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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/resources/picture_layer_tiling.h" | 5 #include "cc/resources/picture_layer_tiling.h" | 
| 6 | 6 | 
| 7 #include <algorithm> | 7 #include <algorithm> | 
| 8 #include <cmath> | 8 #include <cmath> | 
| 9 #include <limits> | 9 #include <limits> | 
| 10 | 10 | 
| 11 #include "base/debug/trace_event.h" | 11 #include "base/debug/trace_event.h" | 
| 12 #include "cc/base/math_util.h" | 12 #include "cc/base/math_util.h" | 
| 13 #include "ui/gfx/point_conversions.h" | 13 #include "ui/gfx/point_conversions.h" | 
| 14 #include "ui/gfx/rect_conversions.h" | 14 #include "ui/gfx/rect_conversions.h" | 
| 15 #include "ui/gfx/safe_integer_conversions.h" | 15 #include "ui/gfx/safe_integer_conversions.h" | 
| 16 #include "ui/gfx/size_conversions.h" | 16 #include "ui/gfx/size_conversions.h" | 
| 17 | 17 | 
| 18 namespace cc { | 18 namespace cc { | 
| 19 | 19 | 
| 20 namespace { | |
| 21 | |
| 22 const int kTileBundleWidth = 2; | |
| 23 const int kTileBundleHeight = 2; | |
| 24 | |
| 25 std::pair<int, int> ComputeTileBundleIndex(int i, int j) { | |
| 26 return std::make_pair(i / kTileBundleWidth, j / kTileBundleHeight); | |
| 27 } | |
| 28 | |
| 29 } | |
| 30 | |
| 20 scoped_ptr<PictureLayerTiling> PictureLayerTiling::Create( | 31 scoped_ptr<PictureLayerTiling> PictureLayerTiling::Create( | 
| 21 float contents_scale, | 32 float contents_scale, | 
| 22 gfx::Size layer_bounds, | 33 gfx::Size layer_bounds, | 
| 23 PictureLayerTilingClient* client) { | 34 PictureLayerTilingClient* client) { | 
| 24 return make_scoped_ptr(new PictureLayerTiling(contents_scale, | 35 return make_scoped_ptr(new PictureLayerTiling(contents_scale, | 
| 25 layer_bounds, | 36 layer_bounds, | 
| 26 client)); | 37 client)); | 
| 27 } | 38 } | 
| 28 | 39 | 
| 29 PictureLayerTiling::PictureLayerTiling(float contents_scale, | 40 PictureLayerTiling::PictureLayerTiling(float contents_scale, | 
| 30 gfx::Size layer_bounds, | 41 gfx::Size layer_bounds, | 
| 31 PictureLayerTilingClient* client) | 42 PictureLayerTilingClient* client) | 
| 32 : contents_scale_(contents_scale), | 43 : contents_scale_(contents_scale), | 
| 33 layer_bounds_(layer_bounds), | 44 layer_bounds_(layer_bounds), | 
| 34 resolution_(NON_IDEAL_RESOLUTION), | 45 resolution_(NON_IDEAL_RESOLUTION), | 
| 35 client_(client), | 46 client_(client), | 
| 36 tiling_data_(gfx::Size(), gfx::Size(), true), | 47 tiling_data_(gfx::Size(), gfx::Size(), true), | 
| 48 bundle_tiling_data_(gfx::Size(), gfx::Size(), true), | |
| 37 last_impl_frame_time_in_seconds_(0.0) { | 49 last_impl_frame_time_in_seconds_(0.0) { | 
| 38 gfx::Size content_bounds = | 50 gfx::Size content_bounds = | 
| 39 gfx::ToCeiledSize(gfx::ScaleSize(layer_bounds, contents_scale)); | 51 gfx::ToCeiledSize(gfx::ScaleSize(layer_bounds, contents_scale)); | 
| 40 gfx::Size tile_size = client_->CalculateTileSize(content_bounds); | 52 gfx::Size tile_size = client_->CalculateTileSize(content_bounds); | 
| 41 | 53 | 
| 42 DCHECK(!gfx::ToFlooredSize( | 54 DCHECK(!gfx::ToFlooredSize( | 
| 43 gfx::ScaleSize(layer_bounds, contents_scale)).IsEmpty()) << | 55 gfx::ScaleSize(layer_bounds, contents_scale)).IsEmpty()) << | 
| 44 "Tiling created with scale too small as contents become empty." << | 56 "Tiling created with scale too small as contents become empty." << | 
| 45 " Layer bounds: " << layer_bounds.ToString() << | 57 " Layer bounds: " << layer_bounds.ToString() << | 
| 46 " Contents scale: " << contents_scale; | 58 " Contents scale: " << contents_scale; | 
| 47 | 59 | 
| 48 tiling_data_.SetTotalSize(content_bounds); | 60 tiling_data_.SetTotalSize(content_bounds); | 
| 49 tiling_data_.SetMaxTextureSize(tile_size); | 61 tiling_data_.SetMaxTextureSize(tile_size); | 
| 62 bundle_tiling_data_.SetTotalSize(content_bounds); | |
| 63 bundle_tiling_data_.SetMaxTextureSize( | |
| 64 gfx::Size(tile_size.width() * kTileBundleWidth, | |
| 65 tile_size.height() * kTileBundleHeight)); | |
| 50 } | 66 } | 
| 51 | 67 | 
| 52 PictureLayerTiling::~PictureLayerTiling() { | 68 PictureLayerTiling::~PictureLayerTiling() { | 
| 53 } | 69 } | 
| 54 | 70 | 
| 55 void PictureLayerTiling::SetClient(PictureLayerTilingClient* client) { | 71 void PictureLayerTiling::SetClient(PictureLayerTilingClient* client) { | 
| 56 client_ = client; | 72 client_ = client; | 
| 57 } | 73 } | 
| 58 | 74 | 
| 59 gfx::Rect PictureLayerTiling::ContentRect() const { | 75 gfx::Rect PictureLayerTiling::ContentRect() const { | 
| 60 return gfx::Rect(tiling_data_.total_size()); | 76 return gfx::Rect(tiling_data_.total_size()); | 
| 61 } | 77 } | 
| 62 | 78 | 
| 63 gfx::SizeF PictureLayerTiling::ContentSizeF() const { | 79 gfx::SizeF PictureLayerTiling::ContentSizeF() const { | 
| 64 return gfx::ScaleSize(layer_bounds_, contents_scale_); | 80 return gfx::ScaleSize(layer_bounds_, contents_scale_); | 
| 65 } | 81 } | 
| 66 | 82 | 
| 67 Tile* PictureLayerTiling::TileAt(int i, int j) const { | 83 TileBundle* PictureLayerTiling::CreateBundleForTileAt( | 
| 68 TileMap::const_iterator iter = tiles_.find(TileMapKey(i, j)); | 84 int i, | 
| 69 if (iter == tiles_.end()) | 85 int j, | 
| 70 return NULL; | 86 const PictureLayerTiling* twin_tiling) { | 
| 71 return iter->second.get(); | 87 TileBundleMapKey key = ComputeTileBundleIndex(i, j); | 
| 88 DCHECK(tile_bundles_.find(key) == tile_bundles_.end()); | |
| 89 | |
| 90 scoped_refptr<TileBundle> candidate_bundle = NULL; | |
| 91 | |
| 92 // Always try to get the twin bundle first. TileBundles are always shared | |
| 93 // between trees. | |
| 94 if (twin_tiling && | |
| 95 tiling_data_.max_texture_size() == | |
| 96 twin_tiling->tiling_data_.max_texture_size()) { | |
| 97 candidate_bundle = twin_tiling->TileBundleAt(key.first, key.second); | |
| 98 } | |
| 99 | |
| 100 // If we couldn't get a tile bundle, create a new one. | |
| 101 if (!candidate_bundle) { | |
| 102 candidate_bundle = | |
| 103 client_->CreateTileBundle(gfx::Rect(key.first * kTileBundleWidth, | |
| 104 key.second * kTileBundleHeight, | |
| 105 kTileBundleWidth, | |
