cbe5c40d12
Wrapping mkvmuxer and mkvparser in the libwebm namespace is no longer necessary now that the tree reorganization is complete. Put mkvmuxer and mkvparser namespaces back in the global namespace to avoid unnecessary churn in downstream code. Change-Id: I13a4fe0143d20bb2bb6038078c68636ff2af0c29
442 lines
14 KiB
C++
442 lines
14 KiB
C++
// Copyright (c) 2010 The WebM project authors. All Rights Reserved.
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//
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// Use of this source code is governed by a BSD-style license
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// that can be found in the LICENSE file in the root of the source
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// tree. An additional intellectual property rights grant can be found
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// in the file PATENTS. All contributing project authors may
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// be found in the AUTHORS file in the root of the source tree.
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//
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// This sample application demonstrates how to use the Matroska parser
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// library, which allows clients to handle a Matroska format file.
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#include <cstdio>
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#include <cstdlib>
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#include <memory>
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#include <new>
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#include "mkvparser/mkvparser.h"
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#include "mkvparser/mkvreader.h"
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#ifdef _MSC_VER
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// Disable MSVC warnings that suggest making code non-portable.
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#pragma warning(disable : 4996)
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#endif
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namespace {
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const wchar_t* utf8towcs(const char* str) {
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if (str == NULL)
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return NULL;
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// TODO: this probably requires that the locale be
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// configured somehow:
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const size_t size = mbstowcs(NULL, str, 0);
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if (size == 0 || size == static_cast<size_t>(-1))
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return NULL;
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wchar_t* const val = new (std::nothrow) wchar_t[size + 1];
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if (val == NULL)
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return NULL;
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mbstowcs(val, str, size);
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val[size] = L'\0';
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return val;
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}
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bool InputHasCues(const mkvparser::Segment* const segment) {
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const mkvparser::Cues* const cues = segment->GetCues();
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if (cues == NULL)
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return false;
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while (!cues->DoneParsing())
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cues->LoadCuePoint();
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const mkvparser::CuePoint* const cue_point = cues->GetFirst();
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if (cue_point == NULL)
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return false;
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return true;
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}
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bool MasteringMetadataValuePresent(double value) {
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return value != mkvparser::MasteringMetadata::kValueNotPresent;
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}
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bool ColourValuePresent(long long value) {
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return value != mkvparser::Colour::kValueNotPresent;
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}
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} // namespace
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int main(int argc, char* argv[]) {
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if (argc == 1) {
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printf("\t\t\tMkv Parser Sample Application\n");
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printf("\t\t\tUsage: \n");
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printf("\t\t\t ./sample [input file] \n");
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printf("\t\t\t ./sample sample.mkv \n");
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return -1;
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}
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mkvparser::MkvReader reader;
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if (reader.Open(argv[1])) {
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printf("\n Filename is invalid or error while opening.\n");
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return -1;
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}
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int maj, min, build, rev;
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mkvparser::GetVersion(maj, min, build, rev);
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printf("\t\t libmkv verison: %d.%d.%d.%d\n", maj, min, build, rev);
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long long pos = 0;
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mkvparser::EBMLHeader ebmlHeader;
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long long ret = ebmlHeader.Parse(&reader, pos);
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if (ret < 0) {
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printf("\n EBMLHeader::Parse() failed.");
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return -1;
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}
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printf("\t\t\t EBML Header\n");
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printf("\t\tEBML Version\t\t: %lld\n", ebmlHeader.m_version);
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printf("\t\tEBML MaxIDLength\t: %lld\n", ebmlHeader.m_maxIdLength);
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printf("\t\tEBML MaxSizeLength\t: %lld\n", ebmlHeader.m_maxSizeLength);
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printf("\t\tDoc Type\t\t: %s\n", ebmlHeader.m_docType);
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printf("\t\tPos\t\t\t: %lld\n", pos);
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typedef mkvparser::Segment seg_t;
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seg_t* pSegment_;
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ret = seg_t::CreateInstance(&reader, pos, pSegment_);
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if (ret) {
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printf("\n Segment::CreateInstance() failed.");
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return -1;
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}
