Wed, 31 Dec 2014 13:27:57 +0100
Ignore runtime configuration files generated during quality assurance.
1 /* -*- Mode: C++; tab-width: 2; indent-tabs-mode: nil; c-basic-offset: 2 -*- */
2 /* This Source Code Form is subject to the terms of the Mozilla Public
3 * License, v. 2.0. If a copy of the MPL was not distributed with this
4 * file, You can obtain one at http://mozilla.org/MPL/2.0/. */
6 /*
7 * a node in the lexicographic tree of rules that match an element,
8 * responsible for converting the rules' information into computed style
9 */
11 #ifndef nsRuleNode_h___
12 #define nsRuleNode_h___
14 #include "nsPresContext.h"
15 #include "nsStyleStruct.h"
17 #include <stdint.h>
19 class nsStyleContext;
20 struct nsRuleData;
21 class nsIStyleRule;
22 struct nsCSSValueList;
24 class nsCSSValue;
25 struct nsCSSRect;
27 class nsStyleCoord;
28 struct nsCSSValuePairList;
30 template <nsStyleStructID MinIndex, nsStyleStructID Count>
31 class FixedStyleStructArray
32 {
33 private:
34 void* mArray[Count];
35 public:
36 void*& operator[](nsStyleStructID aIndex) {
37 NS_ABORT_IF_FALSE(MinIndex <= aIndex && aIndex < (MinIndex + Count),
38 "out of range");
39 return mArray[aIndex - MinIndex];
40 }
42 const void* operator[](nsStyleStructID aIndex) const {
43 NS_ABORT_IF_FALSE(MinIndex <= aIndex && aIndex < (MinIndex + Count),
44 "out of range");
45 return mArray[aIndex - MinIndex];
46 }
47 };
49 struct nsInheritedStyleData
50 {
51 FixedStyleStructArray<nsStyleStructID_Inherited_Start,
52 nsStyleStructID_Inherited_Count> mStyleStructs;
54 void* operator new(size_t sz, nsPresContext* aContext) CPP_THROW_NEW {
55 return aContext->AllocateFromShell(sz);
56 }
58 void DestroyStructs(uint64_t aBits, nsPresContext* aContext) {
59 #define STYLE_STRUCT_INHERITED(name, checkdata_cb) \
60 void *name##Data = mStyleStructs[eStyleStruct_##name]; \
61 if (name##Data && !(aBits & NS_STYLE_INHERIT_BIT(name))) \
62 static_cast<nsStyle##name*>(name##Data)->Destroy(aContext);
63 #define STYLE_STRUCT_RESET(name, checkdata_cb)
65 #include "nsStyleStructList.h"
67 #undef STYLE_STRUCT_INHERITED
68 #undef STYLE_STRUCT_RESET
69 }
71 void Destroy(uint64_t aBits, nsPresContext* aContext) {
72 DestroyStructs(aBits, aContext);
73 aContext->FreeToShell(sizeof(nsInheritedStyleData), this);
74 }
76 nsInheritedStyleData() {
77 for (nsStyleStructID i = nsStyleStructID_Inherited_Start;
78 i < nsStyleStructID_Inherited_Start + nsStyleStructID_Inherited_Count;
79 i = nsStyleStructID(i + 1)) {
80 mStyleStructs[i] = nullptr;
81 }
82 }
83 };
85 struct nsResetStyleData
86 {
87 FixedStyleStructArray<nsStyleStructID_Reset_Start,
88 nsStyleStructID_Reset_Count> mStyleStructs;
90 nsResetStyleData()
91 {
92 for (nsStyleStructID i = nsStyleStructID_Reset_Start;
93 i < nsStyleStructID_Reset_Start + nsStyleStructID_Reset_Count;
94 i = nsStyleStructID(i + 1)) {
95 mStyleStructs[i] = nullptr;
96 }
97 }
99 void* operator new(size_t sz, nsPresContext* aContext) CPP_THROW_NEW {
100 return aContext->AllocateFromShell(sz);
101 }
103 void Destroy(uint64_t aBits, nsPresContext* aContext) {
104 #define STYLE_STRUCT_RESET(name, checkdata_cb) \
105 void *name##Data = mStyleStructs[eStyleStruct_##name]; \
