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599 lines
20 KiB
C
599 lines
20 KiB
C
/*
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* Copyright (c) 2019, Alliance for Open Media. All rights reserved
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*
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* This source code is subject to the terms of the BSD 2 Clause License and
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* the Alliance for Open Media Patent License 1.0. If the BSD 2 Clause License
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* was not distributed with this source code in the LICENSE file, you can
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* obtain it at www.aomedia.org/license/software. If the Alliance for Open
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* Media Patent License 1.0 was not distributed with this source code in the
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* PATENTS file, you can obtain it at www.aomedia.org/license/patent.
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*/
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#include "aom_ports/system_state.h"
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#include "av1/encoder/encoder.h"
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#include "av1/encoder/level.h"
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#define UNDEFINED_LEVEL \
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{ \
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.level = SEQ_LEVEL_MAX, .max_picture_size = 0, .max_h_size = 0, \
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.max_v_size = 0, .max_display_rate = 0, .max_decode_rate = 0, \
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.max_header_rate = 0, .main_mbps = 0, .high_mbps = 0, .main_cr = 0, \
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.high_cr = 0, .max_tiles = 0, .max_tile_cols = 0 \
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}
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static const AV1LevelSpec av1_level_defs[SEQ_LEVELS] = {
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{ .level = SEQ_LEVEL_2_0,
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.max_picture_size = 147456,
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.max_h_size = 2048,
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.max_v_size = 1152,
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.max_display_rate = 4423680L,
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.max_decode_rate = 5529600L,
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.max_header_rate = 150,
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.main_mbps = 1.5,
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.high_mbps = 0,
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.main_cr = 2.0,
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.high_cr = 0,
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.max_tiles = 8,
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.max_tile_cols = 4 },
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{ .level = SEQ_LEVEL_2_1,
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.max_picture_size = 278784,
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.max_h_size = 2816,
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.max_v_size = 1584,
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.max_display_rate = 8363520L,
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.max_decode_rate = 10454400L,
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.max_header_rate = 150,
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.main_mbps = 3.0,
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.high_mbps = 0,
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.main_cr = 2.0,
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.high_cr = 0,
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.max_tiles = 8,
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.max_tile_cols = 4 },
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UNDEFINED_LEVEL,
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UNDEFINED_LEVEL,
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{ .level = SEQ_LEVEL_3_0,
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.max_picture_size = 665856,
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.max_h_size = 4352,
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.max_v_size = 2448,
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.max_display_rate = 19975680L,
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.max_decode_rate = 24969600L,
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.max_header_rate = 150,
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.main_mbps = 6.0,
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.high_mbps = 0,
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.main_cr = 2.0,
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.high_cr = 0,
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.max_tiles = 16,
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.max_tile_cols = 6 },
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{ .level = SEQ_LEVEL_3_1,
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.max_picture_size = 1065024,
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.max_h_size = 5504,
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.max_v_size = 3096,
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.max_display_rate = 31950720L,
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.max_decode_rate = 39938400L,
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.max_header_rate = 150,
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.main_mbps = 10.0,
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.high_mbps = 0,
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.main_cr = 2.0,
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.high_cr = 0,
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.max_tiles = 16,
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.max_tile_cols = 6 },
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UNDEFINED_LEVEL,
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UNDEFINED_LEVEL,
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{ .level = SEQ_LEVEL_4_0,
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.max_picture_size = 2359296,
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.max_h_size = 6144,
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.max_v_size = 3456,
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.max_display_rate = 70778880L,
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.max_decode_rate = 77856768L,
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.max_header_rate = 300,
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.main_mbps = 12.0,
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.high_mbps = 30.0,
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.main_cr = 4.0,
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.high_cr = 4.0,
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.max_tiles = 32,
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.max_tile_cols = 8 },
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{ .level = SEQ_LEVEL_4_1,
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.max_picture_size = 2359296,
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.max_h_size = 6144,
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.max_v_size = 3456,
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.max_display_rate = 141557760L,
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.max_decode_rate = 155713536L,
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.max_header_rate = 300,
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.main_mbps = 20.0,
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.high_mbps = 50.0,
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.main_cr = 4.0,
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.high_cr = 4.0,
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.max_tiles = 32,
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.max_tile_cols = 8 },
