[51] | 1 | /* The copyright in this software is being made available under the BSD |
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| 2 | * License, included below. This software may be subject to other third party |
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| 3 | * and contributor rights, including patent rights, and no such rights are |
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| 4 | * granted under this license. |
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| 5 | * |
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| 6 | * Copyright (c) 2010-2013, ITU/ISO/IEC |
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| 7 | * All rights reserved. |
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| 8 | * |
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| 9 | * Redistribution and use in source and binary forms, with or without |
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| 10 | * modification, are permitted provided that the following conditions are met: |
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| 11 | * |
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| 12 | * * Redistributions of source code must retain the above copyright notice, |
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| 13 | * this list of conditions and the following disclaimer. |
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| 14 | * * Redistributions in binary form must reproduce the above copyright notice, |
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| 15 | * this list of conditions and the following disclaimer in the documentation |
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| 16 | * and/or other materials provided with the distribution. |
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| 17 | * * Neither the name of the ITU/ISO/IEC nor the names of its contributors may |
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| 18 | * be used to endorse or promote products derived from this software without |
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| 19 | * specific prior written permission. |
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| 20 | * |
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| 21 | * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" |
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| 22 | * AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE |
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| 23 | * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE |
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| 24 | * ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS |
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| 25 | * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR |
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| 26 | * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF |
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| 27 | * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS |
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| 28 | * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN |
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| 29 | * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) |
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| 30 | * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF |
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| 31 | * THE POSSIBILITY OF SUCH DAMAGE. |
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| 32 | */ |
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| 33 | |
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| 34 | /** |
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| 35 | \file SEIread.cpp |
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| 36 | \brief reading functionality for SEI messages |
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| 37 | */ |
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| 38 | |
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| 39 | #include "TLibCommon/CommonDef.h" |
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| 40 | #include "TLibCommon/TComBitStream.h" |
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| 41 | #include "TLibCommon/SEI.h" |
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| 42 | #include "TLibCommon/TComSlice.h" |
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| 43 | #include "SyntaxElementParser.h" |
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| 44 | #include "SEIread.h" |
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| 45 | |
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| 46 | //! \ingroup TLibDecoder |
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| 47 | //! \{ |
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| 48 | |
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| 49 | #if ENC_DEC_TRACE |
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| 50 | Void xTraceSEIHeader() |
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| 51 | { |
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| 52 | fprintf( g_hTrace, "=========== SEI message ===========\n"); |
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| 53 | } |
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| 54 | |
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| 55 | Void xTraceSEIMessageType(SEI::PayloadType payloadType) |
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| 56 | { |
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| 57 | switch (payloadType) |
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| 58 | { |
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| 59 | case SEI::DECODED_PICTURE_HASH: |
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| 60 | fprintf( g_hTrace, "=========== Decoded picture hash SEI message ===========\n"); |
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| 61 | break; |
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| 62 | case SEI::USER_DATA_UNREGISTERED: |
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| 63 | fprintf( g_hTrace, "=========== User Data Unregistered SEI message ===========\n"); |
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| 64 | break; |
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| 65 | case SEI::ACTIVE_PARAMETER_SETS: |
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| 66 | fprintf( g_hTrace, "=========== Active Parameter sets SEI message ===========\n"); |
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| 67 | break; |
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| 68 | case SEI::BUFFERING_PERIOD: |
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| 69 | fprintf( g_hTrace, "=========== Buffering period SEI message ===========\n"); |
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| 70 | break; |
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| 71 | case SEI::PICTURE_TIMING: |
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| 72 | fprintf( g_hTrace, "=========== Picture timing SEI message ===========\n"); |
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| 73 | break; |
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| 74 | case SEI::RECOVERY_POINT: |
