/**
 * Attempt to place the block frame within the available space.  If
 * it fits, apply horizontal positioning (CSS 10.3.3), collapse
 * margins (CSS2 8.3.1). Also apply relative positioning.
 */
bool
nsBlockReflowContext::PlaceBlock(const nsHTMLReflowState& aReflowState,
                                 bool                     aForceFit,
                                 nsLineBox*               aLine,
                                 nsCollapsingMargin&      aBottomMarginResult,
                                 nsRect&                  aInFlowBounds,
                                 nsOverflowAreas&         aOverflowAreas,
                                 nsReflowStatus           aReflowStatus)
{
  // Compute collapsed bottom margin value.
  if (NS_FRAME_IS_COMPLETE(aReflowStatus)) {
    aBottomMarginResult = mMetrics.mCarriedOutBottomMargin;
    aBottomMarginResult.Include(aReflowState.mComputedMargin.bottom);
  } else {
    // The used bottom-margin is set to zero above a break.
    aBottomMarginResult.Zero();
  }

  nscoord x = mX;
  nscoord y = mY;
  nscoord backupContainingBlockAdvance = 0;

  // Check whether the block's bottom margin collapses with its top
  // margin. See CSS 2.1 section 8.3.1; those rules seem to match
  // nsBlockFrame::IsEmpty(). Any such block must have zero height so
  // check that first. Note that a block can have clearance and still
  // have adjoining top/bottom margins, because the clearance goes
  // above the top margin.
  // Mark the frame as non-dirty; it has been reflowed (or we wouldn't
  // be here), and we don't want to assert in CachedIsEmpty()
  mFrame->RemoveStateBits(NS_FRAME_IS_DIRTY);
  bool empty = 0 == mMetrics.height && aLine->CachedIsEmpty();
  if (empty) {
    // Collapse the bottom margin with the top margin that was already
    // applied.
    aBottomMarginResult.Include(mTopMargin);

#ifdef NOISY_VERTICAL_MARGINS
    printf("  ");
    nsFrame::ListTag(stdout, mOuterReflowState.frame);
    printf(": ");
    nsFrame::ListTag(stdout, mFrame);
    printf(" -- collapsing top & bottom margin together; y=%d spaceY=%d\n",
           y, mSpace.y);
#endif
    // Section 8.3.1 of CSS 2.1 says that blocks with adjoining
    // top/bottom margins whose top margin collapses with their
    // parent's top margin should have their top border-edge at the
    // top border-edge of their parent. We actually don't have to do
    // anything special to make this happen. In that situation,
    // nsBlockFrame::ShouldApplyTopMargin will have returned false,
    // and mTopMargin and aClearance will have been zero in
    // ReflowBlock.

    // If we did apply our top margin, but now we're collapsing it
    // into the bottom margin, we need to back up the containing
    // block's y-advance by our top margin so that it doesn't get
    // counted twice. Note that here we're allowing the line's bounds
    // to become different from the block's position; we do this
    // because the containing block will place the next line at the
    // line's YMost, and it must place the next line at a different
    // point from where this empty block will be.
    backupContainingBlockAdvance = mTopMargin.get();
  }

  // See if the frame fit. If it's the first frame or empty then it
  // always fits. If the height is unconstrained then it always fits,
  // even if there's some sort of integer overflow that makes y +
  // mMetrics.height appear to go beyond the available height.
  if (!empty && !aForceFit && mSpace.height != NS_UNCONSTRAINEDSIZE) {
    nscoord yMost = y - backupContainingBlockAdvance + mMetrics.height;
    if (yMost > mSpace.YMost()) {
      // didn't fit, we must acquit.
      mFrame->DidReflow(mPresContext, &aReflowState, NS_FRAME_REFLOW_FINISHED);
      return false;
    }
  }

  aInFlowBounds = nsRect(x, y - backupContainingBlockAdvance,
                         mMetrics.width, mMetrics.height);
  
  // Apply CSS relative positioning
  const nsStyleDisplay* styleDisp = mFrame->GetStyleDisplay();
  if (NS_STYLE_POSITION_RELATIVE == styleDisp->mPosition) {
    x += aReflowState.mComputedOffsets.left;
    y += aReflowState.mComputedOffsets.top;
  }
  
  // Now place the frame and complete the reflow process
  nsContainerFrame::FinishReflowChild(mFrame, mPresContext, &aReflowState, mMetrics, x, y, 0);

  aOverflowAreas = mMetrics.mOverflowAreas + nsPoint(x, y);

  return true;
}
Example #2
0
NS_IMETHODIMP
nsFirstLetterFrame::Reflow(nsPresContext*          aPresContext,
                           nsHTMLReflowMetrics&     aMetrics,
                           const nsHTMLReflowState& aReflowState,
                           nsReflowStatus&          aReflowStatus)
{
  DO_GLOBAL_REFLOW_COUNT("nsFirstLetterFrame");
  DISPLAY_REFLOW(aPresContext, this, aReflowState, aMetrics, aReflowStatus);
  nsresult rv = NS_OK;

