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      1 // Copyright 2012 the V8 project authors. All rights reserved.
      2 // Redistribution and use in source and binary forms, with or without
      3 // modification, are permitted provided that the following conditions are
      4 // met:
      5 //
      6 //     * Redistributions of source code must retain the above copyright
      7 //       notice, this list of conditions and the following disclaimer.
      8 //     * Redistributions in binary form must reproduce the above
      9 //       copyright notice, this list of conditions and the following
     10 //       disclaimer in the documentation and/or other materials provided
     11 //       with the distribution.
     12 //     * Neither the name of Google Inc. nor the names of its
     13 //       contributors may be used to endorse or promote products derived
     14 //       from this software without specific prior written permission.
     15 //
     16 // THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
     17 // "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
     18 // LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
     19 // A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
     20 // OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
     21 // SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
     22 // LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
     23 // DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
     24 // THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
     25 // (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
     26 // OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
     27 
     28 #ifndef V8_OBJECTS_VISITING_H_
     29 #define V8_OBJECTS_VISITING_H_
     30 
     31 #include "allocation.h"
     32 
     33 // This file provides base classes and auxiliary methods for defining
     34 // static object visitors used during GC.
     35 // Visiting HeapObject body with a normal ObjectVisitor requires performing
     36 // two switches on object's instance type to determine object size and layout
     37 // and one or more virtual method calls on visitor itself.
     38 // Static visitor is different: it provides a dispatch table which contains
     39 // pointers to specialized visit functions. Each map has the visitor_id
     40 // field which contains an index of specialized visitor to use.
     41 
     42 namespace v8 {
     43 namespace internal {
     44 
     45 
     46 // Base class for all static visitors.
     47 class StaticVisitorBase : public AllStatic {
     48  public:
     49 #define VISITOR_ID_LIST(V)    \
     50   V(SeqOneByteString)           \
     51   V(SeqTwoByteString)         \
     52   V(ShortcutCandidate)        \
     53   V(ByteArray)                \
     54   V(FreeSpace)                \
     55   V(FixedArray)               \
     56   V(FixedDoubleArray)         \
     57   V(NativeContext)            \
     58   V(AllocationSite)           \
     59   V(DataObject2)              \
     60   V(DataObject3)              \
     61   V(DataObject4)              \
     62   V(DataObject5)              \
     63   V(DataObject6)              \
     64   V(DataObject7)              \
     65   V(DataObject8)              \
     66   V(DataObject9)              \
     67   V(DataObjectGeneric)        \
     68   V(JSObject2)                \
     69   V(JSObject3)                \
     70   V(JSObject4)                \
     71   V(JSObject5)                \
     72   V(JSObject6)                \
     73   V(JSObject7)                \
     74   V(JSObject8)                \
     75   V(JSObject9)                \
     76   V(JSObjectGeneric)          \
     77   V(Struct2)                  \
     78   V(Struct3)                  \
     79   V(Struct4)                  \
     80   V(Struct5)                  \
     81   V(Struct6)                  \
     82   V(Struct7)                  \
     83   V(Struct8)                  \
     84   V(Struct9)                  \
     85   V(StructGeneric)            \
     86   V(ConsString)               \
     87   V(SlicedString)             \
     88   V(Symbol)                   \
     89   V(Oddball)                  \
     90   V(Code)                     \
     91   V(Map)                      \
     92   V(Cell)                     \
     93   V(PropertyCell)             \
     94   V(SharedFunctionInfo)       \
     95   V(JSFunction)               \
     96   V(JSWeakMap)                \
     97   V(JSWeakSet)                \
     98   V(JSArrayBuffer)            \
     99   V(JSTypedArray)             \
    100   V(JSDataView)               \
    101   V(JSRegExp)
    102 
    103   // For data objects, JS objects and structs along with generic visitor which
    104   // can visit object of any size we provide visitors specialized by
    105   // object size in words.
    106   // Ids of specialized visitors are declared in a linear order (without
    107   // holes) starting from the id of visitor specialized for 2 words objects
    108   // (base visitor id) and ending with the id of generic visitor.
    109   // Method GetVisitorIdForSize depends on this ordering to calculate visitor
    110   // id of specialized visitor from given instance size, base visitor id and
    111   // generic visitor's id.
