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Issue 1124763003: Update from https://crrev.com/327068 (Closed) Base URL: git@github.com:domokit/mojo.git@master
Patch Set: update nacl, buildtools, fix display_change_notifier_unittest Created 5 years, 7 months ago
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1 // Copyright 2015 The Chromium Authors. All rights reserved. 1 // Copyright 2015 The Chromium Authors. All rights reserved.
2 // Use of this source code is governed by a BSD-style license that can be 2 // Use of this source code is governed by a BSD-style license that can be
3 // found in the LICENSE file. 3 // found in the LICENSE file.
4 4
5 #include "base/profiler/stack_sampling_profiler.h" 5 #include "base/profiler/stack_sampling_profiler.h"
6 6
7 #include <algorithm> 7 #include <algorithm>
8 8
9 #include "base/bind.h" 9 #include "base/bind.h"
10 #include "base/callback.h" 10 #include "base/callback.h"
11 #include "base/memory/singleton.h" 11 #include "base/memory/singleton.h"
12 #include "base/profiler/native_stack_sampler.h"
12 #include "base/synchronization/lock.h" 13 #include "base/synchronization/lock.h"
13 #include "base/synchronization/waitable_event.h"
14 #include "base/timer/elapsed_timer.h" 14 #include "base/timer/elapsed_timer.h"
15 15
16 template <typename T> struct DefaultSingletonTraits;
17
18 namespace base { 16 namespace base {
19 17
18 // DefaultProfileProcessor ----------------------------------------------------
19
20 namespace { 20 namespace {
21 21
22 // Thread-safe singleton class that stores collected profiles waiting to be 22 // Singleton class responsible for providing the default processing for profiles
23 // processed. 23 // (i.e. for profiles generated by profilers without their own completed
24 class PendingProfiles { 24 // callback).
25 class DefaultProfileProcessor {
25 public: 26 public:
26 PendingProfiles(); 27 using CompletedCallback = StackSamplingProfiler::CompletedCallback;
27 ~PendingProfiles();
28 28
29 static PendingProfiles* GetInstance(); 29 ~DefaultProfileProcessor();
30 30
31 // Appends |profiles|. This function is thread safe. 31 static DefaultProfileProcessor* GetInstance();
32 void PutProfiles(const std::vector<StackSamplingProfiler::Profile>& profiles); 32
33 // Gets the pending profiles into *|profiles|. This function is thread safe. 33 // Sets the callback to use for processing profiles captured without a
34 void GetProfiles(std::vector<StackSamplingProfiler::Profile>* profiles); 34 // per-profiler completed callback. Pending completed profiles are stored in
35 // this object until a non-null callback is provided here. This function is
36 // thread-safe.
37 void SetCompletedCallback(CompletedCallback callback);
38
39 // Processes |profiles|. This function is thread safe.
40 void ProcessProfiles(
41 const StackSamplingProfiler::CallStackProfiles& profiles);
35 42
36 private: 43 private:
44 friend struct DefaultSingletonTraits<DefaultProfileProcessor>;
45
46 DefaultProfileProcessor();
47
48 // Copies the pending profiles from |profiles_| into |profiles|, and clears
49 // |profiles_|. This function may be called on any thread.
50 void GetAndClearPendingProfiles(
51 StackSamplingProfiler::CallStackProfiles* profiles);
52
53 // Gets the current completed callback, with proper locking.
54 CompletedCallback GetCompletedCallback() const;
55
56 mutable Lock callback_lock_;
57 CompletedCallback default_completed_callback_;
58
37 Lock profiles_lock_; 59 Lock profiles_lock_;
38 std::vector<StackSamplingProfiler::Profile> profiles_; 60 StackSamplingProfiler::CallStackProfiles profiles_;
39 61
40 DISALLOW_COPY_AND_ASSIGN(PendingProfiles); 62 DISALLOW_COPY_AND_ASSIGN(DefaultProfileProcessor);
41 }; 63 };
42 64
43 PendingProfiles::PendingProfiles() {} 65 DefaultProfileProcessor::~DefaultProfileProcessor() {}
44
45 PendingProfiles::~PendingProfiles() {}
46 66
47 // static 67 // static
48 PendingProfiles* PendingProfiles::GetInstance() { 68 DefaultProfileProcessor* DefaultProfileProcessor::GetInstance() {
49 return Singleton<PendingProfiles>::get(); 69 return Singleton<DefaultProfileProcessor>::get();
50 } 70 }
51 71
52 void PendingProfiles::PutProfiles( 72 void DefaultProfileProcessor::SetCompletedCallback(CompletedCallback callback) {
53 const std::vector<StackSamplingProfiler::Profile>& profiles) { 73 {
54 AutoLock scoped_lock(profiles_lock_); 74 AutoLock scoped_lock(callback_lock_);
55 profiles_.insert(profiles_.end(), profiles.begin(), profiles.end()); 75 default_completed_callback_ = callback;
76 }
77
78 if (!callback.is_null()) {
79 // Provide any pending profiles to the callback immediately.
