317 lines
10 KiB
C++
317 lines
10 KiB
C++
/*
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* Copyright (c) 2016 The WebRTC project authors. All Rights Reserved.
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*
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* Use of this source code is governed by a BSD-style license
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* that can be found in the LICENSE file in the root of the source
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* tree. An additional intellectual property rights grant can be found
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* in the file PATENTS. All contributing project authors may
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* be found in the AUTHORS file in the root of the source tree.
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*/
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#include "webrtc/call/rtc_event_log_helper_thread.h"
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#include <algorithm>
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#include "webrtc/base/checks.h"
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#include "webrtc/system_wrappers/include/logging.h"
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#ifdef ENABLE_RTC_EVENT_LOG
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namespace webrtc {
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namespace {
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const int kEventsInHistory = 10000;
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bool IsConfigEvent(const rtclog::Event& event) {
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rtclog::Event_EventType event_type = event.type();
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return event_type == rtclog::Event::VIDEO_RECEIVER_CONFIG_EVENT ||
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event_type == rtclog::Event::VIDEO_SENDER_CONFIG_EVENT ||
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event_type == rtclog::Event::AUDIO_RECEIVER_CONFIG_EVENT ||
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event_type == rtclog::Event::AUDIO_SENDER_CONFIG_EVENT;
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}
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} // namespace
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// RtcEventLogImpl member functions.
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RtcEventLogHelperThread::RtcEventLogHelperThread(
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SwapQueue<ControlMessage>* message_queue,
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SwapQueue<std::unique_ptr<rtclog::Event>>* event_queue,
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const Clock* const clock)
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: message_queue_(message_queue),
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event_queue_(event_queue),
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history_(kEventsInHistory),
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config_history_(),
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file_(FileWrapper::Create()),
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thread_(&ThreadOutputFunction, this, "RtcEventLog thread"),
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max_size_bytes_(std::numeric_limits<int64_t>::max()),
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written_bytes_(0),
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start_time_(0),
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stop_time_(std::numeric_limits<int64_t>::max()),
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has_recent_event_(false),
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most_recent_event_(),
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output_string_(),
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wake_periodically_(false, false),
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wake_from_hibernation_(false, false),
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file_finished_(false, false),
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clock_(clock) {
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RTC_DCHECK(message_queue_);
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RTC_DCHECK(event_queue_);
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RTC_DCHECK(clock_);
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thread_.Start();
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}
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RtcEventLogHelperThread::~RtcEventLogHelperThread() {
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ControlMessage message;
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message.message_type = ControlMessage::TERMINATE_THREAD;
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message.stop_time = clock_->TimeInMicroseconds();
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while (!message_queue_->Insert(&message)) {
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// We can't destroy the event log until we have stopped the thread,
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// so clear the message queue and try again. Note that if we clear
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// any STOP_FILE events, then the threads calling StopLogging would likely
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// wait indefinitely. However, there should not be any such calls as we
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// are executing the destructor.
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LOG(LS_WARNING) << "Clearing message queue to terminate thread.";
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message_queue_->Clear();
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}
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wake_from_hibernation_.Set();
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wake_periodically_.Set(); // Wake up the output thread.
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thread_.Stop(); // Wait for the thread to terminate.
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}
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void RtcEventLogHelperThread::WaitForFileFinished() {
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wake_from_hibernation_.Set();
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wake_periodically_.Set();
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file_finished_.Wait(rtc::Event::kForever);
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}
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void RtcEventLogHelperThread::SignalNewEvent() {
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wake_from_hibernation_.Set();
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}
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bool RtcEventLogHelperThread::AppendEventToString(rtclog::Event* event) {
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rtclog::EventStream event_stream;
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event_stream.add_stream();
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event_stream.mutable_stream(0)->Swap(event);
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// We create a new event stream per event but because of the way protobufs
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// are encoded, events can be merged by concatenating them. Therefore,
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// it will look like a single stream when we read it back from file.
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bool stop = true;
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if (written_bytes_ + static_cast<int64_t>(output_string_.size()) +
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event_stream.ByteSize() <=
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max_size_bytes_) {
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event_stream.AppendToString(&output_string_);
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stop = false;
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}
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// Swap the event back so that we don't mix event types in the queues.
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event_stream.mutable_stream(0)->Swap(event);
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return stop;
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}
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bool RtcEventLogHelperThread::LogToMemory() {
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RTC_DCHECK(!file_->is_open());
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bool message_received = false;
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// Process each event earlier than the current time and append it to the
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// appropriate history_.
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int64_t current_time = clock_->TimeInMicroseconds();
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if (!has_recent_event_) {
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has_recent_event_ = event_queue_->Remove(&most_recent_event_);
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}
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while (has_recent_event_ &&
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most_recent_event_->timestamp_us() <= current_time) {
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if (IsConfigEvent(*most_recent_event_)) {
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config_history_.push_back(std::move(most_recent_event_));
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} else {
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history_.push_back(std::move(most_recent_event_));
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}
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has_recent_event_ = event_queue_->Remove(&most_recent_event_);
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message_received = true;
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}
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return message_received;
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}
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void RtcEventLogHelperThread::StartLogFile() {
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RTC_DCHECK(file_->is_open());
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bool stop = false;
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output_string_.clear();
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// Create and serialize the LOG_START event.
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rtclog::Event start_event;
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start_event.set_timestamp_us(start_time_);
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start_event.set_type(rtclog::Event::LOG_START);
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AppendEventToString(&start_event);
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// Serialize the config information for all old streams.
