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      1 /*
      2  * Copyright (C) 1999 Lars Knoll (knoll (at) kde.org)
      3  * Copyright (C) 2000 Dirk Mueller (mueller (at) kde.org)
      4  * Copyright (C) 2004, 2006, 2007 Apple Inc. All rights reserved.
      5  * Copyright (C) Research In Motion Limited 2011-2012. All rights reserved.
      6  *
      7  * This library is free software; you can redistribute it and/or
      8  * modify it under the terms of the GNU Library General Public
      9  * License as published by the Free Software Foundation; either
     10  * version 2 of the License, or (at your option) any later version.
     11  *
     12  * This library is distributed in the hope that it will be useful,
     13  * but WITHOUT ANY WARRANTY; without even the implied warranty of
     14  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
     15  * Library General Public License for more details.
     16  *
     17  * You should have received a copy of the GNU Library General Public License
     18  * along with this library; see the file COPYING.LIB.  If not, write to
     19  * the Free Software Foundation, Inc., 51 Franklin Street, Fifth Floor,
     20  * Boston, MA 02110-1301, USA.
     21  *
     22  */
     23 
     24 #include "config.h"
     25 #include "core/rendering/RenderReplaced.h"
     26 
     27 #include "core/editing/PositionWithAffinity.h"
     28 #include "core/paint/BoxPainter.h"
     29 #include "core/rendering/GraphicsContextAnnotator.h"
     30 #include "core/rendering/RenderBlock.h"
     31 #include "core/rendering/RenderImage.h"
     32 #include "core/rendering/RenderLayer.h"
     33 #include "core/rendering/RenderView.h"
     34 #include "platform/LengthFunctions.h"
     35 #include "platform/graphics/GraphicsContext.h"
     36 
     37 namespace blink {
     38 
     39 const int RenderReplaced::defaultWidth = 300;
     40 const int RenderReplaced::defaultHeight = 150;
     41 
     42 RenderReplaced::RenderReplaced(Element* element)
     43     : RenderBox(element)
     44     , m_intrinsicSize(defaultWidth, defaultHeight)
     45 {
     46     setReplaced(true);
     47 }
     48 
     49 RenderReplaced::RenderReplaced(Element* element, const LayoutSize& intrinsicSize)
     50     : RenderBox(element)
     51     , m_intrinsicSize(intrinsicSize)
     52 {
     53     setReplaced(true);
     54 }
     55 
     56 RenderReplaced::~RenderReplaced()
     57 {
     58 }
     59 
     60 void RenderReplaced::willBeDestroyed()
     61 {
     62     if (!documentBeingDestroyed() && parent())
     63         parent()->dirtyLinesFromChangedChild(this);
     64 
     65     RenderBox::willBeDestroyed();
     66 }
     67 
     68 void RenderReplaced::styleDidChange(StyleDifference diff, const RenderStyle* oldStyle)
     69 {
     70     RenderBox::styleDidChange(diff, oldStyle);
     71 
     72     bool hadStyle = (oldStyle != 0);
     73     float oldZoom = hadStyle ? oldStyle->effectiveZoom() : RenderStyle::initialZoom();
     74     if (style() && style()->effectiveZoom() != oldZoom)
     75         intrinsicSizeChanged();
     76 }
     77 
     78 void RenderReplaced::layout()
     79 {
     80     ASSERT(needsLayout());
     81 
     82     LayoutRect oldContentRect = replacedContentRect();
     83 
     84     setHeight(minimumReplacedHeight());
     85 
     86     updateLogicalWidth();
     87     updateLogicalHeight();
     88 
     89     m_overflow.clear();
     90     addVisualEffectOverflow();
     91     updateLayerTransformAfterLayout();
     92     invalidateBackgroundObscurationStatus();
     93 
     94     clearNeedsLayout();
     95 
