_encode(MpegEncContext *d, MpegEncContext *s, int type){
  1859. int i;
  1860. memcpy(d->mv, s->mv, 2*4*2*sizeof(int));
  1861. memcpy(d->last_mv, s->last_mv, 2*2*2*sizeof(int)); //FIXME is memcpy faster than a loop?
  1862. /* mpeg1 */
  1863. d->mb_skip_run= s->mb_skip_run;
  1864. for(i=0; i<3; i++)
  1865. d->last_dc[i] = s->last_dc[i];
  1866. /* statistics */
  1867. d->mv_bits= s->mv_bits;
  1868. d->i_tex_bits= s->i_tex_bits;
  1869. d->p_tex_bits= s->p_tex_bits;
  1870. d->i_count= s->i_count;
  1871. d->f_count= s->f_count;
  1872. d->b_count= s->b_count;
  1873. d->skip_count= s->skip_count;
  1874. d->misc_bits= s->misc_bits;
  1875. d->mb_intra= s->mb_intra;
  1876. d->mb_skipped= s->mb_skipped;
  1877. d->mv_type= s->mv_type;
  1878. d->mv_dir= s->mv_dir;
  1879. d->pb= s->pb;
  1880. if(s->data_partitioning){
  1881. d->pb2= s->pb2;
  1882. d->tex_pb= s->tex_pb;
  1883. }
  1884. d->block= s->block;
  1885. for(i=0; i<8; i++)
  1886. d->block_last_index[i]= s->block_last_index[i];
  1887. d->interlaced_dct= s->interlaced_dct;
  1888. d->qscale= s->qscale;
  1889. d->esc3_level_length= s->esc3_level_length;
  1890. }
  1891. static inline void encode_mb_hq(MpegEncContext *s, MpegEncContext *backup, MpegEncContext *best, int type,
  1892. PutBitContext pb[2], PutBitContext pb2[2], PutBitContext tex_pb[2],
  1893. int *dmin, int *next_block, int motion_x, int motion_y)
  1894. {
  1895. int score;
  1896. uint8_t *dest_backup[3];
  1897. copy_context_before_encode(s, backup, type);
  1898. s->block= s->blocks[*next_block];
  1899. s->pb= pb[*next_block];
  1900. if(s->data_partitioning){
  1901. s->pb2 = pb2 [*next_block];
  1902. s->tex_pb= tex_pb[*next_block];
  1903. }
  1904. if(*next_block){
  1905. memcpy(dest_backup, s->dest, sizeof(s->dest));
  1906. s->dest[0] = s->rd_scratchpad;
  1907. s->dest[1] = s->rd_scratchpad + 16*s->linesize;
  1908. s->dest[2] = s->rd_scratchpad + 16*s->linesize + 8;
  1909. assert(s->linesize >= 32); //FIXME
  1910. }
  1911. encode_mb(s, motion_x, motion_y);
  1912. score= put_bits_count(&s->pb);
  1913. if(s->data_partitioning){
  1914. score+= put_bits_count(&s->pb2);
  1915. score+= put_bits_count(&s->tex_pb);
  1916. }
  1917. if(s->avctx->mb_decision == FF_MB_DECISION_RD){
  1918. ff_MPV_decode_mb(s, s->block);
  1919. score *= s->lambda2;
  1920. score += sse_mb(s) << FF_LAMBDA_SHIFT;
  1921. }
  1922. if(*next_block){
  1923. memcpy(s->dest, dest_backup, sizeof(s->dest));
  1924. }
  1925. if(score<*dmin){
  1926. *dmin= score;
  1927. *next_block^=1;
  1928. copy_context_after_encode(best, s, type);
  1929. }
  1930. }
  1931. static int sse(MpegEncContext *s, uint8_t *src1, uint8_t *src2, int w, int h, int stride){
  1932. uint32_t *sq = ff_squareTbl + 256;
  1933. int acc=0;
  1934. int x,y;
  1935. if(w==16 && h==16)
  1936. return s->dsp.sse[0](NULL, src1, src2, stride, 16);
  1937. else if(w==8 && h==8)
  1938. return s->dsp.sse[1](NULL, src1, src2, stride, 8);
  1939. for(y=0; y<h; y++){
  1940. for(x=0; x<w; x++){
  1941. acc+= sq[src1[x + y*stride] - src2[x + y*stride]];
  1942. }
  1943. }
  1944. assert(acc>=0);
  1945. return acc;
  1946. }
  1947. static int sse_mb(MpegEncContext *s){
  1948. int w= 16;
  1949. int h= 16;
  1950. if(s->mb_x*16 + 16 > s->width ) w= s->width - s->mb_x*16;
  1951. if(s->mb_y*16 + 16 > s->height) h= s->height- s->mb_y*16;
  1952. if(w==16 && h==16)
  1953. if(s->avctx->mb_cmp == FF_CMP_NSSE){
  1954. return s->dsp.nsse[0](s, s->new_picture.f.data[0] + s->mb_x*16 + s->mb_y*s->linesize*16, s->dest[0], s->linesize, 16)
  1955. +s->dsp.nsse[1](s, s->new_picture.f.data[1] + s->mb_x*8 + s->mb_y*s->uvlinesize*8,s->dest[1], s->uvlinesize, 8)
  1956. +s->dsp.nsse[1](s, s->new_picture.f.data[2] + s->mb_x*8 + s->mb_y*s->uvlinesize*8,s->dest[2], s->uvlinesize, 8);
  1957. }else{
  1958. return s->dsp.sse[0](NULL, s->new_picture.f.data[0] + s->mb_x*16 + s->mb_y*s->linesize*16, s->dest[0], s->linesize, 16)
  1959. +s->dsp.sse[1](NULL, s->new_picture.f.data[1] + s->mb_x*8 + s->mb_y*s->uvlinesize*8,s->dest[1], s->uvlinesize, 8)
  1960. +s->dsp.sse[1](NULL, s->new_picture.f.data[2] + s->mb_x*8 + s->mb_y*s->uvlinesize*8,s->dest[2], s->uvlinesize, 8);
  1961. }
  1962. else
  1963. return sse(s, s->new_picture.f.data[0] + s->mb_x*16 + s->mb_y*s->linesize*16, s->dest[0], w, h, s->linesize)
  1964. +sse(s, s->new_picture.f.data[1] + s->mb_x*8 + s->mb_y*s->uvlinesize*8,s->dest[1], w>>1, h>>1, s->uvlinesize)
  1965. +sse(s, s->new_picture.f.data[2] + s->mb_x*8 + s->mb_y*s->uvlinesize*8,s->dest[2], w>>1, h>>1, s->uvlinesize);
  1966. }
  1967. static int pre_estimate_motion_thread(AVCodecContext *c, void *arg){
  1968. MpegEncContext *s= *(void**)arg;
  1969. s->me.pre_pass=1;
  1970. s->me.dia_size= s->avctx->pre_dia_size;
  1971. s->first_slice_line=1;
  1972. for(s->mb_y= s->end_mb_y-1; s->mb_y >= s->start_mb_y; s->mb_y--) {
  1973. for(s->mb_x=s->mb_width-1; s->mb_x >=0 ;s->mb_x--) {
  1974. ff_pre_estimate_p_frame_motion(s, s->mb_x, s->mb_y);
  1975. }
  1976. s->first_slice_line=0;
  1977. }
  1978. s->me.pre_pass=0;
  1979. return 0;
  1980. }
  1981. static int estimate_motion_thread(AVCodecContext *c, void *arg){
  1982. MpegEncContext *s= *(void**)arg;
  1983. ff_check_alignment();
  1984. s->me.dia_size= s->avctx->dia_size;
  1985. s->first_slice_line=1;
  1986. for(s->mb_y= s->start_mb_y; s->mb_y < s->end_mb_y; s->mb_y++) {
  1987. s->mb_x=0; //for block init below
  1988. ff_init_block_index(s);
  1989. for(s->mb_x=0; s->mb_x < s->mb_width; s->mb_x++) {
  1990. s->block_index[0]+=2;
  1991. s->block_index[1]+=2;
  1992. s->block_index[2]+=2;
  1993. s->block_index[3]+=2;
  1994. /* compute motion vector & mb_type and store in context */
  1995. if(s->pict_type==AV_PICTURE_TYPE_B)
  1996. ff_estimate_b_frame_motion(s, s->mb_x, s->mb_y);
  1997. else
  1998. ff_estimate_p_frame_motion(s, s->mb_x, s->mb_y);
  1999. }
  2000. s->first_slice_line=0;
  2001. }
  2002. return 0;
  2003. }
  2004. static int mb_var_thread(AVCodecContext *c, void *arg){
  2005. MpegEncContext *s= *(void**)arg;
  2006. int mb_x, mb_y;
  2007. ff_check_alignment();
  2008. for(mb_y=s->start_mb_y; mb_y < s->end_mb_y; mb_y++) {
  2009. for(mb_x=0; mb_x < s->mb_width; mb_x++) {
  2010. int xx = mb_x * 16;
  2011. int yy = mb_y * 16;
  2012. uint8_t *pix = s->new_picture.f.data[0] + (yy * s->linesize) + xx;
  2013. int varc;
  2014. int sum = s->dsp.pix_sum(pix, s->linesize);
  2015. varc = (s->dsp.pix_norm1(pix, s->linesize) - (((unsigned)sum*sum)>>8) + 500 + 128)>>8;
  2016. s->current_picture.mb_var [s->mb_stride * mb_y + mb_x] = varc;
  2017. s->current_picture.mb_mean[s->mb_stride * mb_y + mb_x] = (sum+128)>>8;
  2018. s->me.mb_var_sum_temp += varc;
  2019. }
  2020. }
  2021. return 0;
  2022. }
  2023. static void write_slice_end(MpegEncContext *s){
  2024. if(CONFIG_MPEG4_ENCODER && s->codec_id==CODEC_ID_MPEG4){
  2025. if(s->partitioned_frame){
  2026. ff_mpeg4_merge_partitions(s);
  2027. }
  2028. ff_mpeg4_stuffing(&s->pb);
  2029. }else if(CONFIG_MJPEG_ENCODER && s->out_format == FMT_MJPEG){
  2030. ff_mjpeg_encode_stuffing(&s->pb);
  2031. }
  2032. avpriv_align_put_bits(&s->pb);
  2033. flush_put_bits(&s->pb);
  2034. if((s->flags&CODEC_FLAG_PASS1) && !s->partitioned_frame)
  2035. s->misc_bits+= get_bits_diff(s);
  2036. }
  2037. static void write_mb_info(MpegEncContext *s)
  2038. {
  2039. uint8_t *ptr = s->mb_info_ptr + s->mb_info_size - 12;
  2040. int offset = put_bits_count(&s->pb);
  2041. int mba = s->mb_x + s->mb_width * (s->mb_y % s->gob_index);
  2042. int gobn = s->mb_y / s->gob_index;
  2043. int pred_x, pred_y;
  2044. if (CONFIG_H263_ENCODER)
  2045. ff_h263_pred_motion(s, 0, 0, &pred_x, &pred_y);
  2046. bytestream_put_le32(&ptr, offset);
  2047. bytestream_put_byte(&ptr, s->qscale);
  2048. bytestream_put_byte(&ptr, gobn);
  2049. bytestream_put_le16(&ptr, mba);
  2050. bytestream_put_byte(&ptr, pred_x); /* hmv1 */
  2051. bytestream_put_byte(&ptr, pred_y); /* vmv1 */
  2052. /* 4MV not implemented */
  2053. bytestream_put_byte(&ptr, 0); /* hmv2 */
  2054. bytestream_put_byte(&ptr, 0); /* vmv2 */
  2055. }
  2056. static void update_mb_info(MpegEncContext *s, int startcode)
  2057. {
  2058. if (!s->mb_info)
  2059. return;
  2060. if (put_bits_count(&s->pb) - s->prev_mb_info*8 >= s->mb_info*8) {
  2061. s->mb_info_size += 12;
  2062. s->prev_mb_info = s->last_mb_info;
  2063. }
  2064. if (startcode) {
  2065. s->prev_mb_info = put_bits_count(&s->pb)/8;
