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 "content/browser/frame_host/frame_tree.h"
6
7 #include <queue>
8
9 #include "base/bind.h"
10 #include "base/callback.h"
11 #include "base/containers/hash_tables.h"
12 #include "base/lazy_instance.h"
13 #include "content/browser/frame_host/frame_tree_node.h"
14 #include "content/browser/frame_host/navigator.h"
15 #include "content/browser/frame_host/render_frame_host_factory.h"
16 #include "content/browser/frame_host/render_frame_host_impl.h"
17 #include "content/browser/frame_host/render_frame_proxy_host.h"
18 #include "content/browser/renderer_host/render_view_host_factory.h"
19 #include "content/browser/renderer_host/render_view_host_impl.h"
20 #include "content/public/browser/browser_thread.h"
21
22 namespace content {
23
24 namespace {
25
26 // This is a global map between frame_tree_node_ids and pointer to
27 // FrameTreeNodes.
28 typedef base::hash_map<int64, FrameTreeNode*> FrameTreeNodeIDMap;
29
30 base::LazyInstance<FrameTreeNodeIDMap> g_frame_tree_node_id_map =
31 LAZY_INSTANCE_INITIALIZER;
32
33 // Used with FrameTree::ForEach() to search for the FrameTreeNode
34 // corresponding to |frame_tree_node_id| whithin a specific FrameTree.
FrameTreeNodeForId(int64 frame_tree_node_id,FrameTreeNode ** out_node,FrameTreeNode * node)35 bool FrameTreeNodeForId(int64 frame_tree_node_id,
36 FrameTreeNode** out_node,
37 FrameTreeNode* node) {
38 if (node->frame_tree_node_id() == frame_tree_node_id) {
39 *out_node = node;
40 // Terminate iteration once the node has been found.
41 return false;
42 }
43 return true;
44 }
45
46 // Iterate over the FrameTree to reset any node affected by the loss of the
47 // given RenderViewHost's process.
ResetNodesForNewProcess(RenderViewHost * render_view_host,FrameTreeNode * node)48 bool ResetNodesForNewProcess(RenderViewHost* render_view_host,
49 FrameTreeNode* node) {
50 if (render_view_host == node->current_frame_host()->render_view_host())
51 node->ResetForNewProcess();
52 return true;
53 }
54
CreateProxyForSiteInstance(FrameTreeNode * source_node,const scoped_refptr<SiteInstance> & instance,FrameTreeNode * node)55 bool CreateProxyForSiteInstance(FrameTreeNode* source_node,
56 const scoped_refptr<SiteInstance>& instance,
57 FrameTreeNode* node) {
58 // Skip the node that initiated the creation.
59 if (source_node == node)
60 return true;
61
62 node->render_manager()->CreateRenderFrameProxy(instance.get());
63 return true;
64 }
65
66 } // namespace
67
FrameTree(Navigator * navigator,RenderFrameHostDelegate * render_frame_delegate,RenderViewHostDelegate * render_view_delegate,RenderWidgetHostDelegate * render_widget_delegate,RenderFrameHostManager::Delegate * manager_delegate)68 FrameTree::FrameTree(Navigator* navigator,
69 RenderFrameHostDelegate* render_frame_delegate,
70 RenderViewHostDelegate* render_view_delegate,
71 RenderWidgetHostDelegate* render_widget_delegate,
72 RenderFrameHostManager::Delegate* manager_delegate)
73 : render_frame_delegate_(render_frame_delegate),
74 render_view_delegate_(render_view_delegate),
75 render_widget_delegate_(render_widget_delegate),
76 manager_delegate_(manager_delegate),
77 root_(new FrameTreeNode(this,
78 navigator,
79 render_frame_delegate,
80 render_view_delegate,
81 render_widget_delegate,