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UNDEFINED_LEVEL,
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UNDEFINED_LEVEL,
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{ .level = SEQ_LEVEL_5_0,
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.max_picture_size = 8912896,
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.max_h_size = 8192,
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.max_v_size = 4352,
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.max_display_rate = 267386880L,
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.max_decode_rate = 273715200L,
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.max_header_rate = 300,
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.main_mbps = 30.0,
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.high_mbps = 100.0,
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.main_cr = 6.0,
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.high_cr = 4.0,
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.max_tiles = 64,
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.max_tile_cols = 8 },
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{ .level = SEQ_LEVEL_5_1,
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.max_picture_size = 8912896,
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.max_h_size = 8192,
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.max_v_size = 4352,
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.max_display_rate = 534773760L,
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.max_decode_rate = 547430400L,
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.max_header_rate = 300,
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.main_mbps = 40.0,
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.high_mbps = 160.0,
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.main_cr = 8.0,
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.high_cr = 4.0,
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.max_tiles = 64,
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.max_tile_cols = 8 },
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{ .level = SEQ_LEVEL_5_2,
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.max_picture_size = 8912896,
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.max_h_size = 8192,
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.max_v_size = 4352,
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.max_display_rate = 1069547520L,
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.max_decode_rate = 1094860800L,
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.max_header_rate = 300,
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.main_mbps = 60.0,
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.high_mbps = 240.0,
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.main_cr = 8.0,
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.high_cr = 4.0,
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.max_tiles = 64,
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.max_tile_cols = 8 },
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{ .level = SEQ_LEVEL_5_3,
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.max_picture_size = 8912896,
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.max_h_size = 8192,
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.max_v_size = 4352,
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.max_display_rate = 1069547520L,
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.max_decode_rate = 1176502272L,
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.max_header_rate = 300,
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.main_mbps = 60.0,
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.high_mbps = 240.0,
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.main_cr = 8.0,
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.high_cr = 4.0,
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.max_tiles = 64,
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.max_tile_cols = 8 },
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{ .level = SEQ_LEVEL_6_0,
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.max_picture_size = 35651584,
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.max_h_size = 16384,
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.max_v_size = 8704,
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.max_display_rate = 1069547520L,
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.max_decode_rate = 1176502272L,
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.max_header_rate = 300,
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.main_mbps = 60.0,
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.high_mbps = 240.0,
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.main_cr = 8.0,
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.high_cr = 4.0,
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.max_tiles = 128,
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.max_tile_cols = 16 },
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{ .level = SEQ_LEVEL_6_1,
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.max_picture_size = 35651584,
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.max_h_size = 16384,
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.max_v_size = 8704,
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.max_display_rate = 2139095040L,
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.max_decode_rate = 2189721600L,
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.max_header_rate = 300,
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.main_mbps = 100.0,
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.high_mbps = 480.0,
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.main_cr = 8.0,
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.high_cr = 4.0,
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.max_tiles = 128,
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.max_tile_cols = 16 },
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{ .level = SEQ_LEVEL_6_2,
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.max_picture_size = 35651584,
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.max_h_size = 16384,
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.max_v_size = 8704,
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.max_display_rate = 4278190080L,
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.max_decode_rate = 4379443200L,
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.max_header_rate = 300,
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.main_mbps = 160.0,
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.high_mbps = 800.0,
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.main_cr = 8.0,
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.high_cr = 4.0,
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.max_tiles = 128,
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.max_tile_cols = 16 },
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{ .level = SEQ_LEVEL_6_3,
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.max_picture_size = 35651584,
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.max_h_size = 16384,
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.max_v_size = 8704,
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.max_display_rate = 4278190080L,
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.max_decode_rate = 4706009088L,
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.max_header_rate = 300,
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.main_mbps = 160.0,
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.high_mbps = 800.0,
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.main_cr = 8.0,
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.high_cr = 4.0,
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.max_tiles = 128,
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.max_tile_cols = 16 },
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UNDEFINED_LEVEL,
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UNDEFINED_LEVEL,
