512 lines
10 KiB
C
512 lines
10 KiB
C
/*
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* Copyright (C) 2008 Tobias Brunner
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* Copyright (C) 2008 Martin Willi
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* Hochschule fuer Technik Rapperswil
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*
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* This program is free software; you can redistribute it and/or modify it
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* under the terms of the GNU General Public License as published by the
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* Free Software Foundation; either version 2 of the License, or (at your
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* option) any later version. See <http://www.fsf.org/copyleft/gpl.txt>.
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*
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* This program is distributed in the hope that it will be useful, but
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* WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY
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* or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
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* for more details.
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*
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* $Id$
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*/
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#define _GNU_SOURCE
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#include <pthread.h>
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#include <sys/time.h>
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#include <stdint.h>
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#include <time.h>
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#include <errno.h>
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#include "mutex.h"
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#include <library.h>
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#include <debug.h>
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typedef struct private_mutex_t private_mutex_t;
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typedef struct private_r_mutex_t private_r_mutex_t;
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typedef struct private_condvar_t private_condvar_t;
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typedef struct private_rwlock_t private_rwlock_t;
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#ifdef LOCK_PROFILER
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/**
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* Do not report mutexes with an overall waiting time smaller than this (in us)
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*/
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#define PROFILE_TRESHHOLD 1000
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#include <utils/backtrace.h>
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typedef struct lock_profile_t lock_profile_t;
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struct lock_profile_t {
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/**
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* how long threads have waited for the lock in this mutex so far
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*/
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struct timeval waited;
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/**
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* backtrace where mutex has been created
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*/
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backtrace_t *backtrace;
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};
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/**
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* Print and cleanup mutex profiler
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*/
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static void profiler_cleanup(lock_profile_t *profile)
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{
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if (profile->waited.tv_sec > 0 ||
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profile->waited.tv_usec > PROFILE_TRESHHOLD)
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{
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fprintf(stderr, "%d.%06ds in lock created at:",
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profile->waited.tv_sec, profile->waited.tv_usec);
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profile->backtrace->log(profile->backtrace, stderr);
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}
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profile->backtrace->destroy(profile->backtrace);
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}
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/**
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* Initialize mutex profiler
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*/
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static void profiler_init(lock_profile_t *profile)
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{
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profile->backtrace = backtrace_create(3);
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timerclear(&profile->waited);
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}
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#define profiler_start(profile) { \
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struct timeval _start, _end, _diff; \
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gettimeofday(&_start, NULL);
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#define profiler_end(profile) \
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gettimeofday(&_end, NULL); \
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timersub(&_end, &_start, &_diff); \
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timeradd(&(profile)->waited, &_diff, &(profile)->waited); }
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#else /* !LOCK_PROFILER */
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#define lock_profile_t struct {}
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#define profiler_cleanup(...) {}
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#define profiler_init(...) {}
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#define profiler_start(...) {}
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#define profiler_end(...) {}
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#endif /* LOCK_PROFILER */
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/**
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* private data of mutex
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*/
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struct private_mutex_t {
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/**
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* public functions
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*/
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mutex_t public;
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/**
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* wrapped pthread mutex
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*/
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pthread_mutex_t mutex;
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/**
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* is this a recursiv emutex, implementing private_r_mutex_t?
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*/
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bool recursive;
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/**
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* profiling info, if enabled
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*/
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lock_profile_t profile;
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};
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/**
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* private data of mutex, extended by recursive locking information
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*/
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struct private_r_mutex_t {
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/**
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* Extends private_mutex_t
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*/
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private_mutex_t generic;
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/**
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* thread which currently owns mutex
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*/
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pthread_t thread;
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/**
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* times we have locked the lock, stored per thread
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*/
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pthread_key_t times;
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};
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/**
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* private data of condvar
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*/
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struct private_condvar_t {
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/**
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* public functions
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*/
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condvar_t public;
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/**
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* wrapped pthread condvar
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*/
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pthread_cond_t condvar;
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};
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/**
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* private data of rwlock
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*/
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struct private_rwlock_t {
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/**
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* public functions
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*/
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rwlock_t public;
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/**
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* wrapped pthread rwlock
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*/
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pthread_rwlock_t rwlock;
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/**
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* profiling info, if enabled
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*/
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lock_profile_t profile;
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};
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/**
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* Implementation of mutex_t.lock.
