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				| // Copyright (c) 2013-2014 Sandstorm Development Group, Inc. and contributors
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| // Licensed under the MIT License:
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| //
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| // Permission is hereby granted, free of charge, to any person obtaining a copy
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| // of this software and associated documentation files (the "Software"), to deal
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| // in the Software without restriction, including without limitation the rights
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| // to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
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| // copies of the Software, and to permit persons to whom the Software is
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| // furnished to do so, subject to the following conditions:
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| //
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| // The above copyright notice and this permission notice shall be included in
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| // all copies or substantial portions of the Software.
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| //
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| // THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
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| // IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
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| // FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
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| // AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
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| // LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
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| // OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
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| // THE SOFTWARE.
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| 
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| #ifndef KJ_MUTEX_H_
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| #define KJ_MUTEX_H_
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| 
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| #if defined(__GNUC__) && !KJ_HEADER_WARNINGS
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| #pragma GCC system_header
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| #endif
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| 
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| #include "memory.h"
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| #include <inttypes.h>
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| 
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| #if __linux__ && !defined(KJ_USE_FUTEX)
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| #define KJ_USE_FUTEX 1
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| #endif
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| 
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| #if !KJ_USE_FUTEX && !_WIN32
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| // On Linux we use futex.  On other platforms we wrap pthreads.
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| // TODO(someday):  Write efficient low-level locking primitives for other platforms.
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| #include <pthread.h>
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| #endif
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| 
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| namespace kj {
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| 
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| // =======================================================================================
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| // Private details -- public interfaces follow below.
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| 
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| namespace _ {  // private
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| 
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| class Mutex {
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|   // Internal implementation details.  See `MutexGuarded<T>`.
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| 
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| public:
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|   Mutex();
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|   ~Mutex();
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|   KJ_DISALLOW_COPY(Mutex);
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| 
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|   enum Exclusivity {
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|     EXCLUSIVE,
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|     SHARED
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|   };
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| 
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|   void lock(Exclusivity exclusivity);
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|   void unlock(Exclusivity exclusivity);
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| 
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|   void assertLockedByCaller(Exclusivity exclusivity);
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|   // In debug mode, assert that the mutex is locked by the calling thread, or if that is
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|   // non-trivial, assert that the mutex is locked (which should be good enough to catch problems
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|   // in unit tests).  In non-debug builds, do nothing.
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| 
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| private:
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| #if KJ_USE_FUTEX
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|   uint futex;
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|   // bit 31 (msb) = set if exclusive lock held
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|   // bit 30 (msb) = set if threads are waiting for exclusive lock
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|   // bits 0-29 = count of readers; If an exclusive lock is held, this is the count of threads
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|   //   waiting for a read lock, otherwise it is the count of threads that currently hold a read
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|   //   lock.
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| 
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|   static constexpr uint EXCLUSIVE_HELD = 1u << 31;
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|   static constexpr uint EXCLUSIVE_REQUESTED = 1u << 30;
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|   static constexpr uint SHARED_COUNT_MASK = EXCLUSIVE_REQUESTED - 1;
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| 
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| #elif _WIN32
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|   uintptr_t srwLock;  // Actually an SRWLOCK, but don't want to #include <windows.h> in header.
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| 
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| #else
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|   mutable pthread_rwlock_t mutex;
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| #endif
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| };
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| 
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| class Once {
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|   // Internal implementation details.  See `Lazy<T>`.
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| 
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| public:
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| #if KJ_USE_FUTEX
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|   inline Once(bool startInitialized = false)
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|       : futex(startInitialized ? INITIALIZED : UNINITIALIZED) {}
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| #else
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|   Once(bool startInitialized = false);
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|   ~Once();
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| #endif
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|   KJ_DISALLOW_COPY(Once);
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| 
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|   class Initializer {
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|   public:
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|     virtual void run() = 0;
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|   };
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| 
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|   void runOnce(Initializer& init);
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| 
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| #if _WIN32  // TODO(perf): Can we make this inline on win32 somehow?
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|   bool isInitialized() noexcept;
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| 
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| #else
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|   inline bool isInitialized() noexcept {
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|     // Fast path check to see if runOnce() would simply return immediately.
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| #if KJ_USE_FUTEX
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|     return __atomic_load_n(&futex, __ATOMIC_ACQUIRE) == INITIALIZED;
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| #else
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|     return __atomic_load_n(&state, __ATOMIC_ACQUIRE) == INITIALIZED;
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| #endif
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|   }
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| #endif
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| 
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|   void reset();
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|   // Returns the state from initialized to uninitialized.  It is an error to call this when
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|   // not already initialized, or when runOnce() or isInitialized() might be called concurrently in
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|   // another thread.
