OLD | NEW |
1 // Copyright 2012 The Chromium Authors. All rights reserved. | 1 // Copyright 2012 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 "cc/tiles/tile_manager.h" | 5 #include "cc/tiles/tile_manager.h" |
6 | 6 |
7 #include <stddef.h> | 7 #include <stddef.h> |
8 #include <stdint.h> | 8 #include <stdint.h> |
9 | 9 |
10 #include <algorithm> | 10 #include <algorithm> |
11 #include <limits> | 11 #include <limits> |
12 #include <string> | 12 #include <string> |
13 | 13 |
14 #include "base/bind.h" | 14 #include "base/bind.h" |
15 #include "base/json/json_writer.h" | 15 #include "base/json/json_writer.h" |
16 #include "base/logging.h" | 16 #include "base/logging.h" |
17 #include "base/macros.h" | 17 #include "base/macros.h" |
18 #include "base/metrics/histogram.h" | 18 #include "base/metrics/histogram.h" |
19 #include "base/numerics/safe_conversions.h" | 19 #include "base/numerics/safe_conversions.h" |
20 #include "base/trace_event/trace_event_argument.h" | 20 #include "base/trace_event/trace_event_argument.h" |
21 #include "cc/base/histograms.h" | 21 #include "cc/base/histograms.h" |
22 #include "cc/debug/devtools_instrumentation.h" | 22 #include "cc/debug/devtools_instrumentation.h" |
23 #include "cc/debug/frame_viewer_instrumentation.h" | 23 #include "cc/debug/frame_viewer_instrumentation.h" |
24 #include "cc/debug/traced_value.h" | 24 #include "cc/debug/traced_value.h" |
25 #include "cc/layers/picture_layer_impl.h" | 25 #include "cc/layers/picture_layer_impl.h" |
26 #include "cc/raster/raster_buffer.h" | |
27 #include "cc/raster/task_category.h" | 26 #include "cc/raster/task_category.h" |
28 #include "cc/raster/tile_task_runner.h" | 27 #include "cc/raster/tile_task_runner.h" |
29 #include "cc/tiles/tile.h" | 28 #include "cc/tiles/tile.h" |
30 #include "ui/gfx/geometry/rect_conversions.h" | 29 #include "ui/gfx/geometry/rect_conversions.h" |
31 | 30 |
32 namespace cc { | 31 namespace cc { |
33 namespace { | 32 namespace { |
34 | 33 |
35 // Flag to indicate whether we should try and detect that | 34 // Flag to indicate whether we should try and detect that |
36 // a tile is of solid color. | 35 // a tile is of solid color. |
37 const bool kUseColorEstimator = true; | 36 const bool kUseColorEstimator = true; |
38 | 37 |
39 DEFINE_SCOPED_UMA_HISTOGRAM_AREA_TIMER( | 38 DEFINE_SCOPED_UMA_HISTOGRAM_AREA_TIMER( |
40 ScopedRasterTaskTimer, | 39 ScopedRasterTaskTimer, |
41 "Compositing.%s.RasterTask.RasterUs", | 40 "Compositing.%s.RasterTask.RasterUs", |
42 "Compositing.%s.RasterTask.RasterPixelsPerMs"); | 41 "Compositing.%s.RasterTask.RasterPixelsPerMs"); |
43 | 42 |
44 class RasterTaskImpl : public RasterTask { | 43 class RasterTaskImpl : public Task { |
45 public: | 44 public: |
46 RasterTaskImpl(const Resource* resource, | 45 RasterTaskImpl(RasterBufferProvider* raster_buffer_provider, |
| 46 const Resource* resource, |
47 scoped_refptr<RasterSource> raster_source, | 47 scoped_refptr<RasterSource> raster_source, |
48 const gfx::Rect& content_rect, | 48 const gfx::Rect& content_rect, |
49 const gfx::Rect& invalid_content_rect, | 49 const gfx::Rect& invalid_content_rect, |
50 float contents_scale, | 50 float contents_scale, |
51 const RasterSource::PlaybackSettings& playback_settings, | 51 const RasterSource::PlaybackSettings& playback_settings, |
52 TileResolution tile_resolution, | 52 TileResolution tile_resolution, |
53 int layer_id, | 53 int layer_id, |
54 uint64_t source_prepare_tiles_id, | 54 uint64_t source_prepare_tiles_id, |
55 const void* tile, | 55 const void* tile, |