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const std::auto_ptr<seg_t> pSegment(pSegment_);
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ret = pSegment->Load();
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if (ret < 0) {
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printf("\n Segment::Load() failed.");
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return -1;
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}
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const mkvparser::SegmentInfo* const pSegmentInfo = pSegment->GetInfo();
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if (pSegmentInfo == NULL) {
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printf("\n Segment::GetInfo() failed.");
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return -1;
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}
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const long long timeCodeScale = pSegmentInfo->GetTimeCodeScale();
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const long long duration_ns = pSegmentInfo->GetDuration();
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const char* const pTitle_ = pSegmentInfo->GetTitleAsUTF8();
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const wchar_t* const pTitle = utf8towcs(pTitle_);
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const char* const pMuxingApp_ = pSegmentInfo->GetMuxingAppAsUTF8();
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const wchar_t* const pMuxingApp = utf8towcs(pMuxingApp_);
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const char* const pWritingApp_ = pSegmentInfo->GetWritingAppAsUTF8();
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const wchar_t* const pWritingApp = utf8towcs(pWritingApp_);
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printf("\n");
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printf("\t\t\t Segment Info\n");
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printf("\t\tTimeCodeScale\t\t: %lld \n", timeCodeScale);
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printf("\t\tDuration\t\t: %lld\n", duration_ns);
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const double duration_sec = double(duration_ns) / 1000000000;
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printf("\t\tDuration(secs)\t\t: %7.3lf\n", duration_sec);
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if (pTitle == NULL)
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printf("\t\tTrack Name\t\t: NULL\n");
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else {
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printf("\t\tTrack Name\t\t: %ls\n", pTitle);
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delete[] pTitle;
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}
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if (pMuxingApp == NULL)
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printf("\t\tMuxing App\t\t: NULL\n");
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else {
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printf("\t\tMuxing App\t\t: %ls\n", pMuxingApp);
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delete[] pMuxingApp;
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}
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if (pWritingApp == NULL)
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printf("\t\tWriting App\t\t: NULL\n");
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else {
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printf("\t\tWriting App\t\t: %ls\n", pWritingApp);
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delete[] pWritingApp;
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}
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// pos of segment payload
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printf("\t\tPosition(Segment)\t: %lld\n", pSegment->m_start);
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// size of segment payload
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printf("\t\tSize(Segment)\t\t: %lld\n", pSegment->m_size);
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const mkvparser::Tracks* pTracks = pSegment->GetTracks();
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unsigned long track_num = 0;
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const unsigned long num_tracks = pTracks->GetTracksCount();
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printf("\n\t\t\t Track Info\n");
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while (track_num != num_tracks) {
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const mkvparser::Track* const pTrack =
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pTracks->GetTrackByIndex(track_num++);
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if (pTrack == NULL)
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continue;
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const long trackType = pTrack->GetType();
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const long trackNumber = pTrack->GetNumber();
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const unsigned long long trackUid = pTrack->GetUid();
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const wchar_t* const pTrackName = utf8towcs(pTrack->GetNameAsUTF8());
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printf("\t\tTrack Type\t\t: %ld\n", trackType);
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printf("\t\tTrack Number\t\t: %ld\n", trackNumber);
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printf("\t\tTrack Uid\t\t: %lld\n", trackUid);
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if (pTrackName == NULL)
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printf("\t\tTrack Name\t\t: NULL\n");
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else {
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printf("\t\tTrack Name\t\t: %ls \n", pTrackName);
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delete[] pTrackName;
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}
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const char* const pCodecId = pTrack->GetCodecId();
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if (pCodecId == NULL)
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printf("\t\tCodec Id\t\t: NULL\n");
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else
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printf("\t\tCodec Id\t\t: %s\n", pCodecId);
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const char* const pCodecName_ = pTrack->GetCodecNameAsUTF8();
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const wchar_t* const pCodecName = utf8towcs(pCodecName_);
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if (pCodecName == NULL)
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printf("\t\tCodec Name\t\t: NULL\n");
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else {
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printf("\t\tCodec Name\t\t: %ls\n", pCodecName);
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delete[] pCodecName;
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}
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if (trackType == mkvparser::Track::kVideo) {
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const mkvparser::VideoTrack* const pVideoTrack =
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static_cast<const mkvparser::VideoTrack*>(pTrack);
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const long long width = pVideoTrack->GetWidth();
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printf("\t\tVideo Width\t\t: %lld\n", width);
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const long long height = pVideoTrack->GetHeight();
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printf("\t\tVideo Height\t\t: %lld\n", height);