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| 
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| private:
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| #if KJ_USE_FUTEX
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|   uint futex;
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| 
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|   enum State {
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|     UNINITIALIZED,
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|     INITIALIZING,
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|     INITIALIZING_WITH_WAITERS,
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|     INITIALIZED
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|   };
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| 
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| #elif _WIN32
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|   uintptr_t initOnce;  // Actually an INIT_ONCE, but don't want to #include <windows.h> in header.
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| 
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| #else
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|   enum State {
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|     UNINITIALIZED,
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|     INITIALIZED
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|   };
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|   State state;
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|   pthread_mutex_t mutex;
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| #endif
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| };
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| 
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| }  // namespace _ (private)
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| 
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| // =======================================================================================
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| // Public interface
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| 
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| template <typename T>
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| class Locked {
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|   // Return type for `MutexGuarded<T>::lock()`.  `Locked<T>` provides access to the bounded object
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|   // and unlocks the mutex when it goes out of scope.
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| 
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| public:
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|   KJ_DISALLOW_COPY(Locked);
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|   inline Locked(): mutex(nullptr), ptr(nullptr) {}
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|   inline Locked(Locked&& other): mutex(other.mutex), ptr(other.ptr) {
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|     other.mutex = nullptr;
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|     other.ptr = nullptr;
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|   }
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|   inline ~Locked() {
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|     if (mutex != nullptr) mutex->unlock(isConst<T>() ? _::Mutex::SHARED : _::Mutex::EXCLUSIVE);
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|   }
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| 
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|   inline Locked& operator=(Locked&& other) {
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|     if (mutex != nullptr) mutex->unlock(isConst<T>() ? _::Mutex::SHARED : _::Mutex::EXCLUSIVE);
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|     mutex = other.mutex;
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|     ptr = other.ptr;
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|     other.mutex = nullptr;
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|     other.ptr = nullptr;
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|     return *this;
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|   }
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| 
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|   inline void release() {
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|     if (mutex != nullptr) mutex->unlock(isConst<T>() ? _::Mutex::SHARED : _::Mutex::EXCLUSIVE);
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|     mutex = nullptr;
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|     ptr = nullptr;
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|   }
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| 
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|   inline T* operator->() { return ptr; }
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|   inline const T* operator->() const { return ptr; }
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|   inline T& operator*() { return *ptr; }
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|   inline const T& operator*() const { return *ptr; }
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|   inline T* get() { return ptr; }
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|   inline const T* get() const { return ptr; }
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|   inline operator T*() { return ptr; }
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|   inline operator const T*() const { return ptr; }
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| 
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| private:
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|   _::Mutex* mutex;
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|   T* ptr;
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| 
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|   inline Locked(_::Mutex& mutex, T& value): mutex(&mutex), ptr(&value) {}
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| 
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|   template <typename U>
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|   friend class MutexGuarded;
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| };
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| 
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| template <typename T>
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| class MutexGuarded {
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|   // An object of type T, bounded by a mutex.  In order to access the object, you must lock it.
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|   //
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|   // Write locks are not "recursive" -- trying to lock again in a thread that already holds a lock
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|   // will deadlock.  Recursive write locks are usually a sign of bad design.
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|   //
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|   // Unfortunately, **READ LOCKS ARE NOT RECURSIVE** either.  Common sense says they should be.
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|   // But on many operating systems (BSD, OSX), recursively read-locking a pthread_rwlock is
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|   // actually unsafe.  The problem is that writers are "prioritized" over readers, so a read lock
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|   // request will block if any write lock requests are outstanding.  So, if thread A takes a read
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|   // lock, thread B requests a write lock (and starts waiting), and then thread A tries to take
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|   // another read lock recursively, the result is deadlock.
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| 
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| public:
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|   template <typename... Params>
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|   explicit MutexGuarded(Params&&... params);
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|   // Initialize the mutex-bounded object by passing the given parameters to its constructor.
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| 
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|   Locked<T> lockExclusive() const;
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|   // Exclusively locks the object and returns it.  The returned `Locked<T>` can be passed by
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|   // move, similar to `Own<T>`.
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|   //
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|   // This method is declared `const` in accordance with KJ style rules which say that constness
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|   // should be used to indicate thread-safety.  It is safe to share a const pointer between threads,
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|   // but it is not safe to share a mutable pointer.  Since the whole point of MutexGuarded is to
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|   // be shared between threads, its methods should be const, even though locking it produces a
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|   // non-const pointer to the contained object.
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| 
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|   Locked<const T> lockShared() const;
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|   // Lock the value for shared access.  Multiple shared locks can be taken concurrently, but cannot
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|   // be held at the same time as a non-shared lock.
