459 lines
15 KiB
C
459 lines
15 KiB
C
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/******************************************************************************
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*
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* Copyright (C) 2018 The Android Open Source Project
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*
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* Licensed under the Apache License, Version 2.0 (the "License");
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* you may not use this file except in compliance with the License.
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* You may obtain a copy of the License at:
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*
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* http://www.apache.org/licenses/LICENSE-2.0
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*
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* Unless required by applicable law or agreed to in writing, software
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* distributed under the License is distributed on an "AS IS" BASIS,
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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* See the License for the specific language governing permissions and
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* limitations under the License.
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*
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*****************************************************************************
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* Originally developed and contributed by Ittiam Systems Pvt. Ltd, Bangalore
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*/
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/**
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******************************************************************************
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*
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* @file ihevce_rc_structs.h
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*
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* @brief
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* This file contains rc interface structures and prototypes
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*
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* @author
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* Ittiam
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*
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******************************************************************************
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*/
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#ifndef _IHEVCE_RC_STRUCTS_H_
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#define _IHEVCE_RC_STRUCTS_H_
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/*****************************************************************************/
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/* Constant Macros */
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/*****************************************************************************/
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#define MAX_NUM_TEMPORAL_LAYERS 4
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#define HALF_MAX_SCENE_ARRAY_QP MAX_SCENE_NUM / 2
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/*moderate value of fsim to be passed when LAP is not enabled*/
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#define MODERATE_FSIM_VALUE 110
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#define MODERATE_LAP2_COMPLEXITY_Q7 25
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/*also present in RATE CONTROL HEADER FILE with same name*/
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#define MAX_LAP_COMPLEXITY_Q7 90
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/*value of maximum variance in content used to generate offline model.*/
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#define MAX_LAP_VAR 1000
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#define AVG_LAP_VAR 400
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/*buffer to store bit consumption between rdopt and entropy to calculate correction in entropy thread*/
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#define NUM_BUF_RDOPT_ENT_CORRECT (NUM_FRMPROC_ENTCOD_BUFS + 1) //+(1<<FRAME_PARALLEL_LVL))
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/*****************************************************************************/
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/* Enums */
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/*****************************************************************************/
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/**
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******************************************************************************
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* @brief Enumeration for memory records requested by entropy module
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******************************************************************************
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*/
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typedef enum
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{
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RC_CTXT = 0,
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RC_QSCALE_TO_QP,
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RC_QP_TO_QSCALE,
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RC_QP_TO_QSCALE_Q_FACTOR,
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RC_MULTI_PASS_GOP_STAT,
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/* should always be the last entry */
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NUM_RC_MEM_RECS
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} IHEVCE_RC_MEM_TABS_T;
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/*****************************************************************************/
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/* Structures */
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/*****************************************************************************/
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/**
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******************************************************************************
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* @brief pre enc qp queue struct
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******************************************************************************
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*/
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typedef struct
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{
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WORD32 ai4_quant[NUM_RC_PIC_TYPE];
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WORD32 i4_scd_qp;
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WORD32 i4_is_qp_valid;
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} pre_enc_qp_queue;
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typedef struct
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{
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LWORD64 ai8_L1_prev_I_intra_raw_satd[MAX_PIC_TYPE];
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LWORD64 ai8_L1_prev_pic_coarse_me_cost[MAX_PIC_TYPE];
