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CommitLineData
1da177e4
LT
1/*
2 * linux/kernel/signal.c
3 *
4 * Copyright (C) 1991, 1992 Linus Torvalds
5 *
6 * 1997-11-02 Modified for POSIX.1b signals by Richard Henderson
7 *
8 * 2003-06-02 Jim Houston - Concurrent Computer Corp.
9 * Changes to use preallocated sigqueue structures
10 * to allow signals to be sent reliably.
11 */
12
1da177e4 13#include <linux/slab.h>
9984de1a 14#include <linux/export.h>
1da177e4
LT
15#include <linux/init.h>
16#include <linux/sched.h>
17#include <linux/fs.h>
18#include <linux/tty.h>
19#include <linux/binfmts.h>
179899fd 20#include <linux/coredump.h>
1da177e4
LT
21#include <linux/security.h>
22#include <linux/syscalls.h>
23#include <linux/ptrace.h>
7ed20e1a 24#include <linux/signal.h>
fba2afaa 25#include <linux/signalfd.h>
f84d49b2 26#include <linux/ratelimit.h>
35de254d 27#include <linux/tracehook.h>
c59ede7b 28#include <linux/capability.h>
7dfb7103 29#include <linux/freezer.h>
84d73786
SB
30#include <linux/pid_namespace.h>
31#include <linux/nsproxy.h>
6b550f94 32#include <linux/user_namespace.h>
0326f5a9 33#include <linux/uprobes.h>
90268439 34#include <linux/compat.h>
2b5faa4c 35#include <linux/cn_proc.h>
52f5684c
GID
36#include <linux/compiler.h>
37
d1eb650f
MH
38#define CREATE_TRACE_POINTS
39#include <trace/events/signal.h>
84d73786 40
1da177e4
LT
41#include <asm/param.h>
42#include <asm/uaccess.h>
43#include <asm/unistd.h>
44#include <asm/siginfo.h>
d550bbd4 45#include <asm/cacheflush.h>
e1396065 46#include "audit.h" /* audit_signal_info() */
1da177e4
LT
47
48/*
49 * SLAB caches for signal bits.
50 */
51
e18b890b 52static struct kmem_cache *sigqueue_cachep;
1da177e4 53
f84d49b2
NO
54int print_fatal_signals __read_mostly;
55
35de254d 56static void __user *sig_handler(struct task_struct *t, int sig)
93585eea 57{
35de254d
RM
58 return t->sighand->action[sig - 1].sa.sa_handler;
59}
93585eea 60
35de254d
RM
61static int sig_handler_ignored(void __user *handler, int sig)
62{
93585eea 63 /* Is it explicitly or implicitly ignored? */
93585eea
PE
64 return handler == SIG_IGN ||
65 (handler == SIG_DFL && sig_kernel_ignore(sig));
66}
1da177e4 67
def8cf72 68static int sig_task_ignored(struct task_struct *t, int sig, bool force)
1da177e4 69{
35de254d 70 void __user *handler;
1da177e4 71
f008faff
ON
72 handler = sig_handler(t, sig);
73
74 if (unlikely(t->signal->flags & SIGNAL_UNKILLABLE) &&
def8cf72 75 handler == SIG_DFL && !force)
f008faff
ON
76 return 1;
77
78 return sig_handler_ignored(handler, sig);
79}
80
def8cf72 81static int sig_ignored(struct task_struct *t, int sig, bool force)
f008faff 82{
1da177e4
LT
83 /*
84 * Blocked signals are never ignored, since the
85 * signal handler may change by the time it is
86 * unblocked.
87 */
325d22df 88 if (sigismember(&t->blocked, sig) || sigismember(&t->real_blocked, sig))
1da177e4
LT
89 return 0;
90
def8cf72 91 if (!sig_task_ignored(t, sig, force))
35de254d
RM
92 return 0;
93
94 /*
95 * Tracers may want to know about even ignored signals.