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UNDEFINED_LEVEL,
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UNDEFINED_LEVEL,
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};
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typedef enum {
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LUMA_PIC_SIZE_TOO_LARGE,
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LUMA_PIC_H_SIZE_TOO_LARGE,
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LUMA_PIC_V_SIZE_TOO_LARGE,
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TOO_MANY_TILE_COLUMNS,
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TOO_MANY_TILES,
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TILE_TOO_LARGE,
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CROPPED_TILE_WIDTH_TOO_SMALL,
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CROPPED_TILE_HEIGHT_TOO_SMALL,
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TILE_WIDTH_INVALID,
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FRAME_HEADER_RATE_TOO_HIGH,
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DISPLAY_RATE_TOO_HIGH,
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DECODE_RATE_TOO_HIGH,
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CR_TOO_SMALL,
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TARGET_LEVEL_FAIL_IDS,
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TARGET_LEVEL_OK,
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} TARGET_LEVEL_FAIL_ID;
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static const char *level_fail_messages[TARGET_LEVEL_FAIL_IDS] = {
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"The picture size is too large.",
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"The picture width is too large.",
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"The picture height is too large.",
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"Too many tile columns are used.",
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"Too many tiles are used.",
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"The tile size is too large.",
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"The cropped tile width is less than 8",
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"The cropped tile height is less than 8",
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"The tile width is invalid",
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"The frame header rate is too high",
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"The display luma sample rate is too high",
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"The decoded luma sample rate is too high",
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"The compression ratio is too small",
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};
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static double get_min_cr(const AV1LevelSpec *const level_spec, int tier,
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int is_still_picture, int64_t decoded_sample_rate) {
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if (is_still_picture) return 0.8;
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const double min_cr_basis = tier ? level_spec->high_cr : level_spec->main_cr;
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const double speed_adj =
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(double)decoded_sample_rate / level_spec->max_display_rate;
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return AOMMAX(min_cr_basis * speed_adj, 0.8);
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}
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static TARGET_LEVEL_FAIL_ID check_level_constraints(
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const AV1LevelSpec *const target_level_spec,
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const AV1LevelSpec *const level_spec,
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const AV1LevelStats *const level_stats, int tier, int is_still_picture) {
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const double min_cr = get_min_cr(target_level_spec, tier, is_still_picture,
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level_spec->max_decode_rate);
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TARGET_LEVEL_FAIL_ID fail_id = TARGET_LEVEL_OK;
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do {
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if (level_spec->max_picture_size > target_level_spec->max_picture_size) {
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fail_id = LUMA_PIC_SIZE_TOO_LARGE;
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break;
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}
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if (level_spec->max_h_size > target_level_spec->max_h_size) {
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fail_id = LUMA_PIC_H_SIZE_TOO_LARGE;
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break;
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}
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if (level_spec->max_v_size > target_level_spec->max_v_size) {
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fail_id = LUMA_PIC_V_SIZE_TOO_LARGE;
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break;
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}
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if (level_spec->max_tile_cols > target_level_spec->max_tile_cols) {
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fail_id = TOO_MANY_TILE_COLUMNS;
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break;
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}
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if (level_spec->max_tiles > target_level_spec->max_tiles) {
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fail_id = TOO_MANY_TILES;
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break;
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}
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if (level_spec->max_header_rate > target_level_spec->max_header_rate) {
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fail_id = FRAME_HEADER_RATE_TOO_HIGH;
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break;
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}
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if (level_spec->max_display_rate > target_level_spec->max_display_rate) {
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fail_id = DISPLAY_RATE_TOO_HIGH;
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break;
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}
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if (level_spec->max_decode_rate > target_level_spec->max_decode_rate) {
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fail_id = DECODE_RATE_TOO_HIGH;
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break;
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}
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if (level_stats->max_tile_size > 4096 * 2304) {
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fail_id = TILE_TOO_LARGE;
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break;
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}
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if (level_stats->min_cropped_tile_width < 8) {
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fail_id = CROPPED_TILE_WIDTH_TOO_SMALL;
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break;
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}
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if (level_stats->min_cropped_tile_height < 8) {
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fail_id = CROPPED_TILE_HEIGHT_TOO_SMALL;
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break;
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}
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if (!level_stats->tile_width_is_valid) {
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fail_id = TILE_WIDTH_INVALID;
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break;
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}
