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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/layers/picture_layer_impl.h" | 5 #include "cc/layers/picture_layer_impl.h" |
| 6 | 6 |
| 7 #include <algorithm> | 7 #include <algorithm> |
| 8 #include <limits> | 8 #include <limits> |
| 9 | 9 |
| 10 #include "base/time/time.h" | 10 #include "base/time/time.h" |
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| 79 LayerTreeImpl* tree_impl) { | 79 LayerTreeImpl* tree_impl) { |
| 80 return PictureLayerImpl::Create(tree_impl, id()).PassAs<LayerImpl>(); | 80 return PictureLayerImpl::Create(tree_impl, id()).PassAs<LayerImpl>(); |
| 81 } | 81 } |
| 82 | 82 |
| 83 void PictureLayerImpl::PushPropertiesTo(LayerImpl* base_layer) { | 83 void PictureLayerImpl::PushPropertiesTo(LayerImpl* base_layer) { |
| 84 // It's possible this layer was never drawn or updated (e.g. because it was | 84 // It's possible this layer was never drawn or updated (e.g. because it was |
| 85 // a descendant of an opacity 0 layer). | 85 // a descendant of an opacity 0 layer). |
| 86 DoPostCommitInitializationIfNeeded(); | 86 DoPostCommitInitializationIfNeeded(); |
| 87 PictureLayerImpl* layer_impl = static_cast<PictureLayerImpl*>(base_layer); | 87 PictureLayerImpl* layer_impl = static_cast<PictureLayerImpl*>(base_layer); |
| 88 | 88 |
| 89 // We have already synced the important bits from the the active layer, and | |
| 90 // we will soon swap out its tilings and use them for recycling. However, | |
| 91 // there are now tiles in this layer's tilings that were unref'd and replaced | |
| 92 // with new tiles (due to invalidation). This resets all active priorities on | |
| 93 // the to-be-recycled tiling to ensure replaced tiles don't linger and take | |
| 94 // memory (due to a stale 'active' priority). | |
| 95 if (layer_impl->tilings_) | |
| 96 layer_impl->tilings_->DidBecomeRecycled(); | |
| 97 | |
| 98 LayerImpl::PushPropertiesTo(base_layer); | 89 LayerImpl::PushPropertiesTo(base_layer); |
| 99 | 90 |
| 100 // When the pending tree pushes to the active tree, the pending twin | 91 // When the pending tree pushes to the active tree, the pending twin |
| 101 // disappears. | 92 // disappears. |
| 102 layer_impl->twin_layer_ = NULL; | 93 layer_impl->twin_layer_ = NULL; |
| 103 twin_layer_ = NULL; | 94 twin_layer_ = NULL; |
| 104 | 95 |
| 105 layer_impl->SetIsMask(is_mask_); | 96 layer_impl->SetIsMask(is_mask_); |
| 106 layer_impl->pile_ = pile_; | 97 layer_impl->pile_ = pile_; |
| 107 | 98 |
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| 214 float width; | 205 float width; |
| 215 if (*iter && iter->IsReadyToDraw()) { | 206 if (*iter && iter->IsReadyToDraw()) { |
| 216 ManagedTileState::TileVersion::Mode mode = | 207 ManagedTileState::TileVersion::Mode mode = |
| 217 iter->GetTileVersionForDrawing().mode(); | 208 iter->GetTileVersionForDrawing().mode(); |
| 218 if (mode == ManagedTileState::TileVersion::SOLID_COLOR_MODE) { | 209 if (mode == ManagedTileState::TileVersion::SOLID_COLOR_MODE) { |
| 219 color = DebugColors::SolidColorTileBorderColor(); | 210 color = DebugColors::SolidColorTileBorderColor(); |