     96     if (replacedContentRect() != oldContentRect)
     97         setShouldDoFullPaintInvalidation(true);
     98 }
     99 
    100 void RenderReplaced::intrinsicSizeChanged()
    101 {
    102     int scaledWidth = static_cast<int>(defaultWidth * style()->effectiveZoom());
    103     int scaledHeight = static_cast<int>(defaultHeight * style()->effectiveZoom());
    104     m_intrinsicSize = IntSize(scaledWidth, scaledHeight);
    105     setNeedsLayoutAndPrefWidthsRecalcAndFullPaintInvalidation();
    106 }
    107 
    108 void RenderReplaced::paint(PaintInfo& paintInfo, const LayoutPoint& paintOffset)
    109 {
    110     ANNOTATE_GRAPHICS_CONTEXT(paintInfo, this);
    111 
    112     if (!shouldPaint(paintInfo, paintOffset))
    113         return;
    114 
    115     LayoutPoint adjustedPaintOffset = paintOffset + location();
    116 
    117     if (hasBoxDecorationBackground() && (paintInfo.phase == PaintPhaseForeground || paintInfo.phase == PaintPhaseSelection))
    118         paintBoxDecorationBackground(paintInfo, adjustedPaintOffset);
    119 
    120     if (paintInfo.phase == PaintPhaseMask) {
    121         paintMask(paintInfo, adjustedPaintOffset);
    122         return;
    123     }
    124 
    125     if (paintInfo.phase == PaintPhaseClippingMask && (!hasLayer() || !layer()->hasCompositedClippingMask()))
    126         return;
    127 
    128     LayoutRect paintRect = LayoutRect(adjustedPaintOffset, size());
    129     if ((paintInfo.phase == PaintPhaseOutline || paintInfo.phase == PaintPhaseSelfOutline) && style()->outlineWidth())
    130         paintOutline(paintInfo, paintRect);
    131 
    132     if (paintInfo.phase != PaintPhaseForeground && paintInfo.phase != PaintPhaseSelection && !canHaveChildren() && paintInfo.phase != PaintPhaseClippingMask)
    133         return;
    134 
    135     if (!paintInfo.shouldPaintWithinRoot(this))
    136         return;
    137 
    138     bool drawSelectionTint = selectionState() != SelectionNone && !document().printing();
    139     if (paintInfo.phase == PaintPhaseSelection) {
    140         if (selectionState() == SelectionNone)
    141             return;
    142         drawSelectionTint = false;
    143     }
    144 
    145     bool completelyClippedOut = false;
    146     if (style()->hasBorderRadius()) {
    147         LayoutRect borderRect = LayoutRect(adjustedPaintOffset, size());
    148 
    149         if (borderRect.isEmpty())
    150             completelyClippedOut = true;
    151         else {
    152             // Push a clip if we have a border radius, since we want to round the foreground content that gets painted.
    153             paintInfo.context->save();
    154             RoundedRect roundedInnerRect = style()->getRoundedInnerBorderFor(paintRect,
    155                 paddingTop() + borderTop(), paddingBottom() + borderBottom(), paddingLeft() + borderLeft(), paddingRight() + borderRight(), true, true);
    156             BoxPainter::clipRoundedInnerRect(paintInfo.context, paintRect, roundedInnerRect);
    157         }
    158     }
    159 
    160     if (!completelyClippedOut) {
    161         if (paintInfo.phase == PaintPhaseClippingMask) {
    162             paintClippingMask(paintInfo, adjustedPaintOffset);
    163         } else {
    164             paintReplaced(paintInfo, adjustedPaintOffset);
    165         }
    166 
    167         if (style()->hasBorderRadius())
    168             paintInfo.context->restore();
    169     }
    170 
    171     // The selection tint never gets clipped by border-radius rounding, since we want it to run right up to the edges of
    172     // surrounding content.