56 uint64_t new_content_id, | 56 uint64_t new_content_id, |
57 uint64_t previous_content_id, | 57 uint64_t previous_content_id, |
58 uint64_t resource_content_id, | 58 uint64_t resource_content_id, |
59 int source_frame_number, | 59 int source_frame_number, |
60 const base::Callback<void(bool)>& reply, | 60 const base::Callback<void(bool)>& reply, |
61 ImageDecodeTask::Vector* dependencies) | 61 Task::Vector* dependencies) |
62 : RasterTask(dependencies), | 62 : Task(dependencies), |
| 63 raster_buffer_provider_(raster_buffer_provider), |
63 resource_(resource), | 64 resource_(resource), |
64 raster_source_(std::move(raster_source)), | 65 raster_source_(std::move(raster_source)), |
65 content_rect_(content_rect), | 66 content_rect_(content_rect), |
66 invalid_content_rect_(invalid_content_rect), | 67 invalid_content_rect_(invalid_content_rect), |
67 contents_scale_(contents_scale), | 68 contents_scale_(contents_scale), |
68 playback_settings_(playback_settings), | 69 playback_settings_(playback_settings), |
69 tile_resolution_(tile_resolution), | 70 tile_resolution_(tile_resolution), |
70 layer_id_(layer_id), | 71 layer_id_(layer_id), |
71 source_prepare_tiles_id_(source_prepare_tiles_id), | 72 source_prepare_tiles_id_(source_prepare_tiles_id), |
72 tile_(tile), | 73 tile_(tile), |
73 new_content_id_(new_content_id), | 74 new_content_id_(new_content_id), |
74 previous_content_id_(previous_content_id), | 75 previous_content_id_(previous_content_id), |
75 resource_content_id_(resource_content_id), | 76 resource_content_id_(resource_content_id), |
76 source_frame_number_(source_frame_number), | 77 source_frame_number_(source_frame_number), |
77 reply_(reply) {} | 78 reply_(reply) {} |
78 | 79 |
79 // Overridden from Task: | 80 // Overridden from Task: |
| 81 void ScheduleOnOriginThread() override { |
| 82 DCHECK(raster_buffer_provider_); |
| 83 DCHECK(!raster_buffer_); |
| 84 raster_buffer_ = raster_buffer_provider_->AcquireBufferForRaster( |
| 85 resource_, resource_content_id_, previous_content_id_); |
| 86 } |
| 87 |
| 88 void CompleteOnOriginThread() override { |
| 89 DCHECK(raster_buffer_provider_); |
| 90 raster_buffer_provider_->ReleaseBufferForRaster(std::move(raster_buffer_)); |
| 91 reply_.Run(!HasFinishedRunning()); |
| 92 } |
| 93 |
80 void RunOnWorkerThread() override { | 94 void RunOnWorkerThread() override { |
81 TRACE_EVENT1("cc", "RasterizerTaskImpl::RunOnWorkerThread", | 95 TRACE_EVENT1("cc", "RasterizerTaskImpl::RunOnWorkerThread", |
82 "source_prepare_tiles_id", source_prepare_tiles_id_); | 96 "source_prepare_tiles_id", source_prepare_tiles_id_); |
83 | 97 |
84 DCHECK(raster_source_.get()); | 98 DCHECK(raster_source_.get()); |
85 DCHECK(raster_buffer_); | 99 DCHECK(raster_buffer_); |
86 | 100 |
87 frame_viewer_instrumentation::ScopedRasterTask raster_task( | 101 frame_viewer_instrumentation::ScopedRasterTask raster_task( |
88 tile_, tile_resolution_, source_frame_number_, layer_id_); | 102 tile_, tile_resolution_, source_frame_number_, layer_id_); |
89 ScopedRasterTaskTimer timer; | 103 ScopedRasterTaskTimer timer; |
90 timer.SetArea(content_rect_.size().GetArea()); | 104 timer.SetArea(content_rect_.size().GetArea()); |
91 | 105 |
92 DCHECK(raster_source_); | 106 DCHECK(raster_source_); |
93 | 107 |
94 raster_buffer_->Playback(raster_source_.get(), content_rect_, | 108 raster_buffer_->Playback(raster_source_.get(), content_rect_, |
95 invalid_content_rect_, new_content_id_, | 109 invalid_content_rect_, new_content_id_, |
