OLD | NEW |
1 // Copyright 2016 The Chromium Authors. All rights reserved. | 1 // Copyright 2016 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 "content/browser/find_request_manager.h" | 5 #include "content/browser/find_request_manager.h" |
6 | 6 |
7 #include "content/browser/frame_host/render_frame_host_impl.h" | 7 #include "content/browser/frame_host/render_frame_host_impl.h" |
8 #include "content/browser/web_contents/web_contents_impl.h" | 8 #include "content/browser/web_contents/web_contents_impl.h" |
9 #include "content/common/frame_messages.h" | 9 #include "content/common/frame_messages.h" |
10 #include "content/common/input_messages.h" | 10 #include "content/common/input_messages.h" |
11 | 11 |
12 namespace content { | 12 namespace content { |
13 | 13 |
| 14 namespace { |
| 15 |
| 16 // Returns the deepest last child frame under |node|/|rfh| in the frame tree. |
| 17 FrameTreeNode* GetDeepestLastChild(FrameTreeNode* node) { |
| 18 while (node->child_count()) |
| 19 node = node->child_at(node->child_count() - 1); |
| 20 return node; |
| 21 } |
| 22 RenderFrameHost* GetDeepestLastChild(RenderFrameHost* rfh) { |
| 23 FrameTreeNode* node = |
| 24 static_cast<RenderFrameHostImpl*>(rfh)->frame_tree_node(); |
| 25 return GetDeepestLastChild(node)->current_frame_host(); |
| 26 } |
| 27 |
| 28 // Returns the FrameTreeNode directly after |node| in the frame tree in search |
| 29 // order, or nullptr if one does not exist. If |wrap| is set, then wrapping |
| 30 // between the first and last frames is permitted. Note that this traversal |
| 31 // follows the same ordering as in blink::FrameTree::traverseNextWithWrap(). |
| 32 FrameTreeNode* TraverseNext(FrameTreeNode* node, bool wrap) { |
| 33 if (node->child_count()) |
| 34 return node->child_at(0); |
| 35 |
| 36 FrameTreeNode* sibling = node->NextSibling(); |
| 37 while (!sibling) { |
| 38 if (!node->parent()) |
| 39 return wrap ? node : nullptr; |
| 40 node = node->parent(); |
| 41 sibling = node->NextSibling(); |
| 42 } |
| 43 return sibling; |
| 44 } |
| 45 |
| 46 // Returns the FrameTreeNode directly before |node| in the frame tree in search |
| 47 // order, or nullptr if one does not exist. If |wrap| is set, then wrapping |
| 48 // between the first and last frames is permitted. Note that this traversal |
| 49 // follows the same ordering as in blink::FrameTree::traversePreviousWithWrap(). |
| 50 FrameTreeNode* TraversePrevious(FrameTreeNode* node, bool wrap) { |
| 51 if (FrameTreeNode* previous_sibling = node->PreviousSibling()) |
| 52 return GetDeepestLastChild(previous_sibling); |
| 53 if (node->parent()) |
| 54 return node->parent(); |
| 55 return wrap ? GetDeepestLastChild(node) : nullptr; |
| 56 } |
| 57 |
| 58 // The same as either TraverseNext() or TraversePrevious() depending on |
| 59 // |forward|. |
| 60 FrameTreeNode* TraverseNode(FrameTreeNode* node, bool forward, bool wrap) { |
| 61 return forward ? TraverseNext(node, wrap) : TraversePrevious(node, wrap); |
| 62 } |
| 63 |
| 64 } // namespace |
| 65 |
| 66 #if defined(OS_ANDROID) |
| 67 FindRequestManager::ActivateNearestFindResultState:: |
| 68 ActivateNearestFindResultState() = default; |
| 69 FindRequestManager::ActivateNearestFindResultState:: |
| 70 ActivateNearestFindResultState(float x, float y) |
| 71 : current_request_id(GetNextID()), |
| 72 x(x), |
| 73 y(y) {} |
| 74 FindRequestManager::ActivateNearestFindResultState:: |
