623 lines
20 KiB
C++
623 lines
20 KiB
C++
// Copyright 2014 The Chromium Authors. All rights reserved.
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// Use of this source code is governed by a BSD-style license that can be
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// found in the LICENSE file.
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#include "media/formats/mp2t/mp2t_stream_parser.h"
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#include "base/bind.h"
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#include "base/memory/scoped_ptr.h"
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#include "base/stl_util.h"
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#include "media/base/audio_decoder_config.h"
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#include "media/base/buffers.h"
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#include "media/base/stream_parser_buffer.h"
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#include "media/base/text_track_config.h"
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#include "media/base/video_decoder_config.h"
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#include "media/formats/mp2t/es_parser.h"
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#include "media/formats/mp2t/es_parser_adts.h"
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#include "media/formats/mp2t/es_parser_h264.h"
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#include "media/formats/mp2t/mp2t_common.h"
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#include "media/formats/mp2t/ts_packet.h"
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#include "media/formats/mp2t/ts_section.h"
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#include "media/formats/mp2t/ts_section_pat.h"
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#include "media/formats/mp2t/ts_section_pes.h"
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#include "media/formats/mp2t/ts_section_pmt.h"
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namespace media {
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namespace mp2t {
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enum StreamType {
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// ISO-13818.1 / ITU H.222 Table 2.34 "Stream type assignments"
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kStreamTypeMpeg1Audio = 0x3,
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kStreamTypeAAC = 0xf,
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kStreamTypeAVC = 0x1b,
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};
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class PidState {
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public:
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enum PidType {
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kPidPat,
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kPidPmt,
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kPidAudioPes,
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kPidVideoPes,
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};
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PidState(int pid, PidType pid_tyoe,
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scoped_ptr<TsSection> section_parser);
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// Extract the content of the TS packet and parse it.
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// Return true if successful.
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bool PushTsPacket(const TsPacket& ts_packet);
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// Flush the PID state (possibly emitting some pending frames)
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// and reset its state.
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void Flush();
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// Enable/disable the PID.
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// Disabling a PID will reset its state and ignore any further incoming TS
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// packets.
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void Enable();
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void Disable();
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bool IsEnabled() const;
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PidType pid_type() const { return pid_type_; }
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private:
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void ResetState();
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int pid_;
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PidType pid_type_;
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scoped_ptr<TsSection> section_parser_;
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bool enable_;
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int continuity_counter_;
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};
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PidState::PidState(int pid, PidType pid_type,
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scoped_ptr<TsSection> section_parser)
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: pid_(pid),
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pid_type_(pid_type),
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section_parser_(section_parser.Pass()),
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enable_(false),
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continuity_counter_(-1) {
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DCHECK(section_parser_);
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}
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bool PidState::PushTsPacket(const TsPacket& ts_packet) {
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DCHECK_EQ(ts_packet.pid(), pid_);
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// The current PID is not part of the PID filter,
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// just discard the incoming TS packet.
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if (!enable_)
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return true;
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int expected_continuity_counter = (continuity_counter_ + 1) % 16;
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if (continuity_counter_ >= 0 &&
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ts_packet.continuity_counter() != expected_continuity_counter) {
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DVLOG(1) << "TS discontinuity detected for pid: " << pid_;
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return false;
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}
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bool status = section_parser_->Parse(
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ts_packet.payload_unit_start_indicator(),
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ts_packet.payload(),
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ts_packet.payload_size());
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// At the minimum, when parsing failed, auto reset the section parser.
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// Components that use the StreamParser can take further action if needed.