80 StackSamplingProfiler::CallStackProfiles profiles;
81 GetAndClearPendingProfiles(&profiles);
82 if (!profiles.empty())
83 callback.Run(profiles);
84 }
56 } 85 }
57 86
58 void PendingProfiles::GetProfiles( 87 void DefaultProfileProcessor::ProcessProfiles(
59 std::vector<StackSamplingProfiler::Profile>* profiles) { 88 const StackSamplingProfiler::CallStackProfiles& profiles) {
89 CompletedCallback callback = GetCompletedCallback();
90
91 // Store pending profiles if we don't have a valid callback.
92 if (!callback.is_null()) {
93 callback.Run(profiles);
94 } else {
95 AutoLock scoped_lock(profiles_lock_);
96 profiles_.insert(profiles_.end(), profiles.begin(), profiles.end());
97 }
98 }
99
100 DefaultProfileProcessor::DefaultProfileProcessor() {}
101
102 void DefaultProfileProcessor::GetAndClearPendingProfiles(
103 StackSamplingProfiler::CallStackProfiles* profiles) {
60 profiles->clear(); 104 profiles->clear();
61 105
62 AutoLock scoped_lock(profiles_lock_); 106 AutoLock scoped_lock(profiles_lock_);
63 profiles_.swap(*profiles); 107 profiles_.swap(*profiles);
64 } 108 }
109
110 DefaultProfileProcessor::CompletedCallback
111 DefaultProfileProcessor::GetCompletedCallback() const {
112 AutoLock scoped_lock(callback_lock_);
113 return default_completed_callback_;
114 }
115
65 } // namespace 116 } // namespace
66 117
118 // StackSamplingProfiler::Module ----------------------------------------------
119
67 StackSamplingProfiler::Module::Module() : base_address(nullptr) {} 120 StackSamplingProfiler::Module::Module() : base_address(nullptr) {}
121 StackSamplingProfiler::Module::Module(const void* base_address,
122 const std::string& id,
123 const FilePath& filename)
124 : base_address(base_address), id(id), filename(filename) {}
68 125
69 StackSamplingProfiler::Module::~Module() {} 126 StackSamplingProfiler::Module::~Module() {}
70 127
71 StackSamplingProfiler::Frame::Frame() 128 // StackSamplingProfiler::Frame -----------------------------------------------
72 : instruction_pointer(nullptr), 129
73 module_index(-1) {} 130 StackSamplingProfiler::Frame::Frame(const void* instruction_pointer,
131 size_t module_index)
132 : instruction_pointer(instruction_pointer),
133 module_index(module_index) {}
74 134
75 StackSamplingProfiler::Frame::~Frame() {} 135 StackSamplingProfiler::Frame::~Frame() {}
76 136
77 StackSamplingProfiler::Profile::Profile() : preserve_sample_ordering(false) {} 137 // StackSamplingProfiler::CallStackProfile ------------------------------------
78 138
79 StackSamplingProfiler::Profile::~Profile() {} 139 StackSamplingProfiler::CallStackProfile::CallStackProfile()
140 : preserve_sample_ordering(false), user_data(0) {}
80 141
81 class StackSamplingProfiler::SamplingThread : public PlatformThread::Delegate { 142 StackSamplingProfiler::CallStackProfile::~CallStackProfile() {}
82 public:
83 // Samples stacks using |native_sampler|. When complete, invokes
84 // |profiles_callback| with the collected profiles. |profiles_callback| must
85 // be thread-safe and may consume the contents of the vector.