| 106 kTileBundleHeight)); | |
| 107 } | |
| 108 candidate_bundle->SwapTilesIfRequired(); | |
| 109 tile_bundles_[key] = candidate_bundle; | |
| 110 return candidate_bundle.get(); | |
| 72 } | 111 } | 
| 73 | 112 | 
| 74 void PictureLayerTiling::CreateTile(int i, | 113 TileBundle* PictureLayerTiling::TileBundleContainingTileAt(int i, int j) const { | 
| 114 TileBundleMapKey key = ComputeTileBundleIndex(i, j); | |
| 115 return TileBundleAt(key.first, key.second); | |
| 116 } | |
| 117 | |
| 118 TileBundle* PictureLayerTiling::TileBundleAt(int i, int j) const { | |
| 119 TileBundleMapKey key(i, j); | |
| 120 TileBundleMap::const_iterator it = tile_bundles_.find(key); | |
| 121 if (it == tile_bundles_.end()) | |
| 122 return NULL; | |
| 123 it->second->SwapTilesIfRequired(); | |
| 124 return it->second.get(); | |
| 125 } | |
| 126 | |
| 127 Tile* PictureLayerTiling::TileAt(WhichTree tree, int i, int j) const { | |
| 128 TileBundle* bundle = TileBundleContainingTileAt(i, j); | |
| 129 if (!bundle) | |
| 130 return NULL; | |
| 131 return bundle->TileAt(tree, i, j); | |
| 132 } | |
| 133 | |
| 134 void PictureLayerTiling::CreateTile(WhichTree tree, | |
| 135 int i, | |
| 75 int j, | 136 int j, | 
| 76 const PictureLayerTiling* twin_tiling) { | 137 const PictureLayerTiling* twin_tiling) { | 
| 77 TileMapKey key(i, j); | 138 TileBundle* bundle = TileBundleContainingTileAt(i, j); | 
| 78 DCHECK(tiles_.find(key) == tiles_.end()); | 139 if (!bundle) | 
| 140 bundle = CreateBundleForTileAt(i, j, twin_tiling); | |
| 79 | 141 | 
| 80 gfx::Rect paint_rect = tiling_data_.TileBoundsWithBorder(i, j); | 142 gfx::Rect paint_rect = tiling_data_.TileBoundsWithBorder(i, j); | 
| 81 gfx::Rect tile_rect = paint_rect; | 143 gfx::Rect tile_rect = paint_rect; | 
| 82 tile_rect.set_size(tiling_data_.max_texture_size()); | 144 tile_rect.set_size(tiling_data_.max_texture_size()); | 
| 83 | 145 | 
| 84 // Check our twin for a valid tile. | 146 // Check our twin for a valid tile. | 
| 85 if (twin_tiling && | 147 WhichTree twin_tree = (tree == ACTIVE_TREE) ? PENDING_TREE : ACTIVE_TREE; | 
| 86 tiling_data_.max_texture_size() == | 148 if (Tile* candidate_tile = bundle->TileAt(twin_tree, i, j)) { | 
| 87 twin_tiling->tiling_data_.max_texture_size()) { | 149 gfx::Rect rect = | 
| 88 if (Tile* candidate_tile = twin_tiling->TileAt(i, j)) { | 150 gfx::ScaleToEnclosingRect(paint_rect, 1.0f / contents_scale_); | 
| 89 gfx::Rect rect = | 151 if (!client_->GetInvalidation()->Intersects(rect)) { | 
| 90 gfx::ScaleToEnclosingRect(paint_rect, 1.0f / contents_scale_); | 152 bundle->AddTileAt(tree, i, j, candidate_tile); | 
| 91 if (!client_->GetInvalidation()->Intersects(rect)) { | 153 return; | 
| 92 tiles_[key] = candidate_tile; | |
| 93 return; | |
| 94 } | |
| 95 } | 154 } | 
| 96 } | 155 } | 
| 97 | 156 | 
| 98 // Create a new tile because our twin didn't have a valid one. | 157 // Create a new tile because our twin didn't have a valid one. | 
| 99 scoped_refptr<Tile> tile = client_->CreateTile(this, tile_rect); | 158 scoped_refptr<Tile> tile = client_->CreateTile(this, tile_rect); | 
| 100 if (tile.get()) | 159 if (tile.get()) | 
| 101 tiles_[key] = tile; | 160 bundle->AddTileAt(tree, i, j, tile); | 
| 161 } | |
| 162 | |
| 163 bool PictureLayerTiling::RemoveTile(WhichTree tree, int i, int j) { | |
| 164 TileBundleMapKey key = ComputeTileBundleIndex(i, j); | |
| 165 TileBundleMap::iterator it = tile_bundles_.find(key); | |
| 166 if (it == tile_bundles_.end()) | |
| 167 return false; | |
| 168 | |
| 169 it->second->SwapTilesIfRequired(); | |
| 170 return it->second->RemoveTileAt(tree, i, j); | |
| 171 } | |
| 172 | |
| 173 void PictureLayerTiling::RemoveBundleIfEmptyContainingTileAt(int i, int j) { | |
| 174 TileBundleMapKey key = ComputeTileBundleIndex(i, j); | |
| 175 TileBundleMap::iterator it = tile_bundles_.find(key); | |
| 176 if (it == tile_bundles_.end()) | |
| 177 return; | |
| 178 | |
| 179 if (it->second->IsEmpty()) | |
| 180 tile_bundles_.erase(it); | |
| 102 } | 181 } | 
| 103 | 182 | 
| 104 Region PictureLayerTiling::OpaqueRegionInContentRect( | 183 Region PictureLayerTiling::OpaqueRegionInContentRect( | 
| 105 gfx::Rect content_rect) const { | 184 gfx::Rect content_rect) const { | 
| 106 Region opaque_region; | 185 Region opaque_region; | 
| 107 // TODO(enne): implement me | 186 // TODO(enne): implement me | 
| 108 return opaque_region; | 187 return opaque_region; | 
| 109 } | 188 } | 
| 110 | 189 | 
| 111 void PictureLayerTiling::SetCanUseLCDText(bool can_use_lcd_text) { | 190 void PictureLayerTiling::SetCanUseLCDText(bool can_use_lcd_text) { | 
| 112 for (TileMap::iterator it = tiles_.begin(); it != tiles_.end(); ++it) | 191 // TODO(vmpstr): This can be done per bundle with results used | 
| 113 it->second->set_can_use_lcd_text(can_use_lcd_text); | 192 // in tile manager. | 
| 193 for (TileBundleMap::iterator it = tile_bundles_.begin(); | |
| 194 it != tile_bundles_.end(); | |
| 195 ++it) { | |
| 196 for (TileBundle::Iterator tile_it(it->second); tile_it; ++tile_it) | |
| 
 
enne (OOO)
2013/11/27 01:38:05
Hmm, this now updates both the pending and active
 
vmpstr
2013/11/27 21:09:36
Good point. I changed this. This function is run o
 
 | |
| 197 tile_it->set_can_use_lcd_text(can_use_lcd_text); | |
| 198 } | |
| 114 } | 199 } | 
| 115 | 200 | 
| 116 void PictureLayerTiling::CreateMissingTilesInLiveTilesRect() { | 201 void PictureLayerTiling::CreateMissingTilesInLiveTilesRect() { | 
| 202 DCHECK(client_->IsPending()); | |
| 203 | |
| 117 const PictureLayerTiling* twin_tiling = client_->GetTwinTiling(this); | 204 const PictureLayerTiling* twin_tiling = client_->GetTwinTiling(this); | 
| 118 for (TilingData::Iterator iter(&tiling_data_, live_tiles_rect_); iter; | 205 for (TilingData::Iterator iter(&tiling_data_, live_tiles_rect_); iter; | 
| 119 ++iter) { | 206 ++iter) { | 
| 120 TileMapKey key = iter.index(); | 207 int tile_x = iter.index_x(); | 
| 121 TileMap::iterator find = tiles_.find(key); | 208 int tile_y = iter.index_y(); | 
| 122 if (find != tiles_.end()) | 209 Tile* tile = TileAt(PENDING_TREE, tile_x, tile_y); | 