  2066. /* This might have incremented mb_info_size above, and we return without
  2067. * actually writing any info into that slot yet. But in that case,
  2068. * this will be called again at the start of the after writing the
  2069. * start code, actually writing the mb info. */
  2070. return;
  2071. }
  2072. s->last_mb_info = put_bits_count(&s->pb)/8;
  2073. if (!s->mb_info_size)
  2074. s->mb_info_size += 12;
  2075. write_mb_info(s);
  2076. }
  2077. static int encode_thread(AVCodecContext *c, void *arg){
  2078. MpegEncContext *s= *(void**)arg;
  2079. int mb_x, mb_y, pdif = 0;
  2080. int chr_h= 16>>s->chroma_y_shift;
  2081. int i, j;
  2082. MpegEncContext best_s, backup_s;
  2083. uint8_t bit_buf[2][MAX_MB_BYTES];
  2084. uint8_t bit_buf2[2][MAX_MB_BYTES];
  2085. uint8_t bit_buf_tex[2][MAX_MB_BYTES];
  2086. PutBitContext pb[2], pb2[2], tex_pb[2];
  2087. //printf("%d->%d\n", s->resync_mb_y, s->end_mb_y);
  2088. ff_check_alignment();
  2089. for(i=0; i<2; i++){
  2090. init_put_bits(&pb [i], bit_buf [i], MAX_MB_BYTES);
  2091. init_put_bits(&pb2 [i], bit_buf2 [i], MAX_MB_BYTES);
  2092. init_put_bits(&tex_pb[i], bit_buf_tex[i], MAX_MB_BYTES);
  2093. }
  2094. s->last_bits= put_bits_count(&s->pb);
  2095. s->mv_bits=0;
  2096. s->misc_bits=0;
  2097. s->i_tex_bits=0;
  2098. s->p_tex_bits=0;
  2099. s->i_count=0;
  2100. s->f_count=0;
  2101. s->b_count=0;
  2102. s->skip_count=0;
  2103. for(i=0; i<3; i++){
  2104. /* init last dc values */
  2105. /* note: quant matrix value (8) is implied here */
  2106. s->last_dc[i] = 128 << s->intra_dc_precision;
  2107. s->current_picture.f.error[i] = 0;
  2108. }
  2109. s->mb_skip_run = 0;
  2110. memset(s->last_mv, 0, sizeof(s->last_mv));
  2111. s->last_mv_dir = 0;
  2112. switch(s->codec_id){
  2113. case CODEC_ID_H263:
  2114. case CODEC_ID_H263P:
  2115. case CODEC_ID_FLV1:
  2116. if (CONFIG_H263_ENCODER)
  2117. s->gob_index = ff_h263_get_gob_height(s);
  2118. break;
  2119. case CODEC_ID_MPEG4:
  2120. if(CONFIG_MPEG4_ENCODER && s->partitioned_frame)
  2121. ff_mpeg4_init_partitions(s);
  2122. break;
  2123. }
  2124. s->resync_mb_x=0;
  2125. s->resync_mb_y=0;
  2126. s->first_slice_line = 1;
  2127. s->ptr_lastgob = s->pb.buf;
  2128. for(mb_y= s->start_mb_y; mb_y < s->end_mb_y; mb_y++) {
  2129. // printf("row %d at %X\n", s->mb_y, (int)s);
  2130. s->mb_x=0;
  2131. s->mb_y= mb_y;
  2132. ff_set_qscale(s, s->qscale);
  2133. ff_init_block_index(s);
  2134. for(mb_x=0; mb_x < s->mb_width; mb_x++) {
  2135. int xy= mb_y*s->mb_stride + mb_x; // removed const, H261 needs to adjust this
  2136. int mb_type= s->mb_type[xy];
  2137. // int d;
  2138. int dmin= INT_MAX;
  2139. int dir;
  2140. if(s->pb.buf_end - s->pb.buf - (put_bits_count(&s->pb)>>3) < MAX_MB_BYTES){
  2141. av_log(s->avctx, AV_LOG_ERROR, "encoded frame too large\n");
  2142. return -1;
  2143. }
  2144. if(s->data_partitioning){
  2145. if( s->pb2 .buf_end - s->pb2 .buf - (put_bits_count(&s-> pb2)>>3) < MAX_MB_BYTES
  2146. || s->tex_pb.buf_end - s->tex_pb.buf - (put_bits_count(&s->tex_pb )>>3) < MAX_MB_BYTES){
  2147. av_log(s->avctx, AV_LOG_ERROR, "encoded frame too large\n");
  2148. return -1;
  2149. }
  2150. }
  2151. s->mb_x = mb_x;
  2152. s->mb_y = mb_y; // moved into loop, can get changed by H.261
  2153. ff_update_block_index(s);
  2154. if(CONFIG_H261_ENCODER && s->codec_id == CODEC_ID_H261){
  2155. ff_h261_reorder_mb_index(s);
  2156. xy= s->mb_y*s->mb_stride + s->mb_x;
  2157. mb_type= s->mb_type[xy];
  2158. }
  2159. /* write gob / video packet header */
  2160. if(s->rtp_mode){
  2161. int current_packet_size, is_gob_start;
  2162. current_packet_size= ((put_bits_count(&s->pb)+7)>>3) - (s->ptr_lastgob - s->pb.buf);
  2163. is_gob_start= s->avctx->rtp_payload_size && current_packet_size >= s->avctx->rtp_payload_size && mb_y + mb_x>0;
  2164. if(s->start_mb_y == mb_y && mb_y > 0 && mb_x==0) is_gob_start=1;
  2165. switch(s->codec_id){
  2166. case CODEC_ID_H263:
  2167. case CODEC_ID_H263P:
  2168. if(!s->h263_slice_structured)
  2169. if(s->mb_x || s->mb_y%s->gob_index) is_gob_start=0;
  2170. break;
  2171. case CODEC_ID_MPEG2VIDEO:
  2172. if(s->mb_x==0 && s->mb_y!=0) is_gob_start=1;
  2173. case CODEC_ID_MPEG1VIDEO:
  2174. if(s->mb_skip_run) is_gob_start=0;
  2175. break;
  2176. }
  2177. if(is_gob_start){
  2178. if(s->start_mb_y != mb_y || mb_x!=0){
  2179. write_slice_end(s);
  2180. if(CONFIG_MPEG4_ENCODER && s->codec_id==CODEC_ID_MPEG4 && s->partitioned_frame){
  2181. ff_mpeg4_init_partitions(s);
  2182. }
  2183. }
  2184. assert((put_bits_count(&s->pb)&7) == 0);
  2185. current_packet_size= put_bits_ptr(&s->pb) - s->ptr_lastgob;
  2186. if(s->avctx->error_rate && s->resync_mb_x + s->resync_mb_y > 0){
  2187. int r= put_bits_count(&s->pb)/8 + s->picture_number + 16 + s->mb_x + s->mb_y;
  2188. int d= 100 / s->avctx->error_rate;
  2189. if(r % d == 0){
  2190. current_packet_size=0;
  2191. s->pb.buf_ptr= s->ptr_lastgob;
  2192. assert(put_bits_ptr(&s->pb) == s->ptr_lastgob);
  2193. }
  2194. }
  2195. if (s->avctx->rtp_callback){
  2196. int number_mb = (mb_y - s->resync_mb_y)*s->mb_width + mb_x - s->resync_mb_x;
  2197. s->avctx->rtp_callback(s->avctx, s->ptr_lastgob, current_packet_size, number_mb);
  2198. }
  2199. update_mb_info(s, 1);
  2200. switch(s->codec_id){
  2201. case CODEC_ID_MPEG4:
  2202. if (CONFIG_MPEG4_ENCODER) {
  2203. ff_mpeg4_encode_video_packet_header(s);
  2204. ff_mpeg4_clean_buffers(s);
  2205. }
  2206. break;
  2207. case CODEC_ID_MPEG1VIDEO:
  2208. case CODEC_ID_MPEG2VIDEO:
  2209. if (CONFIG_MPEG1VIDEO_ENCODER || CONFIG_MPEG2VIDEO_ENCODER) {
  2210. ff_mpeg1_encode_slice_header(s);
  2211. ff_mpeg1_clean_buffers(s);
  2212. }
  2213. break;
  2214. case CODEC_ID_H263:
  2215. case CODEC_ID_H263P:
  2216. if (CONFIG_H263_ENCODER)
  2217. ff_h263_encode_gob_header(s, mb_y);
  2218. break;
  2219. }
  2220. if(s->flags&CODEC_FLAG_PASS1){
  2221. int bits= put_bits_count(&s->pb);
  2222. s->misc_bits+= bits - s->last_bits;
  2223. s->last_bits= bits;
  2224. }
  2225. s->ptr_lastgob += current_packet_size;
  2226. s->first_slice_line=1;
  2227. s->resync_mb_x=mb_x;
  2228. s->resync_mb_y=mb_y;
  2229. }
  2230. }
  2231. if( (s->resync_mb_x == s->mb_x)
  2232. && s->resync_mb_y+1 == s->mb_y){
  2233. s->first_slice_line=0;
  2234. }
  2235. s->mb_skipped=0;
  2236. s->dquant=0; //only for QP_RD
  2237. update_mb_info(s, 0);
  2238. if (mb_type & (mb_type-1) || (s->mpv_flags & FF_MPV_FLAG_QP_RD)) { // more than 1 MB type possible or FF_MPV_FLAG_QP_RD
  2239. int next_block=0;
  2240. int pb_bits_count, pb2_bits_count, tex_pb_bits_count;
  2241. copy_context_before_encode(&backup_s, s, -1);
  2242. backup_s.pb= s->pb;
  2243. best_s.data_partitioning= s->data_partitioning;
  2244. best_s.partitioned_frame= s->partitioned_frame;
  2245. if(s->data_partitioning){
  2246. backup_s.pb2= s->pb2;
  2247. backup_s.tex_pb= s->tex_pb;
  2248. }
  2249. if(mb_type&CANDIDATE_MB_TYPE_INTER){
  2250. s->mv_dir = MV_DIR_FORWARD;
  2251. s->mv_type = MV_TYPE_16X16;
  2252. s->mb_intra= 0;
  2253. s->mv[0][0][0] = s->p_mv_table[xy][0];
  2254. s->mv[0][0][1] = s->p_mv_table[xy][1];
  2255. encode_mb_hq(s, &backup_s, &best_s, CANDIDATE_MB_TYPE_INTER, pb, pb2, tex_pb,
  2256. &dmin, &next_block, s->mv[0][0][0], s->mv[0][0][1]);
  2257. }
  2258. if(mb_type&CANDIDATE_MB_TYPE_INTER_I){
  2259. s->mv_dir = MV_DIR_FORWARD;
  2260. s->mv_type = MV_TYPE_FIELD;
  2261. s->mb_intra= 0;
  2262. for(i=0; i<2; i++){
  2263. j= s->field_select[0][i] = s->p_field_select_table[i][xy];
  2264. s->mv[0][i][0] = s->p_field_mv_table[i][j][xy][0];
  2265. s->mv[0][i][1] = s->p_field_mv_table[i][j][xy][1];
  2266. }
  2267. encode_mb_hq(s, &backup_s, &best_s, CANDIDATE_MB_TYPE_INTER_I, pb, pb2, tex_pb,
  2268. &dmin, &next_block, 0, 0);
  2269. }
  2270. if(mb_type&CANDIDATE_MB_TYPE_SKIPPED){
  2271. s->mv_dir = MV_DIR_FORWARD;
  2272. s->mv_type = MV_TYPE_16X16;
  2273. s->mb_intra= 0;
  2274. s->mv[0][0][0] = 0;
  2275. s->mv[0][0][1] = 0;
  2276. encode_mb_hq(s, &backup_s, &best_s, CANDIDATE_MB_TYPE_SKIPPED, pb, pb2, tex_pb,
  2277. &dmin, &next_block, s->mv[0][0][0], s->mv[0][0][1]);
  2278. }
  2279. if(mb_type&CANDIDATE_MB_TYPE_INTER4V){
  2280. s->mv_dir = MV_DIR_FORWARD;
  2281. s->mv_type = MV_TYPE_8X8;
  2282. s->mb_intra= 0;
  2283. for(i=0; i<4; i++){
  2284. s->mv[0][i][0] = s->current_picture.f.motion_val[0][s->block_index[i]][0];
  2285. s->mv[0][i][1] = s->current_picture.f.motion_val[0][s->block_index[i]][1];
  2286. }
