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Side by Side Diff: third_party/WebKit/Source/platform/scheduler/base/time_domain.cc

Issue 2640763003: Optimize away updatable_queue_set_ (Closed)
Patch Set: Fix lock issue plus rename OnPushQueue Created 3 years, 11 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 "platform/scheduler/base/time_domain.h" 5 #include "platform/scheduler/base/time_domain.h"
6 6
7 #include <set> 7 #include <set>
8 8
9 #include "platform/scheduler/base/task_queue_impl.h" 9 #include "platform/scheduler/base/task_queue_impl.h"
10 #include "platform/scheduler/base/task_queue_manager_delegate.h" 10 #include "platform/scheduler/base/task_queue_manager_delegate.h"
11 #include "platform/scheduler/base/work_queue.h" 11 #include "platform/scheduler/base/work_queue.h"
12 12
13 namespace blink { 13 namespace blink {
14 namespace scheduler { 14 namespace scheduler {
15 15
16 TimeDomain::TimeDomain(Observer* observer) : observer_(observer) {} 16 TimeDomain::TimeDomain(Observer* observer) : observer_(observer) {}
17 17
18 TimeDomain::~TimeDomain() { 18 TimeDomain::~TimeDomain() {
19 DCHECK(main_thread_checker_.CalledOnValidThread()); 19 DCHECK(main_thread_checker_.CalledOnValidThread());
20 } 20 }
21 21
22 void TimeDomain::RegisterQueue(internal::TaskQueueImpl* queue) { 22 void TimeDomain::RegisterQueue(internal::TaskQueueImpl* queue) {
23 DCHECK(main_thread_checker_.CalledOnValidThread()); 23 DCHECK(main_thread_checker_.CalledOnValidThread());
24 DCHECK_EQ(queue->GetTimeDomain(), this); 24 DCHECK_EQ(queue->GetTimeDomain(), this);
25 } 25 }
26 26
27 void TimeDomain::UnregisterQueue(internal::TaskQueueImpl* queue) { 27 void TimeDomain::UnregisterQueue(internal::TaskQueueImpl* queue) {
28 DCHECK(main_thread_checker_.CalledOnValidThread()); 28 DCHECK(main_thread_checker_.CalledOnValidThread());
29 DCHECK_EQ(queue->GetTimeDomain(), this); 29 DCHECK_EQ(queue->GetTimeDomain(), this);
30 UnregisterAsUpdatableTaskQueue(queue); 30
31 {
32 base::AutoLock lock(has_incoming_immediate_work_lock_);
33 has_incoming_immediate_work_.erase(queue);
34 }
31 35
32 // If no wakeup has been requested then bail out. 36 // If no wakeup has been requested then bail out.
33 if (!queue->heap_handle().IsValid()) 37 if (!queue->heap_handle().IsValid())
34 return; 38 return;
35 39
36 DCHECK_NE(queue->scheduled_time_domain_wakeup(), base::TimeTicks()); 40 DCHECK_NE(queue->scheduled_time_domain_wakeup(), base::TimeTicks());
37 41
38 // O(log n) 42 // O(log n)
39 delayed_wakeup_queue_.erase(queue->heap_handle()); 43 delayed_wakeup_queue_.erase(queue->heap_handle());
40 } 44 }
41 45
42 void TimeDomain::MigrateQueue(internal::TaskQueueImpl* queue, 46 void TimeDomain::MigrateQueue(internal::TaskQueueImpl* queue,
43 TimeDomain* destination_time_domain) { 47 TimeDomain* destination_time_domain) {
44 DCHECK(main_thread_checker_.CalledOnValidThread()); 48 DCHECK(main_thread_checker_.CalledOnValidThread());
45 DCHECK_EQ(queue->GetTimeDomain(), this); 49 DCHECK_EQ(queue->GetTimeDomain(), this);
46 DCHECK(destination_time_domain); 50 DCHECK(destination_time_domain);
47 51
48 // Make sure we remember to update |queue| if it's got incoming immediate 52 // Make sure we remember to update |queue| if it's got incoming immediate
49 // work. 53 // work.
