source: 3DVCSoftware/branches/HTM-15.1-dev0-NICT/source/Lib/TLibDecoder/SEIread.cpp @ 1354

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FIX: cfg 3x3 matrix

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1/* The copyright in this software is being made available under the BSD
2 * License, included below. This software may be subject to other third party
3 * and contributor rights, including patent rights, and no such rights are
4 * granted under this license.
5 *
6 * Copyright (c) 2010-2015, ITU/ISO/IEC
7 * All rights reserved.
8 *
9 * Redistribution and use in source and binary forms, with or without
10 * modification, are permitted provided that the following conditions are met:
11 *
12 *  * Redistributions of source code must retain the above copyright notice,
13 *    this list of conditions and the following disclaimer.
14 *  * Redistributions in binary form must reproduce the above copyright notice,
15 *    this list of conditions and the following disclaimer in the documentation
16 *    and/or other materials provided with the distribution.
17 *  * Neither the name of the ITU/ISO/IEC nor the names of its contributors may
18 *    be used to endorse or promote products derived from this software without
19 *    specific prior written permission.
20 *
21 * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
22 * AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
23 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
24 * ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS
25 * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
26 * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
27 * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
28 * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
29 * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
30 * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF
31 * THE POSSIBILITY OF SUCH DAMAGE.
32 */
33
34/**
35 \file     SEIread.cpp
36 \brief    reading funtionality for SEI messages
37 */
38
39#include "TLibCommon/CommonDef.h"
40#include "TLibCommon/TComBitStream.h"
41#include "TLibCommon/SEI.h"
42#include "TLibCommon/TComSlice.h"
43#include "SyntaxElementParser.h"
44#include "SEIread.h"
45#include "TLibCommon/TComPicYuv.h"
46#include <iomanip>
47
48
49//! \ingroup TLibDecoder
50//! \{
51
52
53#if ENC_DEC_TRACE
54Void  xTraceSEIHeader()
55{
56  fprintf( g_hTrace, "=========== SEI message ===========\n");
57}
58
59Void  xTraceSEIMessageType(SEI::PayloadType payloadType)
60{
61  fprintf( g_hTrace, "=========== %s SEI message ===========\n", SEI::getSEIMessageString(payloadType));
62}
63#endif
64
65Void SEIReader::sei_read_code(std::ostream *pOS, UInt uiLength, UInt& ruiCode, const Char *pSymbolName)
66{
67  READ_CODE(uiLength, ruiCode, pSymbolName);
68  if (pOS)
69  {
70    (*pOS) << "  " << std::setw(55) << pSymbolName << ": " << ruiCode << "\n";
71  }
72}
73
74Void SEIReader::sei_read_uvlc(std::ostream *pOS, UInt& ruiCode, const Char *pSymbolName)
75{
76  READ_UVLC(ruiCode, pSymbolName);
77  if (pOS)
78  {
79    (*pOS) << "  " << std::setw(55) << pSymbolName << ": " << ruiCode << "\n";
80  }
81}
82
83Void SEIReader::sei_read_svlc(std::ostream *pOS, Int& ruiCode, const Char *pSymbolName)
84{
85  READ_SVLC(ruiCode, pSymbolName);
86  if (pOS)
87  {
88    (*pOS) << "  " << std::setw(55) << pSymbolName << ": " << ruiCode << "\n";
89  }
90}
91
92Void SEIReader::sei_read_flag(std::ostream *pOS, UInt& ruiCode, const Char *pSymbolName)
93{
94  READ_FLAG(ruiCode, pSymbolName);
95  if (pOS)
96  {
97    (*pOS) << "  " << std::setw(55) << pSymbolName << ": " << (ruiCode?1:0) << "\n";
98  }
99}
100
101Void SEIReader::sei_read_string(std::ostream *pOS, UInt uiBufSize, UChar* pucCode, UInt& ruiLength, const Char *pSymbolName)
102{
103  READ_STRING(uiBufSize, pucCode, ruiLength, pSymbolName);
104  if (pOS)
105  {
106    (*pOS) << "  " << pSymbolName << ": " << (const char*) pucCode << "\n";
107  }
108}
109
110#if NH_MV_SEI
111inline Void SEIReader::output_sei_message_header(SEI &sei, std::ostream *pDecodedMessageOutputStream, UInt payloadSize)
112#else
113static inline Void output_sei_message_header(SEI &sei, std::ostream *pDecodedMessageOutputStream, UInt payloadSize)
114#endif
115{
116  if (pDecodedMessageOutputStream)
117  {
118    std::string seiMessageHdr(SEI::getSEIMessageString(sei.payloadType())); seiMessageHdr+=" SEI message";
119    (*pDecodedMessageOutputStream) << std::setfill('-') << std::setw(seiMessageHdr.size()) << "-" << std::setfill(' ') << "\n" << seiMessageHdr << " (" << payloadSize << " bytes)"<< "\n";
120#if NH_MV_SEI
121    (*pDecodedMessageOutputStream) << std::setfill(' ') << "LayerId: " << m_layerId << std::setw(2) << " Picture: " << m_decOrder << std::setw( 5 ) << std::endl;
122#endif
123  }
124}
125
126#undef READ_CODE
127#undef READ_SVLC
128#undef READ_UVLC
129#undef READ_FLAG
130
131
132/**
133 * unmarshal a single SEI message from bitstream bs
134 */
135#if NH_MV_LAYERS_NOT_PRESENT_SEI
136Void SEIReader::parseSEImessage(TComInputBitstream* bs, SEIMessages& seis, const NalUnitType nalUnitType, const TComVPS *vps, const TComSPS *sps, std::ostream *pDecodedMessageOutputStream)
137#else
138Void SEIReader::parseSEImessage(TComInputBitstream* bs, SEIMessages& seis, const NalUnitType nalUnitType, const TComSPS *sps, std::ostream *pDecodedMessageOutputStream)
139#endif
140{
141  setBitstream(bs);
142
143  assert(!m_pcBitstream->getNumBitsUntilByteAligned());
144  do
145  {
146#if NH_MV_LAYERS_NOT_PRESENT_SEI
147    xReadSEImessage(seis, nalUnitType, vps, sps, pDecodedMessageOutputStream);
148#else
149    xReadSEImessage(seis, nalUnitType, sps, pDecodedMessageOutputStream);
150#endif
151    /* SEI messages are an integer number of bytes, something has failed
152    * in the parsing if bitstream not byte-aligned */
153    assert(!m_pcBitstream->getNumBitsUntilByteAligned());
154  }
155  while (m_pcBitstream->getNumBitsLeft() > 8);
156
157  xReadRbspTrailingBits();
158}
159
160#if NH_MV_LAYERS_NOT_PRESENT_SEI
161Void SEIReader::xReadSEImessage(SEIMessages& seis, const NalUnitType nalUnitType, const TComVPS *vps, const TComSPS *sps, std::ostream *pDecodedMessageOutputStream)
162#else
163Void SEIReader::xReadSEImessage(SEIMessages& seis, const NalUnitType nalUnitType, const TComSPS *sps, std::ostream *pDecodedMessageOutputStream)
164#endif
165{
166#if ENC_DEC_TRACE
167  xTraceSEIHeader();
168#endif
169  Int payloadType = 0;
170  UInt val = 0;
171
172  do
173  {
174    sei_read_code(NULL, 8, val, "payload_type");
175    payloadType += val;
176  } while (val==0xFF);
177
178  UInt payloadSize = 0;
179  do
180  {
181    sei_read_code(NULL, 8, val, "payload_size");
182    payloadSize += val;
183  } while (val==0xFF);
184
185#if ENC_DEC_TRACE
186  xTraceSEIMessageType((SEI::PayloadType)payloadType);
187#endif
188
189  /* extract the payload for this single SEI message.
190   * This allows greater safety in erroneous parsing of an SEI message
191   * from affecting subsequent messages.
192   * After parsing the payload, bs needs to be restored as the primary
193   * bitstream.
194   */
195  TComInputBitstream *bs = getBitstream();
196  setBitstream(bs->extractSubstream(payloadSize * 8));
197
198  SEI *sei = NULL;
199
200  if(nalUnitType == NAL_UNIT_PREFIX_SEI)
201  {
202    switch (payloadType)
203    {
204    case SEI::USER_DATA_UNREGISTERED:
205      sei = new SEIuserDataUnregistered;
206      xParseSEIuserDataUnregistered((SEIuserDataUnregistered&) *sei, payloadSize, pDecodedMessageOutputStream);
207      break;
208    case SEI::ACTIVE_PARAMETER_SETS:
209      sei = new SEIActiveParameterSets;
210      xParseSEIActiveParameterSets((SEIActiveParameterSets&) *sei, payloadSize, pDecodedMessageOutputStream);
211      break;
212    case SEI::DECODING_UNIT_INFO:
213      if (!sps)
214      {
215        printf ("Warning: Found Decoding unit SEI message, but no active SPS is available. Ignoring.");
216      }
217      else
218      {
219        sei = new SEIDecodingUnitInfo;
220        xParseSEIDecodingUnitInfo((SEIDecodingUnitInfo&) *sei, payloadSize, sps, pDecodedMessageOutputStream);
221      }
222      break;
223    case SEI::BUFFERING_PERIOD:
224      if (!sps)
225      {
226        printf ("Warning: Found Buffering period SEI message, but no active SPS is available. Ignoring.");
227      }
228      else
229      {
230        sei = new SEIBufferingPeriod;
231        xParseSEIBufferingPeriod((SEIBufferingPeriod&) *sei, payloadSize, sps, pDecodedMessageOutputStream);
232      }
233      break;
234    case SEI::PICTURE_TIMING:
235      if (!sps)
236      {
237        printf ("Warning: Found Picture timing SEI message, but no active SPS is available. Ignoring.");
238      }
239      else
240      {
241        sei = new SEIPictureTiming;
242        xParseSEIPictureTiming((SEIPictureTiming&)*sei, payloadSize, sps, pDecodedMessageOutputStream);
243      }
244      break;
245    case SEI::RECOVERY_POINT:
246      sei = new SEIRecoveryPoint;
247      xParseSEIRecoveryPoint((SEIRecoveryPoint&) *sei, payloadSize, pDecodedMessageOutputStream);
248      break;
249    case SEI::FRAME_PACKING:
250      sei = new SEIFramePacking;
251      xParseSEIFramePacking((SEIFramePacking&) *sei, payloadSize, pDecodedMessageOutputStream);
252      break;
253    case SEI::SEGM_RECT_FRAME_PACKING:
254      sei = new SEISegmentedRectFramePacking;
255      xParseSEISegmentedRectFramePacking((SEISegmentedRectFramePacking&) *sei, payloadSize, pDecodedMessageOutputStream);
256      break;
257    case SEI::DISPLAY_ORIENTATION:
258      sei = new SEIDisplayOrientation;
259      xParseSEIDisplayOrientation((SEIDisplayOrientation&) *sei, payloadSize, pDecodedMessageOutputStream);
260      break;
261    case SEI::TEMPORAL_LEVEL0_INDEX:
262      sei = new SEITemporalLevel0Index;
263      xParseSEITemporalLevel0Index((SEITemporalLevel0Index&) *sei, payloadSize, pDecodedMessageOutputStream);
264      break;
265    case SEI::REGION_REFRESH_INFO:
266      sei = new SEIGradualDecodingRefreshInfo;
267      xParseSEIRegionRefreshInfo((SEIGradualDecodingRefreshInfo&) *sei, payloadSize, pDecodedMessageOutputStream);
268      break;
269    case SEI::NO_DISPLAY:
270      sei = new SEINoDisplay;
271      xParseSEINoDisplay((SEINoDisplay&) *sei, payloadSize, pDecodedMessageOutputStream);
272      break;
273    case SEI::TONE_MAPPING_INFO:
274      sei = new SEIToneMappingInfo;
275      xParseSEIToneMappingInfo((SEIToneMappingInfo&) *sei, payloadSize, pDecodedMessageOutputStream);
276      break;
277    case SEI::SOP_DESCRIPTION:
278      sei = new SEISOPDescription;
279      xParseSEISOPDescription((SEISOPDescription&) *sei, payloadSize, pDecodedMessageOutputStream);
280      break;
281    case SEI::SCALABLE_NESTING:
282      sei = new SEIScalableNesting;
283#if NH_MV_LAYERS_NOT_PRESENT_SEI
284      xParseSEIScalableNesting((SEIScalableNesting&) *sei, nalUnitType, payloadSize, vps, sps, pDecodedMessageOutputStream);
285#else
286      xParseSEIScalableNesting((SEIScalableNesting&) *sei, nalUnitType, payloadSize, sps, pDecodedMessageOutputStream);
287#endif
288      break;
289    case SEI::TEMP_MOTION_CONSTRAINED_TILE_SETS:
290      sei = new SEITempMotionConstrainedTileSets;
291      xParseSEITempMotionConstraintsTileSets((SEITempMotionConstrainedTileSets&) *sei, payloadSize, pDecodedMessageOutputStream);
292      break;
293    case SEI::TIME_CODE:
294      sei = new SEITimeCode;
295      xParseSEITimeCode((SEITimeCode&) *sei, payloadSize, pDecodedMessageOutputStream);
296      break;
297    case SEI::CHROMA_SAMPLING_FILTER_HINT:
298      sei = new SEIChromaSamplingFilterHint;
299      xParseSEIChromaSamplingFilterHint((SEIChromaSamplingFilterHint&) *sei, payloadSize/*, sps*/, pDecodedMessageOutputStream);
300      //}
301      break;
302    case SEI::KNEE_FUNCTION_INFO:
303      sei = new SEIKneeFunctionInfo;
304      xParseSEIKneeFunctionInfo((SEIKneeFunctionInfo&) *sei, payloadSize, pDecodedMessageOutputStream);
305      break;
306    case SEI::MASTERING_DISPLAY_COLOUR_VOLUME:
307      sei = new SEIMasteringDisplayColourVolume;
308      xParseSEIMasteringDisplayColourVolume((SEIMasteringDisplayColourVolume&) *sei, payloadSize, pDecodedMessageOutputStream);
309      break;
310#if !NH_MV_SEI
311    case SEI::SUB_BITSTREAM_PROPERTY:
312      sei = new SEISubBitstreamProperty;
313      xParseSEISubBitstreamProperty((SEISubBitstreamProperty&) *sei, payloadSize, pDecodedMessageOutputStream );
314      break;
315#else
316#if NH_MV_LAYERS_NOT_PRESENT_SEI
317    case SEI::LAYERS_NOT_PRESENT:
318      if (!vps)
319      {
320        printf ("Warning: Found Layers not present SEI message, but no active VPS is available. Ignoring.");