96 contents_scale_, playback_settings_); | 110 contents_scale_, playback_settings_); |
97 } | 111 } |
98 | 112 |
99 // Overridden from TileTask: | |
100 void ScheduleOnOriginThread(TileTaskClient* client) override { | |
101 DCHECK(!raster_buffer_); | |
102 raster_buffer_ = client->AcquireBufferForRaster( | |
103 resource_, resource_content_id_, previous_content_id_); | |
104 } | |
105 void CompleteOnOriginThread(TileTaskClient* client) override { | |
106 client->ReleaseBufferForRaster(std::move(raster_buffer_)); | |
107 reply_.Run(!HasFinishedRunning()); | |
108 } | |
109 | |
110 protected: | 113 protected: |
111 ~RasterTaskImpl() override { DCHECK(!raster_buffer_); } | 114 ~RasterTaskImpl() override { DCHECK(!raster_buffer_); } |
112 | 115 |
113 private: | 116 private: |
| 117 RasterBufferProvider* raster_buffer_provider_; |
114 const Resource* resource_; | 118 const Resource* resource_; |
115 scoped_refptr<RasterSource> raster_source_; | 119 scoped_refptr<RasterSource> raster_source_; |
116 gfx::Rect content_rect_; | 120 gfx::Rect content_rect_; |
117 gfx::Rect invalid_content_rect_; | 121 gfx::Rect invalid_content_rect_; |
118 float contents_scale_; | 122 float contents_scale_; |
119 RasterSource::PlaybackSettings playback_settings_; | 123 RasterSource::PlaybackSettings playback_settings_; |
120 TileResolution tile_resolution_; | 124 TileResolution tile_resolution_; |
121 int layer_id_; | 125 int layer_id_; |
122 uint64_t source_prepare_tiles_id_; | 126 uint64_t source_prepare_tiles_id_; |
123 const void* tile_; | 127 const void* tile_; |
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135 // other remaining tasks. | 139 // other remaining tasks. |
136 const size_t kRequiredForActivationDoneTaskPriority = 1u; | 140 const size_t kRequiredForActivationDoneTaskPriority = 1u; |
137 const size_t kRequiredForDrawDoneTaskPriority = 2u; | 141 const size_t kRequiredForDrawDoneTaskPriority = 2u; |
138 const size_t kAllDoneTaskPriority = 3u; | 142 const size_t kAllDoneTaskPriority = 3u; |
139 | 143 |
140 // For correctness, |kTileTaskPriorityBase| must be greater than | 144 // For correctness, |kTileTaskPriorityBase| must be greater than |
141 // all task set done task priorities. | 145 // all task set done task priorities. |
142 size_t kTileTaskPriorityBase = 10u; | 146 size_t kTileTaskPriorityBase = 10u; |
143 | 147 |
144 void InsertNodeForTask(TaskGraph* graph, | 148 void InsertNodeForTask(TaskGraph* graph, |
145 TileTask* task, | 149 Task* task, |
146 uint16_t category, | 150 uint16_t category, |
147 uint16_t priority, | 151 uint16_t priority, |
148 size_t dependencies) { | 152 size_t dependencies) { |
149 DCHECK(std::find_if(graph->nodes.begin(), graph->nodes.end(), | 153 DCHECK(std::find_if(graph->nodes.begin(), graph->nodes.end(), |
150 [task](const TaskGraph::Node& node) { | 154 [task](const TaskGraph::Node& node) { |
151 return node.task == task; | 155 return node.task == task; |
152 }) == graph->nodes.end()); | 156 }) == graph->nodes.end()); |
153 graph->nodes.push_back( | 157 graph->nodes.push_back( |
154 TaskGraph::Node(task, category, priority, dependencies)); | 158 TaskGraph::Node(task, category, priority, dependencies)); |
155 } | 159 } |
156 | 160 |
157 void InsertNodesForRasterTask(TaskGraph* graph, | 161 void InsertNodesForRasterTask(TaskGraph* graph, |
158 RasterTask* raster_task, | 162 Task* raster_task, |
159 const ImageDecodeTask::Vector& decode_tasks, | 163 const Task::Vector& decode_tasks, |
160 size_t priority, | 164 size_t priority, |
