mirror of
https://github.com/darlinghq/darling-WebCore.git
synced 2024-11-23 04:19:40 +00:00
594 lines
24 KiB
C++
594 lines
24 KiB
C++
/*
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* Copyright (C) 2004, 2005, 2006, 2007, 2008 Nikolas Zimmermann <zimmermann@kde.org>
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* Copyright (C) 2004, 2005, 2006, 2007 Rob Buis <buis@kde.org>
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* Copyright (C) Research In Motion Limited 2009-2010. All rights reserved.
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* Copyright (C) 2011 Torch Mobile (Beijing) Co. Ltd. All rights reserved.
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* Copyright (C) 2012 University of Szeged
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* Copyright (C) 2012 Renata Hodovan <reni@webkit.org>
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* Copyright (C) 2015-2019 Apple Inc. All rights reserved.
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*
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* This library is free software; you can redistribute it and/or
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* modify it under the terms of the GNU Library General Public
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* License as published by the Free Software Foundation; either
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* version 2 of the License, or (at your option) any later version.
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*
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* This library is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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* Library General Public License for more details.
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*
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* You should have received a copy of the GNU Library General Public License
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* along with this library; see the file COPYING.LIB. If not, write to
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* the Free Software Foundation, Inc., 51 Franklin Street, Fifth Floor,
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* Boston, MA 02110-1301, USA.
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*/
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#include "config.h"
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#include "SVGUseElement.h"
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#include "CachedResourceLoader.h"
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#include "CachedSVGDocument.h"
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#include "ElementIterator.h"
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#include "Event.h"
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#include "EventNames.h"
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#include "RenderSVGResource.h"
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#include "RenderSVGTransformableContainer.h"
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#include "SVGDocumentExtensions.h"
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#include "SVGGElement.h"
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#include "SVGSVGElement.h"
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#include "SVGSymbolElement.h"
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#include "ScriptDisallowedScope.h"
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#include "ShadowRoot.h"
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#include "XLinkNames.h"
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#include <wtf/IsoMallocInlines.h>
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namespace WebCore {
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WTF_MAKE_ISO_ALLOCATED_IMPL(SVGUseElement);
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inline SVGUseElement::SVGUseElement(const QualifiedName& tagName, Document& document)
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: SVGGraphicsElement(tagName, document)
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, SVGURIReference(this)
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, m_loadEventTimer(*this, &SVGElement::loadEventTimerFired)
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{
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ASSERT(hasCustomStyleResolveCallbacks());
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ASSERT(hasTagName(SVGNames::useTag));
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static std::once_flag onceFlag;
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std::call_once(onceFlag, [] {
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PropertyRegistry::registerProperty<SVGNames::xAttr, &SVGUseElement::m_x>();
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PropertyRegistry::registerProperty<SVGNames::yAttr, &SVGUseElement::m_y>();
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PropertyRegistry::registerProperty<SVGNames::widthAttr, &SVGUseElement::m_width>();
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PropertyRegistry::registerProperty<SVGNames::heightAttr, &SVGUseElement::m_height>();
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});
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}
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Ref<SVGUseElement> SVGUseElement::create(const QualifiedName& tagName, Document& document)
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{
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return adoptRef(*new SVGUseElement(tagName, document));
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}
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SVGUseElement::~SVGUseElement()
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{
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if (m_externalDocument)
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m_externalDocument->removeClient(*this);
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}
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void SVGUseElement::parseAttribute(const QualifiedName& name, const AtomString& value)
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{
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SVGParsingError parseError = NoError;
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if (name == SVGNames::xAttr)
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m_x->setBaseValInternal(SVGLengthValue::construct(SVGLengthMode::Width, value, parseError));
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else if (name == SVGNames::yAttr)
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m_y->setBaseValInternal(SVGLengthValue::construct(SVGLengthMode::Height, value, parseError));
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else if (name == SVGNames::widthAttr)
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m_width->setBaseValInternal(SVGLengthValue::construct(SVGLengthMode::Width, value, parseError, SVGLengthNegativeValuesMode::Forbid));
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else if (name == SVGNames::heightAttr)
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m_height->setBaseValInternal(SVGLengthValue::construct(SVGLengthMode::Height, value, parseError, SVGLengthNegativeValuesMode::Forbid));
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reportAttributeParsingError(parseError, name, value);
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SVGGraphicsElement::parseAttribute(name, value);
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SVGURIReference::parseAttribute(name, value);
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}
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Node::InsertedIntoAncestorResult SVGUseElement::insertedIntoAncestor(InsertionType insertionType, ContainerNode& parentOfInsertedTree)
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{
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SVGGraphicsElement::insertedIntoAncestor(insertionType, parentOfInsertedTree);
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if (insertionType.connectedToDocument) {
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if (m_shadowTreeNeedsUpdate)
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document().addSVGUseElement(*this);
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invalidateShadowTree();
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// FIXME: Move back the call to updateExternalDocument() here once notifyFinished is made always async.
