blob: 212aefa9f7ee06278b6ea57ee3783557eb99cc2c [file] [log] [blame]
// Copyright 2013 The Chromium Authors. All rights reserved.
// Use of this source code is governed by a BSD-style license that can be
// found in the LICENSE file.
#include "content/browser/frame_host/frame_tree_node.h"
#include <queue>
#include "base/profiler/scoped_tracker.h"
#include "base/stl_util.h"
#include "content/browser/frame_host/frame_tree.h"
#include "content/browser/frame_host/navigation_request.h"
#include "content/browser/frame_host/navigator.h"
#include "content/browser/frame_host/render_frame_host_impl.h"
#include "content/browser/renderer_host/render_view_host_impl.h"
#include "content/common/frame_messages.h"
#include "content/common/site_isolation_policy.h"
#include "content/public/browser/browser_thread.h"
#include "content/public/common/browser_side_navigation_policy.h"
namespace content {
namespace {
// This is a global map between frame_tree_node_ids and pointers to
// FrameTreeNodes.
typedef base::hash_map<int, FrameTreeNode*> FrameTreeNodeIdMap;
base::LazyInstance<FrameTreeNodeIdMap> g_frame_tree_node_id_map =
LAZY_INSTANCE_INITIALIZER;
// These values indicate the loading progress status. The minimum progress
// value matches what Blink's ProgressTracker has traditionally used for a
// minimum progress value.
const double kLoadingProgressNotStarted = 0.0;
const double kLoadingProgressMinimum = 0.1;
const double kLoadingProgressDone = 1.0;
} // namespace
// This observer watches the opener of its owner FrameTreeNode and clears the
// owner's opener if the opener is destroyed.
class FrameTreeNode::OpenerDestroyedObserver : public FrameTreeNode::Observer {
public:
OpenerDestroyedObserver(FrameTreeNode* owner) : owner_(owner) {}
// FrameTreeNode::Observer
void OnFrameTreeNodeDestroyed(FrameTreeNode* node) override {
CHECK_EQ(owner_->opener(), node);
owner_->SetOpener(nullptr);
}
private:
FrameTreeNode* owner_;
DISALLOW_COPY_AND_ASSIGN(OpenerDestroyedObserver);
};
int FrameTreeNode::next_frame_tree_node_id_ = 1;
// static
FrameTreeNode* FrameTreeNode::GloballyFindByID(int frame_tree_node_id) {
DCHECK_CURRENTLY_ON(BrowserThread::UI);
FrameTreeNodeIdMap* nodes = g_frame_tree_node_id_map.Pointer();
FrameTreeNodeIdMap::iterator it = nodes->find(frame_tree_node_id);
return it == nodes->end() ? nullptr : it->second;
}
FrameTreeNode::FrameTreeNode(
FrameTree* frame_tree,
Navigator* navigator,
RenderFrameHostDelegate* render_frame_delegate,
RenderViewHostDelegate* render_view_delegate,
RenderWidgetHostDelegate* render_widget_delegate,
RenderFrameHostManager::Delegate* manager_delegate,
blink::WebTreeScopeType scope,
const std::string& name,
blink::WebSandboxFlags sandbox_flags,
const blink::WebFrameOwnerProperties& frame_owner_properties)
: frame_tree_(frame_tree),
navigator_(navigator),
render_manager_(this,
render_frame_delegate,
render_view_delegate,
render_widget_delegate,
manager_delegate),
frame_tree_node_id_(next_frame_tree_node_id_++),
parent_(NULL),
opener_(nullptr),
opener_observer_(nullptr),
has_committed_real_load_(false),
replication_state_(scope, name, sandbox_flags),
// Effective sandbox flags also need to be set, since initial sandbox
// flags should apply to the initial empty document in the frame.
effective_sandbox_flags_(sandbox_flags),
frame_owner_properties_(frame_owner_properties),
loading_progress_(kLoadingProgressNotStarted) {
std::pair<FrameTreeNodeIdMap::iterator, bool> result =
g_frame_tree_node_id_map.Get().insert(
std::make_pair(frame_tree_node_id_, this));
CHECK(result.second);
}
FrameTreeNode::~FrameTreeNode() {
frame_tree_->FrameRemoved(this);
FOR_EACH_OBSERVER(Observer, observers_, OnFrameTreeNodeDestroyed(this));
if (opener_)
opener_->RemoveObserver(opener_observer_.get());
g_frame_tree_node_id_map.Get().erase(frame_tree_node_id_);
}
void FrameTreeNode::AddObserver(Observer* observer) {
observers_.AddObserver(observer);
}
void FrameTreeNode::RemoveObserver(Observer* observer) {
observers_.RemoveObserver(observer);
}
bool FrameTreeNode::IsMainFrame() const {
return frame_tree_->root() == this;
}
void FrameTreeNode::AddChild(scoped_ptr<FrameTreeNode> child,
int process_id,
int frame_routing_id) {
// Child frame must always be created in the same process as the parent.
