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1 // Copyright 2014 The Chromium Authors. All rights reserved. | 1 // Copyright 2014 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 "content/browser/renderer_host/render_widget_resize_helper_mac.h" | 5 #include "content/browser/renderer_host/render_widget_resize_helper_mac.h" |
6 | 6 |
7 #include <list> | |
8 | |
9 #include "content/browser/gpu/gpu_process_host_ui_shim.h" | 7 #include "content/browser/gpu/gpu_process_host_ui_shim.h" |
10 #include "content/browser/renderer_host/render_process_host_impl.h" | 8 #include "content/browser/renderer_host/render_process_host_impl.h" |
11 #include "content/public/browser/browser_thread.h" | 9 #include "ui/accelerated_widget_mac/window_resize_helper_mac.h" |
12 | 10 |
13 namespace content { | 11 namespace content { |
14 namespace { | 12 namespace { |
15 | 13 |
16 class WrappedTask; | |
17 class PumpableTaskRunner; | |
18 typedef std::list<WrappedTask*> WrappedTaskQueue; | |
19 typedef base::Callback<void(base::WaitableEvent*, base::TimeDelta)> | |
20 EventTimedWaitCallback; | |
21 | |
22 // A wrapper for IPCs and tasks that we may potentially execute in | |
23 // WaitForSingleTaskToRun. Because these tasks are sent to two places to run, | |
24 // we to wrap them in this structure and track whether or not they have run | |
25 // yet, to avoid running them twice. | |
26 class WrappedTask { | |
27 public: | |
28 WrappedTask(const base::Closure& closure, base::TimeDelta delay); | |
29 ~WrappedTask(); | |
30 bool ShouldRunBefore(const WrappedTask& other); | |
31 void Run(); | |
32 void AddToTaskRunnerQueue(PumpableTaskRunner* pumpable_task_runner); | |
33 void RemoveFromTaskRunnerQueue(); | |
34 const base::TimeTicks& can_run_time() const { return can_run_time_; } | |
35 | |
36 private: | |
37 base::Closure closure_; | |
38 base::TimeTicks can_run_time_; | |
39 bool has_run_; | |
40 uint64 sequence_number_; | |
41 WrappedTaskQueue::iterator iterator_; | |
42 | |
43 // Back pointer to the pumpable task runner that this task is enqueued in. | |
44 scoped_refptr<PumpableTaskRunner> pumpable_task_runner_; | |
45 | |
46 DISALLOW_COPY_AND_ASSIGN(WrappedTask); | |
47 }; | |
48 | |
49 // The PumpableTaskRunner is a task runner that will wrap tasks in an | |
50 // WrappedTask, enqueues that wrapped task in the queue to be pumped via | |
51 // WaitForSingleWrappedTaskToRun during resizes, and posts the task to a | |
52 // target task runner. The posted task will run only once, either through a | |
53 // WaitForSingleWrappedTaskToRun call or through the target task runner. | |
54 class PumpableTaskRunner : public base::SingleThreadTaskRunner { | |
55 public: | |
56 explicit PumpableTaskRunner( | |
57 const EventTimedWaitCallback& event_timed_wait_callback); | |
58 | |
59 // Enqueue WrappedTask and post it to |target_task_runner_|. | |
60 bool EnqueueAndPostWrappedTask(const tracked_objects::Location& from_here, | |
61 WrappedTask* task, | |
62 base::TimeDelta delay); | |
63 | |
64 // Wait at most |max_delay| to run an enqueued task. | |
65 bool WaitForSingleWrappedTaskToRun(const base::TimeDelta& max_delay); | |
66 | |
67 // Remove a wrapped task from the queue. | |
68 void RemoveWrappedTaskFromQueue(WrappedTask* task); | |
69 | |
70 // base::SingleThreadTaskRunner implementation: | |
71 bool PostDelayedTask(const tracked_objects::Location& from_here, | |
72 const base::Closure& task, | |
73 base::TimeDelta delay) override; | |
74 | |
75 bool PostNonNestableDelayedTask(const tracked_objects::Location& from_here, | |
76 const base::Closure& task, | |
77 base::TimeDelta delay) override; | |
78 | |
79 bool RunsTasksOnCurrentThread() const override; | |
80 | |
81 private: | |
82 friend class WrappedTask; | |
83 | |
84 ~PumpableTaskRunner() override; | |
