349 lines
11 KiB
C++
349 lines
11 KiB
C++
// Copyright 2016 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 "packager/hls/base/media_playlist.h"
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#include <algorithm>
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#include <cmath>
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#include <memory>
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#include "packager/base/logging.h"
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#include "packager/base/strings/stringprintf.h"
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#include "packager/media/file/file.h"
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#include "packager/version/version.h"
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namespace shaka {
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namespace hls {
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namespace {
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uint32_t GetTimeScale(const MediaInfo& media_info) {
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if (media_info.has_reference_time_scale())
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return media_info.reference_time_scale();
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if (media_info.has_video_info())
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return media_info.video_info().time_scale();
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if (media_info.has_audio_info())
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return media_info.audio_info().time_scale();
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return 0u;
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}
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class SegmentInfoEntry : public HlsEntry {
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public:
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SegmentInfoEntry(const std::string& file_name, double duration);
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~SegmentInfoEntry() override;
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std::string ToString() override;
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private:
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const std::string file_name_;
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const double duration_;
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DISALLOW_COPY_AND_ASSIGN(SegmentInfoEntry);
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};
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SegmentInfoEntry::SegmentInfoEntry(const std::string& file_name,
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double duration)
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: HlsEntry(HlsEntry::EntryType::kExtInf),
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file_name_(file_name),
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duration_(duration) {}
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SegmentInfoEntry::~SegmentInfoEntry() {}
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std::string SegmentInfoEntry::ToString() {
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return base::StringPrintf("#EXTINF:%.3f,\n%s\n", duration_,
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file_name_.c_str());
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}
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class EncryptionInfoEntry : public HlsEntry {
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public:
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EncryptionInfoEntry(MediaPlaylist::EncryptionMethod method,
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const std::string& url,
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const std::string& iv,
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const std::string& key_format,
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const std::string& key_format_versions);
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~EncryptionInfoEntry() override;
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std::string ToString() override;
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private:
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const MediaPlaylist::EncryptionMethod method_;
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const std::string url_;
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const std::string iv_;
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const std::string key_format_;
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const std::string key_format_versions_;
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DISALLOW_COPY_AND_ASSIGN(EncryptionInfoEntry);
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};
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EncryptionInfoEntry::EncryptionInfoEntry(MediaPlaylist::EncryptionMethod method,
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const std::string& url,
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const std::string& iv,
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const std::string& key_format,
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const std::string& key_format_versions)
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: HlsEntry(HlsEntry::EntryType::kExtKey),
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method_(method),
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url_(url),
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iv_(iv),
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key_format_(key_format),
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key_format_versions_(key_format_versions) {}
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EncryptionInfoEntry::~EncryptionInfoEntry() {}
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std::string EncryptionInfoEntry::ToString() {
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std::string method_attribute;
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if (method_ == MediaPlaylist::EncryptionMethod::kSampleAes) {
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method_attribute = "METHOD=SAMPLE-AES";
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} else if (method_ == MediaPlaylist::EncryptionMethod::kAes128) {
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method_attribute = "METHOD=AES-128";
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} else {
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DCHECK(method_ == MediaPlaylist::EncryptionMethod::kNone);
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method_attribute = "METHOD=NONE";
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}
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std::string ext_key = "#EXT-X-KEY:" + method_attribute + ",URI=\"" + url_ +
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"\"";
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if (!iv_.empty()) {
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ext_key += ",IV=" + iv_;
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}
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if (!key_format_versions_.empty()) {
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ext_key += ",KEYFORMATVERSIONS=\"" + key_format_versions_ + "\"";
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}
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if (key_format_.empty())
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return ext_key + "\n";
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return ext_key + ",KEYFORMAT=\"" + key_format_ + "\"\n";
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}
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} // namespace
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HlsEntry::HlsEntry(HlsEntry::EntryType type) : type_(type) {}
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HlsEntry::~HlsEntry() {}
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MediaPlaylist::MediaPlaylist(MediaPlaylistType type,
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const std::string& file_name,
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const std::string& name,
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const std::string& group_id)
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: file_name_(file_name), name_(name), group_id_(group_id), type_(type) {
