Delete rtc::Thread functions that use rtc::MessageHandler
Bug: webrtc:9702 Change-Id: I6fc8aa8a793caf19d62a149db1861c352c609255 Reviewed-on: https://webrtc-review.googlesource.com/c/src/+/275774 Commit-Queue: Danil Chapovalov <danilchap@webrtc.org> Reviewed-by: Tomas Gunnarsson <tommi@webrtc.org> Cr-Commit-Position: refs/heads/main@{#38150}
This commit is contained in:
parent
52dd1a566a
commit
d44e3410b6
@ -76,25 +76,6 @@ namespace {
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using ::webrtc::TimeDelta;
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struct AnyInvocableMessage final : public MessageData {
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explicit AnyInvocableMessage(absl::AnyInvocable<void() &&> task)
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: task(std::move(task)) {}
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absl::AnyInvocable<void() &&> task;
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};
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class AnyInvocableMessageHandler final : public MessageHandler {
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public:
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void OnMessage(Message* msg) override {
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std::move(static_cast<AnyInvocableMessage*>(msg->pdata)->task)();
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delete msg->pdata;
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}
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};
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MessageHandler* GetAnyInvocableMessageHandler() {
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static MessageHandler* const handler = new AnyInvocableMessageHandler;
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return handler;
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}
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class RTC_SCOPED_LOCKABLE MarkProcessingCritScope {
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public:
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MarkProcessingCritScope(const RecursiveCriticalSection* cs,
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@ -407,7 +388,9 @@ void Thread::DoDestroy() {
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ss_->SetMessageQueue(nullptr);
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}
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ThreadManager::Remove(this);
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ClearInternal(nullptr, MQID_ANY, nullptr);
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// Clear.
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messages_ = {};
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delayed_messages_ = {};
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}
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SocketServer* Thread::socketserver() {
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@ -431,7 +414,7 @@ void Thread::Restart() {
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stop_.store(0, std::memory_order_release);
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}
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bool Thread::Get(Message* pmsg, int cmsWait, bool process_io) {
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absl::AnyInvocable<void() &&> Thread::Get(int cmsWait) {
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// Get w/wait + timer scan / dispatch + socket / event multiplexer dispatch
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int64_t cmsTotal = cmsWait;
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@ -448,19 +431,19 @@ bool Thread::Get(Message* pmsg, int cmsWait, bool process_io) {
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// Check for delayed messages that have been triggered and calculate the
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// next trigger time.
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while (!delayed_messages_.empty()) {
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if (msCurrent < delayed_messages_.top().run_time_ms_) {
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if (msCurrent < delayed_messages_.top().run_time_ms) {
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cmsDelayNext =
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TimeDiff(delayed_messages_.top().run_time_ms_, msCurrent);
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TimeDiff(delayed_messages_.top().run_time_ms, msCurrent);
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break;
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}
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messages_.push_back(delayed_messages_.top().msg_);
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messages_.push(std::move(delayed_messages_.top().functor));
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delayed_messages_.pop();
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}
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// Pull a message off the message queue, if available.
