зеркало из https://github.com/mozilla/gecko-dev.git
437 строки
12 KiB
C++
437 строки
12 KiB
C++
/* -*- Mode: C++; tab-width: 2; indent-tabs-mode: nil; c-basic-offset: 2 -*- */
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/* vim: set ts=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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#include "DocAccessibleParent.h"
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#include "nsAutoPtr.h"
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#include "mozilla/a11y/Platform.h"
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#include "ProxyAccessible.h"
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#include "mozilla/dom/TabParent.h"
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#include "xpcAccessibleDocument.h"
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#include "xpcAccEvents.h"
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#include "nsAccUtils.h"
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#include "nsCoreUtils.h"
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namespace mozilla {
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namespace a11y {
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bool
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DocAccessibleParent::RecvShowEvent(const ShowEventData& aData,
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const bool& aFromUser)
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{
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if (mShutdown)
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return true;
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MOZ_DIAGNOSTIC_ASSERT(CheckDocTree());
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if (aData.NewTree().IsEmpty()) {
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NS_ERROR("no children being added");
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return false;
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}
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ProxyAccessible* parent = GetAccessible(aData.ID());
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// XXX This should really never happen, but sometimes we fail to fire the
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// required show events.
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if (!parent) {
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NS_ERROR("adding child to unknown accessible");
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return true;
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}
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uint32_t newChildIdx = aData.Idx();
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if (newChildIdx > parent->ChildrenCount()) {
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NS_ERROR("invalid index to add child at");
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return true;
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}
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uint32_t consumed = AddSubtree(parent, aData.NewTree(), 0, newChildIdx);
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MOZ_ASSERT(consumed == aData.NewTree().Length());
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// XXX This shouldn't happen, but if we failed to add children then the below
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// is pointless and can crash.
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if (!consumed) {
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return true;
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}
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#ifdef DEBUG
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for (uint32_t i = 0; i < consumed; i++) {
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uint64_t id = aData.NewTree()[i].ID();
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MOZ_ASSERT(mAccessibles.GetEntry(id));
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}
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#endif
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MOZ_DIAGNOSTIC_ASSERT(CheckDocTree());
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ProxyAccessible* target = parent->ChildAt(newChildIdx);
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ProxyShowHideEvent(target, parent, true, aFromUser);
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if (!nsCoreUtils::AccEventObserversExist()) {
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return true;
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}
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uint32_t type = nsIAccessibleEvent::EVENT_SHOW;
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xpcAccessibleGeneric* xpcAcc = GetXPCAccessible(target);
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xpcAccessibleDocument* doc = GetAccService()->GetXPCDocument(this);
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nsIDOMNode* node = nullptr;
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RefPtr<xpcAccEvent> event = new xpcAccEvent(type, xpcAcc, doc, node,
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aFromUser);
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nsCoreUtils::DispatchAccEvent(Move(event));
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return true;
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}
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uint32_t
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DocAccessibleParent::AddSubtree(ProxyAccessible* aParent,
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const nsTArray<a11y::AccessibleData>& aNewTree,
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uint32_t aIdx, uint32_t aIdxInParent)
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{
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if (aNewTree.Length() <= aIdx) {
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NS_ERROR("bad index in serialized tree!");
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return 0;
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}
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const AccessibleData& newChild = aNewTree[aIdx];
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if (newChild.Role() > roles::LAST_ROLE) {
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NS_ERROR("invalid role");
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return 0;
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}
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if (mAccessibles.Contains(newChild.ID())) {
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NS_ERROR("ID already in use");
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return 0;
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}
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auto role = static_cast<a11y::role>(newChild.Role());
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ProxyAccessible* newProxy =
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new ProxyAccessible(newChild.ID(), aParent, this, role);
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aParent->AddChildAt(aIdxInParent, newProxy);
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mAccessibles.PutEntry(newChild.ID())->mProxy = newProxy;
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ProxyCreated(newProxy, newChild.Interfaces());
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uint32_t accessibles = 1;
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uint32_t kids = newChild.ChildrenCount();
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for (uint32_t i = 0; i < kids; i++) {
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uint32_t consumed = AddSubtree(newProxy, aNewTree, aIdx + accessibles, i);
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if (!consumed)
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return 0;
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accessibles += consumed;
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}
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MOZ_ASSERT(newProxy->ChildrenCount() == kids);
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return accessibles;
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}
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bool
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DocAccessibleParent::RecvHideEvent(const uint64_t& aRootID,
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const bool& aFromUser)
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{
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if (mShutdown)
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return true;
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MOZ_DIAGNOSTIC_ASSERT(CheckDocTree());
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// We shouldn't actually need this because mAccessibles shouldn't have an
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// entry for the document itself, but it doesn't hurt to be explicit.
