| 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/resources/tile_manager.h" | 5 #include "cc/resources/tile_manager.h" |
| 6 | 6 |
| 7 #include <algorithm> | 7 #include <algorithm> |
| 8 #include <limits> | 8 #include <limits> |
| 9 #include <string> | 9 #include <string> |
| 10 | 10 |
| (...skipping 152 matching lines...) Expand 10 before | Expand all | Expand 10 after Loading... |
| 163 | 163 |
| 164 void TileManager::UnregisterTile(Tile* tile) { | 164 void TileManager::UnregisterTile(Tile* tile) { |
| 165 TileVector::iterator raster_iter = | 165 TileVector::iterator raster_iter = |
| 166 std::find(tiles_that_need_to_be_rasterized_.begin(), | 166 std::find(tiles_that_need_to_be_rasterized_.begin(), |
| 167 tiles_that_need_to_be_rasterized_.end(), | 167 tiles_that_need_to_be_rasterized_.end(), |
| 168 tile); | 168 tile); |
| 169 if (raster_iter != tiles_that_need_to_be_rasterized_.end()) | 169 if (raster_iter != tiles_that_need_to_be_rasterized_.end()) |
| 170 tiles_that_need_to_be_rasterized_.erase(raster_iter); | 170 tiles_that_need_to_be_rasterized_.erase(raster_iter); |
| 171 | 171 |
| 172 tiles_that_need_to_be_initialized_for_activation_.erase(tile); | 172 tiles_that_need_to_be_initialized_for_activation_.erase(tile); |
| 173 oom_tiles_that_need_to_be_initialized_for_activation_.erase(tile); |
| 173 | 174 |
| 174 DCHECK(std::find(tiles_.begin(), tiles_.end(), tile) != tiles_.end()); | 175 DCHECK(std::find(tiles_.begin(), tiles_.end(), tile) != tiles_.end()); |
| 175 FreeResourcesForTile(tile); | 176 FreeResourcesForTile(tile); |
| 176 tiles_.erase(std::remove(tiles_.begin(), tiles_.end(), tile)); | 177 tiles_.erase(std::remove(tiles_.begin(), tiles_.end(), tile)); |
| 177 } | 178 } |
| 178 | 179 |
| 179 bool TileManager::ShouldForceTasksRequiredForActivationToComplete() const { | 180 bool TileManager::ShouldForceTasksRequiredForActivationToComplete() const { |
| 180 return client_->ShouldForceTileUploadsRequiredForActivationToComplete(); | 181 return client_->ShouldForceTileUploadsRequiredForActivationToComplete(); |
| 181 } | 182 } |
| 182 | 183 |
| 184 void TileManager::DidFinishedRunningTasks() { |
| 185 // When OOM, keep re-assigning memory until we reach a steady state |
| 186 // where top-priority tiles are initialized. |
| 187 if (!memory_stats_from_last_assign_.bytes_over) |
| 188 return; |
| 189 |
| 190 raster_worker_pool_->CheckForCompletedTasks(); |
| 191 |
| 192 AssignGpuMemoryToTiles(); |
| 193 |
| 194 if (!oom_tiles_that_need_to_be_initialized_for_activation_.empty()) |
| 195 ReassignGpuMemoryToOOMTilesRequiredForActivation(); |
| 196 |
| 197 // |tiles_that_need_to_be_rasterized_| will be empty when we reach a |
| 198 // steady memory state. Keep scheduling tasks until we reach this state. |
| 199 if (!tiles_that_need_to_be_rasterized_.empty()) { |
| 200 ScheduleTasks(); |
| 201 return; |
| 202 } |
| 203 |
| 204 // Use on-demand raster for any tiles that have not been been assigned |
| 205 // memory after reaching a steady memory state. |
| 206 for (TileSet::iterator it = |
| 207 oom_tiles_that_need_to_be_initialized_for_activation_.begin(); |
| 208 it != oom_tiles_that_need_to_be_initialized_for_activation_.end(); |
| 209 ++it) { |
| 210 Tile* tile = *it; |
| 211 ManagedTileState& mts = tile->managed_state(); |
| 212 mts.tile_versions[mts.raster_mode].set_rasterize_on_demand(); |
| 213 } |
| 214 oom_tiles_that_need_to_be_initialized_for_activation_.clear(); |
| 215 |
| 216 DCHECK_EQ(0u, tiles_that_need_to_be_initialized_for_activation_.size()); |
| 217 client_->NotifyReadyToActivate(); |
| 218 } |
| 219 |
| 220 void TileManager::DidFinishedRunningTasksRequiredForActivation() { |
| 221 // This is only a true indication that all tiles required for |
| 222 // activation are initialized when no tiles are OOM. We need to |
