164 lines
5.7 KiB
C++
164 lines
5.7 KiB
C++
// Copyright 2014 Google LLC. All rights reserved.
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//
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// Use of this source code is governed by a BSD-style
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// license that can be found in the LICENSE file or at
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// https://developers.google.com/open-source/licenses/bsd
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#ifndef PACKAGER_MEDIA_FORMATS_MP4_SEGMENTER_H_
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#define PACKAGER_MEDIA_FORMATS_MP4_SEGMENTER_H_
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#include <map>
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#include <memory>
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#include <optional>
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#include <vector>
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#include <packager/macros/classes.h>
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#include <packager/media/base/fourccs.h>
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#include <packager/media/base/range.h>
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#include <packager/media/formats/mp4/box_definitions.h>
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#include <packager/status.h>
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namespace shaka {
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namespace media {
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struct EncryptionConfig;
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struct MuxerOptions;
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struct SegmentInfo;
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class BufferWriter;
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class MediaSample;
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class MuxerListener;
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class ProgressListener;
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class StreamInfo;
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namespace mp4 {
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class Fragmenter;
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struct KeyFrameInfo;
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/// This class defines the Segmenter which is responsible for organizing
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/// fragments into segments/subsegments and package them into a MP4 file.
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/// Inherited by MultiSegmentSegmenter and SingleSegmentSegmenter.
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/// SingleSegmentSegmenter defines the Segmenter for DASH Video-On-Demand with
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/// a single segment for each media presentation while MultiSegmentSegmenter
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/// handles all other cases including DASH live profile.
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class Segmenter {
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public:
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Segmenter(const MuxerOptions& options,
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std::unique_ptr<FileType> ftyp,
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std::unique_ptr<Movie> moov);
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virtual ~Segmenter();
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/// Initialize the segmenter.
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/// Calling other public methods of this class without this method returning
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/// Status::OK results in an undefined behavior.
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/// @param streams contains the vector of StreamInfos for initialization.
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/// @param muxer_listener receives muxer events. Can be NULL.
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/// @param progress_listener receives progress updates. Can be NULL.
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/// @return OK on success, an error status otherwise.
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Status Initialize(
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const std::vector<std::shared_ptr<const StreamInfo>>& streams,
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MuxerListener* muxer_listener,
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ProgressListener* progress_listener);
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/// Finalize the segmenter.
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/// @return OK on success, an error status otherwise.
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Status Finalize();
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/// Add sample to the indicated stream.
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/// @param stream_id is the zero-based stream index.
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/// @param sample points to the sample to be added.
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/// @return OK on success, an error status otherwise.
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Status AddSample(size_t stream_id, const MediaSample& sample);
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/// Finalize the segment / subsegment.
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/// @param stream_id is the zero-based stream index.
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/// @param is_subsegment indicates if it is a subsegment (fragment).
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/// @return OK on success, an error status otherwise.
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Status FinalizeSegment(size_t stream_id, const SegmentInfo& segment_info);
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// TODO(rkuroiwa): Change these Get*Range() methods to return
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// std::optional<Range> as well.
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/// @return true if there is an initialization range, while setting @a offset
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/// and @a size; or false if initialization range does not apply.
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virtual bool GetInitRange(size_t* offset, size_t* size) = 0;
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/// @return true if there is an index byte range, while setting @a offset
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/// and @a size; or false if index byte range does not apply.
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virtual bool GetIndexRange(size_t* offset, size_t* size) = 0;
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// Returns an empty vector if there are no specific ranges for the segments,
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// e.g. the media is in multiple files.
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// Otherwise, a vector of ranges for the media segments are returned.
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virtual std::vector<Range> GetSegmentRanges() = 0;
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int32_t GetReferenceTimeScale() const;
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/// @return The total length, in seconds, of segmented media files.
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double GetDuration() const;
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/// @return The sample duration in the timescale of the media.
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/// Returns 0 if no samples are added yet.
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int64_t sample_duration() const {
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return sample_durations_[num_samples_ < 2 ? 0 : 1];
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}
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protected:
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/// Update segmentation progress using ProgressListener.
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void UpdateProgress(uint64_t progress);
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/// Set progress to 100%.
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void SetComplete();
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const MuxerOptions& options() const { return options_; }
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FileType* ftyp() { return ftyp_.get(); }
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Movie* moov() { return moov_.get(); }
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BufferWriter* fragment_buffer() { return fragment_buffer_.get(); }
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SegmentIndex* sidx() { return sidx_.get(); }
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MuxerListener* muxer_listener() { return muxer_listener_; }
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uint64_t progress_target() { return progress_target_; }
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const std::vector<KeyFrameInfo>& key_frame_infos() const {
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return key_frame_infos_;
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}
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void set_progress_target(uint64_t progress_target) {
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progress_target_ = progress_target;
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}
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private:
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virtual Status DoInitialize() = 0;
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virtual Status DoFinalize() = 0;
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virtual Status DoFinalizeSegment(int64_t segment_number) = 0;
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virtual Status DoFinalizeChunk(int64_t segment_number) { return Status::OK; }
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uint32_t GetReferenceStreamId();
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void FinalizeFragmentForKeyRotation(
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size_t stream_id,
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bool fragment_encrypted,
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const EncryptionConfig& encryption_config);
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const MuxerOptions& options_;
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std::unique_ptr<FileType> ftyp_;
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std::unique_ptr<Movie> moov_;
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std::unique_ptr<MovieFragment> moof_;
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std::unique_ptr<BufferWriter> fragment_buffer_;
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std::unique_ptr<SegmentIndex> sidx_;
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std::vector<std::unique_ptr<Fragmenter>> fragmenters_;
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MuxerListener* muxer_listener_ = nullptr;
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ProgressListener* progress_listener_ = nullptr;
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uint64_t progress_target_ = 0u;
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uint64_t accumulated_progress_ = 0u;
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int64_t sample_durations_[2] = {0, 0};
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size_t num_samples_ = 0;
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std::vector<uint64_t> stream_durations_;
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std::vector<KeyFrameInfo> key_frame_infos_;
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DISALLOW_COPY_AND_ASSIGN(Segmenter);
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};
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} // namespace mp4
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} // namespace media
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} // namespace shaka
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#endif // PACKAGER_MEDIA_FORMATS_MP4_SEGMENTER_H_
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