AOMedia AV1 Codec
encoder.h
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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 
15 #ifndef AOM_AV1_ENCODER_ENCODER_H_
16 #define AOM_AV1_ENCODER_ENCODER_H_
17 
18 #include <stdbool.h>
19 #include <stdio.h>
20 
21 #include "config/aom_config.h"
22 
23 #include "aom/aomcx.h"
24 #include "aom_util/aom_pthread.h"
25 
26 #include "av1/common/alloccommon.h"
27 #include "av1/common/av1_common_int.h"
28 #include "av1/common/blockd.h"
29 #include "av1/common/entropymode.h"
30 #include "av1/common/enums.h"
31 #include "av1/common/reconintra.h"
32 #include "av1/common/resize.h"
33 #include "av1/common/thread_common.h"
34 #include "av1/common/timing.h"
35 
36 #include "av1/encoder/aq_cyclicrefresh.h"
37 #include "av1/encoder/av1_quantize.h"
38 #include "av1/encoder/block.h"
39 #include "av1/encoder/context_tree.h"
40 #include "av1/encoder/enc_enums.h"
41 #include "av1/encoder/encodemb.h"
42 #include "av1/encoder/external_partition.h"
43 #include "av1/encoder/firstpass.h"
44 #include "av1/encoder/global_motion.h"
45 #include "av1/encoder/level.h"
46 #include "av1/encoder/lookahead.h"
47 #include "av1/encoder/mcomp.h"
48 #include "av1/encoder/pickcdef.h"
49 #include "av1/encoder/ratectrl.h"
50 #include "av1/encoder/rd.h"
52 #include "av1/encoder/svc_layercontext.h"
53 #include "av1/encoder/temporal_filter.h"
54 #if CONFIG_THREE_PASS
55 #include "av1/encoder/thirdpass.h"
56 #endif
57 #include "av1/encoder/tokenize.h"
58 #include "av1/encoder/tpl_model.h"
59 #include "av1/encoder/av1_noise_estimate.h"
60 #include "av1/encoder/bitstream.h"
61 
62 #if CONFIG_INTERNAL_STATS
63 #include "aom_dsp/ssim.h"
64 #endif
65 #include "aom_dsp/variance.h"
66 #if CONFIG_DENOISE
67 #include "aom_dsp/noise_model.h"
68 #endif
69 #if CONFIG_TUNE_VMAF
70 #include "av1/encoder/tune_vmaf.h"
71 #endif
72 #if CONFIG_AV1_TEMPORAL_DENOISING
73 #include "av1/encoder/av1_temporal_denoiser.h"
74 #endif
75 #if CONFIG_TUNE_BUTTERAUGLI
76 #include "av1/encoder/tune_butteraugli.h"
77 #endif
78 
79 #include "aom/internal/aom_codec_internal.h"
80 
81 #ifdef __cplusplus
82 extern "C" {
83 #endif
84 
85 // TODO(yunqing, any): Added suppression tag to quiet Doxygen warnings. Need to
86 // adjust it while we work on documentation.
88 // Number of frames required to test for scene cut detection
89 #define SCENE_CUT_KEY_TEST_INTERVAL 16
90 
91 // Lookahead index threshold to enable temporal filtering for second arf.
92 #define TF_LOOKAHEAD_IDX_THR 7
93 
94 #define HDR_QP_LEVELS 10
95 #define CHROMA_CB_QP_SCALE 1.04
96 #define CHROMA_CR_QP_SCALE 1.04
97 #define CHROMA_QP_SCALE -0.46
98 #define CHROMA_QP_OFFSET 9.26
99 #define QP_SCALE_FACTOR 2.0
100 #define DISABLE_HDR_LUMA_DELTAQ 1
101 
102 // Rational number with an int64 numerator
103 // This structure holds a fractional value
104 typedef struct aom_rational64 {
105  int64_t num; // fraction numerator
106  int den; // fraction denominator
107 } aom_rational64_t; // alias for struct aom_rational
108 
109 enum {
110  // Good Quality Fast Encoding. The encoder balances quality with the amount of
111  // time it takes to encode the output. Speed setting controls how fast.
112  GOOD,
113  // Realtime Fast Encoding. Will force some restrictions on bitrate
114  // constraints.
115  REALTIME,
116  // All intra mode. All the frames are coded as intra frames.
117  ALLINTRA
118 } UENUM1BYTE(MODE);
119 
120 enum {
121  FRAMEFLAGS_KEY = 1 << 0,
122  FRAMEFLAGS_GOLDEN = 1 << 1,
123  FRAMEFLAGS_BWDREF = 1 << 2,
124  // TODO(zoeliu): To determine whether a frame flag is needed for ALTREF2_FRAME
125  FRAMEFLAGS_ALTREF = 1 << 3,
126  FRAMEFLAGS_INTRAONLY = 1 << 4,
127  FRAMEFLAGS_SWITCH = 1 << 5,
128  FRAMEFLAGS_ERROR_RESILIENT = 1 << 6,
129 } UENUM1BYTE(FRAMETYPE_FLAGS);
130 
131 #if CONFIG_FPMT_TEST
132 enum {
133  PARALLEL_ENCODE = 0,
134  PARALLEL_SIMULATION_ENCODE,
135  NUM_FPMT_TEST_ENCODES
136 } UENUM1BYTE(FPMT_TEST_ENC_CFG);
137 #endif // CONFIG_FPMT_TEST
138 // 0 level frames are sometimes used for rate control purposes, but for
139 // reference mapping purposes, the minimum level should be 1.
140 #define MIN_PYR_LEVEL 1
141 static inline int get_true_pyr_level(int frame_level, int frame_order,
142  int max_layer_depth) {
143  if (frame_order == 0) {
144  // Keyframe case
145  return MIN_PYR_LEVEL;
146  } else if (frame_level == MAX_ARF_LAYERS) {
147  // Leaves
148  return max_layer_depth;
149  } else if (frame_level == (MAX_ARF_LAYERS + 1)) {
150  // Altrefs
151  return MIN_PYR_LEVEL;
152  }
153  return AOMMAX(MIN_PYR_LEVEL, frame_level);
154 }
155 
156 enum {
157  NO_AQ = 0,
158  VARIANCE_AQ = 1,
159  COMPLEXITY_AQ = 2,
160  CYCLIC_REFRESH_AQ = 3,
161  AQ_MODE_COUNT // This should always be the last member of the enum
162 } UENUM1BYTE(AQ_MODE);
163 enum {
164  NO_DELTA_Q = 0,
165  DELTA_Q_OBJECTIVE = 1, // Modulation to improve objective quality
166  DELTA_Q_PERCEPTUAL = 2, // Modulation to improve video perceptual quality
167  DELTA_Q_PERCEPTUAL_AI = 3, // Perceptual quality opt for all intra mode
168  DELTA_Q_USER_RATING_BASED = 4, // User rating based delta q mode
169  DELTA_Q_HDR = 5, // QP adjustment based on HDR block pixel average
170  DELTA_Q_MODE_COUNT // This should always be the last member of the enum
171 } UENUM1BYTE(DELTAQ_MODE);
172 
173 enum {
174  RESIZE_NONE = 0, // No frame resizing allowed.
175  RESIZE_FIXED = 1, // All frames are coded at the specified scale.
176  RESIZE_RANDOM = 2, // All frames are coded at a random scale.
177  RESIZE_DYNAMIC = 3, // Frames coded at lower scale based on rate control.
178  RESIZE_MODES
179 } UENUM1BYTE(RESIZE_MODE);
180 
181 enum {
182  SS_CFG_SRC = 0,
183  SS_CFG_LOOKAHEAD = 1,
184  SS_CFG_FPF = 2,
185  SS_CFG_TOTAL = 3
186 } UENUM1BYTE(SS_CFG_OFFSET);
187 
188 enum {
189  DISABLE_SCENECUT, // For LAP, lag_in_frames < 19
190  ENABLE_SCENECUT_MODE_1, // For LAP, lag_in_frames >=19 and < 33
191  ENABLE_SCENECUT_MODE_2 // For twopass and LAP - lag_in_frames >=33
192 } UENUM1BYTE(SCENECUT_MODE);
193 
194 #define MAX_VBR_CORPUS_COMPLEXITY 10000
195 
196 typedef enum {
197  MOD_FP, // First pass
198  MOD_TF, // Temporal filtering
199  MOD_TPL, // TPL
200  MOD_GME, // Global motion estimation
201  MOD_ENC, // Encode stage
202  MOD_LPF, // Deblocking loop filter
203  MOD_CDEF_SEARCH, // CDEF search
204  MOD_CDEF, // CDEF frame
205  MOD_LR, // Loop restoration filtering
206  MOD_PACK_BS, // Pack bitstream
207  MOD_FRAME_ENC, // Frame Parallel encode
208  MOD_AI, // All intra
209  NUM_MT_MODULES
210 } MULTI_THREADED_MODULES;
211 
220 typedef enum {
227 
231 typedef enum {
236  3,
238 
243 typedef enum {
244  SKIP_APPLY_RESTORATION = 1 << 0,
245  SKIP_APPLY_SUPERRES = 1 << 1,
246  SKIP_APPLY_CDEF = 1 << 2,
247  SKIP_APPLY_LOOPFILTER = 1 << 3,
249 
253 typedef struct {
257  RESIZE_MODE resize_mode;
268 } ResizeCfg;
269 
273 typedef struct {
290  BLOCK_SIZE min_partition_size;
295  BLOCK_SIZE max_partition_size;
296 } PartitionCfg;
297 
301 typedef struct {
351 } IntraModeCfg;
352 
356 typedef struct {
394 
398 typedef struct {
425 
429 typedef struct {
460 } SuperResCfg;
461 
465 typedef struct {
470 
475 
480 
486 
493 
497  bool auto_key;
498 
503 
508 
513 
518 } KeyFrameCfg;
519 
523 typedef struct {
525  // BUFFERING PARAMETERS
543 
548 
558  unsigned int max_intra_bitrate_pct;
563  unsigned int max_inter_bitrate_pct;
567  unsigned int gf_cbr_boost_pct;
572  unsigned int min_cr;
602  int cq_level;
607  enum aom_rc_mode mode;
614  int vbrbias;
625 
633 
635 typedef struct {
636  // Indicates the number of frames lag before encoding is started.
637  int lag_in_frames;
638  // Indicates the minimum gf/arf interval to be used.
639  int min_gf_interval;
640  // Indicates the maximum gf/arf interval to be used.
641  int max_gf_interval;
642  // Indicates the minimum height for GF group pyramid structure to be used.
643  int gf_min_pyr_height;
644  // Indicates the maximum height for GF group pyramid structure to be used.
645  int gf_max_pyr_height;
646  // Indicates if automatic set and use of altref frames should be enabled.
647  bool enable_auto_arf;
648  // Indicates if automatic set and use of (b)ackward (r)ef (f)rames should be
649  // enabled.
650  bool enable_auto_brf;
651 } GFConfig;
652 
653 typedef struct {
654  // Indicates the number of tile groups.
655  unsigned int num_tile_groups;
656  // Indicates the MTU size for a tile group. If mtu is non-zero,
657  // num_tile_groups is set to DEFAULT_MAX_NUM_TG.
658  unsigned int mtu;
659  // Indicates the number of tile columns in log2.
660  int tile_columns;
661  // Indicates the number of tile rows in log2.
662  int tile_rows;
663  // Indicates the number of widths in the tile_widths[] array.
664  int tile_width_count;
665  // Indicates the number of heights in the tile_heights[] array.
666  int tile_height_count;
667  // Indicates the tile widths, and may be empty.
668  int tile_widths[MAX_TILE_COLS];
669  // Indicates the tile heights, and may be empty.
670  int tile_heights[MAX_TILE_ROWS];
671  // Indicates if large scale tile coding should be used.
672  bool enable_large_scale_tile;
673  // Indicates if single tile decoding mode should be enabled.
674  bool enable_single_tile_decoding;
675  // Indicates if EXT_TILE_DEBUG should be enabled.
676  bool enable_ext_tile_debug;
677 } TileConfig;
678 
679 typedef struct {
680  // Indicates the width of the input frame.
681  int width;
682  // Indicates the height of the input frame.
683  int height;
684  // If forced_max_frame_width is non-zero then it is used to force the maximum
685  // frame width written in write_sequence_header().
686  int forced_max_frame_width;
687  // If forced_max_frame_width is non-zero then it is used to force the maximum
688  // frame height written in write_sequence_header().
689  int forced_max_frame_height;
690  // Indicates the frame width after applying both super-resolution and resize
691  // to the coded frame.
692  int render_width;
693  // Indicates the frame height after applying both super-resolution and resize
694  // to the coded frame.
695  int render_height;
696 } FrameDimensionCfg;
697 
698 typedef struct {
699  // Indicates if warped motion should be enabled.
700  bool enable_warped_motion;
701  // Indicates if warped motion should be evaluated or not.
702  bool allow_warped_motion;
703  // Indicates if OBMC motion should be enabled.
704  bool enable_obmc;
705 } MotionModeCfg;
706 
707 typedef struct {
708  // Timing info for each frame.
709  aom_timing_info_t timing_info;
710  // Indicates the number of time units of a decoding clock.
711  uint32_t num_units_in_decoding_tick;
712  // Indicates if decoder model information is present in the coded sequence
713  // header.
714  bool decoder_model_info_present_flag;
715  // Indicates if display model information is present in the coded sequence
716  // header.
717  bool display_model_info_present_flag;
718  // Indicates if timing info for each frame is present.
719  bool timing_info_present;
720 } DecoderModelCfg;
721 
722 typedef struct {
723  // Indicates the update frequency for coeff costs.
724  COST_UPDATE_TYPE coeff;
725  // Indicates the update frequency for mode costs.
726  COST_UPDATE_TYPE mode;
727  // Indicates the update frequency for mv costs.
728  COST_UPDATE_TYPE mv;
729  // Indicates the update frequency for dv costs.
730  COST_UPDATE_TYPE dv;
731 } CostUpdateFreq;
732 
733 typedef struct {
734  // Indicates the maximum number of reference frames allowed per frame.
735  unsigned int max_reference_frames;
736  // Indicates if the reduced set of references should be enabled.
737  bool enable_reduced_reference_set;
738  // Indicates if one-sided compound should be enabled.
739  bool enable_onesided_comp;
740 } RefFrameCfg;
741 
742 typedef struct {
743  // Indicates the color space that should be used.
744  aom_color_primaries_t color_primaries;
745  // Indicates the characteristics of transfer function to be used.
746  aom_transfer_characteristics_t transfer_characteristics;
747  // Indicates the matrix coefficients to be used for the transfer function.
748  aom_matrix_coefficients_t matrix_coefficients;
749  // Indicates the chroma 4:2:0 sample position info.
750  aom_chroma_sample_position_t chroma_sample_position;
751  // Indicates if a limited color range or full color range should be used.
752  aom_color_range_t color_range;
753 } ColorCfg;
754 
755 typedef struct {
756  // Indicates if extreme motion vector unit test should be enabled or not.
757  unsigned int motion_vector_unit_test;
758  // Indicates if superblock multipass unit test should be enabled or not.
759  unsigned int sb_multipass_unit_test;
760 } UnitTestCfg;
761 
762 typedef struct {
763  // Indicates the file path to the VMAF model.
764  const char *vmaf_model_path;
765  // Indicates the path to the film grain parameters.
766  const char *film_grain_table_filename;
767  // Indicates the visual tuning metric.
768  aom_tune_metric tuning;
769  // Indicates if the current content is screen or default type.
770  aom_tune_content content;
771  // Indicates the film grain parameters.
772  int film_grain_test_vector;
773  // Indicates the in-block distortion metric to use.
774  aom_dist_metric dist_metric;
775 } TuneCfg;
776 
777 typedef struct {
778  // Indicates the framerate of the input video.
779  double init_framerate;
780  // Indicates the bit-depth of the input video.
781  unsigned int input_bit_depth;
782  // Indicates the maximum number of frames to be encoded.
783  unsigned int limit;
784  // Indicates the chrome subsampling x value.
785  unsigned int chroma_subsampling_x;
786  // Indicates the chrome subsampling y value.
787  unsigned int chroma_subsampling_y;
788 } InputCfg;
789 
790 typedef struct {
791  // If true, encoder will use fixed QP offsets, that are either:
792  // - Given by the user, and stored in 'fixed_qp_offsets' array, OR
793  // - Picked automatically from cq_level.
794  int use_fixed_qp_offsets;
795  // Indicates the minimum flatness of the quantization matrix.
796  int qm_minlevel;
797  // Indicates the maximum flatness of the quantization matrix.
798  int qm_maxlevel;
799  // Indicates if adaptive quantize_b should be enabled.
800  int quant_b_adapt;
801  // Indicates the Adaptive Quantization mode to be used.
802  AQ_MODE aq_mode;
803  // Indicates the delta q mode to be used.
804  DELTAQ_MODE deltaq_mode;
805  // Indicates the delta q mode strength.
806  DELTAQ_MODE deltaq_strength;
807  // Indicates if delta quantization should be enabled in chroma planes.
808  bool enable_chroma_deltaq;
809  // Indicates if delta quantization should be enabled for hdr video
810  bool enable_hdr_deltaq;
811  // Indicates if encoding with quantization matrices should be enabled.