| 75 ~ActivateNearestFindResultState() {} |
| 76 |
| 77 FindRequestManager::FrameRects::FrameRects() = default; |
| 78 FindRequestManager::FrameRects::FrameRects(const std::vector<gfx::RectF>& rects, |
| 79 int version) |
| 80 : rects(rects), version(version) {} |
| 81 FindRequestManager::FrameRects::~FrameRects() {} |
| 82 |
| 83 FindRequestManager::FindMatchRectsState::FindMatchRectsState() = default; |
| 84 FindRequestManager::FindMatchRectsState::~FindMatchRectsState() {} |
| 85 #endif |
| 86 |
14 // static | 87 // static |
15 const int FindRequestManager::kInvalidId = -1; | 88 const int FindRequestManager::kInvalidId = -1; |
16 | 89 |
17 FindRequestManager::FindRequestManager(WebContentsImpl* web_contents) | 90 FindRequestManager::FindRequestManager(WebContentsImpl* web_contents) |
18 : contents_(web_contents), | 91 : WebContentsObserver(web_contents), |
| 92 contents_(web_contents), |
19 current_session_id_(kInvalidId), | 93 current_session_id_(kInvalidId), |
| 94 pending_active_match_ordinal_(false), |
20 number_of_matches_(0), | 95 number_of_matches_(0), |
| 96 active_frame_(nullptr), |
| 97 relative_active_match_ordinal_(0), |
21 active_match_ordinal_(0) {} | 98 active_match_ordinal_(0) {} |
22 | 99 |
23 FindRequestManager::~FindRequestManager() {} | 100 FindRequestManager::~FindRequestManager() {} |
24 | 101 |
25 void FindRequestManager::Find(int request_id, | 102 void FindRequestManager::Find(int request_id, |
26 const base::string16& search_text, | 103 const base::string16& search_text, |
27 const blink::WebFindOptions& options) { | 104 const blink::WebFindOptions& options) { |
28 // Every find request must have a unique ID, and these IDs must strictly | 105 // Every find request must have a unique ID, and these IDs must strictly |
29 // increase so that newer requests always have greater IDs than older | 106 // increase so that newer requests always have greater IDs than older |
30 // requests. | 107 // requests. |
31 DCHECK_GT(request_id, current_request_.id); | 108 DCHECK_GT(request_id, current_request_.id); |
32 DCHECK_GT(request_id, current_session_id_); | 109 DCHECK_GT(request_id, current_session_id_); |
33 | 110 |
34 FindRequest request(request_id, search_text, options); | 111 // If this is a new find session, clear any queued requests from last session. |
| 112 if (!options.findNext) |
| 113 find_request_queue_ = std::queue<FindRequest>(); |
35 | 114 |
36 if (options.findNext) { | 115 find_request_queue_.emplace(request_id, search_text, options); |
37 // This is a find next operation. | 116 if (find_request_queue_.size() == 1) |
38 | 117 FindInternal(find_request_queue_.front()); |
39 // This implies that there is an ongoing find session with the same search | |
40 // text. | |
41 DCHECK_GE(current_session_id_, 0); | |
42 DCHECK_EQ(request.search_text, current_request_.search_text); | |
43 | |
44 current_request_ = request; | |
45 } else { | |
46 // This is an initial find operation. | |
47 Reset(request); | |
48 } | |
49 | |
50 SendFindIPC(request, contents_->GetMainFrame()); | |
51 } | 118 } |
52 | 119 |
53 void FindRequestManager::StopFinding(StopFindAction action) { | 120 void FindRequestManager::StopFinding(StopFindAction action) { |
54 SendStopFindingIPC(action, contents_->GetMainFrame()); | 121 contents_->SendToAllFrames( |
| 122 new FrameMsg_StopFinding(MSG_ROUTING_NONE, action)); |
| 123 |