  // Grab overflow list
  DrainOverflowFrames(aPresContext);

  nsIFrame* kid = mFrames.FirstChild();

  // Setup reflow state for our child
  nsSize availSize(aReflowState.availableWidth, aReflowState.availableHeight);
  const nsMargin& bp = aReflowState.mComputedBorderPadding;
  nscoord lr = bp.left + bp.right;
  nscoord tb = bp.top + bp.bottom;
  NS_ASSERTION(availSize.width != NS_UNCONSTRAINEDSIZE,
               "should no longer use unconstrained widths");
  availSize.width -= lr;
  if (NS_UNCONSTRAINEDSIZE != availSize.height) {
    availSize.height -= tb;
  }

  // Reflow the child
  if (!aReflowState.mLineLayout) {
    // When there is no lineLayout provided, we provide our own. The
    // only time that the first-letter-frame is not reflowing in a
    // line context is when its floating.
    nsHTMLReflowState rs(aPresContext, aReflowState, kid, availSize);
    nsLineLayout ll(aPresContext, nsnull, &aReflowState, nsnull);
    ll.BeginLineReflow(bp.left, bp.top, availSize.width, NS_UNCONSTRAINEDSIZE,
                       PR_FALSE, PR_TRUE);
    rs.mLineLayout = ≪
    ll.SetFirstLetterStyleOK(PR_TRUE);

    kid->WillReflow(aPresContext);
    kid->Reflow(aPresContext, aMetrics, rs, aReflowStatus);

    ll.EndLineReflow();
  }
  else {
    // Pretend we are a span and reflow the child frame
    nsLineLayout* ll = aReflowState.mLineLayout;
    PRBool        pushedFrame;

    NS_ASSERTION(ll->GetFirstLetterStyleOK() || GetPrevInFlow(),
                 "First-in-flow first-letter should have first-letter style enabled in nsLineLayout!");
    ll->BeginSpan(this, &aReflowState, bp.left, availSize.width);
    ll->ReflowFrame(kid, aReflowStatus, &aMetrics, pushedFrame);
    ll->EndSpan(this);
  }

  // Place and size the child and update the output metrics
  kid->SetRect(nsRect(bp.left, bp.top, aMetrics.width, aMetrics.height));
  kid->FinishAndStoreOverflow(&aMetrics);
  kid->DidReflow(aPresContext, nsnull, NS_FRAME_REFLOW_FINISHED);

  aMetrics.width += lr;
  aMetrics.height += tb;
  aMetrics.ascent += bp.top;
  mBaseline = aMetrics.ascent;

  // Ensure that the overflow rect contains the child textframe's overflow rect.
  // Note that if this is floating, the overline/underline drawable area is in
  // the overflow rect of the child textframe.
  aMetrics.mOverflowArea.UnionRect(aMetrics.mOverflowArea,
                           nsRect(0, 0, aMetrics.width, aMetrics.height));
  ConsiderChildOverflow(aMetrics.mOverflowArea, kid);

  // Create a continuation or remove existing continuations based on
  // the reflow completion status.
  if (NS_FRAME_IS_COMPLETE(aReflowStatus)) {
    if (aReflowState.mLineLayout) {
      aReflowState.mLineLayout->SetFirstLetterStyleOK(PR_FALSE);
    }
    nsIFrame* kidNextInFlow = kid->GetNextInFlow();
    if (kidNextInFlow) {
      // Remove all of the childs next-in-flows
      static_cast<nsContainerFrame*>(kidNextInFlow->GetParent())
        ->DeleteNextInFlowChild(aPresContext, kidNextInFlow);
    }
  }
  else {
    // Create a continuation for the child frame if it doesn't already
    // have one.
    nsIFrame* nextInFlow;
    rv = CreateNextInFlow(aPresContext, this, kid, nextInFlow);
    if (NS_FAILED(rv)) {
      return rv;
    }

    // And then push it to our overflow list
    if (nextInFlow) {
      kid->SetNextSibling(nsnull);
      SetOverflowFrames(aPresContext, nextInFlow);
    }
    else {
      nsIFrame* nextSib = kid->GetNextSibling();
      if (nextSib) {
        kid->SetNextSibling(nsnull);
        SetOverflowFrames(aPresContext, nextSib);
      }
    }
  }

  FinishAndStoreOverflow(&aMetrics);

