Port folder renaming changes from AOM
Manually cherry-picked commits: ceef058 libvpx->libaom part2 3d26d91 libvpx -> libaom cfea7dd vp10/ -> av1/ 3a8eff7 Fix a build issue for a test bf4202e Rename vpx to aom Change-Id: I1b0eb5a40796e3aaf41c58984b4229a439a597dc
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av1/encoder/firstpass.h
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av1/encoder/firstpass.h
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/*
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* Copyright (c) 2010 The WebM project authors. All Rights Reserved.
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*
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* Use of this source code is governed by a BSD-style license
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* that can be found in the LICENSE file in the root of the source
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* tree. An additional intellectual property rights grant can be found
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* in the file PATENTS. All contributing project authors may
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* be found in the AUTHORS file in the root of the source tree.
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*/
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#ifndef VP10_ENCODER_FIRSTPASS_H_
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#define VP10_ENCODER_FIRSTPASS_H_
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#include "av1/encoder/lookahead.h"
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#include "av1/encoder/ratectrl.h"
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#ifdef __cplusplus
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extern "C" {
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#endif
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#if CONFIG_FP_MB_STATS
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#define FPMB_DCINTRA_MASK 0x01
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#define FPMB_MOTION_ZERO_MASK 0x02
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#define FPMB_MOTION_LEFT_MASK 0x04
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#define FPMB_MOTION_RIGHT_MASK 0x08
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#define FPMB_MOTION_UP_MASK 0x10
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#define FPMB_MOTION_DOWN_MASK 0x20
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#define FPMB_ERROR_SMALL_MASK 0x40
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#define FPMB_ERROR_LARGE_MASK 0x80
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#define FPMB_ERROR_SMALL_TH 2000
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#define FPMB_ERROR_LARGE_TH 48000
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typedef struct {
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uint8_t *mb_stats_start;
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uint8_t *mb_stats_end;
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} FIRSTPASS_MB_STATS;
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#endif
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#if CONFIG_EXT_REFS
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// Length of the bi-predictive frame group (BFG)
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// NOTE: Currently each BFG contains one backward ref (BWF) frame plus a certain
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// number of bi-predictive frames.
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#define BFG_INTERVAL 2
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// The maximum number of extra ALT_REF's
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// NOTE: This number cannot be greater than 2 or the reference frame buffer will
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// overflow.
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#define MAX_EXT_ARFS 2
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#define MIN_EXT_ARF_INTERVAL 4
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#endif // CONFIG_EXT_REFS
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#define VLOW_MOTION_THRESHOLD 950
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typedef struct {
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double frame;
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double weight;
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double intra_error;
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double coded_error;
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double sr_coded_error;
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double pcnt_inter;
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double pcnt_motion;
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double pcnt_second_ref;
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double pcnt_neutral;
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double intra_skip_pct;
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double inactive_zone_rows; // Image mask rows top and bottom.
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double inactive_zone_cols; // Image mask columns at left and right edges.
