Introduce time64 support.
[uclibc-ng.git] / libpthread / nptl / init.c
bloba6c0ec6af3bed3d2fc86cf9c71f5930723ecc760
1 /* Copyright (C) 2002-2007, 2008, 2009 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, see
17 <http://www.gnu.org/licenses/>. */
19 #include <assert.h>
20 #include <errno.h>
21 #include <limits.h>
22 #include <signal.h>
23 #include <stdlib.h>
24 #include <unistd.h>
25 #include <sys/param.h>
26 #include <sys/resource.h>
27 #include <pthreadP.h>
28 #include <atomic.h>
29 #include <ldsodefs.h>
30 #include <tls.h>
31 #include <fork.h>
32 #include <version.h>
33 #include <smp.h>
34 #include <lowlevellock.h>
35 #include <bits/kernel-features.h>
36 #include <stdio.h>
38 /* Size and alignment of static TLS block. */
39 size_t __static_tls_size;
40 size_t __static_tls_align_m1;
42 #ifndef __ASSUME_SET_ROBUST_LIST
43 /* Negative if we do not have the system call and we can use it. */
44 int __set_robust_list_avail;
45 # define set_robust_list_not_avail() \
46 __set_robust_list_avail = -1
47 #else
48 # define set_robust_list_not_avail() do { } while (0)
49 #endif
51 #ifndef __ASSUME_FUTEX_CLOCK_REALTIME
52 /* Nonzero if we do not have FUTEX_CLOCK_REALTIME. */
53 int __have_futex_clock_realtime;
54 # define __set_futex_clock_realtime() \
55 __have_futex_clock_realtime = 1
56 #else
57 #define __set_futex_clock_realtime() do { } while (0)
58 #endif
60 /* Version of the library, used in libthread_db to detect mismatches. */
61 static const char nptl_version[] __attribute_used__ = VERSION;
63 /* For asynchronous cancellation we use a signal. This is the handler. */
64 static void
65 sigcancel_handler (int sig, siginfo_t *si, void *ctx)
68 /* Safety check. It would be possible to call this function for
69 other signals and send a signal from another process. This is not
70 correct and might even be a security problem. Try to catch as
71 many incorrect invocations as possible. */
72 if (sig != SIGCANCEL
73 || si->si_pid != getpid()
74 || si->si_code != SI_TKILL)
75 return;
77 struct pthread *self = THREAD_SELF;
79 int oldval = THREAD_GETMEM (self, cancelhandling);
80 while (1)
82 /* We are canceled now. When canceled by another thread this flag
83 is already set but if the signal is directly send (internally or
84 from another process) is has to be done here. */
85 int newval = oldval | CANCELING_BITMASK | CANCELED_BITMASK;
87 if (oldval == newval || (oldval & EXITING_BITMASK) != 0)
88 /* Already canceled or exiting. */
89 break;
91 int curval = THREAD_ATOMIC_CMPXCHG_VAL (self, cancelhandling, newval,
92 oldval);
93 if (curval == oldval)
95 /* Set the return value. */
96 THREAD_SETMEM (self, result, PTHREAD_CANCELED);
98 /* Make sure asynchronous cancellation is still enabled. */
99 if ((newval & CANCELTYPE_BITMASK) != 0)
100 /* Run the registered destructors and terminate the thread. */
101 __do_cancel ();
103 break;
106 oldval = curval;
111 struct xid_command *__xidcmd attribute_hidden;
113 /* For asynchronous cancellation we use a signal. This is the handler. */
114 static void
115 sighandler_setxid (int sig, siginfo_t *si, void *ctx)
118 /* Safety check. It would be possible to call this function for
119 other signals and send a signal from another process. This is not
120 correct and might even be a security problem. Try to catch as
121 many incorrect invocations as possible. */
122 if (sig != SIGSETXID
123 || si->si_pid != getpid()
124 || si->si_code != SI_TKILL)
125 return;
127 INTERNAL_SYSCALL_DECL (err);
128 INTERNAL_SYSCALL_NCS (__xidcmd->syscall_no, err, 3, __xidcmd->id[0],
129 __xidcmd->id[1], __xidcmd->id[2]);
131 /* Reset the SETXID flag. */
132 struct pthread *self = THREAD_SELF;
133 int flags, newval;
136 flags = THREAD_GETMEM (self, cancelhandling);