| 223 // wait for DidFinishRunningTasks() to be called, try to re-assign |
| 224 // memory and in worst case use on-demand raster when tiles |
| 225 // required for activation are OOM. |
| 226 if (!oom_tiles_that_need_to_be_initialized_for_activation_.empty()) |
| 227 return; |
| 228 |
| 229 client_->NotifyReadyToActivate(); |
| 230 } |
| 231 |
| 183 class BinComparator { | 232 class BinComparator { |
| 184 public: | 233 public: |
| 185 bool operator() (const Tile* a, const Tile* b) const { | 234 bool operator() (const Tile* a, const Tile* b) const { |
| 186 const ManagedTileState& ams = a->managed_state(); | 235 const ManagedTileState& ams = a->managed_state(); |
| 187 const ManagedTileState& bms = b->managed_state(); | 236 const ManagedTileState& bms = b->managed_state(); |
| 188 if (ams.bin[HIGH_PRIORITY_BIN] != bms.bin[HIGH_PRIORITY_BIN]) | 237 if (ams.bin[HIGH_PRIORITY_BIN] != bms.bin[HIGH_PRIORITY_BIN]) |
| 189 return ams.bin[HIGH_PRIORITY_BIN] < bms.bin[HIGH_PRIORITY_BIN]; | 238 return ams.bin[HIGH_PRIORITY_BIN] < bms.bin[HIGH_PRIORITY_BIN]; |
| 190 | 239 |
| 191 if (ams.bin[LOW_PRIORITY_BIN] != bms.bin[LOW_PRIORITY_BIN]) | 240 if (ams.bin[LOW_PRIORITY_BIN] != bms.bin[LOW_PRIORITY_BIN]) |
| 192 return ams.bin[LOW_PRIORITY_BIN] < bms.bin[LOW_PRIORITY_BIN]; | 241 return ams.bin[LOW_PRIORITY_BIN] < bms.bin[LOW_PRIORITY_BIN]; |
| (...skipping 106 matching lines...) Expand 10 before | Expand all | Expand 10 after Loading... |
| 299 std::sort(tiles_.begin(), tiles_.end(), BinComparator()); | 348 std::sort(tiles_.begin(), tiles_.end(), BinComparator()); |
| 300 } | 349 } |
| 301 | 350 |
| 302 void TileManager::ManageTiles() { | 351 void TileManager::ManageTiles() { |
| 303 TRACE_EVENT0("cc", "TileManager::ManageTiles"); | 352 TRACE_EVENT0("cc", "TileManager::ManageTiles"); |
| 304 AssignBinsToTiles(); | 353 AssignBinsToTiles(); |
| 305 SortTiles(); | 354 SortTiles(); |
| 306 AssignGpuMemoryToTiles(); | 355 AssignGpuMemoryToTiles(); |
| 307 CleanUpUnusedImageDecodeTasks(); | 356 CleanUpUnusedImageDecodeTasks(); |
| 308 | 357 |
| 309 // This could have changed after AssignGpuMemoryToTiles. | |
| 310 if (AreTilesRequiredForActivationReady()) | |
| 311 client_->NotifyReadyToActivate(); | |
| 312 | |
| 313 TRACE_EVENT_INSTANT1( | 358 TRACE_EVENT_INSTANT1( |
| 314 "cc", "DidManage", TRACE_EVENT_SCOPE_THREAD, | 359 "cc", "DidManage", TRACE_EVENT_SCOPE_THREAD, |
| 315 "state", TracedValue::FromValue(BasicStateAsValue().release())); | 360 "state", TracedValue::FromValue(BasicStateAsValue().release())); |
| 316 | 361 |
| 317 // Finally, schedule rasterizer tasks. | 362 // Finally, schedule rasterizer tasks. |
| 318 ScheduleTasks(); | 363 ScheduleTasks(); |
| 319 } | 364 } |
| 320 | 365 |
| 321 void TileManager::CheckForCompletedTileUploads() { | 366 void TileManager::CheckForCompletedTileUploads() { |
| 322 raster_worker_pool_->CheckForCompletedTasks(); | 367 raster_worker_pool_->CheckForCompletedTasks(); |
| 368 |
| 369 if (did_initialize_visible_tile_) { |
| 370 client_->DidInitializeVisibleTile(); |
| 371 did_initialize_visible_tile_ = false; |
| 372 } |
| 323 } | 373 } |
| 324 | 374 |
| 325 void TileManager::GetMemoryStats( | 375 void TileManager::GetMemoryStats( |
| 326 size_t* memory_required_bytes, | 376 size_t* memory_required_bytes, |
| 327 size_t* memory_nice_to_have_bytes, | 377 size_t* memory_nice_to_have_bytes, |
| 328 size_t* memory_used_bytes) const { | 378 size_t* memory_used_bytes) const { |
| 329 *memory_required_bytes = 0; | 379 *memory_required_bytes = 0; |
| 330 *memory_nice_to_have_bytes = 0; | 380 *memory_nice_to_have_bytes = 0; |
| 331 *memory_used_bytes = resource_pool_->acquired_memory_usage_bytes(); | 381 *memory_used_bytes = resource_pool_->acquired_memory_usage_bytes(); |
| 332 for (TileVector::const_iterator it = tiles_.begin(); | 382 for (TileVector::const_iterator it = tiles_.begin(); |
