1ebb20e1d8
Review URL: http://codereview.chromium.org/155022 git-svn-id: svn://svn.chromium.org/chrome/trunk/src@19974 0039d316-1c4b-4281-b951-d872f2087c98
908 linhas
26 KiB
C++
908 linhas
26 KiB
C++
// Copyright (c) 2006-2008 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 "base/tracked_objects.h"
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#include <math.h>
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#include "base/message_loop.h"
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#include "base/string_util.h"
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using base::TimeDelta;
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namespace tracked_objects {
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// A TLS slot to the TrackRegistry for the current thread.
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// static
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TLSSlot ThreadData::tls_index_(base::LINKER_INITIALIZED);
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//------------------------------------------------------------------------------
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// Death data tallies durations when a death takes place.
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void DeathData::RecordDeath(const TimeDelta& duration) {
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++count_;
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life_duration_ += duration;
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int64 milliseconds = duration.InMilliseconds();
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square_duration_ += milliseconds * milliseconds;
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}
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int DeathData::AverageMsDuration() const {
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return static_cast<int>(life_duration_.InMilliseconds() / count_);
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}
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double DeathData::StandardDeviation() const {
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double average = AverageMsDuration();
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double variance = static_cast<float>(square_duration_)/count_
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- average * average;
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return sqrt(variance);
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}
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void DeathData::AddDeathData(const DeathData& other) {
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count_ += other.count_;
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life_duration_ += other.life_duration_;
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square_duration_ += other.square_duration_;
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}
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void DeathData::Write(std::string* output) const {
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if (!count_)
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return;
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if (1 == count_)
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StringAppendF(output, "(1)Life in %dms ", AverageMsDuration());
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else
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StringAppendF(output, "(%d)Lives %dms/life ", count_, AverageMsDuration());
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}
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void DeathData::Clear() {
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count_ = 0;
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life_duration_ = TimeDelta();
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square_duration_ = 0;
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}
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//------------------------------------------------------------------------------
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BirthOnThread::BirthOnThread(const Location& location)
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: location_(location),
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birth_thread_(ThreadData::current()) { }
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//------------------------------------------------------------------------------
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Births::Births(const Location& location)
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: BirthOnThread(location),
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birth_count_(0) { }
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//------------------------------------------------------------------------------
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// ThreadData maintains the central data for all births and death.
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// static
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ThreadData* ThreadData::first_ = NULL;
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// static
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Lock ThreadData::list_lock_;
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// static
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ThreadData::Status ThreadData::status_ = ThreadData::UNINITIALIZED;
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ThreadData::ThreadData() : next_(NULL), message_loop_(MessageLoop::current()) {}
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// static
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ThreadData* ThreadData::current() {
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if (!tls_index_.initialized())
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return NULL;
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ThreadData* registry = static_cast<ThreadData*>(tls_index_.Get());
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if (!registry) {
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// We have to create a new registry for ThreadData.
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bool too_late_to_create = false;
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{
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registry = new ThreadData;
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AutoLock lock(list_lock_);
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// Use lock to insure we have most recent status.
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if (!IsActive()) {
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too_late_to_create = true;
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} else {
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// Use lock to insert into list.
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registry->next_ = first_;
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first_ = registry;
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}
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} // Release lock.
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if (too_late_to_create) {
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delete registry;
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registry = NULL;
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} else {
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tls_index_.Set(registry);
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}
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}
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return registry;
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}
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// Do mininimal fixups for searching function names.
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static std::string UnescapeQuery(const std::string& query) {
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std::string result;
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for (size_t i = 0; i < query.size(); i++) {
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char next = query[i];
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if ('%' == next && i + 2 < query.size()) {
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std::string hex = query.substr(i + 1, 2);
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char replacement = '\0';
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// Only bother with "<", ">", and " ".
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if (LowerCaseEqualsASCII(hex, "3c"))
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replacement ='<';
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else if (LowerCaseEqualsASCII(hex, "3e"))
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replacement = '>';
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else if (hex == "20")
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replacement = ' ';
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if (replacement) {
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next = replacement;
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i += 2;
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}
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}
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result.push_back(next);
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}
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return result;
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}
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// static
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void ThreadData::WriteHTML(const std::string& query, std::string* output) {
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if (!ThreadData::IsActive())
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return; // Not yet initialized.