137 newval = THREAD_ATOMIC_CMPXCHG_VAL (self, cancelhandling,
138 flags & ~SETXID_BITMASK, flags);
140 while (flags != newval);
142 /* And release the futex. */
143 self->setxid_futex = 1;
144 lll_futex_wake (&self->setxid_futex, 1, LLL_PRIVATE);
146 if (atomic_decrement_val (&__xidcmd->cntr) == 0)
147 lll_futex_wake (&__xidcmd->cntr, 1, LLL_PRIVATE);
151 /* When using __thread for this, we do it in libc so as not
152 to give libpthread its own TLS segment just for this. */
153 extern void **__libc_dl_error_tsd (void) __attribute__ ((const));
156 /* This can be set by the debugger before initialization is complete. */
157 static bool __nptl_initial_report_events __attribute_used__;
159 void __pthread_initialize_minimal_internal (void) attribute_hidden;
160 void
161 __pthread_initialize_minimal_internal (void)
163 static int initialized = 0;
165 if (initialized)
166 return;
167 initialized = 1;
169 /* Minimal initialization of the thread descriptor. */
170 struct pthread *pd = THREAD_SELF;
171 INTERNAL_SYSCALL_DECL (err);
172 pd->tid = INTERNAL_SYSCALL (set_tid_address, err, 1, &pd->tid);
173 THREAD_SETMEM (pd, specific[0], &pd->specific_1stblock[0]);
174 THREAD_SETMEM (pd, user_stack, true);
175 if (LLL_LOCK_INITIALIZER != 0)
176 THREAD_SETMEM (pd, lock, LLL_LOCK_INITIALIZER);
178 /* Initialize the robust mutex data. */
179 #ifdef __PTHREAD_MUTEX_HAVE_PREV
180 pd->robust_prev = &pd->robust_head;
181 #endif
182 pd->robust_head.list = &pd->robust_head;
183 #ifdef __NR_set_robust_list
184 pd->robust_head.futex_offset = (offsetof (pthread_mutex_t, __data.__lock)
185 - offsetof (pthread_mutex_t,
186 __data.__list.__next));
187 int res = INTERNAL_SYSCALL (set_robust_list, err, 2, &pd->robust_head,
188 sizeof (struct robust_list_head));
189 if (INTERNAL_SYSCALL_ERROR_P (res, err))
190 #endif
191 set_robust_list_not_avail ();
193 #ifndef __ASSUME_PRIVATE_FUTEX
194 /* Private futexes are always used (at least internally) so that
195 doing the test once this early is beneficial. */
197 int word = 0;
198 #if defined(__UCLIBC_USE_TIME64__) && defined(__NR_futex_time64)
199 word = INTERNAL_SYSCALL (futex_time64, err, 3, &word,
200 FUTEX_WAKE | FUTEX_PRIVATE_FLAG, 1);
201 #else
202 word = INTERNAL_SYSCALL (futex, err, 3, &word,
203 FUTEX_WAKE | FUTEX_PRIVATE_FLAG, 1);
204 #endif
206 if (!INTERNAL_SYSCALL_ERROR_P (word, err))
207 THREAD_SETMEM (pd, header.private_futex, FUTEX_PRIVATE_FLAG);
210 /* Private futexes have been introduced earlier than the
211 FUTEX_CLOCK_REALTIME flag. We don't have to run the test if we
212 know the former are not supported. This also means we know the
213 kernel will return ENOSYS for unknown operations. */
214 if (THREAD_GETMEM (pd, header.private_futex) != 0)
215 #endif
216 #ifndef __ASSUME_FUTEX_CLOCK_REALTIME
218 int word = 0;
219 /* NB: the syscall actually takes six parameters. The last is the
220 bit mask. But since we will not actually wait at all the value
221 is irrelevant. Given that passing six parameters is difficult
222 on some architectures we just pass whatever random value the
223 calling convention calls for to the kernel. It causes no harm. */
224 #if defined(__UCLIBC_USE_TIME64__) && defined(__NR_futex_time64)
225 word = INTERNAL_SYSCALL (futex_time64, err, 5, &word,
226 FUTEX_WAIT_BITSET | FUTEX_CLOCK_REALTIME
227 | FUTEX_PRIVATE_FLAG, 1, NULL, 0);
228 #else
229 word = INTERNAL_SYSCALL (futex, err, 5, &word,
230 FUTEX_WAIT_BITSET | FUTEX_CLOCK_REALTIME
231 | FUTEX_PRIVATE_FLAG, 1, NULL, 0);
232 #endif
234 assert (INTERNAL_SYSCALL_ERROR_P (word, err));
235 if (INTERNAL_SYSCALL_ERRNO (word, err) != ENOSYS)
236 __set_futex_clock_realtime ();
238 #endif
240 /* Set initial thread's stack block from 0 up to __libc_stack_end.
