AOMedia AV1 Codec
firstpass.h
1/*
2 * Copyright (c) 2016, Alliance for Open Media. All rights reserved
3 *
4 * This source code is subject to the terms of the BSD 2 Clause License and
5 * the Alliance for Open Media Patent License 1.0. If the BSD 2 Clause License
6 * was not distributed with this source code in the LICENSE file, you can
7 * obtain it at www.aomedia.org/license/software. If the Alliance for Open
8 * Media Patent License 1.0 was not distributed with this source code in the
9 * PATENTS file, you can obtain it at www.aomedia.org/license/patent.
10 */
11
12#ifndef AOM_AV1_ENCODER_FIRSTPASS_H_
13#define AOM_AV1_ENCODER_FIRSTPASS_H_
14
15#include <stdbool.h>
16
17#include "av1/common/av1_common_int.h"
18#include "av1/common/enums.h"
20#include "av1/encoder/ratectrl.h"
21
22#ifdef __cplusplus
23extern "C" {
24#endif
25
26#define DOUBLE_DIVIDE_CHECK(x) ((x) < 0 ? (x)-0.000001 : (x) + 0.000001)
27
28#define MIN_ZERO_MOTION 0.95
29#define MAX_SR_CODED_ERROR 40
30#define MAX_RAW_ERR_VAR 2000
31#define MIN_MV_IN_OUT 0.4
32
33#define VLOW_MOTION_THRESHOLD 950
34struct ThreadData;
35
43typedef struct FIRSTPASS_STATS {
48 double frame;
54 double weight;
74 double pcnt_inter;
110 double MVr;
114 double mvr_abs;
118 double MVc;
122 double mvc_abs;
126 double MVrv;
130 double MVcv;
144 double duration;
149 double count;
157 int64_t is_flash;
161 double noise_var;
165 double cor_coeff;
167
168// We want to keep one past stats for key frame detection
169// in test_candidate_kf()
170#define FIRSTPASS_INFO_STATS_PAST_MIN 1
171
172// The size of static buffer used in FIRSTPASS_INFO.
173#define FIRSTPASS_INFO_STATIC_BUF_SIZE \
174 (MAX_LAP_BUFFERS + FIRSTPASS_INFO_STATS_PAST_MIN)
175
179typedef struct {
189 FIRSTPASS_STATS static_stats_buf[FIRSTPASS_INFO_STATIC_BUF_SIZE];
207
214
219
224
229
235
249 FIRSTPASS_STATS *ext_stats_buf,
250 int ext_stats_buf_size);
251
259 FIRSTPASS_INFO *firstpass_info);
260
268
276 FIRSTPASS_INFO *firstpass_info);
277
287 const FIRSTPASS_STATS *input_stats);
288
301 const FIRSTPASS_INFO *firstpass_info, int offset_from_cur);
302
316 int offset_from_cur);
317
331 int offset_from_cur);
332
334#define FC_ANIMATION_THRESH 0.15
335enum {
336 FC_NORMAL = 0,
337 FC_GRAPHICS_ANIMATION = 1,
338 FRAME_CONTENT_TYPES = 2
339} UENUM1BYTE(FRAME_CONTENT_TYPE);
346typedef struct GF_GROUP {
348 // Frame update type, e.g. ARF/GF/LF/Overlay
349 FRAME_UPDATE_TYPE update_type[MAX_STATIC_GF_GROUP_LENGTH];
350 unsigned char arf_src_offset[MAX_STATIC_GF_GROUP_LENGTH];
351 // The number of frames displayed so far within the GOP at a given coding
352 // frame.
353 unsigned char cur_frame_idx[MAX_STATIC_GF_GROUP_LENGTH];
354 int layer_depth[MAX_STATIC_GF_GROUP_LENGTH];
355 int arf_boost[MAX_STATIC_GF_GROUP_LENGTH];
356 int max_layer_depth;
357 int max_layer_depth_allowed;
358 // This is currently only populated for AOM_Q mode
359 int q_val[MAX_STATIC_GF_GROUP_LENGTH];
360 int rdmult_val[MAX_STATIC_GF_GROUP_LENGTH];
361 int bit_allocation[MAX_STATIC_GF_GROUP_LENGTH];
362 // The frame coding type - inter/intra frame
363 FRAME_TYPE frame_type[MAX_STATIC_GF_GROUP_LENGTH];
364 // The reference frame buffer control - update or reset
365 REFBUF_STATE refbuf_state[MAX_STATIC_GF_GROUP_LENGTH];
366 int arf_index; // the index in the gf group of ARF, if no arf, then -1
367 int size; // The total length of a GOP
368
369 // The offset into lookahead_ctx for choosing
370 // source of frame parallel encodes.
