blob: 89603df71b995b9ed14947649992ddffc328f425 [file] [log] [blame]
/*
* Copyright (C) 2008-2009, 2011, 2017 Apple Inc. All rights reserved.
*
* Redistribution and use in source and binary forms, with or without
* modification, are permitted provided that the following conditions
* are met:
*
* 1. Redistributions of source code must retain the above copyright
* notice, this list of conditions and the following disclaimer.
* 2. Redistributions in binary form must reproduce the above copyright
* notice, this list of conditions and the following disclaimer in the
* documentation and/or other materials provided with the distribution.
* 3. Neither the name of Apple Inc. ("Apple") nor the names of
* its contributors may be used to endorse or promote products derived
* from this software without specific prior written permission.
*
* THIS SOFTWARE IS PROVIDED BY APPLE AND ITS CONTRIBUTORS "AS IS" AND ANY
* EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
* WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
* DISCLAIMED. IN NO EVENT SHALL APPLE OR ITS CONTRIBUTORS BE LIABLE FOR ANY
* DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
* (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
* LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
* ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
* (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
* THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
*/
#include "config.h"
#include "AccessibilityObject.h"
#include "AXObjectCache.h"
#include "AccessibilityRenderObject.h"
#include "AccessibilityScrollView.h"
#include "AccessibilityTable.h"
#include "Chrome.h"
#include "ChromeClient.h"
#include "DOMTokenList.h"
#include "Editing.h"
#include "Editor.h"
#include "ElementIterator.h"
#include "Event.h"
#include "EventDispatcher.h"
#include "EventHandler.h"
#include "EventNames.h"
#include "FloatRect.h"
#include "FocusController.h"
#include "Frame.h"
#include "FrameLoader.h"
#include "FrameSelection.h"
#include "HTMLDetailsElement.h"
#include "HTMLFormControlElement.h"
#include "HTMLInputElement.h"
#include "HTMLMediaElement.h"
#include "HTMLNames.h"
#include "HTMLParserIdioms.h"
#include "HTMLTextAreaElement.h"
#include "HitTestResult.h"
#include "LocalizedStrings.h"
#include "MathMLNames.h"
#include "NodeList.h"
#include "NodeTraversal.h"
#include "Page.h"
#include "RenderImage.h"
#include "RenderLayer.h"
#include "RenderListItem.h"
#include "RenderListMarker.h"
#include "RenderMenuList.h"
#include "RenderText.h"
#include "RenderTextControl.h"
#include "RenderTheme.h"
#include "RenderView.h"
#include "RenderWidget.h"
#include "RenderedPosition.h"
#include "RuntimeEnabledFeatures.h"
#include "Settings.h"
#include "TextCheckerClient.h"
#include "TextCheckingHelper.h"
#include "TextIterator.h"
#include "UserGestureIndicator.h"
#include "VisibleUnits.h"
#include <wtf/NeverDestroyed.h>
#include <wtf/StdLibExtras.h>
#include <wtf/text/StringBuilder.h>
#include <wtf/text/StringView.h>
#include <wtf/text/WTFString.h>
#include <wtf/unicode/CharacterNames.h>
namespace WebCore {
using namespace HTMLNames;
AccessibilityObject::~AccessibilityObject()
{
ASSERT(isDetached());
}
void AccessibilityObject::detach(AccessibilityDetachmentType detachmentType, AXObjectCache* cache)
{
// Menu close events need to notify the platform. No element is used in the notification because it's a destruction event.
if (detachmentType == AccessibilityDetachmentType::ElementDestroyed && roleValue() == AccessibilityRole::Menu && cache)
cache->postNotification(nullptr, &cache->document(), AXObjectCache::AXMenuClosed);
// Clear any children and call detachFromParent on them so that
// no children are left with dangling pointers to their parent.
clearChildren();
#if HAVE(ACCESSIBILITY)
setWrapper(nullptr);
#endif
}
bool AccessibilityObject::isDetached() const
{
#if HAVE(ACCESSIBILITY)
return !wrapper();
#else
return true;
#endif
}
bool AccessibilityObject::isAccessibilityObjectSearchMatchAtIndex(AccessibilityObject* axObject, AccessibilitySearchCriteria* criteria, size_t index)
{
switch (criteria->searchKeys[index]) {
// The AccessibilitySearchKey::AnyType matches any non-null AccessibilityObject.
case AccessibilitySearchKey::AnyType:
return true;
case AccessibilitySearchKey::Article:
return axObject->roleValue() == AccessibilityRole::DocumentArticle;
case AccessibilitySearchKey::BlockquoteSameLevel:
return criteria->startObject
&& axObject->isBlockquote()
&& axObject->blockquoteLevel() == criteria->startObject->blockquoteLevel();
case AccessibilitySearchKey::Blockquote:
return axObject->isBlockquote();
case AccessibilitySearchKey::BoldFont:
return axObject->hasBoldFont();
case AccessibilitySearchKey::Button:
return axObject->isButton();
case AccessibilitySearchKey::CheckBox:
return axObject->isCheckbox();
case AccessibilitySearchKey::Control:
return axObject->isControl();
case AccessibilitySearchKey::DifferentType:
return criteria->startObject
&& axObject->roleValue() != criteria->startObject->roleValue();
case AccessibilitySearchKey::FontChange:
return criteria->startObject
&& !axObject->hasSameFont(criteria->startObject->renderer());
case AccessibilitySearchKey::FontColorChange:
return criteria->startObject
&& !axObject->hasSameFontColor(criteria->startObject->renderer());
case AccessibilitySearchKey::Frame:
return axObject->isWebArea();
case AccessibilitySearchKey::Graphic:
return axObject->isImage();
case AccessibilitySearchKey::HeadingLevel1:
return axObject->headingLevel() == 1;
case AccessibilitySearchKey::HeadingLevel2:
return axObject->headingLevel() == 2;
case AccessibilitySearchKey::HeadingLevel3:
return axObject->headingLevel() == 3;
case AccessibilitySearchKey::HeadingLevel4:
return axObject->headingLevel() == 4;
case AccessibilitySearchKey::HeadingLevel5:
return axObject->headingLevel() == 5;
case AccessibilitySearchKey::HeadingLevel6:
return axObject->headingLevel() == 6;
case AccessibilitySearchKey::HeadingSameLevel:
return criteria->startObject
&& axObject->isHeading()
&& axObject->headingLevel() == criteria->startObject->headingLevel();
case AccessibilitySearchKey::Heading:
return axObject->isHeading();
case AccessibilitySearchKey::Highlighted:
return axObject->hasHighlighting();
case AccessibilitySearchKey::KeyboardFocusable:
return axObject->isKeyboardFocusable();
case AccessibilitySearchKey::ItalicFont:
return axObject->hasItalicFont();
case AccessibilitySearchKey::Landmark:
return axObject->isLandmark();
case AccessibilitySearchKey::Link: {
bool isLink = axObject->isLink();
#if PLATFORM(IOS_FAMILY)
if (!isLink)
isLink = axObject->isDescendantOfRole(AccessibilityRole::WebCoreLink);
#endif
return isLink;
}
case AccessibilitySearchKey::List:
return axObject->isList();
case AccessibilitySearchKey::LiveRegion:
return axObject->supportsLiveRegion();
case AccessibilitySearchKey::MisspelledWord:
return axObject->hasMisspelling();
case AccessibilitySearchKey::Outline:
return axObject->isTree();
case AccessibilitySearchKey::PlainText:
return axObject->hasPlainText();
case AccessibilitySearchKey::RadioGroup:
return axObject->isRadioGroup();
case AccessibilitySearchKey::SameType:
return criteria->startObject
&& axObject->roleValue() == criteria->startObject->roleValue();
case AccessibilitySearchKey::StaticText:
return axObject->isStaticText();
case AccessibilitySearchKey::StyleChange:
return criteria->startObject
&& !axObject->hasSameStyle(criteria->startObject->renderer());
case AccessibilitySearchKey::TableSameLevel:
return criteria->startObject
&& is<AccessibilityTable>(*axObject) && downcast<AccessibilityTable>(*axObject).isExposableThroughAccessibility()
&& downcast<AccessibilityTable>(*axObject).tableLevel() == criteria->startObject->tableLevel();
case AccessibilitySearchKey::Table:
return is<AccessibilityTable>(*axObject) && downcast<AccessibilityTable>(*axObject).isExposableThroughAccessibility();
case AccessibilitySearchKey::TextField:
return axObject->isTextControl();
case AccessibilitySearchKey::Underline:
return axObject->hasUnderline();
case AccessibilitySearchKey::UnvisitedLink:
return axObject->isUnvisited();
case AccessibilitySearchKey::VisitedLink:
return axObject->isVisited();
default:
return false;
}
}
bool AccessibilityObject::isAccessibilityObjectSearchMatch(AccessibilityObject* axObject, AccessibilitySearchCriteria* criteria)
{
if (!axObject || !criteria)
return false;
size_t length = criteria->searchKeys.size();
for (size_t i = 0; i < length; ++i) {
if (isAccessibilityObjectSearchMatchAtIndex(axObject, criteria, i)) {
if (criteria->visibleOnly && !axObject->isOnscreen())
return false;
return true;
}
}
return false;
}
bool AccessibilityObject::isAccessibilityTextSearchMatch(AccessibilityObject* axObject, AccessibilitySearchCriteria* criteria)
{
if (!axObject || !criteria)
return false;
return axObject->accessibilityObjectContainsText(&criteria->searchText);
}
bool AccessibilityObject::accessibilityObjectContainsText(String* text) const
{
// If text is null or empty we return true.
return !text
|| text->isEmpty()
|| findPlainText(title(), *text, CaseInsensitive)
|| findPlainText(accessibilityDescription(), *text, CaseInsensitive)
|| findPlainText(stringValue(), *text, CaseInsensitive);
}
// ARIA marks elements as having their accessible name derive from either their contents, or their author provide name.
bool AccessibilityObject::accessibleNameDerivesFromContent() const
{
// First check for objects specifically identified by ARIA.
switch (ariaRoleAttribute()) {
case AccessibilityRole::ApplicationAlert:
case AccessibilityRole::ApplicationAlertDialog:
case AccessibilityRole::ApplicationDialog:
case AccessibilityRole::ApplicationGroup:
case AccessibilityRole::ApplicationLog:
case AccessibilityRole::ApplicationMarquee:
case AccessibilityRole::ApplicationStatus:
case AccessibilityRole::ApplicationTimer:
case AccessibilityRole::ComboBox:
case AccessibilityRole::Definition:
case AccessibilityRole::Document:
case AccessibilityRole::DocumentArticle:
case AccessibilityRole::DocumentMath:
case AccessibilityRole::DocumentNote:
case AccessibilityRole::LandmarkRegion:
case AccessibilityRole::LandmarkDocRegion:
case AccessibilityRole::Form:
case AccessibilityRole::Grid:
case AccessibilityRole::Group:
case AccessibilityRole::Image:
case AccessibilityRole::List:
case AccessibilityRole::ListBox:
case AccessibilityRole::LandmarkBanner:
case AccessibilityRole::LandmarkComplementary:
case AccessibilityRole::LandmarkContentInfo:
case AccessibilityRole::LandmarkNavigation:
case AccessibilityRole::LandmarkMain:
case AccessibilityRole::LandmarkSearch:
case AccessibilityRole::Menu:
case AccessibilityRole::MenuBar:
case AccessibilityRole::ProgressIndicator:
case AccessibilityRole::Meter:
case AccessibilityRole::RadioGroup:
case AccessibilityRole::ScrollBar:
case AccessibilityRole::Slider:
case AccessibilityRole::SpinButton:
case AccessibilityRole::Splitter:
case AccessibilityRole::Table:
case AccessibilityRole::TabList:
case AccessibilityRole::TabPanel:
case AccessibilityRole::TextArea:
case AccessibilityRole::TextField:
case AccessibilityRole::Toolbar:
case AccessibilityRole::TreeGrid:
case AccessibilityRole::Tree:
case AccessibilityRole::WebApplication:
return false;
default:
break;
}
// Now check for generically derived elements now that we know the element does not match a specific ARIA role.
switch (roleValue()) {
case AccessibilityRole::Slider:
case AccessibilityRole::ListBox:
return false;
default:
break;
}
return true;
}
String AccessibilityObject::computedLabel()
{
// This method is being called by WebKit inspector, which may happen at any time, so we need to update our backing store now.
// Also hold onto this object in case updateBackingStore deletes this node.
RefPtr<AccessibilityObject> protectedThis(this);
updateBackingStore();
Vector<AccessibilityText> text;
accessibilityText(text);
if (text.size())
return text[0].text;
return String();
}
bool AccessibilityObject::isBlockquote() const
{
return roleValue() == AccessibilityRole::Blockquote;
}
bool AccessibilityObject::isTextControl() const
{
switch (roleValue()) {
case AccessibilityRole::ComboBox:
case AccessibilityRole::SearchField:
case AccessibilityRole::TextArea:
case AccessibilityRole::TextField:
return true;
default:
return false;
}
}
bool AccessibilityObject::isARIATextControl() const
{
return ariaRoleAttribute() == AccessibilityRole::TextArea || ariaRoleAttribute() == AccessibilityRole::TextField || ariaRoleAttribute() == AccessibilityRole::SearchField;
}
bool AccessibilityObject::isNonNativeTextControl() const
{
return (isARIATextControl() || hasContentEditableAttributeSet()) && !isNativeTextControl();
}
bool AccessibilityObject::isLandmark() const
{
switch (roleValue()) {
case AccessibilityRole::LandmarkBanner:
case AccessibilityRole::LandmarkComplementary:
case AccessibilityRole::LandmarkContentInfo:
case AccessibilityRole::LandmarkDocRegion:
case AccessibilityRole::LandmarkMain:
case AccessibilityRole::LandmarkNavigation:
case AccessibilityRole::LandmarkRegion:
case AccessibilityRole::LandmarkSearch:
return true;
default:
return false;
}
}
bool AccessibilityObject::hasMisspelling() const
{
if (!node())
return false;
Frame* frame = node()->document().frame();
if (!frame)
return false;
Editor& editor = frame->editor();
TextCheckerClient* textChecker = editor.textChecker();
if (!textChecker)
return false;
bool isMisspelled = false;
if (unifiedTextCheckerEnabled(frame)) {
Vector<TextCheckingResult> results;
checkTextOfParagraph(*textChecker, stringValue(), TextCheckingType::Spelling, results, frame->selection().selection());
if (!results.isEmpty())
isMisspelled = true;
return isMisspelled;
}
int misspellingLength = 0;
int misspellingLocation = -1;
textChecker->checkSpellingOfString(stringValue(), &misspellingLocation, &misspellingLength);
if (misspellingLength || misspellingLocation != -1)
isMisspelled = true;
return isMisspelled;
}
unsigned AccessibilityObject::blockquoteLevel() const
{
unsigned level = 0;
for (Node* elementNode = node(); elementNode; elementNode = elementNode->parentNode()) {
if (elementNode->hasTagName(blockquoteTag))
++level;
}
return level;
}
AccessibilityObject* AccessibilityObject::parentObjectUnignored() const
{
return const_cast<AccessibilityObject*>(AccessibilityObject::matchedParent(*this, false, [] (const AccessibilityObject& object) {
return !object.accessibilityIsIgnored();
}));
}
AccessibilityObject* AccessibilityObject::previousSiblingUnignored(int limit) const
{
AccessibilityObject* previous;
ASSERT(limit >= 0);
for (previous = previousSibling(); previous && previous->accessibilityIsIgnored(); previous = previous->previousSibling()) {
limit--;
if (limit <= 0)
break;
}
return previous;
}
FloatRect AccessibilityObject::convertFrameToSpace(const FloatRect& frameRect, AccessibilityConversionSpace conversionSpace) const
{
ASSERT(isMainThread());
// Find the appropriate scroll view to use to convert the contents to the window.