86 SamplingThread(
87 scoped_ptr<NativeStackSampler> native_sampler,
88 const SamplingParams& params,
89 Callback<void(const std::vector<Profile>&)> completed_callback);
90 ~SamplingThread() override;
91 143
92 // Implementation of PlatformThread::Delegate: 144 // StackSamplingProfiler::SamplingThread --------------------------------------
93 void ThreadMain() override;
94
95 void Stop();
96
97 private:
98 // Collects a profile from a single burst. Returns true if the profile was
99 // collected, or false if collection was stopped before it completed.
100 bool CollectProfile(Profile* profile, TimeDelta* elapsed_time);
101 // Collects profiles from all bursts, or until the sampling is stopped. If
102 // stopped before complete, |profiles| will contains only full bursts.
103 void CollectProfiles(std::vector<Profile>* profiles);
104
105 scoped_ptr<NativeStackSampler> native_sampler_;
106
107 const SamplingParams params_;
108
109 WaitableEvent stop_event_;
110
111 Callback<void(const std::vector<Profile>&)> completed_callback_;
112
113 DISALLOW_COPY_AND_ASSIGN(SamplingThread);
114 };
115 145
116 StackSamplingProfiler::SamplingThread::SamplingThread( 146 StackSamplingProfiler::SamplingThread::SamplingThread(
117 scoped_ptr<NativeStackSampler> native_sampler, 147 scoped_ptr<NativeStackSampler> native_sampler,
118 const SamplingParams& params, 148 const SamplingParams& params,
119 Callback<void(const std::vector<Profile>&)> completed_callback) 149 CompletedCallback completed_callback)
120 : native_sampler_(native_sampler.Pass()), 150 : native_sampler_(native_sampler.Pass()),
121 params_(params), 151 params_(params),
122 stop_event_(false, false), 152 stop_event_(false, false),
123 completed_callback_(completed_callback) { 153 completed_callback_(completed_callback) {
124 } 154 }
125 155
126 StackSamplingProfiler::SamplingThread::~SamplingThread() {} 156 StackSamplingProfiler::SamplingThread::~SamplingThread() {}
127 157
128 void StackSamplingProfiler::SamplingThread::ThreadMain() { 158 void StackSamplingProfiler::SamplingThread::ThreadMain() {
129 PlatformThread::SetName("Chrome_SamplingProfilerThread"); 159 PlatformThread::SetName("Chrome_SamplingProfilerThread");
130 160
131 std::vector<Profile> profiles; 161 CallStackProfiles profiles;
132 CollectProfiles(&profiles); 162 CollectProfiles(&profiles);
133 completed_callback_.Run(profiles); 163 completed_callback_.Run(profiles);
134 } 164 }
135 165
166 // Depending on how long the sampling takes and the length of the sampling
167 // interval, a burst of samples could take arbitrarily longer than
168 // samples_per_burst * sampling_interval. In this case, we (somewhat
169 // arbitrarily) honor the number of samples requested rather than strictly
170 // adhering to the sampling intervals. Once we have established users for the
171 // StackSamplingProfiler and the collected data to judge, we may go the other
172 // way or make this behavior configurable.
136 bool StackSamplingProfiler::SamplingThread::CollectProfile( 173 bool StackSamplingProfiler::SamplingThread::CollectProfile(
137 Profile* profile, 174 CallStackProfile* profile,
138 TimeDelta* elapsed_time) { 175 TimeDelta* elapsed_time) {
139 ElapsedTimer profile_timer; 176 ElapsedTimer profile_timer;
140 Profile current_profile; 177 CallStackProfile current_profile;
141 native_sampler_->ProfileRecordingStarting(&current_profile); 178 native_sampler_->ProfileRecordingStarting(&current_profile.modules);
142 current_profile.sampling_period = params_.sampling_interval; 179 current_profile.sampling_period = params_.sampling_interval;
143 bool stopped_early = false; 180 bool burst_completed = true;
181 TimeDelta previous_elapsed_sample_time;
144 for (int i = 0; i < params_.samples_per_burst; ++i) { 182 for (int i = 0; i < params_.samples_per_burst; ++i) {
183 if (i != 0) {
184 // Always wait, even if for 0 seconds, so we can observe a signal on
185 // stop_event_.
