layout/generic/nsInlineFrame.cpp

Thu, 22 Jan 2015 13:21:57 +0100

author
Michael Schloh von Bennewitz <michael@schloh.com>
date
Thu, 22 Jan 2015 13:21:57 +0100
branch
TOR_BUG_9701
changeset 15
b8a032363ba2
permissions
-rw-r--r--

Incorporate requested changes from Mozilla in review:
https://bugzilla.mozilla.org/show_bug.cgi?id=1123480#c6

michael@0 1 /* -*- Mode: C++; tab-width: 2; indent-tabs-mode: nil; c-basic-offset: 2 -*- */
michael@0 2 /* This Source Code Form is subject to the terms of the Mozilla Public
michael@0 3 * License, v. 2.0. If a copy of the MPL was not distributed with this
michael@0 4 * file, You can obtain one at http://mozilla.org/MPL/2.0/. */
michael@0 5
michael@0 6 /* rendering object for CSS display:inline objects */
michael@0 7
michael@0 8 #include "nsInlineFrame.h"
michael@0 9 #include "nsLineLayout.h"
michael@0 10 #include "nsBlockFrame.h"
michael@0 11 #include "nsPlaceholderFrame.h"
michael@0 12 #include "nsGkAtoms.h"
michael@0 13 #include "nsStyleContext.h"
michael@0 14 #include "nsPresContext.h"
michael@0 15 #include "nsRenderingContext.h"
michael@0 16 #include "nsCSSAnonBoxes.h"
michael@0 17 #include "nsAutoPtr.h"
michael@0 18 #include "RestyleManager.h"
michael@0 19 #include "nsDisplayList.h"
michael@0 20 #include "mozilla/Likely.h"
michael@0 21
michael@0 22 #ifdef DEBUG
michael@0 23 #undef NOISY_PUSHING
michael@0 24 #endif
michael@0 25
michael@0 26 using namespace mozilla;
michael@0 27 using namespace mozilla::layout;
michael@0 28
michael@0 29
michael@0 30 //////////////////////////////////////////////////////////////////////
michael@0 31
michael@0 32 // Basic nsInlineFrame methods
michael@0 33
michael@0 34 nsIFrame*
michael@0 35 NS_NewInlineFrame(nsIPresShell* aPresShell, nsStyleContext* aContext)
michael@0 36 {
michael@0 37 return new (aPresShell) nsInlineFrame(aContext);
michael@0 38 }
michael@0 39
michael@0 40 NS_IMPL_FRAMEARENA_HELPERS(nsInlineFrame)
michael@0 41
michael@0 42 NS_QUERYFRAME_HEAD(nsInlineFrame)
michael@0 43 NS_QUERYFRAME_ENTRY(nsInlineFrame)
michael@0 44 NS_QUERYFRAME_TAIL_INHERITING(nsContainerFrame)
michael@0 45
michael@0 46 #ifdef DEBUG_FRAME_DUMP
michael@0 47 nsresult
michael@0 48 nsInlineFrame::GetFrameName(nsAString& aResult) const
michael@0 49 {
michael@0 50 return MakeFrameName(NS_LITERAL_STRING("Inline"), aResult);
michael@0 51 }
michael@0 52 #endif
michael@0 53
michael@0 54 nsIAtom*
michael@0 55 nsInlineFrame::GetType() const
michael@0 56 {
michael@0 57 return nsGkAtoms::inlineFrame;
michael@0 58 }
michael@0 59
michael@0 60 void
michael@0 61 nsInlineFrame::InvalidateFrame(uint32_t aDisplayItemKey)
michael@0 62 {
michael@0 63 if (IsSVGText()) {
michael@0 64 nsIFrame* svgTextFrame =
michael@0 65 nsLayoutUtils::GetClosestFrameOfType(GetParent(),
michael@0 66 nsGkAtoms::svgTextFrame);
michael@0 67 svgTextFrame->InvalidateFrame();
michael@0 68 return;
michael@0 69 }
michael@0 70 nsInlineFrameBase::InvalidateFrame(aDisplayItemKey);
michael@0 71 }
michael@0 72
michael@0 73 void
michael@0 74 nsInlineFrame::InvalidateFrameWithRect(const nsRect& aRect, uint32_t aDisplayItemKey)
michael@0 75 {
michael@0 76 if (IsSVGText()) {
michael@0 77 nsIFrame* svgTextFrame =
michael@0 78 nsLayoutUtils::GetClosestFrameOfType(GetParent(),
michael@0 79 nsGkAtoms::svgTextFrame);
michael@0 80 svgTextFrame->InvalidateFrame();
michael@0 81 return;
michael@0 82 }
michael@0 83 nsInlineFrameBase::InvalidateFrameWithRect(aRect, aDisplayItemKey);
michael@0 84 }
michael@0 85
michael@0 86 static inline bool
michael@0 87 IsMarginZero(const nsStyleCoord &aCoord)
michael@0 88 {
michael@0 89 return aCoord.GetUnit() == eStyleUnit_Auto ||
michael@0 90 nsLayoutUtils::IsMarginZero(aCoord);
michael@0 91 }
michael@0 92
michael@0 93 /* virtual */ bool
michael@0 94 nsInlineFrame::IsSelfEmpty()
michael@0 95 {
michael@0 96 #if 0
michael@0 97 // I used to think inline frames worked this way, but it seems they
michael@0 98 // don't. At least not in our codebase.
michael@0 99 if (GetPresContext()->CompatibilityMode() == eCompatibility_FullStandards) {
michael@0 100 return false;
michael@0 101 }
michael@0 102 #endif
michael@0 103 const nsStyleMargin* margin = StyleMargin();
michael@0 104 const nsStyleBorder* border = StyleBorder();
michael@0 105 const nsStylePadding* padding = StylePadding();
michael@0 106 // XXX Top and bottom removed, since they shouldn't affect things, but this
michael@0 107 // doesn't really match with nsLineLayout.cpp's setting of
michael@0 108 // ZeroEffectiveSpanBox, anymore, so what should this really be?
michael@0 109 bool haveRight =
michael@0 110 border->GetComputedBorderWidth(NS_SIDE_RIGHT) != 0 ||
michael@0 111 !nsLayoutUtils::IsPaddingZero(padding->mPadding.GetRight()) ||
michael@0 112 !IsMarginZero(margin->mMargin.GetRight());
michael@0 113 bool haveLeft =
michael@0 114 border->GetComputedBorderWidth(NS_SIDE_LEFT) != 0 ||
michael@0 115 !nsLayoutUtils::IsPaddingZero(padding->mPadding.GetLeft()) ||
michael@0 116 !IsMarginZero(margin->mMargin.GetLeft());
michael@0 117 if (haveLeft || haveRight) {
michael@0 118 if (GetStateBits() & NS_FRAME_PART_OF_IBSPLIT) {
michael@0 119 bool haveStart, haveEnd;
michael@0 120 if (NS_STYLE_DIRECTION_LTR == StyleVisibility()->mDirection) {
michael@0 121 haveStart = haveLeft;
michael@0 122 haveEnd = haveRight;
michael@0 123 } else {
michael@0 124 haveStart = haveRight;
michael@0 125 haveEnd = haveLeft;
michael@0 126 }
michael@0 127 // For ib-split frames, ignore things we know we'll skip in GetSkipSides.
michael@0 128 // XXXbz should we be doing this for non-ib-split frames too, in a more
michael@0 129 // general way?
michael@0 130
michael@0 131 // Get the first continuation eagerly, as a performance optimization, to
michael@0 132 // avoid having to get it twice..