const auto parentAccessibilityScrollView = ancestorAccessibilityScrollView(false /* includeSelf */);
auto* parentScrollView = parentAccessibilityScrollView ? parentAccessibilityScrollView->scrollView() : nullptr;
auto snappedFrameRect = snappedIntRect(IntRect(frameRect));
if (parentScrollView)
snappedFrameRect = parentScrollView->contentsToRootView(snappedFrameRect);
if (conversionSpace == AccessibilityConversionSpace::Screen) {
auto page = this->page();
if (!page)
return snappedFrameRect;
// If we have an empty chrome client (like SVG) then we should use the page
// of the scroll view parent to help us get to the screen rect.
if (parentAccessibilityScrollView && page->chrome().client().isEmptyChromeClient())
page = parentAccessibilityScrollView->page();
snappedFrameRect = page->chrome().rootViewToAccessibilityScreen(snappedFrameRect);
}
return snappedFrameRect;
}
FloatRect AccessibilityObject::relativeFrame() const
{
return convertFrameToSpace(elementRect(), AccessibilityConversionSpace::Page);
}
AccessibilityObject* AccessibilityObject::nextSiblingUnignored(int limit) const
{
AccessibilityObject* next;
ASSERT(limit >= 0);
for (next = nextSibling(); next && next->accessibilityIsIgnored(); next = next->nextSibling()) {
limit--;
if (limit <= 0)
break;
}
return next;
}
AccessibilityObject* AccessibilityObject::firstAccessibleObjectFromNode(const Node* node)
{
if (!node)
return nullptr;
AXObjectCache* cache = node->document().axObjectCache();
if (!cache)
return nullptr;
AccessibilityObject* accessibleObject = cache->getOrCreate(node->renderer());
while (accessibleObject && accessibleObject->accessibilityIsIgnored()) {
node = NodeTraversal::next(*node);
while (node && !node->renderer())
node = NodeTraversal::nextSkippingChildren(*node);
if (!node)
return nullptr;
accessibleObject = cache->getOrCreate(node->renderer());
}
return accessibleObject;
}
bool AccessibilityObject::isDescendantOfRole(AccessibilityRole role) const
{
return AccessibilityObject::matchedParent(*this, false, [&role] (const AccessibilityObject& object) {
return object.roleValue() == role;
}) != nullptr;
}
static void appendAccessibilityObject(AccessibilityObject* object, AccessibilityObject::AccessibilityChildrenVector& results)
{
// Find the next descendant of this attachment object so search can continue through frames.
if (object->isAttachment()) {
Widget* widget = object->widgetForAttachmentView();
if (!is<FrameView>(widget))
return;
Document* document = downcast<FrameView>(*widget).frame().document();
if (!document || !document->hasLivingRenderTree())
return;
object = object->axObjectCache()->getOrCreate(document);
}
if (object)
results.append(object);
}
void AccessibilityObject::insertChild(AccessibilityObject* child, unsigned index)
{
if (!child)
return;
// If the parent is asking for this child's children, then either it's the first time (and clearing is a no-op),
// or its visibility has changed. In the latter case, this child may have a stale child cached.
// This can prevent aria-hidden changes from working correctly. Hence, whenever a parent is getting children, ensure data is not stale.
// Only clear the child's children when we know it's in the updating chain in order to avoid unnecessary work.
if (child->needsToUpdateChildren() || m_subtreeDirty) {
child->clearChildren();
// Pass m_subtreeDirty flag down to the child so that children cache gets reset properly.
if (m_subtreeDirty)
child->setNeedsToUpdateSubtree();
} else {
// For some reason the grand children might be detached so that we need to regenerate the
// children list of this child.
for (const auto& grandChild : child->children(false)) {
if (grandChild->isDetachedFromParent()) {
child->clearChildren();
break;
}
}
}
setIsIgnoredFromParentDataForChild(child);
if (child->accessibilityIsIgnored()) {
const auto& children = child->children();
size_t length = children.size();
for (size_t i = 0; i < length; ++i)
m_children.insert(index + i, children[i]);
} else {
ASSERT(child->parentObject() == this);
m_children.insert(index, child);
}
// Reset the child's m_isIgnoredFromParentData since we are done adding that child and its children.
child->clearIsIgnoredFromParentData();
}
void AccessibilityObject::addChild(AccessibilityObject* child)
{
insertChild(child, m_children.size());
}
static void appendChildrenToArray(AccessibilityObject* object, bool isForward, AccessibilityObject* startObject, AccessibilityObject::AccessibilityChildrenVector& results)
{
// A table's children includes elements whose own children are also the table's children (due to the way the Mac exposes tables).
// The rows from the table should be queried, since those are direct descendants of the table, and they contain content.
const auto& searchChildren = is<AccessibilityTable>(*object) && downcast<AccessibilityTable>(*object).isExposableThroughAccessibility() ? downcast<AccessibilityTable>(*object).rows() : object->children();
size_t childrenSize = searchChildren.size();
size_t startIndex = isForward ? childrenSize : 0;
size_t endIndex = isForward ? 0 : childrenSize;
// If the startObject is ignored, we should use an accessible sibling as a start element instead.
if (startObject && startObject->accessibilityIsIgnored() && startObject->isDescendantOfObject(object)) {
AccessibilityObject* parentObject = startObject->parentObject();
// Go up the parent chain to find the highest ancestor that's also being ignored.
while (parentObject && parentObject->accessibilityIsIgnored()) {
if (parentObject == object)
break;
startObject = parentObject;
parentObject = parentObject->parentObject();
}
// Get the un-ignored sibling based on the search direction, and update the searchPosition.
while (startObject && startObject->accessibilityIsIgnored())
startObject = isForward ? startObject->previousSibling() : startObject->nextSibling();
}
size_t searchPosition = startObject ? searchChildren.find(startObject) : WTF::notFound;
if (searchPosition != WTF::notFound) {
if (isForward)
endIndex = searchPosition + 1;
else
endIndex = searchPosition;
}
// This is broken into two statements so that it's easier read.
if (isForward) {
for (size_t i = startIndex; i > endIndex; i--)
appendAccessibilityObject(searchChildren.at(i - 1).get(), results);
} else {
for (size_t i = startIndex; i < endIndex; i++)
appendAccessibilityObject(searchChildren.at(i).get(), results);
}
}
// Returns true if the number of results is now >= the number of results desired.
bool AccessibilityObject::objectMatchesSearchCriteriaWithResultLimit(AccessibilityObject* object, AccessibilitySearchCriteria* criteria, AccessibilityChildrenVector& results)
{
if (isAccessibilityObjectSearchMatch(object, criteria) && isAccessibilityTextSearchMatch(object, criteria)) {
results.append(object);
// Enough results were found to stop searching.
if (results.size() >= criteria->resultsLimit)
return true;
}
return false;
}
void AccessibilityObject::findMatchingObjects(AccessibilitySearchCriteria* criteria, AccessibilityChildrenVector& results)
{
ASSERT(criteria);
if (!criteria)
return;
if (AXObjectCache* cache = axObjectCache())
cache->startCachingComputedObjectAttributesUntilTreeMutates();
// This search mechanism only searches the elements before/after the starting object.
// It does this by stepping up the parent chain and at each level doing a DFS.
// If there's no start object, it means we want to search everything.
AccessibilityObject* startObject = criteria->startObject;
if (!startObject)
startObject = this;
bool isForward = criteria->searchDirection == AccessibilitySearchDirection::Next;
// The first iteration of the outer loop will examine the children of the start object for matches. However, when
// iterating backwards, the start object children should not be considered, so the loop is skipped ahead. We make an
// exception when no start object was specified because we want to search everything regardless of search direction.
AccessibilityObject* previousObject = nullptr;
if (!isForward && startObject != this) {
previousObject = startObject;
startObject = startObject->parentObjectUnignored();
}
// The outer loop steps up the parent chain each time (unignored is important here because otherwise elements would be searched twice)
for (AccessibilityObject* stopSearchElement = parentObjectUnignored(); startObject && startObject != stopSearchElement; startObject = startObject->parentObjectUnignored()) {
// Only append the children after/before the previous element, so that the search does not check elements that are
// already behind/ahead of start element.
AccessibilityChildrenVector searchStack;
if (!criteria->immediateDescendantsOnly || startObject == this)
appendChildrenToArray(startObject, isForward, previousObject, searchStack);
// This now does a DFS at the current level of the parent.
while (!searchStack.isEmpty()) {
AccessibilityObject* searchObject = searchStack.last().get();
searchStack.removeLast();
if (objectMatchesSearchCriteriaWithResultLimit(searchObject, criteria, results))
break;
if (!criteria->immediateDescendantsOnly)
appendChildrenToArray(searchObject, isForward, 0, searchStack);
}
if (results.size() >= criteria->resultsLimit)
break;
// When moving backwards, the parent object needs to be checked, because technically it's "before" the starting element.
if (!isForward && startObject != this && objectMatchesSearchCriteriaWithResultLimit(startObject, criteria, results))
break;
previousObject = startObject;
}
}
// Returns the range that is fewer positions away from the reference range.
// NOTE: The after range is expected to ACTUALLY be after the reference range and the before
// range is expected to ACTUALLY be before. These are not checked for performance reasons.
static RefPtr<Range> rangeClosestToRange(RefPtr<Range> const& referenceRange, RefPtr<Range>&& afterRange, RefPtr<Range>&& beforeRange)
{
if (!referenceRange)
return nullptr;
// The treeScope for shadow nodes may not be the same scope as another element in a document.
// Comparisons may fail in that case, which are expected behavior and should not assert.
if (afterRange && (referenceRange->endPosition().isNull() || ((afterRange->startPosition().anchorNode()->compareDocumentPosition(*referenceRange->endPosition().anchorNode()) & Node::DOCUMENT_POSITION_DISCONNECTED) == Node::DOCUMENT_POSITION_DISCONNECTED)))
return nullptr;
ASSERT(!afterRange || afterRange->compareBoundaryPoints(Range::START_TO_START, *referenceRange).releaseReturnValue() >= 0);
if (beforeRange && (referenceRange->startPosition().isNull() || ((beforeRange->endPosition().anchorNode()->compareDocumentPosition(*referenceRange->startPosition().anchorNode()) & Node::DOCUMENT_POSITION_DISCONNECTED) == Node::DOCUMENT_POSITION_DISCONNECTED)))
return nullptr;
ASSERT(!beforeRange || beforeRange->compareBoundaryPoints(Range::START_TO_START, *referenceRange).releaseReturnValue() <= 0);
if (!afterRange && !beforeRange)
return nullptr;
if (afterRange && !beforeRange)
return WTFMove(afterRange);
if (!afterRange && beforeRange)
return WTFMove(beforeRange);
unsigned positionsToAfterRange = Position::positionCountBetweenPositions(afterRange->startPosition(), referenceRange->endPosition());
unsigned positionsToBeforeRange = Position::positionCountBetweenPositions(beforeRange->endPosition(), referenceRange->startPosition());
return positionsToAfterRange < positionsToBeforeRange ? afterRange : beforeRange;
}
RefPtr<Range> AccessibilityObject::rangeOfStringClosestToRangeInDirection(Range* referenceRange, AccessibilitySearchDirection searchDirection, Vector<String> const& searchStrings) const
{
Frame* frame = this->frame();
if (!frame)
return nullptr;
if (!referenceRange)
return nullptr;
bool isBackwardSearch = searchDirection == AccessibilitySearchDirection::Previous;
FindOptions findOptions { AtWordStarts, AtWordEnds, CaseInsensitive, StartInSelection };
if (isBackwardSearch)
findOptions.add(FindOptionFlag::Backwards);
RefPtr<Range> closestStringRange = nullptr;
for (const auto& searchString : searchStrings) {
if (RefPtr<Range> searchStringRange = frame->editor().rangeOfString(searchString, referenceRange, findOptions)) {
if (!closestStringRange)
closestStringRange = searchStringRange;
else {
// If searching backward, use the trailing range edges to correctly determine which
// range is closest. Similarly, if searching forward, use the leading range edges.
Position closestStringPosition = isBackwardSearch ? closestStringRange->endPosition() : closestStringRange->startPosition();
Position searchStringPosition = isBackwardSearch ? searchStringRange->endPosition() : searchStringRange->startPosition();
int closestPositionOffset = closestStringPosition.computeOffsetInContainerNode();
int searchPositionOffset = searchStringPosition.computeOffsetInContainerNode();
Node* closestContainerNode = closestStringPosition.containerNode();
Node* searchContainerNode = searchStringPosition.containerNode();
short result = Range::compareBoundaryPoints(closestContainerNode, closestPositionOffset, searchContainerNode, searchPositionOffset).releaseReturnValue();
if ((!isBackwardSearch && result > 0) || (isBackwardSearch && result < 0))
closestStringRange = searchStringRange;
}
}
}
return closestStringRange;
}
// Returns the range of the entire document if there is no selection.
RefPtr<Range> AccessibilityObject::selectionRange() const
{
Frame* frame = this->frame();
if (!frame)
return nullptr;
const VisibleSelection& selection = frame->selection().selection();
if (!selection.isNone())
return selection.firstRange();
return Range::create(*frame->document());
}
RefPtr<Range> AccessibilityObject::elementRange() const
{
return AXObjectCache::rangeForNodeContents(node());
}
RefPtr<Range> AccessibilityObject::findTextRange(Vector<String> const& searchStrings, RefPtr<Range> const& start, AccessibilitySearchTextDirection direction) const
{
RefPtr<Range> found;
if (direction == AccessibilitySearchTextDirection::Forward)
found = rangeOfStringClosestToRangeInDirection(start.get(), AccessibilitySearchDirection::Next, searchStrings);
else if (direction == AccessibilitySearchTextDirection::Backward)
found = rangeOfStringClosestToRangeInDirection(start.get(), AccessibilitySearchDirection::Previous, searchStrings);
else if (direction == AccessibilitySearchTextDirection::Closest) {
auto foundAfter = rangeOfStringClosestToRangeInDirection(start.get(), AccessibilitySearchDirection::Next, searchStrings);
auto foundBefore = rangeOfStringClosestToRangeInDirection(start.get(), AccessibilitySearchDirection::Previous, searchStrings);
found = rangeClosestToRange(start.get(), WTFMove(foundAfter), WTFMove(foundBefore));
}
if (found) {
// If the search started within a text control, ensure that the result is inside that element.
if (element() && element()->isTextField()) {
if (!found->startContainer().isDescendantOrShadowDescendantOf(element())
|| !found->endContainer().isDescendantOrShadowDescendantOf(element()))
return nullptr;
}
}
return found;
}
Vector<RefPtr<Range>> AccessibilityObject::findTextRanges(AccessibilitySearchTextCriteria const& criteria) const
{
Vector<RefPtr<Range>> result;
// Determine start range.
RefPtr<Range> startRange;
if (criteria.start == AccessibilitySearchTextStartFrom::Selection)
startRange = selectionRange();
else
startRange = elementRange();
if (startRange) {
// Collapse the range to the start unless searching from the end of the doc or searching backwards.
if (criteria.start == AccessibilitySearchTextStartFrom::Begin)
startRange->collapse(true);
else if (criteria.start == AccessibilitySearchTextStartFrom::End)
startRange->collapse(false);
else
startRange->collapse(criteria.direction != AccessibilitySearchTextDirection::Backward);
} else
return result;
RefPtr<Range> found;
switch (criteria.direction) {
case AccessibilitySearchTextDirection::Forward:
case AccessibilitySearchTextDirection::Backward:
case AccessibilitySearchTextDirection::Closest:
found = findTextRange(criteria.searchStrings, startRange, criteria.direction);
if (found)
result.append(found);
break;
case AccessibilitySearchTextDirection::All: {
auto findAll = [&](AccessibilitySearchTextDirection dir) {
found = findTextRange(criteria.searchStrings, startRange, dir);
while (found) {
result.append(found);
found = findTextRange(criteria.searchStrings, found, dir);
}
};
findAll(AccessibilitySearchTextDirection::Forward);
findAll(AccessibilitySearchTextDirection::Backward);
break;
}
}
return result;
}
Vector<String> AccessibilityObject::performTextOperation(AccessibilityTextOperation const& operation)
{
Vector<String> result;
if (operation.textRanges.isEmpty())
return result;
Frame* frame = this->frame();
if (!frame)
return result;
for (auto textRange : operation.textRanges) {
if (!frame->selection().setSelectedRange(textRange.get(), DOWNSTREAM, FrameSelection::ShouldCloseTyping::Yes))
continue;
String text = textRange->text();
String replacementString = operation.replacementText;
bool replaceSelection = false;
switch (operation.type) {
case AccessibilityTextOperationType::Capitalize:
replacementString = capitalize(text, ' '); // FIXME: Needs to take locale into account to work correctly.
replaceSelection = true;
break;
case AccessibilityTextOperationType::Uppercase:
replacementString = text.convertToUppercaseWithoutLocale(); // FIXME: Needs locale to work correctly.
replaceSelection = true;
break;
case AccessibilityTextOperationType::Lowercase:
replacementString = text.convertToLowercaseWithoutLocale(); // FIXME: Needs locale to work correctly.
replaceSelection = true;
break;
case AccessibilityTextOperationType::Replace: {
replaceSelection = true;
// When applying find and replace activities, we want to match the capitalization of the replaced text,
// (unless we're replacing with an abbreviation.)
if (text.length() > 0
&& replacementString.length() > 2
&& replacementString != replacementString.convertToUppercaseWithoutLocale()) {
if (text[0] == u_toupper(text[0]))
replacementString = capitalize(replacementString, ' '); // FIXME: Needs to take locale into account to work correctly.
else
replacementString = replacementString.convertToLowercaseWithoutLocale(); // FIXME: Needs locale to work correctly.
