Merge branch 'mirror' into vdpau
[FFMpeg-mirror/ffmpeg-vdpau.git] / libavcodec / mpegvideo.h
blob4ddd30c483c1e671f7865cc8aa2a653d3391832a
1 /*
2 * Generic DCT based hybrid video encoder
3 * Copyright (c) 2000, 2001, 2002 Fabrice Bellard.
4 * Copyright (c) 2002-2004 Michael Niedermayer
6 * This file is part of FFmpeg.
8 * FFmpeg is free software; you can redistribute it and/or
9 * modify it under the terms of the GNU Lesser General Public
10 * License as published by the Free Software Foundation; either
11 * version 2.1 of the License, or (at your option) any later version.
13 * FFmpeg is distributed in the hope that it will be useful,
14 * but WITHOUT ANY WARRANTY; without even the implied warranty of
15 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
16 * Lesser General Public License for more details.
18 * You should have received a copy of the GNU Lesser General Public
19 * License along with FFmpeg; if not, write to the Free Software
20 * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
23 /**
24 * @file mpegvideo.h
25 * mpegvideo header.
28 #ifndef AVCODEC_MPEGVIDEO_H
29 #define AVCODEC_MPEGVIDEO_H
31 #include "dsputil.h"
32 #include "bitstream.h"
33 #include "ratecontrol.h"
34 #include "parser.h"
35 #include "mpeg12data.h"
36 #include "rl.h"
38 #define FRAME_SKIPPED 100 ///< return value for header parsers if frame is not coded
40 enum OutputFormat {
41 FMT_MPEG1,
42 FMT_H261,
43 FMT_H263,
44 FMT_MJPEG,
45 FMT_H264,
48 #define MPEG_BUF_SIZE (16 * 1024)
50 #define QMAT_SHIFT_MMX 16
51 #define QMAT_SHIFT 22
53 #define MAX_FCODE 7
54 #define MAX_MV 2048
56 #define MAX_THREADS 8
58 #define MAX_PICTURE_COUNT 32
60 #define ME_MAP_SIZE 64
61 #define ME_MAP_SHIFT 3
62 #define ME_MAP_MV_BITS 11
64 #define MAX_MB_BYTES (30*16*16*3/8 + 120)
66 #define INPLACE_OFFSET 16
68 /* Start codes. */
69 #define SEQ_END_CODE 0x000001b7
70 #define SEQ_START_CODE 0x000001b3
71 #define GOP_START_CODE 0x000001b8
72 #define PICTURE_START_CODE 0x00000100
73 #define SLICE_MIN_START_CODE 0x00000101
74 #define SLICE_MAX_START_CODE 0x000001af
75 #define EXT_START_CODE 0x000001b5
76 #define USER_START_CODE 0x000001b2
78 /**
79 * Picture.
81 typedef struct Picture{
82 FF_COMMON_FRAME
84 /**
85 * halfpel luma planes.
87 uint8_t *interpolated[3];
88 int16_t (*motion_val_base[2])[2];
89 uint32_t *mb_type_base;
90 #define MB_TYPE_INTRA MB_TYPE_INTRA4x4 //default mb_type if there is just one type
91 #define IS_INTRA4x4(a) ((a)&MB_TYPE_INTRA4x4)
92 #define IS_INTRA16x16(a) ((a)&MB_TYPE_INTRA16x16)
93 #define IS_PCM(a) ((a)&MB_TYPE_INTRA_PCM)
94 #define IS_INTRA(a) ((a)&7)
95 #define IS_INTER(a) ((a)&(MB_TYPE_16x16|MB_TYPE_16x8|MB_TYPE_8x16|MB_TYPE_8x8))
96 #define IS_SKIP(a) ((a)&MB_TYPE_SKIP)
97 #define IS_INTRA_PCM(a) ((a)&MB_TYPE_INTRA_PCM)
98 #define IS_INTERLACED(a) ((a)&MB_TYPE_INTERLACED)
99 #define IS_DIRECT(a) ((a)&MB_TYPE_DIRECT2)
100 #define IS_GMC(a) ((a)&MB_TYPE_GMC)
101 #define IS_16X16(a) ((a)&MB_TYPE_16x16)
102 #define IS_16X8(a) ((a)&MB_TYPE_16x8)
103 #define IS_8X16(a) ((a)&MB_TYPE_8x16)
104 #define IS_8X8(a) ((a)&MB_TYPE_8x8)
105 #define IS_SUB_8X8(a) ((a)&MB_TYPE_16x16) //note reused
106 #define IS_SUB_8X4(a) ((a)&MB_TYPE_16x8) //note reused
107 #define IS_SUB_4X8(a) ((a)&MB_TYPE_8x16) //note reused
108 #define IS_SUB_4X4(a) ((a)&MB_TYPE_8x8) //note reused
109 #define IS_ACPRED(a) ((a)&MB_TYPE_ACPRED)
110 #define IS_QUANT(a) ((a)&MB_TYPE_QUANT)
111 #define IS_DIR(a, part, list) ((a) & (MB_TYPE_P0L0<<((part)+2*(list))))
112 #define USES_LIST(a, list) ((a) & ((MB_TYPE_P0L0|MB_TYPE_P1L0)<<(2*(list)))) ///< does this mb use listX, note does not work if subMBs
113 #define HAS_CBP(a) ((a)&MB_TYPE_CBP)
115 int field_poc[2]; ///< h264 top/bottom POC
116 int poc; ///< h264 frame POC
117 int frame_num; ///< h264 frame_num (raw frame_num from slice header)
118 int pic_id; /**< h264 pic_num (short -> no wrap version of pic_num,
119 pic_num & max_pic_num; long -> long_pic_num) */
120 int long_ref; ///< 1->long term reference 0->short term reference
121 int ref_poc[2][2][16]; ///< h264 POCs of the frames used as reference (FIXME need per slice)
122 int ref_count[2][2]; ///< number of entries in ref_poc (FIXME need per slice)
123 int mbaff; ///< h264 1 -> MBAFF frame 0-> not MBAFF
125 int mb_var_sum; ///< sum of MB variance for current frame
126 int mc_mb_var_sum; ///< motion compensated MB variance for current frame
127 uint16_t *mb_var; ///< Table for MB variances
128 uint16_t *mc_mb_var; ///< Table for motion compensated MB variances
129 uint8_t *mb_mean; ///< Table for MB luminance
130 int32_t *mb_cmp_score; ///< Table for MB cmp scores, for mb decision FIXME remove
131 int b_frame_score; /* */
132 } Picture;
134 struct MpegEncContext;
137 * Motion estimation context.