| 220 width = DebugColors::SolidColorTileBorderWidth(layer_tree_impl()); | 211 width = DebugColors::SolidColorTileBorderWidth(layer_tree_impl()); |
| 221 } else if (mode == ManagedTileState::TileVersion::PICTURE_PILE_MODE) { | 212 } else if (mode == ManagedTileState::TileVersion::PICTURE_PILE_MODE) { |
| 222 color = DebugColors::PictureTileBorderColor(); | 213 color = DebugColors::PictureTileBorderColor(); |
| 223 width = DebugColors::PictureTileBorderWidth(layer_tree_impl()); | 214 width = DebugColors::PictureTileBorderWidth(layer_tree_impl()); |
| 224 } else if (iter->priority(ACTIVE_TREE).resolution == HIGH_RESOLUTION) { | 215 } else if (iter.resolution() == HIGH_RESOLUTION) { |
| 225 color = DebugColors::HighResTileBorderColor(); | 216 color = DebugColors::HighResTileBorderColor(); |
| 226 width = DebugColors::HighResTileBorderWidth(layer_tree_impl()); | 217 width = DebugColors::HighResTileBorderWidth(layer_tree_impl()); |
| 227 } else if (iter->priority(ACTIVE_TREE).resolution == LOW_RESOLUTION) { | 218 } else if (iter.resolution() == LOW_RESOLUTION) { |
| 228 color = DebugColors::LowResTileBorderColor(); | 219 color = DebugColors::LowResTileBorderColor(); |
| 229 width = DebugColors::LowResTileBorderWidth(layer_tree_impl()); | 220 width = DebugColors::LowResTileBorderWidth(layer_tree_impl()); |
| 230 } else if (iter->contents_scale() > max_contents_scale) { | 221 } else if (iter->contents_scale() > max_contents_scale) { |
| 231 color = DebugColors::ExtraHighResTileBorderColor(); | 222 color = DebugColors::ExtraHighResTileBorderColor(); |
| 232 width = DebugColors::ExtraHighResTileBorderWidth(layer_tree_impl()); | 223 width = DebugColors::ExtraHighResTileBorderWidth(layer_tree_impl()); |
| 233 } else { | 224 } else { |
| 234 color = DebugColors::ExtraLowResTileBorderColor(); | 225 color = DebugColors::ExtraLowResTileBorderColor(); |
| 235 width = DebugColors::ExtraLowResTileBorderWidth(layer_tree_impl()); | 226 width = DebugColors::ExtraLowResTileBorderWidth(layer_tree_impl()); |
| 236 } | 227 } |
| 237 } else { | 228 } else { |
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| 354 } | 345 } |
| 355 | 346 |
| 356 append_quads_data->num_missing_tiles++; | 347 append_quads_data->num_missing_tiles++; |
| 357 append_quads_data->had_incomplete_tile = true; | 348 append_quads_data->had_incomplete_tile = true; |
| 358 append_quads_data->approximated_visible_content_area += | 349 append_quads_data->approximated_visible_content_area += |
| 359 visible_geometry_rect.width() * visible_geometry_rect.height(); | 350 visible_geometry_rect.width() * visible_geometry_rect.height(); |
| 360 ++missing_tile_count; | 351 ++missing_tile_count; |
| 361 continue; | 352 continue; |
| 362 } | 353 } |
| 363 | 354 |
| 364 if (iter->priority(ACTIVE_TREE).resolution != HIGH_RESOLUTION) { | 355 if (iter.resolution() != HIGH_RESOLUTION) { |
| 365 append_quads_data->approximated_visible_content_area += | 356 append_quads_data->approximated_visible_content_area += |
| 366 visible_geometry_rect.width() * visible_geometry_rect.height(); | 357 visible_geometry_rect.width() * visible_geometry_rect.height(); |
| 367 } | 358 } |
| 368 | 359 |
| 369 if (seen_tilings.empty() || seen_tilings.back() != iter.CurrentTiling()) | 360 if (seen_tilings.empty() || seen_tilings.back() != iter.CurrentTiling()) |
