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reentrant.h revision 1.20
      1  1.20  christos /*	$NetBSD: reentrant.h,v 1.20 2017/02/08 18:00:37 christos Exp $	*/
      2   1.5    kleink 
      3   1.1       jtc /*-
      4   1.7   thorpej  * Copyright (c) 1997, 1998, 2003 The NetBSD Foundation, Inc.
      5   1.1       jtc  * All rights reserved.
      6   1.1       jtc  *
      7   1.1       jtc  * This code is derived from software contributed to The NetBSD Foundation
      8   1.7   thorpej  * by J.T. Conklin, by Nathan J. Williams, and by Jason R. Thorpe.
      9   1.1       jtc  *
     10   1.1       jtc  * Redistribution and use in source and binary forms, with or without
     11   1.1       jtc  * modification, are permitted provided that the following conditions
     12   1.1       jtc  * are met:
     13   1.1       jtc  * 1. Redistributions of source code must retain the above copyright
     14   1.1       jtc  *    notice, this list of conditions and the following disclaimer.
     15   1.1       jtc  * 2. Redistributions in binary form must reproduce the above copyright
     16   1.1       jtc  *    notice, this list of conditions and the following disclaimer in the
     17   1.1       jtc  *    documentation and/or other materials provided with the distribution.
     18   1.1       jtc  *
     19   1.1       jtc  * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
     20   1.1       jtc  * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
     21   1.1       jtc  * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
     22   1.1       jtc  * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
     23   1.1       jtc  * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
     24   1.1       jtc  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
     25   1.1       jtc  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
     26   1.1       jtc  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
     27   1.1       jtc  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
     28   1.1       jtc  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
     29   1.1       jtc  * POSSIBILITY OF SUCH DAMAGE.
     30   1.1       jtc  */
     31   1.1       jtc 
     32   1.1       jtc /*
     33   1.1       jtc  * Requirements:
     34   1.1       jtc  *
     35   1.1       jtc  * 1. The thread safe mechanism should be lightweight so the library can
     36   1.1       jtc  *    be used by non-threaded applications without unreasonable overhead.
     37   1.1       jtc  *
     38   1.1       jtc  * 2. There should be no dependency on a thread engine for non-threaded
     39   1.1       jtc  *    applications.
     40   1.1       jtc  *
     41   1.1       jtc  * 3. There should be no dependency on any particular thread engine.
     42   1.1       jtc  *
     43   1.1       jtc  * 4. The library should be able to be compiled without support for thread
     44   1.1       jtc  *    safety.
     45   1.1       jtc  *
     46   1.1       jtc  *
     47   1.1       jtc  * Rationale:
     48   1.1       jtc  *
     49   1.1       jtc  * One approach for thread safety is to provide discrete versions of the
     50   1.1       jtc  * library: one thread safe, the other not.  The disadvantage of this is
     51   1.1       jtc  * that libc is rather large, and two copies of a library which are 99%+
     52   1.1       jtc  * identical is not an efficent use of resources.
     53   1.1       jtc  *
     54   1.1       jtc  * Another approach is to provide a single thread safe library.  However,
     55   1.1       jtc  * it should not add significant run time or code size overhead to non-
     56   1.1       jtc  * threaded applications.
     57   1.1       jtc  *
     58   1.1       jtc  * Since the NetBSD C library is used in other projects, it should be
     59   1.1       jtc  * easy to replace the mutual exclusion primitives with ones provided by
     60   1.1       jtc  * another system.  Similarly, it should also be easy to remove all
     61   1.1       jtc  * support for thread safety completely if the target environment does
     62   1.1       jtc  * not support threads.
     63   1.1       jtc  *
     64   1.1       jtc  *
     65   1.1       jtc  * Implementation Details:
     66   1.1       jtc  *
     67   1.7   thorpej  * The thread primitives used by the library (mutex_t, mutex_lock, etc.)
     68   1.1       jtc  * are macros which expand to the cooresponding primitives provided by
     69   1.1       jtc  * the thread engine or to nothing.  The latter is used so that code is
     70   1.1       jtc  * not unreasonably cluttered with #ifdefs when all thread safe support
     71   1.1       jtc  * is removed.
     72   1.1       jtc  *
     73   1.7   thorpej  * The thread macros can be directly mapped to the mutex primitives from
     74   1.1       jtc  * pthreads, however it should be reasonably easy to wrap another mutex
     75   1.1       jtc  * implementation so it presents a similar interface.
