зеркало из https://github.com/mozilla/gecko-dev.git
394 строки
14 KiB
C++
394 строки
14 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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#include "mozilla/dom/KeyboardEvent.h"
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#include "mozilla/TextEvents.h"
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#include "mozilla/dom/Document.h"
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#include "nsContentUtils.h"
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#include "nsRFPService.h"
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#include "prtime.h"
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namespace mozilla::dom {
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KeyboardEvent::KeyboardEvent(EventTarget* aOwner, nsPresContext* aPresContext,
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WidgetKeyboardEvent* aEvent)
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: UIEvent(aOwner, aPresContext,
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aEvent ? aEvent
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: new WidgetKeyboardEvent(false, eVoidEvent, nullptr)),
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mInitializedByJS(false),
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mInitializedByCtor(false),
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mInitializedWhichValue(0) {
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if (aEvent) {
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mEventIsInternal = false;
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} else {
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mEventIsInternal = true;
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mEvent->mTime = PR_Now();
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mEvent->AsKeyboardEvent()->mKeyNameIndex = KEY_NAME_INDEX_USE_STRING;
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}
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}
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bool KeyboardEvent::AltKey(CallerType aCallerType) {
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bool altState = mEvent->AsKeyboardEvent()->IsAlt();
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if (!ShouldResistFingerprinting(aCallerType)) {
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return altState;
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}
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// We need to give a spoofed state for Alt key since it could be used as a
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// modifier key in certain keyboard layout. For example, the '@' key for
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// German keyboard for MAC is Alt+L.
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return GetSpoofedModifierStates(Modifier::MODIFIER_ALT, altState);
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}
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bool KeyboardEvent::CtrlKey(CallerType aCallerType) {
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// We don't spoof this key when privacy.resistFingerprinting
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// is enabled, because it is often used for command key
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// combinations in web apps.
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return mEvent->AsKeyboardEvent()->IsControl();
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}
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bool KeyboardEvent::ShiftKey(CallerType aCallerType) {
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bool shiftState = mEvent->AsKeyboardEvent()->IsShift();
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if (!ShouldResistFingerprinting(aCallerType)) {
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return shiftState;
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}
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return GetSpoofedModifierStates(Modifier::MODIFIER_SHIFT, shiftState);
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}
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bool KeyboardEvent::MetaKey() {
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// We don't spoof this key when privacy.resistFingerprinting
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// is enabled, because it is often used for command key
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// combinations in web apps.
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return mEvent->AsKeyboardEvent()->IsMeta();
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}
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bool KeyboardEvent::Repeat() { return mEvent->AsKeyboardEvent()->mIsRepeat; }
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bool KeyboardEvent::IsComposing() {
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return mEvent->AsKeyboardEvent()->mIsComposing;
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}
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void KeyboardEvent::GetKey(nsAString& aKeyName) const {
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mEvent->AsKeyboardEvent()->GetDOMKeyName(aKeyName);
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}
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void KeyboardEvent::GetCode(nsAString& aCodeName, CallerType aCallerType) {
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if (!ShouldResistFingerprinting(aCallerType)) {
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mEvent->AsKeyboardEvent()->GetDOMCodeName(aCodeName);
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return;
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}
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// When fingerprinting resistance is enabled, we will give a spoofed code
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// according to the content-language of the document.
