mirror of
https://github.com/mozilla/gecko-dev.git
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00e98538aa
Differential Revision: https://phabricator.services.mozilla.com/D21106 --HG-- extra : rebase_source : ea3f51c2c11247114deccbc86e90fb02b8a97257
412 lines
12 KiB
C++
412 lines
12 KiB
C++
/* -*- Mode: C++; tab-width: 8; indent-tabs-mode: nil; c-basic-offset: 2 -*- */
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/* vim: set ts=8 sts=2 et sw=2 tw=80: */
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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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/*
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* Implementation of the |attributes| property of DOM Core's Element object.
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*/
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#include "nsDOMAttributeMap.h"
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#include "mozilla/MemoryReporting.h"
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#include "mozilla/dom/Attr.h"
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#include "mozilla/dom/Element.h"
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#include "mozilla/dom/NamedNodeMapBinding.h"
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#include "mozilla/dom/NodeInfoInlines.h"
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#include "nsAttrName.h"
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#include "nsContentUtils.h"
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#include "nsError.h"
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#include "nsIContentInlines.h"
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#include "mozilla/dom/Document.h"
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#include "nsNameSpaceManager.h"
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#include "nsNodeInfoManager.h"
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#include "nsUnicharUtils.h"
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#include "nsWrapperCacheInlines.h"
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using namespace mozilla;
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using namespace mozilla::dom;
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//----------------------------------------------------------------------
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nsDOMAttributeMap::nsDOMAttributeMap(Element* aContent) : mContent(aContent) {
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// We don't add a reference to our content. If it goes away,
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// we'll be told to drop our reference
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}
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nsDOMAttributeMap::~nsDOMAttributeMap() { DropReference(); }
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void nsDOMAttributeMap::DropReference() {
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for (auto iter = mAttributeCache.Iter(); !iter.Done(); iter.Next()) {
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iter.Data()->SetMap(nullptr);
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iter.Remove();
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}
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mContent = nullptr;
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}
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NS_IMPL_CYCLE_COLLECTION_CLASS(nsDOMAttributeMap)
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NS_IMPL_CYCLE_COLLECTION_UNLINK_BEGIN(nsDOMAttributeMap)
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tmp->DropReference();
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NS_IMPL_CYCLE_COLLECTION_UNLINK_PRESERVED_WRAPPER
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NS_IMPL_CYCLE_COLLECTION_UNLINK(mContent)
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NS_IMPL_CYCLE_COLLECTION_UNLINK_END
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NS_IMPL_CYCLE_COLLECTION_TRAVERSE_BEGIN(nsDOMAttributeMap)
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for (auto iter = tmp->mAttributeCache.Iter(); !iter.Done(); iter.Next()) {
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cb.NoteXPCOMChild(static_cast<nsINode*>(iter.Data().get()));
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}
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NS_IMPL_CYCLE_COLLECTION_TRAVERSE(mContent)
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NS_IMPL_CYCLE_COLLECTION_TRAVERSE_END
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NS_IMPL_CYCLE_COLLECTION_TRACE_WRAPPERCACHE(nsDOMAttributeMap)
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NS_IMPL_CYCLE_COLLECTION_CAN_SKIP_BEGIN(nsDOMAttributeMap)
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if (tmp->HasKnownLiveWrapper()) {
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if (tmp->mContent) {
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// The map owns the element so we can mark it when the
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// map itself is certainly alive.
