2005-02-14 Andreas Schwab <schwab@suse.de>
[glibc.git] / linuxthreads / specific.c
blob92eec3d99a553252e94809c5b81da29b68b5f25a
1 /* Linuxthreads - a simple clone()-based implementation of Posix */
2 /* threads for Linux. */
3 /* Copyright (C) 1996 Xavier Leroy (Xavier.Leroy@inria.fr) */
4 /* */
5 /* This program is free software; you can redistribute it and/or */
6 /* modify it under the terms of the GNU Library General Public License */
7 /* as published by the Free Software Foundation; either version 2 */
8 /* of the License, or (at your option) any later version. */
9 /* */
10 /* This program 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 */
13 /* GNU Library General Public License for more details. */
15 /* Thread-specific data */
17 #include <errno.h>
18 #include <stddef.h>
19 #include <stdlib.h>
20 #include "pthread.h"
21 #include "internals.h"
22 #include "spinlock.h"
23 #include "restart.h"
24 #include <bits/libc-lock.h>
25 #include <not-cancel.h>
27 /* Table of keys. */
29 static struct pthread_key_struct pthread_keys[PTHREAD_KEYS_MAX] =
30 { { 0, NULL } };
32 /* For debugging purposes put the maximum number of keys in a variable. */
33 const int __linuxthreads_pthread_keys_max = PTHREAD_KEYS_MAX;
34 const int __linuxthreads_pthread_key_2ndlevel_size = PTHREAD_KEY_2NDLEVEL_SIZE;
36 /* Mutex to protect access to pthread_keys */
38 static pthread_mutex_t pthread_keys_mutex = PTHREAD_MUTEX_INITIALIZER;
40 /* Create a new key */
42 int __pthread_key_create(pthread_key_t * key, destr_function destr)
44 int i;
46 pthread_mutex_lock(&pthread_keys_mutex);
47 for (i = 0; i < PTHREAD_KEYS_MAX; i++) {
48 if (! pthread_keys[i].in_use) {
49 /* Mark key in use */
50 pthread_keys[i].in_use = 1;
51 pthread_keys[i].destr = destr;
52 pthread_mutex_unlock(&pthread_keys_mutex);
53 *key = i;
54 return 0;
57 pthread_mutex_unlock(&pthread_keys_mutex);
58 return EAGAIN;
60 strong_alias (__pthread_key_create, pthread_key_create)
62 /* Reset deleted key's value to NULL in each live thread.
63 * NOTE: this executes in the context of the thread manager! */
65 struct pthread_key_delete_helper_args {
66 /* Damn, we need lexical closures in C! ;) */
67 unsigned int idx1st, idx2nd;
68 pthread_descr self;
71 static void pthread_key_delete_helper(void *arg, pthread_descr th)
73 struct pthread_key_delete_helper_args *args = arg;
74 unsigned int idx1st = args->idx1st;
75 unsigned int idx2nd = args->idx2nd;
76 pthread_descr self = args->self;
78 if (self == 0)
79 self = args->self = thread_self();
81 if (!th->p_terminated) {
82 /* pthread_exit() may try to free th->p_specific[idx1st] concurrently. */
83 __pthread_lock(th->p_lock, self);
84 if (th->p_specific[idx1st] != NULL)
85 th->p_specific[idx1st][idx2nd] = NULL;
86 __pthread_unlock(th->p_lock);
90 /* Delete a key */
91 int pthread_key_delete(pthread_key_t key)
93 pthread_descr self = thread_self();
95 pthread_mutex_lock(&pthread_keys_mutex);
96 if (key >= PTHREAD_KEYS_MAX || !pthread_keys[key].in_use) {
97 pthread_mutex_unlock(&pthread_keys_mutex);
98 return EINVAL;
100 pthread_keys[key].in_use = 0;
101 pthread_keys[key].destr = NULL;
103 /* Set the value of the key to NULL in all running threads, so
104 that if the key is reallocated later by pthread_key_create, its
105 associated values will be NULL in all threads.