  NS_FRAME_SET_TRUNCATION(aReflowStatus, aReflowState, aMetrics);
  return rv;
}
Example #3
0
nsresult
nsInlineFrame::ReflowFrames(nsPresContext* aPresContext,
                            const nsHTMLReflowState& aReflowState,
                            InlineReflowState& irs,
                            nsHTMLReflowMetrics& aMetrics,
                            nsReflowStatus& aStatus)
{
  nsresult rv = NS_OK;
  aStatus = NS_FRAME_COMPLETE;

  nsLineLayout* lineLayout = aReflowState.mLineLayout;
  PRBool ltr = (NS_STYLE_DIRECTION_LTR == aReflowState.mStyleVisibility->mDirection);
  nscoord leftEdge = 0;
  // Don't offset by our start borderpadding if we have a prev continuation or
  // if we're in the last part of an {ib} split.
  if (!GetPrevContinuation() &&
      !nsLayoutUtils::FrameIsInLastPartOfIBSplit(this)) {
    leftEdge = ltr ? aReflowState.mComputedBorderPadding.left
                   : aReflowState.mComputedBorderPadding.right;
  }
  nscoord availableWidth = aReflowState.availableWidth;
  NS_ASSERTION(availableWidth != NS_UNCONSTRAINEDSIZE,
               "should no longer use available widths");
  // Subtract off left and right border+padding from availableWidth
  availableWidth -= leftEdge;
  availableWidth -= ltr ? aReflowState.mComputedBorderPadding.right
                        : aReflowState.mComputedBorderPadding.left;
  lineLayout->BeginSpan(this, &aReflowState, leftEdge, leftEdge + availableWidth);

  // First reflow our current children
  nsIFrame* frame = mFrames.FirstChild();
  PRBool done = PR_FALSE;
  while (nsnull != frame) {
    PRBool reflowingFirstLetter = lineLayout->GetFirstLetterStyleOK();

    // Check if we should lazily set the child frame's parent pointer
    if (irs.mSetParentPointer) {
      PRBool havePrevBlock =
        irs.mLineContainer && irs.mLineContainer->GetPrevContinuation();
      // If our block is the first in flow, then any floats under the pulled
      // frame must already belong to our block.
      if (havePrevBlock) {
        // This has to happen before we update frame's parent; we need to
        // know frame's ancestry under its old block.
        // The blockChildren.ContainsFrame check performed by
        // ReparentFloatsForInlineChild here may be slow, but we can't
        // easily avoid it because we don't know where 'frame' originally
        // came from. If we really really have to optimize this we could
        // cache whether frame->GetParent() is under its containing blocks
        // overflowList or not.
        ReparentFloatsForInlineChild(irs.mLineContainer, frame, PR_FALSE);
      }
      frame->SetParent(this);
      // We also need to check if frame has a next-in-flow. If it does, then set
      // its parent frame pointer, too. Otherwise, if we reflow frame and it's
      // complete we'll fail when deleting its next-in-flow which is no longer
      // needed. This scenario doesn't happen often, but it can happen
      nsIFrame* nextInFlow = frame->GetNextInFlow();
      for ( ; nextInFlow; nextInFlow = nextInFlow->GetNextInFlow()) {
        // Since we only do lazy setting of parent pointers for the frame's
        // initial reflow, this frame can't have a next-in-flow. That means
        // the continuing child frame must be in our child list as well. If
        // not, then something is wrong
        NS_ASSERTION(mFrames.ContainsFrame(nextInFlow), "unexpected flow");
        if (havePrevBlock) {
          ReparentFloatsForInlineChild(irs.mLineContainer, nextInFlow, PR_FALSE);
        }
        nextInFlow->SetParent(this);
      }

      // Fix the parent pointer for ::first-letter child frame next-in-flows,
      // so nsFirstLetterFrame::Reflow can destroy them safely (bug 401042).
      nsIFrame* realFrame = nsPlaceholderFrame::GetRealFrameFor(frame);
      if (realFrame->GetType() == nsGkAtoms::letterFrame) {
        nsIFrame* child = realFrame->GetFirstChild(nsnull);
        if (child) {
          NS_ASSERTION(child->GetType() == nsGkAtoms::textFrame,
                       "unexpected frame type");
          nsIFrame* nextInFlow = child->GetNextInFlow();
          for ( ; nextInFlow; nextInFlow = nextInFlow->GetNextInFlow()) {
            NS_ASSERTION(nextInFlow->GetType() == nsGkAtoms::textFrame,
                         "unexpected frame type");
            if (mFrames.ContainsFrame(nextInFlow)) {
              nextInFlow->SetParent(this);
            }
            else {
#ifdef DEBUG              
              // Once we find a next-in-flow that isn't ours none of the
              // remaining next-in-flows should be either.
              for ( ; nextInFlow; nextInFlow = nextInFlow->GetNextInFlow()) {
                NS_ASSERTION(!mFrames.ContainsFrame(nextInFlow),
                             "unexpected letter frame flow");
              }
#endif
              break;
            }
          }
        }
      }
    }
    rv = ReflowInlineFrame(aPresContext, aReflowState, irs, frame, aStatus);
    if (NS_FAILED(rv)) {
      done = PR_TRUE;
      break;
    }
    if (NS_INLINE_IS_BREAK(aStatus) || 
        (!reflowingFirstLetter && NS_FRAME_IS_NOT_COMPLETE(aStatus))) {
      done = PR_TRUE;
      break;
    }
    irs.mPrevFrame = frame;
    frame = frame->GetNextSibling();
  }