50 if (UnregisterAsUpdatableTaskQueue(queue)) 54 bool has_incoming_immediate_work;
51 destination_time_domain->updatable_queue_set_.insert(queue); 55 {
56 base::AutoLock lock(has_incoming_immediate_work_lock_);
57 has_incoming_immediate_work = has_incoming_immediate_work_.erase(queue);
58 }
59 if (has_incoming_immediate_work) {
60 base::AutoLock lock(
61 destination_time_domain->has_incoming_immediate_work_lock_);
62 destination_time_domain->has_incoming_immediate_work_.insert(queue);
63 }
52 64
53 // If no wakeup has been requested then bail out. 65 // If no wakeup has been requested then bail out.
54 if (!queue->heap_handle().IsValid()) 66 if (!queue->heap_handle().IsValid())
55 return; 67 return;
56 68
57 base::TimeTicks wake_up_time = queue->scheduled_time_domain_wakeup(); 69 base::TimeTicks wake_up_time = queue->scheduled_time_domain_wakeup();
58 DCHECK_NE(wake_up_time, base::TimeTicks()); 70 DCHECK_NE(wake_up_time, base::TimeTicks());
59 71
60 // O(log n) 72 // O(log n)
61 delayed_wakeup_queue_.erase(queue->heap_handle()); 73 delayed_wakeup_queue_.erase(queue->heap_handle());
(...skipping 25 matching lines...) Expand all
87 // If |queue| is the first wakeup then request the wakeup. 99 // If |queue| is the first wakeup then request the wakeup.
88 if (delayed_wakeup_queue_.min().queue == queue) { 100 if (delayed_wakeup_queue_.min().queue == queue) {
89 base::TimeDelta delay = std::max(base::TimeDelta(), delayed_run_time - now); 101 base::TimeDelta delay = std::max(base::TimeDelta(), delayed_run_time - now);
90 RequestWakeup(now, delay); 102 RequestWakeup(now, delay);
91 } 103 }
92 104
93 if (observer_) 105 if (observer_)
94 observer_->OnTimeDomainHasDelayedWork(queue); 106 observer_->OnTimeDomainHasDelayedWork(queue);
95 } 107 }
96 108
97 void TimeDomain::RegisterAsUpdatableTaskQueue(internal::TaskQueueImpl* queue) { 109 void TimeDomain::OnQueueHasIncomingImmediateWork(
110 internal::TaskQueueImpl* queue) {
98 { 111 {
99 base::AutoLock lock(newly_updatable_lock_); 112 base::AutoLock lock(has_incoming_immediate_work_lock_);
100 newly_updatable_.push_back(queue); 113 has_incoming_immediate_work_.insert(queue);
101 } 114 }
115
102 if (observer_) 116 if (observer_)
103 observer_->OnTimeDomainHasImmediateWork(queue); 117 observer_->OnTimeDomainHasImmediateWork(queue);
104 } 118 }
105 119
106 bool TimeDomain::UnregisterAsUpdatableTaskQueue(
107 internal::TaskQueueImpl* queue) {
108 DCHECK(main_thread_checker_.CalledOnValidThread());
109
110 bool was_updatable = updatable_queue_set_.erase(queue) != 0;
111
112 base::AutoLock lock(newly_updatable_lock_);
113 // Remove all copies of |queue| from |newly_updatable_|.
114 for (size_t i = 0; i < newly_updatable_.size();) {
115 if (newly_updatable_[i] == queue) {
116 // Move last element into slot #i and then compact.
117 newly_updatable_[i] = newly_updatable_.back();
118 newly_updatable_.pop_back();
119 was_updatable = true;
120 } else {
121 i++;
122 }
123 }
124 return was_updatable;
125 }
126
127 void TimeDomain::UpdateWorkQueues(LazyNow lazy_now) { 120 void TimeDomain::UpdateWorkQueues(LazyNow lazy_now) {
128 DCHECK(main_thread_checker_.CalledOnValidThread()); 121 DCHECK(main_thread_checker_.CalledOnValidThread());
129 122
130 // Move any ready delayed tasks into the Incoming queues. 123 // Move any ready delayed tasks into the Incoming queues.
