forked from mirrors/gecko-dev
		
	MozReview-Commit-ID: KrSHLbmovTM --HG-- rename : layout/tables/nsTableOuterFrame.cpp => layout/tables/nsTableWrapperFrame.cpp rename : layout/tables/nsTableOuterFrame.h => layout/tables/nsTableWrapperFrame.h extra : rebase_source : 730a73b8439f1f5c5ccdb32b241deda5224c321c
		
			
				
	
	
		
			399 lines
		
	
	
	
		
			12 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
			
		
		
	
	
			399 lines
		
	
	
	
		
			12 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
/* -*- Mode: C++; tab-width: 2; indent-tabs-mode: nil; c-basic-offset: 2 -*- */
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/* This Source Code Form is subject to the terms of the Mozilla Public
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 * License, v. 2.0. If a copy of the MPL was not distributed with this
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 * file, You can obtain one at http://mozilla.org/MPL/2.0/. */
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#include "GeometryUtils.h"
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#include "mozilla/dom/DOMPointBinding.h"
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#include "mozilla/dom/GeometryUtilsBinding.h"
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#include "mozilla/dom/Element.h"
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#include "mozilla/dom/Text.h"
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#include "mozilla/dom/DOMPoint.h"
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#include "mozilla/dom/DOMQuad.h"
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#include "mozilla/dom/DOMRect.h"
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#include "nsContentUtils.h"
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#include "nsIFrame.h"
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#include "nsGenericDOMDataNode.h"
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#include "nsCSSFrameConstructor.h"
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#include "nsLayoutUtils.h"
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#include "nsSVGUtils.h"
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using namespace mozilla;
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using namespace mozilla::dom;
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namespace mozilla {
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enum GeometryNodeType {
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  GEOMETRY_NODE_ELEMENT,
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  GEOMETRY_NODE_TEXT,
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  GEOMETRY_NODE_DOCUMENT
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};
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static nsIFrame*
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GetFrameForNode(nsINode* aNode, GeometryNodeType aType)
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{
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  nsIDocument* doc = aNode->OwnerDoc();
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  doc->FlushPendingNotifications(Flush_Layout);
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  switch (aType) {
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  case GEOMETRY_NODE_ELEMENT:
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    return aNode->AsContent()->GetPrimaryFrame();
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  case GEOMETRY_NODE_TEXT: {
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    nsIPresShell* presShell = doc->GetShell();
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    if (presShell) {
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      return presShell->FrameConstructor()->EnsureFrameForTextNode(
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          static_cast<nsGenericDOMDataNode*>(aNode));
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    }
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    return nullptr;
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  }
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  case GEOMETRY_NODE_DOCUMENT: {
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    nsIPresShell* presShell = doc->GetShell();
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    return presShell ? presShell->GetRootFrame() : nullptr;
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  }
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  default:
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    MOZ_ASSERT(false, "Unknown GeometryNodeType");
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    return nullptr;
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  }
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}
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static nsIFrame*
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GetFrameForGeometryNode(const Optional<OwningGeometryNode>& aGeometryNode,
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                        nsINode* aDefaultNode)
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{
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  if (!aGeometryNode.WasPassed()) {
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    return GetFrameForNode(aDefaultNode->OwnerDoc(), GEOMETRY_NODE_DOCUMENT);
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  }
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  const OwningGeometryNode& value = aGeometryNode.Value();
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  if (value.IsElement()) {
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    return GetFrameForNode(value.GetAsElement(), GEOMETRY_NODE_ELEMENT);
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  }
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  if (value.IsDocument()) {
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    return GetFrameForNode(value.GetAsDocument(), GEOMETRY_NODE_DOCUMENT);
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  }
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  return GetFrameForNode(value.GetAsText(), GEOMETRY_NODE_TEXT);
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}
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static nsIFrame*
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GetFrameForGeometryNode(const GeometryNode& aGeometryNode)
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{
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  if (aGeometryNode.IsElement()) {
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    return GetFrameForNode(&aGeometryNode.GetAsElement(), GEOMETRY_NODE_ELEMENT);
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  }
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  if (aGeometryNode.IsDocument()) {
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    return GetFrameForNode(&aGeometryNode.GetAsDocument(), GEOMETRY_NODE_DOCUMENT);
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  }
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  return GetFrameForNode(&aGeometryNode.GetAsText(), GEOMETRY_NODE_TEXT);
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}
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static nsIFrame*
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GetFrameForNode(nsINode* aNode)
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{
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  if (aNode->IsElement()) {
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    return GetFrameForNode(aNode, GEOMETRY_NODE_ELEMENT);
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  }
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  if (aNode == aNode->OwnerDoc()) {
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    return GetFrameForNode(aNode, GEOMETRY_NODE_DOCUMENT);
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  }
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  NS_ASSERTION(aNode->IsNodeOfType(nsINode::eTEXT), "Unknown node type");
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  return GetFrameForNode(aNode, GEOMETRY_NODE_TEXT);