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DCHECK(ThreadData::current());
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output->append("<html><head><title>About Objects");
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std::string escaped_query = UnescapeQuery(query);
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if (!escaped_query.empty())
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output->append(" - " + escaped_query);
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output->append("</title></head><body><pre>");
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DataCollector collected_data; // Gather data.
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collected_data.AddListOfLivingObjects(); // Add births that are still alive.
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// Data Gathering is complete. Now to sort/process/render.
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DataCollector::Collection* collection = collected_data.collection();
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// Create filtering and sort comparison object.
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Comparator comparator;
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comparator.ParseQuery(escaped_query);
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// Filter out acceptable (matching) instances.
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DataCollector::Collection match_array;
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for (DataCollector::Collection::iterator it = collection->begin();
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it != collection->end(); ++it) {
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if (comparator.Acceptable(*it))
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match_array.push_back(*it);
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}
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comparator.Sort(&match_array);
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WriteHTMLTotalAndSubtotals(match_array, comparator, output);
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comparator.Clear(); // Delete tiebreaker_ instances.
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output->append("</pre></body></html>");
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}
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// static
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void ThreadData::WriteHTMLTotalAndSubtotals(
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const DataCollector::Collection& match_array,
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const Comparator& comparator,
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std::string* output) {
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if (!match_array.size()) {
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output->append("There were no tracked matches.");
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} else {
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// Aggregate during printing
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Aggregation totals;
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for (size_t i = 0; i < match_array.size(); ++i) {
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totals.AddDeathSnapshot(match_array[i]);
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}
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output->append("Aggregate Stats: ");
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totals.Write(output);
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output->append("<hr><hr>");
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Aggregation subtotals;
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for (size_t i = 0; i < match_array.size(); ++i) {
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if (0 == i || !comparator.Equivalent(match_array[i - 1],
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match_array[i])) {
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// Print group's defining characteristics.
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comparator.WriteSortGrouping(match_array[i], output);
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output->append("<br><br>");
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}
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comparator.WriteSnapshot(match_array[i], output);
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output->append("<br>");
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subtotals.AddDeathSnapshot(match_array[i]);
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if (i + 1 >= match_array.size() ||
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!comparator.Equivalent(match_array[i],
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match_array[i + 1])) {
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// Print aggregate stats for the group.
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output->append("<br>");
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subtotals.Write(output);
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output->append("<br><hr><br>");
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subtotals.Clear();
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}
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}
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}
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}
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Births* ThreadData::FindLifetime(const Location& location) {
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if (!message_loop_) // In case message loop wasn't yet around...
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message_loop_ = MessageLoop::current(); // Find it now.
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BirthMap::iterator it = birth_map_.find(location);
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if (it != birth_map_.end())
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return it->second;
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Births* tracker = new Births(location);
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// Lock since the map may get relocated now, and other threads sometimes
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// snapshot it (but they lock before copying it).
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AutoLock lock(lock_);
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birth_map_[location] = tracker;
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return tracker;
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}
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void ThreadData::TallyADeath(const Births& lifetimes,
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const TimeDelta& duration) {
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if (!message_loop_) // In case message loop wasn't yet around...
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message_loop_ = MessageLoop::current(); // Find it now.
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DeathMap::iterator it = death_map_.find(&lifetimes);
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if (it != death_map_.end()) {
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it->second.RecordDeath(duration);
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return;
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}
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AutoLock lock(lock_); // Lock since the map may get relocated now.
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death_map_[&lifetimes].RecordDeath(duration);
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}
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// static
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ThreadData* ThreadData::first() {
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AutoLock lock(list_lock_);
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return first_;
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}
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const std::string ThreadData::ThreadName() const {
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if (message_loop_)
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return message_loop_->thread_name();
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return "ThreadWithoutMessageLoop";
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}
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// This may be called from another thread.
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void ThreadData::SnapshotBirthMap(BirthMap *output) const {
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AutoLock lock(*const_cast<Lock*>(&lock_));
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for (BirthMap::const_iterator it = birth_map_.begin();
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it != birth_map_.end(); ++it)
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(*output)[it->first] = it->second;
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}
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// This may be called from another thread.
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void ThreadData::SnapshotDeathMap(DeathMap *output) const {
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AutoLock lock(*const_cast<Lock*>(&lock_));
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for (DeathMap::const_iterator it = death_map_.begin();
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it != death_map_.end(); ++it)
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(*output)[it->first] = it->second;
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}
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#ifdef OS_WIN
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void ThreadData::RunOnAllThreads(void (*function)()) {
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ThreadData* list = first(); // Get existing list.