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mozilla::dom::FragmentOrElement::MarkNodeChildren(tmp->mContent);
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}
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return true;
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}
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if (tmp->mContent &&
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mozilla::dom::FragmentOrElement::CanSkip(tmp->mContent, true)) {
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return true;
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}
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NS_IMPL_CYCLE_COLLECTION_CAN_SKIP_END
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NS_IMPL_CYCLE_COLLECTION_CAN_SKIP_IN_CC_BEGIN(nsDOMAttributeMap)
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return tmp->HasKnownLiveWrapperAndDoesNotNeedTracing(tmp);
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NS_IMPL_CYCLE_COLLECTION_CAN_SKIP_IN_CC_END
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NS_IMPL_CYCLE_COLLECTION_CAN_SKIP_THIS_BEGIN(nsDOMAttributeMap)
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return tmp->HasKnownLiveWrapper();
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NS_IMPL_CYCLE_COLLECTION_CAN_SKIP_THIS_END
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// QueryInterface implementation for nsDOMAttributeMap
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NS_INTERFACE_MAP_BEGIN(nsDOMAttributeMap)
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NS_WRAPPERCACHE_INTERFACE_MAP_ENTRY
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NS_INTERFACE_MAP_ENTRIES_CYCLE_COLLECTION(nsDOMAttributeMap)
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NS_INTERFACE_MAP_ENTRY(nsISupports)
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NS_INTERFACE_MAP_END
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NS_IMPL_CYCLE_COLLECTING_ADDREF(nsDOMAttributeMap)
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NS_IMPL_CYCLE_COLLECTING_RELEASE(nsDOMAttributeMap)
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nsresult nsDOMAttributeMap::SetOwnerDocument(Document* aDocument) {
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for (auto iter = mAttributeCache.Iter(); !iter.Done(); iter.Next()) {
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nsresult rv = iter.Data()->SetOwnerDocument(aDocument);
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NS_ENSURE_SUCCESS(rv, NS_ERROR_FAILURE);
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}
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return NS_OK;
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}
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void nsDOMAttributeMap::DropAttribute(int32_t aNamespaceID,
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nsAtom* aLocalName) {
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nsAttrKey attr(aNamespaceID, aLocalName);
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if (auto entry = mAttributeCache.Lookup(attr)) {
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entry.Data()->SetMap(nullptr); // break link to map
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entry.Remove();
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}
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}
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Attr* nsDOMAttributeMap::GetAttribute(mozilla::dom::NodeInfo* aNodeInfo) {
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NS_ASSERTION(aNodeInfo, "GetAttribute() called with aNodeInfo == nullptr!");
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nsAttrKey attr(aNodeInfo->NamespaceID(), aNodeInfo->NameAtom());
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RefPtr<Attr>& entryValue = mAttributeCache.GetOrInsert(attr);
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Attr* node = entryValue;
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if (!node) {
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// Newly inserted entry!
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RefPtr<mozilla::dom::NodeInfo> ni = aNodeInfo;
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entryValue = new Attr(this, ni.forget(), EmptyString());
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node = entryValue;
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}
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return node;
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}
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Attr* nsDOMAttributeMap::NamedGetter(const nsAString& aAttrName, bool& aFound) {
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aFound = false;
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NS_ENSURE_TRUE(mContent, nullptr);
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RefPtr<mozilla::dom::NodeInfo> ni =
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mContent->GetExistingAttrNameFromQName(aAttrName);
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if (!ni) {
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return nullptr;
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}
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aFound = true;
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return GetAttribute(ni);
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}
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void nsDOMAttributeMap::GetSupportedNames(nsTArray<nsString>& aNames) {
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// For HTML elements in HTML documents, only include names that are still the
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// same after ASCII-lowercasing, since our named getter will end up
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// ASCII-lowercasing the given string.
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bool lowercaseNamesOnly =
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mContent->IsHTMLElement() && mContent->IsInHTMLDocument();
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const uint32_t count = mContent->GetAttrCount();
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bool seenNonAtomName = false;
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for (uint32_t i = 0; i < count; i++) {
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const nsAttrName* name = mContent->GetAttrNameAt(i);
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seenNonAtomName = seenNonAtomName || !name->IsAtom();
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nsString qualifiedName;
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name->GetQualifiedName(qualifiedName);
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if (lowercaseNamesOnly &&
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nsContentUtils::StringContainsASCIIUpper(qualifiedName)) {
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continue;
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}
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// Omit duplicates. We only need to do this check if we've seen a non-atom
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// name, because that's the only way we can have two identical qualified
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// names.
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if (seenNonAtomName && aNames.Contains(qualifiedName)) {
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continue;
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}
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aNames.AppendElement(qualifiedName);
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}
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}
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Attr* nsDOMAttributeMap::GetNamedItem(const nsAString& aAttrName) {
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bool dummy;
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return NamedGetter(aAttrName, dummy);
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}
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already_AddRefed<Attr> nsDOMAttributeMap::SetNamedItemNS(Attr& aAttr,
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ErrorResult& aError) {
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NS_ENSURE_TRUE(mContent, nullptr);
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// XXX should check same-origin between mContent and aAttr however
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// nsContentUtils::CheckSameOrigin can't deal with attributenodes yet
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// Check that attribute is not owned by somebody else
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nsDOMAttributeMap* owner = aAttr.GetMap();
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if (owner) {
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if (owner != this) {
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aError.Throw(NS_ERROR_DOM_INUSE_ATTRIBUTE_ERR);
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return nullptr;
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}
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// setting a preexisting attribute is a no-op, just return the same
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// node.
