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| 1 // Copyright 2013 The Chromium Authors. All rights reserved. | |
| 2 // Use of this source code is governed by a BSD-style license that can be | |
| 3 // found in the LICENSE file. | |
| 4 | |
| 5 #include "cc/resources/tile_bundle.h" | |
| 6 | |
| 7 #include <algorithm> | |
| 8 | |
| 9 #include "cc/resources/picture_layer_tiling.h" | |
| 10 #include "cc/resources/tile.h" | |
| 11 #include "cc/resources/tile_manager.h" | |
| 12 | |
| 13 namespace cc { | |
| 14 | |
| 15 TileBundle::Id TileBundle::s_next_id_ = 0; | |
| 16 | |
| 17 TileBundle::TileBundle(TileManager* tile_manager, | |
| 18 int offset_x, | |
| 19 int offset_y, | |
| 20 int width, | |
| 21 int height) | |
| 22 : RefCountedManaged<TileBundle>(tile_manager), | |
| 23 tile_manager_(tile_manager), | |
| 24 index_offset_x_(offset_x), | |
| 25 index_offset_y_(offset_y), | |
| 26 index_count_x_(width), | |
| 27 index_count_y_(height), | |
| 28 conservative_tile_count_(0), | |
| 29 needs_tile_swap_(false), | |
| 30 id_(s_next_id_++) { | |
| 31 tiles_[ACTIVE_TREE].resize(index_count_y_); | |
| 32 for (int i = 0; i < index_count_y_; ++i) | |
| 33 tiles_[ACTIVE_TREE][i].resize(index_count_x_); | |
| 34 | |
| 35 tiles_[PENDING_TREE].resize(index_count_y_); | |
| 36 for (int i = 0; i < index_count_y_; ++i) | |
| 37 tiles_[PENDING_TREE][i].resize(index_count_x_); | |
| 38 } | |
| 39 | |
| 40 TileBundle::~TileBundle() {} | |
| 41 | |
| 42 Tile* TileBundle::TileAt(WhichTree tree, int index_x, int index_y) { | |
| 43 DCHECK(!needs_tile_swap_); | |
| 44 | |
| 45 UpdateToLocalIndex(&index_x, &index_y); | |
| 46 return TileAtLocalIndex(tree, index_x, index_y); | |
| 47 } | |
| 48 | |
| 49 Tile* TileBundle::TileAtLocalIndex(WhichTree tree, int index_x, int index_y) { | |
| 50 return tiles_[tree][index_y][index_x].get(); | |
| 51 } | |
| 52 | |
| 53 void TileBundle::SetPriority(WhichTree tree, const TilePriority& priority) { | |
| 54 DCHECK(!needs_tile_swap_); | |
| 55 | |
| 56 if (priority_[tree] == priority) | |
| 57 return; | |
| 58 | |
| 59 priority_[tree] = priority; | |
| 60 tile_manager_->DidChangeTileBundlePriority(this); | |
| 61 } | |
| 62 | |
| 63 TilePriority TileBundle::GetPriority(WhichTree tree) const { | |
| 64 return priority_[tree]; | |
| 65 } | |
| 66 | |
| 67 bool TileBundle::RemoveTileAt(WhichTree tree, int index_x, int index_y) { | |
| 68 DCHECK(!needs_tile_swap_); | |
| 69 | |
| 70 UpdateToLocalIndex(&index_x, &index_y); | |
| 71 bool removed = !!tiles_[tree][index_y][index_x]; | |
| 72 tiles_[tree][index_y][index_x] = NULL; | |
| 73 if (removed) | |
| 74 --conservative_tile_count_; | |
| 75 return removed; | |
| 76 } | |
| 77 | |
| 78 void TileBundle::AddTileAt(WhichTree tree, | |
| 79 int index_x, | |
| 80 int index_y, | |
| 81 scoped_refptr<Tile> tile) { | |
| 82 DCHECK(!needs_tile_swap_); | |
| 83 | |
| 84 UpdateToLocalIndex(&index_x, &index_y); | |
| 85 DCHECK(!tiles_[tree][index_y][index_x]); | |
| 86 tiles_[tree][index_y][index_x] = tile; | |
| 87 ++conservative_tile_count_; | |
| 88 } | |