  // Attempt to pull frames from our next-in-flow until we can't
  if (!done && (nsnull != GetNextInFlow())) {
    while (!done) {
      PRBool reflowingFirstLetter = lineLayout->GetFirstLetterStyleOK();
      PRBool isComplete;
      if (!frame) { // Could be non-null if we pulled a first-letter frame and
                    // it created a continuation, since we don't push those.
        frame = PullOneFrame(aPresContext, irs, &isComplete);
      }
#ifdef NOISY_PUSHING
      printf("%p pulled up %p\n", this, frame);
#endif
      if (nsnull == frame) {
        if (!isComplete) {
          aStatus = NS_FRAME_NOT_COMPLETE;
        }
        break;
      }
      rv = ReflowInlineFrame(aPresContext, aReflowState, irs, frame, aStatus);
      if (NS_FAILED(rv)) {
        done = PR_TRUE;
        break;
      }
      if (NS_INLINE_IS_BREAK(aStatus) || 
          (!reflowingFirstLetter && NS_FRAME_IS_NOT_COMPLETE(aStatus))) {
        done = PR_TRUE;
        break;
      }
      irs.mPrevFrame = frame;
      frame = frame->GetNextSibling();
    }
  }
#ifdef DEBUG
  if (NS_FRAME_IS_COMPLETE(aStatus)) {
    // We can't be complete AND have overflow frames!
    NS_ASSERTION(!GetOverflowFrames(), "whoops");
  }
#endif

  // If after reflowing our children they take up no area then make
  // sure that we don't either.
  //
  // Note: CSS demands that empty inline elements still affect the
  // line-height calculations. However, continuations of an inline
  // that are empty we force to empty so that things like collapsed
  // whitespace in an inline element don't affect the line-height.
  aMetrics.width = lineLayout->EndSpan(this);

  // Compute final width.

  // Make sure to not include our start border and padding if we have a prev
  // continuation or if we're in the last part of an {ib} split.
  if (!GetPrevContinuation() &&
      !nsLayoutUtils::FrameIsInLastPartOfIBSplit(this)) {
    aMetrics.width += ltr ? aReflowState.mComputedBorderPadding.left
                          : aReflowState.mComputedBorderPadding.right;
  }

  /*
   * We want to only apply the end border and padding if we're the last
   * continuation and not in the first part of an {ib} split.  To be the last
   * continuation we have to be complete (so that we won't get a next-in-flow)
   * and have no non-fluid continuations on our continuation chain.
   */
  if (NS_FRAME_IS_COMPLETE(aStatus) &&
      !GetLastInFlow()->GetNextContinuation() &&
      !nsLayoutUtils::FrameIsInFirstPartOfIBSplit(this)) {
    aMetrics.width += ltr ? aReflowState.mComputedBorderPadding.right
                          : aReflowState.mComputedBorderPadding.left;
  }

  nsLayoutUtils::SetFontFromStyle(aReflowState.rendContext, mStyleContext);
  nsCOMPtr<nsIFontMetrics> fm;
  aReflowState.rendContext->GetFontMetrics(*getter_AddRefs(fm));

  if (fm) {
    // Compute final height of the frame.
    //
    // Do things the standard css2 way -- though it's hard to find it
    // in the css2 spec! It's actually found in the css1 spec section
    // 4.4 (you will have to read between the lines to really see
    // it).
    //
    // The height of our box is the sum of our font size plus the top
    // and bottom border and padding. The height of children do not
    // affect our height.
    fm->GetMaxAscent(aMetrics.ascent);
    fm->GetHeight(aMetrics.height);
  } else {
    NS_WARNING("Cannot get font metrics - defaulting sizes to 0");
    aMetrics.ascent = aMetrics.height = 0;
  }
  aMetrics.ascent += aReflowState.mComputedBorderPadding.top;
  aMetrics.height += aReflowState.mComputedBorderPadding.top +
    aReflowState.mComputedBorderPadding.bottom;

  // For now our overflow area is zero. The real value will be
  // computed in |nsLineLayout::RelativePositionFrames|.
  aMetrics.mOverflowArea.SetRect(0, 0, 0, 0);

