gecko-dev/accessible/ipc/DocAccessibleParent.h

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/* -*- Mode: C++; tab-width: 2; indent-tabs-mode: nil; c-basic-offset: 2 -*- */
/* vim: set ts=2 et sw=2 tw=80: */
/* This Source Code Form is subject to the terms of the Mozilla Public
* License, v. 2.0. If a copy of the MPL was not distributed with this
* file, You can obtain one at http://mozilla.org/MPL/2.0/. */
#ifndef mozilla_a11y_DocAccessibleParent_h
#define mozilla_a11y_DocAccessibleParent_h
#include "nsAccessibilityService.h"
#include "mozilla/a11y/PDocAccessibleParent.h"
#include "mozilla/a11y/ProxyAccessible.h"
#include "mozilla/Tuple.h"
#include "nsClassHashtable.h"
#include "nsHashKeys.h"
#include "nsISupportsImpl.h"
namespace mozilla {
namespace a11y {
class xpcAccessibleGeneric;
#if !defined(XP_WIN)
class DocAccessiblePlatformExtParent;
#endif
/*
* These objects live in the main process and comunicate with and represent
* an accessible document in a content process.
*/
class DocAccessibleParent : public ProxyAccessible,
public PDocAccessibleParent {
public:
NS_INLINE_DECL_REFCOUNTING(DocAccessibleParent);
DocAccessibleParent()
: ProxyAccessible(this),
mParentDoc(kNoParentDoc),
#if defined(XP_WIN)
mEmulatedWindowHandle(nullptr),
#endif // defined(XP_WIN)
mTopLevel(false),
mTopLevelInContentProcess(false),
mShutdown(false) {
sMaxDocID++;
mActorID = sMaxDocID;
MOZ_ASSERT(!LiveDocs().Get(mActorID));
LiveDocs().Put(mActorID, this);
}
/**
* Set this as a top level document; i.e. it is not embedded by another remote
* document. This also means it is a top level document in its content
* process.
* Tab documents are top level documents.
*/
void SetTopLevel() {
mTopLevel = true;
mTopLevelInContentProcess = true;
}
bool IsTopLevel() const { return mTopLevel; }
/**
* Set this as a top level document in its content process.
* Note that this could be an out-of-process iframe embedded by a remote
* embedder document. In that case, IsToplevel() will return false, but
* IsTopLevelInContentProcess() will return true.
*/
void SetTopLevelInContentProcess() { mTopLevelInContentProcess = true; }
bool IsTopLevelInContentProcess() const { return mTopLevelInContentProcess; }
bool IsShutdown() const { return mShutdown; }
/**
* Mark this actor as shutdown without doing any cleanup. This should only
* be called on actors that have just been initialized, so probably only from
* RecvPDocAccessibleConstructor.
*/
void MarkAsShutdown() {
MOZ_ASSERT(mChildDocs.IsEmpty());
MOZ_ASSERT(mAccessibles.Count() == 0);
mShutdown = true;
}
/*
* Called when a message from a document in a child process notifies the main
* process it is firing an event.
*/
virtual mozilla::ipc::IPCResult RecvEvent(const uint64_t& aID,
const uint32_t& aType) override;
virtual mozilla::ipc::IPCResult RecvShowEvent(const ShowEventData& aData,
const bool& aFromUser) override;
virtual mozilla::ipc::IPCResult RecvHideEvent(const uint64_t& aRootID,
const bool& aFromUser) override;
mozilla::ipc::IPCResult RecvStateChangeEvent(const uint64_t& aID,
const uint64_t& aState,
const bool& aEnabled) final;
mozilla::ipc::IPCResult RecvCaretMoveEvent(
const uint64_t& aID,
#if defined(XP_WIN)
const LayoutDeviceIntRect& aCaretRect,
#endif
const int32_t& aOffset) final;
virtual mozilla::ipc::IPCResult RecvTextChangeEvent(
const uint64_t& aID, const nsString& aStr, const int32_t& aStart,
const uint32_t& aLen, const bool& aIsInsert,
const bool& aFromUser) override;
#if defined(XP_WIN)
virtual mozilla::ipc::IPCResult RecvSyncTextChangeEvent(
const uint64_t& aID, const nsString& aStr, const int32_t& aStart,
const uint32_t& aLen, const bool& aIsInsert,
const bool& aFromUser) override;
virtual mozilla::ipc::IPCResult RecvFocusEvent(
const uint64_t& aID, const LayoutDeviceIntRect& aCaretRect) override;
#endif // defined(XP_WIN)
virtual mozilla::ipc::IPCResult RecvSelectionEvent(
const uint64_t& aID, const uint64_t& aWidgetID,
const uint32_t& aType) override;
MOZ_CAN_RUN_SCRIPT_BOUNDARY
virtual mozilla::ipc::IPCResult RecvVirtualCursorChangeEvent(
const uint64_t& aID, const uint64_t& aOldPositionID,
const int32_t& aOldStartOffset, const int32_t& aOldEndOffset,
const uint64_t& aNewPositionID, const int32_t& aNewStartOffset,
const int32_t& aNewEndOffset, const int16_t& aReason,
const int16_t& aBoundaryType, const bool& aFromUser) override;
