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      1 /*
      2  * Copyright (C) 2008 The Android Open Source Project
      3  *
      4  * Licensed under the Apache License, Version 2.0 (the "License");
      5  * you may not use this file except in compliance with the License.
      6  * You may obtain a copy of the License at
      7  *
      8  *      http://www.apache.org/licenses/LICENSE-2.0
      9  *
     10  * Unless required by applicable law or agreed to in writing, software
     11  * distributed under the License is distributed on an "AS IS" BASIS,
     12  * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
     13  * See the License for the specific language governing permissions and
     14  * limitations under the License.
     15  */
     16 
     17 #ifndef ART_RUNTIME_GC_ACCOUNTING_SPACE_BITMAP_H_
     18 #define ART_RUNTIME_GC_ACCOUNTING_SPACE_BITMAP_H_
     19 
     20 #include <limits.h>
     21 #include <stdint.h>
     22 #include <memory>
     23 #include <set>
     24 #include <vector>
     25 
     26 #include "base/mutex.h"
     27 #include "globals.h"
     28 #include "object_callbacks.h"
     29 
     30 namespace art {
     31 
     32 namespace mirror {
     33   class Class;
     34   class Object;
     35 }  // namespace mirror
     36 class MemMap;
     37 
     38 namespace gc {
     39 namespace accounting {
     40 
     41 template<size_t kAlignment>
     42 class SpaceBitmap {
     43  public:
     44   typedef void ScanCallback(mirror::Object* obj, void* finger, void* arg);
     45   typedef void SweepCallback(size_t ptr_count, mirror::Object** ptrs, void* arg);
     46 
     47   // Initialize a space bitmap so that it points to a bitmap large enough to cover a heap at
     48   // heap_begin of heap_capacity bytes, where objects are guaranteed to be kAlignment-aligned.
     49   static SpaceBitmap* Create(const std::string& name, uint8_t* heap_begin, size_t heap_capacity);
     50 
     51   // Initialize a space bitmap using the provided mem_map as the live bits. Takes ownership of the
     52   // mem map. The address range covered starts at heap_begin and is of size equal to heap_capacity.
     53   // Objects are kAlignement-aligned.
     54   static SpaceBitmap* CreateFromMemMap(const std::string& name, MemMap* mem_map,
     55                                        uint8_t* heap_begin, size_t heap_capacity);
     56 
     57   ~SpaceBitmap();
     58 
     59   // <offset> is the difference from .base to a pointer address.
     60   // <index> is the index of .bits that contains the bit representing
     61   //         <offset>.
     62   static constexpr size_t OffsetToIndex(size_t offset) {
     63     return offset / kAlignment / kBitsPerIntPtrT;
     64   }
     65 
     66   template<typename T>
     67   static constexpr T IndexToOffset(T index) {
     68     return static_cast<T>(index * kAlignment * kBitsPerIntPtrT);
     69   }
     70 
     71   ALWAYS_INLINE static constexpr uintptr_t OffsetBitIndex(uintptr_t offset) {
     72     return (offset / kAlignment) % kBitsPerIntPtrT;
     73   }
     74 
     75   // Bits are packed in the obvious way.
     76   static constexpr uintptr_t OffsetToMask(uintptr_t offset) {
     77     return static_cast<size_t>(1) << OffsetBitIndex(offset);
     78   }
     79 
     80   bool Set(const mirror::Object* obj) ALWAYS_INLINE {
     81     return Modify<true>(obj);
     82   }
     83 
     84   bool Clear(const mirror::Object* obj) ALWAYS_INLINE {
     85     return Modify<false>(obj);
     86   }
     87 
     88   // Returns true if the object was previously marked.
     89   bool AtomicTestAndSet(const mirror::Object* obj);
     90 
     91   // Fill the bitmap with zeroes.  Returns the bitmap's memory to the system as a side-effect.
     92   void Clear();
     93 
     94   // Clear a covered by the bitmap using madvise if possible.
     95   void ClearRange(const mirror::Object* begin, const mirror::Object* end);
     96 
     97   bool Test(const mirror::Object* obj) const;
     98 
     99   // Return true iff <obj> is within the range of pointers that this bitmap could potentially cover,
    100   // even if a bit has not been set for it.
    101   bool HasAddress(const void* obj) const {
    102     // If obj < heap_begin_ then offset underflows to some very large value past the end of the
    103     // bitmap.
    104     const uintptr_t offset = reinterpret_cast<uintptr_t>(obj) - heap_begin_;
    105     const size_t index = OffsetToIndex(offset);
    106     return index < bitmap_size_ / sizeof(intptr_t);
    107   }
    108 
    109   void VisitRange(uintptr_t base, uintptr_t max, ObjectCallback* callback, void* arg) const;
    110 
    111   class ClearVisitor {
    112    public:
    113     explicit ClearVisitor(SpaceBitmap* const bitmap)
    114         : bitmap_(bitmap) {
    115     }
    116 
    117     void operator()(mirror::Object* obj) const {
    118       bitmap_->Clear(obj);
    119     }
    120    private:
    121     SpaceBitmap* const bitmap_;
    122   };
    123 
    124   template <typename Visitor>
    125   void VisitRange(uintptr_t visit_begin, uintptr_t visit_end, const Visitor& visitor) const {
    126     for (; visit_begin < visit_end; visit_begin += kAlignment) {
    127       visitor(reinterpret_cast<mirror::Object*>(visit_begin));
    128     }
    129   }
    130 
    131   // Visit the live objects in the range [visit_begin, visit_end).