812  bool using_qm;
813 } QuantizationCfg;
814 
819 typedef struct {
827 
836 
841 
846 
854 
859 
865 
874 
880 } AlgoCfg;
883 typedef struct {
884  // Indicates the codec bit-depth.
885  aom_bit_depth_t bit_depth;
886  // Indicates the superblock size that should be used by the encoder.
887  aom_superblock_size_t superblock_size;
888  // Indicates if loopfilter modulation should be enabled.
889  bool enable_deltalf_mode;
890  // Indicates how CDEF should be applied.
891  CDEF_CONTROL cdef_control;
892  // Indicates if loop restoration filter should be enabled.
893  bool enable_restoration;
894  // When enabled, video mode should be used even for single frame input.
895  bool force_video_mode;
896  // Indicates if the error resiliency features should be enabled.
897  bool error_resilient_mode;
898  // Indicates if frame parallel decoding feature should be enabled.
899  bool frame_parallel_decoding_mode;
900  // Indicates if the input should be encoded as monochrome.
901  bool enable_monochrome;
902  // When enabled, the encoder will use a full header even for still pictures.
903  // When disabled, a reduced header is used for still pictures.
904  bool full_still_picture_hdr;
905  // Indicates if dual interpolation filters should be enabled.
906  bool enable_dual_filter;
907  // Indicates if frame order hint should be enabled or not.
908  bool enable_order_hint;
909  // Indicates if ref_frame_mvs should be enabled at the sequence level.
910  bool ref_frame_mvs_present;
911  // Indicates if ref_frame_mvs should be enabled at the frame level.
912  bool enable_ref_frame_mvs;
913  // Indicates if interintra compound mode is enabled.
914  bool enable_interintra_comp;
915  // Indicates if global motion should be enabled.
916  bool enable_global_motion;
917  // Indicates if palette should be enabled.
918  bool enable_palette;
919 } ToolCfg;
920 
925 typedef struct AV1EncoderConfig {
927  // Configuration related to the input video.
928  InputCfg input_cfg;
929 
930  // Configuration related to frame-dimensions.
931  FrameDimensionCfg frm_dim_cfg;
932 
938 
943 
950  // Configuration related to Quantization.
951  QuantizationCfg q_cfg;
952 
953  // Internal frame size scaling.
954  ResizeCfg resize_cfg;
955 
956  // Frame Super-Resolution size scaling.
957  SuperResCfg superres_cfg;
958 
967  // Configuration related to encoder toolsets.
968  ToolCfg tool_cfg;
969 
970  // Configuration related to Group of frames.
971  GFConfig gf_cfg;
972 
973  // Tile related configuration parameters.
974  TileConfig tile_cfg;
975 
976  // Configuration related to Tune.
977  TuneCfg tune_cfg;
978 
979  // Configuration related to color.
980  ColorCfg color_cfg;
981 
982  // Configuration related to decoder model.
983  DecoderModelCfg dec_model_cfg;
984 
985  // Configuration related to reference frames.
986  RefFrameCfg ref_frm_cfg;
987 
988  // Configuration related to unit tests.
989  UnitTestCfg unit_test_cfg;
990 
991  // Flags related to motion mode.
992  MotionModeCfg motion_mode_cfg;
993 
994  // Flags related to intra mode search.
995  IntraModeCfg intra_mode_cfg;
996 
997  // Flags related to transform size/type.
998  TxfmSizeTypeCfg txfm_cfg;
999 
1000  // Flags related to compound type.
1001  CompoundTypeCfg comp_type_cfg;
1002 
1003  // Partition related information.
1004  PartitionCfg part_cfg;
1005 
1006  // Configuration related to frequency of cost update.
1007  CostUpdateFreq cost_upd_freq;
1008 
1009 #if CONFIG_DENOISE
1010  // Indicates the noise level.
1011  float noise_level;
1012  // Indicates the the denoisers block size.
1013  int noise_block_size;
1014  // Indicates whether to apply denoising to the frame to be encoded
1015  int enable_dnl_denoising;
1016 #endif
1017 
1018 #if CONFIG_AV1_TEMPORAL_DENOISING
1019  // Noise sensitivity.
1020  int noise_sensitivity;
1021 #endif
1022  // Bit mask to specify which tier each of the 32 possible operating points
1023  // conforms to.
1024  unsigned int tier_mask;
1025 
1026  // Indicates the number of pixels off the edge of a reference frame we're
1027  // allowed to go when forming an inter prediction.
1028  int border_in_pixels;
1029 
1030  // Indicates the maximum number of threads that may be used by the encoder.
1031  int max_threads;
1032 
1033  // Indicates the speed preset to be used.
1034  int speed;
1035 
1036  // Indicates the target sequence level index for each operating point(OP).
1037  AV1_LEVEL target_seq_level_idx[MAX_NUM_OPERATING_POINTS];
1038 
1039  // Indicates the bitstream profile to be used.
1040  BITSTREAM_PROFILE profile;
1041 
1050  enum aom_enc_pass pass;
1053  // Total number of encoding passes.
1054  int passes;
1055 
1056  // the name of the second pass output file when passes > 2
1057  const char *two_pass_output;
1058 
1059  // the name of the second pass log file when passes > 2
1060  const char *second_pass_log;
1061 
1062  // Indicates if the encoding is GOOD or REALTIME.
1063  MODE mode;
1064 
1065  // Indicates if row-based multi-threading should be enabled or not.
1066  bool row_mt;
1067 
1068  // Indicates if frame parallel multi-threading should be enabled or not.
1069  bool fp_mt;
1070 
1071  // Indicates if 16bit frame buffers are to be used i.e., the content is >
1072  // 8-bit.
1073  bool use_highbitdepth;
1074 
1075  // Indicates the bitstream syntax mode. 0 indicates bitstream is saved as
1076  // Section 5 bitstream, while 1 indicates the bitstream is saved in Annex - B
1077  // format.
1078  bool save_as_annexb;
1079 
1080  // The path for partition stats reading and writing, used in the experiment
1081  // CONFIG_PARTITION_SEARCH_ORDER.
1082  const char *partition_info_path;
1083 
1084  // The flag that indicates whether we use an external rate distribution to
1085  // guide adaptive quantization. It requires --deltaq-mode=3. The rate
1086  // distribution map file name is stored in |rate_distribution_info|.
1087  unsigned int enable_rate_guide_deltaq;
1088 
1089  // The input file of rate distribution information used in all intra mode
1090  // to determine delta quantization.
1091  const char *rate_distribution_info;
1092 
1093  // Exit the encoder when it fails to encode to a given level.
1094  int strict_level_conformance;
1095 
1096  // Max depth for the GOP after a key frame
1097  int kf_max_pyr_height;
1098 
1099  // A flag to control if we enable the superblock qp sweep for a given lambda
1100  int sb_qp_sweep;
1103 
1105 static inline int is_lossless_requested(const RateControlCfg *const rc_cfg) {
1106  return rc_cfg->best_allowed_q == 0 && rc_cfg->worst_allowed_q == 0;
1107 }
1113 typedef struct {
1119  int obmc_probs[FRAME_UPDATE_TYPES][BLOCK_SIZES_ALL];
1120 
1126  int warped_probs[FRAME_UPDATE_TYPES];
1127 
1134  int tx_type_probs[FRAME_UPDATE_TYPES][TX_SIZES_ALL][TX_TYPES];
1135 
1142  int switchable_interp_probs[FRAME_UPDATE_TYPES][SWITCHABLE_FILTER_CONTEXTS]
1143  [SWITCHABLE_FILTERS];
1144 } FrameProbInfo;
1145 
1148 typedef struct FRAME_COUNTS {
1149 // Note: This structure should only contain 'unsigned int' fields, or
1150 // aggregates built solely from 'unsigned int' fields/elements
1151 #if CONFIG_ENTROPY_STATS
1152  unsigned int kf_y_mode[KF_MODE_CONTEXTS][KF_MODE_CONTEXTS][INTRA_MODES];
1153  unsigned int angle_delta[DIRECTIONAL_MODES][2 * MAX_ANGLE_DELTA + 1];
1154  unsigned int y_mode[BLOCK_SIZE_GROUPS][INTRA_MODES];
1155  unsigned int uv_mode[CFL_ALLOWED_TYPES][INTRA_MODES][UV_INTRA_MODES];
1156  unsigned int cfl_sign[CFL_JOINT_SIGNS];
1157  unsigned int cfl_alpha[CFL_ALPHA_CONTEXTS][CFL_ALPHABET_SIZE];
1158  unsigned int palette_y_mode[PALATTE_BSIZE_CTXS][PALETTE_Y_MODE_CONTEXTS][2];
1159  unsigned int palette_uv_mode[PALETTE_UV_MODE_CONTEXTS][2];
1160  unsigned int palette_y_size[PALATTE_BSIZE_CTXS][PALETTE_SIZES];
1161  unsigned int palette_uv_size[PALATTE_BSIZE_CTXS][PALETTE_SIZES];
1162  unsigned int palette_y_color_index[PALETTE_SIZES]
1163  [PALETTE_COLOR_INDEX_CONTEXTS]
1164  [PALETTE_COLORS];
1165  unsigned int palette_uv_color_index[PALETTE_SIZES]
1166  [PALETTE_COLOR_INDEX_CONTEXTS]
1167  [PALETTE_COLORS];
1168  unsigned int partition[PARTITION_CONTEXTS][EXT_PARTITION_TYPES];
1169  unsigned int txb_skip[TOKEN_CDF_Q_CTXS][TX_SIZES][TXB_SKIP_CONTEXTS][2];
1170  unsigned int eob_extra[TOKEN_CDF_Q_CTXS][TX_SIZES][PLANE_TYPES]
1171  [EOB_COEF_CONTEXTS][2];
1172  unsigned int dc_sign[PLANE_TYPES][DC_SIGN_CONTEXTS][2];
1173  unsigned int coeff_lps[TX_SIZES][PLANE_TYPES][BR_CDF_SIZE - 1][LEVEL_CONTEXTS]
1174  [2];
1175  unsigned int eob_flag[TX_SIZES][PLANE_TYPES][EOB_COEF_CONTEXTS][2];
1176  unsigned int eob_multi16[TOKEN_CDF_Q_CTXS][PLANE_TYPES][2][5];
1177  unsigned int eob_multi32[TOKEN_CDF_Q_CTXS][PLANE_TYPES][2][6];
1178  unsigned int eob_multi64[TOKEN_CDF_Q_CTXS][PLANE_TYPES][2][7];
1179  unsigned int eob_multi128[TOKEN_CDF_Q_CTXS][PLANE_TYPES][2][8];
1180  unsigned int eob_multi256[TOKEN_CDF_Q_CTXS][PLANE_TYPES][2][9];
1181  unsigned int eob_multi512[TOKEN_CDF_Q_CTXS][PLANE_TYPES][2][10];
1182  unsigned int eob_multi1024[TOKEN_CDF_Q_CTXS][PLANE_TYPES][2][11];
1183  unsigned int coeff_lps_multi[TOKEN_CDF_Q_CTXS][TX_SIZES][PLANE_TYPES]
1184  [LEVEL_CONTEXTS][BR_CDF_SIZE];
1185  unsigned int coeff_base_multi[TOKEN_CDF_Q_CTXS][TX_SIZES][PLANE_TYPES]
1186  [SIG_COEF_CONTEXTS][NUM_BASE_LEVELS + 2];
1187  unsigned int coeff_base_eob_multi[TOKEN_CDF_Q_CTXS][TX_SIZES][PLANE_TYPES]
1188  [SIG_COEF_CONTEXTS_EOB][NUM_BASE_LEVELS + 1];
1189  unsigned int newmv_mode[NEWMV_MODE_CONTEXTS][2];
1190  unsigned int zeromv_mode[GLOBALMV_MODE_CONTEXTS][2];
1191  unsigned int refmv_mode[REFMV_MODE_CONTEXTS][2];
1192  unsigned int drl_mode[DRL_MODE_CONTEXTS][2];
1193  unsigned int inter_compound_mode[INTER_MODE_CONTEXTS][INTER_COMPOUND_MODES];
1194  unsigned int wedge_idx[BLOCK_SIZES_ALL][16];
1195  unsigned int interintra[BLOCK_SIZE_GROUPS][2];
1196  unsigned int interintra_mode[BLOCK_SIZE_GROUPS][INTERINTRA_MODES];
1197  unsigned int wedge_interintra[BLOCK_SIZES_ALL][2];
1198  unsigned int compound_type[BLOCK_SIZES_ALL][MASKED_COMPOUND_TYPES];
1199  unsigned int motion_mode[BLOCK_SIZES_ALL][MOTION_MODES];
1200  unsigned int obmc[BLOCK_SIZES_ALL][2];
1201  unsigned int intra_inter[INTRA_INTER_CONTEXTS][2];
1202  unsigned int comp_inter[COMP_INTER_CONTEXTS][2];
1203  unsigned int comp_ref_type[COMP_REF_TYPE_CONTEXTS][2];
1204  unsigned int uni_comp_ref[UNI_COMP_REF_CONTEXTS][UNIDIR_COMP_REFS - 1][2];
1205  unsigned int single_ref[REF_CONTEXTS][SINGLE_REFS - 1][2];
1206  unsigned int comp_ref[REF_CONTEXTS][FWD_REFS - 1][2];
1207  unsigned int comp_bwdref[REF_CONTEXTS][BWD_REFS - 1][2];
1208  unsigned int intrabc[2];
1209 
1210  unsigned int txfm_partition[TXFM_PARTITION_CONTEXTS][2];
1211  unsigned int intra_tx_size[MAX_TX_CATS][TX_SIZE_CONTEXTS][MAX_TX_DEPTH + 1];
1212  unsigned int skip_mode[SKIP_MODE_CONTEXTS][2];
1213  unsigned int skip_txfm[SKIP_CONTEXTS][2];
1214  unsigned int compound_index[COMP_INDEX_CONTEXTS][2];
1215  unsigned int comp_group_idx[COMP_GROUP_IDX_CONTEXTS][2];
1216  unsigned int delta_q[DELTA_Q_PROBS][2];
1217  unsigned int delta_lf_multi[FRAME_LF_COUNT][DELTA_LF_PROBS][2];
1218  unsigned int delta_lf[DELTA_LF_PROBS][2];
1219 
1220  unsigned int inter_ext_tx[EXT_TX_SETS_INTER][EXT_TX_SIZES][TX_TYPES];
1221  unsigned int intra_ext_tx[EXT_TX_SETS_INTRA][EXT_TX_SIZES][INTRA_MODES]
1222  [TX_TYPES];
1223  unsigned int filter_intra_mode[FILTER_INTRA_MODES];
1224  unsigned int filter_intra[BLOCK_SIZES_ALL][2];
1225  unsigned int switchable_restore[RESTORE_SWITCHABLE_TYPES];
1226  unsigned int wiener_restore[2];
1227  unsigned int sgrproj_restore[2];
1228 #endif // CONFIG_ENTROPY_STATS
1229 
1230  unsigned int switchable_interp[SWITCHABLE_FILTER_CONTEXTS]
1231  [SWITCHABLE_FILTERS];
1232 } FRAME_COUNTS;
1233 
1234 #define INTER_MODE_RD_DATA_OVERALL_SIZE 6400
1235 
1236 typedef struct {
1237  int ready;
1238  double a;
1239  double b;
1240  double dist_mean;
1241  double ld_mean;
1242  double sse_mean;
1243  double sse_sse_mean;
1244  double sse_ld_mean;
1245  int num;
1246  double dist_sum;
1247  double ld_sum;
1248  double sse_sum;
1249  double sse_sse_sum;
1250  double sse_ld_sum;
1251 } InterModeRdModel;
1252 
1253 typedef struct {
1254  int idx;
1255  int64_t rd;
1256 } RdIdxPair;
1257 // TODO(angiebird): This is an estimated size. We still need to figure what is
1258 // the maximum number of modes.
1259 #define MAX_INTER_MODES 1024
1260 // TODO(any): rename this struct to something else. There is already another
1261 // struct called inter_mode_info, which makes this terribly confusing.
1269 typedef struct inter_modes_info {
1274  int num;
1278  MB_MODE_INFO mbmi_arr[MAX_INTER_MODES];
1282  int mode_rate_arr[MAX_INTER_MODES];
1286  int64_t sse_arr[MAX_INTER_MODES];
1290  int64_t est_rd_arr[MAX_INTER_MODES];
1294  RdIdxPair rd_idx_pair_arr[MAX_INTER_MODES];
1298  RD_STATS rd_cost_arr[MAX_INTER_MODES];
1302  RD_STATS rd_cost_y_arr[MAX_INTER_MODES];
1306  RD_STATS rd_cost_uv_arr[MAX_INTER_MODES];
1308 
1310 typedef struct {
1311  // TODO(kyslov): consider changing to 64bit
1312 
1313  // This struct is used for computing variance in choose_partitioning(), where
1314  // the max number of samples within a superblock is 32x32 (with 4x4 avg).