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*/
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static void lock(private_mutex_t *this)
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{
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profiler_start(&this->profile);
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if (pthread_mutex_lock(&this->mutex))
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{
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DBG1("!!!! MUTEX %sLOCK ERROR, your code is buggy !!!", "");
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}
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profiler_end(&this->profile);
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}
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/**
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* Implementation of mutex_t.unlock.
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*/
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static void unlock(private_mutex_t *this)
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{
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if (pthread_mutex_unlock(&this->mutex))
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{
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DBG1("!!!! MUTEX %sLOCK ERROR, your code is buggy !!!", "UN");
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}
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}
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/**
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* Implementation of mutex_t.lock.
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*/
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static void lock_r(private_r_mutex_t *this)
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{
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pthread_t self = pthread_self();
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if (this->thread == self)
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{
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uintptr_t times;
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/* times++ */
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times = (uintptr_t)pthread_getspecific(this->times);
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pthread_setspecific(this->times, (void*)times + 1);
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}
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else
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{
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lock(&this->generic);
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this->thread = self;
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/* times = 1 */
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pthread_setspecific(this->times, (void*)1);
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}
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}
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/**
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* Implementation of mutex_t.unlock.
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*/
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static void unlock_r(private_r_mutex_t *this)
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{
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uintptr_t times;
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/* times-- */
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times = (uintptr_t)pthread_getspecific(this->times);
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pthread_setspecific(this->times, (void*)--times);
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if (times == 0)
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{
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this->thread = 0;
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unlock(&this->generic);
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}
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}
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/**
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* Implementation of mutex_t.destroy
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*/
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static void mutex_destroy(private_mutex_t *this)
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{
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profiler_cleanup(&this->profile);
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pthread_mutex_destroy(&this->mutex);
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free(this);
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}
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/**
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* Implementation of mutex_t.destroy for recursive mutex'
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*/
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static void mutex_destroy_r(private_r_mutex_t *this)
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{
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profiler_cleanup(&this->generic.profile);
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pthread_mutex_destroy(&this->generic.mutex);
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pthread_key_delete(this->times);
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free(this);
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}
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/*
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* see header file
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*/
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mutex_t *mutex_create(mutex_type_t type)
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{
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switch (type)
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{
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case MUTEX_RECURSIVE:
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{
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private_r_mutex_t *this = malloc_thing(private_r_mutex_t);
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this->generic.public.lock = (void(*)(mutex_t*))lock_r;
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this->generic.public.unlock = (void(*)(mutex_t*))unlock_r;
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this->generic.public.destroy = (void(*)(mutex_t*))mutex_destroy_r;
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pthread_mutex_init(&this->generic.mutex, NULL);
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pthread_key_create(&this->times, NULL);
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this->generic.recursive = TRUE;
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profiler_init(&this->generic.profile);
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this->thread = 0;
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return &this->generic.public;
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}
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case MUTEX_DEFAULT:
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default:
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{
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private_mutex_t *this = malloc_thing(private_mutex_t);
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this->public.lock = (void(*)(mutex_t*))lock;
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this->public.unlock = (void(*)(mutex_t*))unlock;
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this->public.destroy = (void(*)(mutex_t*))mutex_destroy;
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pthread_mutex_init(&this->mutex, NULL);
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this->recursive = FALSE;
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profiler_init(&this->profile);
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return &this->public;
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}
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}
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}
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/**
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* Implementation of condvar_t.wait.
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*/
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static void wait(private_condvar_t *this, private_mutex_t *mutex)
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{
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if (mutex->recursive)
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{
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private_r_mutex_t* recursive = (private_r_mutex_t*)mutex;
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/* mutex owner gets cleared during condvar wait */
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recursive->thread = 0;
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pthread_cond_wait(&this->condvar, &mutex->mutex);
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recursive->thread = pthread_self();
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}
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else
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{
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pthread_cond_wait(&this->condvar, &mutex->mutex);
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}
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}
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/**
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* Implementation of condvar_t.timed_wait_abs.
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*/
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static bool timed_wait_abs(private_condvar_t *this, private_mutex_t *mutex,
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timeval_t time)
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{
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struct timespec ts;
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bool timed_out;
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ts.tv_sec = time.tv_sec;
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ts.tv_nsec = time.tv_usec * 1000;
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if (mutex->recursive)
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{
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private_r_mutex_t* recursive = (private_r_mutex_t*)mutex;
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recursive->thread = 0;
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timed_out = pthread_cond_timedwait(&this->condvar, &mutex->mutex,
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&ts) == ETIMEDOUT;
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recursive->thread = pthread_self();
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}
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else
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{
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timed_out = pthread_cond_timedwait(&this->condvar, &mutex->mutex,
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&ts) == ETIMEDOUT;
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}
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return timed_out;
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}
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/**
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* Implementation of condvar_t.timed_wait.
