134 lines
4.5 KiB
C++
134 lines
4.5 KiB
C++
// Copyright 2015 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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#include "packager/media/formats/webm/single_segment_segmenter.h"
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#include "mkvmuxer/mkvmuxer.h"
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#include "packager/media/base/muxer_options.h"
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#include "packager/media/event/muxer_listener.h"
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namespace shaka {
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namespace media {
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namespace webm {
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SingleSegmentSegmenter::SingleSegmentSegmenter(const MuxerOptions& options)
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: Segmenter(options), init_end_(0), index_start_(0) {}
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SingleSegmentSegmenter::~SingleSegmentSegmenter() {}
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Status SingleSegmentSegmenter::FinalizeSegment(int64_t start_timestamp,
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int64_t duration_timestamp,
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bool is_subsegment) {
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Status status = Segmenter::FinalizeSegment(start_timestamp,
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duration_timestamp, is_subsegment);
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if (!status.ok())
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return status;
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// No-op for subsegment in single segment mode.
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if (is_subsegment)
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return Status::OK;
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CHECK(cluster());
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if (!cluster()->Finalize())
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return Status(error::FILE_FAILURE, "Error finalizing cluster.");
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if (muxer_listener()) {
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const uint64_t size = cluster()->Size();
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muxer_listener()->OnNewSegment(options().output_file_name, start_timestamp,
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duration_timestamp, size);
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}
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return Status::OK;
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}
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bool SingleSegmentSegmenter::GetInitRangeStartAndEnd(uint64_t* start,
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uint64_t* end) {
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*start = 0;
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*end = init_end_;
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return true;
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}
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bool SingleSegmentSegmenter::GetIndexRangeStartAndEnd(uint64_t* start,
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uint64_t* end) {
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*start = index_start_;
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*end = index_end_;
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return true;
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}
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std::vector<Range> SingleSegmentSegmenter::GetSegmentRanges() {
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std::vector<Range> ranges;
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if (cues()->cue_entries_size() == 0) {
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return ranges;
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}
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for (int32_t i = 0; i < cues()->cue_entries_size() - 1; ++i) {
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const mkvmuxer::CuePoint* cue_point = cues()->GetCueByIndex(i);
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Range r;
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// Cue point cluster position is relative to segment payload pos.
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r.start = segment_payload_pos() + cue_point->cluster_pos();
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r.end =
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segment_payload_pos() + cues()->GetCueByIndex(i + 1)->cluster_pos() - 1;
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ranges.push_back(r);
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}
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Range last_range;
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const mkvmuxer::CuePoint* last_cue_point =
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cues()->GetCueByIndex(cues()->cue_entries_size() - 1);
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last_range.start = segment_payload_pos() + last_cue_point->cluster_pos();
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last_range.end = last_range.start + cluster()->Size() - 1;
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ranges.push_back(last_range);
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return ranges;
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}
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Status SingleSegmentSegmenter::DoInitialize() {
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if (!writer_) {
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std::unique_ptr<MkvWriter> writer(new MkvWriter);
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Status status = writer->Open(options().output_file_name);
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if (!status.ok())
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return status;
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writer_ = std::move(writer);
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}
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Status ret = WriteSegmentHeader(0, writer_.get());
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init_end_ = writer_->Position() - 1;
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seek_head()->set_cluster_pos(init_end_ + 1 - segment_payload_pos());
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return ret;
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}
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Status SingleSegmentSegmenter::DoFinalize() {
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// Write the Cues to the end of the file.
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index_start_ = writer_->Position();
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seek_head()->set_cues_pos(index_start_ - segment_payload_pos());
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if (!cues()->Write(writer_.get()))
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return Status(error::FILE_FAILURE, "Error writing Cues data.");
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// The WebM index is at the end of the file.
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index_end_ = writer_->Position() - 1;
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writer_->Position(0);
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Status status = WriteSegmentHeader(index_end_ + 1, writer_.get());
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status.Update(writer_->Close());
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return status;
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}
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Status SingleSegmentSegmenter::NewSegment(int64_t start_timestamp,
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bool is_subsegment) {
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// No-op for subsegment in single segment mode.
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if (is_subsegment)
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return Status::OK;
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// Create a new Cue point.
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uint64_t position = writer_->Position();
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int64_t start_timecode = FromBmffTimestamp(start_timestamp);
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mkvmuxer::CuePoint* cue_point = new mkvmuxer::CuePoint;
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cue_point->set_time(start_timecode);
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cue_point->set_track(track_id());
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cue_point->set_cluster_pos(position - segment_payload_pos());
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if (!cues()->AddCue(cue_point))
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return Status(error::INTERNAL_ERROR, "Error adding CuePoint.");
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return SetCluster(start_timecode, position, writer_.get());
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}
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} // namespace webm
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} // namespace media
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} // namespace shaka
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