186 if (stop_event_.TimedWait(
187 std::max(params_.sampling_interval - previous_elapsed_sample_time,
188 TimeDelta()))) {
189 burst_completed = false;
190 break;
191 }
192 }
145 ElapsedTimer sample_timer; 193 ElapsedTimer sample_timer;
146 current_profile.samples.push_back(Sample()); 194 current_profile.samples.push_back(Sample());
147 native_sampler_->RecordStackSample(&current_profile.samples.back()); 195 native_sampler_->RecordStackSample(&current_profile.samples.back());
148 TimeDelta elapsed_sample_time = sample_timer.Elapsed(); 196 previous_elapsed_sample_time = sample_timer.Elapsed();
149 if (i != params_.samples_per_burst - 1) {
150 if (stop_event_.TimedWait(
151 std::max(params_.sampling_interval - elapsed_sample_time,
152 TimeDelta()))) {
153 stopped_early = true;
154 break;
155 }
156 }
157 } 197 }
158 198
159 *elapsed_time = profile_timer.Elapsed(); 199 *elapsed_time = profile_timer.Elapsed();
160 current_profile.profile_duration = *elapsed_time; 200 current_profile.profile_duration = *elapsed_time;
201 current_profile.preserve_sample_ordering = params_.preserve_sample_ordering;
202 current_profile.user_data = params_.user_data;
161 native_sampler_->ProfileRecordingStopped(); 203 native_sampler_->ProfileRecordingStopped();
162 204
163 if (!stopped_early) 205 if (burst_completed)
164 *profile = current_profile; 206 *profile = current_profile;
165 207
166 return !stopped_early; 208 return burst_completed;
167 } 209 }
168 210
211 // In an analogous manner to CollectProfile() and samples exceeding the expected
212 // total sampling time, bursts may also exceed the burst_interval. We adopt the
213 // same wait-and-see approach here.
169 void StackSamplingProfiler::SamplingThread::CollectProfiles( 214 void StackSamplingProfiler::SamplingThread::CollectProfiles(
170 std::vector<Profile>* profiles) { 215 CallStackProfiles* profiles) {
171 if (stop_event_.TimedWait(params_.initial_delay)) 216 if (stop_event_.TimedWait(params_.initial_delay))
172 return; 217 return;
173 218
219 TimeDelta previous_elapsed_profile_time;
174 for (int i = 0; i < params_.bursts; ++i) { 220 for (int i = 0; i < params_.bursts; ++i) {
175 Profile profile; 221 if (i != 0) {
176 TimeDelta elapsed_profile_time; 222 // Always wait, even if for 0 seconds, so we can observe a signal on
177 if (CollectProfile(&profile, &elapsed_profile_time)) 223 // stop_event_.
178 profiles->push_back(profile); 224 if (stop_event_.TimedWait(
179 else 225 std::max(params_.burst_interval - previous_elapsed_profile_time,
226 TimeDelta())))
227 return;
228 }
229
230 CallStackProfile profile;
231 if (!CollectProfile(&profile, &previous_elapsed_profile_time))
180 return; 232 return;
181 233 profiles->push_back(profile);
182 if (stop_event_.TimedWait(
183 std::max(params_.burst_interval - elapsed_profile_time,
184 TimeDelta())))
185 return;
186 } 234 }
187 } 235 }
188 236
189 void StackSamplingProfiler::SamplingThread::Stop() { 237 void StackSamplingProfiler::SamplingThread::Stop() {
190 stop_event_.Signal(); 238 stop_event_.Signal();
191 } 239 }
192 240
193 void StackSamplingProfiler::SamplingThreadDeleter::operator()( 241 // StackSamplingProfiler ------------------------------------------------------
194 SamplingThread* thread) const {
195 delete thread;
196 }
197
198 StackSamplingProfiler::NativeStackSampler::NativeStackSampler() {}
199
200 StackSamplingProfiler::NativeStackSampler::~NativeStackSampler() {}
201 242
202 StackSamplingProfiler::SamplingParams::SamplingParams() 243 StackSamplingProfiler::SamplingParams::SamplingParams()
203 : initial_delay(TimeDelta::FromMilliseconds(0)), 244 : initial_delay(TimeDelta::FromMilliseconds(0)),
204 bursts(1), 245 bursts(1),
205 burst_interval(TimeDelta::FromMilliseconds(10000)), 246 burst_interval(TimeDelta::FromMilliseconds(10000)),
206 samples_per_burst(300), 247 samples_per_burst(300),
207 sampling_interval(TimeDelta::FromMilliseconds(100)), 248 sampling_interval(TimeDelta::FromMilliseconds(100)),