106 if (name##Data && !(aBits & NS_STYLE_INHERIT_BIT(name))) \
107 static_cast<nsStyle##name*>(name##Data)->Destroy(aContext);
108 #define STYLE_STRUCT_INHERITED(name, checkdata_cb)
110 #include "nsStyleStructList.h"
112 #undef STYLE_STRUCT_RESET
113 #undef STYLE_STRUCT_INHERITED
115 aContext->FreeToShell(sizeof(nsResetStyleData), this);
116 }
117 };
119 struct nsCachedStyleData
120 {
121 nsInheritedStyleData* mInheritedData;
122 nsResetStyleData* mResetData;
124 static bool IsReset(const nsStyleStructID aSID) {
125 NS_ABORT_IF_FALSE(0 <= aSID && aSID < nsStyleStructID_Length,
126 "must be an inherited or reset SID");
127 return nsStyleStructID_Reset_Start <= aSID;
128 }
130 static bool IsInherited(const nsStyleStructID aSID) {
131 return !IsReset(aSID);
132 }
134 static uint32_t GetBitForSID(const nsStyleStructID aSID) {
135 return 1 << aSID;
136 }
138 void* NS_FASTCALL GetStyleData(const nsStyleStructID aSID) {
139 if (IsReset(aSID)) {
140 if (mResetData) {
141 return mResetData->mStyleStructs[aSID];
142 }
143 } else {
144 if (mInheritedData) {
145 return mInheritedData->mStyleStructs[aSID];
146 }
147 }
148 return nullptr;
149 }
151 void NS_FASTCALL SetStyleData(const nsStyleStructID aSID,
152 nsPresContext *aPresContext, void *aData) {
153 if (IsReset(aSID)) {
154 if (!mResetData) {
155 mResetData = new (aPresContext) nsResetStyleData;
156 }
157 mResetData->mStyleStructs[aSID] = aData;
158 } else {
159 if (!mInheritedData) {
160 mInheritedData = new (aPresContext) nsInheritedStyleData;
161 }
162 mInheritedData->mStyleStructs[aSID] = aData;
163 }
164 }
166 // Typesafe and faster versions of the above
167 #define STYLE_STRUCT_INHERITED(name_, checkdata_cb_) \
168 nsStyle##name_ * NS_FASTCALL GetStyle##name_ () { \
169 return mInheritedData ? static_cast<nsStyle##name_*>( \
170 mInheritedData->mStyleStructs[eStyleStruct_##name_]) : nullptr; \
171 }
172 #define STYLE_STRUCT_RESET(name_, checkdata_cb_) \
173 nsStyle##name_ * NS_FASTCALL GetStyle##name_ () { \
174 return mResetData ? static_cast<nsStyle##name_*>( \
175 mResetData->mStyleStructs[eStyleStruct_##name_]) : nullptr; \
176 }
177 #include "nsStyleStructList.h"
178 #undef STYLE_STRUCT_RESET
179 #undef STYLE_STRUCT_INHERITED
181 void Destroy(uint64_t aBits, nsPresContext* aContext) {
182 if (mResetData)
183 mResetData->Destroy(aBits, aContext);
184 if (mInheritedData)
185 mInheritedData->Destroy(aBits, aContext);
186 mResetData = nullptr;
187 mInheritedData = nullptr;
188 }
190 nsCachedStyleData() :mInheritedData(nullptr), mResetData(nullptr) {}
191 ~nsCachedStyleData() {}
192 };
194 /**
195 * nsRuleNode is a node in a lexicographic tree (the "rule tree")
196 * indexed by style rules (implementations of nsIStyleRule).
197 *
198 * The rule tree is owned by the nsStyleSet and is destroyed when the
199 * presentation of the document goes away. It is garbage-collected
200 * (using mark-and-sweep garbage collection) during the lifetime of the
201 * document (when dynamic changes cause the destruction of enough style
202 * contexts). Rule nodes are marked if they are pointed to by a style
203 * context or one of their descendants is.