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const double rate = pVideoTrack->GetFrameRate();
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printf("\t\tVideo Rate\t\t: %f\n", rate);
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const mkvparser::Colour* const colour = pVideoTrack->GetColour();
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if (colour) {
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printf("\t\tVideo Colour:\n");
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if (ColourValuePresent(colour->matrix_coefficients))
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printf("\t\t\tMatrixCoefficients: %lld\n",
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colour->matrix_coefficients);
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if (ColourValuePresent(colour->bits_per_channel))
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printf("\t\t\tBitsPerChannel: %lld\n", colour->bits_per_channel);
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if (ColourValuePresent(colour->chroma_subsampling_horz))
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printf("\t\t\tChromaSubsamplingHorz: %lld\n",
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colour->chroma_subsampling_horz);
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if (ColourValuePresent(colour->chroma_subsampling_vert))
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printf("\t\t\tChromaSubsamplingVert: %lld\n",
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colour->chroma_subsampling_vert);
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if (ColourValuePresent(colour->cb_subsampling_horz))
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printf("\t\t\tCbSubsamplingHorz: %lld\n",
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colour->cb_subsampling_horz);
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if (ColourValuePresent(colour->cb_subsampling_vert))
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printf("\t\t\tCbSubsamplingVert: %lld\n",
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colour->cb_subsampling_vert);
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if (ColourValuePresent(colour->chroma_siting_horz))
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printf("\t\t\tChromaSitingHorz: %lld\n", colour->chroma_siting_horz);
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if (ColourValuePresent(colour->chroma_siting_vert))
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printf("\t\t\tChromaSitingVert: %lld\n", colour->chroma_siting_vert);
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if (ColourValuePresent(colour->range))
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printf("\t\t\tRange: %lld\n", colour->range);
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if (ColourValuePresent(colour->transfer_characteristics))
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printf("\t\t\tTransferCharacteristics: %lld\n",
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colour->transfer_characteristics);
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if (ColourValuePresent(colour->primaries))
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printf("\t\t\tPrimaries: %lld\n", colour->primaries);
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if (ColourValuePresent(colour->max_cll))
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printf("\t\t\tMaxCLL: %lld\n", colour->max_cll);
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if (ColourValuePresent(colour->max_fall))
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printf("\t\t\tMaxFALL: %lld\n", colour->max_fall);
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if (colour->mastering_metadata) {
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const mkvparser::MasteringMetadata* const mm =
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colour->mastering_metadata;
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printf("\t\t\tMastering Metadata:\n");
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if (MasteringMetadataValuePresent(mm->luminance_max))
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printf("\t\t\t\tLuminanceMax: %f\n", mm->luminance_max);
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if (MasteringMetadataValuePresent(mm->luminance_min))
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printf("\t\t\t\tLuminanceMin: %f\n", mm->luminance_min);
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if (mm->r) {
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printf("\t\t\t\t\tPrimaryRChromaticityX: %f\n", mm->r->x);
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printf("\t\t\t\t\tPrimaryRChromaticityY: %f\n", mm->r->y);
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}
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if (mm->g) {
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printf("\t\t\t\t\tPrimaryGChromaticityX: %f\n", mm->g->x);
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printf("\t\t\t\t\tPrimaryGChromaticityY: %f\n", mm->g->y);
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}
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if (mm->b) {
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printf("\t\t\t\t\tPrimaryBChromaticityX: %f\n", mm->b->x);
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printf("\t\t\t\t\tPrimaryBChromaticityY: %f\n", mm->b->y);
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}
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if (mm->white_point) {
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printf("\t\t\t\t\tWhitePointChromaticityX: %f\n",
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mm->white_point->x);
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printf("\t\t\t\t\tWhitePointChromaticityY: %f\n",
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mm->white_point->y);
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}
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}
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}
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}
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if (trackType == mkvparser::Track::kAudio) {
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const mkvparser::AudioTrack* const pAudioTrack =
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static_cast<const mkvparser::AudioTrack*>(pTrack);
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const long long channels = pAudioTrack->GetChannels();
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printf("\t\tAudio Channels\t\t: %lld\n", channels);
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const long long bitDepth = pAudioTrack->GetBitDepth();
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printf("\t\tAudio BitDepth\t\t: %lld\n", bitDepth);
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const double sampleRate = pAudioTrack->GetSamplingRate();
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printf("\t\tAddio Sample Rate\t: %.3f\n", sampleRate);
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const long long codecDelay = pAudioTrack->GetCodecDelay();
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printf("\t\tAudio Codec Delay\t\t: %lld\n", codecDelay);
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const long long seekPreRoll = pAudioTrack->GetSeekPreRoll();
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printf("\t\tAudio Seek Pre Roll\t\t: %lld\n", seekPreRoll);
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}
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}
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printf("\n\n\t\t\t Cluster Info\n");
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const unsigned long clusterCount = pSegment->GetCount();
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printf("\t\tCluster Count\t: %ld\n\n", clusterCount);
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if (clusterCount == 0) {