371 int src_offset[MAX_STATIC_GF_GROUP_LENGTH];
372 // Stores the display order hint of each frame in the current GF_GROUP.
373 int display_idx[MAX_STATIC_GF_GROUP_LENGTH];
374
375 // The reference frame list maps the reference frame indexes to its
376 // buffer index in the decoded buffer. A value of -1 means the
377 // corresponding reference frame index doesn't point towards any
378 // previously decoded frame.
379 int8_t ref_frame_list[MAX_STATIC_GF_GROUP_LENGTH][REF_FRAMES];
380 // Update frame index
381 int update_ref_idx[MAX_STATIC_GF_GROUP_LENGTH];
382 // The map_idx of primary reference
383 int primary_ref_idx[MAX_STATIC_GF_GROUP_LENGTH];
384
385 // Indicates the level of parallelism in frame parallel encodes.
386 // 0 : frame is independently encoded (not part of parallel encodes).
387 // 1 : frame is the first in encode order in a given parallel encode set.
388 // 2 : frame occurs later in encode order in a given parallel encode set.
389 int frame_parallel_level[MAX_STATIC_GF_GROUP_LENGTH];
390 // Indicates whether a frame should act as non-reference frame.
391 // 0 : frame is a reference frame.
392 // 1 : frame is a non-reference frame.
393 int is_frame_non_ref[MAX_STATIC_GF_GROUP_LENGTH];
394 // Indicates whether a frame is dropped.
395 bool is_frame_dropped[MAX_STATIC_GF_GROUP_LENGTH];
396
397 // Stores the display order hint of the frames not to be
398 // refreshed by the current frame.
399 int skip_frame_refresh[MAX_STATIC_GF_GROUP_LENGTH][REF_FRAMES];
400 // Stores the display order hint of the frame to be excluded during reference
401 // assignment.
402 int skip_frame_as_ref[MAX_STATIC_GF_GROUP_LENGTH];
404} GF_GROUP;
407typedef struct {
408 // Track if the last frame in a GOP has higher quality.
409 int arf_gf_boost_lst;
410} GF_STATE;
411
412typedef struct {
413 FIRSTPASS_STATS *stats_in_start;
414 FIRSTPASS_STATS *stats_in_end;
415 FIRSTPASS_STATS *stats_in_buf_end;
416 FIRSTPASS_STATS *total_stats;
417 FIRSTPASS_STATS *total_left_stats;
418} STATS_BUFFER_CTX;
419
425typedef struct {
427 unsigned int section_intra_rating;
428 // Circular queue of first pass stats stored for most recent frames.
429 // cpi->output_pkt_list[i].data.twopass_stats.buf points to actual data stored
430 // here.
431 FIRSTPASS_STATS *frame_stats_arr[MAX_LAP_BUFFERS + 1];
432 int frame_stats_next_idx; // Index to next unused element in frame_stats_arr.
433 STATS_BUFFER_CTX *stats_buf_ctx;
434 FIRSTPASS_INFO firstpass_info; // This is the first pass data structure
435 // intended to replace stats_in
436 int first_pass_done;
437 int64_t bits_left;
438 double modified_error_min;
439 double modified_error_max;
440 double modified_error_left;
441
442 // Projected total bits available for a key frame group of frames
443 int64_t kf_group_bits;
444
445 // Error score of frames still to be coded in kf group
446 double kf_group_error_left;
447
448 // Over time correction for bits per macro block estimation
449 double bpm_factor;
450
451 // Record of target and actual bits spent in current ARF group
452 int rolling_arf_group_target_bits;
453 int rolling_arf_group_actual_bits;
454
455 int sr_update_lag;
456
457 int kf_zeromotion_pct;
458 int last_kfgroup_zeromotion_pct;
459 int extend_minq;
460 int extend_maxq;
461 int extend_minq_fast;
463} TWO_PASS;
464
468typedef struct {
470 const FIRSTPASS_STATS *stats_in;
471 // Pointer to the stats of the current frame.