82 manager_delegate,
83 std::string())),
84 focused_frame_tree_node_id_(-1) {
85 std::pair<FrameTreeNodeIDMap::iterator, bool> result =
86 g_frame_tree_node_id_map.Get().insert(
87 std::make_pair(root_->frame_tree_node_id(), root_.get()));
88 CHECK(result.second);
89 }
90
~FrameTree()91 FrameTree::~FrameTree() {
92 g_frame_tree_node_id_map.Get().erase(root_->frame_tree_node_id());
93 }
94
95 // static
GloballyFindByID(int64 frame_tree_node_id)96 FrameTreeNode* FrameTree::GloballyFindByID(int64 frame_tree_node_id) {
97 DCHECK(BrowserThread::CurrentlyOn(BrowserThread::UI));
98 FrameTreeNodeIDMap* nodes = g_frame_tree_node_id_map.Pointer();
99 FrameTreeNodeIDMap::iterator it = nodes->find(frame_tree_node_id);
100 return it == nodes->end() ? NULL : it->second;
101 }
102
FindByID(int64 frame_tree_node_id)103 FrameTreeNode* FrameTree::FindByID(int64 frame_tree_node_id) {
104 FrameTreeNode* node = NULL;
105 ForEach(base::Bind(&FrameTreeNodeForId, frame_tree_node_id, &node));
106 return node;
107 }
108
FindByRoutingID(int routing_id,int process_id)109 FrameTreeNode* FrameTree::FindByRoutingID(int routing_id, int process_id) {
110 RenderFrameHostImpl* render_frame_host =
111 RenderFrameHostImpl::FromID(process_id, routing_id);
112 if (render_frame_host) {
113 FrameTreeNode* result = render_frame_host->frame_tree_node();
114 if (this == result->frame_tree())
115 return result;
116 }
117
118 RenderFrameProxyHost* render_frame_proxy_host =
119 RenderFrameProxyHost::FromID(process_id, routing_id);
120 if (render_frame_proxy_host) {
121 FrameTreeNode* result = render_frame_proxy_host->frame_tree_node();
122 if (this == result->frame_tree())
123 return result;
124 }
125
126 return NULL;
127 }
128
ForEach(const base::Callback<bool (FrameTreeNode *)> & on_node) const129 void FrameTree::ForEach(
130 const base::Callback<bool(FrameTreeNode*)>& on_node) const {
131 std::queue<FrameTreeNode*> queue;
132 queue.push(root_.get());
133
134 while (!queue.empty()) {
135 FrameTreeNode* node = queue.front();
136 queue.pop();
137 if (!on_node.Run(node))
138 break;
139
140 for (size_t i = 0; i < node->child_count(); ++i)
141 queue.push(node->child_at(i));
142 }
143 }
144
AddFrame(FrameTreeNode * parent,int process_id,int new_routing_id,const std::string & frame_name)145 RenderFrameHostImpl* FrameTree::AddFrame(FrameTreeNode* parent,
146 int process_id,
147 int new_routing_id,
148 const std::string& frame_name) {
149 // A child frame always starts with an initial empty document, which means
150 // it is in the same SiteInstance as the parent frame. Ensure that the process
151 // which requested a child frame to be added is the same as the process of the
152 // parent node.
153 if (parent->current_frame_host()->GetProcess()->GetID() != process_id)
154 return nullptr;
155
156 scoped_ptr<FrameTreeNode> node(new FrameTreeNode(
157 this, parent->navigator(), render_frame_delegate_, render_view_delegate_,
158 render_widget_delegate_, manager_delegate_, frame_name));
159 std::pair<FrameTreeNodeIDMap::iterator, bool> result =
160 g_frame_tree_node_id_map.Get().insert(
161 std::make_pair(node->frame_tree_node_id(), node.get()));
162 CHECK(result.second);
163 FrameTreeNode* node_ptr = node.get();
164 // AddChild is what creates the RenderFrameHost.