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| 410 return std::min(raster_mode, current_mode); | 460 return std::min(raster_mode, current_mode); |
| 411 } | 461 } |
| 412 | 462 |
| 413 void TileManager::AssignGpuMemoryToTiles() { | 463 void TileManager::AssignGpuMemoryToTiles() { |
| 414 TRACE_EVENT0("cc", "TileManager::AssignGpuMemoryToTiles"); | 464 TRACE_EVENT0("cc", "TileManager::AssignGpuMemoryToTiles"); |
| 415 | 465 |
| 416 // Now give memory out to the tiles until we're out, and build | 466 // Now give memory out to the tiles until we're out, and build |
| 417 // the needs-to-be-rasterized queue. | 467 // the needs-to-be-rasterized queue. |
| 418 tiles_that_need_to_be_rasterized_.clear(); | 468 tiles_that_need_to_be_rasterized_.clear(); |
| 419 tiles_that_need_to_be_initialized_for_activation_.clear(); | 469 tiles_that_need_to_be_initialized_for_activation_.clear(); |
| 470 oom_tiles_that_need_to_be_initialized_for_activation_.clear(); |
| 420 | 471 |
| 421 size_t bytes_releasable = 0; | 472 size_t bytes_releasable = 0; |
| 422 for (TileVector::const_iterator it = tiles_.begin(); | 473 for (TileVector::const_iterator it = tiles_.begin(); |
| 423 it != tiles_.end(); | 474 it != tiles_.end(); |
| 424 ++it) { | 475 ++it) { |
| 425 const Tile* tile = *it; | 476 const Tile* tile = *it; |
| 426 const ManagedTileState& mts = tile->managed_state(); | 477 const ManagedTileState& mts = tile->managed_state(); |
| 427 for (int mode = 0; mode < NUM_RASTER_MODES; ++mode) { | 478 for (int mode = 0; mode < NUM_RASTER_MODES; ++mode) { |
| 428 if (mts.tile_versions[mode].resource_) | 479 if (mts.tile_versions[mode].resource_) |
| 429 bytes_releasable += tile->bytes_consumed_if_allocated(); | 480 bytes_releasable += tile->bytes_consumed_if_allocated(); |
| 430 } | 481 } |
| 431 } | 482 } |
| 432 | 483 |
| 433 // Cast to prevent overflow. | 484 // Cast to prevent overflow. |
| 434 int64 bytes_available = | 485 int64 bytes_available = |
| 435 static_cast<int64>(bytes_releasable) + | 486 static_cast<int64>(bytes_releasable) + |
| 436 static_cast<int64>(global_state_.memory_limit_in_bytes) - | 487 static_cast<int64>(global_state_.memory_limit_in_bytes) - |
| 437 static_cast<int64>(resource_pool_->acquired_memory_usage_bytes()); | 488 static_cast<int64>(resource_pool_->acquired_memory_usage_bytes()); |
| 438 | 489 |
| 439 size_t bytes_allocatable = | 490 size_t bytes_allocatable = |
| 440 std::max(static_cast<int64>(0), bytes_available); | 491 std::max(static_cast<int64>(0), bytes_available); |
| 441 | 492 |
| 442 size_t bytes_that_exceeded_memory_budget_in_now_bin = 0; | 493 size_t bytes_that_exceeded_memory_budget = 0; |
| 443 size_t bytes_left = bytes_allocatable; | 494 size_t bytes_left = bytes_allocatable; |
| 444 size_t bytes_oom_in_now_bin_on_pending_tree = 0; | |
| 445 TileVector tiles_requiring_memory_but_oomed; | |
| 446 bool higher_priority_tile_oomed = false; | 495 bool higher_priority_tile_oomed = false; |
| 447 for (TileVector::iterator it = tiles_.begin(); | 496 for (TileVector::iterator it = tiles_.begin(); |
| 448 it != tiles_.end(); | 497 it != tiles_.end(); |
| 449 ++it) { | 498 ++it) { |
| 450 Tile* tile = *it; | 499 Tile* tile = *it; |
| 451 ManagedTileState& mts = tile->managed_state(); | 500 ManagedTileState& mts = tile->managed_state(); |
| 452 | 501 |
| 453 mts.raster_mode = DetermineRasterMode(tile); | 502 mts.raster_mode = DetermineRasterMode(tile); |
| 454 | 503 |
| 455 ManagedTileState::TileVersion& tile_version = | 504 ManagedTileState::TileVersion& tile_version = |
| (...skipping 17 matching lines...) Expand all Loading... |
| 473 tile_bytes += tile->bytes_consumed_if_allocated(); | 522 tile_bytes += tile->bytes_consumed_if_allocated(); |
| 474 } | 523 } |
| 475 | 524 |
| 476 // If we don't have the required version, and it's not in flight | 525 // If we don't have the required version, and it's not in flight |