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| 75 | fprintf( g_hTrace, "=========== Recovery point SEI message ===========\n"); |
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| 76 | break; |
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| 77 | case SEI::FRAME_PACKING: |
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| 78 | fprintf( g_hTrace, "=========== Frame Packing Arrangement SEI message ===========\n"); |
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| 79 | break; |
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| 80 | case SEI::DISPLAY_ORIENTATION: |
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| 81 | fprintf( g_hTrace, "=========== Display Orientation SEI message ===========\n"); |
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| 82 | break; |
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| 83 | case SEI::TEMPORAL_LEVEL0_INDEX: |
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| 84 | fprintf( g_hTrace, "=========== Temporal Level Zero Index SEI message ===========\n"); |
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| 85 | break; |
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| 86 | case SEI::REGION_REFRESH_INFO: |
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| 87 | fprintf( g_hTrace, "=========== Gradual Decoding Refresh Information SEI message ===========\n"); |
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| 88 | break; |
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| 89 | case SEI::DECODING_UNIT_INFO: |
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| 90 | fprintf( g_hTrace, "=========== Decoding Unit Information SEI message ===========\n"); |
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| 91 | break; |
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| 92 | default: |
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| 93 | fprintf( g_hTrace, "=========== Unknown SEI message ===========\n"); |
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| 94 | break; |
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| 95 | } |
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| 96 | } |
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| 97 | #endif |
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| 98 | |
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| 99 | /** |
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| 100 | * unmarshal a single SEI message from bitstream bs |
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| 101 | */ |
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| 102 | void SEIReader::parseSEImessage(TComInputBitstream* bs, SEIMessages& seis, const NalUnitType nalUnitType, TComSPS *sps) |
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| 103 | { |
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| 104 | setBitstream(bs); |
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| 105 | |
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| 106 | assert(!m_pcBitstream->getNumBitsUntilByteAligned()); |
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| 107 | do |
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| 108 | { |
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| 109 | xReadSEImessage(seis, nalUnitType, sps); |
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| 110 | /* SEI messages are an integer number of bytes, something has failed |
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| 111 | * in the parsing if bitstream not byte-aligned */ |
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| 112 | assert(!m_pcBitstream->getNumBitsUntilByteAligned()); |
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| 113 | } while (m_pcBitstream->getNumBitsLeft() > 8); |
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| 114 | |
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| 115 | UInt rbspTrailingBits; |
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| 116 | READ_CODE(8, rbspTrailingBits, "rbsp_trailing_bits"); |
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| 117 | assert(rbspTrailingBits == 0x80); |
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| 118 | } |
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| 119 | |
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| 120 | Void SEIReader::xReadSEImessage(SEIMessages& seis, const NalUnitType nalUnitType, TComSPS *sps) |
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| 121 | { |
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| 122 | #if ENC_DEC_TRACE |
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| 123 | xTraceSEIHeader(); |
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| 124 | #endif |
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| 125 | Int payloadType = 0; |
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| 126 | UInt val = 0; |
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| 127 | |
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| 128 | do |
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| 129 | { |
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| 130 | READ_CODE (8, val, "payload_type"); |
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| 131 | payloadType += val; |
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| 132 | } while (val==0xFF); |
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| 133 | |
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| 134 | UInt payloadSize = 0; |
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| 135 | do |
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| 136 | { |
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| 137 | READ_CODE (8, val, "payload_size"); |
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| 138 | payloadSize += val; |
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| 139 | } while (val==0xFF); |
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| 140 | |
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| 141 | #if ENC_DEC_TRACE |
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| 142 | xTraceSEIMessageType((SEI::PayloadType)payloadType); |
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| 143 | #endif |
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| 144 | |
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| 145 | /* extract the payload for this single SEI message. |
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| 146 | * This allows greater safety in erroneous parsing of an SEI message |
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| 147 | * from affecting subsequent messages. |
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| 148 | * After parsing the payload, bs needs to be restored as the primary |
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| 149 | * bitstream. |
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| 150 | */ |
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| 151 | TComInputBitstream *bs = getBitstream(); |
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| 152 | setBitstream(bs->extractSubstream(payloadSize * 8)); |
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| 153 | |