55 current_session_id_ = kInvalidId; | 124 current_session_id_ = kInvalidId; |
| 125 #if defined(OS_ANDROID) |
| 126 // It is important that these pending replies are cleared whenever a find |
| 127 // session ends, so that subsequent replies for the old session are ignored. |
| 128 activate_.pending_replies.clear(); |
| 129 match_rects_.pending_replies.clear(); |
| 130 #endif |
56 } | 131 } |
57 | 132 |
58 void FindRequestManager::OnFindReply(RenderFrameHost* rfh, | 133 void FindRequestManager::OnFindReply(RenderFrameHost* rfh, |
59 int request_id, | 134 int request_id, |
60 int number_of_matches, | 135 int number_of_matches, |
61 const gfx::Rect& selection_rect, | 136 const gfx::Rect& selection_rect, |
62 int active_match_ordinal, | 137 int active_match_ordinal, |
63 bool final_update) { | 138 bool final_update) { |
64 // Ignore stale replies from abandoned find sessions. | 139 // Ignore stale replies from abandoned find sessions. |
65 if (current_session_id_ == kInvalidId || request_id < current_session_id_) | 140 if (current_session_id_ == kInvalidId || request_id < current_session_id_) |
66 return; | 141 return; |
| 142 DCHECK(CheckFrame(rfh)); |
67 | 143 |
68 // Update the stored results. | 144 // Update the stored find results. |
69 number_of_matches_ = number_of_matches; | |
70 selection_rect_ = selection_rect; | |
71 active_match_ordinal_ = active_match_ordinal; | |
72 | 145 |
73 NotifyFindReply(request_id, final_update); | 146 DCHECK_GE(number_of_matches, -1); |
| 147 DCHECK_GE(active_match_ordinal, -1); |
| 148 |
| 149 // Check for an update to the number of matches. |
| 150 if (number_of_matches != -1) { |
| 151 DCHECK_GE(number_of_matches, 0); |
| 152 // Increment the global number of matches by the number of additional |
| 153 // matches found for this frame. |
| 154 auto matches_per_frame_it = matches_per_frame_.find(rfh); |
| 155 number_of_matches_ += number_of_matches - matches_per_frame_it->second; |
| 156 matches_per_frame_it->second = number_of_matches; |
| 157 } |
| 158 |
| 159 // Check for an update to the selection rect. |
| 160 if (!selection_rect.IsEmpty()) |
| 161 selection_rect_ = selection_rect; |
| 162 |
| 163 // Check for an update to the active match ordinal. |
| 164 if (active_match_ordinal > 0) { |
| 165 if (rfh == active_frame_) { |
| 166 active_match_ordinal_ += |
| 167 active_match_ordinal - relative_active_match_ordinal_; |
| 168 relative_active_match_ordinal_ = active_match_ordinal; |
| 169 } else { |
| 170 if (active_frame_) { |
| 171 // The new active match is in a different frame than the previous, so |
| 172 // the previous active frame needs to be informed (to clear its active |
| 173 // match highlighting). |
| 174 active_frame_->Send(new FrameMsg_ClearActiveFindMatch( |
| 175 active_frame_->GetRoutingID())); |
| 176 } |
| 177 active_frame_ = rfh; |
| 178 relative_active_match_ordinal_ = active_match_ordinal; |
| 179 UpdateActiveMatchOrdinal(); |
| 180 } |
| 181 if (pending_active_match_ordinal_ && request_id == current_request_.id) |
| 182 pending_active_match_ordinal_ = false; |
| 183 AdvanceQueue(request_id); |
| 184 } |
| 185 |
| 186 if (!final_update) { |
| 187 NotifyFindReply(request_id, false /* final_update */); |
| 188 return; |
| 189 } |
| 190 |
| 191 // This is the final update for this frame for the current find operation. |
| 192 |
| 193 pending_replies_.erase(rfh); |