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}
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static nsIFrame*
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GetFirstNonAnonymousFrameForGeometryNode(const Optional<OwningGeometryNode>& aNode,
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                                         nsINode* aDefaultNode)
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{
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  nsIFrame* f = GetFrameForGeometryNode(aNode, aDefaultNode);
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  if (f) {
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    f = nsLayoutUtils::GetFirstNonAnonymousFrame(f);
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  }
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  return f;
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}
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static nsIFrame*
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GetFirstNonAnonymousFrameForGeometryNode(const GeometryNode& aNode)
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{
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  nsIFrame* f = GetFrameForGeometryNode(aNode);
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  if (f) {
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    f = nsLayoutUtils::GetFirstNonAnonymousFrame(f);
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  }
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  return f;
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}
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static nsIFrame*
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GetFirstNonAnonymousFrameForNode(nsINode* aNode)
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{
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  nsIFrame* f = GetFrameForNode(aNode);
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  if (f) {
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    f = nsLayoutUtils::GetFirstNonAnonymousFrame(f);
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  }
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  return f;
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}
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/**
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 * This can modify aFrame to point to a different frame. This is needed to
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 * handle SVG, where SVG elements can only compute a rect that's valid with
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 * respect to the "outer SVG" frame.
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 */
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static nsRect
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GetBoxRectForFrame(nsIFrame** aFrame, CSSBoxType aType)
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{
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  nsRect r;
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  nsIFrame* f = nsSVGUtils::GetOuterSVGFrameAndCoveredRegion(*aFrame, &r);
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  if (f && f != *aFrame) {
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    // For non-outer SVG frames, the BoxType is ignored.
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    *aFrame = f;
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    return r;
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  }
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  f = *aFrame;
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  switch (aType) {
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  case CSSBoxType::Content: r = f->GetContentRectRelativeToSelf(); break;
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  case CSSBoxType::Padding: r = f->GetPaddingRectRelativeToSelf(); break;
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  case CSSBoxType::Border: r = nsRect(nsPoint(0, 0), f->GetSize()); break;
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  case CSSBoxType::Margin: {
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    r = nsRect(nsPoint(0, 0), f->GetSize());
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    r.Inflate(f->GetUsedMargin());
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    break;
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  }
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  default: MOZ_ASSERT(false, "unknown box type"); return r;
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  }
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  return r;
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}
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class AccumulateQuadCallback : public nsLayoutUtils::BoxCallback {
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public:
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  AccumulateQuadCallback(nsISupports* aParentObject,
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                         nsTArray<RefPtr<DOMQuad> >& aResult,
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                         nsIFrame* aRelativeToFrame,
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                         const nsPoint& aRelativeToBoxTopLeft,
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                         CSSBoxType aBoxType)
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    : mParentObject(aParentObject)
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    , mResult(aResult)
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    , mRelativeToFrame(aRelativeToFrame)
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    , mRelativeToBoxTopLeft(aRelativeToBoxTopLeft)
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    , mBoxType(aBoxType)
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  {
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    if (mBoxType == CSSBoxType::Margin) {
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      // Don't include the caption margin when computing margins for a
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      // table
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      mIncludeCaptionBoxForTable = false;
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    }
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  }
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  virtual void AddBox(nsIFrame* aFrame) override
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  {
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    nsIFrame* f = aFrame;
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    if (mBoxType == CSSBoxType::Margin &&
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        f->GetType() == nsGkAtoms::tableFrame) {
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      // Margin boxes for table frames should be taken from the table wrapper
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      // frame, since that has the margin.
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      f = f->GetParent();
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    }
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    nsRect box = GetBoxRectForFrame(&f, mBoxType);
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    nsPoint appUnits[4] =
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      { box.TopLeft(), box.TopRight(), box.BottomRight(), box.BottomLeft() };
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    CSSPoint points[4];
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    for (uint32_t i = 0; i < 4; ++i) {
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      points[i] = CSSPoint(nsPresContext::AppUnitsToFloatCSSPixels(appUnits[i].x),
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                           nsPresContext::AppUnitsToFloatCSSPixels(appUnits[i].y));
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    }
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    nsLayoutUtils::TransformResult rv =
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      nsLayoutUtils::TransformPoints(f, mRelativeToFrame, 4, points);