    112   enum VisitorId {
    113 #define VISITOR_ID_ENUM_DECL(id)  kVisit##id,
    114     VISITOR_ID_LIST(VISITOR_ID_ENUM_DECL)
    115 #undef VISITOR_ID_ENUM_DECL
    116     kVisitorIdCount,
    117     kVisitDataObject = kVisitDataObject2,
    118     kVisitJSObject = kVisitJSObject2,
    119     kVisitStruct = kVisitStruct2,
    120     kMinObjectSizeInWords = 2
    121   };
    122 
    123   // Visitor ID should fit in one byte.
    124   STATIC_ASSERT(kVisitorIdCount <= 256);
    125 
    126   // Determine which specialized visitor should be used for given instance type
    127   // and instance type.
    128   static VisitorId GetVisitorId(int instance_type, int instance_size);
    129 
    130   static VisitorId GetVisitorId(Map* map) {
    131     return GetVisitorId(map->instance_type(), map->instance_size());
    132   }
    133 
    134   // For visitors that allow specialization by size calculate VisitorId based
    135   // on size, base visitor id and generic visitor id.
    136   static VisitorId GetVisitorIdForSize(VisitorId base,
    137                                        VisitorId generic,
    138                                        int object_size) {
    139     ASSERT((base == kVisitDataObject) ||
    140            (base == kVisitStruct) ||
    141            (base == kVisitJSObject));
    142     ASSERT(IsAligned(object_size, kPointerSize));
    143     ASSERT(kMinObjectSizeInWords * kPointerSize <= object_size);
    144     ASSERT(object_size <= Page::kMaxNonCodeHeapObjectSize);
    145 
    146     const VisitorId specialization = static_cast<VisitorId>(
    147         base + (object_size >> kPointerSizeLog2) - kMinObjectSizeInWords);
    148 
    149     return Min(specialization, generic);
    150   }
    151 };
    152 
    153 
    154 template<typename Callback>
    155 class VisitorDispatchTable {
    156  public:
    157   void CopyFrom(VisitorDispatchTable* other) {
    158     // We are not using memcpy to guarantee that during update
    159     // every element of callbacks_ array will remain correct
    160     // pointer (memcpy might be implemented as a byte copying loop).
    161     for (int i = 0; i < StaticVisitorBase::kVisitorIdCount; i++) {
    162       NoBarrier_Store(&callbacks_[i], other->callbacks_[i]);
    163     }
    164   }
    165 
    166   inline Callback GetVisitorById(StaticVisitorBase::VisitorId id) {
    167     return reinterpret_cast<Callback>(callbacks_[id]);
    168   }
    169 
    170   inline Callback GetVisitor(Map* map) {
    171     return reinterpret_cast<Callback>(callbacks_[map->visitor_id()]);