161 bool use_gpu_rasterization, | 165 bool use_gpu_rasterization, |
162 bool high_priority) { | 166 bool high_priority) { |
163 size_t dependencies = 0u; | 167 size_t dependencies = 0u; |
164 | 168 |
165 // Determine the TaskCategory for raster tasks - if a task uses GPU, it | 169 // Determine the TaskCategory for raster tasks - if a task uses GPU, it |
166 // cannot run concurrently and is assigned | 170 // cannot run concurrently and is assigned |
167 // TASK_CATEGORY_NONCONCURRENT_FOREGROUND, regardless of its priority. | 171 // TASK_CATEGORY_NONCONCURRENT_FOREGROUND, regardless of its priority. |
168 // Otherwise its category is based on its priority. | 172 // Otherwise its category is based on its priority. |
169 TaskCategory raster_task_category; | 173 TaskCategory raster_task_category; |
170 if (use_gpu_rasterization) { | 174 if (use_gpu_rasterization) { |
171 raster_task_category = TASK_CATEGORY_NONCONCURRENT_FOREGROUND; | 175 raster_task_category = TASK_CATEGORY_NONCONCURRENT_FOREGROUND; |
172 } else { | 176 } else { |
173 raster_task_category = | 177 raster_task_category = |
174 high_priority ? TASK_CATEGORY_FOREGROUND : TASK_CATEGORY_BACKGROUND; | 178 high_priority ? TASK_CATEGORY_FOREGROUND : TASK_CATEGORY_BACKGROUND; |
175 } | 179 } |
176 | 180 |
177 // Determine the TaskCategory for decode tasks. This category is based on | 181 // Determine the TaskCategory for decode tasks. This category is based on |
178 // the priority of the raster task which depends on it. | 182 // the priority of the raster task which depends on it. |
179 TaskCategory decode_task_category = | 183 TaskCategory decode_task_category = |
180 high_priority ? TASK_CATEGORY_FOREGROUND : TASK_CATEGORY_BACKGROUND; | 184 high_priority ? TASK_CATEGORY_FOREGROUND : TASK_CATEGORY_BACKGROUND; |
181 | 185 |
182 // Insert image decode tasks. | 186 // Insert image decode tasks. |
183 for (ImageDecodeTask::Vector::const_iterator it = decode_tasks.begin(); | 187 for (Task::Vector::const_iterator it = decode_tasks.begin(); |
184 it != decode_tasks.end(); ++it) { | 188 it != decode_tasks.end(); ++it) { |
185 ImageDecodeTask* decode_task = it->get(); | 189 Task* decode_task = it->get(); |
186 | 190 |
187 // Skip if already decoded. | 191 // Skip if already decoded. |
188 if (decode_task->HasCompleted()) | 192 if (decode_task->HasCompleted()) |
189 continue; | 193 continue; |
190 | 194 |
191 dependencies++; | 195 dependencies++; |
192 | 196 |
193 // Add decode task if it doesn't already exists in graph. | 197 // Add decode task if it doesn't already exists in graph. |
194 TaskGraph::Node::Vector::iterator decode_it = | 198 TaskGraph::Node::Vector::iterator decode_it = |
195 std::find_if(graph->nodes.begin(), graph->nodes.end(), | 199 std::find_if(graph->nodes.begin(), graph->nodes.end(), |
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211 InsertNodeForTask(graph, decode_task, decode_task_category, priority, 0u); | 215 InsertNodeForTask(graph, decode_task, decode_task_category, priority, 0u); |
212 } | 216 } |
213 | 217 |
214 graph->edges.push_back(TaskGraph::Edge(decode_task, raster_task)); | 218 graph->edges.push_back(TaskGraph::Edge(decode_task, raster_task)); |
215 } | 219 } |
216 | 220 |
217 InsertNodeForTask(graph, raster_task, raster_task_category, priority, | 221 InsertNodeForTask(graph, raster_task, raster_task_category, priority, |
218 dependencies); | 222 dependencies); |
219 } | 223 } |
220 | 224 |
221 class TaskSetFinishedTaskImpl : public TileTask { | 225 class TaskSetFinishedTaskImpl : public Task { |