| 210 if (tile) | |
| 123 continue; | 211 continue; | 
| 124 CreateTile(key.first, key.second, twin_tiling); | 212 CreateTile(PENDING_TREE, tile_x, tile_y, twin_tiling); | 
| 125 } | 213 } | 
| 126 } | 214 } | 
| 127 | 215 | 
| 128 void PictureLayerTiling::SetLayerBounds(gfx::Size layer_bounds) { | 216 void PictureLayerTiling::SetLayerBounds(gfx::Size layer_bounds) { | 
| 129 if (layer_bounds_ == layer_bounds) | 217 if (layer_bounds_ == layer_bounds) | 
| 130 return; | 218 return; | 
| 131 | 219 | 
| 220 DCHECK(client_->IsPending()); | |
| 132 DCHECK(!layer_bounds.IsEmpty()); | 221 DCHECK(!layer_bounds.IsEmpty()); | 
| 133 | 222 | 
| 134 gfx::Size old_layer_bounds = layer_bounds_; | 223 gfx::Size old_layer_bounds = layer_bounds_; | 
| 135 layer_bounds_ = layer_bounds; | 224 layer_bounds_ = layer_bounds; | 
| 136 gfx::Size old_content_bounds = tiling_data_.total_size(); | 225 gfx::Size old_content_bounds = tiling_data_.total_size(); | 
| 137 gfx::Size content_bounds = | 226 gfx::Size content_bounds = | 
| 138 gfx::ToCeiledSize(gfx::ScaleSize(layer_bounds_, contents_scale_)); | 227 gfx::ToCeiledSize(gfx::ScaleSize(layer_bounds_, contents_scale_)); | 
| 139 | 228 | 
| 140 gfx::Size tile_size = client_->CalculateTileSize(content_bounds); | 229 gfx::Size tile_size = client_->CalculateTileSize(content_bounds); | 
| 141 if (tile_size != tiling_data_.max_texture_size()) { | 230 if (tile_size != tiling_data_.max_texture_size()) { | 
| 142 tiling_data_.SetTotalSize(content_bounds); | 231 tiling_data_.SetTotalSize(content_bounds); | 
| 143 tiling_data_.SetMaxTextureSize(tile_size); | 232 tiling_data_.SetMaxTextureSize(tile_size); | 
| 233 bundle_tiling_data_.SetTotalSize(content_bounds); | |
| 234 bundle_tiling_data_.SetMaxTextureSize( | |
| 235 gfx::Size(tile_size.width() * kTileBundleWidth, | |
| 236 tile_size.height() * kTileBundleHeight)); | |
| 144 Reset(); | 237 Reset(); | 
| 145 return; | 238 return; | 
| 146 } | 239 } | 
| 147 | 240 | 
| 148 // Any tiles outside our new bounds are invalid and should be dropped. | 241 // Any tiles outside our new bounds are invalid and should be dropped. | 
| 149 gfx::Rect bounded_live_tiles_rect(live_tiles_rect_); | 242 gfx::Rect bounded_live_tiles_rect(live_tiles_rect_); | 
| 150 bounded_live_tiles_rect.Intersect(gfx::Rect(content_bounds)); | 243 bounded_live_tiles_rect.Intersect(gfx::Rect(content_bounds)); | 
| 151 SetLiveTilesRect(bounded_live_tiles_rect); | 244 SetLiveTilesRect(PENDING_TREE, bounded_live_tiles_rect); | 
| 152 tiling_data_.SetTotalSize(content_bounds); | 245 tiling_data_.SetTotalSize(content_bounds); | 
| 246 bundle_tiling_data_.SetTotalSize(content_bounds); | |
| 153 | 247 | 
| 154 // Create tiles for newly exposed areas. | 248 // Create tiles for newly exposed areas. | 
| 155 Region layer_region((gfx::Rect(layer_bounds_))); | 249 Region layer_region((gfx::Rect(layer_bounds_))); | 
| 156 layer_region.Subtract(gfx::Rect(old_layer_bounds)); | 250 layer_region.Subtract(gfx::Rect(old_layer_bounds)); | 
| 157 Invalidate(layer_region); | 251 Invalidate(layer_region); | 
| 158 } | 252 } | 
| 159 | 253 | 
| 160 void PictureLayerTiling::Invalidate(const Region& layer_region) { | 254 void PictureLayerTiling::Invalidate(const Region& layer_region) { | 
| 161 std::vector<TileMapKey> new_tile_keys; | 255 DCHECK(client_->IsPending()); | 
| 256 | |
| 257 std::vector<std::pair<int, int> > new_tile_keys; | |
| 162 for (Region::Iterator iter(layer_region); iter.has_rect(); iter.next()) { | 258 for (Region::Iterator iter(layer_region); iter.has_rect(); iter.next()) { | 
| 163 gfx::Rect layer_rect = iter.rect(); | 259 gfx::Rect layer_rect = iter.rect(); | 
| 164 gfx::Rect content_rect = | 260 gfx::Rect content_rect = | 
| 165 gfx::ScaleToEnclosingRect(layer_rect, contents_scale_); | 261 gfx::ScaleToEnclosingRect(layer_rect, contents_scale_); | 
| 166 content_rect.Intersect(live_tiles_rect_); | 262 content_rect.Intersect(live_tiles_rect_); | 
| 167 if (content_rect.IsEmpty()) | 263 if (content_rect.IsEmpty()) | 
| 168 continue; | 264 continue; | 
| 169 for (TilingData::Iterator iter(&tiling_data_, content_rect); iter; ++iter) { | 265 for (TilingData::Iterator iter(&tiling_data_, content_rect); iter; ++iter) { | 
| 170 TileMapKey key(iter.index()); | 266 int tile_x = iter.index_x(); | 
| 171 TileMap::iterator find = tiles_.find(key); | 267 int tile_y = iter.index_y(); | 
| 172 if (find == tiles_.end()) | 268 | 
| 173 continue; | 269 // If there is no bundle for the given tile, we can skip. | 
| 174 tiles_.erase(find); | 270 bool deleted = RemoveTile(PENDING_TREE, tile_x, tile_y); | 
| 175 new_tile_keys.push_back(key); | 271 if (deleted) | 
| 272 new_tile_keys.push_back(std::make_pair(tile_x, tile_y)); | |
| 176 } | 273 } | 
| 177 } | 274 } | 
| 178 | 275 | 
| 179 const PictureLayerTiling* twin_tiling = client_->GetTwinTiling(this); | 276 const PictureLayerTiling* twin_tiling = client_->GetTwinTiling(this); | 
| 180 for (size_t i = 0; i < new_tile_keys.size(); ++i) | 277 for (size_t i = 0; i < new_tile_keys.size(); ++i) { | 
| 181 CreateTile(new_tile_keys[i].first, new_tile_keys[i].second, twin_tiling); | 278 CreateTile(PENDING_TREE, | 
| 279 new_tile_keys[i].first, | |
| 280 new_tile_keys[i].second, | |
| 281 twin_tiling); | |
| 282 } | |
| 182 } | 283 } | 
| 183 | 284 | 
| 184 PictureLayerTiling::CoverageIterator::CoverageIterator() | 285 PictureLayerTiling::CoverageIterator::CoverageIterator() | 
| 185 : tiling_(NULL), | 286 : tiling_(NULL), | 
| 186 current_tile_(NULL), | 287 current_tile_(NULL), | 
| 187 tile_i_(0), | 288 tile_i_(0), | 
| 188 tile_j_(0), | 289 tile_j_(0), | 
| 189 left_(0), | 290 left_(0), | 
| 190 top_(0), | 291 top_(0), | 
| 191 right_(-1), | 292 right_(-1), | 
| 192 bottom_(-1) { | 293 bottom_(-1) { | 
| 193 } | 294 } | 
| 194 | 295 | 
| 195 PictureLayerTiling::CoverageIterator::CoverageIterator( | 296 PictureLayerTiling::CoverageIterator::CoverageIterator( | 
| 196 const PictureLayerTiling* tiling, | 297 const PictureLayerTiling* tiling, | 
| 197 float dest_scale, | 298 float dest_scale, | 
