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https://repo.dactyloidae.xyz/Dactyloidae/UXP.git
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In order to tailor certain security checks to the caller that is attempting to load a particular piece of content, we need to be able to attach an appropriate triggering principal to the corresponding requests. Since most HTML content is loaded based on attribute values, this means capturing the subject principal of the caller who sets those attributes, which in turn means we need to make it available to `AfterSetAttr` hooks on all relevant element types.
491 lines
14 KiB
C++
491 lines
14 KiB
C++
/* -*- Mode: C++; tab-width: 8; indent-tabs-mode: nil; c-basic-offset: 2 -*- */
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/* This Source Code Form is subject to the terms of the Mozilla Public
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* License, v. 2.0. If a copy of the MPL was not distributed with this
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* file, You can obtain one at http://mozilla.org/MPL/2.0/. */
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#include "mozilla/dom/SVGAnimationElement.h"
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#include "mozilla/dom/SVGSVGElement.h"
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#include "nsSMILTimeContainer.h"
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#include "nsSMILAnimationController.h"
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#include "nsSMILAnimationFunction.h"
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#include "nsContentUtils.h"
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#include "nsIContentInlines.h"
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#include "nsIURI.h"
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#include "prtime.h"
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namespace mozilla {
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namespace dom {
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//----------------------------------------------------------------------
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// nsISupports methods
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NS_IMPL_ADDREF_INHERITED(SVGAnimationElement, SVGAnimationElementBase)
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NS_IMPL_RELEASE_INHERITED(SVGAnimationElement, SVGAnimationElementBase)
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NS_INTERFACE_MAP_BEGIN_CYCLE_COLLECTION(SVGAnimationElement)
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NS_INTERFACE_MAP_ENTRY(mozilla::dom::SVGTests)
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NS_INTERFACE_MAP_END_INHERITING(SVGAnimationElementBase)
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NS_IMPL_CYCLE_COLLECTION_INHERITED(SVGAnimationElement,
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SVGAnimationElementBase,
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mHrefTarget, mTimedElement)
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//----------------------------------------------------------------------
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// Implementation
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SVGAnimationElement::SVGAnimationElement(already_AddRefed<mozilla::dom::NodeInfo>& aNodeInfo)
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: SVGAnimationElementBase(aNodeInfo),
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mHrefTarget(this)
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{
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}
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SVGAnimationElement::~SVGAnimationElement()
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{
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}
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nsresult
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SVGAnimationElement::Init()
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{
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nsresult rv = SVGAnimationElementBase::Init();
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NS_ENSURE_SUCCESS(rv, rv);
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mTimedElement.SetAnimationElement(this);
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AnimationFunction().SetAnimationElement(this);
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mTimedElement.SetTimeClient(&AnimationFunction());
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return NS_OK;
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}
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//----------------------------------------------------------------------
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const nsAttrValue*
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SVGAnimationElement::GetAnimAttr(nsIAtom* aName) const
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{
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return mAttrsAndChildren.GetAttr(aName, kNameSpaceID_None);
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}
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bool
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SVGAnimationElement::GetAnimAttr(nsIAtom* aAttName,
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nsAString& aResult) const
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{
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return GetAttr(kNameSpaceID_None, aAttName, aResult);
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}
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bool
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SVGAnimationElement::HasAnimAttr(nsIAtom* aAttName) const
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{
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return HasAttr(kNameSpaceID_None, aAttName);
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}
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Element*
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SVGAnimationElement::GetTargetElementContent()
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{
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if (HasAttr(kNameSpaceID_XLink, nsGkAtoms::href) ||
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HasAttr(kNameSpaceID_None, nsGkAtoms::href)) {
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return mHrefTarget.get();
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}
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MOZ_ASSERT(!mHrefTarget.get(),
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"We shouldn't have a href target "
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"if we don't have an xlink:href or href attribute");
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// No "href" or "xlink:href" attribute --> I should target my parent.