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std::vector<MessageLoop*> message_loops;
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for (ThreadData* it = list; it; it = it->next()) {
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if (current() != it && it->message_loop())
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message_loops.push_back(it->message_loop());
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}
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ThreadSafeDownCounter* counter =
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new ThreadSafeDownCounter(message_loops.size() + 1); // Extra one for us!
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HANDLE completion_handle = CreateEvent(NULL, false, false, NULL);
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// Tell all other threads to run.
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for (size_t i = 0; i < message_loops.size(); ++i)
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message_loops[i]->PostTask(FROM_HERE,
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new RunTheStatic(function, completion_handle, counter));
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// Also run Task on our thread.
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RunTheStatic local_task(function, completion_handle, counter);
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local_task.Run();
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WaitForSingleObject(completion_handle, INFINITE);
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int ret_val = CloseHandle(completion_handle);
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DCHECK(ret_val);
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}
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#endif
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// static
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bool ThreadData::StartTracking(bool status) {
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#ifndef TRACK_ALL_TASK_OBJECTS
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return false; // Not compiled in.
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#endif
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if (!status) {
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AutoLock lock(list_lock_);
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DCHECK(status_ == ACTIVE || status_ == SHUTDOWN);
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status_ = SHUTDOWN;
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return true;
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}
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AutoLock lock(list_lock_);
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DCHECK(status_ == UNINITIALIZED);
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CHECK(tls_index_.Initialize(NULL));
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status_ = ACTIVE;
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return true;
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}
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// static
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bool ThreadData::IsActive() {
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return status_ == ACTIVE;
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}
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#ifdef OS_WIN
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// static
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void ThreadData::ShutdownMultiThreadTracking() {
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// Using lock, guarantee that no new ThreadData instances will be created.
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if (!StartTracking(false))
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return;
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RunOnAllThreads(ShutdownDisablingFurtherTracking);
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// Now the *only* threads that might change the database are the threads with
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// no messages loops. They might still be adding data to their birth records,
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// but since no objects are deleted on those threads, there will be no further
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// access to to cross-thread data.
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// We could do a cleanup on all threads except for the ones without
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// MessageLoops, but we won't bother doing cleanup (destruction of data) yet.
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return;
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}
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#endif
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// static
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void ThreadData::ShutdownSingleThreadedCleanup() {
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// We must be single threaded... but be careful anyway.
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if (!StartTracking(false))
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return;
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ThreadData* thread_data_list;
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{
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AutoLock lock(list_lock_);
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thread_data_list = first_;
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first_ = NULL;
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}
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while (thread_data_list) {
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ThreadData* next_thread_data = thread_data_list;
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thread_data_list = thread_data_list->next();
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for (BirthMap::iterator it = next_thread_data->birth_map_.begin();
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next_thread_data->birth_map_.end() != it; ++it)
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delete it->second; // Delete the Birth Records.
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next_thread_data->birth_map_.clear();
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next_thread_data->death_map_.clear();
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delete next_thread_data; // Includes all Death Records.
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}
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CHECK(tls_index_.initialized());
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tls_index_.Free();
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DCHECK(!tls_index_.initialized());
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status_ = UNINITIALIZED;
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}
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// static
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void ThreadData::ShutdownDisablingFurtherTracking() {
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// Redundantly set status SHUTDOWN on this thread.
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if (!StartTracking(false))
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return;
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}
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//------------------------------------------------------------------------------
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ThreadData::ThreadSafeDownCounter::ThreadSafeDownCounter(size_t count)
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: remaining_count_(count) {
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DCHECK(remaining_count_ > 0);
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}
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bool ThreadData::ThreadSafeDownCounter::LastCaller() {
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{
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AutoLock lock(lock_);
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if (--remaining_count_)
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return false;
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} // Release lock, so we can delete everything in this instance.
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delete this;
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return true;
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}
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//------------------------------------------------------------------------------
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#ifdef OS_WIN
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ThreadData::RunTheStatic::RunTheStatic(FunctionPointer function,
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HANDLE completion_handle,
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ThreadSafeDownCounter* counter)
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: function_(function),
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completion_handle_(completion_handle),
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counter_(counter) {
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}
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void ThreadData::RunTheStatic::Run() {
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function_();
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if (counter_->LastCaller())
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SetEvent(completion_handle_);
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}
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#endif
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//------------------------------------------------------------------------------
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// Individual 3-tuple of birth (place and thread) along with death thread, and
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// the accumulated stats for instances (DeathData).