| 370 seen_tilings.push_back(iter.CurrentTiling()); | 361 seen_tilings.push_back(iter.CurrentTiling()); |
| 371 } | 362 } |
| 372 | 363 |
| 373 if (missing_tile_count) { | 364 if (missing_tile_count) { |
| 374 TRACE_EVENT_INSTANT2("cc", | 365 TRACE_EVENT_INSTANT2("cc", |
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| 428 DCHECK(raster_source_scale_); | 419 DCHECK(raster_source_scale_); |
| 429 DCHECK(raster_contents_scale_); | 420 DCHECK(raster_contents_scale_); |
| 430 DCHECK(low_res_raster_contents_scale_); | 421 DCHECK(low_res_raster_contents_scale_); |
| 431 | 422 |
| 432 was_screen_space_transform_animating_ = | 423 was_screen_space_transform_animating_ = |
| 433 draw_properties().screen_space_transform_is_animating; | 424 draw_properties().screen_space_transform_is_animating; |
| 434 | 425 |
| 435 should_update_tile_priorities_ = true; | 426 should_update_tile_priorities_ = true; |
| 436 | 427 |
| 437 UpdateTilePriorities(occlusion_tracker); | 428 UpdateTilePriorities(occlusion_tracker); |
| 438 | |
| 439 if (layer_tree_impl()->IsPendingTree()) | |
| 440 MarkVisibleResourcesAsRequired(); | |
| 441 } | 429 } |
| 442 | 430 |
| 443 void PictureLayerImpl::UpdateTilePriorities( | 431 void PictureLayerImpl::UpdateTilePriorities( |
| 444 const OcclusionTracker<LayerImpl>* occlusion_tracker) { | 432 const OcclusionTracker<LayerImpl>* occlusion_tracker) { |
| 445 TRACE_EVENT0("cc", "PictureLayerImpl::UpdateTilePriorities"); | 433 TRACE_EVENT0("cc", "PictureLayerImpl::UpdateTilePriorities"); |
| 446 | 434 |
| 447 double current_frame_time_in_seconds = | 435 double current_frame_time_in_seconds = |
| 448 (layer_tree_impl()->CurrentFrameTimeTicks() - | 436 (layer_tree_impl()->CurrentFrameTimeTicks() - |
| 449 base::TimeTicks()).InSecondsF(); | 437 base::TimeTicks()).InSecondsF(); |
| 450 | 438 |
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| 593 layer_tree_impl()->begin_impl_frame_interval().InSecondsF() * | 581 layer_tree_impl()->begin_impl_frame_interval().InSecondsF() * |
| 594 layer_tree_impl()->settings().skewport_target_time_multiplier; | 582 layer_tree_impl()->settings().skewport_target_time_multiplier; |
| 595 } | 583 } |
| 596 | 584 |
| 597 int PictureLayerImpl::GetSkewportExtrapolationLimitInContentPixels() const { | 585 int PictureLayerImpl::GetSkewportExtrapolationLimitInContentPixels() const { |
| 598 return layer_tree_impl() | 586 return layer_tree_impl() |
| 599 ->settings() | 587 ->settings() |
| 600 .skewport_extrapolation_limit_in_content_pixels; | 588 .skewport_extrapolation_limit_in_content_pixels; |
| 601 } | 589 } |
| 602 | 590 |
| 591 bool PictureLayerImpl::RequiresHighResToDraw() const { |
| 592 const PictureLayerImpl* layer = this; |
| 593 if (GetTree() == PENDING_TREE) |
| 594 layer = twin_layer_; |
| 595 |
| 596 if (layer) |
| 597 return layer->layer_tree_impl()->RequiresHighResToDraw(); |
| 598 return false; |
| 599 } |
| 600 |
| 603 gfx::Size PictureLayerImpl::CalculateTileSize( | 601 gfx::Size PictureLayerImpl::CalculateTileSize( |
| 604 const gfx::Size& content_bounds) const { | 602 const gfx::Size& content_bounds) const { |
| 605 if (is_mask_) { | 603 if (is_mask_) { |