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if (!messages_.empty()) {
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*pmsg = messages_.front();
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messages_.pop_front();
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return true;
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absl::AnyInvocable<void()&&> task = std::move(messages_.front());
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messages_.pop();
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return task;
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}
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}
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@ -482,8 +465,8 @@ bool Thread::Get(Message* pmsg, int cmsWait, bool process_io) {
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// Wait and multiplex in the meantime
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if (!ss_->Wait(cmsNext == kForever ? SocketServer::kForever
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: webrtc::TimeDelta::Millis(cmsNext),
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process_io))
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return false;
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/*process_io=*/true))
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return nullptr;
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}
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// If the specified timeout expired, return
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@ -492,20 +475,14 @@ bool Thread::Get(Message* pmsg, int cmsWait, bool process_io) {
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cmsElapsed = TimeDiff(msCurrent, msStart);
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if (cmsWait != kForever) {
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if (cmsElapsed >= cmsWait)
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return false;
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return nullptr;
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}
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}
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return false;
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return nullptr;
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}
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void Thread::Post(const Location& posted_from,
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MessageHandler* phandler,
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uint32_t id,
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MessageData* pdata,
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bool time_sensitive) {
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RTC_DCHECK(!time_sensitive);
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void Thread::PostTask(absl::AnyInvocable<void() &&> task) {
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if (IsQuitting()) {
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delete pdata;
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return;
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}
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@ -515,42 +492,14 @@ void Thread::Post(const Location& posted_from,
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{
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CritScope cs(&crit_);
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Message msg;
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msg.posted_from = posted_from;
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msg.phandler = phandler;
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msg.message_id = id;
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msg.pdata = pdata;
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messages_.push_back(msg);
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messages_.push(std::move(task));
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}
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WakeUpSocketServer();
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}
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void Thread::PostDelayed(const Location& posted_from,
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int delay_ms,
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MessageHandler* phandler,
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uint32_t id,
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MessageData* pdata) {
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return DoDelayPost(posted_from, delay_ms, TimeAfter(delay_ms), phandler, id,
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pdata);
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}
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void Thread::PostAt(const Location& posted_from,
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int64_t run_at_ms,
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MessageHandler* phandler,
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uint32_t id,
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MessageData* pdata) {
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return DoDelayPost(posted_from, TimeUntil(run_at_ms), run_at_ms, phandler, id,
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pdata);
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}
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void Thread::DoDelayPost(const Location& posted_from,
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int64_t delay_ms,
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int64_t run_at_ms,
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MessageHandler* phandler,
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uint32_t id,
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MessageData* pdata) {
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void Thread::PostDelayedHighPrecisionTask(absl::AnyInvocable<void() &&> task,
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webrtc::TimeDelta delay) {
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if (IsQuitting()) {
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delete pdata;
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return;
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}
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@ -558,15 +507,14 @@ void Thread::DoDelayPost(const Location& posted_from,
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// Add to the priority queue. Gets sorted soonest first.
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// Signal for the multiplexer to return.
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int64_t delay_ms = delay.RoundUpTo(webrtc::TimeDelta::Millis(1)).ms<int>();
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int64_t run_time_ms = TimeAfter(delay_ms);
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{
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CritScope cs(&crit_);
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Message msg;
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msg.posted_from = posted_from;
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msg.phandler = phandler;
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msg.message_id = id;
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msg.pdata = pdata;
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DelayedMessage delayed(delay_ms, run_at_ms, delayed_next_num_, msg);
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delayed_messages_.push(delayed);
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delayed_messages_.push({.delay_ms = delay_ms,
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.run_time_ms = run_time_ms,
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.message_number = delayed_next_num_,
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.functor = std::move(task)});
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// If this message queue processes 1 message every millisecond for 50 days,
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// we will wrap this number. Even then, only messages with identical times
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// will be misordered, and then only briefly. This is probably ok.