222 public: | 226 public: |
223 explicit TaskSetFinishedTaskImpl( | 227 explicit TaskSetFinishedTaskImpl( |
224 base::SequencedTaskRunner* task_runner, | 228 base::SequencedTaskRunner* task_runner, |
225 const base::Closure& on_task_set_finished_callback) | 229 const base::Closure& on_task_set_finished_callback) |
226 : task_runner_(task_runner), | 230 : task_runner_(task_runner), |
227 on_task_set_finished_callback_(on_task_set_finished_callback) {} | 231 on_task_set_finished_callback_(on_task_set_finished_callback) {} |
228 | 232 |
229 // Overridden from Task: | 233 // Overridden from Task: |
| 234 void ScheduleOnOriginThread() override {} |
| 235 void CompleteOnOriginThread() override {} |
230 void RunOnWorkerThread() override { | 236 void RunOnWorkerThread() override { |
231 TRACE_EVENT0("cc", "TaskSetFinishedTaskImpl::RunOnWorkerThread"); | 237 TRACE_EVENT0("cc", "TaskSetFinishedTaskImpl::RunOnWorkerThread"); |
232 TaskSetFinished(); | 238 TaskSetFinished(); |
233 } | 239 } |
234 | 240 |
235 // Overridden from TileTask: | |
236 void ScheduleOnOriginThread(TileTaskClient* client) override {} | |
237 void CompleteOnOriginThread(TileTaskClient* client) override {} | |
238 | |
239 protected: | 241 protected: |
240 ~TaskSetFinishedTaskImpl() override {} | 242 ~TaskSetFinishedTaskImpl() override {} |
241 | 243 |
242 void TaskSetFinished() { | 244 void TaskSetFinished() { |
243 task_runner_->PostTask(FROM_HERE, on_task_set_finished_callback_); | 245 task_runner_->PostTask(FROM_HERE, on_task_set_finished_callback_); |
244 } | 246 } |
245 | 247 |
246 private: | 248 private: |
247 scoped_refptr<base::SequencedTaskRunner> task_runner_; | 249 scoped_refptr<base::SequencedTaskRunner> task_runner_; |
248 const base::Closure on_task_set_finished_callback_; | 250 const base::Closure on_task_set_finished_callback_; |
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733 | 735 |
734 // Track the number of dependents for each *_done task. | 736 // Track the number of dependents for each *_done task. |
735 size_t required_for_activate_count = 0; | 737 size_t required_for_activate_count = 0; |
736 size_t required_for_draw_count = 0; | 738 size_t required_for_draw_count = 0; |
737 size_t all_count = 0; | 739 size_t all_count = 0; |
738 | 740 |
739 size_t priority = kTileTaskPriorityBase; | 741 size_t priority = kTileTaskPriorityBase; |
740 | 742 |
741 graph_.Reset(); | 743 graph_.Reset(); |
742 | 744 |
743 scoped_refptr<TileTask> required_for_activation_done_task = | 745 scoped_refptr<Task> required_for_activation_done_task = |
744 CreateTaskSetFinishedTask( | 746 CreateTaskSetFinishedTask( |
745 &TileManager::DidFinishRunningTileTasksRequiredForActivation); | 747 &TileManager::DidFinishRunningTileTasksRequiredForActivation); |
746 scoped_refptr<TileTask> required_for_draw_done_task = | 748 scoped_refptr<Task> required_for_draw_done_task = CreateTaskSetFinishedTask( |
747 CreateTaskSetFinishedTask( | 749 &TileManager::DidFinishRunningTileTasksRequiredForDraw); |
748 &TileManager::DidFinishRunningTileTasksRequiredForDraw); | 750 scoped_refptr<Task> all_done_task = |
749 scoped_refptr<TileTask> all_done_task = | |
750 CreateTaskSetFinishedTask(&TileManager::DidFinishRunningAllTileTasks); | 751 CreateTaskSetFinishedTask(&TileManager::DidFinishRunningAllTileTasks); |
751 | 752 |
752 // Build a new task queue containing all task currently needed. Tasks | 753 // Build a new task queue containing all task currently needed. Tasks |