204 *
205 * An nsStyleContext, which represents the computed style data for an
206 * element, points to an nsRuleNode. The path from the root of the rule
207 * tree to the nsStyleContext's mRuleNode gives the list of the rules
208 * matched, from least important in the cascading order to most
209 * important in the cascading order.
210 *
211 * The reason for using a lexicographic tree is that it allows for
212 * sharing of style data, which saves both memory (for storing the
213 * computed style data) and time (for computing them). This sharing
214 * depends on the computed style data being stored in structs (nsStyle*)
215 * that contain only properties that are inherited by default
216 * ("inherited structs") or structs that contain only properties that
217 * are not inherited by default ("reset structs"). The optimization
218 * depends on the normal case being that style rules specify relatively
219 * few properties and even that elements generally have relatively few
220 * properties specified. This allows sharing in the following ways:
221 * 1. [mainly reset structs] When a style data struct will contain the
222 * same computed value for any elements that match the same set of
223 * rules (common for reset structs), it can be stored on the
224 * nsRuleNode instead of on the nsStyleContext.
225 * 2. [only? reset structs] When (1) occurs, and an nsRuleNode doesn't
226 * have any rules that change the values in the struct, the
227 * nsRuleNode can share that struct with its parent nsRuleNode.
228 * 3. [mainly inherited structs] When an element doesn't match any
229 * rules that change the value of a property (or, in the edge case,
230 * when all the values specified are 'inherit'), the nsStyleContext
231 * can use the same nsStyle* struct as its parent nsStyleContext.
232 *
233 * Since the data represented by an nsIStyleRule are immutable, the data
234 * represented by an nsRuleNode are also immutable.
235 */
237 enum nsFontSizeType {
238 eFontSize_HTML = 1,
239 eFontSize_CSS = 2
240 };
242 class nsRuleNode {
243 public:
244 enum RuleDetail {
245 eRuleNone, // No props have been specified at all.
246 eRulePartialReset, // At least one prop with a non-"inherit" value
247 // has been specified. No props have been
248 // specified with an "inherit" value. At least
249 // one prop remains unspecified.
250 eRulePartialMixed, // At least one prop with a non-"inherit" value
251 // has been specified. Some props may also have
252 // been specified with an "inherit" value. At
253 // least one prop remains unspecified.
254 eRulePartialInherited, // Only props with "inherit" values have
255 // have been specified. At least one prop
256 // remains unspecified.
257 eRuleFullReset, // All props have been specified. None has an
258 // "inherit" value.
259 eRuleFullMixed, // All props have been specified. At least one has
260 // a non-"inherit" value.
261 eRuleFullInherited // All props have been specified with "inherit"
262 // values.
263 };
265 private:
266 nsPresContext* const mPresContext; // Our pres context.
268 nsRuleNode* const mParent; // A pointer to the parent node in the tree.
269 // This enables us to walk backwards from the
270 // most specific rule matched to the least
271 // specific rule (which is the optimal order to
272 // use for lookups of style properties.
273 nsIStyleRule* const mRule; // [STRONG] A pointer to our specific rule.
275 nsRuleNode* mNextSibling; // This value should be used only by the
276 // parent, since the parent may store
277 // children in a hash, which means this
278 // pointer is not meaningful. Order of
279 // siblings is also not meaningful.
281 struct Key {
282 nsIStyleRule* mRule;
283 uint8_t mLevel;
284 bool mIsImportantRule;
286 Key(nsIStyleRule* aRule, uint8_t aLevel, bool aIsImportantRule)
287 : mRule(aRule), mLevel(aLevel), mIsImportantRule(aIsImportantRule)
288 {}
290 bool operator==(const Key& aOther) const
291 {
292 return mRule == aOther.mRule &&
293 mLevel == aOther.mLevel &&
294 mIsImportantRule == aOther.mIsImportantRule;
295 }
297 bool operator!=(const Key& aOther) const
298 {
299 return !(*this == aOther);
300 }
301 };
303 static PLDHashNumber
304 ChildrenHashHashKey(PLDHashTable *aTable, const void *aKey);
306 static bool
307 ChildrenHashMatchEntry(PLDHashTable *aTable,
308 const PLDHashEntryHdr *aHdr,
309 const void *aKey);
311 static const PLDHashTableOps ChildrenHashOps;
313 static PLDHashOperator
314 EnqueueRuleNodeChildren(PLDHashTable *table, PLDHashEntryHdr *hdr,
315 uint32_t number, void *arg);
317 Key GetKey() const {
318 return Key(mRule, GetLevel(), IsImportantRule());
319 }
321 // The children of this node are stored in either a hashtable or list
322 // that maps from rules to our nsRuleNode children. When matching
323 // rules, we use this mapping to transition from node to node
324 // (constructing new nodes as needed to flesh out the tree).