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nsIContent* parent = GetFlattenedTreeParent();
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return parent && parent->IsElement() ? parent->AsElement() : nullptr;
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}
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bool
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SVGAnimationElement::GetTargetAttributeName(int32_t *aNamespaceID,
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nsIAtom **aLocalName) const
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{
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const nsAttrValue* nameAttr
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= mAttrsAndChildren.GetAttr(nsGkAtoms::attributeName);
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if (!nameAttr)
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return false;
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NS_ASSERTION(nameAttr->Type() == nsAttrValue::eAtom,
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"attributeName should have been parsed as an atom");
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return NS_SUCCEEDED(nsContentUtils::SplitQName(
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this, nsDependentAtomString(nameAttr->GetAtomValue()),
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aNamespaceID, aLocalName));
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}
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nsSMILTargetAttrType
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SVGAnimationElement::GetTargetAttributeType() const
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{
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nsIContent::AttrValuesArray typeValues[] = { &nsGkAtoms::css,
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&nsGkAtoms::XML,
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nullptr};
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nsSMILTargetAttrType smilTypes[] = { eSMILTargetAttrType_CSS,
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eSMILTargetAttrType_XML };
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int32_t index = FindAttrValueIn(kNameSpaceID_None,
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nsGkAtoms::attributeType,
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typeValues,
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eCaseMatters);
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return (index >= 0) ? smilTypes[index] : eSMILTargetAttrType_auto;
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}
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nsSMILTimedElement&
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SVGAnimationElement::TimedElement()
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{
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return mTimedElement;
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}
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nsSVGElement*
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SVGAnimationElement::GetTargetElement()
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{
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FlushAnimations();
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// We'll just call the other GetTargetElement method, and QI to the right type
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nsIContent* target = GetTargetElementContent();
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return (target && target->IsSVGElement())
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? static_cast<nsSVGElement*>(target) : nullptr;
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}
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float
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SVGAnimationElement::GetStartTime(ErrorResult& rv)
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{
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FlushAnimations();
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nsSMILTimeValue startTime = mTimedElement.GetStartTime();
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if (!startTime.IsDefinite()) {
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rv.Throw(NS_ERROR_DOM_INVALID_STATE_ERR);
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return 0.f;
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}
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return float(double(startTime.GetMillis()) / PR_MSEC_PER_SEC);
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}
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float
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SVGAnimationElement::GetCurrentTime()
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{
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// Not necessary to call FlushAnimations() for this
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nsSMILTimeContainer* root = GetTimeContainer();
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if (root) {
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return float(double(root->GetCurrentTime()) / PR_MSEC_PER_SEC);
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}
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return 0.0f;
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}
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float
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SVGAnimationElement::GetSimpleDuration(ErrorResult& rv)
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{
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// Not necessary to call FlushAnimations() for this
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nsSMILTimeValue simpleDur = mTimedElement.GetSimpleDuration();
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if (!simpleDur.IsDefinite()) {
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rv.Throw(NS_ERROR_DOM_NOT_SUPPORTED_ERR);
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return 0.f;
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}
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return float(double(simpleDur.GetMillis()) / PR_MSEC_PER_SEC);
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}
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//----------------------------------------------------------------------
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// nsIContent methods
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nsresult
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SVGAnimationElement::BindToTree(nsIDocument* aDocument,
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nsIContent* aParent,
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nsIContent* aBindingParent,
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bool aCompileEventHandlers)
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{
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MOZ_ASSERT(!mHrefTarget.get(),
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"Shouldn't have href-target yet (or it should've been cleared)");
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nsresult rv = SVGAnimationElementBase::BindToTree(aDocument, aParent,
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aBindingParent,
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aCompileEventHandlers);
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NS_ENSURE_SUCCESS(rv,rv);
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// XXXdholbert is GetCtx (as a check for SVG parent) still needed here?
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if (!GetCtx()) {
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// No use proceeding. We don't have an SVG parent (yet) so we won't be able
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// to register ourselves etc. Maybe next time we'll have more luck.
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// (This sort of situation will arise a lot when trees are being constructed
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// piece by piece via script)
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return NS_OK;
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}
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// Add myself to the animation controller's master set of animation elements.
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if (aDocument) {
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nsSMILAnimationController *controller = aDocument->GetAnimationController();
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if (controller) {
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controller->RegisterAnimationElement(this);
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}
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const nsAttrValue* href =
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HasAttr(kNameSpaceID_None, nsGkAtoms::href)
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? mAttrsAndChildren.GetAttr(nsGkAtoms::href, kNameSpaceID_None)
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: mAttrsAndChildren.GetAttr(nsGkAtoms::href, kNameSpaceID_XLink);
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if (href) {
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nsAutoString hrefStr;
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href->ToString(hrefStr);
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// Pass in |aParent| instead of |this| -- first argument is only used
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// for a call to GetComposedDoc(), and |this| might not have a current
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// document yet.