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    if (rv == nsLayoutUtils::TRANSFORM_SUCCEEDED) {
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      CSSPoint delta(nsPresContext::AppUnitsToFloatCSSPixels(mRelativeToBoxTopLeft.x),
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                     nsPresContext::AppUnitsToFloatCSSPixels(mRelativeToBoxTopLeft.y));
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      for (uint32_t i = 0; i < 4; ++i) {
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        points[i] -= delta;
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      }
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    } else {
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      PodArrayZero(points);
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    }
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    mResult.AppendElement(new DOMQuad(mParentObject, points));
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  }
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  nsISupports* mParentObject;
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  nsTArray<RefPtr<DOMQuad> >& mResult;
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  nsIFrame* mRelativeToFrame;
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  nsPoint mRelativeToBoxTopLeft;
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  CSSBoxType mBoxType;
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};
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static nsPresContext*
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FindTopLevelPresContext(nsPresContext* aPC)
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{
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  bool isChrome = aPC->IsChrome();
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  nsPresContext* pc = aPC;
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  for (;;) {
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    nsPresContext* parent = pc->GetParentPresContext();
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    if (!parent || parent->IsChrome() != isChrome) {
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      return pc;
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    }
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    pc = parent;
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  }
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}
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static bool
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CheckFramesInSameTopLevelBrowsingContext(nsIFrame* aFrame1, nsIFrame* aFrame2)
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{
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  nsPresContext* pc1 = aFrame1->PresContext();
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  nsPresContext* pc2 = aFrame2->PresContext();
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  if (pc1 == pc2) {
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    return true;
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  }
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  if (nsContentUtils::IsCallerChrome()) {
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    return true;
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  }
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  if (FindTopLevelPresContext(pc1) == FindTopLevelPresContext(pc2)) {
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    return true;
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  }
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  return false;
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}
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void GetBoxQuads(nsINode* aNode,
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                 const dom::BoxQuadOptions& aOptions,
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                 nsTArray<RefPtr<DOMQuad> >& aResult,
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                 ErrorResult& aRv)
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{
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  nsIFrame* frame = GetFrameForNode(aNode);
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  if (!frame) {
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    // No boxes to return
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    return;
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  }
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  nsWeakFrame weakFrame(frame);
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  nsIDocument* ownerDoc = aNode->OwnerDoc();
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  nsIFrame* relativeToFrame =
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    GetFirstNonAnonymousFrameForGeometryNode(aOptions.mRelativeTo, ownerDoc);
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  // The first frame might be destroyed now if the above call lead to an
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  // EnsureFrameForTextNode call.  We need to get the first frame again
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  // when that happens and re-check it.
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  if (!weakFrame.IsAlive()) {
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    frame = GetFrameForNode(aNode);
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    if (!frame) {
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      // No boxes to return
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      return;
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    }
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  }
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  if (!relativeToFrame) {
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    aRv.Throw(NS_ERROR_DOM_NOT_FOUND_ERR);
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    return;
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  }
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  if (!CheckFramesInSameTopLevelBrowsingContext(frame, relativeToFrame)) {
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    aRv.Throw(NS_ERROR_DOM_NOT_FOUND_ERR);
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    return;
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  }
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  // GetBoxRectForFrame can modify relativeToFrame so call it first.
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  nsPoint relativeToTopLeft =
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      GetBoxRectForFrame(&relativeToFrame, CSSBoxType::Border).TopLeft();
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  AccumulateQuadCallback callback(ownerDoc, aResult, relativeToFrame,
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                                  relativeToTopLeft, aOptions.mBox);
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  nsLayoutUtils::GetAllInFlowBoxes(frame, &callback);
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}
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static void
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TransformPoints(nsINode* aTo, const GeometryNode& aFrom,
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                uint32_t aPointCount, CSSPoint* aPoints,
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                const ConvertCoordinateOptions& aOptions, ErrorResult& aRv)
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{
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  nsIFrame* fromFrame = GetFirstNonAnonymousFrameForGeometryNode(aFrom);
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  nsWeakFrame weakFrame(fromFrame);
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  nsIFrame* toFrame = GetFirstNonAnonymousFrameForNode(aTo);
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  // The first frame might be destroyed now if the above call lead to an
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  // EnsureFrameForTextNode call.  We need to get the first frame again