326 union {
327 void* asVoid;
328 nsRuleNode* asList;
329 PLDHashTable* asHash;
330 } mChildren; // Accessed only through the methods below.
332 enum {
333 kTypeMask = 0x1,
334 kListType = 0x0,
335 kHashType = 0x1
336 };
337 enum {
338 // Maximum to have in a list before converting to a hashtable.
339 // XXX Need to optimize this.
340 kMaxChildrenInList = 32
341 };
343 bool HaveChildren() const {
344 return mChildren.asVoid != nullptr;
345 }
346 bool ChildrenAreHashed() {
347 return (intptr_t(mChildren.asVoid) & kTypeMask) == kHashType;
348 }
349 nsRuleNode* ChildrenList() {
350 return mChildren.asList;
351 }
352 nsRuleNode** ChildrenListPtr() {
353 return &mChildren.asList;
354 }
355 PLDHashTable* ChildrenHash() {
356 return (PLDHashTable*) (intptr_t(mChildren.asHash) & ~intptr_t(kTypeMask));
357 }
358 void SetChildrenList(nsRuleNode *aList) {
359 NS_ASSERTION(!(intptr_t(aList) & kTypeMask),
360 "pointer not 2-byte aligned");
361 mChildren.asList = aList;
362 }
363 void SetChildrenHash(PLDHashTable *aHashtable) {
364 NS_ASSERTION(!(intptr_t(aHashtable) & kTypeMask),
365 "pointer not 2-byte aligned");
366 mChildren.asHash = (PLDHashTable*)(intptr_t(aHashtable) | kHashType);
367 }
368 void ConvertChildrenToHash();
370 nsCachedStyleData mStyleData; // Any data we cached on the rule node.
372 uint32_t mDependentBits; // Used to cache the fact that we can look up
373 // cached data under a parent rule.
375 uint32_t mNoneBits; // Used to cache the fact that the branch to this
376 // node specifies no non-inherited data for a
377 // given struct type. (This usually implies that
378 // the entire branch specifies no non-inherited
379 // data, although not necessarily, if a
380 // non-inherited value is overridden by an
381 // explicit 'inherit' value.) For example, if an
382 // entire rule branch specifies no color
383 // information, then a bit will be set along every
384 // rule node on that branch, so that you can break
385 // out of the rule tree early and just inherit
386 // from the parent style context. The presence of
387 // this bit means we should just get inherited
388 // data from the parent style context, and it is
389 // never used for reset structs since their
390 // Compute*Data functions don't initialize from
391 // inherited data.
393 // Reference count. This just counts the style contexts that reference this
394 // rulenode. And children the rulenode has had. When this goes to 0 or
395 // stops being 0, we notify the style set.
396 // Note, in particular, that when a child is removed mRefCnt is NOT
397 // decremented. This is on purpose; the notifications to the style set are
398 // only used to determine when it's worth running GC on the ruletree, and
399 // this setup makes it so we only count unused ruletree leaves for purposes
400 // of deciding when to GC. We could more accurately count unused rulenodes
401 // by releasing/addrefing our parent when our refcount transitions to or from
402 // 0, but it doesn't seem worth it to do that.
403 uint32_t mRefCnt;
405 public:
406 // Overloaded new operator. Initializes the memory to 0 and relies on an arena
407 // (which comes from the presShell) to perform the allocation.
408 void* operator new(size_t sz, nsPresContext* aContext) CPP_THROW_NEW;
409 void Destroy() { DestroyInternal(nullptr); }
411 // Implemented in nsStyleSet.h, since it needs to know about nsStyleSet.
