1 /* Copyright (C) 2002, 2003, 2005-2007, 2008 Free Software Foundation, Inc.
2 This file is part of the GNU C Library.
3 Contributed by Ulrich Drepper <drepper@redhat.com>, 2002.
5 The GNU C Library is free software; you can redistribute it and/or
6 modify it under the terms of the GNU Lesser General Public
7 License as published by the Free Software Foundation; either
8 version 2.1 of the License, or (at your option) any later version.
10 The GNU C Library is distributed in the hope that it will be useful,
11 but WITHOUT ANY WARRANTY; without even the implied warranty of
12 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
13 Lesser General Public License for more details.
15 You should have received a copy of the GNU Lesser General Public
16 License along with the GNU C Library; if not, write to the Free
17 Software Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA
24 #include <lowlevellock.h>
28 __pthread_mutex_unlock_full (pthread_mutex_t
*mutex
, int decr
)
29 __attribute_noinline__
;
32 internal_function attribute_hidden
33 __pthread_mutex_unlock_usercnt (mutex
, decr
)
34 pthread_mutex_t
*mutex
;
37 int type
= PTHREAD_MUTEX_TYPE (mutex
);
38 if (__builtin_expect (type
& ~PTHREAD_MUTEX_KIND_MASK_NP
, 0))
39 return __pthread_mutex_unlock_full (mutex
, decr
);
41 if (__builtin_expect (type
, PTHREAD_MUTEX_TIMED_NP
)
42 == PTHREAD_MUTEX_TIMED_NP
)
44 /* Always reset the owner field. */
46 mutex
->__data
.__owner
= 0;
49 --mutex
->__data
.__nusers
;
52 lll_unlock (mutex
->__data
.__lock
, PTHREAD_MUTEX_PSHARED (mutex
));
55 else if (__builtin_expect (type
== PTHREAD_MUTEX_RECURSIVE_NP
, 1))
57 /* Recursive mutex. */
58 if (mutex
->__data
.__owner
!= THREAD_GETMEM (THREAD_SELF
, tid
))
61 if (--mutex
->__data
.__count
!= 0)
62 /* We still hold the mutex. */
66 else if (__builtin_expect (type
== PTHREAD_MUTEX_ADAPTIVE_NP
, 1))
70 /* Error checking mutex. */
71 assert (type
== PTHREAD_MUTEX_ERRORCHECK_NP
);
72 if (mutex
->__data
.__owner
!= THREAD_GETMEM (THREAD_SELF
, tid
)
73 || ! lll_islocked (mutex
->__data
.__lock
))
82 __pthread_mutex_unlock_full (pthread_mutex_t
*mutex
, int decr
)
86 switch (PTHREAD_MUTEX_TYPE (mutex
))
88 case PTHREAD_MUTEX_ROBUST_RECURSIVE_NP
:
89 /* Recursive mutex. */
90 if ((mutex
->__data
.__lock
& FUTEX_TID_MASK
)
91 == THREAD_GETMEM (THREAD_SELF
, tid
)
92 && __builtin_expect (mutex
->__data
.__owner
93 == PTHREAD_MUTEX_INCONSISTENT
, 0))
95 if (--mutex
->__data
.__count
!= 0)
96 /* We still hold the mutex. */
97 return ENOTRECOVERABLE
;
102 if (mutex
->__data
.__owner
!= THREAD_GETMEM (THREAD_SELF
, tid
))
105 if (--mutex
->__data
.__count
!= 0)
106 /* We still hold the mutex. */
111 case PTHREAD_MUTEX_ROBUST_ERRORCHECK_NP
:
112 case PTHREAD_MUTEX_ROBUST_NORMAL_NP
:
113 case PTHREAD_MUTEX_ROBUST_ADAPTIVE_NP
:
114 if ((mutex
->__data
.__lock
& FUTEX_TID_MASK
)
115 != THREAD_GETMEM (THREAD_SELF
, tid
)
116 || ! lll_islocked (mutex
->__data
.__lock
))
119 /* If the previous owner died and the caller did not succeed in
120 making the state consistent, mark the mutex as unrecoverable
121 and make all waiters. */
122 if (__builtin_expect (mutex
->__data
.__owner
123 == PTHREAD_MUTEX_INCONSISTENT
, 0))
125 newowner
= PTHREAD_MUTEX_NOTRECOVERABLE
;
128 /* Remove mutex from the list. */
129 THREAD_SETMEM (THREAD_SELF
, robust_head
.list_op_pending
,
130 &mutex
->__data
.__list
.__next
);
131 DEQUEUE_MUTEX (mutex
);
133 mutex
->__data
.__owner
= newowner
;
136 --mutex
->__data
.__nusers
;
139 lll_robust_unlock (mutex
->__data
.__lock
,
140 PTHREAD_ROBUST_MUTEX_PSHARED (mutex
));
142 THREAD_SETMEM (THREAD_SELF
, robust_head
.list_op_pending
, NULL
);
145 case PTHREAD_MUTEX_PI_RECURSIVE_NP
:
146 /* Recursive mutex. */
147 if (mutex
->__data
.__owner