    173     if (drawSelectionTint) {
    174         LayoutRect selectionPaintingRect = localSelectionRect();
    175         selectionPaintingRect.moveBy(adjustedPaintOffset);
    176         paintInfo.context->fillRect(pixelSnappedIntRect(selectionPaintingRect), selectionBackgroundColor());
    177     }
    178 }
    179 
    180 bool RenderReplaced::shouldPaint(PaintInfo& paintInfo, const LayoutPoint& paintOffset)
    181 {
    182     if (paintInfo.phase != PaintPhaseForeground && paintInfo.phase != PaintPhaseOutline && paintInfo.phase != PaintPhaseSelfOutline
    183         && paintInfo.phase != PaintPhaseSelection && paintInfo.phase != PaintPhaseMask && paintInfo.phase != PaintPhaseClippingMask)
    184         return false;
    185 
    186     if (!paintInfo.shouldPaintWithinRoot(this))
    187         return false;
    188 
    189     // if we're invisible or haven't received a layout yet, then just bail.
    190     if (style()->visibility() != VISIBLE)
    191         return false;
    192 
    193     LayoutPoint adjustedPaintOffset = paintOffset + location();
    194 
    195     // Early exit if the element touches the edges.
    196     LayoutUnit top = adjustedPaintOffset.y() + visualOverflowRect().y();
    197     LayoutUnit bottom = adjustedPaintOffset.y() + visualOverflowRect().maxY();
    198     if (isSelected() && inlineBoxWrapper()) {
    199         LayoutUnit selTop = paintOffset.y() + inlineBoxWrapper()->root().selectionTop();
    200         LayoutUnit selBottom = paintOffset.y() + selTop + inlineBoxWrapper()->root().selectionHeight();
    201         top = std::min(selTop, top);
    202         bottom = std::max(selBottom, bottom);
    203     }
    204 
    205     if (adjustedPaintOffset.x() + visualOverflowRect().x() >= paintInfo.rect.maxX() || adjustedPaintOffset.x() + visualOverflowRect().maxX() <= paintInfo.rect.x())
    206         return false;
    207 
    208     if (top >= paintInfo.rect.maxY() || bottom <= paintInfo.rect.y())
    209         return false;
    210 
    211     return true;
    212 }
    213 
    214 bool RenderReplaced::hasReplacedLogicalHeight() const
    215 {
    216     if (style()->logicalHeight().isAuto())
    217         return false;
    218 
    219     if (style()->logicalHeight().isSpecified()) {
    220         if (hasAutoHeightOrContainingBlockWithAutoHeight())
    221             return false;
    222         return true;
    223     }
    224 
    225     if (style()->logicalHeight().isIntrinsic())
    226         return true;
    227 
    228     return false;
    229 }
    230 
    231 bool RenderReplaced::needsPreferredWidthsRecalculation() const
    232 {
    233     // If the height is a percentage and the width is auto, then the containingBlocks's height changing can cause
    234     // this node to change it's preferred width because it maintains aspect ratio.
    235     return hasRelativeLogicalHeight() && style()->logicalWidth().isAuto() && !hasAutoHeightOrContainingBlockWithAutoHeight();
    236 }
    237 
    238 static inline bool rendererHasAspectRatio(const RenderObject* renderer)
    239 {
    240     ASSERT(renderer);
    241     return renderer->isImage() || renderer->isCanvas() || renderer->isVideo();
    242 }
    243 
    244 void RenderReplaced::computeAspectRatioInformationForRenderBox(RenderBox* contentRenderer, FloatSize& constrainedSize, double& intrinsicRatio) const
    245 {
    246     FloatSize intrinsicSize;
    247     if (contentRenderer) {
    248         contentRenderer->computeIntrinsicRatioInformation(intrinsicSize, intrinsicRatio);
    249 
    250         // Handle zoom & vertical writing modes here, as the embedded document doesn't know about them.
    251         intrinsicSize.scale(style()->effectiveZoom());
    252         if (isRenderImage())
    253             intrinsicSize.scale(toRenderImage(this)->imageDevicePixelRatio());
    254 
    255         // Update our intrinsic size to match what the content renderer has computed, so that when we
    256         // constrain the size below, the correct intrinsic size will be obtained for comparison against
    257         // min and max widths.
