/** * This file is part of the html renderer for KDE. * * Copyright (C) 2003, 2006 Apple Computer, Inc. * * This library is free software; you can redistribute it and/or * modify it under the terms of the GNU Library General Public * License as published by the Free Software Foundation; either * version 2 of the License, or (at your option) any later version. * * This library is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU * Library General Public License for more details. * * You should have received a copy of the GNU Library General Public License * along with this library; see the file COPYING.LIB. If not, write to * the Free Software Foundation, Inc., 59 Temple Place - Suite 330, * Boston, MA 02111-1307, USA. */ #include "config.h" #include "InlineFlowBox.h" #include "CachedImage.h" #include "Document.h" #include "EllipsisBox.h" #include "GraphicsContext.h" #include "InlineTextBox.h" #include "RootInlineBox.h" #include "RenderBlock.h" #include "RenderFlow.h" #include "RenderListMarker.h" #include "RenderTableCell.h" using namespace std; namespace WebCore { RenderFlow* InlineFlowBox::flowObject() { return static_cast(m_object); } int InlineFlowBox::marginLeft() { if (!includeLeftEdge()) return 0; Length margin = object()->style()->marginLeft(); if (margin.isAuto()) return 0; if (margin.isFixed()) return margin.value(); return object()->marginLeft(); } int InlineFlowBox::marginRight() { if (!includeRightEdge()) return 0; Length margin = object()->style()->marginRight(); if (margin.isAuto()) return 0; if (margin.isFixed()) return margin.value(); return object()->marginRight(); } int InlineFlowBox::marginBorderPaddingLeft() { return marginLeft() + borderLeft() + paddingLeft(); } int InlineFlowBox::marginBorderPaddingRight() { return marginRight() + borderRight() + paddingRight(); } int InlineFlowBox::getFlowSpacingWidth() { int totWidth = marginBorderPaddingLeft() + marginBorderPaddingRight(); for (InlineBox* curr = firstChild(); curr; curr = curr->nextOnLine()) { if (curr->isInlineFlowBox()) totWidth += static_cast(curr)->getFlowSpacingWidth(); } return totWidth; } void InlineFlowBox::addToLine(InlineBox* child) { ASSERT(!child->parent()); if (!m_firstChild) m_firstChild = m_lastChild = child; else { m_lastChild->m_next = child; child->m_prev = m_lastChild; m_lastChild = child; } child->setFirstLineStyleBit(m_firstLine); child->setParent(this); if (child->isText()) m_hasTextChildren = true; if (child->object()->selectionState() != RenderObject::SelectionNone) root()->setHasSelectedChildren(true); } void InlineFlowBox::removeChild(InlineBox* child) { if (!m_dirty) dirtyLineBoxes(); root()->childRemoved(child); if (child == m_firstChild) m_firstChild = child->nextOnLine(); if (child == m_lastChild) m_lastChild = child->prevOnLine(); if (child->nextOnLine()) child->nextOnLine()->setPrevOnLine(child->prevOnLine()); if (child->prevOnLine()) child->prevOnLine()->setNextOnLine(child->nextOnLine()); child->setParent(0); } void InlineFlowBox::deleteLine(RenderArena* arena) { InlineBox* child = m_firstChild; InlineBox* next = 0; while (child) { ASSERT(this == child->parent()); next = child->nextOnLine(); child->deleteLine(arena); child = next; } static_cast(m_object)->removeLineBox(this); destroy(arena); } void InlineFlowBox::extractLine() { if (!m_extracted) static_cast(m_object)->extractLineBox(this); for (InlineBox* child = m_firstChild; child; child = child->nextOnLine()) child->extractLine(); } void InlineFlowBox::attachLine() { if (m_extracted) static_cast(m_object)->attachLineBox(this); for (InlineBox* child = m_firstChild; child; child = child->nextOnLine()) child->attachLine(); } void InlineFlowBox::adjustPosition(int dx, int dy) { InlineRunBox::adjustPosition(dx, dy); for (InlineBox* child = m_firstChild; child; child = child->nextOnLine()) child->adjustPosition(dx, dy); } bool