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@ -583,7 +531,7 @@ int Thread::GetDelay() {
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return 0;
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if (!delayed_messages_.empty()) {
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int delay = TimeUntil(delayed_messages_.top().run_time_ms_);
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int delay = TimeUntil(delayed_messages_.top().run_time_ms);
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if (delay < 0)
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delay = 0;
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return delay;
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@ -592,56 +540,16 @@ int Thread::GetDelay() {
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return kForever;
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}
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void Thread::ClearInternal(MessageHandler* phandler,
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uint32_t id,
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MessageList* removed) {
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// Remove from ordered message queue
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for (auto it = messages_.begin(); it != messages_.end();) {
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if (it->Match(phandler, id)) {
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if (removed) {
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removed->push_back(*it);
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} else {
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delete it->pdata;
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}
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it = messages_.erase(it);
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} else {
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++it;
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}
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}
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// Remove from priority queue. Not directly iterable, so use this approach
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auto new_end = delayed_messages_.container().begin();
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for (auto it = new_end; it != delayed_messages_.container().end(); ++it) {
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if (it->msg_.Match(phandler, id)) {
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if (removed) {
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removed->push_back(it->msg_);
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} else {
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delete it->msg_.pdata;
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}
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} else {
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*new_end++ = *it;
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}
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}
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delayed_messages_.container().erase(new_end,
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delayed_messages_.container().end());
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delayed_messages_.reheap();
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}
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void Thread::Dispatch(Message* pmsg) {
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TRACE_EVENT2("webrtc", "Thread::Dispatch", "src_file",
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pmsg->posted_from.file_name(), "src_func",
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pmsg->posted_from.function_name());
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void Thread::Dispatch(absl::AnyInvocable<void() &&> task) {
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TRACE_EVENT0("webrtc", "Thread::Dispatch");
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RTC_DCHECK_RUN_ON(this);
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int64_t start_time = TimeMillis();
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pmsg->phandler->OnMessage(pmsg);
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std::move(task)();
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int64_t end_time = TimeMillis();
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int64_t diff = TimeDiff(end_time, start_time);
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if (diff >= dispatch_warning_ms_) {
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RTC_LOG(LS_INFO) << "Message to " << name() << " took " << diff
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<< "ms to dispatch. Posted from: "
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<< pmsg->posted_from.ToString();
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<< "ms to dispatch.";
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// To avoid log spew, move the warning limit to only give warning
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// for delays that are larger than the one observed.
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dispatch_warning_ms_ = diff + 1;
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@ -986,39 +894,16 @@ void Thread::Delete() {
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delete this;
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}
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void Thread::PostTask(absl::AnyInvocable<void() &&> task) {
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// Though Post takes MessageData by raw pointer (last parameter), it still
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// takes it with ownership.
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Post(RTC_FROM_HERE, GetAnyInvocableMessageHandler(),
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/*id=*/0, new AnyInvocableMessage(std::move(task)));
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}
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void Thread::PostDelayedTask(absl::AnyInvocable<void() &&> task,
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webrtc::TimeDelta delay) {
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// This implementation does not support low precision yet.
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PostDelayedHighPrecisionTask(std::move(task), delay);
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}
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void Thread::PostDelayedHighPrecisionTask(absl::AnyInvocable<void() &&> task,
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webrtc::TimeDelta delay) {
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int delay_ms = delay.RoundUpTo(webrtc::TimeDelta::Millis(1)).ms<int>();
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// Though PostDelayed takes MessageData by raw pointer (last parameter),
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// it still takes it with ownership.
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PostDelayed(RTC_FROM_HERE, delay_ms, GetAnyInvocableMessageHandler(),
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/*id=*/0, new AnyInvocableMessage(std::move(task)));
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}
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bool Thread::IsProcessingMessagesForTesting() {
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return (owned_ || IsCurrent()) && !IsQuitting();
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}
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void Thread::Clear(MessageHandler* phandler,
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uint32_t id,
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MessageList* removed) {
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CritScope cs(&crit_);
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ClearInternal(phandler, id, removed);
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}
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bool Thread::ProcessMessages(int cmsLoop) {
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// Using ProcessMessages with a custom clock for testing and a time greater
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// than 0 doesn't work, since it's not guaranteed to advance the custom
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@ -1032,10 +917,10 @@ bool Thread::ProcessMessages(int cmsLoop) {
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#if defined(WEBRTC_MAC)
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ScopedAutoReleasePool pool;
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#endif
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Message msg;
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if (!Get(&msg, cmsNext))
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absl::AnyInvocable<void()&&> task = Get(cmsNext);
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if (!task)
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return !IsQuitting();
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Dispatch(&msg);
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Dispatch(std::move(task));
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if (cmsLoop != kForever) {
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cmsNext = static_cast<int>(TimeUntil(msEnd));
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@ -36,12 +36,10 @@
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#include "rtc_base/checks.h"
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#include "rtc_base/deprecated/recursive_critical_section.h"
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#include "rtc_base/location.h"
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#include "rtc_base/message_handler.h"
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#include "rtc_base/platform_thread_types.h"
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#include "rtc_base/socket_server.h"
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#include "rtc_base/system/rtc_export.h"
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#include "rtc_base/thread_annotations.h"
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#include "rtc_base/thread_message.h"
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#if defined(WEBRTC_WIN)
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#include "rtc_base/win32.h"
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@ -267,26 +265,6 @@ class RTC_LOCKABLE RTC_EXPORT Thread : public webrtc::TaskQueueBase {
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// Processed. Normally, this would be true until IsQuitting() is true.