virtual mozilla::ipc::IPCResult RecvScrollingEvent(
const uint64_t& aID, const uint64_t& aType, const uint32_t& aScrollX,
const uint32_t& aScrollY, const uint32_t& aMaxScrollX,
const uint32_t& aMaxScrollY) override;
#if !defined(XP_WIN)
virtual mozilla::ipc::IPCResult RecvAnnouncementEvent(
const uint64_t& aID, const nsString& aAnnouncement,
const uint16_t& aPriority) override;
#endif
mozilla::ipc::IPCResult RecvRoleChangedEvent(const a11y::role& aRole) final;
virtual mozilla::ipc::IPCResult RecvBindChildDoc(
PDocAccessibleParent* aChildDoc, const uint64_t& aID) override;
void Unbind() {
if (DocAccessibleParent* parent = ParentDoc()) {
parent->RemoveChildDoc(this);
}
SetParent(nullptr);
}
virtual mozilla::ipc::IPCResult RecvShutdown() override;
void Destroy();
virtual void ActorDestroy(ActorDestroyReason aWhy) override {
MOZ_ASSERT(CheckDocTree());
if (!mShutdown) Destroy();
}
/*
* Return the main processes representation of the parent document (if any)
* of the document this object represents.
*/
DocAccessibleParent* ParentDoc() const;
static const uint64_t kNoParentDoc = UINT64_MAX;
/*
* Called when a document in a content process notifies the main process of a
* new child document.
*/
ipc::IPCResult AddChildDoc(DocAccessibleParent* aChildDoc, uint64_t aParentID,
bool aCreating = true);
/*
* Called when the document in the content process this object represents
* notifies the main process a child document has been removed.
*/
void RemoveChildDoc(DocAccessibleParent* aChildDoc) {
ProxyAccessible* parent = aChildDoc->Parent();
MOZ_ASSERT(parent);
if (parent) {
aChildDoc->Parent()->ClearChildDoc(aChildDoc);
}
DebugOnly<bool> result = mChildDocs.RemoveElement(aChildDoc->mActorID);
aChildDoc->mParentDoc = kNoParentDoc;
MOZ_ASSERT(result);
}
void RemoveAccessible(ProxyAccessible* aAccessible) {
MOZ_DIAGNOSTIC_ASSERT(mAccessibles.GetEntry(aAccessible->ID()));
mAccessibles.RemoveEntry(aAccessible->ID());
}
/**
* Return the accessible for given id.
*/
ProxyAccessible* GetAccessible(uintptr_t aID) {
if (!aID) return this;
ProxyEntry* e = mAccessibles.GetEntry(aID);
return e ? e->mProxy : nullptr;
}
const ProxyAccessible* GetAccessible(uintptr_t aID) const {
return const_cast<DocAccessibleParent*>(this)->GetAccessible(aID);
}
size_t ChildDocCount() const { return mChildDocs.Length(); }
const DocAccessibleParent* ChildDocAt(size_t aIdx) const {
return const_cast<DocAccessibleParent*>(this)->ChildDocAt(aIdx);
}
DocAccessibleParent* ChildDocAt(size_t aIdx) {
return LiveDocs().Get(mChildDocs[aIdx]);
}
#if defined(XP_WIN)
void MaybeInitWindowEmulation();
/**
Bug 1570848: When an OuterDocAccessible is constructed, send it as the parent COM proxy for its remote document (if any). r=MarcoZ Normally, the OuterDocAccessible is created first and the DocAccessibleParent for a remote document is created after that. So, we get the OuterDocAccessible and call DocAccessibleParent::SendParentCOMProxy when the DocAccessibleParent is constructed (BrowserParent::RecvPDocAccessibleConstructor). However, sometimes, the OuterDocAccessible is created *after* the DocAccessibleParent. This sometimes happens for extension popups, for example. In that case, we previously never sent the parent COM proxy. Aside from leaving the remote document with a null parent, this also meant we never sent any events for the document, since events are buffered for remote documents until the parent COM proxy is received. This effectively left the remote document (e.g. extension popup) inaccessible. Now, we also call SendParentCOMProxy in the OuterDocAccessible constructor. Note that this doesn't result in duplicates because if the OuterDocAccessible was created first, there won't be a DocAccessibleParent for the remote document yet, so this code won't run. That said, if the OuterDocAccessible is recreated (e.g. due to frame reconstruction), we may call SendParentCOMProxy again. This should be okay, but it required an assertion in DocAccessibleChild::RecvParentCOMProxy to be tweaked. Differential Revision: https://phabricator.services.mozilla.com/D40358 --HG-- extra : moz-landing-system : lando
2019-08-02 07:24:54 +03:00
* Note that an OuterDocAccessible can be created before the
* DocAccessibleParent or vice versa. Therefore, this must be conditionally
* called when either of these is created.