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nsCOMPtr<Document> doc = GetDocument();
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nsRFPService::GetSpoofedCode(doc, mEvent->AsKeyboardEvent(), aCodeName);
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}
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void KeyboardEvent::GetInitDict(KeyboardEventInit& aParam) {
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GetKey(aParam.mKey);
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GetCode(aParam.mCode);
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aParam.mLocation = Location();
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aParam.mRepeat = Repeat();
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aParam.mIsComposing = IsComposing();
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// legacy attributes
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aParam.mKeyCode = KeyCode();
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aParam.mCharCode = CharCode();
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aParam.mWhich = Which();
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// modifiers from EventModifierInit
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aParam.mCtrlKey = CtrlKey();
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aParam.mShiftKey = ShiftKey();
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aParam.mAltKey = AltKey();
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aParam.mMetaKey = MetaKey();
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WidgetKeyboardEvent* internalEvent = mEvent->AsKeyboardEvent();
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aParam.mModifierAltGraph = internalEvent->IsAltGraph();
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aParam.mModifierCapsLock = internalEvent->IsCapsLocked();
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aParam.mModifierFn = internalEvent->IsFn();
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aParam.mModifierFnLock = internalEvent->IsFnLocked();
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aParam.mModifierNumLock = internalEvent->IsNumLocked();
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aParam.mModifierOS = internalEvent->IsOS();
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aParam.mModifierScrollLock = internalEvent->IsScrollLocked();
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aParam.mModifierSymbol = internalEvent->IsSymbol();
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aParam.mModifierSymbolLock = internalEvent->IsSymbolLocked();
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// EventInit
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aParam.mBubbles = internalEvent->mFlags.mBubbles;
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aParam.mCancelable = internalEvent->mFlags.mCancelable;
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}
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bool KeyboardEvent::ShouldUseSameValueForCharCodeAndKeyCode(
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const WidgetKeyboardEvent& aWidgetKeyboardEvent,
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CallerType aCallerType) const {
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// - If this event is initialized by JS, we don't need to return same value
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// for keyCode and charCode since they can be initialized separately.
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// - If this is not a keypress event, we shouldn't return same value for
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// keyCode and charCode.
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// - If we need to return legacy keyCode and charCode values for the web
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// app due to in the blacklist.
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// - If this event is referred by default handler, i.e., the caller is
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// system or this event is now in the system group, we don't need to use
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// hack for web-compat.
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if (mInitializedByJS || aWidgetKeyboardEvent.mMessage != eKeyPress ||
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aWidgetKeyboardEvent.mUseLegacyKeyCodeAndCharCodeValues ||
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aCallerType == CallerType::System ||
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aWidgetKeyboardEvent.mFlags.mInSystemGroup) {
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return false;
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}
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MOZ_ASSERT(aCallerType == CallerType::NonSystem);
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return StaticPrefs::
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dom_keyboardevent_keypress_set_keycode_and_charcode_to_same_value();
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}
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uint32_t KeyboardEvent::CharCode(CallerType aCallerType) {
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WidgetKeyboardEvent* widgetKeyboardEvent = mEvent->AsKeyboardEvent();
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if (mInitializedByJS) {
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// If this is initialized by Ctor, we should return the initialized value.
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if (mInitializedByCtor) {
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return widgetKeyboardEvent->mCharCode;
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}
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// Otherwise, i.e., initialized by InitKey*Event(), we should return the
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// initialized value only when eKeyPress or eAccessKeyNotFound event.
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// Although this is odd, but our traditional behavior.
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return widgetKeyboardEvent->mMessage == eKeyPress ||
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widgetKeyboardEvent->mMessage == eAccessKeyNotFound
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? widgetKeyboardEvent->mCharCode
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: 0;
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}
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// If the key is a function key, we should return the result of KeyCode()
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// even from CharCode(). Otherwise, i.e., the key may be a printable
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// key or actually a printable key, we should return the given charCode
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// value.
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if (widgetKeyboardEvent->mKeyNameIndex != KEY_NAME_INDEX_USE_STRING &&
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ShouldUseSameValueForCharCodeAndKeyCode(*widgetKeyboardEvent,
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aCallerType)) {
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return ComputeTraditionalKeyCode(*widgetKeyboardEvent, aCallerType);
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}
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return widgetKeyboardEvent->mCharCode;
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}
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uint32_t KeyboardEvent::KeyCode(CallerType aCallerType) {
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WidgetKeyboardEvent* widgetKeyboardEvent = mEvent->AsKeyboardEvent();
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if (mInitializedByJS) {
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// If this is initialized by Ctor, we should return the initialized value.
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if (mInitializedByCtor) {
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return widgetKeyboardEvent->mKeyCode;
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}
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// Otherwise, i.e., initialized by InitKey*Event(), we should return the
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// initialized value only when the event message is a valid keyboard event
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// message. Although this is odd, but our traditional behavior.
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// NOTE: The fix of bug 1222285 changed the behavior temporarily if
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// spoofing is enabled. However, the behavior does not make sense
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// since if the event is generated by JS, the behavior shouldn't
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// be changed by whether spoofing is enabled or not. Therefore,
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// we take back the original behavior.
