2018-05-25 17:55:52 +03:00
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/* -*- Mode: C++; tab-width: 2; indent-tabs-mode: nil; c-basic-offset: 2 -*- */
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/* vim: set ts=2 et sw=2 tw=80: */
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/* This Source Code Form is subject to the terms of the Mozilla Public
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* License, v. 2.0. If a copy of the MPL was not distributed with this file,
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* You can obtain one at http://mozilla.org/MPL/2.0/. */
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#include "TableAccessible.h"
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#include "Accessible-inl.h"
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2018-09-26 11:47:35 +03:00
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#include "AccIterator.h"
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2018-05-25 17:55:52 +03:00
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#include "nsTableCellFrame.h"
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#include "nsTableWrapperFrame.h"
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using namespace mozilla;
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using namespace mozilla::a11y;
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bool TableAccessible::IsProbablyLayoutTable() {
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// Implement a heuristic to determine if table is most likely used for layout.
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// XXX do we want to look for rowspan or colspan, especialy that span all but
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// a couple cells at the beginning or end of a row/col, and especially when
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// they occur at the edge of a table?
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// XXX For now debugging descriptions are always on via SHOW_LAYOUT_HEURISTIC
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// This will allow release trunk builds to be used by testers to refine
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// the algorithm. Integrate it into Logging.
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// Change to |#define SHOW_LAYOUT_HEURISTIC DEBUG| before final release
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#ifdef SHOW_LAYOUT_HEURISTIC
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# define RETURN_LAYOUT_ANSWER(isLayout, heuristic) \
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{ \
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mLayoutHeuristic = isLayout \
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? NS_LITERAL_STRING("layout table: " heuristic) \
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: NS_LITERAL_STRING("data table: " heuristic); \
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return isLayout; \
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}
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#else
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# define RETURN_LAYOUT_ANSWER(isLayout, heuristic) \
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{ return isLayout; }
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#endif
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Accessible* thisacc = AsAccessible();
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// Need to see all elements while document is being edited.
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if (thisacc->Document()->State() & states::EDITABLE) {
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RETURN_LAYOUT_ANSWER(false, "In editable document");
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}
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// Check to see if an ARIA role overrides the role from native markup,
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// but for which we still expose table semantics (treegrid, for example).
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if (thisacc->HasARIARole()) {
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RETURN_LAYOUT_ANSWER(false, "Has role attribute");
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}
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dom::Element* el = thisacc->Elm();
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if (el->IsMathMLElement(nsGkAtoms::mtable_)) {
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RETURN_LAYOUT_ANSWER(false, "MathML matrix");
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}
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MOZ_ASSERT(el->IsHTMLElement(nsGkAtoms::table),
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"Table should not be built by CSS display:table style");
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// Check if datatable attribute has "0" value.
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if (el->AttrValueIs(kNameSpaceID_None, nsGkAtoms::datatable,
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NS_LITERAL_STRING("0"), eCaseMatters)) {
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RETURN_LAYOUT_ANSWER(true, "Has datatable = 0 attribute, it's for layout");
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}
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// Check for legitimate data table attributes.
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nsAutoString summary;
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if (el->GetAttr(kNameSpaceID_None, nsGkAtoms::summary, summary) &&
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!summary.IsEmpty()) {
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RETURN_LAYOUT_ANSWER(false, "Has summary -- legitimate table structures");
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}
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// Check for legitimate data table elements.
