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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" |
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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 UnregisterAsUpdatableTaskQueue(queue); |
31 | 31 |
32 // If no wakeup has been requested then bail out. | 32 // If present remove |task_queue| from delayed_wakeup_multimap_. |
33 if (queue->scheduled_time_domain_wakeup().is_null()) | 33 // O(log n) |
| 34 QueueToDelayedWakeupMultimapIteratorMap::iterator it = |
| 35 queue_to_delayed_wakeup_multimap_iterator_map_.find(queue); |
| 36 |
| 37 if (it == queue_to_delayed_wakeup_multimap_iterator_map_.end()) |
34 return; | 38 return; |
35 | 39 |
36 // O(log n) | 40 // O(1) amortized. |
37 delayed_wakeup_queue_.erase(queue->heap_handle()); | 41 delayed_wakeup_multimap_.erase(it->second); |
38 queue->set_scheduled_time_domain_wakeup(base::TimeTicks()); | 42 queue_to_delayed_wakeup_multimap_iterator_map_.erase(it); |
39 } | 43 } |
40 | 44 |
41 void TimeDomain::MigrateQueue(internal::TaskQueueImpl* queue, | 45 void TimeDomain::MigrateQueue(internal::TaskQueueImpl* queue, |
42 TimeDomain* destination_time_domain) { | 46 TimeDomain* destination_time_domain) { |
43 DCHECK(main_thread_checker_.CalledOnValidThread()); | 47 DCHECK(main_thread_checker_.CalledOnValidThread()); |
44 DCHECK_EQ(queue->GetTimeDomain(), this); | 48 DCHECK_EQ(queue->GetTimeDomain(), this); |
45 DCHECK(destination_time_domain); | 49 DCHECK(destination_time_domain); |
46 | 50 |
47 // Make sure we remember to update |queue| if it's got incoming immediate | 51 // Make sure we remember to update |queue| if it's got incoming immediate |
48 // work. | 52 // work. |
49 if (UnregisterAsUpdatableTaskQueue(queue)) | 53 if (UnregisterAsUpdatableTaskQueue(queue)) |
50 destination_time_domain->updatable_queue_set_.insert(queue); | 54 destination_time_domain->updatable_queue_set_.insert(queue); |
51 | 55 |
52 // If no wakeup has been requested then bail out. | 56 // If present remove |task_queue| from delayed_wakeup_multimap_. |
53 if (queue->scheduled_time_domain_wakeup().is_null()) | 57 // O(log n) |
| 58 QueueToDelayedWakeupMultimapIteratorMap::iterator it = |
| 59 queue_to_delayed_wakeup_multimap_iterator_map_.find(queue); |
| 60 |
| 61 if (it == queue_to_delayed_wakeup_multimap_iterator_map_.end()) |
54 return; | 62 return; |
55 | 63 |
56 // O(log n) | 64 base::TimeTicks destination_now = destination_time_domain->Now(); |
57 delayed_wakeup_queue_.erase(queue->heap_handle()); | 65 destination_time_domain->ScheduleDelayedWork(queue, it->second->first, |
58 queue->set_scheduled_time_domain_wakeup(base::TimeTicks()); | 66 destination_now); |
59 | 67 |
60 base::TimeTicks destination_now = destination_time_domain->Now(); | 68 // O(1) amortized. |
61 destination_time_domain->ScheduleDelayedWork( | 69 delayed_wakeup_multimap_.erase(it->second); |
62 queue, queue->scheduled_time_domain_wakeup(), destination_now); | 70 queue_to_delayed_wakeup_multimap_iterator_map_.erase(it); |
63 } | 71 } |
64 | 72 |
65 void TimeDomain::ScheduleDelayedWork(internal::TaskQueueImpl* queue, | 73 void TimeDomain::ScheduleDelayedWork(internal::TaskQueueImpl* queue, |
66 base::TimeTicks delayed_run_time, | 74 base::TimeTicks delayed_run_time, |
67 base::TimeTicks now) { | 75 base::TimeTicks now) { |
68 DCHECK(main_thread_checker_.CalledOnValidThread()); | 76 DCHECK(main_thread_checker_.CalledOnValidThread()); |