321      }
322      else
323      {
324        sei = new SEILayersNotPresent;
325        xParseSEILayersNotPresent((SEILayersNotPresent&) *sei, payloadSize, vps, pDecodedMessageOutputStream);
326      }
327      break;
328#endif
329    case SEI::INTER_LAYER_CONSTRAINED_TILE_SETS:
330      sei = new SEIInterLayerConstrainedTileSets;
331      xParseSEIInterLayerConstrainedTileSets((SEIInterLayerConstrainedTileSets&) *sei, payloadSize, pDecodedMessageOutputStream );
332      break;
333#if NH_MV_TBD
334    case SEI::BSP_NESTING:
335      sei = new SEIBspNesting;
336      xParseSEIBspNesting((SEIBspNesting&) *sei, payloadSize, pDecodedMessageOutputStream );
337      break;
338    case SEI::BSP_INITIAL_ARRIVAL_TIME:
339      sei = new SEIBspInitialArrivalTime;
340      xParseSEIBspInitialArrivalTime((SEIBspInitialArrivalTime&) *sei, payloadSize, pDecodedMessageOutputStream );
341      break;
342#endif
343    case SEI::SUB_BITSTREAM_PROPERTY:
344      sei = new SEISubBitstreamProperty;
345      xParseSEISubBitstreamProperty((SEISubBitstreamProperty&) *sei, payloadSize, pDecodedMessageOutputStream );
346      break;
347    case SEI::ALPHA_CHANNEL_INFO:
348      sei = new SEIAlphaChannelInfo;
349      xParseSEIAlphaChannelInfo((SEIAlphaChannelInfo&) *sei, payloadSize, pDecodedMessageOutputStream );
350      break;
351    case SEI::OVERLAY_INFO:
352      sei = new SEIOverlayInfo;
353      xParseSEIOverlayInfo((SEIOverlayInfo&) *sei, payloadSize, pDecodedMessageOutputStream );
354      break;
355    case SEI::TEMPORAL_MV_PREDICTION_CONSTRAINTS:
356      sei = new SEITemporalMvPredictionConstraints;
357      xParseSEITemporalMvPredictionConstraints((SEITemporalMvPredictionConstraints&) *sei, payloadSize, pDecodedMessageOutputStream );
358      break;
359#if NH_MV_SEI_TBD
360    case SEI::FRAME_FIELD_INFO:
361      sei = new SEIFrameFieldInfo;
362      xParseSEIFrameFieldInfo((SEIFrameFieldInfo&) *sei, payloadSize, pDecodedMessageOutputStream );
363      break;
364#endif
365    case SEI::THREE_DIMENSIONAL_REFERENCE_DISPLAYS_INFO:
366      sei = new SEIThreeDimensionalReferenceDisplaysInfo;
367      xParseSEIThreeDimensionalReferenceDisplaysInfo((SEIThreeDimensionalReferenceDisplaysInfo&) *sei, payloadSize, pDecodedMessageOutputStream );
368      break;
369#if SEI_DRI_F0169
370    case SEI::DEPTH_REPRESENTATION_INFO:
371        sei = new SEIDepthRepresentationInfo;
372        xParseSEIDepthRepresentationInfo((SEIDepthRepresentationInfo&) *sei, payloadSize, pDecodedMessageOutputStream );
373        break;
374#endif
375    case SEI::MULTIVIEW_SCENE_INFO:
376      sei = new SEIMultiviewSceneInfo;
377      xParseSEIMultiviewSceneInfo((SEIMultiviewSceneInfo&) *sei, payloadSize, pDecodedMessageOutputStream );
378      break;
379
380    case SEI::MULTIVIEW_ACQUISITION_INFO:
381      sei = new SEIMultiviewAcquisitionInfo;
382      xParseSEIMultiviewAcquisitionInfo((SEIMultiviewAcquisitionInfo&) *sei, payloadSize, pDecodedMessageOutputStream );
383      break;
384
385    case SEI::MULTIVIEW_VIEW_POSITION:
386      sei = new SEIMultiviewViewPosition;
387      xParseSEIMultiviewViewPosition((SEIMultiviewViewPosition&) *sei, payloadSize, pDecodedMessageOutputStream );
388      break;
389#if NH_3D
390    case SEI::ALTERNATIVE_DEPTH_INFO:
391      sei = new SEIAlternativeDepthInfo;
392      xParseSEIAlternativeDepthInfo((SEIAlternativeDepthInfo&) *sei, payloadSize, pDecodedMessageOutputStream );
393      break;
394#endif
395#endif
396    default:
397      for (UInt i = 0; i < payloadSize; i++)
398      {
399        UInt seiByte;
400        sei_read_code (NULL, 8, seiByte, "unknown prefix SEI payload byte");
401      }
402      printf ("Unknown prefix SEI message (payloadType = %d) was found!\n", payloadType);
403      if (pDecodedMessageOutputStream)
404      {
405        (*pDecodedMessageOutputStream) << "Unknown prefix SEI message (payloadType = " << payloadType << ") was found!\n";
406      }
407      break;
408    }
409  }
410  else
411  {
412    switch (payloadType)
413    {
414      case SEI::USER_DATA_UNREGISTERED:
415        sei = new SEIuserDataUnregistered;
416        xParseSEIuserDataUnregistered((SEIuserDataUnregistered&) *sei, payloadSize, pDecodedMessageOutputStream);
417        break;
418      case SEI::DECODED_PICTURE_HASH:
419        sei = new SEIDecodedPictureHash;
420        xParseSEIDecodedPictureHash((SEIDecodedPictureHash&) *sei, payloadSize, pDecodedMessageOutputStream);
421        break;
422      default:
423        for (UInt i = 0; i < payloadSize; i++)
424        {
425          UInt seiByte;
426          sei_read_code( NULL, 8, seiByte, "unknown suffix SEI payload byte");
427        }
428        printf ("Unknown suffix SEI message (payloadType = %d) was found!\n", payloadType);
429        if (pDecodedMessageOutputStream)
430        {
431          (*pDecodedMessageOutputStream) << "Unknown suffix SEI message (payloadType = " << payloadType << ") was found!\n";
432        }
433        break;
434    }
435  }
436
437  if (sei != NULL)
438  {
439    seis.push_back(sei);
440  }
441
442  /* By definition the underlying bitstream terminates in a byte-aligned manner.
443   * 1. Extract all bar the last MIN(bitsremaining,nine) bits as reserved_payload_extension_data
444   * 2. Examine the final 8 bits to determine the payload_bit_equal_to_one marker
445   * 3. Extract the remainingreserved_payload_extension_data bits.
446   *
447   * If there are fewer than 9 bits available, extract them.
448   */
449  Int payloadBitsRemaining = getBitstream()->getNumBitsLeft();
450  if (payloadBitsRemaining) /* more_data_in_payload() */
451  {
452    for (; payloadBitsRemaining > 9; payloadBitsRemaining--)
453    {
454      UInt reservedPayloadExtensionData;
455      sei_read_code ( pDecodedMessageOutputStream, 1, reservedPayloadExtensionData, "reserved_payload_extension_data");
456    }
457
458    /* 2 */
459    Int finalBits = getBitstream()->peekBits(payloadBitsRemaining);
460    Int finalPayloadBits = 0;
461    for (Int mask = 0xff; finalBits & (mask >> finalPayloadBits); finalPayloadBits++)
462    {
463      continue;
464    }
465
466    /* 3 */
467    for (; payloadBitsRemaining > 9 - finalPayloadBits; payloadBitsRemaining--)
468    {
469      UInt reservedPayloadExtensionData;
470      sei_read_flag ( 0, reservedPayloadExtensionData, "reserved_payload_extension_data");
471    }
472
473    UInt dummy;
474    sei_read_flag( 0, dummy, "payload_bit_equal_to_one"); payloadBitsRemaining--;
475    while (payloadBitsRemaining)
476    {
477      sei_read_flag( 0, dummy, "payload_bit_equal_to_zero"); payloadBitsRemaining--;
478    }
479  }
480
481  /* restore primary bitstream for sei_message */
482  delete getBitstream();
483  setBitstream(bs);
484}
485
486/**
487 * parse bitstream bs and unpack a user_data_unregistered SEI message
488 * of payloasSize bytes into sei.
489 */
490
491Void SEIReader::xParseSEIuserDataUnregistered(SEIuserDataUnregistered &sei, UInt payloadSize, std::ostream *pDecodedMessageOutputStream)
492{
493  assert(payloadSize >= ISO_IEC_11578_LEN);
494  UInt val;
495  output_sei_message_header(sei, pDecodedMessageOutputStream, payloadSize);
496
497  for (UInt i = 0; i < ISO_IEC_11578_LEN; i++)
498  {
499    sei_read_code( pDecodedMessageOutputStream, 8, val, "uuid_iso_iec_11578");
500    sei.uuid_iso_iec_11578[i] = val;
501  }
502
503  sei.userDataLength = payloadSize - ISO_IEC_11578_LEN;
504  if (!sei.userDataLength)
505  {
506    sei.userData = 0;
507    return;
508  }
509
510  sei.userData = new UChar[sei.userDataLength];
511  for (UInt i = 0; i < sei.userDataLength; i++)
512  {
513    sei_read_code( NULL, 8, val, "user_data_payload_byte" );
514    sei.userData[i] = val;
515  }
516  if (pDecodedMessageOutputStream)
517  {
518    (*pDecodedMessageOutputStream) << "  User data payload size: " << sei.userDataLength << "\n";
519  }
520}
521
522/**
523 * parse bitstream bs and unpack a decoded picture hash SEI message
524 * of payloadSize bytes into sei.
525 */
526Void SEIReader::xParseSEIDecodedPictureHash(SEIDecodedPictureHash& sei, UInt payloadSize, std::ostream *pDecodedMessageOutputStream)
527{
528  UInt bytesRead = 0;
529  output_sei_message_header(sei, pDecodedMessageOutputStream, payloadSize);
530
531  UInt val;
532  sei_read_code( pDecodedMessageOutputStream, 8, val, "hash_type");
533  sei.method = static_cast<SEIDecodedPictureHash::Method>(val); bytesRead++;
534
535  const Char *traceString="\0";
536  switch (sei.method)
537  {
538    case SEIDecodedPictureHash::MD5: traceString="picture_md5"; break;
539    case SEIDecodedPictureHash::CRC: traceString="picture_crc"; break;
540    case SEIDecodedPictureHash::CHECKSUM: traceString="picture_checksum"; break;
541    default: assert(false); break;
542  }
543
544  if (pDecodedMessageOutputStream)
545  {
546    (*pDecodedMessageOutputStream) << "  " << std::setw(55) << traceString << ": " << std::hex << std::setfill('0');
547  }
548
549  sei.m_pictureHash.hash.clear();
550  for(;bytesRead < payloadSize; bytesRead++)
551  {
552    sei_read_code( NULL, 8, val, traceString);
553    sei.m_pictureHash.hash.push_back((UChar)val);
554    if (pDecodedMessageOutputStream)
555    {
556      (*pDecodedMessageOutputStream) << std::setw(2) << val;
557    }
558  }
559
560  if (pDecodedMessageOutputStream)
561  {
562    (*pDecodedMessageOutputStream) << std::dec << std::setfill(' ') << "\n";
563  }
564}
565
566Void SEIReader::xParseSEIActiveParameterSets(SEIActiveParameterSets& sei, UInt payloadSize, std::ostream *pDecodedMessageOutputStream)
567{
568  UInt val;
569  output_sei_message_header(sei, pDecodedMessageOutputStream, payloadSize);
570
571  sei_read_code( pDecodedMessageOutputStream, 4, val, "active_video_parameter_set_id");   sei.activeVPSId = val;
572  sei_read_flag( pDecodedMessageOutputStream,    val, "self_contained_cvs_flag");         sei.m_selfContainedCvsFlag     = (val != 0);
573  sei_read_flag( pDecodedMessageOutputStream,    val, "no_parameter_set_update_flag");    sei.m_noParameterSetUpdateFlag = (val != 0);
574  sei_read_uvlc( pDecodedMessageOutputStream,    val, "num_sps_ids_minus1");              sei.numSpsIdsMinus1 = val;
575
576  sei.activeSeqParameterSetId.resize(sei.numSpsIdsMinus1 + 1);
577  for (Int i=0; i < (sei.numSpsIdsMinus1 + 1); i++)
578  {
579    sei_read_uvlc( pDecodedMessageOutputStream, val, "active_seq_parameter_set_id[i]");    sei.activeSeqParameterSetId[i] = val;
580  }
581}
582
583Void SEIReader::xParseSEIDecodingUnitInfo(SEIDecodingUnitInfo& sei, UInt payloadSize, const TComSPS *sps, std::ostream *pDecodedMessageOutputStream)
584{
585  UInt val;
586  output_sei_message_header(sei, pDecodedMessageOutputStream, payloadSize);
587  sei_read_uvlc( pDecodedMessageOutputStream, val, "decoding_unit_idx");
588  sei.m_decodingUnitIdx = val;
589
590  const TComVUI *vui = sps->getVuiParameters();
591  if(vui->getHrdParameters()->getSubPicCpbParamsInPicTimingSEIFlag())
592  {
593    sei_read_code( pDecodedMessageOutputStream, ( vui->getHrdParameters()->getDuCpbRemovalDelayLengthMinus1() + 1 ), val, "du_spt_cpb_removal_delay_increment");
594    sei.m_duSptCpbRemovalDelay = val;
595  }
596  else
597  {
598    sei.m_duSptCpbRemovalDelay = 0;
599  }
600  sei_read_flag( pDecodedMessageOutputStream, val, "dpb_output_du_delay_present_flag"); sei.m_dpbOutputDuDelayPresentFlag = (val != 0);
601  if(sei.m_dpbOutputDuDelayPresentFlag)
602  {
603    sei_read_code( pDecodedMessageOutputStream, vui->getHrdParameters()->getDpbOutputDelayDuLengthMinus1() + 1, val, "pic_spt_dpb_output_du_delay");
604    sei.m_picSptDpbOutputDuDelay = val;
605  }
606}
607
608Void SEIReader::xParseSEIBufferingPeriod(SEIBufferingPeriod& sei, UInt payloadSize, const TComSPS *sps, std::ostream *pDecodedMessageOutputStream)
609{
610  Int i, nalOrVcl;
611  UInt code;
612
613  const TComVUI *pVUI = sps->getVuiParameters();
614  const TComHRD *pHRD = pVUI->getHrdParameters();
615
616  output_sei_message_header(sei, pDecodedMessageOutputStream, payloadSize);
617
618  sei_read_uvlc( pDecodedMessageOutputStream, code, "bp_seq_parameter_set_id" );                         sei.m_bpSeqParameterSetId     = code;
619  if( !pHRD->getSubPicCpbParamsPresentFlag() )
620  {
621    sei_read_flag( pDecodedMessageOutputStream, code, "irap_cpb_params_present_flag" );                   sei.m_rapCpbParamsPresentFlag = code;
622  }
623  if( sei.m_rapCpbParamsPresentFlag )
624  {
625    sei_read_code( pDecodedMessageOutputStream, pHRD->getCpbRemovalDelayLengthMinus1() + 1, code, "cpb_delay_offset" );      sei.m_cpbDelayOffset = code;
626    sei_read_code( pDecodedMessageOutputStream, pHRD->getDpbOutputDelayLengthMinus1()  + 1, code, "dpb_delay_offset" );      sei.m_dpbDelayOffset = code;