#ifdef NOISY_FINAL_SIZE
  ListTag(stdout);
  printf(": metrics=%d,%d ascent=%d\n",
         aMetrics.width, aMetrics.height, aMetrics.ascent);
#endif

  return rv;
}
NS_IMETHODIMP
nsPageContentFrame::Reflow(nsPresContext*           aPresContext,
                           nsHTMLReflowMetrics&     aDesiredSize,
                           const nsHTMLReflowState& aReflowState,
                           nsReflowStatus&          aStatus)
{
  DO_GLOBAL_REFLOW_COUNT("nsPageContentFrame");
  DISPLAY_REFLOW(aPresContext, this, aReflowState, aDesiredSize, aStatus);
  aStatus = NS_FRAME_COMPLETE;  // initialize out parameter
  nsresult rv = NS_OK;

  if (GetPrevInFlow() && (GetStateBits() & NS_FRAME_FIRST_REFLOW)) {
    nsresult rv = aPresContext->PresShell()->FrameConstructor()
                    ->ReplicateFixedFrames(this);
    NS_ENSURE_SUCCESS(rv, rv);
  }

  // Set our size up front, since some parts of reflow depend on it
  // being already set.  Note that the computed height may be
  // unconstrained; that's ok.  Consumers should watch out for that.
  SetSize(nsSize(aReflowState.availableWidth, aReflowState.availableHeight));
 
  // A PageContentFrame must always have one child: the canvas frame.
  // Resize our frame allowing it only to be as big as we are
  // XXX Pay attention to the page's border and padding...
  if (mFrames.NotEmpty()) {
    nsIFrame* frame = mFrames.FirstChild();
    nsSize  maxSize(aReflowState.availableWidth, aReflowState.availableHeight);
    nsHTMLReflowState kidReflowState(aPresContext, aReflowState, frame, maxSize);
    kidReflowState.SetComputedHeight(aReflowState.availableHeight);

    mPD->mPageContentSize  = aReflowState.availableWidth;

    // Reflow the page content area
    rv = ReflowChild(frame, aPresContext, aDesiredSize, kidReflowState, 0, 0, 0, aStatus);
    NS_ENSURE_SUCCESS(rv, rv);

    // The document element's background should cover the entire canvas, so
    // take into account the combined area and any space taken up by
    // absolutely positioned elements
    nsMargin padding(0,0,0,0);

    // XXXbz this screws up percentage padding (sets padding to zero
    // in the percentage padding case)
    kidReflowState.mStylePadding->GetPadding(padding);

    // This is for shrink-to-fit, and therefore we want to use the
    // scrollable overflow, since the purpose of shrink to fit is to
    // make the content that ought to be reachable (represented by the
    // scrollable overflow) fit in the page.
    if (frame->HasOverflowAreas()) {
      // The background covers the content area and padding area, so check
      // for children sticking outside the child frame's padding edge
      nscoord xmost = aDesiredSize.ScrollableOverflow().XMost();
      if (xmost > aDesiredSize.width) {
        mPD->mPageContentXMost =
          xmost +
          kidReflowState.mStyleBorder->GetActualBorderWidth(NS_SIDE_RIGHT) +
          padding.right;
      }
    }

    // Place and size the child
    FinishReflowChild(frame, aPresContext, &kidReflowState, aDesiredSize, 0, 0, 0);

    NS_ASSERTION(aPresContext->IsDynamic() || !NS_FRAME_IS_FULLY_COMPLETE(aStatus) ||
                  !frame->GetNextInFlow(), "bad child flow list");
  }
  // Reflow our fixed frames 
  nsReflowStatus fixedStatus = NS_FRAME_COMPLETE;
  mFixedContainer.Reflow(this, aPresContext, aReflowState, fixedStatus,
                         aReflowState.availableWidth,
                         aReflowState.availableHeight,
                         PR_FALSE, PR_TRUE, PR_TRUE, // XXX could be optimized
                         nsnull /* ignore overflow */);
  NS_ASSERTION(NS_FRAME_IS_COMPLETE(fixedStatus), "fixed frames can be truncated, but not incomplete");

  // Return our desired size
  aDesiredSize.width = aReflowState.availableWidth;
  if (aReflowState.availableHeight != NS_UNCONSTRAINEDSIZE) {
    aDesiredSize.height = aReflowState.availableHeight;
  }

  FinishAndStoreOverflow(&aDesiredSize);