InlineFlowBox::onEndChain(RenderObject* endObject) { if (!endObject) return false; if (endObject == object()) return true; RenderObject* curr = endObject; RenderObject* parent = curr->parent(); while (parent && !parent->isRenderBlock()) { if (parent->lastChild() != curr || parent == object()) return false; curr = parent; parent = curr->parent(); } return true; } void InlineFlowBox::determineSpacingForFlowBoxes(bool lastLine, RenderObject* endObject) { // All boxes start off open. They will not apply any margins/border/padding on // any side. bool includeLeftEdge = false; bool includeRightEdge = false; RenderFlow* flow = static_cast(object()); if (!flow->firstChild()) includeLeftEdge = includeRightEdge = true; // Empty inlines never split across lines. else if (parent()) { // The root inline box never has borders/margins/padding. bool ltr = flow->style()->direction() == LTR; // Check to see if all initial lines are unconstructed. If so, then // we know the inline began on this line. if (!flow->firstLineBox()->isConstructed()) { if (ltr && flow->firstLineBox() == this) includeLeftEdge = true; else if (!ltr && flow->lastLineBox() == this) includeRightEdge = true; } // In order to determine if the inline ends on this line, we check three things: // (1) If we are the last line and we don't have a continuation(), then we can // close up. // (2) If the last line box for the flow has an object following it on the line (ltr, // reverse for rtl), then the inline has closed. // (3) The line may end on the inline. If we are the last child (climbing up // the end object's chain), then we just closed as well. if (!flow->lastLineBox()->isConstructed()) { if (ltr) { if (!nextLineBox() && ((lastLine && !object()->continuation()) || nextOnLineExists() || onEndChain(endObject))) includeRightEdge = true; } else { if ((!prevLineBox() || prevLineBox()->isConstructed()) && ((lastLine && !object()->continuation()) || prevOnLineExists() || onEndChain(endObject))) includeLeftEdge = true; } } } setEdges(includeLeftEdge, includeRightEdge); // Recur into our children. for (InlineBox* currChild = firstChild(); currChild; currChild = currChild->nextOnLine()) { if (currChild->isInlineFlowBox()) { InlineFlowBox* currFlow = static_cast(currChild); currFlow->determineSpacingForFlowBoxes(lastLine, endObject); } } } int InlineFlowBox::placeBoxesHorizontally(int x, int& leftPosition, int& rightPosition, bool& needsWordSpacing) { // Set our x position. setXPos(x); leftPosition = min(x, leftPosition); int startX = x; x += borderLeft() + paddingLeft(); for (InlineBox* curr = firstChild(); curr; curr = curr->nextOnLine()) { if (curr->object()->isText()) { InlineTextBox* text = static_cast(curr); RenderText* rt = static_cast(text->object()); if (rt->length()) { if (needsWordSpacing && DeprecatedChar(rt->text()[text->start()]).isSpace()) x += rt->font(m_firstLine)->wordSpacing(); needsWordSpacing = !DeprecatedChar(rt->text()[text->end()]).isSpace(); } text->setXPos(x); int shadowLeft = 0; int shadowRight = 0; for (ShadowData* shadow = rt->style()->textShadow(); shadow; shadow = shadow->next) { shadowLeft = min(shadowLeft, shadow->x - shadow->blur); shadowRight = max(shadowRight, shadow->x + shadow->blur); } leftPosition = min(x + shadowLeft, leftPosition); rightPosition = max(x + text->width() + shadowRight, rightPosition); m_maxHorizontalShadow = max(max(shadowRight, -shadowLeft), m_maxHorizontalShadow); x += text->width(); } else { if (curr->object()->isPositioned()) { if (curr->object()->parent()->style()->direction() == LTR) curr->setXPos(x); else // Our offset that we cache needs to be from the edge of the right border box and // not the left border box. We have to subtract |x| from the width of the block // (which can be obtained from the root line box). curr->setXPos(root()->object()->width()-x); continue; // The positioned object has no