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LWORD64 ai8_L1_prev_pic_coarse_me_sad[MAX_PIC_TYPE];
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UWORD32 au4_prev_scene_num[MAX_PIC_TYPE];
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} rc_L1_state_t;
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/**
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******************************************************************************
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* vbv compliance testing struct
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******************************************************************************
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*/
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typedef struct vbv_compliance_t
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{
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/** frame rate */
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float f_frame_rate;
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/** bit rate */
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float f_bit_rate;
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/** current buffer level */
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float f_curr_buffer_level;
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/*current buffer level unclipped for current frame*/
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float f_curr_buffer_level_unclip;
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/** total buffer size */
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float f_buffer_size;
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/** drain rate */
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float f_drain_rate;
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/** previous cbp_removal_removal_delay minus 1**/
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UWORD32 u4_prev_cpb_removal_delay_minus1;
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} vbv_compliance_t;
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/* structure defined to maintain the qp's of Non reference b pictures based on reference */
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/* b pictures of next layer to handle in steadystate,SCD and Non_I_SCD's. The offset is */
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/* based on the temporeal complexities of the sub GOP */
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typedef struct
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{
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WORD32 i4_enc_order_num_rc;
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WORD32 i4_non_ref_B_pic_qp;
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UWORD32 u4_scene_num_rc;
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} non_ref_b_qp_store_t;
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/* structure to get high level stat from rc to adjust clip QP in case
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if it causes encoder buffer overflow*/
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typedef struct
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{
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/*online model valid flag*/
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WORD32 i4_is_model_valid;
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/*model given QP if model is valid either offline or online
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else set it to INVALID_QP*/
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WORD32 i4_modelQP;
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/*final RC QP,must be always valid*/
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WORD32 i4_finalQP;
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/* QP to reach maxEbf if model is valid*/
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WORD32 i4_maxEbfQP;
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/* bits for final QP if model is valid*/
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LWORD64 i8_bits_from_finalQP;
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/*offline model flag for I scd, non i scd, I only scd*/
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WORD32 i4_is_offline_model_used;
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} rc_high_level_stat_t;
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typedef struct
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{
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/* START of static parameters*/
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rate_control_handle rc_hdl;
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rc_type_e e_rate_control_type;
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UWORD8 u1_is_mb_level_rc_on;
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/* bit rate to achieved across the entire file size */
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UWORD32 u4_avg_bit_rate;
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/* max possible drain rate */
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UWORD32 au4_peak_bit_rate[MAX_PIC_TYPE];
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UWORD32 u4_min_bit_rate;
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/* frames per 1000 seconds */
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UWORD32 u4_max_frame_rate;
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/* Buffer delay for CBR */
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UWORD32 u4_max_delay;
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/* Intraframe interval equal to GOP size */
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UWORD32 u4_intra_frame_interval;
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/* IDR period which indicates occurance of open GOP */
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UWORD32 u4_idr_period;
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/* Initial Qp array for I and P frames */
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WORD32 ai4_init_qp[MAX_PIC_TYPE];
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//0x3fffffff; /* Max VBV buffer size */
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UWORD32 u4_max_vbv_buff_size;
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/* MAx interval between I and P frame */
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WORD32 i4_max_inter_frm_int;
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/* Whether GOP is open or closed */
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WORD32 i4_is_gop_closed;
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WORD32 ai4_min_max_qp[MAX_PIC_TYPE * 2];
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/* Whether to use estimated SAD or Previous I frame SAD */
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WORD32 i4_use_est_intra_sad;
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UWORD32 u4_src_ticks;
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UWORD32 u4_tgt_ticks;
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WORD32 i4_auto_generate_init_qp;
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WORD32 i4_frame_width;
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WORD32 i4_frame_height;
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WORD32 i4_min_frame_qp;
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WORD32 i4_max_frame_qp;
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WORD32 i4_init_vbv_fullness;
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/* Num frames in lap window*/