    258         if (intrinsicRatio && !intrinsicSize.isEmpty())
    259             m_intrinsicSize = LayoutSize(intrinsicSize);
    260 
    261         if (!isHorizontalWritingMode()) {
    262             if (intrinsicRatio)
    263                 intrinsicRatio = 1 / intrinsicRatio;
    264             intrinsicSize = intrinsicSize.transposedSize();
    265         }
    266     } else {
    267         computeIntrinsicRatioInformation(intrinsicSize, intrinsicRatio);
    268         if (intrinsicRatio && !intrinsicSize.isEmpty())
    269             m_intrinsicSize = LayoutSize(isHorizontalWritingMode() ? intrinsicSize : intrinsicSize.transposedSize());
    270     }
    271 
    272     // Now constrain the intrinsic size along each axis according to minimum and maximum width/heights along the
    273     // opposite axis. So for example a maximum width that shrinks our width will result in the height we compute here
    274     // having to shrink in order to preserve the aspect ratio. Because we compute these values independently along
    275     // each axis, the final returned size may in fact not preserve the aspect ratio.
    276     // FIXME: In the long term, it might be better to just return this code more to the way it used to be before this
    277     // function was added, since all it has done is make the code more unclear.
    278     constrainedSize = intrinsicSize;
    279     if (intrinsicRatio && !intrinsicSize.isEmpty() && style()->logicalWidth().isAuto() && style()->logicalHeight().isAuto()) {
    280         // We can't multiply or divide by 'intrinsicRatio' here, it breaks tests, like fast/images/zoomed-img-size.html, which
    281         // can only be fixed once subpixel precision is available for things like intrinsicWidth/Height - which include zoom!
    282         constrainedSize.setWidth(RenderBox::computeReplacedLogicalHeight() * intrinsicSize.width() / intrinsicSize.height());
    283         constrainedSize.setHeight(RenderBox::computeReplacedLogicalWidth() * intrinsicSize.height() / intrinsicSize.width());
    284     }
    285 }
    286 
    287 LayoutRect RenderReplaced::replacedContentRect(const LayoutSize* overriddenIntrinsicSize) const
    288 {
    289     LayoutRect contentRect = contentBoxRect();
    290     ObjectFit objectFit = style()->objectFit();
    291 
    292     if (objectFit == ObjectFitFill && style()->objectPosition() == RenderStyle::initialObjectPosition()) {
    293         return contentRect;
    294     }
    295 
    296     LayoutSize intrinsicSize = overriddenIntrinsicSize ? *overriddenIntrinsicSize : this->intrinsicSize();
    297     if (!intrinsicSize.width() || !intrinsicSize.height())
    298         return contentRect;
    299 
    300     LayoutRect finalRect = contentRect;
    301     switch (objectFit) {
    302     case ObjectFitContain:
    303     case ObjectFitScaleDown:
    304     case ObjectFitCover:
    305         finalRect.setSize(finalRect.size().fitToAspectRatio(intrinsicSize, objectFit == ObjectFitCover ? AspectRatioFitGrow : AspectRatioFitShrink));
    306         if (objectFit != ObjectFitScaleDown || finalRect.width() <= intrinsicSize.width())
    307             break;
    308         // fall through
    309     case ObjectFitNone:
    310         finalRect.setSize(intrinsicSize);
    311         break;
    312     case ObjectFitFill:
    313         break;
    314     default:
    315         ASSERT_NOT_REACHED();
    316     }
    317 
    318     LayoutUnit xOffset = minimumValueForLength(style()->objectPosition().x(), contentRect.width() - finalRect.width());
    319     LayoutUnit yOffset = minimumValueForLength(style()->objectPosition().y(), contentRect.height() - finalRect.height());
    320     finalRect.move(xOffset, yOffset);
    321 
    322     return finalRect;
    323 }
    324 
    325 void RenderReplaced::computeIntrinsicRatioInformation(FloatSize& intrinsicSize, double& intrinsicRatio) const
    326 {
    327     // If there's an embeddedContentBox() of a remote, referenced document available, this code-path should never be used.