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LOG_IF(WARNING, type != MediaPlaylistType::kVod)
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<< "Non VOD Media Playlist is not supported.";
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}
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MediaPlaylist::~MediaPlaylist() {}
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void MediaPlaylist::SetStreamTypeForTesting(
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MediaPlaylistStreamType stream_type) {
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stream_type_ = stream_type;
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}
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void MediaPlaylist::SetCodecForTesting(const std::string& codec) {
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codec_ = codec;
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}
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bool MediaPlaylist::SetMediaInfo(const MediaInfo& media_info) {
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const uint32_t time_scale = GetTimeScale(media_info);
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if (time_scale == 0) {
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LOG(ERROR) << "MediaInfo does not contain a valid timescale.";
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return false;
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}
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if (media_info.has_video_info()) {
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stream_type_ = MediaPlaylistStreamType::kPlayListVideo;
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codec_ = media_info.video_info().codec();
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} else if (media_info.has_audio_info()) {
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stream_type_ = MediaPlaylistStreamType::kPlayListAudio;
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codec_ = media_info.audio_info().codec();
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} else {
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NOTIMPLEMENTED();
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return false;
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}
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time_scale_ = time_scale;
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media_info_ = media_info;
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return true;
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}
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void MediaPlaylist::AddSegment(const std::string& file_name,
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uint64_t duration,
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uint64_t size) {
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if (time_scale_ == 0) {
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LOG(WARNING) << "Timescale is not set and the duration for " << duration
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<< " cannot be calculated. The output will be wrong.";
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entries_.emplace_back(new SegmentInfoEntry(file_name, 0.0));
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return;
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}
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const double segment_duration_seconds =
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static_cast<double>(duration) / time_scale_;
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if (segment_duration_seconds > longest_segment_duration_)
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longest_segment_duration_ = segment_duration_seconds;
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const int kBitsInByte = 8;
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const uint64_t bitrate = kBitsInByte * size / segment_duration_seconds;
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max_bitrate_ = std::max(max_bitrate_, bitrate);
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entries_.emplace_back(
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new SegmentInfoEntry(file_name, segment_duration_seconds));
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}
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// TODO(rkuroiwa): This works for single key format but won't work for multiple
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// key formats (e.g. different DRM systems).
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// Candidate algorithm:
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// Assume entries_ is std::list (static_assert below).
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// Create a map from key_format to EncryptionInfoEntry (iterator actually).
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// Iterate over entries_ until it hits SegmentInfoEntry. While iterating over
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// entries_ if there are multiple EncryptionInfoEntry with the same key_format,
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// erase the older ones using the iterator.
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// Note that when erasing std::list iterators, only the deleted iterators are
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// invalidated.
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void MediaPlaylist::RemoveOldestSegment() {
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static_assert(std::is_same<decltype(entries_),
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std::list<std::unique_ptr<HlsEntry>>>::value,
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"This algorithm assumes std::list.");
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if (entries_.empty())
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return;
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if (entries_.front()->type() == HlsEntry::EntryType::kExtInf) {
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entries_.pop_front();
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return;
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}
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// Make sure that the first EXT-X-KEY entry doesn't get popped out until the
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// next EXT-X-KEY entry because the first EXT-X-KEY applies to all the
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// segments following until the next one.
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if (entries_.size() == 1) {
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// More segments might get added, leave the entry in.
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return;
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}
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if (entries_.size() == 2) {
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auto entries_itr = entries_.begin();
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++entries_itr;
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if ((*entries_itr)->type() == HlsEntry::EntryType::kExtKey) {
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entries_.pop_front();
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} else {
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entries_.erase(entries_itr);
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}
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return;
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}
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auto entries_itr = entries_.begin();
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++entries_itr;
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if ((*entries_itr)->type() == HlsEntry::EntryType::kExtInf) {
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DCHECK((*entries_itr)->type() == HlsEntry::EntryType::kExtInf);
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entries_.erase(entries_itr);
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return;
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}
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++entries_itr;
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// This assumes that there is a segment between 2 EXT-X-KEY entries.