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| 
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|   inline const T& getWithoutLock() const { return value; }
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|   inline T& getWithoutLock() { return value; }
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|   // Escape hatch for cases where some external factor guarantees that it's safe to get the
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|   // value.  You should treat these like const_cast -- be highly suspicious of any use.
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| 
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|   inline const T& getAlreadyLockedShared() const;
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|   inline T& getAlreadyLockedShared();
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|   inline T& getAlreadyLockedExclusive() const;
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|   // Like `getWithoutLock()`, but asserts that the lock is already held by the calling thread.
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| 
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| private:
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|   mutable _::Mutex mutex;
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|   mutable T value;
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| };
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| 
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| template <typename T>
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| class MutexGuarded<const T> {
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|   // MutexGuarded cannot guard a const type.  This would be pointless anyway, and would complicate
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|   // the implementation of Locked<T>, which uses constness to decide what kind of lock it holds.
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|   static_assert(sizeof(T) < 0, "MutexGuarded's type cannot be const.");
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| };
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| 
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| template <typename T>
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| class Lazy {
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|   // A lazily-initialized value.
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| 
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| public:
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|   template <typename Func>
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|   T& get(Func&& init);
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|   template <typename Func>
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|   const T& get(Func&& init) const;
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|   // The first thread to call get() will invoke the given init function to construct the value.
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|   // Other threads will block until construction completes, then return the same value.
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|   //
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|   // `init` is a functor(typically a lambda) which takes `SpaceFor<T>&` as its parameter and returns
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|   // `Own<T>`.  If `init` throws an exception, the exception is propagated out of that thread's
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|   // call to `get()`, and subsequent calls behave as if `get()` hadn't been called at all yet --
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|   // in other words, subsequent calls retry initialization until it succeeds.
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| 
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| private:
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|   mutable _::Once once;
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|   mutable SpaceFor<T> space;
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|   mutable Own<T> value;
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| 
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|   template <typename Func>
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|   class InitImpl;
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| };
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| 
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| // =======================================================================================
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| // Inline implementation details
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| 
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| template <typename T>
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| template <typename... Params>
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| inline MutexGuarded<T>::MutexGuarded(Params&&... params)
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|     : value(kj::fwd<Params>(params)...) {}
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| 
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| template <typename T>
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| inline Locked<T> MutexGuarded<T>::lockExclusive() const {
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|   mutex.lock(_::Mutex::EXCLUSIVE);
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|   return Locked<T>(mutex, value);
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| }
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| 
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| template <typename T>
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| inline Locked<const T> MutexGuarded<T>::lockShared() const {
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|   mutex.lock(_::Mutex::SHARED);
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|   return Locked<const T>(mutex, value);
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| }
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| 
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| template <typename T>
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| inline const T& MutexGuarded<T>::getAlreadyLockedShared() const {
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| #ifdef KJ_DEBUG
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|   mutex.assertLockedByCaller(_::Mutex::SHARED);
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| #endif
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|   return value;
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| }
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| template <typename T>
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| inline T& MutexGuarded<T>::getAlreadyLockedShared() {
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| #ifdef KJ_DEBUG
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|   mutex.assertLockedByCaller(_::Mutex::SHARED);
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| #endif
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|   return value;
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| }
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| template <typename T>
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| inline T& MutexGuarded<T>::getAlreadyLockedExclusive() const {
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| #ifdef KJ_DEBUG
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|   mutex.assertLockedByCaller(_::Mutex::EXCLUSIVE);
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| #endif
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|   return const_cast<T&>(value);
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| }
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| 
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| template <typename T>
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| template <typename Func>
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| class Lazy<T>::InitImpl: public _::Once::Initializer {
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| public:
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|   inline InitImpl(const Lazy<T>& lazy, Func&& func): lazy(lazy), func(kj::fwd<Func>(func)) {}
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| 
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|   void run() override {
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|     lazy.value = func(lazy.space);
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|   }
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| 
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| private:
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|   const Lazy<T>& lazy;
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|   Func func;
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| };
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| 
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| template <typename T>
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| template <typename Func>
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| inline T& Lazy<T>::get(Func&& init) {
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|   if (!once.isInitialized()) {
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|     InitImpl<Func> initImpl(*this, kj::fwd<Func>(init));
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|     once.runOnce(initImpl);
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|   }
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|   return *value;
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| }
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| 
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| template <typename T>
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| template <typename Func>
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| inline const T& Lazy<T>::get(Func&& init) const {
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|   if (!once.isInitialized()) {
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|     InitImpl<Func> initImpl(*this, kj::fwd<Func>(init));
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|     once.runOnce(initImpl);
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|   }
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|   return *value;
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| }
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| 
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| }  // namespace kj
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| 
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| #endif  // KJ_MUTEX_H_
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| 
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