412 inline void AddRef();
414 // Implemented in nsStyleSet.h, since it needs to know about nsStyleSet.
415 inline void Release();
417 protected:
418 void DestroyInternal(nsRuleNode ***aDestroyQueueTail);
419 void PropagateDependentBit(nsStyleStructID aSID, nsRuleNode* aHighestNode,
420 void* aStruct);
421 void PropagateNoneBit(uint32_t aBit, nsRuleNode* aHighestNode);
423 const void* SetDefaultOnRoot(const nsStyleStructID aSID,
424 nsStyleContext* aContext);
426 /**
427 * Resolves any property values in aRuleData for a given style struct that
428 * have eCSSUnit_TokenStream values, by resolving them against the computed
429 * variable values on the style context and re-parsing the property.
430 *
431 * @return Whether any properties with eCSSUnit_TokenStream values were
432 * encountered.
433 */
434 static bool ResolveVariableReferences(const nsStyleStructID aSID,
435 nsRuleData* aRuleData,
436 nsStyleContext* aContext);
438 const void*
439 WalkRuleTree(const nsStyleStructID aSID, nsStyleContext* aContext);
441 const void*
442 ComputeDisplayData(void* aStartStruct,
443 const nsRuleData* aRuleData,
444 nsStyleContext* aContext, nsRuleNode* aHighestNode,
445 RuleDetail aRuleDetail,
446 const bool aCanStoreInRuleTree);
448 const void*
449 ComputeVisibilityData(void* aStartStruct,
450 const nsRuleData* aRuleData,
451 nsStyleContext* aContext, nsRuleNode* aHighestNode,
452 RuleDetail aRuleDetail,
453 const bool aCanStoreInRuleTree);
455 const void*
456 ComputeFontData(void* aStartStruct,
457 const nsRuleData* aRuleData,
458 nsStyleContext* aContext, nsRuleNode* aHighestNode,
459 RuleDetail aRuleDetail,
460 const bool aCanStoreInRuleTree);
462 const void*
463 ComputeColorData(void* aStartStruct,
464 const nsRuleData* aRuleData,
465 nsStyleContext* aContext, nsRuleNode* aHighestNode,
466 RuleDetail aRuleDetail,
467 const bool aCanStoreInRuleTree);
469 const void*
470 ComputeBackgroundData(void* aStartStruct,
471 const nsRuleData* aRuleData,
472 nsStyleContext* aContext, nsRuleNode* aHighestNode,
473 RuleDetail aRuleDetail,
474 const bool aCanStoreInRuleTree);
476 const void*
477 ComputeMarginData(void* aStartStruct,
478 const nsRuleData* aRuleData,
479 nsStyleContext* aContext, nsRuleNode* aHighestNode,
480 RuleDetail aRuleDetail,
481 const bool aCanStoreInRuleTree);
483 const void*
484 ComputeBorderData(void* aStartStruct,
485 const nsRuleData* aRuleData,
486 nsStyleContext* aContext, nsRuleNode* aHighestNode,
487 RuleDetail aRuleDetail,
488 const bool aCanStoreInRuleTree);
490 const void*
491 ComputePaddingData(void* aStartStruct,
492 const nsRuleData* aRuleData,
493 nsStyleContext* aContext, nsRuleNode* aHighestNode,
494 RuleDetail aRuleDetail,
495 const bool aCanStoreInRuleTree);
497 const void*
498 ComputeOutlineData(void* aStartStruct,
499 const nsRuleData* aRuleData,
500 nsStyleContext* aContext, nsRuleNode* aHighestNode,
501 RuleDetail aRuleDetail,
502 const bool aCanStoreInRuleTree);
504 const void*
505 ComputeListData(void* aStartStruct,
506 const nsRuleData* aRuleData,
507 nsStyleContext* aContext, nsRuleNode* aHighestNode,
508 RuleDetail aRuleDetail,
509 const bool aCanStoreInRuleTree);
511 const void*
512 ComputePositionData(void* aStartStruct,
513 const nsRuleData* aRuleData,
514 nsStyleContext* aContext, nsRuleNode* aHighestNode,