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WORD32 i4_num_frame_in_lap_window;
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/** Max temporal layer the configured at init time*/
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WORD32 i4_max_temporal_lyr;
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/*Number of active picture type. Depends on max temporal reference*/
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WORD32 i4_num_active_pic_type;
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/* User defined constant qp or init qp to be used during scene cut*/
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WORD32 i4_init_frame_qp_user;
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/* To remember whether the pic type is field:1 or not:0*/
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WORD32 i4_field_pic;
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/*To convey whether top field is encoded first:1 or bottom field :0*/
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WORD32 i4_top_field_first;
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/** Quality preset to choose offline model coeff*/
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WORD32 i4_quality_preset;
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/*populate init pre enc qp based on bpp for all pictype*/
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WORD32 ai4_init_pre_enc_qp[MAX_PIC_TYPE];
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WORD32 i4_initial_decoder_delay_frames;
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float f_vbr_max_peak_sustain_dur;
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LWORD64 i8_num_frms_to_encode;
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WORD32 i4_min_scd_hevc_qp;
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UWORD8 u1_bit_depth;
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rc_quant_t *ps_rc_quant_ctxt;
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WORD32 i4_rc_pass;
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/*Memory allocated for storing GOP level stat*/
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void *pv_gop_stat;
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LWORD64 i8_num_gop_mem_alloc;
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WORD32 i4_is_infinite_gop;
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WORD32 ai4_offsets[5];
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/*End of static parameters */
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/* Start of parameters updated and accessed during pre-enc*/
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rc_L1_state_t s_l1_state_metric;
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/*estimate of pre-enc header bits*/
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LWORD64 i8_est_I_pic_header_bits;
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/** previous frame estimated L0 SATD/act predicted using pre-enc intra SAD*/
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LWORD64 ai8_prev_frame_est_L0_satd[MAX_PIC_TYPE];
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LWORD64 ai8_prev_frame_pre_intra_sad[MAX_PIC_TYPE];
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LWORD64 ai8_prev_frame_hme_sad[MAX_PIC_TYPE];
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/** Is previous frame intra sad available. set = 1 when atleast one frame of each picture type has been encoded*/
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WORD32 i4_is_est_L0_intra_sad_available;
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FILE *pf_stat_file;
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/* END of parameters updated and accessed during pre-enc */
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/* START of parameters updated during update call and accessed in other threads (pre enc/entropy)*/
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/*variables related to creation of pre enc qp queue*/
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pre_enc_qp_queue as_pre_enc_qp_queue[MAX_PRE_ENC_RC_DELAY];
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/*Remember RDOPT opt concumption, and corresponding time stamp*/
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WORD32 ai4_rdopt_bit_consumption_estimate[NUM_BUF_RDOPT_ENT_CORRECT];
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WORD32 ai4_rdopt_bit_consumption_buf_id[NUM_BUF_RDOPT_ENT_CORRECT];
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WORD32 i4_rdopt_bit_count;
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/*Remember entropy bit consumption and corresponding time stamp*/
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WORD32 ai4_entropy_bit_consumption[NUM_BUF_RDOPT_ENT_CORRECT];
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WORD32 ai4_entropy_bit_consumption_buf_id[NUM_BUF_RDOPT_ENT_CORRECT];
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WORD32 i4_entropy_bit_count;
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WORD32 i4_pre_enc_qp_read_index;
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WORD32 i4_pre_enc_qp_write_index;
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WORD32 i4_use_qp_offset_pre_enc;
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WORD32 i4_num_frms_from_reset;
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/*CAll back functions for print/write operations*/
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ihevce_sys_api_t *ps_sys_rc_api;
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LWORD64 i8_num_frame_read;
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LWORD64 i8_num_bit_alloc_period;
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vbv_compliance_t s_vbv_compliance;
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WORD32 i4_next_sc_i_in_rc_look_ahead;
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LWORD64 i8_new_bitrate;
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/*Set to -1 when no request. Positive value indicates pending change in bitrate request*/ //FRAME
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LWORD64 i8_new_peak_bitrate;
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WORD32 i4_num_frames_subgop;
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WORD32 i4_is_last_frame_scan;
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LWORD64 i8_total_acc_coarse_me_sad;
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WORD32 i4_L0_frame_qp;
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/** prev pic scene num of same temporal id*/
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UWORD32 au4_scene_num_temp_id[MAX_NUM_TEMPORAL_LAYERS];
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/* END of parameters updated during update call and accessed in other threads (pre enc/entropy)*/
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/* START of parameters to be updated at the query QP level(updation) */
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/** Intra frame cost exported by pre-enc IPE for current frame*/
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ULWORD64 ai8_cur_frm_intra_cost[MAX_NUM_ENC_LOOP_PARALLEL];
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/** remember prev frame intra cost*/
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ULWORD64 i8_prev_i_frm_cost;
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/* Current frame inter cost from coarse ME*/
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LWORD64 ai8_cur_frame_coarse_ME_cost[MAX_NUM_ENC_LOOP_PARALLEL];