| 198 gfx::Rect dest_rect) | 299 gfx::Rect dest_rect) | 
| 199 : tiling_(tiling), | 300 : tiling_(tiling), | 
| 200 dest_rect_(dest_rect), | 301 dest_rect_(dest_rect), | 
| 201 dest_to_content_scale_(0), | 302 dest_to_content_scale_(0), | 
| 202 current_tile_(NULL), | 303 current_tile_(NULL), | 
| 203 tile_i_(0), | 304 tile_i_(0), | 
| 204 tile_j_(0), | 305 tile_j_(0), | 
| 205 left_(0), | 306 left_(0), | 
| 206 top_(0), | 307 top_(0), | 
| 207 right_(-1), | 308 right_(-1), | 
| 208 bottom_(-1) { | 309 bottom_(-1), | 
| 310 tree_(tiling->client_->IsActive() ? ACTIVE_TREE : PENDING_TREE) { | |
| 209 DCHECK(tiling_); | 311 DCHECK(tiling_); | 
| 210 if (dest_rect_.IsEmpty()) | 312 if (dest_rect_.IsEmpty()) | 
| 211 return; | 313 return; | 
| 212 | 314 | 
| 213 dest_to_content_scale_ = tiling_->contents_scale_ / dest_scale; | 315 dest_to_content_scale_ = tiling_->contents_scale_ / dest_scale; | 
| 214 // This is the maximum size that the dest rect can be, given the content size. | 316 // This is the maximum size that the dest rect can be, given the content size. | 
| 215 gfx::Size dest_content_size = gfx::ToCeiledSize(gfx::ScaleSize( | 317 gfx::Size dest_content_size = gfx::ToCeiledSize(gfx::ScaleSize( | 
| 216 tiling_->ContentRect().size(), | 318 tiling_->ContentRect().size(), | 
| 217 1 / dest_to_content_scale_, | 319 1 / dest_to_content_scale_, | 
| 218 1 / dest_to_content_scale_)); | 320 1 / dest_to_content_scale_)); | 
| (...skipping 34 matching lines...) Expand 10 before | Expand all | Expand 10 after Loading... | |
| 253 if (tile_i_ > right_) { | 355 if (tile_i_ > right_) { | 
| 254 tile_i_ = left_; | 356 tile_i_ = left_; | 
| 255 tile_j_++; | 357 tile_j_++; | 
| 256 new_row = true; | 358 new_row = true; | 
| 257 if (tile_j_ > bottom_) { | 359 if (tile_j_ > bottom_) { | 
| 258 current_tile_ = NULL; | 360 current_tile_ = NULL; | 
| 259 return *this; | 361 return *this; | 
| 260 } | 362 } | 
| 261 } | 363 } | 
| 262 | 364 | 
| 263 current_tile_ = tiling_->TileAt(tile_i_, tile_j_); | 365 current_tile_ = tiling_->TileAt(tree_, tile_i_, tile_j_); | 
| 264 | 366 | 
| 265 // Calculate the current geometry rect. Due to floating point rounding | 367 // Calculate the current geometry rect. Due to floating point rounding | 
| 266 // and ToEnclosingRect, tiles might overlap in destination space on the | 368 // and ToEnclosingRect, tiles might overlap in destination space on the | 
| 267 // edges. | 369 // edges. | 
| 268 gfx::Rect last_geometry_rect = current_geometry_rect_; | 370 gfx::Rect last_geometry_rect = current_geometry_rect_; | 
| 269 | 371 | 
| 270 gfx::Rect content_rect = tiling_->tiling_data_.TileBounds(tile_i_, tile_j_); | 372 gfx::Rect content_rect = tiling_->tiling_data_.TileBounds(tile_i_, tile_j_); | 
| 271 | 373 | 
| 272 current_geometry_rect_ = | 374 current_geometry_rect_ = | 
| 273 gfx::ScaleToEnclosingRect(content_rect, | 375 gfx::ScaleToEnclosingRect(content_rect, | 
| (...skipping 35 matching lines...) Expand 10 before | Expand all | Expand 10 after Loading... | |
| 309 return current_geometry_rect_; | 411 return current_geometry_rect_; | 
| 310 } | 412 } | 
| 311 | 413 | 
| 312 gfx::Rect | 414 gfx::Rect | 
| 313 PictureLayerTiling::CoverageIterator::full_tile_geometry_rect() const { | 415 PictureLayerTiling::CoverageIterator::full_tile_geometry_rect() const { | 
| 314 gfx::Rect rect = tiling_->tiling_data_.TileBoundsWithBorder(tile_i_, tile_j_); | 416 gfx::Rect rect = tiling_->tiling_data_.TileBoundsWithBorder(tile_i_, tile_j_); | 
| 315 rect.set_size(tiling_->tiling_data_.max_texture_size()); | 417 rect.set_size(tiling_->tiling_data_.max_texture_size()); | 
| 316 return rect; | 418 return rect; | 
| 317 } | 419 } | 
| 318 | 420 | 
| 421 TilePriority PictureLayerTiling::CoverageIterator::priority() { | |
| 422 TileBundle* bundle = tiling_->TileBundleContainingTileAt(tile_i_, tile_j_); | |
| 423 if (bundle) | |
| 424 return bundle->GetPriority(tree_); | |
| 425 return TilePriority(); | |
| 426 } | |
| 427 | |
| 428 void PictureLayerTiling::CoverageIterator::SetPriorityForTesting( | |
| 429 const TilePriority& priority) { | |
| 430 TileBundle* bundle = tiling_->TileBundleContainingTileAt(tile_i_, tile_j_); | |
| 431 bundle->SetPriority(tree_, priority); | |
| 432 } | |
| 433 | |
| 319 gfx::RectF PictureLayerTiling::CoverageIterator::texture_rect() const { | 434 gfx::RectF PictureLayerTiling::CoverageIterator::texture_rect() const { | 
| 320 gfx::PointF tex_origin = | 435 gfx::PointF tex_origin = | 
| 321 tiling_->tiling_data_.TileBoundsWithBorder(tile_i_, tile_j_).origin(); | 436 tiling_->tiling_data_.TileBoundsWithBorder(tile_i_, tile_j_).origin(); | 
| 322 | 437 | 
| 323 // Convert from dest space => content space => texture space. | 438 // Convert from dest space => content space => texture space. | 
| 324 gfx::RectF texture_rect(current_geometry_rect_); | 439 gfx::RectF texture_rect(current_geometry_rect_); | 
| 325 texture_rect.Scale(dest_to_content_scale_, | 440 texture_rect.Scale(dest_to_content_scale_, | 
| 326 dest_to_content_scale_); | 441 dest_to_content_scale_); | 
| 327 texture_rect.Offset(-tex_origin.OffsetFromOrigin()); | 442 texture_rect.Offset(-tex_origin.OffsetFromOrigin()); | 
| 328 texture_rect.Intersect(tiling_->ContentRect()); | 443 texture_rect.Intersect(tiling_->ContentRect()); | 
| 329 | 444 | 
| 330 return texture_rect; | 445 return texture_rect; | 
| 331 } | 446 } | 
| 332 | 447 | 
| 333 gfx::Size PictureLayerTiling::CoverageIterator::texture_size() const { | 448 gfx::Size PictureLayerTiling::CoverageIterator::texture_size() const { | 
| 334 return tiling_->tiling_data_.max_texture_size(); | 449 return tiling_->tiling_data_.max_texture_size(); | 
| 335 } | 450 } | 
| 336 | 451 | 
| 337 void PictureLayerTiling::Reset() { | 452 void PictureLayerTiling::Reset() { | 
| 338 live_tiles_rect_ = gfx::Rect(); | 453 live_tiles_rect_ = gfx::Rect(); | 
| 339 tiles_.clear(); | 454 tile_bundles_.clear(); | 
| 340 } | 455 } | 
| 341 | 456 | 
| 342 void PictureLayerTiling::UpdateTilePriorities( | 457 void PictureLayerTiling::UpdateTilePriorities( | 
| 343 WhichTree tree, | 458 WhichTree tree, | 