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return InsertedIntoAncestorResult::NeedsPostInsertionCallback;
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}
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return InsertedIntoAncestorResult::Done;
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}
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void SVGUseElement::didFinishInsertingNode()
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{
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updateExternalDocument();
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}
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void SVGUseElement::removedFromAncestor(RemovalType removalType, ContainerNode& oldParentOfRemovedTree)
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{
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// Check m_shadowTreeNeedsUpdate before calling SVGElement::removedFromAncestor which calls SVGElement::invalidateInstances
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// and SVGUseElement::updateExternalDocument which calls invalidateShadowTree().
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if (removalType.disconnectedFromDocument) {
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if (m_shadowTreeNeedsUpdate)
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document().removeSVGUseElement(*this);
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}
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SVGGraphicsElement::removedFromAncestor(removalType, oldParentOfRemovedTree);
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if (removalType.disconnectedFromDocument) {
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clearShadowTree();
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updateExternalDocument();
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}
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}
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inline Document* SVGUseElement::externalDocument() const
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{
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return m_externalDocument ? m_externalDocument->document() : nullptr;
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}
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void SVGUseElement::transferSizeAttributesToTargetClone(SVGElement& shadowElement) const
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{
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// FIXME: The check for valueInSpecifiedUnits being non-zero below is a workaround for the fact
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// that we currently have no good way to tell whether a particular animatable attribute is a value
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// indicating it was unspecified, or specified but could not be parsed. Would be nice to fix that some day.
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if (is<SVGSymbolElement>(shadowElement)) {
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// Spec (<use> on <symbol>): This generated 'svg' will always have explicit values for attributes width and height.
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// If attributes width and/or height are provided on the 'use' element, then these attributes
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// will be transferred to the generated 'svg'. If attributes width and/or height are not specified,
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// the generated 'svg' element will use values of 100% for these attributes.
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shadowElement.setAttribute(SVGNames::widthAttr, width().valueInSpecifiedUnits() ? AtomString(width().valueAsString()) : "100%");
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shadowElement.setAttribute(SVGNames::heightAttr, height().valueInSpecifiedUnits() ? AtomString(height().valueAsString()) : "100%");
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} else if (is<SVGSVGElement>(shadowElement)) {
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// Spec (<use> on <svg>): If attributes width and/or height are provided on the 'use' element, then these
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// values will override the corresponding attributes on the 'svg' in the generated tree.
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auto correspondingElement = makeRefPtr(shadowElement.correspondingElement());
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shadowElement.setAttribute(SVGNames::widthAttr, width().valueInSpecifiedUnits() ? AtomString(width().valueAsString()) : (correspondingElement ? correspondingElement->getAttribute(SVGNames::widthAttr) : nullAtom()));
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shadowElement.setAttribute(SVGNames::heightAttr, height().valueInSpecifiedUnits() ? AtomString(height().valueAsString()) : (correspondingElement ? correspondingElement->getAttribute(SVGNames::heightAttr) : nullAtom()));
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}
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}
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void SVGUseElement::svgAttributeChanged(const QualifiedName& attrName)
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{
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InstanceInvalidationGuard guard(*this);
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if (PropertyRegistry::isKnownAttribute(attrName)) {
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updateRelativeLengthsInformation();
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if (attrName == SVGNames::widthAttr || attrName == SVGNames::heightAttr) {
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// FIXME: It's unnecessarily inefficient to update both width and height each time either is changed.