michael@0 133 nsIFrame* firstCont = FirstContinuation();
michael@0 134 return
michael@0 135 (!haveStart || firstCont->FrameIsNonFirstInIBSplit()) &&
michael@0 136 (!haveEnd || firstCont->FrameIsNonLastInIBSplit());
michael@0 137 }
michael@0 138 return false;
michael@0 139 }
michael@0 140 return true;
michael@0 141 }
michael@0 142
michael@0 143 bool
michael@0 144 nsInlineFrame::IsEmpty()
michael@0 145 {
michael@0 146 if (!IsSelfEmpty()) {
michael@0 147 return false;
michael@0 148 }
michael@0 149
michael@0 150 for (nsIFrame *kid = mFrames.FirstChild(); kid; kid = kid->GetNextSibling()) {
michael@0 151 if (!kid->IsEmpty())
michael@0 152 return false;
michael@0 153 }
michael@0 154
michael@0 155 return true;
michael@0 156 }
michael@0 157
michael@0 158 nsIFrame::FrameSearchResult
michael@0 159 nsInlineFrame::PeekOffsetCharacter(bool aForward, int32_t* aOffset,
michael@0 160 bool aRespectClusters)
michael@0 161 {
michael@0 162 // Override the implementation in nsFrame, to skip empty inline frames
michael@0 163 NS_ASSERTION (aOffset && *aOffset <= 1, "aOffset out of range");
michael@0 164 int32_t startOffset = *aOffset;
michael@0 165 if (startOffset < 0)
michael@0 166 startOffset = 1;
michael@0 167 if (aForward == (startOffset == 0)) {
michael@0 168 // We're before the frame and moving forward, or after it and moving backwards:
michael@0 169 // skip to the other side, but keep going.
michael@0 170 *aOffset = 1 - startOffset;
michael@0 171 }
michael@0 172 return CONTINUE;
michael@0 173 }
michael@0 174
michael@0 175 void
michael@0 176 nsInlineFrame::BuildDisplayList(nsDisplayListBuilder* aBuilder,
michael@0 177 const nsRect& aDirtyRect,
michael@0 178 const nsDisplayListSet& aLists)
michael@0 179 {
michael@0 180 BuildDisplayListForInline(aBuilder, aDirtyRect, aLists);
michael@0 181
michael@0 182 // The sole purpose of this is to trigger display of the selection
michael@0 183 // window for Named Anchors, which don't have any children and
michael@0 184 // normally don't have any size, but in Editor we use CSS to display
michael@0 185 // an image to represent this "hidden" element.
michael@0 186 if (!mFrames.FirstChild()) {
michael@0 187 DisplaySelectionOverlay(aBuilder, aLists.Content());
michael@0 188 }
michael@0 189 }
michael@0 190
michael@0 191 //////////////////////////////////////////////////////////////////////
michael@0 192 // Reflow methods
michael@0 193
michael@0 194 /* virtual */ void
michael@0 195 nsInlineFrame::AddInlineMinWidth(nsRenderingContext *aRenderingContext,
michael@0 196 nsIFrame::InlineMinWidthData *aData)
michael@0 197 {
michael@0 198 DoInlineIntrinsicWidth(aRenderingContext, aData, nsLayoutUtils::MIN_WIDTH);
michael@0 199 }
michael@0 200
michael@0 201 /* virtual */ void
michael@0 202 nsInlineFrame::AddInlinePrefWidth(nsRenderingContext *aRenderingContext,
michael@0 203 nsIFrame::InlinePrefWidthData *aData)
michael@0 204 {
michael@0 205 DoInlineIntrinsicWidth(aRenderingContext, aData, nsLayoutUtils::PREF_WIDTH);
michael@0 206 }
michael@0 207
michael@0 208 /* virtual */ nsSize
michael@0 209 nsInlineFrame::ComputeSize(nsRenderingContext *aRenderingContext,
michael@0 210 nsSize aCBSize, nscoord aAvailableWidth,
michael@0 211 nsSize aMargin, nsSize aBorder, nsSize aPadding,
michael@0 212 uint32_t aFlags)
michael@0 213 {
michael@0 214 // Inlines and text don't compute size before reflow.
michael@0 215 return nsSize(NS_UNCONSTRAINEDSIZE, NS_UNCONSTRAINEDSIZE);
michael@0 216 }
michael@0 217
michael@0 218 nsRect
michael@0 219 nsInlineFrame::ComputeTightBounds(gfxContext* aContext) const
michael@0 220 {
michael@0 221 // be conservative
michael@0 222 if (StyleContext()->HasTextDecorationLines()) {
michael@0 223 return GetVisualOverflowRect();
michael@0 224 }
michael@0 225 return ComputeSimpleTightBounds(aContext);
michael@0 226 }
michael@0 227
michael@0 228 void
michael@0 229 nsInlineFrame::ReparentFloatsForInlineChild(nsIFrame* aOurLineContainer,
michael@0 230 nsIFrame* aFrame,
michael@0 231 bool aReparentSiblings)
michael@0 232 {
michael@0 233 // XXXbz this would be better if it took a nsFrameList or a frame
michael@0 234 // list slice....
michael@0 235 NS_ASSERTION(aOurLineContainer->GetNextContinuation() ||
michael@0 236 aOurLineContainer->GetPrevContinuation(),
michael@0 237 "Don't call this when we have no continuation, it's a waste");
michael@0 238 if (!aFrame) {
michael@0 239 NS_ASSERTION(aReparentSiblings, "Why did we get called?");
michael@0 240 return;
michael@0 241 }
michael@0 242
michael@0 243 nsIFrame* ancestor = aFrame;
michael@0 244 do {
michael@0 245 ancestor = ancestor->GetParent();
michael@0 246 if (!ancestor)
michael@0 247 return;
michael@0 248 } while (!ancestor->IsFloatContainingBlock());
michael@0 249
michael@0 250 if (ancestor == aOurLineContainer)
michael@0 251 return;
michael@0 252
michael@0 253 nsBlockFrame* ourBlock = nsLayoutUtils::GetAsBlock(aOurLineContainer);
michael@0 254 NS_ASSERTION(ourBlock, "Not a block, but broke vertically?");
michael@0 255 nsBlockFrame* frameBlock = nsLayoutUtils::GetAsBlock(ancestor);
michael@0 256 NS_ASSERTION(frameBlock, "ancestor not a block");
michael@0 257
michael@0 258 while (true) {
michael@0 259 ourBlock->ReparentFloats(aFrame, frameBlock, false);
michael@0 260
michael@0 261 if (!aReparentSiblings)
michael@0 262 return;
michael@0 263 nsIFrame* next = aFrame->GetNextSibling();
michael@0 264 if (!next)
michael@0 265 return;
michael@0 266 if (next->GetParent() == aFrame->GetParent()) {
michael@0 267 aFrame = next;
michael@0 268 continue;
michael@0 269 }
michael@0 270 // This is paranoid and will hardly ever get hit ... but we can't actually
michael@0 271 // trust that the frames in the sibling chain all have the same parent,
michael@0 272 // because lazy reparenting may be going on. If we find a different
michael@0 273 // parent we need to redo our analysis.