| 477 // then we'll have to pay to create a new task. | 526 // then we'll have to pay to create a new task. |
| 478 if (!tile_version.resource_ && tile_version.raster_task_.is_null()) | 527 if (!tile_version.resource_ && tile_version.raster_task_.is_null()) |
| 479 tile_bytes += tile->bytes_consumed_if_allocated(); | 528 tile_bytes += tile->bytes_consumed_if_allocated(); |
| 480 | 529 |
| 481 // Tile is OOM. | 530 // Tile is OOM. |
| 482 if (tile_bytes > bytes_left) { | 531 if (tile_bytes > bytes_left) { |
| 483 mts.tile_versions[mts.raster_mode].set_rasterize_on_demand(); | 532 if (tile->required_for_activation()) |
| 484 if (mts.tree_bin[PENDING_TREE] == NOW_BIN) { | 533 oom_tiles_that_need_to_be_initialized_for_activation_.insert(tile); |
| 485 tiles_requiring_memory_but_oomed.push_back(tile); | |
| 486 bytes_oom_in_now_bin_on_pending_tree += tile_bytes; | |
| 487 } | |
| 488 FreeResourcesForTile(tile); | 534 FreeResourcesForTile(tile); |
| 489 higher_priority_tile_oomed = true; | 535 higher_priority_tile_oomed = true; |
| 536 bytes_that_exceeded_memory_budget += tile_bytes; |
| 490 continue; | 537 continue; |
| 491 } | 538 } |
| 492 | 539 |
| 493 tile_version.set_use_resource(); | 540 tile_version.set_use_resource(); |
| 494 bytes_left -= tile_bytes; | 541 bytes_left -= tile_bytes; |
| 495 | 542 |
| 496 // Tile shouldn't be rasterized if we've failed to assign | 543 // Tile shouldn't be rasterized if we've failed to assign |
| 497 // gpu memory to a higher priority tile. This is important for | 544 // gpu memory to a higher priority tile. This is important for |
| 498 // two reasons: | 545 // two reasons: |
| 499 // 1. Tile size should not impact raster priority. | 546 // 1. Tile size should not impact raster priority. |
| 500 // 2. Tile with unreleasable memory could otherwise incorrectly | 547 // 2. Tile with unreleasable memory could otherwise incorrectly |
| 501 // be added as it's not affected by |bytes_allocatable|. | 548 // be added as it's not affected by |bytes_allocatable|. |
| 502 if (higher_priority_tile_oomed) | 549 if (higher_priority_tile_oomed) |
| 503 continue; | 550 continue; |
| 504 | 551 |
| 505 if (!tile_version.resource_) | 552 if (!tile_version.resource_) |
| 506 tiles_that_need_to_be_rasterized_.push_back(tile); | 553 tiles_that_need_to_be_rasterized_.push_back(tile); |
| 507 | 554 |
| 508 if (!tile->IsReadyToDraw(NULL) && | 555 if (!tile->IsReadyToDraw(NULL) && |
| 509 tile->required_for_activation()) { | 556 tile->required_for_activation()) { |
| 510 AddRequiredTileForActivation(tile); | 557 AddRequiredTileForActivation(tile); |
| 511 } | 558 } |
| 512 } | 559 } |
| 513 | 560 |
| 514 // In OOM situation, we iterate tiles_, remove the memory for active tree | 561 ever_exceeded_memory_budget_ |= bytes_that_exceeded_memory_budget > 0; |
| 515 // and not the now bin. And give them to bytes_oom_in_now_bin_on_pending_tree | |
| 516 if (!tiles_requiring_memory_but_oomed.empty()) { | |
| 517 size_t bytes_freed = 0; | |
| 518 for (TileVector::iterator it = tiles_.begin(); it != tiles_.end(); ++it) { | |
| 519 Tile* tile = *it; | |
| 520 ManagedTileState& mts = tile->managed_state(); | |
| 521 ManagedTileState::TileVersion& tile_version = | |
| 522 mts.tile_versions[mts.raster_mode]; | |
| 523 if (mts.tree_bin[PENDING_TREE] == NEVER_BIN && | |
| 524 mts.tree_bin[ACTIVE_TREE] != NOW_BIN) { | |
| 525 size_t bytes_that_can_be_freed = 0; | |
| 526 | |
| 527 // If the tile is in the to-rasterize list, but it has no task, | |
| 528 // then it means that we have assigned memory for it. | |
| 529 TileVector::iterator raster_it = | |
| 530 std::find(tiles_that_need_to_be_rasterized_.begin(), | |
| 531 tiles_that_need_to_be_rasterized_.end(), | |
| 532 tile); | |
| 533 if (raster_it != tiles_that_need_to_be_rasterized_.end() && | |