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RefPtr<Attr> attribute = &aAttr;
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return attribute.forget();
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}
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nsresult rv;
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if (mContent->OwnerDoc() != aAttr.OwnerDoc()) {
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DebugOnly<void*> adoptedNode =
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mContent->OwnerDoc()->AdoptNode(aAttr, aError);
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if (aError.Failed()) {
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return nullptr;
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}
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NS_ASSERTION(adoptedNode == &aAttr, "Uh, adopt node changed nodes?");
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}
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// Get nodeinfo and preexisting attribute (if it exists)
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RefPtr<NodeInfo> oldNi;
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uint32_t i, count = mContent->GetAttrCount();
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for (i = 0; i < count; ++i) {
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const nsAttrName* name = mContent->GetAttrNameAt(i);
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int32_t attrNS = name->NamespaceID();
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nsAtom* nameAtom = name->LocalName();
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// we're purposefully ignoring the prefix.
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if (aAttr.NodeInfo()->Equals(nameAtom, attrNS)) {
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oldNi = mContent->NodeInfo()->NodeInfoManager()->GetNodeInfo(
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nameAtom, name->GetPrefix(), aAttr.NodeInfo()->NamespaceID(),
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nsINode::ATTRIBUTE_NODE);
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break;
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}
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}
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RefPtr<Attr> oldAttr;
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if (oldNi) {
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oldAttr = GetAttribute(oldNi);
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if (oldAttr == &aAttr) {
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return oldAttr.forget();
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}
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if (oldAttr) {
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// Just remove it from our hashtable. This has no side-effects, so we
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// don't have to recheck anything after we do it. Then we'll add our new
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// Attr to the hashtable and do the actual attr set on the element. This
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// will make the whole thing look like a single attribute mutation (with
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// the new attr node in place) as opposed to a removal and addition.
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DropAttribute(oldNi->NamespaceID(), oldNi->NameAtom());
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}
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}
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nsAutoString value;
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aAttr.GetValue(value);
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RefPtr<NodeInfo> ni = aAttr.NodeInfo();
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// Add the new attribute to the attribute map before updating
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// its value in the element. @see bug 364413.
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nsAttrKey attrkey(ni->NamespaceID(), ni->NameAtom());
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mAttributeCache.Put(attrkey, &aAttr);
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aAttr.SetMap(this);
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rv = mContent->SetAttr(ni->NamespaceID(), ni->NameAtom(), ni->GetPrefixAtom(),
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value, true);
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if (NS_FAILED(rv)) {
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DropAttribute(ni->NamespaceID(), ni->NameAtom());
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aError.Throw(rv);
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return nullptr;
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}
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return oldAttr.forget();
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}
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already_AddRefed<Attr> nsDOMAttributeMap::RemoveNamedItem(NodeInfo* aNodeInfo,
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ErrorResult& aError) {
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RefPtr<Attr> attribute = GetAttribute(aNodeInfo);
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// This removes the attribute node from the attribute map.
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aError = mContent->UnsetAttr(aNodeInfo->NamespaceID(), aNodeInfo->NameAtom(),
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true);
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return attribute.forget();
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}
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already_AddRefed<Attr> nsDOMAttributeMap::RemoveNamedItem(
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const nsAString& aName, ErrorResult& aError) {
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if (!mContent) {
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aError.Throw(NS_ERROR_DOM_NOT_FOUND_ERR);
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return nullptr;
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}
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RefPtr<mozilla::dom::NodeInfo> ni =
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mContent->GetExistingAttrNameFromQName(aName);
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if (!ni) {
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aError.Throw(NS_ERROR_DOM_NOT_FOUND_ERR);
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return nullptr;
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}
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return RemoveNamedItem(ni, aError);
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}
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Attr* nsDOMAttributeMap::IndexedGetter(uint32_t aIndex, bool& aFound) {
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aFound = false;
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NS_ENSURE_TRUE(mContent, nullptr);
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const nsAttrName* name = mContent->GetAttrNameAt(aIndex);
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NS_ENSURE_TRUE(name, nullptr);
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aFound = true;
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// Don't use the nodeinfo even if one exists since it can have the wrong
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// owner document.