139 typedef struct MotionEstContext{
140 AVCodecContext *avctx;
141 int skip; ///< set if ME is skipped for the current MB
142 int co_located_mv[4][2]; ///< mv from last P-frame for direct mode ME
143 int direct_basis_mv[4][2];
144 uint8_t *scratchpad; ///< data area for the ME algo, so that the ME does not need to malloc/free
145 uint8_t *best_mb;
146 uint8_t *temp_mb[2];
147 uint8_t *temp;
148 int best_bits;
149 uint32_t *map; ///< map to avoid duplicate evaluations
150 uint32_t *score_map; ///< map to store the scores
151 int map_generation;
152 int pre_penalty_factor;
153 int penalty_factor; /*!< an estimate of the bits required to
154 code a given mv value, e.g. (1,0) takes
155 more bits than (0,0). We have to
156 estimate whether any reduction in
157 residual is worth the extra bits. */
158 int sub_penalty_factor;
159 int mb_penalty_factor;
160 int flags;
161 int sub_flags;
162 int mb_flags;
163 int pre_pass; ///< = 1 for the pre pass
164 int dia_size;
165 int xmin;
166 int xmax;
167 int ymin;
168 int ymax;
169 int pred_x;
170 int pred_y;
171 uint8_t *src[4][4];
172 uint8_t *ref[4][4];
173 int stride;
174 int uvstride;
175 /* temp variables for picture complexity calculation */
176 int mc_mb_var_sum_temp;
177 int mb_var_sum_temp;
178 int scene_change_score;
179 /* cmp, chroma_cmp;*/
180 op_pixels_func (*hpel_put)[4];
181 op_pixels_func (*hpel_avg)[4];
182 qpel_mc_func (*qpel_put)[16];
183 qpel_mc_func (*qpel_avg)[16];
184 uint8_t (*mv_penalty)[MAX_MV*2+1]; ///< amount of bits needed to encode a MV
185 uint8_t *current_mv_penalty;
186 int (*sub_motion_search)(struct MpegEncContext * s,
187 int *mx_ptr, int *my_ptr, int dmin,
188 int src_index, int ref_index,
189 int size, int h);
190 }MotionEstContext;
193 * MpegEncContext.
195 typedef struct MpegEncContext {
196 struct AVCodecContext *avctx;
197 /* the following parameters must be initialized before encoding */
198 int width, height;///< picture size. must be a multiple of 16
199 int gop_size;
200 int intra_only; ///< if true, only intra pictures are generated
201 int bit_rate; ///< wanted bit rate
202 enum OutputFormat out_format; ///< output format
203 int h263_pred; ///< use mpeg4/h263 ac/dc predictions
205 /* the following codec id fields are deprecated in favor of codec_id */
206 int h263_plus; ///< h263 plus headers
207 int h263_msmpeg4; ///< generate MSMPEG4 compatible stream (deprecated, use msmpeg4_version instead)
208 int h263_flv; ///< use flv h263 header
210 enum CodecID codec_id; /* see CODEC_ID_xxx */
211 int fixed_qscale; ///< fixed qscale if non zero
212 int encoding; ///< true if we are encoding (vs decoding)
213 int flags; ///< AVCodecContext.flags (HQ, MV4, ...)
214 int flags2; ///< AVCodecContext.flags2
215 int max_b_frames; ///< max number of b-frames for encoding
216 int luma_elim_threshold;
217 int chroma_elim_threshold;
218 int strict_std_compliance; ///< strictly follow the std (MPEG4, ...)
219 int workaround_bugs; ///< workaround bugs in encoders which cannot be detected automatically
220 int codec_tag; ///< internal codec_tag upper case converted from avctx codec_tag
221 int stream_codec_tag; ///< internal stream_codec_tag upper case converted from avctx stream_codec_tag
222 /* the following fields are managed internally by the encoder */
224 /** bit output */
225 PutBitContext pb;
227 /* sequence parameters */
228 int context_initialized;
229 int input_picture_number; ///< used to set pic->display_picture_number, should not be used for/by anything else
230 int coded_picture_number; ///< used to set pic->coded_picture_number, should not be used for/by anything else
231 int picture_number; //FIXME remove, unclear definition
232 int picture_in_gop_number; ///< 0-> first pic in gop, ...