  NS_FRAME_SET_TRUNCATION(aStatus, aReflowState, aDesiredSize);
  return NS_OK;
}
NS_IMETHODIMP
CVE_2013_1732_firefox12_0_nsBlockFrame::Reflow(nsPresContext*           aPresContext,
                     nsHTMLReflowMetrics&     aMetrics,
                     const nsHTMLReflowState& aReflowState,
                     nsReflowStatus&          aStatus)
{
  DO_GLOBAL_REFLOW_COUNT("nsBlockFrame");
  DISPLAY_REFLOW(aPresContext, this, aReflowState, aMetrics, aStatus);
#ifdef DEBUG
  if (gNoisyReflow) {
    IndentBy(stdout, gNoiseIndent);
    ListTag(stdout);
    printf(": begin reflow availSize=%d,%d computedSize=%d,%d\n",
           aReflowState.availableWidth, aReflowState.availableHeight,
           aReflowState.ComputedWidth(), aReflowState.ComputedHeight());
  }
  AutoNoisyIndenter indent(gNoisy);
  PRTime start = LL_ZERO; // Initialize these variablies to silence the compiler.
  PRInt32 ctc = 0;        // We only use these if they are set (gLameReflowMetrics).
  if (gLameReflowMetrics) {
    start = PR_Now();
    ctc = nsLineBox::GetCtorCount();
  }
#endif

  const nsHTMLReflowState *reflowState = &aReflowState;
  nsAutoPtr<nsHTMLReflowState> mutableReflowState;
  // If we have non-auto height, we're clipping our kids and we fit,
  // make sure our kids fit too.
  if (aReflowState.availableHeight != NS_UNCONSTRAINEDSIZE &&
      aReflowState.ComputedHeight() != NS_AUTOHEIGHT &&
      ApplyOverflowClipping(this, aReflowState.mStyleDisplay)) {
    nsMargin heightExtras = aReflowState.mComputedBorderPadding;
    if (GetSkipSides() & NS_SIDE_TOP) {
      heightExtras.top = 0;
    } else {
      // Bottom margin never causes us to create continuations, so we
      // don't need to worry about whether it fits in its entirety.
      heightExtras.top += aReflowState.mComputedMargin.top;
    }

    if (GetEffectiveComputedHeight(aReflowState) + heightExtras.TopBottom() <=
        aReflowState.availableHeight) {
      mutableReflowState = new nsHTMLReflowState(aReflowState);
      mutableReflowState->availableHeight = NS_UNCONSTRAINEDSIZE;
      reflowState = mutableReflowState;
    }
  }

  // See comment below about oldSize. Use *only* for the
  // abs-pos-containing-block-size-change optimization!
  nsSize oldSize = GetSize();

  // Should we create a float manager?
  nsAutoFloatManager autoFloatManager(const_cast<nsHTMLReflowState&>(*reflowState));

  // XXXldb If we start storing the float manager in the frame rather
  // than keeping it around only during reflow then we should create it
  // only when there are actually floats to manage.  Otherwise things
  // like tables will gain significant bloat.
  bool needFloatManager = nsBlockFrame::BlockNeedsFloatManager(this);
  if (needFloatManager)
    autoFloatManager.CreateFloatManager(aPresContext);

  // OK, some lines may be reflowed. Blow away any saved line cursor
  // because we may invalidate the nondecreasing
  // overflowArea.VisualOverflow().y/yMost invariant, and we may even
  // delete the line with the line cursor.
  ClearLineCursor();

  if (IsFrameTreeTooDeep(*reflowState, aMetrics, aStatus)) {
    return NS_OK;
  }

  bool marginRoot = BlockIsMarginRoot(this);
  nsBlockReflowState state(*reflowState, aPresContext, this, aMetrics,
                           marginRoot, marginRoot, needFloatManager);

#ifdef IBMBIDI
  if (GetStateBits() & NS_BLOCK_NEEDS_BIDI_RESOLUTION)
    static_cast<nsBlockFrame*>(GetFirstContinuation())->ResolveBidi();
#endif // IBMBIDI

  if (RenumberLists(aPresContext)) {
    AddStateBits(NS_FRAME_HAS_DIRTY_CHILDREN);
  }

  nsresult rv = NS_OK;

  // ALWAYS drain overflow. We never want to leave the previnflow's
  // overflow lines hanging around; block reflow depends on the
  // overflow line lists being cleared out between reflow passes.
  DrainOverflowLines();

  // Handle paginated overflow (see nsContainerFrame.h)
  nsOverflowAreas ocBounds;
  nsReflowStatus ocStatus = NS_FRAME_COMPLETE;
  if (GetPrevInFlow()) {
    ReflowOverflowContainerChildren(aPresContext, *reflowState, ocBounds, 0,
                                    ocStatus);
  }

  // Now that we're done cleaning up our overflow container lists, we can
  // give |state| its nsOverflowContinuationTracker.
  nsOverflowContinuationTracker tracker(aPresContext, this, false);
  state.mOverflowTracker = &tracker;

  // Drain & handle pushed floats
  DrainPushedFloats(state);
  nsOverflowAreas fcBounds;
  nsReflowStatus fcStatus = NS_FRAME_COMPLETE;
  rv = ReflowPushedFloats(state, fcBounds, fcStatus);
  NS_ENSURE_SUCCESS(rv, rv);