}
break;
}
case AccessibilityTextOperationType::Select:
break;
}
// A bit obvious, but worth noting the API contract for this method is that we should
// return the replacement string when replacing, but the selected string if not.
if (replaceSelection) {
frame->editor().replaceSelectionWithText(replacementString, Editor::SelectReplacement::Yes, Editor::SmartReplace::Yes);
result.append(replacementString);
} else
result.append(text);
}
return result;
}
bool AccessibilityObject::hasAttributesRequiredForInclusion() const
{
// These checks are simplified in the interest of execution speed.
if (!getAttribute(aria_helpAttr).isEmpty()
|| !getAttribute(aria_describedbyAttr).isEmpty()
|| !getAttribute(altAttr).isEmpty()
|| !getAttribute(titleAttr).isEmpty())
return true;
#if ENABLE(MATHML)
if (!getAttribute(MathMLNames::alttextAttr).isEmpty())
return true;
#endif
return false;
}
bool AccessibilityObject::isARIAInput(AccessibilityRole ariaRole)
{
return ariaRole == AccessibilityRole::RadioButton || ariaRole == AccessibilityRole::CheckBox || ariaRole == AccessibilityRole::TextField || ariaRole == AccessibilityRole::Switch || ariaRole == AccessibilityRole::SearchField;
}
bool AccessibilityObject::isARIAControl(AccessibilityRole ariaRole)
{
return isARIAInput(ariaRole) || ariaRole == AccessibilityRole::TextArea || ariaRole == AccessibilityRole::Button || ariaRole == AccessibilityRole::ComboBox || ariaRole == AccessibilityRole::Slider || ariaRole == AccessibilityRole::ListBox;
}
bool AccessibilityObject::isRangeControl() const
{
switch (roleValue()) {
case AccessibilityRole::Meter:
case AccessibilityRole::ProgressIndicator:
case AccessibilityRole::Slider:
case AccessibilityRole::ScrollBar:
case AccessibilityRole::SpinButton:
return true;
case AccessibilityRole::Splitter:
return canSetFocusAttribute();
default:
return false;
}
}
bool AccessibilityObject::isMeter() const
{
if (ariaRoleAttribute() == AccessibilityRole::Meter)
return true;
#if ENABLE(METER_ELEMENT)
RenderObject* renderer = this->renderer();
return renderer && renderer->isMeter();
#else
return false;
#endif
}
IntPoint AccessibilityObject::clickPoint()
{
LayoutRect rect = elementRect();
return roundedIntPoint(LayoutPoint(rect.x() + rect.width() / 2, rect.y() + rect.height() / 2));
}
IntRect AccessibilityObject::boundingBoxForQuads(RenderObject* obj, const Vector<FloatQuad>& quads)
{
ASSERT(obj);
if (!obj)
return IntRect();
FloatRect result;
for (const auto& quad : quads) {
FloatRect r = quad.enclosingBoundingBox();
if (!r.isEmpty()) {
if (obj->style().hasAppearance())
obj->theme().adjustRepaintRect(*obj, r);
result.unite(r);
}
}
return snappedIntRect(LayoutRect(result));
}
bool AccessibilityObject::press()
{
// The presence of the actionElement will confirm whether we should even attempt a press.
Element* actionElem = actionElement();
if (!actionElem)
return false;
if (Frame* f = actionElem->document().frame())
f->loader().resetMultipleFormSubmissionProtection();
// Hit test at this location to determine if there is a sub-node element that should act
// as the target of the action.
Element* hitTestElement = nullptr;
Document* document = this->document();
if (document) {
HitTestRequest request(HitTestRequest::ReadOnly | HitTestRequest::Active | HitTestRequest::AccessibilityHitTest);
HitTestResult hitTestResult(clickPoint());
document->hitTest(request, hitTestResult);
if (auto* innerNode = hitTestResult.innerNode()) {
if (auto* shadowHost = innerNode->shadowHost())
hitTestElement = shadowHost;
else if (is<Element>(*innerNode))
hitTestElement = &downcast<Element>(*innerNode);
else
hitTestElement = innerNode->parentElement();
}
}
// Prefer the actionElement instead of this node, if the actionElement is inside this node.
Element* pressElement = this->element();
if (!pressElement || actionElem->isDescendantOf(*pressElement))
pressElement = actionElem;
ASSERT(pressElement);
// Prefer the hit test element, if it is inside the target element.
if (hitTestElement && hitTestElement->isDescendantOf(*pressElement))
pressElement = hitTestElement;
UserGestureIndicator gestureIndicator(ProcessingUserGesture, document);
bool dispatchedTouchEvent = false;
#if PLATFORM(IOS_FAMILY)
if (hasTouchEventListener())
dispatchedTouchEvent = dispatchTouchEvent();
#endif
if (!dispatchedTouchEvent)
pressElement->accessKeyAction(true);
return true;
}
bool AccessibilityObject::dispatchTouchEvent()
{
#if ENABLE(IOS_TOUCH_EVENTS)
if (auto* frame = mainFrame())
return frame->eventHandler().dispatchSimulatedTouchEvent(clickPoint());
#endif
return false;
}
Frame* AccessibilityObject::frame() const
{
Node* node = this->node();
return node ? node->document().frame() : nullptr;
}
Frame* AccessibilityObject::mainFrame() const
{
Document* document = topDocument();
if (!document)
return nullptr;
Frame* frame = document->frame();
if (!frame)
return nullptr;
return &frame->mainFrame();
}
Document* AccessibilityObject::topDocument() const
{
if (!document())
return nullptr;
return &document()->topDocument();
}
String AccessibilityObject::language() const
{
const AtomString& lang = getAttribute(langAttr);
if (!lang.isEmpty())
return lang;
AccessibilityObject* parent = parentObject();
// as a last resort, fall back to the content language specified in the meta tag
if (!parent) {
Document* doc = document();
if (doc)
return doc->contentLanguage();
return nullAtom();
}
return parent->language();
}
VisiblePositionRange AccessibilityObject::visiblePositionRangeForUnorderedPositions(const VisiblePosition& visiblePos1, const VisiblePosition& visiblePos2) const
{
if (visiblePos1.isNull() || visiblePos2.isNull())
return VisiblePositionRange();
// If there's no common tree scope between positions, return early.
if (!commonTreeScope(visiblePos1.deepEquivalent().deprecatedNode(), visiblePos2.deepEquivalent().deprecatedNode()))
return VisiblePositionRange();
VisiblePosition startPos;
VisiblePosition endPos;
bool alreadyInOrder;
// upstream is ordered before downstream for the same position
if (visiblePos1 == visiblePos2 && visiblePos2.affinity() == UPSTREAM)
alreadyInOrder = false;
// use selection order to see if the positions are in order
else
alreadyInOrder = VisibleSelection(visiblePos1, visiblePos2).isBaseFirst();
if (alreadyInOrder) {
startPos = visiblePos1;
endPos = visiblePos2;
} else {
startPos = visiblePos2;
endPos = visiblePos1;
}
return VisiblePositionRange(startPos, endPos);
}
VisiblePositionRange AccessibilityObject::positionOfLeftWord(const VisiblePosition& visiblePos) const
{
VisiblePosition startPosition = startOfWord(visiblePos, LeftWordIfOnBoundary);
VisiblePosition endPosition = endOfWord(startPosition);
return VisiblePositionRange(startPosition, endPosition);
}
VisiblePositionRange AccessibilityObject::positionOfRightWord(const VisiblePosition& visiblePos) const
{
VisiblePosition startPosition = startOfWord(visiblePos, RightWordIfOnBoundary);
VisiblePosition endPosition = endOfWord(startPosition);
return VisiblePositionRange(startPosition, endPosition);
}
static VisiblePosition updateAXLineStartForVisiblePosition(const VisiblePosition& visiblePosition)
{
// A line in the accessibility sense should include floating objects, such as aligned image, as part of a line.
// So let's update the position to include that.
VisiblePosition tempPosition;
VisiblePosition startPosition = visiblePosition;
while (true) {
tempPosition = startPosition.previous();
if (tempPosition.isNull())
break;
Position p = tempPosition.deepEquivalent();
RenderObject* renderer = p.deprecatedNode()->renderer();
if (!renderer || (renderer->isRenderBlock() && !p.deprecatedEditingOffset()))
break;
if (!RenderedPosition(tempPosition).isNull())
break;
startPosition = tempPosition;
}
return startPosition;
}
VisiblePositionRange AccessibilityObject::leftLineVisiblePositionRange(const VisiblePosition& visiblePos) const
{
if (visiblePos.isNull())
return VisiblePositionRange();
// make a caret selection for the position before marker position (to make sure
// we move off of a line start)
VisiblePosition prevVisiblePos = visiblePos.previous();
if (prevVisiblePos.isNull())
return VisiblePositionRange();
VisiblePosition startPosition = startOfLine(prevVisiblePos);
// keep searching for a valid line start position. Unless the VisiblePosition is at the very beginning, there should
// always be a valid line range. However, startOfLine will return null for position next to a floating object,
// since floating object doesn't really belong to any line.
// This check will reposition the marker before the floating object, to ensure we get a line start.
if (startPosition.isNull()) {
while (startPosition.isNull() && prevVisiblePos.isNotNull()) {
prevVisiblePos = prevVisiblePos.previous();
startPosition = startOfLine(prevVisiblePos);
}
} else
startPosition = updateAXLineStartForVisiblePosition(startPosition);
VisiblePosition endPosition = endOfLine(prevVisiblePos);
return VisiblePositionRange(startPosition, endPosition);
}
VisiblePositionRange AccessibilityObject::rightLineVisiblePositionRange(const VisiblePosition& visiblePos) const
{
if (visiblePos.isNull())
return VisiblePositionRange();
// make sure we move off of a line end
VisiblePosition nextVisiblePos = visiblePos.next();
if (nextVisiblePos.isNull())
return VisiblePositionRange();
VisiblePosition startPosition = startOfLine(nextVisiblePos);
// fetch for a valid line start position
if (startPosition.isNull()) {
startPosition = visiblePos;
nextVisiblePos = nextVisiblePos.next();
} else
startPosition = updateAXLineStartForVisiblePosition(startPosition);
VisiblePosition endPosition = endOfLine(nextVisiblePos);
// as long as the position hasn't reached the end of the doc, keep searching for a valid line end position
// Unless the VisiblePosition is at the very end, there should always be a valid line range. However, endOfLine will
// return null for position by a floating object, since floating object doesn't really belong to any line.
// This check will reposition the marker after the floating object, to ensure we get a line end.
while (endPosition.isNull() && nextVisiblePos.isNotNull()) {
nextVisiblePos = nextVisiblePos.next();
endPosition = endOfLine(nextVisiblePos);
}
return VisiblePositionRange(startPosition, endPosition);
}
VisiblePositionRange AccessibilityObject::sentenceForPosition(const VisiblePosition& visiblePos) const
{
// FIXME: FO 2 IMPLEMENT (currently returns incorrect answer)
// Related? <rdar://problem/3927736> Text selection broken in 8A336
VisiblePosition startPosition = startOfSentence(visiblePos);
VisiblePosition endPosition = endOfSentence(startPosition);
return VisiblePositionRange(startPosition, endPosition);
}
VisiblePositionRange AccessibilityObject::paragraphForPosition(const VisiblePosition& visiblePos) const
{
VisiblePosition startPosition = startOfParagraph(visiblePos);
VisiblePosition endPosition = endOfParagraph(startPosition);
return VisiblePositionRange(startPosition, endPosition);
}
static VisiblePosition startOfStyleRange(const VisiblePosition& visiblePos)
{
RenderObject* renderer = visiblePos.deepEquivalent().deprecatedNode()->renderer();
RenderObject* startRenderer = renderer;
auto* style = &renderer->style();
// traverse backward by renderer to look for style change
for (RenderObject* r = renderer->previousInPreOrder(); r; r = r->previousInPreOrder()) {
// skip non-leaf nodes
if (r->firstChildSlow())
continue;
// stop at style change
if (&r->style() != style)
break;
// remember match
startRenderer = r;
}
return firstPositionInOrBeforeNode(startRenderer->node());
}
static VisiblePosition endOfStyleRange(const VisiblePosition& visiblePos)
{
RenderObject* renderer = visiblePos.deepEquivalent().deprecatedNode()->renderer();
RenderObject* endRenderer = renderer;
const RenderStyle& style = renderer->style();
// traverse forward by renderer to look for style change
for (RenderObject* r = renderer->nextInPreOrder(); r; r = r->nextInPreOrder()) {
// skip non-leaf nodes
if (r->firstChildSlow())
continue;
// stop at style change
if (&r->style() != &style)
break;
// remember match
endRenderer = r;
}
return lastPositionInOrAfterNode(endRenderer->node());
}
VisiblePositionRange AccessibilityObject::styleRangeForPosition(const VisiblePosition& visiblePos) const
{
if (visiblePos.isNull())
return VisiblePositionRange();
return VisiblePositionRange(startOfStyleRange(visiblePos), endOfStyleRange(visiblePos));
}
// NOTE: Consider providing this utility method as AX API
VisiblePositionRange AccessibilityObject::visiblePositionRangeForRange(const PlainTextRange& range) const
{
unsigned textLength = getLengthForTextRange();
if (range.start + range.length > textLength)
return VisiblePositionRange();
VisiblePosition startPosition = visiblePositionForIndex(range.start);
startPosition.setAffinity(DOWNSTREAM);
VisiblePosition endPosition = visiblePositionForIndex(range.start + range.length);
return VisiblePositionRange(startPosition, endPosition);
}
RefPtr<Range> AccessibilityObject::rangeForPlainTextRange(const PlainTextRange& range) const
{
unsigned textLength = getLengthForTextRange();
if (range.start + range.length > textLength)
return nullptr;
if (AXObjectCache* cache = axObjectCache()) {
CharacterOffset start = cache->characterOffsetForIndex(range.start, this);
CharacterOffset end = cache->characterOffsetForIndex(range.start + range.length, this);
return cache->rangeForUnorderedCharacterOffsets(start, end);
}
return nullptr;
}
VisiblePositionRange AccessibilityObject::lineRangeForPosition(const VisiblePosition& visiblePosition) const
{
VisiblePosition startPosition = startOfLine(visiblePosition);
VisiblePosition endPosition = endOfLine(visiblePosition);
return VisiblePositionRange(startPosition, endPosition);
}
bool AccessibilityObject::replacedNodeNeedsCharacter(Node* replacedNode)
{
// we should always be given a rendered node and a replaced node, but be safe
// replaced nodes are either attachments (widgets) or images
if (!replacedNode || !isRendererReplacedElement(replacedNode->renderer()) || replacedNode->isTextNode())
return false;
// create an AX object, but skip it if it is not supposed to be seen
AccessibilityObject* object = replacedNode->renderer()->document().axObjectCache()->getOrCreate(replacedNode);
if (object->accessibilityIsIgnored())
return false;
return true;
}
// Finds a RenderListItem parent give a node.
static RenderListItem* renderListItemContainerForNode(Node* node)
{
for (; node; node = node->parentNode()) {
RenderBoxModelObject* renderer = node->renderBoxModelObject();
if (is<RenderListItem>(renderer))
return downcast<RenderListItem>(renderer);
}
return nullptr;
}
static String listMarkerTextForNode(Node* node)
{
RenderListItem* listItem = renderListItemContainerForNode(node);
if (!listItem)
return String();
// If this is in a list item, we need to manually add the text for the list marker
// because a RenderListMarker does not have a Node equivalent and thus does not appear
// when iterating text.
return listItem->markerTextWithSuffix();
}
// Returns the text associated with a list marker if this node is contained within a list item.