  2287. encode_mb_hq(s, &backup_s, &best_s, CANDIDATE_MB_TYPE_INTER4V, pb, pb2, tex_pb,
  2288. &dmin, &next_block, 0, 0);
  2289. }
  2290. if(mb_type&CANDIDATE_MB_TYPE_FORWARD){
  2291. s->mv_dir = MV_DIR_FORWARD;
  2292. s->mv_type = MV_TYPE_16X16;
  2293. s->mb_intra= 0;
  2294. s->mv[0][0][0] = s->b_forw_mv_table[xy][0];
  2295. s->mv[0][0][1] = s->b_forw_mv_table[xy][1];
  2296. encode_mb_hq(s, &backup_s, &best_s, CANDIDATE_MB_TYPE_FORWARD, pb, pb2, tex_pb,
  2297. &dmin, &next_block, s->mv[0][0][0], s->mv[0][0][1]);
  2298. }
  2299. if(mb_type&CANDIDATE_MB_TYPE_BACKWARD){
  2300. s->mv_dir = MV_DIR_BACKWARD;
  2301. s->mv_type = MV_TYPE_16X16;
  2302. s->mb_intra= 0;
  2303. s->mv[1][0][0] = s->b_back_mv_table[xy][0];
  2304. s->mv[1][0][1] = s->b_back_mv_table[xy][1];
  2305. encode_mb_hq(s, &backup_s, &best_s, CANDIDATE_MB_TYPE_BACKWARD, pb, pb2, tex_pb,
  2306. &dmin, &next_block, s->mv[1][0][0], s->mv[1][0][1]);
  2307. }
  2308. if(mb_type&CANDIDATE_MB_TYPE_BIDIR){
  2309. s->mv_dir = MV_DIR_FORWARD | MV_DIR_BACKWARD;
  2310. s->mv_type = MV_TYPE_16X16;
  2311. s->mb_intra= 0;
  2312. s->mv[0][0][0] = s->b_bidir_forw_mv_table[xy][0];
  2313. s->mv[0][0][1] = s->b_bidir_forw_mv_table[xy][1];
  2314. s->mv[1][0][0] = s->b_bidir_back_mv_table[xy][0];
  2315. s->mv[1][0][1] = s->b_bidir_back_mv_table[xy][1];
  2316. encode_mb_hq(s, &backup_s, &best_s, CANDIDATE_MB_TYPE_BIDIR, pb, pb2, tex_pb,
  2317. &dmin, &next_block, 0, 0);
  2318. }
  2319. if(mb_type&CANDIDATE_MB_TYPE_FORWARD_I){
  2320. s->mv_dir = MV_DIR_FORWARD;
  2321. s->mv_type = MV_TYPE_FIELD;
  2322. s->mb_intra= 0;
  2323. for(i=0; i<2; i++){
  2324. j= s->field_select[0][i] = s->b_field_select_table[0][i][xy];
  2325. s->mv[0][i][0] = s->b_field_mv_table[0][i][j][xy][0];
  2326. s->mv[0][i][1] = s->b_field_mv_table[0][i][j][xy][1];
  2327. }
  2328. encode_mb_hq(s, &backup_s, &best_s, CANDIDATE_MB_TYPE_FORWARD_I, pb, pb2, tex_pb,
  2329. &dmin, &next_block, 0, 0);
  2330. }
  2331. if(mb_type&CANDIDATE_MB_TYPE_BACKWARD_I){
  2332. s->mv_dir = MV_DIR_BACKWARD;
  2333. s->mv_type = MV_TYPE_FIELD;
  2334. s->mb_intra= 0;
  2335. for(i=0; i<2; i++){
  2336. j= s->field_select[1][i] = s->b_field_select_table[1][i][xy];
  2337. s->mv[1][i][0] = s->b_field_mv_table[1][i][j][xy][0];
  2338. s->mv[1][i][1] = s->b_field_mv_table[1][i][j][xy][1];
  2339. }
  2340. encode_mb_hq(s, &backup_s, &best_s, CANDIDATE_MB_TYPE_BACKWARD_I, pb, pb2, tex_pb,
  2341. &dmin, &next_block, 0, 0);
  2342. }
  2343. if(mb_type&CANDIDATE_MB_TYPE_BIDIR_I){
  2344. s->mv_dir = MV_DIR_FORWARD | MV_DIR_BACKWARD;
  2345. s->mv_type = MV_TYPE_FIELD;
  2346. s->mb_intra= 0;
  2347. for(dir=0; dir<2; dir++){
  2348. for(i=0; i<2; i++){
  2349. j= s->field_select[dir][i] = s->b_field_select_table[dir][i][xy];
  2350. s->mv[dir][i][0] = s->b_field_mv_table[dir][i][j][xy][0];
  2351. s->mv[dir][i][1] = s->b_field_mv_table[dir][i][j][xy][1];
  2352. }
  2353. }
  2354. encode_mb_hq(s, &backup_s, &best_s, CANDIDATE_MB_TYPE_BIDIR_I, pb, pb2, tex_pb,
  2355. &dmin, &next_block, 0, 0);
  2356. }
  2357. if(mb_type&CANDIDATE_MB_TYPE_INTRA){
  2358. s->mv_dir = 0;
  2359. s->mv_type = MV_TYPE_16X16;
  2360. s->mb_intra= 1;
  2361. s->mv[0][0][0] = 0;
  2362. s->mv[0][0][1] = 0;
  2363. encode_mb_hq(s, &backup_s, &best_s, CANDIDATE_MB_TYPE_INTRA, pb, pb2, tex_pb,
  2364. &dmin, &next_block, 0, 0);
  2365. if(s->h263_pred || s->h263_aic){
  2366. if(best_s.mb_intra)
  2367. s->mbintra_table[mb_x + mb_y*s->mb_stride]=1;
  2368. else
  2369. ff_clean_intra_table_entries(s); //old mode?
  2370. }
  2371. }
  2372. if ((s->mpv_flags & FF_MPV_FLAG_QP_RD) && dmin < INT_MAX) {
  2373. if(best_s.mv_type==MV_TYPE_16X16){ //FIXME move 4mv after QPRD
  2374. const int last_qp= backup_s.qscale;
  2375. int qpi, qp, dc[6];
  2376. DCTELEM ac[6][16];
  2377. const int mvdir= (best_s.mv_dir&MV_DIR_BACKWARD) ? 1 : 0;
  2378. static const int dquant_tab[4]={-1,1,-2,2};
  2379. assert(backup_s.dquant == 0);
  2380. //FIXME intra
  2381. s->mv_dir= best_s.mv_dir;
  2382. s->mv_type = MV_TYPE_16X16;
  2383. s->mb_intra= best_s.mb_intra;
  2384. s->mv[0][0][0] = best_s.mv[0][0][0];
  2385. s->mv[0][0][1] = best_s.mv[0][0][1];
  2386. s->mv[1][0][0] = best_s.mv[1][0][0];
  2387. s->mv[1][0][1] = best_s.mv[1][0][1];
  2388. qpi = s->pict_type == AV_PICTURE_TYPE_B ? 2 : 0;
  2389. for(; qpi<4; qpi++){
  2390. int dquant= dquant_tab[qpi];
  2391. qp= last_qp + dquant;
  2392. if(qp < s->avctx->qmin || qp > s->avctx->qmax)
  2393. continue;
  2394. backup_s.dquant= dquant;
  2395. if(s->mb_intra && s->dc_val[0]){
  2396. for(i=0; i<6; i++){
  2397. dc[i]= s->dc_val[0][ s->block_index[i] ];
  2398. memcpy(ac[i], s->ac_val[0][s->block_index[i]], sizeof(DCTELEM)*16);
  2399. }
  2400. }
  2401. encode_mb_hq(s, &backup_s, &best_s, CANDIDATE_MB_TYPE_INTER /* wrong but unused */, pb, pb2, tex_pb,
  2402. &dmin, &next_block, s->mv[mvdir][0][0], s->mv[mvdir][0][1]);
  2403. if(best_s.qscale != qp){
  2404. if(s->mb_intra && s->dc_val[0]){
  2405. for(i=0; i<6; i++){
  2406. s->dc_val[0][ s->block_index[i] ]= dc[i];
  2407. memcpy(s->ac_val[0][s->block_index[i]], ac[i], sizeof(DCTELEM)*16);
  2408. }
  2409. }
  2410. }
  2411. }
  2412. }
  2413. }
  2414. if(CONFIG_MPEG4_ENCODER && mb_type&CANDIDATE_MB_TYPE_DIRECT){
  2415. int mx= s->b_direct_mv_table[xy][0];
  2416. int my= s->b_direct_mv_table[xy][1];
  2417. backup_s.dquant = 0;
  2418. s->mv_dir = MV_DIR_FORWARD | MV_DIR_BACKWARD | MV_DIRECT;
  2419. s->mb_intra= 0;
  2420. ff_mpeg4_set_direct_mv(s, mx, my);
  2421. encode_mb_hq(s, &backup_s, &best_s, CANDIDATE_MB_TYPE_DIRECT, pb, pb2, tex_pb,
  2422. &dmin, &next_block, mx, my);
  2423. }
  2424. if(CONFIG_MPEG4_ENCODER && mb_type&CANDIDATE_MB_TYPE_DIRECT0){
  2425. backup_s.dquant = 0;
  2426. s->mv_dir = MV_DIR_FORWARD | MV_DIR_BACKWARD | MV_DIRECT;
  2427. s->mb_intra= 0;
  2428. ff_mpeg4_set_direct_mv(s, 0, 0);
  2429. encode_mb_hq(s, &backup_s, &best_s, CANDIDATE_MB_TYPE_DIRECT, pb, pb2, tex_pb,
  2430. &dmin, &next_block, 0, 0);
  2431. }
  2432. if (!best_s.mb_intra && s->mpv_flags & FF_MPV_FLAG_SKIP_RD) {
  2433. int coded=0;
  2434. for(i=0; i<6; i++)
  2435. coded |= s->block_last_index[i];
  2436. if(coded){
  2437. int mx,my;
  2438. memcpy(s->mv, best_s.mv, sizeof(s->mv));
  2439. if(CONFIG_MPEG4_ENCODER && best_s.mv_dir & MV_DIRECT){
  2440. mx=my=0; //FIXME find the one we actually used
  2441. ff_mpeg4_set_direct_mv(s, mx, my);
  2442. }else if(best_s.mv_dir&MV_DIR_BACKWARD){
  2443. mx= s->mv[1][0][0];
  2444. my= s->mv[1][0][1];
  2445. }else{
  2446. mx= s->mv[0][0][0];
  2447. my= s->mv[0][0][1];
  2448. }
  2449. s->mv_dir= best_s.mv_dir;
  2450. s->mv_type = best_s.mv_type;
  2451. s->mb_intra= 0;
  2452. /* s->mv[0][0][0] = best_s.mv[0][0][0];
  2453. s->mv[0][0][1] = best_s.mv[0][0][1];
  2454. s->mv[1][0][0] = best_s.mv[1][0][0];
  2455. s->mv[1][0][1] = best_s.mv[1][0][1];*/
  2456. backup_s.dquant= 0;
  2457. s->skipdct=1;
  2458. encode_mb_hq(s, &backup_s, &best_s, CANDIDATE_MB_TYPE_INTER /* wrong but unused */, pb, pb2, tex_pb,
  2459. &dmin, &next_block, mx, my);
  2460. s->skipdct=0;
  2461. }
  2462. }
  2463. s->current_picture.f.qscale_table[xy] = best_s.qscale;
  2464. copy_context_after_encode(s, &best_s, -1);
  2465. pb_bits_count= put_bits_count(&s->pb);
  2466. flush_put_bits(&s->pb);
  2467. avpriv_copy_bits(&backup_s.pb, bit_buf[next_block^1], pb_bits_count);
  2468. s->pb= backup_s.pb;
  2469. if(s->data_partitioning){
  2470. pb2_bits_count= put_bits_count(&s->pb2);
  2471. flush_put_bits(&s->pb2);
  2472. avpriv_copy_bits(&backup_s.pb2, bit_buf2[next_block^1], pb2_bits_count);
  2473. s->pb2= backup_s.pb2;
  2474. tex_pb_bits_count= put_bits_count(&s->tex_pb);
  2475. flush_put_bits(&s->tex_pb);
  2476. avpriv_copy_bits(&backup_s.tex_pb, bit_buf_tex[next_block^1], tex_pb_bits_count);
  2477. s->tex_pb= backup_s.tex_pb;
  2478. }
  2479. s->last_bits= put_bits_count(&s->pb);
  2480. if (CONFIG_H263_ENCODER &&
  2481. s->out_format == FMT_H263 && s->pict_type!=AV_PICTURE_TYPE_B)
  2482. ff_h263_update_motion_val(s);
  2483. if(next_block==0){ //FIXME 16 vs linesize16
  2484. s->dsp.put_pixels_tab[0][0](s->dest[0], s->rd_scratchpad , s->linesize ,16);
  2485. s->dsp.put_pixels_tab[1][0](s->dest[1], s->rd_scratchpad + 16*s->linesize , s->uvlinesize, 8);
  2486. s->dsp.put_pixels_tab[1][0](s->dest[2], s->rd_scratchpad + 16*s->linesize + 8, s->uvlinesize, 8);
  2487. }
  2488. if(s->avctx->mb_decision == FF_MB_DECISION_BITS)
