forked from mirrors/gecko-dev
		
	This patch adds the struct as a parameter to various functions. The struct is cached in ReflowInput so that we don't need to pass it down to the internal method where nsIFrame::ComputeSize() is called. In the subsequent patches, we'll use it to revise the implementation of flex container's flex base size resolution, and size overrides. Differential Revision: https://phabricator.services.mozilla.com/D101793
		
			
				
	
	
		
			313 lines
		
	
	
	
		
			9.7 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
			
		
		
	
	
			313 lines
		
	
	
	
		
			9.7 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
/* -*- Mode: C++; tab-width: 8; indent-tabs-mode: nil; c-basic-offset: 2 -*- */
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/* vim: set ts=8 sts=2 et sw=2 tw=80: */
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/* This Source Code Form is subject to the terms of the Mozilla Public
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 * License, v. 2.0. If a copy of the MPL was not distributed with this
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 * file, You can obtain one at http://mozilla.org/MPL/2.0/. */
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//
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// Eric Vaughan
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// Netscape Communications
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//
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// See documentation in associated header file
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//
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#include "mozilla/ComputedStyle.h"
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#include "mozilla/PresShell.h"
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#include "nsLeafBoxFrame.h"
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#include "nsBoxFrame.h"
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#include "nsCOMPtr.h"
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#include "nsGkAtoms.h"
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#include "nsPresContext.h"
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#include "nsIContent.h"
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#include "nsNameSpaceManager.h"
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#include "nsBoxLayoutState.h"
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#include "nsWidgetsCID.h"
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#include "nsViewManager.h"
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#include "nsContainerFrame.h"
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#include "nsDisplayList.h"
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#include <algorithm>
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using namespace mozilla;
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//
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// NS_NewLeafBoxFrame
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//
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// Creates a new Toolbar frame and returns it
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//
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nsIFrame* NS_NewLeafBoxFrame(PresShell* aPresShell, ComputedStyle* aStyle) {
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  return new (aPresShell) nsLeafBoxFrame(aStyle, aPresShell->GetPresContext());
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}
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NS_IMPL_FRAMEARENA_HELPERS(nsLeafBoxFrame)
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/**
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 * Initialize us. This is a good time to get the alignment of the box
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 */
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void nsLeafBoxFrame::Init(nsIContent* aContent, nsContainerFrame* aParent,
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                          nsIFrame* aPrevInFlow) {
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  nsLeafFrame::Init(aContent, aParent, aPrevInFlow);
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  if (HasAnyStateBits(NS_FRAME_FONT_INFLATION_CONTAINER)) {
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    AddStateBits(NS_FRAME_FONT_INFLATION_FLOW_ROOT);
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  }
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}
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void nsLeafBoxFrame::BuildDisplayList(nsDisplayListBuilder* aBuilder,
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                                      const nsDisplayListSet& aLists) {
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  // REVIEW: GetFrameForPoint used to not report events for the background
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  // layer, whereas this code will put an event receiver for this frame in the
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  // BlockBorderBackground() list. But I don't see any need to preserve
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  // that anomalous behaviour. The important thing I'm preserving is that
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  // leaf boxes continue to receive events in the foreground layer.
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  DisplayBorderBackgroundOutline(aBuilder, aLists);
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  if (!aBuilder->IsForEventDelivery() || !IsVisibleForPainting()) return;
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  aLists.Content()->AppendNewToTop<nsDisplayEventReceiver>(aBuilder, this);
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}
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/* virtual */
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nscoord nsLeafBoxFrame::GetMinISize(gfxContext* aRenderingContext) {
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  nscoord result;
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  DISPLAY_MIN_INLINE_SIZE(this, result);
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  nsBoxLayoutState state(PresContext(), aRenderingContext);
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  WritingMode wm = GetWritingMode();
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  LogicalSize minSize(wm, GetXULMinSize(state));
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  // GetXULMinSize returns border-box size, and we want to return content
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  // inline-size.  Since Reflow uses the reflow input's border and padding, we
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  // actually just want to subtract what GetXULMinSize added, which is the
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  // result of GetXULBorderAndPadding.
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  nsMargin bp;
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  GetXULBorderAndPadding(bp);
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  result = minSize.ISize(wm) - LogicalMargin(wm, bp).IStartEnd(wm);
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  return result;
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}
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/* virtual */
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nscoord nsLeafBoxFrame::GetPrefISize(gfxContext* aRenderingContext) {
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  nscoord result;
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  DISPLAY_PREF_INLINE_SIZE(this, result);
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  nsBoxLayoutState state(PresContext(), aRenderingContext);
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  WritingMode wm = GetWritingMode();
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  LogicalSize prefSize(wm, GetXULPrefSize(state));
