mirror of
https://github.com/mariadb-corporation/mariadb-columnstore-engine.git
synced 2025-05-31 11:41:14 +03:00
254 lines
7.0 KiB
C++
254 lines
7.0 KiB
C++
/* Copyright (C) 2014 InfiniDB, Inc.
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This program is free software; you can redistribute it and/or
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modify it under the terms of the GNU General Public License
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as published by the Free Software Foundation; version 2 of
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the License.
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This program is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with this program; if not, write to the Free Software
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Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston,
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MA 02110-1301, USA. */
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/******************************************************************************
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* $Id$
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*
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*****************************************************************************/
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/** @file
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* class RWLock interface
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*/
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#ifndef RWLOCK_H_
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#define RWLOCK_H_
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#include <unistd.h>
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#include <stdexcept>
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#include <boost/interprocess/shared_memory_object.hpp>
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#include <boost/interprocess/mapped_region.hpp>
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#include <boost/interprocess/sync/interprocess_semaphore.hpp>
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#include <boost/date_time/posix_time/posix_time.hpp>
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#if defined(_MSC_VER) && defined(xxxRWLOCK_DLLEXPORT)
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#define EXPORT __declspec(dllexport)
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#else
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#define EXPORT
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#endif
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namespace rwlock
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{
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/// the layout of the shmseg
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struct State {
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#ifdef _MSC_VER
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volatile LONG writerswaiting;
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volatile LONG writing;
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volatile LONG readerswaiting;
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volatile LONG reading;
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#else
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volatile int writerswaiting;
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volatile int writing;
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volatile int readerswaiting;
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volatile int reading;
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#endif
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boost::interprocess::interprocess_semaphore sems[3];
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};
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/* the lock state without the semaphores, passed out by timed_write_lock() for
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class RWLockMonitor
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*/
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struct LockState {
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#ifdef _MSC_VER
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LONG writerswaiting;
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LONG writing;
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LONG readerswaiting;
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LONG reading;
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bool mutexLocked;
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#else
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int writerswaiting;
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int writing;
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int readerswaiting;
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int reading;
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bool mutexLocked;
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#endif
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};
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class RWLockShmImpl
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{
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public:
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static RWLockShmImpl* makeRWLockShmImpl(int key, bool* excl=0);
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boost::interprocess::shared_memory_object fStateShm;
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boost::interprocess::mapped_region fRegion;
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State *fState;
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std::string keyString() { return fKeyString; }
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private:
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explicit RWLockShmImpl(int key, bool excl=false);
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~RWLockShmImpl();
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RWLockShmImpl(const RWLockShmImpl& rhs);
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RWLockShmImpl& operator=(const RWLockShmImpl& rhs);
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std::string fKeyString;
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};
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class not_excl : public std::exception
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{
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public:
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virtual const char* what() const throw() {
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return "not_excl";
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}
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};
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class wouldblock : public std::exception
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{
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public:
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virtual const char* what() const throw() {
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return "wouldblock";
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}
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};
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/** @brief Implements RW locks for use across threads & processes
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*
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* Implements RW locks for use across threads & processes. Every
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* instance that shares a lock must be instantiated using the same
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* key. There is 'no limit' on the number of RW locks that can
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* exist on the system at any one time.
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*
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* Summary of operation:
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* - readers can work concurrently
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* - writers get exclusive access
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* - writers have priority
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* - all state persists across all invocations sharing a given key
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*
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* Note: because state has to persist, it will have to be cleaned
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* up somewhere else. Crashes while holding a read or write lock will
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* eventually deadlock the set of processes that share the same key obviously.
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*/
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class RWLock {
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public:
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// semaphore numbers
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static const int MUTEX=0;
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static const int READERS=1;
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static const int WRITERS=2;
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/** @brief Keyed constructor.
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*
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* Instantiate an RWLock with the given key. All instances that
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* share a key share the same lock.
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*
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* @param key The key
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* @param excl If true and this is the first instance with the
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* supplied key, it will return holding the write lock. If true and
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* this is not the first instance, it will throw not_excl. The intent
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* is similar to the IPC_EXCL flag in the sem/shm implementations.
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*/
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EXPORT explicit RWLock(int key, bool* excl = 0);
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EXPORT ~RWLock();
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/** @brief Grab a read lock
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*
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* Grab a read lock. This will block iff writers are waiting or
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* a writer is active. The version with priority ignores any
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* waiting threads and grabs the lock.
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*
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* @param block (For testing only) If false, will throw
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* wouldblock instead of blocking
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*/
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EXPORT void read_lock(bool block = true);
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EXPORT void read_lock_priority(bool block = true);
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/** @brief Release a read lock.
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*
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* Release a read lock.
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*/
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EXPORT void read_unlock();
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/** @brief Grab a write lock
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*
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* Grab a write lock. This will block while another writer or reader is
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* active and will have exclusive access on waking.
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*
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* @param block (For testing only) If false, will throw
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* wouldblock instead of blocking
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*/
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EXPORT void write_lock(bool block = true);
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/** @brief A timed write lock.
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*
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* Queues up for the write lock for a specified amount of time. Returns
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* true if it got the lock, return false if it timed out first.
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* If the timeout happens, it will also return the lock state if passed
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* a non-NULL LockState struct. This is a specialization for supporting
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* the RWLockMonitor class.
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*/
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EXPORT bool timed_write_lock(const struct timespec &ts,
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struct LockState *state = 0);
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/** @brief Release a write lock.
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*
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* Release a write lock.
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*/
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EXPORT void write_unlock();
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/* note: these haven't been proven yet */
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/** @brief Upgrade a read lock to a write lock
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*
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* Upgrade a read lock to a write lock. It may have to block
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* if there are other readers currently reading. No guarantees of atomicity.
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*/
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EXPORT void upgrade_to_write();
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/** @brief Downgrade a write lock to a read lock
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*
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* Downgrade a write lock to a read lock. The conversion happens
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* atomically.
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*/
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EXPORT void downgrade_to_read();
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/** @brief Reset the lock's state (Use with caution!)
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*
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* If the lock gets into a bad state in testing or something,
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* this will reset the state.
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* @warning This is safe only if there are no other threads using this
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* lock.
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*/
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EXPORT void reset();
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/* These are for white box testing only */
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inline void lock() { down(MUTEX, true); }
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inline void unlock() { up(MUTEX); }
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inline int getWriting() const { return fPImpl->fState->writing; }
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inline int getReading() const { return fPImpl->fState->reading; }
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inline int getWritersWaiting() const { return fPImpl->fState->writerswaiting; }
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inline int getReadersWaiting() const { return fPImpl->fState->readerswaiting; }
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LockState getLockState();
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private:
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RWLock(const RWLock& rwl);
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RWLock& operator=(const RWLock& rwl);
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inline int getSemval(int) const { return 0; }
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void down(int num, bool block = true);
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bool timed_down(int num, const boost::posix_time::ptime &ts); // to support timed_write_lock()
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void up(int num);
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RWLockShmImpl* fPImpl;
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};
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} //namespace rwlock
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#undef EXPORT
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#endif
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// vim:ts=4 sw=4:
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