     76   1.1       jtc  *
     77   1.7   thorpej  * The thread functions operate by dispatching to symbols which are, by
     78   1.7   thorpej  * default, weak-aliased to no-op functions in thread-stub/thread-stub.c
     79   1.7   thorpej  * (some uses of thread operations are conditional on __isthreaded, but
     80   1.7   thorpej  * not all of them are).
     81   1.7   thorpej  *
     82   1.7   thorpej  * When the thread library is linked in, it provides strong-alias versions
     83   1.7   thorpej  * of those symbols which dispatch to its own real thread operations.
     84   1.8   thorpej  *
     85   1.1       jtc  */
     86   1.1       jtc 
     87  1.10   nathanw /*
     88  1.12       rtr  * Abstract thread interface for thread-safe libraries.  These routines
     89  1.10   nathanw  * will use stubs in libc if the application is not linked against the
     90  1.10   nathanw  * pthread library, and the real function in the pthread library if it
     91  1.10   nathanw  * is.
     92  1.10   nathanw  */
     93  1.10   nathanw 
     94  1.10   nathanw #include <pthread.h>
     95  1.10   nathanw #include <signal.h>
     96  1.10   nathanw 
     97  1.10   nathanw #define	mutex_t			pthread_mutex_t
     98  1.10   nathanw #define	MUTEX_INITIALIZER	PTHREAD_MUTEX_INITIALIZER
     99  1.10   nathanw 
    100  1.10   nathanw #define	mutexattr_t		pthread_mutexattr_t
    101  1.10   nathanw 
    102  1.10   nathanw #define	MUTEX_TYPE_NORMAL	PTHREAD_MUTEX_NORMAL
    103  1.10   nathanw #define	MUTEX_TYPE_ERRORCHECK	PTHREAD_MUTEX_ERRORCHECK
    104  1.10   nathanw #define	MUTEX_TYPE_RECURSIVE	PTHREAD_MUTEX_RECURSIVE
    105  1.10   nathanw 
    106  1.10   nathanw #define	cond_t			pthread_cond_t
    107  1.10   nathanw #define	COND_INITIALIZER	PTHREAD_COND_INITIALIZER
    108  1.10   nathanw 
    109  1.10   nathanw #define	condattr_t		pthread_condattr_t
    110  1.10   nathanw 
    111  1.10   nathanw #define	rwlock_t		pthread_rwlock_t
    112  1.10   nathanw #define	RWLOCK_INITIALIZER	PTHREAD_RWLOCK_INITIALIZER
    113  1.10   nathanw 
    114  1.10   nathanw #define	rwlockattr_t		pthread_rwlockattr_t
    115  1.10   nathanw 
    116  1.10   nathanw #define	thread_key_t		pthread_key_t
    117  1.10   nathanw 
    118  1.10   nathanw #define	thr_t			pthread_t
    119  1.10   nathanw 
    120  1.10   nathanw #define	thrattr_t		pthread_attr_t
    121  1.10   nathanw 
    122  1.10   nathanw #define	once_t			pthread_once_t
    123  1.10   nathanw #define	ONCE_INITIALIZER	PTHREAD_ONCE_INIT
    124  1.10   nathanw 
    125  1.15     joerg #ifdef _REENTRANT
    126  1.15     joerg 
    127  1.10   nathanw #ifndef __LIBC_THREAD_STUBS
    128  1.10   nathanw 
    129  1.10   nathanw __BEGIN_DECLS
    130  1.10   nathanw int	__libc_mutex_init(mutex_t *, const mutexattr_t *);
    131  1.10   nathanw int	__libc_mutex_lock(mutex_t *);
    132  1.10   nathanw int	__libc_mutex_trylock(mutex_t *);
    133  1.10   nathanw int	__libc_mutex_unlock(mutex_t *);
    134  1.10   nathanw int	__libc_mutex_destroy(mutex_t *);
    135  1.10   nathanw 
    136  1.10   nathanw int	__libc_mutexattr_init(mutexattr_t *);
    137  1.10   nathanw int	__libc_mutexattr_settype(mutexattr_t *, int);
    138  1.10   nathanw int	__libc_mutexattr_destroy(mutexattr_t *);
    139  1.10   nathanw __END_DECLS
    140  1.10   nathanw 
    141  1.10   nathanw #define	mutex_init(m, a)	__libc_mutex_init((m), (a))
    142  1.10   nathanw #define	mutex_lock(m)		__libc_mutex_lock((m))
    143  1.10   nathanw #define	mutex_trylock(m)	__libc_mutex_trylock((m))