233 int b_frames_since_non_b; ///< used for encoding, relative to not yet reordered input
234 int64_t user_specified_pts;///< last non zero pts from AVFrame which was passed into avcodec_encode_video()
235 int mb_width, mb_height; ///< number of MBs horizontally & vertically
236 int mb_stride; ///< mb_width+1 used for some arrays to allow simple addressing of left & top MBs without sig11
237 int b8_stride; ///< 2*mb_width+1 used for some 8x8 block arrays to allow simple addressing
238 int b4_stride; ///< 4*mb_width+1 used for some 4x4 block arrays to allow simple addressing
239 int h_edge_pos, v_edge_pos;///< horizontal / vertical position of the right/bottom edge (pixel replication)
240 int mb_num; ///< number of MBs of a picture
241 int linesize; ///< line size, in bytes, may be different from width
242 int uvlinesize; ///< line size, for chroma in bytes, may be different from width
243 Picture *picture; ///< main picture buffer
244 Picture **input_picture; ///< next pictures on display order for encoding
245 Picture **reordered_input_picture; ///< pointer to the next pictures in codedorder for encoding
247 int start_mb_y; ///< start mb_y of this thread (so current thread should process start_mb_y <= row < end_mb_y)
248 int end_mb_y; ///< end mb_y of this thread (so current thread should process start_mb_y <= row < end_mb_y)
249 struct MpegEncContext *thread_context[MAX_THREADS];
252 * copy of the previous picture structure.
253 * note, linesize & data, might not match the previous picture (for field pictures)
255 Picture last_picture;
258 * copy of the next picture structure.
259 * note, linesize & data, might not match the next picture (for field pictures)
261 Picture next_picture;
264 * copy of the source picture structure for encoding.
265 * note, linesize & data, might not match the source picture (for field pictures)
267 Picture new_picture;
270 * copy of the current picture structure.
271 * note, linesize & data, might not match the current picture (for field pictures)
273 Picture current_picture; ///< buffer to store the decompressed current picture
275 Picture *last_picture_ptr; ///< pointer to the previous picture.
276 Picture *next_picture_ptr; ///< pointer to the next picture (for bidir pred)
277 Picture *current_picture_ptr; ///< pointer to the current picture
278 uint8_t *visualization_buffer[3]; //< temporary buffer vor MV visualization
279 int last_dc[3]; ///< last DC values for MPEG1
280 int16_t *dc_val_base;
281 int16_t *dc_val[3]; ///< used for mpeg4 DC prediction, all 3 arrays must be continuous
282 int16_t dc_cache[4*5];
283 int y_dc_scale, c_dc_scale;
284 const uint8_t *y_dc_scale_table; ///< qscale -> y_dc_scale table
285 const uint8_t *c_dc_scale_table; ///< qscale -> c_dc_scale table
286 const uint8_t *chroma_qscale_table; ///< qscale -> chroma_qscale (h263)
287 uint8_t *coded_block_base;
288 uint8_t *coded_block; ///< used for coded block pattern prediction (msmpeg4v3, wmv1)
289 int16_t (*ac_val_base)[16];
290 int16_t (*ac_val[3])[16]; ///< used for for mpeg4 AC prediction, all 3 arrays must be continuous
291 int ac_pred;
292 uint8_t *prev_pict_types; ///< previous picture types in bitstream order, used for mb skip
293 #define PREV_PICT_TYPES_BUFFER_SIZE 256
294 int mb_skipped; ///< MUST BE SET only during DECODING
295 uint8_t *mbskip_table; /**< used to avoid copy if macroblock skipped (for black regions for example)
296 and used for b-frame encoding & decoding (contains skip table of next P Frame) */
297 uint8_t *mbintra_table; ///< used to avoid setting {ac, dc, cbp}-pred stuff to zero on inter MB decoding
298 uint8_t *cbp_table; ///< used to store cbp, ac_pred for partitioned decoding
299 uint8_t *pred_dir_table; ///< used to store pred_dir for partitioned decoding
300 uint8_t *allocated_edge_emu_buffer;
301 uint8_t *edge_emu_buffer; ///< points into the middle of allocated_edge_emu_buffer
302 uint8_t *rd_scratchpad; ///< scratchpad for rate distortion mb decision
303 uint8_t *obmc_scratchpad;
304 uint8_t *b_scratchpad; ///< scratchpad used for writing into write only buffers
306 int qscale; ///< QP
307 int chroma_qscale; ///< chroma QP
308 unsigned int lambda; ///< lagrange multipler used in rate distortion
309 unsigned int lambda2; ///< (lambda*lambda) >> FF_LAMBDA_SHIFT
310 int *lambda_table;
311 int adaptive_quant; ///< use adaptive quantization
312 int dquant; ///< qscale difference to prev qscale
313 int pict_type; ///< FF_I_TYPE, FF_P_TYPE, FF_B_TYPE, ...