michael@0 274 ReparentFloatsForInlineChild(aOurLineContainer, next, aReparentSiblings);
michael@0 275 return;
michael@0 276 }
michael@0 277 }
michael@0 278
michael@0 279 static void
michael@0 280 ReparentChildListStyle(nsPresContext* aPresContext,
michael@0 281 const nsFrameList::Slice& aFrames,
michael@0 282 nsIFrame* aParentFrame)
michael@0 283 {
michael@0 284 RestyleManager* restyleManager = aPresContext->RestyleManager();
michael@0 285
michael@0 286 for (nsFrameList::Enumerator e(aFrames); !e.AtEnd(); e.Next()) {
michael@0 287 NS_ASSERTION(e.get()->GetParent() == aParentFrame, "Bogus parentage");
michael@0 288 restyleManager->ReparentStyleContext(e.get());
michael@0 289 nsLayoutUtils::MarkDescendantsDirty(e.get());
michael@0 290 }
michael@0 291 }
michael@0 292
michael@0 293 nsresult
michael@0 294 nsInlineFrame::Reflow(nsPresContext* aPresContext,
michael@0 295 nsHTMLReflowMetrics& aMetrics,
michael@0 296 const nsHTMLReflowState& aReflowState,
michael@0 297 nsReflowStatus& aStatus)
michael@0 298 {
michael@0 299 DO_GLOBAL_REFLOW_COUNT("nsInlineFrame");
michael@0 300 DISPLAY_REFLOW(aPresContext, this, aReflowState, aMetrics, aStatus);
michael@0 301 if (nullptr == aReflowState.mLineLayout) {
michael@0 302 return NS_ERROR_INVALID_ARG;
michael@0 303 }
michael@0 304 if (IsFrameTreeTooDeep(aReflowState, aMetrics, aStatus)) {
michael@0 305 return NS_OK;
michael@0 306 }
michael@0 307
michael@0 308 bool lazilySetParentPointer = false;
michael@0 309
michael@0 310 nsIFrame* lineContainer = aReflowState.mLineLayout->LineContainerFrame();
michael@0 311
michael@0 312 // Check for an overflow list with our prev-in-flow
michael@0 313 nsInlineFrame* prevInFlow = (nsInlineFrame*)GetPrevInFlow();
michael@0 314 if (prevInFlow) {
michael@0 315 AutoFrameListPtr prevOverflowFrames(aPresContext,
michael@0 316 prevInFlow->StealOverflowFrames());
michael@0 317 if (prevOverflowFrames) {
michael@0 318 // When pushing and pulling frames we need to check for whether any
michael@0 319 // views need to be reparented.
michael@0 320 nsContainerFrame::ReparentFrameViewList(*prevOverflowFrames, prevInFlow,
michael@0 321 this);
michael@0 322
michael@0 323 // Check if we should do the lazilySetParentPointer optimization.
michael@0 324 // Only do it in simple cases where we're being reflowed for the
michael@0 325 // first time, nothing (e.g. bidi resolution) has already given
michael@0 326 // us children, and there's no next-in-flow, so all our frames
michael@0 327 // will be taken from prevOverflowFrames.
michael@0 328 if ((GetStateBits() & NS_FRAME_FIRST_REFLOW) && mFrames.IsEmpty() &&
michael@0 329 !GetNextInFlow()) {
michael@0 330 // If our child list is empty, just put the new frames into it.
michael@0 331 // Note that we don't set the parent pointer for the new frames. Instead wait
michael@0 332 // to do this until we actually reflow the frame. If the overflow list contains
michael@0 333 // thousands of frames this is a big performance issue (see bug #5588)
michael@0 334 mFrames.SetFrames(*prevOverflowFrames);
michael@0 335 lazilySetParentPointer = true;
michael@0 336 } else {
michael@0 337 // Assign all floats to our block if necessary
michael@0 338 if (lineContainer && lineContainer->GetPrevContinuation()) {
michael@0 339 ReparentFloatsForInlineChild(lineContainer,
michael@0 340 prevOverflowFrames->FirstChild(),
michael@0 341 true);
michael@0 342 }
michael@0 343 // Insert the new frames at the beginning of the child list
michael@0 344 // and set their parent pointer
michael@0 345 const nsFrameList::Slice& newFrames =
michael@0 346 mFrames.InsertFrames(this, nullptr, *prevOverflowFrames);
michael@0 347 // If our prev in flow was under the first continuation of a first-line
michael@0 348 // frame then we need to reparent the style contexts to remove the
michael@0 349 // the special first-line styling. In the lazilySetParentPointer case
michael@0 350 // we reparent the style contexts when we set their parents in
michael@0 351 // nsInlineFrame::ReflowFrames and nsInlineFrame::ReflowInlineFrame.
michael@0 352 if (aReflowState.mLineLayout->GetInFirstLine()) {
michael@0 353 ReparentChildListStyle(aPresContext, newFrames, this);
michael@0 354 }
michael@0 355 }
michael@0 356 }
michael@0 357 }
michael@0 358
michael@0 359 // It's also possible that we have an overflow list for ourselves
michael@0 360 #ifdef DEBUG
michael@0 361 if (GetStateBits() & NS_FRAME_FIRST_REFLOW) {
michael@0 362 // If it's our initial reflow, then we should not have an overflow list.
michael@0 363 // However, add an assertion in case we get reflowed more than once with
michael@0 364 // the initial reflow reason
michael@0 365 nsFrameList* overflowFrames = GetOverflowFrames();
michael@0 366 NS_ASSERTION(!overflowFrames || overflowFrames->IsEmpty(),
michael@0 367 "overflow list is not empty for initial reflow");
michael@0 368 }
michael@0 369 #endif
michael@0 370 if (!(GetStateBits() & NS_FRAME_FIRST_REFLOW)) {
michael@0 371 DrainFlags flags =
michael@0 372 lazilySetParentPointer ? eDontReparentFrames : DrainFlags(0);
michael@0 373 if (aReflowState.mLineLayout->GetInFirstLine()) {
michael@0 374 flags = DrainFlags(flags | eInFirstLine);
michael@0 375 }
michael@0 376 DrainSelfOverflowListInternal(flags, lineContainer);
michael@0 377 }
michael@0 378
michael@0 379 // Set our own reflow state (additional state above and beyond
michael@0 380 // aReflowState)
michael@0 381 InlineReflowState irs;
michael@0 382 irs.mPrevFrame = nullptr;
michael@0 383 irs.mLineContainer = lineContainer;
michael@0 384 irs.mLineLayout = aReflowState.mLineLayout;
michael@0 385 irs.mNextInFlow = (nsInlineFrame*) GetNextInFlow();
michael@0 386 irs.mSetParentPointer = lazilySetParentPointer;
michael@0 387
michael@0 388 nsresult rv;
michael@0 389 if (mFrames.IsEmpty()) {
michael@0 390 // Try to pull over one frame before starting so that we know
michael@0 391 // whether we have an anonymous block or not.
michael@0 392 bool complete;
michael@0 393 (void) PullOneFrame(aPresContext, irs, &complete);
michael@0 394 }
michael@0 395
michael@0 396 rv = ReflowFrames(aPresContext, aReflowState, irs, aMetrics, aStatus);
michael@0 397
michael@0 398 ReflowAbsoluteFrames(aPresContext, aMetrics, aReflowState, aStatus);
michael@0 399
michael@0 400 // Note: the line layout code will properly compute our
michael@0 401 // overflow-rect state for us.
michael@0 402
michael@0 403 NS_FRAME_SET_TRUNCATION(aStatus, aReflowState, aMetrics);
michael@0 404 return rv;
michael@0 405 }
michael@0 406
michael@0 407 bool
michael@0 408 nsInlineFrame::DrainSelfOverflowListInternal(DrainFlags aFlags,
michael@0 409 nsIFrame* aLineContainer)
michael@0 410 {
michael@0 411 AutoFrameListPtr overflowFrames(PresContext(), StealOverflowFrames());
michael@0 412 if (overflowFrames) {
michael@0 413 NS_ASSERTION(mFrames.NotEmpty(), "overflow list w/o frames");
michael@0 414 // The frames on our own overflowlist may have been pushed by a
michael@0 415 // previous lazilySetParentPointer Reflow so we need to ensure the
michael@0 416 // correct parent pointer. This is sometimes skipped by Reflow.