String AccessibilityObject::listMarkerTextForNodeAndPosition(Node* node, const VisiblePosition& visiblePositionStart)
{
// If the range does not contain the start of the line, the list marker text should not be included.
if (!isStartOfLine(visiblePositionStart))
return String();
// We should speak the list marker only for the first line.
RenderListItem* listItem = renderListItemContainerForNode(node);
if (!listItem)
return String();
if (!inSameLine(visiblePositionStart, firstPositionInNode(&listItem->element())))
return String();
return listMarkerTextForNode(node);
}
String AccessibilityObject::stringForRange(RefPtr<Range> range) const
{
if (!range)
return String();
TextIterator it(range.get());
if (it.atEnd())
return String();
StringBuilder builder;
for (; !it.atEnd(); it.advance()) {
// non-zero length means textual node, zero length means replaced node (AKA "attachments" in AX)
if (it.text().length()) {
// Add a textual representation for list marker text.
// Don't add list marker text for new line character.
if (it.text().length() != 1 || !isSpaceOrNewline(it.text()[0]))
builder.append(listMarkerTextForNodeAndPosition(it.node(), VisiblePosition(range->startPosition())));
it.appendTextToStringBuilder(builder);
} else {
// locate the node and starting offset for this replaced range
Node& node = it.range()->startContainer();
ASSERT(&node == &it.range()->endContainer());
int offset = it.range()->startOffset();
if (replacedNodeNeedsCharacter(node.traverseToChildAt(offset)))
builder.append(objectReplacementCharacter);
}
}
return builder.toString();
}
String AccessibilityObject::stringForVisiblePositionRange(const VisiblePositionRange& visiblePositionRange)
{
if (visiblePositionRange.isNull())
return String();
StringBuilder builder;
RefPtr<Range> range = makeRange(visiblePositionRange.start, visiblePositionRange.end);
for (TextIterator it(range.get()); !it.atEnd(); it.advance()) {
// non-zero length means textual node, zero length means replaced node (AKA "attachments" in AX)
if (it.text().length()) {
// Add a textual representation for list marker text.
builder.append(listMarkerTextForNodeAndPosition(it.node(), visiblePositionRange.start));
it.appendTextToStringBuilder(builder);
} else {
// locate the node and starting offset for this replaced range
Node& node = it.range()->startContainer();
ASSERT(&node == &it.range()->endContainer());
int offset = it.range()->startOffset();
if (replacedNodeNeedsCharacter(node.traverseToChildAt(offset)))
builder.append(objectReplacementCharacter);
}
}
return builder.toString();
}
int AccessibilityObject::lengthForVisiblePositionRange(const VisiblePositionRange& visiblePositionRange) const
{
// FIXME: Multi-byte support
if (visiblePositionRange.isNull())
return -1;
int length = 0;
RefPtr<Range> range = makeRange(visiblePositionRange.start, visiblePositionRange.end);
for (TextIterator it(range.get()); !it.atEnd(); it.advance()) {
// non-zero length means textual node, zero length means replaced node (AKA "attachments" in AX)
if (it.text().length())
length += it.text().length();
else {
// locate the node and starting offset for this replaced range
Node& node = it.range()->startContainer();
ASSERT(&node == &it.range()->endContainer());
int offset = it.range()->startOffset();
if (replacedNodeNeedsCharacter(node.traverseToChildAt(offset)))
++length;
}
}
return length;
}
VisiblePosition AccessibilityObject::visiblePositionForBounds(const IntRect& rect, AccessibilityVisiblePositionForBounds visiblePositionForBounds) const
{
if (rect.isEmpty())
return VisiblePosition();
auto* mainFrame = this->mainFrame();
if (!mainFrame)
return VisiblePosition();
// FIXME: Add support for right-to-left languages.
IntPoint corner = (visiblePositionForBounds == AccessibilityVisiblePositionForBounds::First) ? rect.minXMinYCorner() : rect.maxXMaxYCorner();
VisiblePosition position = mainFrame->visiblePositionForPoint(corner);
if (rect.contains(position.absoluteCaretBounds().center()))
return position;
// If the initial position is located outside the bounds adjust it incrementally as needed.
VisiblePosition nextPosition = position.next();
VisiblePosition previousPosition = position.previous();
while (nextPosition.isNotNull() || previousPosition.isNotNull()) {
if (rect.contains(nextPosition.absoluteCaretBounds().center()))
return nextPosition;
if (rect.contains(previousPosition.absoluteCaretBounds().center()))
return previousPosition;
nextPosition = nextPosition.next();
previousPosition = previousPosition.previous();
}
return VisiblePosition();
}
VisiblePosition AccessibilityObject::nextWordEnd(const VisiblePosition& visiblePos) const
{
if (visiblePos.isNull())
return VisiblePosition();
// make sure we move off of a word end
VisiblePosition nextVisiblePos = visiblePos.next();
if (nextVisiblePos.isNull())
return VisiblePosition();
return endOfWord(nextVisiblePos, LeftWordIfOnBoundary);
}
VisiblePosition AccessibilityObject::previousWordStart(const VisiblePosition& visiblePos) const
{
if (visiblePos.isNull())
return VisiblePosition();
// make sure we move off of a word start
VisiblePosition prevVisiblePos = visiblePos.previous();
if (prevVisiblePos.isNull())
return VisiblePosition();
return startOfWord(prevVisiblePos, RightWordIfOnBoundary);
}
VisiblePosition AccessibilityObject::nextLineEndPosition(const VisiblePosition& visiblePos) const
{
if (visiblePos.isNull())
return VisiblePosition();
// to make sure we move off of a line end
VisiblePosition nextVisiblePos = visiblePos.next();
if (nextVisiblePos.isNull())
return VisiblePosition();
VisiblePosition endPosition = endOfLine(nextVisiblePos);
// as long as the position hasn't reached the end of the doc, keep searching for a valid line end position
// There are cases like when the position is next to a floating object that'll return null for end of line. This code will avoid returning null.
while (endPosition.isNull() && nextVisiblePos.isNotNull()) {
nextVisiblePos = nextVisiblePos.next();
endPosition = endOfLine(nextVisiblePos);
}
return endPosition;
}
VisiblePosition AccessibilityObject::previousLineStartPosition(const VisiblePosition& visiblePos) const
{
if (visiblePos.isNull())
return VisiblePosition();
// make sure we move off of a line start
VisiblePosition prevVisiblePos = visiblePos.previous();
if (prevVisiblePos.isNull())
return VisiblePosition();
VisiblePosition startPosition = startOfLine(prevVisiblePos);
// as long as the position hasn't reached the beginning of the doc, keep searching for a valid line start position
// There are cases like when the position is next to a floating object that'll return null for start of line. This code will avoid returning null.
if (startPosition.isNull()) {
while (startPosition.isNull() && prevVisiblePos.isNotNull()) {
prevVisiblePos = prevVisiblePos.previous();
startPosition = startOfLine(prevVisiblePos);
}
} else
startPosition = updateAXLineStartForVisiblePosition(startPosition);
return startPosition;
}
VisiblePosition AccessibilityObject::nextSentenceEndPosition(const VisiblePosition& visiblePos) const
{
// FIXME: FO 2 IMPLEMENT (currently returns incorrect answer)
// Related? <rdar://problem/3927736> Text selection broken in 8A336
if (visiblePos.isNull())
return VisiblePosition();
// make sure we move off of a sentence end
VisiblePosition nextVisiblePos = visiblePos.next();
if (nextVisiblePos.isNull())
return VisiblePosition();
// an empty line is considered a sentence. If it's skipped, then the sentence parser will not
// see this empty line. Instead, return the end position of the empty line.
VisiblePosition endPosition;
String lineString = plainText(makeRange(startOfLine(nextVisiblePos), endOfLine(nextVisiblePos)).get());
if (lineString.isEmpty())
endPosition = nextVisiblePos;
else
endPosition = endOfSentence(nextVisiblePos);
return endPosition;
}
VisiblePosition AccessibilityObject::previousSentenceStartPosition(const VisiblePosition& visiblePos) const
{
// FIXME: FO 2 IMPLEMENT (currently returns incorrect answer)
// Related? <rdar://problem/3927736> Text selection broken in 8A336
if (visiblePos.isNull())
return VisiblePosition();
// make sure we move off of a sentence start
VisiblePosition previousVisiblePos = visiblePos.previous();
if (previousVisiblePos.isNull())
return VisiblePosition();
// treat empty line as a separate sentence.
VisiblePosition startPosition;
String lineString = plainText(makeRange(startOfLine(previousVisiblePos), endOfLine(previousVisiblePos)).get());
if (lineString.isEmpty())
startPosition = previousVisiblePos;
else
startPosition = startOfSentence(previousVisiblePos);
return startPosition;
}
VisiblePosition AccessibilityObject::nextParagraphEndPosition(const VisiblePosition& visiblePos) const
{
if (visiblePos.isNull())
return VisiblePosition();
// make sure we move off of a paragraph end
VisiblePosition nextPos = visiblePos.next();
if (nextPos.isNull())
return VisiblePosition();
return endOfParagraph(nextPos);
}
VisiblePosition AccessibilityObject::previousParagraphStartPosition(const VisiblePosition& visiblePos) const
{
if (visiblePos.isNull())
return VisiblePosition();
// make sure we move off of a paragraph start
VisiblePosition previousPos = visiblePos.previous();
if (previousPos.isNull())
return VisiblePosition();
return startOfParagraph(previousPos);
}
AccessibilityObject* AccessibilityObject::accessibilityObjectForPosition(const VisiblePosition& visiblePos) const
{
if (visiblePos.isNull())
return nullptr;
RenderObject* obj = visiblePos.deepEquivalent().deprecatedNode()->renderer();
if (!obj)
return nullptr;
return obj->document().axObjectCache()->getOrCreate(obj);
}
// If you call node->hasEditableStyle() since that will return true if an ancestor is editable.
// This only returns true if this is the element that actually has the contentEditable attribute set.
bool AccessibilityObject::hasContentEditableAttributeSet() const
{
return contentEditableAttributeIsEnabled(element());
}
bool AccessibilityObject::supportsReadOnly() const
{
AccessibilityRole role = roleValue();
return role == AccessibilityRole::CheckBox
|| role == AccessibilityRole::ColumnHeader
|| role == AccessibilityRole::ComboBox
|| role == AccessibilityRole::Grid
|| role == AccessibilityRole::GridCell
|| role == AccessibilityRole::ListBox
|| role == AccessibilityRole::MenuItemCheckbox
|| role == AccessibilityRole::MenuItemRadio
|| role == AccessibilityRole::RadioGroup
|| role == AccessibilityRole::RowHeader
|| role == AccessibilityRole::SearchField
|| role == AccessibilityRole::Slider
|| role == AccessibilityRole::SpinButton
|| role == AccessibilityRole::Switch
|| role == AccessibilityRole::TextField
|| role == AccessibilityRole::TreeGrid
|| isPasswordField();
}
String AccessibilityObject::readOnlyValue() const
{
if (!hasAttribute(aria_readonlyAttr))
return ariaRoleAttribute() != AccessibilityRole::Unknown && supportsReadOnly() ? "false" : String();
return getAttribute(aria_readonlyAttr).string().convertToASCIILowercase();
}
bool AccessibilityObject::supportsAutoComplete() const
{
return (isComboBox() || isARIATextControl()) && hasAttribute(aria_autocompleteAttr);
}
String AccessibilityObject::autoCompleteValue() const
{
const AtomString& autoComplete = getAttribute(aria_autocompleteAttr);
if (equalLettersIgnoringASCIICase(autoComplete, "inline")
|| equalLettersIgnoringASCIICase(autoComplete, "list")
|| equalLettersIgnoringASCIICase(autoComplete, "both"))
return autoComplete;
return "none";
}
bool AccessibilityObject::contentEditableAttributeIsEnabled(Element* element)
{
if (!element)
return false;
const AtomString& contentEditableValue = element->attributeWithoutSynchronization(contenteditableAttr);
if (contentEditableValue.isNull())
return false;
// Both "true" (case-insensitive) and the empty string count as true.
return contentEditableValue.isEmpty() || equalLettersIgnoringASCIICase(contentEditableValue, "true");
}
#if HAVE(ACCESSIBILITY)
int AccessibilityObject::lineForPosition(const VisiblePosition& visiblePos) const
{
if (visiblePos.isNull() || !node())
return -1;
// If the position is not in the same editable region as this AX object, return -1.
Node* containerNode = visiblePos.deepEquivalent().containerNode();
if (!containerNode->containsIncludingShadowDOM(node()) && !node()->containsIncludingShadowDOM(containerNode))
return -1;
int lineCount = -1;
VisiblePosition currentVisiblePos = visiblePos;
VisiblePosition savedVisiblePos;
// move up until we get to the top
// FIXME: This only takes us to the top of the rootEditableElement, not the top of the
// top document.
do {
savedVisiblePos = currentVisiblePos;
VisiblePosition prevVisiblePos = previousLinePosition(currentVisiblePos, 0, HasEditableAXRole);
currentVisiblePos = prevVisiblePos;
++lineCount;
} while (currentVisiblePos.isNotNull() && !(inSameLine(currentVisiblePos, savedVisiblePos)));
return lineCount;
}
#endif
// NOTE: Consider providing this utility method as AX API
PlainTextRange AccessibilityObject::plainTextRangeForVisiblePositionRange(const VisiblePositionRange& positionRange) const
{
int index1 = index(positionRange.start);
int index2 = index(positionRange.end);
if (index1 < 0 || index2 < 0 || index1 > index2)
return PlainTextRange();
return PlainTextRange(index1, index2 - index1);
}
// The composed character range in the text associated with this accessibility object that
// is specified by the given screen coordinates. This parameterized attribute returns the
// complete range of characters (including surrogate pairs of multi-byte glyphs) at the given
// screen coordinates.
// NOTE: This varies from AppKit when the point is below the last line. AppKit returns an
// an error in that case. We return textControl->text().length(), 1. Does this matter?
PlainTextRange AccessibilityObject::doAXRangeForPosition(const IntPoint& point) const
{
int i = index(visiblePositionForPoint(point));
if (i < 0)
return PlainTextRange();
return PlainTextRange(i, 1);
}
// Given a character index, the range of text associated with this accessibility object
// over which the style in effect at that character index applies.
PlainTextRange AccessibilityObject::doAXStyleRangeForIndex(unsigned index) const
{
VisiblePositionRange range = styleRangeForPosition(visiblePositionForIndex(index, false));
return plainTextRangeForVisiblePositionRange(range);
}
// Given an indexed character, the line number of the text associated with this accessibility
// object that contains the character.
unsigned AccessibilityObject::doAXLineForIndex(unsigned index)
{
return lineForPosition(visiblePositionForIndex(index, false));
}
#if HAVE(ACCESSIBILITY)
void AccessibilityObject::updateBackingStore()
{
if (!axObjectCache())
return;
// Updating the layout may delete this object.