  2489. ff_MPV_decode_mb(s, s->block);
  2490. } else {
  2491. int motion_x = 0, motion_y = 0;
  2492. s->mv_type=MV_TYPE_16X16;
  2493. // only one MB-Type possible
  2494. switch(mb_type){
  2495. case CANDIDATE_MB_TYPE_INTRA:
  2496. s->mv_dir = 0;
  2497. s->mb_intra= 1;
  2498. motion_x= s->mv[0][0][0] = 0;
  2499. motion_y= s->mv[0][0][1] = 0;
  2500. break;
  2501. case CANDIDATE_MB_TYPE_INTER:
  2502. s->mv_dir = MV_DIR_FORWARD;
  2503. s->mb_intra= 0;
  2504. motion_x= s->mv[0][0][0] = s->p_mv_table[xy][0];
  2505. motion_y= s->mv[0][0][1] = s->p_mv_table[xy][1];
  2506. break;
  2507. case CANDIDATE_MB_TYPE_INTER_I:
  2508. s->mv_dir = MV_DIR_FORWARD;
  2509. s->mv_type = MV_TYPE_FIELD;
  2510. s->mb_intra= 0;
  2511. for(i=0; i<2; i++){
  2512. j= s->field_select[0][i] = s->p_field_select_table[i][xy];
  2513. s->mv[0][i][0] = s->p_field_mv_table[i][j][xy][0];
  2514. s->mv[0][i][1] = s->p_field_mv_table[i][j][xy][1];
  2515. }
  2516. break;
  2517. case CANDIDATE_MB_TYPE_INTER4V:
  2518. s->mv_dir = MV_DIR_FORWARD;
  2519. s->mv_type = MV_TYPE_8X8;
  2520. s->mb_intra= 0;
  2521. for(i=0; i<4; i++){
  2522. s->mv[0][i][0] = s->current_picture.f.motion_val[0][s->block_index[i]][0];
  2523. s->mv[0][i][1] = s->current_picture.f.motion_val[0][s->block_index[i]][1];
  2524. }
  2525. break;
  2526. case CANDIDATE_MB_TYPE_DIRECT:
  2527. if (CONFIG_MPEG4_ENCODER) {
  2528. s->mv_dir = MV_DIR_FORWARD|MV_DIR_BACKWARD|MV_DIRECT;
  2529. s->mb_intra= 0;
  2530. motion_x=s->b_direct_mv_table[xy][0];
  2531. motion_y=s->b_direct_mv_table[xy][1];
  2532. ff_mpeg4_set_direct_mv(s, motion_x, motion_y);
  2533. }
  2534. break;
  2535. case CANDIDATE_MB_TYPE_DIRECT0:
  2536. if (CONFIG_MPEG4_ENCODER) {
  2537. s->mv_dir = MV_DIR_FORWARD|MV_DIR_BACKWARD|MV_DIRECT;
  2538. s->mb_intra= 0;
  2539. ff_mpeg4_set_direct_mv(s, 0, 0);
  2540. }
  2541. break;
  2542. case CANDIDATE_MB_TYPE_BIDIR:
  2543. s->mv_dir = MV_DIR_FORWARD | MV_DIR_BACKWARD;
  2544. s->mb_intra= 0;
  2545. s->mv[0][0][0] = s->b_bidir_forw_mv_table[xy][0];
  2546. s->mv[0][0][1] = s->b_bidir_forw_mv_table[xy][1];
  2547. s->mv[1][0][0] = s->b_bidir_back_mv_table[xy][0];
  2548. s->mv[1][0][1] = s->b_bidir_back_mv_table[xy][1];
  2549. break;
  2550. case CANDIDATE_MB_TYPE_BACKWARD:
  2551. s->mv_dir = MV_DIR_BACKWARD;
  2552. s->mb_intra= 0;
  2553. motion_x= s->mv[1][0][0] = s->b_back_mv_table[xy][0];
  2554. motion_y= s->mv[1][0][1] = s->b_back_mv_table[xy][1];
  2555. break;
  2556. case CANDIDATE_MB_TYPE_FORWARD:
  2557. s->mv_dir = MV_DIR_FORWARD;
  2558. s->mb_intra= 0;
  2559. motion_x= s->mv[0][0][0] = s->b_forw_mv_table[xy][0];
  2560. motion_y= s->mv[0][0][1] = s->b_forw_mv_table[xy][1];
  2561. // printf(" %d %d ", motion_x, motion_y);
  2562. break;
  2563. case CANDIDATE_MB_TYPE_FORWARD_I:
  2564. s->mv_dir = MV_DIR_FORWARD;
  2565. s->mv_type = MV_TYPE_FIELD;
  2566. s->mb_intra= 0;
  2567. for(i=0; i<2; i++){
  2568. j= s->field_select[0][i] = s->b_field_select_table[0][i][xy];
  2569. s->mv[0][i][0] = s->b_field_mv_table[0][i][j][xy][0];
  2570. s->mv[0][i][1] = s->b_field_mv_table[0][i][j][xy][1];
  2571. }
  2572. break;
  2573. case CANDIDATE_MB_TYPE_BACKWARD_I:
  2574. s->mv_dir = MV_DIR_BACKWARD;
  2575. s->mv_type = MV_TYPE_FIELD;
  2576. s->mb_intra= 0;
  2577. for(i=0; i<2; i++){
  2578. j= s->field_select[1][i] = s->b_field_select_table[1][i][xy];
  2579. s->mv[1][i][0] = s->b_field_mv_table[1][i][j][xy][0];
  2580. s->mv[1][i][1] = s->b_field_mv_table[1][i][j][xy][1];
  2581. }
  2582. break;
  2583. case CANDIDATE_MB_TYPE_BIDIR_I:
  2584. s->mv_dir = MV_DIR_FORWARD | MV_DIR_BACKWARD;
  2585. s->mv_type = MV_TYPE_FIELD;
  2586. s->mb_intra= 0;
  2587. for(dir=0; dir<2; dir++){
  2588. for(i=0; i<2; i++){
  2589. j= s->field_select[dir][i] = s->b_field_select_table[dir][i][xy];
  2590. s->mv[dir][i][0] = s->b_field_mv_table[dir][i][j][xy][0];
  2591. s->mv[dir][i][1] = s->b_field_mv_table[dir][i][j][xy][1];
  2592. }
  2593. }
  2594. break;
  2595. default:
  2596. av_log(s->avctx, AV_LOG_ERROR, "illegal MB type\n");
  2597. }
  2598. encode_mb(s, motion_x, motion_y);
  2599. // RAL: Update last macroblock type
  2600. s->last_mv_dir = s->mv_dir;
  2601. if (CONFIG_H263_ENCODER &&
  2602. s->out_format == FMT_H263 && s->pict_type!=AV_PICTURE_TYPE_B)
  2603. ff_h263_update_motion_val(s);
  2604. ff_MPV_decode_mb(s, s->block);
  2605. }
  2606. /* clean the MV table in IPS frames for direct mode in B frames */
  2607. if(s->mb_intra /* && I,P,S_TYPE */){
  2608. s->p_mv_table[xy][0]=0;
  2609. s->p_mv_table[xy][1]=0;
  2610. }
  2611. if(s->flags&CODEC_FLAG_PSNR){
  2612. int w= 16;
  2613. int h= 16;
  2614. if(s->mb_x*16 + 16 > s->width ) w= s->width - s->mb_x*16;
  2615. if(s->mb_y*16 + 16 > s->height) h= s->height- s->mb_y*16;
  2616. s->current_picture.f.error[0] += sse(
  2617. s, s->new_picture.f.data[0] + s->mb_x*16 + s->mb_y*s->linesize*16,
  2618. s->dest[0], w, h, s->linesize);
  2619. s->current_picture.f.error[1] += sse(
  2620. s, s->new_picture.f.data[1] + s->mb_x*8 + s->mb_y*s->uvlinesize*chr_h,
  2621. s->dest[1], w>>1, h>>s->chroma_y_shift, s->uvlinesize);
  2622. s->current_picture.f.error[2] += sse(
  2623. s, s->new_picture.f.data[2] + s->mb_x*8 + s->mb_y*s->uvlinesize*chr_h,
  2624. s->dest[2], w>>1, h>>s->chroma_y_shift, s->uvlinesize);
  2625. }
  2626. if(s->loop_filter){
  2627. if(CONFIG_H263_ENCODER && s->out_format == FMT_H263)
  2628. ff_h263_loop_filter(s);
  2629. }
  2630. //printf("MB %d %d bits\n", s->mb_x+s->mb_y*s->mb_stride, put_bits_count(&s->pb));
  2631. }
  2632. }
  2633. //not beautiful here but we must write it before flushing so it has to be here
  2634. if (CONFIG_MSMPEG4_ENCODER && s->msmpeg4_version && s->msmpeg4_version<4 && s->pict_type == AV_PICTURE_TYPE_I)
  2635. ff_msmpeg4_encode_ext_header(s);
  2636. write_slice_end(s);
  2637. /* Send the last GOB if RTP */
  2638. if (s->avctx->rtp_callback) {
  2639. int number_mb = (mb_y - s->resync_mb_y)*s->mb_width - s->resync_mb_x;
  2640. pdif = put_bits_ptr(&s->pb) - s->ptr_lastgob;
  2641. /* Call the RTP callback to send the last GOB */
  2642. emms_c();
  2643. s->avctx->rtp_callback(s->avctx, s->ptr_lastgob, pdif, number_mb);
  2644. }
  2645. return 0;
  2646. }
  2647. #define MERGE(field) dst->field += src->field; src->field=0
  2648. static void merge_context_after_me(MpegEncContext *dst, MpegEncContext *src){
  2649. MERGE(me.scene_change_score);
  2650. MERGE(me.mc_mb_var_sum_temp);
  2651. MERGE(me.mb_var_sum_temp);
  2652. }
  2653. static void merge_context_after_encode(MpegEncContext *dst, MpegEncContext *src){
  2654. int i;
  2655. MERGE(dct_count[0]); //note, the other dct vars are not part of the context
  2656. MERGE(dct_count[1]);
  2657. MERGE(mv_bits);
  2658. MERGE(i_tex_bits);
  2659. MERGE(p_tex_bits);
  2660. MERGE(i_count);
  2661. MERGE(f_count);
  2662. MERGE(b_count);
  2663. MERGE(skip_count);
  2664. MERGE(misc_bits);
  2665. MERGE(error_count);
  2666. MERGE(padding_bug_score);
  2667. MERGE(current_picture.f.error[0]);
  2668. MERGE(current_picture.f.error[1]);
  2669. MERGE(current_picture.f.error[2]);
  2670. if(dst->avctx->noise_reduction){
  2671. for(i=0; i<64; i++){
  2672. MERGE(dct_error_sum[0][i]);
  2673. MERGE(dct_error_sum[1][i]);
  2674. }
  2675. }
  2676. assert(put_bits_count(&src->pb) % 8 ==0);
  2677. assert(put_bits_count(&dst->pb) % 8 ==0);
  2678. avpriv_copy_bits(&dst->pb, src->pb.buf, put_bits_count(&src->pb));
  2679. flush_put_bits(&dst->pb);
  2680. }
  2681. static int estimate_qp(MpegEncContext *s, int dry_run){
  2682. if (s->next_lambda){
  2683. s->current_picture_ptr->f.quality =
  2684. s->current_picture.f.quality = s->next_lambda;
  2685. if(!dry_run) s->next_lambda= 0;
  2686. } else if (!s->fixed_qscale) {
  2687. s->current_picture_ptr->f.quality =
  2688. s->current_picture.f.quality = ff_rate_estimate_qscale(s, dry_run);
  2689. if (s->current_picture.f.quality < 0)
  2690. return -1;
  2691. }
  2692. if(s->adaptive_quant){
  2693. switch(s->codec_id){
  2694. case CODEC_ID_MPEG4:
  2695. if (CONFIG_MPEG4_ENCODER)
  2696. ff_clean_mpeg4_qscales(s);
  2697. break;
  2698. case CODEC_ID_H263:
  2699. case CODEC_ID_H263P:
  2700. case CODEC_ID_FLV1:
  2701. if (CONFIG_H263_ENCODER)
  2702. ff_clean_h263_qscales(s);
  2703. break;
  2704. default:
  2705. ff_init_qscale_tab(s);
  2706. }
  2707. s->lambda= s->lambda_table[0];
  2708. //FIXME broken
  2709. }else
  2710. s->lambda = s->current_picture.f.quality;
