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/*
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* Asterisk - - An open source telephony toolkit .
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*
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* Copyright ( C ) 1999 - 2010 , Digium , Inc .
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*
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* Mark Spencer < markster @ digium . com >
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*
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* See http : //www.asterisk.org for more information about
* the Asterisk project . Please do not directly contact
* any of the maintainers of this project for assistance ;
* the project provides a web site , mailing lists and IRC
* channels for your use .
*
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* This program is free software , distributed under the terms of
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* the GNU General Public License Version 2. See the LICENSE file
* at the top of the source tree .
*/
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/*! \file
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* \ brief Asterisk locking - related definitions :
* - ast_mutext_t , ast_rwlock_t and related functions ;
* - atomic arithmetic instructions ;
* - wrappers for channel locking .
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*
* - See \ ref LockDef
*/
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/*! \page LockDef Asterisk thread locking models
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*
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* This file provides different implementation of the functions ,
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* depending on the platform , the use of DEBUG_THREADS , and the way
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* module - level mutexes are initialized .
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*
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* - \ b static : the mutex is assigned the value AST_MUTEX_INIT_VALUE
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* this is done at compile time , and is the way used on Linux .
* This method is not applicable to all platforms e . g . when the
* initialization needs that some code is run .
*
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* - \ b through constructors : for each mutex , a constructor function is
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* defined , which then runs when the program ( or the module )
* starts . The problem with this approach is that there is a
* lot of code duplication ( a new block of code is created for
* each mutex ) . Also , it does not prevent a user from declaring
* a global mutex without going through the wrapper macros ,
* so sane programming practices are still required .
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*/
# ifndef _ASTERISK_LOCK_H
# define _ASTERISK_LOCK_H
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# include <pthread.h>
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# include <time.h>
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# include <sys/param.h>
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# ifdef HAVE_BKTR
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# include <execinfo.h>
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# endif
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# ifndef HAVE_PTHREAD_RWLOCK_TIMEDWRLOCK
# include "asterisk/time.h"
# endif
Convert the ast_channel data structure over to the astobj2 framework.
There is a lot that could be said about this, but the patch is a big
improvement for performance, stability, code maintainability,
and ease of future code development.
The channel list is no longer an unsorted linked list. The main container
for channels is an astobj2 hash table. All of the code related to searching
for channels or iterating active channels has been rewritten. Let n be
the number of active channels. Iterating the channel list has gone from
O(n^2) to O(n). Searching for a channel by name went from O(n) to O(1).
Searching for a channel by extension is still O(n), but uses a new method
for doing so, which is more efficient.
The ast_channel object is now a reference counted object. The benefits
here are plentiful. Some benefits directly related to issues in the
previous code include:
1) When threads other than the channel thread owning a channel wanted
access to a channel, it had to hold the lock on it to ensure that it didn't
go away. This is no longer a requirement. Holding a reference is
sufficient.
2) There are places that now require less dealing with channel locks.
3) There are places where channel locks are held for much shorter periods
of time.
4) There are places where dealing with more than one channel at a time becomes
_MUCH_ easier. ChanSpy is a great example of this. Writing code in the
future that deals with multiple channels will be much easier.
Some additional information regarding channel locking and reference count
handling can be found in channel.h, where a new section has been added that
discusses some of the rules associated with it.
Mark Michelson also assisted with the development of this patch. He did the
conversion of ChanSpy and introduced a new API, ast_autochan, which makes it
much easier to deal with holding on to a channel pointer for an extended period
of time and having it get automatically updated if the channel gets masqueraded.
Mark was also a huge help in the code review process.
Thanks to David Vossel for his assistance with this branch, as well. David
did the conversion of the DAHDIScan application by making it become a wrapper
for ChanSpy internally.
The changes come from the svn/asterisk/team/russell/ast_channel_ao2 branch.
Review: http://reviewboard.digium.com/r/203/
git-svn-id: https://origsvn.digium.com/svn/asterisk/trunk@190423 65c4cc65-6c06-0410-ace0-fbb531ad65f3
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# include "asterisk/backtrace.h"
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# include "asterisk/logger.h"
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# include "asterisk/compiler.h"
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# define AST_PTHREADT_NULL (pthread_t) -1
# define AST_PTHREADT_STOP (pthread_t) -2
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# if (defined(SOLARIS) || defined(BSD))
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# define AST_MUTEX_INIT_W_CONSTRUCTORS
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# endif /* SOLARIS || BSD */
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/* Asterisk REQUIRES recursive (not error checking) mutexes
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and will not run without them . */
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# if defined(HAVE_PTHREAD_RECURSIVE_MUTEX_INITIALIZER_NP) && defined(HAVE_PTHREAD_MUTEX_RECURSIVE_NP)
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# define PTHREAD_MUTEX_INIT_VALUE PTHREAD_RECURSIVE_MUTEX_INITIALIZER_NP
# define AST_MUTEX_KIND PTHREAD_MUTEX_RECURSIVE_NP
# else
# define PTHREAD_MUTEX_INIT_VALUE PTHREAD_MUTEX_INITIALIZER
# define AST_MUTEX_KIND PTHREAD_MUTEX_RECURSIVE
# endif /* PTHREAD_RECURSIVE_MUTEX_INITIALIZER_NP */
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# ifdef HAVE_PTHREAD_RWLOCK_INITIALIZER
# define __AST_RWLOCK_INIT_VALUE PTHREAD_RWLOCK_INITIALIZER
# else /* HAVE_PTHREAD_RWLOCK_INITIALIZER */
# define __AST_RWLOCK_INIT_VALUE {0}
# endif /* HAVE_PTHREAD_RWLOCK_INITIALIZER */
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# ifdef HAVE_BKTR
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# define AST_LOCK_TRACK_INIT_VALUE { { NULL }, { 0 }, 0, { NULL }, { 0 }, {{{ 0 }}}, PTHREAD_MUTEX_INIT_VALUE }
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# else
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# define AST_LOCK_TRACK_INIT_VALUE { { NULL }, { 0 }, 0, { NULL }, { 0 }, PTHREAD_MUTEX_INIT_VALUE }
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# endif
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# define AST_MUTEX_INIT_VALUE { PTHREAD_MUTEX_INIT_VALUE, NULL, 1 }
# define AST_MUTEX_INIT_VALUE_NOTRACKING { PTHREAD_MUTEX_INIT_VALUE, NULL, 0 }
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# define AST_RWLOCK_INIT_VALUE { __AST_RWLOCK_INIT_VALUE, NULL, 1 }
# define AST_RWLOCK_INIT_VALUE_NOTRACKING { __AST_RWLOCK_INIT_VALUE, NULL, 0 }
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# define AST_MAX_REENTRANCY 10
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struct ast_channel ;
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struct ast_lock_track {
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const char * file [ AST_MAX_REENTRANCY ] ;
int lineno [ AST_MAX_REENTRANCY ] ;
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int reentrancy ;
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const char * func [ AST_MAX_REENTRANCY ] ;
pthread_t thread [ AST_MAX_REENTRANCY ] ;
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# ifdef HAVE_BKTR
struct ast_bt backtrace [ AST_MAX_REENTRANCY ] ;
# endif
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pthread_mutex_t reentr_mutex ;
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} ;
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/*! \brief Structure for mutex and tracking information.