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UpdateHrefTarget(aParent, hrefStr);
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}
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mTimedElement.BindToTree(aParent);
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}
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AnimationNeedsResample();
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return NS_OK;
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}
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void
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SVGAnimationElement::UnbindFromTree(bool aDeep, bool aNullParent)
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{
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nsSMILAnimationController *controller = OwnerDoc()->GetAnimationController();
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if (controller) {
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controller->UnregisterAnimationElement(this);
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}
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mHrefTarget.Unlink();
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mTimedElement.DissolveReferences();
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AnimationNeedsResample();
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SVGAnimationElementBase::UnbindFromTree(aDeep, aNullParent);
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}
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bool
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SVGAnimationElement::ParseAttribute(int32_t aNamespaceID,
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nsIAtom* aAttribute,
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const nsAString& aValue,
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nsAttrValue& aResult)
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{
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if (aNamespaceID == kNameSpaceID_None) {
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// Deal with target-related attributes here
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if (aAttribute == nsGkAtoms::attributeName ||
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aAttribute == nsGkAtoms::attributeType) {
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aResult.ParseAtom(aValue);
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AnimationNeedsResample();
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return true;
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}
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nsresult rv = NS_ERROR_FAILURE;
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// First let the animation function try to parse it...
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bool foundMatch =
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AnimationFunction().SetAttr(aAttribute, aValue, aResult, &rv);
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// ... and if that didn't recognize the attribute, let the timed element
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// try to parse it.
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if (!foundMatch) {
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foundMatch =
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mTimedElement.SetAttr(aAttribute, aValue, aResult, this, &rv);
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}
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if (foundMatch) {
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AnimationNeedsResample();
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if (NS_FAILED(rv)) {
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ReportAttributeParseFailure(OwnerDoc(), aAttribute, aValue);
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return false;
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}
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return true;
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}
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}
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return SVGAnimationElementBase::ParseAttribute(aNamespaceID, aAttribute,
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aValue, aResult);
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}
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nsresult
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SVGAnimationElement::AfterSetAttr(int32_t aNamespaceID, nsIAtom* aName,
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const nsAttrValue* aValue,
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const nsAttrValue* aOldValue,
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nsIPrincipal* aSubjectPrincipal,
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bool aNotify)
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{
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nsresult rv =
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SVGAnimationElementBase::AfterSetAttr(aNamespaceID, aName, aValue,
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aOldValue, aSubjectPrincipal,
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aNotify);
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if (SVGTests::IsConditionalProcessingAttribute(aName)) {
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bool isDisabled = !SVGTests::PassesConditionalProcessingTests();
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if (mTimedElement.SetIsDisabled(isDisabled)) {
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AnimationNeedsResample();
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}
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}
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if (!((aNamespaceID == kNameSpaceID_None ||
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aNamespaceID == kNameSpaceID_XLink) &&
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aName == nsGkAtoms::href)) {
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return rv;
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}
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if (!aValue) {
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if (aNamespaceID == kNameSpaceID_None) {
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mHrefTarget.Unlink();
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AnimationTargetChanged();
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// After unsetting href, we may still have xlink:href, so we
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// should try to add it back.
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const nsAttrValue* xlinkHref =
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mAttrsAndChildren.GetAttr(nsGkAtoms::href, kNameSpaceID_XLink);
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if (xlinkHref) {
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UpdateHrefTarget(this, xlinkHref->GetStringValue());
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}
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} else if (!HasAttr(kNameSpaceID_None, nsGkAtoms::href)) {
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mHrefTarget.Unlink();
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AnimationTargetChanged();
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} // else: we unset xlink:href, but we still have href attribute, so keep
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// mHrefTarget linking to href.
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} else if (IsInUncomposedDoc() &&
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!(aNamespaceID == kNameSpaceID_XLink &&
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HasAttr(kNameSpaceID_None, nsGkAtoms::href))) {
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// Note: "href" takes priority over xlink:href. So if "xlink:href" is being
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// set here, we only let that update our target if "href" is *unset*.
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MOZ_ASSERT(aValue->Type() == nsAttrValue::eString,
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"Expected href attribute to be string type");
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UpdateHrefTarget(this, aValue->GetStringValue());
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} // else: we're not yet in a document -- we'll update the target on
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// next BindToTree call.