165 parent->AddChild(node.Pass(), process_id, new_routing_id);
166 return node_ptr->current_frame_host();
167 }
168
RemoveFrame(FrameTreeNode * child)169 void FrameTree::RemoveFrame(FrameTreeNode* child) {
170 FrameTreeNode* parent = child->parent();
171 if (!parent) {
172 NOTREACHED() << "Unexpected RemoveFrame call for main frame.";
173 return;
174 }
175
176 // Notify observers of the frame removal.
177 RenderFrameHostImpl* render_frame_host = child->current_frame_host();
178 if (!on_frame_removed_.is_null()) {
179 on_frame_removed_.Run(render_frame_host);
180 }
181 g_frame_tree_node_id_map.Get().erase(child->frame_tree_node_id());
182 parent->RemoveChild(child);
183 }
184
CreateProxiesForSiteInstance(FrameTreeNode * source,SiteInstance * site_instance)185 void FrameTree::CreateProxiesForSiteInstance(
186 FrameTreeNode* source,
187 SiteInstance* site_instance) {
188 // Create the swapped out RVH for the new SiteInstance. This will create
189 // a top-level swapped out RFH as well, which will then be wrapped by a
190 // RenderFrameProxyHost.
191 if (!source->IsMainFrame()) {
192 RenderViewHostImpl* render_view_host =
193 source->frame_tree()->GetRenderViewHost(site_instance);
194 if (!render_view_host) {
195 root()->render_manager()->CreateRenderFrame(site_instance,
196 MSG_ROUTING_NONE,
197 true,
198 false,
199 true);
200 }
201 }
202
203 scoped_refptr<SiteInstance> instance(site_instance);
204 ForEach(base::Bind(&CreateProxyForSiteInstance, source, instance));
205 }
206
ResetForMainFrameSwap()207 void FrameTree::ResetForMainFrameSwap() {
208 root_->ResetForNewProcess();
209 focused_frame_tree_node_id_ = -1;
210 }
211
RenderProcessGone(RenderViewHost * render_view_host)212 void FrameTree::RenderProcessGone(RenderViewHost* render_view_host) {
213 // Walk the full tree looking for nodes that may be affected. Once a frame
214 // crashes, all of its child FrameTreeNodes go away.
215 // Note that the helper function may call ResetForNewProcess on a node, which
216 // clears its children before we iterate over them. That's ok, because
217 // ForEach does not add a node's children to the queue until after visiting
218 // the node itself.
219 ForEach(base::Bind(&ResetNodesForNewProcess, render_view_host));
220 }
221
GetMainFrame() const222 RenderFrameHostImpl* FrameTree::GetMainFrame() const {
223 return root_->current_frame_host();
224 }
225
GetFocusedFrame()226 FrameTreeNode* FrameTree::GetFocusedFrame() {
227 return FindByID(focused_frame_tree_node_id_);
228 }
229
SetFocusedFrame(FrameTreeNode * node)230 void FrameTree::SetFocusedFrame(FrameTreeNode* node) {
231 focused_frame_tree_node_id_ = node->frame_tree_node_id();
232 }
233
SetFrameRemoveListener(const base::Callback<void (RenderFrameHost *)> & on_frame_removed)234 void FrameTree::SetFrameRemoveListener(
235 const base::Callback<void(RenderFrameHost*)>& on_frame_removed) {
236 on_frame_removed_ = on_frame_removed;
237 }
238
CreateRenderViewHost(SiteInstance * site_instance,int routing_id,int main_frame_routing_id,bool swapped_out,bool hidden)239 RenderViewHostImpl* FrameTree::CreateRenderViewHost(SiteInstance* site_instance,
240 int routing_id,
241 int main_frame_routing_id,
242 bool swapped_out,
243 bool hidden) {
244 DCHECK(main_frame_routing_id != MSG_ROUTING_NONE);
245 RenderViewHostMap::iterator iter =
246 render_view_host_map_.find(site_instance->GetId());
247 if (iter != render_view_host_map_.end()) {
248 // If a RenderViewHost is pending shutdown for this |site_instance|, put it
249 // in the map of RenderViewHosts pending shutdown. Otherwise return the
250 // existing RenderViewHost for the SiteInstance.