| 194 if (request_id == current_session_id_ && !pending_replies_.empty()) { |
| 195 NotifyFindReply(request_id, false /* final_update */); |
| 196 return; |
| 197 } |
| 198 DCHECK(request_id == current_session_id_ || |
| 199 current_request_.options.findNext); |
| 200 |
| 201 // This is the final update for the current find operation. |
| 202 FinalUpdate(request_id, rfh); |
| 203 } |
| 204 |
| 205 void FindRequestManager::RemoveFrame(RenderFrameHost* rfh) { |
| 206 if (current_session_id_ == kInvalidId || !CheckFrame(rfh)) |
| 207 return; |
| 208 |
| 209 // If matches are counted for the frame that is being removed, decrement the |
| 210 // match total before erasing that entry. |
| 211 auto it = matches_per_frame_.find(rfh); |
| 212 if (it != matches_per_frame_.end()) { |
| 213 number_of_matches_ -= it->second; |
| 214 matches_per_frame_.erase(it); |
| 215 } |
| 216 |
| 217 // Update the active match ordinal, since it may have changed. |
| 218 if (active_frame_ == rfh) { |
| 219 active_frame_ = nullptr; |
| 220 relative_active_match_ordinal_ = 0; |
| 221 } |
| 222 UpdateActiveMatchOrdinal(); |
| 223 |
| 224 #if defined(OS_ANDROID) |
| 225 // The removed frame may contain the nearest find result known so far. Note |
| 226 // that once all queried frames have responded, if this result was the overall |
| 227 // nearest, then no activation will occur. |
| 228 if (rfh == activate_.nearest_frame) |
| 229 activate_.nearest_frame = nullptr; |
| 230 |
| 231 // Match rects in the removed frame are no longer relevant. |
| 232 if (match_rects_.frame_rects.count(rfh)) { |
| 233 match_rects_.frame_rects.erase(rfh); |
| 234 ++match_rects_.known_version; |
| 235 } |
| 236 |
| 237 // A reply should not be expected from the removed frame. |
| 238 RemoveNearestFindResultPendingReply(rfh); |
| 239 RemoveFindMatchRectsPendingReply(rfh); |
| 240 #endif |
| 241 |
| 242 if (pending_replies_.count(rfh)) { |
| 243 // A reply should not be expected from the removed frame. |
| 244 pending_replies_.erase(rfh); |
| 245 if (pending_replies_.empty()) { |
| 246 FinalUpdate(current_request_.id, rfh); |
| 247 return; |
| 248 } |
| 249 } |
| 250 |
| 251 NotifyFindReply(current_session_id_, |
| 252 pending_replies_.empty() /* final_update */); |
74 } | 253 } |
75 | 254 |
76 #if defined(OS_ANDROID) | 255 #if defined(OS_ANDROID) |
77 void FindRequestManager::ActivateNearestFindResult(float x, | 256 void FindRequestManager::ActivateNearestFindResult(float x, float y) { |
78 float y) { | |
79 if (current_session_id_ == kInvalidId) | 257 if (current_session_id_ == kInvalidId) |
80 return; | 258 return; |
81 | 259 |
82 auto rfh = contents_->GetMainFrame(); | 260 activate_ = ActivateNearestFindResultState(x, y); |
83 rfh->Send(new InputMsg_ActivateNearestFindResult( | 261 |
84 rfh->GetRoutingID(), current_session_id_, x, y)); | 262 // Request from each frame the distance to the nearest find result (in that |
| 263 // frame) from the point (x, y), defined in find-in-page coordinates. |
| 264 for (FrameTreeNode* node : contents_->GetFrameTree()->Nodes()) { |
| 265 RenderFrameHost* rfh = node->current_frame_host(); |
| 266 |
| 267 if (!CheckFrame(rfh)) |
| 268 continue; |
| 269 |
| 270 activate_.pending_replies.insert(rfh); |
| 271 rfh->Send(new FrameMsg_GetNearestFindResult( |
| 272 rfh->GetRoutingID(), activate_.current_request_id, |
| 273 activate_.x, activate_.y)); |
| 274 } |
| 275 } |
| 276 |