85 | |
86 // A queue of live messages. Must hold |task_queue_lock_| to access. Tasks | |
87 // are added only on the IO thread and removed only on the UI thread. The | |
88 // WrappedTask objects are removed from the queue when they are run (by | |
89 // |target_task_runner_| or by a call to WaitForSingleWrappedTaskToRun | |
90 // removing them out of the queue, or by TaskRunner when it is destroyed). | |
91 WrappedTaskQueue task_queue_; | |
92 base::Lock task_queue_lock_; | |
93 | |
94 // Event used to wake up the UI thread if it is sleeping in | |
95 // WaitForSingleTaskToRun. | |
96 base::WaitableEvent event_; | |
97 | |
98 // Callback to call TimedWait on |event_| from an appropriate class. | |
99 EventTimedWaitCallback event_timed_wait_callback_; | |
100 | |
101 scoped_refptr<base::SingleThreadTaskRunner> target_task_runner_; | |
102 | |
103 DISALLOW_COPY_AND_ASSIGN(PumpableTaskRunner); | |
104 }; | |
105 | |
106 void HandleGpuIPC(int gpu_host_id, const IPC::Message& message) { | 14 void HandleGpuIPC(int gpu_host_id, const IPC::Message& message) { |
107 GpuProcessHostUIShim* host = GpuProcessHostUIShim::FromID(gpu_host_id); | 15 GpuProcessHostUIShim* host = GpuProcessHostUIShim::FromID(gpu_host_id); |
108 if (host) | 16 if (host) |
109 host->OnMessageReceived(message); | 17 host->OnMessageReceived(message); |
110 } | 18 } |
111 | 19 |
112 void HandleRendererIPC(int render_process_id, const IPC::Message& message) { | 20 void HandleRendererIPC(int render_process_id, const IPC::Message& message) { |
113 RenderProcessHost* host = RenderProcessHost::FromID(render_process_id); | 21 RenderProcessHost* host = RenderProcessHost::FromID(render_process_id); |
114 if (host) | 22 if (host) |
115 host->OnMessageReceived(message); | 23 host->OnMessageReceived(message); |
116 } | 24 } |
117 | 25 |
118 base::LazyInstance<RenderWidgetResizeHelper> g_render_widget_task_runner = | |
119 LAZY_INSTANCE_INITIALIZER; | |
120 | |
121 //////////////////////////////////////////////////////////////////////////////// | |
122 // WrappedTask | |
123 | |
124 WrappedTask::WrappedTask(const base::Closure& closure, base::TimeDelta delay) | |
125 : closure_(closure), | |
126 can_run_time_(base::TimeTicks::Now() + delay), | |
127 has_run_(false), | |
128 sequence_number_(0) {} | |
129 | |
130 WrappedTask::~WrappedTask() { | |
131 RemoveFromTaskRunnerQueue(); | |
132 } | |
133 | |
134 bool WrappedTask::ShouldRunBefore(const WrappedTask& other) { | |
135 if (can_run_time_ < other.can_run_time_) | |
136 return true; | |
137 if (can_run_time_ > other.can_run_time_) | |
138 return false; | |
139 if (sequence_number_ < other.sequence_number_) | |
140 return true; | |
141 if (sequence_number_ > other.sequence_number_) | |
142 return false; | |
143 // Sequence numbers are unique, so this should never happen. | |
144 NOTREACHED(); | |
145 return false; | |
146 } | |
147 | |
148 void WrappedTask::Run() { | |
149 if (has_run_) | |
150 return; | |
151 RemoveFromTaskRunnerQueue(); | |
152 has_run_ = true; | |
153 closure_.Run(); | |
154 } | |
155 | |
156 void WrappedTask::AddToTaskRunnerQueue( | |
157 PumpableTaskRunner* pumpable_task_runner) { | |
158 pumpable_task_runner_ = pumpable_task_runner; | |
159 base::AutoLock lock(pumpable_task_runner_->task_queue_lock_); | |
160 static uint64 last_sequence_number = 0; | |
161 last_sequence_number += 1; | |
162 sequence_number_ = last_sequence_number; | |
163 iterator_ = pumpable_task_runner_->task_queue_.insert( | |
164 pumpable_task_runner_->task_queue_.end(), this); | |
165 } | |
166 | |
167 void WrappedTask::RemoveFromTaskRunnerQueue() { | |
168 if (!pumpable_task_runner_.get()) | |
169 return; | |
170 // The scope of the task runner's lock must be limited because removing | |