    144  1.10   nathanw #define	mutex_unlock(m)		__libc_mutex_unlock((m))
    145  1.10   nathanw #define	mutex_destroy(m)	__libc_mutex_destroy((m))
    146  1.10   nathanw 
    147  1.10   nathanw #define	mutexattr_init(ma)	__libc_mutexattr_init((ma))
    148  1.10   nathanw #define	mutexattr_settype(ma, t) __libc_mutexattr_settype((ma), (t))
    149  1.10   nathanw #define	mutexattr_destroy(ma)	__libc_mutexattr_destroy((ma))
    150  1.10   nathanw 
    151  1.10   nathanw __BEGIN_DECLS
    152  1.10   nathanw int	__libc_cond_init(cond_t *, const condattr_t *);
    153  1.10   nathanw int	__libc_cond_signal(cond_t *);
    154  1.10   nathanw int	__libc_cond_broadcast(cond_t *);
    155  1.10   nathanw int	__libc_cond_wait(cond_t *, mutex_t *);
    156  1.14  christos #ifndef __LIBC12_SOURCE__
    157  1.10   nathanw int	__libc_cond_timedwait(cond_t *, mutex_t *, const struct timespec *);
    158  1.14  christos #endif
    159  1.10   nathanw int	__libc_cond_destroy(cond_t *);
    160  1.10   nathanw __END_DECLS
    161  1.10   nathanw 
    162  1.10   nathanw #define	cond_init(c, t, a)     	__libc_cond_init((c), (a))
    163  1.10   nathanw #define	cond_signal(c)		__libc_cond_signal((c))
    164  1.10   nathanw #define	cond_broadcast(c)	__libc_cond_broadcast((c))
    165  1.10   nathanw #define	cond_wait(c, m)		__libc_cond_wait((c), (m))
    166  1.10   nathanw #define	cond_timedwait(c, m, t)	__libc_cond_timedwait((c), (m), (t))
    167  1.10   nathanw #define	cond_destroy(c)		__libc_cond_destroy((c))
    168  1.10   nathanw 
    169  1.10   nathanw __BEGIN_DECLS
    170  1.10   nathanw int	__libc_rwlock_init(rwlock_t *, const rwlockattr_t *);
    171  1.10   nathanw int	__libc_rwlock_rdlock(rwlock_t *);
    172  1.10   nathanw int	__libc_rwlock_wrlock(rwlock_t *);
    173  1.10   nathanw int	__libc_rwlock_tryrdlock(rwlock_t *);
    174  1.10   nathanw int	__libc_rwlock_trywrlock(rwlock_t *);
    175  1.10   nathanw int	__libc_rwlock_unlock(rwlock_t *);
    176  1.10   nathanw int	__libc_rwlock_destroy(rwlock_t *);
    177  1.10   nathanw __END_DECLS
    178  1.10   nathanw 
    179  1.10   nathanw #define	rwlock_init(l, a)	__libc_rwlock_init((l), (a))
    180  1.10   nathanw #define	rwlock_rdlock(l)	__libc_rwlock_rdlock((l))
    181  1.10   nathanw #define	rwlock_wrlock(l)	__libc_rwlock_wrlock((l))
    182  1.10   nathanw #define	rwlock_tryrdlock(l)	__libc_rwlock_tryrdlock((l))
    183  1.10   nathanw #define	rwlock_trywrlock(l)	__libc_rwlock_trywrlock((l))
    184  1.10   nathanw #define	rwlock_unlock(l)	__libc_rwlock_unlock((l))
    185  1.10   nathanw #define	rwlock_destroy(l)	__libc_rwlock_destroy((l))
    186  1.10   nathanw 
    187  1.10   nathanw __BEGIN_DECLS
    188  1.10   nathanw int	__libc_thr_keycreate(thread_key_t *, void (*)(void *));
    189  1.10   nathanw int	__libc_thr_setspecific(thread_key_t, const void *);
    190  1.10   nathanw void	*__libc_thr_getspecific(thread_key_t);
    191  1.10   nathanw int	__libc_thr_keydelete(thread_key_t);
    192  1.10   nathanw __END_DECLS
    193  1.10   nathanw 
    194  1.10   nathanw #define	thr_keycreate(k, d)	__libc_thr_keycreate((k), (d))
    195  1.10   nathanw #define	thr_setspecific(k, p)	__libc_thr_setspecific((k), (p))
    196  1.10   nathanw #define	thr_getspecific(k)	__libc_thr_getspecific((k))
    197  1.10   nathanw #define	thr_keydelete(k)	__libc_thr_keydelete((k))
    198  1.10   nathanw 
    199  1.10   nathanw __BEGIN_DECLS
    200  1.10   nathanw int	__libc_thr_once(once_t *, void (*)(void));
    201  1.10   nathanw int	__libc_thr_sigsetmask(int, const sigset_t *, sigset_t *);
