Home | History | Annotate | Download | only in src
      1 // Copyright 2012 the V8 project authors. All rights reserved.
      2 // Use of this source code is governed by a BSD-style license that can be
      3 // found in the LICENSE file.
      4 
      5 #ifndef V8_D8_H_
      6 #define V8_D8_H_
      7 
      8 #include <iterator>
      9 #include <memory>
     10 #include <string>
     11 #include <vector>
     12 
     13 #include "src/allocation.h"
     14 #include "src/base/hashmap.h"
     15 #include "src/base/platform/time.h"
     16 #include "src/list.h"
     17 #include "src/utils.h"
     18 
     19 #include "src/base/once.h"
     20 
     21 
     22 namespace v8 {
     23 
     24 
     25 // A single counter in a counter collection.
     26 class Counter {
     27  public:
     28   static const int kMaxNameSize = 64;
     29   int32_t* Bind(const char* name, bool histogram);
     30   int32_t* ptr() { return &count_; }
     31   int32_t count() { return count_; }
     32   int32_t sample_total() { return sample_total_; }
     33   bool is_histogram() { return is_histogram_; }
     34   void AddSample(int32_t sample);
     35  private:
     36   int32_t count_;
     37   int32_t sample_total_;
     38   bool is_histogram_;
     39   uint8_t name_[kMaxNameSize];
     40 };
     41 
     42 
     43 // A set of counters and associated information.  An instance of this
     44 // class is stored directly in the memory-mapped counters file if
     45 // the --map-counters options is used
     46 class CounterCollection {
     47  public:
     48   CounterCollection();
     49   Counter* GetNextCounter();
     50  private:
     51   static const unsigned kMaxCounters = 512;
     52   uint32_t magic_number_;
     53   uint32_t max_counters_;
     54   uint32_t max_name_size_;
     55   uint32_t counters_in_use_;
     56   Counter counters_[kMaxCounters];
     57 };
     58 
     59 
     60 class CounterMap {
     61  public:
     62   CounterMap(): hash_map_(Match) { }
     63   Counter* Lookup(const char* name) {
     64     base::HashMap::Entry* answer =
     65         hash_map_.Lookup(const_cast<char*>(name), Hash(name));
     66     if (!answer) return NULL;
     67     return reinterpret_cast<Counter*>(answer->value);
     68   }
     69   void Set(const char* name, Counter* value) {
     70     base::HashMap::Entry* answer =
     71         hash_map_.LookupOrInsert(const_cast<char*>(name), Hash(name));
     72     DCHECK(answer != NULL);
     73     answer->value = value;
     74   }
     75   class Iterator {
     76    public:
     77     explicit Iterator(CounterMap* map)
     78         : map_(&map->hash_map_), entry_(map_->Start()) { }
     79     void Next() { entry_ = map_->Next(entry_); }
     80     bool More() { return entry_ != NULL; }
     81     const char* CurrentKey() { return static_cast<const char*>(entry_->key); }
     82     Counter* CurrentValue() { return static_cast<Counter*>(entry_->value); }
     83    private:
     84     base::CustomMatcherHashMap* map_;
     85     base::CustomMatcherHashMap::Entry* entry_;
     86   };
     87 
     88  private:
     89   static int Hash(const char* name);
     90   static bool Match(void* key1, void* key2);
     91   base::CustomMatcherHashMap hash_map_;
     92 };
     93 
     94 
     95 class SourceGroup {
     96  public:
     97   SourceGroup() :
     98       next_semaphore_(0),
     99       done_semaphore_(0),
    100       thread_(NULL),
    101       argv_(NULL),
    102       begin_offset_(0),
    103       end_offset_(0) {}
    104 
    105   ~SourceGroup();
    106 
    107   void Begin(char** argv, int offset) {
    108     argv_ = const_cast<const char**>(argv);
    109     begin_offset_ = offset;
    110   }
    111 
    112   void End(int offset) { end_offset_ = offset; }
    113 
    114   void Execute(Isolate* isolate);
    115 
    116   void StartExecuteInThread();
    117   void WaitForThread();
    118   void JoinThread();
    119 
    120  private:
    121   class IsolateThread : public base::Thread {
    122    public:
    123     explicit IsolateThread(SourceGroup* group)
    124         : base::Thread(GetThreadOptions()), group_(group) {}
    125 
    126     virtual void Run() {
    127       group_->ExecuteInThread();
    128     }
    129 
    130    private:
    131     SourceGroup* group_;
    132   };
    133 
    134   static base::Thread::Options GetThreadOptions();
    135   void ExecuteInThread();
    136 
    137   base::Semaphore next_semaphore_;
    138   base::Semaphore done_semaphore_;
    139   base::Thread* thread_;
    140 
    141   void ExitShell(int exit_code);
    142   Local<String> ReadFile(Isolate* isolate, const char* name);
    143 
    144   const char** argv_;
    145   int begin_offset_;
    146   int end_offset_;
    147 };
    148 
    149 // The backing store of an ArrayBuffer or SharedArrayBuffer, after
    150 // Externalize() has been called on it.
