// This file is distributed under the BSD License. // See "license.txt" for details. // Copyright 2009-2012, Jonathan Turner (jonathan@emptycrate.com) // Copyright 2009-2017, Jason Turner (jason@emptycrate.com) // http://www.chaiscript.com // This is an open source non-commercial project. Dear PVS-Studio, please check it. // PVS-Studio Static Code Analyzer for C, C++ and C#: http://www.viva64.com #ifndef CHAISCRIPT_THREADING_HPP_ #define CHAISCRIPT_THREADING_HPP_ #include #ifndef CHAISCRIPT_NO_THREADS #include #include #else #ifndef CHAISCRIPT_NO_THREADS_WARNING #pragma message ("ChaiScript is compiling without thread safety.") #endif #endif #include "chaiscript_defines.hpp" /// \file /// /// This file contains code necessary for thread support in ChaiScript. /// If the compiler definition CHAISCRIPT_NO_THREADS is defined then thread safety /// is disabled in ChaiScript. This has the result that some code is faster, because mutex locks are not required. /// It also has the side effect that the chaiscript::ChaiScript object may not be accessed from more than /// one thread simultaneously. namespace chaiscript { namespace detail { /// If threading is enabled, then this namespace contains std thread classes. /// If threading is not enabled, then stubbed in wrappers that do nothing are provided. /// This allows us to avoid \#ifdef code in the sections that need thread safety. namespace threading { #ifndef CHAISCRIPT_NO_THREADS template using unique_lock = std::unique_lock; template using shared_lock = std::unique_lock; template using lock_guard = std::lock_guard; using shared_mutex = std::mutex; using std::mutex; using std::recursive_mutex; /// Typesafe thread specific storage. If threading is enabled, this class uses a mutex protected map. If /// threading is not enabled, the class always returns the same data, regardless of which thread it is called from. template class Thread_Storage { public: explicit Thread_Storage(void *t_key) : m_key(t_key) { } ~Thread_Storage() { t().erase(m_key); } inline const T *operator->() const { return &(t()[m_key]); } inline const T &operator*() const { return t()[m_key]; } inline T *operator->() { return &(t()[m_key]); } inline T &operator*() { return t()[m_key]; } void *m_key; private: static std::unordered_map &t() { thread_local static std::unordered_map my_t; return my_t; } }; #else // threading disabled template class unique_lock { public: explicit unique_lock(T &) {} void lock() {} void unlock() {} }; template class shared_lock { public: explicit shared_lock(T &) {} void lock() {} void unlock() {} }; template class lock_guard { public: explicit lock_guard(T &) {} }; class shared_mutex { }; class recursive_mutex {}; template class Thread_Storage { public: explicit Thread_Storage(void *) { } inline T *operator->() const { return &obj; } inline T &operator*() const { return obj; } private: mutable T obj; }; #endif } } } #endif