!= THREAD_GETMEM (THREAD_SELF
, tid
))
150 if (--mutex
->__data
.__count
!= 0)
151 /* We still hold the mutex. */
155 case PTHREAD_MUTEX_PI_ROBUST_RECURSIVE_NP
:
156 /* Recursive mutex. */
157 if ((mutex
->__data
.__lock
& FUTEX_TID_MASK
)
158 == THREAD_GETMEM (THREAD_SELF
, tid
)
159 && __builtin_expect (mutex
->__data
.__owner
160 == PTHREAD_MUTEX_INCONSISTENT
, 0))
162 if (--mutex
->__data
.__count
!= 0)
163 /* We still hold the mutex. */
164 return ENOTRECOVERABLE
;
166 goto pi_notrecoverable
;
169 if (mutex
->__data
.__owner
!= THREAD_GETMEM (THREAD_SELF
, tid
))
172 if (--mutex
->__data
.__count
!= 0)
173 /* We still hold the mutex. */
178 case PTHREAD_MUTEX_PI_ERRORCHECK_NP
:
179 case PTHREAD_MUTEX_PI_NORMAL_NP
:
180 case PTHREAD_MUTEX_PI_ADAPTIVE_NP
:
181 case PTHREAD_MUTEX_PI_ROBUST_ERRORCHECK_NP
:
182 case PTHREAD_MUTEX_PI_ROBUST_NORMAL_NP
:
183 case PTHREAD_MUTEX_PI_ROBUST_ADAPTIVE_NP
:
184 if ((mutex
->__data
.__lock
& FUTEX_TID_MASK
)
185 != THREAD_GETMEM (THREAD_SELF
, tid
)
186 || ! lll_islocked (mutex
->__data
.__lock
))
189 /* If the previous owner died and the caller did not succeed in
190 making the state consistent, mark the mutex as unrecoverable
191 and make all waiters. */
192 if ((mutex
->__data
.__kind
& PTHREAD_MUTEX_ROBUST_NORMAL_NP
) != 0
193 && __builtin_expect (mutex
->__data
.__owner
194 == PTHREAD_MUTEX_INCONSISTENT
, 0))
196 newowner
= PTHREAD_MUTEX_NOTRECOVERABLE
;
199 if ((mutex
->__data
.__kind
& PTHREAD_MUTEX_ROBUST_NORMAL_NP
) != 0)
201 /* Remove mutex from the list.
202 Note: robust PI futexes are signaled by setting bit 0. */
203 THREAD_SETMEM (THREAD_SELF
, robust_head
.list_op_pending
,
204 (void *) (((uintptr_t) &mutex
->__data
.__list
.__next
)
206 DEQUEUE_MUTEX (mutex
);
209 mutex
->__data
.__owner
= newowner
;
212 --mutex
->__data
.__nusers
;
215 if ((mutex
->__data
.__lock
& FUTEX_WAITERS
) != 0
216 || atomic_compare_and_exchange_bool_acq (&mutex
->__data
.__lock
, 0,
217 THREAD_GETMEM (THREAD_SELF
,
220 int robust
= mutex
->__data
.__kind
& PTHREAD_MUTEX_ROBUST_NORMAL_NP
;
221 int private = (robust
222 ? PTHREAD_ROBUST_MUTEX_PSHARED (mutex
)
223 : PTHREAD_MUTEX_PSHARED (mutex
));
224 INTERNAL_SYSCALL_DECL (__err
);
225 INTERNAL_SYSCALL (futex
, __err
, 2, &mutex
->__data
.__lock
,
226 __lll_private_flag (FUTEX_UNLOCK_PI
, private));
229 THREAD_SETMEM (THREAD_SELF
, robust_head
.list_op_pending
, NULL
);
232 case PTHREAD_MUTEX_PP_RECURSIVE_NP
:
233 /* Recursive mutex. */
234 if (mutex
->__data
.__owner
!= THREAD_GETMEM (THREAD_SELF
, tid
))
237 if (--mutex
->__data
.__count
!= 0)
238 /* We still hold the mutex. */
242 case PTHREAD_MUTEX_PP_ERRORCHECK_NP
:
243 /* Error checking mutex. */
244 if (mutex
->__data
.__owner
!= THREAD_GETMEM (THREAD_SELF
, tid
)
245 || (mutex
->__data
.__lock
& ~ PTHREAD_MUTEX_PRIO_CEILING_MASK
) == 0)
249 case PTHREAD_MUTEX_PP_NORMAL_NP
:
250 case PTHREAD_MUTEX_PP_ADAPTIVE_NP
:
251 /* Always reset the owner field. */
253 mutex
->__data
.__owner
= 0;
257 --mutex
->__data
.__nusers
;
263 oldval
= mutex
->__data
.__lock
;
264 newval
= oldval
& PTHREAD_MUTEX_PRIO_CEILING_MASK
;
266 while (atomic_compare_and_exchange_bool_acq (&mutex
->__data
.__lock
,
269 if ((oldval
& ~PTHREAD_MUTEX_PRIO_CEILING_MASK
) > 1)
270 lll_futex_wake (&mutex
->__data
.__lock
, 1,
271 PTHREAD_MUTEX_PSHARED (mutex
));
273 int oldprio
= newval
>> PTHREAD_MUTEX_PRIO_CEILING_SHIFT
;
274 return __pthread_tpp_change_priority (oldprio
, -1);
277 /* Correct code cannot set any other type. */
286 __pthread_mutex_unlock (mutex
)
287 pthread_mutex_t
*mutex
;
289 return __pthread_mutex_unlock_usercnt (mutex
, 1);
291 strong_alias (__pthread_mutex_unlock
, pthread_mutex_unlock
)
292 strong_alias (__pthread_mutex_unlock
, __pthread_mutex_unlock_internal
)