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| 154 | SEI *sei = NULL; |
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| 155 | |
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| 156 | if(nalUnitType == NAL_UNIT_SEI) |
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| 157 | { |
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| 158 | switch (payloadType) |
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| 159 | { |
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| 160 | case SEI::USER_DATA_UNREGISTERED: |
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| 161 | sei = new SEIuserDataUnregistered; |
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| 162 | xParseSEIuserDataUnregistered((SEIuserDataUnregistered&) *sei, payloadSize); |
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| 163 | break; |
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| 164 | case SEI::ACTIVE_PARAMETER_SETS: |
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| 165 | sei = new SEIActiveParameterSets; |
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| 166 | xParseSEIActiveParameterSets((SEIActiveParameterSets&) *sei, payloadSize); |
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| 167 | break; |
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| 168 | case SEI::DECODING_UNIT_INFO: |
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| 169 | if (!sps) |
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| 170 | { |
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| 171 | printf ("Warning: Found Decoding unit SEI message, but no active SPS is available. Ignoring."); |
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| 172 | } |
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| 173 | else |
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| 174 | { |
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| 175 | sei = new SEIDecodingUnitInfo; |
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| 176 | xParseSEIDecodingUnitInfo((SEIDecodingUnitInfo&) *sei, payloadSize, sps); |
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| 177 | } |
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| 178 | break; |
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| 179 | case SEI::BUFFERING_PERIOD: |
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| 180 | if (!sps) |
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| 181 | { |
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| 182 | printf ("Warning: Found Buffering period SEI message, but no active SPS is available. Ignoring."); |
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| 183 | } |
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| 184 | else |
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| 185 | { |
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| 186 | sei = new SEIBufferingPeriod; |
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| 187 | xParseSEIBufferingPeriod((SEIBufferingPeriod&) *sei, payloadSize, sps); |
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| 188 | } |
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| 189 | break; |
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| 190 | case SEI::PICTURE_TIMING: |
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| 191 | if (!sps) |
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| 192 | { |
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| 193 | printf ("Warning: Found Picture timing SEI message, but no active SPS is available. Ignoring."); |
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| 194 | } |
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| 195 | else |
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| 196 | { |
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| 197 | sei = new SEIPictureTiming; |
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| 198 | xParseSEIPictureTiming((SEIPictureTiming&)*sei, payloadSize, sps); |
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| 199 | } |
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| 200 | break; |
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| 201 | case SEI::RECOVERY_POINT: |
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| 202 | sei = new SEIRecoveryPoint; |
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| 203 | xParseSEIRecoveryPoint((SEIRecoveryPoint&) *sei, payloadSize); |
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| 204 | break; |
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| 205 | case SEI::FRAME_PACKING: |
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| 206 | sei = new SEIFramePacking; |
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| 207 | xParseSEIFramePacking((SEIFramePacking&) *sei, payloadSize); |
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| 208 | break; |
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| 209 | case SEI::DISPLAY_ORIENTATION: |
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| 210 | sei = new SEIDisplayOrientation; |
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| 211 | xParseSEIDisplayOrientation((SEIDisplayOrientation&) *sei, payloadSize); |
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| 212 | break; |
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| 213 | case SEI::TEMPORAL_LEVEL0_INDEX: |
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| 214 | sei = new SEITemporalLevel0Index; |
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| 215 | xParseSEITemporalLevel0Index((SEITemporalLevel0Index&) *sei, payloadSize); |
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| 216 | break; |
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| 217 | case SEI::REGION_REFRESH_INFO: |
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| 218 | sei = new SEIGradualDecodingRefreshInfo; |
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| 219 | xParseSEIGradualDecodingRefreshInfo((SEIGradualDecodingRefreshInfo&) *sei, payloadSize); |
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| 220 | break; |
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| 221 | default: |
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| 222 | for (UInt i = 0; i < payloadSize; i++) |
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| 223 | { |
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| 224 | UInt seiByte; |
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| 225 | READ_CODE (8, seiByte, "unknown prefix SEI payload byte"); |
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| 226 | } |
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| 227 | printf ("Unknown prefix SEI message (payloadType = %d) was found!\n", payloadType); |
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| 228 | } |
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| 229 | } |
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| 230 | else |
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| 231 | { |
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| 232 | switch (payloadType) |
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| 233 | { |
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| 234 | #if L0363_SEI_ALLOW_SUFFIX |