1315  // With 8bit bitdepth, uint32_t is enough for sum_square_error (2^8 * 2^8 * 32
1316  // * 32 = 2^26). For high bitdepth we need to consider changing this to 64 bit
1317  uint32_t sum_square_error;
1318  int32_t sum_error;
1319  int log2_count;
1320  int variance;
1321 } VPartVar;
1322 
1323 typedef struct {
1324  VPartVar none;
1325  VPartVar horz[2];
1326  VPartVar vert[2];
1327 } VPVariance;
1328 
1329 typedef struct {
1330  VPVariance part_variances;
1331  VPartVar split[4];
1332 } VP4x4;
1333 
1334 typedef struct {
1335  VPVariance part_variances;
1336  VP4x4 split[4];
1337 } VP8x8;
1338 
1339 typedef struct {
1340  VPVariance part_variances;
1341  VP8x8 split[4];
1342 } VP16x16;
1343 
1344 typedef struct {
1345  VPVariance part_variances;
1346  VP16x16 split[4];
1347 } VP32x32;
1348 
1349 typedef struct {
1350  VPVariance part_variances;
1351  VP32x32 split[4];
1352 } VP64x64;
1353 
1354 typedef struct {
1355  VPVariance part_variances;
1356  VP64x64 *split;
1357 } VP128x128;
1358 
1364 typedef struct {
1373  int64_t thresholds[5];
1374 
1381 
1385 typedef struct {
1386 #if CONFIG_MULTITHREAD
1391  pthread_mutex_t *mutex_;
1392  pthread_cond_t *cond_;
1394 #endif // CONFIG_MULTITHREAD
1400  int *num_finished_cols;
1418  int rows;
1428 
1431 // TODO(jingning) All spatially adaptive variables should go to TileDataEnc.
1432 typedef struct TileDataEnc {
1433  TileInfo tile_info;
1434  DECLARE_ALIGNED(16, FRAME_CONTEXT, tctx);
1435  FRAME_CONTEXT *row_ctx;
1436  uint64_t abs_sum_level;
1437  uint8_t allow_update_cdf;
1438  InterModeRdModel inter_mode_rd_models[BLOCK_SIZES_ALL];
1439  AV1EncRowMultiThreadSync row_mt_sync;
1440  MV firstpass_top_mv;
1441 } TileDataEnc;
1442 
1443 typedef struct RD_COUNTS {
1444  int compound_ref_used_flag;
1445  int skip_mode_used_flag;
1446  int tx_type_used[TX_SIZES_ALL][TX_TYPES];
1447  int obmc_used[BLOCK_SIZES_ALL][2];
1448  int warped_used[2];
1449  int newmv_or_intra_blocks;
1450  uint64_t seg_tmp_pred_cost[2];
1451 } RD_COUNTS;
1452 
1453 typedef struct ThreadData {
1454  MACROBLOCK mb;
1455  MvCosts *mv_costs_alloc;
1456  IntraBCMVCosts *dv_costs_alloc;
1457  RD_COUNTS rd_counts;
1458  FRAME_COUNTS *counts;
1459  PC_TREE_SHARED_BUFFERS shared_coeff_buf;
1460  SIMPLE_MOTION_DATA_TREE *sms_tree;
1461  SIMPLE_MOTION_DATA_TREE *sms_root;
1462  uint32_t *hash_value_buffer[2][2];
1463  OBMCBuffer obmc_buffer;
1464  PALETTE_BUFFER *palette_buffer;
1465  CompoundTypeRdBuffers comp_rd_buffer;
1466  CONV_BUF_TYPE *tmp_conv_dst;
1467  uint64_t abs_sum_level;
1468  uint8_t *tmp_pred_bufs[2];
1469  uint8_t *wiener_tmp_pred_buf;
1470  int intrabc_used;
1471  int deltaq_used;
1472  int coefficient_size;
1473  int max_mv_magnitude;
1474  int interp_filter_selected[SWITCHABLE];
1475  FRAME_CONTEXT *tctx;
1476  VP64x64 *vt64x64;
1477  int32_t num_64x64_blocks;
1478  PICK_MODE_CONTEXT *firstpass_ctx;
1479  TemporalFilterData tf_data;
1480  TplBuffers tpl_tmp_buffers;
1481  TplTxfmStats tpl_txfm_stats;
1482  GlobalMotionData gm_data;
1483  // Pointer to the array of structures to store gradient information of each
1484  // pixel in a superblock. The buffer constitutes of MAX_SB_SQUARE pixel level
1485  // structures for each of the plane types (PLANE_TYPE_Y and PLANE_TYPE_UV).
1486  PixelLevelGradientInfo *pixel_gradient_info;
1487  // Pointer to the array of structures to store source variance information of
1488  // each 4x4 sub-block in a superblock. Block4x4VarInfo structure is used to
1489  // store source variance and log of source variance of each 4x4 sub-block
1490  // for subsequent retrieval.
1491  Block4x4VarInfo *src_var_info_of_4x4_sub_blocks;
1492  // Pointer to pc tree root.
1493  PC_TREE *pc_root;
1494 } ThreadData;
1495 
1496 struct EncWorkerData;
1497 
1503 typedef struct {
1526 
1530  int thread_id_to_tile_id[MAX_NUM_THREADS];
1531 
1537 
1543 
1549 
1556 
1563 
1564 #if CONFIG_MULTITHREAD
1568  pthread_mutex_t *mutex_;
1572  pthread_cond_t *cond_;
1573 #endif
1574 
1582  void (*sync_read_ptr)(AV1EncRowMultiThreadSync *const, int, int);
1586  void (*sync_write_ptr)(AV1EncRowMultiThreadSync *const, int, int, int);
1589 
1593 typedef struct {
1594 #if CONFIG_MULTITHREAD
1598  pthread_mutex_t *mutex_;
1602  pthread_cond_t *cond_;
1603 #endif
1604 
1612  void (*intra_sync_read_ptr)(AV1EncRowMultiThreadSync *const, int, int);
1616  void (*intra_sync_write_ptr)(AV1EncRowMultiThreadSync *const, int, int, int);
1619 
1623 #define NUM_RECODES_PER_FRAME 10
1624 
1628 #define MAX_PARALLEL_FRAMES 4
1629 
1634 typedef struct RestoreStateBuffers {
1638  uint16_t *cdef_srcbuf;
1639 
1643  uint16_t *cdef_colbuf[MAX_MB_PLANE];
1644 
1648  int32_t *rst_tmpbuf;
1649 
1653  RestorationLineBuffers *rlbs;
1655 
1659 typedef struct {
1664 
1669 
1676 
1682 typedef struct {
1687  RestUnitSearchInfo *rusi[MAX_MB_PLANE];
1688 
1692  int16_t *dgd_avg;
1693 } AV1LrPickStruct;
1694 
1698 typedef struct PrimaryMultiThreadInfo {
1703 
1707  int num_mod_workers[NUM_MT_MODULES];
1708 
1712  AVxWorker *workers;
1713 
1718  struct EncWorkerData *tile_thr_data;
1719 
1723  AV1CdefWorkerData *cdef_worker;
1724 
1730 
1735 
1741 
1745 typedef struct MultiThreadInfo {
1750 
1754  int num_mod_workers[NUM_MT_MODULES];
1755 
1759  AVxWorker *workers;
1760 
1765  struct EncWorkerData *tile_thr_data;
1766 
1772 
1777 
1782 
1788 
1792  AV1TplRowMultiThreadInfo tpl_row_mt;
1793 
1797  AV1LfSync lf_row_sync;
1798 
1802  AV1LrSync lr_row_sync;
1803 
1807  AV1EncPackBSSync pack_bs_sync;
1808 
1812  AV1GlobalMotionSync gm_sync;
1813 
1817  AV1TemporalFilterSync tf_sync;
1818 
1822  AV1CdefSync cdef_sync;
1823 
1827  AV1CdefWorkerData *cdef_worker;
1828 
1833 
1840 
1843 typedef struct ActiveMap {
1844  int enabled;
1845  int update;
1846  unsigned char *map;
1847 } ActiveMap;
1848 
1854 typedef struct {
1859  double cs_rate_array[32];
1869 
1872 #if CONFIG_INTERNAL_STATS
1873 // types of stats
1874 enum {
1875  STAT_Y,
1876  STAT_U,
1877  STAT_V,
1878  STAT_ALL,
1879  NUM_STAT_TYPES // This should always be the last member of the enum
1880 } UENUM1BYTE(StatType);
1881 
1882 typedef struct IMAGE_STAT {
1883  double stat[NUM_STAT_TYPES];
1884  double worst;
1885 } ImageStat;
1886 #endif // CONFIG_INTERNAL_STATS
1887 
1888 typedef struct {
1889  int ref_count;
1890  YV12_BUFFER_CONFIG buf;
1891 } EncRefCntBuffer;
1892 
1900 typedef struct {
1913  int stride;
1915 
1918 #if CONFIG_COLLECT_PARTITION_STATS
1919 typedef struct FramePartitionTimingStats {
1920  int partition_decisions[6][EXT_PARTITION_TYPES];
1921  int partition_attempts[6][EXT_PARTITION_TYPES];
1922  int64_t partition_times[6][EXT_PARTITION_TYPES];
1923 
1924  int partition_redo;
1925 } FramePartitionTimingStats;
1926 #endif // CONFIG_COLLECT_PARTITION_STATS
1927 
1928 #if CONFIG_COLLECT_COMPONENT_TIMING
1929 #include "aom_ports/aom_timer.h"
1930 // Adjust the following to add new components.
1931 enum {
1932  av1_encode_strategy_time,
1933  av1_get_one_pass_rt_params_time,
1934  av1_get_second_pass_params_time,
1935  denoise_and_encode_time,
1936  apply_filtering_time,
1937  av1_tpl_setup_stats_time,
1938  encode_frame_to_data_rate_time,
1939  encode_with_or_without_recode_time,
1940  loop_filter_time,
1941  cdef_time,
1942  loop_restoration_time,
1943  av1_pack_bitstream_final_time,
1944  av1_encode_frame_time,
1945  av1_compute_global_motion_time,
1946  av1_setup_motion_field_time,
1947  encode_sb_row_time,
1948 
1949  rd_pick_partition_time,
1950  rd_use_partition_time,
1951  choose_var_based_partitioning_time,
1952  av1_prune_partitions_time,
1953  none_partition_search_time,
1954  split_partition_search_time,
1955  rectangular_partition_search_time,
1956  ab_partitions_search_time,
1957  rd_pick_4partition_time,
1958  encode_sb_time,
1959 
1960  rd_pick_sb_modes_time,
1961  av1_rd_pick_intra_mode_sb_time,
1962  av1_rd_pick_inter_mode_sb_time,
1963  set_params_rd_pick_inter_mode_time,
1964  skip_inter_mode_time,
1965  handle_inter_mode_time,
1966  evaluate_motion_mode_for_winner_candidates_time,
1967  do_tx_search_time,
1968  handle_intra_mode_time,
1969  refine_winner_mode_tx_time,
1970  av1_search_palette_mode_time,
1971  handle_newmv_time,
1972  compound_type_rd_time,
1973  interpolation_filter_search_time,
1974  motion_mode_rd_time,
1975 
1976  nonrd_use_partition_time,
1977  pick_sb_modes_nonrd_time,
1978  hybrid_intra_mode_search_time,
1979  nonrd_pick_inter_mode_sb_time,
1980  encode_b_nonrd_time,
1981 
1982  kTimingComponents,
1983 } UENUM1BYTE(TIMING_COMPONENT);
1984 
1985 static inline char const *get_component_name(int index) {
1986  switch (index) {
1987  case av1_encode_strategy_time: return "av1_encode_strategy_time";
1988  case av1_get_one_pass_rt_params_time:
1989  return "av1_get_one_pass_rt_params_time";
1990  case av1_get_second_pass_params_time:
1991  return "av1_get_second_pass_params_time";
1992  case denoise_and_encode_time: return "denoise_and_encode_time";
1993  case apply_filtering_time: return "apply_filtering_time";
1994  case av1_tpl_setup_stats_time: return "av1_tpl_setup_stats_time";
1995  case encode_frame_to_data_rate_time:
1996  return "encode_frame_to_data_rate_time";
1997  case encode_with_or_without_recode_time:
1998  return "encode_with_or_without_recode_time";
1999  case loop_filter_time: return "loop_filter_time";
2000  case cdef_time: return "cdef_time";
2001  case loop_restoration_time: return "loop_restoration_time";
2002  case av1_pack_bitstream_final_time: return "av1_pack_bitstream_final_time";
2003  case av1_encode_frame_time: return "av1_encode_frame_time";
2004  case av1_compute_global_motion_time:
2005  return "av1_compute_global_motion_time";
2006  case av1_setup_motion_field_time: return "av1_setup_motion_field_time";
2007  case encode_sb_row_time: return "encode_sb_row_time";
2008 
2009  case rd_pick_partition_time: return "rd_pick_partition_time";
2010  case rd_use_partition_time: return "rd_use_partition_time";
2011  case choose_var_based_partitioning_time:
2012  return "choose_var_based_partitioning_time";
2013  case av1_prune_partitions_time: return "av1_prune_partitions_time";
2014  case none_partition_search_time: return "none_partition_search_time";
2015  case split_partition_search_time: return "split_partition_search_time";
2016  case rectangular_partition_search_time:
2017  return "rectangular_partition_search_time";
2018  case ab_partitions_search_time: return "ab_partitions_search_time";
2019  case rd_pick_4partition_time: return "rd_pick_4partition_time";
2020  case encode_sb_time: return "encode_sb_time";
2021 
2022  case rd_pick_sb_modes_time: return "rd_pick_sb_modes_time";
2023  case av1_rd_pick_intra_mode_sb_time:
2024  return "av1_rd_pick_intra_mode_sb_time";
2025  case av1_rd_pick_inter_mode_sb_time:
2026  return "av1_rd_pick_inter_mode_sb_time";
2027  case set_params_rd_pick_inter_mode_time:
2028  return "set_params_rd_pick_inter_mode_time";
2029  case skip_inter_mode_time: return "skip_inter_mode_time";
2030  case handle_inter_mode_time: return "handle_inter_mode_time";
2031  case evaluate_motion_mode_for_winner_candidates_time:
2032  return "evaluate_motion_mode_for_winner_candidates_time";
2033  case do_tx_search_time: return "do_tx_search_time";
2034  case handle_intra_mode_time: return "handle_intra_mode_time";
2035  case refine_winner_mode_tx_time: return "refine_winner_mode_tx_time";
2036  case av1_search_palette_mode_time: return "av1_search_palette_mode_time";
2037  case handle_newmv_time: return "handle_newmv_time";
2038  case compound_type_rd_time: return "compound_type_rd_time";
2039  case interpolation_filter_search_time:
2040  return "interpolation_filter_search_time";
2041  case motion_mode_rd_time: return "motion_mode_rd_time";
2042 
2043  case nonrd_use_partition_time: return "nonrd_use_partition_time";
2044  case pick_sb_modes_nonrd_time: return "pick_sb_modes_nonrd_time";
2045  case hybrid_intra_mode_search_time: return "hybrid_intra_mode_search_time";
2046  case nonrd_pick_inter_mode_sb_time: return "nonrd_pick_inter_mode_sb_time";
2047  case encode_b_nonrd_time: return "encode_b_nonrd_time";
2048 
2049  default: assert(0);
2050  }
2051  return "error";
2052 }
2053 #endif
2054 
2055 // The maximum number of internal ARFs except ALTREF_FRAME
2056 #define MAX_INTERNAL_ARFS (REF_FRAMES - BWDREF_FRAME - 1)
2057 
2063 typedef struct {
2068 
2074  YV12_BUFFER_CONFIG *ref_buf[REF_FRAMES];
2075 
2081  int num_ref_frames[MAX_DIRECTIONS];
2082 
2089  FrameDistPair reference_frames[MAX_DIRECTIONS][REF_FRAMES - 1];
2090 
2099 
2103 typedef struct {
2114 
2118 typedef struct {
2138  fractional_mv_step_fp *find_fractional_mv_step;
2145  search_site_config search_site_cfg[SS_CFG_TOTAL][NUM_DISTINCT_SEARCH_METHODS];
2147 
2156 typedef struct {
2161 
2169 typedef struct {
2170  int width;
2171  int height;
2173 
2177 typedef struct {
2181  int ref_relative_dist[INTER_REFS_PER_FRAME];
2191 
2207 typedef struct {
2215  unsigned int coeff_opt_thresholds[MODE_EVAL_TYPES][2];
2216 
2221  TX_SIZE_SEARCH_METHOD tx_size_search_methods[MODE_EVAL_TYPES];
2222 
2229  unsigned int use_transform_domain_distortion[MODE_EVAL_TYPES];
2230 
2236  unsigned int tx_domain_dist_threshold[MODE_EVAL_TYPES];
2237 
2243  unsigned int skip_txfm_level[MODE_EVAL_TYPES];
2244 
2250  unsigned int predict_dc_level[MODE_EVAL_TYPES];
2252 
2260 typedef struct {
2261  bool last_frame;
2271 
2275 typedef struct {
2280 