| 277 void FindRequestManager::OnGetNearestFindResultReply(RenderFrameHost* rfh, |
| 278 int request_id, |
| 279 float distance) { |
| 280 if (request_id != activate_.current_request_id || |
| 281 !activate_.pending_replies.count(rfh)) { |
| 282 return; |
| 283 } |
| 284 |
| 285 // Check if this frame has a nearer find result than the current nearest. |
| 286 if (distance < activate_.nearest_distance) { |
| 287 activate_.nearest_frame = rfh; |
| 288 activate_.nearest_distance = distance; |
| 289 } |
| 290 |
| 291 RemoveNearestFindResultPendingReply(rfh); |
85 } | 292 } |
86 | 293 |
87 void FindRequestManager::RequestFindMatchRects(int current_version) { | 294 void FindRequestManager::RequestFindMatchRects(int current_version) { |
| 295 match_rects_.pending_replies.clear(); |
88 match_rects_.request_version = current_version; | 296 match_rects_.request_version = current_version; |
89 SendFindMatchRectsIPC(contents_->GetMainFrame()); | 297 |
| 298 // Request the latest find match rects from each frame. |
| 299 for (FrameTreeNode* node : contents_->GetFrameTree()->Nodes()) { |
| 300 RenderFrameHost* rfh = node->current_frame_host(); |
| 301 |
| 302 if (!CheckFrame(rfh)) |
| 303 continue; |
| 304 |
| 305 match_rects_.pending_replies.insert(rfh); |
| 306 auto it = match_rects_.frame_rects.find(rfh); |
| 307 int version = (it != match_rects_.frame_rects.end()) |
| 308 ? it->second.version : kInvalidId; |
| 309 rfh->Send(new FrameMsg_FindMatchRects(rfh->GetRoutingID(), version)); |
| 310 } |
90 } | 311 } |
91 | 312 |
92 void FindRequestManager::OnFindMatchRectsReply( | 313 void FindRequestManager::OnFindMatchRectsReply( |
93 RenderFrameHost* rfh, | 314 RenderFrameHost* rfh, |
94 int version, | 315 int version, |
95 const std::vector<gfx::RectF>& rects, | 316 const std::vector<gfx::RectF>& rects, |
96 const gfx::RectF& active_rect) { | 317 const gfx::RectF& active_rect) { |
97 contents_->NotifyFindMatchRectsReply(version, rects, active_rect); | 318 auto it = match_rects_.frame_rects.find(rfh); |
| 319 if (it == match_rects_.frame_rects.end() || it->second.version != version) { |
| 320 // New version of rects has been received, so update the data. |
| 321 match_rects_.frame_rects[rfh] = FrameRects(rects, version); |
| 322 ++match_rects_.known_version; |
| 323 } |
| 324 if (!active_rect.IsEmpty()) |
| 325 match_rects_.active_rect = active_rect; |
| 326 RemoveFindMatchRectsPendingReply(rfh); |
98 } | 327 } |
99 #endif | 328 #endif |
100 | 329 |
| 330 void FindRequestManager::RenderFrameDeleted(RenderFrameHost* rfh) { |
| 331 RemoveFrame(rfh); |
| 332 } |
| 333 |
| 334 void FindRequestManager::RenderFrameHostChanged(RenderFrameHost* old_host, |
| 335 RenderFrameHost* new_host) { |
| 336 RemoveFrame(old_host); |
| 337 } |
| 338 |
| 339 void FindRequestManager::FrameDeleted(RenderFrameHost* rfh) { |
| 340 RemoveFrame(rfh); |
| 341 } |
| 342 |
101 void FindRequestManager::Reset(const FindRequest& initial_request) { | 343 void FindRequestManager::Reset(const FindRequest& initial_request) { |
102 current_session_id_ = initial_request.id; | 344 current_session_id_ = initial_request.id; |
103 current_request_ = initial_request; | 345 current_request_ = initial_request; |
| 346 pending_replies_.clear(); |
| 347 pending_active_match_ordinal_ = true; |
| 348 matches_per_frame_.clear(); |
104 number_of_matches_ = 0; | 349 number_of_matches_ = 0; |
| 350 active_frame_ = nullptr; |