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for (auto& event : config_history_) {
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AppendEventToString(event.get());
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}
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// Serialize the events in the event queue.
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while (!history_.empty() && !stop) {
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stop = AppendEventToString(history_.front().get());
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if (!stop) {
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history_.pop_front();
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}
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}
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// Write to file.
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if (!file_->Write(output_string_.data(), output_string_.size())) {
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LOG(LS_ERROR) << "FileWrapper failed to write WebRtcEventLog file.";
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// The current FileWrapper implementation closes the file on error.
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RTC_DCHECK(!file_->is_open());
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return;
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}
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written_bytes_ += output_string_.size();
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// Free the allocated memory since we probably won't need this amount of
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// space again.
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output_string_.clear();
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output_string_.shrink_to_fit();
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if (stop) {
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RTC_DCHECK(file_->is_open());
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StopLogFile();
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}
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}
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bool RtcEventLogHelperThread::LogToFile() {
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RTC_DCHECK(file_->is_open());
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output_string_.clear();
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bool message_received = false;
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// Append each event older than both the current time and the stop time
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// to the output_string_.
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int64_t current_time = clock_->TimeInMicroseconds();
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int64_t time_limit = std::min(current_time, stop_time_);
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if (!has_recent_event_) {
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has_recent_event_ = event_queue_->Remove(&most_recent_event_);
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}
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bool stop = false;
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while (!stop && has_recent_event_ &&
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most_recent_event_->timestamp_us() <= time_limit) {
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stop = AppendEventToString(most_recent_event_.get());
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if (!stop) {
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if (IsConfigEvent(*most_recent_event_)) {
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config_history_.push_back(std::move(most_recent_event_));
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}
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has_recent_event_ = event_queue_->Remove(&most_recent_event_);
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}
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message_received = true;
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}
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// Write string to file.
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if (!file_->Write(output_string_.data(), output_string_.size())) {
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LOG(LS_ERROR) << "FileWrapper failed to write WebRtcEventLog file.";
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// The current FileWrapper implementation closes the file on error.
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RTC_DCHECK(!file_->is_open());
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return message_received;
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}
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written_bytes_ += output_string_.size();
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// We want to stop logging if we have reached the file size limit. We also
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// want to stop logging if the remaining events are more recent than the
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// time limit, or in other words if we have terminated the loop despite
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// having more events in the queue.
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if ((has_recent_event_ && most_recent_event_->timestamp_us() > stop_time_) ||
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stop) {
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RTC_DCHECK(file_->is_open());
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StopLogFile();
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}
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return message_received;
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}
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void RtcEventLogHelperThread::StopLogFile() {
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RTC_DCHECK(file_->is_open());
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output_string_.clear();
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rtclog::Event end_event;
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end_event.set_timestamp_us(stop_time_);
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end_event.set_type(rtclog::Event::LOG_END);
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AppendEventToString(&end_event);
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if (written_bytes_ + static_cast<int64_t>(output_string_.size()) <=
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max_size_bytes_) {
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if (!file_->Write(output_string_.data(), output_string_.size())) {
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LOG(LS_ERROR) << "FileWrapper failed to write WebRtcEventLog file.";
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// The current FileWrapper implementation closes the file on error.
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RTC_DCHECK(!file_->is_open());
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}
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written_bytes_ += output_string_.size();
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}
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max_size_bytes_ = std::numeric_limits<int64_t>::max();
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written_bytes_ = 0;
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start_time_ = 0;
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stop_time_ = std::numeric_limits<int64_t>::max();
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output_string_.clear();
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file_->CloseFile();
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RTC_DCHECK(!file_->is_open());
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}
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void RtcEventLogHelperThread::ProcessEvents() {
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ControlMessage message;
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while (true) {
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bool message_received = false;
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// Process control messages.
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while (message_queue_->Remove(&message)) {
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switch (message.message_type) {
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case ControlMessage::START_FILE:
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if (!file_->is_open()) {
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max_size_bytes_ = message.max_size_bytes;
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start_time_ = message.start_time;
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stop_time_ = message.stop_time;
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file_.swap(message.file);
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StartLogFile();
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} else {
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// Already started. Ignore message and close file handle.
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message.file->CloseFile();
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}
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message_received = true;
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break;
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case ControlMessage::STOP_FILE:
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if (file_->is_open()) {
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stop_time_ = message.stop_time;
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LogToFile(); // Log remaining events from message queues.
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}
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// LogToFile might stop on it's own so we need to recheck the state.
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if (file_->is_open()) {
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StopLogFile();
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}
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file_finished_.Set();
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message_received = true;
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break;
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case ControlMessage::TERMINATE_THREAD:
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if (file_->is_open()) {
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StopLogFile();
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}
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return;
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}
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}
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// Write events to file or memory.
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if (file_->is_open()) {
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message_received |= LogToFile();
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} else {
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message_received |= LogToMemory();
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}
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// Accumulate a new batch of events instead of processing them one at a
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// time.
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if (message_received) {
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wake_periodically_.Wait(100);
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} else {
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wake_from_hibernation_.Wait(rtc::Event::kForever);
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}
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}
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}
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bool RtcEventLogHelperThread::ThreadOutputFunction(void* obj) {
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RtcEventLogHelperThread* helper = static_cast<RtcEventLogHelperThread*>(obj);
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helper->ProcessEvents();
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return false;
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}
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} // namespace webrtc
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#endif // ENABLE_RTC_EVENT_LOG
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