effect on the width. } if (curr->object()->isInlineFlow()) { InlineFlowBox* flow = static_cast(curr); if (curr->object()->isCompact()) { int ignoredX = x; flow->placeBoxesHorizontally(ignoredX, leftPosition, rightPosition, needsWordSpacing); } else { x += flow->marginLeft(); x = flow->placeBoxesHorizontally(x, leftPosition, rightPosition, needsWordSpacing); x += flow->marginRight(); } } else if (!curr->object()->isCompact() && (!curr->object()->isListMarker() || static_cast(curr->object())->isInside())) { x += curr->object()->marginLeft(); curr->setXPos(x); leftPosition = min(x + curr->object()->overflowLeft(false), leftPosition); rightPosition = max(x + curr->object()->overflowWidth(false), rightPosition); x += curr->width() + curr->object()->marginRight(); } } } x += borderRight() + paddingRight(); setWidth(x-startX); rightPosition = max(xPos() + width(), rightPosition); return x; } void InlineFlowBox::verticallyAlignBoxes(int& heightOfBlock) { int maxPositionTop = 0; int maxPositionBottom = 0; int maxAscent = 0; int maxDescent = 0; // Figure out if we're in strict mode. Note that we can't simply use !style()->htmlHacks(), // because that would match almost strict mode as well. RenderObject* curr = object(); while (curr && !curr->element()) curr = curr->container(); bool strictMode = (curr && curr->document()->inStrictMode()); computeLogicalBoxHeights(maxPositionTop, maxPositionBottom, maxAscent, maxDescent, strictMode); if (maxAscent + maxDescent < max(maxPositionTop, maxPositionBottom)) adjustMaxAscentAndDescent(maxAscent, maxDescent, maxPositionTop, maxPositionBottom); int maxHeight = maxAscent + maxDescent; int topPosition = heightOfBlock; int bottomPosition = heightOfBlock; int selectionTop = heightOfBlock; int selectionBottom = heightOfBlock; placeBoxesVertically(heightOfBlock, maxHeight, maxAscent, strictMode, topPosition, bottomPosition, selectionTop, selectionBottom); setVerticalOverflowPositions(topPosition, bottomPosition); setVerticalSelectionPositions(selectionTop, selectionBottom); // Shrink boxes with no text children in quirks and almost strict mode. if (!strictMode) shrinkBoxesWithNoTextChildren(topPosition, bottomPosition); heightOfBlock += maxHeight; } void InlineFlowBox::adjustMaxAscentAndDescent(int& maxAscent, int& maxDescent, int maxPositionTop, int maxPositionBottom) { for (InlineBox* curr = firstChild(); curr; curr = curr->nextOnLine()) { // The computed lineheight needs to be extended for the // positioned elements if (curr->object()->isPositioned()) continue; // Positioned placeholders don't affect calculations. if (curr->yPos() == PositionTop || curr->yPos() == PositionBottom) { if (curr->yPos() == PositionTop) { if (maxAscent + maxDescent < curr->height()) maxDescent = curr->height() - maxAscent; } else { if (maxAscent + maxDescent < curr->height()) maxAscent = curr->height() - maxDescent; } if (maxAscent + maxDescent >= max(maxPositionTop, maxPositionBottom)) break; } if (curr->isInlineFlowBox()) static_cast(curr)->adjustMaxAscentAndDescent(maxAscent, maxDescent, maxPositionTop, maxPositionBottom); } } void InlineFlowBox::computeLogicalBoxHeights(int& maxPositionTop, int& maxPositionBottom, int& maxAscent, int& maxDescent, bool strictMode) { if (isRootInlineBox()) { // Examine our root box. setHeight(object()->lineHeight(m_firstLine, true)); bool isTableCell = object()->isTableCell(); if (isTableCell) { RenderTableCell* tableCell = static_cast(object()); setBaseline(tableCell->RenderBlock::baselinePosition(m_firstLine, true)); } else setBaseline(object()->baselinePosition(m_firstLine, true)); if (hasTextChildren() || strictMode) { int ascent = baseline(); int descent = height() - ascent; if (maxAscent < ascent) maxAscent = ascent; if (maxDescent < descent) maxDescent = descent; } } for (InlineBox* curr = firstChild(); curr; curr = curr->nextOnLine()) { if (curr->object()->isPositioned()) continue; // Positioned placeholders don't affect calculations. curr->setHeight(curr->object()->lineHeight(m_firstLine)); curr->setBaseline(curr->object()->baselinePosition(m_firstLine)); curr->setYPos(curr->object()->verticalPositionHint(m_firstLine)); if (curr->yPos() == PositionTop) { if (maxPositionTop < curr->height()) maxPositionTop = curr->height(); } else if (curr->yPos() == PositionBottom) { if (maxPositionBottom < curr->height()) maxPositionBottom = curr->height(); } else if (curr->hasTextChildren() || strictMode) { int ascent = curr->baseline() - curr->yPos(); int descent = curr->height() - ascent; if (maxAscent < ascent) maxAscent = ascent; if (maxDescent < descent) maxDescent = descent; } if (curr->isInlineFlowBox()) static_cast(curr)->computeLogicalBoxHeights(maxPositionTop, maxPositionBottom, maxAscent, maxDescent, strictMode); } } void InlineFlowBox::placeBoxesVertically(int y, int maxHeight, int maxAscent, bool strictMode, int& topPosition, int& bottomPosition, int& selectionTop, int& selectionBottom) { if (isRootInlineBox()) setYPos(y + maxAscent - baseline());// Place our root box. for (InlineBox* curr = firstChild(); curr; curr = curr->nextOnLine()) { if (curr->object()->isPositioned()) continue; // Positioned placeholders don't affect calculations. // Adjust boxes to use their real box y/height and not the logical height (as dictated by // line-height). if (curr->isInlineFlowBox()) static_cast(curr)->placeBoxesVertically(y, maxHeight, maxAscent, strictMode, topPosition, bottomPosition, selectionTop, selectionBottom); bool childAffectsTopBottomPos = true; if (curr->yPos() == PositionTop) curr->setYPos(y); else if (curr->yPos() == PositionBottom) curr->setYPos(y + maxHeight - curr->height()); else { if (!curr->hasTextChildren() && !strictMode) childAffectsTopBottomPos = false; curr->setYPos(curr->yPos() + y + maxAscent - curr->baseline()); } int newY = curr->yPos(); int newHeight = curr->height(); int newBaseline = curr->baseline(); int overflowTop = 0; int overflowBottom = 0; if (curr->isText() || curr->isInlineFlowBox()) { const Font& font = curr->object()->font(m_firstLine); newBaseline = font.ascent(); newY += curr->baseline() - newBaseline; newHeight = newBaseline + font.descent(); for (ShadowData* shadow = curr->object()->style()->textShadow(); shadow; shadow = shadow->next) { overflowTop = min(overflowTop, shadow->y - shadow->blur); overflowBottom = max(overflowBottom, shadow->y + shadow->blur); } if (curr->isInlineFlowBox()) { newHeight += curr->object()->borderTop() + curr->object()->paddingTop() + curr->object()->borderBottom() + curr->object()->paddingBottom(); newY -= curr->object()->borderTop() + curr->object()->paddingTop(); newBaseline += curr->object()->borderTop() + curr->object()->paddingTop(); } } else if (!curr->object()->isBR()) { newY += curr->object()->marginTop(); newHeight = curr->height() - (curr->object()->marginTop() + curr->object()->marginBottom()); overflowTop = curr->object()->overflowTop(false); overflowBottom = curr->object()->overflowHeight(false) - newHeight; } curr->setYPos(newY); curr->setHeight(newHeight); curr->setBaseline(newBaseline); if (childAffectsTopBottomPos) { selectionTop = min(selectionTop, newY); selectionBottom = max(selectionBottom, newY + newHeight); topPosition = min(topPosition, newY + overflowTop); bottomPosition = max(bottomPosition, newY + newHeight + overflowBottom); } } if (isRootInlineBox()) { const Font& font = object()->font(m_firstLine); setHeight(font.ascent() + font.descent()); setYPos(yPos() + baseline() - font.ascent()); setBaseline(font.ascent()); if (hasTextChildren() || strictMode) { selectionTop = min(selectionTop, yPos()); selectionBottom = max(selectionBottom, yPos() + height()); } } } void InlineFlowBox::shrinkBoxesWithNoTextChildren(int topPos, int bottomPos) { // First shrink