| 534 tile_version.raster_task_.is_null()) { | |
| 535 bytes_that_can_be_freed += tile->bytes_consumed_if_allocated(); | |
| 536 } | |
| 537 | |
| 538 // Also consider all of the completed resources for freeing. | |
| 539 for (int mode = 0; mode < NUM_RASTER_MODES; ++mode) { | |
| 540 ManagedTileState::TileVersion& tile_version = | |
| 541 mts.tile_versions[mode]; | |
| 542 if (tile_version.resource_) { | |
| 543 DCHECK(!tile->required_for_activation()); | |
| 544 bytes_that_can_be_freed += tile->bytes_consumed_if_allocated(); | |
| 545 } | |
| 546 } | |
| 547 | |
| 548 // If we can free anything, then do so. | |
| 549 if (bytes_that_can_be_freed > 0) { | |
| 550 FreeResourcesForTile(tile); | |
| 551 bytes_freed += bytes_that_can_be_freed; | |
| 552 mts.tile_versions[mts.raster_mode].set_rasterize_on_demand(); | |
| 553 if (raster_it != tiles_that_need_to_be_rasterized_.end()) | |
| 554 tiles_that_need_to_be_rasterized_.erase(raster_it); | |
| 555 } | |
| 556 } | |
| 557 | |
| 558 if (bytes_oom_in_now_bin_on_pending_tree <= bytes_freed) | |
| 559 break; | |
| 560 } | |
| 561 | |
| 562 for (TileVector::iterator it = tiles_requiring_memory_but_oomed.begin(); | |
| 563 it != tiles_requiring_memory_but_oomed.end() && bytes_freed > 0; | |
| 564 ++it) { | |
| 565 Tile* tile = *it; | |
| 566 ManagedTileState& mts = tile->managed_state(); | |
| 567 size_t bytes_needed = tile->bytes_consumed_if_allocated(); | |
| 568 if (bytes_needed > bytes_freed) | |
| 569 continue; | |
| 570 mts.tile_versions[mts.raster_mode].set_use_resource(); | |
| 571 bytes_freed -= bytes_needed; | |
| 572 tiles_that_need_to_be_rasterized_.push_back(tile); | |
| 573 if (tile->required_for_activation()) | |
| 574 AddRequiredTileForActivation(tile); | |
| 575 } | |
| 576 } | |
| 577 | |
| 578 ever_exceeded_memory_budget_ |= | |
| 579 bytes_that_exceeded_memory_budget_in_now_bin > 0; | |
| 580 if (ever_exceeded_memory_budget_) { | 562 if (ever_exceeded_memory_budget_) { |
| 581 TRACE_COUNTER_ID2("cc", "over_memory_budget", this, | 563 TRACE_COUNTER_ID2("cc", "over_memory_budget", this, |
| 582 "budget", global_state_.memory_limit_in_bytes, | 564 "budget", global_state_.memory_limit_in_bytes, |
| 583 "over", bytes_that_exceeded_memory_budget_in_now_bin); | 565 "over", bytes_that_exceeded_memory_budget); |
| 584 } | 566 } |
| 585 memory_stats_from_last_assign_.total_budget_in_bytes = | 567 memory_stats_from_last_assign_.total_budget_in_bytes = |
| 586 global_state_.memory_limit_in_bytes; | 568 global_state_.memory_limit_in_bytes; |
| 587 memory_stats_from_last_assign_.bytes_allocated = | 569 memory_stats_from_last_assign_.bytes_allocated = |
| 588 bytes_allocatable - bytes_left; | 570 bytes_allocatable - bytes_left; |
| 589 memory_stats_from_last_assign_.bytes_unreleasable = | 571 memory_stats_from_last_assign_.bytes_unreleasable = |
| 590 bytes_allocatable - bytes_releasable; | 572 bytes_allocatable - bytes_releasable; |
| 591 memory_stats_from_last_assign_.bytes_over = | 573 memory_stats_from_last_assign_.bytes_over = |
| 592 bytes_that_exceeded_memory_budget_in_now_bin; | 574 bytes_that_exceeded_memory_budget; |
| 575 } |
| 576 |
| 577 void TileManager::ReassignGpuMemoryToOOMTilesRequiredForActivation() { |
| 578 TRACE_EVENT0( |
| 579 "cc", "TileManager::ReassignGpuMemoryToOOMTilesRequiredForActivation"); |
| 580 |
| 581 size_t bytes_oom_for_required_tiles = 0; |
| 582 TileVector tiles_requiring_memory_but_oomed; |
| 583 for (TileVector::iterator it = tiles_.begin(); it != tiles_.end(); ++it) { |
| 584 Tile* tile = *it; |
| 585 if (oom_tiles_that_need_to_be_initialized_for_activation_.find(tile) == |
| 586 oom_tiles_that_need_to_be_initialized_for_activation_.end()) |
| 587 continue; |
| 588 |
| 589 tiles_requiring_memory_but_oomed.push_back(tile); |
| 590 bytes_oom_for_required_tiles += tile->bytes_consumed_if_allocated(); |