    172   }
    173 
    174   void Register(StaticVisitorBase::VisitorId id, Callback callback) {
    175     ASSERT(id < StaticVisitorBase::kVisitorIdCount);  // id is unsigned.
    176     callbacks_[id] = reinterpret_cast<AtomicWord>(callback);
    177   }
    178 
    179   template<typename Visitor,
    180            StaticVisitorBase::VisitorId base,
    181            StaticVisitorBase::VisitorId generic,
    182            int object_size_in_words>
    183   void RegisterSpecialization() {
    184     static const int size = object_size_in_words * kPointerSize;
    185     Register(StaticVisitorBase::GetVisitorIdForSize(base, generic, size),
    186              &Visitor::template VisitSpecialized<size>);
    187   }
    188 
    189 
    190   template<typename Visitor,
    191            StaticVisitorBase::VisitorId base,
    192            StaticVisitorBase::VisitorId generic>
    193   void RegisterSpecializations() {
    194     STATIC_ASSERT(
    195         (generic - base + StaticVisitorBase::kMinObjectSizeInWords) == 10);
    196     RegisterSpecialization<Visitor, base, generic, 2>();
    197     RegisterSpecialization<Visitor, base, generic, 3>();
    198     RegisterSpecialization<Visitor, base, generic, 4>();
    199     RegisterSpecialization<Visitor, base, generic, 5>();
    200     RegisterSpecialization<Visitor, base, generic, 6>();
    201     RegisterSpecialization<Visitor, base, generic, 7>();
    202     RegisterSpecialization<Visitor, base, generic, 8>();
    203     RegisterSpecialization<Visitor, base, generic, 9>();
    204     Register(generic, &Visitor::Visit);
    205   }
    206 
    207  private:
    208   AtomicWord callbacks_[StaticVisitorBase::kVisitorIdCount];
    209 };
    210 
    211 
    212 template<typename StaticVisitor>
    213 class BodyVisitorBase : public AllStatic {
    214  public:
    215   INLINE(static void IteratePointers(Heap* heap,
    216                                      HeapObject* object,
    217                                      int start_offset,
    218                                      int end_offset)) {
    219     Object** start_slot = reinterpret_cast<Object**>(object->address() +
    220                                                      start_offset);
    221     Object** end_slot = reinterpret_cast<Object**>(object->address() +
    222                                                    end_offset);
    223     StaticVisitor::VisitPointers(heap, start_slot, end_slot);
    224   }
    225 };
    226 
    227 
    228 template<typename StaticVisitor, typename BodyDescriptor, typename ReturnType>
    229 class FlexibleBodyVisitor : public BodyVisitorBase<StaticVisitor> {
    230  public:
    231   INLINE(static ReturnType Visit(Map* map, HeapObject* object)) {
    232     int object_size = BodyDescriptor::SizeOf(map, object);
    233     BodyVisitorBase<StaticVisitor>::IteratePointers(
    234         map->GetHeap(),
    235         object,
    236         BodyDescriptor::kStartOffset,
    237         object_size);
    238     return static_cast<ReturnType>(object_size);
    239   }
    240 
    241   template<int object_size>
    242   static inline ReturnType VisitSpecialized(Map* map, HeapObject* object) {
    243     ASSERT(BodyDescriptor::SizeOf(map, object) == object_size);
    244     BodyVisitorBase<StaticVisitor>::IteratePointers(
    245         map->GetHeap(),
    246         object,
    247         BodyDescriptor::kStartOffset,
    248         object_size);
    249     return static_cast<ReturnType>(object_size);
    250   }
    251 };
    252 
    253 
    254 template<typename StaticVisitor, typename BodyDescriptor, typename ReturnType>
    255 class FixedBodyVisitor : public BodyVisitorBase<StaticVisitor> {
    256  public:
    257   INLINE(static ReturnType Visit(Map* map, HeapObject* object)) {
    258     BodyVisitorBase<StaticVisitor>::IteratePointers(
    259         map->GetHeap(),
    260         object,
    261         BodyDescriptor::kStartOffset,
    262         BodyDescriptor::kEndOffset);
    263     return static_cast<ReturnType>(BodyDescriptor::kSize);
    264   }
    265 };
    266 
    267 
    268 // Base class for visitors used for a linear new space iteration.
    269 // IterateBody returns size of visited object.
    270 // Certain types of objects (i.e. Code objects) are not handled
    271 // by dispatch table of this visitor because they cannot appear
    272 // in the new space.
    273 //
    274 // This class is intended to be used in the following way:
    275 //
    276 //   class SomeVisitor : public StaticNewSpaceVisitor<SomeVisitor> {
    277 //     ...
    278 //   }
    279 //
    280 // This is an example of Curiously recurring template pattern
    281 // (see http://en.wikipedia.org/wiki/Curiously_recurring_template_pattern).
    282 // We use CRTP to guarantee aggressive compile time optimizations (i.e.
    283 // inlining and specialization of StaticVisitor::VisitPointers methods).
    284 template<typename StaticVisitor>
    285 class StaticNewSpaceVisitor : public StaticVisitorBase {
    286  public:
    287   static void Initialize();
    288 
    289   INLINE(static int IterateBody(Map* map, HeapObject* obj)) {
    290     return table_.GetVisitor(map)(map, obj);
    291   }
    292 
    293   INLINE(static void VisitPointers(Heap* heap, Object** start, Object** end)) {
    294     for (Object** p = start; p < end; p++) StaticVisitor::VisitPointer(heap, p);
    295   }
    296 
    297  private:
    298   INLINE(static int VisitJSFunction(Map* map, HeapObject* object)) {
    299     Heap* heap = map->GetHeap();
    300     VisitPointers(heap,
    301                   HeapObject::RawField(object, JSFunction::kPropertiesOffset),
    302                   HeapObject::RawField(object, JSFunction::kCodeEntryOffset));
    303 
    304     // Don't visit code entry. We are using this visitor only during scavenges.