our kids. for (InlineBox* curr = firstChild(); curr; curr = curr->nextOnLine()) { if (curr->object()->isPositioned()) continue; // Positioned placeholders don't affect calculations. if (curr->isInlineFlowBox()) static_cast(curr)->shrinkBoxesWithNoTextChildren(topPos, bottomPos); } // See if we have text children. If not, then we need to shrink ourselves to fit on the line. if (!hasTextChildren()) { if (yPos() < topPos) setYPos(topPos); if (yPos() + height() > bottomPos) setHeight(bottomPos - yPos()); if (baseline() > height()) setBaseline(height()); } } bool InlineFlowBox::nodeAtPoint(RenderObject::NodeInfo& i, int x, int y, int tx, int ty) { // Check children first. for (InlineBox* curr = lastChild(); curr; curr = curr->prevOnLine()) { if (!curr->object()->layer() && curr->nodeAtPoint(i, x, y, tx, ty)) { object()->setInnerNode(i); return true; } } // Now check ourselves. IntRect rect(tx + m_x, ty + m_y, m_width, m_height); if (object()->style()->visibility() == VISIBLE && rect.contains(x, y)) { object()->setInnerNode(i); return true; } return false; } void InlineFlowBox::paint(RenderObject::PaintInfo& i, int tx, int ty) { int xPos = tx + m_x - object()->maximalOutlineSize(i.phase); int w = width() + 2 * object()->maximalOutlineSize(i.phase); bool intersectsDamageRect = xPos < i.r.right() && xPos + w > i.r.x(); if (intersectsDamageRect && i.phase != PaintPhaseChildOutlines) { if (i.phase == PaintPhaseOutline || i.phase == PaintPhaseSelfOutline) { // Add ourselves to the paint info struct's list of inlines that need to paint their // outlines. if (object()->style()->visibility() == VISIBLE && object()->style()->outlineWidth() > 0 && !object()->isInlineContinuation() && !isRootInlineBox()) { i.outlineObjects->add(flowObject()); } } else { // 1. Paint our background and border. paintBackgroundAndBorder(i, tx, ty); // 2. Paint our underline and overline. paintDecorations(i, tx, ty, false); } } PaintPhase paintPhase = i.phase == PaintPhaseChildOutlines ? PaintPhaseOutline : i.phase; RenderObject::PaintInfo childInfo(i); childInfo.phase = paintPhase; // 3. Paint our children. if (paintPhase != PaintPhaseSelfOutline) { for (InlineBox* curr = firstChild(); curr; curr = curr->nextOnLine()) { if (!curr->object()->layer()) curr->paint(childInfo, tx, ty); } } // 4. Paint our strike-through if (intersectsDamageRect && (i.phase == PaintPhaseForeground || i.phase == PaintPhaseSelection)) paintDecorations(i, tx, ty, true); } void InlineFlowBox::paintBackgrounds(GraphicsContext* p, const Color& c, const BackgroundLayer* bgLayer, int my, int mh, int _tx, int _ty, int w, int h) { if (!bgLayer) return; paintBackgrounds(p, c, bgLayer->next(), my, mh, _tx, _ty, w, h); paintBackground(p, c, bgLayer, my, mh, _tx, _ty, w, h); } void InlineFlowBox::paintBackground(GraphicsContext* p, const Color& c, const BackgroundLayer* bgLayer, int my, int mh, int _tx, int _ty, int w, int h) { CachedImage* bg = bgLayer->backgroundImage(); bool hasBackgroundImage = bg && bg->canRender(); if (!hasBackgroundImage || (!prevLineBox() && !nextLineBox()) || !parent()) object()->paintBackgroundExtended(p, c, bgLayer, my, mh, _tx, _ty, w, h, borderLeft(), borderRight(), paddingLeft(), paddingRight()); else { // We have a background image that spans multiple lines. // We need to adjust _tx and _ty by the width of all previous lines. // Think of background painting on inlines as though you had one long line, a single continuous // strip. Even though that strip has been broken up across multiple lines, you still paint it // as though you had one single line. This means each line has to pick up the background where // the previous line left off. // FIXME: What the heck do we do with RTL here? The math we're using is obviously not right, // but it isn't even clear how this should work at all. int xOffsetOnLine = 0; for (InlineRunBox* curr = prevLineBox(); curr; curr = curr->prevLineBox()) xOffsetOnLine += curr->width(); int startX = _tx - xOffsetOnLine; int totalWidth = xOffsetOnLine; for (InlineRunBox* curr = this; curr; curr = curr->nextLineBox()) totalWidth += curr->width(); p->save(); p->addClip(IntRect(_tx, _ty, width(), height())); object()->paintBackgroundExtended(p, c, bgLayer, my, mh, startX, _ty, totalWidth, h, borderLeft(), borderRight(), paddingLeft(), paddingRight()); p->restore(); } } void InlineFlowBox::paintBackgroundAndBorder(RenderObject::PaintInfo& i, int _tx, int _ty) { if (!object()->shouldPaintWithinRoot(i) || object()->style()->visibility() != VISIBLE || i.phase != PaintPhaseForeground) return; // Move x/y to our coordinates. _tx += m_x; _ty += m_y; int w = width(); int h = height(); int my = max(_ty, i.r.y()); int mh; if (_ty < i.r.y()) mh = max(0, h - (i.r.y() - _ty)); else mh = min(i.r.height(), h); GraphicsContext* p = i.p; // You can use p::first-line to specify a background. If so, the root line boxes for // a line may actually have to paint a background. RenderStyle* styleToUse = object()->style(m_firstLine); if ((!parent() && m_firstLine && styleToUse != object()->style()) || (parent() && object()->shouldPaintBackgroundOrBorder())) { Color c = styleToUse->backgroundColor(); paintBackgrounds(p, c, styleToUse->backgroundLayers(), my, mh, _tx, _ty, w, h); // :first-line cannot be used to put borders on a line. Always paint borders with our // non-first-line style. if (parent() && object()->style()->hasBorder()) { CachedImage* borderImage = object()->style()->borderImage().image(); bool hasBorderImage = borderImage && borderImage->canRender(); if (hasBorderImage && !borderImage->isLoaded()) return; // Don't paint anything while we wait for the image to load. // The simple case is where we either have no border image or we are the only box for this object. In those // cases only a single call to draw is required. if (!hasBorderImage || (!prevLineBox() && !nextLineBox())) object()->paintBorder(p, _tx, _ty, w, h, object()->style(), includeLeftEdge(), includeRightEdge()); else { // We have a border image that spans multiple lines. // We need to adjust _tx and _ty by the width of all previous lines. // Think of border image painting on inlines as though you had one long line, a single continuous // strip. Even though that strip has been broken up across multiple lines, you still paint it // as though you had one single line. This means each line has to pick up the image where // the previous line left off. // FIXME: What the heck do we do with RTL here? The math we're using is obviously not right, // but it isn't even clear how this should work at all. int xOffsetOnLine = 0; for (InlineRunBox* curr = prevLineBox(); curr; curr = curr->prevLineBox()) xOffsetOnLine += curr->width(); int startX = _tx - xOffsetOnLine; int totalWidth = xOffsetOnLine; for (InlineRunBox* curr = this; curr; curr = curr->nextLineBox()) totalWidth += curr->width(); p->save(); p->addClip(IntRect(_tx, _ty, width(), height())); object()->paintBorder(p, startX, _ty, totalWidth, h, object()->style()); p->restore(); } } } } static bool shouldDrawDecoration(RenderObject* obj) { for (RenderObject* curr = obj->firstChild(); curr; curr = curr->nextSibling()) { if (curr->isInlineFlow()) return true; if (curr->isText() && !curr->isBR()) { if (!curr->style()->collapseWhiteSpace()) return true; Node* currElement = curr->element(); if (!currElement) return true; if (!currElement->isTextNode()) return true; if (!static_cast(currElement)->containsOnlyWhitespace()) return true; } } return false; } void InlineFlowBox::paintDecorations(RenderObject::PaintInfo& i, int _tx, int _ty, bool paintedChildren) { // Paint text decorations like underlines/overlines. We only do this if we aren't in quirks mode (i.e., in // almost-strict mode or strict mode). if (object()->style()->htmlHacks() || !object()->shouldPaintWithinRoot(i) || object()->style()->visibility() != VISIBLE) return; GraphicsContext* p = i.p; _tx += m_x; _ty += m_y; RenderStyle* styleToUse = object()->style(m_firstLine); int deco = parent() ? styleToUse->textDecoration() : styleToUse->textDecorationsInEffect(); if (deco != TDNONE && ((!paintedChildren && ((deco & UNDERLINE) || (deco & OVERLINE))) || (paintedChildren && (deco & LINE_THROUGH))) && shouldDrawDecoration(object())) { int x = m_x + borderLeft() + paddingLeft(); int w = m_width - (borderLeft() + paddingLeft() + borderRight() + paddingRight()); RootInlineBox* rootLine = root(); if (rootLine->ellipsisBox()) { int ellipsisX = rootLine->ellipsisBox()->xPos(); int ellipsisWidth = rootLine->ellipsisBox()->width(); // FIXME: Will need to work with RTL if (rootLine == this) { if (x + w >= ellipsisX + ellipsisWidth) w -= (x + w - ellipsisX - ellipsisWidth); } else { if (x >= ellipsisX) return; if (x + w >= ellipsisX) w -= (x + w - ellipsisX); } } // Set up the appropriate text-shadow effect for the decoration. // FIXME: Support multiple shadow effects. Need more from the CG API before we can do this. bool setShadow = false; if (styleToUse->textShadow()) { p->setShadow(IntSize(styleToUse->textShadow()->x, styleToUse->textShadow()->y), styleToUse->textShadow()->blur, styleToUse->textShadow()->color); setShadow = true; } // We must have child boxes and have decorations defined. _tx += borderLeft() + paddingLeft(); Color underline, overline, linethrough; underline = overline = linethrough = styleToUse->color(); if (!parent()) object()->getTextDecorationColors(deco, underline, overline, linethrough); if (styleToUse->font() != p->font()) p->setFont(styleToUse->font()); bool isPrinting = object()->document()->printing(); if (deco & UNDERLINE && !paintedChildren) { p->setPen(underline); p->drawLineForText(IntPoint(_tx, _ty), m_baseline, w, isPrinting); } if (deco & OVERLINE && !paintedChildren) { p->setPen(overline); p->drawLineForText(IntPoint(_tx, _ty), 0, w, isPrinting); } if (deco & LINE_THROUGH && paintedChildren) { p->setPen(linethrough); p->drawLineForText(IntPoint(_tx, _ty), 2*m_baseline/3, w, isPrinting); } if (setShadow) p->clearShadow(); } } InlineBox* InlineFlowBox::firstLeafChild() { return firstLeafChildAfterBox(); } InlineBox* InlineFlowBox::lastLeafChild() { return lastLeafChildBeforeBox(); } InlineBox* InlineFlowBox::firstLeafChildAfterBox(InlineBox* start) { InlineBox* leaf = 0; for (InlineBox* box = start ? start->nextOnLine() : firstChild(); box && !leaf; box = box->nextOnLine()) leaf = box->firstLeafChild(); if (start && !leaf && parent()) return parent()->firstLeafChildAfterBox(this); return leaf; } InlineBox* InlineFlowBox::lastLeafChildBeforeBox(InlineBox* start) { InlineBox* leaf = 0; for (InlineBox* box = start ? start->prevOnLine() : lastChild(); box && !leaf; box = box->prevOnLine()) leaf = box->lastLeafChild(); if (start && !leaf && parent()) return parent()->lastLeafChildBeforeBox(this); return leaf; } RenderObject::SelectionState InlineFlowBox::selectionState() { return RenderObject::SelectionNone; } bool InlineFlowBox::canAccommodateEllipsis(bool ltr, int blockEdge, int ellipsisWidth) { for (InlineBox *box = firstChild(); box; box = box->nextOnLine()) { if (!box->canAccommodateEllipsis(ltr, blockEdge, ellipsisWidth)) return false; } return true; } int InlineFlowBox::placeEllipsisBox(bool ltr, int blockEdge, int ellipsisWidth, bool& foundBox) { int result = -1; for (InlineBox *box = firstChild(); box; box = box->nextOnLine()) { int currResult = box->placeEllipsisBox(ltr, blockEdge, ellipsisWidth, foundBox); if (currResult != -1 && result == -1) result = currResult; } return result; } void InlineFlowBox::clearTruncation() { for (InlineBox *box = firstChild(); box; box = box->nextOnLine()) box->clearTruncation(); } } // namespace