[56] | 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) 2010-2012, 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 | #include <vector> |
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| 35 | #include <algorithm> |
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| 36 | #include <ostream> |
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| 37 | |
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| 38 | #include "TLibCommon/NAL.h" |
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| 39 | #include "TLibCommon/TComBitStream.h" |
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| 40 | #include "NALwrite.h" |
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| 41 | |
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| 42 | using namespace std; |
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| 43 | |
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| 44 | //! \ingroup TLibEncoder |
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| 45 | //! \{ |
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| 46 | |
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| 47 | static const char emulation_prevention_three_byte[] = {3}; |
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| 48 | |
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| 49 | /** |
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| 50 | * write nalu to bytestream out, performing RBSP anti startcode |
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| 51 | * emulation as required. nalu.m_RBSPayload must be byte aligned. |
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| 52 | */ |
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| 53 | void write(ostream& out, OutputNALUnit& nalu) |
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| 54 | { |
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| 55 | TComOutputBitstream bsNALUHeader; |
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| 56 | |
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| 57 | bsNALUHeader.write(0,1); // forbidden_zero_flag |
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| 58 | #if NAL_REF_FLAG |
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| 59 | bsNALUHeader.write(nalu.m_nalRefFlag? 1 : 0, 1); // nal_ref_flag |
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| 60 | bsNALUHeader.write(nalu.m_nalUnitType, 6); // nal_unit_type |
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| 61 | #else |
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| 62 | bsNALUHeader.write(nalu.m_nalRefIDC, 2); // nal_ref_idc |
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| 63 | bsNALUHeader.write(nalu.m_nalUnitType, 5); // nal_unit_type |
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| 64 | #endif |
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| 65 | |
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[77] | 66 | #if VIDYO_VPS_INTEGRATION |
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| 67 | bsNALUHeader.write(nalu.m_temporalId, 3); // temporal_id |
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| 68 | bsNALUHeader.write(nalu.m_layerId + 1, 5); // layer_id_plus1 |
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| 69 | #else |
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[56] | 70 | #if H0388 |
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| 71 | bsNALUHeader.write(nalu.m_temporalId, 3); // temporal_id |
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| 72 | // bsNALUHeader.write(1, 5); // reserved_one_5bits |
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| 73 | bsNALUHeader.write(nalu.m_viewId+1,4); |
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| 74 | bsNALUHeader.write(nalu.m_isDepth,1); |
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| 75 | #else |
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| 76 | switch (nalu.m_nalUnitType) |
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| 77 | { |
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| 78 | case NAL_UNIT_CODED_SLICE: |
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| 79 | case NAL_UNIT_CODED_SLICE_IDR: |
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| 80 | #if H0566_TLA |
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| 81 | case NAL_UNIT_CODED_SLICE_IDV: |
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| 82 | case NAL_UNIT_CODED_SLICE_CRA: |
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| 83 | case NAL_UNIT_CODED_SLICE_TLA: |
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| 84 | #else |
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| 85 | case NAL_UNIT_CODED_SLICE_CDR: |
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| 86 | #endif |
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| 87 | bsNALUHeader.write(nalu.m_temporalId, 3); // temporal_id |
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| 88 | bsNALUHeader.write(nalu.m_OutputFlag, 1); // output_flag |
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| 89 | // bsNALUHeader.write(1, 4); // reserved_one_4bits |
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| 90 | bsNALUHeader.write(nalu.m_viewId+1,3); |
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| 91 | bsNALUHeader.write(nalu.m_isDepth,1); |
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| 92 | break; |
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| 93 | default: break; |
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| 94 | } |
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| 95 | #endif |
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[77] | 96 | #endif |
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| 97 | |
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[56] | 98 | out.write(bsNALUHeader.getByteStream(), bsNALUHeader.getByteStreamLength()); |
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| 99 | |
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| 100 | /* write out rsbp_byte's, inserting any required |
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| 101 | * emulation_prevention_three_byte's */ |
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| 102 | /* 7.4.1 ... |
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| 103 | * emulation_prevention_three_byte is a byte equal to 0x03. When an |
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| 104 | * emulation_prevention_three_byte is present in the NAL unit, it shall be |
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| 105 | * discarded by the decoding process. |
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| 106 | * The last byte of the NAL unit shall not be equal to 0x00. |
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| 107 | * Within the NAL unit, the following three-byte sequences shall not occur at |
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| 108 | * any byte-aligned position: |
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| 109 | * - 0x000000 |
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| 110 | * - 0x000001 |
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| 111 | * - 0x000002 |
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| 112 | * Within the NAL unit, any four-byte sequence that starts with 0x000003 |
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| 113 | * other than the following sequences shall not occur at any byte-aligned |
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| 114 | * position: |
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| 115 | * - 0x00000300 |
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| 116 | * - 0x00000301 |
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| 117 | * - 0x00000302 |
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| 118 | * - 0x00000303 |
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| 119 | */ |
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| 120 | vector<uint8_t>& rbsp = nalu.m_Bitstream.getFIFO(); |
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| 121 | UInt uiTileMarkerCount = nalu.m_Bitstream.getTileMarkerLocationCount(); |
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| 122 | |
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| 123 | for (vector<uint8_t>::iterator it = rbsp.begin(); it != rbsp.end();) |
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| 124 | { |
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| 125 | /* 1) find the next emulated 00 00 {00,01,02,03} |
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| 126 | * 2a) if not found, write all remaining bytes out, stop. |
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| 127 | * 2b) otherwise, write all non-emulated bytes out |
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| 128 | * 3) insert emulation_prevention_three_byte |