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printf("\t\tSegment has no clusters.\n");
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return -1;
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}
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const mkvparser::Cluster* pCluster = pSegment->GetFirst();
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while ((pCluster != NULL) && !pCluster->EOS()) {
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const long long timeCode = pCluster->GetTimeCode();
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printf("\t\tCluster Time Code\t: %lld\n", timeCode);
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const long long time_ns = pCluster->GetTime();
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printf("\t\tCluster Time (ns)\t: %lld\n", time_ns);
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const mkvparser::BlockEntry* pBlockEntry;
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long status = pCluster->GetFirst(pBlockEntry);
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if (status < 0) // error
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{
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printf("\t\tError parsing first block of cluster\n");
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fflush(stdout);
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return -1;
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}
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while ((pBlockEntry != NULL) && !pBlockEntry->EOS()) {
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const mkvparser::Block* const pBlock = pBlockEntry->GetBlock();
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const long long trackNum = pBlock->GetTrackNumber();
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const unsigned long tn = static_cast<unsigned long>(trackNum);
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const mkvparser::Track* const pTrack = pTracks->GetTrackByNumber(tn);
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if (pTrack == NULL)
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printf("\t\t\tBlock\t\t:UNKNOWN TRACK TYPE\n");
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else {
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const long long trackType = pTrack->GetType();
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const int frameCount = pBlock->GetFrameCount();
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const long long time_ns = pBlock->GetTime(pCluster);
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const long long discard_padding = pBlock->GetDiscardPadding();
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printf("\t\t\tBlock\t\t:%s,%s,%15lld,%lld\n",
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(trackType == mkvparser::Track::kVideo) ? "V" : "A",
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pBlock->IsKey() ? "I" : "P", time_ns, discard_padding);
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for (int i = 0; i < frameCount; ++i) {
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const mkvparser::Block::Frame& theFrame = pBlock->GetFrame(i);
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const long size = theFrame.len;
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const long long offset = theFrame.pos;
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printf("\t\t\t %15ld,%15llx\n", size, offset);
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}
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}
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status = pCluster->GetNext(pBlockEntry, pBlockEntry);
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if (status < 0) {
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printf("\t\t\tError parsing next block of cluster\n");
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fflush(stdout);
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return -1;
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}
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}
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pCluster = pSegment->GetNext(pCluster);
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}
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if (InputHasCues(pSegment.get())) {
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// Walk them.
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const mkvparser::Cues* const cues = pSegment->GetCues();
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const mkvparser::CuePoint* cue = cues->GetFirst();
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int cue_point_num = 1;
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printf("\t\tCues\n");
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do {
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for (track_num = 0; track_num < num_tracks; ++track_num) {
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const mkvparser::Track* const track =
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pTracks->GetTrackByIndex(track_num);
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const mkvparser::CuePoint::TrackPosition* const track_pos =
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cue->Find(track);
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if (track_pos != NULL) {
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const char track_type =
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(track->GetType() == mkvparser::Track::kVideo) ? 'V' : 'A';
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printf(
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"\t\t\tCue Point %4d Track %3lu(%c) Time %14lld "
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"Block %4lld Pos %8llx\n",
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cue_point_num, track->GetNumber(), track_type,
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cue->GetTime(pSegment.get()), track_pos->m_block,
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track_pos->m_pos);
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}
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}
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cue = cues->GetNext(cue);
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++cue_point_num;
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} while (cue != NULL);
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}
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const mkvparser::Tags* const tags = pSegment->GetTags();
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if (tags && tags->GetTagCount() > 0) {
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printf("\t\tTags\n");
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for (int i = 0; i < tags->GetTagCount(); ++i) {
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const mkvparser::Tags::Tag* const tag = tags->GetTag(i);
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printf("\t\t\tTag\n");
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for (int j = 0; j < tag->GetSimpleTagCount(); j++) {
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const mkvparser::Tags::SimpleTag* const simple_tag =
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tag->GetSimpleTag(j);
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printf("\t\t\t\tSimple Tag \"%s\" Value \"%s\"\n",
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simple_tag->GetTagName(), simple_tag->GetTagString());
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}
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}
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}
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fflush(stdout);
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return 0;
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}
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