314 int last_pict_type; //FIXME removes
315 int last_non_b_pict_type; ///< used for mpeg4 gmc b-frames & ratecontrol
316 int dropable;
317 int frame_rate_index;
318 int last_lambda_for[5]; ///< last lambda for a specific pict type
319 int skipdct; ///< skip dct and code zero residual
321 /* motion compensation */
322 int unrestricted_mv; ///< mv can point outside of the coded picture
323 int h263_long_vectors; ///< use horrible h263v1 long vector mode
324 int decode; ///< if 0 then decoding will be skipped (for encoding b frames for example)
326 DSPContext dsp; ///< pointers for accelerated dsp functions
327 int f_code; ///< forward MV resolution
328 int b_code; ///< backward MV resolution for B Frames (mpeg4)
329 int16_t (*p_mv_table_base)[2];
330 int16_t (*b_forw_mv_table_base)[2];
331 int16_t (*b_back_mv_table_base)[2];
332 int16_t (*b_bidir_forw_mv_table_base)[2];
333 int16_t (*b_bidir_back_mv_table_base)[2];
334 int16_t (*b_direct_mv_table_base)[2];
335 int16_t (*p_field_mv_table_base[2][2])[2];
336 int16_t (*b_field_mv_table_base[2][2][2])[2];
337 int16_t (*p_mv_table)[2]; ///< MV table (1MV per MB) p-frame encoding
338 int16_t (*b_forw_mv_table)[2]; ///< MV table (1MV per MB) forward mode b-frame encoding
339 int16_t (*b_back_mv_table)[2]; ///< MV table (1MV per MB) backward mode b-frame encoding
340 int16_t (*b_bidir_forw_mv_table)[2]; ///< MV table (1MV per MB) bidir mode b-frame encoding
341 int16_t (*b_bidir_back_mv_table)[2]; ///< MV table (1MV per MB) bidir mode b-frame encoding
342 int16_t (*b_direct_mv_table)[2]; ///< MV table (1MV per MB) direct mode b-frame encoding
343 int16_t (*p_field_mv_table[2][2])[2]; ///< MV table (2MV per MB) interlaced p-frame encoding
344 int16_t (*b_field_mv_table[2][2][2])[2];///< MV table (4MV per MB) interlaced b-frame encoding
345 uint8_t (*p_field_select_table[2]);
346 uint8_t (*b_field_select_table[2][2]);
347 int me_method; ///< ME algorithm
348 int mv_dir;
349 #define MV_DIR_FORWARD 1
350 #define MV_DIR_BACKWARD 2
351 #define MV_DIRECT 4 ///< bidirectional mode where the difference equals the MV of the last P/S/I-Frame (mpeg4)
352 int mv_type;
353 #define MV_TYPE_16X16 0 ///< 1 vector for the whole mb
354 #define MV_TYPE_8X8 1 ///< 4 vectors (h263, mpeg4 4MV)
355 #define MV_TYPE_16X8 2 ///< 2 vectors, one per 16x8 block
356 #define MV_TYPE_FIELD 3 ///< 2 vectors, one per field
357 #define MV_TYPE_DMV 4 ///< 2 vectors, special mpeg2 Dual Prime Vectors
358 /**motion vectors for a macroblock
359 first coordinate : 0 = forward 1 = backward
360 second " : depend on type
361 third " : 0 = x, 1 = y
363 int mv[2][4][2];
364 int field_select[2][2];
365 int last_mv[2][2][2]; ///< last MV, used for MV prediction in MPEG1 & B-frame MPEG4
366 uint8_t *fcode_tab; ///< smallest fcode needed for each MV
367 int16_t direct_scale_mv[2][64]; ///< precomputed to avoid divisions in ff_mpeg4_set_direct_mv
369 MotionEstContext me;
371 int no_rounding; /**< apply no rounding to motion compensation (MPEG4, msmpeg4, ...)
372 for b-frames rounding mode is always 0 */
374 int hurry_up; /**< when set to 1 during decoding, b frames will be skipped
375 when set to 2 idct/dequant will be skipped too */
377 /* macroblock layer */
378 int mb_x, mb_y;
379 int mb_skip_run;
380 int mb_intra;
381 uint16_t *mb_type; ///< Table for candidate MB types for encoding
382 #define CANDIDATE_MB_TYPE_INTRA 0x01
383 #define CANDIDATE_MB_TYPE_INTER 0x02
384 #define CANDIDATE_MB_TYPE_INTER4V 0x04
385 #define CANDIDATE_MB_TYPE_SKIPPED 0x08
386 //#define MB_TYPE_GMC 0x10
388 #define CANDIDATE_MB_TYPE_DIRECT 0x10
389 #define CANDIDATE_MB_TYPE_FORWARD 0x20
390 #define CANDIDATE_MB_TYPE_BACKWARD 0x40
391 #define CANDIDATE_MB_TYPE_BIDIR 0x80
393 #define CANDIDATE_MB_TYPE_INTER_I 0x100
394 #define CANDIDATE_MB_TYPE_FORWARD_I 0x200
395 #define CANDIDATE_MB_TYPE_BACKWARD_I 0x400
396 #define CANDIDATE_MB_TYPE_BIDIR_I 0x800
398 #define CANDIDATE_MB_TYPE_DIRECT0 0x1000
400 int block_index[6]; ///< index to current MB in block based arrays with edges
401 int block_wrap[6];
402 uint8_t *dest[3];
404 int *mb_index2xy; ///< mb_index -> mb_x + mb_y*mb_stride
406 /** matrix transmitted in the bitstream */
407 uint16_t intra_matrix[64];
408 uint16_t chroma_intra_matrix[64];
409 uint16_t inter_matrix[64];
410 uint16_t chroma_inter_matrix[64];
411 #define QUANT_BIAS_SHIFT 8
412 int intra_quant_bias; ///< bias for the quantizer
413 int inter_quant_bias; ///< bias for the quantizer
414 int min_qcoeff; ///< minimum encodable coefficient
415 int max_qcoeff; ///< maximum encodable coefficient
416 int ac_esc_length; ///< num of bits needed to encode the longest esc
417 uint8_t *intra_ac_vlc_length;
418 uint8_t *intra_ac_vlc_last_length;