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Snapshot::Snapshot(const BirthOnThread& birth_on_thread,
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const ThreadData& death_thread,
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const DeathData& death_data)
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: birth_(&birth_on_thread),
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death_thread_(&death_thread),
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death_data_(death_data) {
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}
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Snapshot::Snapshot(const BirthOnThread& birth_on_thread, int count)
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: birth_(&birth_on_thread),
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death_thread_(NULL),
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death_data_(DeathData(count)) {
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}
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const std::string Snapshot::DeathThreadName() const {
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if (death_thread_)
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return death_thread_->ThreadName();
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return "Still_Alive";
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}
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void Snapshot::Write(std::string* output) const {
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death_data_.Write(output);
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StringAppendF(output, "%s->%s ",
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birth_->birth_thread()->ThreadName().c_str(),
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death_thread_->ThreadName().c_str());
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birth_->location().Write(true, true, output);
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}
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void Snapshot::Add(const Snapshot& other) {
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death_data_.AddDeathData(other.death_data_);
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}
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//------------------------------------------------------------------------------
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// DataCollector
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DataCollector::DataCollector() {
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DCHECK(ThreadData::IsActive());
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ThreadData* my_list = ThreadData::current()->first();
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count_of_contributing_threads_ = 0;
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for (ThreadData* thread_data = my_list;
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thread_data;
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thread_data = thread_data->next()) {
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++count_of_contributing_threads_;
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}
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// Gather data serially. A different constructor could be used to do in
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// parallel, and then invoke an OnCompletion task.
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for (ThreadData* thread_data = my_list;
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thread_data;
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thread_data = thread_data->next()) {
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Append(*thread_data);
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}
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}
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void DataCollector::Append(const ThreadData& thread_data) {
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// Get copy of data (which is done under ThreadData's lock).
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ThreadData::BirthMap birth_map;
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thread_data.SnapshotBirthMap(&birth_map);
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ThreadData::DeathMap death_map;
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thread_data.SnapshotDeathMap(&death_map);
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// Use our lock to protect our accumulation activity.
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AutoLock lock(accumulation_lock_);
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DCHECK(count_of_contributing_threads_);
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for (ThreadData::DeathMap::const_iterator it = death_map.begin();
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it != death_map.end(); ++it) {
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collection_.push_back(Snapshot(*it->first, thread_data, it->second));
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global_birth_count_[it->first] -= it->first->birth_count();
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}
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for (ThreadData::BirthMap::const_iterator it = birth_map.begin();
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it != birth_map.end(); ++it) {
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global_birth_count_[it->second] += it->second->birth_count();
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}
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--count_of_contributing_threads_;
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}
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DataCollector::Collection* DataCollector::collection() {