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  // GetXULPrefSize returns border-box size, and we want to return content
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  // inline-size.  Since Reflow uses the reflow input's border and padding, we
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  // actually just want to subtract what GetXULPrefSize added, which is the
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  // result of GetXULBorderAndPadding.
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  nsMargin bp;
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  GetXULBorderAndPadding(bp);
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  result = prefSize.ISize(wm) - LogicalMargin(wm, bp).IStartEnd(wm);
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  return result;
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}
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nscoord nsLeafBoxFrame::GetIntrinsicISize() {
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  // No intrinsic width
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  return 0;
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}
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LogicalSize nsLeafBoxFrame::ComputeAutoSize(
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    gfxContext* aRenderingContext, WritingMode aWM, const LogicalSize& aCBSize,
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    nscoord aAvailableISize, const LogicalSize& aMargin,
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    const LogicalSize& aBorderPadding, const StyleSizeOverrides& aSizeOverrides,
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    ComputeSizeFlags aFlags) {
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  // Important: NOT calling our direct superclass here!
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  return nsIFrame::ComputeAutoSize(aRenderingContext, aWM, aCBSize,
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                                   aAvailableISize, aMargin, aBorderPadding,
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                                   aSizeOverrides, aFlags);
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}
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void nsLeafBoxFrame::Reflow(nsPresContext* aPresContext,
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                            ReflowOutput& aDesiredSize,
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                            const ReflowInput& aReflowInput,
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                            nsReflowStatus& aStatus) {
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  // This is mostly a copy of nsBoxFrame::Reflow().
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  // We aren't able to share an implementation because of the frame
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  // class hierarchy.  If you make changes here, please keep
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  // nsBoxFrame::Reflow in sync.
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  MarkInReflow();
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  DO_GLOBAL_REFLOW_COUNT("nsLeafBoxFrame");
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  DISPLAY_REFLOW(aPresContext, this, aReflowInput, aDesiredSize, aStatus);
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  MOZ_ASSERT(aStatus.IsEmpty(), "Caller should pass a fresh reflow status!");
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  NS_ASSERTION(
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      aReflowInput.ComputedWidth() >= 0 && aReflowInput.ComputedHeight() >= 0,
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      "Computed Size < 0");
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#ifdef DO_NOISY_REFLOW
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  printf(
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      "\n-------------Starting LeafBoxFrame Reflow "
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      "----------------------------\n");
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  printf("%p ** nsLBF::Reflow %d R: ", this, myCounter++);
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  switch (aReflowInput.reason) {
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    case eReflowReason_Initial:
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      printf("Ini");
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      break;
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    case eReflowReason_Incremental:
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      printf("Inc");
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      break;
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    case eReflowReason_Resize:
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      printf("Rsz");
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      break;
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    case eReflowReason_StyleChange:
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      printf("Sty");
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      break;
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    case eReflowReason_Dirty:
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      printf("Drt ");
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      break;
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    default:
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      printf("<unknown>%d", aReflowInput.reason);
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      break;
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  }
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  printSize("AW", aReflowInput.AvailableWidth());
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  printSize("AH", aReflowInput.AvailableHeight());
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  printSize("CW", aReflowInput.ComputedWidth());
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  printSize("CH", aReflowInput.ComputedHeight());
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  printf(" *\n");
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#endif
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  // create the layout state
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  nsBoxLayoutState state(aPresContext, aReflowInput.mRenderingContext);
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  nsSize computedSize(aReflowInput.ComputedWidth(),
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                      aReflowInput.ComputedHeight());
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  nsMargin m;
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  m = aReflowInput.ComputedPhysicalBorderPadding();
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  // GetXULBorderAndPadding(m);
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  // this happens sometimes. So lets handle it gracefully.
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  if (aReflowInput.ComputedHeight() == 0) {
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    nsSize minSize = GetXULMinSize(state);
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    computedSize.height = minSize.height - m.top - m.bottom;
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  }
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  nsSize prefSize(0, 0);
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  // if we are told to layout intrinic then get our preferred size.
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  if (computedSize.width == NS_UNCONSTRAINEDSIZE ||
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      computedSize.height == NS_UNCONSTRAINEDSIZE) {
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    prefSize = GetXULPrefSize(state);
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    nsSize minSize = GetXULMinSize(state);