419 uint8_t *inter_ac_vlc_length;
420 uint8_t *inter_ac_vlc_last_length;
421 uint8_t *luma_dc_vlc_length;
422 uint8_t *chroma_dc_vlc_length;
423 #define UNI_AC_ENC_INDEX(run,level) ((run)*128 + (level))
425 int coded_score[8];
427 /** precomputed matrix (combine qscale and DCT renorm) */
428 int (*q_intra_matrix)[64];
429 int (*q_inter_matrix)[64];
430 /** identical to the above but for MMX & these are not permutated, second 64 entries are bias*/
431 uint16_t (*q_intra_matrix16)[2][64];
432 uint16_t (*q_inter_matrix16)[2][64];
433 int block_last_index[12]; ///< last non zero coefficient in block
434 /* scantables */
435 DECLARE_ALIGNED_8(ScanTable, intra_scantable);
436 ScanTable intra_h_scantable;
437 ScanTable intra_v_scantable;
438 ScanTable inter_scantable; ///< if inter == intra then intra should be used to reduce tha cache usage
440 /* noise reduction */
441 int (*dct_error_sum)[64];
442 int dct_count[2];
443 uint16_t (*dct_offset)[64];
445 void *opaque; ///< private data for the user
447 /* bit rate control */
448 int64_t wanted_bits;
449 int64_t total_bits;
450 int frame_bits; ///< bits used for the current frame
451 int next_lambda; ///< next lambda used for retrying to encode a frame
452 RateControlContext rc_context; ///< contains stuff only accessed in ratecontrol.c
454 /* statistics, used for 2-pass encoding */
455 int mv_bits;
456 int header_bits;
457 int i_tex_bits;
458 int p_tex_bits;
459 int i_count;
460 int f_count;
461 int b_count;
462 int skip_count;
463 int misc_bits; ///< cbp, mb_type
464 int last_bits; ///< temp var used for calculating the above vars
466 /* error concealment / resync */
467 int error_count;
468 uint8_t *error_status_table; ///< table of the error status of each MB
469 #define VP_START 1 ///< current MB is the first after a resync marker
470 #define AC_ERROR 2
471 #define DC_ERROR 4
472 #define MV_ERROR 8
473 #define AC_END 16
474 #define DC_END 32
475 #define MV_END 64
476 //FIXME some prefix?
478 int resync_mb_x; ///< x position of last resync marker
479 int resync_mb_y; ///< y position of last resync marker
480 GetBitContext last_resync_gb; ///< used to search for the next resync marker
481 int mb_num_left; ///< number of MBs left in this video packet (for partitioned Slices only)
482 int next_p_frame_damaged; ///< set if the next p frame is damaged, to avoid showing trashed b frames
483 int error_recognition;
485 ParseContext parse_context;
487 /* H.263 specific */
488 int gob_index;
489 int obmc; ///< overlapped block motion compensation
490 int showed_packed_warning; ///< flag for having shown the warning about divxs invalid b frames
492 /* H.263+ specific */
493 int umvplus; ///< == H263+ && unrestricted_mv
494 int h263_aic; ///< Advanded INTRA Coding (AIC)
495 int h263_aic_dir; ///< AIC direction: 0 = left, 1 = top
496 int h263_slice_structured;
497 int alt_inter_vlc; ///< alternative inter vlc
498 int modified_quant;
499 int loop_filter;
500 int custom_pcf;
502 /* mpeg4 specific */
503 int time_increment_bits; ///< number of bits to represent the fractional part of time
504 int last_time_base;
505 int time_base; ///< time in seconds of last I,P,S Frame
506 int64_t time; ///< time of current frame
507 int64_t last_non_b_time;
508 uint16_t pp_time; ///< time distance between the last 2 p,s,i frames
509 uint16_t pb_time; ///< time distance between the last b and p,s,i frame
510 uint16_t pp_field_time;
511 uint16_t pb_field_time; ///< like above, just for interlaced
512 int shape;
513 int vol_sprite_usage;
514 int sprite_width;
515 int sprite_height;
516 int sprite_left;
517 int sprite_top;
518 int sprite_brightness_change;
519 int num_sprite_warping_points;
520 int real_sprite_warping_points;
521 int sprite_offset[2][2]; ///< sprite offset[isChroma][isMVY]
522 int sprite_delta[2][2]; ///< sprite_delta [isY][isMVY]
523 int sprite_shift[2]; ///< sprite shift [isChroma]
524 int mcsel;
525 int quant_precision;
526 int quarter_sample; ///< 1->qpel, 0->half pel ME/MC
527 int scalability;
528 int hierachy_type;
529 int enhancement_type;
530 int new_pred;
531 int reduced_res_vop;
532 int aspect_ratio_info; //FIXME remove
533 int sprite_warping_accuracy;
534 int low_latency_sprite;
535 int data_partitioning; ///< data partitioning flag from header
536 int partitioned_frame; ///< is current frame partitioned
537 int rvlc; ///< reversible vlc
538 int resync_marker; ///< could this stream contain resync markers
539 int low_delay; ///< no reordering needed / has no b-frames
540 int vo_type;
541 int vol_control_parameters; ///< does the stream contain the low_delay flag, used to workaround buggy encoders
542 int intra_dc_threshold; ///< QP above whch the ac VLC should be used for intra dc