171 // this reference to the task runner may destroy it. | |
172 { | |
173 base::AutoLock lock(pumpable_task_runner_->task_queue_lock_); | |
174 pumpable_task_runner_->task_queue_.erase(iterator_); | |
175 iterator_ = pumpable_task_runner_->task_queue_.end(); | |
176 } | |
177 pumpable_task_runner_ = NULL; | |
178 } | |
179 | |
180 //////////////////////////////////////////////////////////////////////////////// | |
181 // PumpableTaskRunner | |
182 | |
183 PumpableTaskRunner::PumpableTaskRunner( | |
184 const EventTimedWaitCallback& event_timed_wait_callback) | |
185 : event_(false /* auto-reset */, false /* initially signalled */), | |
186 event_timed_wait_callback_(event_timed_wait_callback), | |
187 target_task_runner_( | |
188 BrowserThread::GetMessageLoopProxyForThread(BrowserThread::UI)) {} | |
189 | |
190 PumpableTaskRunner::~PumpableTaskRunner() { | |
191 // Because tasks hold a reference to the task runner, the task queue must | |
192 // be empty when it is destroyed. | |
193 DCHECK(task_queue_.empty()); | |
194 } | |
195 | |
196 bool PumpableTaskRunner::WaitForSingleWrappedTaskToRun( | |
197 const base::TimeDelta& max_delay) { | |
198 base::TimeTicks stop_waiting_time = base::TimeTicks::Now() + max_delay; | |
199 | |
200 for (;;) { | |
201 base::TimeTicks current_time = base::TimeTicks::Now(); | |
202 base::TimeTicks next_task_time = stop_waiting_time; | |
203 | |
204 // Find the first task to execute in the list. This lookup takes O(n) time, | |
205 // but n is rarely more than 2, and has never been observed to be more than | |
206 // 12. | |
207 WrappedTask* task_to_execute = NULL; | |
208 { | |
209 base::AutoLock lock(task_queue_lock_); | |
210 | |
211 for (WrappedTaskQueue::iterator it = task_queue_.begin(); | |
212 it != task_queue_.end(); ++it) { | |
213 WrappedTask* potential_task = *it; | |
214 | |
215 // If this task is scheduled for the future, take it into account when | |
216 // deciding how long to sleep, and continue on to the next task. | |
217 if (potential_task->can_run_time() > current_time) { | |
218 if (potential_task->can_run_time() < next_task_time) | |
219 next_task_time = potential_task->can_run_time(); | |
220 continue; | |
221 } | |
222 // If there is a better candidate than this task, continue to the next | |
223 // task. | |
224 if (task_to_execute && | |
225 task_to_execute->ShouldRunBefore(*potential_task)) { | |
226 continue; | |
227 } | |
228 task_to_execute = potential_task; | |
229 } | |
230 } | |
231 | |
232 if (task_to_execute) { | |
233 task_to_execute->Run(); | |
234 return true; | |
235 } | |
236 | |
237 // Calculate how much time we have left before we have to stop waiting or | |
238 // until a currently-enqueued task will be ready to run. | |
239 base::TimeDelta max_sleep_time = next_task_time - current_time; | |
240 if (max_sleep_time <= base::TimeDelta::FromMilliseconds(0)) | |
241 break; | |
242 | |
243 event_timed_wait_callback_.Run(&event_, max_sleep_time); | |
244 } | |
245 | |
246 return false; | |
247 } | |
248 | |
249 bool PumpableTaskRunner::EnqueueAndPostWrappedTask( | |
250 const tracked_objects::Location& from_here, | |
251 WrappedTask* task, | |
252 base::TimeDelta delay) { | |
253 task->AddToTaskRunnerQueue(this); | |
254 | |
255 // Notify anyone waiting on the UI thread that there is a new entry in the | |
256 // task map. If they don't find the entry they are looking for, then they | |
257 // will just continue waiting. | |
258 event_.Signal(); | |
259 | |
260 return target_task_runner_->PostDelayedTask( | |
261 from_here, base::Bind(&WrappedTask::Run, base::Owned(task)), delay); | |
262 } | |
263 | |
264 //////////////////////////////////////////////////////////////////////////////// | |
265 // PumpableTaskRunner, base::SingleThreadTaskRunner implementation: | |