| 606 int max_size = layer_tree_impl()->MaxTextureSize(); | 604 int max_size = layer_tree_impl()->MaxTextureSize(); |
| 607 return gfx::Size( | 605 return gfx::Size( |
| 608 std::min(max_size, content_bounds.width()), | 606 std::min(max_size, content_bounds.width()), |
| 609 std::min(max_size, content_bounds.height())); | 607 std::min(max_size, content_bounds.height())); |
| 610 } | 608 } |
| 611 | 609 |
| 612 int max_texture_size = | 610 int max_texture_size = |
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| 742 | 740 |
| 743 const ManagedTileState::TileVersion& tile_version = | 741 const ManagedTileState::TileVersion& tile_version = |
| 744 iter->GetTileVersionForDrawing(); | 742 iter->GetTileVersionForDrawing(); |
| 745 if (!tile_version.IsReadyToDraw() || | 743 if (!tile_version.IsReadyToDraw() || |
| 746 tile_version.mode() != ManagedTileState::TileVersion::RESOURCE_MODE) | 744 tile_version.mode() != ManagedTileState::TileVersion::RESOURCE_MODE) |
| 747 return 0; | 745 return 0; |
| 748 | 746 |
| 749 return tile_version.get_resource_id(); | 747 return tile_version.get_resource_id(); |
| 750 } | 748 } |
| 751 | 749 |
| 752 void PictureLayerImpl::MarkVisibleResourcesAsRequired() const { | |
| 753 DCHECK(layer_tree_impl()->IsPendingTree()); | |
| 754 DCHECK(ideal_contents_scale_); | |
| 755 DCHECK_GT(tilings_->num_tilings(), 0u); | |
| 756 | |
| 757 // The goal of this function is to find the minimum set of tiles that need to | |
| 758 // be ready to draw in order to activate without flashing content from a | |
| 759 // higher res on the active tree to a lower res on the pending tree. | |
| 760 | |
| 761 // First, early out for layers with no visible content. | |
| 762 if (visible_content_rect().IsEmpty()) | |
| 763 return; | |
| 764 | |
| 765 gfx::Rect rect(visible_content_rect()); | |
| 766 | |
| 767 float min_acceptable_scale = | |
| 768 std::min(raster_contents_scale_, ideal_contents_scale_); | |
| 769 | |
| 770 if (PictureLayerImpl* twin = twin_layer_) { | |
| 771 float twin_min_acceptable_scale = | |
| 772 std::min(twin->ideal_contents_scale_, twin->raster_contents_scale_); | |
| 773 // Ignore 0 scale in case CalculateContentsScale() has never been | |
| 774 // called for active twin. | |
| 775 if (twin_min_acceptable_scale != 0.0f) { | |
| 776 min_acceptable_scale = | |
| 777 std::min(min_acceptable_scale, twin_min_acceptable_scale); | |
| 778 } | |
| 779 } | |
| 780 | |
| 781 PictureLayerTiling* high_res = NULL; | |
| 782 PictureLayerTiling* low_res = NULL; | |
| 783 | |
| 784 // First pass: ready to draw tiles in acceptable but non-ideal tilings are | |
| 785 // marked as required for activation so that their textures are not thrown | |
| 786 // away; any non-ready tiles are not marked as required. | |
| 787 Region missing_region = rect; | |
| 788 for (size_t i = 0; i < tilings_->num_tilings(); ++i) { | |
| 789 PictureLayerTiling* tiling = tilings_->tiling_at(i); | |
| 790 DCHECK(tiling->has_ever_been_updated()); | |
| 791 | |
| 792 if (tiling->resolution() == LOW_RESOLUTION) { | |
| 793 DCHECK(!low_res) << "There can only be one low res tiling"; | |
| 794 low_res = tiling; | |
| 795 } | |
| 796 if (tiling->contents_scale() < min_acceptable_scale) | |