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virtual bool IsProcessingMessagesForTesting();
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// `time_sensitive` is deprecated and should always be false.
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virtual void Post(const Location& posted_from,
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MessageHandler* phandler,
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uint32_t id = 0,
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MessageData* pdata = nullptr,
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bool time_sensitive = false);
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virtual void PostDelayed(const Location& posted_from,
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int delay_ms,
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MessageHandler* phandler,
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uint32_t id = 0,
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MessageData* pdata = nullptr);
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virtual void PostAt(const Location& posted_from,
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int64_t run_at_ms,
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MessageHandler* phandler,
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uint32_t id = 0,
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MessageData* pdata = nullptr);
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virtual void Clear(MessageHandler* phandler,
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uint32_t id = MQID_ANY,
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MessageList* removed = nullptr);
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// Amount of time until the next message can be retrieved
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virtual int GetDelay();
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@ -427,54 +405,28 @@ class RTC_LOCKABLE RTC_EXPORT Thread : public webrtc::TaskQueueBase {
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// DelayedMessage goes into a priority queue, sorted by trigger time. Messages
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// with the same trigger time are processed in num_ (FIFO) order.
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class DelayedMessage {
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public:
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DelayedMessage(int64_t delay,
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int64_t run_time_ms,
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uint32_t num,
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const Message& msg)
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: delay_ms_(delay),
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run_time_ms_(run_time_ms),
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message_number_(num),
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msg_(msg) {}
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struct DelayedMessage {
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bool operator<(const DelayedMessage& dmsg) const {
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return (dmsg.run_time_ms_ < run_time_ms_) ||
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((dmsg.run_time_ms_ == run_time_ms_) &&
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(dmsg.message_number_ < message_number_));
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return (dmsg.run_time_ms < run_time_ms) ||
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((dmsg.run_time_ms == run_time_ms) &&
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(dmsg.message_number < message_number));
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}
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int64_t delay_ms_; // for debugging
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int64_t run_time_ms_;
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int64_t delay_ms; // for debugging
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int64_t run_time_ms;
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// Monotonicaly incrementing number used for ordering of messages
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// targeted to execute at the same time.
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uint32_t message_number_;
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Message msg_;
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uint32_t message_number;
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// std::priority_queue doesn't allow to extract elements, but functor
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// is move-only and thus need to be changed when pulled out of the
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// priority queue. That is ok because `functor` doesn't affect operator<
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mutable absl::AnyInvocable<void() &&> functor;
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};
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class PriorityQueue : public std::priority_queue<DelayedMessage> {
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public:
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container_type& container() { return c; }
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void reheap() { make_heap(c.begin(), c.end(), comp); }
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};
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void DoDelayPost(const Location& posted_from,
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int64_t cmsDelay,
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int64_t tstamp,
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MessageHandler* phandler,
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uint32_t id,
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MessageData* pdata);
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// Perform initialization, subclasses must call this from their constructor
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// if false was passed as init_queue to the Thread constructor.
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void DoInit();
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// Does not take any lock. Must be called either while holding crit_, or by
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// the destructor (by definition, the latter has exclusive access).
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void ClearInternal(MessageHandler* phandler,
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uint32_t id,
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MessageList* removed) RTC_EXCLUSIVE_LOCKS_REQUIRED(&crit_);
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// Perform cleanup; subclasses must call this from the destructor,
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// and are not expected to actually hold the lock.
