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| 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/tile_manager.h" | 5 #include "cc/tile_manager.h" |
| 6 | 6 |
| 7 #include <algorithm> | 7 #include <algorithm> |
| 8 | 8 |
| 9 #include "base/bind.h" | 9 #include "base/bind.h" |
| 10 #include "base/debug/trace_event.h" | 10 #include "base/debug/trace_event.h" |
| 11 #include "base/logging.h" | 11 #include "base/logging.h" |
| 12 #include "base/threading/sequenced_worker_pool.h" | 12 #include "base/threading/sequenced_worker_pool.h" |
| 13 #include "cc/rendering_stats.h" | |
| 13 #include "cc/resource_pool.h" | 14 #include "cc/resource_pool.h" |
| 14 #include "cc/tile.h" | 15 #include "cc/tile.h" |
| 15 #include "third_party/skia/include/core/SkDevice.h" | 16 #include "third_party/skia/include/core/SkDevice.h" |
| 16 | 17 |
| 17 namespace { | 18 namespace { |
| 18 | 19 |
| 19 void RasterizeTile(cc::PicturePileImpl* picture_pile, | 20 void RasterizeTile(cc::PicturePileImpl* picture_pile, |
| 20 uint8_t* mapped_buffer, | 21 uint8_t* mapped_buffer, |
| 21 const gfx::Rect& rect) { | 22 const gfx::Rect& rect) { |
| 22 TRACE_EVENT0("cc", "RasterizeTile"); | 23 TRACE_EVENT0("cc", "RasterizeTile"); |
| (...skipping 32 matching lines...) Expand 10 before | Expand all | Expand 10 after Loading... | |
| 55 } | 56 } |
| 56 | 57 |
| 57 TileManager::TileManager( | 58 TileManager::TileManager( |
| 58 TileManagerClient* client, ResourceProvider* resource_provider) | 59 TileManagerClient* client, ResourceProvider* resource_provider) |
| 59 : client_(client), | 60 : client_(client), |
| 60 resource_pool_(ResourcePool::Create(resource_provider, | 61 resource_pool_(ResourcePool::Create(resource_provider, |
| 61 Renderer::ImplPool)), | 62 Renderer::ImplPool)), |
| 62 manage_tiles_pending_(false), | 63 manage_tiles_pending_(false), |
| 63 pending_raster_tasks_(0), | 64 pending_raster_tasks_(0), |
| 64 worker_pool_(new base::SequencedWorkerPool(kMaxRasterThreads, | 65 worker_pool_(new base::SequencedWorkerPool(kMaxRasterThreads, |
| 65 kRasterThreadNamePrefix)) { | 66 kRasterThreadNamePrefix)), |
| 67 rasterize_time_in_seconds_(0) { | |
| 66 } | 68 } |
| 67 | 69 |
| 68 TileManager::~TileManager() { | 70 TileManager::~TileManager() { |
| 69 // Reset global state and manage. This should cause | 71 // Reset global state and manage. This should cause |
| 70 // our memory usage to drop to zero. | 72 // our memory usage to drop to zero. |
| 71 global_state_ = GlobalStateThatImpactsTilePriority(); | 73 global_state_ = GlobalStateThatImpactsTilePriority(); |
| 72 ManageTiles(); | 74 ManageTiles(); |
| 73 DCHECK(tiles_.size() == 0); | 75 DCHECK(tiles_.size() == 0); |
| 74 // This should finish all pending raster tasks and release any | 76 // This should finish all pending raster tasks and release any |
| 75 // uninitialized resources. | 77 // uninitialized resources. |
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| 208 // Sort by bin. | 210 // Sort by bin. |
| 209 std::sort(tiles_.begin(), tiles_.end(), BinComparator()); | 211 std::sort(tiles_.begin(), tiles_.end(), BinComparator()); |
| 210 | 212 |
| 211 // Assign gpu memory and determine what tiles need to be rasterized. | 213 // Assign gpu memory and determine what tiles need to be rasterized. |
| 212 AssignGpuMemoryToTiles(); | 214 AssignGpuMemoryToTiles(); |
| 213 | 215 |
| 214 // Finally, kick the rasterizer. | 216 // Finally, kick the rasterizer. |
| 215 DispatchMoreRasterTasks(); | 217 DispatchMoreRasterTasks(); |
| 216 } | 218 } |
| 217 | 219 |
| 220 void TileManager::renderingStats(RenderingStats* stats) { | |
| 221 stats->totalRasterizeTimeInSeconds += rasterize_time_in_seconds_; | |
| 222 rasterize_time_in_seconds_ = 0; | |
|
nduca
2012/11/29 18:16:30
we also need number of pixels rasterized
Tom Hudson
2012/11/29 20:30:31
Done.