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return widgetKeyboardEvent->HasKeyEventMessage()
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? widgetKeyboardEvent->mKeyCode
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: 0;
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}
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// If the key is not a function key, i.e., the key may be a printable key
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// or a function key mapped as a printable key, we should use charCode value
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// for keyCode value if this is a "keypress" event.
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if (widgetKeyboardEvent->mKeyNameIndex == KEY_NAME_INDEX_USE_STRING &&
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ShouldUseSameValueForCharCodeAndKeyCode(*widgetKeyboardEvent,
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aCallerType)) {
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return widgetKeyboardEvent->mCharCode;
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}
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return ComputeTraditionalKeyCode(*widgetKeyboardEvent, aCallerType);
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}
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uint32_t KeyboardEvent::ComputeTraditionalKeyCode(
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WidgetKeyboardEvent& aKeyboardEvent, CallerType aCallerType) {
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if (!ShouldResistFingerprinting(aCallerType)) {
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return aKeyboardEvent.mKeyCode;
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}
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// In Netscape style (i.e., traditional behavior of Gecko), the keyCode
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// should be zero if the char code is given.
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if ((mEvent->mMessage == eKeyPress ||
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mEvent->mMessage == eAccessKeyNotFound) &&
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aKeyboardEvent.mCharCode) {
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return 0;
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}
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// When fingerprinting resistance is enabled, we will give a spoofed keyCode
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// according to the content-language of the document.
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nsCOMPtr<Document> doc = GetDocument();
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uint32_t spoofedKeyCode;
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if (nsRFPService::GetSpoofedKeyCode(doc, &aKeyboardEvent, spoofedKeyCode)) {
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return spoofedKeyCode;
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}
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return 0;
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}
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uint32_t KeyboardEvent::Which(CallerType aCallerType) {
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// If this event is initialized with ctor, which can have independent value.
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if (mInitializedByCtor) {
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return mInitializedWhichValue;
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}
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switch (mEvent->mMessage) {
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case eKeyDown:
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case eKeyDownOnPlugin:
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case eKeyUp:
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case eKeyUpOnPlugin:
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return KeyCode(aCallerType);
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case eKeyPress:
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// Special case for 4xp bug 62878. Try to make value of which
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// more closely mirror the values that 4.x gave for RETURN and BACKSPACE
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{
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uint32_t keyCode = mEvent->AsKeyboardEvent()->mKeyCode;
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if (keyCode == NS_VK_RETURN || keyCode == NS_VK_BACK) {
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return keyCode;
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}
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return CharCode();
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}
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default:
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break;
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}
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return 0;
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}
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uint32_t KeyboardEvent::Location() {
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return mEvent->AsKeyboardEvent()->mLocation;
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}
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// static
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already_AddRefed<KeyboardEvent> KeyboardEvent::ConstructorJS(
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const GlobalObject& aGlobal, const nsAString& aType,
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const KeyboardEventInit& aParam) {
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nsCOMPtr<EventTarget> target = do_QueryInterface(aGlobal.GetAsSupports());
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RefPtr<KeyboardEvent> newEvent = new KeyboardEvent(target, nullptr, nullptr);
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newEvent->InitWithKeyboardEventInit(target, aType, aParam);
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return newEvent.forget();
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}
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void KeyboardEvent::InitWithKeyboardEventInit(EventTarget* aOwner,
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const nsAString& aType,
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const KeyboardEventInit& aParam) {
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bool trusted = Init(aOwner);
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InitKeyEventJS(aType, aParam.mBubbles, aParam.mCancelable, aParam.mView,
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false, false, false, false, aParam.mKeyCode, aParam.mCharCode);
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InitModifiers(aParam);
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SetTrusted(trusted);
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mDetail = aParam.mDetail;
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mInitializedByJS = true;
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mInitializedByCtor = true;
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mInitializedWhichValue = aParam.mWhich;
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WidgetKeyboardEvent* internalEvent = mEvent->AsKeyboardEvent();