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if (!status) {
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DVLOG(1) << "Parsing failed for pid = " << pid_;
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ResetState();
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}
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return status;
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}
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void PidState::Flush() {
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section_parser_->Flush();
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ResetState();
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}
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void PidState::Enable() {
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enable_ = true;
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}
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void PidState::Disable() {
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if (!enable_)
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return;
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ResetState();
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enable_ = false;
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}
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bool PidState::IsEnabled() const {
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return enable_;
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}
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void PidState::ResetState() {
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section_parser_->Reset();
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continuity_counter_ = -1;
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}
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Mp2tStreamParser::BufferQueueWithConfig::BufferQueueWithConfig(
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bool is_cfg_sent,
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const AudioDecoderConfig& audio_cfg,
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const VideoDecoderConfig& video_cfg)
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: is_config_sent(is_cfg_sent),
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audio_config(audio_cfg),
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video_config(video_cfg) {
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}
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Mp2tStreamParser::BufferQueueWithConfig::~BufferQueueWithConfig() {
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}
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Mp2tStreamParser::Mp2tStreamParser(bool sbr_in_mimetype)
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: sbr_in_mimetype_(sbr_in_mimetype),
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selected_audio_pid_(-1),
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selected_video_pid_(-1),
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is_initialized_(false),
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segment_started_(false),
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first_video_frame_in_segment_(true) {
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}
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Mp2tStreamParser::~Mp2tStreamParser() {
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STLDeleteValues(&pids_);
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}
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void Mp2tStreamParser::Init(
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const InitCB& init_cb,
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const NewConfigCB& config_cb,
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const NewBuffersCB& new_buffers_cb,
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bool /* ignore_text_tracks */ ,
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const NeedKeyCB& need_key_cb,
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const NewMediaSegmentCB& new_segment_cb,
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const base::Closure& end_of_segment_cb,
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const LogCB& log_cb) {
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DCHECK(!is_initialized_);
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DCHECK(init_cb_.is_null());
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DCHECK(!init_cb.is_null());
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DCHECK(!config_cb.is_null());
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DCHECK(!new_buffers_cb.is_null());
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DCHECK(!need_key_cb.is_null());
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DCHECK(!end_of_segment_cb.is_null());
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init_cb_ = init_cb;
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config_cb_ = config_cb;
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new_buffers_cb_ = new_buffers_cb;
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need_key_cb_ = need_key_cb;
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new_segment_cb_ = new_segment_cb;
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end_of_segment_cb_ = end_of_segment_cb;
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log_cb_ = log_cb;
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}
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void Mp2tStreamParser::Flush() {
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DVLOG(1) << "Mp2tStreamParser::Flush";
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// Flush the buffers and reset the pids.
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for (std::map<int, PidState*>::iterator it = pids_.begin();
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it != pids_.end(); ++it) {
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DVLOG(1) << "Flushing PID: " << it->first;
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PidState* pid_state = it->second;
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pid_state->Flush();
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delete pid_state;
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}
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pids_.clear();
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EmitRemainingBuffers();
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buffer_queue_chain_.clear();
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// End of the segment.
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// Note: does not need to invoke |end_of_segment_cb_| since flushing the
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// stream parser already involves the end of the current segment.
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segment_started_ = false;
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first_video_frame_in_segment_ = true;
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// Remove any bytes left in the TS buffer.
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// (i.e. any partial TS packet => less than 188 bytes).
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ts_byte_queue_.Reset();
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// Reset the selected PIDs.
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selected_audio_pid_ = -1;
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selected_video_pid_ = -1;
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}
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bool Mp2tStreamParser::Parse(const uint8* buf, int size) {
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DVLOG(1) << "Mp2tStreamParser::Parse size=" << size;
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// Add the data to the parser state.
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ts_byte_queue_.Push(buf, size);
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while (true) {
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const uint8* ts_buffer;
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int ts_buffer_size;
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ts_byte_queue_.Peek(&ts_buffer, &ts_buffer_size);
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if (ts_buffer_size < TsPacket::kPacketSize)
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break;
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// Synchronization.
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int skipped_bytes = TsPacket::Sync(ts_buffer, ts_buffer_size);
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if (skipped_bytes > 0) {
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DVLOG(1) << "Packet not aligned on a TS syncword:"
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<< " skipped_bytes=" << skipped_bytes;
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ts_byte_queue_.Pop(skipped_bytes);
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continue;
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}
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// Parse the TS header, skipping 1 byte if the header is invalid.