| 797 continue; | |
| 798 if (tiling->resolution() == HIGH_RESOLUTION) { | |
| 799 DCHECK(!high_res) << "There can only be one high res tiling"; | |
| 800 high_res = tiling; | |
| 801 continue; | |
| 802 } | |
| 803 for (PictureLayerTiling::CoverageIterator iter(tiling, | |
| 804 contents_scale_x(), | |
| 805 rect); | |
| 806 iter; | |
| 807 ++iter) { | |
| 808 if (!*iter || !iter->IsReadyToDraw()) | |
| 809 continue; | |
| 810 | |
| 811 missing_region.Subtract(iter.geometry_rect()); | |
| 812 iter->MarkRequiredForActivation(); | |
| 813 } | |
| 814 } | |
| 815 DCHECK(high_res) << "There must be one high res tiling"; | |
| 816 | |
| 817 // If these pointers are null (because no twin, no matching tiling, or the | |
| 818 // simpification just below), then high res tiles will be required to fill any | |
| 819 // holes left by the first pass above. If the pointers are valid, then this | |
| 820 // layer is allowed to skip any tiles that are not ready on its twin. | |
| 821 const PictureLayerTiling* twin_high_res = NULL; | |
| 822 const PictureLayerTiling* twin_low_res = NULL; | |
| 823 | |
| 824 if (twin_layer_) { | |
| 825 // As a simplification, only allow activating to skip twin tiles that the | |
| 826 // active layer is also missing when both this layer and its twin have | |
| 827 // "simple" sets of tilings: only 2 tilings (high and low) or only 1 high | |
| 828 // res tiling. This avoids having to iterate/track coverage of non-ideal | |
| 829 // tilings during the last draw call on the active layer. | |
| 830 if (tilings_->num_tilings() <= 2 && | |
| 831 twin_layer_->tilings_->num_tilings() <= tilings_->num_tilings()) { | |
| 832 twin_low_res = low_res ? GetTwinTiling(low_res) : NULL; | |
| 833 twin_high_res = high_res ? GetTwinTiling(high_res) : NULL; | |
| 834 } | |
| 835 | |
| 836 // If this layer and its twin have different transforms, then don't compare | |
| 837 // them and only allow activating to high res tiles, since tiles on each | |
| 838 // layer will be in different places on screen. | |
| 839 if (twin_layer_->layer_tree_impl()->RequiresHighResToDraw() || | |
| 840 bounds() != twin_layer_->bounds() || | |
| 841 draw_properties().screen_space_transform != | |
| 842 twin_layer_->draw_properties().screen_space_transform) { | |
| 843 twin_high_res = NULL; | |
| 844 twin_low_res = NULL; | |
| 845 } | |
| 846 } | |
| 847 | |
| 848 // As a second pass, mark as required any visible high res tiles not filled in | |
| 849 // by acceptable non-ideal tiles from the first pass. | |
| 850 if (MarkVisibleTilesAsRequired( | |
| 851 high_res, twin_high_res, contents_scale_x(), rect, missing_region)) { | |
| 852 // As an optional third pass, if a high res tile was skipped because its | |
| 853 // twin was also missing, then fall back to mark low res tiles as required | |
| 854 // in case the active twin is substituting those for missing high res | |
| 855 // content. Only suitable, when low res is enabled. | |
| 856 if (low_res) { | |
| 857 MarkVisibleTilesAsRequired( | |
| 858 low_res, twin_low_res, contents_scale_x(), rect, missing_region); | |
| 859 } | |
| 860 } | |
| 861 } | |
| 862 | |
| 863 bool PictureLayerImpl::MarkVisibleTilesAsRequired( | |