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if (auto targetClone = this->targetClone())
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transferSizeAttributesToTargetClone(*targetClone);
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}
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if (auto* renderer = this->renderer())
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RenderSVGResource::markForLayoutAndParentResourceInvalidation(*renderer);
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return;
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}
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if (SVGURIReference::isKnownAttribute(attrName)) {
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updateExternalDocument();
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invalidateShadowTree();
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return;
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}
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SVGGraphicsElement::svgAttributeChanged(attrName);
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}
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static HashSet<AtomString> createAllowedElementSet()
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{
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// Spec: "Any 'svg', 'symbol', 'g', graphics element or other 'use' is potentially a template object that can be re-used
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// (i.e., "instanced") in the SVG document via a 'use' element."
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// "Graphics Element" is defined as 'circle', 'ellipse', 'image', 'line', 'path', 'polygon', 'polyline', 'rect', 'text'
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// Excluded are anything that is used by reference or that only make sense to appear once in a document.
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using namespace SVGNames;
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HashSet<AtomString> set;
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for (auto& tag : { aTag.get(), circleTag.get(), descTag.get(), ellipseTag.get(), gTag.get(), imageTag.get(), lineTag.get(), metadataTag.get(), pathTag.get(), polygonTag.get(), polylineTag.get(), rectTag.get(), svgTag.get(), switchTag.get(), symbolTag.get(), textTag.get(), textPathTag.get(), titleTag.get(), trefTag.get(), tspanTag.get(), useTag.get() })
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set.add(tag.localName());
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return set;
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}
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static inline bool isDisallowedElement(const SVGElement& element)
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{
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static NeverDestroyed<HashSet<AtomString>> set = createAllowedElementSet();
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return !set.get().contains(element.localName());
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}
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static inline bool isDisallowedElement(const Element& element)
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{
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return !element.isSVGElement() || isDisallowedElement(downcast<SVGElement>(element));
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}
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void SVGUseElement::clearShadowTree()
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{
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if (auto root = userAgentShadowRoot()) {
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// Safe because SVG use element's shadow tree is never used to fire synchronous events during layout or DOM mutations.
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ScriptDisallowedScope::EventAllowedScope scope(*root);
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root->removeChildren();
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}
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}
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void SVGUseElement::buildPendingResource()
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{
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invalidateShadowTree();
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}
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void SVGUseElement::updateShadowTree()
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{
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m_shadowTreeNeedsUpdate = false;
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// FIXME: It's expensive to re-clone the entire tree every time. We should find a more efficient way to handle this.
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clearShadowTree();
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if (!isConnected())
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return;
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document().removeSVGUseElement(*this);
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String targetID;
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auto* target = findTarget(&targetID);
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if (!target) {
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document().accessSVGExtensions().addPendingResource(targetID, *this);
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return;
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}
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RELEASE_ASSERT(!isDescendantOf(target));
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{
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auto& shadowRoot = ensureUserAgentShadowRoot();
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cloneTarget(shadowRoot, *target);
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expandUseElementsInShadowTree();
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expandSymbolElementsInShadowTree();
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updateRelativeLengthsInformation();
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}
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transferEventListenersToShadowTree();
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// When we invalidate the other shadow trees, it's important that we don't
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// follow any cycles and invalidate ourselves. To avoid that, we temporarily
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// set m_shadowTreeNeedsUpdate to true so invalidateShadowTree will
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// quickly return and do nothing.
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ASSERT(!m_shadowTreeNeedsUpdate);
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m_shadowTreeNeedsUpdate = true;
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invalidateDependentShadowTrees();
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m_shadowTreeNeedsUpdate = false;
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}
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RefPtr<SVGElement> SVGUseElement::targetClone() const
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{
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auto root = userAgentShadowRoot();
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if (!root)
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return nullptr;
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return childrenOfType<SVGElement>(*root).first();
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}
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RenderPtr<RenderElement> SVGUseElement::createElementRenderer(RenderStyle&& style, const RenderTreePosition&)
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{
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return createRenderer<RenderSVGTransformableContainer>(*this, WTFMove(style));
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}
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static bool isDirectReference(const SVGElement& element)
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{
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using namespace SVGNames;
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return element.hasTagName(circleTag)
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|| element.hasTagName(ellipseTag)
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|| element.hasTagName(pathTag)
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|| element.hasTagName(polygonTag)
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|| element.hasTagName(polylineTag)
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|| element.hasTagName(rectTag)
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|| element.hasTagName(textTag);
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}
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Path SVGUseElement::toClipPath()
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{
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auto targetClone = this->targetClone();
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if (!is<SVGGraphicsElement>(targetClone))
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return { };
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if (!isDirectReference(*targetClone)) {
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// Spec: Indirect references are an error (14.3.5)
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document().accessSVGExtensions().reportError("Not allowed to use indirect reference in <clip-path>"_s);
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return { };
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}
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Path path = downcast<SVGGraphicsElement>(*targetClone).toClipPath();
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SVGLengthContext lengthContext(this);
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// FIXME: Find a way to do this without manual resolution of x/y here. It's potentially incorrect.