*
* We have tracking information in this structure regardless of DEBUG_THREADS being enabled .
* The information will just be ignored in the core if a module does not request it . .
*/
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struct ast_mutex_info {
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pthread_mutex_t mutex ;
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/*! Track which thread holds this mutex */
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struct ast_lock_track * track ;
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unsigned int tracking : 1 ;
} ;
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/*! \brief Structure for rwlock and tracking information.
*
* We have tracking information in this structure regardless of DEBUG_THREADS being enabled .
* The information will just be ignored in the core if a module does not request it . .
*/
struct ast_rwlock_info {
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pthread_rwlock_t lock ;
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/*! Track which thread holds this lock */
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struct ast_lock_track * track ;
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unsigned int tracking : 1 ;
} ;
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typedef struct ast_mutex_info ast_mutex_t ;
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typedef struct ast_rwlock_info ast_rwlock_t ;
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typedef pthread_cond_t ast_cond_t ;
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int __ast_pthread_mutex_init ( int tracking , const char * filename , int lineno , const char * func , const char * mutex_name , ast_mutex_t * t ) ;
int __ast_pthread_mutex_destroy ( const char * filename , int lineno , const char * func , const char * mutex_name , ast_mutex_t * t ) ;
int __ast_pthread_mutex_lock ( const char * filename , int lineno , const char * func , const char * mutex_name , ast_mutex_t * t ) ;
int __ast_pthread_mutex_trylock ( const char * filename , int lineno , const char * func , const char * mutex_name , ast_mutex_t * t ) ;
int __ast_pthread_mutex_unlock ( const char * filename , int lineno , const char * func , const char * mutex_name , ast_mutex_t * t ) ;
# define ast_mutex_init(pmutex) __ast_pthread_mutex_init(1, __FILE__, __LINE__, __PRETTY_FUNCTION__, #pmutex, pmutex)
# define ast_mutex_init_notracking(pmutex) __ast_pthread_mutex_init(0, __FILE__, __LINE__, __PRETTY_FUNCTION__, #pmutex, pmutex)
# define ast_mutex_destroy(a) __ast_pthread_mutex_destroy(__FILE__, __LINE__, __PRETTY_FUNCTION__, #a, a)
# define ast_mutex_lock(a) __ast_pthread_mutex_lock(__FILE__, __LINE__, __PRETTY_FUNCTION__, #a, a)
# define ast_mutex_unlock(a) __ast_pthread_mutex_unlock(__FILE__, __LINE__, __PRETTY_FUNCTION__, #a, a)
# define ast_mutex_trylock(a) __ast_pthread_mutex_trylock(__FILE__, __LINE__, __PRETTY_FUNCTION__, #a, a)
int __ast_cond_init ( const char * filename , int lineno , const char * func , const char * cond_name , ast_cond_t * cond , pthread_condattr_t * cond_attr ) ;
int __ast_cond_signal ( const char * filename , int lineno , const char * func , const char * cond_name , ast_cond_t * cond ) ;
int __ast_cond_broadcast ( const char * filename , int lineno , const char * func , const char * cond_name , ast_cond_t * cond ) ;
int __ast_cond_destroy ( const char * filename , int lineno , const char * func , const char * cond_name , ast_cond_t * cond ) ;
int __ast_cond_wait ( const char * filename , int lineno , const char * func , const char * cond_name , const char * mutex_name , ast_cond_t * cond , ast_mutex_t * t ) ;
int __ast_cond_timedwait ( const char * filename , int lineno , const char * func , const char * cond_name , const char * mutex_name , ast_cond_t * cond , ast_mutex_t * t , const struct timespec * abstime ) ;
# define ast_cond_init(cond, attr) __ast_cond_init(__FILE__, __LINE__, __PRETTY_FUNCTION__, #cond, cond, attr)
# define ast_cond_destroy(cond) __ast_cond_destroy(__FILE__, __LINE__, __PRETTY_FUNCTION__, #cond, cond)
# define ast_cond_signal(cond) __ast_cond_signal(__FILE__, __LINE__, __PRETTY_FUNCTION__, #cond, cond)
# define ast_cond_broadcast(cond) __ast_cond_broadcast(__FILE__, __LINE__, __PRETTY_FUNCTION__, #cond, cond)
# define ast_cond_wait(cond, mutex) __ast_cond_wait(__FILE__, __LINE__, __PRETTY_FUNCTION__, #cond, #mutex, cond, mutex)
# define ast_cond_timedwait(cond, mutex, time) __ast_cond_timedwait(__FILE__, __LINE__, __PRETTY_FUNCTION__, #cond, #mutex, cond, mutex, time)
int __ast_rwlock_init ( int tracking , const char * filename , int lineno , const char * func , const char * rwlock_name , ast_rwlock_t * t ) ;
int __ast_rwlock_destroy ( const char * filename , int lineno , const char * func , const char * rwlock_name , ast_rwlock_t * t ) ;
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int __ast_rwlock_unlock ( const char * filename , int lineno , const char * func , ast_rwlock_t * t , const char * name ) ;
int __ast_rwlock_rdlock ( const char * filename , int lineno , const char * func , ast_rwlock_t * t , const char * name ) ;
int __ast_rwlock_wrlock ( const char * filename , int lineno , const char * func , ast_rwlock_t * t , const char * name ) ;
int __ast_rwlock_timedrdlock ( const char * filename , int lineno , const char * func , ast_rwlock_t * t , const char * name , const struct timespec * abs_timeout ) ;
int __ast_rwlock_timedwrlock ( const char * filename , int lineno , const char * func , ast_rwlock_t * t , const char * name , const struct timespec * abs_timeout ) ;
int __ast_rwlock_tryrdlock ( const char * filename , int lineno , const char * func , ast_rwlock_t * t , const char * name ) ;
int __ast_rwlock_trywrlock ( const char * filename , int lineno , const char * func , ast_rwlock_t * t , const char * name ) ;
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/*!