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  // when that happens.
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  if (fromFrame && !weakFrame.IsAlive()) {
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    fromFrame = GetFirstNonAnonymousFrameForGeometryNode(aFrom);
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  }
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  if (!fromFrame || !toFrame) {
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    aRv.Throw(NS_ERROR_DOM_NOT_FOUND_ERR);
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    return;
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  }
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  if (!CheckFramesInSameTopLevelBrowsingContext(fromFrame, toFrame)) {
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    aRv.Throw(NS_ERROR_DOM_NOT_FOUND_ERR);
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    return;
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  }
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  nsPoint fromOffset = GetBoxRectForFrame(&fromFrame, aOptions.mFromBox).TopLeft();
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  nsPoint toOffset = GetBoxRectForFrame(&toFrame, aOptions.mToBox).TopLeft();
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  CSSPoint fromOffsetGfx(nsPresContext::AppUnitsToFloatCSSPixels(fromOffset.x),
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                         nsPresContext::AppUnitsToFloatCSSPixels(fromOffset.y));
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  for (uint32_t i = 0; i < aPointCount; ++i) {
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    aPoints[i] += fromOffsetGfx;
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  }
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  nsLayoutUtils::TransformResult rv =
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    nsLayoutUtils::TransformPoints(fromFrame, toFrame, aPointCount, aPoints);
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  if (rv == nsLayoutUtils::TRANSFORM_SUCCEEDED) {
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    CSSPoint toOffsetGfx(nsPresContext::AppUnitsToFloatCSSPixels(toOffset.x),
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                         nsPresContext::AppUnitsToFloatCSSPixels(toOffset.y));
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    for (uint32_t i = 0; i < aPointCount; ++i) {
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      aPoints[i] -= toOffsetGfx;
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    }
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  } else {
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    PodZero(aPoints, aPointCount);
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  }
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}
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already_AddRefed<DOMQuad>
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ConvertQuadFromNode(nsINode* aTo, dom::DOMQuad& aQuad,
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                    const GeometryNode& aFrom,
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                    const dom::ConvertCoordinateOptions& aOptions,
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                    ErrorResult& aRv)
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{
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  CSSPoint points[4];
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  for (uint32_t i = 0; i < 4; ++i) {
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    DOMPoint* p = aQuad.Point(i);
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    if (p->W() != 1.0 || p->Z() != 0.0) {
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      aRv.Throw(NS_ERROR_DOM_INVALID_STATE_ERR);
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      return nullptr;
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    }
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    points[i] = CSSPoint(p->X(), p->Y());
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  }
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  TransformPoints(aTo, aFrom, 4, points, aOptions, aRv);
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  if (aRv.Failed()) {
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    return nullptr;
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  }
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  RefPtr<DOMQuad> result = new DOMQuad(aTo->GetParentObject().mObject, points);
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  return result.forget();
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}
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already_AddRefed<DOMQuad>
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ConvertRectFromNode(nsINode* aTo, dom::DOMRectReadOnly& aRect,
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                    const GeometryNode& aFrom,
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                    const dom::ConvertCoordinateOptions& aOptions,
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                    ErrorResult& aRv)
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{
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  CSSPoint points[4];
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  double x = aRect.X(), y = aRect.Y(), w = aRect.Width(), h = aRect.Height();
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  points[0] = CSSPoint(x, y);
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  points[1] = CSSPoint(x + w, y);
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  points[2] = CSSPoint(x + w, y + h);
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  points[3] = CSSPoint(x, y + h);
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  TransformPoints(aTo, aFrom, 4, points, aOptions, aRv);
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  if (aRv.Failed()) {
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    return nullptr;
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  }
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  RefPtr<DOMQuad> result = new DOMQuad(aTo->GetParentObject().mObject, points);
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  return result.forget();
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}
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already_AddRefed<DOMPoint>
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ConvertPointFromNode(nsINode* aTo, const dom::DOMPointInit& aPoint,
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                     const GeometryNode& aFrom,
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                     const dom::ConvertCoordinateOptions& aOptions,
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                     ErrorResult& aRv)
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{
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  if (aPoint.mW != 1.0 || aPoint.mZ != 0.0) {
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    aRv.Throw(NS_ERROR_DOM_INVALID_STATE_ERR);
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    return nullptr;
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  }
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  CSSPoint point(aPoint.mX, aPoint.mY);
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  TransformPoints(aTo, aFrom, 1, &point, aOptions, aRv);
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  if (aRv.Failed()) {
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    return nullptr;
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  }
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  RefPtr<DOMPoint> result = new DOMPoint(aTo->GetParentObject().mObject, point.x, point.y);
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  return result.forget();
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}
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} // namespace mozilla
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