Elliott Sprehn 0af96f055d Turn StyleSharing to 11.
In Sky we can style share if our TreeScopes have the same styles, our :host
styles are the same, and we'd inherit the same styles. This allows a lot of
simplification to the style sharing logic since we don't need to deal with
descendant selectors or tree boundary crossing rules:

- We can remove the logic that was checking that we were distributed
to the same insertion points since there's no ::content selectors.

- We can check the actual inherited values instead of looking at the
parentOrSHadowHostNode(). We used to look at the node in Blink because we
were checking that you'd get the same descendant selectors applied. In Sky
we instead want to make sure you'd inherit the same values. This also
means we don't need the element().parentOrShadowHostElement() != parent case
in the SharedStyleFinder which was trying to deal with descendant selectors
again.

I also removed the checks that were redundant with the checks inside
supportsStyleSharing() which we always check before adding sharing
candidates.

Finally by refactoring the code to make the TreeScope style check work it
exposed that the Document::styleSheets() and TreeScope::styleSheets() APIs
are now dead. A future patch will delete the now dead StyleSheetList class
as well.

This change makes the city-list application share between all the items in
the list, and all of the headers of the same type now share as well.

R=ojan@chromium.org

Review URL: https://codereview.chromium.org/796713002
2014-12-11 15:34:24 -08:00

180 lines
5.5 KiB
C++

/*
* Copyright (C) 2011 Google Inc. All Rights Reserved.
* Copyright (C) 2012 Apple Inc. All Rights Reserved.
*
* Redistribution and use in source and binary forms, with or without
* modification, are permitted provided that the following conditions
* are met:
* 1. Redistributions of source code must retain the above copyright
* notice, this list of conditions and the following disclaimer.
* 2. Redistributions in binary form must reproduce the above copyright
* notice, this list of conditions and the following disclaimer in the
* documentation and/or other materials provided with the distribution.
*
* THIS SOFTWARE IS PROVIDED BY APPLE INC. ``AS IS'' AND ANY
* EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
* IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
* PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL APPLE INC. OR
* CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL,
* EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO,
* PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR
* PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY
* OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
* (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
* OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
*/
#ifndef SKY_ENGINE_CORE_DOM_TREESCOPE_H_
#define SKY_ENGINE_CORE_DOM_TREESCOPE_H_
#include "sky/engine/core/dom/DocumentOrderedMap.h"
#include "sky/engine/platform/heap/Handle.h"
#include "sky/engine/wtf/text/AtomicString.h"
namespace blink {
class ContainerNode;
class DOMSelection;
class Document;
class Element;
class HitTestResult;
class Node;
class ScopedStyleResolver;
// A class which inherits both Node and TreeScope must call clearRareData() in its destructor
// so that the Node destructor no longer does problematic NodeList cache manipulation in
// the destructor.
class TreeScope {
public:
TreeScope* parentTreeScope() const { return m_parentTreeScope; }
bool isInclusiveOlderSiblingShadowRootOrAncestorTreeScopeOf(const TreeScope&) const;
Element* adjustedFocusedElement() const;
Element* getElementById(const AtomicString&) const;
void addElementById(const AtomicString& elementId, Element*);
void removeElementById(const AtomicString& elementId, Element*);
Document& document() const
{
ASSERT(m_document);
return *m_document;
}
Node* ancestorInThisScope(Node*) const;
Element* elementFromPoint(int x, int y) const;
// For accessibility.
bool shouldCacheLabelsByForAttribute() const { return m_labelsByForAttribute; }
DOMSelection* getSelection() const;
bool applyAuthorStyles() const;
// Used by the basic DOM mutation methods (e.g., appendChild()).
void adoptIfNeeded(Node&);
ContainerNode& rootNode() const { return *m_rootNode; }
bool hasSameStyles(TreeScope&);
#if !ENABLE(OILPAN)
// Nodes belonging to this scope hold guard references -
// these are enough to keep the scope from being destroyed, but
// not enough to keep it from removing its children. This allows a
// node that outlives its scope to still have a valid document
// pointer without introducing reference cycles.
void guardRef()
{
ASSERT(!deletionHasBegun());
++m_guardRefCount;
}
void guardDeref()
{
ASSERT(m_guardRefCount > 0);
ASSERT(!deletionHasBegun());
--m_guardRefCount;
if (!m_guardRefCount && !refCount() && !rootNodeHasTreeSharedParent()) {
beginDeletion();
delete this;
}
}
#endif
void removedLastRefToScope();
bool isInclusiveAncestorOf(const TreeScope&) const;
unsigned short comparePosition(const TreeScope&) const;
const TreeScope* commonAncestorTreeScope(const TreeScope& other) const;
TreeScope* commonAncestorTreeScope(TreeScope& other);
Element* getElementByAccessKey(const String& key) const;
ScopedStyleResolver* scopedStyleResolver() const { return m_scopedStyleResolver.get(); }
ScopedStyleResolver& ensureScopedStyleResolver();
void clearScopedStyleResolver();
protected:
TreeScope(ContainerNode&, Document&);
explicit TreeScope(Document&);
virtual ~TreeScope();
#if !ENABLE(OILPAN)
void destroyTreeScopeData();
#endif
void setDocument(Document& document) { m_document = &document; }
void setParentTreeScope(TreeScope&);
#if !ENABLE(OILPAN)
bool hasGuardRefCount() const { return m_guardRefCount; }
#endif
void setNeedsStyleRecalcForViewportUnits();
private:
virtual void dispose() { }
#if !ENABLE(OILPAN)
int refCount() const;
#if ENABLE(SECURITY_ASSERT)
bool deletionHasBegun();
void beginDeletion();
#else
bool deletionHasBegun() { return false; }
void beginDeletion() { }
#endif
#endif
bool rootNodeHasTreeSharedParent() const;
RawPtr<ContainerNode> m_rootNode;
RawPtr<Document> m_document;
RawPtr<TreeScope> m_parentTreeScope;
#if !ENABLE(OILPAN)
int m_guardRefCount;
#endif
OwnPtr<DocumentOrderedMap> m_elementsById;
OwnPtr<DocumentOrderedMap> m_imageMapsByName;
OwnPtr<DocumentOrderedMap> m_labelsByForAttribute;
OwnPtr<ScopedStyleResolver> m_scopedStyleResolver;
mutable RefPtr<DOMSelection> m_selection;
};
DEFINE_COMPARISON_OPERATORS_WITH_REFERENCES(TreeScope)
HitTestResult hitTestInDocument(const Document*, int x, int y);
TreeScope* commonTreeScope(Node*, Node*);
} // namespace blink
#endif // SKY_ENGINE_CORE_DOM_TREESCOPE_H_