131 WakeupReadyDelayedQueues(&lazy_now); 124 WakeupReadyDelayedQueues(&lazy_now);
132 125
133 MoveNewlyUpdatableQueuesIntoUpdatableQueueSet(); 126 std::set<internal::TaskQueueImpl*> queues_to_reload_if_empty;
134 127
135 std::set<internal::TaskQueueImpl*>::iterator iter = 128 {
136 updatable_queue_set_.begin(); 129 base::AutoLock lock(has_incoming_immediate_work_lock_);
137 while (iter != updatable_queue_set_.end()) { 130 std::swap(queues_to_reload_if_empty, has_incoming_immediate_work_);
138 std::set<internal::TaskQueueImpl*>::iterator queue_it = iter++; 131 }
139 internal::TaskQueueImpl* queue = *queue_it;
140 132
141 // Update the queue and remove from the set if subsequent updates are not 133 for (internal::TaskQueueImpl* queue : queues_to_reload_if_empty)
142 // required. 134 queue->ReloadImmediateWorkQueueIfEmpty();
143 if (!queue->MaybeUpdateImmediateWorkQueues())
144 updatable_queue_set_.erase(queue_it);
145 }
146 }
147
148 void TimeDomain::MoveNewlyUpdatableQueuesIntoUpdatableQueueSet() {
149 DCHECK(main_thread_checker_.CalledOnValidThread());
150 base::AutoLock lock(newly_updatable_lock_);
151 while (!newly_updatable_.empty()) {
152 updatable_queue_set_.insert(newly_updatable_.back());
153 newly_updatable_.pop_back();
154 }
155 } 135 }
156 136
157 void TimeDomain::WakeupReadyDelayedQueues(LazyNow* lazy_now) { 137 void TimeDomain::WakeupReadyDelayedQueues(LazyNow* lazy_now) {
158 DCHECK(main_thread_checker_.CalledOnValidThread()); 138 DCHECK(main_thread_checker_.CalledOnValidThread());
159 // Wake up any queues with pending delayed work. Note std::multipmap stores 139 // Wake up any queues with pending delayed work. Note std::multipmap stores
160 // the elements sorted by key, so the begin() iterator points to the earliest 140 // the elements sorted by key, so the begin() iterator points to the earliest
161 // queue to wakeup. 141 // queue to wakeup.
162 while (!delayed_wakeup_queue_.empty() && 142 while (!delayed_wakeup_queue_.empty() &&
163 delayed_wakeup_queue_.min().time <= lazy_now->Now()) { 143 delayed_wakeup_queue_.min().time <= lazy_now->Now()) {
164 internal::TaskQueueImpl* queue = delayed_wakeup_queue_.min().queue; 144 internal::TaskQueueImpl* queue = delayed_wakeup_queue_.min().queue;
(...skipping 18 matching lines...) Expand all
183 if (delayed_wakeup_queue_.empty()) 163 if (delayed_wakeup_queue_.empty())
184 return false; 164 return false;
185 165
186 *out_task_queue = delayed_wakeup_queue_.min().queue; 166 *out_task_queue = delayed_wakeup_queue_.min().queue;
187 return true; 167 return true;
188 } 168 }
189 169
190 void TimeDomain::AsValueInto(base::trace_event::TracedValue* state) const { 170 void TimeDomain::AsValueInto(base::trace_event::TracedValue* state) const {
191 state->BeginDictionary(); 171 state->BeginDictionary();
192 state->SetString("name", GetName()); 172 state->SetString("name", GetName());
193 state->BeginArray("updatable_queue_set"); 173 {
194 for (auto* queue : updatable_queue_set_) 174 base::AutoLock lock(has_incoming_immediate_work_lock_);
195 state->AppendString(queue->GetName()); 175 state->BeginArray("has_incoming_immediate_work");
196 state->EndArray(); 176 for (internal::TaskQueueImpl* queue : has_incoming_immediate_work_)
177 state->AppendString(queue->GetName());
178 state->EndArray();
179 }
197 state->SetInteger("registered_delay_count", delayed_wakeup_queue_.size()); 180 state->SetInteger("registered_delay_count", delayed_wakeup_queue_.size());
198 if (!delayed_wakeup_queue_.empty()) { 181 if (!delayed_wakeup_queue_.empty()) {
199 base::TimeDelta delay = delayed_wakeup_queue_.min().time - Now(); 182 base::TimeDelta delay = delayed_wakeup_queue_.min().time - Now();
200 state->SetDouble("next_delay_ms", delay.InMillisecondsF()); 183 state->SetDouble("next_delay_ms", delay.InMillisecondsF());
201 } 184 }
202 AsValueIntoInternal(state); 185 AsValueIntoInternal(state);
203 state->EndDictionary(); 186 state->EndDictionary();
204 } 187 }
205 188
206 } // namespace scheduler 189 } // namespace scheduler
207 } // namespace blink 190 } // namespace blink
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