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Accessible* caption = thisacc->FirstChild();
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if (caption && caption->IsHTMLCaption() && caption->HasChildren()) {
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RETURN_LAYOUT_ANSWER(false,
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"Not empty caption -- legitimate table structures");
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}
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for (nsIContent* childElm = el->GetFirstChild(); childElm;
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childElm = childElm->GetNextSibling()) {
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if (!childElm->IsHTMLElement()) continue;
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2018-11-30 13:46:48 +03:00
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2018-05-25 17:55:52 +03:00
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if (childElm->IsAnyOfHTMLElements(nsGkAtoms::col, nsGkAtoms::colgroup,
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nsGkAtoms::tfoot, nsGkAtoms::thead)) {
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RETURN_LAYOUT_ANSWER(
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false,
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"Has col, colgroup, tfoot or thead -- legitimate table structures");
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}
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if (childElm->IsHTMLElement(nsGkAtoms::tbody)) {
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for (nsIContent* rowElm = childElm->GetFirstChild(); rowElm;
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rowElm = rowElm->GetNextSibling()) {
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if (rowElm->IsHTMLElement(nsGkAtoms::tr)) {
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for (nsIContent* cellElm = rowElm->GetFirstChild(); cellElm;
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cellElm = cellElm->GetNextSibling()) {
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if (cellElm->IsHTMLElement()) {
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if (cellElm->NodeInfo()->Equals(nsGkAtoms::th)) {
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RETURN_LAYOUT_ANSWER(false,
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"Has th -- legitimate table structures");
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}
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if (cellElm->AsElement()->HasAttr(kNameSpaceID_None,
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nsGkAtoms::headers) ||
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cellElm->AsElement()->HasAttr(kNameSpaceID_None,
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nsGkAtoms::scope) ||
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cellElm->AsElement()->HasAttr(kNameSpaceID_None,
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nsGkAtoms::abbr)) {
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RETURN_LAYOUT_ANSWER(false,
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"Has headers, scope, or abbr attribute -- "
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"legitimate table structures");
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}
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Accessible* cell = thisacc->Document()->GetAccessible(cellElm);
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if (cell && cell->ChildCount() == 1 &&
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cell->FirstChild()->IsAbbreviation()) {
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RETURN_LAYOUT_ANSWER(false,
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"has abbr -- legitimate table structures");
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}
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}
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}
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}
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}
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}
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}
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// Check for nested tables.
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nsCOMPtr<nsIHTMLCollection> nestedTables =
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el->GetElementsByTagName(NS_LITERAL_STRING("table"));
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if (nestedTables->Length() > 0) {
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RETURN_LAYOUT_ANSWER(true, "Has a nested table within it");
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}
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// If only 1 column or only 1 row, it's for layout.
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auto colCount = ColCount();
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if (colCount <= 1) {
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RETURN_LAYOUT_ANSWER(true, "Has only 1 column");
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}
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auto rowCount = RowCount();
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if (rowCount <= 1) {
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RETURN_LAYOUT_ANSWER(true, "Has only 1 row");
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}
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// Check for many columns.
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if (colCount >= 5) {
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RETURN_LAYOUT_ANSWER(false, ">=5 columns");
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}
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// Now we know there are 2-4 columns and 2 or more rows. Check to see if
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// there are visible borders on the cells.
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// XXX currently, we just check the first cell -- do we really need to do
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// more?
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nsTableWrapperFrame* tableFrame = do_QueryFrame(el->GetPrimaryFrame());
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if (!tableFrame) {
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RETURN_LAYOUT_ANSWER(false, "table with no frame!");
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}
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nsIFrame* cellFrame = tableFrame->GetCellFrameAt(0, 0);
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if (!cellFrame) {
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RETURN_LAYOUT_ANSWER(false, "table's first cell has no frame!");
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}
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nsMargin border;
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cellFrame->GetXULBorder(border);
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if (border.top && border.bottom && border.left && border.right) {
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RETURN_LAYOUT_ANSWER(false, "Has nonzero border-width on table cell");
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}
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// Rules for non-bordered tables with 2-4 columns and 2+ rows from here on
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// forward.
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// Check for styled background color across rows (alternating background
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// color is a common feature for data tables).
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auto childCount = thisacc->ChildCount();
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nscolor rowColor = 0;
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nscolor prevRowColor;
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for (auto childIdx = 0U; childIdx < childCount; childIdx++) {
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Accessible* child = thisacc->GetChildAt(childIdx);
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if (child->IsHTMLTableRow()) {
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prevRowColor = rowColor;
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nsIFrame* rowFrame = child->GetFrame();
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MOZ_ASSERT(rowFrame, "Table hierarchy got screwed up");
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if (!rowFrame) {
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RETURN_LAYOUT_ANSWER(false, "Unexpected table hierarchy");
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}
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rowColor = rowFrame->StyleBackground()->BackgroundColor(rowFrame);
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if (childIdx > 0 && prevRowColor != rowColor) {
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RETURN_LAYOUT_ANSWER(false,
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"2 styles of row background color, non-bordered");
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}
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}
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}
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// Check for many rows.