michael@0 417 if (!(aFlags & eDontReparentFrames)) {
michael@0 418 nsIFrame* firstChild = overflowFrames->FirstChild();
michael@0 419 if (aLineContainer && aLineContainer->GetPrevContinuation()) {
michael@0 420 ReparentFloatsForInlineChild(aLineContainer, firstChild, true);
michael@0 421 }
michael@0 422 const bool inFirstLine = (aFlags & eInFirstLine);
michael@0 423 RestyleManager* restyleManager = PresContext()->RestyleManager();
michael@0 424 for (nsIFrame* f = firstChild; f; f = f->GetNextSibling()) {
michael@0 425 f->SetParent(this);
michael@0 426 if (inFirstLine) {
michael@0 427 restyleManager->ReparentStyleContext(f);
michael@0 428 nsLayoutUtils::MarkDescendantsDirty(f);
michael@0 429 }
michael@0 430 }
michael@0 431 }
michael@0 432 bool result = !overflowFrames->IsEmpty();
michael@0 433 mFrames.AppendFrames(nullptr, *overflowFrames);
michael@0 434 return result;
michael@0 435 }
michael@0 436 return false;
michael@0 437 }
michael@0 438
michael@0 439 /* virtual */ bool
michael@0 440 nsInlineFrame::DrainSelfOverflowList()
michael@0 441 {
michael@0 442 nsIFrame* lineContainer = nsLayoutUtils::FindNearestBlockAncestor(this);
michael@0 443 // Add the eInFirstLine flag if we have a ::first-line ancestor frame.
michael@0 444 // No need to look further than the nearest line container though.
michael@0 445 DrainFlags flags = DrainFlags(0);
michael@0 446 for (nsIFrame* p = GetParent(); p != lineContainer; p = p->GetParent()) {
michael@0 447 if (p->GetType() == nsGkAtoms::lineFrame) {
michael@0 448 flags = DrainFlags(flags | eInFirstLine);
michael@0 449 break;
michael@0 450 }
michael@0 451 }
michael@0 452 return DrainSelfOverflowListInternal(flags, lineContainer);
michael@0 453 }
michael@0 454
michael@0 455 /* virtual */ bool
michael@0 456 nsInlineFrame::CanContinueTextRun() const
michael@0 457 {
michael@0 458 // We can continue a text run through an inline frame
michael@0 459 return true;
michael@0 460 }
michael@0 461
michael@0 462 /* virtual */ void
michael@0 463 nsInlineFrame::PullOverflowsFromPrevInFlow()
michael@0 464 {
michael@0 465 nsInlineFrame* prevInFlow = static_cast<nsInlineFrame*>(GetPrevInFlow());
michael@0 466 if (prevInFlow) {
michael@0 467 nsPresContext* presContext = PresContext();
michael@0 468 AutoFrameListPtr prevOverflowFrames(presContext,
michael@0 469 prevInFlow->StealOverflowFrames());
michael@0 470 if (prevOverflowFrames) {
michael@0 471 // Assume that our prev-in-flow has the same line container that we do.
michael@0 472 nsContainerFrame::ReparentFrameViewList(*prevOverflowFrames, prevInFlow,
michael@0 473 this);
michael@0 474 mFrames.InsertFrames(this, nullptr, *prevOverflowFrames);
michael@0 475 }
michael@0 476 }
michael@0 477 }
michael@0 478
michael@0 479 nsresult
michael@0 480 nsInlineFrame::ReflowFrames(nsPresContext* aPresContext,
michael@0 481 const nsHTMLReflowState& aReflowState,
michael@0 482 InlineReflowState& irs,
michael@0 483 nsHTMLReflowMetrics& aMetrics,
michael@0 484 nsReflowStatus& aStatus)
michael@0 485 {
michael@0 486 nsresult rv = NS_OK;
michael@0 487 aStatus = NS_FRAME_COMPLETE;
michael@0 488
michael@0 489 nsLineLayout* lineLayout = aReflowState.mLineLayout;
michael@0 490 bool inFirstLine = aReflowState.mLineLayout->GetInFirstLine();
michael@0 491 RestyleManager* restyleManager = aPresContext->RestyleManager();
michael@0 492 WritingMode wm = aReflowState.GetWritingMode();
michael@0 493 nscoord startEdge = 0;
michael@0 494 // Don't offset by our start borderpadding if we have a prev continuation or
michael@0 495 // if we're in a part of an {ib} split other than the first one.
michael@0 496 if (!GetPrevContinuation() && !FrameIsNonFirstInIBSplit()) {
michael@0 497 startEdge = aReflowState.ComputedLogicalBorderPadding().IStart(wm);
michael@0 498 }
michael@0 499 nscoord availableISize = aReflowState.AvailableISize();
michael@0 500 NS_ASSERTION(availableISize != NS_UNCONSTRAINEDSIZE,
michael@0 501 "should no longer use available widths");
michael@0 502 // Subtract off inline axis border+padding from availableISize
michael@0 503 availableISize -= startEdge;
michael@0 504 availableISize -= aReflowState.ComputedLogicalBorderPadding().IEnd(wm);
michael@0 505 lineLayout->BeginSpan(this, &aReflowState, startEdge,
michael@0 506 startEdge + availableISize, &mBaseline);
michael@0 507
michael@0 508 // First reflow our principal children.
michael@0 509 nsIFrame* frame = mFrames.FirstChild();
michael@0 510 bool done = false;
michael@0 511 while (frame) {
michael@0 512 // Check if we should lazily set the child frame's parent pointer.
michael@0 513 if (irs.mSetParentPointer) {
michael@0 514 bool havePrevBlock =
michael@0 515 irs.mLineContainer && irs.mLineContainer->GetPrevContinuation();
michael@0 516 nsIFrame* child = frame;
michael@0 517 do {
michael@0 518 // If our block is the first in flow, then any floats under the pulled
michael@0 519 // frame must already belong to our block.
michael@0 520 if (havePrevBlock) {
michael@0 521 // This has to happen before we update frame's parent; we need to
michael@0 522 // know frame's ancestry under its old block.
michael@0 523 // The blockChildren.ContainsFrame check performed by
michael@0 524 // ReparentFloatsForInlineChild here may be slow, but we can't
michael@0 525 // easily avoid it because we don't know where 'frame' originally
michael@0 526 // came from. If we really really have to optimize this we could
michael@0 527 // cache whether frame->GetParent() is under its containing blocks
michael@0 528 // overflowList or not.
michael@0 529 ReparentFloatsForInlineChild(irs.mLineContainer, child, false);
michael@0 530 }
michael@0 531 child->SetParent(this);
michael@0 532 if (inFirstLine) {
michael@0 533 restyleManager->ReparentStyleContext(child);
michael@0 534 nsLayoutUtils::MarkDescendantsDirty(child);
michael@0 535 }
michael@0 536 // We also need to do the same for |frame|'s next-in-flows that are in
michael@0 537 // the sibling list. Otherwise, if we reflow |frame| and it's complete
michael@0 538 // we'll crash when trying to delete its next-in-flow.
michael@0 539 // This scenario doesn't happen often, but it can happen.
michael@0 540 nsIFrame* nextSibling = child->GetNextSibling();
michael@0 541 child = child->GetNextInFlow();
michael@0 542 if (MOZ_UNLIKELY(child)) {
michael@0 543 while (child != nextSibling && nextSibling) {
michael@0 544 nextSibling = nextSibling->GetNextSibling();
michael@0 545 }
michael@0 546 if (!nextSibling) {
michael@0 547 child = nullptr;
michael@0 548 }
michael@0 549 }
michael@0 550 MOZ_ASSERT(!child || mFrames.ContainsFrame(child));
michael@0 551 } while (child);
michael@0 552
michael@0 553 // Fix the parent pointer for ::first-letter child frame next-in-flows,
michael@0 554 // so nsFirstLetterFrame::Reflow can destroy them safely (bug 401042).