RefPtr<AccessibilityObject> protectedThis(this);
if (auto* document = this->document()) {
if (!document->view()->layoutContext().isInRenderTreeLayout() && !document->inRenderTreeUpdate() && !document->inStyleRecalc())
document->updateLayoutIgnorePendingStylesheets();
}
if (auto cache = axObjectCache())
cache->performDeferredCacheUpdate();
updateChildrenIfNecessary();
}
#endif
const AccessibilityScrollView* AccessibilityObject::ancestorAccessibilityScrollView(bool includeSelf) const
{
return downcast<AccessibilityScrollView>(AccessibilityObject::matchedParent(*this, includeSelf, [] (const auto& object) {
return is<AccessibilityScrollView>(object);
}));
}
ScrollView* AccessibilityObject::scrollViewAncestor() const
{
if (auto parentScrollView = ancestorAccessibilityScrollView(true/* includeSelf */))
return parentScrollView->scrollView();
return nullptr;
}
Document* AccessibilityObject::document() const
{
FrameView* frameView = documentFrameView();
if (!frameView)
return nullptr;
return frameView->frame().document();
}
Page* AccessibilityObject::page() const
{
Document* document = this->document();
if (!document)
return nullptr;
return document->page();
}
FrameView* AccessibilityObject::documentFrameView() const
{
const AccessibilityObject* object = this;
while (object && !object->isAccessibilityRenderObject())
object = object->parentObject();
if (!object)
return nullptr;
return object->documentFrameView();
}
#if HAVE(ACCESSIBILITY)
const AccessibilityObject::AccessibilityChildrenVector& AccessibilityObject::children(bool updateChildrenIfNeeded)
{
if (updateChildrenIfNeeded)
updateChildrenIfNecessary();
return m_children;
}
#endif
void AccessibilityObject::updateChildrenIfNecessary()
{
if (!hasChildren()) {
// Enable the cache in case we end up adding a lot of children, we don't want to recompute axIsIgnored each time.
AXAttributeCacheEnabler enableCache(axObjectCache());
addChildren();
}
}
void AccessibilityObject::clearChildren()
{
// Some objects have weak pointers to their parents and those associations need to be detached.
for (const auto& child : m_children)
child->detachFromParent();
m_children.clear();
m_haveChildren = false;
}
AccessibilityObject* AccessibilityObject::anchorElementForNode(Node* node)
{
RenderObject* obj = node->renderer();
if (!obj)
return nullptr;
RefPtr<AccessibilityObject> axObj = obj->document().axObjectCache()->getOrCreate(obj);
Element* anchor = axObj->anchorElement();
if (!anchor)
return nullptr;
RenderObject* anchorRenderer = anchor->renderer();
if (!anchorRenderer)
return nullptr;
return anchorRenderer->document().axObjectCache()->getOrCreate(anchorRenderer);
}
AccessibilityObject* AccessibilityObject::headingElementForNode(Node* node)
{
if (!node)
return nullptr;
RenderObject* renderObject = node->renderer();
if (!renderObject)
return nullptr;
AccessibilityObject* axObject = renderObject->document().axObjectCache()->getOrCreate(renderObject);
return const_cast<AccessibilityObject*>(AccessibilityObject::matchedParent(*axObject, true, [] (const AccessibilityObject& object) {
return object.roleValue() == AccessibilityRole::Heading;
}));
}
const AccessibilityObject* AccessibilityObject::matchedParent(const AccessibilityObject& object, bool includeSelf, const WTF::Function<bool(const AccessibilityObject&)>& matches)
{
const AccessibilityObject* parent = includeSelf ? &object : object.parentObject();
for (; parent; parent = parent->parentObject()) {
if (matches(*parent))
return parent;
}
return nullptr;
}
void AccessibilityObject::ariaTreeRows(AccessibilityChildrenVector& result)
{
for (const auto& child : children()) {
// Add tree items as the rows.
if (child->roleValue() == AccessibilityRole::TreeItem)
result.append(child);
// Now see if this item also has rows hiding inside of it.
child->ariaTreeRows(result);
}
}
void AccessibilityObject::ariaTreeItemContent(AccessibilityChildrenVector& result)
{
// The ARIA tree item content are the item that are not other tree items or their containing groups.
for (const auto& child : children()) {
if (!child->isGroup() && child->roleValue() != AccessibilityRole::TreeItem)
result.append(child);
}
}
void AccessibilityObject::ariaTreeItemDisclosedRows(AccessibilityChildrenVector& result)
{
for (const auto& obj : children()) {
// Add tree items as the rows.
if (obj->roleValue() == AccessibilityRole::TreeItem)
result.append(obj);
// If it's not a tree item, then descend into the group to find more tree items.
else
obj->ariaTreeRows(result);
}
}
const String AccessibilityObject::defaultLiveRegionStatusForRole(AccessibilityRole role)
{
switch (role) {
case AccessibilityRole::ApplicationAlertDialog:
case AccessibilityRole::ApplicationAlert:
return "assertive"_s;
case AccessibilityRole::ApplicationLog:
case AccessibilityRole::ApplicationStatus:
return "polite"_s;
case AccessibilityRole::ApplicationTimer:
case AccessibilityRole::ApplicationMarquee:
return "off"_s;
default:
return nullAtom();
}
}
#if HAVE(ACCESSIBILITY)
const String& AccessibilityObject::actionVerb() const
{
#if !PLATFORM(IOS_FAMILY)
// FIXME: Need to add verbs for select elements.
static NeverDestroyed<const String> buttonAction(AXButtonActionVerb());
static NeverDestroyed<const String> textFieldAction(AXTextFieldActionVerb());
static NeverDestroyed<const String> radioButtonAction(AXRadioButtonActionVerb());
static NeverDestroyed<const String> checkedCheckBoxAction(AXCheckedCheckBoxActionVerb());
static NeverDestroyed<const String> uncheckedCheckBoxAction(AXUncheckedCheckBoxActionVerb());
static NeverDestroyed<const String> linkAction(AXLinkActionVerb());
static NeverDestroyed<const String> menuListAction(AXMenuListActionVerb());
static NeverDestroyed<const String> menuListPopupAction(AXMenuListPopupActionVerb());
static NeverDestroyed<const String> listItemAction(AXListItemActionVerb());
switch (roleValue()) {
case AccessibilityRole::Button:
case AccessibilityRole::ToggleButton:
return buttonAction;
case AccessibilityRole::TextField:
case AccessibilityRole::TextArea:
return textFieldAction;
case AccessibilityRole::RadioButton:
return radioButtonAction;
case AccessibilityRole::CheckBox:
case AccessibilityRole::Switch:
return isChecked() ? checkedCheckBoxAction : uncheckedCheckBoxAction;
case AccessibilityRole::Link:
case AccessibilityRole::WebCoreLink:
return linkAction;
case AccessibilityRole::PopUpButton:
return menuListAction;
case AccessibilityRole::MenuListPopup:
return menuListPopupAction;
case AccessibilityRole::ListItem:
return listItemAction;
default:
return nullAtom();
}
#else
return nullAtom();
#endif
}
#endif
bool AccessibilityObject::ariaIsMultiline() const
{
return equalLettersIgnoringASCIICase(getAttribute(aria_multilineAttr), "true");
}
String AccessibilityObject::invalidStatus() const
{
String grammarValue = "grammar"_s;
String falseValue = "false"_s;
String spellingValue = "spelling"_s;
String trueValue = "true"_s;
String undefinedValue = "undefined"_s;
// aria-invalid can return false (default), grammar, spelling, or true.
String ariaInvalid = stripLeadingAndTrailingHTMLSpaces(getAttribute(aria_invalidAttr));
if (ariaInvalid.isEmpty()) {
// We should expose invalid status for input types.
Node* node = this->node();
if (node && is<HTMLInputElement>(*node)) {
HTMLInputElement& input = downcast<HTMLInputElement>(*node);
if (input.hasBadInput() || input.typeMismatch())
return trueValue;
}
return falseValue;
}
// If "false", "undefined" [sic, string value], empty, or missing, return "false".
if (ariaInvalid == falseValue || ariaInvalid == undefinedValue)
return falseValue;
// Besides true/false/undefined, the only tokens defined by WAI-ARIA 1.0...
// ...for @aria-invalid are "grammar" and "spelling".
if (ariaInvalid == grammarValue)
return grammarValue;
if (ariaInvalid == spellingValue)
return spellingValue;
// Any other non empty string should be treated as "true".
return trueValue;
}
bool AccessibilityObject::supportsCurrent() const
{
return hasAttribute(aria_currentAttr);
}
AccessibilityCurrentState AccessibilityObject::currentState() const
{
// aria-current can return false (default), true, page, step, location, date or time.
String currentStateValue = stripLeadingAndTrailingHTMLSpaces(getAttribute(aria_currentAttr));
// If "false", empty, or missing, return false state.
if (currentStateValue.isEmpty() || currentStateValue == "false")
return AccessibilityCurrentState::False;
if (currentStateValue == "page")
return AccessibilityCurrentState::Page;
if (currentStateValue == "step")
return AccessibilityCurrentState::Step;
if (currentStateValue == "location")
return AccessibilityCurrentState::Location;
if (currentStateValue == "date")
return AccessibilityCurrentState::Date;
if (currentStateValue == "time")
return AccessibilityCurrentState::Time;
// Any value not included in the list of allowed values should be treated as "true".
return AccessibilityCurrentState::True;
}
String AccessibilityObject::currentValue() const
{
switch (currentState()) {
case AccessibilityCurrentState::False:
return "false";
case AccessibilityCurrentState::Page:
return "page";
case AccessibilityCurrentState::Step:
return "step";
case AccessibilityCurrentState::Location:
return "location";
case AccessibilityCurrentState::Time:
return "time";
case AccessibilityCurrentState::Date:
return "date";
default:
case AccessibilityCurrentState::True:
return "true";
}
}
bool AccessibilityObject::isModalDescendant(Node* modalNode) const
{
Node* node = this->node();
if (!modalNode || !node)
return false;
if (node == modalNode)
return true;
// ARIA 1.1 aria-modal, indicates whether an element is modal when displayed.
// For the decendants of the modal object, they should also be considered as aria-modal=true.
return node->isDescendantOf(*modalNode);
}
bool AccessibilityObject::isModalNode() const
{
if (AXObjectCache* cache = axObjectCache())
return node() && cache->modalNode() == node();
return false;
}
bool AccessibilityObject::ignoredFromModalPresence() const
{
// We shouldn't ignore the top node.
if (!node() || !node()->parentNode())
return false;
AXObjectCache* cache = axObjectCache();
if (!cache)
return false;
// modalNode is the current displayed modal dialog.
Node* modalNode = cache->modalNode();
if (!modalNode)
return false;
// We only want to ignore the objects within the same frame as the modal dialog.
if (modalNode->document().frame() != this->frame())
return false;
return !isModalDescendant(modalNode);
}
bool AccessibilityObject::hasTagName(const QualifiedName& tagName) const
{
Node* node = this->node();
return is<Element>(node) && downcast<Element>(*node).hasTagName(tagName);
}
bool AccessibilityObject::hasAttribute(const QualifiedName& attribute) const
{
Node* node = this->node();
if (!is<Element>(node))
return false;
return downcast<Element>(*node).hasAttributeWithoutSynchronization(attribute);
}
const AtomString& AccessibilityObject::getAttribute(const QualifiedName& attribute) const
{
if (auto* element = this->element())
return element->attributeWithoutSynchronization(attribute);
return nullAtom();
}
bool AccessibilityObject::replaceTextInRange(const String& replacementString, const PlainTextRange& range)
{
if (!renderer() || !is<Element>(node()))
return false;
auto& element = downcast<Element>(*renderer()->node());
// We should use the editor's insertText to mimic typing into the field.
// Also only do this when the field is in editing mode.