    328     ASSERT(!embeddedContentBox());
    329     intrinsicSize = FloatSize(intrinsicLogicalWidth().toFloat(), intrinsicLogicalHeight().toFloat());
    330 
    331     // Figure out if we need to compute an intrinsic ratio.
    332     if (intrinsicSize.isEmpty() || !rendererHasAspectRatio(this))
    333         return;
    334 
    335     intrinsicRatio = intrinsicSize.width() / intrinsicSize.height();
    336 }
    337 
    338 LayoutUnit RenderReplaced::computeReplacedLogicalWidth(ShouldComputePreferred shouldComputePreferred) const
    339 {
    340     if (style()->logicalWidth().isSpecified() || style()->logicalWidth().isIntrinsic())
    341         return computeReplacedLogicalWidthRespectingMinMaxWidth(computeReplacedLogicalWidthUsing(style()->logicalWidth()), shouldComputePreferred);
    342 
    343     RenderBox* contentRenderer = embeddedContentBox();
    344 
    345     // 10.3.2 Inline, replaced elements: http://www.w3.org/TR/CSS21/visudet.html#inline-replaced-width
    346     double intrinsicRatio = 0;
    347     FloatSize constrainedSize;
    348     computeAspectRatioInformationForRenderBox(contentRenderer, constrainedSize, intrinsicRatio);
    349 
    350     if (style()->logicalWidth().isAuto()) {
    351         bool computedHeightIsAuto = hasAutoHeightOrContainingBlockWithAutoHeight();
    352         bool hasIntrinsicWidth = constrainedSize.width() > 0;
    353 
    354         // If 'height' and 'width' both have computed values of 'auto' and the element also has an intrinsic width, then that intrinsic width is the used value of 'width'.
    355         if (computedHeightIsAuto && hasIntrinsicWidth)
    356             return computeReplacedLogicalWidthRespectingMinMaxWidth(constrainedSize.width(), shouldComputePreferred);
    357 
    358         bool hasIntrinsicHeight = constrainedSize.height() > 0;
    359         if (intrinsicRatio) {
    360             // If 'height' and 'width' both have computed values of 'auto' and the element has no intrinsic width, but does have an intrinsic height and intrinsic ratio;
    361             // or if 'width' has a computed value of 'auto', 'height' has some other computed value, and the element does have an intrinsic ratio; then the used value
    362             // of 'width' is: (used height) * (intrinsic ratio)
    363             if (intrinsicRatio && ((computedHeightIsAuto && !hasIntrinsicWidth && hasIntrinsicHeight) || !computedHeightIsAuto)) {
    364                 LayoutUnit logicalHeight = computeReplacedLogicalHeight();
    365                 return computeReplacedLogicalWidthRespectingMinMaxWidth(roundToInt(round(logicalHeight * intrinsicRatio)), shouldComputePreferred);
    366             }
    367 
    368             // If 'height' and 'width' both have computed values of 'auto' and the element has an intrinsic ratio but no intrinsic height or width, then the used value of
    369             // 'width' is undefined in CSS 2.1. However, it is suggested that, if the containing block's width does not itself depend on the replaced element's width, then
    370             // the used value of 'width' is calculated from the constraint equation used for block-level, non-replaced elements in normal flow.
    371             if (computedHeightIsAuto && !hasIntrinsicWidth && !hasIntrinsicHeight) {
    372                 if (shouldComputePreferred == ComputePreferred)
    373                     return 0;
    374                 // The aforementioned 'constraint equation' used for block-level, non-replaced elements in normal flow:
    375                 // 'margin-left' + 'border-left-width' + 'padding-left' + 'width' + 'padding-right' + 'border-right-width' + 'margin-right' = width of containing block
    376                 LayoutUnit logicalWidth = containingBlock()->availableLogicalWidth();
    377 
    378                 // This solves above equation for 'width' (== logicalWidth).