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if (level_stats->min_cr < min_cr) {
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fail_id = CR_TOO_SMALL;
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break;
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}
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} while (0);
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return fail_id;
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}
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static INLINE int is_in_operating_point(int operating_point,
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int temporal_layer_id,
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int spatial_layer_id) {
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if (!operating_point) return 1;
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return ((operating_point >> temporal_layer_id) & 1) &&
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((operating_point >> (spatial_layer_id + 8)) & 1);
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}
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static void get_tile_stats(const AV1_COMP *const cpi, int *max_tile_size,
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int *min_cropped_tile_width,
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int *min_cropped_tile_height,
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int *tile_width_valid) {
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const AV1_COMMON *const cm = &cpi->common;
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const int tile_cols = cm->tile_cols;
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const int tile_rows = cm->tile_rows;
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*max_tile_size = 0;
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*min_cropped_tile_width = INT_MAX;
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*min_cropped_tile_height = INT_MAX;
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*tile_width_valid = 1;
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for (int tile_row = 0; tile_row < tile_rows; ++tile_row) {
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for (int tile_col = 0; tile_col < tile_cols; ++tile_col) {
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const TileInfo *const tile_info =
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&cpi->tile_data[tile_row * cm->tile_cols + tile_col].tile_info;
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const int tile_width =
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(tile_info->mi_col_end - tile_info->mi_col_start) * MI_SIZE;
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const int tile_height =
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(tile_info->mi_row_end - tile_info->mi_row_start) * MI_SIZE;
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const int tile_size = tile_width * tile_height;
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*max_tile_size = AOMMAX(*max_tile_size, tile_size);
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const int cropped_tile_width =
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cm->width - tile_info->mi_col_start * MI_SIZE;
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const int cropped_tile_height =
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cm->height - tile_info->mi_row_start * MI_SIZE;
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*min_cropped_tile_width =
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AOMMIN(*min_cropped_tile_width, cropped_tile_width);
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*min_cropped_tile_height =
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AOMMIN(*min_cropped_tile_height, cropped_tile_height);
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const int is_right_most_tile = tile_info->mi_col_end == cm->mi_cols;
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if (!is_right_most_tile) {
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if (av1_superres_scaled(cm))
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*tile_width_valid &= tile_width >= 128;
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else
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*tile_width_valid &= tile_width >= 64;
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}
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}
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}
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}
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static int store_frame_record(int64_t ts_start, int64_t ts_end, int pic_size,
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int frame_header_count, int show_frame,
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int show_existing_frame,
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FrameWindowBuffer *const buffer) {
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if (buffer->num < FRAME_WINDOW_SIZE) {
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++buffer->num;
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} else {
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buffer->start = (buffer->start + 1) % FRAME_WINDOW_SIZE;
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}
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const int new_idx = (buffer->start + buffer->num - 1) % FRAME_WINDOW_SIZE;
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FrameRecord *const record = &buffer->buf[new_idx];
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record->ts_start = ts_start;
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record->ts_end = ts_end;
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record->pic_size = pic_size;
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record->frame_header_count = frame_header_count;
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record->show_frame = show_frame;
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record->show_existing_frame = show_existing_frame;
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return new_idx;
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}
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// Count the number of frames encoded in the last "duration" ticks, in display
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// time.
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static int count_frames(const FrameWindowBuffer *const buffer,
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int64_t duration) {
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const int current_idx = (buffer->start + buffer->num - 1) % FRAME_WINDOW_SIZE;
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// Assume current frame is shown frame.
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assert(buffer->buf[current_idx].show_frame);
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const int64_t current_time = buffer->buf[current_idx].ts_end;
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const int64_t time_limit = AOMMAX(current_time - duration, 0);
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int num_frames = 1;
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int index = current_idx - 1;
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for (int i = buffer->num - 2; i >= 0; --i, --index, ++num_frames) {
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if (index < 0) index = FRAME_WINDOW_SIZE - 1;
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const FrameRecord *const record = &buffer->buf[index];
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if (!record->show_frame) continue;
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const int64_t ts_start = record->ts_start;
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if (ts_start < time_limit) break;
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}
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return num_frames;
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}
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// Scan previously encoded frames and update level metrics accordingly.