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| 235 | case SEI::USER_DATA_UNREGISTERED: |
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| 236 | sei = new SEIuserDataUnregistered; |
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| 237 | xParseSEIuserDataUnregistered((SEIuserDataUnregistered&) *sei, payloadSize); |
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| 238 | break; |
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| 239 | #endif |
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| 240 | case SEI::DECODED_PICTURE_HASH: |
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| 241 | sei = new SEIDecodedPictureHash; |
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| 242 | xParseSEIDecodedPictureHash((SEIDecodedPictureHash&) *sei, payloadSize); |
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| 243 | break; |
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| 244 | default: |
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| 245 | for (UInt i = 0; i < payloadSize; i++) |
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| 246 | { |
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| 247 | UInt seiByte; |
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| 248 | READ_CODE (8, seiByte, "unknown suffix SEI payload byte"); |
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| 249 | } |
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| 250 | printf ("Unknown suffix SEI message (payloadType = %d) was found!\n", payloadType); |
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| 251 | } |
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| 252 | } |
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| 253 | if (sei != NULL) |
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| 254 | { |
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| 255 | seis.push_back(sei); |
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| 256 | } |
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| 257 | |
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| 258 | /* By definition the underlying bitstream terminates in a byte-aligned manner. |
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| 259 | * 1. Extract all bar the last MIN(bitsremaining,nine) bits as reserved_payload_extension_data |
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| 260 | * 2. Examine the final 8 bits to determine the payload_bit_equal_to_one marker |
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| 261 | * 3. Extract the remainingreserved_payload_extension_data bits. |
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| 262 | * |
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| 263 | * If there are fewer than 9 bits available, extract them. |
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| 264 | */ |
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| 265 | Int payloadBitsRemaining = getBitstream()->getNumBitsLeft(); |
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| 266 | if (payloadBitsRemaining) /* more_data_in_payload() */ |
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| 267 | { |
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| 268 | for (; payloadBitsRemaining > 9; payloadBitsRemaining--) |
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| 269 | { |
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| 270 | UInt reservedPayloadExtensionData; |
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| 271 | READ_CODE (1, reservedPayloadExtensionData, "reserved_payload_extension_data"); |
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| 272 | } |
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| 273 | |
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| 274 | /* 2 */ |
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| 275 | Int finalBits = getBitstream()->peekBits(payloadBitsRemaining); |
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| 276 | Int finalPayloadBits = 0; |
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| 277 | for (Int mask = 0xff; finalBits & (mask >> finalPayloadBits); finalPayloadBits++) |
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| 278 | { |
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| 279 | continue; |
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| 280 | } |
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| 281 | |
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| 282 | /* 3 */ |
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| 283 | for (; payloadBitsRemaining > 9 - finalPayloadBits; payloadBitsRemaining--) |
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| 284 | { |
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| 285 | UInt reservedPayloadExtensionData; |
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| 286 | READ_CODE (1, reservedPayloadExtensionData, "reserved_payload_extension_data"); |
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| 287 | } |
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| 288 | |
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| 289 | UInt dummy; |
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| 290 | READ_CODE (1, dummy, "payload_bit_equal_to_one"); |
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| 291 | READ_CODE (payloadBitsRemaining-1, dummy, "payload_bit_equal_to_zero"); |
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| 292 | } |
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| 293 | |
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| 294 | /* restore primary bitstream for sei_message */ |
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| 295 | delete getBitstream(); |
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| 296 | setBitstream(bs); |
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| 297 | } |
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| 298 | |
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| 299 | /** |
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| 300 | * parse bitstream bs and unpack a user_data_unregistered SEI message |
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| 301 | * of payloasSize bytes into sei. |
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| 302 | */ |
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| 303 | Void SEIReader::xParseSEIuserDataUnregistered(SEIuserDataUnregistered &sei, UInt payloadSize) |
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| 304 | { |
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| 305 | assert(payloadSize >= 16); |
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| 306 | UInt val; |
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| 307 | |
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| 308 | for (UInt i = 0; i < 16; i++) |
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| 309 | { |
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| 310 | READ_CODE (8, val, "uuid_iso_iec_11578"); |
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| 311 | sei.uuid_iso_iec_11578[i] = val; |
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| 312 | } |
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| 313 | |