627  }
628
629  //read splicing flag and cpb_removal_delay_delta
630  sei_read_flag( pDecodedMessageOutputStream, code, "concatenation_flag");
631  sei.m_concatenationFlag = code;
632  sei_read_code( pDecodedMessageOutputStream, ( pHRD->getCpbRemovalDelayLengthMinus1() + 1 ), code, "au_cpb_removal_delay_delta_minus1" );
633  sei.m_auCpbRemovalDelayDelta = code + 1;
634
635  for( nalOrVcl = 0; nalOrVcl < 2; nalOrVcl ++ )
636  {
637    if( ( ( nalOrVcl == 0 ) && ( pHRD->getNalHrdParametersPresentFlag() ) ) ||
638        ( ( nalOrVcl == 1 ) && ( pHRD->getVclHrdParametersPresentFlag() ) ) )
639    {
640      for( i = 0; i < ( pHRD->getCpbCntMinus1( 0 ) + 1 ); i ++ )
641      {
642        sei_read_code( pDecodedMessageOutputStream, ( pHRD->getInitialCpbRemovalDelayLengthMinus1() + 1 ) , code, nalOrVcl?"vcl_initial_cpb_removal_delay":"nal_initial_cpb_removal_delay" );
643        sei.m_initialCpbRemovalDelay[i][nalOrVcl] = code;
644        sei_read_code( pDecodedMessageOutputStream, ( pHRD->getInitialCpbRemovalDelayLengthMinus1() + 1 ) , code, nalOrVcl?"vcl_initial_cpb_removal_offset":"vcl_initial_cpb_removal_offset" );
645        sei.m_initialCpbRemovalDelayOffset[i][nalOrVcl] = code;
646        if( pHRD->getSubPicCpbParamsPresentFlag() || sei.m_rapCpbParamsPresentFlag )
647        {
648          sei_read_code( pDecodedMessageOutputStream, ( pHRD->getInitialCpbRemovalDelayLengthMinus1() + 1 ) , code, nalOrVcl?"vcl_initial_alt_cpb_removal_delay":"vcl_initial_alt_cpb_removal_delay" );
649          sei.m_initialAltCpbRemovalDelay[i][nalOrVcl] = code;
650          sei_read_code( pDecodedMessageOutputStream, ( pHRD->getInitialCpbRemovalDelayLengthMinus1() + 1 ) , code, nalOrVcl?"vcl_initial_alt_cpb_removal_offset":"vcl_initial_alt_cpb_removal_offset" );
651          sei.m_initialAltCpbRemovalDelayOffset[i][nalOrVcl] = code;
652        }
653      }
654    }
655  }
656}
657
658Void SEIReader::xParseSEIPictureTiming(SEIPictureTiming& sei, UInt payloadSize, const TComSPS *sps, std::ostream *pDecodedMessageOutputStream)
659{
660  Int i;
661  UInt code;
662
663  const TComVUI *vui = sps->getVuiParameters();
664  const TComHRD *hrd = vui->getHrdParameters();
665  output_sei_message_header(sei, pDecodedMessageOutputStream, payloadSize);
666
667  if( vui->getFrameFieldInfoPresentFlag() )
668  {
669    sei_read_code( pDecodedMessageOutputStream, 4, code, "pic_struct" );             sei.m_picStruct            = code;
670    sei_read_code( pDecodedMessageOutputStream, 2, code, "source_scan_type" );       sei.m_sourceScanType       = code;
671    sei_read_flag( pDecodedMessageOutputStream,    code, "duplicate_flag" );         sei.m_duplicateFlag        = (code == 1);
672  }
673
674  if( hrd->getCpbDpbDelaysPresentFlag())
675  {
676    sei_read_code( pDecodedMessageOutputStream, ( hrd->getCpbRemovalDelayLengthMinus1() + 1 ), code, "au_cpb_removal_delay_minus1" );
677    sei.m_auCpbRemovalDelay = code + 1;
678    sei_read_code( pDecodedMessageOutputStream, ( hrd->getDpbOutputDelayLengthMinus1() + 1 ), code, "pic_dpb_output_delay" );
679    sei.m_picDpbOutputDelay = code;
680
681    if(hrd->getSubPicCpbParamsPresentFlag())
682    {
683      sei_read_code( pDecodedMessageOutputStream, hrd->getDpbOutputDelayDuLengthMinus1()+1, code, "pic_dpb_output_du_delay" );
684      sei.m_picDpbOutputDuDelay = code;
685    }
686
687    if( hrd->getSubPicCpbParamsPresentFlag() && hrd->getSubPicCpbParamsInPicTimingSEIFlag() )
688    {
689      sei_read_uvlc( pDecodedMessageOutputStream, code, "num_decoding_units_minus1");
690      sei.m_numDecodingUnitsMinus1 = code;
691      sei_read_flag( pDecodedMessageOutputStream, code, "du_common_cpb_removal_delay_flag" );
692      sei.m_duCommonCpbRemovalDelayFlag = code;
693      if( sei.m_duCommonCpbRemovalDelayFlag )
694      {
695        sei_read_code( pDecodedMessageOutputStream, ( hrd->getDuCpbRemovalDelayLengthMinus1() + 1 ), code, "du_common_cpb_removal_delay_increment_minus1" );
696        sei.m_duCommonCpbRemovalDelayMinus1 = code;
697      }
698      sei.m_numNalusInDuMinus1.resize(sei.m_numDecodingUnitsMinus1 + 1 );
699      sei.m_duCpbRemovalDelayMinus1.resize( sei.m_numDecodingUnitsMinus1 + 1 );
700
701      for( i = 0; i <= sei.m_numDecodingUnitsMinus1; i ++ )
702      {
703        sei_read_uvlc( pDecodedMessageOutputStream, code, "num_nalus_in_du_minus1[i]");
704        sei.m_numNalusInDuMinus1[ i ] = code;
705        if( ( !sei.m_duCommonCpbRemovalDelayFlag ) && ( i < sei.m_numDecodingUnitsMinus1 ) )
706        {
707          sei_read_code( pDecodedMessageOutputStream, ( hrd->getDuCpbRemovalDelayLengthMinus1() + 1 ), code, "du_cpb_removal_delay_minus1[i]" );
708          sei.m_duCpbRemovalDelayMinus1[ i ] = code;
709        }
710      }
711    }
712  }
713}
714
715Void SEIReader::xParseSEIRecoveryPoint(SEIRecoveryPoint& sei, UInt payloadSize, std::ostream *pDecodedMessageOutputStream)
716{
717  Int  iCode;
718  UInt uiCode;
719  output_sei_message_header(sei, pDecodedMessageOutputStream, payloadSize);
720
721  sei_read_svlc( pDecodedMessageOutputStream, iCode,  "recovery_poc_cnt" );      sei.m_recoveryPocCnt     = iCode;
722  sei_read_flag( pDecodedMessageOutputStream, uiCode, "exact_matching_flag" );   sei.m_exactMatchingFlag  = uiCode;
723  sei_read_flag( pDecodedMessageOutputStream, uiCode, "broken_link_flag" );      sei.m_brokenLinkFlag     = uiCode;
724}
725
726Void SEIReader::xParseSEIFramePacking(SEIFramePacking& sei, UInt payloadSize, std::ostream *pDecodedMessageOutputStream)
727{
728  UInt val;
729  output_sei_message_header(sei, pDecodedMessageOutputStream, payloadSize);
730
731  sei_read_uvlc( pDecodedMessageOutputStream, val, "frame_packing_arrangement_id" );                 sei.m_arrangementId = val;
732  sei_read_flag( pDecodedMessageOutputStream, val, "frame_packing_arrangement_cancel_flag" );        sei.m_arrangementCancelFlag = val;
733
734  if ( !sei.m_arrangementCancelFlag )
735  {
736    sei_read_code( pDecodedMessageOutputStream, 7, val, "frame_packing_arrangement_type" );          sei.m_arrangementType = val;
737    assert((sei.m_arrangementType > 2) && (sei.m_arrangementType < 6) );
738
739    sei_read_flag( pDecodedMessageOutputStream, val, "quincunx_sampling_flag" );                     sei.m_quincunxSamplingFlag = val;
740
741    sei_read_code( pDecodedMessageOutputStream, 6, val, "content_interpretation_type" );             sei.m_contentInterpretationType = val;
742    sei_read_flag( pDecodedMessageOutputStream, val, "spatial_flipping_flag" );                      sei.m_spatialFlippingFlag = val;
743    sei_read_flag( pDecodedMessageOutputStream, val, "frame0_flipped_flag" );                        sei.m_frame0FlippedFlag = val;
744    sei_read_flag( pDecodedMessageOutputStream, val, "field_views_flag" );                           sei.m_fieldViewsFlag = val;
745    sei_read_flag( pDecodedMessageOutputStream, val, "current_frame_is_frame0_flag" );               sei.m_currentFrameIsFrame0Flag = val;
746    sei_read_flag( pDecodedMessageOutputStream, val, "frame0_self_contained_flag" );                 sei.m_frame0SelfContainedFlag = val;
747    sei_read_flag( pDecodedMessageOutputStream, val, "frame1_self_contained_flag" );                 sei.m_frame1SelfContainedFlag = val;
748
749    if ( sei.m_quincunxSamplingFlag == 0 && sei.m_arrangementType != 5)
750    {
751      sei_read_code( pDecodedMessageOutputStream, 4, val, "frame0_grid_position_x" );                sei.m_frame0GridPositionX = val;
752      sei_read_code( pDecodedMessageOutputStream, 4, val, "frame0_grid_position_y" );                sei.m_frame0GridPositionY = val;
753      sei_read_code( pDecodedMessageOutputStream, 4, val, "frame1_grid_position_x" );                sei.m_frame1GridPositionX = val;
754      sei_read_code( pDecodedMessageOutputStream, 4, val, "frame1_grid_position_y" );                sei.m_frame1GridPositionY = val;
755    }
756
757    sei_read_code( pDecodedMessageOutputStream, 8, val, "frame_packing_arrangement_reserved_byte" );   sei.m_arrangementReservedByte = val;
758    sei_read_flag( pDecodedMessageOutputStream, val,  "frame_packing_arrangement_persistence_flag" );  sei.m_arrangementPersistenceFlag = (val != 0);
759  }
760  sei_read_flag( pDecodedMessageOutputStream, val, "upsampled_aspect_ratio_flag" );                  sei.m_upsampledAspectRatio = val;
761}
762
763Void SEIReader::xParseSEISegmentedRectFramePacking(SEISegmentedRectFramePacking& sei, UInt payloadSize, std::ostream *pDecodedMessageOutputStream)
764{
765  UInt val;
766  output_sei_message_header(sei, pDecodedMessageOutputStream, payloadSize);
767  sei_read_flag( pDecodedMessageOutputStream, val,       "segmented_rect_frame_packing_arrangement_cancel_flag" );       sei.m_arrangementCancelFlag            = val;
768  if( !sei.m_arrangementCancelFlag )
769  {
770    sei_read_code( pDecodedMessageOutputStream, 2, val, "segmented_rect_content_interpretation_type" );                sei.m_contentInterpretationType = val;
771    sei_read_flag( pDecodedMessageOutputStream, val,     "segmented_rect_frame_packing_arrangement_persistence" );                              sei.m_arrangementPersistenceFlag               = val;
772  }
773}
774
775Void SEIReader::xParseSEIDisplayOrientation(SEIDisplayOrientation& sei, UInt payloadSize, std::ostream *pDecodedMessageOutputStream)
776{
777  UInt val;
778  output_sei_message_header(sei, pDecodedMessageOutputStream, payloadSize);
779  sei_read_flag( pDecodedMessageOutputStream, val,       "display_orientation_cancel_flag" );       sei.cancelFlag            = val;
780  if( !sei.cancelFlag )
781  {
782    sei_read_flag( pDecodedMessageOutputStream, val,     "hor_flip" );                              sei.horFlip               = val;
783    sei_read_flag( pDecodedMessageOutputStream, val,     "ver_flip" );                              sei.verFlip               = val;
784    sei_read_code( pDecodedMessageOutputStream, 16, val, "anticlockwise_rotation" );                sei.anticlockwiseRotation = val;
785    sei_read_flag( pDecodedMessageOutputStream, val,     "display_orientation_persistence_flag" );  sei.persistenceFlag       = val;
786  }
787}
788
789Void SEIReader::xParseSEITemporalLevel0Index(SEITemporalLevel0Index& sei, UInt payloadSize, std::ostream *pDecodedMessageOutputStream)
790{
791  UInt val;
792  output_sei_message_header(sei, pDecodedMessageOutputStream, payloadSize);
793  sei_read_code( pDecodedMessageOutputStream, 8, val, "temporal_sub_layer_zero_idx" );  sei.tl0Idx = val;
794  sei_read_code( pDecodedMessageOutputStream, 8, val, "irap_pic_id" );  sei.rapIdx = val;
795}
796
797Void SEIReader::xParseSEIRegionRefreshInfo(SEIGradualDecodingRefreshInfo& sei, UInt payloadSize, std::ostream *pDecodedMessageOutputStream)
798{
799  UInt val;
800  output_sei_message_header(sei, pDecodedMessageOutputStream, payloadSize);
801  sei_read_flag( pDecodedMessageOutputStream, val, "refreshed_region_flag" ); sei.m_gdrForegroundFlag = val ? 1 : 0;
802}
803
804Void SEIReader::xParseSEINoDisplay(SEINoDisplay& sei, UInt payloadSize, std::ostream *pDecodedMessageOutputStream)
805{
806  output_sei_message_header(sei, pDecodedMessageOutputStream, payloadSize);
807  sei.m_noDisplay = true;
808}
809
810Void SEIReader::xParseSEIToneMappingInfo(SEIToneMappingInfo& sei, UInt payloadSize, std::ostream *pDecodedMessageOutputStream)
811{
812  Int i;
813  UInt val;
814  output_sei_message_header(sei, pDecodedMessageOutputStream, payloadSize);
815  sei_read_uvlc( pDecodedMessageOutputStream, val, "tone_map_id" );                         sei.m_toneMapId = val;
816  sei_read_flag( pDecodedMessageOutputStream, val, "tone_map_cancel_flag" );                sei.m_toneMapCancelFlag = val;
817
818  if ( !sei.m_toneMapCancelFlag )
819  {
820    sei_read_flag( pDecodedMessageOutputStream, val, "tone_map_persistence_flag" );         sei.m_toneMapPersistenceFlag = val;
821    sei_read_code( pDecodedMessageOutputStream, 8, val, "coded_data_bit_depth" );           sei.m_codedDataBitDepth = val;
822    sei_read_code( pDecodedMessageOutputStream, 8, val, "target_bit_depth" );               sei.m_targetBitDepth = val;
823    sei_read_uvlc( pDecodedMessageOutputStream, val, "tone_map_model_id" );                 sei.m_modelId = val;
824    switch(sei.m_modelId)
825    {
826    case 0:
827      {
828        sei_read_code( pDecodedMessageOutputStream, 32, val, "min_value" );                 sei.m_minValue = val;
829        sei_read_code( pDecodedMessageOutputStream, 32, val, "max_value" );                 sei.m_maxValue = val;
830        break;
831      }
832    case 1:
833      {