| 351 relative_active_match_ordinal_ = 0; |
105 active_match_ordinal_ = 0; | 352 active_match_ordinal_ = 0; |
106 selection_rect_ = gfx::Rect(); | 353 selection_rect_ = gfx::Rect(); |
107 #if defined(OS_ANDROID) | 354 #if defined(OS_ANDROID) |
108 match_rects_ = FindMatchRectsState(); | 355 activate_ = ActivateNearestFindResultState(); |
| 356 match_rects_.pending_replies.clear(); |
109 #endif | 357 #endif |
110 } | 358 } |
111 | 359 |
| 360 void FindRequestManager::FindInternal(const FindRequest& request) { |
| 361 DCHECK_GT(request.id, current_request_.id); |
| 362 DCHECK_GT(request.id, current_session_id_); |
| 363 |
| 364 if (request.options.findNext) { |
| 365 // This is a find next operation. |
| 366 |
| 367 // This implies that there is an ongoing find session with the same search |
| 368 // text. |
| 369 DCHECK_GE(current_session_id_, 0); |
| 370 DCHECK_EQ(request.search_text, current_request_.search_text); |
| 371 |
| 372 // The find next request will be directed at the focused frame if there is |
| 373 // one, or the first frame with matches otherwise. |
| 374 RenderFrameHost* target_rfh = contents_->GetFocusedFrame(); |
| 375 if (!target_rfh || !CheckFrame(target_rfh)) |
| 376 target_rfh = GetInitialFrame(request.options.forward); |
| 377 |
| 378 SendFindIPC(request, target_rfh); |
| 379 current_request_ = request; |
| 380 pending_active_match_ordinal_ = true; |
| 381 return; |
| 382 } |
| 383 |
| 384 // This is an initial find operation. |
| 385 Reset(request); |
| 386 for (FrameTreeNode* node : contents_->GetFrameTree()->Nodes()) |
| 387 AddFrame(node->current_frame_host()); |
| 388 } |
| 389 |
| 390 void FindRequestManager::AdvanceQueue(int request_id) { |
| 391 if (find_request_queue_.empty() || |
| 392 request_id != find_request_queue_.front().id) { |
| 393 return; |
| 394 } |
| 395 |
| 396 find_request_queue_.pop(); |
| 397 if (!find_request_queue_.empty()) |
| 398 FindInternal(find_request_queue_.front()); |
| 399 } |
| 400 |
112 void FindRequestManager::SendFindIPC(const FindRequest& request, | 401 void FindRequestManager::SendFindIPC(const FindRequest& request, |
113 RenderFrameHost* rfh) { | 402 RenderFrameHost* rfh) { |
| 403 pending_replies_.insert(rfh); |
114 rfh->Send(new FrameMsg_Find(rfh->GetRoutingID(), request.id, | 404 rfh->Send(new FrameMsg_Find(rfh->GetRoutingID(), request.id, |
115 request.search_text, request.options)); | 405 request.search_text, request.options)); |
116 } | 406 } |
117 | 407 |
118 void FindRequestManager::SendStopFindingIPC(StopFindAction action, | |
119 RenderFrameHost* rfh) const { | |
120 rfh->Send(new FrameMsg_StopFinding(rfh->GetRoutingID(), action)); | |
121 } | |
122 | |
123 void FindRequestManager::NotifyFindReply(int request_id, | 408 void FindRequestManager::NotifyFindReply(int request_id, |
124 bool final_update) const { | 409 bool final_update) const { |
125 if (request_id == kInvalidId) { | 410 if (request_id == kInvalidId) { |
126 NOTREACHED(); | 411 NOTREACHED(); |
127 return; | 412 return; |
128 } | 413 } |
129 | 414 |
130 contents_->NotifyFindReply(request_id, number_of_matches_, selection_rect_, | 415 contents_->NotifyFindReply(request_id, number_of_matches_, selection_rect_, |
131 active_match_ordinal_, final_update); | 416 active_match_ordinal_, final_update); |
132 } | 417 } |
133 | 418 |
| 419 RenderFrameHost* FindRequestManager::GetInitialFrame(bool forward) const { |