    151 class ExternalizedContents {
    152  public:
    153   explicit ExternalizedContents(const ArrayBuffer::Contents& contents)
    154       : data_(contents.Data()), size_(contents.ByteLength()) {}
    155   explicit ExternalizedContents(const SharedArrayBuffer::Contents& contents)
    156       : data_(contents.Data()), size_(contents.ByteLength()) {}
    157   ExternalizedContents(ExternalizedContents&& other)
    158       : data_(other.data_), size_(other.size_) {
    159     other.data_ = nullptr;
    160     other.size_ = 0;
    161   }
    162   ExternalizedContents& operator=(ExternalizedContents&& other) {
    163     if (this != &other) {
    164       data_ = other.data_;
    165       size_ = other.size_;
    166       other.data_ = nullptr;
    167       other.size_ = 0;
    168     }
    169     return *this;
    170   }
    171   ~ExternalizedContents();
    172 
    173  private:
    174   void* data_;
    175   size_t size_;
    176 
    177   DISALLOW_COPY_AND_ASSIGN(ExternalizedContents);
    178 };
    179 
    180 class SerializationData {
    181  public:
    182   SerializationData() : size_(0) {}
    183 
    184   uint8_t* data() { return data_.get(); }
    185   size_t size() { return size_; }
    186   const std::vector<ArrayBuffer::Contents>& array_buffer_contents() {
    187     return array_buffer_contents_;
    188   }
    189   const std::vector<SharedArrayBuffer::Contents>&
    190   shared_array_buffer_contents() {
    191     return shared_array_buffer_contents_;
    192   }
    193 
    194   void AppendExternalizedContentsTo(std::vector<ExternalizedContents>* to) {
    195     to->insert(to->end(),
    196                std::make_move_iterator(externalized_contents_.begin()),
    197                std::make_move_iterator(externalized_contents_.end()));
    198     externalized_contents_.clear();
    199   }
    200 
    201  private:
    202   struct DataDeleter {
    203     void operator()(uint8_t* p) const { free(p); }
    204   };
    205 
    206   std::unique_ptr<uint8_t, DataDeleter> data_;
    207   size_t size_;
    208   std::vector<ArrayBuffer::Contents> array_buffer_contents_;
    209   std::vector<SharedArrayBuffer::Contents> shared_array_buffer_contents_;
    210   std::vector<ExternalizedContents> externalized_contents_;
    211 
    212  private:
    213   friend class Serializer;
    214 
    215   DISALLOW_COPY_AND_ASSIGN(SerializationData);
    216 };
    217 
    218 
    219 class SerializationDataQueue {
    220  public:
    221   void Enqueue(std::unique_ptr<SerializationData> data);
    222   bool Dequeue(std::unique_ptr<SerializationData>* data);
    223   bool IsEmpty();
    224   void Clear();
    225 
    226  private:
    227   base::Mutex mutex_;
    228   std::vector<std::unique_ptr<SerializationData>> data_;
    229 };
    230 
    231 
    232 class Worker {
    233  public:
    234   Worker();
    235   ~Worker();
    236 
    237   // Run the given script on this Worker. This function should only be called
    238   // once, and should only be called by the thread that created the Worker.