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// Which should be the case due to logic in AddEncryptionInfo().
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DCHECK((*entries_itr)->type() == HlsEntry::EntryType::kExtInf);
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entries_.erase(entries_itr);
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entries_.pop_front();
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}
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void MediaPlaylist::AddEncryptionInfo(MediaPlaylist::EncryptionMethod method,
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const std::string& url,
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const std::string& iv,
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const std::string& key_format,
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const std::string& key_format_versions) {
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if (!entries_.empty()) {
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// No reason to have two consecutive EXT-X-KEY entries. Remove the previous
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// one.
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if (entries_.back()->type() == HlsEntry::EntryType::kExtKey)
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entries_.pop_back();
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}
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entries_.emplace_back(new EncryptionInfoEntry(method, url, iv, key_format,
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key_format_versions));
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}
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bool MediaPlaylist::WriteToFile(media::File* file) {
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if (!target_duration_set_) {
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SetTargetDuration(ceil(GetLongestSegmentDuration()));
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}
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const std::string version = GetPackagerVersion();
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std::string version_line;
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if (!version.empty()) {
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version_line =
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base::StringPrintf("## Generated with %s version %s\n",
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GetPackagerProjectUrl().c_str(), version.c_str());
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}
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// KEYFORMAT and KEYFORMATVERSIONS on EXT-X-KEY requires 5 or above.
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std::string header = base::StringPrintf(
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"#EXTM3U\n"
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"#EXT-X-VERSION:5\n"
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"%s"
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"#EXT-X-TARGETDURATION:%d\n",
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version_line.c_str(), target_duration_);
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if (type_ == MediaPlaylistType::kVod) {
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header += "#EXT-X-PLAYLIST-TYPE:VOD\n";
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}
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std::string body;
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if (!entries_.empty()) {
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const bool first_is_ext_key =
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entries_.front()->type() == HlsEntry::EntryType::kExtKey;
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bool inserted_discontinuity_tag = false;
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for (const auto& entry : entries_) {
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if (!first_is_ext_key && !inserted_discontinuity_tag &&
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entry->type() == HlsEntry::EntryType::kExtKey) {
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body.append("#EXT-X-DISCONTINUITY\n");
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inserted_discontinuity_tag = true;
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}
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body.append(entry->ToString());
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}
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}
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std::string content = header + body;
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if (type_ == MediaPlaylistType::kVod) {
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content += "#EXT-X-ENDLIST\n";
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}
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int64_t bytes_written = file->Write(content.data(), content.size());
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if (bytes_written < 0) {
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LOG(ERROR) << "Error while writing playlist to file.";
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return false;
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}
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// TODO(rkuroiwa): There are at least 2 while (remaining_bytes > 0) logic in
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// this library to handle partial writes by File. Dedup them and use it here
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// has well.
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if (static_cast<size_t>(bytes_written) < content.size()) {
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LOG(ERROR) << "Failed to write the whole playlist. Wrote " << bytes_written
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<< " but the playlist is " << content.size() << " bytes.";
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return false;
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}
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return true;
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}
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uint64_t MediaPlaylist::Bitrate() const {
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if (media_info_.has_bandwidth())
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return media_info_.bandwidth();
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return max_bitrate_;
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}
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double MediaPlaylist::GetLongestSegmentDuration() const {
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return longest_segment_duration_;
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}
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bool MediaPlaylist::SetTargetDuration(uint32_t target_duration) {
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if (target_duration_set_) {
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LOG(WARNING) << "Cannot set target duration to " << target_duration
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<< ". Target duration already set to " << target_duration_;
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return false;
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}
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target_duration_ = target_duration;
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target_duration_set_ = true;
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return true;
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}
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} // namespace hls
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} // namespace shaka
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