auto& frame = renderer()->frame();
if (element.shouldUseInputMethod()) {
frame.selection().setSelectedRange(rangeForPlainTextRange(range).get(), DOWNSTREAM, FrameSelection::ShouldCloseTyping::Yes);
frame.editor().replaceSelectionWithText(replacementString, Editor::SelectReplacement::No, Editor::SmartReplace::No);
return true;
}
if (is<HTMLInputElement>(element)) {
downcast<HTMLInputElement>(element).setRangeText(replacementString, range.start, range.length, "");
return true;
}
if (is<HTMLTextAreaElement>(element)) {
downcast<HTMLTextAreaElement>(element).setRangeText(replacementString, range.start, range.length, "");
return true;
}
return false;
}
// Lacking concrete evidence of orientation, horizontal means width > height. vertical is height > width;
AccessibilityOrientation AccessibilityObject::orientation() const
{
LayoutRect bounds = elementRect();
if (bounds.size().width() > bounds.size().height())
return AccessibilityOrientation::Horizontal;
if (bounds.size().height() > bounds.size().width())
return AccessibilityOrientation::Vertical;
return AccessibilityOrientation::Undefined;
}
bool AccessibilityObject::isDescendantOfObject(const AccessibilityObject* axObject) const
{
if (!axObject || !axObject->hasChildren())
return false;
return AccessibilityObject::matchedParent(*this, false, [axObject] (const AccessibilityObject& object) {
return &object == axObject;
}) != nullptr;
}
bool AccessibilityObject::isAncestorOfObject(const AccessibilityObject* axObject) const
{
if (!axObject)
return false;
return this == axObject || axObject->isDescendantOfObject(this);
}
AccessibilityObject* AccessibilityObject::firstAnonymousBlockChild() const
{
for (AccessibilityObject* child = firstChild(); child; child = child->nextSibling()) {
if (child->renderer() && child->renderer()->isAnonymousBlock())
return child;
}
return nullptr;
}
using ARIARoleMap = HashMap<String, AccessibilityRole, ASCIICaseInsensitiveHash>;
using ARIAReverseRoleMap = HashMap<AccessibilityRole, String, DefaultHash<int>::Hash, WTF::UnsignedWithZeroKeyHashTraits<int>>;
static ARIARoleMap* gAriaRoleMap = nullptr;
static ARIAReverseRoleMap* gAriaReverseRoleMap = nullptr;
struct RoleEntry {
String ariaRole;
AccessibilityRole webcoreRole;
};
static void initializeRoleMap()
{
if (gAriaRoleMap)
return;
ASSERT(!gAriaReverseRoleMap);
const RoleEntry roles[] = {
{ "alert", AccessibilityRole::ApplicationAlert },
{ "alertdialog", AccessibilityRole::ApplicationAlertDialog },
{ "application", AccessibilityRole::WebApplication },
{ "article", AccessibilityRole::DocumentArticle },
{ "banner", AccessibilityRole::LandmarkBanner },
{ "blockquote", AccessibilityRole::Blockquote },
{ "button", AccessibilityRole::Button },
{ "caption", AccessibilityRole::Caption },
{ "checkbox", AccessibilityRole::CheckBox },
{ "complementary", AccessibilityRole::LandmarkComplementary },
{ "contentinfo", AccessibilityRole::LandmarkContentInfo },
{ "dialog", AccessibilityRole::ApplicationDialog },
{ "directory", AccessibilityRole::Directory },
// The 'doc-*' roles are defined the ARIA DPUB mobile: https://www.w3.org/TR/dpub-aam-1.0/
// Editor's draft is currently at https://rawgit.com/w3c/aria/master/dpub-aam/dpub-aam.html
{ "doc-abstract", AccessibilityRole::ApplicationTextGroup },
{ "doc-acknowledgments", AccessibilityRole::LandmarkDocRegion },
{ "doc-afterword", AccessibilityRole::LandmarkDocRegion },
{ "doc-appendix", AccessibilityRole::LandmarkDocRegion },
{ "doc-backlink", AccessibilityRole::WebCoreLink },
{ "doc-biblioentry", AccessibilityRole::ListItem },
{ "doc-bibliography", AccessibilityRole::LandmarkDocRegion },
{ "doc-biblioref", AccessibilityRole::WebCoreLink },
{ "doc-chapter", AccessibilityRole::LandmarkDocRegion },
{ "doc-colophon", AccessibilityRole::ApplicationTextGroup },
{ "doc-conclusion", AccessibilityRole::LandmarkDocRegion },
{ "doc-cover", AccessibilityRole::Image },
{ "doc-credit", AccessibilityRole::ApplicationTextGroup },
{ "doc-credits", AccessibilityRole::LandmarkDocRegion },
{ "doc-dedication", AccessibilityRole::ApplicationTextGroup },
{ "doc-endnote", AccessibilityRole::ListItem },
{ "doc-endnotes", AccessibilityRole::LandmarkDocRegion },
{ "doc-epigraph", AccessibilityRole::ApplicationTextGroup },
{ "doc-epilogue", AccessibilityRole::LandmarkDocRegion },
{ "doc-errata", AccessibilityRole::LandmarkDocRegion },
{ "doc-example", AccessibilityRole::ApplicationTextGroup },
{ "doc-footnote", AccessibilityRole::Footnote },
{ "doc-foreword", AccessibilityRole::LandmarkDocRegion },
{ "doc-glossary", AccessibilityRole::LandmarkDocRegion },
{ "doc-glossref", AccessibilityRole::WebCoreLink },
{ "doc-index", AccessibilityRole::LandmarkNavigation },
{ "doc-introduction", AccessibilityRole::LandmarkDocRegion },
{ "doc-noteref", AccessibilityRole::WebCoreLink },
{ "doc-notice", AccessibilityRole::DocumentNote },
{ "doc-pagebreak", AccessibilityRole::Splitter },
{ "doc-pagelist", AccessibilityRole::LandmarkNavigation },
{ "doc-part", AccessibilityRole::LandmarkDocRegion },
{ "doc-preface", AccessibilityRole::LandmarkDocRegion },
{ "doc-prologue", AccessibilityRole::LandmarkDocRegion },
{ "doc-pullquote", AccessibilityRole::ApplicationTextGroup },
{ "doc-qna", AccessibilityRole::ApplicationTextGroup },
{ "doc-subtitle", AccessibilityRole::Heading },
{ "doc-tip", AccessibilityRole::DocumentNote },
{ "doc-toc", AccessibilityRole::LandmarkNavigation },
{ "figure", AccessibilityRole::Figure },
// The mappings for 'graphics-*' roles are defined in this spec: https://w3c.github.io/graphics-aam/
{ "graphics-document", AccessibilityRole::GraphicsDocument },
{ "graphics-object", AccessibilityRole::GraphicsObject },
{ "graphics-symbol", AccessibilityRole::GraphicsSymbol },
{ "grid", AccessibilityRole::Grid },
{ "gridcell", AccessibilityRole::GridCell },
{ "table", AccessibilityRole::Table },
{ "cell", AccessibilityRole::Cell },
{ "columnheader", AccessibilityRole::ColumnHeader },
{ "combobox", AccessibilityRole::ComboBox },
{ "definition", AccessibilityRole::Definition },
{ "document", AccessibilityRole::Document },
{ "feed", AccessibilityRole::Feed },
{ "form", AccessibilityRole::Form },
{ "rowheader", AccessibilityRole::RowHeader },
{ "group", AccessibilityRole::ApplicationGroup },
{ "heading", AccessibilityRole::Heading },
{ "img", AccessibilityRole::Image },
{ "link", AccessibilityRole::WebCoreLink },
{ "list", AccessibilityRole::List },
{ "listitem", AccessibilityRole::ListItem },
{ "listbox", AccessibilityRole::ListBox },
{ "log", AccessibilityRole::ApplicationLog },
{ "main", AccessibilityRole::LandmarkMain },
{ "marquee", AccessibilityRole::ApplicationMarquee },
{ "math", AccessibilityRole::DocumentMath },
{ "menu", AccessibilityRole::Menu },
{ "menubar", AccessibilityRole::MenuBar },
{ "menuitem", AccessibilityRole::MenuItem },
{ "menuitemcheckbox", AccessibilityRole::MenuItemCheckbox },
{ "menuitemradio", AccessibilityRole::MenuItemRadio },
{ "meter", AccessibilityRole::Meter },
{ "none", AccessibilityRole::Presentational },
{ "note", AccessibilityRole::DocumentNote },
{ "navigation", AccessibilityRole::LandmarkNavigation },
{ "option", AccessibilityRole::ListBoxOption },
{ "paragraph", AccessibilityRole::Paragraph },
{ "presentation", AccessibilityRole::Presentational },
{ "progressbar", AccessibilityRole::ProgressIndicator },
{ "radio", AccessibilityRole::RadioButton },
{ "radiogroup", AccessibilityRole::RadioGroup },
{ "region", AccessibilityRole::LandmarkRegion },
{ "row", AccessibilityRole::Row },
{ "rowgroup", AccessibilityRole::RowGroup },
{ "scrollbar", AccessibilityRole::ScrollBar },
{ "search", AccessibilityRole::LandmarkSearch },
{ "searchbox", AccessibilityRole::SearchField },
{ "separator", AccessibilityRole::Splitter },
{ "slider", AccessibilityRole::Slider },
{ "spinbutton", AccessibilityRole::SpinButton },
{ "status", AccessibilityRole::ApplicationStatus },
{ "switch", AccessibilityRole::Switch },
{ "tab", AccessibilityRole::Tab },
{ "tablist", AccessibilityRole::TabList },
{ "tabpanel", AccessibilityRole::TabPanel },
{ "text", AccessibilityRole::StaticText },
{ "textbox", AccessibilityRole::TextArea },
{ "term", AccessibilityRole::Term },
{ "timer", AccessibilityRole::ApplicationTimer },
{ "toolbar", AccessibilityRole::Toolbar },
{ "tooltip", AccessibilityRole::UserInterfaceTooltip },
{ "tree", AccessibilityRole::Tree },
{ "treegrid", AccessibilityRole::TreeGrid },
{ "treeitem", AccessibilityRole::TreeItem }
};
gAriaRoleMap = new ARIARoleMap;
gAriaReverseRoleMap = new ARIAReverseRoleMap;
size_t roleLength = WTF_ARRAY_LENGTH(roles);
for (size_t i = 0; i < roleLength; ++i) {
gAriaRoleMap->set(roles[i].ariaRole, roles[i].webcoreRole);
gAriaReverseRoleMap->set(static_cast<int>(roles[i].webcoreRole), roles[i].ariaRole);
}
}
static ARIARoleMap& ariaRoleMap()
{
initializeRoleMap();
return *gAriaRoleMap;
}
static ARIAReverseRoleMap& reverseAriaRoleMap()
{
initializeRoleMap();
return *gAriaReverseRoleMap;
}
AccessibilityRole AccessibilityObject::ariaRoleToWebCoreRole(const String& value)
{
if (value.isNull() || value.isEmpty())
return AccessibilityRole::Unknown;
for (auto roleName : StringView(value).split(' ')) {
AccessibilityRole role = ariaRoleMap().get<ASCIICaseInsensitiveStringViewHashTranslator>(roleName);
if (static_cast<int>(role))
return role;
}
return AccessibilityRole::Unknown;
}
String AccessibilityObject::computedRoleString() const
{
// FIXME: Need a few special cases that aren't in the RoleMap: option, etc. http://webkit.org/b/128296
AccessibilityRole role = roleValue();
// We do not compute a role string for generic block elements with user-agent assigned roles.
if (role == AccessibilityRole::Group || role == AccessibilityRole::TextGroup)
return "";
// We do compute a role string for block elements with author-provided roles.
if (role == AccessibilityRole::ApplicationTextGroup
|| role == AccessibilityRole::Footnote
|| role == AccessibilityRole::GraphicsObject)
return reverseAriaRoleMap().get(static_cast<int>(AccessibilityRole::ApplicationGroup));
if (role == AccessibilityRole::GraphicsDocument)
return reverseAriaRoleMap().get(static_cast<int>(AccessibilityRole::Document));
if (role == AccessibilityRole::GraphicsSymbol)
return reverseAriaRoleMap().get(static_cast<int>(AccessibilityRole::Image));
if (role == AccessibilityRole::HorizontalRule)
return reverseAriaRoleMap().get(static_cast<int>(AccessibilityRole::Splitter));
if (role == AccessibilityRole::PopUpButton || role == AccessibilityRole::ToggleButton)
return reverseAriaRoleMap().get(static_cast<int>(AccessibilityRole::Button));
if (role == AccessibilityRole::LandmarkDocRegion)
return reverseAriaRoleMap().get(static_cast<int>(AccessibilityRole::LandmarkRegion));
return reverseAriaRoleMap().get(static_cast<int>(role));
}
bool AccessibilityObject::hasHighlighting() const
{
for (Node* node = this->node(); node; node = node->parentNode()) {
if (node->hasTagName(markTag))
return true;
}
return false;
}
String AccessibilityObject::roleDescription() const
{
return stripLeadingAndTrailingHTMLSpaces(getAttribute(aria_roledescriptionAttr));
}
bool nodeHasPresentationRole(Node* node)
{
return nodeHasRole(node, "presentation") || nodeHasRole(node, "none");
}
bool AccessibilityObject::supportsPressAction() const
{
if (isButton())
return true;
if (roleValue() == AccessibilityRole::Details)
return true;
Element* actionElement = this->actionElement();
if (!actionElement)
return false;
// [Bug: 136247] Heuristic: element handlers that have more than one accessible descendant should not be exposed as supporting press.
if (actionElement != element()) {
if (AccessibilityObject* axObj = axObjectCache()->getOrCreate(actionElement)) {
AccessibilityChildrenVector results;
// Search within for immediate descendants that are static text. If we find more than one
// then this is an event delegator actionElement and we should expose the press action.
Vector<AccessibilitySearchKey> keys({ AccessibilitySearchKey::StaticText, AccessibilitySearchKey::Control, AccessibilitySearchKey::Graphic, AccessibilitySearchKey::Heading, AccessibilitySearchKey::Link });
AccessibilitySearchCriteria criteria(axObj, AccessibilitySearchDirection::Next, emptyString(), 2, false, false);
criteria.searchKeys = keys;
axObj->findMatchingObjects(&criteria, results);
if (results.size() > 1)
return false;
}
}
// [Bug: 133613] Heuristic: If the action element is presentational, we shouldn't expose press as a supported action.
return !nodeHasPresentationRole(actionElement);
}
bool AccessibilityObject::supportsDatetimeAttribute() const
{
return hasTagName(insTag) || hasTagName(delTag) || hasTagName(timeTag);
}
const AtomString& AccessibilityObject::datetimeAttributeValue() const
{
return getAttribute(datetimeAttr);
}
const AtomString& AccessibilityObject::linkRelValue() const
{
return getAttribute(relAttr);
}
const String AccessibilityObject::keyShortcutsValue() const
{
return getAttribute(aria_keyshortcutsAttr);
}
Element* AccessibilityObject::element() const
{
Node* node = this->node();
if (is<Element>(node))
return downcast<Element>(node);
return nullptr;
}
bool AccessibilityObject::isValueAutofillAvailable() const
{
if (!isNativeTextControl())
return false;
Node* node = this->node();
if (!is<HTMLInputElement>(node))
return false;
return downcast<HTMLInputElement>(*node).isAutoFillAvailable() || downcast<HTMLInputElement>(*node).autoFillButtonType() != AutoFillButtonType::None;
}
AutoFillButtonType AccessibilityObject::valueAutofillButtonType() const
{
if (!isValueAutofillAvailable())
return AutoFillButtonType::None;
return downcast<HTMLInputElement>(*this->node()).autoFillButtonType();
}
bool AccessibilityObject::isValueAutofilled() const
{
if (!isNativeTextControl())
return false;
Node* node = this->node();
if (!is<HTMLInputElement>(node))
return false;
return downcast<HTMLInputElement>(*node).isAutoFilled();
}
const String AccessibilityObject::placeholderValue() const
{
const AtomString& placeholder = getAttribute(placeholderAttr);
if (!placeholder.isEmpty())
return placeholder;
const AtomString& ariaPlaceholder = getAttribute(aria_placeholderAttr);
if (!ariaPlaceholder.isEmpty())
return ariaPlaceholder;
return nullAtom();
}
bool AccessibilityObject::isInsideLiveRegion(bool excludeIfOff) const
{
return liveRegionAncestor(excludeIfOff);
}
AccessibilityObject* AccessibilityObject::liveRegionAncestor(bool excludeIfOff) const
{
return const_cast<AccessibilityObject*>(AccessibilityObject::matchedParent(*this, true, [excludeIfOff] (const AccessibilityObject& object) {
return object.supportsLiveRegion(excludeIfOff);
}));
}
bool AccessibilityObject::supportsARIAAttributes() const
{
// This returns whether the element supports any global ARIA attributes.
return supportsLiveRegion()
|| supportsARIADragging()
|| supportsARIADropping()
|| supportsARIAOwns()
|| hasAttribute(aria_atomicAttr)
|| hasAttribute(aria_busyAttr)
|| hasAttribute(aria_controlsAttr)
|| hasAttribute(aria_currentAttr)
|| hasAttribute(aria_describedbyAttr)
|| hasAttribute(aria_detailsAttr)
|| hasAttribute(aria_disabledAttr)
|| hasAttribute(aria_errormessageAttr)
|| hasAttribute(aria_flowtoAttr)
|| hasAttribute(aria_haspopupAttr)
|| hasAttribute(aria_invalidAttr)
|| hasAttribute(aria_labelAttr)
|| hasAttribute(aria_labelledbyAttr)
|| hasAttribute(aria_relevantAttr);
}
bool AccessibilityObject::liveRegionStatusIsEnabled(const AtomString& liveRegionStatus)
{
return equalLettersIgnoringASCIICase(liveRegionStatus, "polite") || equalLettersIgnoringASCIICase(liveRegionStatus, "assertive");
}
bool AccessibilityObject::supportsLiveRegion(bool excludeIfOff) const
{
const AtomString& liveRegionStatusValue = liveRegionStatus();
return excludeIfOff ? liveRegionStatusIsEnabled(liveRegionStatusValue) : !liveRegionStatusValue.isEmpty();
}
AccessibilityObjectInterface* AccessibilityObject::elementAccessibilityHitTest(const IntPoint& point) const
{
// Send the hit test back into the sub-frame if necessary.
if (isAttachment()) {
Widget* widget = widgetForAttachmentView();
// Normalize the point for the widget's bounds.
if (widget && widget->isFrameView()) {
if (AXObjectCache* cache = axObjectCache())
return cache->getOrCreate(widget)->accessibilityHitTest(IntPoint(point - widget->frameRect().location()));
}
}
// Check if there are any mock elements that need to be handled.
for (const auto& child : m_children) {
if (child->isMockObject() && child->elementRect().contains(point))
return child->elementAccessibilityHitTest(point);
}
return const_cast<AccessibilityObject*>(this);
}
AXObjectCache* AccessibilityObject::axObjectCache() const
{
auto* document = this->document();
return document ? document->axObjectCache() : nullptr;
}
AccessibilityObjectInterface* AccessibilityObject::focusedUIElement() const
{
auto* page = this->page();
return page ? AXObjectCache::focusedUIElementForPage(page) : nullptr;
}
AccessibilitySortDirection AccessibilityObject::sortDirection() const
{
AccessibilityRole role = roleValue();
if (role != AccessibilityRole::RowHeader && role != AccessibilityRole::ColumnHeader)
return AccessibilitySortDirection::Invalid;
const AtomString& sortAttribute = getAttribute(aria_sortAttr);
if (equalLettersIgnoringASCIICase(sortAttribute, "ascending"))
return AccessibilitySortDirection::Ascending;
if (equalLettersIgnoringASCIICase(sortAttribute, "descending"))
return AccessibilitySortDirection::Descending;
if (equalLettersIgnoringASCIICase(sortAttribute, "other"))
return AccessibilitySortDirection::Other;
return AccessibilitySortDirection::None;
}
bool AccessibilityObject::supportsRangeValue() const
{
return isProgressIndicator()
|| isSlider()
|| isScrollbar()
|| isSpinButton()
|| (isSplitter() && canSetFocusAttribute())
|| isAttachmentElement();
}
bool AccessibilityObject::supportsHasPopup() const
{
return hasAttribute(aria_haspopupAttr) || isComboBox();
}
String AccessibilityObject::hasPopupValue() const
{
const AtomString& hasPopup = getAttribute(aria_haspopupAttr);
if (equalLettersIgnoringASCIICase(hasPopup, "true")
|| equalLettersIgnoringASCIICase(hasPopup, "dialog")
|| equalLettersIgnoringASCIICase(hasPopup, "grid")
|| equalLettersIgnoringASCIICase(hasPopup, "listbox")
|| equalLettersIgnoringASCIICase(hasPopup, "menu")
|| equalLettersIgnoringASCIICase(hasPopup, "tree"))
return hasPopup;
// In ARIA 1.1, the implicit value for combobox became "listbox."