| 591 } |
| 592 |
| 593 if (tiles_requiring_memory_but_oomed.empty()) |
| 594 return; |
| 595 |
| 596 // In OOM situation, we iterate tiles_, remove the memory for active tree |
| 597 // and not the now bin. And give them to bytes_oom_for_required_tiles |
| 598 size_t bytes_freed = 0; |
| 599 for (TileVector::reverse_iterator it = tiles_.rbegin(); |
| 600 it != tiles_.rend(); ++it) { |
| 601 Tile* tile = *it; |
| 602 ManagedTileState& mts = tile->managed_state(); |
| 603 if (mts.tree_bin[PENDING_TREE] == NEVER_BIN && |
| 604 mts.tree_bin[ACTIVE_TREE] != NOW_BIN) { |
| 605 ManagedTileState::TileVersion& tile_version = |
| 606 mts.tile_versions[mts.raster_mode]; |
| 607 |
| 608 // If the tile is in the to-rasterize list, but it has no task, |
| 609 // then it means that we have assigned memory for it. |
| 610 TileVector::iterator raster_it = |
| 611 std::find(tiles_that_need_to_be_rasterized_.begin(), |
| 612 tiles_that_need_to_be_rasterized_.end(), |
| 613 tile); |
| 614 if (raster_it != tiles_that_need_to_be_rasterized_.end() && |
| 615 tile_version.raster_task_.is_null()) { |
| 616 bytes_freed += tile->bytes_consumed_if_allocated(); |
| 617 tiles_that_need_to_be_rasterized_.erase(raster_it); |
| 618 } |
| 619 |
| 620 // Also consider all of the completed resources for freeing. |
| 621 for (int mode = 0; mode < NUM_RASTER_MODES; ++mode) { |
| 622 if (mts.tile_versions[mode].resource_) { |
| 623 DCHECK(!tile->required_for_activation()); |
| 624 FreeResourceForTile(tile, static_cast<RasterMode>(mode)); |
| 625 bytes_freed += tile->bytes_consumed_if_allocated(); |
| 626 } |
| 627 } |
| 628 } |
| 629 |
| 630 if (bytes_oom_for_required_tiles <= bytes_freed) |
| 631 break; |
| 632 } |
| 633 |
| 634 for (TileVector::iterator it = tiles_requiring_memory_but_oomed.begin(); |
| 635 it != tiles_requiring_memory_but_oomed.end() && bytes_freed > 0; |
| 636 ++it) { |
| 637 Tile* tile = *it; |
| 638 ManagedTileState& mts = tile->managed_state(); |
| 639 size_t bytes_needed = tile->bytes_consumed_if_allocated(); |
| 640 if (bytes_needed > bytes_freed) |
| 641 continue; |
| 642 mts.tile_versions[mts.raster_mode].set_use_resource(); |
| 643 bytes_freed -= bytes_needed; |
| 644 tiles_that_need_to_be_rasterized_.push_back(tile); |
| 645 DCHECK(tile->required_for_activation()); |
| 646 AddRequiredTileForActivation(tile); |
| 647 oom_tiles_that_need_to_be_initialized_for_activation_.erase(tile); |
| 648 } |
| 593 } | 649 } |
| 594 | 650 |
| 595 void TileManager::CleanUpUnusedImageDecodeTasks() { | 651 void TileManager::CleanUpUnusedImageDecodeTasks() { |
| 596 // Calculate a set of layers that are used by at least one tile. | 652 // Calculate a set of layers that are used by at least one tile. |
| 597 base::hash_set<int> used_layers; | 653 base::hash_set<int> used_layers; |
| 598 for (TileVector::iterator it = tiles_.begin(); it != tiles_.end(); ++it) | 654 for (TileVector::iterator it = tiles_.begin(); it != tiles_.end(); ++it) |
| 599 used_layers.insert((*it)->layer_id()); | 655 used_layers.insert((*it)->layer_id()); |
| 600 | 656 |
| 601 // Now calculate the set of layers in |image_decode_tasks_| that are not used | 657 // Now calculate the set of layers in |image_decode_tasks_| that are not used |
| 602 // by any tile. | 658 // by any tile. |
| (...skipping 30 matching lines...) Expand all Loading... |
| 633 void TileManager::FreeUnusedResourcesForTile(Tile* tile) { | 689 void TileManager::FreeUnusedResourcesForTile(Tile* tile) { |
| 634 RasterMode used_mode = HIGH_QUALITY_RASTER_MODE; | 690 RasterMode used_mode = HIGH_QUALITY_RASTER_MODE; |
| 635 bool version_is_used = tile->IsReadyToDraw(&used_mode); | 691 bool version_is_used = tile->IsReadyToDraw(&used_mode); |
| 636 for (int mode = 0; mode < NUM_RASTER_MODES; ++mode) { | 692 for (int mode = 0; mode < NUM_RASTER_MODES; ++mode) { |