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scoped_ptr<TsPacket> ts_packet(TsPacket::Parse(ts_buffer, ts_buffer_size));
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if (!ts_packet) {
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DVLOG(1) << "Error: invalid TS packet";
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ts_byte_queue_.Pop(1);
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continue;
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}
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DVLOG(LOG_LEVEL_TS)
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<< "Processing PID=" << ts_packet->pid()
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<< " start_unit=" << ts_packet->payload_unit_start_indicator();
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// Parse the section.
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std::map<int, PidState*>::iterator it = pids_.find(ts_packet->pid());
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if (it == pids_.end() &&
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ts_packet->pid() == TsSection::kPidPat) {
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// Create the PAT state here if needed.
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scoped_ptr<TsSection> pat_section_parser(
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new TsSectionPat(
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base::Bind(&Mp2tStreamParser::RegisterPmt,
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base::Unretained(this))));
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scoped_ptr<PidState> pat_pid_state(
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new PidState(ts_packet->pid(), PidState::kPidPat,
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pat_section_parser.Pass()));
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pat_pid_state->Enable();
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it = pids_.insert(
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std::pair<int, PidState*>(ts_packet->pid(),
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pat_pid_state.release())).first;
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}
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if (it != pids_.end()) {
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if (!it->second->PushTsPacket(*ts_packet))
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return false;
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} else {
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DVLOG(LOG_LEVEL_TS) << "Ignoring TS packet for pid: " << ts_packet->pid();
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}
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// Go to the next packet.
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ts_byte_queue_.Pop(TsPacket::kPacketSize);
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}
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RCHECK(FinishInitializationIfNeeded());
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// Emit the A/V buffers that kept accumulating during TS parsing.
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return EmitRemainingBuffers();
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}
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void Mp2tStreamParser::RegisterPmt(int program_number, int pmt_pid) {
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DVLOG(1) << "RegisterPmt:"
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<< " program_number=" << program_number
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<< " pmt_pid=" << pmt_pid;
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// Only one TS program is allowed. Ignore the incoming program map table,
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// if there is already one registered.
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for (std::map<int, PidState*>::iterator it = pids_.begin();
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it != pids_.end(); ++it) {
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PidState* pid_state = it->second;
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if (pid_state->pid_type() == PidState::kPidPmt) {
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DVLOG_IF(1, pmt_pid != it->first) << "More than one program is defined";
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return;
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}
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}
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// Create the PMT state here if needed.
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DVLOG(1) << "Create a new PMT parser";
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scoped_ptr<TsSection> pmt_section_parser(
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new TsSectionPmt(
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base::Bind(&Mp2tStreamParser::RegisterPes,
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base::Unretained(this), pmt_pid)));
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scoped_ptr<PidState> pmt_pid_state(
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new PidState(pmt_pid, PidState::kPidPmt, pmt_section_parser.Pass()));
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pmt_pid_state->Enable();
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pids_.insert(std::pair<int, PidState*>(pmt_pid, pmt_pid_state.release()));
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}
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void Mp2tStreamParser::RegisterPes(int pmt_pid,
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int pes_pid,
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int stream_type) {
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// TODO(damienv): check there is no mismatch if the entry already exists.
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DVLOG(1) << "RegisterPes:"
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<< " pes_pid=" << pes_pid
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<< " stream_type=" << std::hex << stream_type << std::dec;
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std::map<int, PidState*>::iterator it = pids_.find(pes_pid);
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if (it != pids_.end())
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return;
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// Create a stream parser corresponding to the stream type.
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bool is_audio = false;
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scoped_ptr<EsParser> es_parser;
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if (stream_type == kStreamTypeAVC) {
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es_parser.reset(
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new EsParserH264(
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base::Bind(&Mp2tStreamParser::OnVideoConfigChanged,
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base::Unretained(this),
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pes_pid),
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base::Bind(&Mp2tStreamParser::OnEmitVideoBuffer,
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base::Unretained(this),
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pes_pid)));
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} else if (stream_type == kStreamTypeAAC) {
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es_parser.reset(
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new EsParserAdts(
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base::Bind(&Mp2tStreamParser::OnAudioConfigChanged,
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base::Unretained(this),
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pes_pid),
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base::Bind(&Mp2tStreamParser::OnEmitAudioBuffer,
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base::Unretained(this),
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pes_pid),
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sbr_in_mimetype_));
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is_audio = true;
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} else {
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return;
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}
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// Create the PES state here.