2285 
2290 
2296 
2301 
2306 
2311 
2317 } ExternalFlags;
2318 
2321 typedef struct {
2322  // Some misc info
2323  int high_prec;
2324  int q;
2325  int order;
2326 
2327  // MV counters
2328  int inter_count;
2329  int intra_count;
2330  int default_mvs;
2331  int mv_joint_count[4];
2332  int last_bit_zero;
2333  int last_bit_nonzero;
2334 
2335  // Keep track of the rates
2336  int total_mv_rate;
2337  int hp_total_mv_rate;
2338  int lp_total_mv_rate;
2339 
2340  // Texture info
2341  int horz_text;
2342  int vert_text;
2343  int diag_text;
2344 
2345  // Whether the current struct contains valid data
2346  int valid;
2347 } MV_STATS;
2348 
2349 typedef struct WeberStats {
2350  int64_t mb_wiener_variance;
2351  int64_t src_variance;
2352  int64_t rec_variance;
2353  int16_t src_pix_max;
2354  int16_t rec_pix_max;
2355  int64_t distortion;
2356  int64_t satd;
2357  double max_scale;
2358 } WeberStats;
2359 
2360 typedef struct {
2361  struct loopfilter lf;
2362  CdefInfo cdef_info;
2363  YV12_BUFFER_CONFIG copy_buffer;
2364  RATE_CONTROL rc;
2365  MV_STATS mv_stats;
2366 } CODING_CONTEXT;
2367 
2368 typedef struct {
2369  int frame_width;
2370  int frame_height;
2371  int mi_rows;
2372  int mi_cols;
2373  int mb_rows;
2374  int mb_cols;
2375  int num_mbs;
2376  aom_bit_depth_t bit_depth;
2377  int subsampling_x;
2378  int subsampling_y;
2379 } FRAME_INFO;
2380 
2384 typedef struct {
2385  int show_frame_count;
2386 } FRAME_INDEX_SET;
2387 
2393 typedef struct {
2399  uint8_t *map;
2407 
2411 typedef struct {
2415  int64_t prev_ts_start;
2419  int64_t prev_ts_end;
2424 } TimeStamps;
2425 
2430 typedef struct {
2434  tran_low_t *tcoeff;
2438  uint16_t *eobs;
2442  uint8_t *entropy_ctx;
2443 } CoeffBufferPool;
2444 
2445 #if !CONFIG_REALTIME_ONLY
2447 // DUCKY_ENCODE_FRAME_MODE is c version of EncodeFrameMode
2448 enum {
2449  DUCKY_ENCODE_FRAME_MODE_NONE, // Let native AV1 determine q index and rdmult
2450  DUCKY_ENCODE_FRAME_MODE_QINDEX, // DuckyEncode determines q index and AV1
2451  // determines rdmult
2452  DUCKY_ENCODE_FRAME_MODE_QINDEX_RDMULT, // DuckyEncode determines q index and
2453  // rdmult
2454 } UENUM1BYTE(DUCKY_ENCODE_FRAME_MODE);
2455 
2456 enum {
2457  DUCKY_ENCODE_GOP_MODE_NONE, // native AV1 decides GOP
2458  DUCKY_ENCODE_GOP_MODE_RCL, // rate control lib decides GOP
2459 } UENUM1BYTE(DUCKY_ENCODE_GOP_MODE);
2460 
2461 typedef struct DuckyEncodeFrameInfo {
2462  DUCKY_ENCODE_FRAME_MODE qp_mode;
2463  DUCKY_ENCODE_GOP_MODE gop_mode;
2464  int q_index;
2465  int rdmult;
2466  // These two arrays are equivalent to std::vector<SuperblockEncodeParameters>
2467  int *superblock_encode_qindex;
2468  int *superblock_encode_rdmult;
2469  int delta_q_enabled;
2470 } DuckyEncodeFrameInfo;
2471 
2472 typedef struct DuckyEncodeFrameResult {
2473  int global_order_idx;
2474  int q_index;
2475  int rdmult;
2476  int rate;
2477  int64_t dist;
2478  double psnr;
2479 } DuckyEncodeFrameResult;
2480 
2481 typedef struct DuckyEncodeInfo {
2482  DuckyEncodeFrameInfo frame_info;
2483  DuckyEncodeFrameResult frame_result;
2484 } DuckyEncodeInfo;
2486 #endif
2487 
2489 typedef struct RTC_REF {
2494  int reference[INTER_REFS_PER_FRAME];
2495  int ref_idx[INTER_REFS_PER_FRAME];
2496  int refresh[REF_FRAMES];
2497  int set_ref_frame_config;
2498  int non_reference_frame;
2499  int ref_frame_comp[3];
2500  int gld_idx_1layer;
2504  unsigned int buffer_time_index[REF_FRAMES];
2508  unsigned char buffer_spatial_layer[REF_FRAMES];
2512  bool reference_was_previous_frame;
2517  bool bias_recovery_frame;
2518 } RTC_REF;
2524 typedef struct AV1_COMP_DATA {
2528  unsigned char *cx_data;
2529 
2533  size_t cx_data_sz;
2534 
2538  size_t frame_size;
2539 
2543  unsigned int lib_flags;
2544 
2549 
2553  int64_t ts_frame_end;
2554 
2558  int flush;
2559 
2563  const aom_rational64_t *timestamp_ratio;
2564 
2570 
2574 typedef struct AV1_PRIMARY {
2579 
2585 #if CONFIG_FPMT_TEST
2591  FPMT_TEST_ENC_CFG fpmt_unit_test_cfg;
2592 
2596  FrameProbInfo temp_frame_probs;
2597 
2603  FrameProbInfo temp_frame_probs_simulation;
2604 
2609  int temp_valid_gm_model_found[FRAME_UPDATE_TYPES];
2610 #endif // CONFIG_FPMT_TEST
2616  RefCntBuffer *ref_frame_map_copy[REF_FRAMES];
2617 
2622 
2627 
2632 
2637 
2642 
2647 
2652  struct AV1_COMP *cpi;
2653 
2658 
2662  struct lookahead_ctx *lookahead;
2663 
2670 
2675  struct aom_codec_pkt_list *output_pkt_list;
2676 
2681 
2686 
2691 
2695  GF_STATE gf_state;
2696 
2701 
2705  AV1LevelParams level_params;
2706 
2711 
2716 
2721 
2726 
2735  SequenceHeader seq_params;
2736 
2740  int use_svc;
2741 
2746 
2751 
2756 
2760  struct aom_internal_error_info error;
2761 
2767  aom_variance_fn_ptr_t fn_ptr[BLOCK_SIZES_ALL];
2768 
2774 
2779 
2783  MV_STATS mv_stats;
2784 
2785 #if CONFIG_INTERNAL_STATS
2787  uint64_t total_time_receive_data;
2788  uint64_t total_time_compress_data;
2789 
2790  unsigned int total_mode_chosen_counts[MAX_MODES];
2791 
2792  int count[2];
2793  uint64_t total_sq_error[2];
2794  uint64_t total_samples[2];
2795  ImageStat psnr[2];
2796 
2797  double total_blockiness;
2798  double worst_blockiness;
2799 
2800  uint64_t total_bytes;
2801  double summed_quality;
2802  double summed_weights;
2803  double summed_quality_hbd;
2804  double summed_weights_hbd;
2805  unsigned int total_recode_hits;
2806  double worst_ssim;
2807  double worst_ssim_hbd;
2808 
2809  ImageStat fastssim;
2810  ImageStat psnrhvs;
2811 
2812  int b_calculate_blockiness;
2813  int b_calculate_consistency;
2814 
2815  double total_inconsistency;
2816  double worst_consistency;
2817  Ssimv *ssim_vars;
2818  Metrics metrics;
2820 #endif
2821 
2822 #if CONFIG_ENTROPY_STATS
2826  FRAME_COUNTS aggregate_fc;
2827 #endif // CONFIG_ENTROPY_STATS
2828 
2835  int fb_of_context_type[REF_FRAMES];
2836 
2841 
2846 
2853  int valid_gm_model_found[FRAME_UPDATE_TYPES];
2854 
2858  RTC_REF rtc_ref;
2859 
2866 
2870 typedef struct AV1_COMP {
2875 
2880  EncQuantDequantParams enc_quant_dequant_params;
2881 
2885  ThreadData td;
2886 
2890  FRAME_COUNTS counts;
2891 
2896 
2903 
2909 
2914 
2919 
2924  TRELLIS_OPT_TYPE optimize_seg_arr[MAX_SEGMENTS];
2925 
2932 
2941 
2947 
2952 
2957 
2962 
2968 
2974 
2979 
2989 
2994 
2998  CdefSearchCtx *cdef_search_ctx;
2999 
3004 
3009  RefCntBuffer *scaled_ref_buf[INTER_REFS_PER_FRAME];
3010 
3014  RefCntBuffer *last_show_frame_buf;
3015 
3020 
3025 
3030 
3036 
3042 
3046  int64_t ambient_err;
3047 
3051  RD_OPT rd;
3052 
3057  CODING_CONTEXT coding_context;
3058 
3063 
3068 
3073 
3078 
3082  double framerate;
3083 
3088 
3092  int speed;
3093 
3098 
3103 
3109 
3114 
3123  ActiveMap active_map;
3124 
3128  unsigned char gf_frame_index;
3129 
3130 #if CONFIG_INTERNAL_STATS
3132  uint64_t time_compress_data;
3133 
3134  unsigned int mode_chosen_counts[MAX_MODES];
3135  int bytes;
3136  unsigned int frame_recode_hits;
3138 #endif
3139 
3140 #if CONFIG_SPEED_STATS
3144  unsigned int tx_search_count;
3145 #endif // CONFIG_SPEED_STATS
3146 
3152 
3156  FRAME_INFO frame_info;
3157 
3161  FRAME_INDEX_SET frame_index_set;
3162 
3169 
3176 
3184 
3190 
3196 
3202 
3207 
3212  TileDataEnc *tile_data;
3217 
3221  TokenInfo token_info;
3222 
3227 
3232 
3237 
3242 
3247 
3252 
3257 
3262 
3263 #if CONFIG_FPMT_TEST
3268  double temp_framerate;
3269 #endif
3276 
3281 
3286 
3293 
3298 
3303 
3307  AV1LrStruct lr_ctxt;
3308 
3313 
3317  aom_film_grain_table_t *film_grain_table;
3318 
3319 #if CONFIG_DENOISE
3324  struct aom_denoise_and_model_t *denoise_and_model;
3325 #endif
3326 
3331 
3340 
3348 
3349 #if CONFIG_COLLECT_PARTITION_STATS
3353  FramePartitionTimingStats partition_stats;
3354 #endif // CONFIG_COLLECT_PARTITION_STATS
3355 
3356 #if CONFIG_COLLECT_COMPONENT_TIMING
3360  uint64_t component_time[kTimingComponents];
3365  struct aom_usec_timer component_timer[kTimingComponents];
3369  uint64_t frame_component_time[kTimingComponents];
3370 #endif
3371 
3376 
3381 
3386 
3393 
3394 #if CONFIG_TUNE_VMAF
3398  TuneVMAFInfo vmaf_info;
3399 #endif
3400 
3401 #if CONFIG_TUNE_BUTTERAUGLI
3405  TuneButteraugliInfo butteraugli_info;
3406 #endif
3407 
3412 
3416  COMPRESSOR_STAGE compressor_stage;
3417 
3422  FRAME_TYPE last_frame_type;
3423 
3427  int num_tg;
3428 
3435 
3439  FirstPassData firstpass_data;
3440 
3444  NOISE_ESTIMATE noise_estimate;
3445 
3446 #if CONFIG_AV1_TEMPORAL_DENOISING
3450  AV1_DENOISER denoiser;
3451 #endif
3452 
3457  uint8_t *consec_zero_mv;
3458 
3463 
3467  BLOCK_SIZE fp_block_size;
3468 
3474 
3479 
3484  ExtPartController ext_part_controller;
3485 
3490  MV_STATS mv_stats;
3495 
3501 
3508 #if CONFIG_FPMT_TEST
3515  int wanted_fb;
3516 #endif // CONFIG_FPMT_TEST
3517 
3524 
3525 #if CONFIG_RD_COMMAND
3529  RD_COMMAND rd_command;
3530 #endif // CONFIG_RD_COMMAND
3531 
3535  WeberStats *mb_weber_stats;
3536 
3542 
3548 
3553 
3557  BLOCK_SIZE weber_bsize;
3558 
3563 
3568 
3573 
3574 #if CONFIG_BITRATE_ACCURACY
3578  VBR_RATECTRL_INFO vbr_rc_info;
3579 #endif
3580 
3581 #if CONFIG_RATECTRL_LOG
3585  RATECTRL_LOG rc_log;
3586 #endif // CONFIG_RATECTRL_LOG
3587 
3592 
3593 #if CONFIG_THREE_PASS
3597  THIRD_PASS_DEC_CTX *third_pass_ctx;
3598 #endif
3599 
3604 
3609 
3615  uint64_t rec_sse;
3616 
3622 
3623 #if !CONFIG_REALTIME_ONLY
3627  DuckyEncodeInfo ducky_encode_info;
3628 #endif // CONFIG_REALTIME_ONLY
3629  //
3634 
3638  unsigned int zeromv_skip_thresh_exit_part[BLOCK_SIZES_ALL];
3639 
3645 
3646 #if CONFIG_SALIENCY_MAP
3650  uint8_t *saliency_map;
3651 
3655  double *sm_scaling_factor;
3656 #endif
3657 
3663 
3670 
3674 typedef struct EncodeFrameInput {
3676  YV12_BUFFER_CONFIG *source;
3677  YV12_BUFFER_CONFIG *last_source;
3678  int64_t ts_duration;
3681 
3686 typedef struct EncodeFrameParams {
3694  FRAME_TYPE frame_type;
3695 
3697  int primary_ref_frame;
3698  int order_offset;
3699 
3705 
3707  int refresh_frame_flags;
3708 
3709  int show_existing_frame;
3710  int existing_fb_idx_to_show;
3711 
3717 
3721  int remapped_ref_idx[REF_FRAMES];
3722 
3728 
3732  int speed;
3734 
3737 void av1_initialize_enc(unsigned int usage, enum aom_rc_mode end_usage);
3738 
3739 struct AV1_COMP *av1_create_compressor(AV1_PRIMARY *ppi,
3740  const AV1EncoderConfig *oxcf,
3741  BufferPool *const pool,
3742  COMPRESSOR_STAGE stage,
3743  int lap_lag_in_frames);
3744 
3745 struct AV1_PRIMARY *av1_create_primary_compressor(
3746  struct aom_codec_pkt_list *pkt_list_head, int num_lap_buffers,
3747  const AV1EncoderConfig *oxcf);
3748 
3749 void av1_remove_compressor(AV1_COMP *cpi);
3750 
3751 void av1_remove_primary_compressor(AV1_PRIMARY *ppi);
3752 
3753 #if CONFIG_ENTROPY_STATS
3754 void print_entropy_stats(AV1_PRIMARY *const ppi);
3755 #endif
3756 #if CONFIG_INTERNAL_STATS
3757 void print_internal_stats(AV1_PRIMARY *ppi);
3758 #endif
3759 
3760 void av1_change_config_seq(AV1_PRIMARY *ppi, const AV1EncoderConfig *oxcf,
3761  bool *sb_size_changed);
3762 
3763 void av1_change_config(AV1_COMP *cpi, const AV1EncoderConfig *oxcf,
3764  bool sb_size_changed);
3765 
3766 aom_codec_err_t av1_check_initial_width(AV1_COMP *cpi, int use_highbitdepth,
3767  int subsampling_x, int subsampling_y);
3768 
3769 void av1_post_encode_updates(AV1_COMP *const cpi,
3770  const AV1_COMP_DATA *const cpi_data);
3771 
3772 void av1_release_scaled_references_fpmt(AV1_COMP *cpi);
3773 
3774 void av1_decrement_ref_counts_fpmt(BufferPool *buffer_pool,
3775  int ref_buffers_used_map);
3776 
3777 void av1_init_sc_decisions(AV1_PRIMARY *const ppi);
3778 
3779 AV1_COMP *av1_get_parallel_frame_enc_data(AV1_PRIMARY *const ppi,
3780  AV1_COMP_DATA *const first_cpi_data);
3781 
3782 int av1_init_parallel_frame_context(const AV1_COMP_DATA *const first_cpi_data,
3783  AV1_PRIMARY *const ppi,
3784  int *ref_buffers_used_map);
3785 
3805  const YV12_BUFFER_CONFIG *sd, int64_t time_stamp,
3806  int64_t end_time_stamp);
3807 
3829 int av1_get_compressed_data(AV1_COMP *cpi, AV1_COMP_DATA *const cpi_data);
3830 
3837 int av1_encode(AV1_COMP *const cpi, uint8_t *const dest, size_t dest_size,
3838  const EncodeFrameInput *const frame_input,
3839  const EncodeFrameParams *const frame_params,
3840  size_t *const frame_size);
3841 
3843 int av1_get_preview_raw_frame(AV1_COMP *cpi, YV12_BUFFER_CONFIG *dest);
3844 
3845 int av1_get_last_show_frame(AV1_COMP *cpi, YV12_BUFFER_CONFIG *frame);
3846 
3847 aom_codec_err_t av1_copy_new_frame_enc(AV1_COMMON *cm,
3848  YV12_BUFFER_CONFIG *new_frame,
3849  YV12_BUFFER_CONFIG *sd);
3850 
3851 int av1_use_as_reference(int *ext_ref_frame_flags, int ref_frame_flags);
3852 
3853 int av1_copy_reference_enc(AV1_COMP *cpi, int idx, YV12_BUFFER_CONFIG *sd);
3854 
3855 int av1_set_reference_enc(AV1_COMP *cpi, int idx, YV12_BUFFER_CONFIG *sd);
3856 
3857 void av1_set_frame_size(AV1_COMP *cpi, int width, int height);
3858 
3859 void av1_set_mv_search_params(AV1_COMP *cpi);
3860 
3861 int av1_set_active_map(AV1_COMP *cpi, unsigned char *map, int rows, int cols);
3862 
3863 int av1_get_active_map(AV1_COMP *cpi, unsigned char *map, int rows, int cols);
3864 
3865 int av1_set_internal_size(AV1EncoderConfig *const oxcf,
3866  ResizePendingParams *resize_pending_params,
3867  AOM_SCALING_MODE horiz_mode,
3868  AOM_SCALING_MODE vert_mode);
3869 
3870 int av1_get_quantizer(struct AV1_COMP *cpi);
3871 
3872 // This function assumes that the input buffer contains valid OBUs. It should
3873 // not be called on untrusted input.