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return rv;
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}
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nsresult
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SVGAnimationElement::UnsetAttr(int32_t aNamespaceID,
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nsIAtom* aAttribute, bool aNotify)
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{
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nsresult rv = SVGAnimationElementBase::UnsetAttr(aNamespaceID, aAttribute,
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aNotify);
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NS_ENSURE_SUCCESS(rv,rv);
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if (aNamespaceID == kNameSpaceID_None) {
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if (AnimationFunction().UnsetAttr(aAttribute) ||
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mTimedElement.UnsetAttr(aAttribute)) {
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AnimationNeedsResample();
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}
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}
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return NS_OK;
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}
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bool
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SVGAnimationElement::IsNodeOfType(uint32_t aFlags) const
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{
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return !(aFlags & ~(eCONTENT | eANIMATION));
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}
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//----------------------------------------------------------------------
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// SVGTests methods
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bool
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SVGAnimationElement::IsInChromeDoc() const
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{
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return nsContentUtils::IsChromeDoc(OwnerDoc());
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}
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//----------------------------------------------------------------------
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// SVG utility methods
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void
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SVGAnimationElement::ActivateByHyperlink()
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{
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FlushAnimations();
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// The behavior for when the target is an animation element is defined in
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// SMIL Animation:
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// http://www.w3.org/TR/smil-animation/#HyperlinkSemantics
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nsSMILTimeValue seekTime = mTimedElement.GetHyperlinkTime();
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if (seekTime.IsDefinite()) {
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nsSMILTimeContainer* timeContainer = GetTimeContainer();
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if (timeContainer) {
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timeContainer->SetCurrentTime(seekTime.GetMillis());
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AnimationNeedsResample();
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// As with SVGSVGElement::SetCurrentTime, we need to trigger
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// a synchronous sample now.
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FlushAnimations();
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}
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// else, silently fail. We mustn't be part of an SVG document fragment that
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// is attached to the document tree so there's nothing we can do here
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} else {
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IgnoredErrorResult rv;
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BeginElement(rv);
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}
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}
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//----------------------------------------------------------------------
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// Implementation helpers
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nsSMILTimeContainer*
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SVGAnimationElement::GetTimeContainer()
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{
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SVGSVGElement *element = SVGContentUtils::GetOuterSVGElement(this);
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if (element) {
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return element->GetTimedDocumentRoot();
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}
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return nullptr;
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}
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void
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SVGAnimationElement::BeginElementAt(float offset, ErrorResult& rv)
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{
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// Make sure the timegraph is up-to-date
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FlushAnimations();
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// This will fail if we're not attached to a time container (SVG document
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// fragment).
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rv = mTimedElement.BeginElementAt(offset);
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if (rv.Failed())
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return;
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AnimationNeedsResample();
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// Force synchronous sample so that events resulting from this call arrive in
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// the expected order and we get an up-to-date paint.
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FlushAnimations();
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}
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void
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SVGAnimationElement::EndElementAt(float offset, ErrorResult& rv)
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{
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// Make sure the timegraph is up-to-date
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FlushAnimations();
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rv = mTimedElement.EndElementAt(offset);
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if (rv.Failed())
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return;
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AnimationNeedsResample();
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// Force synchronous sample
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FlushAnimations();
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}
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bool
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SVGAnimationElement::IsEventAttributeName(nsIAtom* aName)
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{
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return nsContentUtils::IsEventAttributeName(aName, EventNameType_SMIL);
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}
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void
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SVGAnimationElement::UpdateHrefTarget(nsIContent* aNodeForContext,
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const nsAString& aHrefStr)
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{
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nsCOMPtr<nsIURI> targetURI;
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nsCOMPtr<nsIURI> baseURI = GetBaseURI();
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nsContentUtils::NewURIWithDocumentCharset(getter_AddRefs(targetURI),
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aHrefStr, OwnerDoc(), baseURI);
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mHrefTarget.Reset(aNodeForContext, targetURI);
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AnimationTargetChanged();
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}
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void
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SVGAnimationElement::AnimationTargetChanged()
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{
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mTimedElement.HandleTargetElementChange(GetTargetElementContent());
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AnimationNeedsResample();
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}
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} // namespace dom
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} // namespace mozilla
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