* \ brief wrapper for rwlock with tracking enabled
* \ return 0 on success , non zero for error
* \ since 1.6 .1
*/
# define ast_rwlock_init(rwlock) __ast_rwlock_init(1, __FILE__, __LINE__, __PRETTY_FUNCTION__, #rwlock, rwlock)
/*!
* \ brief wrapper for ast_rwlock_init with tracking disabled
* \ return 0 on success , non zero for error
* \ since 1.6 .1
*/
# define ast_rwlock_init_notracking(rwlock) __ast_rwlock_init(0, __FILE__, __LINE__, __PRETTY_FUNCTION__, #rwlock, rwlock)
# define ast_rwlock_destroy(rwlock) __ast_rwlock_destroy(__FILE__, __LINE__, __PRETTY_FUNCTION__, #rwlock, rwlock)
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# define ast_rwlock_unlock(a) __ast_rwlock_unlock(__FILE__, __LINE__, __PRETTY_FUNCTION__, a, #a)
# define ast_rwlock_rdlock(a) __ast_rwlock_rdlock(__FILE__, __LINE__, __PRETTY_FUNCTION__, a, #a)
# define ast_rwlock_wrlock(a) __ast_rwlock_wrlock(__FILE__, __LINE__, __PRETTY_FUNCTION__, a, #a)
# define ast_rwlock_tryrdlock(a) __ast_rwlock_tryrdlock(__FILE__, __LINE__, __PRETTY_FUNCTION__, a, #a)
# define ast_rwlock_trywrlock(a) __ast_rwlock_trywrlock(__FILE__, __LINE__, __PRETTY_FUNCTION__, a, #a)
# define ast_rwlock_timedrdlock(a, b) __ast_rwlock_timedrdlock(__FILE__, __LINE__, __PRETTY_FUNCTION__, a, #a, b)
# define ast_rwlock_timedwrlock(a, b) __ast_rwlock_timedwrlock(__FILE__, __LINE__, __PRETTY_FUNCTION__, a, #a, b)
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# define ROFFSET ((lt->reentrancy > 0) ? (lt->reentrancy-1) : 0)
# ifdef DEBUG_THREADS
# define __ast_mutex_logger(...) do { if (canlog) ast_log(LOG_ERROR, __VA_ARGS__); else fprintf(stderr, __VA_ARGS__); } while (0)
# ifdef THREAD_CRASH
# define DO_THREAD_CRASH do { *((int *)(0)) = 1; } while(0)
# else
# define DO_THREAD_CRASH do { } while (0)
# endif
# include <errno.h>
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enum ast_lock_type {
AST_MUTEX ,
AST_RDLOCK ,
AST_WRLOCK ,
} ;
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/*!
* \ brief Store lock info for the current thread
*
* This function gets called in ast_mutex_lock ( ) and ast_mutex_trylock ( ) so
* that information about this lock can be stored in this thread ' s
* lock info struct . The lock is marked as pending as the thread is waiting
* on the lock . ast_mark_lock_acquired ( ) will mark it as held by this thread .
*/
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# if !defined(LOW_MEMORY)
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# ifdef HAVE_BKTR
void ast_store_lock_info ( enum ast_lock_type type , const char * filename ,
int line_num , const char * func , const char * lock_name , void * lock_addr , struct ast_bt * bt ) ;
# else
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void ast_store_lock_info ( enum ast_lock_type type , const char * filename ,
int line_num , const char * func , const char * lock_name , void * lock_addr ) ;
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# endif /* HAVE_BKTR */
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# else
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# ifdef HAVE_BKTR
# define ast_store_lock_info(I,DONT,CARE,ABOUT,THE,PARAMETERS,BUD)
# else
# define ast_store_lock_info(I,DONT,CARE,ABOUT,THE,PARAMETERS)
# endif /* HAVE_BKTR */
# endif /* !defined(LOW_MEMORY) */
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/*!
* \ brief Mark the last lock as acquired
*/
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# if !defined(LOW_MEMORY)
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void ast_mark_lock_acquired ( void * lock_addr ) ;
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# else
# define ast_mark_lock_acquired(ignore)
# endif
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/*!
* \ brief Mark the last lock as failed ( trylock )
*/
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# if !defined(LOW_MEMORY)
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void ast_mark_lock_failed ( void * lock_addr ) ;
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# else
# define ast_mark_lock_failed(ignore)
# endif
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/*!