543 int use_intra_dc_vlc;
544 PutBitContext tex_pb; ///< used for data partitioned VOPs
545 PutBitContext pb2; ///< used for data partitioned VOPs
546 int mpeg_quant;
547 int t_frame; ///< time distance of first I -> B, used for interlaced b frames
548 int padding_bug_score; ///< used to detect the VERY common padding bug in MPEG4
550 /* divx specific, used to workaround (many) bugs in divx5 */
551 int divx_version;
552 int divx_build;
553 int divx_packed;
554 uint8_t *bitstream_buffer; //Divx 5.01 puts several frames in a single one, this is used to reorder them
555 int bitstream_buffer_size;
556 unsigned int allocated_bitstream_buffer_size;
558 int xvid_build;
560 /* lavc specific stuff, used to workaround bugs in libavcodec */
561 int lavc_build;
563 /* RV10 specific */
564 int rv10_version; ///< RV10 version: 0 or 3
565 int rv10_first_dc_coded[3];
567 /* MJPEG specific */
568 struct MJpegContext *mjpeg_ctx;
569 int mjpeg_vsample[3]; ///< vertical sampling factors, default = {2, 1, 1}
570 int mjpeg_hsample[3]; ///< horizontal sampling factors, default = {2, 1, 1}
572 /* MSMPEG4 specific */
573 int mv_table_index;
574 int rl_table_index;
575 int rl_chroma_table_index;
576 int dc_table_index;
577 int use_skip_mb_code;
578 int slice_height; ///< in macroblocks
579 int first_slice_line; ///< used in mpeg4 too to handle resync markers
580 int flipflop_rounding;
581 int msmpeg4_version; ///< 0=not msmpeg4, 1=mp41, 2=mp42, 3=mp43/divx3 4=wmv1/7 5=wmv2/8
582 int per_mb_rl_table;
583 int esc3_level_length;
584 int esc3_run_length;
585 /** [mb_intra][isChroma][level][run][last] */
586 int (*ac_stats)[2][MAX_LEVEL+1][MAX_RUN+1][2];
587 int inter_intra_pred;
588 int mspel;
590 /* decompression specific */
591 GetBitContext gb;
593 /* Mpeg1 specific */
594 int gop_picture_number; ///< index of the first picture of a GOP based on fake_pic_num & mpeg1 specific
595 int last_mv_dir; ///< last mv_dir, used for b frame encoding
596 int broken_link; ///< no_output_of_prior_pics_flag
597 uint8_t *vbv_delay_ptr; ///< pointer to vbv_delay in the bitstream
599 /* MPEG2 specific - I wish I had not to support this mess. */
600 int progressive_sequence;
601 int mpeg_f_code[2][2];
602 int picture_structure;
603 /* picture type */
604 #define PICT_TOP_FIELD 1
605 #define PICT_BOTTOM_FIELD 2
606 #define PICT_FRAME 3
608 int intra_dc_precision;
609 int frame_pred_frame_dct;
610 int top_field_first;
611 int concealment_motion_vectors;
612 int q_scale_type;
613 int intra_vlc_format;
614 int alternate_scan;
615 int repeat_first_field;
616 int chroma_420_type;
617 int chroma_format;
618 #define CHROMA_420 1
619 #define CHROMA_422 2
620 #define CHROMA_444 3
621 int chroma_x_shift;//depend on pix_format, that depend on chroma_format
622 int chroma_y_shift;
624 int progressive_frame;
625 int full_pel[2];
626 int interlaced_dct;
627 int first_slice;
628 int first_field; ///< is 1 for the first field of a field picture 0 otherwise
630 /* RTP specific */
631 int rtp_mode;
633 uint8_t *ptr_lastgob;
634 int swap_uv;//vcr2 codec is mpeg2 varint with UV swaped
635 short * pblocks[12];
637 DCTELEM (*block)[64]; ///< points to one of the following blocks
638 DCTELEM (*blocks)[8][64]; // for HQ mode we need to keep the best block
639 int (*decode_mb)(struct MpegEncContext *s, DCTELEM block[6][64]); // used by some codecs to avoid a switch()
640 #define SLICE_OK 0
641 #define SLICE_ERROR -1
642 #define SLICE_END -2 ///<end marker found
643 #define SLICE_NOEND -3 ///<no end marker or error found but mb count exceeded
645 void (*dct_unquantize_mpeg1_intra)(struct MpegEncContext *s,
646 DCTELEM *block/*align 16*/, int n, int qscale);
647 void (*dct_unquantize_mpeg1_inter)(struct MpegEncContext *s,
648 DCTELEM *block/*align 16*/, int n, int qscale);
649 void (*dct_unquantize_mpeg2_intra)(struct MpegEncContext *s,
650 DCTELEM *block/*align 16*/, int n, int qscale);
651 void (*dct_unquantize_mpeg2_inter)(struct MpegEncContext *s,
652 DCTELEM *block/*align 16*/, int n, int qscale);
653 void (*dct_unquantize_h263_intra)(struct MpegEncContext *s,
654 DCTELEM *block/*align 16*/, int n, int qscale);
655 void (*dct_unquantize_h263_inter)(struct MpegEncContext *s,
656 DCTELEM *block/*align 16*/, int n, int qscale);
657 void (*dct_unquantize_h261_intra)(struct MpegEncContext *s,
658 DCTELEM *block/*align 16*/, int n, int qscale);
659 void (*dct_unquantize_h261_inter)(struct MpegEncContext *s,
660 DCTELEM *block/*align 16*/, int n, int qscale);
661 void (*dct_unquantize_intra)(struct MpegEncContext *s, // unquantizer to use (mpeg4 can use both)
662 DCTELEM *block/*align 16*/, int n, int qscale);