| 420 RenderFrameHost* rfh = contents_->GetMainFrame(); |
| 421 |
| 422 if (!forward) |
| 423 rfh = GetDeepestLastChild(rfh); |
| 424 |
| 425 return rfh; |
| 426 } |
| 427 |
| 428 RenderFrameHost* FindRequestManager::Traverse(RenderFrameHost* from_rfh, |
| 429 bool forward, |
| 430 bool matches_only, |
| 431 bool wrap) const { |
| 432 FrameTreeNode* node = |
| 433 static_cast<RenderFrameHostImpl*>(from_rfh)->frame_tree_node(); |
| 434 |
| 435 while ((node = TraverseNode(node, forward, wrap)) != nullptr) { |
| 436 if (!CheckFrame(node->current_frame_host())) |
| 437 continue; |
| 438 RenderFrameHost* current_rfh = node->current_frame_host(); |
| 439 if (!matches_only || matches_per_frame_.find(current_rfh)->second || |
| 440 pending_replies_.count(current_rfh)) { |
| 441 // Note that if there is still a pending reply expected for this frame, |
| 442 // then it may have unaccounted matches and will not be skipped via |
| 443 // |matches_only|. |
| 444 return node->current_frame_host(); |
| 445 } |
| 446 if (wrap && node->current_frame_host() == from_rfh) |
| 447 return nullptr; |
| 448 } |
| 449 |
| 450 return nullptr; |
| 451 } |
| 452 |
| 453 void FindRequestManager::AddFrame(RenderFrameHost* rfh) { |
| 454 if (!rfh || !rfh->IsRenderFrameLive()) |
| 455 return; |
| 456 |
| 457 // A frame that is already being searched should not be added again. |
| 458 DCHECK(!CheckFrame(rfh)); |
| 459 |
| 460 matches_per_frame_[rfh] = 0; |
| 461 |
| 462 FindRequest request = current_request_; |
| 463 request.id = current_session_id_; |
| 464 request.options.findNext = false; |
| 465 SendFindIPC(request, rfh); |
| 466 } |
| 467 |
| 468 bool FindRequestManager::CheckFrame(RenderFrameHost* rfh) const { |
| 469 return rfh && rfh->IsRenderFrameLive() && matches_per_frame_.count(rfh); |
| 470 } |
| 471 |
| 472 void FindRequestManager::UpdateActiveMatchOrdinal() { |
| 473 active_match_ordinal_ = 0; |
| 474 |
| 475 if (!active_frame_ || !relative_active_match_ordinal_) { |
| 476 DCHECK(!active_frame_ && !relative_active_match_ordinal_); |
| 477 return; |
| 478 } |
| 479 |
| 480 // Traverse the frame tree backwards (in search order) and count all of the |
| 481 // matches in frames before the frame with the active match, in order to |
| 482 // determine the overall active match ordinal. |
| 483 RenderFrameHost* frame = active_frame_; |
| 484 while ((frame = Traverse(frame, |
| 485 false /* forward */, |
| 486 true /* matches_only */, |
| 487 false /* wrap */)) != nullptr) { |
| 488 active_match_ordinal_ += matches_per_frame_[frame]; |
| 489 } |
| 490 active_match_ordinal_ += relative_active_match_ordinal_; |
| 491 } |
| 492 |
| 493 void FindRequestManager::FinalUpdate(int request_id, RenderFrameHost* rfh) { |
| 494 if (!number_of_matches_ || |
| 495 !pending_active_match_ordinal_ || |
| 496 request_id != current_request_.id) { |
| 497 NotifyFindReply(request_id, true /* final_update */); |
| 498 AdvanceQueue(request_id); |
| 499 return; |
| 500 } |
| 501 |
| 502 // There are matches, but no active match was returned, so another find next |
| 503 // request must be sent. |
| 504 |
| 505 RenderFrameHost* target_rfh; |
| 506 if (current_request_.options.findNext) { |
| 507 // If this was a find next operation, then the active match will be in the |
| 508 // next frame with matches after this one. |
| 509 target_rfh = Traverse(rfh, |
| 510 current_request_.options.forward, |