| 344 gfx::Size device_viewport, | 459 gfx::Size device_viewport, | 
| 345 gfx::Rect viewport_in_layer_space, | 460 gfx::Rect viewport_in_layer_space, | 
| 346 gfx::Rect visible_layer_rect, | 461 gfx::Rect visible_layer_rect, | 
| 347 gfx::Size last_layer_bounds, | 462 gfx::Size last_layer_bounds, | 
| 348 gfx::Size current_layer_bounds, | 463 gfx::Size current_layer_bounds, | 
| 349 float last_layer_contents_scale, | 464 float last_layer_contents_scale, | 
| (...skipping 25 matching lines...) Expand all Loading... | |
| 375 ? viewport_in_content_space | 490 ? viewport_in_content_space | 
| 376 : visible_content_rect; | 491 : visible_content_rect; | 
| 377 gfx::Rect interest_rect = ExpandRectEquallyToAreaBoundedBy( | 492 gfx::Rect interest_rect = ExpandRectEquallyToAreaBoundedBy( | 
| 378 starting_rect, | 493 starting_rect, | 
| 379 interest_rect_area, | 494 interest_rect_area, | 
| 380 ContentRect(), | 495 ContentRect(), | 
| 381 &expansion_cache_); | 496 &expansion_cache_); | 
| 382 DCHECK(interest_rect.IsEmpty() || | 497 DCHECK(interest_rect.IsEmpty() || | 
| 383 ContentRect().Contains(interest_rect)); | 498 ContentRect().Contains(interest_rect)); | 
| 384 | 499 | 
| 385 SetLiveTilesRect(interest_rect); | 500 SetLiveTilesRect(tree, interest_rect); | 
| 386 | 501 | 
| 387 double time_delta = 0; | 502 double time_delta = 0; | 
| 388 if (last_impl_frame_time_in_seconds_ != 0.0 && | 503 if (last_impl_frame_time_in_seconds_ != 0.0 && | 
| 389 last_layer_bounds == current_layer_bounds) { | 504 last_layer_bounds == current_layer_bounds) { | 
| 390 time_delta = | 505 time_delta = | 
| 391 current_frame_time_in_seconds - last_impl_frame_time_in_seconds_; | 506 current_frame_time_in_seconds - last_impl_frame_time_in_seconds_; | 
| 392 } | 507 } | 
| 393 | 508 | 
| 394 gfx::Rect view_rect(device_viewport); | 509 gfx::Rect view_rect(device_viewport); | 
| 395 float current_scale = current_layer_contents_scale / contents_scale_; | 510 float current_scale = current_layer_contents_scale / contents_scale_; | 
| 396 float last_scale = last_layer_contents_scale / contents_scale_; | 511 float last_scale = last_layer_contents_scale / contents_scale_; | 
| 397 | 512 | 
| 398 // Fast path tile priority calculation when both transforms are translations. | 513 // Fast path tile priority calculation when both transforms are translations. | 
| 399 if (last_screen_transform.IsApproximatelyIdentityOrTranslation( | 514 if (last_screen_transform.IsApproximatelyIdentityOrTranslation( | 
| 400 std::numeric_limits<float>::epsilon()) && | 515 std::numeric_limits<float>::epsilon()) && | 
| 401 current_screen_transform.IsApproximatelyIdentityOrTranslation( | 516 current_screen_transform.IsApproximatelyIdentityOrTranslation( | 
| 402 std::numeric_limits<float>::epsilon())) { | 517 std::numeric_limits<float>::epsilon())) { | 
| 403 gfx::Vector2dF current_offset( | 518 gfx::Vector2dF current_offset( | 
| 404 current_screen_transform.matrix().get(0, 3), | 519 current_screen_transform.matrix().get(0, 3), | 
| 405 current_screen_transform.matrix().get(1, 3)); | 520 current_screen_transform.matrix().get(1, 3)); | 
| 406 gfx::Vector2dF last_offset( | 521 gfx::Vector2dF last_offset( | 
| 407 last_screen_transform.matrix().get(0, 3), | 522 last_screen_transform.matrix().get(0, 3), | 
| 408 last_screen_transform.matrix().get(1, 3)); | 523 last_screen_transform.matrix().get(1, 3)); | 
| 409 | 524 | 
| 410 for (TilingData::Iterator iter(&tiling_data_, interest_rect); | 525 for (TilingData::Iterator iter(&bundle_tiling_data_, interest_rect); | 
| 411 iter; ++iter) { | 526 iter; ++iter) { | 
| 412 TileMap::iterator find = tiles_.find(iter.index()); | 527 int bundle_x = iter.index_x(); | 
| 413 if (find == tiles_.end()) | 528 int bundle_y = iter.index_y(); | 
| 529 TileBundle* bundle = TileBundleAt(bundle_x, bundle_y); | |
| 530 if (!bundle) | |
| 414 continue; | 531 continue; | 
| 415 Tile* tile = find->second.get(); | |
| 416 | 532 | 
| 417 gfx::Rect tile_bounds = | 533 gfx::Rect bundle_bounds = | 
| 418 tiling_data_.TileBounds(iter.index_x(), iter.index_y()); | 534 bundle_tiling_data_.TileBounds(bundle_x, bundle_y); | 
| 419 gfx::RectF current_screen_rect = gfx::ScaleRect( | 535 gfx::RectF current_screen_rect = | 
| 420 tile_bounds, | 536 gfx::ScaleRect(bundle_bounds, current_scale, current_scale) + | 
| 421 current_scale, | 537 current_offset; | 
| 422 current_scale) + current_offset; | 538 gfx::RectF last_screen_rect = | 
| 423 gfx::RectF last_screen_rect = gfx::ScaleRect( | 539 gfx::ScaleRect(bundle_bounds, last_scale, last_scale) + | 
| 424 tile_bounds, | 540 last_offset; | 
| 425 last_scale, | |
| 426 last_scale) + last_offset; | |
| 427 | 541 | 
| 428 float distance_to_visible_in_pixels = | 542 float distance_to_visible_in_pixels = | 
| 429 TilePriority::manhattanDistance(current_screen_rect, view_rect); | 543 TilePriority::manhattanDistance(current_screen_rect, view_rect); | 
| 430 | 544 | 
| 431 float time_to_visible_in_seconds = | 545 float time_to_visible_in_seconds = | 
| 432 TilePriority::TimeForBoundsToIntersect( | 546 TilePriority::TimeForBoundsToIntersect( | 
| 433 last_screen_rect, current_screen_rect, time_delta, view_rect); | 547 last_screen_rect, current_screen_rect, time_delta, view_rect); | 
| 434 TilePriority priority( | 548 TilePriority priority( | 
| 435 resolution_, | 549 resolution_, | 
| 436 time_to_visible_in_seconds, | 550 time_to_visible_in_seconds, | 
| 437 distance_to_visible_in_pixels); | 551 distance_to_visible_in_pixels); | 
| 438 tile->SetPriority(tree, priority); | 552 | 
| 553 bundle->SetPriority(tree, priority); | |
| 439 } | 554 } | 
| 440 } else if (!last_screen_transform.HasPerspective() && | 555 } else if (!last_screen_transform.HasPerspective() && | 
| 441 !current_screen_transform.HasPerspective()) { | 556 !current_screen_transform.HasPerspective()) { | 
| 442 // Secondary fast path that can be applied for any affine transforms. | 557 // Secondary fast path that can be applied for any affine transforms. | 
| 443 | 558 | 