515 RuleDetail aRuleDetail,
516 const bool aCanStoreInRuleTree);
518 const void*
519 ComputeTableData(void* aStartStruct,
520 const nsRuleData* aRuleData,
521 nsStyleContext* aContext, nsRuleNode* aHighestNode,
522 RuleDetail aRuleDetail,
523 const bool aCanStoreInRuleTree);
525 const void*
526 ComputeTableBorderData(void* aStartStruct,
527 const nsRuleData* aRuleData,
528 nsStyleContext* aContext, nsRuleNode* aHighestNode,
529 RuleDetail aRuleDetail,
530 const bool aCanStoreInRuleTree);
532 const void*
533 ComputeContentData(void* aStartStruct,
534 const nsRuleData* aRuleData,
535 nsStyleContext* aContext, nsRuleNode* aHighestNode,
536 RuleDetail aRuleDetail,
537 const bool aCanStoreInRuleTree);
539 const void*
540 ComputeQuotesData(void* aStartStruct,
541 const nsRuleData* aRuleData,
542 nsStyleContext* aContext, nsRuleNode* aHighestNode,
543 RuleDetail aRuleDetail,
544 const bool aCanStoreInRuleTree);
546 const void*
547 ComputeTextData(void* aStartStruct,
548 const nsRuleData* aRuleData,
549 nsStyleContext* aContext, nsRuleNode* aHighestNode,
550 RuleDetail aRuleDetail,
551 const bool aCanStoreInRuleTree);
553 const void*
554 ComputeTextResetData(void* aStartStruct,
555 const nsRuleData* aRuleData,
556 nsStyleContext* aContext, nsRuleNode* aHighestNode,
557 RuleDetail aRuleDetail,
558 const bool aCanStoreInRuleTree);
560 const void*
561 ComputeUserInterfaceData(void* aStartStruct,
562 const nsRuleData* aRuleData,
563 nsStyleContext* aContext,
564 nsRuleNode* aHighestNode,
565 RuleDetail aRuleDetail,
566 const bool aCanStoreInRuleTree);
568 const void*
569 ComputeUIResetData(void* aStartStruct,
570 const nsRuleData* aRuleData,
571 nsStyleContext* aContext, nsRuleNode* aHighestNode,
572 RuleDetail aRuleDetail,
573 const bool aCanStoreInRuleTree);
575 const void*
576 ComputeXULData(void* aStartStruct,
577 const nsRuleData* aRuleData,
578 nsStyleContext* aContext, nsRuleNode* aHighestNode,
579 RuleDetail aRuleDetail,
580 const bool aCanStoreInRuleTree);
582 const void*
583 ComputeColumnData(void* aStartStruct,
584 const nsRuleData* aRuleData,
585 nsStyleContext* aContext, nsRuleNode* aHighestNode,
586 RuleDetail aRuleDetail,
587 const bool aCanStoreInRuleTree);
589 const void*
590 ComputeSVGData(void* aStartStruct,
591 const nsRuleData* aRuleData,
592 nsStyleContext* aContext, nsRuleNode* aHighestNode,
593 RuleDetail aRuleDetail,
594 const bool aCanStoreInRuleTree);
596 const void*
597 ComputeSVGResetData(void* aStartStruct,
598 const nsRuleData* aRuleData,
599 nsStyleContext* aContext, nsRuleNode* aHighestNode,
600 RuleDetail aRuleDetail,
601 const bool aCanStoreInRuleTree);
603 const void*
604 ComputeVariablesData(void* aStartStruct,
605 const nsRuleData* aRuleData,
606 nsStyleContext* aContext, nsRuleNode* aHighestNode,
607 RuleDetail aRuleDetail,
608 const bool aCanStoreInRuleTree);
610 // helpers for |ComputeFontData| that need access to |mNoneBits|:
611 static void SetFontSize(nsPresContext* aPresContext,
612 const nsRuleData* aRuleData,
613 const nsStyleFont* aFont,
614 const nsStyleFont* aParentFont,
615 nscoord* aSize,
616 const nsFont& aSystemFont,
617 nscoord aParentSize,
618 nscoord aScriptLevelAdjustedParentSize,
619 bool aUsedStartStruct,
620 bool aAtRoot,
621 bool& aCanStoreInRuleTree);