| |
| 223 } | |
| 224 | |
| 225 | |
| 218 void TileManager::AssignGpuMemoryToTiles() { | 226 void TileManager::AssignGpuMemoryToTiles() { |
| 219 TRACE_EVENT0("cc", "TileManager::AssignGpuMemoryToTiles"); | 227 TRACE_EVENT0("cc", "TileManager::AssignGpuMemoryToTiles"); |
| 220 // Some memory cannot be released. Figure out which. | 228 // Some memory cannot be released. Figure out which. |
| 221 size_t unreleasable_bytes = 0; | 229 size_t unreleasable_bytes = 0; |
| 222 for (TileVector::iterator it = tiles_.begin(); it != tiles_.end(); ++it) { | 230 for (TileVector::iterator it = tiles_.begin(); it != tiles_.end(); ++it) { |
| 223 Tile* tile = *it; | 231 Tile* tile = *it; |
| 224 if (!tile->managed_state().can_be_freed) | 232 if (!tile->managed_state().can_be_freed) |
| 225 unreleasable_bytes += tile->bytes_consumed_if_allocated(); | 233 unreleasable_bytes += tile->bytes_consumed_if_allocated(); |
| 226 } | 234 } |
| 227 | 235 |
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| 315 cloned_picture_pile)); | 323 cloned_picture_pile)); |
| 316 } | 324 } |
| 317 | 325 |
| 318 void TileManager::OnRasterTaskCompleted( | 326 void TileManager::OnRasterTaskCompleted( |
| 319 scoped_refptr<Tile> tile, | 327 scoped_refptr<Tile> tile, |
| 320 ResourceProvider::ResourceId resource_id, | 328 ResourceProvider::ResourceId resource_id, |
| 321 scoped_refptr<PicturePileImpl> cloned_picture_pile) { | 329 scoped_refptr<PicturePileImpl> cloned_picture_pile) { |
| 322 TRACE_EVENT0("cc", "TileManager::OnRasterTaskCompleted"); | 330 TRACE_EVENT0("cc", "TileManager::OnRasterTaskCompleted"); |
| 323 --pending_raster_tasks_; | 331 --pending_raster_tasks_; |
| 324 | 332 |
| 333 rasterize_time_in_seconds_ += cloned_picture_pile->rasterizeTime(); | |
| 334 | |
| 325 // Release raster resources. | 335 // Release raster resources. |
| 326 resource_pool_->resource_provider()->unmapPixelBuffer(resource_id); | 336 resource_pool_->resource_provider()->unmapPixelBuffer(resource_id); |
| 327 | 337 |
| 328 ManagedTileState& managed_tile_state = tile->managed_state(); | 338 ManagedTileState& managed_tile_state = tile->managed_state(); |
| 329 managed_tile_state.can_be_freed = true; | 339 managed_tile_state.can_be_freed = true; |
| 330 | 340 |
| 331 // Tile can be freed after the completion of the raster task. Call | 341 // Tile can be freed after the completion of the raster task. Call |
| 332 // AssignGpuMemoryToTiles() to re-assign gpu memory to highest priority | 342 // AssignGpuMemoryToTiles() to re-assign gpu memory to highest priority |
| 333 // tiles. The result of this could be that this tile is no longer | 343 // tiles. The result of this could be that this tile is no longer |
| 334 // allowed to use gpu memory and in that case we need to abort | 344 // allowed to use gpu memory and in that case we need to abort |
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| 355 Tile* tile, ResourceProvider::ResourceId resource_id) { | 365 Tile* tile, ResourceProvider::ResourceId resource_id) { |
| 356 ManagedTileState& managed_tile_state = tile->managed_state(); | 366 ManagedTileState& managed_tile_state = tile->managed_state(); |
| 357 DCHECK(!managed_tile_state.resource_id); | 367 DCHECK(!managed_tile_state.resource_id); |
| 358 managed_tile_state.resource_id = resource_id; | 368 managed_tile_state.resource_id = resource_id; |
| 359 managed_tile_state.resource_id_is_being_initialized = false; | 369 managed_tile_state.resource_id_is_being_initialized = false; |
| 360 // TODO(qinmin): Make this conditional on managed_tile_state.bin == NOW_BIN. | 370 // TODO(qinmin): Make this conditional on managed_tile_state.bin == NOW_BIN. |
| 361 client_->ScheduleRedraw(); | 371 client_->ScheduleRedraw(); |
| 362 } | 372 } |
| 363 | 373 |
| 364 } | 374 } |
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