96 */
a288eecc 97 return !t->ptrace;
1da177e4
LT
98}
99
100/*
101 * Re-calculate pending state from the set of locally pending
102 * signals, globally pending signals, and blocked signals.
103 */
104static inline int has_pending_signals(sigset_t *signal, sigset_t *blocked)
105{
106 unsigned long ready;
107 long i;
108
109 switch (_NSIG_WORDS) {
110 default:
111 for (i = _NSIG_WORDS, ready = 0; --i >= 0 ;)
112 ready |= signal->sig[i] &~ blocked->sig[i];
113 break;
114
115 case 4: ready = signal->sig[3] &~ blocked->sig[3];
116 ready |= signal->sig[2] &~ blocked->sig[2];
117 ready |= signal->sig[1] &~ blocked->sig[1];
118 ready |= signal->sig[0] &~ blocked->sig[0];
119 break;
120
121 case 2: ready = signal->sig[1] &~ blocked->sig[1];
122 ready |= signal->sig[0] &~ blocked->sig[0];
123 break;
124
125 case 1: ready = signal->sig[0] &~ blocked->sig[0];
126 }
127 return ready != 0;
128}
129
130#define PENDING(p,b) has_pending_signals(&(p)->signal, (b))
131
7bb44ade 132static int recalc_sigpending_tsk(struct task_struct *t)
1da177e4 133{
3759a0d9 134 if ((t->jobctl & JOBCTL_PENDING_MASK) ||
1da177e4 135 PENDING(&t->pending, &t->blocked) ||
7bb44ade 136 PENDING(&t->signal->shared_pending, &t->blocked)) {
1da177e4 137 set_tsk_thread_flag(t, TIF_SIGPENDING);
7bb44ade
RM
138 return 1;
139 }
b74d0deb
RM
140 /*
141 * We must never clear the flag in another thread, or in current
142 * when it's possible the current syscall is returning -ERESTART*.
143 * So we don't clear it here, and only callers who know they should do.
144 */
7bb44ade
RM
145 return 0;
146}
147
148/*
149 * After recalculating TIF_SIGPENDING, we need to make sure the task wakes up.
150 * This is superfluous when called on current, the wakeup is a harmless no-op.
151 */
152void recalc_sigpending_and_wake(struct task_struct *t)
153{
154 if (recalc_sigpending_tsk(t))
155 signal_wake_up(t, 0);
1da177e4
LT
156}
157
158void recalc_sigpending(void)
159{
dd1d6772 160 if (!recalc_sigpending_tsk(current) && !freezing(current))
b74d0deb
RM
161 clear_thread_flag(TIF_SIGPENDING);
162
1da177e4
LT
163}
164
165/* Given the mask, find the first available signal that should be serviced. */
166
a27341cd
LT
167#define SYNCHRONOUS_MASK \
168 (sigmask(SIGSEGV) | sigmask(SIGBUS) | sigmask(SIGILL) | \
a0727e8c 169 sigmask(SIGTRAP) | sigmask(SIGFPE) | sigmask(SIGSYS))
a27341cd 170
fba2afaa 171int next_signal(struct sigpending *pending, sigset_t *mask)
1da177e4
LT
172{
173 unsigned long i, *s, *m, x;
174 int sig = 0;
f84d49b2 175
1da177e4
LT
176 s = pending->signal.sig;
177 m = mask->sig;
a27341cd
LT
178
179 /*
180 * Handle the first word specially: it contains the
181 * synchronous signals that need to be dequeued first.