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DCHECK(!count_of_contributing_threads_);
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return &collection_;
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}
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void DataCollector::AddListOfLivingObjects() {
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DCHECK(!count_of_contributing_threads_);
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for (BirthCount::iterator it = global_birth_count_.begin();
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it != global_birth_count_.end(); ++it) {
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if (it->second > 0)
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collection_.push_back(Snapshot(*it->first, it->second));
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}
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}
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//------------------------------------------------------------------------------
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// Aggregation
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void Aggregation::AddDeathSnapshot(const Snapshot& snapshot) {
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AddBirth(snapshot.birth());
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death_threads_[snapshot.death_thread()]++;
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AddDeathData(snapshot.death_data());
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}
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void Aggregation::AddBirths(const Births& births) {
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AddBirth(births);
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birth_count_ += births.birth_count();
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}
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void Aggregation::AddBirth(const BirthOnThread& birth) {
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AddBirthPlace(birth.location());
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birth_threads_[birth.birth_thread()]++;
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}
|
|
|
|
void Aggregation::AddBirthPlace(const Location& location) {
|
|
locations_[location]++;
|
|
birth_files_[location.file_name()]++;
|
|
}
|
|
|
|
void Aggregation::Write(std::string* output) const {
|
|
if (locations_.size() == 1) {
|
|
locations_.begin()->first.Write(true, true, output);
|
|
} else {
|
|
StringAppendF(output, "%d Locations. ", locations_.size());
|
|
if (birth_files_.size() > 1)
|
|
StringAppendF(output, "%d Files. ", birth_files_.size());
|
|
else
|
|
StringAppendF(output, "All born in %s. ",
|
|
birth_files_.begin()->first.c_str());
|
|
}
|
|
|
|
if (birth_threads_.size() > 1)
|
|
StringAppendF(output, "%d BirthingThreads. ", birth_threads_.size());
|
|
else
|
|
StringAppendF(output, "All born on %s. ",
|
|
birth_threads_.begin()->first->ThreadName().c_str());
|
|
|
|
if (death_threads_.size() > 1) {
|
|
StringAppendF(output, "%d DeathThreads. ", death_threads_.size());
|
|
} else {
|
|
if (death_threads_.begin()->first)
|
|
StringAppendF(output, "All deleted on %s. ",
|
|
death_threads_.begin()->first->ThreadName().c_str());
|
|
else
|
|
output->append("All these objects are still alive.");
|
|
}
|
|
|
|
if (birth_count_ > 1)
|
|
StringAppendF(output, "Births=%d ", birth_count_);
|
|
|
|
DeathData::Write(output);
|
|
}
|
|
|
|
void Aggregation::Clear() {
|
|
birth_count_ = 0;
|
|
birth_files_.clear();
|
|
locations_.clear();
|
|
birth_threads_.clear();
|
|
DeathData::Clear();
|
|
death_threads_.clear();
|
|
}
|
|
|
|
//------------------------------------------------------------------------------
|
|
// Comparison object for sorting.
|
|
|
|
Comparator::Comparator()
|
|
: selector_(NIL),
|
|
tiebreaker_(NULL),
|
|
combined_selectors_(0),
|
|
use_tiebreaker_for_sort_only_(false) {}
|
|
|
|
void Comparator::Clear() {
|
|
if (tiebreaker_) {
|
|
tiebreaker_->Clear();
|
|
delete tiebreaker_;
|
|
tiebreaker_ = NULL;
|
|
}
|
|
use_tiebreaker_for_sort_only_ = false;
|
|
selector_ = NIL;
|
|
}
|
|
|
|
void Comparator::Sort(DataCollector::Collection* collection) const {
|
|
std::sort(collection->begin(), collection->end(), *this);
|
|
}
|
|
|
|
|
|
bool Comparator::operator()(const Snapshot& left,
|
|
const Snapshot& right) const {
|
|
switch (selector_) {
|
|
case BIRTH_THREAD:
|
|
if (left.birth_thread() != right.birth_thread() &&
|
|
left.birth_thread()->ThreadName() !=
|
|
right.birth_thread()->ThreadName())
|
|
return left.birth_thread()->ThreadName() <
|
|
right.birth_thread()->ThreadName();
|
|
break;
|
|
|
|
case DEATH_THREAD:
|
|
if (left.death_thread() != right.death_thread() &&
|
|
left.DeathThreadName() !=
|
|
right.DeathThreadName()) {
|
|
if (!left.death_thread())
|
|
return true;
|
|
if (!right.death_thread())
|
|
return false;
|
|
return left.DeathThreadName() <
|
|
right.DeathThreadName();
|
|
}
|
|
break;
|
|
|
|
case BIRTH_FILE:
|
|
if (left.location().file_name() != right.location().file_name()) {
|
|
int comp = strcmp(left.location().file_name(),
|
|
right.location().file_name());
|
|
if (comp)
|
|
return 0 > comp;
|
|
}
|
|
break;
|
|
|
|
case BIRTH_FUNCTION:
|
|
if (left.location().function_name() != right.location().function_name()) {
|
|
int comp = strcmp(left.location().function_name(),
|
|
right.location().function_name());
|
|
if (comp)
|
|
return 0 > comp;
|
|
}
|
|
break;
|
|
|
|
case BIRTH_LINE:
|
|
if (left.location().line_number() != right.location().line_number())
|
|
return left.location().line_number() <
|
|
right.location().line_number();
|
|
break;
|
|
|
|
case COUNT:
|
|
if (left.count() != right.count())
|
|
return left.count() > right.count(); // Sort large at front of vector.