| 637 if (!version_is_used || mode != used_mode) | 693 if (!version_is_used || mode != used_mode) |
| 638 FreeResourceForTile(tile, static_cast<RasterMode>(mode)); | 694 FreeResourceForTile(tile, static_cast<RasterMode>(mode)); |
| 639 } | 695 } |
| 640 } | 696 } |
| 641 | 697 |
| 642 void TileManager::ScheduleTasks() { | 698 void TileManager::ScheduleTasks() { |
| 643 TRACE_EVENT0("cc", "TileManager::ScheduleTasks"); | 699 TRACE_EVENT1("cc", "TileManager::ScheduleTasks", |
| 700 "count", tiles_that_need_to_be_rasterized_.size()); |
| 644 RasterWorkerPool::RasterTask::Queue tasks; | 701 RasterWorkerPool::RasterTask::Queue tasks; |
| 645 | 702 |
| 646 // Build a new task queue containing all task currently needed. Tasks | 703 // Build a new task queue containing all task currently needed. Tasks |
| 647 // are added in order of priority, highest priority task first. | 704 // are added in order of priority, highest priority task first. |
| 648 for (TileVector::iterator it = tiles_that_need_to_be_rasterized_.begin(); | 705 for (TileVector::iterator it = tiles_that_need_to_be_rasterized_.begin(); |
| 649 it != tiles_that_need_to_be_rasterized_.end(); | 706 it != tiles_that_need_to_be_rasterized_.end(); |
| 650 ++it) { | 707 ++it) { |
| 651 Tile* tile = *it; | 708 Tile* tile = *it; |
| 652 ManagedTileState& mts = tile->managed_state(); | 709 ManagedTileState& mts = tile->managed_state(); |
| 653 ManagedTileState::TileVersion& tile_version = | 710 ManagedTileState::TileVersion& tile_version = |
| 654 mts.tile_versions[mts.raster_mode]; | 711 mts.tile_versions[mts.raster_mode]; |
| 655 | 712 |
| 656 DCHECK(tile_version.requires_resource()); | 713 DCHECK(tile_version.requires_resource()); |
| 657 DCHECK(!tile_version.resource_); | 714 DCHECK(!tile_version.resource_); |
| 658 | 715 |
| 659 if (tile_version.raster_task_.is_null()) | 716 if (tile_version.raster_task_.is_null()) |
| 660 tile_version.raster_task_ = CreateRasterTask(tile); | 717 tile_version.raster_task_ = CreateRasterTask(tile); |
| 661 | 718 |
| 662 tasks.Append(tile_version.raster_task_, tile->required_for_activation()); | 719 tasks.Append(tile_version.raster_task_, tile->required_for_activation()); |
| 663 } | 720 } |
| 664 | 721 |
| 665 // Schedule running of |tasks|. This replaces any previously | 722 // Schedule running of |tasks|. This replaces any previously |
| 666 // scheduled tasks and effectively cancels all tasks not present | 723 // scheduled tasks and effectively cancels all tasks not present |
| 667 // in |tasks|. | 724 // in |tasks|. |
| 668 raster_worker_pool_->ScheduleTasks(&tasks); | 725 raster_worker_pool_->ScheduleTasks(&tasks); |
| 669 } | 726 } |
| 670 | 727 |
| 671 RasterWorkerPool::Task TileManager::CreateImageDecodeTask( | 728 RasterWorkerPool::Task TileManager::CreateImageDecodeTask( |
| 672 Tile* tile, skia::LazyPixelRef* pixel_ref) { | 729 Tile* tile, skia::LazyPixelRef* pixel_ref) { |
| 673 TRACE_EVENT0("cc", "TileManager::CreateImageDecodeTask"); | |
| 674 | |
| 675 return RasterWorkerPool::CreateImageDecodeTask( | 730 return RasterWorkerPool::CreateImageDecodeTask( |
| 676 pixel_ref, | 731 pixel_ref, |
| 677 tile->layer_id(), | 732 tile->layer_id(), |
| 678 rendering_stats_instrumentation_, | 733 rendering_stats_instrumentation_, |
| 679 base::Bind(&TileManager::OnImageDecodeTaskCompleted, | 734 base::Bind(&TileManager::OnImageDecodeTaskCompleted, |
| 680 base::Unretained(this), | 735 base::Unretained(this), |
| 681 tile->layer_id(), | 736 tile->layer_id(), |
| 682 base::Unretained(pixel_ref))); | 737 base::Unretained(pixel_ref))); |
| 683 } | 738 } |
| 684 | 739 |
| 685 RasterTaskMetadata TileManager::GetRasterTaskMetadata( | 740 RasterTaskMetadata TileManager::GetRasterTaskMetadata( |
| 686 const Tile& tile) const { | 741 const Tile& tile) const { |
| 687 RasterTaskMetadata metadata; | 742 RasterTaskMetadata metadata; |
