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180 lines
5.9 KiB
180 lines
5.9 KiB
/******************************************************************************
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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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* \file rc_frame_info_collector.h
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*
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* \brief
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* This file contains structs used by encoder to pass information to RC lib
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*
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* \date
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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 _RC_FRAME_INFO_COLLECTOR_H_
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#define _RC_FRAME_INFO_COLLECTOR_H_
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/*****************************************************************************/
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/* Constant Macros */
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/*****************************************************************************/
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#define MAX_NUM_FRAME_IN_GOP 300
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#define MAX_CHAR_IN_LINE 250
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#define MAX_MEM_FOR_LINE (MAX_CHAR_IN_LINE + 1)
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// Minimum allocate memory for 10 bit allocation period
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#define MIN_GOP_FOR_MEM_ALLOC 10
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/*****************************************************************************/
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/* Structure */
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/*****************************************************************************/
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typedef struct
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{
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WORD32 sm; /* MSB 1 bit sign & rest magnitude */
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WORD32 e; /* Q-format */
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} number_t_frame;
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typedef struct
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{
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LWORD64 i8_frame_num;
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WORD32 i4_poc;
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picture_type_e e_pic_type;
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WORD32 i4_rc_hevc_qp;
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WORD32 i4_scene_type; /*Should be in sync with what lap signals*/
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float f_8bit_q_scale;
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float f_8bit_q_scale_without_offset;
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float f_hbd_q_scale;
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float f_hbd_q_scale_without_offset;
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LWORD64 i8_cl_sad;
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LWORD64 i8_tex_bits;
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LWORD64 i8_header_bits;
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LWORD64 i8_L1_me_sad;
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LWORD64 i8_L1_ipe_raw_sad;
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LWORD64 i8_L1_me_or_ipe_raw_sad;
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LWORD64 i8_L0_open_cost;
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LWORD64 i8_est_texture_bits;
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WORD32 i4_num_scd_in_lap_window;
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WORD32 i4_num_frames_b4_scd;
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WORD32 i4_num_entries;
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LWORD64 i8_frame_acc_coarse_me_cost;
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WORD32 i4_lap_f_sim;
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float i_to_avg_bit_ratio;
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WORD32 i4_lap_complexity_q7;
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WORD32 i4_lap_var;
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LWORD64 i8_num_bit_alloc_period;
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WORD8 i1_is_complexity_based_bits_reset;
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float af_sum_weigh[MAX_PIC_TYPE][3];
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number_t_frame model_coeff_a_lin_wo_int;
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WORD32 i4_flag_rc_model_update;
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WORD32 i4_non_i_scd;
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} frame_info_t;
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typedef struct
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{
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LWORD64 i4_gop_count;
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WORD32 i4_tot_frm_in_gop;
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//WORD32 ai4_pic_dist_in_cur_gop[MAX_PIC_TYPE];
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float f_bits_complexity_l1_based;
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float f_bits_complexity_l1_based_peak_factor;
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float f_complexity_l1_based;
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LWORD64 i8_bits_allocated_to_gop;
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LWORD64 i8_tot_bits_consumed_first_pass;
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float f_tot_bits_into_qscale_first_pass;
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LWORD64 i8_L1_complexity_sad[MAX_NUM_FRAME_IN_GOP];
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WORD8 ai1_is_complexlity_reset_bits[MAX_NUM_FRAME_IN_GOP];
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WORD8 ai1_scene_type[MAX_NUM_FRAME_IN_GOP];
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float f_den_wt_bits;
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WORD32 ai4_pic_type[MAX_NUM_FRAME_IN_GOP];
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LWORD64 ai8_head_bits_consumed[MAX_NUM_FRAME_IN_GOP];
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LWORD64 ai8_tex_bits_consumed[MAX_NUM_FRAME_IN_GOP];
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WORD32 ai4_first_pass_qscale[MAX_NUM_FRAME_IN_GOP];
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WORD32 ai4_q6_frame_offsets[MAX_NUM_FRAME_IN_GOP];
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float f_gop_level_buffer_play_factor;
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//WORD32 i4_flag_query_buffer_excess;
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float f_hbd_avg_q_scale_gop_without_offset;
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WORD32 i4_num_scene_cuts;
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LWORD64 i8_minimum_gop_bits;
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WORD32 i4_is_below_avg_rate_gop_frame;
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LWORD64 i8_cur_gop_bit_consumption;
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LWORD64 i8_actual_bits_allocated_to_gop;
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//LWORD64 i8_buffer_play_bits;
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LWORD64 i8_buffer_play_bits_allocated_to_gop;
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WORD32 i4_peak_br_clip;
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float f_buffer_play_complexity;
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float f_avg_complexity_factor;
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//float f_gop_level_complexity_sum;
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LWORD64 i8_max_bit_for_gop;
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LWORD64 i8_acc_gop_sad;
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} gop_level_stat_t;
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/*This should be exact order in which data should be dumped and read back from stat file*/
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/*****************************************************************************/
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/* Enums */
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/*****************************************************************************/
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typedef enum
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{
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S_FRAME_NUM = 0,
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S_POC,
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S_PIC_TYPE,
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S_HEVCQP,
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S_SCENE_TYPE,
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S_QSCALE,
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S_CL_SAD,
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S_HEAD_BITS,
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S_TEXT_BITS,
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S_EST_TEX_BITS,
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S_L1_ME_SAD,
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S_L1_IPE_SAD,
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MAX_PARAM_DUMP
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} DUMP_PARAM_TYPE_E;
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/*****************************************************************************/
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/* Extern Function Declarations */
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/*****************************************************************************/
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void init_frame_info(frame_info_t *frame_info);
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void multi_pass_dump_frame_level_stat_binary(
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FILE *pf_stat_file,
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frame_info_t *ps_finfo,
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void *pv_lap_out,
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WORD32 i4_size_of_lap_out,
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void *pv_rc_lap_out,
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WORD32 i4_size_of_rc_lap_out,
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void *pv_sys_rc_api,
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WORD32 i4_br_id_for_2pass);
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WORD32 multi_pass_extract_frame_data_binary(
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FILE *pf_stat_file,
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frame_info_t *ps_finfo,
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void *pv_lap_out,
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WORD32 i4_sizeof_lap_out,
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void *pv_rc_lap_out,
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WORD32 i4_sizeof_rc_lap_out,
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LWORD64 i8_frame_offset,
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WORD32 i4_flag,
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void *pv_sys_rc_api,
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WORD32 i4_br_id_for_2pass);
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#endif
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