623 static void SetFont(nsPresContext* aPresContext,
624 nsStyleContext* aContext,
625 uint8_t aGenericFontID,
626 const nsRuleData* aRuleData,
627 const nsStyleFont* aParentFont,
628 nsStyleFont* aFont,
629 bool aStartStruct,
630 bool& aCanStoreInRuleTree);
632 static void SetGenericFont(nsPresContext* aPresContext,
633 nsStyleContext* aContext,
634 uint8_t aGenericFontID,
635 nsStyleFont* aFont);
637 void AdjustLogicalBoxProp(nsStyleContext* aContext,
638 const nsCSSValue& aLTRSource,
639 const nsCSSValue& aRTLSource,
640 const nsCSSValue& aLTRLogicalValue,
641 const nsCSSValue& aRTLLogicalValue,
642 mozilla::css::Side aSide,
643 nsCSSRect& aValueRect,
644 bool& aCanStoreInRuleTree);
646 inline RuleDetail CheckSpecifiedProperties(const nsStyleStructID aSID,
647 const nsRuleData* aRuleData);
649 already_AddRefed<nsCSSShadowArray>
650 GetShadowData(const nsCSSValueList* aList,
651 nsStyleContext* aContext,
652 bool aIsBoxShadow,
653 bool& aCanStoreInRuleTree);
654 bool SetStyleFilterToCSSValue(nsStyleFilter* aStyleFilter,
655 const nsCSSValue& aValue,
656 nsStyleContext* aStyleContext,
657 nsPresContext* aPresContext,
658 bool& aCanStoreInRuleTree);
660 private:
661 nsRuleNode(nsPresContext* aPresContext, nsRuleNode* aParent,
662 nsIStyleRule* aRule, uint8_t aLevel, bool aIsImportant);
663 ~nsRuleNode();
665 public:
666 static nsRuleNode* CreateRootNode(nsPresContext* aPresContext);
668 static void EnsureBlockDisplay(uint8_t& display,
669 bool aConvertListItem = false);
671 // Transition never returns null; on out of memory it'll just return |this|.
672 nsRuleNode* Transition(nsIStyleRule* aRule, uint8_t aLevel,
673 bool aIsImportantRule);
674 nsRuleNode* GetParent() const { return mParent; }
675 bool IsRoot() const { return mParent == nullptr; }
677 // These uint8_ts are really nsStyleSet::sheetType values.
678 uint8_t GetLevel() const {
679 NS_ASSERTION(!IsRoot(), "can't call on root");
680 return (mDependentBits & NS_RULE_NODE_LEVEL_MASK) >>
681 NS_RULE_NODE_LEVEL_SHIFT;
682 }
683 bool IsImportantRule() const {
684 NS_ASSERTION(!IsRoot(), "can't call on root");
685 return (mDependentBits & NS_RULE_NODE_IS_IMPORTANT) != 0;
686 }
688 /**
689 * Has this rule node at some time in its lifetime been the mRuleNode
690 * of some style context (as opposed to only being the ancestor of
691 * some style context's mRuleNode)?
692 */
693 void SetUsedDirectly();
694 bool IsUsedDirectly() const {
695 return (mDependentBits & NS_RULE_NODE_USED_DIRECTLY) != 0;
696 }
698 // NOTE: Does not |AddRef|. Null only for the root.
699 nsIStyleRule* GetRule() const { return mRule; }
700 // NOTE: Does not |AddRef|. Never null.
701 nsPresContext* PresContext() const { return mPresContext; }
703 const void* GetStyleData(nsStyleStructID aSID,
704 nsStyleContext* aContext,
705 bool aComputeData);
707 #define STYLE_STRUCT(name_, checkdata_cb_) \
708 const nsStyle##name_* GetStyle##name_(nsStyleContext* aContext, \
709 bool aComputeData);
710 #include "nsStyleStructList.h"
711 #undef STYLE_STRUCT
713 /*
714 * Garbage collection. Mark walks up the tree, marking any unmarked
715 * ancestors until it reaches a marked one. Sweep recursively sweeps
716 * the children, destroys any that are unmarked, and clears marks,
717 * returning true if the node on which it was called was destroyed.