    379                 LayoutUnit marginStart = minimumValueForLength(style()->marginStart(), logicalWidth);
    380                 LayoutUnit marginEnd = minimumValueForLength(style()->marginEnd(), logicalWidth);
    381                 logicalWidth = std::max<LayoutUnit>(0, logicalWidth - (marginStart + marginEnd + (width() - clientWidth())));
    382                 return computeReplacedLogicalWidthRespectingMinMaxWidth(logicalWidth, shouldComputePreferred);
    383             }
    384         }
    385 
    386         // Otherwise, if 'width' has a computed value of 'auto', and the element has an intrinsic width, then that intrinsic width is the used value of 'width'.
    387         if (hasIntrinsicWidth)
    388             return computeReplacedLogicalWidthRespectingMinMaxWidth(constrainedSize.width(), shouldComputePreferred);
    389 
    390         // Otherwise, if 'width' has a computed value of 'auto', but none of the conditions above are met, then the used value of 'width' becomes 300px. If 300px is too
    391         // wide to fit the device, UAs should use the width of the largest rectangle that has a 2:1 ratio and fits the device instead.
    392         // Note: We fall through and instead return intrinsicLogicalWidth() here - to preserve existing WebKit behavior, which might or might not be correct, or desired.
    393         // Changing this to return cDefaultWidth, will affect lots of test results. Eg. some tests assume that a blank <img> tag (which implies width/height=auto)
    394         // has no intrinsic size, which is wrong per CSS 2.1, but matches our behavior since a long time.
    395     }
    396 
    397     return computeReplacedLogicalWidthRespectingMinMaxWidth(intrinsicLogicalWidth(), shouldComputePreferred);
    398 }
    399 
    400 LayoutUnit RenderReplaced::computeReplacedLogicalHeight() const
    401 {
    402     // 10.5 Content height: the 'height' property: http://www.w3.org/TR/CSS21/visudet.html#propdef-height
    403     if (hasReplacedLogicalHeight())
    404         return computeReplacedLogicalHeightRespectingMinMaxHeight(computeReplacedLogicalHeightUsing(style()->logicalHeight()));
    405 
    406     RenderBox* contentRenderer = embeddedContentBox();
    407 
    408     // 10.6.2 Inline, replaced elements: http://www.w3.org/TR/CSS21/visudet.html#inline-replaced-height
    409     double intrinsicRatio = 0;
    410     FloatSize constrainedSize;
    411     computeAspectRatioInformationForRenderBox(contentRenderer, constrainedSize, intrinsicRatio);
    412 
    413     bool widthIsAuto = style()->logicalWidth().isAuto();
    414     bool hasIntrinsicHeight = constrainedSize.height() > 0;
    415 
    416     // If 'height' and 'width' both have computed values of 'auto' and the element also has an intrinsic height, then that intrinsic height is the used value of 'height'.
    417     if (widthIsAuto && hasIntrinsicHeight)
    418         return computeReplacedLogicalHeightRespectingMinMaxHeight(constrainedSize.height());
    419 
    420     // Otherwise, if 'height' has a computed value of 'auto', and the element has an intrinsic ratio then the used value of 'height' is:
    421     // (used width) / (intrinsic ratio)
    422     if (intrinsicRatio)
    423         return computeReplacedLogicalHeightRespectingMinMaxHeight(roundToInt(round(availableLogicalWidth() / intrinsicRatio)));
    424 
    425     // Otherwise, if 'height' has a computed value of 'auto', and the element has an intrinsic height, then that intrinsic height is the used value of 'height'.
    426     if (hasIntrinsicHeight)
    427         return computeReplacedLogicalHeightRespectingMinMaxHeight(constrainedSize.height());
    428 
    429     // Otherwise, if 'height' has a computed value of 'auto', but none of the conditions above are met, then the used value of 'height' must be set to the height
    430     // of the largest rectangle that has a 2:1 ratio, has a height not greater than 150px, and has a width not greater than the device width.