* \ brief remove lock info for the current thread
*
* this gets called by ast_mutex_unlock so that information on the lock can
* be removed from the current thread ' s lock info struct .
*/
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# if !defined(LOW_MEMORY)
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# ifdef HAVE_BKTR
void ast_remove_lock_info ( void * lock_addr , struct ast_bt * bt ) ;
# else
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void ast_remove_lock_info ( void * lock_addr ) ;
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# endif /* HAVE_BKTR */
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void ast_suspend_lock_info ( void * lock_addr ) ;
void ast_restore_lock_info ( void * lock_addr ) ;
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# else
# ifdef HAVE_BKTR
# define ast_remove_lock_info(ignore,me)
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# else
# define ast_remove_lock_info(ignore)
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# endif /* HAVE_BKTR */
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# define ast_suspend_lock_info(ignore);
# define ast_restore_lock_info(ignore);
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# endif /* !defined(LOW_MEMORY) */
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/*!
* \ brief log info for the current lock with ast_log ( ) .
*
* this function would be mostly for debug . If you come across a lock
* that is unexpectedly but momentarily locked , and you wonder who
* are fighting with for the lock , this routine could be called , IF
* you have the thread debugging stuff turned on .
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* \ param this_lock_addr lock address to return lock information
* \ since 1.6 .1
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*/
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void ast_log_show_lock ( void * this_lock_addr ) ;
/*!
* \ brief Generate a lock dump equivalent to " core show locks " .
*
* The lock dump generated is generally too large to be output by a
* single ast_verbose / log / debug / etc . call . Only ast_cli ( ) handles it
* properly without changing BUFSIZ in logger . c .
*
* Note : This must be ast_free ( ) d when you ' re done with it .
*
* \ retval An ast_str containing the lock dump
* \ retval NULL on error
* \ since 12
*/
struct ast_str * ast_dump_locks ( void ) ;
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/*!
* \ brief retrieve lock info for the specified mutex
*
* this gets called during deadlock avoidance , so that the information may
* be preserved as to what location originally acquired the lock .
*/
# if !defined(LOW_MEMORY)
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int ast_find_lock_info ( void * lock_addr , char * filename , size_t filename_size , int * lineno , char * func , size_t func_size , char * mutex_name , size_t mutex_name_size ) ;
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# else
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# define ast_find_lock_info(a,b,c,d,e,f,g,h) -1
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# endif
/*!
* \ brief Unlock a lock briefly
*
* used during deadlock avoidance , to preserve the original location where
* a lock was originally acquired .
*/
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# define CHANNEL_DEADLOCK_AVOIDANCE(chan) \
do { \
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char __filename [ 80 ] , __func [ 80 ] , __mutex_name [ 80 ] ; \
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int __lineno ; \
Convert the ast_channel data structure over to the astobj2 framework.
There is a lot that could be said about this, but the patch is a big
improvement for performance, stability, code maintainability,
and ease of future code development.
The channel list is no longer an unsorted linked list. The main container
for channels is an astobj2 hash table. All of the code related to searching
for channels or iterating active channels has been rewritten. Let n be
the number of active channels. Iterating the channel list has gone from
O(n^2) to O(n). Searching for a channel by name went from O(n) to O(1).
Searching for a channel by extension is still O(n), but uses a new method
for doing so, which is more efficient.
The ast_channel object is now a reference counted object. The benefits
here are plentiful. Some benefits directly related to issues in the
previous code include:
1) When threads other than the channel thread owning a channel wanted
access to a channel, it had to hold the lock on it to ensure that it didn't
go away. This is no longer a requirement. Holding a reference is
sufficient.
2) There are places that now require less dealing with channel locks.
3) There are places where channel locks are held for much shorter periods
of time.
4) There are places where dealing with more than one channel at a time becomes
_MUCH_ easier. ChanSpy is a great example of this. Writing code in the
future that deals with multiple channels will be much easier.
Some additional information regarding channel locking and reference count
handling can be found in channel.h, where a new section has been added that
discusses some of the rules associated with it.
Mark Michelson also assisted with the development of this patch. He did the
conversion of ChanSpy and introduced a new API, ast_autochan, which makes it
much easier to deal with holding on to a channel pointer for an extended period
of time and having it get automatically updated if the channel gets masqueraded.
Mark was also a huge help in the code review process.
Thanks to David Vossel for his assistance with this branch, as well. David
did the conversion of the DAHDIScan application by making it become a wrapper
for ChanSpy internally.
The changes come from the svn/asterisk/team/russell/ast_channel_ao2 branch.