  // If we're not dirty (which means we'll mark everything dirty later)
  // and our width has changed, mark the lines dirty that we need to
  // mark dirty for a resize reflow.
  if (reflowState->mFlags.mHResize)
    PrepareResizeReflow(state);

  mState &= ~NS_FRAME_FIRST_REFLOW;

  // Now reflow...
  rv = ReflowDirtyLines(state);
  NS_ASSERTION(NS_SUCCEEDED(rv), "reflow dirty lines failed");
  if (NS_FAILED(rv)) return rv;

  NS_MergeReflowStatusInto(&state.mReflowStatus, ocStatus);
  NS_MergeReflowStatusInto(&state.mReflowStatus, fcStatus);

  // If we end in a BR with clear and affected floats continue,
  // we need to continue, too.
  if (NS_UNCONSTRAINEDSIZE != reflowState->availableHeight &&
      NS_FRAME_IS_COMPLETE(state.mReflowStatus) &&
      state.mFloatManager->ClearContinues(FindTrailingClear())) {
    NS_FRAME_SET_INCOMPLETE(state.mReflowStatus);
  }

  if (!NS_FRAME_IS_FULLY_COMPLETE(state.mReflowStatus)) {
    if (GetOverflowLines() || GetPushedFloats()) {
      state.mReflowStatus |= NS_FRAME_REFLOW_NEXTINFLOW;
    }

#ifdef DEBUG_kipp
    ListTag(stdout); printf(": block is not fully complete\n");
#endif
  }

  CheckFloats(state);

  // Place the "marker" (bullet) frame if it is placed next to a block
  // child.
  //
  // According to the CSS2 spec, section 12.6.1, the "marker" box
  // participates in the height calculation of the list-item box's
  // first line box.
  //
  // There are exactly two places a bullet can be placed: near the
  // first or second line. It's only placed on the second line in a
  // rare case: an empty first line followed by a second line that
  // contains a block (example: <LI>\n<P>... ). This is where
  // the second case can happen.
  if (mBullet && HaveOutsideBullet() && !mLines.empty() &&
      (mLines.front()->IsBlock() ||
       (0 == mLines.front()->mBounds.height &&
        mLines.front() != mLines.back() &&
        mLines.begin().next()->IsBlock()))) {
    // Reflow the bullet
    nsHTMLReflowMetrics metrics;
    // XXX Use the entire line when we fix bug 25888.
    nsLayoutUtils::LinePosition position;
    bool havePosition = nsLayoutUtils::GetFirstLinePosition(this, &position);
    nscoord lineTop = havePosition ? position.mTop
                                   : reflowState->mComputedBorderPadding.top;
    ReflowBullet(state, metrics, lineTop);
    NS_ASSERTION(!BulletIsEmpty() || metrics.height == 0,
                 "empty bullet took up space");

    if (havePosition && !BulletIsEmpty()) {
      // We have some lines to align the bullet with.  

      // Doing the alignment using the baseline will also cater for
      // bullets that are placed next to a child block (bug 92896)
    
      // Tall bullets won't look particularly nice here...
      nsRect bbox = mBullet->GetRect();
      bbox.y = position.mBaseline - metrics.ascent;
      mBullet->SetRect(bbox);
    }
    // Otherwise just leave the bullet where it is, up against our top padding.
  }

  // Compute our final size
  nscoord bottomEdgeOfChildren;
  ComputeFinalSize(*reflowState, state, aMetrics, &bottomEdgeOfChildren);
  nsRect areaBounds = nsRect(0, 0, aMetrics.width, aMetrics.height);
  ComputeOverflowAreas(areaBounds, reflowState->mStyleDisplay,
                       bottomEdgeOfChildren, aMetrics.mOverflowAreas);
  // Factor overflow container child bounds into the overflow area
  aMetrics.mOverflowAreas.UnionWith(ocBounds);
  // Factor pushed float child bounds into the overflow area
  aMetrics.mOverflowAreas.UnionWith(fcBounds);