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*/
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static bool timed_wait(private_condvar_t *this, private_mutex_t *mutex,
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u_int timeout)
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{
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timeval_t tv;
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u_int s, ms;
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gettimeofday(&tv, NULL);
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s = timeout / 1000;
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ms = timeout % 1000;
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tv.tv_sec += s;
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tv.tv_usec += ms * 1000;
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if (tv.tv_usec > 1000000 /* 1s */)
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{
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tv.tv_usec -= 1000000;
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tv.tv_sec++;
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}
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return timed_wait_abs(this, mutex, tv);
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}
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/**
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* Implementation of condvar_t.signal.
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*/
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static void signal(private_condvar_t *this)
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{
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pthread_cond_signal(&this->condvar);
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}
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/**
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* Implementation of condvar_t.broadcast.
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*/
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static void broadcast(private_condvar_t *this)
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{
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pthread_cond_broadcast(&this->condvar);
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}
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/**
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* Implementation of condvar_t.destroy
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*/
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static void condvar_destroy(private_condvar_t *this)
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{
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pthread_cond_destroy(&this->condvar);
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free(this);
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}
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/*
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* see header file
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*/
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condvar_t *condvar_create(condvar_type_t type)
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{
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switch (type)
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{
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case CONDVAR_DEFAULT:
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default:
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{
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private_condvar_t *this = malloc_thing(private_condvar_t);
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this->public.wait = (void(*)(condvar_t*, mutex_t *mutex))wait;
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this->public.timed_wait = (bool(*)(condvar_t*, mutex_t *mutex, u_int timeout))timed_wait;
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this->public.timed_wait_abs = (bool(*)(condvar_t*, mutex_t *mutex, timeval_t time))timed_wait_abs;
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this->public.signal = (void(*)(condvar_t*))signal;
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this->public.broadcast = (void(*)(condvar_t*))broadcast;
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this->public.destroy = (void(*)(condvar_t*))condvar_destroy;
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pthread_cond_init(&this->condvar, NULL);
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return &this->public;
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}
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}
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}
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/**
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* Implementation of rwlock_t.read_lock
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*/
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static void read_lock(private_rwlock_t *this)
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{
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profiler_start(&this->profile);
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pthread_rwlock_rdlock(&this->rwlock);
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profiler_end(&this->profile);
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}
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/**
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* Implementation of rwlock_t.write_lock
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*/
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static void write_lock(private_rwlock_t *this)
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{
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profiler_start(&this->profile);
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pthread_rwlock_wrlock(&this->rwlock);
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profiler_end(&this->profile);
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}
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/**
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* Implementation of rwlock_t.try_write_lock
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*/
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static bool try_write_lock(private_rwlock_t *this)
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{
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return pthread_rwlock_trywrlock(&this->rwlock) == 0;
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}
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/**
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* Implementation of rwlock_t.unlock
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*/
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static void rw_unlock(private_rwlock_t *this)
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{
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pthread_rwlock_unlock(&this->rwlock);
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}
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/**
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* Implementation of rwlock_t.destroy
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*/
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static void rw_destroy(private_rwlock_t *this)
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{
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pthread_rwlock_destroy(&this->rwlock);
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profiler_cleanup(&this->profile);
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free(this);
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}
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/*
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* see header file
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*/
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rwlock_t *rwlock_create(rwlock_type_t type)
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{
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switch (type)
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{
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case RWLOCK_DEFAULT:
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default:
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{
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private_rwlock_t *this = malloc_thing(private_rwlock_t);
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this->public.read_lock = (void(*)(rwlock_t*))read_lock;
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this->public.write_lock = (void(*)(rwlock_t*))write_lock;
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this->public.try_write_lock = (bool(*)(rwlock_t*))try_write_lock;
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this->public.unlock = (void(*)(rwlock_t*))rw_unlock;
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this->public.destroy = (void(*)(rwlock_t*))rw_destroy;
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pthread_rwlock_init(&this->rwlock, NULL);
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profiler_init(&this->profile);
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return &this->public;
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}
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}
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}
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