| 864 PictureLayerTiling* tiling, | |
| 865 const PictureLayerTiling* optional_twin_tiling, | |
| 866 float contents_scale, | |
| 867 const gfx::Rect& rect, | |
| 868 const Region& missing_region) const { | |
| 869 bool twin_had_missing_tile = false; | |
| 870 for (PictureLayerTiling::CoverageIterator iter(tiling, | |
| 871 contents_scale, | |
| 872 rect); | |
| 873 iter; | |
| 874 ++iter) { | |
| 875 Tile* tile = *iter; | |
| 876 // A null tile (i.e. missing recording) can just be skipped. | |
| 877 if (!tile) | |
| 878 continue; | |
| 879 | |
| 880 // If the tile is occluded, don't mark it as required for activation. | |
| 881 if (tile->is_occluded()) | |
| 882 continue; | |
| 883 | |
| 884 // If the missing region doesn't cover it, this tile is fully | |
| 885 // covered by acceptable tiles at other scales. | |
| 886 if (!missing_region.Intersects(iter.geometry_rect())) | |
| 887 continue; | |
| 888 | |
| 889 // If the twin tile doesn't exist (i.e. missing recording or so far away | |
| 890 // that it is outside the visible tile rect) or this tile is shared between | |
| 891 // with the twin, then this tile isn't required to prevent flashing. | |
| 892 if (optional_twin_tiling) { | |
| 893 Tile* twin_tile = optional_twin_tiling->TileAt(iter.i(), iter.j()); | |
| 894 if (!twin_tile || twin_tile == tile) { | |
| 895 twin_had_missing_tile = true; | |
| 896 continue; | |
| 897 } | |
| 898 } | |
| 899 | |
| 900 tile->MarkRequiredForActivation(); | |
| 901 } | |
| 902 return twin_had_missing_tile; | |
| 903 } | |
| 904 | |
| 905 void PictureLayerImpl::DoPostCommitInitialization() { | 750 void PictureLayerImpl::DoPostCommitInitialization() { |
| 906 DCHECK(needs_post_commit_initialization_); | 751 DCHECK(needs_post_commit_initialization_); |
| 907 DCHECK(layer_tree_impl()->IsPendingTree()); | 752 DCHECK(layer_tree_impl()->IsPendingTree()); |
| 908 | 753 |
| 909 if (!tilings_) | 754 if (!tilings_) |
| 910 tilings_.reset(new PictureLayerTilingSet(this, bounds())); | 755 tilings_.reset(new PictureLayerTilingSet(this, bounds())); |
| 911 | 756 |
| 912 DCHECK(!twin_layer_); | 757 DCHECK(!twin_layer_); |
| 913 twin_layer_ = static_cast<PictureLayerImpl*>( | 758 twin_layer_ = static_cast<PictureLayerImpl*>( |
| 914 layer_tree_impl()->FindActiveTreeLayerById(id())); | 759 layer_tree_impl()->FindActiveTreeLayerById(id())); |
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| 1629 return iterator_index_ < iterators_.size(); | 1474 return iterator_index_ < iterators_.size(); |
| 1630 } | 1475 } |
| 1631 | 1476 |
| 1632 bool PictureLayerImpl::LayerEvictionTileIterator::IsCorrectType( | 1477 bool PictureLayerImpl::LayerEvictionTileIterator::IsCorrectType( |
| 1633 PictureLayerTiling::TilingEvictionTileIterator* it) const { | 1478 PictureLayerTiling::TilingEvictionTileIterator* it) const { |
| 1634 return it->get_type() == iteration_stage_ && | 1479 return it->get_type() == iteration_stage_ && |
| 1635 (**it)->required_for_activation() == required_for_activation_; | 1480 (**it)->required_for_activation() == required_for_activation_; |
| 1636 } | 1481 } |
| 1637 | 1482 |
| 1638 } // namespace cc | 1483 } // namespace cc |
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