    202  1.10   nathanw thr_t	__libc_thr_self(void);
    203  1.10   nathanw int	__libc_thr_yield(void);
    204  1.10   nathanw void	__libc_thr_create(thr_t *, const thrattr_t *,
    205  1.10   nathanw 	    void *(*)(void *), void *);
    206  1.10   nathanw void	__libc_thr_exit(void *) __attribute__((__noreturn__));
    207  1.10   nathanw int	*__libc_thr_errno(void);
    208  1.10   nathanw int	__libc_thr_setcancelstate(int, int *);
    209  1.11        ad unsigned int	__libc_thr_curcpu(void);
    210  1.10   nathanw 
    211  1.10   nathanw extern int __isthreaded;
    212  1.10   nathanw __END_DECLS
    213  1.10   nathanw 
    214  1.10   nathanw #define	thr_once(o, f)		__libc_thr_once((o), (f))
    215  1.10   nathanw #define	thr_sigsetmask(f, n, o)	__libc_thr_sigsetmask((f), (n), (o))
    216  1.10   nathanw #define	thr_self()		__libc_thr_self()
    217  1.10   nathanw #define	thr_yield()		__libc_thr_yield()
    218  1.10   nathanw #define	thr_create(tp, ta, f, a) __libc_thr_create((tp), (ta), (f), (a))
    219  1.10   nathanw #define	thr_exit(v)		__libc_thr_exit((v))
    220  1.10   nathanw #define	thr_errno()		__libc_thr_errno()
    221  1.10   nathanw #define	thr_enabled()		(__isthreaded)
    222  1.10   nathanw #define thr_setcancelstate(n, o) __libc_thr_setcancelstate((n),(o))
    223  1.11        ad #define thr_curcpu()		__libc_thr_curcpu()
    224  1.16  christos 
    225  1.16  christos #else /* __LIBC_THREAD_STUBS */
    226  1.16  christos 
    227  1.16  christos __BEGIN_DECLS
    228  1.16  christos void	__libc_thr_init_stub(void);
    229  1.16  christos 
    230  1.16  christos int	__libc_mutex_init_stub(mutex_t *, const mutexattr_t *);
    231  1.16  christos int	__libc_mutex_lock_stub(mutex_t *);
    232  1.16  christos int	__libc_mutex_trylock_stub(mutex_t *);
    233  1.16  christos int	__libc_mutex_unlock_stub(mutex_t *);
    234  1.16  christos int	__libc_mutex_destroy_stub(mutex_t *);
    235  1.16  christos 
    236  1.16  christos int	__libc_mutexattr_init_stub(mutexattr_t *);
    237  1.16  christos int	__libc_mutexattr_destroy_stub(mutexattr_t *);
    238  1.16  christos int	__libc_mutexattr_settype_stub(mutexattr_t *, int);
    239  1.16  christos 
    240  1.16  christos int	__libc_cond_init_stub(cond_t *, const condattr_t *);
    241  1.16  christos int	__libc_cond_signal_stub(cond_t *);
    242  1.16  christos int	__libc_cond_broadcast_stub(cond_t *);
    243  1.16  christos int	__libc_cond_wait_stub(cond_t *, mutex_t *);
    244  1.16  christos int	__libc_cond_timedwait_stub(cond_t *, mutex_t *,
    245  1.16  christos 				   const struct timespec *);
    246  1.16  christos int	__libc_cond_destroy_stub(cond_t *);
    247  1.16  christos 
    248  1.16  christos int	__libc_rwlock_init_stub(rwlock_t *, const rwlockattr_t *);
    249  1.16  christos int	__libc_rwlock_rdlock_stub(rwlock_t *);
    250  1.16  christos int	__libc_rwlock_wrlock_stub(rwlock_t *);
    251  1.16  christos int	__libc_rwlock_tryrdlock_stub(rwlock_t *);
    252  1.16  christos int	__libc_rwlock_trywrlock_stub(rwlock_t *);
    253  1.16  christos int	__libc_rwlock_unlock_stub(rwlock_t *);
    254  1.16  christos int	__libc_rwlock_destroy_stub(rwlock_t *);
    255  1.16  christos 
    256  1.16  christos int	__libc_thr_keycreate_stub(thread_key_t *, void (*)(void *));
    257  1.16  christos int	__libc_thr_setspecific_stub(thread_key_t, const void *);
    258  1.16  christos void	*__libc_thr_getspecific_stub(thread_key_t);
    259  1.16  christos int	__libc_thr_keydelete_stub(thread_key_t);
    260  1.16  christos 