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static void scan_past_frames(const FrameWindowBuffer *const buffer,
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int num_frames_to_scan,
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AV1LevelSpec *const level_spec) {
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const int num_frames_in_buffer = buffer->num;
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int index = (buffer->start + num_frames_in_buffer - 1) % FRAME_WINDOW_SIZE;
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int frame_headers = 0;
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int64_t display_samples = 0;
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int64_t decoded_samples = 0;
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for (int i = 0; i < AOMMIN(num_frames_in_buffer, num_frames_to_scan); ++i) {
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const FrameRecord *const record = &buffer->buf[index];
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if (!record->show_existing_frame) {
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frame_headers += record->frame_header_count;
|
|
decoded_samples += record->pic_size;
|
|
}
|
|
if (record->show_frame) {
|
|
display_samples += record->pic_size;
|
|
}
|
|
--index;
|
|
if (index < 0) index = FRAME_WINDOW_SIZE - 1;
|
|
}
|
|
level_spec->max_header_rate =
|
|
AOMMAX(level_spec->max_header_rate, frame_headers);
|
|
level_spec->max_display_rate =
|
|
AOMMAX(level_spec->max_display_rate, display_samples);
|
|
level_spec->max_decode_rate =
|
|
AOMMAX(level_spec->max_decode_rate, decoded_samples);
|
|
}
|
|
|
|
void av1_update_level_info(AV1_COMP *cpi, size_t size, int64_t ts_start,
|
|
int64_t ts_end) {
|
|
AV1_COMMON *const cm = &cpi->common;
|
|
const int upscaled_width = cm->superres_upscaled_width;
|
|
const int height = cm->height;
|
|
const int tile_cols = cm->tile_cols;
|
|
const int tile_rows = cm->tile_rows;
|
|
const int tiles = tile_cols * tile_rows;
|
|
const int luma_pic_size = upscaled_width * height;
|
|
const int frame_header_count = cpi->frame_header_count;
|
|
const int show_frame = cm->show_frame;
|
|
const int show_existing_frame = cm->show_existing_frame;
|
|
|
|
// Store info. of current frame into FrameWindowBuffer.
|
|
FrameWindowBuffer *const buffer = &cpi->frame_window_buffer;
|
|
store_frame_record(ts_start, ts_end, luma_pic_size, frame_header_count,
|
|
show_frame, show_existing_frame, buffer);
|
|
// Count the number of frames encoded in the past 1 second.
|
|
const int encoded_frames_in_last_second =
|
|
show_frame ? count_frames(buffer, TICKS_PER_SEC) : 0;
|
|
|
|
int max_tile_size;
|
|
int min_cropped_tile_width;
|
|
int min_cropped_tile_height;
|
|
int tile_width_is_valid;
|
|
get_tile_stats(cpi, &max_tile_size, &min_cropped_tile_width,
|
|
&min_cropped_tile_height, &tile_width_is_valid);
|
|
|
|
const SequenceHeader *const seq_params = &cm->seq_params;
|
|
const BITSTREAM_PROFILE profile = seq_params->profile;
|
|
const int pic_size_profile_factor =
|
|
profile == PROFILE_0 ? 15 : (profile == PROFILE_1 ? 30 : 36);
|
|
const size_t frame_compressed_size = (size > 129 ? size - 128 : 1);
|
|
const size_t frame_uncompressed_size =
|
|
(luma_pic_size * pic_size_profile_factor) >> 3;
|
|
|
|
aom_clear_system_state();
|
|
const double compression_ratio =
|
|
frame_uncompressed_size / (double)frame_compressed_size;
|
|
const double total_time_encoded =
|
|
(cpi->last_end_time_stamp_seen - cpi->first_time_stamp_ever) /
|
|
(double)TICKS_PER_SEC;
|
|
|
|
const int temporal_layer_id = cm->temporal_layer_id;
|
|
const int spatial_layer_id = cm->spatial_layer_id;
|
|