  2711. //printf("%d %d\n", s->avctx->global_quality, s->current_picture.quality);
  2712. update_qscale(s);
  2713. return 0;
  2714. }
  2715. /* must be called before writing the header */
  2716. static void set_frame_distances(MpegEncContext * s){
  2717. assert(s->current_picture_ptr->f.pts != AV_NOPTS_VALUE);
  2718. s->time = s->current_picture_ptr->f.pts * s->avctx->time_base.num;
  2719. if(s->pict_type==AV_PICTURE_TYPE_B){
  2720. s->pb_time= s->pp_time - (s->last_non_b_time - s->time);
  2721. assert(s->pb_time > 0 && s->pb_time < s->pp_time);
  2722. }else{
  2723. s->pp_time= s->time - s->last_non_b_time;
  2724. s->last_non_b_time= s->time;
  2725. assert(s->picture_number==0 || s->pp_time > 0);
  2726. }
  2727. }
  2728. static int encode_picture(MpegEncContext *s, int picture_number)
  2729. {
  2730. int i;
  2731. int bits;
  2732. int context_count = s->slice_context_count;
  2733. s->picture_number = picture_number;
  2734. /* Reset the average MB variance */
  2735. s->me.mb_var_sum_temp =
  2736. s->me.mc_mb_var_sum_temp = 0;
  2737. /* we need to initialize some time vars before we can encode b-frames */
  2738. // RAL: Condition added for MPEG1VIDEO
  2739. if (s->codec_id == CODEC_ID_MPEG1VIDEO || s->codec_id == CODEC_ID_MPEG2VIDEO || (s->h263_pred && !s->msmpeg4_version))
  2740. set_frame_distances(s);
  2741. if(CONFIG_MPEG4_ENCODER && s->codec_id == CODEC_ID_MPEG4)
  2742. ff_set_mpeg4_time(s);
  2743. s->me.scene_change_score=0;
  2744. // s->lambda= s->current_picture_ptr->quality; //FIXME qscale / ... stuff for ME rate distortion
  2745. if(s->pict_type==AV_PICTURE_TYPE_I){
  2746. if(s->msmpeg4_version >= 3) s->no_rounding=1;
  2747. else s->no_rounding=0;
  2748. }else if(s->pict_type!=AV_PICTURE_TYPE_B){
  2749. if(s->flipflop_rounding || s->codec_id == CODEC_ID_H263P || s->codec_id == CODEC_ID_MPEG4)
  2750. s->no_rounding ^= 1;
  2751. }
  2752. if(s->flags & CODEC_FLAG_PASS2){
  2753. if (estimate_qp(s,1) < 0)
  2754. return -1;
  2755. ff_get_2pass_fcode(s);
  2756. }else if(!(s->flags & CODEC_FLAG_QSCALE)){
  2757. if(s->pict_type==AV_PICTURE_TYPE_B)
  2758. s->lambda= s->last_lambda_for[s->pict_type];
  2759. else
  2760. s->lambda= s->last_lambda_for[s->last_non_b_pict_type];
  2761. update_qscale(s);
  2762. }
  2763. s->mb_intra=0; //for the rate distortion & bit compare functions
  2764. for(i=1; i<context_count; i++){
  2765. ff_update_duplicate_context(s->thread_context[i], s);
  2766. }
  2767. if(ff_init_me(s)<0)
  2768. return -1;
  2769. /* Estimate motion for every MB */
  2770. if(s->pict_type != AV_PICTURE_TYPE_I){
  2771. s->lambda = (s->lambda * s->avctx->me_penalty_compensation + 128)>>8;
  2772. s->lambda2= (s->lambda2* (int64_t)s->avctx->me_penalty_compensation + 128)>>8;
  2773. if(s->pict_type != AV_PICTURE_TYPE_B && s->avctx->me_threshold==0){
  2774. if((s->avctx->pre_me && s->last_non_b_pict_type==AV_PICTURE_TYPE_I) || s->avctx->pre_me==2){
  2775. s->avctx->execute(s->avctx, pre_estimate_motion_thread, &s->thread_context[0], NULL, context_count, sizeof(void*));
  2776. }
  2777. }
  2778. s->avctx->execute(s->avctx, estimate_motion_thread, &s->thread_context[0], NULL, context_count, sizeof(void*));
  2779. }else /* if(s->pict_type == AV_PICTURE_TYPE_I) */{
  2780. /* I-Frame */
  2781. for(i=0; i<s->mb_stride*s->mb_height; i++)
  2782. s->mb_type[i]= CANDIDATE_MB_TYPE_INTRA;
  2783. if(!s->fixed_qscale){
  2784. /* finding spatial complexity for I-frame rate control */
  2785. s->avctx->execute(s->avctx, mb_var_thread, &s->thread_context[0], NULL, context_count, sizeof(void*));
  2786. }
  2787. }
  2788. for(i=1; i<context_count; i++){
  2789. merge_context_after_me(s, s->thread_context[i]);
  2790. }
  2791. s->current_picture.mc_mb_var_sum= s->current_picture_ptr->mc_mb_var_sum= s->me.mc_mb_var_sum_temp;
  2792. s->current_picture. mb_var_sum= s->current_picture_ptr-> mb_var_sum= s->me. mb_var_sum_temp;
  2793. emms_c();
  2794. if(s->me.scene_change_score > s->avctx->scenechange_threshold && s->pict_type == AV_PICTURE_TYPE_P){
  2795. s->pict_type= AV_PICTURE_TYPE_I;
  2796. for(i=0; i<s->mb_stride*s->mb_height; i++)
  2797. s->mb_type[i]= CANDIDATE_MB_TYPE_INTRA;
  2798. //printf("Scene change detected, encoding as I Frame %d %d\n", s->current_picture.mb_var_sum, s->current_picture.mc_mb_var_sum);
  2799. }
  2800. if(!s->umvplus){
  2801. if(s->pict_type==AV_PICTURE_TYPE_P || s->pict_type==AV_PICTURE_TYPE_S) {
  2802. s->f_code= ff_get_best_fcode(s, s->p_mv_table, CANDIDATE_MB_TYPE_INTER);
  2803. if(s->flags & CODEC_FLAG_INTERLACED_ME){
  2804. int a,b;
  2805. a= ff_get_best_fcode(s, s->p_field_mv_table[0][0], CANDIDATE_MB_TYPE_INTER_I); //FIXME field_select
  2806. b= ff_get_best_fcode(s, s->p_field_mv_table[1][1], CANDIDATE_MB_TYPE_INTER_I);
  2807. s->f_code= FFMAX3(s->f_code, a, b);
  2808. }
  2809. ff_fix_long_p_mvs(s);
  2810. ff_fix_long_mvs(s, NULL, 0, s->p_mv_table, s->f_code, CANDIDATE_MB_TYPE_INTER, 0);
  2811. if(s->flags & CODEC_FLAG_INTERLACED_ME){
  2812. int j;
  2813. for(i=0; i<2; i++){
  2814. for(j=0; j<2; j++)
  2815. ff_fix_long_mvs(s, s->p_field_select_table[i], j,
  2816. s->p_field_mv_table[i][j], s->f_code, CANDIDATE_MB_TYPE_INTER_I, 0);
  2817. }
  2818. }
  2819. }
  2820. if(s->pict_type==AV_PICTURE_TYPE_B){
  2821. int a, b;
  2822. a = ff_get_best_fcode(s, s->b_forw_mv_table, CANDIDATE_MB_TYPE_FORWARD);
  2823. b = ff_get_best_fcode(s, s->b_bidir_forw_mv_table, CANDIDATE_MB_TYPE_BIDIR);
  2824. s->f_code = FFMAX(a, b);
  2825. a = ff_get_best_fcode(s, s->b_back_mv_table, CANDIDATE_MB_TYPE_BACKWARD);
  2826. b = ff_get_best_fcode(s, s->b_bidir_back_mv_table, CANDIDATE_MB_TYPE_BIDIR);
  2827. s->b_code = FFMAX(a, b);
  2828. ff_fix_long_mvs(s, NULL, 0, s->b_forw_mv_table, s->f_code, CANDIDATE_MB_TYPE_FORWARD, 1);
  2829. ff_fix_long_mvs(s, NULL, 0, s->b_back_mv_table, s->b_code, CANDIDATE_MB_TYPE_BACKWARD, 1);
  2830. ff_fix_long_mvs(s, NULL, 0, s->b_bidir_forw_mv_table, s->f_code, CANDIDATE_MB_TYPE_BIDIR, 1);
  2831. ff_fix_long_mvs(s, NULL, 0, s->b_bidir_back_mv_table, s->b_code, CANDIDATE_MB_TYPE_BIDIR, 1);
  2832. if(s->flags & CODEC_FLAG_INTERLACED_ME){
  2833. int dir, j;
  2834. for(dir=0; dir<2; dir++){
  2835. for(i=0; i<2; i++){
  2836. for(j=0; j<2; j++){
  2837. int type= dir ? (CANDIDATE_MB_TYPE_BACKWARD_I|CANDIDATE_MB_TYPE_BIDIR_I)
  2838. : (CANDIDATE_MB_TYPE_FORWARD_I |CANDIDATE_MB_TYPE_BIDIR_I);
  2839. ff_fix_long_mvs(s, s->b_field_select_table[dir][i], j,
  2840. s->b_field_mv_table[dir][i][j], dir ? s->b_code : s->f_code, type, 1);
  2841. }
  2842. }
  2843. }
  2844. }
  2845. }
  2846. }
  2847. if (estimate_qp(s, 0) < 0)
  2848. return -1;
  2849. if(s->qscale < 3 && s->max_qcoeff<=128 && s->pict_type==AV_PICTURE_TYPE_I && !(s->flags & CODEC_FLAG_QSCALE))
  2850. s->qscale= 3; //reduce clipping problems
  2851. if (s->out_format == FMT_MJPEG) {
  2852. /* for mjpeg, we do include qscale in the matrix */
  2853. for(i=1;i<64;i++){
  2854. int j= s->dsp.idct_permutation[i];
  2855. s->intra_matrix[j] = av_clip_uint8((ff_mpeg1_default_intra_matrix[i] * s->qscale) >> 3);
  2856. }
  2857. s->y_dc_scale_table=
  2858. s->c_dc_scale_table= ff_mpeg2_dc_scale_table[s->intra_dc_precision];
  2859. s->intra_matrix[0] = ff_mpeg2_dc_scale_table[s->intra_dc_precision][8];
  2860. ff_convert_matrix(&s->dsp, s->q_intra_matrix, s->q_intra_matrix16,
  2861. s->intra_matrix, s->intra_quant_bias, 8, 8, 1);
  2862. s->qscale= 8;
  2863. }
  2864. //FIXME var duplication
  2865. s->current_picture_ptr->f.key_frame =
  2866. s->current_picture.f.key_frame = s->pict_type == AV_PICTURE_TYPE_I; //FIXME pic_ptr
  2867. s->current_picture_ptr->f.pict_type =
  2868. s->current_picture.f.pict_type = s->pict_type;
  2869. if (s->current_picture.f.key_frame)
  2870. s->picture_in_gop_number=0;
  2871. s->last_bits= put_bits_count(&s->pb);
  2872. switch(s->out_format) {
  2873. case FMT_MJPEG:
  2874. if (CONFIG_MJPEG_ENCODER)
  2875. ff_mjpeg_encode_picture_header(s);
  2876. break;
  2877. case FMT_H261:
  2878. if (CONFIG_H261_ENCODER)
  2879. ff_h261_encode_picture_header(s, picture_number);
  2880. break;
  2881. case FMT_H263:
  2882. if (CONFIG_WMV2_ENCODER && s->codec_id == CODEC_ID_WMV2)
  2883. ff_wmv2_encode_picture_header(s, picture_number);
  2884. else if (CONFIG_MSMPEG4_ENCODER && s->msmpeg4_version)
  2885. ff_msmpeg4_encode_picture_header(s, picture_number);
  2886. else if (CONFIG_MPEG4_ENCODER && s->h263_pred)
  2887. ff_mpeg4_encode_picture_header(s, picture_number);