753 // are added in order of priority, highest priority task first. | 754 // are added in order of priority, highest priority task first. |
754 for (auto& prioritized_tile : tiles_that_need_to_be_rasterized) { | 755 for (auto& prioritized_tile : tiles_that_need_to_be_rasterized) { |
755 Tile* tile = prioritized_tile.tile(); | 756 Tile* tile = prioritized_tile.tile(); |
756 | 757 |
757 DCHECK(tile->draw_info().requires_resource()); | 758 DCHECK(tile->draw_info().requires_resource()); |
758 DCHECK(!tile->draw_info().resource_); | 759 DCHECK(!tile->draw_info().resource_); |
759 | 760 |
760 if (!tile->raster_task_) | 761 if (!tile->raster_task_) |
761 tile->raster_task_ = CreateRasterTask(prioritized_tile); | 762 tile->raster_task_ = CreateRasterTask(prioritized_tile); |
762 | 763 |
763 RasterTask* task = tile->raster_task_.get(); | 764 Task* task = tile->raster_task_.get(); |
764 DCHECK(!task->HasCompleted()); | 765 DCHECK(!task->HasCompleted()); |
765 | 766 |
766 if (tile->required_for_activation()) { | 767 if (tile->required_for_activation()) { |
767 required_for_activate_count++; | 768 required_for_activate_count++; |
768 graph_.edges.push_back( | 769 graph_.edges.push_back( |
769 TaskGraph::Edge(task, required_for_activation_done_task.get())); | 770 TaskGraph::Edge(task, required_for_activation_done_task.get())); |
770 } | 771 } |
771 if (tile->required_for_draw()) { | 772 if (tile->required_for_draw()) { |
772 required_for_draw_count++; | 773 required_for_draw_count++; |
773 graph_.edges.push_back( | 774 graph_.edges.push_back( |
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819 std::move(required_for_activation_done_task); | 820 std::move(required_for_activation_done_task); |
820 required_for_draw_done_task_ = std::move(required_for_draw_done_task); | 821 required_for_draw_done_task_ = std::move(required_for_draw_done_task); |
821 all_done_task_ = std::move(all_done_task); | 822 all_done_task_ = std::move(all_done_task); |
822 | 823 |
823 did_check_for_completed_tasks_since_last_schedule_tasks_ = false; | 824 did_check_for_completed_tasks_since_last_schedule_tasks_ = false; |
824 | 825 |
825 TRACE_EVENT_ASYNC_STEP_INTO1("cc", "ScheduledTasks", this, "running", "state", | 826 TRACE_EVENT_ASYNC_STEP_INTO1("cc", "ScheduledTasks", this, "running", "state", |
826 ScheduledTasksStateAsValue()); | 827 ScheduledTasksStateAsValue()); |
827 } | 828 } |
828 | 829 |
829 scoped_refptr<RasterTask> TileManager::CreateRasterTask( | 830 scoped_refptr<Task> TileManager::CreateRasterTask( |
830 const PrioritizedTile& prioritized_tile) { | 831 const PrioritizedTile& prioritized_tile) { |
831 Tile* tile = prioritized_tile.tile(); | 832 Tile* tile = prioritized_tile.tile(); |
832 | 833 |
833 // Get the resource. | 834 // Get the resource. |
834 uint64_t resource_content_id = 0; | 835 uint64_t resource_content_id = 0; |
835 Resource* resource = nullptr; | 836 Resource* resource = nullptr; |
836 if (use_partial_raster_ && tile->invalidated_id()) { | 837 if (use_partial_raster_ && tile->invalidated_id()) { |
837 // TODO(danakj): For resources that are in use, we should still grab them | 838 // TODO(danakj): For resources that are in use, we should still grab them |
838 // and copy from them instead of rastering everything. crbug.com/492754 | 839 // and copy from them instead of rastering everything. crbug.com/492754 |
839 resource = | 840 resource = |
840 resource_pool_->TryAcquireResourceWithContentId(tile->invalidated_id()); | 841 resource_pool_->TryAcquireResourceWithContentId(tile->invalidated_id()); |
841 } | 842 } |