834        sei_read_code( pDecodedMessageOutputStream, 32, val, "sigmoid_midpoint" );          sei.m_sigmoidMidpoint = val;
835        sei_read_code( pDecodedMessageOutputStream, 32, val, "sigmoid_width" );             sei.m_sigmoidWidth = val;
836        break;
837      }
838    case 2:
839      {
840        UInt num = 1u << sei.m_targetBitDepth;
841        sei.m_startOfCodedInterval.resize(num+1);
842        for(i = 0; i < num; i++)
843        {
844          sei_read_code( pDecodedMessageOutputStream, ((( sei.m_codedDataBitDepth + 7 ) >> 3 ) << 3), val, "start_of_coded_interval[i]" );
845          sei.m_startOfCodedInterval[i] = val;
846        }
847        sei.m_startOfCodedInterval[num] = 1u << sei.m_codedDataBitDepth;
848        break;
849      }
850    case 3:
851      {
852        sei_read_code( pDecodedMessageOutputStream, 16, val,  "num_pivots" );                       sei.m_numPivots = val;
853        sei.m_codedPivotValue.resize(sei.m_numPivots);
854        sei.m_targetPivotValue.resize(sei.m_numPivots);
855        for(i = 0; i < sei.m_numPivots; i++ )
856        {
857          sei_read_code( pDecodedMessageOutputStream, ((( sei.m_codedDataBitDepth + 7 ) >> 3 ) << 3), val, "coded_pivot_value[i]" );
858          sei.m_codedPivotValue[i] = val;
859          sei_read_code( pDecodedMessageOutputStream, ((( sei.m_targetBitDepth + 7 ) >> 3 ) << 3),    val, "target_pivot_value[i]" );
860          sei.m_targetPivotValue[i] = val;
861        }
862        break;
863      }
864    case 4:
865      {
866        sei_read_code( pDecodedMessageOutputStream, 8, val, "camera_iso_speed_idc" );                     sei.m_cameraIsoSpeedIdc = val;
867        if( sei.m_cameraIsoSpeedIdc == 255) //Extended_ISO
868        {
869          sei_read_code( pDecodedMessageOutputStream, 32,   val,   "camera_iso_speed_value" );            sei.m_cameraIsoSpeedValue = val;
870        }
871        sei_read_code( pDecodedMessageOutputStream, 8, val, "exposure_index_idc" );                       sei.m_exposureIndexIdc = val;
872        if( sei.m_exposureIndexIdc == 255) //Extended_ISO
873        {
874          sei_read_code( pDecodedMessageOutputStream, 32,   val,   "exposure_index_value" );              sei.m_exposureIndexValue = val;
875        }
876        sei_read_flag( pDecodedMessageOutputStream, val, "exposure_compensation_value_sign_flag" );       sei.m_exposureCompensationValueSignFlag = val;
877        sei_read_code( pDecodedMessageOutputStream, 16, val, "exposure_compensation_value_numerator" );   sei.m_exposureCompensationValueNumerator = val;
878        sei_read_code( pDecodedMessageOutputStream, 16, val, "exposure_compensation_value_denom_idc" );   sei.m_exposureCompensationValueDenomIdc = val;
879        sei_read_code( pDecodedMessageOutputStream, 32, val, "ref_screen_luminance_white" );              sei.m_refScreenLuminanceWhite = val;
880        sei_read_code( pDecodedMessageOutputStream, 32, val, "extended_range_white_level" );              sei.m_extendedRangeWhiteLevel = val;
881        sei_read_code( pDecodedMessageOutputStream, 16, val, "nominal_black_level_code_value" );          sei.m_nominalBlackLevelLumaCodeValue = val;
882        sei_read_code( pDecodedMessageOutputStream, 16, val, "nominal_white_level_code_value" );          sei.m_nominalWhiteLevelLumaCodeValue= val;
883        sei_read_code( pDecodedMessageOutputStream, 16, val, "extended_white_level_code_value" );         sei.m_extendedWhiteLevelLumaCodeValue = val;
884        break;
885      }
886    default:
887      {
888        assert(!"Undefined SEIToneMapModelId");
889        break;
890      }
891    }//switch model id
892  }// if(!sei.m_toneMapCancelFlag)
893}
894
895Void SEIReader::xParseSEISOPDescription(SEISOPDescription &sei, UInt payloadSize, std::ostream *pDecodedMessageOutputStream)
896{
897  Int iCode;
898  UInt uiCode;
899  output_sei_message_header(sei, pDecodedMessageOutputStream, payloadSize);
900
901  sei_read_uvlc( pDecodedMessageOutputStream, uiCode,           "sop_seq_parameter_set_id"            ); sei.m_sopSeqParameterSetId = uiCode;
902  sei_read_uvlc( pDecodedMessageOutputStream, uiCode,           "num_pics_in_sop_minus1"              ); sei.m_numPicsInSopMinus1 = uiCode;
903  for (UInt i = 0; i <= sei.m_numPicsInSopMinus1; i++)
904  {
905    sei_read_code( pDecodedMessageOutputStream, 6, uiCode,                     "sop_vcl_nut[i]" );  sei.m_sopDescVclNaluType[i] = uiCode;
906    sei_read_code( pDecodedMessageOutputStream, 3, sei.m_sopDescTemporalId[i], "sop_temporal_id[i]"   );  sei.m_sopDescTemporalId[i] = uiCode;
907    if (sei.m_sopDescVclNaluType[i] != NAL_UNIT_CODED_SLICE_IDR_W_RADL && sei.m_sopDescVclNaluType[i] != NAL_UNIT_CODED_SLICE_IDR_N_LP)
908    {
909      sei_read_uvlc( pDecodedMessageOutputStream, sei.m_sopDescStRpsIdx[i],    "sop_short_term_rps_idx[i]"    ); sei.m_sopDescStRpsIdx[i] = uiCode;
910    }
911    if (i > 0)
912    {
913      sei_read_svlc( pDecodedMessageOutputStream, iCode,                       "sop_poc_delta[i]"     ); sei.m_sopDescPocDelta[i] = iCode;
914    }
915  }
916}
917
918#if NH_MV_LAYERS_NOT_PRESENT_SEI
919Void SEIReader::xParseSEIScalableNesting(SEIScalableNesting& sei, const NalUnitType nalUnitType, UInt payloadSize, const TComVPS *vps, const TComSPS *sps, std::ostream *pDecodedMessageOutputStream)
920#else
921Void SEIReader::xParseSEIScalableNesting(SEIScalableNesting& sei, const NalUnitType nalUnitType, UInt payloadSize, const TComSPS *sps, std::ostream *pDecodedMessageOutputStream)
922#endif
923{
924  UInt uiCode;
925  SEIMessages seis;
926  output_sei_message_header(sei, pDecodedMessageOutputStream, payloadSize);
927
928  sei_read_flag( pDecodedMessageOutputStream, uiCode,            "bitstream_subset_flag"         ); sei.m_bitStreamSubsetFlag = uiCode;
929  sei_read_flag( pDecodedMessageOutputStream, uiCode,            "nesting_op_flag"               ); sei.m_nestingOpFlag = uiCode;
930  if (sei.m_nestingOpFlag)
931  {
932    sei_read_flag( pDecodedMessageOutputStream, uiCode,            "default_op_flag"               ); sei.m_defaultOpFlag = uiCode;
933    sei_read_uvlc( pDecodedMessageOutputStream, uiCode,            "nesting_num_ops_minus1"        ); sei.m_nestingNumOpsMinus1 = uiCode;
934    for (UInt i = sei.m_defaultOpFlag; i <= sei.m_nestingNumOpsMinus1; i++)
935    {
936      sei_read_code( pDecodedMessageOutputStream, 3,        uiCode,  "nesting_max_temporal_id_plus1[i]"   ); sei.m_nestingMaxTemporalIdPlus1[i] = uiCode;
937      sei_read_uvlc( pDecodedMessageOutputStream, uiCode,            "nesting_op_idx[i]"                  ); sei.m_nestingOpIdx[i] = uiCode;
938    }
939  }
940  else
941  {
942    sei_read_flag( pDecodedMessageOutputStream, uiCode,            "all_layers_flag"               ); sei.m_allLayersFlag       = uiCode;
943    if (!sei.m_allLayersFlag)
944    {
945      sei_read_code( pDecodedMessageOutputStream, 3,        uiCode,  "nesting_no_op_max_temporal_id_plus1"  ); sei.m_nestingNoOpMaxTemporalIdPlus1 = uiCode;
946      sei_read_uvlc( pDecodedMessageOutputStream, uiCode,            "nesting_num_layers_minus1"            ); sei.m_nestingNumLayersMinus1        = uiCode;
947      for (UInt i = 0; i <= sei.m_nestingNumLayersMinus1; i++)
948      {
949        sei_read_code( pDecodedMessageOutputStream, 6,           uiCode,     "nesting_layer_id[i]"      ); sei.m_nestingLayerId[i]   = uiCode;
950      }
951    }
952  }
953
954  // byte alignment
955  while ( m_pcBitstream->getNumBitsRead() % 8 != 0 )
956  {
957    UInt code;
958    sei_read_flag( pDecodedMessageOutputStream, code, "nesting_zero_bit" );
959  }
960
961  // read nested SEI messages
962  do
963  {
964#if NH_MV_LAYERS_NOT_PRESENT_SEI
965    xReadSEImessage(sei.m_nestedSEIs, nalUnitType, vps, sps, pDecodedMessageOutputStream);
966#else
967    xReadSEImessage(sei.m_nestedSEIs, nalUnitType, sps, pDecodedMessageOutputStream);
968#endif
969  } while (m_pcBitstream->getNumBitsLeft() > 8);
970
971  if (pDecodedMessageOutputStream)
972  {
973    (*pDecodedMessageOutputStream) << "End of scalable nesting SEI message\n";
974  }
975}
976
977#if NH_MV
978#if !NH_MV_SEI
979Void SEIReader::xParseSEISubBitstreamProperty(SEISubBitstreamProperty &sei, UInt payloadSize, std::ostream *pDecodedMessageOutputStream )
980{
981  UInt code;
982  output_sei_message_header(sei, pDecodedMessageOutputStream, payloadSize);
983  sei_read_code( pDecodedMessageOutputStream, 4, code, "active_vps_id" );                      sei.m_activeVpsId = code;
984  sei_read_uvlc( pDecodedMessageOutputStream, code, "num_additional_sub_streams_minus1" );     sei.m_numAdditionalSubStreams = code + 1;
985
986  xResizeSubBitstreamPropertySeiArrays(sei);
987  for( Int i = 0; i < sei.m_numAdditionalSubStreams; i++ )
988  {
989    sei_read_code( pDecodedMessageOutputStream,   2, code, "sub_bitstream_mode[i]"           ); sei.m_subBitstreamMode[i] = code;
990    sei_read_uvlc( pDecodedMessageOutputStream,  code, "output_layer_set_idx_to_vps[i]"      ); sei.m_outputLayerSetIdxToVps[i] = code;
991    sei_read_code( pDecodedMessageOutputStream,   3, code, "highest_sub_layer_id[i]"         ); sei.m_highestSublayerId[i] = code;
992    sei_read_code( pDecodedMessageOutputStream,  16, code, "avg_bit_rate[i]"                 ); sei.m_avgBitRate[i] = code;
993    sei_read_code( pDecodedMessageOutputStream,  16, code, "max_bit_rate[i]"                 ); sei.m_maxBitRate[i] = code;
994  }
995}
996
997Void SEIReader::xResizeSubBitstreamPropertySeiArrays(SEISubBitstreamProperty &sei)
998{
999  sei.m_subBitstreamMode.resize( sei.m_numAdditionalSubStreams );
1000  sei.m_outputLayerSetIdxToVps.resize( sei.m_numAdditionalSubStreams );
1001  sei.m_highestSublayerId.resize( sei.m_numAdditionalSubStreams );
1002  sei.m_avgBitRate.resize( sei.m_numAdditionalSubStreams );
1003  sei.m_maxBitRate.resize( sei.m_numAdditionalSubStreams );
1004}
1005#endif
1006#endif
1007
1008
1009Void SEIReader::xParseSEITempMotionConstraintsTileSets(SEITempMotionConstrainedTileSets& sei, UInt payloadSize, std::ostream *pDecodedMessageOutputStream)
1010{
1011  UInt code;
1012  output_sei_message_header(sei, pDecodedMessageOutputStream, payloadSize);
1013  sei_read_flag( pDecodedMessageOutputStream, code, "mc_all_tiles_exact_sample_value_match_flag");  sei.m_mc_all_tiles_exact_sample_value_match_flag = (code != 0);
1014  sei_read_flag( pDecodedMessageOutputStream, code, "each_tile_one_tile_set_flag");                 sei.m_each_tile_one_tile_set_flag                = (code != 0);
1015
1016  if(!sei.m_each_tile_one_tile_set_flag)
1017  {
1018    sei_read_flag( pDecodedMessageOutputStream, code, "limited_tile_set_display_flag");  sei.m_limited_tile_set_display_flag = (code != 0);
1019    sei_read_uvlc( pDecodedMessageOutputStream, code, "num_sets_in_message_minus1");     sei.setNumberOfTileSets(code + 1);
1020
1021    if(sei.getNumberOfTileSets() != 0)
1022    {
1023      for(Int i = 0; i < sei.getNumberOfTileSets(); i++)
1024      {
1025        sei_read_uvlc( pDecodedMessageOutputStream, code, "mcts_id");  sei.tileSetData(i).m_mcts_id = code;
1026
1027        if(sei.m_limited_tile_set_display_flag)
1028        {
1029          sei_read_flag( pDecodedMessageOutputStream, code, "display_tile_set_flag");  sei.tileSetData(i).m_display_tile_set_flag = (code != 1);
1030        }
1031
1032        sei_read_uvlc( pDecodedMessageOutputStream, code, "num_tile_rects_in_set_minus1");  sei.tileSetData(i).setNumberOfTileRects(code + 1);
1033
1034        for(Int j=0; j<sei.tileSetData(i).getNumberOfTileRects(); j++)
1035        {
1036          sei_read_uvlc( pDecodedMessageOutputStream, code, "top_left_tile_index");      sei.tileSetData(i).topLeftTileIndex(j)     = code;
1037          sei_read_uvlc( pDecodedMessageOutputStream, code, "bottom_right_tile_index");  sei.tileSetData(i).bottomRightTileIndex(j) = code;
1038        }
1039
1040        if(!sei.m_mc_all_tiles_exact_sample_value_match_flag)
1041        {
1042          sei_read_flag( pDecodedMessageOutputStream, code, "exact_sample_value_match_flag");   sei.tileSetData(i).m_exact_sample_value_match_flag    = (code != 0);
1043        }
1044        sei_read_flag( pDecodedMessageOutputStream, code, "mcts_tier_level_idc_present_flag");  sei.tileSetData(i).m_mcts_tier_level_idc_present_flag = (code != 0);
1045
1046        if(sei.tileSetData(i).m_mcts_tier_level_idc_present_flag)
1047        {
1048          sei_read_flag( pDecodedMessageOutputStream, code,    "mcts_tier_flag"); sei.tileSetData(i).m_mcts_tier_flag = (code != 0);
1049          sei_read_code( pDecodedMessageOutputStream, 8, code, "mcts_level_idc"); sei.tileSetData(i).m_mcts_level_idc =  code;
1050        }
1051      }
1052    }
1053  }
1054  else
1055  {