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| 314 | sei.userDataLength = payloadSize - 16; |
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| 315 | if (!sei.userDataLength) |
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| 316 | { |
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| 317 | sei.userData = 0; |
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| 318 | return; |
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| 319 | } |
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| 320 | |
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| 321 | sei.userData = new UChar[sei.userDataLength]; |
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| 322 | for (UInt i = 0; i < sei.userDataLength; i++) |
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| 323 | { |
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| 324 | READ_CODE (8, val, "user_data" ); |
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| 325 | sei.userData[i] = val; |
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| 326 | } |
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| 327 | } |
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| 328 | |
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| 329 | /** |
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| 330 | * parse bitstream bs and unpack a decoded picture hash SEI message |
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| 331 | * of payloadSize bytes into sei. |
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| 332 | */ |
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| 333 | Void SEIReader::xParseSEIDecodedPictureHash(SEIDecodedPictureHash& sei, UInt /*payloadSize*/) |
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| 334 | { |
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| 335 | UInt val; |
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| 336 | READ_CODE (8, val, "hash_type"); |
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| 337 | sei.method = static_cast<SEIDecodedPictureHash::Method>(val); |
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| 338 | for(Int yuvIdx = 0; yuvIdx < 3; yuvIdx++) |
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| 339 | { |
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| 340 | if(SEIDecodedPictureHash::MD5 == sei.method) |
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| 341 | { |
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| 342 | for (UInt i = 0; i < 16; i++) |
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| 343 | { |
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| 344 | READ_CODE(8, val, "picture_md5"); |
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| 345 | sei.digest[yuvIdx][i] = val; |
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| 346 | } |
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| 347 | } |
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| 348 | else if(SEIDecodedPictureHash::CRC == sei.method) |
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| 349 | { |
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| 350 | READ_CODE(16, val, "picture_crc"); |
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| 351 | sei.digest[yuvIdx][0] = val >> 8 & 0xFF; |
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| 352 | sei.digest[yuvIdx][1] = val & 0xFF; |
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| 353 | } |
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| 354 | else if(SEIDecodedPictureHash::CHECKSUM == sei.method) |
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| 355 | { |
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| 356 | READ_CODE(32, val, "picture_checksum"); |
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| 357 | sei.digest[yuvIdx][0] = (val>>24) & 0xff; |
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| 358 | sei.digest[yuvIdx][1] = (val>>16) & 0xff; |
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| 359 | sei.digest[yuvIdx][2] = (val>>8) & 0xff; |
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| 360 | sei.digest[yuvIdx][3] = val & 0xff; |
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| 361 | } |
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| 362 | } |
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| 363 | } |
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| 364 | Void SEIReader::xParseSEIActiveParameterSets(SEIActiveParameterSets& sei, UInt /*payloadSize*/) |
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| 365 | { |
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| 366 | UInt val; |
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| 367 | READ_CODE(4, val, "active_vps_id"); sei.activeVPSId = val; |
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| 368 | #if L0047_APS_FLAGS |
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| 369 | READ_FLAG( val, "full_random_access_flag"); sei.m_fullRandomAccessFlag = val ? true : false; |
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| 370 | READ_FLAG( val, "no_param_set_update_flag"); sei.m_noParamSetUpdateFlag = val ? true : false; |
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| 371 | #endif |
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| 372 | READ_UVLC( val, "num_sps_ids_minus1"); sei.numSpsIdsMinus1 = val; |
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| 373 | |
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| 374 | sei.activeSeqParamSetId.resize(sei.numSpsIdsMinus1 + 1); |
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| 375 | for (Int i=0; i < (sei.numSpsIdsMinus1 + 1); i++) |
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| 376 | { |
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| 377 | READ_UVLC(val, "active_seq_param_set_id"); sei.activeSeqParamSetId[i] = val; |
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| 378 | } |
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| 379 | |
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| 380 | UInt uibits = m_pcBitstream->getNumBitsUntilByteAligned(); |
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| 381 | |
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| 382 | while(uibits--) |
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| 383 | { |
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| 384 | READ_FLAG(val, "alignment_bit"); |
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| 385 | } |
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| 386 | } |
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| 387 | |
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| 388 | Void SEIReader::xParseSEIDecodingUnitInfo(SEIDecodingUnitInfo& sei, UInt /*payloadSize*/, TComSPS *sps) |
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| 389 | { |
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| 390 | UInt val; |
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| 391 | READ_UVLC(val, "decoding_unit_idx"); |
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| 392 | sei.m_decodingUnitIdx = val; |
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| 393 | |
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| 394 | TComVUI *vui = sps->getVuiParameters(); |