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RefPtr<mozilla::dom::NodeInfo> ni =
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mContent->NodeInfo()->NodeInfoManager()->GetNodeInfo(
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name->LocalName(), name->GetPrefix(), name->NamespaceID(),
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nsINode::ATTRIBUTE_NODE);
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return GetAttribute(ni);
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}
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Attr* nsDOMAttributeMap::Item(uint32_t aIndex) {
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bool dummy;
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return IndexedGetter(aIndex, dummy);
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}
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uint32_t nsDOMAttributeMap::Length() const {
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NS_ENSURE_TRUE(mContent, 0);
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return mContent->GetAttrCount();
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}
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Attr* nsDOMAttributeMap::GetNamedItemNS(const nsAString& aNamespaceURI,
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const nsAString& aLocalName) {
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RefPtr<mozilla::dom::NodeInfo> ni =
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GetAttrNodeInfo(aNamespaceURI, aLocalName);
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if (!ni) {
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return nullptr;
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}
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return GetAttribute(ni);
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}
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already_AddRefed<mozilla::dom::NodeInfo> nsDOMAttributeMap::GetAttrNodeInfo(
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const nsAString& aNamespaceURI, const nsAString& aLocalName) {
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if (!mContent) {
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return nullptr;
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}
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int32_t nameSpaceID = kNameSpaceID_None;
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if (!aNamespaceURI.IsEmpty()) {
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nameSpaceID = nsContentUtils::NameSpaceManager()->GetNameSpaceID(
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aNamespaceURI, nsContentUtils::IsChromeDoc(mContent->OwnerDoc()));
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if (nameSpaceID == kNameSpaceID_Unknown) {
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return nullptr;
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}
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}
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uint32_t i, count = mContent->GetAttrCount();
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for (i = 0; i < count; ++i) {
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const nsAttrName* name = mContent->GetAttrNameAt(i);
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int32_t attrNS = name->NamespaceID();
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nsAtom* nameAtom = name->LocalName();
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// we're purposefully ignoring the prefix.
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if (nameSpaceID == attrNS && nameAtom->Equals(aLocalName)) {
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RefPtr<mozilla::dom::NodeInfo> ni;
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ni = mContent->NodeInfo()->NodeInfoManager()->GetNodeInfo(
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nameAtom, name->GetPrefix(), nameSpaceID, nsINode::ATTRIBUTE_NODE);
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return ni.forget();
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}
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}
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return nullptr;
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}
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already_AddRefed<Attr> nsDOMAttributeMap::RemoveNamedItemNS(
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const nsAString& aNamespaceURI, const nsAString& aLocalName,
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ErrorResult& aError) {
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RefPtr<mozilla::dom::NodeInfo> ni =
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GetAttrNodeInfo(aNamespaceURI, aLocalName);
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if (!ni) {
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aError.Throw(NS_ERROR_DOM_NOT_FOUND_ERR);
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return nullptr;
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}
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return RemoveNamedItem(ni, aError);
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}
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uint32_t nsDOMAttributeMap::Count() const { return mAttributeCache.Count(); }
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size_t nsDOMAttributeMap::SizeOfIncludingThis(
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MallocSizeOf aMallocSizeOf) const {
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size_t n = aMallocSizeOf(this);
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n += mAttributeCache.ShallowSizeOfExcludingThis(aMallocSizeOf);
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for (auto iter = mAttributeCache.ConstIter(); !iter.Done(); iter.Next()) {
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n += aMallocSizeOf(iter.Data().get());
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}
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// NB: mContent is non-owning and thus not counted.
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return n;
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}
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/* virtual */
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JSObject* nsDOMAttributeMap::WrapObject(JSContext* aCx,
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JS::Handle<JSObject*> aGivenProto) {
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return NamedNodeMap_Binding::Wrap(aCx, this, aGivenProto);
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}
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DocGroup* nsDOMAttributeMap::GetDocGroup() const {
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return mContent ? mContent->OwnerDoc()->GetDocGroup() : nullptr;
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}
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