michael@0 555 nsIFrame* realFrame = nsPlaceholderFrame::GetRealFrameFor(frame);
michael@0 556 if (realFrame->GetType() == nsGkAtoms::letterFrame) {
michael@0 557 nsIFrame* child = realFrame->GetFirstPrincipalChild();
michael@0 558 if (child) {
michael@0 559 NS_ASSERTION(child->GetType() == nsGkAtoms::textFrame,
michael@0 560 "unexpected frame type");
michael@0 561 nsIFrame* nextInFlow = child->GetNextInFlow();
michael@0 562 for ( ; nextInFlow; nextInFlow = nextInFlow->GetNextInFlow()) {
michael@0 563 NS_ASSERTION(nextInFlow->GetType() == nsGkAtoms::textFrame,
michael@0 564 "unexpected frame type");
michael@0 565 if (mFrames.ContainsFrame(nextInFlow)) {
michael@0 566 nextInFlow->SetParent(this);
michael@0 567 if (inFirstLine) {
michael@0 568 restyleManager->ReparentStyleContext(nextInFlow);
michael@0 569 nsLayoutUtils::MarkDescendantsDirty(nextInFlow);
michael@0 570 }
michael@0 571 }
michael@0 572 else {
michael@0 573 #ifdef DEBUG
michael@0 574 // Once we find a next-in-flow that isn't ours none of the
michael@0 575 // remaining next-in-flows should be either.
michael@0 576 for ( ; nextInFlow; nextInFlow = nextInFlow->GetNextInFlow()) {
michael@0 577 NS_ASSERTION(!mFrames.ContainsFrame(nextInFlow),
michael@0 578 "unexpected letter frame flow");
michael@0 579 }
michael@0 580 #endif
michael@0 581 break;
michael@0 582 }
michael@0 583 }
michael@0 584 }
michael@0 585 }
michael@0 586 }
michael@0 587 MOZ_ASSERT(frame->GetParent() == this);
michael@0 588
michael@0 589 if (!done) {
michael@0 590 bool reflowingFirstLetter = lineLayout->GetFirstLetterStyleOK();
michael@0 591 rv = ReflowInlineFrame(aPresContext, aReflowState, irs, frame, aStatus);
michael@0 592 done = NS_FAILED(rv) ||
michael@0 593 NS_INLINE_IS_BREAK(aStatus) ||
michael@0 594 (!reflowingFirstLetter && NS_FRAME_IS_NOT_COMPLETE(aStatus));
michael@0 595 if (done) {
michael@0 596 if (!irs.mSetParentPointer) {
michael@0 597 break;
michael@0 598 }
michael@0 599 // Keep reparenting the remaining siblings, but don't reflow them.
michael@0 600 nsFrameList* pushedFrames = GetOverflowFrames();
michael@0 601 if (pushedFrames && pushedFrames->FirstChild() == frame) {
michael@0 602 // Don't bother if |frame| was pushed to our overflow list.
michael@0 603 break;
michael@0 604 }
michael@0 605 } else {
michael@0 606 irs.mPrevFrame = frame;
michael@0 607 }
michael@0 608 }
michael@0 609 frame = frame->GetNextSibling();
michael@0 610 }
michael@0 611
michael@0 612 // Attempt to pull frames from our next-in-flow until we can't
michael@0 613 if (!done && GetNextInFlow()) {
michael@0 614 while (true) {
michael@0 615 bool reflowingFirstLetter = lineLayout->GetFirstLetterStyleOK();
michael@0 616 bool isComplete;
michael@0 617 if (!frame) { // Could be non-null if we pulled a first-letter frame and
michael@0 618 // it created a continuation, since we don't push those.
michael@0 619 frame = PullOneFrame(aPresContext, irs, &isComplete);
michael@0 620 }
michael@0 621 #ifdef NOISY_PUSHING
michael@0 622 printf("%p pulled up %p\n", this, frame);
michael@0 623 #endif
michael@0 624 if (nullptr == frame) {
michael@0 625 if (!isComplete) {
michael@0 626 aStatus = NS_FRAME_NOT_COMPLETE;
michael@0 627 }
michael@0 628 break;
michael@0 629 }
michael@0 630 rv = ReflowInlineFrame(aPresContext, aReflowState, irs, frame, aStatus);
michael@0 631 if (NS_FAILED(rv) ||
michael@0 632 NS_INLINE_IS_BREAK(aStatus) ||
michael@0 633 (!reflowingFirstLetter && NS_FRAME_IS_NOT_COMPLETE(aStatus))) {
michael@0 634 break;
michael@0 635 }
michael@0 636 irs.mPrevFrame = frame;
michael@0 637 frame = frame->GetNextSibling();
michael@0 638 }
michael@0 639 }
michael@0 640
michael@0 641 NS_ASSERTION(!NS_FRAME_IS_COMPLETE(aStatus) || !GetOverflowFrames(),
michael@0 642 "We can't be complete AND have overflow frames!");
michael@0 643
michael@0 644 // If after reflowing our children they take up no area then make
michael@0 645 // sure that we don't either.
michael@0 646 //
michael@0 647 // Note: CSS demands that empty inline elements still affect the
michael@0 648 // line-height calculations. However, continuations of an inline
michael@0 649 // that are empty we force to empty so that things like collapsed
michael@0 650 // whitespace in an inline element don't affect the line-height.
michael@0 651 aMetrics.ISize() = lineLayout->EndSpan(this);
michael@0 652
michael@0 653 // Compute final width.
michael@0 654
michael@0 655 // Make sure to not include our start border and padding if we have a prev
michael@0 656 // continuation or if we're in a part of an {ib} split other than the first
michael@0 657 // one.
michael@0 658 if (!GetPrevContinuation() && !FrameIsNonFirstInIBSplit()) {
michael@0 659 aMetrics.ISize() += aReflowState.ComputedLogicalBorderPadding().IStart(wm);
michael@0 660 }
michael@0 661
michael@0 662 /*
michael@0 663 * We want to only apply the end border and padding if we're the last
michael@0 664 * continuation and either not in an {ib} split or the last part of it. To
michael@0 665 * be the last continuation we have to be complete (so that we won't get a
michael@0 666 * next-in-flow) and have no non-fluid continuations on our continuation
michael@0 667 * chain.
michael@0 668 */
michael@0 669 if (NS_FRAME_IS_COMPLETE(aStatus) &&
michael@0 670 !LastInFlow()->GetNextContinuation() &&
michael@0 671 !FrameIsNonLastInIBSplit()) {
michael@0 672 aMetrics.Width() += aReflowState.ComputedLogicalBorderPadding().IEnd(wm);
michael@0 673 }
michael@0 674
michael@0 675 nsRefPtr<nsFontMetrics> fm;
michael@0 676 float inflation = nsLayoutUtils::FontSizeInflationFor(this);
michael@0 677 nsLayoutUtils::GetFontMetricsForFrame(this, getter_AddRefs(fm), inflation);
michael@0 678 aReflowState.rendContext->SetFont(fm);
michael@0 679
michael@0 680 if (fm) {
michael@0 681 // Compute final height of the frame.
michael@0 682 //
michael@0 683 // Do things the standard css2 way -- though it's hard to find it
michael@0 684 // in the css2 spec! It's actually found in the css1 spec section
michael@0 685 // 4.4 (you will have to read between the lines to really see
michael@0 686 // it).
michael@0 687 //
michael@0 688 // The height of our box is the sum of our font size plus the top
michael@0 689 // and bottom border and padding. The height of children do not
michael@0 690 // affect our height.
michael@0 691 aMetrics.SetTopAscent(fm->MaxAscent());
michael@0 692 aMetrics.Height() = fm->MaxHeight();
michael@0 693 } else {
michael@0 694 NS_WARNING("Cannot get font metrics - defaulting sizes to 0");
michael@0 695 aMetrics.SetTopAscent(aMetrics.Height() = 0);
michael@0 696 }
michael@0 697 aMetrics.SetTopAscent(aMetrics.TopAscent() + aReflowState.ComputedPhysicalBorderPadding().top);
michael@0 698 aMetrics.Height() += aReflowState.ComputedPhysicalBorderPadding().top +
michael@0 699 aReflowState.ComputedPhysicalBorderPadding().bottom;
michael@0 700
michael@0 701 // For now our overflow area is zero. The real value will be
michael@0 702 // computed in |nsLineLayout::RelativePositionFrames|.