3874 int av1_convert_sect5obus_to_annexb(uint8_t *buffer, size_t buffer_size,
3875  size_t *input_size);
3876 
3877 void av1_alloc_mb_wiener_var_pred_buf(AV1_COMMON *cm, ThreadData *td);
3878 
3879 void av1_dealloc_mb_wiener_var_pred_buf(ThreadData *td);
3880 
3881 // Set screen content options.
3882 // This function estimates whether to use screen content tools, by counting
3883 // the portion of blocks that have few luma colors.
3884 // Modifies:
3885 // cpi->commom.features.allow_screen_content_tools
3886 // cpi->common.features.allow_intrabc
3887 // cpi->use_screen_content_tools
3888 // cpi->is_screen_content_type
3889 // However, the estimation is not accurate and may misclassify videos.
3890 // A slower but more accurate approach that determines whether to use screen
3891 // content tools is employed later. See av1_determine_sc_tools_with_encoding().
3892 void av1_set_screen_content_options(struct AV1_COMP *cpi,
3893  FeatureFlags *features);
3894 
3895 void av1_update_frame_size(AV1_COMP *cpi);
3896 
3897 typedef struct {
3898  int pyr_level;
3899  int disp_order;
3900 } RefFrameMapPair;
3901 
3902 static inline void init_ref_map_pair(
3903  AV1_COMP *cpi, RefFrameMapPair ref_frame_map_pairs[REF_FRAMES]) {
3904  if (cpi->ppi->gf_group.update_type[cpi->gf_frame_index] == KF_UPDATE) {
3905  memset(ref_frame_map_pairs, -1, sizeof(*ref_frame_map_pairs) * REF_FRAMES);
3906  return;
3907  }
3908  memset(ref_frame_map_pairs, 0, sizeof(*ref_frame_map_pairs) * REF_FRAMES);
3909  for (int map_idx = 0; map_idx < REF_FRAMES; map_idx++) {
3910  // Get reference frame buffer.
3911  const RefCntBuffer *const buf = cpi->common.ref_frame_map[map_idx];
3912  if (ref_frame_map_pairs[map_idx].disp_order == -1) continue;
3913  if (buf == NULL) {
3914  ref_frame_map_pairs[map_idx].disp_order = -1;
3915  ref_frame_map_pairs[map_idx].pyr_level = -1;
3916  continue;
3917  } else if (buf->ref_count > 1) {
3918  // Once the keyframe is coded, the slots in ref_frame_map will all
3919  // point to the same frame. In that case, all subsequent pointers
3920  // matching the current are considered "free" slots. This will find
3921  // the next occurrence of the current pointer if ref_count indicates
3922  // there are multiple instances of it and mark it as free.
3923  for (int idx2 = map_idx + 1; idx2 < REF_FRAMES; ++idx2) {
3924  const RefCntBuffer *const buf2 = cpi->common.ref_frame_map[idx2];
3925  if (buf2 == buf) {
3926  ref_frame_map_pairs[idx2].disp_order = -1;
3927  ref_frame_map_pairs[idx2].pyr_level = -1;
3928  }
3929  }
3930  }
3931  ref_frame_map_pairs[map_idx].disp_order = (int)buf->display_order_hint;
3932  ref_frame_map_pairs[map_idx].pyr_level = buf->pyramid_level;
3933  }
3934 }
3935 
3936 #if CONFIG_FPMT_TEST
3937 static inline void calc_frame_data_update_flag(
3938  GF_GROUP *const gf_group, int gf_frame_index,
3939  bool *const do_frame_data_update) {
3940  *do_frame_data_update = true;
3941  // Set the flag to false for all frames in a given parallel encode set except
3942  // the last frame in the set with frame_parallel_level = 2.
3943  if (gf_group->frame_parallel_level[gf_frame_index] == 1) {
3944  *do_frame_data_update = false;
3945  } else if (gf_group->frame_parallel_level[gf_frame_index] == 2) {
3946  // Check if this is the last frame in the set with frame_parallel_level = 2.
3947  for (int i = gf_frame_index + 1; i < gf_group->size; i++) {
3948  if ((gf_group->frame_parallel_level[i] == 0 &&
3949  (gf_group->update_type[i] == ARF_UPDATE ||
3950  gf_group->update_type[i] == INTNL_ARF_UPDATE)) ||
3951  gf_group->frame_parallel_level[i] == 1) {
3952  break;
3953  } else if (gf_group->frame_parallel_level[i] == 2) {
3954  *do_frame_data_update = false;
3955  break;
3956  }
3957  }
3958  }
3959 }
3960 #endif
3961 
3962 // av1 uses 10,000,000 ticks/second as time stamp
3963 #define TICKS_PER_SEC 10000000LL
3964 
3965 static inline int64_t timebase_units_to_ticks(
3966  const aom_rational64_t *timestamp_ratio, int64_t n) {
3967  return n * timestamp_ratio->num / timestamp_ratio->den;
3968 }
3969 
3970 static inline int64_t ticks_to_timebase_units(
3971  const aom_rational64_t *timestamp_ratio, int64_t n) {
3972  int64_t round = timestamp_ratio->num / 2;
3973  if (round > 0) --round;
3974  return (n * timestamp_ratio->den + round) / timestamp_ratio->num;
3975 }
3976 
3977 static inline int frame_is_kf_gf_arf(const AV1_COMP *cpi) {
3978  const GF_GROUP *const gf_group = &cpi->ppi->gf_group;
3979  const FRAME_UPDATE_TYPE update_type =
3980  gf_group->update_type[cpi->gf_frame_index];
3981 
3982  return frame_is_intra_only(&cpi->common) || update_type == ARF_UPDATE ||
3983  update_type == GF_UPDATE;
3984 }
3985 
3986 // TODO(huisu@google.com, youzhou@microsoft.com): enable hash-me for HBD.
3987 static inline int av1_use_hash_me(const AV1_COMP *const cpi) {
3989  cpi->common.features.allow_intrabc &&
3990  frame_is_intra_only(&cpi->common));
3991 }
3992 
3993 static inline const YV12_BUFFER_CONFIG *get_ref_frame_yv12_buf(
3994  const AV1_COMMON *const cm, MV_REFERENCE_FRAME ref_frame) {
3995  const RefCntBuffer *const buf = get_ref_frame_buf(cm, ref_frame);
3996  return buf != NULL ? &buf->buf : NULL;
3997 }
3998 
3999 static inline void alloc_frame_mvs(AV1_COMMON *const cm, RefCntBuffer *buf) {
4000  assert(buf != NULL);
4001  ensure_mv_buffer(buf, cm);
4002  buf->width = cm->width;
4003  buf->height = cm->height;
4004 }
4005 
4006 // Get the allocated token size for a tile. It does the same calculation as in
4007 // the frame token allocation.
4008 static inline unsigned int allocated_tokens(const TileInfo *tile,
4009  int sb_size_log2, int num_planes) {
4010  int tile_mb_rows =
4011  ROUND_POWER_OF_TWO(tile->mi_row_end - tile->mi_row_start, 2);
4012  int tile_mb_cols =
4013  ROUND_POWER_OF_TWO(tile->mi_col_end - tile->mi_col_start, 2);
4014 
4015  return get_token_alloc(tile_mb_rows, tile_mb_cols, sb_size_log2, num_planes);
4016 }
4017 
4018 static inline void get_start_tok(AV1_COMP *cpi, int tile_row, int tile_col,
4019  int mi_row, TokenExtra **tok, int sb_size_log2,
4020  int num_planes) {
4021  AV1_COMMON *const cm = &cpi->common;
4022  const int tile_cols = cm->tiles.cols;
4023  TileDataEnc *this_tile = &cpi->tile_data[tile_row * tile_cols + tile_col];
4024  const TileInfo *const tile_info = &this_tile->tile_info;
4025 
4026  const int tile_mb_cols =
4027  (tile_info->mi_col_end - tile_info->mi_col_start + 2) >> 2;
4028  const int tile_mb_row = (mi_row - tile_info->mi_row_start + 2) >> 2;
4029 
4030  *tok = cpi->token_info.tile_tok[tile_row][tile_col] +
4031  get_token_alloc(tile_mb_row, tile_mb_cols, sb_size_log2, num_planes);
4032 }
4033 
4034 void av1_apply_encoding_flags(AV1_COMP *cpi, aom_enc_frame_flags_t flags);
4035 
4036 #define ALT_MIN_LAG 3
4037 static inline int is_altref_enabled(int lag_in_frames, bool enable_auto_arf) {
4038  return lag_in_frames >= ALT_MIN_LAG && enable_auto_arf;
4039 }
4040 
4041 static inline int can_disable_altref(const GFConfig *gf_cfg) {
4042  return is_altref_enabled(gf_cfg->lag_in_frames, gf_cfg->enable_auto_arf) &&
4043  (gf_cfg->gf_min_pyr_height == 0);
4044 }
4045 
4046 // Helper function to compute number of blocks on either side of the frame.
4047 static inline int get_num_blocks(const int frame_length, const int mb_length) {
4048  return (frame_length + mb_length - 1) / mb_length;
4049 }
4050 
4051 // Check if statistics generation stage
4052 static inline int is_stat_generation_stage(const AV1_COMP *const cpi) {
4053  assert(IMPLIES(cpi->compressor_stage == LAP_STAGE,
4054  cpi->oxcf.pass == AOM_RC_ONE_PASS && cpi->ppi->lap_enabled));
4055  return (cpi->oxcf.pass == AOM_RC_FIRST_PASS ||
4056  (cpi->compressor_stage == LAP_STAGE));
4057 }
4058 // Check if statistics consumption stage
4059 static inline int is_stat_consumption_stage_twopass(const AV1_COMP *const cpi) {
4060  return (cpi->oxcf.pass >= AOM_RC_SECOND_PASS);
4061 }
4062 
4063 // Check if statistics consumption stage
4064 static inline int is_stat_consumption_stage(const AV1_COMP *const cpi) {
4065  return (is_stat_consumption_stage_twopass(cpi) ||
4066  (cpi->oxcf.pass == AOM_RC_ONE_PASS &&
4067  (cpi->compressor_stage == ENCODE_STAGE) && cpi->ppi->lap_enabled));
4068 }
4069 
4070 // Decide whether 'dv_costs' need to be allocated/stored during the encoding.
4071 static inline bool av1_need_dv_costs(const AV1_COMP *const cpi) {
4072  return !cpi->sf.rt_sf.use_nonrd_pick_mode &&
4073  av1_allow_intrabc(&cpi->common) && !is_stat_generation_stage(cpi);
4074 }
4075 
4085 static inline int has_no_stats_stage(const AV1_COMP *const cpi) {
4086  assert(
4087  IMPLIES(!cpi->ppi->lap_enabled, cpi->compressor_stage == ENCODE_STAGE));
4088  return (cpi->oxcf.pass == AOM_RC_ONE_PASS && !cpi->ppi->lap_enabled);
4089 }
4090 
4093 static inline int is_one_pass_rt_params(const AV1_COMP *cpi) {
4094  return has_no_stats_stage(cpi) && cpi->oxcf.mode == REALTIME &&
4095  cpi->oxcf.gf_cfg.lag_in_frames == 0;
4096 }
4097 
4098 // Use default/internal reference structure for single-layer RTC.
4099 static inline int use_rtc_reference_structure_one_layer(const AV1_COMP *cpi) {
4100  return is_one_pass_rt_params(cpi) && cpi->ppi->number_spatial_layers == 1 &&
4101  cpi->ppi->number_temporal_layers == 1 &&
4102  !cpi->ppi->rtc_ref.set_ref_frame_config;
4103 }
4104 
4105 // Check if postencode drop is allowed.
4106 static inline int allow_postencode_drop_rtc(const AV1_COMP *cpi) {
4107  const AV1_COMMON *const cm = &cpi->common;
4108  return is_one_pass_rt_params(cpi) && cpi->oxcf.rc_cfg.mode == AOM_CBR &&
4109  cpi->oxcf.rc_cfg.drop_frames_water_mark > 0 &&
4110  !cpi->rc.rtc_external_ratectrl && !frame_is_intra_only(cm) &&
4111  cpi->svc.spatial_layer_id == 0;
4112 }
4113 
4114 // Function return size of frame stats buffer
4115 static inline int get_stats_buf_size(int num_lap_buffer, int num_lag_buffer) {
4116  /* if lookahead is enabled return num_lap_buffers else num_lag_buffers */
4117  return (num_lap_buffer > 0 ? num_lap_buffer + 1 : num_lag_buffer);
4118 }
4119 
4120 // TODO(zoeliu): To set up cpi->oxcf.gf_cfg.enable_auto_brf
4121 
4122 static inline void set_ref_ptrs(const AV1_COMMON *cm, MACROBLOCKD *xd,
4123  MV_REFERENCE_FRAME ref0,
4124  MV_REFERENCE_FRAME ref1) {
4125  xd->block_ref_scale_factors[0] =
4126  get_ref_scale_factors_const(cm, ref0 >= LAST_FRAME ? ref0 : 1);
4127  xd->block_ref_scale_factors[1] =
4128  get_ref_scale_factors_const(cm, ref1 >= LAST_FRAME ? ref1 : 1);
4129 }
4130 
4131 static inline int get_chessboard_index(int frame_index) {
4132  return frame_index & 0x1;
4133 }
4134 
4135 static inline const int *cond_cost_list_const(const struct AV1_COMP *cpi,
4136  const int *cost_list) {
4137  const int use_cost_list = cpi->sf.mv_sf.subpel_search_method != SUBPEL_TREE &&
4138  cpi->sf.mv_sf.use_fullpel_costlist;
4139  return use_cost_list ? cost_list : NULL;
4140 }
4141 
4142 static inline int *cond_cost_list(const struct AV1_COMP *cpi, int *cost_list) {
4143  const int use_cost_list = cpi->sf.mv_sf.subpel_search_method != SUBPEL_TREE &&
4144  cpi->sf.mv_sf.use_fullpel_costlist;
4145  return use_cost_list ? cost_list : NULL;
4146 }
4147 
4148 // Compression ratio of current frame.
4149 double av1_get_compression_ratio(const AV1_COMMON *const cm,
4150  size_t encoded_frame_size);
4151 
4152 void av1_new_framerate(AV1_COMP *cpi, double framerate);
4153 
4154 void av1_setup_frame_size(AV1_COMP *cpi);
4155 
4156 #define LAYER_IDS_TO_IDX(sl, tl, num_tl) ((sl) * (num_tl) + (tl))
4157 
4158 // Returns 1 if a frame is scaled and 0 otherwise.
4159 static inline int av1_resize_scaled(const AV1_COMMON *cm) {
4160  return cm->superres_upscaled_width != cm->render_width ||
4162 }
4163 
4164 static inline int av1_frame_scaled(const AV1_COMMON *cm) {
4165  return av1_superres_scaled(cm) || av1_resize_scaled(cm);
4166 }
4167 
4168 // Don't allow a show_existing_frame to coincide with an error resilient
4169 // frame. An exception can be made for a forward keyframe since it has no
4170 // previous dependencies.
4171 static inline int encode_show_existing_frame(const AV1_COMMON *cm) {
4172  return cm->show_existing_frame && (!cm->features.error_resilient_mode ||
4173  cm->current_frame.frame_type == KEY_FRAME);
4174 }
4175 
4176 // Get index into the 'cpi->mbmi_ext_info.frame_base' array for the given
4177 // 'mi_row' and 'mi_col'.
4178 static inline int get_mi_ext_idx(const int mi_row, const int mi_col,
4179  const BLOCK_SIZE mi_alloc_bsize,
4180  const int mbmi_ext_stride) {
4181  const int mi_ext_size_1d = mi_size_wide[mi_alloc_bsize];
4182  const int mi_ext_row = mi_row / mi_ext_size_1d;
4183  const int mi_ext_col = mi_col / mi_ext_size_1d;
4184  return mi_ext_row * mbmi_ext_stride + mi_ext_col;
4185 }
4186 
4187 // Lighter version of set_offsets that only sets the mode info
4188 // pointers.
4189 static inline void set_mode_info_offsets(
4190  const CommonModeInfoParams *const mi_params,
4191  const MBMIExtFrameBufferInfo *const mbmi_ext_info, MACROBLOCK *const x,
4192  MACROBLOCKD *const xd, int mi_row, int mi_col) {
4193  set_mi_offsets(mi_params, xd, mi_row, mi_col);
4194  const int ext_idx = get_mi_ext_idx(mi_row, mi_col, mi_params->mi_alloc_bsize,
4195  mbmi_ext_info->stride);
4196  x->mbmi_ext_frame = mbmi_ext_info->frame_base + ext_idx;
4197 }
4198 
4199 // Check to see if the given partition size is allowed for a specified number
4200 // of mi block rows and columns remaining in the image.