472 const FIRSTPASS_STATS *this_frame;
473 double mb_av_energy;
474 // An indication of the content type of the current frame
475 FRAME_CONTENT_TYPE fr_content_type;
476 double frame_avg_haar_energy;
479
482// This structure contains several key parameters to be accumulated for this
483// frame.
484typedef struct {
485 // Intra prediction error.
486 int64_t intra_error;
487 // Average wavelet energy computed using Discrete Wavelet Transform (DWT).
488 int64_t frame_avg_wavelet_energy;
489 // Best of intra pred error and inter pred error using last frame as ref.
490 int64_t coded_error;
491 // Best of intra pred error and inter pred error using golden frame as ref.
492 int64_t sr_coded_error;
493 // Count of motion vector.
494 int mv_count;
495 // Count of blocks that pick inter prediction (inter pred error is smaller
496 // than intra pred error).
497 int inter_count;
498 // Count of blocks that pick second ref (golden frame).
499 int second_ref_count;
500 // Count of blocks where the inter and intra are very close and very low.
501 double neutral_count;
502 // Count of blocks where intra error is very small.
503 int intra_skip_count;
504 // Start row.
505 int image_data_start_row;
506 // Count of unique non-zero motion vectors.
507 int new_mv_count;
508 // Sum of inward motion vectors.
509 int sum_in_vectors;
510 // Sum of motion vector row.
511 int sum_mvr;
512 // Sum of motion vector column.
513 int sum_mvc;
514 // Sum of absolute value of motion vector row.
515 int sum_mvr_abs;
516 // Sum of absolute value of motion vector column.
517 int sum_mvc_abs;
518 // Sum of the square of motion vector row.
519 int64_t sum_mvrs;
520 // Sum of the square of motion vector column.
521 int64_t sum_mvcs;
522 // A factor calculated using intra pred error.
523 double intra_factor;
524 // A factor that measures brightness.
525 double brightness_factor;
526} FRAME_STATS;
527
528// This structure contains first pass data.
529typedef struct {
530 // Buffer holding frame stats for all MACROBLOCKs.
531 // mb_stats[i] stores the FRAME_STATS of the ith
532 // MB in raster scan order.
533 FRAME_STATS *mb_stats;
534 // Buffer to store the prediction error of the (0,0) motion
535 // vector using the last source frame as the reference.
536 // raw_motion_err_list[i] stores the raw_motion_err of
537 // the ith MB in raster scan order.
538 int *raw_motion_err_list;
539} FirstPassData;
540
541struct AV1_COMP;
542struct EncodeFrameParams;
543struct AV1EncoderConfig;
544struct TileDataEnc;
545
546static INLINE int is_fp_wavelet_energy_invalid(
547 const FIRSTPASS_STATS *fp_stats) {
548 assert(fp_stats != NULL);
549 return (fp_stats->frame_avg_wavelet_energy < 0);
550}
551
552static INLINE BLOCK_SIZE get_fp_block_size(int is_screen_content_type) {
553 return (is_screen_content_type ? BLOCK_8X8 : BLOCK_16X16);
554}
555
556int av1_get_unit_rows_in_tile(const TileInfo *tile,
557 const BLOCK_SIZE fp_block_size);
558int av1_get_unit_cols_in_tile(const TileInfo *tile,
559 const BLOCK_SIZE fp_block_size);
560
561void av1_first_pass_row(struct AV1_COMP *cpi, struct ThreadData *td,
562 struct TileDataEnc *tile_data, const int mb_row,
563 const BLOCK_SIZE fp_block_size);
564void av1_end_first_pass(struct AV1_COMP *cpi);
565
566void av1_twopass_zero_stats(FIRSTPASS_STATS *section);
567void av1_accumulate_stats(FIRSTPASS_STATS *section,
568 const FIRSTPASS_STATS *frame);
589void av1_first_pass(struct AV1_COMP *cpi, const int64_t ts_duration);
590
591void av1_noop_first_pass_frame(struct AV1_COMP *cpi, const int64_t ts_duration);
592#ifdef __cplusplus
593} // extern "C"
594#endif
595
596#endif // AOM_AV1_ENCODER_FIRSTPASS_H_
aom_codec_err_t
Algorithm return codes.