    305 
    306     VisitPointers(
    307         heap,
    308         HeapObject::RawField(object,
    309                              JSFunction::kCodeEntryOffset + kPointerSize),
    310         HeapObject::RawField(object,
    311                              JSFunction::kNonWeakFieldsEndOffset));
    312     return JSFunction::kSize;
    313   }
    314 
    315   INLINE(static int VisitByteArray(Map* map, HeapObject* object)) {
    316     return reinterpret_cast<ByteArray*>(object)->ByteArraySize();
    317   }
    318 
    319   INLINE(static int VisitFixedDoubleArray(Map* map, HeapObject* object)) {
    320     int length = reinterpret_cast<FixedDoubleArray*>(object)->length();
    321     return FixedDoubleArray::SizeFor(length);
    322   }
    323 
    324   INLINE(static int VisitJSObject(Map* map, HeapObject* object)) {
    325     return JSObjectVisitor::Visit(map, object);
    326   }
    327 
    328   INLINE(static int VisitSeqOneByteString(Map* map, HeapObject* object)) {
    329     return SeqOneByteString::cast(object)->
    330         SeqOneByteStringSize(map->instance_type());
    331   }
    332 
    333   INLINE(static int VisitSeqTwoByteString(Map* map, HeapObject* object)) {
    334     return SeqTwoByteString::cast(object)->
    335         SeqTwoByteStringSize(map->instance_type());
    336   }
    337 
    338   INLINE(static int VisitFreeSpace(Map* map, HeapObject* object)) {
    339     return FreeSpace::cast(object)->Size();
    340   }
    341 
    342   INLINE(static int VisitJSArrayBuffer(Map* map, HeapObject* object));
    343   INLINE(static int VisitJSTypedArray(Map* map, HeapObject* object));
    344   INLINE(static int VisitJSDataView(Map* map, HeapObject* object));
    345 
    346   class DataObjectVisitor {
    347    public:
    348     template<int object_size>
    349     static inline int VisitSpecialized(Map* map, HeapObject* object) {
    350       return object_size;
    351     }
    352 
    353     INLINE(static int Visit(Map* map, HeapObject* object)) {
    354       return map->instance_size();
    355     }
    356   };
    357 
    358   typedef FlexibleBodyVisitor<StaticVisitor,
    359                               StructBodyDescriptor,
    360                               int> StructVisitor;
    361 
    362   typedef FlexibleBodyVisitor<StaticVisitor,
    363                               JSObject::BodyDescriptor,
    364                               int> JSObjectVisitor;
    365 
    366   typedef int (*Callback)(Map* map, HeapObject* object);
    367 
    368   static VisitorDispatchTable<Callback> table_;
    369 };
    370 
    371 
    372 template<typename StaticVisitor>
    373 VisitorDispatchTable<typename StaticNewSpaceVisitor<StaticVisitor>::Callback>
    374     StaticNewSpaceVisitor<StaticVisitor>::table_;
    375 
    376 
    377 // Base class for visitors used to transitively mark the entire heap.
    378 // IterateBody returns nothing.
    379 // Certain types of objects might not be handled by this base class and
    380 // no visitor function is registered by the generic initialization. A
    381 // specialized visitor function needs to be provided by the inheriting
    382 // class itself for those cases.
    383 //
    384 // This class is intended to be used in the following way:
    385 //
    386 //   class SomeVisitor : public StaticMarkingVisitor<SomeVisitor> {
    387 //     ...
    388 //   }
    389 //
    390 // This is an example of Curiously recurring template pattern.