    431     return computeReplacedLogicalHeightRespectingMinMaxHeight(intrinsicLogicalHeight());
    432 }
    433 
    434 void RenderReplaced::computeIntrinsicLogicalWidths(LayoutUnit& minLogicalWidth, LayoutUnit& maxLogicalWidth) const
    435 {
    436     minLogicalWidth = maxLogicalWidth = intrinsicLogicalWidth();
    437 }
    438 
    439 void RenderReplaced::computePreferredLogicalWidths()
    440 {
    441     ASSERT(preferredLogicalWidthsDirty());
    442 
    443     // We cannot resolve any percent logical width here as the available logical
    444     // width may not be set on our containing block.
    445     if (style()->logicalWidth().isPercent())
    446         computeIntrinsicLogicalWidths(m_minPreferredLogicalWidth, m_maxPreferredLogicalWidth);
    447     else
    448         m_minPreferredLogicalWidth = m_maxPreferredLogicalWidth = computeReplacedLogicalWidth(ComputePreferred);
    449 
    450     RenderStyle* styleToUse = style();
    451     if (styleToUse->logicalWidth().isPercent() || styleToUse->logicalMaxWidth().isPercent())
    452         m_minPreferredLogicalWidth = 0;
    453 
    454     if (styleToUse->logicalMinWidth().isFixed() && styleToUse->logicalMinWidth().value() > 0) {
    455         m_maxPreferredLogicalWidth = std::max(m_maxPreferredLogicalWidth, adjustContentBoxLogicalWidthForBoxSizing(styleToUse->logicalMinWidth().value()));
    456         m_minPreferredLogicalWidth = std::max(m_minPreferredLogicalWidth, adjustContentBoxLogicalWidthForBoxSizing(styleToUse->logicalMinWidth().value()));
    457     }
    458 
    459     if (styleToUse->logicalMaxWidth().isFixed()) {
    460         m_maxPreferredLogicalWidth = std::min(m_maxPreferredLogicalWidth, adjustContentBoxLogicalWidthForBoxSizing(styleToUse->logicalMaxWidth().value()));
    461         m_minPreferredLogicalWidth = std::min(m_minPreferredLogicalWidth, adjustContentBoxLogicalWidthForBoxSizing(styleToUse->logicalMaxWidth().value()));
    462     }
    463 
    464     LayoutUnit borderAndPadding = borderAndPaddingLogicalWidth();
    465     m_minPreferredLogicalWidth += borderAndPadding;
    466     m_maxPreferredLogicalWidth += borderAndPadding;
    467 
    468     clearPreferredLogicalWidthsDirty();
    469 }
    470 
    471 PositionWithAffinity RenderReplaced::positionForPoint(const LayoutPoint& point)
    472 {
    473     // FIXME: This code is buggy if the replaced element is relative positioned.