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/** Flag for first frame so that same logic as scd can be used(offline data)*/
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WORD32 i4_is_first_frame_encoded;
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/*Flag to remember to reset I model only based on SCD detecton based on open loop SATD
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of two consecutive I pic*/
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WORD32 ai4_I_model_only_reset[MAX_NUM_ENC_LOOP_PARALLEL];
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/** prev pic intra cost for I pic and coarse ME cost for rest of picture types
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For intra L0 cost is availbale and HME cost is on L1 layer*/
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LWORD64 ai8_prev_frm_pre_enc_cost[MAX_PIC_TYPE];
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/*previous qp used encoded*/
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WORD32 ai4_prev_pic_hevc_qp[MAX_SCENE_NUM][MAX_PIC_TYPE];
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WORD32 ai4_scene_numbers[MAX_SCENE_NUM];
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/* END of parameters to be updated at the query QP lecvel */
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/* START of parameters to be maintained array for Enc loop parallelism */
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/** is scene cut frame at base layer*/
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WORD32 ai4_is_frame_scd[MAX_NUM_ENC_LOOP_PARALLEL]; //ELP_RC
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/*Flag to remember frames that are detected as scene cut but not made I due to another SCD following it immediately*/
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WORD32 ai4_is_non_I_scd_pic[MAX_NUM_ENC_LOOP_PARALLEL]; //ELP_RC
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/*Flag to remember pause to resume so that only P and B models can be reset*/
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WORD32 ai4_is_pause_to_resume[MAX_NUM_ENC_LOOP_PARALLEL]; //ELP_RC
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/*Frame similarity over look ahead window*/
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WORD32 ai4_lap_f_sim[MAX_NUM_ENC_LOOP_PARALLEL]; //ELP_RC
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/*Overall lap complexity including inter and intra in q7 format*/
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WORD32 ai4_lap_complexity_q7[MAX_NUM_ENC_LOOP_PARALLEL]; //ELP_RC
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float af_sum_weigh[MAX_NUM_ENC_LOOP_PARALLEL][MAX_PIC_TYPE][3];
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WORD32 ai4_is_cmplx_change_reset_model[MAX_NUM_ENC_LOOP_PARALLEL];
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WORD32 ai4_is_cmplx_change_reset_bits[MAX_NUM_ENC_LOOP_PARALLEL];
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float ai_to_avg_bit_ratio[MAX_NUM_ENC_LOOP_PARALLEL];
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WORD32 ai4_num_scd_in_lap_window[MAX_NUM_ENC_LOOP_PARALLEL];
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WORD32 ai4_num_frames_b4_scd[MAX_NUM_ENC_LOOP_PARALLEL];
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/* END of parameters to be maintained array for Enc loop parallelism */
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UWORD32 u4_prev_scene_num;
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WORD32 ai4_qp_for_previous_scene[MAX_PIC_TYPE];
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UWORD32 au4_prev_scene_num_pre_enc[MAX_PIC_TYPE];
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WORD32 ai4_qp_for_previous_scene_pre_enc[MAX_PIC_TYPE];
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UWORD32 u4_scene_num_est_L0_intra_sad_available;
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non_ref_b_qp_store_t as_non_ref_b_qp[MAX_NON_REF_B_PICS_IN_QUEUE_SGI];
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UWORD32 au4_prev_scene_num_multi_scene[MAX_NON_REF_B_PICS_IN_QUEUE_SGI];
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WORD32 ai4_qp_for_previous_scene_multi_scene[MAX_NON_REF_B_PICS_IN_QUEUE_SGI][MAX_PIC_TYPE];
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WORD32 i4_prev_qp_ctr;
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WORD32 i4_cur_scene_num;
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WORD32 i4_non_ref_B_ctr;
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float af_sum_weigh_2_pass[MAX_PIC_TYPE][3];
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rc_bits_sad_t as_rc_frame_stat_store[MAX_NUM_ENC_LOOP_PARALLEL]
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[IHEVCE_MAX_NUM_BITRATES]; //ELP_RC
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WORD32 out_buf_id[MAX_NUM_ENC_LOOP_PARALLEL][IHEVCE_MAX_NUM_BITRATES]; //ELP_RC
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WORD32 i4_pic_type[MAX_NUM_ENC_LOOP_PARALLEL]; //ELP_RC
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WORD32 cur_qp[MAX_NUM_ENC_LOOP_PARALLEL][IHEVCE_MAX_NUM_BITRATES]; //ELP_RC
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ihevce_lap_output_params_t as_lap_out[MAX_NUM_ENC_LOOP_PARALLEL]; //ELP_RC
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rc_lap_out_params_t as_rc_lap_out[MAX_NUM_ENC_LOOP_PARALLEL]; //ELP_RC
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WORD32 i4_complexity_bin;
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WORD32 i4_last_p_or_i_frame_gop;
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WORD32 i4_qp_at_I_frame_for_skip_sad;
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WORD32 i4_denominator_i_to_avg;
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||
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WORD32 i4_no_more_set_rbip_for_cur_gop;
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||
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WORD32 i4_num_frm_scnd_fr_alloc;
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||
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||
|
WORD32 i4_last_disp_num_scanned;
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||
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||
|
LWORD64 i8_l1_analysis_lap_comp;
|
||
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||
|
WORD32 i4_est_text_bits_ctr_get_qp; //ELP_RC
|
||
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|
||
|
WORD32 i4_est_text_bits_ctr_update_qp; //ELP_RC
|
||
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|
||
|
WORD32 i4_num_frame_parallel; //ELP_RC
|
||
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||
|
WORD32 i4_scene_num_latest;
|
||
|
|
||
|
WORD32 i4_pre_enc_rc_delay;
|
||
|
|
||
|
/*Enable this falg to do bit allocation within a gop in
|
||
|
in second pass based on first pass data*/
|
||
|
WORD32 i4_fp_bit_alloc_in_sp;
|
||
|
|
||
|
WORD32 i4_bitrate_changed;
|
||
|
|
||
|
/* Flag which shows that capped vbr mode is enabled */
|
||
|
WORD32 i4_capped_vbr_flag;
|
||
|
|
||
|
rc_high_level_stat_t s_rc_high_lvl_stat;
|
||
|
|
||
|
WORD32 i4_normal_inter_pic;
|
||
|
|
||
|
WORD32 i4_br_id_for_2pass;
|
||
|
|
||
|
WORD32 ai4_scene_num_last_pic[MAX_PIC_TYPE];
|
||
|
|
||
|
WORD32 ai4_last_tw0_lyr0_pic_qp[2];
|
||
|
} rc_context_t;
|
||
|
|
||
|
/* NOTE:: Please add any new parameters accordin to the categorization as specified in the comments of */
|
||
|
/* the structure definition. strat and end of the category are present in the defifnition*/
|
||
|
|
||
|
#endif
|