4201 // If not then return the largest allowed partition size
4202 static inline BLOCK_SIZE find_partition_size(BLOCK_SIZE bsize, int rows_left,
4203  int cols_left, int *bh, int *bw) {
4204  int int_size = (int)bsize;
4205  if (rows_left <= 0 || cols_left <= 0) {
4206  return AOMMIN(bsize, BLOCK_8X8);
4207  } else {
4208  for (; int_size > 0; int_size -= 3) {
4209  *bh = mi_size_high[int_size];
4210  *bw = mi_size_wide[int_size];
4211  if ((*bh <= rows_left) && (*bw <= cols_left)) {
4212  break;
4213  }
4214  }
4215  }
4216  return (BLOCK_SIZE)int_size;
4217 }
4218 
4219 static const uint8_t av1_ref_frame_flag_list[REF_FRAMES] = { 0,
4220  AOM_LAST_FLAG,
4221  AOM_LAST2_FLAG,
4222  AOM_LAST3_FLAG,
4223  AOM_GOLD_FLAG,
4224  AOM_BWD_FLAG,
4225  AOM_ALT2_FLAG,
4226  AOM_ALT_FLAG };
4227 
4228 // When more than 'max_allowed_refs' are available, we reduce the number of
4229 // reference frames one at a time based on this order.
4230 static const MV_REFERENCE_FRAME disable_order[] = {
4231  LAST3_FRAME,
4232  LAST2_FRAME,
4233  ALTREF2_FRAME,
4234  BWDREF_FRAME,
4235 };
4236 
4237 static const MV_REFERENCE_FRAME
4238  ref_frame_priority_order[INTER_REFS_PER_FRAME] = {
4239  LAST_FRAME, ALTREF_FRAME, BWDREF_FRAME, GOLDEN_FRAME,
4240  ALTREF2_FRAME, LAST2_FRAME, LAST3_FRAME,
4241  };
4242 
4243 static inline int get_ref_frame_flags(const SPEED_FEATURES *const sf,
4244  const int use_one_pass_rt_params,
4245  const YV12_BUFFER_CONFIG **ref_frames,
4246  const int ext_ref_frame_flags) {
4247  // cpi->ext_flags.ref_frame_flags allows certain reference types to be
4248  // disabled by the external interface. These are set by
4249  // av1_apply_encoding_flags(). Start with what the external interface allows,
4250  // then suppress any reference types which we have found to be duplicates.
4251  int flags = ext_ref_frame_flags;
4252 
4253  for (int i = 1; i < INTER_REFS_PER_FRAME; ++i) {
4254  const YV12_BUFFER_CONFIG *const this_ref = ref_frames[i];
4255  // If this_ref has appeared before, mark the corresponding ref frame as
4256  // invalid. For one_pass_rt mode, only disable GOLDEN_FRAME if it's the
4257  // same as LAST_FRAME or ALTREF_FRAME (if ALTREF is being used in nonrd).
4258  int index =
4259  (use_one_pass_rt_params && ref_frame_priority_order[i] == GOLDEN_FRAME)
4260  ? (1 + sf->rt_sf.use_nonrd_altref_frame)
4261  : i;
4262  for (int j = 0; j < index; ++j) {
4263  // If this_ref has appeared before (same as the reference corresponding
4264  // to lower index j), remove it as a reference only if that reference
4265  // (for index j) is actually used as a reference.
4266  if (this_ref == ref_frames[j] &&
4267  (flags & (1 << (ref_frame_priority_order[j] - 1)))) {
4268  flags &= ~(1 << (ref_frame_priority_order[i] - 1));
4269  break;
4270  }
4271  }
4272  }
4273  return flags;
4274 }
4275 
4276 // Returns a Sequence Header OBU stored in an aom_fixed_buf_t, or NULL upon
4277 // failure. When a non-NULL aom_fixed_buf_t pointer is returned by this
4278 // function, the memory must be freed by the caller. Both the buf member of the
4279 // aom_fixed_buf_t, and the aom_fixed_buf_t pointer itself must be freed. Memory
4280 // returned must be freed via call to free().
4281 //
4282 // Note: The OBU returned is in Low Overhead Bitstream Format. Specifically,
4283 // the obu_has_size_field bit is set, and the buffer contains the obu_size
4284 // field.
4285 aom_fixed_buf_t *av1_get_global_headers(AV1_PRIMARY *ppi);
4286 
4287 #define MAX_GFUBOOST_FACTOR 10.0
4288 #define MIN_GFUBOOST_FACTOR 4.0
4289 
4290 static inline int is_frame_tpl_eligible(const GF_GROUP *const gf_group,
4291  uint8_t index) {
4292  const FRAME_UPDATE_TYPE update_type = gf_group->update_type[index];
4293  return update_type == ARF_UPDATE || update_type == GF_UPDATE ||
4294  update_type == KF_UPDATE;
4295 }
4296 
4297 static inline int is_frame_eligible_for_ref_pruning(const GF_GROUP *gf_group,
4298  int selective_ref_frame,
4299  int prune_ref_frames,
4300  int gf_index) {
4301  return (selective_ref_frame > 0) && (prune_ref_frames > 0) &&
4302  !is_frame_tpl_eligible(gf_group, gf_index);
4303 }
4304 
4305 // Get update type of the current frame.
4306 static inline FRAME_UPDATE_TYPE get_frame_update_type(const GF_GROUP *gf_group,
4307  int gf_frame_index) {
4308  return gf_group->update_type[gf_frame_index];
4309 }
4310 
4311 static inline int av1_pixels_to_mi(int pixels) {
4312  return ALIGN_POWER_OF_TWO(pixels, 3) >> MI_SIZE_LOG2;
4313 }
4314 
4315 static inline int is_psnr_calc_enabled(const AV1_COMP *cpi) {
4316  const AV1_COMMON *const cm = &cpi->common;
4317 
4318  return cpi->ppi->b_calculate_psnr && !is_stat_generation_stage(cpi) &&
4319  cm->show_frame && !cpi->is_dropped_frame;
4320 }
4321 
4322 static inline int is_frame_resize_pending(const AV1_COMP *const cpi) {
4323  const ResizePendingParams *const resize_pending_params =
4324  &cpi->resize_pending_params;
4325  return (resize_pending_params->width && resize_pending_params->height &&
4326  (cpi->common.width != resize_pending_params->width ||
4327  cpi->common.height != resize_pending_params->height));
4328 }
4329 
4330 // Check if loop filter is used.
4331 static inline int is_loopfilter_used(const AV1_COMMON *const cm) {
4332  return !cm->features.coded_lossless && !cm->tiles.large_scale;
4333 }
4334 
4335 // Check if CDEF is used.
4336 static inline int is_cdef_used(const AV1_COMMON *const cm) {
4337  return cm->seq_params->enable_cdef && !cm->features.coded_lossless &&
4338  !cm->tiles.large_scale;
4339 }
4340 
4341 // Check if loop restoration filter is used.
4342 static inline int is_restoration_used(const AV1_COMMON *const cm) {
4343  return cm->seq_params->enable_restoration && !cm->features.all_lossless &&
4344  !cm->tiles.large_scale;
4345 }
4346 
4347 // Checks if post-processing filters need to be applied.
4348 // NOTE: This function decides if the application of different post-processing
4349 // filters on the reconstructed frame can be skipped at the encoder side.
4350 // However the computation of different filter parameters that are signaled in
4351 // the bitstream is still required.
4352 static inline unsigned int derive_skip_apply_postproc_filters(
4353  const AV1_COMP *cpi, int use_loopfilter, int use_cdef, int use_superres,
4354  int use_restoration) {
4355  // Though CDEF parameter selection should be dependent on
4356  // deblocked/loop-filtered pixels for cdef_pick_method <=
4357  // CDEF_FAST_SEARCH_LVL5, CDEF strength values are calculated based on the
4358  // pixel values that are not loop-filtered in svc real-time encoding mode.
4359  // Hence this case is handled separately using the condition below.
4360  if (cpi->ppi->rtc_ref.non_reference_frame)
4361  return (SKIP_APPLY_LOOPFILTER | SKIP_APPLY_CDEF);
4362 
4364  return 0;
4365  assert(cpi->oxcf.mode == ALLINTRA);
4366 
4367  // The post-processing filters are applied one after the other in the
4368  // following order: deblocking->cdef->superres->restoration. In case of
4369  // ALLINTRA encoding, the reconstructed frame is not used as a reference
4370  // frame. Hence, the application of these filters can be skipped when
4371  // 1. filter parameters of the subsequent stages are not dependent on the
4372  // filtered output of the current stage or
4373  // 2. subsequent filtering stages are disabled
4374  if (use_restoration) return SKIP_APPLY_RESTORATION;
4375  if (use_superres) return SKIP_APPLY_SUPERRES;
4376  if (use_cdef) {
4377  // CDEF parameter selection is not dependent on the deblocked frame if
4378  // cdef_pick_method is CDEF_PICK_FROM_Q. Hence the application of deblocking
4379  // filters and cdef filters can be skipped in this case.
4380  return (cpi->sf.lpf_sf.cdef_pick_method == CDEF_PICK_FROM_Q &&
4381  use_loopfilter)
4382  ? (SKIP_APPLY_LOOPFILTER | SKIP_APPLY_CDEF)
4383  : SKIP_APPLY_CDEF;
4384  }
4385  if (use_loopfilter) return SKIP_APPLY_LOOPFILTER;
4386 
4387  // If we reach here, all post-processing stages are disabled, so none need to
4388  // be skipped.
4389  return 0;
4390 }
4391 
4392 static inline void set_postproc_filter_default_params(AV1_COMMON *cm) {
4393  struct loopfilter *const lf = &cm->lf;
4394  CdefInfo *const cdef_info = &cm->cdef_info;
4395  RestorationInfo *const rst_info = cm->rst_info;
4396 
4397  lf->filter_level[0] = 0;
4398  lf->filter_level[1] = 0;
4399  cdef_info->cdef_bits = 0;
4400  cdef_info->cdef_strengths[0] = 0;
4401  cdef_info->nb_cdef_strengths = 1;
4402  cdef_info->cdef_uv_strengths[0] = 0;
4403  rst_info[0].frame_restoration_type = RESTORE_NONE;
4404  rst_info[1].frame_restoration_type = RESTORE_NONE;
4405  rst_info[2].frame_restoration_type = RESTORE_NONE;
4406 }
4407 
4408 static inline int is_inter_tx_size_search_level_one(
4409  const TX_SPEED_FEATURES *tx_sf) {
4410  return (tx_sf->inter_tx_size_search_init_depth_rect >= 1 &&
4411  tx_sf->inter_tx_size_search_init_depth_sqr >= 1);
4412 }
4413 
4414 static inline int get_lpf_opt_level(const SPEED_FEATURES *sf) {
4415  int lpf_opt_level = 0;
4416  if (is_inter_tx_size_search_level_one(&sf->tx_sf))
4417  lpf_opt_level = (sf->lpf_sf.lpf_pick == LPF_PICK_FROM_Q) ? 2 : 1;
4418  return lpf_opt_level;
4419 }
4420 
4421 // Enable switchable motion mode only if warp and OBMC tools are allowed
4422 static inline bool is_switchable_motion_mode_allowed(bool allow_warped_motion,
4423  bool enable_obmc) {
4424  return (allow_warped_motion || enable_obmc);
4425 }
4426 
4427 #if CONFIG_AV1_TEMPORAL_DENOISING
4428 static inline int denoise_svc(const struct AV1_COMP *const cpi) {
4429  return (!cpi->ppi->use_svc ||
4430  (cpi->ppi->use_svc &&
4431  cpi->svc.spatial_layer_id >= cpi->svc.first_layer_denoise));
4432 }
4433 #endif
4434 
4435 #if CONFIG_COLLECT_PARTITION_STATS == 2
4436 static inline void av1_print_fr_partition_timing_stats(
4437  const FramePartitionTimingStats *part_stats, const char *filename) {
4438  FILE *f = fopen(filename, "w");
4439  if (!f) {
4440  return;
4441  }
4442 
4443  fprintf(f, "bsize,redo,");
4444  for (int part = 0; part < EXT_PARTITION_TYPES; part++) {
4445  fprintf(f, "decision_%d,", part);
4446  }
4447  for (int part = 0; part < EXT_PARTITION_TYPES; part++) {
4448  fprintf(f, "attempt_%d,", part);
4449  }
4450  for (int part = 0; part < EXT_PARTITION_TYPES; part++) {
4451  fprintf(f, "time_%d,", part);
4452  }
4453  fprintf(f, "\n");
4454 
4455  static const int bsizes[6] = { 128, 64, 32, 16, 8, 4 };
4456 
4457  for (int bsize_idx = 0; bsize_idx < 6; bsize_idx++) {
4458  fprintf(f, "%d,%d,", bsizes[bsize_idx], part_stats->partition_redo);
4459  for (int part = 0; part < EXT_PARTITION_TYPES; part++) {
4460  fprintf(f, "%d,", part_stats->partition_decisions[bsize_idx][part]);
4461  }
4462  for (int part = 0; part < EXT_PARTITION_TYPES; part++) {
4463  fprintf(f, "%d,", part_stats->partition_attempts[bsize_idx][part]);
4464  }
4465  for (int part = 0; part < EXT_PARTITION_TYPES; part++) {
4466  fprintf(f, "%ld,", part_stats->partition_times[bsize_idx][part]);
4467  }
4468  fprintf(f, "\n");
4469  }
4470  fclose(f);
4471 }
4472 #endif // CONFIG_COLLECT_PARTITION_STATS == 2
4473 
4474 #if CONFIG_COLLECT_PARTITION_STATS
4475 static inline int av1_get_bsize_idx_for_part_stats(BLOCK_SIZE bsize) {
4476  assert(bsize == BLOCK_128X128 || bsize == BLOCK_64X64 ||
4477  bsize == BLOCK_32X32 || bsize == BLOCK_16X16 || bsize == BLOCK_8X8 ||
4478  bsize == BLOCK_4X4);
4479  switch (bsize) {
4480  case BLOCK_128X128: return 0;
4481  case BLOCK_64X64: return 1;
4482  case BLOCK_32X32: return 2;
4483  case BLOCK_16X16: return 3;
4484  case BLOCK_8X8: return 4;
4485  case BLOCK_4X4: return 5;
4486  default: assert(0 && "Invalid bsize for partition_stats."); return -1;
4487  }
4488 }
4489 #endif // CONFIG_COLLECT_PARTITION_STATS
4490 
4491 #if CONFIG_COLLECT_COMPONENT_TIMING
4492 static inline void start_timing(AV1_COMP *cpi, int component) {
4493  aom_usec_timer_start(&cpi->component_timer[component]);
4494 }
4495 static inline void end_timing(AV1_COMP *cpi, int component) {
4496  aom_usec_timer_mark(&cpi->component_timer[component]);
4497  cpi->frame_component_time[component] +=
4498  aom_usec_timer_elapsed(&cpi->component_timer[component]);
4499 }
4500 static inline char const *get_frame_type_enum(int type) {
4501  switch (type) {
4502  case 0: return "KEY_FRAME";
4503  case 1: return "INTER_FRAME";
4504  case 2: return "INTRA_ONLY_FRAME";
4505  case 3: return "S_FRAME";
4506  default: assert(0);
4507  }
4508  return "error";
4509 }
4510 #endif
4511 
4514 #ifdef __cplusplus
4515 } // extern "C"
4516 #endif
4517 
4518 #endif // AOM_AV1_ENCODER_ENCODER_H_
enum aom_chroma_sample_position aom_chroma_sample_position_t
List of chroma sample positions.
enum aom_transfer_characteristics aom_transfer_characteristics_t
List of supported transfer functions.
enum aom_color_range aom_color_range_t
List of supported color range.
enum aom_color_primaries aom_color_primaries_t
List of supported color primaries.
enum aom_matrix_coefficients aom_matrix_coefficients_t
List of supported matrix coefficients.
Provides definitions for using AOM or AV1 encoder algorithm within the aom Codec Interface.
struct AV1_COMP AV1_COMP
Top level encoder structure.
COST_UPDATE_TYPE
This enum controls how often the entropy costs should be updated.
Definition: encoder.h:220
@ COST_UPD_SBROW
Definition: encoder.h:222
@ COST_UPD_TILE
Definition: encoder.h:223
@ COST_UPD_OFF
Definition: encoder.h:224
@ NUM_COST_UPDATE_TYPES
Definition: encoder.h:225
@ COST_UPD_SB
Definition: encoder.h:221
struct EncodeFrameParams EncodeFrameParams
contains per-frame encoding parameters decided upon by av1_encode_strategy() and passed down to av1_e...
struct PrimaryMultiThreadInfo PrimaryMultiThreadInfo
Primary Encoder parameters related to multi-threading.
struct EncodeFrameInput EncodeFrameInput
Input frames and last input frame.
struct MultiThreadInfo MultiThreadInfo
Encoder parameters related to multi-threading.
struct AV1_COMP_DATA AV1_COMP_DATA
Structure to hold data corresponding to an encoded frame.
LOOPFILTER_CONTROL
This enum controls to which frames loopfilter is applied.
Definition: encoder.h:231
@ LOOPFILTER_ALL
Definition: encoder.h:233
@ LOOPFILTER_SELECTIVELY
Definition: encoder.h:235
@ LOOPFILTER_REFERENCE
Definition: encoder.h:234
@ LOOPFILTER_NONE
Definition: encoder.h:232
#define NUM_RECODES_PER_FRAME
Max number of recodes used to track the frame probabilities.