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| 395 | if(vui->getHrdParameters()->getSubPicCpbParamsInPicTimingSEIFlag()) |
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| 396 | { |
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| 397 | READ_CODE( ( vui->getHrdParameters()->getDuCpbRemovalDelayLengthMinus1() + 1 ), val, "du_spt_cpb_removal_delay"); |
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| 398 | sei.m_duSptCpbRemovalDelay = val; |
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| 399 | } |
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| 400 | else |
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| 401 | { |
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| 402 | sei.m_duSptCpbRemovalDelay = 0; |
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| 403 | } |
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| 404 | #if L0044_DU_DPB_OUTPUT_DELAY_HRD |
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| 405 | READ_FLAG( val, "dpb_output_du_delay_present_flag"); sei.m_dpbOutputDuDelayPresentFlag = val ? true : false; |
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| 406 | if(sei.m_dpbOutputDuDelayPresentFlag) |
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| 407 | { |
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| 408 | READ_CODE(vui->getHrdParameters()->getDpbOutputDelayDuLengthMinus1() + 1, val, "pic_spt_dpb_output_du_delay"); |
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| 409 | sei.m_picSptDpbOutputDuDelay = val; |
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| 410 | } |
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| 411 | #endif |
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| 412 | xParseByteAlign(); |
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| 413 | } |
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| 414 | |
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| 415 | Void SEIReader::xParseSEIBufferingPeriod(SEIBufferingPeriod& sei, UInt /*payloadSize*/, TComSPS *sps) |
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| 416 | { |
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| 417 | Int i, nalOrVcl; |
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| 418 | UInt code; |
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| 419 | |
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| 420 | TComVUI *pVUI = sps->getVuiParameters(); |
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| 421 | TComHRD *pHRD = pVUI->getHrdParameters(); |
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| 422 | |
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| 423 | READ_UVLC( code, "bp_seq_parameter_set_id" ); sei.m_bpSeqParameterSetId = code; |
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| 424 | if( !pHRD->getSubPicCpbParamsPresentFlag() ) |
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| 425 | { |
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| 426 | READ_FLAG( code, "rap_cpb_params_present_flag" ); sei.m_rapCpbParamsPresentFlag = code; |
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| 427 | } |
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| 428 | #if L0328_SPLICING |
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| 429 | //read splicing flag and cpb_removal_delay_delta |
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| 430 | READ_FLAG( code, "concatenation_flag"); |
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| 431 | sei.m_concatenationFlag = code; |
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| 432 | READ_CODE( ( pHRD->getCpbRemovalDelayLengthMinus1() + 1 ), code, "au_cpb_removal_delay_delta_minus1" ); |
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| 433 | sei.m_auCpbRemovalDelayDelta = code + 1; |
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| 434 | #endif |
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| 435 | #if L0044_CPB_DPB_DELAY_OFFSET |
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| 436 | if( sei.m_rapCpbParamsPresentFlag ) |
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| 437 | { |
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| 438 | READ_CODE( pHRD->getCpbRemovalDelayLengthMinus1() + 1, code, "cpb_delay_offset" ); sei.m_cpbDelayOffset = code; |
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| 439 | READ_CODE( pHRD->getDpbOutputDelayLengthMinus1() + 1, code, "dpb_delay_offset" ); sei.m_dpbDelayOffset = code; |
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| 440 | } |
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| 441 | #endif |
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| 442 | for( nalOrVcl = 0; nalOrVcl < 2; nalOrVcl ++ ) |
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| 443 | { |
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| 444 | if( ( ( nalOrVcl == 0 ) && ( pHRD->getNalHrdParametersPresentFlag() ) ) || |
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| 445 | ( ( nalOrVcl == 1 ) && ( pHRD->getVclHrdParametersPresentFlag() ) ) ) |
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| 446 | { |
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| 447 | for( i = 0; i < ( pHRD->getCpbCntMinus1( 0 ) + 1 ); i ++ ) |
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| 448 | { |
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| 449 | READ_CODE( ( pHRD->getInitialCpbRemovalDelayLengthMinus1() + 1 ) , code, "initial_cpb_removal_delay" ); |
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| 450 | sei.m_initialCpbRemovalDelay[i][nalOrVcl] = code; |
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| 451 | READ_CODE( ( pHRD->getInitialCpbRemovalDelayLengthMinus1() + 1 ) , code, "initial_cpb_removal_delay_offset" ); |
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| 452 | sei.m_initialCpbRemovalDelayOffset[i][nalOrVcl] = code; |
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| 453 | if( pHRD->getSubPicCpbParamsPresentFlag() || sei.m_rapCpbParamsPresentFlag ) |
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| 454 | { |
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| 455 | READ_CODE( ( pHRD->getInitialCpbRemovalDelayLengthMinus1() + 1 ) , code, "initial_alt_cpb_removal_delay" ); |
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| 456 | sei.m_initialAltCpbRemovalDelay[i][nalOrVcl] = code; |
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| 457 | READ_CODE( ( pHRD->getInitialCpbRemovalDelayLengthMinus1() + 1 ) , code, "initial_alt_cpb_removal_delay_offset" ); |
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| 458 | sei.m_initialAltCpbRemovalDelayOffset[i][nalOrVcl] = code; |
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| 459 | } |
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| 460 | } |
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| 461 | } |
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| 462 | } |
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| 463 | xParseByteAlign(); |
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| 464 | } |
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| 465 | Void SEIReader::xParseSEIPictureTiming(SEIPictureTiming& sei, UInt /*payloadSize*/, TComSPS *sps) |