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    nsSize maxSize = GetXULMaxSize(state);
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    prefSize = XULBoundsCheck(minSize, prefSize, maxSize);
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  }
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  // get our desiredSize
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  if (aReflowInput.ComputedWidth() == NS_UNCONSTRAINEDSIZE) {
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    computedSize.width = prefSize.width;
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  } else {
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    computedSize.width += m.left + m.right;
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  }
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  if (aReflowInput.ComputedHeight() == NS_UNCONSTRAINEDSIZE) {
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    computedSize.height = prefSize.height;
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  } else {
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    computedSize.height += m.top + m.bottom;
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  }
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  // handle reflow input min and max sizes
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  // XXXbz the width handling here seems to be wrong, since
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  // mComputedMin/MaxWidth is a content-box size, whole
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  // computedSize.width is a border-box size...
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  if (computedSize.width > aReflowInput.ComputedMaxWidth())
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    computedSize.width = aReflowInput.ComputedMaxWidth();
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  if (computedSize.width < aReflowInput.ComputedMinWidth())
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    computedSize.width = aReflowInput.ComputedMinWidth();
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  // Now adjust computedSize.height for our min and max computed
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  // height.  The only problem is that those are content-box sizes,
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  // while computedSize.height is a border-box size.  So subtract off
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  // m.TopBottom() before adjusting, then readd it.
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  computedSize.height = std::max(0, computedSize.height - m.TopBottom());
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  computedSize.height =
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      NS_CSS_MINMAX(computedSize.height, aReflowInput.ComputedMinHeight(),
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                    aReflowInput.ComputedMaxHeight());
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  computedSize.height += m.TopBottom();
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  nsRect r(mRect.x, mRect.y, computedSize.width, computedSize.height);
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  SetXULBounds(state, r);
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  // layout our children
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  XULLayout(state);
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  // ok our child could have gotten bigger. So lets get its bounds
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  aDesiredSize.Width() = mRect.width;
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  aDesiredSize.Height() = mRect.height;
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  aDesiredSize.SetBlockStartAscent(GetXULBoxAscent(state));
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  // the overflow rect is set in SetXULBounds() above
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  aDesiredSize.mOverflowAreas = GetOverflowAreas();
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#ifdef DO_NOISY_REFLOW
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  {
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    printf("%p ** nsLBF(done) W:%d H:%d  ", this, aDesiredSize.Width(),
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           aDesiredSize.Height());
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    if (maxElementWidth) {
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      printf("MW:%d\n", *maxElementWidth);
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    } else {
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      printf("MW:?\n");
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    }
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  }
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#endif
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}
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#ifdef DEBUG_FRAME_DUMP
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nsresult nsLeafBoxFrame::GetFrameName(nsAString& aResult) const {
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  return MakeFrameName(u"LeafBox"_ns, aResult);
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}
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#endif
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nsresult nsLeafBoxFrame::CharacterDataChanged(
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    const CharacterDataChangeInfo& aInfo) {
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  MarkIntrinsicISizesDirty();
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  return nsLeafFrame::CharacterDataChanged(aInfo);
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}
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/* virtual */
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nsSize nsLeafBoxFrame::GetXULPrefSize(nsBoxLayoutState& aState) {
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  return nsIFrame::GetUncachedXULPrefSize(aState);
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}
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/* virtual */
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nsSize nsLeafBoxFrame::GetXULMinSize(nsBoxLayoutState& aState) {
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  return nsIFrame::GetUncachedXULMinSize(aState);
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}
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/* virtual */
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nsSize nsLeafBoxFrame::GetXULMaxSize(nsBoxLayoutState& aState) {
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  return nsIFrame::GetUncachedXULMaxSize(aState);
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}
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/* virtual */
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nscoord nsLeafBoxFrame::GetXULFlex() {
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  nscoord flex = 0;
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  nsIFrame::AddXULFlex(this, flex);
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  return flex;
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}
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/* virtual */
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nscoord nsLeafBoxFrame::GetXULBoxAscent(nsBoxLayoutState& aState) {
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  if (IsXULCollapsed()) {
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    return 0;
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  }
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  return GetXULPrefSize(aState).height;
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}
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NS_IMETHODIMP
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nsLeafBoxFrame::DoXULLayout(nsBoxLayoutState& aState) { return NS_OK; }
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