718 */
719 void Mark();
720 bool Sweep();
722 static bool
723 HasAuthorSpecifiedRules(nsStyleContext* aStyleContext,
724 uint32_t ruleTypeMask,
725 bool aAuthorColorsAllowed);
727 // Expose this so media queries can use it
728 static nscoord CalcLengthWithInitialFont(nsPresContext* aPresContext,
729 const nsCSSValue& aValue);
730 // Expose this so nsTransformFunctions can use it.
731 static nscoord CalcLength(const nsCSSValue& aValue,
732 nsStyleContext* aStyleContext,
733 nsPresContext* aPresContext,
734 bool& aCanStoreInRuleTree);
736 struct ComputedCalc {
737 nscoord mLength;
738 float mPercent;
740 ComputedCalc(nscoord aLength, float aPercent)
741 : mLength(aLength), mPercent(aPercent) {}
742 };
743 static ComputedCalc
744 SpecifiedCalcToComputedCalc(const nsCSSValue& aValue,
745 nsStyleContext* aStyleContext,
746 nsPresContext* aPresContext,
747 bool& aCanStoreInRuleTree);
749 // Compute the value of an nsStyleCoord that IsCalcUnit().
750 // (Values that don't require aPercentageBasis should be handled
751 // inside nsRuleNode rather than through this API.)
752 static nscoord ComputeComputedCalc(const nsStyleCoord& aCoord,
753 nscoord aPercentageBasis);
755 // Compute the value of an nsStyleCoord that is either a coord, a
756 // percent, or a calc expression.
757 static nscoord ComputeCoordPercentCalc(const nsStyleCoord& aCoord,
758 nscoord aPercentageBasis);
760 // Return whether the rule tree for which this node is the root has
761 // cached data such that we need to do dynamic change handling for
762 // changes that change the results of media queries or require
763 // rebuilding all style data.
764 bool TreeHasCachedData() const {
765 NS_ASSERTION(IsRoot(), "should only be called on root of rule tree");
766 return HaveChildren() || mStyleData.mInheritedData || mStyleData.mResetData;
767 }
769 bool NodeHasCachedData(const nsStyleStructID aSID) {
770 return !!mStyleData.GetStyleData(aSID);
771 }
773 static void ComputeFontFeatures(const nsCSSValuePairList *aFeaturesList,
774 nsTArray<gfxFontFeature>& aFeatureSettings);
776 static nscoord CalcFontPointSize(int32_t aHTMLSize, int32_t aBasePointSize,
777 nsPresContext* aPresContext,
778 nsFontSizeType aFontSizeType = eFontSize_HTML);
780 static nscoord FindNextSmallerFontSize(nscoord aFontSize, int32_t aBasePointSize,
781 nsPresContext* aPresContext,
782 nsFontSizeType aFontSizeType = eFontSize_HTML);
784 static nscoord FindNextLargerFontSize(nscoord aFontSize, int32_t aBasePointSize,
785 nsPresContext* aPresContext,
786 nsFontSizeType aFontSizeType = eFontSize_HTML);
788 /**
789 * @param aValue The color value, returned from nsCSSParser::ParseColorString
790 * @param aPresContext Presentation context whose preferences are used
791 * for certain enumerated colors
792 * @param aStyleContext Style context whose color is used for 'currentColor'
793 *
794 * @note aPresContext and aStyleContext may be null, but in that case, fully
795 * opaque black will be returned for the values that rely on these
796 * objects to compute the color. (For example, -moz-hyperlinktext.)
797 *
798 * @return false if we fail to extract a color; this will not happen if both
799 * aPresContext and aStyleContext are non-null
800 */
801 static bool ComputeColor(const nsCSSValue& aValue,
802 nsPresContext* aPresContext,
803 nsStyleContext* aStyleContext,
804 nscolor& aResult);
805 };
807 #endif