  2888. else if (CONFIG_RV10_ENCODER && s->codec_id == CODEC_ID_RV10)
  2889. ff_rv10_encode_picture_header(s, picture_number);
  2890. else if (CONFIG_RV20_ENCODER && s->codec_id == CODEC_ID_RV20)
  2891. ff_rv20_encode_picture_header(s, picture_number);
  2892. else if (CONFIG_FLV_ENCODER && s->codec_id == CODEC_ID_FLV1)
  2893. ff_flv_encode_picture_header(s, picture_number);
  2894. else if (CONFIG_H263_ENCODER)
  2895. ff_h263_encode_picture_header(s, picture_number);
  2896. break;
  2897. case FMT_MPEG1:
  2898. if (CONFIG_MPEG1VIDEO_ENCODER || CONFIG_MPEG2VIDEO_ENCODER)
  2899. ff_mpeg1_encode_picture_header(s, picture_number);
  2900. break;
  2901. case FMT_H264:
  2902. break;
  2903. default:
  2904. assert(0);
  2905. }
  2906. bits= put_bits_count(&s->pb);
  2907. s->header_bits= bits - s->last_bits;
  2908. for(i=1; i<context_count; i++){
  2909. update_duplicate_context_after_me(s->thread_context[i], s);
  2910. }
  2911. s->avctx->execute(s->avctx, encode_thread, &s->thread_context[0], NULL, context_count, sizeof(void*));
  2912. for(i=1; i<context_count; i++){
  2913. merge_context_after_encode(s, s->thread_context[i]);
  2914. }
  2915. emms_c();
  2916. return 0;
  2917. }
  2918. static void denoise_dct_c(MpegEncContext *s, DCTELEM *block){
  2919. const int intra= s->mb_intra;
  2920. int i;
  2921. s->dct_count[intra]++;
  2922. for(i=0; i<64; i++){
  2923. int level= block[i];
  2924. if(level){
  2925. if(level>0){
  2926. s->dct_error_sum[intra][i] += level;
  2927. level -= s->dct_offset[intra][i];
  2928. if(level<0) level=0;
  2929. }else{
  2930. s->dct_error_sum[intra][i] -= level;
  2931. level += s->dct_offset[intra][i];
  2932. if(level>0) level=0;
  2933. }
  2934. block[i]= level;
  2935. }
  2936. }
  2937. }
  2938. static int dct_quantize_trellis_c(MpegEncContext *s,
  2939. DCTELEM *block, int n,
  2940. int qscale, int *overflow){
  2941. const int *qmat;
  2942. const uint8_t *scantable= s->intra_scantable.scantable;
  2943. const uint8_t *perm_scantable= s->intra_scantable.permutated;
  2944. int max=0;
  2945. unsigned int threshold1, threshold2;
  2946. int bias=0;
  2947. int run_tab[65];
  2948. int level_tab[65];
  2949. int score_tab[65];
  2950. int survivor[65];
  2951. int survivor_count;
  2952. int last_run=0;
  2953. int last_level=0;
  2954. int last_score= 0;
  2955. int last_i;
  2956. int coeff[2][64];
  2957. int coeff_count[64];
  2958. int qmul, qadd, start_i, last_non_zero, i, dc;
  2959. const int esc_length= s->ac_esc_length;
  2960. uint8_t * length;
  2961. uint8_t * last_length;
  2962. const int lambda= s->lambda2 >> (FF_LAMBDA_SHIFT - 6);
  2963. s->dsp.fdct (block);
  2964. if(s->dct_error_sum)
  2965. s->denoise_dct(s, block);
  2966. qmul= qscale*16;
  2967. qadd= ((qscale-1)|1)*8;
  2968. if (s->mb_intra) {
  2969. int q;
  2970. if (!s->h263_aic) {
  2971. if (n < 4)
  2972. q = s->y_dc_scale;
  2973. else
  2974. q = s->c_dc_scale;
  2975. q = q << 3;
  2976. } else{
  2977. /* For AIC we skip quant/dequant of INTRADC */
  2978. q = 1 << 3;
  2979. qadd=0;
  2980. }
  2981. /* note: block[0] is assumed to be positive */
  2982. block[0] = (block[0] + (q >> 1)) / q;
  2983. start_i = 1;
  2984. last_non_zero = 0;
  2985. qmat = s->q_intra_matrix[qscale];
  2986. if(s->mpeg_quant || s->out_format == FMT_MPEG1)
  2987. bias= 1<<(QMAT_SHIFT-1);
  2988. length = s->intra_ac_vlc_length;
  2989. last_length= s->intra_ac_vlc_last_length;
  2990. } else {
  2991. start_i = 0;
  2992. last_non_zero = -1;
  2993. qmat = s->q_inter_matrix[qscale];
  2994. length = s->inter_ac_vlc_length;
  2995. last_length= s->inter_ac_vlc_last_length;
  2996. }
  2997. last_i= start_i;
  2998. threshold1= (1<<QMAT_SHIFT) - bias - 1;
  2999. threshold2= (threshold1<<1);
  3000. for(i=63; i>=start_i; i--) {
  3001. const int j = scantable[i];
  3002. int level = block[j] * qmat[j];
  3003. if(((unsigned)(level+threshold1))>threshold2){
  3004. last_non_zero = i;
  3005. break;
  3006. }
  3007. }
  3008. for(i=start_i; i<=last_non_zero; i++) {
  3009. const int j = scantable[i];
  3010. int level = block[j] * qmat[j];
  3011. // if( bias+level >= (1<<(QMAT_SHIFT - 3))
  3012. // || bias-level >= (1<<(QMAT_SHIFT - 3))){
  3013. if(((unsigned)(level+threshold1))>threshold2){
  3014. if(level>0){
  3015. level= (bias + level)>>QMAT_SHIFT;
  3016. coeff[0][i]= level;
  3017. coeff[1][i]= level-1;
  3018. // coeff[2][k]= level-2;
  3019. }else{
  3020. level= (bias - level)>>QMAT_SHIFT;
  3021. coeff[0][i]= -level;
  3022. coeff[1][i]= -level+1;
  3023. // coeff[2][k]= -level+2;
  3024. }
  3025. coeff_count[i]= FFMIN(level, 2);
  3026. assert(coeff_count[i]);
  3027. max |=level;
  3028. }else{
  3029. coeff[0][i]= (level>>31)|1;
  3030. coeff_count[i]= 1;
  3031. }
  3032. }
  3033. *overflow= s->max_qcoeff < max; //overflow might have happened
  3034. if(last_non_zero < start_i){
  3035. memset(block + start_i, 0, (64-start_i)*sizeof(DCTELEM));
  3036. return last_non_zero;
  3037. }
  3038. score_tab[start_i]= 0;
  3039. survivor[0]= start_i;
  3040. survivor_count= 1;
  3041. for(i=start_i; i<=last_non_zero; i++){
  3042. int level_index, j, zero_distortion;
  3043. int dct_coeff= FFABS(block[ scantable[i] ]);
  3044. int best_score=256*256*256*120;
  3045. if (s->dsp.fdct == ff_fdct_ifast)
  3046. dct_coeff= (dct_coeff*ff_inv_aanscales[ scantable[i] ]) >> 12;
  3047. zero_distortion= dct_coeff*dct_coeff;
  3048. for(level_index=0; level_index < coeff_count[i]; level_index++){
  3049. int distortion;
  3050. int level= coeff[level_index][i];
  3051. const int alevel= FFABS(level);
  3052. int unquant_coeff;
  3053. assert(level);
  3054. if(s->out_format == FMT_H263){
  3055. unquant_coeff= alevel*qmul + qadd;
  3056. }else{ //MPEG1
  3057. j= s->dsp.idct_permutation[ scantable[i] ]; //FIXME optimize
  3058. if(s->mb_intra){
  3059. unquant_coeff = (int)( alevel * qscale * s->intra_matrix[j]) >> 3;
  3060. unquant_coeff = (unquant_coeff - 1) | 1;
  3061. }else{
  3062. unquant_coeff = ((( alevel << 1) + 1) * qscale * ((int) s->inter_matrix[j])) >> 4;
  3063. unquant_coeff = (unquant_coeff - 1) | 1;
  3064. }
  3065. unquant_coeff<<= 3;
  3066. }
  3067. distortion= (unquant_coeff - dct_coeff) * (unquant_coeff - dct_coeff) - zero_distortion;
  3068. level+=64;
  3069. if((level&(~127)) == 0){
  3070. for(j=survivor_count-1; j>=0; j--){
  3071. int run= i - survivor[j];
  3072. int score= distortion + length[UNI_AC_ENC_INDEX(run, level)]*lambda;
  3073. score += score_tab[i-run];
  3074. if(score < best_score){
  3075. best_score= score;
  3076. run_tab[i+1]= run;
  3077. level_tab[i+1]= level-64;
  3078. }
  3079. }
  3080. if(s->out_format == FMT_H263){
  3081. for(j=survivor_count-1; j>=0; j--){
  3082. int run= i - survivor[j];
  3083. int score= distortion + last_length[UNI_AC_ENC_INDEX(run, level)]*lambda;
  3084. score += score_tab[i-run];
  3085. if(score < last_score){
  3086. last_score= score;
  3087. last_run= run;
  3088. last_level= level-64;
  3089. last_i= i+1;
  3090. }
  3091. }
  3092. }
  3093. }else{
  3094. distortion += esc_length*lambda;
  3095. for(j=survivor_count-1; j>=0; j--){
  3096. int run= i - survivor[j];
  3097. int score= distortion + score_tab[i-run];
  3098. if(score < best_score){
  3099. best_score= score;
  3100. run_tab[i+1]= run;
  3101. level_tab[i+1]= level-64;
  3102. }
  3103. }
  3104. if(s->out_format == FMT_H263){
  3105. for(j=survivor_count-1; j>=0; j--){
  3106. int run= i - survivor[j];
  3107. int score= distortion + score_tab[i-run];
  3108. if(score < last_score){
  3109. last_score= score;
  3110. last_run= run;
  3111. last_level= level-64;
  3112. last_i= i+1;
  3113. }
  3114. }
  3115. }
  3116. }
  3117. }
  3118. score_tab[i+1]= best_score;
  3119. //Note: there is a vlc code in mpeg4 which is 1 bit shorter then another one with a shorter run and the same level
  3120. if(last_non_zero <= 27){
  3121. for(; survivor_count; survivor_count--){
  3122. if(score_tab[ survivor[survivor_count-1] ] <= best_score)
  3123. break;
  3124. }
  3125. }else{
  3126. for(; survivor_count; survivor_count--){
  3127. if(score_tab[ survivor[survivor_count-1] ] <= best_score + lambda)
  3128. break;
  3129. }
  3130. }
  3131. survivor[ survivor_count++ ]= i+1;
  3132. }
  3133. if(s->out_format != FMT_H263){
  3134. last_score= 256*256*256*120;
  3135. for(i= survivor[0]; i<=last_non_zero + 1; i++){
  3136. int score= score_tab[i];
  3137. if(i) score += lambda*2; //FIXME exacter?