69 // We only want to store a single wakeup per queue, so we need to remove any | 77 // We only want to store a single wakeup per queue, so we need to remove any |
70 // previously registered wake up for |queue|. | 78 // previously registered wake up for |queue|. |
71 if (!queue->scheduled_time_domain_wakeup().is_null()) { | 79 QueueToDelayedWakeupMultimapIteratorMap::iterator it = |
72 delayed_wakeup_queue_.erase(queue->heap_handle()); | 80 queue_to_delayed_wakeup_multimap_iterator_map_.find(queue); |
73 queue->set_scheduled_time_domain_wakeup(base::TimeTicks()); | |
74 } | |
75 | 81 |
76 if (delayed_wakeup_queue_.empty() || | 82 if (it != queue_to_delayed_wakeup_multimap_iterator_map_.end()) |
77 delayed_run_time < delayed_wakeup_queue_.min().time) { | 83 delayed_wakeup_multimap_.erase(it->second); |
| 84 |
| 85 if (delayed_wakeup_multimap_.empty() || |
| 86 delayed_run_time < delayed_wakeup_multimap_.begin()->first) { |
78 base::TimeDelta delay = std::max(base::TimeDelta(), delayed_run_time - now); | 87 base::TimeDelta delay = std::max(base::TimeDelta(), delayed_run_time - now); |
79 RequestWakeup(now, delay); | 88 RequestWakeup(now, delay); |
80 } | 89 } |
81 | 90 |
82 delayed_wakeup_queue_.insert({delayed_run_time, queue}); | 91 if (it != queue_to_delayed_wakeup_multimap_iterator_map_.end()) { |
83 queue->set_scheduled_time_domain_wakeup(delayed_run_time); | 92 // TODO(alexclarke): Use C++17 extract & insert to more efficiently modify |
| 93 // |queue_to_delayed_wakeup_multimap_iterator_map_|. |
| 94 it->second = delayed_wakeup_multimap_.insert({delayed_run_time, queue}); |
| 95 } else { |
| 96 // Insert the wakeup and store the map iterator for later convenience. |
| 97 queue_to_delayed_wakeup_multimap_iterator_map_.insert( |
| 98 {queue, delayed_wakeup_multimap_.insert({delayed_run_time, queue})}); |
| 99 } |
84 | 100 |
85 if (observer_) | 101 if (observer_) |
86 observer_->OnTimeDomainHasDelayedWork(queue); | 102 observer_->OnTimeDomainHasDelayedWork(queue); |
87 } | 103 } |
88 | 104 |
89 void TimeDomain::RegisterAsUpdatableTaskQueue(internal::TaskQueueImpl* queue) { | 105 void TimeDomain::RegisterAsUpdatableTaskQueue(internal::TaskQueueImpl* queue) { |
90 { | 106 { |
91 base::AutoLock lock(newly_updatable_lock_); | 107 base::AutoLock lock(newly_updatable_lock_); |
92 newly_updatable_.push_back(queue); | 108 newly_updatable_.push_back(queue); |
93 } | 109 } |
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144 updatable_queue_set_.insert(newly_updatable_.back()); | 160 updatable_queue_set_.insert(newly_updatable_.back()); |
145 newly_updatable_.pop_back(); | 161 newly_updatable_.pop_back(); |
146 } | 162 } |
147 } | 163 } |
148 | 164 |
149 void TimeDomain::WakeupReadyDelayedQueues(LazyNow* lazy_now) { | 165 void TimeDomain::WakeupReadyDelayedQueues(LazyNow* lazy_now) { |
150 DCHECK(main_thread_checker_.CalledOnValidThread()); | 166 DCHECK(main_thread_checker_.CalledOnValidThread()); |
151 // Wake up any queues with pending delayed work. Note std::multipmap stores | 167 // Wake up any queues with pending delayed work. Note std::multipmap stores |
152 // the elements sorted by key, so the begin() iterator points to the earliest | 168 // the elements sorted by key, so the begin() iterator points to the earliest |
153 // queue to wakeup. | 169 // queue to wakeup. |
154 while (!delayed_wakeup_queue_.empty() && | 170 while (!delayed_wakeup_multimap_.empty()) { |