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path.translate(FloatSize(x().value(lengthContext), y().value(lengthContext)));
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path.transform(animatedLocalTransform());
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return path;
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}
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RenderElement* SVGUseElement::rendererClipChild() const
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{
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auto targetClone = this->targetClone();
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if (!targetClone)
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return nullptr;
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if (!isDirectReference(*targetClone))
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return nullptr;
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return targetClone->renderer();
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}
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static inline void disassociateAndRemoveClones(const Vector<Ref<Element>>& clones)
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{
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for (auto& clone : clones) {
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for (auto& descendant : descendantsOfType<SVGElement>(clone.get()))
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descendant.setCorrespondingElement(nullptr);
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if (is<SVGElement>(clone))
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downcast<SVGElement>(clone.get()).setCorrespondingElement(nullptr);
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clone->remove();
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}
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}
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static void removeDisallowedElementsFromSubtree(SVGElement& subtree)
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{
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// Remove disallowed elements after the fact rather than not cloning them in the first place.
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// This optimizes for the normal case where none of those elements are present.
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// This function is used only on elements in subtrees that are not yet in documents, so
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// mutation events are not a factor; there are no event listeners to handle those events.
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// Assert that it's not in a document to make sure callers are still using it this way.
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ASSERT(!subtree.isConnected());
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Vector<Ref<Element>> disallowedElements;
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for (auto it = descendantsOfType<Element>(subtree).begin(); it; ) {
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if (isDisallowedElement(*it)) {
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disallowedElements.append(*it);
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it.traverseNextSkippingChildren();
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continue;
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}
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++it;
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}
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disassociateAndRemoveClones(disallowedElements);
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}
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static void removeSymbolElementsFromSubtree(SVGElement& subtree)
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{
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// Symbol elements inside the subtree should not be cloned for two reasons: 1) They are invisible and
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// don't need to be cloned to get correct rendering. 2) expandSymbolElementsInShadowTree will turn them
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// into <svg> elements, which is correct for symbol elements directly referenced by use elements,
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// but incorrect for ones that just happen to be in a subtree.
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Vector<Ref<Element>> symbolElements;
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for (auto it = descendantsOfType<Element>(subtree).begin(); it; ) {
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if (is<SVGSymbolElement>(*it)) {
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symbolElements.append(*it);
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it.traverseNextSkippingChildren();
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continue;
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}
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++it;
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}
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disassociateAndRemoveClones(symbolElements);
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}
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static void associateClonesWithOriginals(SVGElement& clone, SVGElement& original)
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{
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// This assertion checks that we don't call this with the arguments backwards.
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// The clone is new and so it's not installed in a parent yet.
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ASSERT(!clone.parentNode());
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// The loop below works because we are associating these clones immediately, before
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// doing transformations like removing disallowed elements or expanding elements.
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clone.setCorrespondingElement(&original);
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for (auto pair : descendantsOfType<SVGElement>(clone, original))
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pair.first.setCorrespondingElement(&pair.second);
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}
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static void associateReplacementCloneWithOriginal(SVGElement& replacementClone, SVGElement& originalClone)
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{
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auto* correspondingElement = originalClone.correspondingElement();
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ASSERT(correspondingElement);
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originalClone.setCorrespondingElement(nullptr);
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replacementClone.setCorrespondingElement(correspondingElement);
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}
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static void associateReplacementClonesWithOriginals(SVGElement& replacementClone, SVGElement& originalClone)
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{
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// This assertion checks that we don't call this with the arguments backwards.
