2014-02-24 14:39:10 -05:00
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#ifndef __WCThreadSafe_h_
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#define __WCThreadSafe_h_
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/* Copy to include
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#include "Threads/WCThreadSafe.h"
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*/
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//
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// * WCThreadSafe.h (used to be called XPlatformOSServices.hpp)
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// *
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// * Consistent C++ interfaces to common Operating System services.
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// *
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// *
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// *
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// *
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// * Created 2004-December-13 by Udi Barzilai as XPlatformOSServices.hpp
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// * Moved to WCThreadSafe.h by Shai 26/10/2005
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// * 26/10/2005: ThreadMutex now inhetites from ThreadMutexInited
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// * namespace changed to wvThread
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#include "WavesPublicAPI/wstdint.h"
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#include <string>
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#include "BasicTypes/WUDefines.h"
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2014-05-01 09:32:18 -04:00
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#if defined(__linux__) || defined(__APPLE__)
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2014-02-24 14:39:10 -05:00
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#define XPLATFORMOSSERVICES_UNIX 1
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#endif
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#if defined(_WIN32)
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#define XPLATFORMOSSERVICES_WIN32 1
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#endif
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#if XPLATFORMOSSERVICES_WIN32
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#define XPLATFORMTHREADS_WINDOWS 1
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#elif XPLATFORMOSSERVICES_UNIX
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#define XPLATFORMTHREADS_POSIX 1
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#endif
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namespace wvNS {
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typedef uint32_t WTThreadSafetyType;
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const WTThreadSafetyType kNoThreadSafetyNeeded = 0;
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const WTThreadSafetyType kpthreadsmutexThreadSafety = 1;
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namespace wvThread
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{
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//#include "BasicTypes/WavesAPISetAligment.h"
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//Packing affects the layout of classes, and commonly, if packing changes across header files, there can be problems.
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2014-05-01 09:32:18 -04:00
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#ifdef PLATFORM_WINDOWS
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2014-02-24 14:39:10 -05:00
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#pragma pack(push)
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#pragma pack(8)
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#endif
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2014-05-01 09:32:18 -04:00
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#ifdef __APPLE__
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2014-02-24 14:39:10 -05:00
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#ifdef __GNUC__
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#pragma pack(push, 8)
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#endif
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#endif
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//--------------------------------------------------------
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typedef int32_t timediff; // in microseconds
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static const timediff ktdOneSecond = 1000*1000;
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//--------------------------------------------------------
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class timestamp
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{
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protected:
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typedef uint32_t tickcount;
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tickcount m_nMicroseconds; // may wrap around
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static const tickcount ms_knWraparoundThreshold = ~tickcount(0) ^ (~tickcount(0)>>1); // half the range
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public:
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timestamp() : m_nMicroseconds(0) { /* uninitialized */ }
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timestamp(const timestamp &_ts) : m_nMicroseconds(_ts.m_nMicroseconds) {}
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timestamp &operator=(const timestamp &_rhs) { m_nMicroseconds = _rhs.m_nMicroseconds; return *this; }
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explicit timestamp(tickcount _i) : m_nMicroseconds(_i) {}
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uint32_t ticks() const { return m_nMicroseconds; }
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timediff operator-(timestamp _rhs) const { return timediff(m_nMicroseconds-_rhs.m_nMicroseconds); }
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timestamp & operator+=(timediff _t) { m_nMicroseconds+=_t; return *this; }
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timestamp & operator-=(timediff _t) { m_nMicroseconds-=_t; return *this; }
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timestamp operator+(timediff _t) const { return timestamp(m_nMicroseconds+_t); }
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timestamp operator-(timediff _t) const { return timestamp(m_nMicroseconds-_t); }
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bool operator==(timestamp _rhs) const { return m_nMicroseconds==_rhs.m_nMicroseconds; }
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bool operator!=(timestamp _rhs) const { return m_nMicroseconds!=_rhs.m_nMicroseconds; }
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bool operator< (timestamp _rhs) const { return m_nMicroseconds-_rhs.m_nMicroseconds >= ms_knWraparoundThreshold; }
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static timestamp null() { return timestamp(0); }
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bool is_null() const { return m_nMicroseconds==0; }
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};
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//--------------------------------------------------------
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2014-05-01 09:32:18 -04:00
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#ifdef __APPLE__
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2014-02-24 14:39:10 -05:00
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bool FindNetInterfaceByIPAddress(const char *sIP, char *sInterface);
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#endif // MACOS
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//--------------------------------------------------------
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timestamp now();
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//--------------------------------------------------------
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DllExport void sleep(timediff);
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DllExport void sleep_milliseconds(unsigned int nMillisecs);
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//--------------------------------------------------------
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void yield();
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//--------------------------------------------------------
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typedef uintptr_t os_dependent_handle_type;
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//--------------------------------------------------------
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typedef int ThreadFunctionReturnType;
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typedef void * ThreadFunctionArgument;
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//--------------------------------------------------------
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typedef ThreadFunctionReturnType (ThreadFunction)(ThreadFunctionArgument);
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//--------------------------------------------------------
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class ThreadHandle
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{
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public:
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class OSDependent;
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protected:
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uintptr_t m_oshandle; // hopefully this is good enough for all systems
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public:
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static const ThreadHandle Invalid;
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protected:
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ThreadHandle(uintptr_t n) : m_oshandle(n) {}