842 if (resource) { | 843 if (resource) { |
843 resource_content_id = tile->invalidated_id(); | 844 resource_content_id = tile->invalidated_id(); |
844 DCHECK_EQ(DetermineResourceFormat(tile), resource->format()); | 845 DCHECK_EQ(DetermineResourceFormat(tile), resource->format()); |
845 } else { | 846 } else { |
846 resource = resource_pool_->AcquireResource(tile->desired_texture_size(), | 847 resource = resource_pool_->AcquireResource(tile->desired_texture_size(), |
847 DetermineResourceFormat(tile)); | 848 DetermineResourceFormat(tile)); |
848 } | 849 } |
849 | 850 |
850 // For LOW_RESOLUTION tiles, we don't draw or predecode images. | 851 // For LOW_RESOLUTION tiles, we don't draw or predecode images. |
851 RasterSource::PlaybackSettings playback_settings; | 852 RasterSource::PlaybackSettings playback_settings; |
852 playback_settings.skip_images = | 853 playback_settings.skip_images = |
853 prioritized_tile.priority().resolution == LOW_RESOLUTION; | 854 prioritized_tile.priority().resolution == LOW_RESOLUTION; |
854 | 855 |
855 // Create and queue all image decode tasks that this tile depends on. | 856 // Create and queue all image decode tasks that this tile depends on. |
856 ImageDecodeTask::Vector decode_tasks; | 857 Task::Vector decode_tasks; |
857 std::vector<DrawImage>& images = scheduled_draw_images_[tile->id()]; | 858 std::vector<DrawImage>& images = scheduled_draw_images_[tile->id()]; |
858 images.clear(); | 859 images.clear(); |
859 if (!playback_settings.skip_images) { | 860 if (!playback_settings.skip_images) { |
860 prioritized_tile.raster_source()->GetDiscardableImagesInRect( | 861 prioritized_tile.raster_source()->GetDiscardableImagesInRect( |
861 tile->enclosing_layer_rect(), tile->contents_scale(), &images); | 862 tile->enclosing_layer_rect(), tile->contents_scale(), &images); |
862 } | 863 } |
863 | 864 |
864 // TODO(vmpstr): We should disable image hijack canvas in | 865 // TODO(vmpstr): We should disable image hijack canvas in |
865 // |playback_settings| here if |images| is empty. | 866 // |playback_settings| here if |images| is empty. |
866 | 867 |
867 for (auto it = images.begin(); it != images.end();) { | 868 for (auto it = images.begin(); it != images.end();) { |
868 scoped_refptr<ImageDecodeTask> task; | 869 scoped_refptr<Task> task; |
869 bool need_to_unref_when_finished = | 870 bool need_to_unref_when_finished = |
870 image_decode_controller_->GetTaskForImageAndRef( | 871 image_decode_controller_->GetTaskForImageAndRef( |
871 *it, prepare_tiles_count_, &task); | 872 *it, prepare_tiles_count_, &task); |
872 if (task) | 873 if (task) |
873 decode_tasks.push_back(task); | 874 decode_tasks.push_back(task); |
874 | 875 |
875 if (need_to_unref_when_finished) | 876 if (need_to_unref_when_finished) |
876 ++it; | 877 ++it; |
877 else | 878 else |
878 it = images.erase(it); | 879 it = images.erase(it); |
879 } | 880 } |
880 | 881 |
881 return make_scoped_refptr(new RasterTaskImpl( | 882 return make_scoped_refptr(new RasterTaskImpl( |
882 resource, prioritized_tile.raster_source(), tile->content_rect(), | 883 tile_task_runner_, resource, prioritized_tile.raster_source(), |
883 tile->invalidated_content_rect(), tile->contents_scale(), | 884 tile->content_rect(), tile->invalidated_content_rect(), |
884 playback_settings, prioritized_tile.priority().resolution, | 885 tile->contents_scale(), playback_settings, |
885 tile->layer_id(), prepare_tiles_count_, static_cast<const void*>(tile), | 886 prioritized_tile.priority().resolution, tile->layer_id(), |