michael@0 703 aMetrics.mOverflowAreas.Clear();
michael@0 704
michael@0 705 #ifdef NOISY_FINAL_SIZE
michael@0 706 ListTag(stdout);
michael@0 707 printf(": metrics=%d,%d ascent=%d\n",
michael@0 708 aMetrics.Width(), aMetrics.Height(), aMetrics.TopAscent());
michael@0 709 #endif
michael@0 710
michael@0 711 return rv;
michael@0 712 }
michael@0 713
michael@0 714 nsresult
michael@0 715 nsInlineFrame::ReflowInlineFrame(nsPresContext* aPresContext,
michael@0 716 const nsHTMLReflowState& aReflowState,
michael@0 717 InlineReflowState& irs,
michael@0 718 nsIFrame* aFrame,
michael@0 719 nsReflowStatus& aStatus)
michael@0 720 {
michael@0 721 nsLineLayout* lineLayout = aReflowState.mLineLayout;
michael@0 722 bool reflowingFirstLetter = lineLayout->GetFirstLetterStyleOK();
michael@0 723 bool pushedFrame;
michael@0 724 nsresult rv =
michael@0 725 lineLayout->ReflowFrame(aFrame, aStatus, nullptr, pushedFrame);
michael@0 726
michael@0 727 if (NS_FAILED(rv)) {
michael@0 728 return rv;
michael@0 729 }
michael@0 730
michael@0 731 if (NS_INLINE_IS_BREAK_BEFORE(aStatus)) {
michael@0 732 if (aFrame != mFrames.FirstChild()) {
michael@0 733 // Change break-before status into break-after since we have
michael@0 734 // already placed at least one child frame. This preserves the
michael@0 735 // break-type so that it can be propagated upward.
michael@0 736 aStatus = NS_FRAME_NOT_COMPLETE |
michael@0 737 NS_INLINE_BREAK | NS_INLINE_BREAK_AFTER |
michael@0 738 (aStatus & NS_INLINE_BREAK_TYPE_MASK);
michael@0 739 PushFrames(aPresContext, aFrame, irs.mPrevFrame, irs);
michael@0 740 }
michael@0 741 else {
michael@0 742 // Preserve reflow status when breaking-before our first child
michael@0 743 // and propagate it upward without modification.
michael@0 744 }
michael@0 745 return NS_OK;
michael@0 746 }
michael@0 747
michael@0 748 // Create a next-in-flow if needed.
michael@0 749 if (!NS_FRAME_IS_FULLY_COMPLETE(aStatus)) {
michael@0 750 nsIFrame* newFrame;
michael@0 751 rv = CreateNextInFlow(aFrame, newFrame);
michael@0 752 if (NS_FAILED(rv)) {
michael@0 753 return rv;
michael@0 754 }
michael@0 755 }
michael@0 756
michael@0 757 if (NS_INLINE_IS_BREAK_AFTER(aStatus)) {
michael@0 758 nsIFrame* nextFrame = aFrame->GetNextSibling();
michael@0 759 if (nextFrame) {
michael@0 760 NS_FRAME_SET_INCOMPLETE(aStatus);
michael@0 761 PushFrames(aPresContext, nextFrame, aFrame, irs);
michael@0 762 }
michael@0 763 else {
michael@0 764 // We must return an incomplete status if there are more child
michael@0 765 // frames remaining in a next-in-flow that follows this frame.
michael@0 766 nsInlineFrame* nextInFlow = static_cast<nsInlineFrame*>(GetNextInFlow());
michael@0 767 while (nextInFlow) {
michael@0 768 if (nextInFlow->mFrames.NotEmpty()) {
michael@0 769 NS_FRAME_SET_INCOMPLETE(aStatus);
michael@0 770 break;
michael@0 771 }
michael@0 772 nextInFlow = static_cast<nsInlineFrame*>(nextInFlow->GetNextInFlow());
michael@0 773 }
michael@0 774 }
michael@0 775 return NS_OK;
michael@0 776 }
michael@0 777
michael@0 778 if (!NS_FRAME_IS_FULLY_COMPLETE(aStatus) && !reflowingFirstLetter) {
michael@0 779 nsIFrame* nextFrame = aFrame->GetNextSibling();
michael@0 780 if (nextFrame) {
michael@0 781 PushFrames(aPresContext, nextFrame, aFrame, irs);
michael@0 782 }
michael@0 783 }
michael@0 784 return NS_OK;
michael@0 785 }
michael@0 786
michael@0 787 nsIFrame*
michael@0 788 nsInlineFrame::PullOneFrame(nsPresContext* aPresContext,
michael@0 789 InlineReflowState& irs,
michael@0 790 bool* aIsComplete)
michael@0 791 {
michael@0 792 bool isComplete = true;
michael@0 793
michael@0 794 nsIFrame* frame = nullptr;
michael@0 795 nsInlineFrame* nextInFlow = irs.mNextInFlow;
michael@0 796 while (nextInFlow) {
michael@0 797 frame = nextInFlow->mFrames.FirstChild();
michael@0 798 if (!frame) {
michael@0 799 // The nextInFlow's principal list has no frames, try its overflow list.
michael@0 800 nsFrameList* overflowFrames = nextInFlow->GetOverflowFrames();
michael@0 801 if (overflowFrames) {
michael@0 802 frame = overflowFrames->RemoveFirstChild();
michael@0 803 if (overflowFrames->IsEmpty()) {
michael@0 804 // We're stealing the only frame - delete the overflow list.
michael@0 805 nextInFlow->DestroyOverflowList();
michael@0 806 } else {
michael@0 807 // We leave the remaining frames on the overflow list (rather than
michael@0 808 // putting them on nextInFlow's principal list) so we don't have to
michael@0 809 // set up the parent for them.
michael@0 810 }
michael@0 811 // ReparentFloatsForInlineChild needs it to be on a child list -
michael@0 812 // we remove it again below.
michael@0 813 nextInFlow->mFrames.SetFrames(frame);
michael@0 814 }
michael@0 815 }
michael@0 816
michael@0 817 if (frame) {
michael@0 818 // If our block has no next continuation, then any floats belonging to
michael@0 819 // the pulled frame must belong to our block already. This check ensures
michael@0 820 // we do no extra work in the common non-vertical-breaking case.
michael@0 821 if (irs.mLineContainer && irs.mLineContainer->GetNextContinuation()) {
michael@0 822 // The blockChildren.ContainsFrame check performed by
michael@0 823 // ReparentFloatsForInlineChild will be fast because frame's ancestor
michael@0 824 // will be the first child of its containing block.
michael@0 825 ReparentFloatsForInlineChild(irs.mLineContainer, frame, false);
michael@0 826 }
michael@0 827 nextInFlow->mFrames.RemoveFirstChild();
michael@0 828 // nsFirstLineFrame::PullOneFrame calls ReparentStyleContext.
