193 lines
5.2 KiB
C++
193 lines
5.2 KiB
C++
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/*
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* Copyright 2013 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/base/profiler.h"
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#include <math.h>
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#include <algorithm>
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#include "webrtc/base/timeutils.h"
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namespace {
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// When written to an ostream, FormattedTime chooses an appropriate scale and
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// suffix for a time value given in seconds.
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class FormattedTime {
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public:
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explicit FormattedTime(double t) : time_(t) {}
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double time() const { return time_; }
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private:
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double time_;
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};
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std::ostream& operator<<(std::ostream& stream, const FormattedTime& time) {
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if (time.time() < 1.0) {
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stream << (time.time() * 1000.0) << "ms";
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} else {
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stream << time.time() << 's';
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}
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return stream;
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}
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} // namespace
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namespace rtc {
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ProfilerEvent::ProfilerEvent()
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: total_time_(0.0),
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mean_(0.0),
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sum_of_squared_differences_(0.0),
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start_count_(0),
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event_count_(0) {
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}
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void ProfilerEvent::Start() {
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if (start_count_ == 0) {
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current_start_time_ = TimeNanos();
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}
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++start_count_;
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}
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void ProfilerEvent::Stop(uint64_t stop_time) {
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--start_count_;
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ASSERT(start_count_ >= 0);
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if (start_count_ == 0) {
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double elapsed = static_cast<double>(stop_time - current_start_time_) /
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kNumNanosecsPerSec;
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total_time_ += elapsed;
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if (event_count_ == 0) {
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minimum_ = maximum_ = elapsed;
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} else {
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minimum_ = std::min(minimum_, elapsed);
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maximum_ = std::max(maximum_, elapsed);
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}
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// Online variance and mean algorithm: http://en.wikipedia.org/wiki/
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// Algorithms_for_calculating_variance#Online_algorithm
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++event_count_;
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double delta = elapsed - mean_;
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mean_ = mean_ + delta / event_count_;
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sum_of_squared_differences_ += delta * (elapsed - mean_);
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}
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}
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void ProfilerEvent::Stop() {
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Stop(TimeNanos());
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}
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double ProfilerEvent::standard_deviation() const {
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if (event_count_ <= 1) return 0.0;
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return sqrt(sum_of_squared_differences_ / (event_count_ - 1.0));
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}
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Profiler::~Profiler() = default;
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Profiler* Profiler::Instance() {
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RTC_DEFINE_STATIC_LOCAL(Profiler, instance, ());
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return &instance;
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}
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Profiler::Profiler() {
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}
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void Profiler::StartEvent(const std::string& event_name) {
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lock_.LockShared();
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EventMap::iterator it = events_.find(event_name);
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bool needs_insert = (it == events_.end());
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lock_.UnlockShared();
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if (needs_insert) {
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// Need an exclusive lock to modify the map.
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ExclusiveScope scope(&lock_);
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it = events_.insert(
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EventMap::value_type(event_name, ProfilerEvent())).first;
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}
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it->second.Start();
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}
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void Profiler::StopEvent(const std::string& event_name) {
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// Get the time ASAP, then wait for the lock.
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uint64_t stop_time = TimeNanos();
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SharedScope scope(&lock_);
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EventMap::iterator it = events_.find(event_name);
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if (it != events_.end()) {
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it->second.Stop(stop_time);
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}
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}
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void Profiler::ReportToLog(const char* file, int line,
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LoggingSeverity severity_to_use,
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const std::string& event_prefix) {
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if (!LogMessage::Loggable(severity_to_use)) {
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return;
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}
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SharedScope scope(&lock_);
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{ // Output first line.
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LogMessage msg(file, line, severity_to_use);
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msg.stream() << "=== Profile report ";
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if (event_prefix.empty()) {
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msg.stream() << "(prefix: '" << event_prefix << "') ";
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}
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msg.stream() << "===";
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}
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for (EventMap::const_iterator it = events_.begin();
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it != events_.end(); ++it) {
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if (event_prefix.empty() || it->first.find(event_prefix) == 0) {
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LogMessage(file, line, severity_to_use).stream()
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<< it->first << " " << it->second;
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}
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}
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LogMessage(file, line, severity_to_use).stream()
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<< "=== End profile report ===";
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}
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void Profiler::ReportAllToLog(const char* file, int line,
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LoggingSeverity severity_to_use) {
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ReportToLog(file, line, severity_to_use, "");
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}
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const ProfilerEvent* Profiler::GetEvent(const std::string& event_name) const {
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SharedScope scope(&lock_);
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EventMap::const_iterator it =
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events_.find(event_name);
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return (it == events_.end()) ? NULL : &it->second;
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}
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bool Profiler::Clear() {
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ExclusiveScope scope(&lock_);
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bool result = true;
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// Clear all events that aren't started.
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EventMap::iterator it = events_.begin();
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while (it != events_.end()) {
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if (it->second.is_started()) {
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++it; // Can't clear started events.
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result = false;
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} else {
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events_.erase(it++);
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}
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}
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return result;
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}
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std::ostream& operator<<(std::ostream& stream,
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const ProfilerEvent& profiler_event) {
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stream << "count=" << profiler_event.event_count()
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<< " total=" << FormattedTime(profiler_event.total_time())
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<< " mean=" << FormattedTime(profiler_event.mean())
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<< " min=" << FormattedTime(profiler_event.minimum())
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<< " max=" << FormattedTime(profiler_event.maximum())
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<< " sd=" << profiler_event.standard_deviation();
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return stream;
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}
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} // namespace rtc
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