  3138. if(score < last_score){
  3139. last_score= score;
  3140. last_i= i;
  3141. last_level= level_tab[i];
  3142. last_run= run_tab[i];
  3143. }
  3144. }
  3145. }
  3146. s->coded_score[n] = last_score;
  3147. dc= FFABS(block[0]);
  3148. last_non_zero= last_i - 1;
  3149. memset(block + start_i, 0, (64-start_i)*sizeof(DCTELEM));
  3150. if(last_non_zero < start_i)
  3151. return last_non_zero;
  3152. if(last_non_zero == 0 && start_i == 0){
  3153. int best_level= 0;
  3154. int best_score= dc * dc;
  3155. for(i=0; i<coeff_count[0]; i++){
  3156. int level= coeff[i][0];
  3157. int alevel= FFABS(level);
  3158. int unquant_coeff, score, distortion;
  3159. if(s->out_format == FMT_H263){
  3160. unquant_coeff= (alevel*qmul + qadd)>>3;
  3161. }else{ //MPEG1
  3162. unquant_coeff = ((( alevel << 1) + 1) * qscale * ((int) s->inter_matrix[0])) >> 4;
  3163. unquant_coeff = (unquant_coeff - 1) | 1;
  3164. }
  3165. unquant_coeff = (unquant_coeff + 4) >> 3;
  3166. unquant_coeff<<= 3 + 3;
  3167. distortion= (unquant_coeff - dc) * (unquant_coeff - dc);
  3168. level+=64;
  3169. if((level&(~127)) == 0) score= distortion + last_length[UNI_AC_ENC_INDEX(0, level)]*lambda;
  3170. else score= distortion + esc_length*lambda;
  3171. if(score < best_score){
  3172. best_score= score;
  3173. best_level= level - 64;
  3174. }
  3175. }
  3176. block[0]= best_level;
  3177. s->coded_score[n] = best_score - dc*dc;
  3178. if(best_level == 0) return -1;
  3179. else return last_non_zero;
  3180. }
  3181. i= last_i;
  3182. assert(last_level);
  3183. block[ perm_scantable[last_non_zero] ]= last_level;
  3184. i -= last_run + 1;
  3185. for(; i>start_i; i -= run_tab[i] + 1){
  3186. block[ perm_scantable[i-1] ]= level_tab[i];
  3187. }
  3188. return last_non_zero;
  3189. }
  3190. //#define REFINE_STATS 1
  3191. static int16_t basis[64][64];
  3192. static void build_basis(uint8_t *perm){
  3193. int i, j, x, y;
  3194. emms_c();
  3195. for(i=0; i<8; i++){
  3196. for(j=0; j<8; j++){
  3197. for(y=0; y<8; y++){
  3198. for(x=0; x<8; x++){
  3199. double s= 0.25*(1<<BASIS_SHIFT);
  3200. int index= 8*i + j;
  3201. int perm_index= perm[index];
  3202. if(i==0) s*= sqrt(0.5);
  3203. if(j==0) s*= sqrt(0.5);
  3204. basis[perm_index][8*x + y]= lrintf(s * cos((M_PI/8.0)*i*(x+0.5)) * cos((M_PI/8.0)*j*(y+0.5)));
  3205. }
  3206. }
  3207. }
  3208. }
  3209. }
  3210. static int dct_quantize_refine(MpegEncContext *s, //FIXME breaks denoise?
  3211. DCTELEM *block, int16_t *weight, DCTELEM *orig,
  3212. int n, int qscale){
  3213. int16_t rem[64];
  3214. LOCAL_ALIGNED_16(DCTELEM, d1, [64]);
  3215. const uint8_t *scantable= s->intra_scantable.scantable;
  3216. const uint8_t *perm_scantable= s->intra_scantable.permutated;
  3217. // unsigned int threshold1, threshold2;
  3218. // int bias=0;
  3219. int run_tab[65];
  3220. int prev_run=0;
  3221. int prev_level=0;
  3222. int qmul, qadd, start_i, last_non_zero, i, dc;
  3223. uint8_t * length;
  3224. uint8_t * last_length;
  3225. int lambda;
  3226. int rle_index, run, q = 1, sum; //q is only used when s->mb_intra is true
  3227. #ifdef REFINE_STATS
  3228. static int count=0;
  3229. static int after_last=0;
  3230. static int to_zero=0;
  3231. static int from_zero=0;
  3232. static int raise=0;
  3233. static int lower=0;
  3234. static int messed_sign=0;
  3235. #endif
  3236. if(basis[0][0] == 0)
  3237. build_basis(s->dsp.idct_permutation);
  3238. qmul= qscale*2;
  3239. qadd= (qscale-1)|1;
  3240. if (s->mb_intra) {
  3241. if (!s->h263_aic) {
  3242. if (n < 4)
  3243. q = s->y_dc_scale;
  3244. else
  3245. q = s->c_dc_scale;
  3246. } else{
  3247. /* For AIC we skip quant/dequant of INTRADC */
  3248. q = 1;
  3249. qadd=0;
  3250. }
  3251. q <<= RECON_SHIFT-3;
  3252. /* note: block[0] is assumed to be positive */
  3253. dc= block[0]*q;
  3254. // block[0] = (block[0] + (q >> 1)) / q;
  3255. start_i = 1;
  3256. // if(s->mpeg_quant || s->out_format == FMT_MPEG1)
  3257. // bias= 1<<(QMAT_SHIFT-1);
  3258. length = s->intra_ac_vlc_length;
  3259. last_length= s->intra_ac_vlc_last_length;
  3260. } else {
  3261. dc= 0;
  3262. start_i = 0;
  3263. length = s->inter_ac_vlc_length;
  3264. last_length= s->inter_ac_vlc_last_length;
  3265. }
  3266. last_non_zero = s->block_last_index[n];
  3267. #ifdef REFINE_STATS
  3268. {START_TIMER
  3269. #endif
  3270. dc += (1<<(RECON_SHIFT-1));
  3271. for(i=0; i<64; i++){
  3272. rem[i]= dc - (orig[i]<<RECON_SHIFT); //FIXME use orig dirrectly instead of copying to rem[]
  3273. }
  3274. #ifdef REFINE_STATS
  3275. STOP_TIMER("memset rem[]")}
  3276. #endif
  3277. sum=0;
  3278. for(i=0; i<64; i++){
  3279. int one= 36;
  3280. int qns=4;
  3281. int w;
  3282. w= FFABS(weight[i]) + qns*one;
  3283. w= 15 + (48*qns*one + w/2)/w; // 16 .. 63
  3284. weight[i] = w;
  3285. // w=weight[i] = (63*qns + (w/2)) / w;
  3286. assert(w>0);
  3287. assert(w<(1<<6));
  3288. sum += w*w;
  3289. }
  3290. lambda= sum*(uint64_t)s->lambda2 >> (FF_LAMBDA_SHIFT - 6 + 6 + 6 + 6);
  3291. #ifdef REFINE_STATS
  3292. {START_TIMER
  3293. #endif
  3294. run=0;
  3295. rle_index=0;
  3296. for(i=start_i; i<=last_non_zero; i++){
  3297. int j= perm_scantable[i];
  3298. const int level= block[j];
  3299. int coeff;
  3300. if(level){
  3301. if(level<0) coeff= qmul*level - qadd;
  3302. else coeff= qmul*level + qadd;
  3303. run_tab[rle_index++]=run;
  3304. run=0;
  3305. s->dsp.add_8x8basis(rem, basis[j], coeff);
  3306. }else{
  3307. run++;
  3308. }
  3309. }
  3310. #ifdef REFINE_STATS
  3311. if(last_non_zero>0){
  3312. STOP_TIMER("init rem[]")
  3313. }
  3314. }
  3315. {START_TIMER
  3316. #endif
  3317. for(;;){
  3318. int best_score=s->dsp.try_8x8basis(rem, weight, basis[0], 0);
  3319. int best_coeff=0;
  3320. int best_change=0;
  3321. int run2, best_unquant_change=0, analyze_gradient;
  3322. #ifdef REFINE_STATS
  3323. {START_TIMER
  3324. #endif
  3325. analyze_gradient = last_non_zero > 2 || s->quantizer_noise_shaping >= 3;
  3326. if(analyze_gradient){
  3327. #ifdef REFINE_STATS
  3328. {START_TIMER
  3329. #endif
  3330. for(i=0; i<64; i++){
  3331. int w= weight[i];
  3332. d1[i] = (rem[i]*w*w + (1<<(RECON_SHIFT+12-1)))>>(RECON_SHIFT+12);
  3333. }
  3334. #ifdef REFINE_STATS
  3335. STOP_TIMER("rem*w*w")}
  3336. {START_TIMER
  3337. #endif
  3338. s->dsp.fdct(d1);
  3339. #ifdef REFINE_STATS
  3340. STOP_TIMER("dct")}
  3341. #endif
  3342. }
  3343. if(start_i){
  3344. const int level= block[0];
  3345. int change, old_coeff;
  3346. assert(s->mb_intra);
  3347. old_coeff= q*level;
  3348. for(change=-1; change<=1; change+=2){
  3349. int new_level= level + change;
  3350. int score, new_coeff;
  3351. new_coeff= q*new_level;
  3352. if(new_coeff >= 2048 || new_coeff < 0)
  3353. continue;
  3354. score= s->dsp.try_8x8basis(rem, weight, basis[0], new_coeff - old_coeff);
  3355. if(score<best_score){
  3356. best_score= score;
  3357. best_coeff= 0;
  3358. best_change= change;
  3359. best_unquant_change= new_coeff - old_coeff;
  3360. }
  3361. }
  3362. }
  3363. run=0;
  3364. rle_index=0;
  3365. run2= run_tab[rle_index++];
  3366. prev_level=0;
  3367. prev_run=0;
  3368. for(i=start_i; i<64; i++){
  3369. int j= perm_scantable[i];
  3370. const int level= block[j];
  3371. int change, old_coeff;
  3372. if(s->quantizer_noise_shaping < 3 && i > last_non_zero + 1)
  3373. break;
  3374. if(level){
  3375. if(level<0) old_coeff= qmul*level - qadd;
  3376. else old_coeff= qmul*level + qadd;
  3377. run2= run_tab[rle_index++]; //FIXME ! maybe after last
  3378. }else{
  3379. old_coeff=0;
  3380. run2--;
  3381. assert(run2>=0 || i >= last_non_zero );
  3382. }
  3383. for(change=-1; change<=1; change+=2){
  3384. int new_level= level + change;
  3385. int score, new_coeff, unquant_change;
  3386. score=0;
  3387. if(s->quantizer_noise_shaping < 2 && FFABS(new_level) > FFABS(level))
  3388. continue;
  3389. if(new_level){
  3390. if(new_level<0) new_coeff= qmul*new_level - qadd;
  3391. else new_coeff= qmul*new_level + qadd;
  3392. if(new_coeff >= 2048 || new_coeff <= -2048)
  3393. continue;
  3394. //FIXME check for overflow
  3395. if(level){
  3396. if(level < 63 && level > -63){
  3397. if(i < last_non_zero)
  3398. score += length[UNI_AC_ENC_INDEX(run, new_level+64)]
  3399. - length[UNI_AC_ENC_INDEX(run, level+64)];
  3400. else
  3401. score += last_length[UNI_AC_ENC_INDEX(run, new_level+64)]
  3402. - last_length[UNI_AC_ENC_INDEX(run, level+64)];
  3403. }
  3404. }else{
  3405. assert(FFABS(new_level)==1);
  3406. if(analyze_gradient){
  3407. int g= d1[ scantable[i] ];
  3408. if(g && (g^new_level) >= 0)
  3409. continue;
  3410. }
  3411. if(i < last_non_zero){
  3412. int next_i= i + run2 + 1;
  3413. int next_level= block[ perm_scantable[next_i] ] + 64;
  3414. if(next_level&(~127))
  3415. next_level= 0;
  3416. if(next_i < last_non_zero)
  3417. score += length[UNI_AC_ENC_INDEX(run, 65)]
  3418. + length[UNI_AC_ENC_INDEX(run2, next_level)]
  3419. - length[UNI_AC_ENC_INDEX(run + run2 + 1, next_level)];
  3420. else
  3421. score += length[UNI_AC_ENC_INDEX(run, 65)]
  3422. + last_length[UNI_AC_ENC_INDEX(run2, next_level)]
  3423. - last_length[UNI_AC_ENC_INDEX(run + run2 + 1, next_level)];
  3424. }else{
  3425. score += last_length[UNI_AC_ENC_INDEX(run, 65)];
  3426. if(prev_level){
  3427. score += length[UNI_AC_ENC_INDEX(prev_run, prev_level)]
  3428. - last_length[UNI_AC_ENC_INDEX(prev_run, prev_level)];
  3429. }
  3430. }
  3431. }
  3432. }else{
  3433. new_coeff=0;
  3434. assert(FFABS(level)==1);
  3435. if(i < last_non_zero){
  3436. int next_i= i + run2 + 1;
  3437. int next_level= block[ perm_scantable[next_i] ] + 64;