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const uint32_t kMaxLayoutRows = 20;
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if (rowCount > kMaxLayoutRows) { // A ton of rows, this is probably for data
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RETURN_LAYOUT_ANSWER(false, ">= kMaxLayoutRows (20) and non-bordered");
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}
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// Check for very wide table.
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nsIFrame* documentFrame = thisacc->Document()->GetFrame();
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nsSize documentSize = documentFrame->GetSize();
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if (documentSize.width > 0) {
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nsSize tableSize = thisacc->GetFrame()->GetSize();
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int32_t percentageOfDocWidth = (100 * tableSize.width) / documentSize.width;
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if (percentageOfDocWidth > 95) {
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// 3-4 columns, no borders, not a lot of rows, and 95% of the doc's width
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// Probably for layout
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RETURN_LAYOUT_ANSWER(
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true, "<= 4 columns, table width is 95% of document width");
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}
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}
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// Two column rules.
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if (rowCount * colCount <= 10) {
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RETURN_LAYOUT_ANSWER(true, "2-4 columns, 10 cells or less, non-bordered");
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}
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static const nsLiteralString tags[] = {NS_LITERAL_STRING("embed"),
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NS_LITERAL_STRING("object"),
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NS_LITERAL_STRING("iframe")};
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for (auto& tag : tags) {
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nsCOMPtr<nsIHTMLCollection> descendants = el->GetElementsByTagName(tag);
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if (descendants->Length() > 0) {
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RETURN_LAYOUT_ANSWER(true,
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"Has no borders, and has iframe, object or embed, "
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"typical of advertisements");
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}
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}
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RETURN_LAYOUT_ANSWER(false,
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"No layout factor strong enough, so will guess data");
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}
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2018-09-26 11:47:35 +03:00
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Accessible* TableAccessible::RowAt(int32_t aRow) {
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int32_t rowIdx = aRow;
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AccIterator rowIter(this->AsAccessible(), filters::GetRow);
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Accessible* row = rowIter.Next();
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while (rowIdx != 0 && (row = rowIter.Next())) {
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rowIdx--;
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}
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return row;
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}
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Accessible* TableAccessible::CellInRowAt(Accessible* aRow, int32_t aColumn) {
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int32_t colIdx = aColumn;
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AccIterator cellIter(aRow, filters::GetCell);
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2018-10-19 11:18:04 +03:00
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Accessible* cell = nullptr;
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2018-11-30 13:46:48 +03:00
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2018-10-19 11:18:04 +03:00
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while (colIdx >= 0 && (cell = cellIter.Next())) {
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MOZ_ASSERT(cell->IsTableCell(), "No table or grid cell!");
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colIdx -= cell->AsTableCell()->ColExtent();
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2018-09-26 11:47:35 +03:00
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}
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return cell;
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}
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int32_t TableAccessible::ColIndexAt(uint32_t aCellIdx) {
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uint32_t colCount = ColCount();
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if (colCount < 1 || aCellIdx >= colCount * RowCount()) {
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return -1; // Error: column count is 0 or index out of bounds.
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}
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return aCellIdx % colCount;
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}
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int32_t TableAccessible::RowIndexAt(uint32_t aCellIdx) {
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uint32_t colCount = ColCount();
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if (colCount < 1 || aCellIdx >= colCount * RowCount()) {
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return -1; // Error: column count is 0 or index out of bounds.
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}
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return aCellIdx / colCount;
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}
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void TableAccessible::RowAndColIndicesAt(uint32_t aCellIdx, int32_t* aRowIdx,
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int32_t* aColIdx) {
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uint32_t colCount = ColCount();
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if (colCount < 1 || aCellIdx >= colCount * RowCount()) {
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*aRowIdx = -1;
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*aColIdx = -1;
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return; // Error: column count is 0 or index out of bounds.
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}
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*aRowIdx = aCellIdx / colCount;
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*aColIdx = aCellIdx % colCount;
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}
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