1056    sei_read_flag( pDecodedMessageOutputStream, code, "max_mcs_tier_level_idc_present_flag");  sei.m_max_mcs_tier_level_idc_present_flag = code;
1057    if(sei.m_max_mcs_tier_level_idc_present_flag)
1058    {
1059      sei_read_flag( pDecodedMessageOutputStream, code, "max_mcts_tier_flag");  sei.m_max_mcts_tier_flag = code;
1060      sei_read_code( pDecodedMessageOutputStream, 8, code, "max_mcts_level_idc"); sei.m_max_mcts_level_idc = code;
1061    }
1062  }
1063}
1064
1065Void SEIReader::xParseSEITimeCode(SEITimeCode& sei, UInt payloadSize, std::ostream *pDecodedMessageOutputStream)
1066{
1067  UInt code;
1068  output_sei_message_header(sei, pDecodedMessageOutputStream, payloadSize);
1069  sei_read_code( pDecodedMessageOutputStream, 2, code, "num_clock_ts"); sei.numClockTs = code;
1070  for(Int i = 0; i < sei.numClockTs; i++)
1071  {
1072    TComSEITimeSet currentTimeSet;
1073    sei_read_flag( pDecodedMessageOutputStream, code, "clock_time_stamp_flag[i]"); currentTimeSet.clockTimeStampFlag = code;
1074    if(currentTimeSet.clockTimeStampFlag)
1075    {
1076      sei_read_flag( pDecodedMessageOutputStream, code, "nuit_field_based_flag"); currentTimeSet.numUnitFieldBasedFlag = code;
1077      sei_read_code( pDecodedMessageOutputStream, 5, code, "counting_type"); currentTimeSet.countingType = code;
1078      sei_read_flag( pDecodedMessageOutputStream, code, "full_timestamp_flag"); currentTimeSet.fullTimeStampFlag = code;
1079      sei_read_flag( pDecodedMessageOutputStream, code, "discontinuity_flag"); currentTimeSet.discontinuityFlag = code;
1080      sei_read_flag( pDecodedMessageOutputStream, code, "cnt_dropped_flag"); currentTimeSet.cntDroppedFlag = code;
1081      sei_read_code( pDecodedMessageOutputStream, 9, code, "n_frames"); currentTimeSet.numberOfFrames = code;
1082      if(currentTimeSet.fullTimeStampFlag)
1083      {
1084        sei_read_code( pDecodedMessageOutputStream, 6, code, "seconds_value"); currentTimeSet.secondsValue = code;
1085        sei_read_code( pDecodedMessageOutputStream, 6, code, "minutes_value"); currentTimeSet.minutesValue = code;
1086        sei_read_code( pDecodedMessageOutputStream, 5, code, "hours_value"); currentTimeSet.hoursValue = code;
1087      }
1088      else
1089      {
1090        sei_read_flag( pDecodedMessageOutputStream, code, "seconds_flag"); currentTimeSet.secondsFlag = code;
1091        if(currentTimeSet.secondsFlag)
1092        {
1093          sei_read_code( pDecodedMessageOutputStream, 6, code, "seconds_value"); currentTimeSet.secondsValue = code;
1094          sei_read_flag( pDecodedMessageOutputStream, code, "minutes_flag"); currentTimeSet.minutesFlag = code;
1095          if(currentTimeSet.minutesFlag)
1096          {
1097            sei_read_code( pDecodedMessageOutputStream, 6, code, "minutes_value"); currentTimeSet.minutesValue = code;
1098            sei_read_flag( pDecodedMessageOutputStream, code, "hours_flag"); currentTimeSet.hoursFlag = code;
1099            if(currentTimeSet.hoursFlag)
1100            {
1101              sei_read_code( pDecodedMessageOutputStream, 5, code, "hours_value"); currentTimeSet.hoursValue = code;
1102            }
1103          }
1104        }
1105      }
1106      sei_read_code( pDecodedMessageOutputStream, 5, code, "time_offset_length"); currentTimeSet.timeOffsetLength = code;
1107      if(currentTimeSet.timeOffsetLength > 0)
1108      {
1109        sei_read_code( pDecodedMessageOutputStream, currentTimeSet.timeOffsetLength, code, "time_offset_value");
1110        if((code & (1 << (currentTimeSet.timeOffsetLength-1))) == 0)
1111        {
1112          currentTimeSet.timeOffsetValue = code;
1113        }
1114        else
1115        {
1116          code &= (1<< (currentTimeSet.timeOffsetLength-1)) - 1;
1117          currentTimeSet.timeOffsetValue = ~code + 1;
1118        }
1119      }
1120    }
1121    sei.timeSetArray[i] = currentTimeSet;
1122  }
1123}
1124
1125Void SEIReader::xParseSEIChromaSamplingFilterHint(SEIChromaSamplingFilterHint& sei, UInt payloadSize/*, TComSPS* sps*/, std::ostream *pDecodedMessageOutputStream)
1126{
1127  UInt uiCode;
1128  output_sei_message_header(sei, pDecodedMessageOutputStream, payloadSize);
1129
1130  sei_read_code( pDecodedMessageOutputStream, 8, uiCode, "ver_chroma_filter_idc"); sei.m_verChromaFilterIdc = uiCode;
1131  sei_read_code( pDecodedMessageOutputStream, 8, uiCode, "hor_chroma_filter_idc"); sei.m_horChromaFilterIdc = uiCode;
1132  sei_read_flag( pDecodedMessageOutputStream, uiCode, "ver_filtering_process_flag"); sei.m_verFilteringProcessFlag = uiCode;
1133  if(sei.m_verChromaFilterIdc == 1 || sei.m_horChromaFilterIdc == 1)
1134  {
1135    sei_read_uvlc( pDecodedMessageOutputStream, uiCode, "target_format_idc"); sei.m_targetFormatIdc = uiCode;
1136    if(sei.m_verChromaFilterIdc == 1)
1137    {
1138      sei_read_uvlc( pDecodedMessageOutputStream, uiCode, "num_vertical_filters"); sei.m_numVerticalFilters = uiCode;
1139      if(sei.m_numVerticalFilters > 0)
1140      {
1141        sei.m_verTapLengthMinus1 = (Int*)malloc(sei.m_numVerticalFilters * sizeof(Int));
1142        sei.m_verFilterCoeff = (Int**)malloc(sei.m_numVerticalFilters * sizeof(Int*));
1143        for(Int i = 0; i < sei.m_numVerticalFilters; i ++)
1144        {
1145          sei_read_uvlc( pDecodedMessageOutputStream, uiCode, "ver_tap_length_minus_1"); sei.m_verTapLengthMinus1[i] = uiCode;
1146          sei.m_verFilterCoeff[i] = (Int*)malloc(sei.m_verTapLengthMinus1[i] * sizeof(Int));
1147          for(Int j = 0; j < sei.m_verTapLengthMinus1[i]; j ++)
1148          {
1149            sei_read_svlc( pDecodedMessageOutputStream, sei.m_verFilterCoeff[i][j], "ver_filter_coeff");
1150          }
1151        }
1152      }
1153    }
1154    if(sei.m_horChromaFilterIdc == 1)
1155    {
1156      sei_read_uvlc( pDecodedMessageOutputStream, uiCode, "num_horizontal_filters"); sei.m_numHorizontalFilters = uiCode;
1157      if(sei.m_numHorizontalFilters  > 0)
1158      {
1159        sei.m_horTapLengthMinus1 = (Int*)malloc(sei.m_numHorizontalFilters * sizeof(Int));
1160        sei.m_horFilterCoeff = (Int**)malloc(sei.m_numHorizontalFilters * sizeof(Int*));
1161        for(Int i = 0; i < sei.m_numHorizontalFilters; i ++)
1162        {
1163          sei_read_uvlc( pDecodedMessageOutputStream, uiCode, "hor_tap_length_minus_1"); sei.m_horTapLengthMinus1[i] = uiCode;
1164          sei.m_horFilterCoeff[i] = (Int*)malloc(sei.m_horTapLengthMinus1[i] * sizeof(Int));
1165          for(Int j = 0; j < sei.m_horTapLengthMinus1[i]; j ++)
1166          {
1167            sei_read_svlc( pDecodedMessageOutputStream, sei.m_horFilterCoeff[i][j], "hor_filter_coeff");
1168          }
1169        }
1170      }
1171    }
1172  }
1173}
1174
1175Void SEIReader::xParseSEIKneeFunctionInfo(SEIKneeFunctionInfo& sei, UInt payloadSize, std::ostream *pDecodedMessageOutputStream)
1176{
1177  Int i;
1178  UInt val;
1179  output_sei_message_header(sei, pDecodedMessageOutputStream, payloadSize);
1180
1181  sei_read_uvlc( pDecodedMessageOutputStream, val, "knee_function_id" );                   sei.m_kneeId = val;
1182  sei_read_flag( pDecodedMessageOutputStream, val, "knee_function_cancel_flag" );          sei.m_kneeCancelFlag = val;
1183  if ( !sei.m_kneeCancelFlag )
1184  {
1185    sei_read_flag( pDecodedMessageOutputStream, val, "knee_function_persistence_flag" );   sei.m_kneePersistenceFlag = val;
1186    sei_read_code( pDecodedMessageOutputStream, 32, val, "input_d_range" );                sei.m_kneeInputDrange = val;
1187    sei_read_code( pDecodedMessageOutputStream, 32, val, "input_disp_luminance" );         sei.m_kneeInputDispLuminance = val;
1188    sei_read_code( pDecodedMessageOutputStream, 32, val, "output_d_range" );               sei.m_kneeOutputDrange = val;
1189    sei_read_code( pDecodedMessageOutputStream, 32, val, "output_disp_luminance" );        sei.m_kneeOutputDispLuminance = val;
1190    sei_read_uvlc( pDecodedMessageOutputStream, val, "num_knee_points_minus1" );           sei.m_kneeNumKneePointsMinus1 = val;
1191    assert( sei.m_kneeNumKneePointsMinus1 > 0 );
1192    sei.m_kneeInputKneePoint.resize(sei.m_kneeNumKneePointsMinus1+1);
1193    sei.m_kneeOutputKneePoint.resize(sei.m_kneeNumKneePointsMinus1+1);
1194    for(i = 0; i <= sei.m_kneeNumKneePointsMinus1; i++ )
1195    {
1196      sei_read_code( pDecodedMessageOutputStream, 10, val, "input_knee_point" );           sei.m_kneeInputKneePoint[i] = val;
1197      sei_read_code( pDecodedMessageOutputStream, 10, val, "output_knee_point" );          sei.m_kneeOutputKneePoint[i] = val;
1198    }
1199  }
1200}
1201
1202Void SEIReader::xParseSEIMasteringDisplayColourVolume(SEIMasteringDisplayColourVolume& sei, UInt payloadSize, std::ostream *pDecodedMessageOutputStream)
1203{
1204  UInt code;
1205  output_sei_message_header(sei, pDecodedMessageOutputStream, payloadSize);
1206
1207  sei_read_code( pDecodedMessageOutputStream, 16, code, "display_primaries_x[0]" ); sei.values.primaries[0][0] = code;
1208  sei_read_code( pDecodedMessageOutputStream, 16, code, "display_primaries_y[0]" ); sei.values.primaries[0][1] = code;
1209
1210  sei_read_code( pDecodedMessageOutputStream, 16, code, "display_primaries_x[1]" ); sei.values.primaries[1][0] = code;
1211  sei_read_code( pDecodedMessageOutputStream, 16, code, "display_primaries_y[1]" ); sei.values.primaries[1][1] = code;
1212
1213  sei_read_code( pDecodedMessageOutputStream, 16, code, "display_primaries_x[2]" ); sei.values.primaries[2][0] = code;
1214  sei_read_code( pDecodedMessageOutputStream, 16, code, "display_primaries_y[2]" ); sei.values.primaries[2][1] = code;
1215
1216
1217  sei_read_code( pDecodedMessageOutputStream, 16, code, "white_point_x" ); sei.values.whitePoint[0] = code;
1218  sei_read_code( pDecodedMessageOutputStream, 16, code, "white_point_y" ); sei.values.whitePoint[1] = code;
1219
1220  sei_read_code( pDecodedMessageOutputStream, 32, code, "max_display_mastering_luminance" ); sei.values.maxLuminance = code;
1221  sei_read_code( pDecodedMessageOutputStream, 32, code, "min_display_mastering_luminance" ); sei.values.minLuminance = code;
1222}
1223
1224#if NH_MV_LAYERS_NOT_PRESENT_SEI
1225Void SEIReader::xParseSEILayersNotPresent(SEILayersNotPresent &sei, UInt payloadSize, const TComVPS *vps, std::ostream *pDecodedMessageOutputStream)
1226{
1227  UInt code;
1228
1229  output_sei_message_header(sei, pDecodedMessageOutputStream, payloadSize);
1230  sei_read_code( pDecodedMessageOutputStream, 4, code, "lnp_sei_active_vps_id" ); sei.m_lnpSeiActiveVpsId = code;
1231  assert(vps->getVPSId() == sei.m_lnpSeiActiveVpsId);
1232
1233  sei.m_lnpSeiMaxLayers = vps->getMaxLayersMinus1() + 1;
1234  sei.resizeDimI(sei.m_lnpSeiMaxLayers);
1235  for (Int i = 0; i < sei.m_lnpSeiMaxLayers; i++)
1236  {
1237    sei_read_flag( pDecodedMessageOutputStream, code, "layer_not_present_flag" );
1238    sei.m_layerNotPresentFlag[i] = (code == 1);
1239  }
1240};
1241#endif
1242
1243Void SEIReader::xParseSEIInterLayerConstrainedTileSets(SEIInterLayerConstrainedTileSets& sei, UInt payloadSize, std::ostream *pDecodedMessageOutputStream)
1244{
1245  UInt code;
1246  output_sei_message_header(sei, pDecodedMessageOutputStream, payloadSize);
1247
1248  sei_read_flag( pDecodedMessageOutputStream, code, "il_all_tiles_exact_sample_value_match_flag" ); sei.m_ilAllTilesExactSampleValueMatchFlag = (code == 1);
1249  sei_read_flag( pDecodedMessageOutputStream, code, "il_one_tile_per_tile_set_flag"              ); sei.m_ilOneTilePerTileSetFlag             = (code == 1);
1250  if( !sei.m_ilOneTilePerTileSetFlag )
1251  {
1252    sei_read_uvlc( pDecodedMessageOutputStream, code, "il_num_sets_in_message_minus1" ); sei.m_ilNumSetsInMessageMinus1 = code;
1253    if( sei.m_ilNumSetsInMessageMinus1 )
1254    {
1255      sei_read_flag( pDecodedMessageOutputStream, code, "skipped_tile_set_present_flag" ); sei.m_skippedTileSetPresentFlag = (code == 1);
1256    }
1257    Int numSignificantSets = sei.m_ilNumSetsInMessageMinus1 - sei.m_skippedTileSetPresentFlag + 1;
1258
1259    sei.resizeDimI( numSignificantSets );
1260    for( Int i = 0; i < numSignificantSets; i++ )
1261    {
1262      sei_read_uvlc( pDecodedMessageOutputStream, code, "ilcts_id"                        ); sei.m_ilctsId                  [i] = code;
1263      sei_read_uvlc( pDecodedMessageOutputStream, code, "il_num_tile_rects_in_set_minus1" ); sei.m_ilNumTileRectsInSetMinus1[i] = code;
1264
1265      sei.resizeDimJ( i, sei.m_ilNumTileRectsInSetMinus1[ i ] + 1 );
1266      for( Int j = 0; j  <=  sei.m_ilNumTileRectsInSetMinus1[ i ]; j++ )
1267      {
1268        sei_read_uvlc( pDecodedMessageOutputStream, code, "il_top_left_tile_index"     ); sei.m_ilTopLeftTileIndex    [i][j] = code;