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void DoDestroy() RTC_EXCLUSIVE_LOCKS_REQUIRED(&crit_);
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@ -497,13 +449,11 @@ class RTC_LOCKABLE RTC_EXPORT Thread : public webrtc::TaskQueueBase {
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static const int kSlowDispatchLoggingThreshold = 50; // 50 ms
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// Get() will process I/O until:
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// 1) A message is available (returns true)
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// 2) cmsWait seconds have elapsed (returns false)
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// 3) Stop() is called (returns false)
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virtual bool Get(Message* pmsg,
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int cmsWait = kForever,
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bool process_io = true);
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virtual void Dispatch(Message* pmsg);
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// 1) A task is available (returns it)
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// 2) cmsWait seconds have elapsed (returns empty task)
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// 3) Stop() is called (returns empty task)
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absl::AnyInvocable<void() &&> Get(int cmsWait);
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void Dispatch(absl::AnyInvocable<void() &&> task);
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// Sets the per-thread allow-blocking-calls flag and returns the previous
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// value. Must be called on this thread.
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@ -532,8 +482,8 @@ class RTC_LOCKABLE RTC_EXPORT Thread : public webrtc::TaskQueueBase {
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// Called by the ThreadManager when being unset as the current thread.
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void ClearCurrentTaskQueue();
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MessageList messages_ RTC_GUARDED_BY(crit_);
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PriorityQueue delayed_messages_ RTC_GUARDED_BY(crit_);
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std::queue<absl::AnyInvocable<void() &&>> messages_ RTC_GUARDED_BY(crit_);
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std::priority_queue<DelayedMessage> delayed_messages_ RTC_GUARDED_BY(crit_);
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uint32_t delayed_next_num_ RTC_GUARDED_BY(crit_);
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#if RTC_DCHECK_IS_ON
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uint32_t blocking_call_count_ RTC_GUARDED_BY(this) = 0;
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@ -553,32 +553,6 @@ TEST(ThreadManager, ProcessAllMessageQueuesWithQuittingThread) {
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ThreadManager::ProcessAllMessageQueuesForTesting();
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}
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// Test that ProcessAllMessageQueues doesn't hang if a queue clears its
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// messages.
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TEST(ThreadManager, ProcessAllMessageQueuesWithClearedQueue) {
|
||||
rtc::AutoThread main_thread;
|
||||
Event entered_process_all_message_queues(true, false);
|
||||
auto t = Thread::CreateWithSocketServer();
|
||||
t->Start();
|
||||
|
||||
auto clearer = [&entered_process_all_message_queues] {
|
||||
// Wait for event as a means to ensure Clear doesn't occur outside of
|
||||
// ProcessAllMessageQueues. The event is set by a message posted to the
|
||||
// main thread, which is guaranteed to be handled inside
|
||||
// ProcessAllMessageQueues.
|
||||
entered_process_all_message_queues.Wait(Event::kForever);
|
||||
rtc::Thread::Current()->Clear(nullptr);
|
||||
};
|
||||
auto event_signaler = [&entered_process_all_message_queues] {
|
||||
entered_process_all_message_queues.Set();
|
||||
};
|
||||
|
||||
// Post messages (both delayed and non delayed) to both threads.