* @param aOuterDoc The OuterDocAccessible to be returned as the parent of
* this document. Only GetNativeInterface() is called on this, so it
* may be a ProxyAccessibleWrap or similar.
*/
void SendParentCOMProxy(Accessible* aOuterDoc);
virtual mozilla::ipc::IPCResult RecvGetWindowedPluginIAccessible(
const WindowsHandle& aHwnd, IAccessibleHolder* aPluginCOMProxy) override;
/**
* Set emulated native window handle for a document.
* @param aWindowHandle emulated native window handle
*/
void SetEmulatedWindowHandle(HWND aWindowHandle);
HWND GetEmulatedWindowHandle() const { return mEmulatedWindowHandle; }
#endif
#if !defined(XP_WIN)
virtual mozilla::ipc::IPCResult RecvBatch(
const uint64_t& aBatchType, nsTArray<BatchData>&& aData) override;
virtual bool DeallocPDocAccessiblePlatformExtParent(
PDocAccessiblePlatformExtParent* aActor) override;
virtual PDocAccessiblePlatformExtParent*
AllocPDocAccessiblePlatformExtParent() override;
DocAccessiblePlatformExtParent* GetPlatformExtension();
#endif
/**
* If this is an iframe document rendered in a different process to its
* embedder, return the DocAccessibleParent and id for the embedder
* accessible. Otherwise, return null and 0.
*/
Tuple<DocAccessibleParent*, uint64_t> GetRemoteEmbedder();
private:
~DocAccessibleParent() {
LiveDocs().Remove(mActorID);
MOZ_ASSERT(mChildDocs.Length() == 0);
MOZ_ASSERT(!ParentDoc());
}
class ProxyEntry : public PLDHashEntryHdr {
public:
explicit ProxyEntry(const void*) : mProxy(nullptr) {}
ProxyEntry(ProxyEntry&& aOther) : mProxy(aOther.mProxy) {
aOther.mProxy = nullptr;
}
~ProxyEntry() { delete mProxy; }
typedef uint64_t KeyType;
typedef const void* KeyTypePointer;
bool KeyEquals(const void* aKey) const {
return mProxy->ID() == (uint64_t)aKey;
}
static const void* KeyToPointer(uint64_t aKey) { return (void*)aKey; }
static PLDHashNumber HashKey(const void* aKey) { return (uint64_t)aKey; }
enum { ALLOW_MEMMOVE = true };
ProxyAccessible* mProxy;
};
uint32_t AddSubtree(ProxyAccessible* aParent,
const nsTArray<AccessibleData>& aNewTree, uint32_t aIdx,
uint32_t aIdxInParent);
MOZ_MUST_USE bool CheckDocTree() const;
xpcAccessibleGeneric* GetXPCAccessible(ProxyAccessible* aProxy);
nsTArray<uint64_t> mChildDocs;
uint64_t mParentDoc;
#if defined(XP_WIN)
// The handle associated with the emulated window that contains this document
HWND mEmulatedWindowHandle;
# if defined(MOZ_SANDBOX)
mscom::PreservedStreamPtr mParentProxyStream;
mscom::PreservedStreamPtr mDocProxyStream;
# endif // defined(MOZ_SANDBOX)
#endif // defined(XP_WIN)
/*
* Conceptually this is a map from IDs to proxies, but we store the ID in the
* proxy object so we can't use a real map.
*/
nsTHashtable<ProxyEntry> mAccessibles;
uint64_t mActorID;
bool mTopLevel;
bool mTopLevelInContentProcess;
bool mShutdown;
struct PendingChildDoc {
PendingChildDoc(DocAccessibleParent* aChildDoc, uint64_t aParentID)
: mChildDoc(aChildDoc), mParentID(aParentID) {}
RefPtr<DocAccessibleParent> mChildDoc;
uint64_t mParentID;
};
// We use nsTArray because there will be very few entries.
nsTArray<PendingChildDoc> mPendingChildDocs;
static uint64_t sMaxDocID;
static nsDataHashtable<nsUint64HashKey, DocAccessibleParent*>& LiveDocs() {
static nsDataHashtable<nsUint64HashKey, DocAccessibleParent*> sLiveDocs;
return sLiveDocs;
}
};
} // namespace a11y
} // namespace mozilla
#endif