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| 466 | { |
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| 467 | Int i; |
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| 468 | UInt code; |
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| 469 | |
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| 470 | TComVUI *vui = sps->getVuiParameters(); |
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| 471 | TComHRD *hrd = vui->getHrdParameters(); |
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| 472 | |
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| 473 | #if !L0045_CONDITION_SIGNALLING |
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| 474 | // This condition was probably OK before the pic_struct, progressive_source_idc, duplicate_flag were added |
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| 475 | if( !hrd->getNalHrdParametersPresentFlag() && !hrd->getVclHrdParametersPresentFlag() ) |
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| 476 | { |
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| 477 | return; |
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| 478 | } |
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| 479 | #endif |
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| 480 | |
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| 481 | if( vui->getFrameFieldInfoPresentFlag() ) |
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| 482 | { |
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| 483 | READ_CODE( 4, code, "pic_struct" ); sei.m_picStruct = code; |
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| 484 | #if L0046_RENAME_PROG_SRC_IDC |
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| 485 | READ_CODE( 2, code, "source_scan_type" ); sei.m_sourceScanType = code; |
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| 486 | #else |
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| 487 | READ_CODE( 2, code, "progressive_source_idc" ); sei.m_progressiveSourceIdc = code; |
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| 488 | #endif |
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| 489 | READ_FLAG( code, "duplicate_flag" ); sei.m_duplicateFlag = ( code == 1 ? true : false ); |
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| 490 | } |
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| 491 | |
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| 492 | #if L0045_CONDITION_SIGNALLING |
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| 493 | if( hrd->getCpbDpbDelaysPresentFlag()) |
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| 494 | { |
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| 495 | #endif |
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| 496 | READ_CODE( ( hrd->getCpbRemovalDelayLengthMinus1() + 1 ), code, "au_cpb_removal_delay_minus1" ); |
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| 497 | sei.m_auCpbRemovalDelay = code + 1; |
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| 498 | READ_CODE( ( hrd->getDpbOutputDelayLengthMinus1() + 1 ), code, "pic_dpb_output_delay" ); |
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| 499 | sei.m_picDpbOutputDelay = code; |
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| 500 | |
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| 501 | #if L0044_DU_DPB_OUTPUT_DELAY_HRD |
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| 502 | if(hrd->getSubPicCpbParamsPresentFlag()) |
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| 503 | { |
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| 504 | READ_CODE(hrd->getDpbOutputDelayDuLengthMinus1()+1, code, "pic_dpb_output_du_delay" ); |
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| 505 | sei.m_picDpbOutputDuDelay = code; |
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| 506 | } |
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| 507 | #endif |
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| 508 | if( hrd->getSubPicCpbParamsPresentFlag() && hrd->getSubPicCpbParamsInPicTimingSEIFlag() ) |
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| 509 | { |
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| 510 | READ_UVLC( code, "num_decoding_units_minus1"); |
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| 511 | sei.m_numDecodingUnitsMinus1 = code; |
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| 512 | READ_FLAG( code, "du_common_cpb_removal_delay_flag" ); |
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| 513 | sei.m_duCommonCpbRemovalDelayFlag = code; |
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| 514 | if( sei.m_duCommonCpbRemovalDelayFlag ) |
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| 515 | { |
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| 516 | READ_CODE( ( hrd->getDuCpbRemovalDelayLengthMinus1() + 1 ), code, "du_common_cpb_removal_delay_minus1" ); |
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| 517 | sei.m_duCommonCpbRemovalDelayMinus1 = code; |
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| 518 | } |
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| 519 | if( sei.m_numNalusInDuMinus1 != NULL ) |
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| 520 | { |
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| 521 | delete sei.m_numNalusInDuMinus1; |
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| 522 | } |
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| 523 | sei.m_numNalusInDuMinus1 = new UInt[ ( sei.m_numDecodingUnitsMinus1 + 1 ) ]; |
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| 524 | if( sei.m_duCpbRemovalDelayMinus1 != NULL ) |
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| 525 | { |
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| 526 | delete sei.m_duCpbRemovalDelayMinus1; |
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| 527 | } |
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| 528 | sei.m_duCpbRemovalDelayMinus1 = new UInt[ ( sei.m_numDecodingUnitsMinus1 + 1 ) ]; |
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| 529 | |
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| 530 | for( i = 0; i <= sei.m_numDecodingUnitsMinus1; i ++ ) |
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| 531 | { |
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| 532 | READ_UVLC( code, "num_nalus_in_du_minus1"); |
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| 533 | sei.m_numNalusInDuMinus1[ i ] = code; |
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| 534 | if( ( !sei.m_duCommonCpbRemovalDelayFlag ) && ( i < sei.m_numDecodingUnitsMinus1 ) ) |
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| 535 | { |
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| 536 | READ_CODE( ( hrd->getDuCpbRemovalDelayLengthMinus1() + 1 ), code, "du_cpb_removal_delay_minus1" ); |
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| 537 | sei.m_duCpbRemovalDelayMinus1[ i ] = code; |
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| 538 | } |
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| 539 | } |
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| 540 | } |