Review: http://reviewboard.digium.com/r/203/
git-svn-id: https://origsvn.digium.com/svn/asterisk/trunk@190423 65c4cc65-6c06-0410-ace0-fbb531ad65f3
2009-04-24 14:04:26 +00:00
int __res = ast_find_lock_info ( ao2_object_get_lockaddr ( chan ) , __filename , sizeof ( __filename ) , & __lineno , __func , sizeof ( __func ) , __mutex_name , sizeof ( __mutex_name ) ) ; \
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int __res2 = ast_channel_unlock ( chan ) ; \
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usleep ( 1 ) ; \
if ( __res < 0 ) { /* Shouldn't ever happen, but just in case... */ \
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if ( __res2 ) { \
ast_log ( LOG_WARNING , " Could not unlock channel '%s': %s and no lock info found! I will NOT try to relock. \n " , # chan , strerror ( __res2 ) ) ; \
} else { \
ast_channel_lock ( chan ) ; \
} \
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} else { \
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if ( __res2 ) { \
ast_log ( LOG_WARNING , " Could not unlock channel '%s': %s. {{{Originally locked at %s line %d: (%s) '%s'}}} I will NOT try to relock. \n " , # chan , strerror ( __res2 ) , __filename , __lineno , __func , __mutex_name ) ; \
} else { \
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__ao2_lock ( chan , AO2_LOCK_REQ_MUTEX , __filename , __func , __lineno , __mutex_name ) ; \
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} \
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} \
} while ( 0 )
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# define DEADLOCK_AVOIDANCE(lock) \
do { \
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char __filename [ 80 ] , __func [ 80 ] , __mutex_name [ 80 ] ; \
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int __lineno ; \
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int __res = ast_find_lock_info ( lock , __filename , sizeof ( __filename ) , & __lineno , __func , sizeof ( __func ) , __mutex_name , sizeof ( __mutex_name ) ) ; \
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int __res2 = ast_mutex_unlock ( lock ) ; \
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usleep ( 1 ) ; \
if ( __res < 0 ) { /* Shouldn't ever happen, but just in case... */ \
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if ( __res2 = = 0 ) { \
ast_mutex_lock ( lock ) ; \
} else { \
ast_log ( LOG_WARNING , " Could not unlock mutex '%s': %s and no lock info found! I will NOT try to relock. \n " , # lock , strerror ( __res2 ) ) ; \
} \
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} else { \
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if ( __res2 = = 0 ) { \
__ast_pthread_mutex_lock ( __filename , __lineno , __func , __mutex_name , lock ) ; \
} else { \
ast_log ( LOG_WARNING , " Could not unlock mutex '%s': %s. {{{Originally locked at %s line %d: (%s) '%s'}}} I will NOT try to relock. \n " , # lock , strerror ( __res2 ) , __filename , __lineno , __func , __mutex_name ) ; \
} \
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} \
} while ( 0 )
2008-04-16 20:54:41 +00:00
2008-06-27 17:02:56 +00:00
/*!
* \ brief Deadlock avoidance unlock
*
* In certain deadlock avoidance scenarios , there is more than one lock to be
* unlocked and relocked . Therefore , this pair of macros is provided for that
* purpose . Note that every DLA_UNLOCK _MUST_ be paired with a matching
* DLA_LOCK . The intent of this pair of macros is to be used around another
* set of deadlock avoidance code , mainly CHANNEL_DEADLOCK_AVOIDANCE , as the
* locking order specifies that we may safely lock a channel , followed by its
* pvt , with no worries about a deadlock . In any other scenario , this macro
* may not be safe to use .
*/
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# define DLA_UNLOCK(lock) \
do { \
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char __filename [ 80 ] , __func [ 80 ] , __mutex_name [ 80 ] ; \
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int __lineno ; \
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int __res = ast_find_lock_info ( lock , __filename , sizeof ( __filename ) , & __lineno , __func , sizeof ( __func ) , __mutex_name , sizeof ( __mutex_name ) ) ; \
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int __res2 = ast_mutex_unlock ( lock ) ;
2008-06-25 02:34:11 +00:00
2008-06-27 17:02:56 +00:00
/*!
* \ brief Deadlock avoidance lock
*
* In certain deadlock avoidance scenarios , there is more than one lock to be
* unlocked and relocked . Therefore , this pair of macros is provided for that
* purpose . Note that every DLA_UNLOCK _MUST_ be paired with a matching
* DLA_LOCK . The intent of this pair of macros is to be used around another
* set of deadlock avoidance code , mainly CHANNEL_DEADLOCK_AVOIDANCE , as the
* locking order specifies that we may safely lock a channel , followed by its
* pvt , with no worries about a deadlock . In any other scenario , this macro
* may not be safe to use .
*/
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# define DLA_LOCK(lock) \
if ( __res < 0 ) { /* Shouldn't ever happen, but just in case... */ \
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if ( __res2 ) { \
ast_log ( LOG_WARNING , " Could not unlock mutex '%s': %s and no lock info found! I will NOT try to relock. \n " , # lock , strerror ( __res2 ) ) ; \
} else { \
ast_mutex_lock ( lock ) ; \
} \
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} else { \
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if ( __res2 ) { \
ast_log ( LOG_WARNING , " Could not unlock mutex '%s': %s. {{{Originally locked at %s line %d: (%s) '%s'}}} I will NOT try to relock. \n " , # lock , strerror ( __res2 ) , __filename , __lineno , __func , __mutex_name ) ; \
} else { \
__ast_pthread_mutex_lock ( __filename , __lineno , __func , __mutex_name , lock ) ; \
} \
2008-06-25 02:34:11 +00:00
} \
} while ( 0 )
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static inline void ast_reentrancy_lock ( struct ast_lock_track * lt )
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{
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int res ;
if ( ( res = pthread_mutex_lock ( & lt - > reentr_mutex ) ) ) {
fprintf ( stderr , " ast_reentrancy_lock failed: '%s' (%d) \n " , strerror ( res ) , res ) ;
# if defined(DO_CRASH) || defined(THREAD_CRASH)
abort ( ) ;
# endif
}
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}
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static inline void ast_reentrancy_unlock ( struct ast_lock_track * lt )
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{