    132   // TODO: Use lock annotations when clang is fixed.
    133   // REQUIRES(Locks::heap_bitmap_lock_) REQUIRES_SHARED(Locks::mutator_lock_);
    134   template <typename Visitor>
    135   void VisitMarkedRange(uintptr_t visit_begin, uintptr_t visit_end, const Visitor& visitor) const
    136       NO_THREAD_SAFETY_ANALYSIS;
    137 
    138   // Visits set bits in address order.  The callback is not permitted to change the bitmap bits or
    139   // max during the traversal.
    140   void Walk(ObjectCallback* callback, void* arg)
    141       REQUIRES_SHARED(Locks::heap_bitmap_lock_);
    142 
    143   // Walk through the bitmaps in increasing address order, and find the object pointers that
    144   // correspond to garbage objects.  Call <callback> zero or more times with lists of these object
    145   // pointers. The callback is not permitted to increase the max of either bitmap.
    146   static void SweepWalk(const SpaceBitmap& live, const SpaceBitmap& mark, uintptr_t base,
    147                         uintptr_t max, SweepCallback* thunk, void* arg);
    148 
    149   void CopyFrom(SpaceBitmap* source_bitmap);
    150 
    151   // Starting address of our internal storage.
    152   Atomic<uintptr_t>* Begin() {
    153     return bitmap_begin_;
    154   }
    155 
    156   // Size of our internal storage
    157   size_t Size() const {
    158     return bitmap_size_;
    159   }
    160 
    161   // Size in bytes of the memory that the bitmaps spans.
    162   uint64_t HeapSize() const {
    163     return IndexToOffset<uint64_t>(Size() / sizeof(intptr_t));
    164   }
    165 
    166   void SetHeapSize(size_t bytes) {
    167     // TODO: Un-map the end of the mem map.
    168     bitmap_size_ = OffsetToIndex(bytes) * sizeof(intptr_t);
    169     CHECK_EQ(HeapSize(), bytes);
    170   }
    171 
    172   uintptr_t HeapBegin() const {
    173     return heap_begin_;
    174   }
    175 
    176   // The maximum address which the bitmap can span. (HeapBegin() <= object < HeapLimit()).
    177   uint64_t HeapLimit() const {
    178     return static_cast<uint64_t>(HeapBegin()) + HeapSize();
    179   }
    180 
    181   // Set the max address which can covered by the bitmap.
    182   void SetHeapLimit(uintptr_t new_end);
    183 
    184   std::string GetName() const {
    185     return name_;
    186   }
    187 
    188   void SetName(const std::string& name) {
    189     name_ = name;
    190   }
    191 
    192   std::string Dump() const;
    193 
    194   // Helper function for computing bitmap size based on a 64 bit capacity.
    195   static size_t ComputeBitmapSize(uint64_t capacity);
    196   static size_t ComputeHeapSize(uint64_t bitmap_bytes);
    197 
    198  private:
    199   // TODO: heap_end_ is initialized so that the heap bitmap is empty, this doesn't require the -1,
    200   // however, we document that this is expected on heap_end_
    201   SpaceBitmap(const std::string& name, MemMap* mem_map, uintptr_t* bitmap_begin, size_t bitmap_size,
    202               const void* heap_begin);
    203 
    204   template<bool kSetBit>
    205   bool Modify(const mirror::Object* obj);
    206 
    207   // Backing storage for bitmap.
    208   std::unique_ptr<MemMap> mem_map_;
    209 
    210   // This bitmap itself, word sized for efficiency in scanning.
    211   Atomic<uintptr_t>* const bitmap_begin_;
    212 
    213   // Size of this bitmap.
    214   size_t bitmap_size_;
    215 
    216   // The base address of the heap, which corresponds to the word containing the first bit in the
    217   // bitmap.
    218   const uintptr_t heap_begin_;
    219 
    220   // Name of this bitmap.
    221   std::string name_;
    222 };
    223 
    224 typedef SpaceBitmap<kObjectAlignment> ContinuousSpaceBitmap;
    225 typedef SpaceBitmap<kLargeObjectAlignment> LargeObjectBitmap;
    226 
    227 template<size_t kAlignment>
    228 std::ostream& operator << (std::ostream& stream, const SpaceBitmap<kAlignment>& bitmap);
    229 
    230 }  // namespace accounting
    231 }  // namespace gc
    232 }  // namespace art
    233 
    234 #endif  // ART_RUNTIME_GC_ACCOUNTING_SPACE_BITMAP_H_
    235