| 688 const ManagedTileState& mts = tile.managed_state(); | 743 const ManagedTileState& mts = tile.managed_state(); |
| 689 metadata.is_tile_in_pending_tree_now_bin = | 744 metadata.is_tile_in_pending_tree_now_bin = |
| 690 mts.tree_bin[PENDING_TREE] == NOW_BIN; | 745 mts.tree_bin[PENDING_TREE] == NOW_BIN; |
| 691 metadata.tile_resolution = mts.resolution; | 746 metadata.tile_resolution = mts.resolution; |
| 692 metadata.layer_id = tile.layer_id(); | 747 metadata.layer_id = tile.layer_id(); |
| 693 metadata.tile_id = &tile; | 748 metadata.tile_id = &tile; |
| 694 metadata.source_frame_number = tile.source_frame_number(); | 749 metadata.source_frame_number = tile.source_frame_number(); |
| 695 return metadata; | 750 return metadata; |
| 696 } | 751 } |
| 697 | 752 |
| 698 RasterWorkerPool::RasterTask TileManager::CreateRasterTask(Tile* tile) { | 753 RasterWorkerPool::RasterTask TileManager::CreateRasterTask(Tile* tile) { |
| 699 TRACE_EVENT0("cc", "TileManager::CreateRasterTask"); | |
| 700 | |
| 701 ManagedTileState& mts = tile->managed_state(); | 754 ManagedTileState& mts = tile->managed_state(); |
| 702 | 755 |
| 703 scoped_ptr<ResourcePool::Resource> resource = | 756 scoped_ptr<ResourcePool::Resource> resource = |
| 704 resource_pool_->AcquireResource(tile->tile_size_.size(), | 757 resource_pool_->AcquireResource(tile->tile_size_.size(), |
| 705 texture_format_); | 758 texture_format_); |
| 706 const Resource* const_resource = resource.get(); | 759 const Resource* const_resource = resource.get(); |
| 707 | 760 |
| 708 // Create and queue all image decode tasks that this tile depends on. | 761 // Create and queue all image decode tasks that this tile depends on. |
| 709 RasterWorkerPool::Task::Set decode_tasks; | 762 RasterWorkerPool::Task::Set decode_tasks; |
| 710 PixelRefTaskMap& existing_pixel_refs = image_decode_tasks_[tile->layer_id()]; | 763 PixelRefTaskMap& existing_pixel_refs = image_decode_tasks_[tile->layer_id()]; |
| (...skipping 93 matching lines...) Expand 10 before | Expand all | Expand 10 after Loading... |
| 804 } | 857 } |
| 805 | 858 |
| 806 void TileManager::DidFinishTileInitialization(Tile* tile) { | 859 void TileManager::DidFinishTileInitialization(Tile* tile) { |
| 807 if (tile->priority(ACTIVE_TREE).distance_to_visible_in_pixels == 0) | 860 if (tile->priority(ACTIVE_TREE).distance_to_visible_in_pixels == 0) |
| 808 did_initialize_visible_tile_ = true; | 861 did_initialize_visible_tile_ = true; |
| 809 if (tile->required_for_activation()) { | 862 if (tile->required_for_activation()) { |
| 810 // It's possible that a tile required for activation is not in this list | 863 // It's possible that a tile required for activation is not in this list |
| 811 // if it was marked as being required after being dispatched for | 864 // if it was marked as being required after being dispatched for |
| 812 // rasterization but before AssignGPUMemory was called again. | 865 // rasterization but before AssignGPUMemory was called again. |
| 813 tiles_that_need_to_be_initialized_for_activation_.erase(tile); | 866 tiles_that_need_to_be_initialized_for_activation_.erase(tile); |
| 814 | |
| 815 if (AreTilesRequiredForActivationReady()) | |
| 816 client_->NotifyReadyToActivate(); | |
| 817 } | 867 } |
| 818 } | 868 } |
| 819 | 869 |
| 820 void TileManager::DidTileTreeBinChange(Tile* tile, | 870 void TileManager::DidTileTreeBinChange(Tile* tile, |
| 821 TileManagerBin new_tree_bin, | 871 TileManagerBin new_tree_bin, |
| 822 WhichTree tree) { | 872 WhichTree tree) { |
| 823 ManagedTileState& mts = tile->managed_state(); | 873 ManagedTileState& mts = tile->managed_state(); |
| 824 mts.tree_bin[tree] = new_tree_bin; | 874 mts.tree_bin[tree] = new_tree_bin; |
| 825 } | 875 } |
| 826 | 876 |
| 827 } // namespace cc | 877 } // namespace cc |
| OLD | NEW |