Definition: encoder.h:1623
struct AV1_PRIMARY AV1_PRIMARY
Top level primary encoder structure.
struct inter_modes_info InterModesInfo
Struct used to hold inter mode data for fast tx search.
SKIP_APPLY_POSTPROC_FILTER
This enum controls the application of post-processing filters on a reconstructed frame.
Definition: encoder.h:243
struct RestoreStateBuffers RestoreStateBuffers
Buffers to be backed up during parallel encode set to be restored later.
struct AV1EncoderConfig AV1EncoderConfig
Main encoder configuration data structure.
#define MAX_PARALLEL_FRAMES
Max number of frames that can be encoded in a parallel encode set.
Definition: encoder.h:1628
RestorationType
This enumeration defines various restoration types supported.
Definition: enums.h:609
@ RESTORE_NONE
Definition: enums.h:610
@ RESTORE_SWITCHABLE_TYPES
Definition: enums.h:614
@ RESTORE_TYPES
Definition: enums.h:615
aom_dist_metric
Distortion metric to use for RD optimization.
Definition: aomcx.h:1683
aom_tune_content
Definition: aomcx.h:1644
enum aom_scaling_mode_1d AOM_SCALING_MODE
aom 1-D scaling mode
aom_tune_metric
Model tuning parameters.
Definition: aomcx.h:1663
enum aom_bit_depth aom_bit_depth_t
Bit depth for codecThis enumeration determines the bit depth of the codec.
enum aom_superblock_size aom_superblock_size_t
Superblock size selection.
aom_codec_err_t
Algorithm return codes.
Definition: aom_codec.h:155
aom_superres_mode
Frame super-resolution mode.
Definition: aom_encoder.h:207
aom_rc_mode
Rate control mode.
Definition: aom_encoder.h:185
aom_enc_pass
Multi-pass Encoding Pass.
Definition: aom_encoder.h:176
long aom_enc_frame_flags_t
Encoded Frame Flags.
Definition: aom_encoder.h:377
@ AOM_CBR
Definition: aom_encoder.h:187
@ AOM_RC_ONE_PASS
Definition: aom_encoder.h:177
@ AOM_RC_SECOND_PASS
Definition: aom_encoder.h:179
@ AOM_RC_FIRST_PASS
Definition: aom_encoder.h:178
int av1_get_compressed_data(AV1_COMP *cpi, AV1_COMP_DATA *const cpi_data)
Encode a frame.
Definition: encoder.c:4722
int av1_encode(AV1_COMP *const cpi, uint8_t *const dest, size_t dest_size, const EncodeFrameInput *const frame_input, const EncodeFrameParams *const frame_params, size_t *const frame_size)
Run 1-pass/2-pass encoding.
Definition: encoder.c:4014
int av1_receive_raw_frame(AV1_COMP *cpi, aom_enc_frame_flags_t frame_flags, const YV12_BUFFER_CONFIG *sd, int64_t time_stamp, int64_t end_time_stamp)
Obtain the raw frame data.
Definition: encoder.c:4112
static int has_no_stats_stage(const AV1_COMP *const cpi)
Check if the current stage has statistics.
Definition: encoder.h:4085
Describes look ahead buffer operations.
@ CDEF_PICK_FROM_Q
Definition: speed_features.h:172
Top level common structure used by both encoder and decoder.
Definition: av1_common_int.h:757
RestorationInfo rst_info[3]
Definition: av1_common_int.h:953
int superres_upscaled_width
Definition: av1_common_int.h:806
int superres_upscaled_height
Definition: av1_common_int.h:807
SequenceHeader * seq_params
Definition: av1_common_int.h:983
int width
Definition: av1_common_int.h:782
CdefInfo cdef_info
Definition: av1_common_int.h:962
CurrentFrame current_frame
Definition: av1_common_int.h:761
int show_existing_frame
Definition: av1_common_int.h:907
struct loopfilter lf
Definition: av1_common_int.h:946
FeatureFlags features
Definition: av1_common_int.h:912
int show_frame
Definition: av1_common_int.h:892
RefCntBuffer * ref_frame_map[REF_FRAMES]
Definition: av1_common_int.h:885
CommonTileParams tiles
Definition: av1_common_int.h:999
int height
Definition: av1_common_int.h:783
int render_width
Definition: av1_common_int.h:793
int render_height
Definition: av1_common_int.h:794
Encoder data related to multi-threading for allintra deltaq-mode=3.
Definition: encoder.h:1593
pthread_mutex_t * mutex_
Definition: encoder.h:1598
pthread_cond_t * cond_
Definition: encoder.h:1602
Encoder data related to row-based multi-threading.
Definition: encoder.h:1503
int allocated_sb_rows
Definition: encoder.h:1542
pthread_mutex_t * mutex_
Definition: encoder.h:1568
int allocated_tile_cols
Definition: encoder.h:1511
bool firstpass_mt_exit
Definition: encoder.h:1555
int allocated_cols
Definition: encoder.h:1525
bool mb_wiener_mt_exit
Definition: encoder.h:1562
pthread_cond_t * cond_
Definition: encoder.h:1572
bool row_mt_exit
Definition: encoder.h:1548
int allocated_tile_rows
Definition: encoder.h:1507
int allocated_rows
Definition: encoder.h:1518
int * num_tile_cols_done
Definition: encoder.h:1536
Encoder parameters for synchronization of row based multi-threading.
Definition: encoder.h:1385
int rows
Definition: encoder.h:1418
int sync_range
Definition: encoder.h:1407
int intrabc_extra_top_right_sb_delay
Definition: encoder.h:1414
int next_mi_row
Definition: encoder.h:1422
pthread_mutex_t * mutex_
Definition: encoder.h:1391
pthread_cond_t * cond_
Definition: encoder.h:1392
int num_threads_working
Definition: encoder.h:1426
Main encoder configuration data structure.
Definition: encoder.h:925
RateControlCfg rc_cfg
Definition: encoder.h:947
KeyFrameCfg kf_cfg
Definition: encoder.h:942
enum aom_enc_pass pass
Definition: encoder.h:1050
AlgoCfg algo_cfg
Definition: encoder.h:937
aom_fixed_buf_t twopass_stats_in
Definition: encoder.h:964
Structure to hold search parameter per restoration unit and intermediate buffer of Wiener filter used...
Definition: encoder.h:1682
int16_t * dgd_avg
Definition: encoder.h:1692
Structure to hold data corresponding to an encoded frame.
Definition: encoder.h:2524
int64_t ts_frame_end
Definition: encoder.h:2553
int pop_lookahead
Definition: encoder.h:2568
int64_t ts_frame_start
Definition: encoder.h:2548
unsigned char * cx_data
Definition: encoder.h:2528
size_t cx_data_sz
Definition: encoder.h:2533
int flush
Definition: encoder.h:2558
unsigned int lib_flags
Definition: encoder.h:2543
size_t frame_size
Definition: encoder.h:2538
const aom_rational64_t * timestamp_ratio
Definition: encoder.h:2563
Top level encoder structure.
Definition: encoder.h:2870
double * ext_rate_distribution
Definition: encoder.h:3547
int do_update_frame_probs_warp[10]
Definition: encoder.h:3256
uint8_t * consec_zero_mv
Definition: encoder.h:3457
int do_update_frame_probs_obmc[10]
Definition: encoder.h:3251
struct aom_denoise_and_model_t * denoise_and_model
Definition: encoder.h:3324
int skip_tpl_setup_stats
Definition: encoder.h:2978
int frames_since_last_update
Definition: encoder.h:3633
int * mb_delta_q
Definition: encoder.h:3567
int vaq_refresh
Definition: encoder.h:3226
FRAME_TYPE last_frame_type
Definition: encoder.h:3422
YV12_BUFFER_CONFIG * unscaled_source
Definition: encoder.h:2946
int palette_pixel_num
Definition: encoder.h:3662
CYCLIC_REFRESH * cyclic_refresh
Definition: encoder.h:3118
RATE_CONTROL rc
Definition: encoder.h:3077
int deltaq_used
Definition: encoder.h:3380
ActiveMap active_map
Definition: encoder.h:3123
bool frame_size_related_setup_done
Definition: encoder.h:3189
TuneVMAFInfo vmaf_info
Definition: encoder.h:3398
WeberStats * mb_weber_stats
Definition: encoder.h:3535
bool refresh_idx_available
Definition: encoder.h:3500
TokenInfo token_info
Definition: encoder.h:3221
int64_t ambient_err
Definition: encoder.h:3046
aom_film_grain_table_t * film_grain_table
Definition: encoder.h:3317
int ref_refresh_index
Definition: encoder.h:3494
size_t available_bs_size
Definition: encoder.h:3478
SPEED_FEATURES sf
Definition: encoder.h:3097
TRELLIS_OPT_TYPE optimize_seg_arr[8]
Definition: encoder.h:2924
ExtPartController ext_part_controller
Definition: encoder.h:3484
FILE * second_pass_log_stream
Definition: encoder.h:3603
double * ssim_rdmult_scaling_factors
Definition: encoder.h:3392
RD_OPT rd
Definition: encoder.h:3051
int data_alloc_height
Definition: encoder.h:3175
int num_tg
Definition: encoder.h:3427
WinnerModeParams winner_mode_params
Definition: encoder.h:3067
ExternalFlags ext_flags
Definition: encoder.h:3029
bool alloc_pyramid
Definition: encoder.h:3644
EncSegmentationInfo enc_seg
Definition: encoder.h:3113
MotionVectorSearchParams mv_search_params
Definition: encoder.h:3102
int use_screen_content_tools
Definition: encoder.h:3339
int do_update_frame_probs_interpfilter[10]
Definition: encoder.h:3261
CODING_CONTEXT coding_context
Definition: encoder.h:3057
TemporalFilterCtx tf_ctx
Definition: encoder.h:2993
TuneButteraugliInfo butteraugli_info
Definition: encoder.h:3405
ForceIntegerMVInfo force_intpel_info
Definition: encoder.h:3003
GlobalMotionInfo gm_info
Definition: encoder.h:3062
int consec_zero_mv_alloc_size
Definition: encoder.h:3462
CoeffBufferPool coeff_buffer_pool
Definition: encoder.h:2908
FRAME_INDEX_SET frame_index_set
Definition: encoder.h:3161
int ref_frame_flags
Definition: encoder.h:3087
RefCntBuffer * scaled_ref_buf[INTER_REFS_PER_FRAME]
Definition: encoder.h:3009
unsigned char gf_frame_index
Definition: encoder.h:3128
AV1EncoderConfig oxcf
Definition: encoder.h:2918
AV1_COMMON common
Definition: encoder.h:2913
AV1LrStruct lr_ctxt
Definition: encoder.h:3307
bool do_frame_data_update
Definition: encoder.h:3523
CdefSearchCtx * cdef_search_ctx
Definition: encoder.h:2998
int data_alloc_width
Definition: encoder.h:3168
int do_update_frame_probs_txtype[10]
Definition: encoder.h:3246
FRAME_COUNTS counts
Definition: encoder.h:2890
COMPRESSOR_STAGE compressor_stage
Definition: encoder.h:3416
int intrabc_used
Definition: encoder.h:3297
int num_frame_recode
Definition: encoder.h:3236
int rt_reduce_num_ref_buffers
Definition: encoder.h:3024
RefreshFrameInfo refresh_frame
Definition: encoder.h:3019
int prune_ref_frame_mask
Definition: encoder.h:3302
YV12_BUFFER_CONFIG * unscaled_last_source
Definition: encoder.h:2956
int all_one_sided_refs
Definition: encoder.h:3108
MultiThreadInfo mt_info
Definition: encoder.h:3285
VarBasedPartitionInfo vbp_info
Definition: encoder.h:3231
int scaled_last_source_available
Definition: encoder.h:3668
YV12_BUFFER_CONFIG * last_source
Definition: encoder.h:2940
int existing_fb_idx_to_show
Definition: encoder.h:3292
YV12_BUFFER_CONFIG * unfiltered_source
Definition: encoder.h:2967
unsigned int zeromv_skip_thresh_exit_part[BLOCK_SIZES_ALL]
Definition: encoder.h:3638
FRAME_INFO frame_info
Definition: encoder.h:3156
int last_coded_height
Definition: encoder.h:3201
int frame_header_count
Definition: encoder.h:3375
int droppable
Definition: encoder.h:3151
RefCntBuffer * last_show_frame_buf
Definition: encoder.h:3014
aom_superres_mode superres_mode
Definition: encoder.h:3434
MBMIExtFrameBufferInfo mbmi_ext_info
Definition: encoder.h:2895
AV1LrPickStruct pick_lr_ctxt
Definition: encoder.h:3312
double new_framerate
Definition: encoder.h:3275
AV1_PRIMARY * ppi
Definition: encoder.h:2874
uint64_t * src_sad_blk_64x64
Definition: encoder.h:3608
int64_t norm_wiener_variance
Definition: encoder.h:3562
double * tpl_rdmult_scaling_factors
Definition: encoder.h:2988
int sb_counter
Definition: encoder.h:3473
int last_coded_width
Definition: encoder.h:3195
TileDataEnc * tile_data
Definition: encoder.h:3212
int is_screen_content_type
Definition: encoder.h:3347
BLOCK_SIZE weber_bsize
Definition: encoder.h:3557
InterpSearchFlags interp_search_flags
Definition: encoder.h:3330
TimeStamps time_stamps
Definition: encoder.h:3072
int ref_idx_to_skip
Definition: encoder.h:3507
YV12_BUFFER_CONFIG orig_source
Definition: encoder.h:2973
FirstPassData firstpass_data
Definition: encoder.h:3439
double framerate
Definition: encoder.h:3082
int speed
Definition: encoder.h:3092
BLOCK_SIZE fp_block_size
Definition: encoder.h:3467
int use_ducky_encode
Definition: encoder.h:3621
YV12_BUFFER_CONFIG trial_frame_rst
Definition: encoder.h:3041
bool is_dropped_frame
Definition: encoder.h:3572
ThreadData td
Definition: encoder.h:2885
ResizePendingParams resize_pending_params
Definition: encoder.h:3206
YV12_BUFFER_CONFIG scaled_source
Definition: encoder.h:2951
int do_update_vbr_bits_off_target_fast
Definition: encoder.h:3280
YV12_BUFFER_CONFIG last_frame_uf
Definition: encoder.h:3035
EncQuantDequantParams enc_quant_dequant_params
Definition: encoder.h:2880
RefFrameDistanceInfo ref_frame_dist_info
Definition: encoder.h:3385
int * prep_rate_estimates
Definition: encoder.h:3541
DuckyEncodeInfo ducky_encode_info
Definition: encoder.h:3627
double ext_rate_scale
Definition: encoder.h:3552
int initial_mbs
Definition: encoder.h:3183
uint64_t rec_sse
Definition: encoder.h:3615
YV12_BUFFER_CONFIG scaled_last_source
Definition: encoder.h:2961
MV_STATS mv_stats
Definition: encoder.h:3490
FrameProbInfo frame_new_probs[10]
Definition: encoder.h:3241
YV12_BUFFER_CONFIG * source
Definition: encoder.h:2931
int allocated_tiles
Definition: encoder.h:3216
SVC svc
Definition: encoder.h:3411
CB_COEFF_BUFFER * coeff_buffer_base
Definition: encoder.h:2902
NOISE_ESTIMATE noise_estimate
Definition: encoder.h:3444
TWO_PASS_FRAME twopass_frame
Definition: encoder.h:3591
Top level primary encoder structure.
Definition: encoder.h:2574
int num_fp_contexts
Definition: encoder.h:2631
AV1EncRowMultiThreadSync intra_row_mt_sync
Definition: encoder.h:2864
bool buffer_removal_time_present
Definition: encoder.h:2745
int valid_gm_model_found[FRAME_UPDATE_TYPES]
Definition: encoder.h:2853
struct aom_codec_pkt_list * output_pkt_list
Definition: encoder.h:2675
int filter_level[2]
Definition: encoder.h:2636
SequenceHeader seq_params
Definition: encoder.h:2735
MV_STATS mv_stats
Definition: encoder.h:2783
struct AV1_COMP * cpi
Definition: encoder.h:2652
AV1LevelParams level_params
Definition: encoder.h:2705
int internal_altref_allowed
Definition: encoder.h:2680
RTC_REF rtc_ref
Definition: encoder.h:2858
int b_calculate_psnr
Definition: encoder.h:2710
PrimaryMultiThreadInfo p_mt_info
Definition: encoder.h:2840
TEMPORAL_FILTER_INFO tf_info
Definition: encoder.h:2730
TWO_PASS twopass
Definition: encoder.h:2720
int frames_left
Definition: encoder.h:2715
int64_t ts_start_last_show_frame
Definition: encoder.h:2621
PRIMARY_RATE_CONTROL p_rc
Definition: encoder.h:2725
int lap_enabled
Definition: encoder.h:2700
FrameProbInfo frame_probs
Definition: encoder.h:2845
int show_existing_alt_ref
Definition: encoder.h:2685
int fb_of_context_type[REF_FRAMES]
Definition: encoder.h:2835
int use_svc
Definition: encoder.h:2740
double * tpl_sb_rdmult_scaling_factors
Definition: encoder.h:2773
int filter_level_v
Definition: encoder.h:2646
int filter_level_u
Definition: encoder.h:2641
struct AV1_COMP * cpi_lap
Definition: encoder.h:2657
struct AV1_COMP * parallel_cpi[4]
Definition: encoder.h:2578
int64_t ts_end_last_show_frame
Definition: encoder.h:2626
struct lookahead_ctx * lookahead
Definition: encoder.h:2662
GF_STATE gf_state
Definition: encoder.h:2695
aom_variance_fn_ptr_t fn_ptr[BLOCK_SIZES_ALL]
Definition: encoder.h:2767
GF_GROUP gf_group
Definition: encoder.h:2690
struct AV1_COMP_DATA parallel_frames_data[4 - 1]
Definition: encoder.h:2584
TplParams tpl_data
Definition: encoder.h:2778
unsigned int number_temporal_layers
Definition: encoder.h:2750
unsigned int number_spatial_layers
Definition: encoder.h:2755
int seq_params_locked
Definition: encoder.h:2669
struct aom_internal_error_info error
Definition: encoder.h:2760
Algorithm configuration parameters.