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DVLOG(1) << "Create a new PES state";
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scoped_ptr<TsSection> pes_section_parser(
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new TsSectionPes(es_parser.Pass()));
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PidState::PidType pid_type =
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is_audio ? PidState::kPidAudioPes : PidState::kPidVideoPes;
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scoped_ptr<PidState> pes_pid_state(
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new PidState(pes_pid, pid_type, pes_section_parser.Pass()));
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pids_.insert(std::pair<int, PidState*>(pes_pid, pes_pid_state.release()));
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// A new PES pid has been added, the PID filter might change.
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UpdatePidFilter();
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}
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void Mp2tStreamParser::UpdatePidFilter() {
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// Applies the HLS rule to select the default audio/video PIDs:
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// select the audio/video streams with the lowest PID.
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// TODO(damienv): this can be changed when the StreamParser interface
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// supports multiple audio/video streams.
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PidMap::iterator lowest_audio_pid = pids_.end();
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PidMap::iterator lowest_video_pid = pids_.end();
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for (PidMap::iterator it = pids_.begin(); it != pids_.end(); ++it) {
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int pid = it->first;
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PidState* pid_state = it->second;
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if (pid_state->pid_type() == PidState::kPidAudioPes &&
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(lowest_audio_pid == pids_.end() || pid < lowest_audio_pid->first))
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lowest_audio_pid = it;
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if (pid_state->pid_type() == PidState::kPidVideoPes &&
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(lowest_video_pid == pids_.end() || pid < lowest_video_pid->first))
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lowest_video_pid = it;
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}
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// Enable both the lowest audio and video PIDs.
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if (lowest_audio_pid != pids_.end()) {
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DVLOG(1) << "Enable audio pid: " << lowest_audio_pid->first;
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lowest_audio_pid->second->Enable();
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selected_audio_pid_ = lowest_audio_pid->first;
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}
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if (lowest_video_pid != pids_.end()) {
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DVLOG(1) << "Enable video pid: " << lowest_video_pid->first;
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lowest_video_pid->second->Enable();
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selected_video_pid_ = lowest_video_pid->first;
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}
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// Disable all the other audio and video PIDs.
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for (PidMap::iterator it = pids_.begin(); it != pids_.end(); ++it) {
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PidState* pid_state = it->second;
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if (it != lowest_audio_pid && it != lowest_video_pid &&
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(pid_state->pid_type() == PidState::kPidAudioPes ||
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pid_state->pid_type() == PidState::kPidVideoPes))
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pid_state->Disable();
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}
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}
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void Mp2tStreamParser::OnVideoConfigChanged(
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int pes_pid,
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const VideoDecoderConfig& video_decoder_config) {
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DVLOG(1) << "OnVideoConfigChanged for pid=" << pes_pid;
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DCHECK_EQ(pes_pid, selected_video_pid_);
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DCHECK(video_decoder_config.IsValidConfig());
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// Create a new entry in |buffer_queue_chain_| with the updated configs.
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BufferQueueWithConfig buffer_queue_with_config(
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false,
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buffer_queue_chain_.empty()
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? AudioDecoderConfig() : buffer_queue_chain_.back().audio_config,
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video_decoder_config);
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buffer_queue_chain_.push_back(buffer_queue_with_config);
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// Replace any non valid config with the 1st valid entry.
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// This might happen if there was no available config before.
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for (std::list<BufferQueueWithConfig>::iterator it =
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buffer_queue_chain_.begin(); it != buffer_queue_chain_.end(); ++it) {
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if (it->video_config.IsValidConfig())
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break;
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it->video_config = video_decoder_config;
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}
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}
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void Mp2tStreamParser::OnAudioConfigChanged(
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int pes_pid,
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const AudioDecoderConfig& audio_decoder_config) {
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DVLOG(1) << "OnAudioConfigChanged for pid=" << pes_pid;
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DCHECK_EQ(pes_pid, selected_audio_pid_);
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DCHECK(audio_decoder_config.IsValidConfig());
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// Create a new entry in |buffer_queue_chain_| with the updated configs.