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| 541 | #if L0045_CONDITION_SIGNALLING |
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| 542 | } |
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| 543 | #endif |
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| 544 | xParseByteAlign(); |
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| 545 | } |
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| 546 | Void SEIReader::xParseSEIRecoveryPoint(SEIRecoveryPoint& sei, UInt /*payloadSize*/) |
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| 547 | { |
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| 548 | Int iCode; |
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| 549 | UInt uiCode; |
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| 550 | READ_SVLC( iCode, "recovery_poc_cnt" ); sei.m_recoveryPocCnt = iCode; |
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| 551 | READ_FLAG( uiCode, "exact_matching_flag" ); sei.m_exactMatchingFlag = uiCode; |
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| 552 | READ_FLAG( uiCode, "broken_link_flag" ); sei.m_brokenLinkFlag = uiCode; |
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| 553 | xParseByteAlign(); |
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| 554 | } |
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| 555 | Void SEIReader::xParseSEIFramePacking(SEIFramePacking& sei, UInt /*payloadSize*/) |
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| 556 | { |
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| 557 | UInt val; |
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| 558 | READ_UVLC( val, "frame_packing_arrangement_id" ); sei.m_arrangementId = val; |
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| 559 | READ_FLAG( val, "frame_packing_arrangement_cancel_flag" ); sei.m_arrangementCancelFlag = val; |
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| 560 | |
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| 561 | if ( !sei.m_arrangementCancelFlag ) |
---|
| 562 | { |
---|
| 563 | READ_CODE( 7, val, "frame_packing_arrangement_type" ); sei.m_arrangementType = val; |
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| 564 | #if L0444_FPA_TYPE |
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| 565 | assert((sei.m_arrangementType > 2) && (sei.m_arrangementType < 6) ); |
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| 566 | #endif |
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| 567 | READ_FLAG( val, "quincunx_sampling_flag" ); sei.m_quincunxSamplingFlag = val; |
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| 568 | |
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| 569 | READ_CODE( 6, val, "content_interpretation_type" ); sei.m_contentInterpretationType = val; |
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| 570 | READ_FLAG( val, "spatial_flipping_flag" ); sei.m_spatialFlippingFlag = val; |
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| 571 | READ_FLAG( val, "frame0_flipped_flag" ); sei.m_frame0FlippedFlag = val; |
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| 572 | READ_FLAG( val, "field_views_flag" ); sei.m_fieldViewsFlag = val; |
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| 573 | READ_FLAG( val, "current_frame_is_frame0_flag" ); sei.m_currentFrameIsFrame0Flag = val; |
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| 574 | READ_FLAG( val, "frame0_self_contained_flag" ); sei.m_frame0SelfContainedFlag = val; |
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| 575 | READ_FLAG( val, "frame1_self_contained_flag" ); sei.m_frame1SelfContainedFlag = val; |
---|
| 576 | |
---|
| 577 | if ( sei.m_quincunxSamplingFlag == 0 && sei.m_arrangementType != 5) |
---|
| 578 | { |
---|
| 579 | READ_CODE( 4, val, "frame0_grid_position_x" ); sei.m_frame0GridPositionX = val; |
---|
| 580 | READ_CODE( 4, val, "frame0_grid_position_y" ); sei.m_frame0GridPositionY = val; |
---|
| 581 | READ_CODE( 4, val, "frame1_grid_position_x" ); sei.m_frame1GridPositionX = val; |
---|
| 582 | READ_CODE( 4, val, "frame1_grid_position_y" ); sei.m_frame1GridPositionY = val; |
---|
| 583 | } |
---|
| 584 | |
---|
| 585 | READ_CODE( 8, val, "frame_packing_arrangement_reserved_byte" ); sei.m_arrangementReservedByte = val; |
---|
| 586 | #if L0045_PERSISTENCE_FLAGS |
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| 587 | READ_FLAG( val, "frame_packing_arrangement_persistence_flag" ); sei.m_arrangementPersistenceFlag = val ? true : false; |
---|
| 588 | #else |
---|
| 589 | READ_UVLC( val, "frame_packing_arrangement_repetition_period" ); sei.m_arrangementRepetetionPeriod = val; |
---|
| 590 | #endif |
---|
| 591 | } |
---|
| 592 | READ_FLAG( val, "upsampled_aspect_ratio" ); sei.m_upsampledAspectRatio = val; |
---|
| 593 | |
---|
| 594 | xParseByteAlign(); |
---|
| 595 | } |
---|
| 596 | |
---|
| 597 | Void SEIReader::xParseSEIDisplayOrientation(SEIDisplayOrientation& sei, UInt /*payloadSize*/) |
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| 598 | { |
---|
| 599 | UInt val; |
---|
| 600 | READ_FLAG( val, "display_orientation_cancel_flag" ); sei.cancelFlag = val; |
---|
| 601 | if( !sei.cancelFlag ) |
---|
| 602 | { |
---|
| 603 | READ_FLAG( val, "hor_flip" ); sei.horFlip = val; |
---|
| 604 | READ_FLAG( val, "ver_flip" ); sei.verFlip = val; |
---|
| 605 | READ_CODE( 16, val, "anticlockwise_rotation" ); sei.anticlockwiseRotation = val; |
---|
| 606 | #if L0045_PERSISTENCE_FLAGS |
---|
| 607 | READ_FLAG( val, "display_orientation_persistence_flag" ); sei.persistenceFlag = val; |
---|
| 608 | #else |
---|
| 609 | READ_UVLC( val, "display_orientation_repetition_period" ); sei.repetitionPeriod = val; |
---|
| 610 | #endif |
---|
| 611 | #if !REMOVE_SINGLE_SEI_EXTENSION_FLAGS |
---|
| 612 | READ_FLAG( val, "display_orientation_extension_flag" ); sei.extensionFlag = val; |
---|
| 613 | assert( !sei.extensionFlag ); |
---|
| 614 | #endif |
---|
| 615 | } |
---|
| 616 | xParseByteAlign(); |
---|
| 617 | } |
---|
| 618 | |
---|
| 619 | Void SEIReader::xParseSEITemporalLevel0Index(SEITemporalLevel0Index& sei, UInt /*payloadSize*/) |
---|
| 620 | { |
---|
| 621 | UInt val; |
---|
| 622 | READ_CODE ( 8, val, "tl0_idx" ); sei.tl0Idx = val; |
---|
| 623 | READ_CODE ( 8, val, "rap_idx" ); sei.rapIdx = val; |
---|
| 624 | xParseByteAlign(); |
---|
| 625 | } |
---|
| 626 | |
---|
| 627 | Void SEIReader::xParseSEIGradualDecodingRefreshInfo(SEIGradualDecodingRefreshInfo& sei, UInt /*payloadSize*/) |
---|
| 628 | { |
---|
| 629 | UInt val; |
---|
| 630 | READ_FLAG( val, "gdr_foreground_flag" ); sei.m_gdrForegroundFlag = val ? 1 : 0; |
---|
| 631 | xParseByteAlign(); |
---|
| 632 | } |
---|
| 633 | |
---|
| 634 | Void SEIReader::xParseByteAlign() |
---|
| 635 | { |
---|
| 636 | UInt code; |
---|
| 637 | if( m_pcBitstream->getNumBitsRead() % 8 != 0 ) |
---|
| 638 | { |
---|
| 639 | READ_FLAG( code, "bit_equal_to_one" ); assert( code == 1 ); |
---|
| 640 | } |
---|
| 641 | while( m_pcBitstream->getNumBitsRead() % 8 != 0 ) |
---|
| 642 | { |
---|
| 643 | READ_FLAG( code, "bit_equal_to_zero" ); assert( code == 0 ); |
---|
| 644 | } |
---|
| 645 | } |
---|
| 646 | //! \} |
---|