  3438. if(next_level&(~127))
  3439. next_level= 0;
  3440. if(next_i < last_non_zero)
  3441. score += length[UNI_AC_ENC_INDEX(run + run2 + 1, next_level)]
  3442. - length[UNI_AC_ENC_INDEX(run2, next_level)]
  3443. - length[UNI_AC_ENC_INDEX(run, 65)];
  3444. else
  3445. score += last_length[UNI_AC_ENC_INDEX(run + run2 + 1, next_level)]
  3446. - last_length[UNI_AC_ENC_INDEX(run2, next_level)]
  3447. - length[UNI_AC_ENC_INDEX(run, 65)];
  3448. }else{
  3449. score += -last_length[UNI_AC_ENC_INDEX(run, 65)];
  3450. if(prev_level){
  3451. score += last_length[UNI_AC_ENC_INDEX(prev_run, prev_level)]
  3452. - length[UNI_AC_ENC_INDEX(prev_run, prev_level)];
  3453. }
  3454. }
  3455. }
  3456. score *= lambda;
  3457. unquant_change= new_coeff - old_coeff;
  3458. assert((score < 100*lambda && score > -100*lambda) || lambda==0);
  3459. score+= s->dsp.try_8x8basis(rem, weight, basis[j], unquant_change);
  3460. if(score<best_score){
  3461. best_score= score;
  3462. best_coeff= i;
  3463. best_change= change;
  3464. best_unquant_change= unquant_change;
  3465. }
  3466. }
  3467. if(level){
  3468. prev_level= level + 64;
  3469. if(prev_level&(~127))
  3470. prev_level= 0;
  3471. prev_run= run;
  3472. run=0;
  3473. }else{
  3474. run++;
  3475. }
  3476. }
  3477. #ifdef REFINE_STATS
  3478. STOP_TIMER("iterative step")}
  3479. #endif
  3480. if(best_change){
  3481. int j= perm_scantable[ best_coeff ];
  3482. block[j] += best_change;
  3483. if(best_coeff > last_non_zero){
  3484. last_non_zero= best_coeff;
  3485. assert(block[j]);
  3486. #ifdef REFINE_STATS
  3487. after_last++;
  3488. #endif
  3489. }else{
  3490. #ifdef REFINE_STATS
  3491. if(block[j]){
  3492. if(block[j] - best_change){
  3493. if(FFABS(block[j]) > FFABS(block[j] - best_change)){
  3494. raise++;
  3495. }else{
  3496. lower++;
  3497. }
  3498. }else{
  3499. from_zero++;
  3500. }
  3501. }else{
  3502. to_zero++;
  3503. }
  3504. #endif
  3505. for(; last_non_zero>=start_i; last_non_zero--){
  3506. if(block[perm_scantable[last_non_zero]])
  3507. break;
  3508. }
  3509. }
  3510. #ifdef REFINE_STATS
  3511. count++;
  3512. if(256*256*256*64 % count == 0){
  3513. printf("after_last:%d to_zero:%d from_zero:%d raise:%d lower:%d sign:%d xyp:%d/%d/%d\n", after_last, to_zero, from_zero, raise, lower, messed_sign, s->mb_x, s->mb_y, s->picture_number);
  3514. }
  3515. #endif
  3516. run=0;
  3517. rle_index=0;
  3518. for(i=start_i; i<=last_non_zero; i++){
  3519. int j= perm_scantable[i];
  3520. const int level= block[j];
  3521. if(level){
  3522. run_tab[rle_index++]=run;
  3523. run=0;
  3524. }else{
  3525. run++;
  3526. }
  3527. }
  3528. s->dsp.add_8x8basis(rem, basis[j], best_unquant_change);
  3529. }else{
  3530. break;
  3531. }
  3532. }
  3533. #ifdef REFINE_STATS
  3534. if(last_non_zero>0){
  3535. STOP_TIMER("iterative search")
  3536. }
  3537. }
  3538. #endif
  3539. return last_non_zero;
  3540. }
  3541. int ff_dct_quantize_c(MpegEncContext *s,
  3542. DCTELEM *block, int n,
  3543. int qscale, int *overflow)
  3544. {
  3545. int i, j, level, last_non_zero, q, start_i;
  3546. const int *qmat;
  3547. const uint8_t *scantable= s->intra_scantable.scantable;
  3548. int bias;
  3549. int max=0;
  3550. unsigned int threshold1, threshold2;
  3551. s->dsp.fdct (block);
  3552. if(s->dct_error_sum)
  3553. s->denoise_dct(s, block);
  3554. if (s->mb_intra) {
  3555. if (!s->h263_aic) {
  3556. if (n < 4)
  3557. q = s->y_dc_scale;
  3558. else
  3559. q = s->c_dc_scale;
  3560. q = q << 3;
  3561. } else
  3562. /* For AIC we skip quant/dequant of INTRADC */
  3563. q = 1 << 3;
  3564. /* note: block[0] is assumed to be positive */
  3565. block[0] = (block[0] + (q >> 1)) / q;
  3566. start_i = 1;
  3567. last_non_zero = 0;
  3568. qmat = s->q_intra_matrix[qscale];
  3569. bias= s->intra_quant_bias<<(QMAT_SHIFT - QUANT_BIAS_SHIFT);
  3570. } else {
  3571. start_i = 0;
  3572. last_non_zero = -1;
  3573. qmat = s->q_inter_matrix[qscale];
  3574. bias= s->inter_quant_bias<<(QMAT_SHIFT - QUANT_BIAS_SHIFT);
  3575. }
  3576. threshold1= (1<<QMAT_SHIFT) - bias - 1;
  3577. threshold2= (threshold1<<1);
  3578. for(i=63;i>=start_i;i--) {
  3579. j = scantable[i];
  3580. level = block[j] * qmat[j];
  3581. if(((unsigned)(level+threshold1))>threshold2){
  3582. last_non_zero = i;
  3583. break;
  3584. }else{
  3585. block[j]=0;
  3586. }
  3587. }
  3588. for(i=start_i; i<=last_non_zero; i++) {
  3589. j = scantable[i];
  3590. level = block[j] * qmat[j];
  3591. // if( bias+level >= (1<<QMAT_SHIFT)
  3592. // || bias-level >= (1<<QMAT_SHIFT)){
  3593. if(((unsigned)(level+threshold1))>threshold2){
  3594. if(level>0){
  3595. level= (bias + level)>>QMAT_SHIFT;
  3596. block[j]= level;
  3597. }else{
  3598. level= (bias - level)>>QMAT_SHIFT;
  3599. block[j]= -level;
  3600. }
  3601. max |=level;
  3602. }else{
  3603. block[j]=0;
  3604. }
  3605. }
  3606. *overflow= s->max_qcoeff < max; //overflow might have happened
  3607. /* we need this permutation so that we correct the IDCT, we only permute the !=0 elements */
  3608. if (s->dsp.idct_permutation_type != FF_NO_IDCT_PERM)
  3609. ff_block_permute(block, s->dsp.idct_permutation, scantable, last_non_zero);
  3610. return last_non_zero;
  3611. }
  3612. #define OFFSET(x) offsetof(MpegEncContext, x)
  3613. #define VE AV_OPT_FLAG_VIDEO_PARAM | AV_OPT_FLAG_ENCODING_PARAM
  3614. static const AVOption h263_options[] = {
  3615. { "obmc", "use overlapped block motion compensation.", OFFSET(obmc), AV_OPT_TYPE_INT, { 0 }, 0, 1, VE },
  3616. { "structured_slices","Write slice start position at every GOB header instead of just GOB number.", OFFSET(h263_slice_structured), AV_OPT_TYPE_INT, { 0 }, 0, 1, VE},
  3617. { "mb_info", "emit macroblock info for RFC 2190 packetization, the parameter value is the maximum payload size", OFFSET(mb_info), AV_OPT_TYPE_INT, { 0 }, 0, INT_MAX, VE },
  3618. FF_MPV_COMMON_OPTS
  3619. { NULL },
  3620. };
  3621. static const AVClass h263_class = {
  3622. .class_name = "H.263 encoder",
  3623. .item_name = av_default_item_name,
  3624. .option = h263_options,
  3625. .version = LIBAVUTIL_VERSION_INT,
  3626. };
  3627. AVCodec ff_h263_encoder = {
  3628. .name = "h263",
  3629. .type = AVMEDIA_TYPE_VIDEO,
  3630. .id = CODEC_ID_H263,
  3631. .priv_data_size = sizeof(MpegEncContext),
  3632. .init = ff_MPV_encode_init,
  3633. .encode2 = ff_MPV_encode_picture,
  3634. .close = ff_MPV_encode_end,
  3635. .pix_fmts= (const enum PixelFormat[]){PIX_FMT_YUV420P, PIX_FMT_NONE},
  3636. .long_name= NULL_IF_CONFIG_SMALL("H.263 / H.263-1996"),
  3637. .priv_class = &h263_class,
  3638. };
  3639. static const AVOption h263p_options[] = {
  3640. { "umv", "Use unlimited motion vectors.", OFFSET(umvplus), AV_OPT_TYPE_INT, { 0 }, 0, 1, VE },
  3641. { "aiv", "Use alternative inter VLC.", OFFSET(alt_inter_vlc), AV_OPT_TYPE_INT, { 0 }, 0, 1, VE },
  3642. { "obmc", "use overlapped block motion compensation.", OFFSET(obmc), AV_OPT_TYPE_INT, { 0 }, 0, 1, VE },
  3643. { "structured_slices", "Write slice start position at every GOB header instead of just GOB number.", OFFSET(h263_slice_structured), AV_OPT_TYPE_INT, { 0 }, 0, 1, VE},
  3644. FF_MPV_COMMON_OPTS
  3645. { NULL },
  3646. };
  3647. static const AVClass h263p_class = {
  3648. .class_name = "H.263p encoder",
  3649. .item_name = av_default_item_name,
  3650. .option = h263p_options,
  3651. .version = LIBAVUTIL_VERSION_INT,
  3652. };
  3653. AVCodec ff_h263p_encoder = {
  3654. .name = "h263p",
  3655. .type = AVMEDIA_TYPE_VIDEO,
  3656. .id = CODEC_ID_H263P,
  3657. .priv_data_size = sizeof(MpegEncContext),
  3658. .init = ff_MPV_encode_init,
  3659. .encode2 = ff_MPV_encode_picture,
  3660. .close = ff_MPV_encode_end,
  3661. .capabilities = CODEC_CAP_SLICE_THREADS,
  3662. .pix_fmts = (const enum PixelFormat[]){ PIX_FMT_YUV420P, PIX_FMT_NONE },
  3663. .long_name = NULL_IF_CONFIG_SMALL("H.263+ / H.263-1998 / H.263 version 2"),
  3664. .priv_class = &h263p_class,
  3665. };
  3666. FF_MPV_GENERIC_CLASS(msmpeg4v2)
  3667. AVCodec ff_msmpeg4v2_encoder = {
  3668. .name = "msmpeg4v2",
  3669. .type = AVMEDIA_TYPE_VIDEO,
  3670. .id = CODEC_ID_MSMPEG4V2,
  3671. .priv_data_size = sizeof(MpegEncContext),
  3672. .init = ff_MPV_encode_init,
  3673. .encode2 = ff_MPV_encode_picture,
  3674. .close = ff_MPV_encode_end,
  3675. .pix_fmts = (const enum PixelFormat[]){ PIX_FMT_YUV420P, PIX_FMT_NONE },
  3676. .long_name = NULL_IF_CONFIG_SMALL("MPEG-4 part 2 Microsoft variant version 2"),
  3677. .priv_class = &msmpeg4v2_class,
  3678. };
  3679. FF_MPV_GENERIC_CLASS(msmpeg4v3)
  3680. AVCodec ff_msmpeg4v3_encoder = {
  3681. .name = "msmpeg4",
  3682. .type = AVMEDIA_TYPE_VIDEO,
  3683. .id = CODEC_ID_MSMPEG4V3,
  3684. .priv_data_size = sizeof(MpegEncContext),
  3685. .init = ff_MPV_encode_init,
  3686. .encode2 = ff_MPV_encode_picture,
  3687. .close = ff_MPV_encode_end,
  3688. .pix_fmts = (const enum PixelFormat[]){ PIX_FMT_YUV420P, PIX_FMT_NONE },
  3689. .long_name = NULL_IF_CONFIG_SMALL("MPEG-4 part 2 Microsoft variant version 3"),
  3690. .priv_class = &msmpeg4v3_class,
  3691. };
  3692. FF_MPV_GENERIC_CLASS(wmv1)
  3693. AVCodec ff_wmv1_encoder = {
  3694. .name = "wmv1",
  3695. .type = AVMEDIA_TYPE_VIDEO,
  3696. .id = CODEC_ID_WMV1,
  3697. .priv_data_size = sizeof(MpegEncContext),
  3698. .init = ff_MPV_encode_init,
  3699. .encode2 = ff_MPV_encode_picture,
  3700. .close = ff_MPV_encode_end,
  3701. .pix_fmts = (const enum PixelFormat[]){ PIX_FMT_YUV420P, PIX_FMT_NONE },
  3702. .long_name = NULL_IF_CONFIG_SMALL("Windows Media Video 7"),
  3703. .priv_class = &wmv1_class,
  3704. };