    261  1.16  christos int	__libc_thr_once_stub(once_t *, void (*)(void));
    262  1.16  christos int	__libc_thr_sigsetmask_stub(int, const sigset_t *, sigset_t *);
    263  1.16  christos thr_t	__libc_thr_self_stub(void);
    264  1.16  christos int	__libc_thr_yield_stub(void);
    265  1.16  christos int	__libc_thr_create_stub(thr_t *, const thrattr_t *,
    266  1.16  christos 	    void *(*)(void *), void *);
    267  1.17     joerg void	__libc_thr_exit_stub(void *) __dead;
    268  1.16  christos int	*__libc_thr_errno_stub(void);
    269  1.16  christos int	__libc_thr_setcancelstate_stub(int, int *);
    270  1.16  christos int	__libc_thr_equal_stub(pthread_t, pthread_t);
    271  1.16  christos unsigned int	__libc_thr_curcpu_stub(void);
    272  1.16  christos __END_DECLS
    273  1.16  christos 
    274  1.10   nathanw #endif /* __LIBC_THREAD_STUBS */
    275   1.7   thorpej 
    276   1.9   nathanw #define	FLOCKFILE(fp)		__flockfile_internal(fp, 1)
    277   1.9   nathanw #define	FUNLOCKFILE(fp)		__funlockfile_internal(fp, 1)
    278   1.7   thorpej 
    279   1.7   thorpej #else /* _REENTRANT */
    280   1.7   thorpej 
    281  1.20  christos #define	mutex_init(m, a) __nothing
    282  1.20  christos #define	mutex_lock(m) __nothing
    283  1.20  christos #define	mutex_trylock(m) __nothing
    284  1.20  christos #define	mutex_unlock(m)	__nothing
    285  1.20  christos #define	mutex_destroy(m) __nothing
    286  1.20  christos 
    287  1.20  christos #define	cond_init(c, t, a) __nothing
    288  1.20  christos #define	cond_signal(c) __nothing
    289  1.20  christos #define	cond_broadcast(c) __nothing
    290  1.20  christos #define	cond_wait(c, m) __nothing
    291  1.20  christos #define	cond_timedwait(c, m, t) __nothing
    292  1.20  christos #define	cond_destroy(c) __nothing
    293  1.20  christos 
    294  1.20  christos #define	rwlock_init(l, a) __nothing
    295  1.20  christos #define	rwlock_rdlock(l) __nothing
    296  1.20  christos #define	rwlock_wrlock(l) __nothing
    297  1.20  christos #define	rwlock_tryrdlock(l) __nothing
    298  1.20  christos #define	rwlock_trywrlock(l) __nothing
    299  1.20  christos #define	rwlock_unlock(l) __nothing
    300  1.20  christos #define	rwlock_destroy(l) __nothing
    301  1.18  christos 
    302  1.18  christos #define	thr_keycreate(k, d) /*LINTED*/0
    303  1.20  christos #define	thr_setspecific(k, p) __nothing
    304  1.18  christos #define	thr_getspecific(k) /*LINTED*/0
    305  1.20  christos #define	thr_keydelete(k) __nothing
    306  1.18  christos 
    307  1.20  christos #define	mutexattr_init(ma) __nothing
    308  1.20  christos #define	mutexattr_settype(ma, t) __nothing
    309  1.20  christos #define	mutexattr_destroy(ma) __nothing
    310   1.7   thorpej 
    311  1.15     joerg static inline int
    312  1.15     joerg thr_once(once_t *once_control, void (*routine)(void))
    313  1.15     joerg {
    314  1.15     joerg 	if (__predict_false(once_control->pto_done == 0)) {
    315  1.15     joerg 		(*routine)();
    316  1.15     joerg 		once_control->pto_done = 1;
    317  1.15     joerg 	}
    318  1.15     joerg 	return 0;
    319  1.15     joerg }
    320  1.20  christos #define	thr_sigsetmask(f, n, o)	__nothing
    321  1.20  christos #define	thr_self() __nothing
    322  1.20  christos #define	thr_errno() __nothing
    323  1.11        ad #define	thr_curcpu()		((unsigned int)0)
    324   1.2       jtc 
    325  1.20  christos #define	FLOCKFILE(fp) __nothing
    326  1.20  christos #define	FUNLOCKFILE(fp) __nothing
    327   1.1       jtc 
    328   1.7   thorpej #endif /* _REENTRANT */
    329