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BufferQueueWithConfig buffer_queue_with_config(
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false,
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audio_decoder_config,
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buffer_queue_chain_.empty()
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? VideoDecoderConfig() : buffer_queue_chain_.back().video_config);
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buffer_queue_chain_.push_back(buffer_queue_with_config);
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// Replace any non valid config with the 1st valid entry.
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// This might happen if there was no available config before.
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for (std::list<BufferQueueWithConfig>::iterator it =
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buffer_queue_chain_.begin(); it != buffer_queue_chain_.end(); ++it) {
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if (it->audio_config.IsValidConfig())
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break;
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it->audio_config = audio_decoder_config;
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}
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}
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bool Mp2tStreamParser::FinishInitializationIfNeeded() {
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// Nothing to be done if already initialized.
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if (is_initialized_)
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return true;
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// Wait for more data to come to finish initialization.
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if (buffer_queue_chain_.empty())
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return true;
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// Wait for more data to come if one of the config is not available.
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BufferQueueWithConfig& queue_with_config = buffer_queue_chain_.front();
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if (selected_audio_pid_ > 0 &&
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!queue_with_config.audio_config.IsValidConfig())
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return true;
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if (selected_video_pid_ > 0 &&
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!queue_with_config.video_config.IsValidConfig())
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return true;
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// Pass the config before invoking the initialization callback.
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RCHECK(config_cb_.Run(queue_with_config.audio_config,
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queue_with_config.video_config,
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TextTrackConfigMap()));
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queue_with_config.is_config_sent = true;
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// For Mpeg2 TS, the duration is not known.
|
|
DVLOG(1) << "Mpeg2TS stream parser initialization done";
|
|
init_cb_.Run(true, kInfiniteDuration(), false);
|
|
is_initialized_ = true;
|
|
|
|
return true;
|
|
}
|
|
|
|
void Mp2tStreamParser::OnEmitAudioBuffer(
|
|
int pes_pid,
|
|
scoped_refptr<StreamParserBuffer> stream_parser_buffer) {
|
|
DCHECK_EQ(pes_pid, selected_audio_pid_);
|
|
|
|
DVLOG(LOG_LEVEL_ES)
|
|
<< "OnEmitAudioBuffer: "
|
|
<< " size="
|
|
<< stream_parser_buffer->data_size()
|
|
<< " dts="
|
|
<< stream_parser_buffer->GetDecodeTimestamp().InMilliseconds()
|
|
<< " pts="
|
|
<< stream_parser_buffer->timestamp().InMilliseconds();
|
|
stream_parser_buffer->set_timestamp(
|
|
stream_parser_buffer->timestamp() - time_offset_);
|
|
stream_parser_buffer->SetDecodeTimestamp(
|
|
stream_parser_buffer->GetDecodeTimestamp() - time_offset_);
|
|
|
|
// Ignore the incoming buffer if it is not associated with any config.
|
|
if (buffer_queue_chain_.empty()) {
|
|
DVLOG(1) << "Ignoring audio buffer with no corresponding audio config";
|
|
return;
|
|
}
|
|
|
|
buffer_queue_chain_.back().audio_queue.push_back(stream_parser_buffer);
|
|
}
|
|
|
|
void Mp2tStreamParser::OnEmitVideoBuffer(
|
|
int pes_pid,
|
|
scoped_refptr<StreamParserBuffer> stream_parser_buffer) {
|
|
DCHECK_EQ(pes_pid, selected_video_pid_);
|
|
|
|
DVLOG(LOG_LEVEL_ES)
|
|
<< "OnEmitVideoBuffer"
|
|
<< " size="
|
|
<< stream_parser_buffer->data_size()
|
|
<< " dts="
|
|
<< stream_parser_buffer->GetDecodeTimestamp().InMilliseconds()
|
|
<< " pts="
|
|
<< stream_parser_buffer->timestamp().InMilliseconds()
|
|
<< " IsKeyframe="
|
|
<< stream_parser_buffer->IsKeyframe();
|
|
stream_parser_buffer->set_timestamp(
|
|
stream_parser_buffer->timestamp() - time_offset_);
|
|
stream_parser_buffer->SetDecodeTimestamp(
|
|
stream_parser_buffer->GetDecodeTimestamp() - time_offset_);
|
|
|
|
// Ignore the incoming buffer if it is not associated with any config.