|
|
break;
|
|
|
|
case AVERAGE_DURATION:
|
|
if (left.AverageMsDuration() != right.AverageMsDuration())
|
|
return left.AverageMsDuration() > right.AverageMsDuration();
|
|
break;
|
|
|
|
default:
|
|
break;
|
|
}
|
|
if (tiebreaker_)
|
|
return tiebreaker_->operator()(left, right);
|
|
return false;
|
|
}
|
|
|
|
bool Comparator::Equivalent(const Snapshot& left,
|
|
const Snapshot& right) const {
|
|
switch (selector_) {
|
|
case BIRTH_THREAD:
|
|
if (left.birth_thread() != right.birth_thread() &&
|
|
left.birth_thread()->ThreadName() !=
|
|
right.birth_thread()->ThreadName())
|
|
return false;
|
|
break;
|
|
|
|
case DEATH_THREAD:
|
|
if (left.death_thread() != right.death_thread() &&
|
|
left.DeathThreadName() != right.DeathThreadName())
|
|
return false;
|
|
break;
|
|
|
|
case BIRTH_FILE:
|
|
if (left.location().file_name() != right.location().file_name()) {
|
|
int comp = strcmp(left.location().file_name(),
|
|
right.location().file_name());
|
|
if (comp)
|
|
return false;
|
|
}
|
|
break;
|
|
|
|
case BIRTH_FUNCTION:
|
|
if (left.location().function_name() != right.location().function_name()) {
|
|
int comp = strcmp(left.location().function_name(),
|
|
right.location().function_name());
|
|
if (comp)
|
|
return false;
|
|
}
|
|
break;
|
|
|
|
case COUNT:
|
|
if (left.count() != right.count())
|
|
return false;
|
|
break;
|
|
|
|
case AVERAGE_DURATION:
|
|
if (left.life_duration() != right.life_duration())
|
|
return false;
|
|
break;
|
|
|
|
default:
|
|
break;
|
|
}
|
|
if (tiebreaker_ && !use_tiebreaker_for_sort_only_)
|
|
return tiebreaker_->Equivalent(left, right);
|
|
return true;
|
|
}
|
|
|
|
bool Comparator::Acceptable(const Snapshot& sample) const {
|
|
if (required_.size()) {
|
|
switch (selector_) {
|
|
case BIRTH_THREAD:
|
|
if (sample.birth_thread()->ThreadName().find(required_) ==
|
|
std::string::npos)
|
|
return false;
|
|
break;
|
|
|
|
case DEATH_THREAD:
|
|
if (sample.DeathThreadName().find(required_) == std::string::npos)
|
|
return false;
|
|
break;
|
|
|
|
case BIRTH_FILE:
|
|
if (!strstr(sample.location().file_name(), required_.c_str()))
|
|
return false;
|
|
break;
|
|
|
|
case BIRTH_FUNCTION:
|
|
if (!strstr(sample.location().function_name(), required_.c_str()))
|
|
return false;
|
|
break;
|
|
|
|
default:
|
|
break;
|
|
}
|
|
}
|
|
if (tiebreaker_ && !use_tiebreaker_for_sort_only_)
|
|
return tiebreaker_->Acceptable(sample);
|
|
return true;
|
|
}
|
|
|
|
void Comparator::SetTiebreaker(Selector selector, const std::string& required) {
|
|
if (selector == selector_ || NIL == selector)
|
|
return;
|
|
combined_selectors_ |= selector;
|
|
if (NIL == selector_) {
|
|
selector_ = selector;
|
|
if (required.size())
|
|
required_ = required;
|
|
return;
|
|
}
|
|
if (tiebreaker_) {
|
|
if (use_tiebreaker_for_sort_only_) {
|
|
Comparator* temp = new Comparator;
|
|
temp->tiebreaker_ = tiebreaker_;
|
|
tiebreaker_ = temp;
|
|
}
|
|
} else {
|
|
tiebreaker_ = new Comparator;
|
|
DCHECK(!use_tiebreaker_for_sort_only_);
|
|
}
|
|
tiebreaker_->SetTiebreaker(selector, required);
|
|
}
|
|
|
|
bool Comparator::IsGroupedBy(Selector selector) const {
|
|
return 0 != (selector & combined_selectors_);
|
|
}
|
|
|
|
void Comparator::SetSubgroupTiebreaker(Selector selector) {
|
|
if (selector == selector_ || NIL == selector)
|
|
return;
|
|
if (!tiebreaker_) {
|
|
use_tiebreaker_for_sort_only_ = true;