| 511 true /* matches_only */, |
| 512 true /* wrap */); |
| 513 } else if ((target_rfh = contents_->GetFocusedFrame()) != nullptr) { |
| 514 // Otherwise, if there is a focused frame, then the active match will be in |
| 515 // the next frame with matches after that one. |
| 516 target_rfh = Traverse(target_rfh, |
| 517 current_request_.options.forward, |
| 518 true /* matches_only */, |
| 519 true /* wrap */); |
| 520 } else { |
| 521 // Otherwise, the first frame with matches will have the active match. |
| 522 target_rfh = GetInitialFrame(current_request_.options.forward); |
| 523 if (!CheckFrame(target_rfh) || !matches_per_frame_[target_rfh]) { |
| 524 target_rfh = Traverse(target_rfh, |
| 525 current_request_.options.forward, |
| 526 true /* matches_only */, |
| 527 false /* wrap */); |
| 528 } |
| 529 } |
| 530 DCHECK(target_rfh); |
| 531 |
| 532 // Forward the find reply without |final_update| set because the active match |
| 533 // has not yet been found. |
| 534 NotifyFindReply(request_id, false /* final_update */); |
| 535 |
| 536 current_request_.options.findNext = true; |
| 537 SendFindIPC(current_request_, target_rfh); |
| 538 } |
| 539 |
134 #if defined(OS_ANDROID) | 540 #if defined(OS_ANDROID) |
135 void FindRequestManager::SendFindMatchRectsIPC(RenderFrameHost* rfh) { | 541 void FindRequestManager::RemoveNearestFindResultPendingReply( |
136 rfh->Send(new FrameMsg_FindMatchRects(rfh->GetRoutingID(), | 542 RenderFrameHost* rfh) { |
137 match_rects_.request_version)); | 543 auto it = activate_.pending_replies.find(rfh); |
| 544 if (it == activate_.pending_replies.end()) |
| 545 return; |
| 546 |
| 547 activate_.pending_replies.erase(it); |
| 548 if (activate_.pending_replies.empty() && |
| 549 CheckFrame(activate_.nearest_frame)) { |
| 550 activate_.nearest_frame->Send(new FrameMsg_ActivateNearestFindResult( |
| 551 activate_.nearest_frame->GetRoutingID(), |
| 552 current_session_id_, activate_.x, activate_.y)); |
| 553 } |
| 554 } |
| 555 |
| 556 void FindRequestManager::RemoveFindMatchRectsPendingReply( |
| 557 RenderFrameHost* rfh) { |
| 558 auto it = match_rects_.pending_replies.find(rfh); |
| 559 if (it == match_rects_.pending_replies.end()) |
| 560 return; |
| 561 |
| 562 match_rects_.pending_replies.erase(it); |
| 563 if (match_rects_.pending_replies.empty()) { |
| 564 // All replies are in. |
| 565 std::vector<gfx::RectF> aggregate_rects; |
| 566 if (match_rects_.request_version != match_rects_.known_version) { |
| 567 // Request version is stale, so aggregate and report the newer find |
| 568 // match rects. The rects should be aggregated in search order. |
| 569 for (RenderFrameHost* frame = GetInitialFrame(true /* forward */); frame; |
| 570 frame = Traverse(frame, |
| 571 true /* forward */, |
| 572 true /* matches_only */, |
| 573 false /* wrap */)) { |
| 574 auto it = match_rects_.frame_rects.find(frame); |
| 575 if (it == match_rects_.frame_rects.end()) |
| 576 continue; |
| 577 |
| 578 std::vector<gfx::RectF>& frame_rects = it->second.rects; |
| 579 aggregate_rects.insert( |
| 580 aggregate_rects.end(), frame_rects.begin(), frame_rects.end()); |
| 581 } |
| 582 } |
| 583 contents_->NotifyFindMatchRectsReply( |
| 584 match_rects_.known_version, aggregate_rects, match_rects_.active_rect); |
| 585 } |
138 } | 586 } |
139 #endif | 587 #endif |
140 | 588 |
141 } // namespace content | 589 } // namespace content |
OLD | NEW |