if (isComboBox() && hasPopup.isEmpty())
return "listbox";
// The spec states that "User agents must treat any value of aria-haspopup that is not
// included in the list of allowed values, including an empty string, as if the value
// false had been provided."
return "false";
}
bool AccessibilityObject::supportsSetSize() const
{
return hasAttribute(aria_setsizeAttr);
}
bool AccessibilityObject::supportsPosInSet() const
{
return hasAttribute(aria_posinsetAttr);
}
int AccessibilityObject::setSize() const
{
return getAttribute(aria_setsizeAttr).toInt();
}
int AccessibilityObject::posInSet() const
{
return getAttribute(aria_posinsetAttr).toInt();
}
const AtomString& AccessibilityObject::identifierAttribute() const
{
return getAttribute(idAttr);
}
void AccessibilityObject::classList(Vector<String>& classList) const
{
Node* node = this->node();
if (!is<Element>(node))
return;
Element* element = downcast<Element>(node);
DOMTokenList& list = element->classList();
unsigned length = list.length();
for (unsigned k = 0; k < length; k++)
classList.append(list.item(k).string());
}
bool AccessibilityObject::supportsPressed() const
{
const AtomString& expanded = getAttribute(aria_pressedAttr);
return equalLettersIgnoringASCIICase(expanded, "true") || equalLettersIgnoringASCIICase(expanded, "false");
}
bool AccessibilityObject::supportsExpanded() const
{
// Undefined values should not result in this attribute being exposed to ATs according to ARIA.
const AtomString& expanded = getAttribute(aria_expandedAttr);
if (equalLettersIgnoringASCIICase(expanded, "true") || equalLettersIgnoringASCIICase(expanded, "false"))
return true;
switch (roleValue()) {
case AccessibilityRole::ComboBox:
case AccessibilityRole::DisclosureTriangle:
case AccessibilityRole::Details:
return true;
default:
return false;
}
}
bool AccessibilityObject::isExpanded() const
{
if (equalLettersIgnoringASCIICase(getAttribute(aria_expandedAttr), "true"))
return true;
if (is<HTMLDetailsElement>(node()))
return downcast<HTMLDetailsElement>(node())->isOpen();
// Summary element should use its details parent's expanded status.
if (isSummary()) {
if (const AccessibilityObject* parent = AccessibilityObject::matchedParent(*this, false, [] (const AccessibilityObject& object) {
return is<HTMLDetailsElement>(object.node());
}))
return parent->isExpanded();
}
return false;
}
bool AccessibilityObject::supportsChecked() const
{
switch (roleValue()) {
case AccessibilityRole::CheckBox:
case AccessibilityRole::MenuItemCheckbox:
case AccessibilityRole::MenuItemRadio:
case AccessibilityRole::RadioButton:
case AccessibilityRole::Switch:
return true;
default:
return false;
}
}
AccessibilityButtonState AccessibilityObject::checkboxOrRadioValue() const
{
// If this is a real checkbox or radio button, AccessibilityRenderObject will handle.
// If it's an ARIA checkbox, radio, or switch the aria-checked attribute should be used.
// If it's a toggle button, the aria-pressed attribute is consulted.
if (isToggleButton()) {
const AtomString& ariaPressed = getAttribute(aria_pressedAttr);
if (equalLettersIgnoringASCIICase(ariaPressed, "true"))
return AccessibilityButtonState::On;
if (equalLettersIgnoringASCIICase(ariaPressed, "mixed"))
return AccessibilityButtonState::Mixed;
return AccessibilityButtonState::Off;
}
const AtomString& result = getAttribute(aria_checkedAttr);
if (equalLettersIgnoringASCIICase(result, "true"))
return AccessibilityButtonState::On;
if (equalLettersIgnoringASCIICase(result, "mixed")) {
// ARIA says that radio, menuitemradio, and switch elements must NOT expose button state mixed.
AccessibilityRole ariaRole = ariaRoleAttribute();
if (ariaRole == AccessibilityRole::RadioButton || ariaRole == AccessibilityRole::MenuItemRadio || ariaRole == AccessibilityRole::Switch)
return AccessibilityButtonState::Off;
return AccessibilityButtonState::Mixed;
}
if (isIndeterminate())
return AccessibilityButtonState::Mixed;
return AccessibilityButtonState::Off;
}
// This is a 1-dimensional scroll offset helper function that's applied
// separately in the horizontal and vertical directions, because the
// logic is the same. The goal is to compute the best scroll offset
// in order to make an object visible within a viewport.
//
// If the object is already fully visible, returns the same scroll
// offset.
//
// In case the whole object cannot fit, you can specify a
// subfocus - a smaller region within the object that should
// be prioritized. If the whole object can fit, the subfocus is
// ignored.
//
// If possible, the object and subfocus are centered within the
// viewport.
//
// Example 1: the object is already visible, so nothing happens.
// +----------Viewport---------+
// +---Object---+
// +--SubFocus--+
//
// Example 2: the object is not fully visible, so it's centered
// within the viewport.
// Before:
// +----------Viewport---------+
// +---Object---+
// +--SubFocus--+
//
// After:
// +----------Viewport---------+
// +---Object---+
// +--SubFocus--+
//
// Example 3: the object is larger than the viewport, so the
// viewport moves to show as much of the object as possible,
// while also trying to center the subfocus.
// Before:
// +----------Viewport---------+
// +---------------Object--------------+
// +-SubFocus-+
//
// After:
// +----------Viewport---------+
// +---------------Object--------------+
// +-SubFocus-+
//
// When constraints cannot be fully satisfied, the min
// (left/top) position takes precedence over the max (right/bottom).
//
// Note that the return value represents the ideal new scroll offset.
// This may be out of range - the calling function should clip this
// to the available range.
static int computeBestScrollOffset(int currentScrollOffset, int subfocusMin, int subfocusMax, int objectMin, int objectMax, int viewportMin, int viewportMax)
{
int viewportSize = viewportMax - viewportMin;
// If the object size is larger than the viewport size, consider
// only a portion that's as large as the viewport, centering on
// the subfocus as much as possible.
if (objectMax - objectMin > viewportSize) {
// Since it's impossible to fit the whole object in the
// viewport, exit now if the subfocus is already within the viewport.
if (subfocusMin - currentScrollOffset >= viewportMin && subfocusMax - currentScrollOffset <= viewportMax)
return currentScrollOffset;
// Subfocus must be within focus.
subfocusMin = std::max(subfocusMin, objectMin);
subfocusMax = std::min(subfocusMax, objectMax);
// Subfocus must be no larger than the viewport size; favor top/left.
if (subfocusMax - subfocusMin > viewportSize)
subfocusMax = subfocusMin + viewportSize;
// Compute the size of an object centered on the subfocus, the size of the viewport.
int centeredObjectMin = (subfocusMin + subfocusMax - viewportSize) / 2;
int centeredObjectMax = centeredObjectMin + viewportSize;
objectMin = std::max(objectMin, centeredObjectMin);
objectMax = std::min(objectMax, centeredObjectMax);
}
// Exit now if the focus is already within the viewport.
if (objectMin - currentScrollOffset >= viewportMin
&& objectMax - currentScrollOffset <= viewportMax)
return currentScrollOffset;
// Center the object in the viewport.
return (objectMin + objectMax - viewportMin - viewportMax) / 2;
}
bool AccessibilityObject::isOnscreen() const
{
bool isOnscreen = true;
// To figure out if the element is onscreen, we start by building of a stack starting with the
// element, and then include every scrollable parent in the hierarchy.
Vector<const AccessibilityObject*> objects;
objects.append(this);
for (AccessibilityObject* parentObject = this->parentObject(); parentObject; parentObject = parentObject->parentObject()) {
if (parentObject->getScrollableAreaIfScrollable())
objects.append(parentObject);
}
// Now, go back through that chain and make sure each inner object is within the
// visible bounds of the outer object.
size_t levels = objects.size() - 1;
for (size_t i = levels; i >= 1; i--) {
const AccessibilityObject* outer = objects[i];
const AccessibilityObject* inner = objects[i - 1];
// FIXME: unclear if we need LegacyIOSDocumentVisibleRect.
const IntRect outerRect = i < levels ? snappedIntRect(outer->boundingBoxRect()) : outer->getScrollableAreaIfScrollable()->visibleContentRect(ScrollableArea::LegacyIOSDocumentVisibleRect);
const IntRect innerRect = snappedIntRect(inner->isAccessibilityScrollView() ? inner->parentObject()->boundingBoxRect() : inner->boundingBoxRect());
if (!outerRect.intersects(innerRect)) {
isOnscreen = false;
break;
}
}
return isOnscreen;
}
void AccessibilityObject::scrollToMakeVisible() const
{
scrollToMakeVisible({ SelectionRevealMode::Reveal, ScrollAlignment::alignCenterIfNeeded, ScrollAlignment::alignCenterIfNeeded, ShouldAllowCrossOriginScrolling::Yes });
}
void AccessibilityObject::scrollToMakeVisible(const ScrollRectToVisibleOptions& options) const
{
if (isScrollView() && parentObject())
parentObject()->scrollToMakeVisible();
if (auto* renderer = this->renderer())
renderer->scrollRectToVisible(boundingBoxRect(), false, options);
}
void AccessibilityObject::scrollToMakeVisibleWithSubFocus(const IntRect& subfocus) const
{
// Search up the parent chain until we find the first one that's scrollable.
AccessibilityObject* scrollParent = parentObject();
ScrollableArea* scrollableArea;
for (scrollableArea = nullptr;
scrollParent && !(scrollableArea = scrollParent->getScrollableAreaIfScrollable());
scrollParent = scrollParent->parentObject()) { }
if (!scrollableArea)
return;
LayoutRect objectRect = boundingBoxRect();
IntPoint scrollPosition = scrollableArea->scrollPosition();
// FIXME: unclear if we need LegacyIOSDocumentVisibleRect.
IntRect scrollVisibleRect = scrollableArea->visibleContentRect(ScrollableArea::LegacyIOSDocumentVisibleRect);
if (!scrollParent->isScrollView()) {
objectRect.moveBy(scrollPosition);
objectRect.moveBy(-snappedIntRect(scrollParent->elementRect()).location());
}
int desiredX = computeBestScrollOffset(
scrollPosition.x(),
objectRect.x() + subfocus.x(), objectRect.x() + subfocus.maxX(),
objectRect.x(), objectRect.maxX(),
0, scrollVisibleRect.width());
int desiredY = computeBestScrollOffset(
scrollPosition.y(),
objectRect.y() + subfocus.y(), objectRect.y() + subfocus.maxY(),
objectRect.y(), objectRect.maxY(),
0, scrollVisibleRect.height());
scrollParent->scrollTo(IntPoint(desiredX, desiredY));
// Convert the subfocus into the coordinates of the scroll parent.
IntRect newSubfocus = subfocus;
IntRect newElementRect = snappedIntRect(elementRect());
IntRect scrollParentRect = snappedIntRect(scrollParent->elementRect());
newSubfocus.move(newElementRect.x(), newElementRect.y());
newSubfocus.move(-scrollParentRect.x(), -scrollParentRect.y());
// Recursively make sure the scroll parent itself is visible.
if (scrollParent->parentObject())
scrollParent->scrollToMakeVisibleWithSubFocus(newSubfocus);
}
void AccessibilityObject::scrollToGlobalPoint(const IntPoint& globalPoint) const
{
// Search up the parent chain and create a vector of all scrollable parent objects
// and ending with this object itself.
Vector<const AccessibilityObject*> objects;
objects.append(this);
for (AccessibilityObject* parentObject = this->parentObject(); parentObject; parentObject = parentObject->parentObject()) {
if (parentObject->getScrollableAreaIfScrollable())
objects.append(parentObject);
}
objects.reverse();
// Start with the outermost scrollable (the main window) and try to scroll the
// next innermost object to the given point.
int offsetX = 0, offsetY = 0;
IntPoint point = globalPoint;
size_t levels = objects.size() - 1;
for (size_t i = 0; i < levels; i++) {
const AccessibilityObject* outer = objects[i];
const AccessibilityObject* inner = objects[i + 1];
ScrollableArea* scrollableArea = outer->getScrollableAreaIfScrollable();
LayoutRect innerRect = inner->isAccessibilityScrollView() ? inner->parentObject()->boundingBoxRect() : inner->boundingBoxRect();
LayoutRect objectRect = innerRect;
IntPoint scrollPosition = scrollableArea->scrollPosition();
// Convert the object rect into local coordinates.
objectRect.move(offsetX, offsetY);
if (!outer->isAccessibilityScrollView())
objectRect.move(scrollPosition.x(), scrollPosition.y());
int desiredX = computeBestScrollOffset(
0,
objectRect.x(), objectRect.maxX(),
objectRect.x(), objectRect.maxX(),
point.x(), point.x());
int desiredY = computeBestScrollOffset(
0,
objectRect.y(), objectRect.maxY(),
objectRect.y(), objectRect.maxY(),
point.y(), point.y());
outer->scrollTo(IntPoint(desiredX, desiredY));
if (outer->isAccessibilityScrollView() && !inner->isAccessibilityScrollView()) {
// If outer object we just scrolled is a scroll view (main window or iframe) but the
// inner object is not, keep track of the coordinate transformation to apply to
// future nested calculations.
scrollPosition = scrollableArea->scrollPosition();
offsetX -= (scrollPosition.x() + point.x());
offsetY -= (scrollPosition.y() + point.y());
point.move(scrollPosition.x() - innerRect.x(),
scrollPosition.y() - innerRect.y());
} else if (inner->isAccessibilityScrollView()) {
// Otherwise, if the inner object is a scroll view, reset the coordinate transformation.
offsetX = 0;
offsetY = 0;
}
}
}
void AccessibilityObject::scrollAreaAndAncestor(std::pair<ScrollableArea*, AccessibilityObject*>& scrollers) const
{
// Search up the parent chain until we find the first one that's scrollable.
