177 lines
6.5 KiB
C++
177 lines
6.5 KiB
C++
// Copyright 2014 Google Inc. 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 "media/formats/mp4/single_segment_segmenter.h"
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#include "base/file_util.h"
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#include "media/base/buffer_writer.h"
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#include "media/base/media_stream.h"
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#include "media/base/muxer_options.h"
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#include "media/file/file.h"
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#include "media/formats/mp4/box_definitions.h"
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namespace edash_packager {
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namespace media {
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namespace mp4 {
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SingleSegmentSegmenter::SingleSegmentSegmenter(const MuxerOptions& options,
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scoped_ptr<FileType> ftyp,
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scoped_ptr<Movie> moov)
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: Segmenter(options, ftyp.Pass(), moov.Pass()) {}
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SingleSegmentSegmenter::~SingleSegmentSegmenter() {}
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bool SingleSegmentSegmenter::GetInitRange(size_t* offset, size_t* size) {
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// In Finalize, ftyp and moov gets written first so offset must be 0.
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*offset = 0;
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*size = ftyp()->ComputeSize() + moov()->ComputeSize();
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return true;
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}
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bool SingleSegmentSegmenter::GetIndexRange(size_t* offset, size_t* size) {
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// Index range is right after init range so the offset must be the size of
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// ftyp and moov.
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*offset = ftyp()->ComputeSize() + moov()->ComputeSize();
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*size = vod_sidx_->ComputeSize();
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return true;
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}
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Status SingleSegmentSegmenter::DoInitialize() {
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base::FilePath temp_file_path;
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if (options().temp_dir.empty() ?
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!base::CreateTemporaryFile(&temp_file_path) :
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!base::CreateTemporaryFileInDir(base::FilePath(options().temp_dir),
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&temp_file_path)) {
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return Status(error::FILE_FAILURE, "Unable to create temporary file.");
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}
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temp_file_name_ = temp_file_path.value();
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temp_file_.reset(File::Open(temp_file_name_.c_str(), "w"));
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return temp_file_
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? Status::OK
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: Status(error::FILE_FAILURE,
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"Cannot open file to write " + temp_file_name_);
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}
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Status SingleSegmentSegmenter::DoFinalize() {
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DCHECK(temp_file_);
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DCHECK(ftyp());
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DCHECK(moov());
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DCHECK(vod_sidx_);
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// Close the temp file to prepare for reading later.
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if (!temp_file_.release()->Close()) {
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return Status(error::FILE_FAILURE,
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"Cannot close the temp file " + temp_file_name_);
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}
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scoped_ptr<File, FileCloser> file(
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File::Open(options().output_file_name.c_str(), "w"));
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if (file == NULL) {
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return Status(error::FILE_FAILURE,
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"Cannot open file to write " + options().output_file_name);
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}
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// Write ftyp, moov and sidx to output file.
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scoped_ptr<BufferWriter> buffer(new BufferWriter());
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ftyp()->Write(buffer.get());
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moov()->Write(buffer.get());
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vod_sidx_->Write(buffer.get());
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Status status = buffer->WriteToFile(file.get());
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if (!status.ok())
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return status;
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// Load the temp file and write to output file.
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scoped_ptr<File, FileCloser> temp_file(
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File::Open(temp_file_name_.c_str(), "r"));
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if (temp_file == NULL) {
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return Status(error::FILE_FAILURE,
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"Cannot open file to read " + temp_file_name_);
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}
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const int kBufSize = 0x40000; // 256KB.
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scoped_ptr<uint8_t[]> buf(new uint8_t[kBufSize]);
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while (!temp_file->Eof()) {
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int64_t size = temp_file->Read(buf.get(), kBufSize);
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if (size <= 0) {
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return Status(error::FILE_FAILURE,
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"Failed to read file " + temp_file_name_);
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}
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int64_t size_written = file->Write(buf.get(), size);
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if (size_written != size) {
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return Status(error::FILE_FAILURE,
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"Failed to write file " + options().output_file_name);
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}
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}
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return Status::OK;
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}
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Status SingleSegmentSegmenter::DoFinalizeSegment() {
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DCHECK(sidx());
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DCHECK(fragment_buffer());
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// sidx() contains pre-generated segment references with one reference per
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// fragment. In VOD, this segment is converted into a subsegment, i.e. one
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// reference, which contains all the fragments in sidx().
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std::vector<SegmentReference>& refs = sidx()->references;
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SegmentReference& vod_ref = refs[0];
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uint64_t first_sap_time =
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refs[0].sap_delta_time + refs[0].earliest_presentation_time;
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for (uint32_t i = 1; i < sidx()->references.size(); ++i) {
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vod_ref.referenced_size += refs[i].referenced_size;
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// NOTE: We calculate subsegment duration based on the total duration of
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// this subsegment instead of subtracting earliest_presentation_time as
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// indicated in the spec.
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vod_ref.subsegment_duration += refs[i].subsegment_duration;
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vod_ref.earliest_presentation_time = std::min(
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vod_ref.earliest_presentation_time, refs[i].earliest_presentation_time);
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if (vod_ref.sap_type == SegmentReference::TypeUnknown &&
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refs[i].sap_type != SegmentReference::TypeUnknown) {
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vod_ref.sap_type = refs[i].sap_type;
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first_sap_time =
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refs[i].sap_delta_time + refs[i].earliest_presentation_time;
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}
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}
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// Calculate sap delta time w.r.t. earliest_presentation_time.
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if (vod_ref.sap_type != SegmentReference::TypeUnknown) {
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vod_ref.sap_delta_time =
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first_sap_time - vod_ref.earliest_presentation_time;
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}
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// Create segment if it does not exist yet.
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if (vod_sidx_ == NULL) {
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vod_sidx_.reset(new SegmentIndex());
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vod_sidx_->reference_id = sidx()->reference_id;
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vod_sidx_->timescale = sidx()->timescale;
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if (vod_ref.earliest_presentation_time > 0) {
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const double starting_time_in_seconds =
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static_cast<double>(vod_ref.earliest_presentation_time) /
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GetReferenceTimeScale();
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// Give a warning if it is significant.
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if (starting_time_in_seconds > 0.5) {
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// Note that DASH IF player requires presentationTimeOffset to be set in
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// Segment{Base,List,Template} if there is non-zero starting time. Since
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// current Chromium's MSE implementation uses DTS, the player expects
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// DTS to be used.
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LOG(WARNING) << "Warning! Non-zero starting time (in seconds): "
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<< starting_time_in_seconds
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<< ". Manual adjustment of presentationTimeOffset in "
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"mpd might be necessary.";
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}
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}
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// Force earliest_presentation_time to start from 0 for VOD.
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vod_sidx_->earliest_presentation_time = 0;
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}
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vod_sidx_->references.push_back(vod_ref);
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// Append fragment buffer to temp file.
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return fragment_buffer()->WriteToFile(temp_file_.get());
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}
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} // namespace mp4
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} // namespace media
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} // namespace edash_packager
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