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// The replacement clone is new and so it's not installed in a parent yet.
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ASSERT(!replacementClone.parentNode());
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// The loop below works because we are associating these clones immediately, before
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// doing transformations like removing disallowed elements or expanding elements.
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associateReplacementCloneWithOriginal(replacementClone, originalClone);
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for (auto pair : descendantsOfType<SVGElement>(replacementClone, originalClone))
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associateReplacementCloneWithOriginal(pair.first, pair.second);
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}
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SVGElement* SVGUseElement::findTarget(String* targetID) const
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{
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auto* correspondingElement = this->correspondingElement();
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auto& original = correspondingElement ? downcast<SVGUseElement>(*correspondingElement) : *this;
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auto targetResult = targetElementFromIRIString(original.href(), original.treeScope(), original.externalDocument());
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if (targetID) {
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*targetID = WTFMove(targetResult.identifier);
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// If the reference is external, don't return the target ID to the caller.
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// The caller would use the target ID to wait for a pending resource on the wrong document.
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// If we ever want the change that and let the caller to wait on the external document,
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// we should change this function so it returns the appropriate document to go with the ID.
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if (!targetID->isNull() && isExternalURIReference(original.href(), original.document()))
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*targetID = String { };
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}
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if (!is<SVGElement>(targetResult.element))
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return nullptr;
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auto& target = downcast<SVGElement>(*targetResult.element);
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if (!target.isConnected() || isDisallowedElement(target))
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return nullptr;
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if (correspondingElement) {
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for (auto& ancestor : lineageOfType<SVGElement>(*this)) {
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if (ancestor.correspondingElement() == &target)
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return nullptr;
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}
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} else {
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if (target.contains(this))
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return nullptr;
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// Target should only refer to a node in the same tree or a node in another document.
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ASSERT(!isDescendantOrShadowDescendantOf(&target));
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}
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return ⌖
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}
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void SVGUseElement::cloneTarget(ContainerNode& container, SVGElement& target) const
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{
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Ref<SVGElement> targetClone = static_cast<SVGElement&>(target.cloneElementWithChildren(document()).get());
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associateClonesWithOriginals(targetClone.get(), target);
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removeDisallowedElementsFromSubtree(targetClone.get());
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removeSymbolElementsFromSubtree(targetClone.get());
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transferSizeAttributesToTargetClone(targetClone.get());
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container.appendChild(targetClone);
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}
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static void cloneDataAndChildren(SVGElement& replacementClone, SVGElement& originalClone)
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{
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// This assertion checks that we don't call this with the arguments backwards.
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// The replacement clone is new and so it's not installed in a parent yet.
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ASSERT(!replacementClone.parentNode());
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replacementClone.cloneDataFromElement(originalClone);
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originalClone.cloneChildNodes(replacementClone);
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associateReplacementClonesWithOriginals(replacementClone, originalClone);
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removeDisallowedElementsFromSubtree(replacementClone);
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}
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void SVGUseElement::expandUseElementsInShadowTree() const
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{
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auto descendants = descendantsOfType<SVGUseElement>(*userAgentShadowRoot());
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for (auto it = descendants.begin(); it; ) {
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SVGUseElement& originalClone = *it;
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it.dropAssertions();
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auto* target = originalClone.findTarget();
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// Spec: In the generated content, the 'use' will be replaced by 'g', where all attributes from the
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// 'use' element except for x, y, width, height and xlink:href are transferred to the generated 'g' element.
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auto replacementClone = SVGGElement::create(document());
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cloneDataAndChildren(replacementClone.get(), originalClone);
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replacementClone->removeAttribute(SVGNames::xAttr);
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replacementClone->removeAttribute(SVGNames::yAttr);
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replacementClone->removeAttribute(SVGNames::widthAttr);
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replacementClone->removeAttribute(SVGNames::heightAttr);
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replacementClone->removeAttribute(SVGNames::hrefAttr);
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replacementClone->removeAttribute(XLinkNames::hrefAttr);
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if (target)
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originalClone.cloneTarget(replacementClone.get(), *target);
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originalClone.parentNode()->replaceChild(replacementClone, originalClone);
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// Resume iterating, starting just inside the replacement clone.