CHECK_EQ(process_id, render_manager_.current_host()->GetProcess()->GetID());
child->set_parent(this);
// Initialize the RenderFrameHost for the new node. We always create child
// frames in the same SiteInstance as the current frame, and they can swap to
// a different one if they navigate away.
child->render_manager()->Init(
render_manager_.current_host()->GetSiteInstance(),
render_manager_.current_host()->GetRoutingID(), frame_routing_id,
MSG_ROUTING_NONE);
// Other renderer processes in this BrowsingInstance may need to find out
// about the new frame. Create a proxy for the child frame in all
// SiteInstances that have a proxy for the frame's parent, since all frames
// in a frame tree should have the same set of proxies.
// TODO(alexmos, nick): We ought to do this for non-oopif too, for openers.
if (SiteIsolationPolicy::AreCrossProcessFramesPossible())
render_manager_.CreateProxiesForChildFrame(child.get());
children_.push_back(child.Pass());
}
void FrameTreeNode::RemoveChild(FrameTreeNode* child) {
for (auto iter = children_.begin(); iter != children_.end(); ++iter) {
if (iter->get() == child) {
// Subtle: we need to make sure the node is gone from the tree before
// observers are notified of its deletion.
scoped_ptr<FrameTreeNode> node_to_delete(iter->Pass());
children_.erase(iter);
node_to_delete.reset();
return;
}
}
}
void FrameTreeNode::ResetForNewProcess() {
current_url_ = GURL();
// Remove child nodes from the tree, then delete them. This destruction
// operation will notify observers.
std::vector<scoped_ptr<FrameTreeNode>>().swap(children_);
}
void FrameTreeNode::SetOpener(FrameTreeNode* opener) {
if (opener_) {
opener_->RemoveObserver(opener_observer_.get());
opener_observer_.reset();
}
opener_ = opener;
if (opener_) {
if (!opener_observer_)
opener_observer_ = make_scoped_ptr(new OpenerDestroyedObserver(this));
opener_->AddObserver(opener_observer_.get());
}
}
void FrameTreeNode::SetCurrentURL(const GURL& url) {
if (!has_committed_real_load_ && url != GURL(url::kAboutBlankURL))
has_committed_real_load_ = true;
current_url_ = url;
}
void FrameTreeNode::SetCurrentOrigin(const url::Origin& origin) {
if (!origin.IsSameOriginWith(replication_state_.origin))
render_manager_.OnDidUpdateOrigin(origin);
replication_state_.origin = origin;
}
void FrameTreeNode::SetFrameName(const std::string& name) {
if (name != replication_state_.name)
render_manager_.OnDidUpdateName(name);
replication_state_.name = name;
}
bool FrameTreeNode::IsDescendantOf(FrameTreeNode* other) const {
if (!other || !other->child_count())
return false;
for (FrameTreeNode* node = parent(); node; node = node->parent()) {
if (node == other)
return true;
}
return false;
}
FrameTreeNode* FrameTreeNode::PreviousSibling() const {
if (!parent_)
return nullptr;
for (size_t i = 0; i < parent_->child_count(); ++i) {
if (parent_->child_at(i) == this)
return (i == 0) ? nullptr : parent_->child_at(i - 1);
}
NOTREACHED() << "FrameTreeNode not found in its parent's children.";
return nullptr;
}
bool FrameTreeNode::IsLoading() const {
RenderFrameHostImpl* current_frame_host =
render_manager_.current_frame_host();
RenderFrameHostImpl* pending_frame_host =
render_manager_.pending_frame_host();
DCHECK(current_frame_host);
if (IsBrowserSideNavigationEnabled()) {
if (navigation_request_)
return true;
RenderFrameHostImpl* speculative_frame_host =
render_manager_.speculative_frame_host();
if (speculative_frame_host && speculative_frame_host->is_loading())
return true;
} else {
if (pending_frame_host && pending_frame_host->is_loading())
return true;
}
return current_frame_host->is_loading();
}
bool FrameTreeNode::CommitPendingSandboxFlags() {
bool did_change_flags =
effective_sandbox_flags_ != replication_state_.sandbox_flags;
effective_sandbox_flags_ = replication_state_.sandbox_flags;
return did_change_flags;
}
void FrameTreeNode::CreatedNavigationRequest(
scoped_ptr<NavigationRequest> navigation_request) {
CHECK(IsBrowserSideNavigationEnabled());
ResetNavigationRequest(false);
// Force the throbber to start to keep it in sync with what is happening in
// the UI. Blink doesn't send throb notifications for JavaScript URLs, so it
// is not done here either.
if (!navigation_request->common_params().url.SchemeIs(
url::kJavaScriptScheme)) {
// TODO(fdegans): Check if this is a same-document navigation and set the
// proper argument.
