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      1 /*
      2  * Copyright (C) 2015 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_JIT_PROFILING_INFO_H_
     18 #define ART_RUNTIME_JIT_PROFILING_INFO_H_
     19 
     20 #include <vector>
     21 
     22 #include "base/macros.h"
     23 #include "gc_root.h"
     24 
     25 namespace art {
     26 
     27 class ArtMethod;
     28 class ProfilingInfo;
     29 
     30 namespace jit {
     31 class JitCodeCache;
     32 }
     33 
     34 namespace mirror {
     35 class Class;
     36 }
     37 
     38 // Structure to store the classes seen at runtime for a specific instruction.
     39 // Once the classes_ array is full, we consider the INVOKE to be megamorphic.
     40 class InlineCache {
     41  public:
     42   bool IsMonomorphic() const {
     43     DCHECK_GE(kIndividualCacheSize, 2);
     44     return !classes_[0].IsNull() && classes_[1].IsNull();
     45   }
     46 
     47   bool IsMegamorphic() const {
     48     for (size_t i = 0; i < kIndividualCacheSize; ++i) {
     49       if (classes_[i].IsNull()) {
     50         return false;
     51       }
     52     }
     53     return true;
     54   }
     55 
     56   mirror::Class* GetMonomorphicType() const SHARED_REQUIRES(Locks::mutator_lock_) {
     57     // Note that we cannot ensure the inline cache is actually monomorphic
     58     // at this point, as other threads may have updated it.
     59     DCHECK(!classes_[0].IsNull());
     60     return classes_[0].Read();
     61   }
     62 
     63   bool IsUninitialized() const {
     64     return classes_[0].IsNull();
     65   }
     66 
     67   bool IsPolymorphic() const {
     68     DCHECK_GE(kIndividualCacheSize, 3);
     69     return !classes_[1].IsNull() && classes_[kIndividualCacheSize - 1].IsNull();
     70   }
     71 
     72   mirror::Class* GetTypeAt(size_t i) const SHARED_REQUIRES(Locks::mutator_lock_) {
     73     return classes_[i].Read();
     74   }
     75 
     76   static constexpr uint16_t kIndividualCacheSize = 5;
     77 
     78  private:
     79   uint32_t dex_pc_;
     80   GcRoot<mirror::Class> classes_[kIndividualCacheSize];
     81 
     82   friend class ProfilingInfo;
     83 
     84   DISALLOW_COPY_AND_ASSIGN(InlineCache);
     85 };
     86 
     87 /**
     88  * Profiling info for a method, created and filled by the interpreter once the
     89  * method is warm, and used by the compiler to drive optimizations.
     90  */
     91 class ProfilingInfo {
     92  public:
     93   // Create a ProfilingInfo for 'method'. Return whether it succeeded, or if it is
     94   // not needed in case the method does not have virtual/interface invocations.
     95   static bool Create(Thread* self, ArtMethod* method, bool retry_allocation)
     96       SHARED_REQUIRES(Locks::mutator_lock_);
     97 
     98   // Add information from an executed INVOKE instruction to the profile.
     99   void AddInvokeInfo(uint32_t dex_pc, mirror::Class* cls)
    100       // Method should not be interruptible, as it manipulates the ProfilingInfo
    101       // which can be concurrently collected.
    102       REQUIRES(Roles::uninterruptible_)
    103       SHARED_REQUIRES(Locks::mutator_lock_);
    104 
    105   // NO_THREAD_SAFETY_ANALYSIS since we don't know what the callback requires.
    106   template<typename RootVisitorType>
    107   void VisitRoots(RootVisitorType& visitor) NO_THREAD_SAFETY_ANALYSIS {
    108     visitor.VisitRootIfNonNull(holding_class_.AddressWithoutBarrier());
    109     for (size_t i = 0; i < number_of_inline_caches_; ++i) {
    110       InlineCache* cache = &cache_[i];
    111       for (size_t j = 0; j < InlineCache::kIndividualCacheSize; ++j) {
    112         visitor.VisitRootIfNonNull(cache->classes_[j].AddressWithoutBarrier());
    113       }
    114     }
    115   }
    116 
    117   ArtMethod* GetMethod() const {
    118     return method_;
    119   }
    120 
    121   InlineCache* GetInlineCache(uint32_t dex_pc);
    122 
    123   bool IsMethodBeingCompiled(bool osr) const {
    124     return osr
    125         ? is_osr_method_being_compiled_
    126         : is_method_being_compiled_;
    127   }
    128 
    129   void SetIsMethodBeingCompiled(bool value, bool osr) {
    130     if (osr) {
    131       is_osr_method_being_compiled_ = value;
    132     } else {
    133       is_method_being_compiled_ = value;
    134     }
    135   }
    136 
    137   void SetSavedEntryPoint(const void* entry_point) {
    138     saved_entry_point_ = entry_point;
    139   }
    140 
    141   const void* GetSavedEntryPoint() const {
    142     return saved_entry_point_;
    143   }
    144 
    145   void ClearGcRootsInInlineCaches() {
    146     for (size_t i = 0; i < number_of_inline_caches_; ++i) {
    147       InlineCache* cache = &cache_[i];
    148       memset(&cache->classes_[0],
    149              0,
    150              InlineCache::kIndividualCacheSize * sizeof(GcRoot<mirror::Class>));
    151     }
    152   }
    153 
    154   void IncrementInlineUse() {
    155     DCHECK_NE(current_inline_uses_, std::numeric_limits<uint16_t>::max());
    156     current_inline_uses_++;
    157   }
    158 
    159   void DecrementInlineUse() {
    160     DCHECK_GT(current_inline_uses_, 0);
    161     current_inline_uses_--;
    162   }
    163 
    164   bool IsInUseByCompiler() const {
    165     return IsMethodBeingCompiled(/*osr*/ true) || IsMethodBeingCompiled(/*osr*/ false) ||
    166         (current_inline_uses_ > 0);
    167   }
    168 
    169  private:
    170   ProfilingInfo(ArtMethod* method, const std::vector<uint32_t>& entries);
    171 
    172   // Number of instructions we are profiling in the ArtMethod.
    173   const uint32_t number_of_inline_caches_;
    174 
    175   // Method this profiling info is for.
    176   ArtMethod* const method_;
    177 
    178   // Holding class for the method in case method is a copied method.
    179   GcRoot<mirror::Class> holding_class_;
    180 
    181   // Whether the ArtMethod is currently being compiled. This flag
    182   // is implicitly guarded by the JIT code cache lock.
    183   // TODO: Make the JIT code cache lock global.
    184   bool is_method_being_compiled_;
    185   bool is_osr_method_being_compiled_;
    186 
    187   // When the compiler inlines the method associated to this ProfilingInfo,
    188   // it updates this counter so that the GC does not try to clear the inline caches.
    189   uint16_t current_inline_uses_;
    190 
    191   // Entry point of the corresponding ArtMethod, while the JIT code cache
    192   // is poking for the liveness of compiled code.
    193   const void* saved_entry_point_;
    194 
    195   // Dynamically allocated array of size `number_of_inline_caches_`.
    196   InlineCache cache_[0];
    197 
    198   friend class jit::JitCodeCache;
    199 
    200   DISALLOW_COPY_AND_ASSIGN(ProfilingInfo);
    201 };
    202 
    203 }  // namespace art
    204 
    205 #endif  // ART_RUNTIME_JIT_PROFILING_INFO_H_
    206