|
|
if (buffer_queue_chain_.empty()) {
|
|
DVLOG(1) << "Ignoring video buffer with no corresponding video config:"
|
|
<< " keyframe=" << stream_parser_buffer->IsKeyframe()
|
|
<< " dts="
|
|
<< stream_parser_buffer->GetDecodeTimestamp().InMilliseconds();
|
|
return;
|
|
}
|
|
|
|
// A segment cannot start with a non key frame.
|
|
// Ignore the frame if that's the case.
|
|
if (first_video_frame_in_segment_ && !stream_parser_buffer->IsKeyframe()) {
|
|
DVLOG(1) << "Ignoring non-key frame:"
|
|
<< " dts="
|
|
<< stream_parser_buffer->GetDecodeTimestamp().InMilliseconds();
|
|
return;
|
|
}
|
|
|
|
first_video_frame_in_segment_ = false;
|
|
buffer_queue_chain_.back().video_queue.push_back(stream_parser_buffer);
|
|
}
|
|
|
|
bool Mp2tStreamParser::EmitRemainingBuffers() {
|
|
DVLOG(LOG_LEVEL_ES) << "Mp2tStreamParser::EmitRemainingBuffers";
|
|
|
|
// No buffer should be sent until fully initialized.
|
|
if (!is_initialized_)
|
|
return true;
|
|
|
|
if (buffer_queue_chain_.empty())
|
|
return true;
|
|
|
|
// Keep track of the last audio and video config sent.
|
|
AudioDecoderConfig last_audio_config =
|
|
buffer_queue_chain_.back().audio_config;
|
|
VideoDecoderConfig last_video_config =
|
|
buffer_queue_chain_.back().video_config;
|
|
|
|
// Buffer emission.
|
|
while (!buffer_queue_chain_.empty()) {
|
|
// Start a segment if needed.
|
|
if (!segment_started_) {
|
|
DVLOG(1) << "Starting a new segment";
|
|
segment_started_ = true;
|
|
new_segment_cb_.Run();
|
|
}
|
|
|
|
// Update the audio and video config if needed.
|
|
BufferQueueWithConfig& queue_with_config = buffer_queue_chain_.front();
|
|
if (!queue_with_config.is_config_sent) {
|
|
if (!config_cb_.Run(queue_with_config.audio_config,
|
|
queue_with_config.video_config,
|
|
TextTrackConfigMap()))
|
|
return false;
|
|
queue_with_config.is_config_sent = true;
|
|
}
|
|
|
|
// Add buffers.
|
|
TextBufferQueueMap empty_text_map;
|
|
if (!queue_with_config.audio_queue.empty() ||
|
|
!queue_with_config.video_queue.empty()) {
|
|
if (!new_buffers_cb_.Run(queue_with_config.audio_queue,
|
|
queue_with_config.video_queue,
|
|
empty_text_map)) {
|
|
return false;
|
|
}
|
|
}
|
|
|
|
buffer_queue_chain_.pop_front();
|
|
}
|
|
|
|
// Push an empty queue with the last audio/video config
|
|
// so that buffers with the same config can be added later on.
|
|
BufferQueueWithConfig queue_with_config(
|
|
true, last_audio_config, last_video_config);
|
|
buffer_queue_chain_.push_back(queue_with_config);
|
|
|
|
return true;
|
|
}
|
|
|
|
} // namespace mp2t
|
|
} // namespace media
|
|
|