266 | |
267 bool PumpableTaskRunner::PostDelayedTask( | |
268 const tracked_objects::Location& from_here, | |
269 const base::Closure& task, | |
270 base::TimeDelta delay) { | |
271 return EnqueueAndPostWrappedTask(from_here, new WrappedTask(task, delay), | |
272 delay); | |
273 } | |
274 | |
275 bool PumpableTaskRunner::PostNonNestableDelayedTask( | |
276 const tracked_objects::Location& from_here, | |
277 const base::Closure& task, | |
278 base::TimeDelta delay) { | |
279 // The correctness of non-nestable events hasn't been proven for this | |
280 // structure. | |
281 NOTREACHED(); | |
282 return false; | |
283 } | |
284 | |
285 bool PumpableTaskRunner::RunsTasksOnCurrentThread() const { | |
286 return target_task_runner_->RunsTasksOnCurrentThread(); | |
287 } | |
288 | |
289 } // namespace | 26 } // namespace |
290 | 27 |
291 //////////////////////////////////////////////////////////////////////////////// | 28 //////////////////////////////////////////////////////////////////////////////// |
292 // RenderWidgetResizeHelper | 29 // RenderWidgetResizeHelper |
293 | 30 |
294 scoped_refptr<base::SingleThreadTaskRunner> | 31 // static |
295 RenderWidgetResizeHelper::task_runner() const { | 32 void RenderWidgetResizeHelper::PostRendererProcessMsg(int render_process_id, |
296 return task_runner_; | 33 const IPC::Message& msg) { |
| 34 ui::WindowResizeHelperMac::Get()->task_runner()->PostDelayedTask( |
| 35 FROM_HERE, base::Bind(HandleRendererIPC, render_process_id, msg), |
| 36 base::TimeDelta()); |
297 } | 37 } |
298 | 38 |
299 // static | 39 // static |
300 RenderWidgetResizeHelper* RenderWidgetResizeHelper::Get() { | |
301 return g_render_widget_task_runner.Pointer(); | |
302 } | |
303 | |
304 bool RenderWidgetResizeHelper::WaitForSingleTaskToRun( | |
305 const base::TimeDelta& max_delay) { | |
306 PumpableTaskRunner* pumpable_task_runner = | |
307 reinterpret_cast<PumpableTaskRunner*>(task_runner_.get()); | |
308 return pumpable_task_runner->WaitForSingleWrappedTaskToRun(max_delay); | |
309 } | |
310 | |
311 void RenderWidgetResizeHelper::PostRendererProcessMsg(int render_process_id, | |
312 const IPC::Message& msg) { | |
313 PumpableTaskRunner* pumpable_task_runner = | |
314 reinterpret_cast<PumpableTaskRunner*>(task_runner_.get()); | |
315 pumpable_task_runner->EnqueueAndPostWrappedTask( | |
316 FROM_HERE, | |
317 new WrappedTask(base::Bind(HandleRendererIPC, render_process_id, msg), | |
318 base::TimeDelta()), | |
319 base::TimeDelta()); | |
320 } | |
321 | |
322 void RenderWidgetResizeHelper::PostGpuProcessMsg(int gpu_host_id, | 40 void RenderWidgetResizeHelper::PostGpuProcessMsg(int gpu_host_id, |
323 const IPC::Message& msg) { | 41 const IPC::Message& msg) { |
324 PumpableTaskRunner* pumpable_task_runner = | 42 ui::WindowResizeHelperMac::Get()->task_runner()->PostDelayedTask( |
325 reinterpret_cast<PumpableTaskRunner*>(task_runner_.get()); | 43 FROM_HERE, base::Bind(HandleGpuIPC, gpu_host_id, msg), base::TimeDelta()); |
326 pumpable_task_runner->EnqueueAndPostWrappedTask( | |
327 FROM_HERE, new WrappedTask(base::Bind(HandleGpuIPC, gpu_host_id, msg), | |
328 base::TimeDelta()), | |
329 base::TimeDelta()); | |
330 } | |
331 | |
332 RenderWidgetResizeHelper::RenderWidgetResizeHelper() { | |
333 task_runner_ = new PumpableTaskRunner(base::Bind(&EventTimedWait)); | |
334 } | |
335 | |
336 RenderWidgetResizeHelper::~RenderWidgetResizeHelper() {} | |
337 | |
338 // static | |
339 void RenderWidgetResizeHelper::EventTimedWait(base::WaitableEvent* event, | |
340 base::TimeDelta delay) { | |
341 base::ThreadRestrictions::ScopedAllowWait allow_wait; | |
342 event->TimedWait(delay); | |
343 } | 44 } |
344 | 45 |
345 } // namespace content | 46 } // namespace content |
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