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int res ;
if ( ( res = pthread_mutex_unlock ( & lt - > reentr_mutex ) ) ) {
fprintf ( stderr , " ast_reentrancy_unlock failed: '%s' (%d) \n " , strerror ( res ) , res ) ;
# if defined(DO_CRASH) || defined(THREAD_CRASH)
abort ( ) ;
# endif
}
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}
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static inline void ast_reentrancy_init ( struct ast_lock_track * * plt )
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{
int i ;
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pthread_mutexattr_t reentr_attr ;
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struct ast_lock_track * lt = * plt ;
if ( ! lt ) {
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lt = * plt = ( struct ast_lock_track * ) calloc ( 1 , sizeof ( * lt ) ) ;
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}
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for ( i = 0 ; i < AST_MAX_REENTRANCY ; i + + ) {
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lt - > file [ i ] = NULL ;
lt - > lineno [ i ] = 0 ;
lt - > func [ i ] = NULL ;
lt - > thread [ i ] = 0 ;
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# ifdef HAVE_BKTR
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memset ( & lt - > backtrace [ i ] , 0 , sizeof ( lt - > backtrace [ i ] ) ) ;
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# endif
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}
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lt - > reentrancy = 0 ;
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pthread_mutexattr_init ( & reentr_attr ) ;
pthread_mutexattr_settype ( & reentr_attr , AST_MUTEX_KIND ) ;
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pthread_mutex_init ( & lt - > reentr_mutex , & reentr_attr ) ;
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pthread_mutexattr_destroy ( & reentr_attr ) ;
}
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static inline void delete_reentrancy_cs ( struct ast_lock_track * * plt )
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{
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struct ast_lock_track * lt ;
if ( * plt ) {
lt = * plt ;
pthread_mutex_destroy ( & lt - > reentr_mutex ) ;
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free ( lt ) ;
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* plt = NULL ;
}
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}
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# else /* !DEBUG_THREADS */
2005-08-31 02:43:44 +00:00
2010-04-22 19:08:01 +00:00
# define CHANNEL_DEADLOCK_AVOIDANCE(chan) \
ast_channel_unlock ( chan ) ; \
usleep ( 1 ) ; \
ast_channel_lock ( chan ) ;
2004-06-22 17:42:14 +00:00
2010-04-22 19:08:01 +00:00
# define DEADLOCK_AVOIDANCE(lock) \
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do { \
int __res ; \
if ( ! ( __res = ast_mutex_unlock ( lock ) ) ) { \
usleep ( 1 ) ; \
ast_mutex_lock ( lock ) ; \
} else { \
ast_log ( LOG_WARNING , " Failed to unlock mutex '%s' (%s). I will NOT try to relock. {{{ THIS IS A BUG. }}} \n " , # lock , strerror ( __res ) ) ; \
} \
} while ( 0 )
2007-08-03 19:41:42 +00:00
2010-04-22 19:08:01 +00:00
# define DLA_UNLOCK(lock) ast_mutex_unlock(lock)
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2010-04-22 19:08:01 +00:00
# define DLA_LOCK(lock) ast_mutex_lock(lock)
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2010-04-22 19:08:01 +00:00
# endif /* !DEBUG_THREADS */
2005-08-31 02:43:44 +00:00
2010-04-22 19:08:01 +00:00
# if defined(AST_MUTEX_INIT_W_CONSTRUCTORS)
/*
* If AST_MUTEX_INIT_W_CONSTRUCTORS is defined , use file scope constructors
* and destructors to create / destroy global mutexes .
*/
# define __AST_MUTEX_DEFINE(scope, mutex, init_val, track) \
scope ast_mutex_t mutex = init_val ; \
static void __attribute__ ( ( constructor ) ) init_ # # mutex ( void ) \
{ \
if ( track ) \
ast_mutex_init ( & mutex ) ; \
else \
ast_mutex_init_notracking ( & mutex ) ; \
} \
\
static void __attribute__ ( ( destructor ) ) fini_ # # mutex ( void ) \
{ \
ast_mutex_destroy ( & mutex ) ; \
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}
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# else /* !AST_MUTEX_INIT_W_CONSTRUCTORS */
/* By default, use static initialization of mutexes. */
# define __AST_MUTEX_DEFINE(scope, mutex, init_val, track) scope ast_mutex_t mutex = init_val
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# endif /* AST_MUTEX_INIT_W_CONSTRUCTORS */
2005-08-31 02:43:44 +00:00
2010-04-22 19:08:01 +00:00
# define AST_MUTEX_DEFINE_STATIC(mutex) __AST_MUTEX_DEFINE(static, mutex, AST_MUTEX_INIT_VALUE, 1)
# define AST_MUTEX_DEFINE_STATIC_NOTRACKING(mutex) __AST_MUTEX_DEFINE(static, mutex, AST_MUTEX_INIT_VALUE_NOTRACKING, 0)
2007-08-03 19:41:42 +00:00
2005-08-31 02:43:44 +00:00
2010-04-22 19:08:01 +00:00
/* Statically declared read/write locks */
# ifdef AST_MUTEX_INIT_W_CONSTRUCTORS
# define __AST_RWLOCK_DEFINE(scope, rwlock, init_val, track) \
scope ast_rwlock_t rwlock = init_val ; \
static void __attribute__ ( ( constructor ) ) init_ # # rwlock ( void ) \
{ \
if ( track ) \
ast_rwlock_init ( & rwlock ) ; \
else \
ast_rwlock_init_notracking ( & rwlock ) ; \
} \
static void __attribute__ ( ( destructor ) ) fini_ # # rwlock ( void ) \
{ \
ast_rwlock_destroy ( & rwlock ) ; \
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}
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# else
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# define __AST_RWLOCK_DEFINE(scope, rwlock, init_val, track) scope ast_rwlock_t rwlock = init_val
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# endif
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2010-04-22 19:08:01 +00:00
# define AST_RWLOCK_DEFINE_STATIC(rwlock) __AST_RWLOCK_DEFINE(static, rwlock, AST_RWLOCK_INIT_VALUE, 1)
# define AST_RWLOCK_DEFINE_STATIC_NOTRACKING(rwlock) __AST_RWLOCK_DEFINE(static, rwlock, AST_RWLOCK_INIT_VALUE_NOTRACKING, 0)
2005-08-31 02:43:44 +00:00
Add scoped locks to Asterisk.
With the SCOPED_LOCK macro, you can create a variable
that locks a specific lock and unlocks the lock when the
variable goes out of scope. This is useful for situations
where many breaks, continues, returns, or other interruptions
would require separate unlock statements. With a scoped lock,
these aren't necessary.
There are specializations for mutexes, read locks, write locks,
ao2 locks, ao2 read locks, ao2 write locks, and channel locks.
Each of these is a SCOPED_LOCK at heart though.