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public:
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ThreadHandle() : m_oshandle(Invalid.m_oshandle) {}
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bool is_invalid() const { return !m_oshandle || m_oshandle==Invalid.m_oshandle; }
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};
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//--------------------------------------------------------
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class ThreadPriority
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{
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public: enum value { BelowNormal=1, Normal=2, AboveNormal=3, TimeCritical=4 };
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protected: value m_value;
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public: ThreadPriority(value v) : m_value(v) {}
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public: operator value() const { return m_value; }
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};
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//--------------------------------------------------------
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void SetMyThreadPriority(ThreadPriority);
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//--------------------------------------------------------
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ThreadHandle StartThread(ThreadFunction, ThreadFunctionArgument, ThreadPriority=ThreadPriority::Normal);
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bool JoinThread(ThreadHandle, ThreadFunctionReturnType * = 0);
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bool KillThread(ThreadHandle); // use only for abnormal termination
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void Close(ThreadHandle); // should be called once for every handle obtained from StartThread.
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//--------------------------------------------------------
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//--------------------------------------------------------
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class DllExport noncopyableobject
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{
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protected:
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noncopyableobject() {}
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private:
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noncopyableobject(const noncopyableobject &);
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noncopyableobject & operator=(const noncopyableobject &);
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};
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//--------------------------------------------------------
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//--------------------------------------------------------
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// Thread Mutex class that needs to be explicitly initialized
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class DllExport ThreadMutexInited : public noncopyableobject
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{
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protected:
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class OSDependentMutex;
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OSDependentMutex* m_osdmutex;
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public:
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ThreadMutexInited();
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~ThreadMutexInited();
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void init();
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void uninit();
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inline bool is_init() { return 0 != m_osdmutex; }
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void obtain();
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bool tryobtain();
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void release();
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private:
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ThreadMutexInited(const ThreadMutexInited&); // cannot be copied
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ThreadMutexInited& operator=(const ThreadMutexInited&); // cannot be copied
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public:
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class lock : public noncopyableobject
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{
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protected:
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ThreadMutexInited &m_mutex;
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public:
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inline lock(ThreadMutexInited &mtx) : m_mutex(mtx) { m_mutex.obtain(); }
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inline ~lock() { m_mutex.release(); }
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};
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class trylock : public noncopyableobject
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{
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protected:
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ThreadMutexInited &m_mutex;
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bool m_bObtained;
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public:
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inline trylock(ThreadMutexInited &mtx) : m_mutex(mtx), m_bObtained(false) { m_bObtained = m_mutex.tryobtain(); }
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inline ~trylock() { if (m_bObtained) m_mutex.release(); }
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inline operator bool() const { return m_bObtained; }
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};
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};
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//--------------------------------------------------------
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// Thread Mutex class that is automatically initialized
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class ThreadMutex : public ThreadMutexInited
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{
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public:
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ThreadMutex() {init();}
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};
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//--------------------------------------------------------
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class DllExport ThreadConditionSignal : public noncopyableobject
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{
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protected:
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class OSDependentObject;
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OSDependentObject &m_osdepobj;
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protected:
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void obtain_mutex();
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bool tryobtain_mutex();
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void release_mutex();
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public:
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class lock : public noncopyableobject
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{
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protected:
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ThreadConditionSignal &m_tcs;
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public:
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lock(ThreadConditionSignal &tcs) : m_tcs(tcs) { m_tcs.obtain_mutex(); }
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~lock() { m_tcs.release_mutex(); }
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};
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class trylock : public noncopyableobject
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{
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protected:
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ThreadConditionSignal &m_tcs;
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bool m_bObtained;
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public:
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trylock(ThreadConditionSignal &tcs) : m_tcs(tcs), m_bObtained(false) { m_bObtained = m_tcs.tryobtain_mutex(); }
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~trylock() { if (m_bObtained) m_tcs.release_mutex(); }
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operator bool() const { return m_bObtained; }
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};
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public:
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ThreadConditionSignal();
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~ThreadConditionSignal();
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// IMPORTANT: All of the functions below MUST be called ONLY while holding a lock for this object !!!
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void await_condition();
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bool await_condition(timediff tdTimeout);
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void signal_condition_single();
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void signal_condition_broadcast();
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};
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//--------------------------------------------------------
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//--------------------------------------------------------
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// A doorbell is a simple communication mechanism that allows
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// one thread two wake another when there is some work to be done.