886 tile->id(), tile->invalidated_id(), resource_content_id, | 887 prepare_tiles_count_, static_cast<const void*>(tile), tile->id(), |
887 tile->source_frame_number(), | 888 tile->invalidated_id(), resource_content_id, tile->source_frame_number(), |
888 base::Bind(&TileManager::OnRasterTaskCompleted, base::Unretained(this), | 889 base::Bind(&TileManager::OnRasterTaskCompleted, base::Unretained(this), |
889 tile->id(), resource), | 890 tile->id(), resource), |
890 &decode_tasks)); | 891 &decode_tasks)); |
891 } | 892 } |
892 | 893 |
893 void TileManager::OnRasterTaskCompleted( | 894 void TileManager::OnRasterTaskCompleted( |
894 Tile::Id tile_id, | 895 Tile::Id tile_id, |
895 Resource* resource, | 896 Resource* resource, |
896 bool was_canceled) { | 897 bool was_canceled) { |
897 DCHECK(tiles_.find(tile_id) != tiles_.end()); | 898 DCHECK(tiles_.find(tile_id) != tiles_.end()); |
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1133 state->SetBoolean("ready_to_activate", signals_.ready_to_activate); | 1134 state->SetBoolean("ready_to_activate", signals_.ready_to_activate); |
1134 state->SetBoolean("ready_to_draw", signals_.ready_to_draw); | 1135 state->SetBoolean("ready_to_draw", signals_.ready_to_draw); |
1135 state->SetBoolean("all_tile_tasks_completed", | 1136 state->SetBoolean("all_tile_tasks_completed", |
1136 signals_.all_tile_tasks_completed); | 1137 signals_.all_tile_tasks_completed); |
1137 state->EndDictionary(); | 1138 state->EndDictionary(); |
1138 return std::move(state); | 1139 return std::move(state); |
1139 } | 1140 } |
1140 | 1141 |
1141 // Utility function that can be used to create a "Task set finished" task that | 1142 // Utility function that can be used to create a "Task set finished" task that |
1142 // posts |callback| to |task_runner| when run. | 1143 // posts |callback| to |task_runner| when run. |
1143 scoped_refptr<TileTask> TileManager::CreateTaskSetFinishedTask( | 1144 scoped_refptr<Task> TileManager::CreateTaskSetFinishedTask( |
1144 void (TileManager::*callback)()) { | 1145 void (TileManager::*callback)()) { |
1145 return make_scoped_refptr(new TaskSetFinishedTaskImpl( | 1146 return make_scoped_refptr(new TaskSetFinishedTaskImpl( |
1146 task_runner_.get(), | 1147 task_runner_.get(), |
1147 base::Bind(callback, task_set_finished_weak_ptr_factory_.GetWeakPtr()))); | 1148 base::Bind(callback, task_set_finished_weak_ptr_factory_.GetWeakPtr()))); |
1148 } | 1149 } |
1149 | 1150 |
1150 TileManager::MemoryUsage::MemoryUsage() | 1151 TileManager::MemoryUsage::MemoryUsage() |
1151 : memory_bytes_(0), resource_count_(0) {} | 1152 : memory_bytes_(0), resource_count_(0) {} |
1152 | 1153 |
1153 TileManager::MemoryUsage::MemoryUsage(size_t memory_bytes, | 1154 TileManager::MemoryUsage::MemoryUsage(size_t memory_bytes, |
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1217 void TileManager::Signals::reset() { | 1218 void TileManager::Signals::reset() { |
1218 ready_to_activate = false; | 1219 ready_to_activate = false; |
1219 did_notify_ready_to_activate = false; | 1220 did_notify_ready_to_activate = false; |
1220 ready_to_draw = false; | 1221 ready_to_draw = false; |
1221 did_notify_ready_to_draw = false; | 1222 did_notify_ready_to_draw = false; |
1222 all_tile_tasks_completed = false; | 1223 all_tile_tasks_completed = false; |
1223 did_notify_all_tile_tasks_completed = false; | 1224 did_notify_all_tile_tasks_completed = false; |
1224 } | 1225 } |
1225 | 1226 |
1226 } // namespace cc | 1227 } // namespace cc |
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