251 if (iter->second->rvh_state() ==
252 RenderViewHostImpl::STATE_PENDING_SHUTDOWN) {
253 render_view_host_pending_shutdown_map_.insert(
254 std::pair<int, RenderViewHostImpl*>(site_instance->GetId(),
255 iter->second));
256 render_view_host_map_.erase(iter);
257 } else {
258 return iter->second;
259 }
260 }
261 RenderViewHostImpl* rvh = static_cast<RenderViewHostImpl*>(
262 RenderViewHostFactory::Create(site_instance,
263 render_view_delegate_,
264 render_widget_delegate_,
265 routing_id,
266 main_frame_routing_id,
267 swapped_out,
268 hidden));
269
270 render_view_host_map_[site_instance->GetId()] = rvh;
271 return rvh;
272 }
273
GetRenderViewHost(SiteInstance * site_instance)274 RenderViewHostImpl* FrameTree::GetRenderViewHost(SiteInstance* site_instance) {
275 RenderViewHostMap::iterator iter =
276 render_view_host_map_.find(site_instance->GetId());
277 // TODO(creis): Mirror the frame tree so this check can't fail.
278 if (iter == render_view_host_map_.end())
279 return NULL;
280 return iter->second;
281 }
282
RegisterRenderFrameHost(RenderFrameHostImpl * render_frame_host)283 void FrameTree::RegisterRenderFrameHost(
284 RenderFrameHostImpl* render_frame_host) {
285 SiteInstance* site_instance =
286 render_frame_host->render_view_host()->GetSiteInstance();
287 RenderViewHostMap::iterator iter =
288 render_view_host_map_.find(site_instance->GetId());
289 CHECK(iter != render_view_host_map_.end());
290
291 iter->second->increment_ref_count();
292 }
293
UnregisterRenderFrameHost(RenderFrameHostImpl * render_frame_host)294 void FrameTree::UnregisterRenderFrameHost(
295 RenderFrameHostImpl* render_frame_host) {
296 SiteInstance* site_instance =
297 render_frame_host->render_view_host()->GetSiteInstance();
298 int32 site_instance_id = site_instance->GetId();
299 RenderViewHostMap::iterator iter =
300 render_view_host_map_.find(site_instance_id);
301 if (iter != render_view_host_map_.end() &&
302 iter->second == render_frame_host->render_view_host()) {
303 // Decrement the refcount and shutdown the RenderViewHost if no one else is
304 // using it.
305 CHECK_GT(iter->second->ref_count(), 0);
306 iter->second->decrement_ref_count();
307 if (iter->second->ref_count() == 0) {
308 iter->second->Shutdown();
309 render_view_host_map_.erase(iter);
310 }
311 } else {
312 // The RenderViewHost should be in the list of RenderViewHosts pending
313 // shutdown.
314 bool render_view_host_found = false;
315 std::pair<RenderViewHostMultiMap::iterator,
316 RenderViewHostMultiMap::iterator> result =
317 render_view_host_pending_shutdown_map_.equal_range(site_instance_id);
318 for (RenderViewHostMultiMap::iterator multi_iter = result.first;
319 multi_iter != result.second;
320 ++multi_iter) {
321 if (multi_iter->second != render_frame_host->render_view_host())
322 continue;
323 render_view_host_found = true;
324 RenderViewHostImpl* rvh = multi_iter->second;
325 // Decrement the refcount and shutdown the RenderViewHost if no one else
326 // is using it.
327 CHECK_GT(rvh->ref_count(), 0);
328 rvh->decrement_ref_count();
329 if (rvh->ref_count() == 0) {
330 rvh->Shutdown();
331 render_view_host_pending_shutdown_map_.erase(multi_iter);
332 }
333 break;
334 }
335 CHECK(render_view_host_found);
336 }
337 }
338
339 } // namespace content
340