208 preserve_sample_ordering(false) { 249 preserve_sample_ordering(false),
250 user_data(0) {
209 } 251 }
210 252
211 StackSamplingProfiler::StackSamplingProfiler(PlatformThreadId thread_id, 253 StackSamplingProfiler::StackSamplingProfiler(PlatformThreadId thread_id,
212 const SamplingParams& params) 254 const SamplingParams& params)
213 : thread_id_(thread_id), params_(params) {} 255 : thread_id_(thread_id), params_(params) {}
214 256
215 StackSamplingProfiler::~StackSamplingProfiler() {} 257 StackSamplingProfiler::StackSamplingProfiler(PlatformThreadId thread_id,
258 const SamplingParams& params,
259 CompletedCallback callback)
260 : thread_id_(thread_id), params_(params), completed_callback_(callback) {}
261
262 StackSamplingProfiler::~StackSamplingProfiler() {
263 Stop();
264 if (!sampling_thread_handle_.is_null())
265 PlatformThread::Join(sampling_thread_handle_);
266 }
216 267
217 void StackSamplingProfiler::Start() { 268 void StackSamplingProfiler::Start() {
218 native_sampler_ = NativeStackSampler::Create(thread_id_); 269 scoped_ptr<NativeStackSampler> native_sampler =
219 if (!native_sampler_) 270 NativeStackSampler::Create(thread_id_);
271 if (!native_sampler)
220 return; 272 return;
221 273
274 CompletedCallback callback =
275 !completed_callback_.is_null() ? completed_callback_ :
276 Bind(&DefaultProfileProcessor::ProcessProfiles,
277 Unretained(DefaultProfileProcessor::GetInstance()));
222 sampling_thread_.reset( 278 sampling_thread_.reset(
223 new SamplingThread( 279 new SamplingThread(native_sampler.Pass(), params_, callback));
224 native_sampler_.Pass(), params_, 280 if (!PlatformThread::Create(0, sampling_thread_.get(),
225 (custom_completed_callback_.is_null() ? 281 &sampling_thread_handle_))
226 Bind(&PendingProfiles::PutProfiles, 282 sampling_thread_.reset();
227 Unretained(PendingProfiles::GetInstance())) :
228 custom_completed_callback_)));
229 if (!PlatformThread::CreateNonJoinable(0, sampling_thread_.get()))
230 LOG(ERROR) << "failed to create thread";
231 } 283 }
232 284
233 void StackSamplingProfiler::Stop() { 285 void StackSamplingProfiler::Stop() {
234 if (sampling_thread_) 286 if (sampling_thread_)
235 sampling_thread_->Stop(); 287 sampling_thread_->Stop();
236 } 288 }
237 289
238 // static 290 // static
239 void StackSamplingProfiler::GetPendingProfiles(std::vector<Profile>* profiles) { 291 void StackSamplingProfiler::SetDefaultCompletedCallback(
240 PendingProfiles::GetInstance()->GetProfiles(profiles); 292 CompletedCallback callback) {
293 DefaultProfileProcessor::GetInstance()->SetCompletedCallback(callback);
241 } 294 }
242 295
243 void StackSamplingProfiler::SetCustomCompletedCallback( 296 // StackSamplingProfiler::Frame global functions ------------------------------
244 Callback<void(const std::vector<Profile>&)> callback) {
245 custom_completed_callback_ = callback;
246 }
247 297
248 bool operator==(const StackSamplingProfiler::Frame &a, 298 bool operator==(const StackSamplingProfiler::Frame &a,
249 const StackSamplingProfiler::Frame &b) { 299 const StackSamplingProfiler::Frame &b) {
250 return a.instruction_pointer == b.instruction_pointer && 300 return a.instruction_pointer == b.instruction_pointer &&
251 a.module_index == b.module_index; 301 a.module_index == b.module_index;
252 } 302 }
253 303
254 bool operator<(const StackSamplingProfiler::Frame &a, 304 bool operator<(const StackSamplingProfiler::Frame &a,
255 const StackSamplingProfiler::Frame &b) { 305 const StackSamplingProfiler::Frame &b) {
256 return (a.module_index < b.module_index) || 306 return (a.module_index < b.module_index) ||
257 (a.module_index == b.module_index && 307 (a.module_index == b.module_index &&
258 a.instruction_pointer < b.instruction_pointer); 308 a.instruction_pointer < b.instruction_pointer);
259 } 309 }
260 310
261 } // namespace base 311 } // namespace base
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