|
|
tiebreaker_ = new Comparator;
|
|
tiebreaker_->SetTiebreaker(selector, "");
|
|
} else {
|
|
tiebreaker_->SetSubgroupTiebreaker(selector);
|
|
}
|
|
}
|
|
|
|
void Comparator::ParseKeyphrase(const std::string& key_phrase) {
|
|
static std::map<const std::string, Selector> key_map;
|
|
static bool initialized = false;
|
|
if (!initialized) {
|
|
initialized = true;
|
|
key_map["count"] = COUNT;
|
|
key_map["duration"] = AVERAGE_DURATION;
|
|
key_map["birth"] = BIRTH_THREAD;
|
|
key_map["death"] = DEATH_THREAD;
|
|
key_map["file"] = BIRTH_FILE;
|
|
key_map["function"] = BIRTH_FUNCTION;
|
|
key_map["line"] = BIRTH_LINE;
|
|
}
|
|
|
|
std::string required;
|
|
size_t equal_offset = key_phrase.find('=', 0);
|
|
if (key_phrase.npos != equal_offset)
|
|
required = key_phrase.substr(equal_offset + 1, key_phrase.npos);
|
|
std::string keyword(key_phrase.substr(0, equal_offset));
|
|
keyword = StringToLowerASCII(keyword);
|
|
if (key_map.end() == key_map.find(keyword))
|
|
return;
|
|
SetTiebreaker(key_map[keyword], required);
|
|
}
|
|
|
|
bool Comparator::ParseQuery(const std::string& query) {
|
|
for (size_t i = 0; i < query.size();) {
|
|
size_t slash_offset = query.find('/', i);
|
|
ParseKeyphrase(query.substr(i, slash_offset - i));
|
|
if (query.npos == slash_offset)
|
|
break;
|
|
i = slash_offset + 1;
|
|
}
|
|
|
|
// Select subgroup ordering (if we want to display the subgroup)
|
|
SetSubgroupTiebreaker(COUNT);
|
|
SetSubgroupTiebreaker(AVERAGE_DURATION);
|
|
SetSubgroupTiebreaker(BIRTH_THREAD);
|
|
SetSubgroupTiebreaker(DEATH_THREAD);
|
|
SetSubgroupTiebreaker(BIRTH_FUNCTION);
|
|
SetSubgroupTiebreaker(BIRTH_FILE);
|
|
SetSubgroupTiebreaker(BIRTH_LINE);
|
|
|
|
return true;
|
|
}
|
|
|
|
bool Comparator::WriteSortGrouping(const Snapshot& sample,
|
|
std::string* output) const {
|
|
bool wrote_data = false;
|
|
switch (selector_) {
|
|
case BIRTH_THREAD:
|
|
StringAppendF(output, "All new on %s ",
|
|
sample.birth_thread()->ThreadName().c_str());
|
|
wrote_data = true;
|
|
break;
|
|
|
|
case DEATH_THREAD:
|
|
if (sample.death_thread())
|
|
StringAppendF(output, "All deleted on %s ",
|
|
sample.DeathThreadName().c_str());
|
|
else
|
|
output->append("All still alive ");
|
|
wrote_data = true;
|
|
break;
|
|
|
|
case BIRTH_FILE:
|
|
StringAppendF(output, "All born in %s ",
|
|
sample.location().file_name());
|
|
break;
|
|
|
|
case BIRTH_FUNCTION:
|
|
output->append("All born in ");
|
|
sample.location().WriteFunctionName(output);
|
|
output->push_back(' ');
|
|
break;
|
|
|
|
default:
|
|
break;
|
|
}
|
|
if (tiebreaker_ && !use_tiebreaker_for_sort_only_) {
|
|
wrote_data |= tiebreaker_->WriteSortGrouping(sample, output);
|
|
}
|
|
return wrote_data;
|
|
}
|
|
|
|
void Comparator::WriteSnapshot(const Snapshot& sample,
|
|
std::string* output) const {
|
|
sample.death_data().Write(output);
|
|
if (!(combined_selectors_ & BIRTH_THREAD) ||
|
|
!(combined_selectors_ & DEATH_THREAD))
|
|
StringAppendF(output, "%s->%s ",
|
|
(combined_selectors_ & BIRTH_THREAD) ? "*" :
|
|
sample.birth().birth_thread()->ThreadName().c_str(),
|
|
(combined_selectors_ & DEATH_THREAD) ? "*" :
|
|
sample.DeathThreadName().c_str());
|
|
sample.birth().location().Write(!(combined_selectors_ & BIRTH_FILE),
|
|
!(combined_selectors_ & BIRTH_FUNCTION),
|
|
output);
|
|
}
|
|
|
|
} // namespace tracked_objects
|