    474     InlineBox* box = inlineBoxWrapper();
    475     RootInlineBox* rootBox = box ? &box->root() : 0;
    476 
    477     LayoutUnit top = rootBox ? rootBox->selectionTop() : logicalTop();
    478     LayoutUnit bottom = rootBox ? rootBox->selectionBottom() : logicalBottom();
    479 
    480     LayoutUnit blockDirectionPosition = isHorizontalWritingMode() ? point.y() + y() : point.x() + x();
    481     LayoutUnit lineDirectionPosition = isHorizontalWritingMode() ? point.x() + x() : point.y() + y();
    482 
    483     if (blockDirectionPosition < top)
    484         return createPositionWithAffinity(caretMinOffset(), DOWNSTREAM); // coordinates are above
    485 
    486     if (blockDirectionPosition >= bottom)
    487         return createPositionWithAffinity(caretMaxOffset(), DOWNSTREAM); // coordinates are below
    488 
    489     if (node()) {
    490         if (lineDirectionPosition <= logicalLeft() + (logicalWidth() / 2))
    491             return createPositionWithAffinity(0, DOWNSTREAM);
    492         return createPositionWithAffinity(1, DOWNSTREAM);
    493     }
    494 
    495     return RenderBox::positionForPoint(point);
    496 }
    497 
    498 LayoutRect RenderReplaced::selectionRectForPaintInvalidation(const RenderLayerModelObject* paintInvalidationContainer) const
    499 {
    500     ASSERT(!needsLayout());
    501 
    502     if (!isSelected())
    503         return LayoutRect();
    504 
    505     LayoutRect rect = localSelectionRect();
    506     mapRectToPaintInvalidationBacking(paintInvalidationContainer, rect, 0);
    507     return rect;
    508 }
    509 
    510 LayoutRect RenderReplaced::localSelectionRect(bool checkWhetherSelected) const
    511 {
    512     if (checkWhetherSelected && !isSelected())
    513         return LayoutRect();
    514 
    515     if (!inlineBoxWrapper())
    516         // We're a block-level replaced element.  Just return our own dimensions.
    517         return LayoutRect(LayoutPoint(), size());
    518 
    519     RootInlineBox& root = inlineBoxWrapper()->root();
    520     LayoutUnit newLogicalTop = root.block().style()->isFlippedBlocksWritingMode() ? inlineBoxWrapper()->logicalBottom() - root.selectionBottom() : root.selectionTop() - inlineBoxWrapper()->logicalTop();
    521     if (root.block().style()->isHorizontalWritingMode())
    522         return LayoutRect(0, newLogicalTop, width(), root.selectionHeight());
    523     return LayoutRect(newLogicalTop, 0, root.selectionHeight(), height());
    524 }
    525 
    526 void RenderReplaced::setSelectionState(SelectionState state)
    527 {
    528     // The selection state for our containing block hierarchy is updated by the base class call.
    529     RenderBox::setSelectionState(state);
    530 
    531     if (!inlineBoxWrapper())
    532         return;
    533 
    534     // We only include the space below the baseline in our layer's cached paint invalidation rect if the
    535     // image is selected. Since the selection state has changed update the rect.
    536     if (hasLayer())
    537         setPreviousPaintInvalidationRect(boundsRectForPaintInvalidation(containerForPaintInvalidation()));
    538 
    539     if (canUpdateSelectionOnRootLineBoxes())
    540         inlineBoxWrapper()->root().setHasSelectedChildren(isSelected());
    541 }
    542 
    543 bool RenderReplaced::isSelected() const
    544 {
    545     SelectionState s = selectionState();
    546     if (s == SelectionNone)
    547         return false;
    548     if (s == SelectionInside)
    549         return true;
    550 
    551     int selectionStart, selectionEnd;
    552     selectionStartEnd(selectionStart, selectionEnd);
    553     if (s == SelectionStart)
    554         return selectionStart == 0;
    555 
    556     int end = node()->hasChildren() ? node()->countChildren() : 1;
    557     if (s == SelectionEnd)
    558         return selectionEnd == end;
    559     if (s == SelectionBoth)
    560         return selectionStart == 0 && selectionEnd == end;
    561 
    562     ASSERT(0);
    563     return false;
    564 }
    565 LayoutRect RenderReplaced::clippedOverflowRectForPaintInvalidation(const RenderLayerModelObject* paintInvalidationContainer, const PaintInvalidationState* paintInvalidationState) const
    566 {
    567     if (style()->visibility() != VISIBLE && !enclosingLayer()->hasVisibleContent())
    568         return LayoutRect();
    569 
    570     // The selectionRect can project outside of the overflowRect, so take their union
    571     // for paint invalidation to avoid selection painting glitches.
    572     LayoutRect r = isSelected() ? localSelectionRect() : visualOverflowRect();
    573     mapRectToPaintInvalidationBacking(paintInvalidationContainer, r, paintInvalidationState);
    574     return r;
    575 }
    576 
    577 }
    578