Definition: aom_codec.h:155
aom_codec_err_t av1_firstpass_info_push(FIRSTPASS_INFO *firstpass_info, const FIRSTPASS_STATS *input_stats)
Push a stats into firstpass_info.
const FIRSTPASS_STATS * av1_firstpass_info_peek(const FIRSTPASS_INFO *firstpass_info, int offset_from_cur)
Peek at a stats from firstpass_info.
aom_codec_err_t av1_firstpass_info_move_cur_index(FIRSTPASS_INFO *firstpass_info)
Move cur_index by 1.
void av1_first_pass(struct AV1_COMP *cpi, const int64_t ts_duration)
AV1 first pass encoding.
aom_codec_err_t av1_firstpass_info_pop(FIRSTPASS_INFO *firstpass_info)
Pop a stats from firstpass_info.
aom_codec_err_t av1_firstpass_info_init(FIRSTPASS_INFO *firstpass_info, FIRSTPASS_STATS *ext_stats_buf, int ext_stats_buf_size)
Init firstpass_info.
int av1_firstpass_info_past_count(const FIRSTPASS_INFO *firstpass_info, int offset_from_cur)
Count the past stats before the target in firstpass_info Note that the target stats will NOT be count...
aom_codec_err_t av1_firstpass_info_move_cur_index_and_pop(FIRSTPASS_INFO *firstpass_info)
Move cur_index by 1 and pop a stats from firstpass_info.
int av1_firstpass_info_future_count(const FIRSTPASS_INFO *firstpass_info, int offset_from_cur)
Count the future stats from the target in firstpass_info Note that the target stats will be counted a...
Describes look ahead buffer operations.
Main encoder configuration data structure.
Definition: encoder.h:915
Top level encoder structure.
Definition: encoder.h:2759
contains per-frame encoding parameters decided upon by av1_encode_strategy() and passed down to av1_e...
Definition: encoder.h:3482
Data structure used for managing first pass stats.
Definition: firstpass.h:179
int cur_index
Definition: firstpass.h:218
int past_stats_count
Definition: firstpass.h:228
int future_stats_count
Definition: firstpass.h:223
int stats_buf_size
Definition: firstpass.h:198
FIRSTPASS_STATS total_stats
Definition: firstpass.h:233
int start_index
Definition: firstpass.h:206
int stats_count
Definition: firstpass.h:213
FIRSTPASS_STATS * stats_buf
Definition: firstpass.h:194
The stucture of acummulated frame stats in the first pass.
Definition: firstpass.h:43
double pcnt_neutral
Definition: firstpass.h:90
double MVr
Definition: firstpass.h:110
double MVc
Definition: firstpass.h:118
double pcnt_second_ref
Definition: firstpass.h:84
double mvr_abs
Definition: firstpass.h:114
double pcnt_inter
Definition: firstpass.h:74
double intra_error
Definition: firstpass.h:58
double new_mv_count
Definition: firstpass.h:140
double count
Definition: firstpass.h:149
double coded_error
Definition: firstpass.h:66
double raw_error_stdev
Definition: firstpass.h:153
double pcnt_motion
Definition: firstpass.h:78
double frame
Definition: firstpass.h:48
double cor_coeff
Definition: firstpass.h:165
double mv_in_out_count
Definition: firstpass.h:136
double noise_var
Definition: firstpass.h:161
double MVcv
Definition: firstpass.h:130
int64_t is_flash
Definition: firstpass.h:157
double inactive_zone_cols
Definition: firstpass.h:106
double frame_avg_wavelet_energy
Definition: firstpass.h:62
double duration
Definition: firstpass.h:144
double sr_coded_error
Definition: firstpass.h:70
double mvc_abs
Definition: firstpass.h:122
double intra_skip_pct
Definition: firstpass.h:98
double MVrv
Definition: firstpass.h:126
double inactive_zone_rows
Definition: firstpass.h:102
double weight
Definition: firstpass.h:54
Data related to the current GF/ARF group and the individual frames within the group.
Definition: firstpass.h:346
Frame level Two pass status and control data.
Definition: firstpass.h:468
Two pass status and control data.
Definition: firstpass.h:425