| 89 | |
| 90 void TileBundle::DidBecomeRecycled() { | |
| 91 priority_[ACTIVE_TREE] = TilePriority(); | |
| 92 needs_tile_swap_ = !needs_tile_swap_; | |
| 93 } | |
| 94 | |
| 95 void TileBundle::DidBecomeActive() { | |
| 96 priority_[ACTIVE_TREE] = priority_[PENDING_TREE]; | |
| 97 priority_[PENDING_TREE] = TilePriority(); | |
| 98 tiles_[ACTIVE_TREE].swap(tiles_[PENDING_TREE]); | |
| 99 needs_tile_swap_ = false; | |
| 100 } | |
| 101 | |
| 102 void TileBundle::UpdateToLocalIndex(int* index_x, int* index_y) { | |
| 103 DCHECK(index_x); | |
| 104 DCHECK(index_y); | |
| 105 | |
| 106 *index_x -= index_offset_x_; | |
| 107 *index_y -= index_offset_y_; | |
| 108 | |
| 109 DCHECK_GE(*index_x, 0); | |
| 110 DCHECK_GE(*index_y, 0); | |
| 111 DCHECK_LT(*index_x, index_count_x_); | |
| 112 DCHECK_LT(*index_x, index_count_y_); | |
| 113 } | |
| 114 | |
| 115 void TileBundle::SwapTilesIfRequired() { | |
| 116 if (!needs_tile_swap_) | |
| 117 return; | |
| 118 | |
| 119 std::swap(priority_[ACTIVE_TREE], priority_[PENDING_TREE]); | |
| 120 tiles_[ACTIVE_TREE].swap(tiles_[PENDING_TREE]); | |
| 121 needs_tile_swap_ = false; | |
| 122 } | |
| 123 | |
| 124 TileBundle::Iterator::Iterator(TileBundle* bundle) | |
| 125 : bundle_(bundle), | |
| 126 current_tile_(NULL), | |
| 127 index_x_(0), | |
| 128 index_y_(0), | |
| 129 current_tree_(ACTIVE_TREE), | |
| 130 min_tree_(ACTIVE_TREE), | |
| 131 max_tree_(PENDING_TREE) { | |
| 132 if (!InitializeNewTile()) | |
| 133 ++(*this); | |
| 134 } | |
| 135 | |
| 136 TileBundle::Iterator::Iterator(TileBundle* bundle, WhichTree tree) | |
| 137 : bundle_(bundle), | |
| 138 current_tile_(NULL), | |
| 139 index_x_(0), | |
| 140 index_y_(0), | |
| 141 current_tree_(tree), | |
| 142 min_tree_(tree), | |
| 143 max_tree_(tree) { | |
| 144 if (!InitializeNewTile()) | |
| 145 ++(*this); | |
| 146 } | |
| 147 | |
| 148 TileBundle::Iterator::~Iterator() {} | |
| 149 | |
| 150 TileBundle::Iterator& TileBundle::Iterator::operator++() { | |
| 151 do { | |
| 152 current_tree_ = static_cast<WhichTree>(current_tree_ + 1); | |
| 153 if (current_tree_ > max_tree_) { | |
| 154 current_tree_ = min_tree_; | |
| 155 ++index_x_; | |
| 156 if (index_x_ >= bundle_->index_count_x_) { | |
| 157 index_x_ = 0; | |
| 158 ++index_y_; | |
| 159 if (index_y_ >= bundle_->index_count_y_) | |
| 160 break; | |
| 161 } | |
| 162 } | |
| 163 } while (!InitializeNewTile()); | |
| 164 | |
| 165 return *this; | |
| 166 } | |
| 167 | |
| 168 bool TileBundle::Iterator::InitializeNewTile() { | |
| 169 Tile* tile = bundle_->TileAtLocalIndex(current_tree_, index_x_, index_y_); | |
| 170 | |
| 171 // We succeed only if we have a tile and it is different | |
| 172 // from what we currently have. This is to avoid the iterator | |
| 173 // returning the same tile twice when it's shared between trees. | |
| 174 if (!tile || tile == current_tile_) | |
| 175 return false; | |
| 176 | |
| 177 current_tile_ = tile; | |
| 178 return true; | |
| 179 } | |
| 180 | |
| 181 } // namespace cc | |
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