const int is_still_picture = seq_params->still_picture;
|
|
// update level_stats
|
|
// TODO(kyslov@) fix the implementation according to buffer model
|
|
for (int i = 0; i < seq_params->operating_points_cnt_minus_1 + 1; ++i) {
|
|
if (!is_in_operating_point(seq_params->operating_point_idc[i],
|
|
temporal_layer_id, spatial_layer_id)) {
|
|
continue;
|
|
}
|
|
|
|
AV1LevelInfo *const level_info = &cpi->level_info[i];
|
|
AV1LevelStats *const level_stats = &level_info->level_stats;
|
|
|
|
level_stats->max_tile_size =
|
|
AOMMAX(level_stats->max_tile_size, max_tile_size);
|
|
level_stats->min_cropped_tile_width =
|
|
AOMMIN(level_stats->min_cropped_tile_width, min_cropped_tile_width);
|
|
level_stats->min_cropped_tile_height =
|
|
AOMMIN(level_stats->min_cropped_tile_height, min_cropped_tile_height);
|
|
level_stats->tile_width_is_valid &= tile_width_is_valid;
|
|
level_stats->total_compressed_size += frame_compressed_size;
|
|
if (show_frame) level_stats->total_time_encoded = total_time_encoded;
|
|
level_stats->min_cr = AOMMIN(level_stats->min_cr, compression_ratio);
|
|
|
|
// update level_spec
|
|
// TODO(kyslov@) update all spec fields
|
|
AV1LevelSpec *const level_spec = &level_info->level_spec;
|
|
level_spec->max_picture_size =
|
|
AOMMAX(level_spec->max_picture_size, luma_pic_size);
|
|
level_spec->max_h_size =
|
|
AOMMAX(level_spec->max_h_size, cm->superres_upscaled_width);
|
|
level_spec->max_v_size = AOMMAX(level_spec->max_v_size, height);
|
|
level_spec->max_tile_cols = AOMMAX(level_spec->max_tile_cols, tile_cols);
|
|
level_spec->max_tiles = AOMMAX(level_spec->max_tiles, tiles);
|
|
|
|
if (show_frame) {
|
|
scan_past_frames(buffer, encoded_frames_in_last_second, level_spec);
|
|
}
|
|
|
|
// Check whether target level is met.
|
|
const AV1_LEVEL target_seq_level_idx = cpi->target_seq_level_idx[i];
|
|
if (target_seq_level_idx < SEQ_LEVELS) {
|
|
const AV1LevelSpec *const target_level_spec =
|
|
av1_level_defs + target_seq_level_idx;
|
|
const int tier = seq_params->tier[i];
|
|
const TARGET_LEVEL_FAIL_ID fail_id = check_level_constraints(
|
|
target_level_spec, level_spec, level_stats, tier, is_still_picture);
|
|
if (fail_id != TARGET_LEVEL_OK) {
|
|
const int target_level_major = 2 + (target_seq_level_idx >> 2);
|
|
const int target_level_minor = target_seq_level_idx & 3;
|
|
aom_internal_error(&cm->error, AOM_CODEC_ERROR,
|
|
"Failed to encode to the target level %d_%d. %s",
|
|
target_level_major, target_level_minor,
|
|
level_fail_messages[fail_id]);
|
|
}
|
|
}
|
|
}
|
|
}
|
|
|
|
aom_codec_err_t av1_get_seq_level_idx(const AV1_COMP *cpi, int *seq_level_idx) {
|
|
const SequenceHeader *const seq_params = &cpi->common.seq_params;
|
|
if (!cpi->keep_level_stats) {
|
|
for (int op = 0; op < seq_params->operating_points_cnt_minus_1 + 1; ++op) {
|
|
seq_level_idx[op] = (int)SEQ_LEVEL_MAX;
|
|
}
|
|
return AOM_CODEC_OK;
|
|
}
|
|
|
|
const int is_still_picture = seq_params->still_picture;
|
|
for (int op = 0; op < seq_params->operating_points_cnt_minus_1 + 1; ++op) {
|
|
seq_level_idx[op] = (int)SEQ_LEVEL_MAX;
|
|
const int tier = seq_params->tier[op];
|
|
const AV1LevelInfo *const level_info = &cpi->level_info[op];
|
|
const AV1LevelStats *const level_stats = &level_info->level_stats;
|
|
const AV1LevelSpec *const level_spec = &level_info->level_spec;
|
|
for (int level = 0; level < SEQ_LEVELS; ++level) {
|
|
const AV1LevelSpec *const target_level_spec = av1_level_defs + level;
|
|
const TARGET_LEVEL_FAIL_ID fail_id = check_level_constraints(
|
|
target_level_spec, level_spec, level_stats, tier, is_still_picture);
|
|
if (fail_id == TARGET_LEVEL_OK) {
|
|
seq_level_idx[op] = level;
|
|
break;
|
|
}
|
|
}
|
|
}
|
|
|
|
return AOM_CODEC_OK;
|
|
}
|