107 If no threads have been created yet, clear it just in the
108 current thread. */
110 struct pthread_key_delete_helper_args args;
111 args.idx1st = key / PTHREAD_KEY_2NDLEVEL_SIZE;
112 args.idx2nd = key % PTHREAD_KEY_2NDLEVEL_SIZE;
113 if (__pthread_manager_request != -1)
115 struct pthread_request request;
117 args.self = 0;
119 request.req_thread = self;
120 request.req_kind = REQ_FOR_EACH_THREAD;
121 request.req_args.for_each.arg = &args;
122 request.req_args.for_each.fn = pthread_key_delete_helper;
124 TEMP_FAILURE_RETRY(write_not_cancel(__pthread_manager_request,
125 (char *) &request, sizeof(request)));
126 suspend(self);
128 else
130 if (self->p_specific[args.idx1st] != NULL)
131 self->p_specific[args.idx1st][args.idx2nd] = NULL;
134 pthread_mutex_unlock(&pthread_keys_mutex);
135 return 0;
138 /* Set the value of a key */
140 int __pthread_setspecific(pthread_key_t key, const void * pointer)
142 pthread_descr self = thread_self();
143 unsigned int idx1st, idx2nd;
145 if (key >= PTHREAD_KEYS_MAX || !pthread_keys[key].in_use)
146 return EINVAL;
147 idx1st = key / PTHREAD_KEY_2NDLEVEL_SIZE;
148 idx2nd = key % PTHREAD_KEY_2NDLEVEL_SIZE;
149 if (THREAD_GETMEM_NC(self, p_specific[idx1st]) == NULL) {
150 void *newp = calloc(PTHREAD_KEY_2NDLEVEL_SIZE, sizeof (void *));
151 if (newp == NULL)
152 return ENOMEM;
153 THREAD_SETMEM_NC(self, p_specific[idx1st], newp);
155 THREAD_GETMEM_NC(self, p_specific[idx1st])[idx2nd] = (void *) pointer;
156 return 0;
158 strong_alias (__pthread_setspecific, pthread_setspecific)
160 /* Get the value of a key */
162 void * __pthread_getspecific(pthread_key_t key)
164 pthread_descr self = thread_self();
165 unsigned int idx1st, idx2nd;
167 if (key >= PTHREAD_KEYS_MAX)
168 return NULL;
169 idx1st = key / PTHREAD_KEY_2NDLEVEL_SIZE;
170 idx2nd = key % PTHREAD_KEY_2NDLEVEL_SIZE;
171 if (THREAD_GETMEM_NC(self, p_specific[idx1st]) == NULL
172 || !pthread_keys[key].in_use)
173 return NULL;
174 return THREAD_GETMEM_NC(self, p_specific[idx1st])[idx2nd];
176 strong_alias (__pthread_getspecific, pthread_getspecific)
178 /* Call the destruction routines on all keys */
180 void __pthread_destroy_specifics()
182 pthread_descr self = thread_self();
183 int i, j, round, found_nonzero;
184 destr_function destr;
185 void * data;
187 for (round = 0, found_nonzero = 1;
188 found_nonzero && round < PTHREAD_DESTRUCTOR_ITERATIONS;
189 round++) {
190 found_nonzero = 0;
191 for (i = 0; i < PTHREAD_KEY_1STLEVEL_SIZE; i++)
192 if (THREAD_GETMEM_NC(self, p_specific[i]) != NULL)
193 for (j = 0; j < PTHREAD_KEY_2NDLEVEL_SIZE; j++) {
194 destr = pthread_keys[i * PTHREAD_KEY_2NDLEVEL_SIZE + j].destr;
195 data = THREAD_GETMEM_NC(self, p_specific[i])[j];
196 if (destr != NULL && data != NULL) {
197 THREAD_GETMEM_NC(self, p_specific[i])[j] = NULL;
198 destr(data);
199 found_nonzero = 1;
203 __pthread_lock(THREAD_GETMEM(self, p_lock), self);
204 for (i = 0; i < PTHREAD_KEY_1STLEVEL_SIZE; i++) {
205 if (THREAD_GETMEM_NC(self, p_specific[i]) != NULL) {
206 free(THREAD_GETMEM_NC(self, p_specific[i]));
207 THREAD_SETMEM_NC(self, p_specific[i], NULL);
210 __pthread_unlock(THREAD_GETMEM(self, p_lock));
213 #if !(USE_TLS && HAVE___THREAD)
215 /* Thread-specific data for libc. */
218 __pthread_internal_tsd_set (int key, const void * pointer)
220 pthread_descr self = thread_self();
222 THREAD_SETMEM_NC(self, p_libc_specific[key], (void *) pointer);
223 return 0;
226 void *
227 __pthread_internal_tsd_get (int key)
229 pthread_descr self = thread_self();
231 return THREAD_GETMEM_NC(self, p_libc_specific[key]);
234 void ** __attribute__ ((__const__))
235 __pthread_internal_tsd_address (int key)
237 pthread_descr self = thread_self();
238 return &self->p_libc_specific[key];
241 #endif