240 lines
8.0 KiB
Markdown
240 lines
8.0 KiB
Markdown
#Design overview#
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Major modules are described below:
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Demuxer is responsible for extracting elementary stream samples from a
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multimedia file, e.g. an ISO BMFF file. The demuxed streams can be fed into a
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muxer to generate multimedia files. An optional KeySource can be provided to
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Demuxer to decrypt CENC and WVM source content.
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Demuxer reads from source through the File interface. A concrete LocalFile
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class is already implemented. The users may also implement their own File class
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if they want to read/write using a different kinds of protocol, e.g. network
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storage, http etc.
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Muxer is responsible for taking elementary stream samples and producing media
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segments. An optional KeySource can be provided to Muxer to generate encrypted
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outputs. Muxer writes to output using the same File interface as Demuxer.
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Demuxer and Muxer are connected using MediaStream. MediaStream wraps the
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elementary streams and is responsible for the interaction between Demuxer and
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Muxer. A demuxer can transmits multiple MediaStreams; similarly, A muxer is
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able to accept and mux multiple MediaStreams, not necessarily from the same
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Demuxer.
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MpdBuilder is responsible for the creation of Media Presentation Description as
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specified in ISO/IEC 23009-1 DASH MPD spec.
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API document is available at https://google.github.io/shaka-packager/docs.
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##Creating Demuxer##
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```C++
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// Create a demuxer from |input_media_file|.
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// |input_media_file| could be any supported files, e.g. if the users have
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// implemented a network file interface with prefix “network”,
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// |input_media_file| with value “network://xxxx” would open a network
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// file automatically.
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Demuxer demuxer(input_media_file);
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```
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##Creating KeySource for source content decryption##
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```C++
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// A KeySource is required if the source content is encrypted, since the media
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// must be decrytped prior to further processing.
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```
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###WidevineKeySource###
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```C++
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// Users may use WidevineKeySource to fetch keys from Widevine
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// common encryption server.
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scoped_ptr<WidevineKeySource> widevine_decryption_key_source(
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new WidevineKeySource(key_server_url));
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// A request signer might be required to sign the common encryption request.
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scoped_ptr<RequestSigner> signer(
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RsaRequestSigner::CreateSigner(signer_name, pkcs1_rsa_private_key));
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if (!signer) { … }
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widevine_decryption_key_source->set_signer(signer.Pass());
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// Set encryption key source to demuxer.
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muxer->SetKeySource(widevine_decryption_key_source.Pass());
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```
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##Creating MpdBuilder##
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```C++
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// |mpd_type| indicates whether the mpd should be for VOD or live profile.
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// |mpd_options| contains a set of configurable options. See below for details.
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MpdBuilder mpd_builder(mpd_type, mpd_options);
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```
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Mpd Options
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```C++
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// Specifies, in seconds, a common duration used in the definition of the MPD
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// Representation data rate.
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mpd_options.min_buffer_time = 5.0;
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// The below options are for live profile only.
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// Indicates to the player how often to refresh the media presentations, in
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// seconds.
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mpd_options.minimum_update_period = 5.0;
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// Guranteed duration of the time shifting buffer, in seconds.
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mpd_options.time_shift_buffer_depth = 1800.0;
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// Specifies a delay, in seconds, to be added to the media presentation time.
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mpd_options.suggested_presentation_delay = 10.0;
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```
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Using MpdBuilder Instance
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```C++
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mpd_builder.AddBaseUrl("http://foo.com/bar"); // Add a <BaseURL> element.
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AdaptationSet* video_adaptation_set = mpd_builder.AddAdaptationSet();
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// Create MediaInfo object.
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Representation* representation =
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video_adaptation_set->AddRepresentation(media_info_object);
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assert(representation); // Make sure it succeeded.
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// |representation| is owned by |video_adatptation_set|, no additional
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// operations are required to generate a valid MPD.
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std::cout << mpd_builder.ToString() << std::endl; // Print the MPD to stdout.
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```
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MpdWriter: MpdBuilder Wrapper class
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```C++
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// Get file names with MediaInfo protobuf, i.e. media_info_files (array).