Review: https://reviewboard.asterisk.org/r/2060
git-svn-id: https://origsvn.digium.com/svn/asterisk/trunk@371582 65c4cc65-6c06-0410-ace0-fbb531ad65f3
2012-08-21 19:04:32 +00:00
/*!
* \ brief Scoped Locks
*
* Scoped locks provide a way to use RAII locks . In other words ,
* declaration of a scoped lock will automatically define and lock
* the lock . When the lock goes out of scope , it will automatically
* be unlocked .
*
2013-05-07 18:32:34 +00:00
* \ code
Add scoped locks to Asterisk.
With the SCOPED_LOCK macro, you can create a variable
that locks a specific lock and unlocks the lock when the
variable goes out of scope. This is useful for situations
where many breaks, continues, returns, or other interruptions
would require separate unlock statements. With a scoped lock,
these aren't necessary.
There are specializations for mutexes, read locks, write locks,
ao2 locks, ao2 read locks, ao2 write locks, and channel locks.
Each of these is a SCOPED_LOCK at heart though.
Review: https://reviewboard.asterisk.org/r/2060
git-svn-id: https://origsvn.digium.com/svn/asterisk/trunk@371582 65c4cc65-6c06-0410-ace0-fbb531ad65f3
2012-08-21 19:04:32 +00:00
* int some_function ( struct ast_channel * chan )
* {
* SCOPED_LOCK ( lock , chan , ast_channel_lock , ast_channel_unlock ) ;
*
* if ( ! strcmp ( ast_channel_name ( chan , " foo " ) ) {
* return 0 ;
* }
*
* return - 1 ;
* }
2013-05-07 18:32:34 +00:00
* \ endcode
Add scoped locks to Asterisk.
With the SCOPED_LOCK macro, you can create a variable
that locks a specific lock and unlocks the lock when the
variable goes out of scope. This is useful for situations
where many breaks, continues, returns, or other interruptions
would require separate unlock statements. With a scoped lock,
these aren't necessary.
There are specializations for mutexes, read locks, write locks,
ao2 locks, ao2 read locks, ao2 write locks, and channel locks.
Each of these is a SCOPED_LOCK at heart though.
Review: https://reviewboard.asterisk.org/r/2060
git-svn-id: https://origsvn.digium.com/svn/asterisk/trunk@371582 65c4cc65-6c06-0410-ace0-fbb531ad65f3
2012-08-21 19:04:32 +00:00
*
* In the above example , neither return path requires explicit unlocking
* of the channel .
*
* \ note
* Care should be taken when using SCOPED_LOCKS in conjunction with ao2 objects .
* ao2 objects should be unlocked before they are unreffed . Since SCOPED_LOCK runs
* once the variable goes out of scope , this can easily lead to situations where the
* variable gets unlocked after it is unreffed .
*
* \ param varname The unique name to give to the scoped lock . You are not likely to reference
* this outside of the SCOPED_LOCK invocation .
* \ param lock The variable to lock . This can be anything that can be passed to a locking
* or unlocking function .
* \ param lockfunc The function to call to lock the lock
* \ param unlockfunc The function to call to unlock the lock
*/
# define SCOPED_LOCK(varname, lock, lockfunc, unlockfunc) \
2013-07-09 21:40:38 +00:00
RAII_VAR ( typeof ( ( lock ) ) , varname , ( { lockfunc ( ( lock ) ) ; ( lock ) ; } ) , unlockfunc )
Add scoped locks to Asterisk.
With the SCOPED_LOCK macro, you can create a variable
that locks a specific lock and unlocks the lock when the
variable goes out of scope. This is useful for situations
where many breaks, continues, returns, or other interruptions
would require separate unlock statements. With a scoped lock,
these aren't necessary.
There are specializations for mutexes, read locks, write locks,
ao2 locks, ao2 read locks, ao2 write locks, and channel locks.
Each of these is a SCOPED_LOCK at heart though.
Review: https://reviewboard.asterisk.org/r/2060
git-svn-id: https://origsvn.digium.com/svn/asterisk/trunk@371582 65c4cc65-6c06-0410-ace0-fbb531ad65f3
2012-08-21 19:04:32 +00:00
/*!
* \ brief scoped lock specialization for mutexes
*/
# define SCOPED_MUTEX(varname, lock) SCOPED_LOCK(varname, (lock), ast_mutex_lock, ast_mutex_unlock)
/*!
* \ brief scoped lock specialization for read locks
*/
# define SCOPED_RDLOCK(varname, lock) SCOPED_LOCK(varname, (lock), ast_rwlock_rdlock, ast_rwlock_unlock)
/*!
* \ brief scoped lock specialization for write locks
*/
# define SCOPED_WRLOCK(varname, lock) SCOPED_LOCK(varname, (lock), ast_rwlock_wrlock, ast_rwlock_unlock)
/*!
* \ brief scoped lock specialization for ao2 mutexes .
*/
# define SCOPED_AO2LOCK(varname, obj) SCOPED_LOCK(varname, (obj), ao2_lock, ao2_unlock)
/*!
* \ brief scoped lock specialization for ao2 read locks .
*/
# define SCOPED_AO2RDLOCK(varname, obj) SCOPED_LOCK(varname, (obj), ao2_rdlock, ao2_unlock)
/*!
* \ brief scoped lock specialization for ao2 write locks .
*/
# define SCOPED_AO2WRLOCK(varname, obj) SCOPED_LOCK(varname, (obj), ao2_wrlock, ao2_unlock)
/*!
* \ brief scoped lock specialization for channels .