DidStartLoading(true);
}
navigation_request_ = navigation_request.Pass();
render_manager()->DidCreateNavigationRequest(*navigation_request_);
}
void FrameTreeNode::ResetNavigationRequest(bool is_commit) {
CHECK(IsBrowserSideNavigationEnabled());
if (!navigation_request_)
return;
navigation_request_.reset();
// During commit, the clean up of a speculative RenderFrameHost is done in
// RenderFrameHostManager::DidNavigateFrame. The load is also still being
// tracked.
if (is_commit)
return;
// If the reset corresponds to a cancelation, the RenderFrameHostManager
// should clean up any speculative RenderFrameHost it created for the
// navigation.
DidStopLoading();
render_manager_.CleanUpNavigation();
}
bool FrameTreeNode::has_started_loading() const {
return loading_progress_ != kLoadingProgressNotStarted;
}
void FrameTreeNode::reset_loading_progress() {
loading_progress_ = kLoadingProgressNotStarted;
}
void FrameTreeNode::DidStartLoading(bool to_different_document) {
// Any main frame load to a new document should reset the load progress since
// it will replace the current page and any frames. The WebContents will
// be notified when DidChangeLoadProgress is called.
if (to_different_document && IsMainFrame())
frame_tree_->ResetLoadProgress();
// Notify the WebContents.
if (!frame_tree_->IsLoading())
navigator()->GetDelegate()->DidStartLoading(this, to_different_document);
// Set initial load progress and update overall progress. This will notify
// the WebContents of the load progress change.
DidChangeLoadProgress(kLoadingProgressMinimum);
// Notify the RenderFrameHostManager of the event.
render_manager()->OnDidStartLoading();
}
void FrameTreeNode::DidStopLoading() {
// TODO(erikchen): Remove ScopedTracker below once crbug.com/465796 is fixed.
tracked_objects::ScopedTracker tracking_profile1(
FROM_HERE_WITH_EXPLICIT_FUNCTION(
"465796 FrameTreeNode::DidStopLoading::Start"));
// Set final load progress and update overall progress. This will notify
// the WebContents of the load progress change.
DidChangeLoadProgress(kLoadingProgressDone);
// TODO(erikchen): Remove ScopedTracker below once crbug.com/465796 is fixed.
tracked_objects::ScopedTracker tracking_profile2(
FROM_HERE_WITH_EXPLICIT_FUNCTION(
"465796 FrameTreeNode::DidStopLoading::WCIDidStopLoading"));
// Notify the WebContents.
if (!frame_tree_->IsLoading())
navigator()->GetDelegate()->DidStopLoading();
// TODO(erikchen): Remove ScopedTracker below once crbug.com/465796 is fixed.
tracked_objects::ScopedTracker tracking_profile3(
FROM_HERE_WITH_EXPLICIT_FUNCTION(
"465796 FrameTreeNode::DidStopLoading::RFHMDidStopLoading"));
// Notify the RenderFrameHostManager of the event.
render_manager()->OnDidStopLoading();
// TODO(erikchen): Remove ScopedTracker below once crbug.com/465796 is fixed.
tracked_objects::ScopedTracker tracking_profile4(
FROM_HERE_WITH_EXPLICIT_FUNCTION(
"465796 FrameTreeNode::DidStopLoading::End"));
}
void FrameTreeNode::DidChangeLoadProgress(double load_progress) {
loading_progress_ = load_progress;
frame_tree_->UpdateLoadProgress();
}
bool FrameTreeNode::StopLoading() {
if (IsBrowserSideNavigationEnabled())
ResetNavigationRequest(false);
// TODO(nasko): see if child frames should send IPCs in site-per-process
// mode.
if (!IsMainFrame())
return true;
render_manager_.Stop();
return true;
}
void FrameTreeNode::DidFocus() {
last_focus_time_ = base::TimeTicks::Now();
FOR_EACH_OBSERVER(Observer, observers_, OnFrameTreeNodeFocused(this));
}
} // namespace content