Definition: encoder.h:819
int disable_trellis_quant
Definition: encoder.h:835
int sharpness
Definition: encoder.h:826
bool skip_postproc_filtering
Definition: encoder.h:879
int arnr_max_frames
Definition: encoder.h:840
bool enable_tpl_model
Definition: encoder.h:858
LOOPFILTER_CONTROL loopfilter_control
Definition: encoder.h:873
uint8_t cdf_update_mode
Definition: encoder.h:853
bool enable_overlay
Definition: encoder.h:864
int arnr_strength
Definition: encoder.h:845
Stores the transforms coefficients for the whole superblock.
Definition: block.h:206
The stucture of CYCLIC_REFRESH.
Definition: aq_cyclicrefresh.h:36
Parameters related to CDEF.
Definition: av1_common_int.h:200
int cdef_bits
Number of CDEF strength values in bits.
Definition: av1_common_int.h:222
int cdef_uv_strengths[16]
CDEF strength values for chroma.
Definition: av1_common_int.h:220
int cdef_strengths[16]
CDEF strength values for luma.
Definition: av1_common_int.h:218
int nb_cdef_strengths
Number of CDEF strength values.
Definition: av1_common_int.h:216
Definition: encoder.h:2430
uint8_t * entropy_ctx
Definition: encoder.h:2442
tran_low_t * tcoeff
Definition: encoder.h:2434
uint16_t * eobs
Definition: encoder.h:2438
Params related to MB_MODE_INFO arrays and related info.
Definition: av1_common_int.h:508
BLOCK_SIZE mi_alloc_bsize
Definition: av1_common_int.h:557
int cols
Definition: av1_common_int.h:435
unsigned int large_scale
Definition: av1_common_int.h:495
Encoder flags for compound prediction modes.
Definition: encoder.h:398
bool enable_masked_comp
Definition: encoder.h:407
bool enable_diff_wtd_comp
Definition: encoder.h:415
bool enable_smooth_interintra
Definition: encoder.h:411
bool enable_interintra_wedge
Definition: encoder.h:423
bool enable_interinter_wedge
Definition: encoder.h:419
bool enable_dist_wtd_comp
Definition: encoder.h:402
Contains buffers used by av1_compound_type_rd()
Definition: block.h:366
Segmentation related information for the current frame.
Definition: encoder.h:2393
uint8_t * map
Definition: encoder.h:2399
bool has_lossless_segment
Definition: encoder.h:2405
Input frames and last input frame.
Definition: encoder.h:3674
contains per-frame encoding parameters decided upon by av1_encode_strategy() and passed down to av1_e...
Definition: encoder.h:3686
int error_resilient_mode
Definition: encoder.h:3690
int remapped_ref_idx[REF_FRAMES]
Definition: encoder.h:3721
int ref_frame_flags
Definition: encoder.h:3716
int speed
Definition: encoder.h:3732
FRAME_TYPE frame_type
Definition: encoder.h:3694
int show_frame
Definition: encoder.h:3704
RefreshFrameInfo refresh_frame
Definition: encoder.h:3727
Frame refresh flags set by the external interface.
Definition: encoder.h:2260
bool golden_frame
Definition: encoder.h:2262
bool bwd_ref_frame
Definition: encoder.h:2263
bool update_pending
Definition: encoder.h:2269
bool last_frame
Definition: encoder.h:2261
bool alt_ref_frame
Definition: encoder.h:2265
bool alt2_ref_frame
Definition: encoder.h:2264
Flags signalled by the external interface at frame level.
Definition: encoder.h:2275
bool use_primary_ref_none
Definition: encoder.h:2316
bool use_ref_frame_mvs
Definition: encoder.h:2300
ExtRefreshFrameFlagsInfo refresh_frame
Definition: encoder.h:2284
int ref_frame_flags
Definition: encoder.h:2279
bool use_error_resilient
Definition: encoder.h:2305
bool use_s_frame
Definition: encoder.h:2310
bool refresh_frame_context
Definition: encoder.h:2289
bool refresh_frame_context_pending
Definition: encoder.h:2295
Frame level features.
Definition: av1_common_int.h:365
bool allow_screen_content_tools
Definition: av1_common_int.h:382
bool allow_intrabc
Definition: av1_common_int.h:383
bool coded_lossless
Definition: av1_common_int.h:392
bool error_resilient_mode
Definition: av1_common_int.h:407
bool all_lossless
Definition: av1_common_int.h:396
Encoder info used for decision on forcing integer motion vectors.
Definition: encoder.h:1854
int rate_size
Definition: encoder.h:1867
int rate_index
Definition: encoder.h:1863
Encoder-side probabilities for pruning of various AV1 tools.
Definition: encoder.h:1113
Data related to the current GF/ARF group and the individual frames within the group.
Definition: firstpass.h:339
Parameters related to global motion search.
Definition: encoder.h:2063
bool search_done
Definition: encoder.h:2067
int segment_map_h
Definition: encoder.h:2096
int segment_map_w
Definition: encoder.h:2095
Flags related to interpolation filter search.
Definition: encoder.h:2103
int default_interp_skip_flags
Definition: encoder.h:2108
uint16_t interp_filter_search_mask
Definition: encoder.h:2112
Holds mv costs for intrabc.
Definition: block.h:789
Encoder flags for intra prediction.
Definition: encoder.h:301
bool enable_diagonal_intra
Definition: encoder.h:331
bool enable_smooth_intra
Definition: encoder.h:314
bool auto_intra_tools_off
Definition: encoder.h:350
bool enable_filter_intra
Definition: encoder.h:310
bool enable_directional_intra
Definition: encoder.h:326
bool enable_paeth_intra
Definition: encoder.h:318
bool enable_intra_edge_filter
Definition: encoder.h:305
bool enable_cfl_intra
Definition: encoder.h:322
bool enable_angle_delta
Definition: encoder.h:336
Encoder config related to the coding of key frames.
Definition: encoder.h:465
int key_freq_max
Definition: encoder.h:474
int sframe_mode
Definition: encoder.h:492
bool auto_key
Definition: encoder.h:497
bool enable_intrabc
Definition: encoder.h:517
int sframe_dist
Definition: encoder.h:485
bool enable_sframe
Definition: encoder.h:512
int enable_keyframe_filtering
Definition: encoder.h:479
int fwd_kf_dist
Definition: encoder.h:502
int key_freq_min
Definition: encoder.h:469
bool fwd_kf_enabled
Definition: encoder.h:507
Buffer to store mode information at mi_alloc_bsize (4x4 or 8x8) level.
Definition: encoder.h:1900
int alloc_size
Definition: encoder.h:1909
int stride
Definition: encoder.h:1913
MB_MODE_INFO_EXT_FRAME * frame_base
Definition: encoder.h:1905
Stores best extended mode information at frame level.
Definition: block.h:242
Stores the prediction/txfm mode of the current coding block.
Definition: blockd.h:222
Parameters for motion vector search process.
Definition: encoder.h:2118
int max_mv_magnitude
Definition: encoder.h:2124
fractional_mv_step_fp * find_fractional_mv_step
Definition: encoder.h:2138
int mv_step_param
Definition: encoder.h:2129
Encoder parameters related to multi-threading.
Definition: encoder.h:1745
RestoreStateBuffers restore_state_buf
Definition: encoder.h:1832
AV1CdefWorkerData * cdef_worker
Definition: encoder.h:1827
AV1LrSync lr_row_sync
Definition: encoder.h:1802
struct EncWorkerData * tile_thr_data
Definition: encoder.h:1765
AV1TplRowMultiThreadInfo tpl_row_mt
Definition: encoder.h:1792
AV1EncPackBSSync pack_bs_sync
Definition: encoder.h:1807
AV1EncRowMultiThreadInfo enc_row_mt
Definition: encoder.h:1781
AV1LfSync lf_row_sync
Definition: encoder.h:1797
AV1CdefSync cdef_sync
Definition: encoder.h:1822
int num_mod_workers[NUM_MT_MODULES]
Definition: encoder.h:1754
AV1EncAllIntraMultiThreadInfo intra_mt
Definition: encoder.h:1787
int num_workers
Definition: encoder.h:1749
int pipeline_lpf_mt_with_enc
Definition: encoder.h:1838
AVxWorker * workers
Definition: encoder.h:1759
bool pack_bs_mt_enabled
Definition: encoder.h:1776
bool row_mt_enabled
Definition: encoder.h:1771
AV1TemporalFilterSync tf_sync
Definition: encoder.h:1817
AV1GlobalMotionSync gm_sync
Definition: encoder.h:1812
Holds mv costs for encoding and motion search.
Definition: block.h:758
Contains buffers used to speed up rdopt for obmc.
Definition: block.h:329
Contains color maps used in palette mode.
Definition: block.h:354
Primary Rate Control parameters and status.
Definition: ratectrl.h:300
Encoder config for coding block partitioning.
Definition: encoder.h:273
bool enable_rect_partitions
Definition: encoder.h:277
bool enable_1to4_partitions
Definition: encoder.h:285
BLOCK_SIZE max_partition_size
Definition: encoder.h:295
bool enable_ab_partitions
Definition: encoder.h:281
BLOCK_SIZE min_partition_size
Definition: encoder.h:290
Primary Encoder parameters related to multi-threading.
Definition: encoder.h:1698
struct EncWorkerData * tile_thr_data
Definition: encoder.h:1718
AV1CdefWorkerData * cdef_worker
Definition: encoder.h:1723
int num_workers
Definition: encoder.h:1702
int prev_num_enc_workers
Definition: encoder.h:1739
AVxWorker * workers
Definition: encoder.h:1712
AVxWorker * p_workers[4]
Definition: encoder.h:1729
int p_num_workers
Definition: encoder.h:1734
int num_mod_workers[NUM_MT_MODULES]
Definition: encoder.h:1707
Rate Control parameters and status.
Definition: ratectrl.h:134
Encoder rate control configuration parameters.
Definition: encoder.h:523
int worst_allowed_q
Definition: encoder.h:593
int over_shoot_pct
Definition: encoder.h:588
unsigned int max_intra_bitrate_pct
Definition: encoder.h:558
int drop_frames_water_mark
Definition: encoder.h:576
int max_consec_drop_ms
Definition: encoder.h:631
int vbrmax_section
Definition: encoder.h:624
int64_t maximum_buffer_size_ms
Definition: encoder.h:542
unsigned int vbr_corpus_complexity_lap
Definition: encoder.h:553
unsigned int min_cr
Definition: encoder.h:572
int vbrbias
Definition: encoder.h:614
unsigned int gf_cbr_boost_pct
Definition: encoder.h:567
int vbrmin_section
Definition: encoder.h:619
enum aom_rc_mode mode
Definition: encoder.h:607
unsigned int max_inter_bitrate_pct
Definition: encoder.h:563
int64_t starting_buffer_level_ms
Definition: encoder.h:532
int best_allowed_q
Definition: encoder.h:598
int under_shoot_pct
Definition: encoder.h:582
int64_t target_bandwidth
Definition: encoder.h:547
int64_t optimal_buffer_level_ms
Definition: encoder.h:537
int cq_level
Definition: encoder.h:602
Refrence frame distance related variables.
Definition: encoder.h:2177
int8_t nearest_past_ref
Definition: encoder.h:2185
int8_t nearest_future_ref
Definition: encoder.h:2189
Refresh frame flags for different type of frames.
Definition: encoder.h:2156
bool bwd_ref_frame
Definition: encoder.h:2158
bool golden_frame
Definition: encoder.h:2157
bool alt_ref_frame
Definition: encoder.h:2159
Encoder config related to resize.
Definition: encoder.h:253
uint8_t resize_scale_denominator
Definition: encoder.h:262
uint8_t resize_kf_scale_denominator
Definition: encoder.h:267
RESIZE_MODE resize_mode
Definition: encoder.h:257
Desired dimensions for an externally triggered resize.
Definition: encoder.h:2169
int width
Definition: encoder.h:2170
int height
Definition: encoder.h:2171
Parameters related to restoration types.
Definition: encoder.h:1659
WienerInfo wiener
Definition: encoder.h:1663
SgrprojInfo sgrproj
Definition: encoder.h:1668
Parameters related to Restoration Info.
Definition: restoration.h:246
RestorationType frame_restoration_type
Definition: restoration.h:250
Buffers to be backed up during parallel encode set to be restored later.
Definition: encoder.h:1634
int32_t * rst_tmpbuf
Definition: encoder.h:1648
RestorationLineBuffers * rlbs
Definition: encoder.h:1653
uint16_t * cdef_colbuf[3]
Definition: encoder.h:1643
uint16_t * cdef_srcbuf
Definition: encoder.h:1638
Top level speed vs quality trade off data struture.
Definition: speed_features.h:1939
MV_SPEED_FEATURES mv_sf
Definition: speed_features.h:1968
LOOP_FILTER_SPEED_FEATURES lpf_sf
Definition: speed_features.h:2003
TX_SPEED_FEATURES tx_sf
Definition: speed_features.h:1988
REAL_TIME_SPEED_FEATURES rt_sf
Definition: speed_features.h:2008
The stucture of SVC.
Definition: svc_layercontext.h:89
Parameters related to Sgrproj Filter.
Definition: blockd.h:507
Encoder config related to frame super-resolution.
Definition: encoder.h:429
uint8_t superres_kf_scale_denominator
Definition: encoder.h:451
aom_superres_mode superres_mode
Definition: encoder.h:455
int superres_kf_qthresh
Definition: encoder.h:439
bool enable_superres
Definition: encoder.h:459
uint8_t superres_scale_denominator
Definition: encoder.h:445
int superres_qthresh
Definition: encoder.h:434
Temporal filter info for a gop.
Definition: temporal_filter.h:161
Frame level Two pass status and control data.
Definition: firstpass.h:458
Two pass status and control data.
Definition: firstpass.h:416
Parameters related to temporal filtering.
Definition: temporal_filter.h:98
Frame time stamps.
Definition: encoder.h:2411
int64_t prev_ts_start
Definition: encoder.h:2415
int64_t first_ts_start
Definition: encoder.h:2423
int64_t prev_ts_end
Definition: encoder.h:2419
Params related to temporal dependency model.
Definition: tpl_model.h:165
Encoder flags for transform sizes and types.
Definition: encoder.h:356
bool enable_tx64
Definition: encoder.h:360
bool use_inter_dct_only
Definition: encoder.h:383
bool enable_flip_idtx
Definition: encoder.h:364
bool use_intra_default_tx_only
Definition: encoder.h:388
bool use_intra_dct_only
Definition: encoder.h:378
bool enable_rect_tx
Definition: encoder.h:368
bool reduced_tx_type_set
Definition: encoder.h:373
bool enable_tx_size_search
Definition: encoder.h:392
Thresholds for variance based partitioning.
Definition: encoder.h:1364
int64_t threshold_minmax
Definition: encoder.h:1379
Parameters related to Wiener Filter.
Definition: blockd.h:494
Parameters used for winner mode processing.
Definition: encoder.h:2207
Generic fixed size buffer structure.
Definition: aom_encoder.h:88
Struct used to hold inter mode data for fast tx search.
Definition: encoder.h:1269
RD_STATS rd_cost_arr[MAX_INTER_MODES]
Definition: encoder.h:1298
int64_t est_rd_arr[MAX_INTER_MODES]
Definition: encoder.h:1290
int64_t sse_arr[MAX_INTER_MODES]
Definition: encoder.h:1286
RD_STATS rd_cost_y_arr[MAX_INTER_MODES]
Definition: encoder.h:1302
RD_STATS rd_cost_uv_arr[MAX_INTER_MODES]
Definition: encoder.h:1306
MB_MODE_INFO mbmi_arr[MAX_INTER_MODES]
Definition: encoder.h:1278
RdIdxPair rd_idx_pair_arr[MAX_INTER_MODES]
Definition: encoder.h:1294
int mode_rate_arr[MAX_INTER_MODES]
Definition: encoder.h:1282
int num
Definition: encoder.h:1274
Encoder's parameters related to the current coding block.
Definition: block.h:878
MB_MODE_INFO_EXT_FRAME * mbmi_ext_frame
Finalized mbmi_ext for the whole frame.
Definition: block.h:910
Variables related to current coding block.
Definition: blockd.h:570
const struct scale_factors * block_ref_scale_factors[2]
Definition: blockd.h:687
YV12 frame buffer data structure.
Definition: yv12config.h:46