241 It will be bigger than it actually is, but for unwind.c/pt-longjmp.c
242 purposes this is good enough. */
243 THREAD_SETMEM (pd, stackblock_size, (size_t) __libc_stack_end);
245 /* Initialize the list of all running threads with the main thread. */
246 INIT_LIST_HEAD (&__stack_user);
247 list_add (&pd->list, &__stack_user);
249 /* Before initializing __stack_user, the debugger could not find us and
250 had to set __nptl_initial_report_events. Propagate its setting. */
251 THREAD_SETMEM (pd, report_events, __nptl_initial_report_events);
253 /* Install the cancellation signal handler. If for some reason we
254 cannot install the handler we do not abort. Maybe we should, but
255 it is only asynchronous cancellation which is affected. */
256 struct sigaction sa;
257 sa.sa_sigaction = sigcancel_handler;
258 sa.sa_flags = SA_SIGINFO;
259 __sigemptyset (&sa.sa_mask);
261 (void) __libc_sigaction (SIGCANCEL, &sa, NULL);
263 /* Install the handle to change the threads' uid/gid. */
264 sa.sa_sigaction = sighandler_setxid;
265 sa.sa_flags = SA_SIGINFO | SA_RESTART;
267 (void) __libc_sigaction (SIGSETXID, &sa, NULL);
269 /* The parent process might have left the signals blocked. Just in
270 case, unblock it. We reuse the signal mask in the sigaction
271 structure. It is already cleared. */
272 __sigaddset (&sa.sa_mask, SIGCANCEL);
273 __sigaddset (&sa.sa_mask, SIGSETXID);
274 (void) INTERNAL_SYSCALL (rt_sigprocmask, err, 4, SIG_UNBLOCK, &sa.sa_mask,
275 NULL, _NSIG / 8);
277 /* Get the size of the static and alignment requirements for the TLS
278 block. */
279 size_t static_tls_align;
280 _dl_get_tls_static_info (&__static_tls_size, &static_tls_align);
282 /* Make sure the size takes all the alignments into account. */
283 if (STACK_ALIGN > static_tls_align)
284 static_tls_align = STACK_ALIGN;
285 __static_tls_align_m1 = static_tls_align - 1;
287 __static_tls_size = roundup (__static_tls_size, static_tls_align);
289 /* Determine the default allowed stack size. This is the size used
290 in case the user does not specify one. */
291 struct rlimit limit;
292 if (getrlimit (RLIMIT_STACK, &limit) != 0
293 || limit.rlim_cur == RLIM_INFINITY)
294 /* The system limit is not usable. Use a user-specified or
295 architecture-specific default. */
296 limit.rlim_cur = __PTHREADS_STACK_DEFAULT_SIZE__;
297 if (limit.rlim_cur < PTHREAD_STACK_MIN)
298 /* The system limit is unusably small.
299 Use the minimal size acceptable. */
300 limit.rlim_cur = PTHREAD_STACK_MIN;
302 /* Do not exceed the user-specified or architecture-specific default */
303 if (limit.rlim_cur > __PTHREADS_STACK_DEFAULT_SIZE__)
304 limit.rlim_cur = __PTHREADS_STACK_DEFAULT_SIZE__;
306 /* Make sure it meets the minimum size that allocate_stack
307 (allocatestack.c) will demand, which depends on the page size. */
308 #ifdef SHARED
309 extern size_t GLRO(dl_pagesize);
310 const uintptr_t pagesz = GLRO(dl_pagesize);
311 #else
312 const uintptr_t pagesz = sysconf (_SC_PAGESIZE);
313 #endif
314 const size_t minstack = pagesz + __static_tls_size + MINIMAL_REST_STACK;
315 if (limit.rlim_cur < minstack)
316 limit.rlim_cur = minstack;
318 /* Round the resource limit up to page size. */
319 limit.rlim_cur = (limit.rlim_cur + pagesz - 1) & -pagesz;
320 __default_stacksize = limit.rlim_cur;
322 #ifdef SHARED
323 /* Transfer the old value from the dynamic linker's internal location. */
324 *__libc_dl_error_tsd () = *(*GL(dl_error_catch_tsd)) ();
325 GL(dl_error_catch_tsd) = &__libc_dl_error_tsd;
327 #endif
329 GL(dl_init_static_tls) = &__pthread_init_static_tls;
331 /* Register the fork generation counter with the libc. */
332 #ifndef TLS_MULTIPLE_THREADS_IN_TCB
333 __libc_multiple_threads_ptr =
334 #endif
335 __libc_pthread_init (&__fork_generation, __reclaim_stacks);
337 /* Determine whether the machine is SMP or not. */
338 __is_smp = is_smp_system ();
340 /* uClibc-specific stdio initialization for threads. */
342 FILE *fp;
343 _stdio_user_locking = 0; /* 2 if threading not initialized */
344 for (fp = _stdio_openlist; fp != NULL; fp = fp->__nextopen) {
345 if (fp->__user_locking != 1) {
346 fp->__user_locking = 0;
351 strong_alias (__pthread_initialize_minimal_internal,
352 __pthread_initialize_minimal)
354 size_t
355 __pthread_get_minstack (const pthread_attr_t *attr)
357 return __static_tls_size + PTHREAD_STACK_MIN;