/* * Copyright 2005-2007, Ingo Weinhold, bonefish@users.sf.net. All rights reserved. * Distributed under the terms of the MIT License. */ #ifndef KERNEL_UTIL_AUTO_LOCKER_H #define KERNEL_UTIL_AUTO_LOCKER_H #include #include #include #include namespace BPrivate { // MutexLocking class MutexLocking { public: inline bool Lock(mutex *lockable) { return mutex_lock(lockable) == B_OK; } inline void Unlock(mutex *lockable) { mutex_unlock(lockable); } }; // MutexLocker typedef AutoLocker MutexLocker; // RecursiveLockLocking class RecursiveLockLocking { public: inline bool Lock(recursive_lock *lockable) { return recursive_lock_lock(lockable) == B_OK; } inline void Unlock(recursive_lock *lockable) { recursive_lock_unlock(lockable); } }; // RecursiveLocker typedef AutoLocker RecursiveLocker; // BenaphoreLocking class BenaphoreLocking { public: inline bool Lock(benaphore *lockable) { return benaphore_lock(lockable) == B_OK; } inline void Unlock(benaphore *lockable) { benaphore_unlock(lockable); } }; // BenaphoreLocker typedef AutoLocker BenaphoreLocker; // InterruptsLocking class InterruptsLocking { public: inline bool Lock(int* lockable) { *lockable = disable_interrupts(); return true; } inline void Unlock(int* lockable) { restore_interrupts(*lockable); } }; // InterruptsLocker class InterruptsLocker : AutoLocker { public: inline InterruptsLocker(bool alreadyLocked = false, bool lockIfNotLocked = true) : AutoLocker(&fState, alreadyLocked, lockIfNotLocked) { } private: int fState; }; // SpinLocking class SpinLocking { public: inline bool Lock(spinlock* lockable) { acquire_spinlock(lockable); return true; } inline void Unlock(spinlock* lockable) { release_spinlock(lockable); } }; // SpinLocker typedef AutoLocker SpinLocker; } // namespace BPrivate using BPrivate::AutoLocker; using BPrivate::MutexLocker; using BPrivate::RecursiveLocker; using BPrivate::BenaphoreLocker; using BPrivate::InterruptsLocker; using BPrivate::SpinLocker; #endif // KERNEL_UTIL_AUTO_LOCKER_H