    239   void StartExecuteInThread(const char* script);
    240   // Post a message to the worker's incoming message queue. The worker will
    241   // take ownership of the SerializationData.
    242   // This function should only be called by the thread that created the Worker.
    243   void PostMessage(std::unique_ptr<SerializationData> data);
    244   // Synchronously retrieve messages from the worker's outgoing message queue.
    245   // If there is no message in the queue, block until a message is available.
    246   // If there are no messages in the queue and the worker is no longer running,
    247   // return nullptr.
    248   // This function should only be called by the thread that created the Worker.
    249   std::unique_ptr<SerializationData> GetMessage();
    250   // Terminate the worker's event loop. Messages from the worker that have been
    251   // queued can still be read via GetMessage().
    252   // This function can be called by any thread.
    253   void Terminate();
    254   // Terminate and join the thread.
    255   // This function can be called by any thread.
    256   void WaitForThread();
    257 
    258  private:
    259   class WorkerThread : public base::Thread {
    260    public:
    261     explicit WorkerThread(Worker* worker)
    262         : base::Thread(base::Thread::Options("WorkerThread")),
    263           worker_(worker) {}
    264 
    265     virtual void Run() { worker_->ExecuteInThread(); }
    266 
    267    private:
    268     Worker* worker_;
    269   };
    270 
    271   void ExecuteInThread();
    272   static void PostMessageOut(const v8::FunctionCallbackInfo<v8::Value>& args);
    273 
    274   base::Semaphore in_semaphore_;
    275   base::Semaphore out_semaphore_;
    276   SerializationDataQueue in_queue_;
    277   SerializationDataQueue out_queue_;
    278   base::Thread* thread_;
    279   char* script_;
    280   base::Atomic32 running_;
    281 };
    282 
    283 
    284 class ShellOptions {
    285  public:
    286   ShellOptions()
    287       : script_executed(false),
    288         send_idle_notification(false),
    289         invoke_weak_callbacks(false),
    290         omit_quit(false),
    291         stress_opt(false),
    292         stress_deopt(false),
    293         stress_runs(1),
    294         interactive_shell(false),
    295         test_shell(false),
    296         dump_heap_constants(false),
    297         expected_to_throw(false),
    298         mock_arraybuffer_allocator(false),
    299         enable_inspector(false),
    300         num_isolates(1),
    301         compile_options(v8::ScriptCompiler::kNoCompileOptions),
    302         isolate_sources(NULL),
    303         icu_data_file(NULL),
    304         natives_blob(NULL),
    305         snapshot_blob(NULL),
    306         trace_enabled(false),
    307         trace_config(NULL),
    308         lcov_file(NULL) {}
    309 
    310   ~ShellOptions() {
    311     delete[] isolate_sources;
    312   }
    313 
    314   bool use_interactive_shell() {
    315     return (interactive_shell || !script_executed) && !test_shell;
    316   }
    317 
    318   bool script_executed;
    319   bool send_idle_notification;
    320   bool invoke_weak_callbacks;
    321   bool omit_quit;
    322   bool stress_opt;
    323   bool stress_deopt;
    324   int stress_runs;
    325   bool interactive_shell;
    326   bool test_shell;
    327   bool dump_heap_constants;
    328   bool expected_to_throw;
    329   bool mock_arraybuffer_allocator;
    330   bool enable_inspector;
    331   int num_isolates;
    332   v8::ScriptCompiler::CompileOptions compile_options;
    333   SourceGroup* isolate_sources;
    334   const char* icu_data_file;
    335   const char* natives_blob;
    336   const char* snapshot_blob;
    337   bool trace_enabled;
    338   const char* trace_config;
    339   const char* lcov_file;
    340 };
    341 
    342 class Shell : public i::AllStatic {
    343  public:
    344   static MaybeLocal<Script> CompileString(
    345       Isolate* isolate, Local<String> source, Local<Value> name,
    346       v8::ScriptCompiler::CompileOptions compile_options);
    347   static bool ExecuteString(Isolate* isolate, Local<String> source,
    348                             Local<Value> name, bool print_result,
    349                             bool report_exceptions);
    350   static bool ExecuteModule(Isolate* isolate, const char* file_name);