michael@0 829
michael@0 830 mFrames.InsertFrame(this, irs.mPrevFrame, frame);
michael@0 831 isComplete = false;
michael@0 832 if (irs.mLineLayout) {
michael@0 833 irs.mLineLayout->SetDirtyNextLine();
michael@0 834 }
michael@0 835 nsContainerFrame::ReparentFrameView(frame, nextInFlow, this);
michael@0 836 break;
michael@0 837 }
michael@0 838 nextInFlow = static_cast<nsInlineFrame*>(nextInFlow->GetNextInFlow());
michael@0 839 irs.mNextInFlow = nextInFlow;
michael@0 840 }
michael@0 841
michael@0 842 *aIsComplete = isComplete;
michael@0 843 return frame;
michael@0 844 }
michael@0 845
michael@0 846 void
michael@0 847 nsInlineFrame::PushFrames(nsPresContext* aPresContext,
michael@0 848 nsIFrame* aFromChild,
michael@0 849 nsIFrame* aPrevSibling,
michael@0 850 InlineReflowState& aState)
michael@0 851 {
michael@0 852 NS_PRECONDITION(aFromChild, "null pointer");
michael@0 853 NS_PRECONDITION(aPrevSibling, "pushing first child");
michael@0 854 NS_PRECONDITION(aPrevSibling->GetNextSibling() == aFromChild, "bad prev sibling");
michael@0 855
michael@0 856 #ifdef NOISY_PUSHING
michael@0 857 printf("%p pushing aFromChild %p, disconnecting from prev sib %p\n",
michael@0 858 this, aFromChild, aPrevSibling);
michael@0 859 #endif
michael@0 860
michael@0 861 // Add the frames to our overflow list (let our next in flow drain
michael@0 862 // our overflow list when it is ready)
michael@0 863 SetOverflowFrames(mFrames.RemoveFramesAfter(aPrevSibling));
michael@0 864 if (aState.mLineLayout) {
michael@0 865 aState.mLineLayout->SetDirtyNextLine();
michael@0 866 }
michael@0 867 }
michael@0 868
michael@0 869
michael@0 870 //////////////////////////////////////////////////////////////////////
michael@0 871
michael@0 872 int
michael@0 873 nsInlineFrame::GetLogicalSkipSides(const nsHTMLReflowState* aReflowState) const
michael@0 874 {
michael@0 875 int skip = 0;
michael@0 876 if (!IsFirst()) {
michael@0 877 nsInlineFrame* prev = (nsInlineFrame*) GetPrevContinuation();
michael@0 878 if ((GetStateBits() & NS_INLINE_FRAME_BIDI_VISUAL_STATE_IS_SET) ||
michael@0 879 (prev && (prev->mRect.height || prev->mRect.width))) {
michael@0 880 // Prev continuation is not empty therefore we don't render our start
michael@0 881 // border edge.
michael@0 882 skip |= LOGICAL_SIDE_I_START;
michael@0 883 }
michael@0 884 else {
michael@0 885 // If the prev continuation is empty, then go ahead and let our start
michael@0 886 // edge border render.
michael@0 887 }
michael@0 888 }
michael@0 889 if (!IsLast()) {
michael@0 890 nsInlineFrame* next = (nsInlineFrame*) GetNextContinuation();
michael@0 891 if ((GetStateBits() & NS_INLINE_FRAME_BIDI_VISUAL_STATE_IS_SET) ||
michael@0 892 (next && (next->mRect.height || next->mRect.width))) {
michael@0 893 // Next continuation is not empty therefore we don't render our end
michael@0 894 // border edge.
michael@0 895 skip |= LOGICAL_SIDE_I_END;
michael@0 896 }
michael@0 897 else {
michael@0 898 // If the next continuation is empty, then go ahead and let our end
michael@0 899 // edge border render.
michael@0 900 }
michael@0 901 }
michael@0 902
michael@0 903 if (GetStateBits() & NS_FRAME_PART_OF_IBSPLIT) {
michael@0 904 // All but the last part of an {ib} split should skip the "end" side (as
michael@0 905 // determined by this frame's direction) and all but the first part of such
michael@0 906 // a split should skip the "start" side. But figuring out which part of
michael@0 907 // the split we are involves getting our first continuation, which might be
michael@0 908 // expensive. So don't bother if we already have the relevant bits set.
michael@0 909 if (skip != LOGICAL_SIDES_I_BOTH) {
michael@0 910 // We're missing one of the skip bits, so check whether we need to set it.
michael@0 911 // Only get the first continuation once, as an optimization.
michael@0 912 nsIFrame* firstContinuation = FirstContinuation();
michael@0 913 if (firstContinuation->FrameIsNonLastInIBSplit()) {
michael@0 914 skip |= LOGICAL_SIDE_I_END;
michael@0 915 }
michael@0 916 if (firstContinuation->FrameIsNonFirstInIBSplit()) {
michael@0 917 skip |= LOGICAL_SIDE_I_START;
michael@0 918 }
michael@0 919 }
michael@0 920 }
michael@0 921
michael@0 922 return skip;
michael@0 923 }
michael@0 924
michael@0 925 nscoord
michael@0 926 nsInlineFrame::GetBaseline() const
michael@0 927 {
michael@0 928 return mBaseline;
michael@0 929 }
michael@0 930
michael@0 931 #ifdef ACCESSIBILITY
michael@0 932 a11y::AccType
michael@0 933 nsInlineFrame::AccessibleType()
michael@0 934 {
michael@0 935 // Broken image accessibles are created here, because layout
michael@0 936 // replaces the image or image control frame with an inline frame
michael@0 937 nsIAtom *tagAtom = mContent->Tag();
michael@0 938 if (tagAtom == nsGkAtoms::input) // Broken <input type=image ... />
michael@0 939 return a11y::eHTMLButtonType;
michael@0 940 if (tagAtom == nsGkAtoms::img) // Create accessible for broken <img>
michael@0 941 return a11y::eHyperTextType;
michael@0 942
michael@0 943 return a11y::eNoType;
michael@0 944 }
michael@0 945 #endif
michael@0 946
michael@0 947 //////////////////////////////////////////////////////////////////////
michael@0 948
michael@0 949 // nsLineFrame implementation
michael@0 950
michael@0 951 nsIFrame*
michael@0 952 NS_NewFirstLineFrame(nsIPresShell* aPresShell, nsStyleContext* aContext)
michael@0 953 {
michael@0 954 return new (aPresShell) nsFirstLineFrame(aContext);
michael@0 955 }
michael@0 956
michael@0 957 NS_IMPL_FRAMEARENA_HELPERS(nsFirstLineFrame)
michael@0 958
michael@0 959 void
michael@0 960 nsFirstLineFrame::Init(nsIContent* aContent, nsIFrame* aParent,
michael@0 961 nsIFrame* aPrevInFlow)
michael@0 962 {
michael@0 963 nsInlineFrame::Init(aContent, aParent, aPrevInFlow);
michael@0 964 if (!aPrevInFlow) {
michael@0 965 MOZ_ASSERT(StyleContext()->GetPseudo() == nsCSSPseudoElements::firstLine);
michael@0 966 return;
michael@0 967 }
michael@0 968
michael@0 969 // This frame is a continuation - fixup the style context if aPrevInFlow
michael@0 970 // is the first-in-flow (the only one with a ::first-line pseudo).
michael@0 971 if (aPrevInFlow->StyleContext()->GetPseudo() == nsCSSPseudoElements::firstLine) {
michael@0 972 MOZ_ASSERT(FirstInFlow() == aPrevInFlow);
michael@0 973 // Create a new style context that is a child of the parent
michael@0 974 // style context thus removing the ::first-line style. This way
michael@0 975 // we behave as if an anonymous (unstyled) span was the child
michael@0 976 // of the parent frame.