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it = descendants.from(replacementClone.get());
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}
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}
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void SVGUseElement::expandSymbolElementsInShadowTree() const
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{
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auto descendants = descendantsOfType<SVGSymbolElement>(*userAgentShadowRoot());
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for (auto it = descendants.begin(); it; ) {
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SVGSymbolElement& originalClone = *it;
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it.dropAssertions();
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// Spec: The referenced 'symbol' and its contents are deep-cloned into the generated tree,
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// with the exception that the 'symbol' is replaced by an 'svg'. This generated 'svg' will
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// always have explicit values for attributes width and height. If attributes width and/or
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// height are provided on the 'use' element, then these attributes will be transferred to
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// the generated 'svg'. If attributes width and/or height are not specified, the generated
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// 'svg' element will use values of 100% for these attributes.
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auto replacementClone = SVGSVGElement::create(document());
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cloneDataAndChildren(replacementClone.get(), originalClone);
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originalClone.parentNode()->replaceChild(replacementClone, originalClone);
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// Resume iterating, starting just inside the replacement clone.
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it = descendants.from(replacementClone.get());
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}
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}
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void SVGUseElement::transferEventListenersToShadowTree() const
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{
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// FIXME: Don't directly add event listeners on each descendant. Copy event listeners on the use element instead.
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for (auto& descendant : descendantsOfType<SVGElement>(*userAgentShadowRoot())) {
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if (EventTargetData* data = descendant.correspondingElement()->eventTargetData())
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data->eventListenerMap.copyEventListenersNotCreatedFromMarkupToTarget(&descendant);
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}
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}
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void SVGUseElement::invalidateShadowTree()
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{
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if (m_shadowTreeNeedsUpdate)
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return;
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m_shadowTreeNeedsUpdate = true;
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invalidateStyleAndRenderersForSubtree();
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invalidateDependentShadowTrees();
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if (isConnected())
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document().addSVGUseElement(*this);
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}
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void SVGUseElement::invalidateDependentShadowTrees()
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{
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for (auto* instance : instances()) {
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if (auto element = instance->correspondingUseElement())
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element->invalidateShadowTree();
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}
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}
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bool SVGUseElement::selfHasRelativeLengths() const
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{
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if (x().isRelative() || y().isRelative() || width().isRelative() || height().isRelative())
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return true;
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auto targetClone = this->targetClone();
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return targetClone && targetClone->hasRelativeLengths();
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}
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void SVGUseElement::notifyFinished(CachedResource& resource, const NetworkLoadMetrics&)
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{
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ASSERT(ScriptDisallowedScope::InMainThread::isScriptAllowed());
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invalidateShadowTree();
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if (resource.errorOccurred()) {
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setErrorOccurred(true);
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dispatchEvent(Event::create(eventNames().errorEvent, Event::CanBubble::No, Event::IsCancelable::No));
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} else if (!resource.wasCanceled())
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SVGURIReference::dispatchLoadEvent();
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}
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void SVGUseElement::updateExternalDocument()
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{
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URL externalDocumentURL;
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if (isConnected() && isExternalURIReference(href(), document())) {
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externalDocumentURL = document().completeURL(href());
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if (!externalDocumentURL.hasFragmentIdentifier())
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externalDocumentURL = URL();
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}
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if (externalDocumentURL == (m_externalDocument ? m_externalDocument->url() : URL()))
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return;
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if (m_externalDocument)
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m_externalDocument->removeClient(*this);
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if (externalDocumentURL.isNull())
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m_externalDocument = nullptr;
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else {
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ResourceLoaderOptions options = CachedResourceLoader::defaultCachedResourceOptions();
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options.contentSecurityPolicyImposition = isInUserAgentShadowTree() ? ContentSecurityPolicyImposition::SkipPolicyCheck : ContentSecurityPolicyImposition::DoPolicyCheck;
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options.mode = FetchOptions::Mode::SameOrigin;
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CachedResourceRequest request { ResourceRequest { externalDocumentURL }, options };
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request.setInitiator(*this);
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m_externalDocument = document().cachedResourceLoader().requestSVGDocument(WTFMove(request)).value_or(nullptr);
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if (m_externalDocument)
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m_externalDocument->addClient(*this);
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}
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invalidateShadowTree();
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}
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}
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