  // Let the absolutely positioned container reflow any absolutely positioned
  // child frames that need to be reflowed, e.g., elements with a percentage
  // based width/height
  // We want to do this under either of two conditions:
  //  1. If we didn't do the incremental reflow above.
  //  2. If our size changed.
  // Even though it's the padding edge that's the containing block, we
  // can use our rect (the border edge) since if the border style
  // changed, the reflow would have been targeted at us so we'd satisfy
  // condition 1.
  // XXX checking oldSize is bogus, there are various reasons we might have
  // reflowed but our size might not have been changed to what we
  // asked for (e.g., we ended up being pushed to a new page)
  // When WillReflowAgainForClearance is true, we will reflow again without
  // resetting the size. Because of this, we must not reflow our abs-pos children
  // in that situation --- what we think is our "new size"
  // will not be our real new size. This also happens to be more efficient.
  if (HasAbsolutelyPositionedChildren()) {
    nsAbsoluteContainingBlock* absoluteContainer = GetAbsoluteContainingBlock();
    bool haveInterrupt = aPresContext->HasPendingInterrupt();
    if (reflowState->WillReflowAgainForClearance() ||
        haveInterrupt) {
      // Make sure that when we reflow again we'll actually reflow all the abs
      // pos frames that might conceivably depend on our size (or all of them,
      // if we're dirty right now and interrupted; in that case we also need
      // to mark them all with NS_FRAME_IS_DIRTY).  Sadly, we can't do much
      // better than that, because we don't really know what our size will be,
      // and it might in fact not change on the followup reflow!
      if (haveInterrupt && (GetStateBits() & NS_FRAME_IS_DIRTY)) {
        absoluteContainer->MarkAllFramesDirty();
      } else {
        absoluteContainer->MarkSizeDependentFramesDirty();
      }
    } else {
      nsSize containingBlockSize =
        CalculateContainingBlockSizeForAbsolutes(*reflowState,
                                                 nsSize(aMetrics.width,
                                                        aMetrics.height));

      // Mark frames that depend on changes we just made to this frame as dirty:
      // Now we can assume that the padding edge hasn't moved.
      // We need to reflow the absolutes if one of them depends on
      // its placeholder position, or the containing block size in a
      // direction in which the containing block size might have
      // changed.
      bool cbWidthChanged = aMetrics.width != oldSize.width;
      bool isRoot = !GetContent()->GetParent();
      // If isRoot and we have auto height, then we are the initial
      // containing block and the containing block height is the
      // viewport height, which can't change during incremental
      // reflow.
      bool cbHeightChanged =
        !(isRoot && NS_UNCONSTRAINEDSIZE == reflowState->ComputedHeight()) &&
        aMetrics.height != oldSize.height;

      absoluteContainer->Reflow(this, aPresContext, *reflowState,
                                state.mReflowStatus,
                                containingBlockSize.width,
                                containingBlockSize.height, true,
                                cbWidthChanged, cbHeightChanged,
                                &aMetrics.mOverflowAreas);

      //XXXfr Why isn't this rv (and others in this file) checked/returned?
    }
  }

  // Determine if we need to repaint our border, background or outline
  CheckInvalidateSizeChange(aMetrics);

  FinishAndStoreOverflow(&aMetrics);

  // Clear the float manager pointer in the block reflow state so we
  // don't waste time translating the coordinate system back on a dead
  // float manager.
  if (needFloatManager)
    state.mFloatManager = nsnull;

  aStatus = state.mReflowStatus;

#ifdef DEBUG
  // Between when we drain pushed floats and when we complete reflow,
  // we're allowed to have multiple continuations of the same float on
  // our floats list, since a first-in-flow might get pushed to a later
  // continuation of its containing block.  But it's not permitted
  // outside that time.
  nsLayoutUtils::AssertNoDuplicateContinuations(this, mFloats);

  if (gNoisyReflow) {
    IndentBy(stdout, gNoiseIndent);
    ListTag(stdout);
    printf(": status=%x (%scomplete) metrics=%d,%d carriedMargin=%d",
           aStatus, NS_FRAME_IS_COMPLETE(aStatus) ? "" : "not ",
           aMetrics.width, aMetrics.height,
           aMetrics.mCarriedOutBottomMargin.get());
    if (HasOverflowAreas()) {
      printf(" overflow-vis={%d,%d,%d,%d}",
             aMetrics.VisualOverflow().x,
             aMetrics.VisualOverflow().y,
             aMetrics.VisualOverflow().width,
             aMetrics.VisualOverflow().height);
      printf(" overflow-scr={%d,%d,%d,%d}",
             aMetrics.ScrollableOverflow().x,
             aMetrics.ScrollableOverflow().y,
             aMetrics.ScrollableOverflow().width,
             aMetrics.ScrollableOverflow().height);
    }
    printf("\n");
  }

  if (gLameReflowMetrics) {
    PRTime end = PR_Now();

    PRInt32 ectc = nsLineBox::GetCtorCount();
    PRInt32 numLines = mLines.size();
    if (!numLines) numLines = 1;
    PRTime delta, perLineDelta, lines;
    LL_I2L(lines, numLines);
    LL_SUB(delta, end, start);
    LL_DIV(perLineDelta, delta, lines);

    ListTag(stdout);
    char buf[400];
    PR_snprintf(buf, sizeof(buf),
                ": %lld elapsed (%lld per line) (%d lines; %d new lines)",
                delta, perLineDelta, numLines, ectc - ctc);
    printf("%s\n", buf);
  }
#endif

  NS_FRAME_SET_TRUNCATION(aStatus, (*reflowState), aMetrics);
  return rv;
}