663 void (*dct_unquantize_inter)(struct MpegEncContext *s, // unquantizer to use (mpeg4 can use both)
664 DCTELEM *block/*align 16*/, int n, int qscale);
665 int (*dct_quantize)(struct MpegEncContext *s, DCTELEM *block/*align 16*/, int n, int qscale, int *overflow);
666 int (*fast_dct_quantize)(struct MpegEncContext *s, DCTELEM *block/*align 16*/, int n, int qscale, int *overflow);
667 void (*denoise_dct)(struct MpegEncContext *s, DCTELEM *block);
668 } MpegEncContext;
671 void MPV_decode_defaults(MpegEncContext *s);
672 int MPV_common_init(MpegEncContext *s);
673 void MPV_common_end(MpegEncContext *s);
674 void MPV_decode_mb(MpegEncContext *s, DCTELEM block[12][64]);
675 int MPV_frame_start(MpegEncContext *s, AVCodecContext *avctx);
676 void MPV_frame_end(MpegEncContext *s);
677 int MPV_encode_init(AVCodecContext *avctx);
678 int MPV_encode_end(AVCodecContext *avctx);
679 int MPV_encode_picture(AVCodecContext *avctx, unsigned char *buf, int buf_size, void *data);
680 void MPV_common_init_mmx(MpegEncContext *s);
681 void MPV_common_init_axp(MpegEncContext *s);
682 void MPV_common_init_mlib(MpegEncContext *s);
683 void MPV_common_init_mmi(MpegEncContext *s);
684 void MPV_common_init_armv4l(MpegEncContext *s);
685 void MPV_common_init_altivec(MpegEncContext *s);
686 void ff_clean_intra_table_entries(MpegEncContext *s);
687 void ff_draw_horiz_band(MpegEncContext *s, int y, int h);
688 void ff_mpeg_flush(AVCodecContext *avctx);
689 void ff_print_debug_info(MpegEncContext *s, AVFrame *pict);
690 void ff_write_quant_matrix(PutBitContext *pb, uint16_t *matrix);
691 int ff_find_unused_picture(MpegEncContext *s, int shared);
692 void ff_denoise_dct(MpegEncContext *s, DCTELEM *block);
693 void ff_update_duplicate_context(MpegEncContext *dst, MpegEncContext *src);
694 const uint8_t *ff_find_start_code(const uint8_t *p, const uint8_t *end, uint32_t *state);
696 void ff_er_frame_start(MpegEncContext *s);
697 void ff_er_frame_end(MpegEncContext *s);
698 void ff_er_add_slice(MpegEncContext *s, int startx, int starty, int endx, int endy, int status);
700 int ff_dct_common_init(MpegEncContext *s);
701 void ff_convert_matrix(DSPContext *dsp, int (*qmat)[64], uint16_t (*qmat16)[2][64],
702 const uint16_t *quant_matrix, int bias, int qmin, int qmax, int intra);
704 void ff_init_block_index(MpegEncContext *s);
705 void ff_copy_picture(Picture *dst, Picture *src);
707 static inline void ff_update_block_index(MpegEncContext *s){
708 const int block_size= 8>>s->avctx->lowres;
710 s->block_index[0]+=2;
711 s->block_index[1]+=2;
712 s->block_index[2]+=2;
713 s->block_index[3]+=2;
714 s->block_index[4]++;
715 s->block_index[5]++;
716 s->dest[0]+= 2*block_size;
717 s->dest[1]+= block_size;
718 s->dest[2]+= block_size;
721 static inline int get_bits_diff(MpegEncContext *s){
722 const int bits= put_bits_count(&s->pb);
723 const int last= s->last_bits;
725 s->last_bits = bits;
727 return bits - last;
730 static inline int ff_h263_round_chroma(int x){
731 static const uint8_t h263_chroma_roundtab[16] = {
732 // 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15
733 0, 0, 0, 1, 1, 1, 1, 1, 0, 0, 0, 0, 0, 0, 1, 1,
735 return h263_chroma_roundtab[x & 0xf] + (x >> 3);
738 /* motion_est.c */
739 void ff_estimate_p_frame_motion(MpegEncContext * s,
740 int mb_x, int mb_y);
741 void ff_estimate_b_frame_motion(MpegEncContext * s,
742 int mb_x, int mb_y);
743 int ff_get_best_fcode(MpegEncContext * s, int16_t (*mv_table)[2], int type);
744 void ff_fix_long_p_mvs(MpegEncContext * s);
745 void ff_fix_long_mvs(MpegEncContext * s, uint8_t *field_select_table, int field_select,
746 int16_t (*mv_table)[2], int f_code, int type, int truncate);
747 int ff_init_me(MpegEncContext *s);
748 int ff_pre_estimate_p_frame_motion(MpegEncContext * s, int mb_x, int mb_y);
749 int ff_epzs_motion_search(MpegEncContext * s, int *mx_ptr, int *my_ptr,
750 int P[10][2], int src_index, int ref_index, int16_t (*last_mv)[2],
751 int ref_mv_scale, int size, int h);
752 int ff_get_mb_score(MpegEncContext * s, int mx, int my, int src_index,
753 int ref_index, int size, int h, int add_rate);
755 /* mpeg12.c */
756 extern const uint8_t ff_mpeg1_dc_scale_table[128];
758 void mpeg1_encode_picture_header(MpegEncContext *s, int picture_number);
759 void mpeg1_encode_mb(MpegEncContext *s,
760 DCTELEM block[6][64],
761 int motion_x, int motion_y);
762 void ff_mpeg1_encode_init(MpegEncContext *s);
763 void ff_mpeg1_encode_slice_header(MpegEncContext *s);
764 void ff_mpeg1_clean_buffers(MpegEncContext *s);
765 int ff_mpeg1_find_frame_end(ParseContext *pc, const uint8_t *buf, int buf_size);
767 extern const uint8_t ff_mpeg4_y_dc_scale_table[32];
768 extern const uint8_t ff_mpeg4_c_dc_scale_table[32];