| 444 // Initialize the necessary geometry in screen space, so that we can | 559 // Initialize the necessary geometry in screen space, so that we can | 
| 445 // iterate over tiles in screen space without needing a costly transform | 560 // iterate over tiles in screen space without needing a costly transform | 
| 446 // mapping for each tile. | 561 // mapping for each tile. | 
| 447 | 562 | 
| 448 // Apply screen space transform to the local origin point (0, 0); only the | 563 // Apply screen space transform to the local origin point (0, 0); only the | 
| 449 // translation component is needed and can be initialized directly. | 564 // translation component is needed and can be initialized directly. | 
| 450 gfx::Point current_screen_space_origin( | 565 gfx::Point current_screen_space_origin( | 
| 451 current_screen_transform.matrix().get(0, 3), | 566 current_screen_transform.matrix().get(0, 3), | 
| 452 current_screen_transform.matrix().get(1, 3)); | 567 current_screen_transform.matrix().get(1, 3)); | 
| 453 | 568 | 
| 454 gfx::Point last_screen_space_origin( | 569 gfx::Point last_screen_space_origin( | 
| 455 last_screen_transform.matrix().get(0, 3), | 570 last_screen_transform.matrix().get(0, 3), | 
| 456 last_screen_transform.matrix().get(1, 3)); | 571 last_screen_transform.matrix().get(1, 3)); | 
| 457 | 572 | 
| 458 float current_tile_width = tiling_data_.TileSizeX(0) * current_scale; | 573 float current_bundle_width = | 
| 459 float last_tile_width = tiling_data_.TileSizeX(0) * last_scale; | 574 bundle_tiling_data_.TileSizeX(0) * current_scale; | 
| 460 float current_tile_height = tiling_data_.TileSizeY(0) * current_scale; | 575 float last_bundle_width = | 
| 461 float last_tile_height = tiling_data_.TileSizeY(0) * last_scale; | 576 bundle_tiling_data_.TileSizeX(0) * last_scale; | 
| 577 float current_bundle_height = | |
| 578 bundle_tiling_data_.TileSizeY(0) * current_scale; | |
| 579 float last_bundle_height = | |
| 580 bundle_tiling_data_.TileSizeY(0) * last_scale; | |
| 462 | 581 | 
| 463 // Apply screen space transform to local basis vectors (tile_width, 0) and | 582 // Apply screen space transform to local basis vectors (tile_width, 0) and | 
| 464 // (0, tile_height); the math simplifies and can be initialized directly. | 583 // (0, tile_height); the math simplifies and can be initialized directly. | 
| 465 gfx::Vector2dF current_horizontal( | 584 gfx::Vector2dF current_horizontal( | 
| 466 current_screen_transform.matrix().get(0, 0) * current_tile_width, | 585 current_screen_transform.matrix().get(0, 0) * current_bundle_width, | 
| 467 current_screen_transform.matrix().get(1, 0) * current_tile_width); | 586 current_screen_transform.matrix().get(1, 0) * current_bundle_width); | 
| 468 gfx::Vector2dF current_vertical( | 587 gfx::Vector2dF current_vertical( | 
| 469 current_screen_transform.matrix().get(0, 1) * current_tile_height, | 588 current_screen_transform.matrix().get(0, 1) * current_bundle_height, | 
| 470 current_screen_transform.matrix().get(1, 1) * current_tile_height); | 589 current_screen_transform.matrix().get(1, 1) * current_bundle_height); | 
| 471 | 590 | 
| 472 gfx::Vector2dF last_horizontal( | 591 gfx::Vector2dF last_horizontal( | 
| 473 last_screen_transform.matrix().get(0, 0) * last_tile_width, | 592 last_screen_transform.matrix().get(0, 0) * last_bundle_width, | 
| 474 last_screen_transform.matrix().get(1, 0) * last_tile_width); | 593 last_screen_transform.matrix().get(1, 0) * last_bundle_width); | 
| 475 gfx::Vector2dF last_vertical( | 594 gfx::Vector2dF last_vertical( | 
| 476 last_screen_transform.matrix().get(0, 1) * last_tile_height, | 595 last_screen_transform.matrix().get(0, 1) * last_bundle_height, | 
| 477 last_screen_transform.matrix().get(1, 1) * last_tile_height); | 596 last_screen_transform.matrix().get(1, 1) * last_bundle_height); | 
| 478 | 597 | 
| 479 for (TilingData::Iterator iter(&tiling_data_, interest_rect); | 598 for (TilingData::Iterator iter(&bundle_tiling_data_, interest_rect); | 
| 480 iter; ++iter) { | 599 iter; ++iter) { | 
| 481 TileMap::iterator find = tiles_.find(iter.index()); | 600 int bundle_x = iter.index_x(); | 
| 482 if (find == tiles_.end()) | 601 int bundle_y = iter.index_y(); | 
| 602 TileBundle* bundle = TileBundleAt(bundle_x, bundle_y); | |
| 603 if (!bundle) | |
| 483 continue; | 604 continue; | 
| 484 | 605 | 
| 485 Tile* tile = find->second.get(); | 606 gfx::PointF current_bundle_origin = current_screen_space_origin + | 
| 486 | 607 ScaleVector2d(current_horizontal, bundle_x) + | 
| 487 int i = iter.index_x(); | 608 ScaleVector2d(current_vertical, bundle_y); | 
| 488 int j = iter.index_y(); | 609 gfx::PointF last_bundle_origin = last_screen_space_origin + | 
| 489 gfx::PointF current_tile_origin = current_screen_space_origin + | 610 ScaleVector2d(last_horizontal, bundle_x) + | 
| 490 ScaleVector2d(current_horizontal, i) + | 611 ScaleVector2d(last_vertical, bundle_y); | 
| 491 ScaleVector2d(current_vertical, j); | |
| 492 gfx::PointF last_tile_origin = last_screen_space_origin + | |
| 493 ScaleVector2d(last_horizontal, i) + | |
| 494 ScaleVector2d(last_vertical, j); | |
| 495 | 612 | 
| 496 gfx::RectF current_screen_rect = gfx::QuadF( | 613 gfx::RectF current_screen_rect = gfx::QuadF( | 
| 497 current_tile_origin, | 614 current_bundle_origin, | 
| 498 current_tile_origin + current_horizontal, | 615 current_bundle_origin + current_horizontal, | 
| 499 current_tile_origin + current_horizontal + current_vertical, | 616 current_bundle_origin + current_horizontal + current_vertical, | 
| 500 current_tile_origin + current_vertical).BoundingBox(); | 617 current_bundle_origin + current_vertical).BoundingBox(); | 
| 501 | 618 | 
| 502 gfx::RectF last_screen_rect = gfx::QuadF( | 619 gfx::RectF last_screen_rect = gfx::QuadF( | 
| 503 last_tile_origin, | 620 last_bundle_origin, | 
| 504 last_tile_origin + last_horizontal, | 621 last_bundle_origin + last_horizontal, | 
| 505 last_tile_origin + last_horizontal + last_vertical, | 622 last_bundle_origin + last_horizontal + last_vertical, | 
| 506 last_tile_origin + last_vertical).BoundingBox(); | 623 last_bundle_origin + last_vertical).BoundingBox(); | 
