mirror of
https://gitlab.winehq.org/wine/wine-gecko.git
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33de67ec1b
This is the second of two big chunks of code moved into the new RestyleManager class from another sources. Note that the undisplayed map remains in nsFrameManager, although it could perhaps have moved.
396 lines
14 KiB
C++
396 lines
14 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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/* rendering object for CSS :first-letter pseudo-element */
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#include "nsCOMPtr.h"
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#include "nsFirstLetterFrame.h"
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#include "nsPresContext.h"
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#include "nsStyleContext.h"
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#include "nsIContent.h"
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#include "nsLineLayout.h"
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#include "nsGkAtoms.h"
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#include "nsAutoPtr.h"
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#include "nsStyleSet.h"
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#include "nsFrameManager.h"
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#include "RestyleManager.h"
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#include "nsPlaceholderFrame.h"
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#include "nsCSSFrameConstructor.h"
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using namespace mozilla;
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using namespace mozilla::layout;
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nsIFrame*
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NS_NewFirstLetterFrame(nsIPresShell* aPresShell, nsStyleContext* aContext)
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{
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return new (aPresShell) nsFirstLetterFrame(aContext);
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}
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NS_IMPL_FRAMEARENA_HELPERS(nsFirstLetterFrame)
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NS_QUERYFRAME_HEAD(nsFirstLetterFrame)
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NS_QUERYFRAME_ENTRY(nsFirstLetterFrame)
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NS_QUERYFRAME_TAIL_INHERITING(nsContainerFrame)
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#ifdef DEBUG
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NS_IMETHODIMP
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nsFirstLetterFrame::GetFrameName(nsAString& aResult) const
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{
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return MakeFrameName(NS_LITERAL_STRING("Letter"), aResult);
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}
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#endif
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nsIAtom*
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nsFirstLetterFrame::GetType() const
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{
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return nsGkAtoms::letterFrame;
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}
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void
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nsFirstLetterFrame::BuildDisplayList(nsDisplayListBuilder* aBuilder,
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const nsRect& aDirtyRect,
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const nsDisplayListSet& aLists)
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{
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BuildDisplayListForInline(aBuilder, aDirtyRect, aLists);
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}
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void
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nsFirstLetterFrame::Init(nsIContent* aContent,
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nsIFrame* aParent,
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nsIFrame* aPrevInFlow)
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{
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nsRefPtr<nsStyleContext> newSC;
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if (aPrevInFlow) {
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// Get proper style context for ourselves. We're creating the frame
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// that represents everything *except* the first letter, so just create
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// a style context like we would for a text node.
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nsStyleContext* parentStyleContext = mStyleContext->GetParent();
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if (parentStyleContext) {
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newSC = PresContext()->StyleSet()->
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ResolveStyleForNonElement(parentStyleContext);
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if (newSC)
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SetStyleContextWithoutNotification(newSC);
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}
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}
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nsContainerFrame::Init(aContent, aParent, aPrevInFlow);
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}
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NS_IMETHODIMP
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nsFirstLetterFrame::SetInitialChildList(ChildListID aListID,
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nsFrameList& aChildList)
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{
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RestyleManager* restyleManager = PresContext()->RestyleManager();
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for (nsFrameList::Enumerator e(aChildList); !e.AtEnd(); e.Next()) {
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NS_ASSERTION(e.get()->GetParent() == this, "Unexpected parent");
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restyleManager->ReparentStyleContext(e.get());
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}
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mFrames.SetFrames(aChildList);
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return NS_OK;
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}
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NS_IMETHODIMP
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nsFirstLetterFrame::GetChildFrameContainingOffset(int32_t inContentOffset,
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bool inHint,
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int32_t* outFrameContentOffset,
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nsIFrame **outChildFrame)
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{
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nsIFrame *kid = mFrames.FirstChild();
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if (kid)
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{
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return kid->GetChildFrameContainingOffset(inContentOffset, inHint, outFrameContentOffset, outChildFrame);
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}
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else
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return nsFrame::GetChildFrameContainingOffset(inContentOffset, inHint, outFrameContentOffset, outChildFrame);
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}
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// Needed for non-floating first-letter frames and for the continuations
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// following the first-letter that we also use nsFirstLetterFrame for.