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| 129 | */ |
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| 130 | vector<uint8_t>::iterator found = it; |
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| 131 | do |
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| 132 | { |
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| 133 | /* NB, end()-1, prevents finding a trailing two byte sequence */ |
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| 134 | found = search_n(found, rbsp.end()-1, 2, 0); |
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| 135 | found++; |
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| 136 | /* if not found, found == end, otherwise found = second zero byte */ |
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| 137 | if (found == rbsp.end()) |
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| 138 | break; |
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| 139 | if (*(++found) <= 3) |
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| 140 | break; |
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| 141 | } while (true); |
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| 142 | |
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| 143 | UInt uiDistance = (UInt)(found - rbsp.begin()); |
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| 144 | for ( UInt uiMrkrIdx = 0; uiMrkrIdx < uiTileMarkerCount ; uiMrkrIdx++ ) |
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| 145 | { |
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| 146 | UInt uiByteLocation = nalu.m_Bitstream.getTileMarkerLocation( uiMrkrIdx ); |
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| 147 | if (found != rbsp.end() && uiByteLocation > (uiDistance - 2) ) |
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| 148 | { |
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| 149 | nalu.m_Bitstream.setTileMarkerLocation( uiMrkrIdx, uiByteLocation+1 ); |
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| 150 | } |
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| 151 | } |
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| 152 | it = found; |
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| 153 | if (found != rbsp.end()) |
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| 154 | { |
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| 155 | it = rbsp.insert(found, emulation_prevention_three_byte[0]); |
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| 156 | } |
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| 157 | } |
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| 158 | |
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| 159 | // Insert tile markers |
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| 160 | TComOutputBitstream cTileMarker; |
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| 161 | UInt uiMarker = 0x000002; |
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| 162 | cTileMarker.write(uiMarker, 24); |
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| 163 | for ( UInt uiInsertIdx = 0; uiInsertIdx < uiTileMarkerCount ; uiInsertIdx++ ) |
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| 164 | { |
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| 165 | UInt uiByteLocation = nalu.m_Bitstream.getTileMarkerLocation( uiInsertIdx ); |
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| 166 | nalu.m_Bitstream.insertAt( cTileMarker, uiByteLocation ); // 0x000002 |
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| 167 | |
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| 168 | // update tile marker byte locations of yet to be written markers |
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| 169 | for ( UInt uiUpdateLOCIdx = uiInsertIdx+1; uiUpdateLOCIdx < uiTileMarkerCount; uiUpdateLOCIdx++ ) |
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| 170 | { |
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| 171 | UInt uiLocation = nalu.m_Bitstream.getTileMarkerLocation( uiUpdateLOCIdx ); |
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| 172 | nalu.m_Bitstream.setTileMarkerLocation( uiUpdateLOCIdx, uiLocation + 3 ); |
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| 173 | } |
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| 174 | } |
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| 175 | out.write((char*)&(*rbsp.begin()), rbsp.end() - rbsp.begin()); |
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| 176 | |
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| 177 | |
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| 178 | /* 7.4.1.1 |
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| 179 | * ... when the last byte of the RBSP data is equal to 0x00 (which can |
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| 180 | * only occur when the RBSP ends in a cabac_zero_word), a final byte equal |
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| 181 | * to 0x03 is appended to the end of the data. |
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| 182 | */ |
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| 183 | if (rbsp.back() == 0x00) |
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| 184 | { |
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| 185 | out.write(emulation_prevention_three_byte, 1); |
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| 186 | } |
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| 187 | } |
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| 188 | |
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| 189 | /** |
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| 190 | * Write rbsp_trailing_bits to bs causing it to become byte-aligned |
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| 191 | */ |
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| 192 | void writeRBSPTrailingBits(TComOutputBitstream& bs) |
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| 193 | { |
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| 194 | bs.write( 1, 1 ); |
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| 195 | bs.writeAlignZero(); |
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| 196 | } |
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| 197 | |
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| 198 | /** |
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| 199 | * Copy NALU from naluSrc to naluDest |
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| 200 | */ |
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| 201 | void copyNaluData(OutputNALUnit& naluDest, const OutputNALUnit& naluSrc) |
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| 202 | { |
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| 203 | naluDest.m_nalUnitType = naluSrc.m_nalUnitType; |
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| 204 | #if NAL_REF_FLAG |
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| 205 | naluDest.m_nalRefFlag = naluSrc.m_nalRefFlag; |
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| 206 | #else |
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| 207 | naluDest.m_nalRefIDC = naluSrc.m_nalRefIDC; |
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| 208 | #endif |
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[77] | 209 | #if !VIDYO_VPS_INTEGRATION |
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[56] | 210 | naluDest.m_viewId = naluSrc.m_viewId; |
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| 211 | naluDest.m_isDepth = naluSrc.m_isDepth; |
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[77] | 212 | #endif |
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[56] | 213 | naluDest.m_temporalId = naluSrc.m_temporalId; |
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[77] | 214 | #if VIDYO_VPS_INTEGRATION |
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| 215 | naluDest.m_layerId = naluSrc.m_layerId; |
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| 216 | #else |
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| 217 | |
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[56] | 218 | #if !H0388 |
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| 219 | naluDest.m_OutputFlag = naluSrc.m_OutputFlag; |
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| 220 | #endif |
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[77] | 221 | #endif |
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[56] | 222 | naluDest.m_Bitstream = naluSrc.m_Bitstream; |
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| 223 | } |
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| 224 | |
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| 225 | //! \} |
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