scrollers.first = nullptr;
for (scrollers.second = parentObject(); scrollers.second; scrollers.second = scrollers.second->parentObject()) {
if ((scrollers.first = scrollers.second->getScrollableAreaIfScrollable()))
break;
}
}
ScrollableArea* AccessibilityObject::scrollableAreaAncestor() const
{
std::pair<ScrollableArea*, AccessibilityObject*> scrollers;
scrollAreaAndAncestor(scrollers);
return scrollers.first;
}
IntPoint AccessibilityObject::scrollPosition() const
{
if (auto scroller = scrollableAreaAncestor())
return scroller->scrollPosition();
return IntPoint();
}
IntRect AccessibilityObject::scrollVisibleContentRect() const
{
if (auto scroller = scrollableAreaAncestor())
return scroller->visibleContentRect(ScrollableArea::LegacyIOSDocumentVisibleRect);
return IntRect();
}
IntSize AccessibilityObject::scrollContentsSize() const
{
if (auto scroller = scrollableAreaAncestor())
return scroller->contentsSize();
return IntSize();
}
bool AccessibilityObject::scrollByPage(ScrollByPageDirection direction) const
{
std::pair<ScrollableArea*, AccessibilityObject*> scrollers;
scrollAreaAndAncestor(scrollers);
ScrollableArea* scrollableArea = scrollers.first;
AccessibilityObject* scrollParent = scrollers.second;
if (!scrollableArea)
return false;
IntPoint scrollPosition = scrollableArea->scrollPosition();
IntPoint newScrollPosition = scrollPosition;
IntSize scrollSize = scrollableArea->contentsSize();
IntRect scrollVisibleRect = scrollableArea->visibleContentRect(ScrollableArea::LegacyIOSDocumentVisibleRect);
switch (direction) {
case ScrollByPageDirection::Right: {
int scrollAmount = scrollVisibleRect.size().width();
int newX = scrollPosition.x() - scrollAmount;
newScrollPosition.setX(std::max(newX, 0));
break;
}
case ScrollByPageDirection::Left: {
int scrollAmount = scrollVisibleRect.size().width();
int newX = scrollAmount + scrollPosition.x();
int maxX = scrollSize.width() - scrollAmount;
newScrollPosition.setX(std::min(newX, maxX));
break;
}
case ScrollByPageDirection::Up: {
int scrollAmount = scrollVisibleRect.size().height();
int newY = scrollPosition.y() - scrollAmount;
newScrollPosition.setY(std::max(newY, 0));
break;
}
case ScrollByPageDirection::Down: {
int scrollAmount = scrollVisibleRect.size().height();
int newY = scrollAmount + scrollPosition.y();
int maxY = scrollSize.height() - scrollAmount;
newScrollPosition.setY(std::min(newY, maxY));
break;
}
}
if (newScrollPosition != scrollPosition) {
scrollParent->scrollTo(newScrollPosition);
document()->updateLayoutIgnorePendingStylesheets();
return true;
}
return false;
}
bool AccessibilityObject::lastKnownIsIgnoredValue()
{
if (m_lastKnownIsIgnoredValue == AccessibilityObjectInclusion::DefaultBehavior)
m_lastKnownIsIgnoredValue = accessibilityIsIgnored() ? AccessibilityObjectInclusion::IgnoreObject : AccessibilityObjectInclusion::IncludeObject;
return m_lastKnownIsIgnoredValue == AccessibilityObjectInclusion::IgnoreObject;
}
void AccessibilityObject::setLastKnownIsIgnoredValue(bool isIgnored)
{
m_lastKnownIsIgnoredValue = isIgnored ? AccessibilityObjectInclusion::IgnoreObject : AccessibilityObjectInclusion::IncludeObject;
}
void AccessibilityObject::notifyIfIgnoredValueChanged()
{
bool isIgnored = accessibilityIsIgnored();
if (lastKnownIsIgnoredValue() != isIgnored) {
if (AXObjectCache* cache = axObjectCache())
cache->childrenChanged(parentObject());
setLastKnownIsIgnoredValue(isIgnored);
}
}
bool AccessibilityObject::pressedIsPresent() const
{
return !getAttribute(aria_pressedAttr).isEmpty();
}
TextIteratorBehavior AccessibilityObject::textIteratorBehaviorForTextRange() const
{
TextIteratorBehavior behavior = TextIteratorIgnoresStyleVisibility;
#if USE(ATK)
// We need to emit replaced elements for GTK, and present
// them with the 'object replacement character' (0xFFFC).
behavior = static_cast<TextIteratorBehavior>(behavior | TextIteratorEmitsObjectReplacementCharacters);
#endif
return behavior;
}
AccessibilityRole AccessibilityObject::buttonRoleType() const
{
// If aria-pressed is present, then it should be exposed as a toggle button.
// http://www.w3.org/TR/wai-aria/states_and_properties#aria-pressed
if (pressedIsPresent())
return AccessibilityRole::ToggleButton;
if (hasPopup())
return AccessibilityRole::PopUpButton;
// We don't contemplate AccessibilityRole::RadioButton, as it depends on the input
// type.
return AccessibilityRole::Button;
}
bool AccessibilityObject::isButton() const
{
AccessibilityRole role = roleValue();
return role == AccessibilityRole::Button || role == AccessibilityRole::PopUpButton || role == AccessibilityRole::ToggleButton;
}
bool AccessibilityObject::accessibilityIsIgnoredByDefault() const
{
return defaultObjectInclusion() == AccessibilityObjectInclusion::IgnoreObject;
}
// ARIA component of hidden definition.
// http://www.w3.org/TR/wai-aria/terms#def_hidden
bool AccessibilityObject::isAXHidden() const
{
return AccessibilityObject::matchedParent(*this, true, [] (const AccessibilityObject& object) {
return equalLettersIgnoringASCIICase(object.getAttribute(aria_hiddenAttr), "true");
}) != nullptr;
}
// DOM component of hidden definition.
// http://www.w3.org/TR/wai-aria/terms#def_hidden
bool AccessibilityObject::isDOMHidden() const
{
RenderObject* renderer = this->renderer();
if (!renderer)
return true;
const RenderStyle& style = renderer->style();
return style.display() == DisplayType::None || style.visibility() != Visibility::Visible;
}
bool AccessibilityObject::isShowingValidationMessage() const
{
if (is<HTMLFormControlElement>(node()))
return downcast<HTMLFormControlElement>(*node()).isShowingValidationMessage();
return false;
}
String AccessibilityObject::validationMessage() const
{
if (is<HTMLFormControlElement>(node()))
return downcast<HTMLFormControlElement>(*node()).validationMessage();
return String();
}
AccessibilityObjectInclusion AccessibilityObject::defaultObjectInclusion() const
{
bool useParentData = !m_isIgnoredFromParentData.isNull();
if (useParentData ? m_isIgnoredFromParentData.isAXHidden : isAXHidden())
return AccessibilityObjectInclusion::IgnoreObject;
if (ignoredFromModalPresence())
return AccessibilityObjectInclusion::IgnoreObject;
if (useParentData ? m_isIgnoredFromParentData.isPresentationalChildOfAriaRole : isPresentationalChildOfAriaRole())
return AccessibilityObjectInclusion::IgnoreObject;
return accessibilityPlatformIncludesObject();
}
bool AccessibilityObject::accessibilityIsIgnored() const
{
AXComputedObjectAttributeCache* attributeCache = nullptr;
AXObjectCache* cache = axObjectCache();
if (cache)
attributeCache = cache->computedObjectAttributeCache();
if (attributeCache) {
AccessibilityObjectInclusion ignored = attributeCache->getIgnored(axObjectID());
switch (ignored) {
case AccessibilityObjectInclusion::IgnoreObject:
return true;
case AccessibilityObjectInclusion::IncludeObject:
return false;
case AccessibilityObjectInclusion::DefaultBehavior:
break;
}
}
bool result = computeAccessibilityIsIgnored();
// In case computing axIsIgnored disables attribute caching, we should refetch the object to see if it exists.
if (cache && (attributeCache = cache->computedObjectAttributeCache()))
attributeCache->setIgnored(axObjectID(), result ? AccessibilityObjectInclusion::IgnoreObject : AccessibilityObjectInclusion::IncludeObject);
return result;
}
void AccessibilityObject::elementsFromAttribute(Vector<Element*>& elements, const QualifiedName& attribute) const
{
Node* node = this->node();
if (!node || !node->isElementNode())
return;
TreeScope& treeScope = node->treeScope();
const AtomString& idList = getAttribute(attribute);
if (idList.isEmpty())
return;
auto spaceSplitString = SpaceSplitString(idList, false);
size_t length = spaceSplitString.size();
for (size_t i = 0; i < length; ++i) {
if (auto* idElement = treeScope.getElementById(spaceSplitString[i]))
elements.append(idElement);
}
}
#if PLATFORM(COCOA)
bool AccessibilityObject::preventKeyboardDOMEventDispatch() const
{
Frame* frame = this->frame();
return frame && frame->settings().preventKeyboardDOMEventDispatch();
}
void AccessibilityObject::setPreventKeyboardDOMEventDispatch(bool on)
{
Frame* frame = this->frame();
if (!frame)
return;
frame->settings().setPreventKeyboardDOMEventDispatch(on);
}
#endif
AccessibilityObject* AccessibilityObject::focusableAncestor()
{
return const_cast<AccessibilityObject*>(AccessibilityObject::matchedParent(*this, true, [] (const AccessibilityObject& object) {
return object.canSetFocusAttribute();
}));
}
AccessibilityObject* AccessibilityObject::editableAncestor()
{
return const_cast<AccessibilityObject*>(AccessibilityObject::matchedParent(*this, true, [] (const AccessibilityObject& object) {
return object.isTextControl();
}));
}
AccessibilityObject* AccessibilityObject::highestEditableAncestor()
{
AccessibilityObject* editableAncestor = this->editableAncestor();
AccessibilityObject* previousEditableAncestor = nullptr;
while (editableAncestor) {
if (editableAncestor == previousEditableAncestor) {
if (AccessibilityObject* parent = editableAncestor->parentObject()) {
editableAncestor = parent->editableAncestor();
continue;
}
break;
}
previousEditableAncestor = editableAncestor;
editableAncestor = editableAncestor->editableAncestor();
}
return previousEditableAncestor;
}
AccessibilityObject* AccessibilityObject::radioGroupAncestor() const
{
return const_cast<AccessibilityObject*>(AccessibilityObject::matchedParent(*this, false, [] (const AccessibilityObject& object) {
return object.isRadioGroup();
}));
}
bool AccessibilityObject::isStyleFormatGroup() const
{
Node* node = this->node();
if (!node)
return false;
return node->hasTagName(kbdTag) || node->hasTagName(codeTag)
|| node->hasTagName(preTag) || node->hasTagName(sampTag)
|| node->hasTagName(varTag) || node->hasTagName(citeTag)
|| node->hasTagName(insTag) || node->hasTagName(delTag)
|| node->hasTagName(supTag) || node->hasTagName(subTag);
}
bool AccessibilityObject::isSubscriptStyleGroup() const
{
Node* node = this->node();
return node && node->hasTagName(subTag);
}
bool AccessibilityObject::isSuperscriptStyleGroup() const
{
Node* node = this->node();
return node && node->hasTagName(supTag);
}
bool AccessibilityObject::isFigureElement() const
{
Node* node = this->node();
return node && node->hasTagName(figureTag);
}
bool AccessibilityObject::isKeyboardFocusable() const
{
if (auto element = this->element())
return element->isFocusable();
return false;
}
bool AccessibilityObject::isOutput() const
{
Node* node = this->node();
return node && node->hasTagName(outputTag);
}
bool AccessibilityObject::isContainedByPasswordField() const
{
Node* node = this->node();
if (!node)
return false;
if (ariaRoleAttribute() != AccessibilityRole::Unknown)
return false;
Element* element = node->shadowHost();
return is<HTMLInputElement>(element) && downcast<HTMLInputElement>(*element).isPasswordField();
}
AccessibilityObject* AccessibilityObject::selectedListItem()
{
for (const auto& child : children()) {
if (child->isListItem() && (child->isSelected() || child->isActiveDescendantOfFocusedContainer()))
return child.get();
}
return nullptr;
}
void AccessibilityObject::ariaElementsFromAttribute(AccessibilityChildrenVector& children, const QualifiedName& attributeName) const
{
Vector<Element*> elements;
elementsFromAttribute(elements, attributeName);
AXObjectCache* cache = axObjectCache();
for (const auto& element : elements) {
if (AccessibilityObject* axObject = cache->getOrCreate(element))
children.append(axObject);
}
}
void AccessibilityObject::ariaElementsReferencedByAttribute(AccessibilityChildrenVector& elements, const QualifiedName& attribute) const
{
auto id = identifierAttribute();
if (id.isEmpty())
return;
AXObjectCache* cache = axObjectCache();
if (!cache)
return;
for (auto& element : descendantsOfType<Element>(node()->treeScope().rootNode())) {
const AtomString& idList = element.attributeWithoutSynchronization(attribute);
if (!SpaceSplitString(idList, false).contains(id))
continue;
if (AccessibilityObject* axObject = cache->getOrCreate(&element))
elements.append(axObject);
}
}
bool AccessibilityObject::isActiveDescendantOfFocusedContainer() const
{
AccessibilityChildrenVector containers;
ariaActiveDescendantReferencingElements(containers);
for (auto& container : containers) {
if (container->isFocused())
return true;
}
return false;
}
void AccessibilityObject::ariaActiveDescendantReferencingElements(AccessibilityChildrenVector& containers) const
{
ariaElementsReferencedByAttribute(containers, aria_activedescendantAttr);
}
void AccessibilityObject::ariaControlsElements(AccessibilityChildrenVector& ariaControls) const
{
ariaElementsFromAttribute(ariaControls, aria_controlsAttr);
}
void AccessibilityObject::ariaControlsReferencingElements(AccessibilityChildrenVector& controllers) const
{
ariaElementsReferencedByAttribute(controllers, aria_controlsAttr);
}
void AccessibilityObject::ariaDescribedByElements(AccessibilityChildrenVector& ariaDescribedBy) const
{
ariaElementsFromAttribute(ariaDescribedBy, aria_describedbyAttr);
}
void AccessibilityObject::ariaDescribedByReferencingElements(AccessibilityChildrenVector& describers) const
{
ariaElementsReferencedByAttribute(describers, aria_describedbyAttr);
}
void AccessibilityObject::ariaDetailsElements(AccessibilityChildrenVector& ariaDetails) const
{
ariaElementsFromAttribute(ariaDetails, aria_detailsAttr);
}
void AccessibilityObject::ariaDetailsReferencingElements(AccessibilityChildrenVector& detailsFor) const
{
ariaElementsReferencedByAttribute(detailsFor, aria_detailsAttr);
}
void AccessibilityObject::ariaErrorMessageElements(AccessibilityChildrenVector& ariaErrorMessage) const
{
ariaElementsFromAttribute(ariaErrorMessage, aria_errormessageAttr);
}
void AccessibilityObject::ariaErrorMessageReferencingElements(AccessibilityChildrenVector& errorMessageFor) const
{
ariaElementsReferencedByAttribute(errorMessageFor, aria_errormessageAttr);
}
void AccessibilityObject::ariaFlowToElements(AccessibilityChildrenVector& flowTo) const
{
ariaElementsFromAttribute(flowTo, aria_flowtoAttr);
}
void AccessibilityObject::ariaFlowToReferencingElements(AccessibilityChildrenVector& flowFrom) const
{
ariaElementsReferencedByAttribute(flowFrom, aria_flowtoAttr);
}
void AccessibilityObject::ariaLabelledByElements(AccessibilityChildrenVector& ariaLabelledBy) const
{
ariaElementsFromAttribute(ariaLabelledBy, aria_labelledbyAttr);
if (!ariaLabelledBy.size())
ariaElementsFromAttribute(ariaLabelledBy, aria_labeledbyAttr);
}
void AccessibilityObject::ariaLabelledByReferencingElements(AccessibilityChildrenVector& labels) const
{
ariaElementsReferencedByAttribute(labels, aria_labelledbyAttr);
if (!labels.size())
ariaElementsReferencedByAttribute(labels, aria_labeledbyAttr);
}
void AccessibilityObject::ariaOwnsElements(AccessibilityChildrenVector& axObjects) const
{
ariaElementsFromAttribute(axObjects, aria_ownsAttr);
}
void AccessibilityObject::ariaOwnsReferencingElements(AccessibilityChildrenVector& owners) const
{
ariaElementsReferencedByAttribute(owners, aria_ownsAttr);
}
void AccessibilityObject::setIsIgnoredFromParentDataForChild(AccessibilityObject* child)
{
if (!child)
return;
if (child->parentObject() != this) {
child->clearIsIgnoredFromParentData();
return;
}
AccessibilityIsIgnoredFromParentData result = AccessibilityIsIgnoredFromParentData(this);
if (!m_isIgnoredFromParentData.isNull()) {
result.isAXHidden = m_isIgnoredFromParentData.isAXHidden || equalLettersIgnoringASCIICase(child->getAttribute(aria_hiddenAttr), "true");
result.isPresentationalChildOfAriaRole = m_isIgnoredFromParentData.isPresentationalChildOfAriaRole || ariaRoleHasPresentationalChildren();
result.isDescendantOfBarrenParent = m_isIgnoredFromParentData.isDescendantOfBarrenParent || !canHaveChildren();
} else {
result.isAXHidden = child->isAXHidden();
result.isPresentationalChildOfAriaRole = child->isPresentationalChildOfAriaRole();
result.isDescendantOfBarrenParent = child->isDescendantOfBarrenParent();
}
child->setIsIgnoredFromParentData(result);
}
} // namespace WebCore