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/* virtual */ void
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nsFirstLetterFrame::AddInlineMinWidth(nsRenderingContext *aRenderingContext,
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nsIFrame::InlineMinWidthData *aData)
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{
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DoInlineIntrinsicWidth(aRenderingContext, aData, nsLayoutUtils::MIN_WIDTH);
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}
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// Needed for non-floating first-letter frames and for the continuations
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// following the first-letter that we also use nsFirstLetterFrame for.
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/* virtual */ void
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nsFirstLetterFrame::AddInlinePrefWidth(nsRenderingContext *aRenderingContext,
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nsIFrame::InlinePrefWidthData *aData)
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{
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DoInlineIntrinsicWidth(aRenderingContext, aData, nsLayoutUtils::PREF_WIDTH);
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}
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// Needed for floating first-letter frames.
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/* virtual */ nscoord
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nsFirstLetterFrame::GetMinWidth(nsRenderingContext *aRenderingContext)
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{
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return nsLayoutUtils::MinWidthFromInline(this, aRenderingContext);
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}
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// Needed for floating first-letter frames.
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/* virtual */ nscoord
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nsFirstLetterFrame::GetPrefWidth(nsRenderingContext *aRenderingContext)
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{
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return nsLayoutUtils::PrefWidthFromInline(this, aRenderingContext);
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}
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/* virtual */ nsSize
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nsFirstLetterFrame::ComputeSize(nsRenderingContext *aRenderingContext,
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nsSize aCBSize, nscoord aAvailableWidth,
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nsSize aMargin, nsSize aBorder, nsSize aPadding,
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uint32_t aFlags)
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{
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if (GetPrevInFlow()) {
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// We're wrapping the text *after* the first letter, so behave like an
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// inline frame.
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return nsSize(NS_UNCONSTRAINEDSIZE, NS_UNCONSTRAINEDSIZE);
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}
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return nsContainerFrame::ComputeSize(aRenderingContext,
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aCBSize, aAvailableWidth, aMargin, aBorder, aPadding, aFlags);
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}
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NS_IMETHODIMP
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nsFirstLetterFrame::Reflow(nsPresContext* aPresContext,
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nsHTMLReflowMetrics& aMetrics,
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const nsHTMLReflowState& aReflowState,
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nsReflowStatus& aReflowStatus)
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{
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DO_GLOBAL_REFLOW_COUNT("nsFirstLetterFrame");
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DISPLAY_REFLOW(aPresContext, this, aReflowState, aMetrics, aReflowStatus);
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nsresult rv = NS_OK;
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// Grab overflow list
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DrainOverflowFrames(aPresContext);
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nsIFrame* kid = mFrames.FirstChild();
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// Setup reflow state for our child
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nsSize availSize(aReflowState.availableWidth, aReflowState.availableHeight);
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const nsMargin& bp = aReflowState.mComputedBorderPadding;
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nscoord lr = bp.left + bp.right;
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nscoord tb = bp.top + bp.bottom;
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NS_ASSERTION(availSize.width != NS_UNCONSTRAINEDSIZE,
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"should no longer use unconstrained widths");
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availSize.width -= lr;
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if (NS_UNCONSTRAINEDSIZE != availSize.height) {
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availSize.height -= tb;
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}
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// Reflow the child
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if (!aReflowState.mLineLayout) {
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// When there is no lineLayout provided, we provide our own. The
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// only time that the first-letter-frame is not reflowing in a
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// line context is when its floating.