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double MVr;
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double mvr_abs;
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double MVc;
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double mvc_abs;
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double MVrv;
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double MVcv;
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double mv_in_out_count;
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double new_mv_count;
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double duration;
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double count;
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} FIRSTPASS_STATS;
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typedef enum {
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KF_UPDATE = 0,
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LF_UPDATE = 1,
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GF_UPDATE = 2,
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ARF_UPDATE = 3,
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OVERLAY_UPDATE = 4,
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#if CONFIG_EXT_REFS
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BRF_UPDATE = 5, // Backward Reference Frame
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LAST_BIPRED_UPDATE = 6, // Last Bi-predictive Frame
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BIPRED_UPDATE = 7, // Bi-predictive Frame, but not the last one
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INTNL_OVERLAY_UPDATE = 8, // Internal Overlay Frame
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FRAME_UPDATE_TYPES = 9
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#else
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FRAME_UPDATE_TYPES = 5
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#endif // CONFIG_EXT_REFS
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} FRAME_UPDATE_TYPE;
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#define FC_ANIMATION_THRESH 0.15
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typedef enum {
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FC_NORMAL = 0,
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FC_GRAPHICS_ANIMATION = 1,
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FRAME_CONTENT_TYPES = 2
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} FRAME_CONTENT_TYPE;
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typedef struct {
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unsigned char index;
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RATE_FACTOR_LEVEL rf_level[(MAX_LAG_BUFFERS * 2) + 1];
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FRAME_UPDATE_TYPE update_type[(MAX_LAG_BUFFERS * 2) + 1];
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unsigned char arf_src_offset[(MAX_LAG_BUFFERS * 2) + 1];
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unsigned char arf_update_idx[(MAX_LAG_BUFFERS * 2) + 1];
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unsigned char arf_ref_idx[(MAX_LAG_BUFFERS * 2) + 1];
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#if CONFIG_EXT_REFS
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unsigned char brf_src_offset[(MAX_LAG_BUFFERS * 2) + 1];
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unsigned char bidir_pred_enabled[(MAX_LAG_BUFFERS * 2) + 1];
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#endif // CONFIG_EXT_REFS
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int bit_allocation[(MAX_LAG_BUFFERS * 2) + 1];
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} GF_GROUP;
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typedef struct {
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unsigned int section_intra_rating;
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FIRSTPASS_STATS total_stats;
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FIRSTPASS_STATS this_frame_stats;
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const FIRSTPASS_STATS *stats_in;
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const FIRSTPASS_STATS *stats_in_start;
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const FIRSTPASS_STATS *stats_in_end;
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FIRSTPASS_STATS total_left_stats;
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int first_pass_done;
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int64_t bits_left;
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double modified_error_min;
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double modified_error_max;
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double modified_error_left;
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double mb_av_energy;
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#if CONFIG_FP_MB_STATS
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uint8_t *frame_mb_stats_buf;
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uint8_t *this_frame_mb_stats;
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FIRSTPASS_MB_STATS firstpass_mb_stats;
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#endif
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// An indication of the content type of the current frame
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FRAME_CONTENT_TYPE fr_content_type;
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// Projected total bits available for a key frame group of frames
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int64_t kf_group_bits;
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// Error score of frames still to be coded in kf group
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int64_t kf_group_error_left;
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// The fraction for a kf groups total bits allocated to the inter frames
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double kfgroup_inter_fraction;
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int sr_update_lag;
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int kf_zeromotion_pct;
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int last_kfgroup_zeromotion_pct;
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int gf_zeromotion_pct;
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int active_worst_quality;
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int baseline_active_worst_quality;
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int extend_minq;
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int extend_maxq;
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int extend_minq_fast;
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GF_GROUP gf_group;
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} TWO_PASS;
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struct VP10_COMP;
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void vp10_init_first_pass(struct VP10_COMP *cpi);
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void vp10_rc_get_first_pass_params(struct VP10_COMP *cpi);
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void vp10_first_pass(struct VP10_COMP *cpi,
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const struct lookahead_entry *source);
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void vp10_end_first_pass(struct VP10_COMP *cpi);
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void vp10_init_second_pass(struct VP10_COMP *cpi);
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void vp10_rc_get_second_pass_params(struct VP10_COMP *cpi);
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void vp10_twopass_postencode_update(struct VP10_COMP *cpi);
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// Post encode update of the rate control parameters for 2-pass
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void vp10_twopass_postencode_update(struct VP10_COMP *cpi);
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void vp10_init_subsampling(struct VP10_COMP *cpi);
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void vp10_calculate_coded_size(struct VP10_COMP *cpi, int *scaled_frame_width,
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int *scaled_frame_height);
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#if CONFIG_EXT_REFS
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static inline int get_number_of_extra_arfs(int interval, int arf_pending) {
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if (arf_pending && MAX_EXT_ARFS > 0)
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return interval >= MIN_EXT_ARF_INTERVAL * (MAX_EXT_ARFS + 1)
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? MAX_EXT_ARFS
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: interval >= MIN_EXT_ARF_INTERVAL * MAX_EXT_ARFS
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? MAX_EXT_ARFS - 1
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: 0;
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else
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return 0;
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}
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#endif
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#ifdef __cplusplus
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} // extern "C"
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#endif
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#endif // VP10_ENCODER_FIRSTPASS_H_
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