michael@0 977 nsStyleContext* parentContext = aParent->StyleContext();
michael@0 978 nsRefPtr<nsStyleContext> newSC = PresContext()->StyleSet()->
michael@0 979 ResolveAnonymousBoxStyle(nsCSSAnonBoxes::mozLineFrame, parentContext);
michael@0 980 SetStyleContext(newSC);
michael@0 981 } else {
michael@0 982 MOZ_ASSERT(FirstInFlow() != aPrevInFlow);
michael@0 983 MOZ_ASSERT(aPrevInFlow->StyleContext()->GetPseudo() ==
michael@0 984 nsCSSAnonBoxes::mozLineFrame);
michael@0 985 }
michael@0 986 }
michael@0 987
michael@0 988 #ifdef DEBUG_FRAME_DUMP
michael@0 989 nsresult
michael@0 990 nsFirstLineFrame::GetFrameName(nsAString& aResult) const
michael@0 991 {
michael@0 992 return MakeFrameName(NS_LITERAL_STRING("Line"), aResult);
michael@0 993 }
michael@0 994 #endif
michael@0 995
michael@0 996 nsIAtom*
michael@0 997 nsFirstLineFrame::GetType() const
michael@0 998 {
michael@0 999 return nsGkAtoms::lineFrame;
michael@0 1000 }
michael@0 1001
michael@0 1002 nsIFrame*
michael@0 1003 nsFirstLineFrame::PullOneFrame(nsPresContext* aPresContext, InlineReflowState& irs,
michael@0 1004 bool* aIsComplete)
michael@0 1005 {
michael@0 1006 nsIFrame* frame = nsInlineFrame::PullOneFrame(aPresContext, irs, aIsComplete);
michael@0 1007 if (frame && !GetPrevInFlow()) {
michael@0 1008 // We are a first-line frame. Fixup the child frames
michael@0 1009 // style-context that we just pulled.
michael@0 1010 NS_ASSERTION(frame->GetParent() == this, "Incorrect parent?");
michael@0 1011 aPresContext->RestyleManager()->ReparentStyleContext(frame);
michael@0 1012 nsLayoutUtils::MarkDescendantsDirty(frame);
michael@0 1013 }
michael@0 1014 return frame;
michael@0 1015 }
michael@0 1016
michael@0 1017 nsresult
michael@0 1018 nsFirstLineFrame::Reflow(nsPresContext* aPresContext,
michael@0 1019 nsHTMLReflowMetrics& aMetrics,
michael@0 1020 const nsHTMLReflowState& aReflowState,
michael@0 1021 nsReflowStatus& aStatus)
michael@0 1022 {
michael@0 1023 if (nullptr == aReflowState.mLineLayout) {
michael@0 1024 return NS_ERROR_INVALID_ARG;
michael@0 1025 }
michael@0 1026
michael@0 1027 nsIFrame* lineContainer = aReflowState.mLineLayout->LineContainerFrame();
michael@0 1028
michael@0 1029 // Check for an overflow list with our prev-in-flow
michael@0 1030 nsFirstLineFrame* prevInFlow = (nsFirstLineFrame*)GetPrevInFlow();
michael@0 1031 if (prevInFlow) {
michael@0 1032 AutoFrameListPtr prevOverflowFrames(aPresContext,
michael@0 1033 prevInFlow->StealOverflowFrames());
michael@0 1034 if (prevOverflowFrames) {
michael@0 1035 // Assign all floats to our block if necessary
michael@0 1036 if (lineContainer && lineContainer->GetPrevContinuation()) {
michael@0 1037 ReparentFloatsForInlineChild(lineContainer,
michael@0 1038 prevOverflowFrames->FirstChild(),
michael@0 1039 true);
michael@0 1040 }
michael@0 1041 const nsFrameList::Slice& newFrames =
michael@0 1042 mFrames.InsertFrames(this, nullptr, *prevOverflowFrames);
michael@0 1043 ReparentChildListStyle(aPresContext, newFrames, this);
michael@0 1044 }
michael@0 1045 }
michael@0 1046
michael@0 1047 // It's also possible that we have an overflow list for ourselves.
michael@0 1048 DrainSelfOverflowList();
michael@0 1049
michael@0 1050 // Set our own reflow state (additional state above and beyond
michael@0 1051 // aReflowState)
michael@0 1052 InlineReflowState irs;
michael@0 1053 irs.mPrevFrame = nullptr;
michael@0 1054 irs.mLineContainer = lineContainer;
michael@0 1055 irs.mLineLayout = aReflowState.mLineLayout;
michael@0 1056 irs.mNextInFlow = (nsInlineFrame*) GetNextInFlow();
michael@0 1057
michael@0 1058 nsresult rv;
michael@0 1059 bool wasEmpty = mFrames.IsEmpty();
michael@0 1060 if (wasEmpty) {
michael@0 1061 // Try to pull over one frame before starting so that we know
michael@0 1062 // whether we have an anonymous block or not.
michael@0 1063 bool complete;
michael@0 1064 PullOneFrame(aPresContext, irs, &complete);
michael@0 1065 }
michael@0 1066
michael@0 1067 if (nullptr == GetPrevInFlow()) {
michael@0 1068 // XXX This is pretty sick, but what we do here is to pull-up, in
michael@0 1069 // advance, all of the next-in-flows children. We re-resolve their
michael@0 1070 // style while we are at at it so that when we reflow they have
michael@0 1071 // the right style.
michael@0 1072 //
michael@0 1073 // All of this is so that text-runs reflow properly.
michael@0 1074 irs.mPrevFrame = mFrames.LastChild();
michael@0 1075 for (;;) {
michael@0 1076 bool complete;
michael@0 1077 nsIFrame* frame = PullOneFrame(aPresContext, irs, &complete);
michael@0 1078 if (!frame) {
michael@0 1079 break;
michael@0 1080 }
michael@0 1081 irs.mPrevFrame = frame;
michael@0 1082 }
michael@0 1083 irs.mPrevFrame = nullptr;
michael@0 1084 }
michael@0 1085
michael@0 1086 NS_ASSERTION(!aReflowState.mLineLayout->GetInFirstLine(),
michael@0 1087 "Nested first-line frames? BOGUS");
michael@0 1088 aReflowState.mLineLayout->SetInFirstLine(true);
michael@0 1089 rv = ReflowFrames(aPresContext, aReflowState, irs, aMetrics, aStatus);
michael@0 1090 aReflowState.mLineLayout->SetInFirstLine(false);
michael@0 1091
michael@0 1092 ReflowAbsoluteFrames(aPresContext, aMetrics, aReflowState, aStatus);
michael@0 1093
michael@0 1094 // Note: the line layout code will properly compute our overflow state for us
michael@0 1095
michael@0 1096 return rv;
michael@0 1097 }
michael@0 1098
michael@0 1099 /* virtual */ void
michael@0 1100 nsFirstLineFrame::PullOverflowsFromPrevInFlow()
michael@0 1101 {
michael@0 1102 nsFirstLineFrame* prevInFlow = static_cast<nsFirstLineFrame*>(GetPrevInFlow());
michael@0 1103 if (prevInFlow) {
michael@0 1104 nsPresContext* presContext = PresContext();
michael@0 1105 AutoFrameListPtr prevOverflowFrames(presContext,
michael@0 1106 prevInFlow->StealOverflowFrames());
michael@0 1107 if (prevOverflowFrames) {
michael@0 1108 // Assume that our prev-in-flow has the same line container that we do.
michael@0 1109 const nsFrameList::Slice& newFrames =
michael@0 1110 mFrames.InsertFrames(this, nullptr, *prevOverflowFrames);
michael@0 1111 ReparentChildListStyle(presContext, newFrames, this);
michael@0 1112 }
michael@0 1113 }
michael@0 1114 }
michael@0 1115
michael@0 1116 /* virtual */ bool
michael@0 1117 nsFirstLineFrame::DrainSelfOverflowList()
michael@0 1118 {
michael@0 1119 AutoFrameListPtr overflowFrames(PresContext(), StealOverflowFrames());
michael@0 1120 if (overflowFrames) {
michael@0 1121 NS_ASSERTION(mFrames.NotEmpty(), "overflow list w/o frames");
michael@0 1122
michael@0 1123 bool result = !overflowFrames->IsEmpty();
michael@0 1124 const nsFrameList::Slice& newFrames =
michael@0 1125 mFrames.AppendFrames(nullptr, *overflowFrames);
michael@0 1126 ReparentChildListStyle(PresContext(), newFrames, this);
michael@0 1127 return result;
michael@0 1128 }
michael@0 1129 return false;
michael@0 1130 }

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