*/
# define SCOPED_CHANNELLOCK(varname, chan) SCOPED_LOCK(varname, (chan), ast_channel_lock, ast_channel_unlock)
2010-04-22 19:08:01 +00:00
# ifndef __CYGWIN__ /* temporary disabled for cygwin */
# define pthread_mutex_t use_ast_mutex_t_instead_of_pthread_mutex_t
# define pthread_cond_t use_ast_cond_t_instead_of_pthread_cond_t
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# endif
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# define pthread_mutex_lock use_ast_mutex_lock_instead_of_pthread_mutex_lock
# define pthread_mutex_unlock use_ast_mutex_unlock_instead_of_pthread_mutex_unlock
# define pthread_mutex_trylock use_ast_mutex_trylock_instead_of_pthread_mutex_trylock
# define pthread_mutex_init use_ast_mutex_init_instead_of_pthread_mutex_init
# define pthread_mutex_destroy use_ast_mutex_destroy_instead_of_pthread_mutex_destroy
# define pthread_cond_init use_ast_cond_init_instead_of_pthread_cond_init
# define pthread_cond_destroy use_ast_cond_destroy_instead_of_pthread_cond_destroy
# define pthread_cond_signal use_ast_cond_signal_instead_of_pthread_cond_signal
# define pthread_cond_broadcast use_ast_cond_broadcast_instead_of_pthread_cond_broadcast
# define pthread_cond_wait use_ast_cond_wait_instead_of_pthread_cond_wait
# define pthread_cond_timedwait use_ast_cond_timedwait_instead_of_pthread_cond_timedwait
2008-05-23 22:35:50 +00:00
2010-04-22 19:08:01 +00:00
# define AST_MUTEX_INITIALIZER __use_AST_MUTEX_DEFINE_STATIC_rather_than_AST_MUTEX_INITIALIZER__
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2010-04-22 19:08:01 +00:00
# define gethostbyname __gethostbyname__is__not__reentrant__use__ast_gethostbyname__instead__
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2010-04-22 19:08:01 +00:00
# ifndef __linux__
# define pthread_create __use_ast_pthread_create_instead__
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# endif
2006-11-02 16:28:13 +00:00
2006-03-30 23:26:22 +00:00
/*
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* Support for atomic instructions .
2006-03-30 23:26:22 +00:00
* For platforms that have it , use the native cpu instruction to
* implement them . For other platforms , resort to a ' slow ' version
* ( defined in utils . c ) that protects the atomic instruction with
* a single lock .
* The slow versions is always available , for testing purposes ,
* as ast_atomic_fetchadd_int_slow ( )
*/
int ast_atomic_fetchadd_int_slow ( volatile int * p , int v ) ;
# include "asterisk/inline_api.h"
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# if defined(HAVE_OSX_ATOMICS)
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# include "libkern/OSAtomic.h"
# endif
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/*! \brief Atomically add v to *p and return * the previous value of *p.
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* This can be used to handle reference counts , and the return value
* can be used to generate unique identifiers .
*/
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# if defined(HAVE_GCC_ATOMICS)
AST_INLINE_API ( int ast_atomic_fetchadd_int ( volatile int * p , int v ) ,
{
return __sync_fetch_and_add ( p , v ) ;
} )
2006-06-30 15:54:13 +00:00
# elif defined(HAVE_OSX_ATOMICS) && (SIZEOF_INT == 4)
AST_INLINE_API ( int ast_atomic_fetchadd_int ( volatile int * p , int v ) ,
{
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return OSAtomicAdd32 ( v , ( int32_t * ) p ) - v ;
2006-06-30 15:54:13 +00:00
} )
# elif defined(HAVE_OSX_ATOMICS) && (SIZEOF_INT == 8)
AST_INLINE_API ( int ast_atomic_fetchadd_int ( volatile int * p , int v ) ,
{
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return OSAtomicAdd64 ( v , ( int64_t * ) p ) - v ;
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# elif defined (__i386__) || defined(__x86_64__)
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# ifdef sun
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AST_INLINE_API ( int ast_atomic_fetchadd_int ( volatile int * p , int v ) ,
{
__asm __volatile (
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" lock; xaddl %0, %1 ; "
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: " +r " ( v ) , /* 0 (result) */
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" =m " ( * p ) /* 1 */
: " m " ( * p ) ) ; /* 2 */
return ( v ) ;
} )
# else /* ifndef sun */
AST_INLINE_API ( int ast_atomic_fetchadd_int ( volatile int * p , int v ) ,
{
__asm __volatile (
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" lock xaddl %0, %1 ; "
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: " +r " ( v ) , /* 0 (result) */
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" =m " ( * p ) /* 1 */
: " m " ( * p ) ) ; /* 2 */
return ( v ) ;
} )
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# endif
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# else /* low performance version in utils.c */
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AST_INLINE_API ( int ast_atomic_fetchadd_int ( volatile int * p , int v ) ,
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{
return ast_atomic_fetchadd_int_slow ( p , v ) ;
} )
# endif
/*! \brief decrement *p by 1 and return true if the variable has reached 0.
* Useful e . g . to check if a refcount has reached 0.
*/
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# if defined(HAVE_GCC_ATOMICS)
AST_INLINE_API ( int ast_atomic_dec_and_test ( volatile int * p ) ,
{
return __sync_sub_and_fetch ( p , 1 ) = = 0 ;
} )
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# elif defined(HAVE_OSX_ATOMICS) && (SIZEOF_INT == 4)
AST_INLINE_API ( int ast_atomic_dec_and_test ( volatile int * p ) ,
{
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return OSAtomicAdd32 ( - 1 , ( int32_t * ) p ) = = 0 ;
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} )
# elif defined(HAVE_OSX_ATOMICS) && (SIZEOF_INT == 8)
AST_INLINE_API ( int ast_atomic_dec_and_test ( volatile int * p ) ,
{
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return OSAtomicAdd64 ( - 1 , ( int64_t * ) p ) = = 0 ;
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# else
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AST_INLINE_API ( int ast_atomic_dec_and_test ( volatile int * p ) ,
{
int a = ast_atomic_fetchadd_int ( p , - 1 ) ;
return a = = 1 ; /* true if the value is 0 now (so it was 1 previously) */
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} )
# endif
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# endif /* _ASTERISK_LOCK_H */