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internalEvent->mLocation = aParam.mLocation;
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internalEvent->mIsRepeat = aParam.mRepeat;
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internalEvent->mIsComposing = aParam.mIsComposing;
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internalEvent->mKeyNameIndex =
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WidgetKeyboardEvent::GetKeyNameIndex(aParam.mKey);
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if (internalEvent->mKeyNameIndex == KEY_NAME_INDEX_USE_STRING) {
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internalEvent->mKeyValue = aParam.mKey;
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}
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internalEvent->mCodeNameIndex =
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WidgetKeyboardEvent::GetCodeNameIndex(aParam.mCode);
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if (internalEvent->mCodeNameIndex == CODE_NAME_INDEX_USE_STRING) {
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internalEvent->mCodeValue = aParam.mCode;
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}
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}
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void KeyboardEvent::InitKeyEventJS(const nsAString& aType, bool aCanBubble,
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bool aCancelable, nsGlobalWindowInner* aView,
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bool aCtrlKey, bool aAltKey, bool aShiftKey,
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bool aMetaKey, uint32_t aKeyCode,
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uint32_t aCharCode) {
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NS_ENSURE_TRUE_VOID(!mEvent->mFlags.mIsBeingDispatched);
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mInitializedByJS = true;
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mInitializedByCtor = false;
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UIEvent::InitUIEvent(aType, aCanBubble, aCancelable, aView, 0);
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WidgetKeyboardEvent* keyEvent = mEvent->AsKeyboardEvent();
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keyEvent->InitBasicModifiers(aCtrlKey, aAltKey, aShiftKey, aMetaKey);
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keyEvent->mKeyCode = aKeyCode;
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keyEvent->mCharCode = aCharCode;
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}
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void KeyboardEvent::InitKeyboardEventJS(
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const nsAString& aType, bool aCanBubble, bool aCancelable,
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nsGlobalWindowInner* aView, const nsAString& aKey, uint32_t aLocation,
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bool aCtrlKey, bool aAltKey, bool aShiftKey, bool aMetaKey) {
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NS_ENSURE_TRUE_VOID(!mEvent->mFlags.mIsBeingDispatched);
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mInitializedByJS = true;
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mInitializedByCtor = false;
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UIEvent::InitUIEvent(aType, aCanBubble, aCancelable, aView, 0);
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WidgetKeyboardEvent* keyEvent = mEvent->AsKeyboardEvent();
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keyEvent->InitBasicModifiers(aCtrlKey, aAltKey, aShiftKey, aMetaKey);
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keyEvent->mLocation = aLocation;
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keyEvent->mKeyNameIndex = KEY_NAME_INDEX_USE_STRING;
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keyEvent->mKeyValue = aKey;
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}
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bool KeyboardEvent::ShouldResistFingerprinting(CallerType aCallerType) {
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// There are five situations we don't need to spoof this keyboard event.
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// 1. This event is initialized by scripts.
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// 2. This event is from Numpad.
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// 3. This event is in the system group.
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// 4. The caller type is system.
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// 5. The pref privcy.resistFingerprinting' is false, we fast return here
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// since we don't need to do any QI of following codes.
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if (mInitializedByJS || aCallerType == CallerType::System ||
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mEvent->mFlags.mInSystemGroup ||
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!nsContentUtils::ShouldResistFingerprinting() ||
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mEvent->AsKeyboardEvent()->mLocation ==
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KeyboardEvent_Binding::DOM_KEY_LOCATION_NUMPAD) {
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return false;
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}
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nsCOMPtr<Document> doc = GetDocument();
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return doc && !nsContentUtils::IsChromeDoc(doc);
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}
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bool KeyboardEvent::GetSpoofedModifierStates(const Modifiers aModifierKey,
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const bool aRawModifierState) {
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bool spoofedState;
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nsCOMPtr<Document> doc = GetDocument();
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if (nsRFPService::GetSpoofedModifierStates(doc, mEvent->AsKeyboardEvent(),
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aModifierKey, spoofedState)) {
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return spoofedState;
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}
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return aRawModifierState;
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}
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} // namespace mozilla::dom
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using namespace mozilla;
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using namespace mozilla::dom;
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already_AddRefed<KeyboardEvent> NS_NewDOMKeyboardEvent(
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EventTarget* aOwner, nsPresContext* aPresContext,
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WidgetKeyboardEvent* aEvent) {
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RefPtr<KeyboardEvent> it = new KeyboardEvent(aOwner, aPresContext, aEvent);
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return it.forget();
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}
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