1269        sei_read_uvlc( pDecodedMessageOutputStream, code, "il_bottom_right_tile_index" ); sei.m_ilBottomRightTileIndex[i][j] = code;
1270      }
1271      sei_read_code( pDecodedMessageOutputStream, 2, code, "ilc_idc" ); sei.m_ilcIdc[i] = code;
1272      if ( !sei.m_ilAllTilesExactSampleValueMatchFlag )
1273      {
1274        sei_read_flag( pDecodedMessageOutputStream, code, "il_exact_sample_value_match_flag" ); sei.m_ilExactSampleValueMatchFlag[i] = (code == 1);
1275      }
1276    }
1277  }
1278  else
1279  {
1280    sei_read_code( pDecodedMessageOutputStream, 2, code, "all_tiles_ilc_idc" ); sei.m_allTilesIlcIdc = code;
1281  }
1282};
1283
1284#if NH_MV_SEI_TBD
1285Void SEIReader::xParseSEIBspNesting(SEIBspNesting& sei, UInt payloadSize, std::ostream *pDecodedMessageOutputStream)
1286{
1287  UInt code;
1288  output_sei_message_header(sei, pDecodedMessageOutputStream, payloadSize);
1289
1290  sei_read_uvlc( pDecodedMessageOutputStream, code, "sei_ols_idx" ); sei.m_seiOlsIdx = code;
1291  sei_read_uvlc( pDecodedMessageOutputStream, code, "sei_partitioning_scheme_idx" ); sei.m_seiPartitioningSchemeIdx = code;
1292  sei_read_uvlc( pDecodedMessageOutputStream, code, "bsp_idx" ); sei.m_bspIdx = code;
1293  while( !ByteaLigned(() ) );
1294  {
1295    sei_read_code( pDecodedMessageOutputStream, *equalto0*/u1, code, "bsp_nesting_zero_bit" ); sei.m_bspNestingZeroBit = code;
1296  }
1297  sei_read_uvlc( pDecodedMessageOutputStream, code, "num_seis_in_bsp_minus1" ); sei.m_numSeisInBspMinus1 = code;
1298  for( Int i = 0; i  <=  NumSeisInBspMinus1( ); i++ )
1299  {
1300    SeiMessage(() );
1301  }
1302};
1303
1304Void SEIReader::xParseSEIBspInitialArrivalTime(SEIBspInitialArrivalTime& sei, UInt payloadSize, std::ostream *pDecodedMessageOutputStream)
1305{
1306  UInt code;
1307  output_sei_message_header(sei, pDecodedMessageOutputStream, payloadSize);
1308
1309  psIdx = SeiPartitioningSchemeIdx();
1310  if( nalInitialArrivalDelayPresent )
1311  {
1312    for( Int i = 0; i < BspSchedCnt( SeiOlsIdx(), psIdx, MaxTemporalId( 0 ) ); i++ )
1313    {
1314      sei_read_code( pDecodedMessageOutputStream, getNalInitialArrivalDelayLen ), code, "nal_initial_arrival_delay" ); sei.m_nalInitialArrivalDelay[i] = code;
1315    }
1316  }
1317  if( vclInitialArrivalDelayPresent )
1318  {
1319    for( Int i = 0; i < BspSchedCnt( SeiOlsIdx(), psIdx, MaxTemporalId( 0 ) ); i++ )
1320    {
1321      sei_read_code( pDecodedMessageOutputStream, getVclInitialArrivalDelayLen ), code, "vcl_initial_arrival_delay" ); sei.m_vclInitialArrivalDelay[i] = code;
1322    }
1323  }
1324};
1325#endif
1326
1327Void SEIReader::xParseSEISubBitstreamProperty(SEISubBitstreamProperty& sei, UInt payloadSize, std::ostream *pDecodedMessageOutputStream)
1328{
1329  UInt code;
1330  output_sei_message_header(sei, pDecodedMessageOutputStream, payloadSize);
1331
1332  sei_read_code( pDecodedMessageOutputStream, 4, code, "sb_property_active_vps_id" ); sei.m_sbPropertyActiveVpsId = code;
1333  sei_read_uvlc( pDecodedMessageOutputStream, code, "num_additional_sub_streams_minus1" ); sei.m_numAdditionalSubStreamsMinus1 = code;
1334  sei.resizeArrays( );
1335  for( Int i = 0; i  <=  sei.m_numAdditionalSubStreamsMinus1; i++ )
1336  {
1337    sei_read_code( pDecodedMessageOutputStream, 2, code, "sub_bitstream_mode" ); sei.m_subBitstreamMode[i] = code;
1338    sei_read_uvlc( pDecodedMessageOutputStream, code, "ols_idx_to_vps" ); sei.m_olsIdxToVps[i] = code;
1339    sei_read_code( pDecodedMessageOutputStream, 3, code, "highest_sublayer_id" ); sei.m_highestSublayerId[i] = code;
1340    sei_read_code( pDecodedMessageOutputStream, 16, code, "avg_sb_property_bit_rate" ); sei.m_avgSbPropertyBitRate[i] = code;
1341    sei_read_code( pDecodedMessageOutputStream, 16, code, "max_sb_property_bit_rate" ); sei.m_maxSbPropertyBitRate[i] = code;
1342  }
1343};
1344
1345Void SEIReader::xParseSEIAlphaChannelInfo(SEIAlphaChannelInfo& sei, UInt payloadSize, std::ostream *pDecodedMessageOutputStream)
1346{
1347  UInt code;
1348  output_sei_message_header(sei, pDecodedMessageOutputStream, payloadSize);
1349
1350  sei_read_flag( pDecodedMessageOutputStream, code, "alpha_channel_cancel_flag" ); sei.m_alphaChannelCancelFlag = (code == 1);
1351  if( !sei.m_alphaChannelCancelFlag )
1352  {
1353    sei_read_code( pDecodedMessageOutputStream, 3, code, "alpha_channel_use_idc" ); sei.m_alphaChannelUseIdc = code;
1354    sei_read_code( pDecodedMessageOutputStream, 3, code, "alpha_channel_bit_depth_minus8" ); sei.m_alphaChannelBitDepthMinus8 = code;
1355    sei_read_code( pDecodedMessageOutputStream, sei.m_alphaChannelBitDepthMinus8+9, code, "alpha_transparent_value" ); sei.m_alphaTransparentValue = code;
1356    sei_read_code( pDecodedMessageOutputStream, sei.m_alphaChannelBitDepthMinus8+9, code, "alpha_opaque_value" ); sei.m_alphaOpaqueValue = code;
1357    sei_read_flag( pDecodedMessageOutputStream, code, "alpha_channel_incr_flag" ); sei.m_alphaChannelIncrFlag = (code == 1);
1358    sei_read_flag( pDecodedMessageOutputStream, code, "alpha_channel_clip_flag" ); sei.m_alphaChannelClipFlag = (code == 1);
1359    if( sei.m_alphaChannelClipFlag )
1360    {
1361      sei_read_flag( pDecodedMessageOutputStream, code, "alpha_channel_clip_type_flag" ); sei.m_alphaChannelClipTypeFlag = (code == 1);
1362    }
1363  }
1364};
1365
1366Void SEIReader::xParseSEIOverlayInfo(SEIOverlayInfo& sei, UInt payloadSize, std::ostream *pDecodedMessageOutputStream)
1367{
1368  UInt code;
1369  output_sei_message_header(sei, pDecodedMessageOutputStream, payloadSize);
1370
1371  sei_read_flag( pDecodedMessageOutputStream, code, "overlay_info_cancel_flag" ); sei.m_overlayInfoCancelFlag = (code == 1);
1372  if( !sei.m_overlayInfoCancelFlag )
1373  {
1374    sei_read_uvlc( pDecodedMessageOutputStream, code, "overlay_content_aux_id_minus128" );            sei.m_overlayContentAuxIdMinus128 = code;
1375    sei_read_uvlc( pDecodedMessageOutputStream, code, "overlay_label_aux_id_minus128" );              sei.m_overlayLabelAuxIdMinus128 = code;
1376    sei_read_uvlc( pDecodedMessageOutputStream, code, "overlay_alpha_aux_id_minus128" );              sei.m_overlayAlphaAuxIdMinus128 = code;
1377    sei_read_uvlc( pDecodedMessageOutputStream, code, "overlay_element_label_value_length_minus8" );  sei.m_overlayElementLabelValueLengthMinus8 = code;
1378    sei_read_uvlc( pDecodedMessageOutputStream, code, "num_overlays_minus1" );                        sei.m_numOverlaysMinus1 = code;
1379
1380    sei.m_overlayIdx.resize( sei.m_numOverlaysMinus1+1 );
1381    sei.m_languageOverlayPresentFlag.resize( sei.m_numOverlaysMinus1+1 );
1382    sei.m_overlayContentLayerId.resize     ( sei.m_numOverlaysMinus1+1 );
1383    sei.m_overlayLabelPresentFlag.resize   ( sei.m_numOverlaysMinus1+1 );
1384    sei.m_overlayLabelLayerId.resize       ( sei.m_numOverlaysMinus1+1 );
1385    sei.m_overlayAlphaPresentFlag.resize   ( sei.m_numOverlaysMinus1+1 );
1386    sei.m_overlayAlphaLayerId.resize       ( sei.m_numOverlaysMinus1+1 );
1387    sei.m_numOverlayElementsMinus1.resize  ( sei.m_numOverlaysMinus1+1 );
1388    sei.m_overlayElementLabelMin.resize    ( sei.m_numOverlaysMinus1+1 );
1389    sei.m_overlayElementLabelMax.resize    ( sei.m_numOverlaysMinus1+1 );
1390    for( Int i = 0; i  <=  sei.m_numOverlaysMinus1; i++ )
1391    {
1392      sei_read_uvlc( pDecodedMessageOutputStream, code, "overlay_idx" );                    sei.m_overlayIdx[i]                 = code;
1393      sei_read_flag( pDecodedMessageOutputStream, code, "language_overlay_present_flag" );  sei.m_languageOverlayPresentFlag[i] = (code == 1);
1394      sei_read_code( pDecodedMessageOutputStream, 6, code, "overlay_content_layer_id" );    sei.m_overlayContentLayerId[i]      = code;
1395      sei_read_flag( pDecodedMessageOutputStream, code, "overlay_label_present_flag" );     sei.m_overlayLabelPresentFlag[i]    = (code == 1);
1396      if( sei.m_overlayLabelPresentFlag[i] )
1397      {
1398        sei_read_code( pDecodedMessageOutputStream, 6, code, "overlay_label_layer_id" );     sei.m_overlayLabelLayerId[i]       = code;
1399      }
1400      sei_read_flag( pDecodedMessageOutputStream, code, "overlay_alpha_present_flag" );      sei.m_overlayAlphaPresentFlag[i]   = (code == 1);
1401      if( sei.m_overlayAlphaPresentFlag[i] )
1402      {
1403        sei_read_code( pDecodedMessageOutputStream, 6, code, "overlay_alpha_layer_id" );     sei.m_overlayAlphaLayerId[i]       = code;
1404      }
1405      if( sei.m_overlayLabelPresentFlag[i] )
1406      {
1407        sei_read_uvlc( pDecodedMessageOutputStream, code, "num_overlay_elements_minus1" );   sei.m_numOverlayElementsMinus1[i]  = code;
1408        sei.m_overlayElementLabelMin[i].resize( sei.m_numOverlayElementsMinus1[i]+1 );
1409        sei.m_overlayElementLabelMax[i].resize( sei.m_numOverlayElementsMinus1[i]+1 );
1410        for( Int j = 0; j  <=  sei.m_numOverlayElementsMinus1[i]; j++ )
1411        {
1412          sei_read_code( pDecodedMessageOutputStream, sei.m_overlayElementLabelValueLengthMinus8 + 8, code, "overlay_element_label_min" ); sei.m_overlayElementLabelMin[i][j] = code;
1413          sei_read_code( pDecodedMessageOutputStream, sei.m_overlayElementLabelValueLengthMinus8 + 8, code, "overlay_element_label_max" ); sei.m_overlayElementLabelMax[i][j] = code;
1414        }
1415      }
1416    }
1417
1418    // byte alignment
1419    while ( m_pcBitstream->getNumBitsRead() % 8 != 0 )
1420    {
1421      sei_read_flag( pDecodedMessageOutputStream, code, "overlay_zero_bit" );
1422      assert( code==0 );
1423    }
1424
1425    UChar* sval = new UChar[sei.m_numStringBytesMax];
1426    UInt slen;
1427    sei.m_overlayLanguage   .resize( sei.m_numOverlaysMinus1 + 1 );
1428    sei.m_overlayName       .resize( sei.m_numOverlaysMinus1 + 1 );
1429    sei.m_overlayElementName.resize( sei.m_numOverlaysMinus1 + 1 );
1430    for( Int i = 0; i  <=  sei.m_numOverlaysMinus1; i++ )
1431    {
1432      if( sei.m_languageOverlayPresentFlag[i] )
1433      {
1434        sei_read_string(pDecodedMessageOutputStream, sei.m_numStringBytesMax, sval, slen, "overlay_language");
1435        sei.m_overlayLanguage[i] = std::string((const char*) sval);
1436      }
1437      sei_read_string(pDecodedMessageOutputStream, sei.m_numStringBytesMax, sval, slen, "overlay_name");
1438      sei.m_overlayName[i] = std::string((const char*) sval);
1439      if( sei.m_overlayLabelPresentFlag[i] )
1440      {
1441        sei.m_overlayElementName[i].resize( sei.m_numOverlayElementsMinus1[i]+1 );
1442        for( Int j = 0; j  <=  sei.m_numOverlayElementsMinus1[i]; j++ )
1443        {
1444          sei_read_string(pDecodedMessageOutputStream, sei.m_numStringBytesMax, sval, slen, "overlay_element_name");
1445          sei.m_overlayElementName[i][j] = std::string((const char*) sval);
1446        }
1447      }
1448    }
1449    delete [] sval;
1450    sei_read_flag( pDecodedMessageOutputStream, code, "overlay_info_persistence_flag" ); sei.m_overlayInfoPersistenceFlag = (code == 1);
1451  }
1452};
1453
1454Void SEIReader::xParseSEITemporalMvPredictionConstraints(SEITemporalMvPredictionConstraints& sei, UInt payloadSize, std::ostream *pDecodedMessageOutputStream)
1455{
1456  UInt code;
1457  output_sei_message_header(sei, pDecodedMessageOutputStream, payloadSize);
1458
1459  sei_read_flag( pDecodedMessageOutputStream, code, "prev_pics_not_used_flag"     ); sei.m_prevPicsNotUsedFlag    = (code == 1);
1460  sei_read_flag( pDecodedMessageOutputStream, code, "no_intra_layer_col_pic_flag" ); sei.m_noIntraLayerColPicFlag = (code == 1);
1461};
1462
1463#if NH_MV_SEI_TBD
1464Void SEIReader::xParseSEIFrameFieldInfo(SEIFrameFieldInfo& sei, UInt payloadSize, std::ostream *pDecodedMessageOutputStream)
1465{
1466  UInt code;
1467  output_sei_message_header(sei, pDecodedMessageOutputStream, payloadSize);
1468
1469  sei_read_code( pDecodedMessageOutputStream, 4, code, "ffinfo_pic_struct" ); sei.m_ffinfoPicStruct = code;
1470  sei_read_code( pDecodedMessageOutputStream, 2, code, "ffinfo_source_scan_type" ); sei.m_ffinfoSourceScanType = code;
1471  sei_read_flag( pDecodedMessageOutputStream, code, "ffinfo_duplicate_flag" ); sei.m_ffinfoDuplicateFlag = (code == 1);
1472};
1473#endif
1474
1475Void SEIReader::xParseSEIThreeDimensionalReferenceDisplaysInfo(SEIThreeDimensionalReferenceDisplaysInfo& sei, UInt payloadSize, std::ostream *pDecodedMessageOutputStream)
1476{
1477  UInt code;
1478  output_sei_message_header(sei, pDecodedMessageOutputStream, payloadSize);
1479
1480  sei_read_uvlc( pDecodedMessageOutputStream, code, "prec_ref_display_width" ); sei.m_precRefDisplayWidth = code;
1481  sei_read_flag( pDecodedMessageOutputStream, code, "ref_viewing_distance_flag" ); sei.m_refViewingDistanceFlag = (code == 1);