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// The signal is 'clear on read'. This class is not intended for
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// multi-way communication (i.e. more than two threads).
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//#define XPLATFORMTHREADS_DOORBELL_INLINE_USING_COND_VAR (!XPLATFORMTHREADS_WINDOWS && !XPLATFORMOSSERVICES_MACOS)
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#ifdef XPLATFORMTHREADS_DOORBELL_INLINE_USING_COND_VAR
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#undef XPLATFORMTHREADS_DOORBELL_INLINE_USING_COND_VAR
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#endif
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#define XPLATFORMTHREADS_DOORBELL_INLINE_USING_COND_VAR 1
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#if XPLATFORMTHREADS_DOORBELL_INLINE_USING_COND_VAR
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class doorbell_type
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{
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protected:
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ThreadConditionSignal m_signal;
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bool m_rang;
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protected:
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template<bool wait_forever> bool wait_for_ring_internal(timediff timeout)
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{// mutex
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ThreadConditionSignal::lock guard(m_signal);
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if (!m_rang)
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{
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if (wait_forever)
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{
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m_signal.await_condition();
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}
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else
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{
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m_signal.await_condition(timeout);
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}
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}
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const bool rang = m_rang;
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m_rang = false;
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return rang;
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}// mutex
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public:
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doorbell_type() : m_rang(false) {}
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inline ~doorbell_type() {}
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inline void ring()
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{// mutex
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ThreadConditionSignal::lock guard(m_signal);
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m_rang = true;
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m_signal.signal_condition_single();
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}// mutex
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inline bool wait_for_ring() { return wait_for_ring_internal<true>(0); }
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inline bool wait_for_ring(timediff timeout) { return wait_for_ring_internal<false>(timeout); }
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};
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#else
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class doorbell_type : public noncopyableobject
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{
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protected:
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os_dependent_handle_type m_os_dependent_handle;
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protected:
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template<bool wait_forever> bool wait_for_ring_internal(timediff);
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public:
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doorbell_type();
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~doorbell_type();
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void ring();
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bool wait_for_ring();
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bool wait_for_ring(timediff timeout);
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};
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#endif // XPLATFORMTHREADS_DOORBELL_INLINE_USING_COND_VAR
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//--------------------------------------------------------
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//---------------------------------------------------------------
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class DllExport WCThreadRef // Class which holds the threadRef, DWORD in Windows and pthread_t in POSIX (Mac, Unix)
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{
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public:
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class OSDependent; // the class which contains the OS Dependent implementation
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WCThreadRef() : m_osThreadRef(0) {}
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bool is_invalid() const { return m_osThreadRef == 0;}
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operator uintptr_t() const {return m_osThreadRef;}
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protected:
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uintptr_t m_osThreadRef;
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WCThreadRef(uintptr_t n) : m_osThreadRef(n) {}
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friend DllExport bool operator==(const WCThreadRef& first, const WCThreadRef& second);
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friend DllExport bool operator!=(const WCThreadRef& first, const WCThreadRef& second);
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friend DllExport bool operator<(const WCThreadRef& first, const WCThreadRef& second);
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friend DllExport bool operator>(const WCThreadRef& first, const WCThreadRef& second);
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};
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DllExport WCThreadRef GetCurrentThreadRef(); // getting the current thread reference - cross-platform implemented
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bool IsThreadExists(const WCThreadRef& threadRef); // correct to the very snapshot of time of execution
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//---------------------------------------------------------------
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class DllExport WCAtomicLock
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{
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public:
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WCAtomicLock() : m_the_lock(0) {}
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bool obtain(const uint32_t in_num_trys = 1);
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void release();
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private:
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int32_t m_the_lock;
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};
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//#include "BasicTypes/WavesAPIResetAligment.h"
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2014-05-01 09:32:18 -04:00
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#ifdef PLATFORM_WINDOWS
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2014-02-24 14:39:10 -05:00
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#pragma pack(pop)
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#endif
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2014-05-01 09:32:18 -04:00
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#ifdef __APPLE__
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2014-02-24 14:39:10 -05:00
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#ifdef __GNUC__
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#pragma pack(pop)
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#endif
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#endif
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class WCStThreadMutexLocker
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{
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public:
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WCStThreadMutexLocker(wvNS::wvThread::ThreadMutexInited& in_mutex) :
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m_mutex(in_mutex)
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{
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m_mutex.obtain();
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}
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~WCStThreadMutexLocker()
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{
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m_mutex.release();
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}
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protected:
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wvNS::wvThread::ThreadMutexInited& m_mutex;
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WCStThreadMutexLocker(const WCStThreadMutexLocker&);
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WCStThreadMutexLocker& operator=(const WCStThreadMutexLocker&);
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};
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} // namespace wvThread
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} //namespace wvNS {
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#endif // #ifndef __WCThreadSafe_h_
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