| 507 | 624 | 
| 508 float distance_to_visible_in_pixels = | 625 float distance_to_visible_in_pixels = | 
| 509 TilePriority::manhattanDistance(current_screen_rect, view_rect); | 626 TilePriority::manhattanDistance(current_screen_rect, view_rect); | 
| 510 | 627 | 
| 511 float time_to_visible_in_seconds = | 628 float time_to_visible_in_seconds = | 
| 512 TilePriority::TimeForBoundsToIntersect( | 629 TilePriority::TimeForBoundsToIntersect( | 
| 513 last_screen_rect, current_screen_rect, time_delta, view_rect); | 630 last_screen_rect, current_screen_rect, time_delta, view_rect); | 
| 514 TilePriority priority( | 631 TilePriority priority( | 
| 515 resolution_, | 632 resolution_, | 
| 516 time_to_visible_in_seconds, | 633 time_to_visible_in_seconds, | 
| 517 distance_to_visible_in_pixels); | 634 distance_to_visible_in_pixels); | 
| 518 tile->SetPriority(tree, priority); | 635 | 
| 636 bundle->SetPriority(tree, priority); | |
| 519 } | 637 } | 
| 520 } else { | 638 } else { | 
| 521 for (TilingData::Iterator iter(&tiling_data_, interest_rect); | 639 for (TilingData::Iterator iter(&bundle_tiling_data_, interest_rect); | 
| 522 iter; ++iter) { | 640 iter; ++iter) { | 
| 523 TileMap::iterator find = tiles_.find(iter.index()); | 641 int bundle_x = iter.index_x(); | 
| 524 if (find == tiles_.end()) | 642 int bundle_y = iter.index_y(); | 
| 643 TileBundle* bundle = TileBundleAt(bundle_x, bundle_y); | |
| 644 if (!bundle) | |
| 525 continue; | 645 continue; | 
| 526 Tile* tile = find->second.get(); | |
| 527 | 646 | 
| 528 gfx::Rect tile_bounds = | 647 gfx::Rect bundle_bounds = | 
| 529 tiling_data_.TileBounds(iter.index_x(), iter.index_y()); | 648 bundle_tiling_data_.TileBounds(bundle_x, bundle_y); | 
| 530 gfx::RectF current_layer_content_rect = gfx::ScaleRect( | 649 gfx::RectF current_layer_content_rect = gfx::ScaleRect( | 
| 531 tile_bounds, | 650 bundle_bounds, | 
| 532 current_scale, | 651 current_scale, | 
| 533 current_scale); | 652 current_scale); | 
| 534 gfx::RectF current_screen_rect = MathUtil::MapClippedRect( | 653 gfx::RectF current_screen_rect = MathUtil::MapClippedRect( | 
| 535 current_screen_transform, current_layer_content_rect); | 654 current_screen_transform, current_layer_content_rect); | 
| 536 gfx::RectF last_layer_content_rect = gfx::ScaleRect( | 655 gfx::RectF last_layer_content_rect = gfx::ScaleRect( | 
| 537 tile_bounds, | 656 bundle_bounds, | 
| 538 last_scale, | 657 last_scale, | 
| 539 last_scale); | 658 last_scale); | 
| 540 gfx::RectF last_screen_rect = MathUtil::MapClippedRect( | 659 gfx::RectF last_screen_rect = MathUtil::MapClippedRect( | 
| 541 last_screen_transform, last_layer_content_rect); | 660 last_screen_transform, last_layer_content_rect); | 
| 542 | 661 | 
| 543 float distance_to_visible_in_pixels = | 662 float distance_to_visible_in_pixels = | 
| 544 TilePriority::manhattanDistance(current_screen_rect, view_rect); | 663 TilePriority::manhattanDistance(current_screen_rect, view_rect); | 
| 545 | 664 | 
| 546 float time_to_visible_in_seconds = | 665 float time_to_visible_in_seconds = | 
| 547 TilePriority::TimeForBoundsToIntersect( | 666 TilePriority::TimeForBoundsToIntersect( | 
| 548 last_screen_rect, current_screen_rect, time_delta, view_rect); | 667 last_screen_rect, current_screen_rect, time_delta, view_rect); | 
| 549 | 668 | 
| 550 TilePriority priority( | 669 TilePriority priority( | 
| 551 resolution_, | 670 resolution_, | 
| 552 time_to_visible_in_seconds, | 671 time_to_visible_in_seconds, | 
| 553 distance_to_visible_in_pixels); | 672 distance_to_visible_in_pixels); | 
| 554 tile->SetPriority(tree, priority); | 673 | 
| 674 bundle->SetPriority(tree, priority); | |
| 555 } | 675 } | 
| 556 } | 676 } | 
| 557 | 677 | 
| 558 last_impl_frame_time_in_seconds_ = current_frame_time_in_seconds; | 678 last_impl_frame_time_in_seconds_ = current_frame_time_in_seconds; | 
| 559 } | 679 } | 
| 560 | 680 | 
| 561 void PictureLayerTiling::SetLiveTilesRect( | 681 void PictureLayerTiling::SetLiveTilesRect( | 
| 562 gfx::Rect new_live_tiles_rect) { | 682 WhichTree tree, gfx::Rect new_live_tiles_rect) { | 
| 563 DCHECK(new_live_tiles_rect.IsEmpty() || | 683 DCHECK(new_live_tiles_rect.IsEmpty() || | 
| 564 ContentRect().Contains(new_live_tiles_rect)); | 684 ContentRect().Contains(new_live_tiles_rect)); | 
| 565 if (live_tiles_rect_ == new_live_tiles_rect) | 685 if (live_tiles_rect_ == new_live_tiles_rect) | 
| 566 return; | 686 return; | 
| 567 | 687 | 
| 568 // Iterate to delete all tiles outside of our new live_tiles rect. | 688 // Iterate to delete all tiles outside of our new live_tiles rect. | 
| 569 for (TilingData::DifferenceIterator iter(&tiling_data_, | 689 for (TilingData::DifferenceIterator iter(&tiling_data_, | 
| 570 live_tiles_rect_, | 690 live_tiles_rect_, | 
| 571 new_live_tiles_rect); | 691 new_live_tiles_rect); | 
| 572 iter; | 692 iter; | 
| 573 ++iter) { | 693 ++iter) { | 
| 574 TileMapKey key(iter.index()); | 694 int tile_x = iter.index_x(); | 
| 575 TileMap::iterator found = tiles_.find(key); | 695 int tile_y = iter.index_y(); | 
| 696 | |
| 576 // If the tile was outside of the recorded region, it won't exist even | 697 // If the tile was outside of the recorded region, it won't exist even | 
| 577 // though it was in the live rect. | 698 // though it was in the live rect. | 
| 578 if (found != tiles_.end()) | 699 RemoveTile(tree, tile_x, tile_y); | 
| 579 tiles_.erase(found); | 700 RemoveBundleIfEmptyContainingTileAt(tile_x, tile_y); | 
| 580 } | 701 } | 
| 581 | 702 | 
| 582 const PictureLayerTiling* twin_tiling = client_->GetTwinTiling(this); | 703 const PictureLayerTiling* twin_tiling = client_->GetTwinTiling(this); | 
| 583 | 704 | 
| 584 // Iterate to allocate new tiles for all regions with newly exposed area. | 705 // Iterate to allocate new tiles for all regions with newly exposed area. | 
| 585 for (TilingData::DifferenceIterator iter(&tiling_data_, | 706 for (TilingData::DifferenceIterator iter(&tiling_data_, | 
| 586 new_live_tiles_rect, | 707 new_live_tiles_rect, | 