1482  if( sei.m_refViewingDistanceFlag )
1483  {
1484    sei_read_uvlc( pDecodedMessageOutputStream, code, "prec_ref_viewing_dist" ); sei.m_precRefViewingDist = code;
1485  }
1486  sei_read_uvlc( pDecodedMessageOutputStream, code, "num_ref_displays_minus1" ); sei.m_numRefDisplaysMinus1 = code;
1487  sei.resizeArrays( );
1488  for( Int i = 0; i  <=  sei.getNumRefDisplaysMinus1( ); i++ )
1489  {
1490    sei_read_uvlc( pDecodedMessageOutputStream, code, "left_view_id" ); sei.m_leftViewId[i] = code;
1491    sei_read_uvlc( pDecodedMessageOutputStream, code, "right_view_id" ); sei.m_rightViewId[i] = code;
1492    sei_read_code( pDecodedMessageOutputStream, 6, code, "exponent_ref_display_width" ); sei.m_exponentRefDisplayWidth[i] = code;
1493    sei_read_code( pDecodedMessageOutputStream, sei.getMantissaReferenceDisplayWidthLen(i), code, "mantissa_ref_display_width" ); sei.m_mantissaRefDisplayWidth[i] =  code      ;
1494    if( sei.m_refViewingDistanceFlag )
1495    {
1496      sei_read_code( pDecodedMessageOutputStream, 6, code, "exponent_ref_viewing_distance" ); sei.m_exponentRefViewingDistance[i] = code;
1497      sei_read_code( pDecodedMessageOutputStream, sei.getMantissaReferenceViewingDistanceLen(i), code, "mantissa_ref_viewing_distance" ); sei.m_mantissaRefViewingDistance[i] = code;
1498    }
1499    sei_read_flag( pDecodedMessageOutputStream, code, "additional_shift_present_flag" ); sei.m_additionalShiftPresentFlag[i] = (code == 1);
1500    if( sei.m_additionalShiftPresentFlag[i] )
1501    {
1502      sei_read_code( pDecodedMessageOutputStream, 10, code, "num_sample_shift_plus512" ); sei.m_numSampleShiftPlus512[i] = code;
1503    }
1504  }
1505  sei_read_flag( pDecodedMessageOutputStream, code, "three_dimensional_reference_displays_extension_flag" ); sei.m_threeDimensionalReferenceDisplaysExtensionFlag = (code == 1);
1506};
1507
1508#if SEI_DRI_F0169
1509Void SEIReader::xParseSEIDepthRepInfoElement(double& f,std::ostream *pDecodedMessageOutputStream)
1510{
1511    UInt val;
1512    UInt x_sign,x_mantissa_len,x_mantissa;
1513    Int x_exp;
1514
1515    sei_read_flag(pDecodedMessageOutputStream,     val,"da_sign_flag");  x_sign = val ? 1 : 0 ;
1516    sei_read_code(pDecodedMessageOutputStream,  7, val, "da_exponent" );         x_exp = val-31;
1517    sei_read_code(pDecodedMessageOutputStream,  5, val, "da_mantissa_len_minus1" );         x_mantissa_len = val+1;
1518    sei_read_code(pDecodedMessageOutputStream,  x_mantissa_len, val, "da_mantissa" );         x_mantissa = val;
1519    if (x_mantissa_len>=16)
1520    {
1521        f =1.0 +  (x_mantissa*1.0)/(1u<<(x_mantissa_len-16))/(256.0*256.0 );
1522    }else
1523    {
1524        f =1.0 +  (x_mantissa*1.0)/(1u<<x_mantissa_len);
1525    }
1526    double m=1.0;
1527    int i;
1528    if (x_exp<0)
1529    {
1530        for(i=0;i<-x_exp;i++)
1531            m = m * 2;
1532
1533        f = f/m;
1534    }
1535    else
1536    {
1537        for(i=0;i<x_exp;i++)
1538            m = m * 2;
1539
1540        f= f * m;
1541    }
1542    if (x_sign==1)
1543    {
1544        f= -f;
1545    }
1546};
1547
1548Void SEIReader::xParseSEIDepthRepresentationInfo(SEIDepthRepresentationInfo& sei, UInt payloadSize, std::ostream *pDecodedMessageOutputStream)
1549{
1550    UInt code;
1551    double zNear,zFar,dMin,dMax;
1552    bool zNearFlag,zFarFlag,dMinFlag,dMaxFlag;
1553    int depth_representation_type,disparityRefViewId,depthNonlinearRepresentationNumMinus1;
1554    std::vector<int> DepthNonlinearRepresentationModel;
1555
1556    sei.clear();
1557
1558    output_sei_message_header(sei, pDecodedMessageOutputStream, payloadSize);
1559
1560    sei_read_flag( pDecodedMessageOutputStream, code, "z_near_flag" );    zNearFlag  = (code == 1);
1561    sei_read_flag( pDecodedMessageOutputStream, code, "z_far_flag" );     zFarFlag = (code == 1);
1562    sei_read_flag( pDecodedMessageOutputStream, code, "d_min_flag" );     dMinFlag = (code == 1);
1563    sei_read_flag( pDecodedMessageOutputStream, code, "d_max_flag" );     dMaxFlag = (code == 1);
1564    sei_read_uvlc( pDecodedMessageOutputStream, code, "depth_representation_type" ); depth_representation_type = code;
1565
1566    sei.m_zNearFlag.push_back(zNearFlag);
1567    sei.m_zFarFlag.push_back(zFarFlag);
1568    sei.m_dMinFlag.push_back(dMinFlag);
1569    sei.m_dMaxFlag.push_back(dMaxFlag);
1570
1571    sei.m_depthRepresentationType.push_back(IntAry1d(1,depth_representation_type));
1572
1573    if( dMinFlag  ||  dMaxFlag )
1574    {
1575        sei_read_uvlc( pDecodedMessageOutputStream, code, "disparity_ref_view_id" ); disparityRefViewId = code;
1576        sei.m_disparityRefViewId.push_back(IntAry1d(1,disparityRefViewId));
1577    }
1578    if( zNearFlag )
1579    {
1580        xParseSEIDepthRepInfoElement(zNear , pDecodedMessageOutputStream);
1581        sei.m_zNear.push_back(std::vector<double>(1,zNear));
1582    }
1583    if( zFarFlag )
1584    {
1585        xParseSEIDepthRepInfoElement(zFar , pDecodedMessageOutputStream);
1586        sei.m_zFar.push_back(std::vector<double>(1,zFar));
1587    }
1588    if( dMinFlag )
1589    {
1590        xParseSEIDepthRepInfoElement(dMin , pDecodedMessageOutputStream);
1591        sei.m_dMin.push_back(std::vector<double>(1,dMin));
1592    }
1593    if( dMaxFlag )
1594    {
1595        xParseSEIDepthRepInfoElement(dMax , pDecodedMessageOutputStream);
1596        sei.m_dMax.push_back(std::vector<double>(1,dMax));
1597    }
1598    if( depth_representation_type  ==  3 )
1599    {
1600        sei_read_uvlc( pDecodedMessageOutputStream, code, "depth_nonlinear_representation_num_minus1" ); depthNonlinearRepresentationNumMinus1 = code;
1601        sei.m_depthNonlinearRepresentationNumMinus1.push_back(IntAry1d(1,depthNonlinearRepresentationNumMinus1));
1602        for( Int i = 1; i  <=  depthNonlinearRepresentationNumMinus1 + 1; i++ )
1603        {
1604            sei_read_uvlc(pDecodedMessageOutputStream,code,"DepthNonlinearRepresentationModel" ) ;
1605            DepthNonlinearRepresentationModel.push_back(code);
1606        }
1607
1608        sei.m_depth_nonlinear_representation_model.push_back(DepthNonlinearRepresentationModel);
1609    }
1610}
1611#endif
1612Void SEIReader::xParseSEIMultiviewSceneInfo(SEIMultiviewSceneInfo& sei, UInt payloadSize, std::ostream *pDecodedMessageOutputStream)
1613{
1614  UInt  code;
1615  Int  sCode;
1616  output_sei_message_header(sei, pDecodedMessageOutputStream, payloadSize);
1617
1618  sei_read_svlc( pDecodedMessageOutputStream, sCode, "min_disparity" )      ; sei.m_minDisparity      = sCode;
1619  sei_read_uvlc( pDecodedMessageOutputStream, code , "max_disparity_range" ); sei.m_maxDisparityRange = code;
1620};
1621
1622Void SEIReader::xParseSEIMultiviewAcquisitionInfo(SEIMultiviewAcquisitionInfo& sei, UInt payloadSize, std::ostream *pDecodedMessageOutputStream)
1623{
1624  UInt code;
1625  output_sei_message_header(sei, pDecodedMessageOutputStream, payloadSize);
1626
1627  sei.resizeArrays( );
1628  sei_read_flag( pDecodedMessageOutputStream, code, "intrinsic_param_flag" ); sei.m_intrinsicParamFlag = (code == 1);
1629  sei_read_flag( pDecodedMessageOutputStream, code, "extrinsic_param_flag" ); sei.m_extrinsicParamFlag = (code == 1);
1630  if( sei.m_intrinsicParamFlag )
1631  {
1632    sei_read_flag( pDecodedMessageOutputStream, code, "intrinsic_params_equal_flag" ); sei.m_intrinsicParamsEqualFlag = (code == 1);
1633    sei_read_uvlc( pDecodedMessageOutputStream, code, "prec_focal_length"           ); sei.m_precFocalLength          =  code      ;
1634    sei_read_uvlc( pDecodedMessageOutputStream, code, "prec_principal_point"        ); sei.m_precPrincipalPoint       =  code      ;
1635    sei_read_uvlc( pDecodedMessageOutputStream, code, "prec_skew_factor"            ); sei.m_precSkewFactor           =  code      ;
1636
1637    for( Int i = 0; i  <=  ( sei.m_intrinsicParamsEqualFlag ? 0 : sei.getNumViewsMinus1() ); i++ )
1638    {
1639      sei_read_flag( pDecodedMessageOutputStream,                                         code, "sign_focal_length_x"        ); sei.m_signFocalLengthX       [i] = (code == 1);
1640      sei_read_code( pDecodedMessageOutputStream, 6,                                      code, "exponent_focal_length_x"    ); sei.m_exponentFocalLengthX   [i] =  code      ;
1641      sei_read_code( pDecodedMessageOutputStream, sei.getMantissaFocalLengthXLen   ( i ), code, "mantissa_focal_length_x"    ); sei.m_mantissaFocalLengthX   [i] =  code      ;
1642      sei_read_flag( pDecodedMessageOutputStream,                                         code, "sign_focal_length_y"        ); sei.m_signFocalLengthY       [i] = (code == 1);
1643      sei_read_code( pDecodedMessageOutputStream, 6,                                      code, "exponent_focal_length_y"    ); sei.m_exponentFocalLengthY   [i] =  code      ;
1644      sei_read_code( pDecodedMessageOutputStream, sei.getMantissaFocalLengthYLen   ( i ), code, "mantissa_focal_length_y"    ); sei.m_mantissaFocalLengthY   [i] =  code      ;
1645      sei_read_flag( pDecodedMessageOutputStream,                                         code, "sign_principal_point_x"     ); sei.m_signPrincipalPointX    [i] = (code == 1);
1646      sei_read_code( pDecodedMessageOutputStream, 6,                                      code, "exponent_principal_point_x" ); sei.m_exponentPrincipalPointX[i] =  code      ;
1647      sei_read_code( pDecodedMessageOutputStream, sei.getMantissaPrincipalPointXLen( i ), code, "mantissa_principal_point_x" ); sei.m_mantissaPrincipalPointX[i] =  code      ;
1648      sei_read_flag( pDecodedMessageOutputStream,                                         code, "sign_principal_point_y"     ); sei.m_signPrincipalPointY    [i] = (code == 1);
1649      sei_read_code( pDecodedMessageOutputStream, 6,                                      code, "exponent_principal_point_y" ); sei.m_exponentPrincipalPointY[i] =  code      ;
1650      sei_read_code( pDecodedMessageOutputStream, sei.getMantissaPrincipalPointYLen( i ), code, "mantissa_principal_point_y" ); sei.m_mantissaPrincipalPointY[i] =  code      ;
1651      sei_read_flag( pDecodedMessageOutputStream,                                         code, "sign_skew_factor"           ); sei.m_signSkewFactor         [i] = (code == 1);
1652      sei_read_code( pDecodedMessageOutputStream, 6,                                      code, "exponent_skew_factor"       ); sei.m_exponentSkewFactor     [i] =  code      ;
1653      sei_read_code( pDecodedMessageOutputStream, sei.getMantissaSkewFactorLen     ( i ), code, "mantissa_skew_factor"       ); sei.m_mantissaSkewFactor     [i] =  code      ;
1654    }
1655  }
1656  if( sei.m_extrinsicParamFlag )
1657  {
1658    sei_read_uvlc( pDecodedMessageOutputStream, code, "prec_rotation_param"    ); sei.m_precRotationParam    = code;
1659    sei_read_uvlc( pDecodedMessageOutputStream, code, "prec_translation_param" ); sei.m_precTranslationParam = code;
1660
1661    for( Int i = 0; i  <=  sei.getNumViewsMinus1(); i++ )
1662    {
1663      for( Int j = 0; j  <=  2; j++ )  /* row */
1664      {
1665        for( Int k = 0; k  <=  2; k++ )  /* column */
1666        {
1667          sei_read_flag( pDecodedMessageOutputStream,                                 code, "sign_r"     ); sei.m_signR    [i][j][k] = (code == 1);
1668          sei_read_code( pDecodedMessageOutputStream, 6,                              code, "exponent_r" ); sei.m_exponentR[i][j][k] =  code      ;
1669          sei_read_code( pDecodedMessageOutputStream, sei.getMantissaRLen( i, j, k ), code, "mantissa_r" ); sei.m_mantissaR[i][j][k] =  code      ;
1670        }
1671        sei_read_flag( pDecodedMessageOutputStream,                              code, "sign_t"     ); sei.m_signT    [i][j] = (code == 1);
1672        sei_read_code( pDecodedMessageOutputStream, 6,                           code, "exponent_t" ); sei.m_exponentT[i][j] =  code      ;
1673        sei_read_code( pDecodedMessageOutputStream, sei.getMantissaTLen( i, j ), code, "mantissa_t" ); sei.m_mantissaT[i][j] =  code      ;
1674      }
1675    }
1676  }
1677};
1678
1679
1680
1681Void SEIReader::xParseSEIMultiviewViewPosition(SEIMultiviewViewPosition& sei, UInt payloadSize, std::ostream *pDecodedMessageOutputStream)
1682{
1683  UInt code;
1684  output_sei_message_header(sei, pDecodedMessageOutputStream, payloadSize);
1685
1686  sei_read_uvlc( pDecodedMessageOutputStream, code, "num_views_minus1" ); sei.m_numViewsMinus1 = code;
1687  sei.m_viewPosition.resize( sei.m_numViewsMinus1 + 1 );
1688  for( Int i = 0; i  <=  sei.m_numViewsMinus1; i++ )
1689  {
1690    sei_read_uvlc( pDecodedMessageOutputStream, code, "view_position" ); sei.m_viewPosition[i] = code;