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if (!aRootID) {
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NS_ERROR("trying to hide entire document?");
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return false;
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}
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ProxyEntry* rootEntry = mAccessibles.GetEntry(aRootID);
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if (!rootEntry) {
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NS_ERROR("invalid root being removed!");
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return true;
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}
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ProxyAccessible* root = rootEntry->mProxy;
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if (!root) {
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NS_ERROR("invalid root being removed!");
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return true;
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}
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ProxyAccessible* parent = root->Parent();
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ProxyShowHideEvent(root, parent, false, aFromUser);
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RefPtr<xpcAccHideEvent> event = nullptr;
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if (nsCoreUtils::AccEventObserversExist()) {
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uint32_t type = nsIAccessibleEvent::EVENT_HIDE;
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xpcAccessibleGeneric* xpcAcc = GetXPCAccessible(root);
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xpcAccessibleGeneric* xpcParent = GetXPCAccessible(parent);
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ProxyAccessible* next = root->NextSibling();
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xpcAccessibleGeneric* xpcNext = next ? GetXPCAccessible(next) : nullptr;
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ProxyAccessible* prev = root->PrevSibling();
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xpcAccessibleGeneric* xpcPrev = prev ? GetXPCAccessible(prev) : nullptr;
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xpcAccessibleDocument* doc = GetAccService()->GetXPCDocument(this);
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nsIDOMNode* node = nullptr;
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event = new xpcAccHideEvent(type, xpcAcc, doc, node, aFromUser, xpcParent,
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xpcNext, xpcPrev);
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}
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parent->RemoveChild(root);
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root->Shutdown();
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MOZ_DIAGNOSTIC_ASSERT(CheckDocTree());
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if (event) {
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nsCoreUtils::DispatchAccEvent(Move(event));
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}
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return true;
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}
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bool
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DocAccessibleParent::RecvEvent(const uint64_t& aID, const uint32_t& aEventType)
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{
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ProxyAccessible* proxy = GetAccessible(aID);
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if (!proxy) {
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NS_ERROR("no proxy for event!");
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return true;
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}
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ProxyEvent(proxy, aEventType);
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if (!nsCoreUtils::AccEventObserversExist()) {
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return true;
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}
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xpcAccessibleGeneric* xpcAcc = GetXPCAccessible(proxy);
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xpcAccessibleDocument* doc = GetAccService()->GetXPCDocument(this);
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nsIDOMNode* node = nullptr;
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bool fromUser = true; // XXX fix me
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RefPtr<xpcAccEvent> event = new xpcAccEvent(aEventType, xpcAcc, doc, node,
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fromUser);
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nsCoreUtils::DispatchAccEvent(Move(event));
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return true;
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}
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bool
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DocAccessibleParent::RecvStateChangeEvent(const uint64_t& aID,
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const uint64_t& aState,
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const bool& aEnabled)
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{
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ProxyAccessible* target = GetAccessible(aID);
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if (!target) {
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NS_ERROR("we don't know about the target of a state change event!");
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return true;
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}
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ProxyStateChangeEvent(target, aState, aEnabled);
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if (!nsCoreUtils::AccEventObserversExist()) {
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return true;
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}
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xpcAccessibleGeneric* xpcAcc = GetXPCAccessible(target);
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xpcAccessibleDocument* doc = GetAccService()->GetXPCDocument(this);
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uint32_t type = nsIAccessibleEvent::EVENT_STATE_CHANGE;
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bool extra;
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uint32_t state = nsAccUtils::To32States(aState, &extra);
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bool fromUser = true; // XXX fix this
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nsIDOMNode* node = nullptr; // XXX can we do better?
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RefPtr<xpcAccStateChangeEvent> event =
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new xpcAccStateChangeEvent(type, xpcAcc, doc, node, fromUser, state, extra,
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aEnabled);
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nsCoreUtils::DispatchAccEvent(Move(event));
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return true;
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}
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bool
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DocAccessibleParent::RecvCaretMoveEvent(const uint64_t& aID, const int32_t& aOffset)
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{
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ProxyAccessible* proxy = GetAccessible(aID);
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if (!proxy) {
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NS_ERROR("unknown caret move event target!");
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return true;
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}
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ProxyCaretMoveEvent(proxy, aOffset);
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if (!nsCoreUtils::AccEventObserversExist()) {
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return true;
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}
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xpcAccessibleGeneric* xpcAcc = GetXPCAccessible(proxy);
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xpcAccessibleDocument* doc = GetAccService()->GetXPCDocument(this);
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nsIDOMNode* node = nullptr;
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bool fromUser = true; // XXX fix me
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uint32_t type = nsIAccessibleEvent::EVENT_TEXT_CARET_MOVED;
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RefPtr<xpcAccCaretMoveEvent> event =
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new xpcAccCaretMoveEvent(type, xpcAcc, doc, node, fromUser, aOffset);
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nsCoreUtils::DispatchAccEvent(Move(event));
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return true;
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}
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bool
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DocAccessibleParent::RecvTextChangeEvent(const uint64_t& aID,
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const nsString& aStr,
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const int32_t& aStart,
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const uint32_t& aLen,
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const bool& aIsInsert,
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const bool& aFromUser)
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{
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ProxyAccessible* target = GetAccessible(aID);
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if (!target) {
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NS_ERROR("text change event target is unknown!");
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return true;
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}
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ProxyTextChangeEvent(target, aStr, aStart, aLen, aIsInsert, aFromUser);