|
||||
t->PostTask(clearer);
|
||||
main_thread.PostTask(event_signaler);
|
||||
ThreadManager::ProcessAllMessageQueuesForTesting();
|
||||
}
|
||||
|
||||
void WaitAndSetEvent(Event* wait_event, Event* set_event) {
|
||||
wait_event->Wait(Event::kForever);
|
||||
set_event->Set();
|
||||
|
||||
@ -77,35 +77,27 @@ void SimulatedThread::BlockingCall(rtc::FunctionView<void()> functor) {
|
||||
}
|
||||
}
|
||||
|
||||
void SimulatedThread::Post(const rtc::Location& posted_from,
|
||||
rtc::MessageHandler* phandler,
|
||||
uint32_t id,
|
||||
rtc::MessageData* pdata,
|
||||
bool time_sensitive) {
|
||||
rtc::Thread::Post(posted_from, phandler, id, pdata, time_sensitive);
|
||||
void SimulatedThread::PostTask(absl::AnyInvocable<void() &&> task) {
|
||||
rtc::Thread::PostTask(std::move(task));
|
||||
MutexLock lock(&lock_);
|
||||
next_run_time_ = Timestamp::MinusInfinity();
|
||||
}
|
||||
|
||||
void SimulatedThread::PostDelayed(const rtc::Location& posted_from,
|
||||
int delay_ms,
|
||||
rtc::MessageHandler* phandler,
|
||||
uint32_t id,
|
||||
rtc::MessageData* pdata) {
|
||||
rtc::Thread::PostDelayed(posted_from, delay_ms, phandler, id, pdata);
|
||||
void SimulatedThread::PostDelayedTask(absl::AnyInvocable<void() &&> task,
|
||||
TimeDelta delay) {
|
||||
rtc::Thread::PostDelayedTask(std::move(task), delay);
|
||||
MutexLock lock(&lock_);
|
||||
next_run_time_ =
|
||||
std::min(next_run_time_, Timestamp::Millis(rtc::TimeMillis() + delay_ms));
|
||||
std::min(next_run_time_, Timestamp::Millis(rtc::TimeMillis()) + delay);
|
||||
}
|
||||
|
||||
void SimulatedThread::PostAt(const rtc::Location& posted_from,
|
||||
int64_t target_time_ms,
|
||||
rtc::MessageHandler* phandler,
|
||||
uint32_t id,
|
||||
rtc::MessageData* pdata) {
|
||||
rtc::Thread::PostAt(posted_from, target_time_ms, phandler, id, pdata);
|
||||
void SimulatedThread::PostDelayedHighPrecisionTask(
|
||||
absl::AnyInvocable<void() &&> task,
|
||||
TimeDelta delay) {
|
||||
rtc::Thread::PostDelayedHighPrecisionTask(std::move(task), delay);
|
||||
MutexLock lock(&lock_);
|
||||
next_run_time_ = std::min(next_run_time_, Timestamp::Millis(target_time_ms));
|
||||
next_run_time_ =
|
||||
std::min(next_run_time_, Timestamp::Millis(rtc::TimeMillis()) + delay);
|
||||
}
|
||||
|
||||
void SimulatedThread::Stop() {
|
||||
|
||||
@ -37,21 +37,11 @@ class SimulatedThread : public rtc::Thread,
|
||||
|
||||
// Thread interface
|
||||
void BlockingCall(rtc::FunctionView<void()> functor) override;
|
||||
void Post(const rtc::Location& posted_from,
|
||||
rtc::MessageHandler* phandler,
|
||||
uint32_t id,
|
||||
rtc::MessageData* pdata,
|
||||
bool time_sensitive) override;
|
||||
void PostDelayed(const rtc::Location& posted_from,
|
||||
int delay_ms,
|
||||
rtc::MessageHandler* phandler,
|
||||
uint32_t id,
|
||||
rtc::MessageData* pdata) override;
|
||||
void PostAt(const rtc::Location& posted_from,
|
||||
int64_t target_time_ms,
|
||||
rtc::MessageHandler* phandler,
|
||||
uint32_t id,
|
||||
rtc::MessageData* pdata) override;
|
||||
void PostTask(absl::AnyInvocable<void() &&> task) override;
|
||||
void PostDelayedTask(absl::AnyInvocable<void() &&> task,
|
||||
TimeDelta delay) override;
|
||||
void PostDelayedHighPrecisionTask(absl::AnyInvocable<void() &&> task,
|
||||
TimeDelta delay) override;
|
||||
|
||||
void Stop() override;
|
||||
|
||||
|
||||
Loading…
x
Reference in New Issue
Block a user