155 delayed_wakeup_queue_.min().time <= lazy_now->Now()) { | 171 DelayedWakeupMultimap::iterator next_wakeup = |
156 internal::TaskQueueImpl* queue = delayed_wakeup_queue_.min().queue; | 172 delayed_wakeup_multimap_.begin(); |
157 // O(log n) | 173 if (next_wakeup->first > lazy_now->Now()) |
158 delayed_wakeup_queue_.pop(); | 174 break; |
159 | 175 |
160 queue->set_scheduled_time_domain_wakeup(base::TimeTicks()); | 176 internal::TaskQueueImpl* queue = next_wakeup->second; |
| 177 |
| 178 // O(1) amortized. |
| 179 delayed_wakeup_multimap_.erase(next_wakeup); |
| 180 // O(log n). |
| 181 queue_to_delayed_wakeup_multimap_iterator_map_.erase(queue); |
| 182 |
161 queue->WakeUpForDelayedWork(lazy_now); | 183 queue->WakeUpForDelayedWork(lazy_now); |
162 } | 184 } |
163 } | 185 } |
164 | 186 |
165 bool TimeDomain::NextScheduledRunTime(base::TimeTicks* out_time) const { | 187 bool TimeDomain::NextScheduledRunTime(base::TimeTicks* out_time) const { |
166 DCHECK(main_thread_checker_.CalledOnValidThread()); | 188 DCHECK(main_thread_checker_.CalledOnValidThread()); |
167 if (delayed_wakeup_queue_.empty()) | 189 if (delayed_wakeup_multimap_.empty()) |
168 return false; | 190 return false; |
169 | 191 |
170 *out_time = delayed_wakeup_queue_.min().time; | 192 *out_time = delayed_wakeup_multimap_.begin()->first; |
171 return true; | 193 return true; |
172 } | 194 } |
173 | 195 |
174 bool TimeDomain::NextScheduledTaskQueue(TaskQueue** out_task_queue) const { | 196 bool TimeDomain::NextScheduledTaskQueue(TaskQueue** out_task_queue) const { |
175 DCHECK(main_thread_checker_.CalledOnValidThread()); | 197 DCHECK(main_thread_checker_.CalledOnValidThread()); |
176 if (delayed_wakeup_queue_.empty()) | 198 if (delayed_wakeup_multimap_.empty()) |
177 return false; | 199 return false; |
178 | 200 |
179 *out_task_queue = delayed_wakeup_queue_.min().queue; | 201 *out_task_queue = delayed_wakeup_multimap_.begin()->second; |
180 return true; | 202 return true; |
181 } | 203 } |
182 | 204 |
183 void TimeDomain::AsValueInto(base::trace_event::TracedValue* state) const { | 205 void TimeDomain::AsValueInto(base::trace_event::TracedValue* state) const { |
184 state->BeginDictionary(); | 206 state->BeginDictionary(); |
185 state->SetString("name", GetName()); | 207 state->SetString("name", GetName()); |
186 state->BeginArray("updatable_queue_set"); | 208 state->BeginArray("updatable_queue_set"); |
187 for (auto* queue : updatable_queue_set_) | 209 for (auto* queue : updatable_queue_set_) |
188 state->AppendString(queue->GetName()); | 210 state->AppendString(queue->GetName()); |
189 state->EndArray(); | 211 state->EndArray(); |
190 state->SetInteger("registered_delay_count", delayed_wakeup_queue_.size()); | 212 state->SetInteger("registered_delay_count", delayed_wakeup_multimap_.size()); |
191 if (!delayed_wakeup_queue_.empty()) { | 213 if (!delayed_wakeup_multimap_.empty()) { |
192 base::TimeDelta delay = delayed_wakeup_queue_.min().time - Now(); | 214 base::TimeDelta delay = delayed_wakeup_multimap_.begin()->first - Now(); |
193 state->SetDouble("next_delay_ms", delay.InMillisecondsF()); | 215 state->SetDouble("next_delay_ms", delay.InMillisecondsF()); |
194 } | 216 } |
195 AsValueIntoInternal(state); | 217 AsValueIntoInternal(state); |
196 state->EndDictionary(); | 218 state->EndDictionary(); |
197 } | 219 } |
198 | 220 |
199 } // namespace scheduler | 221 } // namespace scheduler |
200 } // namespace blink | 222 } // namespace blink |
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