    391 template<typename StaticVisitor>
    392 class StaticMarkingVisitor : public StaticVisitorBase {
    393  public:
    394   static void Initialize();
    395 
    396   INLINE(static void IterateBody(Map* map, HeapObject* obj)) {
    397     table_.GetVisitor(map)(map, obj);
    398   }
    399 
    400   INLINE(static void VisitPropertyCell(Map* map, HeapObject* object));
    401   INLINE(static void VisitCodeEntry(Heap* heap, Address entry_address));
    402   INLINE(static void VisitEmbeddedPointer(Heap* heap, RelocInfo* rinfo));
    403   INLINE(static void VisitCell(Heap* heap, RelocInfo* rinfo));
    404   INLINE(static void VisitDebugTarget(Heap* heap, RelocInfo* rinfo));
    405   INLINE(static void VisitCodeTarget(Heap* heap, RelocInfo* rinfo));
    406   INLINE(static void VisitCodeAgeSequence(Heap* heap, RelocInfo* rinfo));
    407   INLINE(static void VisitExternalReference(RelocInfo* rinfo)) { }
    408   INLINE(static void VisitRuntimeEntry(RelocInfo* rinfo)) { }
    409 
    410   // TODO(mstarzinger): This should be made protected once refactoring is done.
    411   // Mark non-optimize code for functions inlined into the given optimized
    412   // code. This will prevent it from being flushed.
    413   static void MarkInlinedFunctionsCode(Heap* heap, Code* code);
    414 
    415  protected:
    416   INLINE(static void VisitMap(Map* map, HeapObject* object));
    417   INLINE(static void VisitCode(Map* map, HeapObject* object));
    418   INLINE(static void VisitSharedFunctionInfo(Map* map, HeapObject* object));
    419   INLINE(static void VisitJSFunction(Map* map, HeapObject* object));
    420   INLINE(static void VisitJSRegExp(Map* map, HeapObject* object));
    421   INLINE(static void VisitJSArrayBuffer(Map* map, HeapObject* object));
    422   INLINE(static void VisitJSTypedArray(Map* map, HeapObject* object));
    423   INLINE(static void VisitJSDataView(Map* map, HeapObject* object));
    424   INLINE(static void VisitNativeContext(Map* map, HeapObject* object));
    425 
    426   // Mark pointers in a Map and its TransitionArray together, possibly
    427   // treating transitions or back pointers weak.
    428   static void MarkMapContents(Heap* heap, Map* map);
    429   static void MarkTransitionArray(Heap* heap, TransitionArray* transitions);
    430 
    431   // Code flushing support.
    432   INLINE(static bool IsFlushable(Heap* heap, JSFunction* function));
    433   INLINE(static bool IsFlushable(Heap* heap, SharedFunctionInfo* shared_info));
    434 
    435   // Helpers used by code flushing support that visit pointer fields and treat
    436   // references to code objects either strongly or weakly.
    437   static void VisitSharedFunctionInfoStrongCode(Heap* heap, HeapObject* object);
    438   static void VisitSharedFunctionInfoWeakCode(Heap* heap, HeapObject* object);
    439   static void VisitJSFunctionStrongCode(Heap* heap, HeapObject* object);
    440   static void VisitJSFunctionWeakCode(Heap* heap, HeapObject* object);
    441 
    442   class DataObjectVisitor {
    443    public:
    444     template<int size>
    445     static inline void VisitSpecialized(Map* map, HeapObject* object) {
    446     }
    447 
    448     INLINE(static void Visit(Map* map, HeapObject* object)) {
    449     }
    450   };
    451 
    452   typedef FlexibleBodyVisitor<StaticVisitor,
    453                               FixedArray::BodyDescriptor,
    454                               void> FixedArrayVisitor;
    455 
    456   typedef FlexibleBodyVisitor<StaticVisitor,
    457                               JSObject::BodyDescriptor,
    458                               void> JSObjectVisitor;
    459 
    460   typedef FlexibleBodyVisitor<StaticVisitor,
    461                               StructBodyDescriptor,
    462                               void> StructObjectVisitor;
    463 
    464   typedef void (*Callback)(Map* map, HeapObject* object);
    465 
    466   static VisitorDispatchTable<Callback> table_;
    467 };
    468 
    469 
    470 template<typename StaticVisitor>
    471 VisitorDispatchTable<typename StaticMarkingVisitor<StaticVisitor>::Callback>
    472     StaticMarkingVisitor<StaticVisitor>::table_;
    473 
    474 
    475 } }  // namespace v8::internal
    476 
    477 #endif  // V8_OBJECTS_VISITING_H_
    478