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if (!nsCoreUtils::AccEventObserversExist()) {
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return true;
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}
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xpcAccessibleGeneric* xpcAcc = GetXPCAccessible(target);
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xpcAccessibleDocument* doc = GetAccService()->GetXPCDocument(this);
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uint32_t type = aIsInsert ? nsIAccessibleEvent::EVENT_TEXT_INSERTED :
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nsIAccessibleEvent::EVENT_TEXT_REMOVED;
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nsIDOMNode* node = nullptr;
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RefPtr<xpcAccTextChangeEvent> event =
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new xpcAccTextChangeEvent(type, xpcAcc, doc, node, aFromUser, aStart, aLen,
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aIsInsert, aStr);
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nsCoreUtils::DispatchAccEvent(Move(event));
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return true;
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}
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bool
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DocAccessibleParent::RecvSelectionEvent(const uint64_t& aID,
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const uint64_t& aWidgetID,
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const uint32_t& aType)
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{
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ProxyAccessible* target = GetAccessible(aID);
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ProxyAccessible* widget = GetAccessible(aWidgetID);
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if (!target || !widget) {
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NS_ERROR("invalid id in selection event");
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return true;
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}
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ProxySelectionEvent(target, widget, aType);
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if (!nsCoreUtils::AccEventObserversExist()) {
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return true;
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}
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xpcAccessibleGeneric* xpcTarget = GetXPCAccessible(target);
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xpcAccessibleDocument* xpcDoc = GetAccService()->GetXPCDocument(this);
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RefPtr<xpcAccEvent> event = new xpcAccEvent(aType, xpcTarget, xpcDoc,
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nullptr, false);
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nsCoreUtils::DispatchAccEvent(Move(event));
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return true;
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}
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bool
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DocAccessibleParent::RecvBindChildDoc(PDocAccessibleParent* aChildDoc, const uint64_t& aID)
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{
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// One document should never directly be the child of another.
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// We should always have at least an outer doc accessible in between.
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MOZ_ASSERT(aID);
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if (!aID)
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return false;
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MOZ_DIAGNOSTIC_ASSERT(CheckDocTree());
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auto childDoc = static_cast<DocAccessibleParent*>(aChildDoc);
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childDoc->Unbind();
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bool result = AddChildDoc(childDoc, aID, false);
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MOZ_ASSERT(result);
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MOZ_DIAGNOSTIC_ASSERT(CheckDocTree());
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return result;
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}
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bool
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DocAccessibleParent::AddChildDoc(DocAccessibleParent* aChildDoc,
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uint64_t aParentID, bool aCreating)
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{
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// We do not use GetAccessible here because we want to be sure to not get the
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// document it self.
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ProxyEntry* e = mAccessibles.GetEntry(aParentID);
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if (!e)
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return false;
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ProxyAccessible* outerDoc = e->mProxy;
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MOZ_ASSERT(outerDoc);
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aChildDoc->mParent = outerDoc;
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outerDoc->SetChildDoc(aChildDoc);
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mChildDocs.AppendElement(aChildDoc);
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aChildDoc->mParentDoc = this;
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if (aCreating) {
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ProxyCreated(aChildDoc, Interfaces::DOCUMENT | Interfaces::HYPERTEXT);
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}
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return true;
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}
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bool
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DocAccessibleParent::RecvShutdown()
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{
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Destroy();
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if (!static_cast<dom::TabParent*>(Manager())->IsDestroyed()) {
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return PDocAccessibleParent::Send__delete__(this);
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}
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return true;
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}
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void
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DocAccessibleParent::Destroy()
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{
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NS_ASSERTION(mChildDocs.IsEmpty(),
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"why weren't the child docs destroyed already?");
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MOZ_ASSERT(!mShutdown);
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mShutdown = true;
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uint32_t childDocCount = mChildDocs.Length();
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for (uint32_t i = childDocCount - 1; i < childDocCount; i--)
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mChildDocs[i]->Destroy();
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for (auto iter = mAccessibles.Iter(); !iter.Done(); iter.Next()) {
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MOZ_ASSERT(iter.Get()->mProxy != this);
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ProxyDestroyed(iter.Get()->mProxy);
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iter.Remove();
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}
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DocManager::NotifyOfRemoteDocShutdown(this);
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ProxyDestroyed(this);
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if (mParentDoc)
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mParentDoc->RemoveChildDoc(this);
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else if (IsTopLevel())
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GetAccService()->RemoteDocShutdown(this);
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}
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bool
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DocAccessibleParent::CheckDocTree() const
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{
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size_t childDocs = mChildDocs.Length();
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for (size_t i = 0; i < childDocs; i++) {
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if (!mChildDocs[i] || mChildDocs[i]->mParentDoc != this)
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return false;
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if (!mChildDocs[i]->CheckDocTree()) {
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return false;
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}
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}
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return true;
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}
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xpcAccessibleGeneric*
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DocAccessibleParent::GetXPCAccessible(ProxyAccessible* aProxy)
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{
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xpcAccessibleDocument* doc = GetAccService()->GetXPCDocument(this);
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MOZ_ASSERT(doc);
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return doc->GetXPCAccessible(aProxy);
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}
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} // a11y
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} // mozilla
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