    351   static void ReportException(Isolate* isolate, TryCatch* try_catch);
    352   static Local<String> ReadFile(Isolate* isolate, const char* name);
    353   static Local<Context> CreateEvaluationContext(Isolate* isolate);
    354   static int RunMain(Isolate* isolate, int argc, char* argv[], bool last_run);
    355   static int Main(int argc, char* argv[]);
    356   static void Exit(int exit_code);
    357   static void OnExit(Isolate* isolate);
    358   static void CollectGarbage(Isolate* isolate);
    359   static void EmptyMessageQueues(Isolate* isolate);
    360 
    361   static std::unique_ptr<SerializationData> SerializeValue(
    362       Isolate* isolate, Local<Value> value, Local<Value> transfer);
    363   static MaybeLocal<Value> DeserializeValue(
    364       Isolate* isolate, std::unique_ptr<SerializationData> data);
    365   static void CleanupWorkers();
    366   static int* LookupCounter(const char* name);
    367   static void* CreateHistogram(const char* name,
    368                                int min,
    369                                int max,
    370                                size_t buckets);
    371   static void AddHistogramSample(void* histogram, int sample);
    372   static void MapCounters(v8::Isolate* isolate, const char* name);
    373 
    374   static void PerformanceNow(const v8::FunctionCallbackInfo<v8::Value>& args);
    375 
    376   static void RealmCurrent(const v8::FunctionCallbackInfo<v8::Value>& args);
    377   static void RealmOwner(const v8::FunctionCallbackInfo<v8::Value>& args);
    378   static void RealmGlobal(const v8::FunctionCallbackInfo<v8::Value>& args);
    379   static void RealmCreate(const v8::FunctionCallbackInfo<v8::Value>& args);
    380   static void RealmNavigate(const v8::FunctionCallbackInfo<v8::Value>& args);
    381   static void RealmCreateAllowCrossRealmAccess(
    382       const v8::FunctionCallbackInfo<v8::Value>& args);
    383   static void RealmDispose(const v8::FunctionCallbackInfo<v8::Value>& args);
    384   static void RealmSwitch(const v8::FunctionCallbackInfo<v8::Value>& args);
    385   static void RealmEval(const v8::FunctionCallbackInfo<v8::Value>& args);
    386   static void RealmSharedGet(Local<String> property,
    387                              const  PropertyCallbackInfo<Value>& info);
    388   static void RealmSharedSet(Local<String> property,
    389                              Local<Value> value,
    390                              const  PropertyCallbackInfo<void>& info);
    391 
    392   static void Print(const v8::FunctionCallbackInfo<v8::Value>& args);
    393   static void PrintErr(const v8::FunctionCallbackInfo<v8::Value>& args);
    394   static void Write(const v8::FunctionCallbackInfo<v8::Value>& args);
    395   static void QuitOnce(v8::FunctionCallbackInfo<v8::Value>* args);
    396   static void Quit(const v8::FunctionCallbackInfo<v8::Value>& args);
    397   static void Version(const v8::FunctionCallbackInfo<v8::Value>& args);
    398   static void Read(const v8::FunctionCallbackInfo<v8::Value>& args);
    399   static void ReadBuffer(const v8::FunctionCallbackInfo<v8::Value>& args);
    400   static Local<String> ReadFromStdin(Isolate* isolate);
    401   static void ReadLine(const v8::FunctionCallbackInfo<v8::Value>& args) {
    402     args.GetReturnValue().Set(ReadFromStdin(args.GetIsolate()));
    403   }
    404   static void Load(const v8::FunctionCallbackInfo<v8::Value>& args);
    405   static void WorkerNew(const v8::FunctionCallbackInfo<v8::Value>& args);
    406   static void WorkerPostMessage(
    407       const v8::FunctionCallbackInfo<v8::Value>& args);
    408   static void WorkerGetMessage(const v8::FunctionCallbackInfo<v8::Value>& args);
    409   static void WorkerTerminate(const v8::FunctionCallbackInfo<v8::Value>& args);
    410   // The OS object on the global object contains methods for performing
    411   // operating system calls:
    412   //
    413   // os.system("program_name", ["arg1", "arg2", ...], timeout1, timeout2) will
    414   // run the command, passing the arguments to the program.  The standard output
    415   // of the program will be picked up and returned as a multiline string.  If
    416   // timeout1 is present then it should be a number.  -1 indicates no timeout
    417   // and a positive number is used as a timeout in milliseconds that limits the
    418   // time spent waiting between receiving output characters from the program.