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nsHTMLReflowState rs(aPresContext, aReflowState, kid, availSize);
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nsLineLayout ll(aPresContext, nullptr, &aReflowState, nullptr);
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// For unicode-bidi: plaintext, we need to get the direction of the line
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// from the resolved paragraph level of the child, not the block frame,
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// because the block frame could be split by hard line breaks into
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// multiple paragraphs with different base direction
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uint8_t direction;
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nsIFrame* containerFrame = ll.LineContainerFrame();
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if (containerFrame->StyleTextReset()->mUnicodeBidi &
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NS_STYLE_UNICODE_BIDI_PLAINTEXT) {
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FramePropertyTable *propTable = aPresContext->PropertyTable();
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direction = NS_PTR_TO_INT32(propTable->Get(kid, BaseLevelProperty())) & 1;
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} else {
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direction = containerFrame->StyleVisibility()->mDirection;
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}
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ll.BeginLineReflow(bp.left, bp.top, availSize.width, NS_UNCONSTRAINEDSIZE,
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false, true, direction);
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rs.mLineLayout = ≪
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ll.SetInFirstLetter(true);
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ll.SetFirstLetterStyleOK(true);
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kid->WillReflow(aPresContext);
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kid->Reflow(aPresContext, aMetrics, rs, aReflowStatus);
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ll.EndLineReflow();
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ll.SetInFirstLetter(false);
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// In the floating first-letter case, we need to set this ourselves;
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// nsLineLayout::BeginSpan will set it in the other case
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mBaseline = aMetrics.ascent;
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}
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else {
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// Pretend we are a span and reflow the child frame
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nsLineLayout* ll = aReflowState.mLineLayout;
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bool pushedFrame;
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ll->SetInFirstLetter(
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mStyleContext->GetPseudo() == nsCSSPseudoElements::firstLetter);
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ll->BeginSpan(this, &aReflowState, bp.left, availSize.width, &mBaseline);
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ll->ReflowFrame(kid, aReflowStatus, &aMetrics, pushedFrame);
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ll->EndSpan(this);
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ll->SetInFirstLetter(false);
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}
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// Place and size the child and update the output metrics
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kid->SetRect(nsRect(bp.left, bp.top, aMetrics.width, aMetrics.height));
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kid->FinishAndStoreOverflow(&aMetrics);
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kid->DidReflow(aPresContext, nullptr, nsDidReflowStatus::FINISHED);
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aMetrics.width += lr;
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aMetrics.height += tb;
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aMetrics.ascent += bp.top;
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// Ensure that the overflow rect contains the child textframe's overflow rect.
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// Note that if this is floating, the overline/underline drawable area is in
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// the overflow rect of the child textframe.
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aMetrics.UnionOverflowAreasWithDesiredBounds();
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ConsiderChildOverflow(aMetrics.mOverflowAreas, kid);
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if (!NS_INLINE_IS_BREAK_BEFORE(aReflowStatus)) {
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// Create a continuation or remove existing continuations based on
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// the reflow completion status.
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if (NS_FRAME_IS_COMPLETE(aReflowStatus)) {
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if (aReflowState.mLineLayout) {
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aReflowState.mLineLayout->SetFirstLetterStyleOK(false);
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}
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nsIFrame* kidNextInFlow = kid->GetNextInFlow();
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if (kidNextInFlow) {
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// Remove all of the childs next-in-flows
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static_cast<nsContainerFrame*>(kidNextInFlow->GetParent())
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->DeleteNextInFlowChild(aPresContext, kidNextInFlow, true);
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}
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}
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else {
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// Create a continuation for the child frame if it doesn't already
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// have one.
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if (!IsFloating()) {
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nsIFrame* nextInFlow;
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rv = CreateNextInFlow(aPresContext, kid, nextInFlow);
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if (NS_FAILED(rv)) {
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return rv;
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}
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// And then push it to our overflow list
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const nsFrameList& overflow = mFrames.RemoveFramesAfter(kid);
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if (overflow.NotEmpty()) {
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SetOverflowFrames(aPresContext, overflow);
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}
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} else if (!kid->GetNextInFlow()) {
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// For floating first letter frames (if a continuation wasn't already
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// created for us) we need to put the continuation with the rest of the
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// text that the first letter frame was made out of.