769 extern const uint8_t ff_aic_dc_scale_table[32];
770 extern const int16_t ff_mpeg4_default_intra_matrix[64];
771 extern const int16_t ff_mpeg4_default_non_intra_matrix[64];
772 extern const uint8_t ff_h263_chroma_qscale_table[32];
773 extern const uint8_t ff_h263_loop_filter_strength[32];
775 /* h261.c */
776 void ff_h261_loop_filter(MpegEncContext *s);
777 void ff_h261_reorder_mb_index(MpegEncContext* s);
778 void ff_h261_encode_mb(MpegEncContext *s,
779 DCTELEM block[6][64],
780 int motion_x, int motion_y);
781 void ff_h261_encode_picture_header(MpegEncContext * s, int picture_number);
782 void ff_h261_encode_init(MpegEncContext *s);
783 int ff_h261_get_picture_format(int width, int height);
786 /* h263.c, h263dec.c */
787 int ff_h263_decode_init(AVCodecContext *avctx);
788 int ff_h263_decode_frame(AVCodecContext *avctx,
789 void *data, int *data_size,
790 const uint8_t *buf, int buf_size);
791 int ff_h263_decode_end(AVCodecContext *avctx);
792 void h263_encode_mb(MpegEncContext *s,
793 DCTELEM block[6][64],
794 int motion_x, int motion_y);
795 void mpeg4_encode_mb(MpegEncContext *s,
796 DCTELEM block[6][64],
797 int motion_x, int motion_y);
798 void h263_encode_picture_header(MpegEncContext *s, int picture_number);
799 void ff_flv_encode_picture_header(MpegEncContext *s, int picture_number);
800 void h263_encode_gob_header(MpegEncContext * s, int mb_line);
801 int16_t *h263_pred_motion(MpegEncContext * s, int block, int dir,
802 int *px, int *py);
803 void mpeg4_pred_ac(MpegEncContext * s, DCTELEM *block, int n,
804 int dir);
805 void ff_set_mpeg4_time(MpegEncContext * s);
806 void mpeg4_encode_picture_header(MpegEncContext *s, int picture_number);
807 void h263_encode_init(MpegEncContext *s);
808 void h263_decode_init_vlc(MpegEncContext *s);
809 int h263_decode_picture_header(MpegEncContext *s);
810 int ff_h263_decode_gob_header(MpegEncContext *s);
811 int ff_mpeg4_decode_picture_header(MpegEncContext * s, GetBitContext *gb);
812 void ff_h263_update_motion_val(MpegEncContext * s);
813 void ff_h263_loop_filter(MpegEncContext * s);
814 void ff_set_qscale(MpegEncContext * s, int qscale);
815 int ff_h263_decode_mba(MpegEncContext *s);
816 void ff_h263_encode_mba(MpegEncContext *s);
818 int intel_h263_decode_picture_header(MpegEncContext *s);
819 int flv_h263_decode_picture_header(MpegEncContext *s);
820 int ff_h263_decode_mb(MpegEncContext *s,
821 DCTELEM block[6][64]);
822 int ff_mpeg4_decode_mb(MpegEncContext *s,
823 DCTELEM block[6][64]);
824 int h263_get_picture_format(int width, int height);
825 void ff_mpeg4_encode_video_packet_header(MpegEncContext *s);
826 void ff_mpeg4_clean_buffers(MpegEncContext *s);
827 void ff_mpeg4_stuffing(PutBitContext * pbc);
828 void ff_mpeg4_init_partitions(MpegEncContext *s);
829 void ff_mpeg4_merge_partitions(MpegEncContext *s);
830 void ff_clean_mpeg4_qscales(MpegEncContext *s);
831 void ff_clean_h263_qscales(MpegEncContext *s);
832 int ff_mpeg4_decode_partitions(MpegEncContext *s);
833 int ff_mpeg4_get_video_packet_prefix_length(MpegEncContext *s);
834 int ff_h263_resync(MpegEncContext *s);
835 int ff_h263_get_gob_height(MpegEncContext *s);
836 void ff_mpeg4_init_direct_mv(MpegEncContext *s);
837 int ff_mpeg4_set_direct_mv(MpegEncContext *s, int mx, int my);
838 void ff_h263_encode_motion(MpegEncContext * s, int val, int f_code);
841 /* rv10.c */
842 void rv10_encode_picture_header(MpegEncContext *s, int picture_number);
843 int rv_decode_dc(MpegEncContext *s, int n);
844 void rv20_encode_picture_header(MpegEncContext *s, int picture_number);
847 /* msmpeg4.c */
848 void msmpeg4_encode_picture_header(MpegEncContext * s, int picture_number);
849 void msmpeg4_encode_ext_header(MpegEncContext * s);
850 void msmpeg4_encode_mb(MpegEncContext * s,
851 DCTELEM block[6][64],
852 int motion_x, int motion_y);
853 int msmpeg4_decode_picture_header(MpegEncContext * s);
854 int msmpeg4_decode_ext_header(MpegEncContext * s, int buf_size);
855 int ff_msmpeg4_decode_init(MpegEncContext *s);
856 void ff_msmpeg4_encode_init(MpegEncContext *s);
857 int ff_wmv2_decode_picture_header(MpegEncContext * s);
858 int ff_wmv2_decode_secondary_picture_header(MpegEncContext * s);
859 void ff_wmv2_add_mb(MpegEncContext *s, DCTELEM block[6][64], uint8_t *dest_y, uint8_t *dest_cb, uint8_t *dest_cr);
860 void ff_mspel_motion(MpegEncContext *s,
861 uint8_t *dest_y, uint8_t *dest_cb, uint8_t *dest_cr,
862 uint8_t **ref_picture, op_pixels_func (*pix_op)[4],
863 int motion_x, int motion_y, int h);
864 int ff_wmv2_encode_picture_header(MpegEncContext * s, int picture_number);
865 void ff_wmv2_encode_mb(MpegEncContext * s,
866 DCTELEM block[6][64],
867 int motion_x, int motion_y);
869 #endif /* AVCODEC_MPEGVIDEO_H */