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MpdWrite mpd_writer;
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for (size_t i = 0; i < n; ++i)
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mpd_writer.AddFile(media_info_files[i]);
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mpd_writer.WriteMpdToFile("output_file_name.mpd");
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```
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##Creating Muxer##
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```C++
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// See below for muxer options.
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MuxerOptions muxer_options;
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// Create a MP4Muxer with options specified by |options|.
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mp4::MP4Muxer muxer(muxer_options);
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```
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Muxer Options
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```C++
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// Generate a single segment for each media presentation. This option
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// should be set for on demand profile.
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muxer_options.single_segment = true;
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// Segment duration in seconds. If single_segment is specified, this parameter
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// sets the duration of a subsegment; otherwise, this parameter sets the
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// duration of a segment. A segment can contain one to many fragments.
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muxer_options.segment_duration = 10.0;
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// Fragment duration in seconds. Should not be larger than the segment
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// duration.
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muxer_options.fragment_duration = 2.0;
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// Force segments to begin with stream access points. Segment duration may
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// not be exactly what asked by segment_duration.
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muxer_options.segment_sap_aligned = true;
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// Force fragments to begin with stream access points. Fragment duration
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// may not be exactly what asked by segment_duration. Imply
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// segment_sap_aligned.
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muxer_options.fragment_sap_aligned = true;
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// For ISO BMFF only.
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// Set the number of subsegments in each SIDX box. If 0, a single SIDX box
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// is used per segment. If -1, no SIDX box is used. Otherwise, the Muxer
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// will pack N subsegments in the root SIDX of the segment, with
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// segment_duration/N/fragment_duration fragments per subsegment.
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muxer_options.num_subsegments_per_sidx = 1;
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// Output file name. If segment_template is not specified, the Muxer
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// generates this single output file with all segments concatenated;
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// Otherwise, it specifies the init segment name.
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muxer_options.output_file_name = …;
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// Specify output segment name pattern for generated segments. It can
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// furthermore be configured by using a subset of the SegmentTemplate
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// identifiers: $RepresentationID$, $Number$, $Bandwidth$ and $Time$.
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// Optional.
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muxer_options.segment_template = …;
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// Specify the temporary directory for intermediate files.
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muxer_options.temp_dir = …;
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// User specified bit rate for the media stream. If zero, the muxer will
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// attempt to estimate.
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muxer_options.bandwidth = 0;
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```
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##Creating KeySource for content encryption##
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```C++
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// A KeySource is optional. The stream won’t be encrypted if an
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// KeySource is not provided.
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```
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###WidevineKeySource###
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```C++
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// Users may use WidevineKeySource to fetch keys from Widevine
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// common encryption server.
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scoped_ptr<WidevineKeySource> widevine_encryption_key_source(
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new WidevineKeySource(key_server_url, signer.Pass()));
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// A request signer might be required to sign the common encryption request.
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scoped_ptr<RequestSigner> signer(
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RsaRequestSigner::CreateSigner(signer_name, pkcs1_rsa_private_key));
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if (!signer) { … }
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widevine_encryption_key_source->set_signer(signer.Pass());
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// Grab keys for the content.
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status = widevine_encryption_key_source->FetchKeys(content_id, policy));
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if (!status.ok()) { … }
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// Set encryption key source to muxer.
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// |max_sd_pixels| defines the threshold to determine whether a video track
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// should be considered as SD or HD and accordingly, whether SD key or HD key
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// should be used to encrypt the stream.
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// |clear_lead| specifies clear lead duration in seconds.
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// |crypto_period_duration| if not zero, enable key rotation with specified
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// crypto period.
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muxer->SetKeySource(
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widevine_encryption_key_source.get(), max_sd_pixels,
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clear_lead, crypto_period_duration);
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```
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##Connecting Demuxer and Muxer##
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```C++
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// Initialize the demuxer.
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status = demuxer.Initialize();
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if (!status.ok()) { … }
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// After intializing the demuxer, we can query demuxer streams
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// using demuxer.streams().
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// The function below adds the first stream into muxer, which sets up
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// the connection between Demuxer and Muxer.
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status = muxer.AddStream(demuxer.streams()[0]);
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if (!status.ok()) { … }
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```
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##Starting Remuxing##
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```C++
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// Starts remuxing process. It runs until completion or abort due to error.
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status = demuxer.Run();
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if (!status.ok()) { … }
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```
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