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nsIFrame* continuation;
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rv = CreateContinuationForFloatingParent(aPresContext, kid,
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&continuation, true);
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}
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}
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}
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FinishAndStoreOverflow(&aMetrics);
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NS_FRAME_SET_TRUNCATION(aReflowStatus, aReflowState, aMetrics);
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return rv;
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}
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/* virtual */ bool
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nsFirstLetterFrame::CanContinueTextRun() const
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{
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// We can continue a text run through a first-letter frame.
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return true;
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}
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nsresult
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nsFirstLetterFrame::CreateContinuationForFloatingParent(nsPresContext* aPresContext,
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nsIFrame* aChild,
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nsIFrame** aContinuation,
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bool aIsFluid)
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{
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NS_ASSERTION(IsFloating(),
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"can only call this on floating first letter frames");
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NS_PRECONDITION(aContinuation, "bad args");
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*aContinuation = nullptr;
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nsresult rv = NS_OK;
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nsIPresShell* presShell = aPresContext->PresShell();
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nsPlaceholderFrame* placeholderFrame =
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presShell->FrameManager()->GetPlaceholderFrameFor(this);
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nsIFrame* parent = placeholderFrame->GetParent();
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nsIFrame* continuation = presShell->FrameConstructor()->
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CreateContinuingFrame(aPresContext, aChild, parent, aIsFluid);
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// The continuation will have gotten the first letter style from it's
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// prev continuation, so we need to repair the style context so it
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// doesn't have the first letter styling.
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nsStyleContext* parentSC = this->StyleContext()->GetParent();
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if (parentSC) {
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nsRefPtr<nsStyleContext> newSC;
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newSC = presShell->StyleSet()->ResolveStyleForNonElement(parentSC);
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if (newSC) {
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continuation->SetStyleContext(newSC);
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}
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}
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//XXX Bidi may not be involved but we have to use the list name
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// kNoReflowPrincipalList because this is just like creating a continuation
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// except we have to insert it in a different place and we don't want a
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// reflow command to try to be issued.
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nsFrameList temp(continuation, continuation);
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rv = parent->InsertFrames(kNoReflowPrincipalList, placeholderFrame, temp);
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*aContinuation = continuation;
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return rv;
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}
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void
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nsFirstLetterFrame::DrainOverflowFrames(nsPresContext* aPresContext)
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{
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// Check for an overflow list with our prev-in-flow
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nsFirstLetterFrame* prevInFlow = (nsFirstLetterFrame*)GetPrevInFlow();
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if (prevInFlow) {
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AutoFrameListPtr overflowFrames(aPresContext,
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prevInFlow->StealOverflowFrames());
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if (overflowFrames) {
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NS_ASSERTION(mFrames.IsEmpty(), "bad overflow list");
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// When pushing and pulling frames we need to check for whether any
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// views need to be reparented.
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nsContainerFrame::ReparentFrameViewList(aPresContext, *overflowFrames,
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prevInFlow, this);
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mFrames.InsertFrames(this, nullptr, *overflowFrames);
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}
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}
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// It's also possible that we have an overflow list for ourselves
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AutoFrameListPtr overflowFrames(aPresContext, StealOverflowFrames());
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if (overflowFrames) {
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NS_ASSERTION(mFrames.NotEmpty(), "overflow list w/o frames");
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mFrames.AppendFrames(nullptr, *overflowFrames);
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}
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// Now repair our first frames style context (since we only reflow
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// one frame there is no point in doing any other ones until they
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// are reflowed)
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nsIFrame* kid = mFrames.FirstChild();
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if (kid) {
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nsRefPtr<nsStyleContext> sc;
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nsIContent* kidContent = kid->GetContent();
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if (kidContent) {
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NS_ASSERTION(kidContent->IsNodeOfType(nsINode::eTEXT),
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"should contain only text nodes");
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sc = aPresContext->StyleSet()->ResolveStyleForNonElement(mStyleContext);
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if (sc) {
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kid->SetStyleContext(sc);
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}
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}
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}
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}
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nscoord
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nsFirstLetterFrame::GetBaseline() const
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{
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return mBaseline;
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}
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