1691  }
1692};
1693
1694#if NH_3D
1695Void SEIReader::xParseSEIAlternativeDepthInfo(SEIAlternativeDepthInfo& sei, UInt payloadSize, std::ostream *pDecodedMessageOutputStream)
1696{
1697  UInt code;
1698  Int scode;
1699  output_sei_message_header(sei, pDecodedMessageOutputStream, payloadSize);
1700
1701  sei.resizeArrays( );
1702  sei_read_flag( pDecodedMessageOutputStream, code, "alternative_depth_info_cancel_flag" ); sei.m_alternativeDepthInfoCancelFlag = (code == 1);
1703  if( sei.m_alternativeDepthInfoCancelFlag  ==  0 )
1704  {
1705    sei_read_code( pDecodedMessageOutputStream, 2, code, "depth_type" ); sei.m_depthType = code;
1706    if( sei.m_depthType  ==  0 )
1707    {
1708      sei_read_uvlc( pDecodedMessageOutputStream, code, "num_constituent_views_gvd_minus1" ); sei.m_numConstituentViewsGvdMinus1 = code;
1709      sei_read_flag( pDecodedMessageOutputStream, code, "depth_present_gvd_flag" ); sei.m_depthPresentGvdFlag = (code == 1);
1710      sei_read_flag( pDecodedMessageOutputStream, code, "z_gvd_flag" ); sei.m_zGvdFlag = (code == 1);
1711      sei_read_flag( pDecodedMessageOutputStream, code, "intrinsic_param_gvd_flag" ); sei.m_intrinsicParamGvdFlag = (code == 1);
1712      sei_read_flag( pDecodedMessageOutputStream, code, "rotation_gvd_flag" ); sei.m_rotationGvdFlag = (code == 1);
1713      sei_read_flag( pDecodedMessageOutputStream, code, "translation_gvd_flag" ); sei.m_translationGvdFlag = (code == 1);
1714      if( sei.m_zGvdFlag )
1715      {
1716        for( Int i = 0, j = 0; j <=  sei.m_numConstituentViewsGvdMinus1 + 1; j++ )
1717        {
1718          sei_read_flag( pDecodedMessageOutputStream, code, "sign_gvd_z_near_flag" ); sei.m_signGvdZNearFlag[i][j] = (code == 1);
1719          sei_read_code( pDecodedMessageOutputStream, 7, code, "exp_gvd_z_near" ); sei.m_expGvdZNear[i][j] = code;
1720          sei_read_code( pDecodedMessageOutputStream, 5, code, "man_len_gvd_z_near_minus1" ); sei.m_manLenGvdZNearMinus1[i][j] = code;
1721          sei_read_code( pDecodedMessageOutputStream, sei.m_manLenGvdZNearMinus1[i][j]+1, code, "man_gvd_z_near" ); sei.m_manGvdZNear[i][j] = code;
1722          sei_read_flag( pDecodedMessageOutputStream, code, "sign_gvd_z_far_flag" ); sei.m_signGvdZFarFlag[i][j] = (code == 1);
1723          sei_read_code( pDecodedMessageOutputStream, 7, code, "exp_gvd_z_far" ); sei.m_expGvdZFar[i][j] = code;
1724          sei_read_code( pDecodedMessageOutputStream, 5, code, "man_len_gvd_z_far_minus1" ); sei.m_manLenGvdZFarMinus1[i][j] = code;
1725          sei_read_code( pDecodedMessageOutputStream, sei.m_manLenGvdZFarMinus1[i][j]+1, code, "man_gvd_z_far" ); sei.m_manGvdZFar[i][j] = code;
1726        }
1727      }
1728      if( sei.m_intrinsicParamGvdFlag )
1729      {
1730        sei_read_uvlc( pDecodedMessageOutputStream, code, "prec_gvd_focal_length" ); sei.m_precGvdFocalLength = code;
1731        sei_read_uvlc( pDecodedMessageOutputStream, code, "prec_gvd_principal_point" ); sei.m_precGvdPrincipalPoint = code;
1732      }
1733      if( sei.m_rotationGvdFlag )
1734      {
1735        sei_read_uvlc( pDecodedMessageOutputStream, code, "prec_gvd_rotation_param" ); sei.m_precGvdRotationParam = code;
1736      }
1737      if( sei.m_translationGvdFlag )
1738      {
1739        sei_read_uvlc( pDecodedMessageOutputStream, code, "prec_gvd_translation_param" ); sei.m_precGvdTranslationParam = code;
1740      }
1741      for( Int i = 0, j = 0; j <= sei.m_numConstituentViewsGvdMinus1 + 1; j++ )
1742      {
1743        if( sei.m_intrinsicParamGvdFlag )
1744        {
1745          sei_read_flag( pDecodedMessageOutputStream, code, "sign_gvd_focal_length_x" ); sei.m_signGvdFocalLengthX[i][j] = (code == 1);
1746          sei_read_code( pDecodedMessageOutputStream, 6, code, "exp_gvd_focal_length_x" ); sei.m_expGvdFocalLengthX[i][j] = code;
1747          //sei_read_code( pDecodedMessageOutputStream, sei.m_precGvdFocalLength, code, "man_gvd_focal_length_x" ); sei.m_manGvdFocalLengthX[i][j] = code;
1748          sei_read_code( pDecodedMessageOutputStream, sei.getManGvdFocalLengthXLen(i,j), code, "man_gvd_focal_length_x" ); sei.m_manGvdFocalLengthX[i][j] = code;
1749          sei_read_flag( pDecodedMessageOutputStream, code, "sign_gvd_focal_length_y" ); sei.m_signGvdFocalLengthY[i][j] = (code == 1);
1750          sei_read_code( pDecodedMessageOutputStream, 6, code, "exp_gvd_focal_length_y" ); sei.m_expGvdFocalLengthY[i][j] = code;
1751          //sei_read_code( pDecodedMessageOutputStream, sei.m_precGvdFocalLength, code, "man_gvd_focal_length_y" ); sei.m_manGvdFocalLengthY[i][j] = code;
1752          sei_read_code( pDecodedMessageOutputStream, sei.getManGvdFocalLengthYLen(i,j), code, "man_gvd_focal_length_y" ); sei.m_manGvdFocalLengthY[i][j] = code;
1753          sei_read_flag( pDecodedMessageOutputStream, code, "sign_gvd_principal_point_x" ); sei.m_signGvdPrincipalPointX[i][j] = (code == 1);
1754          sei_read_code( pDecodedMessageOutputStream, 6, code, "exp_gvd_principal_point_x" ); sei.m_expGvdPrincipalPointX[i][j] = code;
1755          //sei_read_code( pDecodedMessageOutputStream, sei.m_precGvdPrincipalPoint, code, "man_gvd_principal_point_x" ); sei.m_manGvdPrincipalPointX[i][j] = code;
1756          sei_read_code( pDecodedMessageOutputStream, sei.getManGvdPrincipalPointXLen(i,j), code, "man_gvd_principal_point_x" ); sei.m_manGvdPrincipalPointX[i][j] = code;
1757          sei_read_flag( pDecodedMessageOutputStream, code, "sign_gvd_principal_point_y" ); sei.m_signGvdPrincipalPointY[i][j] = (code == 1);
1758          sei_read_code( pDecodedMessageOutputStream, 6, code, "exp_gvd_principal_point_y" ); sei.m_expGvdPrincipalPointY[i][j] = code;
1759          //sei_read_code( pDecodedMessageOutputStream, sei.m_precGvdPrincipalPoint, code, "man_gvd_principal_point_y" ); sei.m_manGvdPrincipalPointY[i][j] = code;
1760          sei_read_code( pDecodedMessageOutputStream, sei.getManGvdPrincipalPointYLen(i,j), code, "man_gvd_principal_point_y" ); sei.m_manGvdPrincipalPointY[i][j] = code;
1761#if DEBUG_NH_3D_SEI
1762          printf("manLEN_gvd_focal_length_x     : sei.getManGvdFocalLengthXLen(%d,%d): %u\n", i, j, sei.getManGvdFocalLengthXLen(i,j));
1763          printf("manLEN_gvd_focal_length_y     : sei.getManGvdFocalLengthYLen(%d,%d): %u\n", i, j, sei.getManGvdFocalLengthYLen(i,j));
1764          printf("manLEN_gvd_principal_point_x  : sei.getManGvdPrincipalPointXLen(%d,%d): %u\n", i, j, sei.getManGvdPrincipalPointXLen(i,j));
1765          printf("manLEN_gvd_principal_point_x  : sei.getManGvdPrincipalPointYLen(%d,%d): %u\n", i, j, sei.getManGvdPrincipalPointYLen(i,j));
1766#endif
1767        }
1768        if( sei.m_rotationGvdFlag )
1769        {
1770          sei_read_flag( pDecodedMessageOutputStream, code, "sign_gvd_r00" ); sei.m_signGvdR00[i][j] = (code == 1);
1771          sei_read_code( pDecodedMessageOutputStream, 6, code, "exp_gvd_r00" ); sei.m_expGvdR00[i][j] = code;
1772          sei_read_code( pDecodedMessageOutputStream, sei.m_precGvdRotationParam, code, "man_gvd_r00" ); sei.m_manGvdR00[i][j] = code;
1773          sei_read_flag( pDecodedMessageOutputStream, code, "sign_gvd_r01" ); sei.m_signGvdR01[i][j] = (code == 1);
1774          sei_read_code( pDecodedMessageOutputStream, 6, code, "exp_gvd_r01" ); sei.m_expGvdR01[i][j] = code;
1775          sei_read_code( pDecodedMessageOutputStream, sei.m_precGvdRotationParam, code, "man_gvd_r01" ); sei.m_manGvdR01[i][j] = code;
1776          sei_read_flag( pDecodedMessageOutputStream, code, "sign_gvd_r02" ); sei.m_signGvdR02[i][j] = (code == 1);
1777          sei_read_code( pDecodedMessageOutputStream, 6, code, "exp_gvd_r02" ); sei.m_expGvdR02[i][j] = code;
1778          sei_read_code( pDecodedMessageOutputStream, sei.m_precGvdRotationParam, code, "man_gvd_r02" ); sei.m_manGvdR02[i][j] = code;
1779          sei_read_flag( pDecodedMessageOutputStream, code, "sign_gvd_r10" ); sei.m_signGvdR10[i][j] = (code == 1);
1780          sei_read_code( pDecodedMessageOutputStream, 6, code, "exp_gvd_r10" ); sei.m_expGvdR10[i][j] = code;
1781          sei_read_code( pDecodedMessageOutputStream, sei.m_precGvdRotationParam, code, "man_gvd_r10" ); sei.m_manGvdR10[i][j] = code;
1782          sei_read_flag( pDecodedMessageOutputStream, code, "sign_gvd_r11" ); sei.m_signGvdR11[i][j] = (code == 1);
1783          sei_read_code( pDecodedMessageOutputStream, 6, code, "exp_gvd_r11" ); sei.m_expGvdR11[i][j] = code;
1784          sei_read_code( pDecodedMessageOutputStream, sei.m_precGvdRotationParam, code, "man_gvd_r11" ); sei.m_manGvdR11[i][j] = code;
1785          sei_read_flag( pDecodedMessageOutputStream, code, "sign_gvd_r12" ); sei.m_signGvdR12[i][j] = (code == 1);
1786          sei_read_code( pDecodedMessageOutputStream, 6, code, "exp_gvd_r12" ); sei.m_expGvdR12[i][j] = code;
1787          sei_read_code( pDecodedMessageOutputStream, sei.m_precGvdRotationParam, code, "man_gvd_r12" ); sei.m_manGvdR12[i][j] = code;
1788          sei_read_flag( pDecodedMessageOutputStream, code, "sign_gvd_r20" ); sei.m_signGvdR20[i][j] = (code == 1);
1789          sei_read_code( pDecodedMessageOutputStream, 6, code, "exp_gvd_r20" ); sei.m_expGvdR20[i][j] = code;
1790          sei_read_code( pDecodedMessageOutputStream, sei.m_precGvdRotationParam, code, "man_gvd_r20" ); sei.m_manGvdR20[i][j] = code;
1791          sei_read_flag( pDecodedMessageOutputStream, code, "sign_gvd_r21" ); sei.m_signGvdR21[i][j] = (code == 1);
1792          sei_read_code( pDecodedMessageOutputStream, 6, code, "exp_gvd_r21" ); sei.m_expGvdR21[i][j] = code;
1793          sei_read_code( pDecodedMessageOutputStream, sei.m_precGvdRotationParam, code, "man_gvd_r21" ); sei.m_manGvdR21[i][j] = code;
1794          sei_read_flag( pDecodedMessageOutputStream, code, "sign_gvd_r22" ); sei.m_signGvdR22[i][j] = (code == 1);
1795          sei_read_code( pDecodedMessageOutputStream, 6, code, "exp_gvd_r22" ); sei.m_expGvdR22[i][j] = code;
1796          sei_read_code( pDecodedMessageOutputStream, sei.m_precGvdRotationParam, code, "man_gvd_r22" ); sei.m_manGvdR22[i][j] = code;
1797          //sei_read_code( pDecodedMessageOutputStream, sei.getManGvdRLen(i,j,k), code, "man_gvd_r" ); sei.m_manGvdR[i][j] = code;
1798        }
1799        if( sei.m_translationGvdFlag )
1800        {
1801          sei_read_flag( pDecodedMessageOutputStream, code, "sign_gvd_t_x" ); sei.m_signGvdTX[i][j] = (code == 1);
1802          sei_read_code( pDecodedMessageOutputStream, 6, code, "exp_gvd_t_x" ); sei.m_expGvdTX[i][j] = code;
1803          //sei_read_code( pDecodedMessageOutputStream, sei.m_precGvdTranslationParam, code, "man_gvd_t_x" ); sei.m_manGvdTX[i][j] = code;
1804          sei_read_code( pDecodedMessageOutputStream, sei.getManGvdTXLen(i,j), code, "man_gvd_t_x" ); sei.m_manGvdTX[i][j] = code;
1805#if DEBUG_NH_3D_SEI
1806          printf("manLEN_gvd_t_x                : sei.getManGvdTXLen(%d,%d): %u\n", i, j, sei.getManGvdTXLen(i,j));
1807#endif
1808        }
1809      }
1810    }
1811
1812    if( sei.m_depthType  ==  1 )
1813    {
1814      sei_read_svlc( pDecodedMessageOutputStream, scode, "min_offset_x_int" ); sei.m_minOffsetXInt = scode;
1815      sei_read_code( pDecodedMessageOutputStream, 8, code, "min_offset_x_frac" ); sei.m_minOffsetXFrac = code;
1816      sei_read_svlc( pDecodedMessageOutputStream, scode, "max_offset_x_int" ); sei.m_maxOffsetXInt = scode;
1817      sei_read_code( pDecodedMessageOutputStream, 8, code, "max_offset_x_frac" ); sei.m_maxOffsetXFrac = code;
1818      sei_read_flag( pDecodedMessageOutputStream, code, "offset_y_present_flag" ); sei.m_offsetYPresentFlag = (code == 1);
1819      if( sei.m_offsetYPresentFlag )
1820      {
1821        sei_read_svlc( pDecodedMessageOutputStream, scode, "min_offset_y_int" ); sei.m_minOffsetYInt = scode;
1822        sei_read_code( pDecodedMessageOutputStream, 8, code, "min_offset_y_frac" ); sei.m_minOffsetYFrac = code;
1823        sei_read_svlc( pDecodedMessageOutputStream, scode, "max_offset_y_int" ); sei.m_maxOffsetYInt = scode;
1824        sei_read_code( pDecodedMessageOutputStream, 8, code, "max_offset_y_frac" ); sei.m_maxOffsetYFrac = code;
1825      }
1826      sei_read_flag( pDecodedMessageOutputStream, code, "warp_map_size_present_flag" ); sei.m_warpMapSizePresentFlag = (code == 1);
1827      if( sei.m_warpMapSizePresentFlag )
1828      {
1829        sei_read_uvlc( pDecodedMessageOutputStream, code, "warp_map_width_minus2" ); sei.m_warpMapWidthMinus2 = code;
1830        sei_read_uvlc( pDecodedMessageOutputStream, code, "warp_map_height_minus2" ); sei.m_warpMapHeightMinus2 = code;
1831      }
1832    }
1833  }
1834};
1835#endif
1836
1837//! \}
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