    419   // timeout2, if present, should be a number indicating the limit in
    420   // milliseconds on the total running time of the program.  Exceptions are
    421   // thrown on timeouts or other errors or if the exit status of the program
    422   // indicates an error.
    423   //
    424   // os.chdir(dir) changes directory to the given directory.  Throws an
    425   // exception/ on error.
    426   //
    427   // os.setenv(variable, value) sets an environment variable.  Repeated calls to
    428   // this method leak memory due to the API of setenv in the standard C library.
    429   //
    430   // os.umask(alue) calls the umask system call and returns the old umask.
    431   //
    432   // os.mkdirp(name, mask) creates a directory.  The mask (if present) is anded
    433   // with the current umask.  Intermediate directories are created if necessary.
    434   // An exception is not thrown if the directory already exists.  Analogous to
    435   // the "mkdir -p" command.
    436   static void System(const v8::FunctionCallbackInfo<v8::Value>& args);
    437   static void ChangeDirectory(const v8::FunctionCallbackInfo<v8::Value>& args);
    438   static void SetEnvironment(const v8::FunctionCallbackInfo<v8::Value>& args);
    439   static void UnsetEnvironment(const v8::FunctionCallbackInfo<v8::Value>& args);
    440   static void SetUMask(const v8::FunctionCallbackInfo<v8::Value>& args);
    441   static void MakeDirectory(const v8::FunctionCallbackInfo<v8::Value>& args);
    442   static void RemoveDirectory(const v8::FunctionCallbackInfo<v8::Value>& args);
    443 
    444   static void AddOSMethods(v8::Isolate* isolate,
    445                            Local<ObjectTemplate> os_template);
    446 
    447   static const char* kPrompt;
    448   static ShellOptions options;
    449   static ArrayBuffer::Allocator* array_buffer_allocator;
    450 
    451  private:
    452   static Global<Context> evaluation_context_;
    453   static base::OnceType quit_once_;
    454   static Global<Function> stringify_function_;
    455   static CounterMap* counter_map_;
    456   // We statically allocate a set of local counters to be used if we
    457   // don't want to store the stats in a memory-mapped file
    458   static CounterCollection local_counters_;
    459   static CounterCollection* counters_;
    460   static base::OS::MemoryMappedFile* counters_file_;
    461   static base::LazyMutex context_mutex_;
    462   static const base::TimeTicks kInitialTicks;
    463 
    464   static base::LazyMutex workers_mutex_;
    465   static bool allow_new_workers_;
    466   static i::List<Worker*> workers_;
    467   static std::vector<ExternalizedContents> externalized_contents_;
    468 
    469   static void WriteIgnitionDispatchCountersFile(v8::Isolate* isolate);
    470   // Append LCOV coverage data to file.
    471   static void WriteLcovData(v8::Isolate* isolate, const char* file);
    472   static Counter* GetCounter(const char* name, bool is_histogram);
    473   static Local<String> Stringify(Isolate* isolate, Local<Value> value);
    474   static void Initialize(Isolate* isolate);
    475   static void RunShell(Isolate* isolate);
    476   static bool SetOptions(int argc, char* argv[]);
    477   static Local<ObjectTemplate> CreateGlobalTemplate(Isolate* isolate);
    478   static MaybeLocal<Context> CreateRealm(
    479       const v8::FunctionCallbackInfo<v8::Value>& args, int index,
    480       v8::MaybeLocal<Value> global_object);
    481   static void DisposeRealm(const v8::FunctionCallbackInfo<v8::Value>& args,
    482                            int index);
    483   static MaybeLocal<Module> FetchModuleTree(v8::Local<v8::Context> context,
    484                                             const std::string& file_name);
    485 };
    486 
    487 
    488 }  // namespace v8
    489 
    490 
    491 #endif  // V8_D8_H_
    492