| 587 live_tiles_rect_); | 708 live_tiles_rect_); | 
| 588 iter; | 709 iter; | 
| 589 ++iter) { | 710 ++iter) { | 
| 590 TileMapKey key(iter.index()); | 711 CreateTile(tree, iter.index_x(), iter.index_y(), twin_tiling); | 
| 591 CreateTile(key.first, key.second, twin_tiling); | |
| 592 } | 712 } | 
| 593 | 713 | 
| 594 live_tiles_rect_ = new_live_tiles_rect; | 714 live_tiles_rect_ = new_live_tiles_rect; | 
| 595 } | 715 } | 
| 596 | 716 | 
| 597 void PictureLayerTiling::DidBecomeRecycled() { | 717 void PictureLayerTiling::DidBecomeRecycled() { | 
| 598 // DidBecomeActive below will set the active priority for tiles that are | 718 // DidBecomeActive below will set the active priority for tiles that are | 
| 599 // still in the tree. Calling this first on an active tiling that is becoming | 719 // still in the tree. Calling this first on an active tiling that is becoming | 
| 600 // recycled takes care of tiles that are no longer in the active tree (eg. | 720 // recycled takes care of tiles that are no longer in the active tree (eg. | 
| 601 // due to a pending invalidation). | 721 // due to a pending invalidation). | 
| 602 for (TileMap::const_iterator it = tiles_.begin(); it != tiles_.end(); ++it) { | 722 for (TileBundleMap::const_iterator it = tile_bundles_.begin(); | 
| 603 it->second->SetPriority(ACTIVE_TREE, TilePriority()); | 723 it != tile_bundles_.end(); | 
| 724 ++it) { | |
| 725 it->second->DidBecomeRecycled(); | |
| 604 } | 726 } | 
| 605 } | 727 } | 
| 606 | 728 | 
| 607 void PictureLayerTiling::DidBecomeActive() { | 729 void PictureLayerTiling::DidBecomeActive() { | 
| 608 for (TileMap::const_iterator it = tiles_.begin(); it != tiles_.end(); ++it) { | 730 for (TileBundleMap::const_iterator it = tile_bundles_.begin(); | 
| 609 it->second->SetPriority(ACTIVE_TREE, it->second->priority(PENDING_TREE)); | 731 it != tile_bundles_.end(); | 
| 610 it->second->SetPriority(PENDING_TREE, TilePriority()); | 732 ++it) { | 
| 611 | 733 it->second->DidBecomeActive(); | 
| 612 // Tile holds a ref onto a picture pile. If the tile never gets invalidated | 734 for (TileBundle::Iterator tile_it(it->second.get()); tile_it; ++tile_it) { | 
| 613 // and recreated, then that picture pile ref could exist indefinitely. To | 735 // Tile holds a ref onto a picture pile. If the tile never gets | 
| 614 // prevent this, ask the client to update the pile to its own ref. This | 736 // invalidated and recreated, then that picture pile ref could exist | 
| 615 // will cause PicturePileImpls and their clones to get deleted once the | 737 // indefinitely. To prevent this, ask the client to update the pile to | 
| 616 // corresponding PictureLayerImpl and any in flight raster jobs go out of | 738 // its own ref. This will cause PicturePileImpls and their clones to get | 
| 617 // scope. | 739 // deleted once the corresponding PictureLayerImpl and any in flight | 
| 618 client_->UpdatePile(it->second.get()); | 740 // raster jobs go out of scope. | 
| 741 if (!tile_it.pending_tree_only_tile()) | |
| 742 client_->UpdatePile(*tile_it); | |
| 743 } | |
| 619 } | 744 } | 
| 620 } | 745 } | 
| 621 | 746 | 
| 622 void PictureLayerTiling::UpdateTilesToCurrentPile() { | 747 void PictureLayerTiling::UpdateTilesToCurrentPile() { | 
| 623 for (TileMap::const_iterator it = tiles_.begin(); it != tiles_.end(); ++it) { | 748 for (TileBundleMap::const_iterator it = tile_bundles_.begin(); | 
| 624 client_->UpdatePile(it->second.get()); | 749 it != tile_bundles_.end(); | 
| 750 ++it) { | |
| 751 for (TileBundle::Iterator tile_it(it->second.get()); tile_it; ++tile_it) { | |
| 752 if (!tile_it.active_tree_only_tile()) | |
| 753 client_->UpdatePile(*tile_it); | |
| 754 } | |
| 625 } | 755 } | 
| 626 } | 756 } | 
| 627 | 757 | 
| 628 scoped_ptr<base::Value> PictureLayerTiling::AsValue() const { | 758 scoped_ptr<base::Value> PictureLayerTiling::AsValue() const { | 
| 629 scoped_ptr<base::DictionaryValue> state(new base::DictionaryValue()); | 759 scoped_ptr<base::DictionaryValue> state(new base::DictionaryValue()); | 
| 630 state->SetInteger("num_tiles", tiles_.size()); | 760 state->SetInteger("num_tile_bundles", tile_bundles_.size()); | 
| 631 state->SetDouble("content_scale", contents_scale_); | 761 state->SetDouble("content_scale", contents_scale_); | 
| 632 state->Set("content_bounds", | 762 state->Set("content_bounds", | 
| 633 MathUtil::AsValue(ContentRect().size()).release()); | 763 MathUtil::AsValue(ContentRect().size()).release()); | 
| 634 return state.PassAs<base::Value>(); | 764 return state.PassAs<base::Value>(); | 
| 635 } | 765 } | 
| 636 | 766 | 
| 637 size_t PictureLayerTiling::GPUMemoryUsageInBytes() const { | 767 size_t PictureLayerTiling::GPUMemoryUsageInBytes() const { | 
| 638 size_t amount = 0; | 768 size_t amount = 0; | 
| 639 for (TileMap::const_iterator it = tiles_.begin(); it != tiles_.end(); ++it) { | 769 for (TileBundleMap::const_iterator it = tile_bundles_.begin(); | 
| 640 const Tile* tile = it->second.get(); | 770 it != tile_bundles_.end(); | 
| 641 amount += tile->GPUMemoryUsageInBytes(); | 771 ++it) { | 
| 772 for (TileBundle::Iterator tile_it(it->second.get()); tile_it; ++tile_it) | |
| 773 amount += tile_it->GPUMemoryUsageInBytes(); | |
| 642 } | 774 } | 
| 643 return amount; | 775 return amount; | 
| 644 } | 776 } | 
| 645 | 777 | 
| 646 PictureLayerTiling::RectExpansionCache::RectExpansionCache() | 778 PictureLayerTiling::RectExpansionCache::RectExpansionCache() | 
| 647 : previous_target(0) { | 779 : previous_target(0) { | 
| 648 } | 780 } | 
| 649 | 781 | 
| 650 namespace { | 782 namespace { | 
| 651 | 783 | 
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| 786 break; | 918 break; | 
| 787 } | 919 } | 
| 788 | 920 | 
| 789 gfx::Rect result(origin_x, origin_y, width, height); | 921 gfx::Rect result(origin_x, origin_y, width, height); | 
| 790 if (cache) | 922 if (cache) | 
| 791 cache->previous_result = result; | 923 cache->previous_result = result; | 
| 792 return result; | 924 return result; | 
| 793 } | 925 } | 
| 794 | 926 | 
| 795 } // namespace cc | 927 } // namespace cc | 
| OLD | NEW |