182 */
183 x = *s &~ *m;
184 if (x) {
185 if (x & SYNCHRONOUS_MASK)
186 x &= SYNCHRONOUS_MASK;
187 sig = ffz(~x) + 1;
188 return sig;
189 }
190
1da177e4
LT
191 switch (_NSIG_WORDS) {
192 default:
a27341cd
LT
193 for (i = 1; i < _NSIG_WORDS; ++i) {
194 x = *++s &~ *++m;
195 if (!x)
196 continue;
197 sig = ffz(~x) + i*_NSIG_BPW + 1;
198 break;
199 }
1da177e4
LT
200 break;
201
a27341cd
LT
202 case 2:
203 x = s[1] &~ m[1];
204 if (!x)
1da177e4 205 break;
a27341cd 206 sig = ffz(~x) + _NSIG_BPW + 1;
1da177e4
LT
207 break;
208
a27341cd
LT
209 case 1:
210 /* Nothing to do */
1da177e4
LT
211 break;
212 }
f84d49b2 213
1da177e4
LT
214 return sig;
215}
216
f84d49b2
NO
217static inline void print_dropped_signal(int sig)
218{
219 static DEFINE_RATELIMIT_STATE(ratelimit_state, 5 * HZ, 10);
220
221 if (!print_fatal_signals)
222 return;
223
224 if (!__ratelimit(&ratelimit_state))
225 return;
226
227 printk(KERN_INFO "%s/%d: reached RLIMIT_SIGPENDING, dropped signal %d\n",
228 current->comm, current->pid, sig);
229}
230
d79fdd6d 231/**
7dd3db54 232 * task_set_jobctl_pending - set jobctl pending bits
d79fdd6d 233 * @task: target task
7dd3db54 234 * @mask: pending bits to set
d79fdd6d 235 *
7dd3db54
TH
236 * Clear @mask from @task->jobctl. @mask must be subset of
237 * %JOBCTL_PENDING_MASK | %JOBCTL_STOP_CONSUME | %JOBCTL_STOP_SIGMASK |
238 * %JOBCTL_TRAPPING. If stop signo is being set, the existing signo is
239 * cleared. If @task is already being killed or exiting, this function
240 * becomes noop.
241 *
242 * CONTEXT:
243 * Must be called with @task->sighand->siglock held.
244 *
245 * RETURNS:
246 * %true if @mask is set, %false if made noop because @task was dying.
247 */
248bool task_set_jobctl_pending(struct task_struct *task, unsigned int mask)
249{
250 BUG_ON(mask & ~(JOBCTL_PENDING_MASK | JOBCTL_STOP_CONSUME |
251 JOBCTL_STOP_SIGMASK | JOBCTL_TRAPPING));
252 BUG_ON((mask & JOBCTL_TRAPPING) && !(mask & JOBCTL_PENDING_MASK));
253
254 if (unlikely(fatal_signal_pending(task) || (task->flags & PF_EXITING)))
255 return false;
256
257 if (mask & JOBCTL_STOP_SIGMASK)
258 task->jobctl &= ~JOBCTL_STOP_SIGMASK;
259
260 task->jobctl |= mask;
261 return true;
262}
263
d79fdd6d 264/**
a8f072c1 265 * task_clear_jobctl_trapping - clear jobctl trapping bit
d79fdd6d
TH
266 * @task: target task
267 *
a8f072c1
TH
268 * If JOBCTL_TRAPPING is set, a ptracer is waiting for us to enter TRACED.
269 * Clear it and wake up the ptracer. Note that we don't need any further
270 * locking. @task->siglock guarantees that @task->parent points to the
271 * ptracer.
d79fdd6d
TH
272 *
273 * CONTEXT:
274 * Must be called with @task->sighand->siglock held.
275 */
73ddff2b 276void task_clear_jobctl_trapping(struct task_struct *task)
d79fdd6d 277{
a8f072c1
TH
278 if (unlikely(task->jobctl & JOBCTL_TRAPPING)) {
279 task->jobctl &= ~JOBCTL_TRAPPING;
650226bd 280 smp_mb(); /* advised by wake_up_bit() */
62c124ff 281 wake_up_bit(&task->jobctl, JOBCTL_TRAPPING_BIT);
d79fdd6d
TH
282 }
283}
284
e5c1902e 285/**
3759a0d9 286 * task_clear_jobctl_pending - clear jobctl pending bits
e5c1902e 287 * @task: target task
3759a0d9 288 * @mask: pending bits to clear
e5c1902e 289 *
3759a0d9
TH
290 * Clear @mask from @task->jobctl. @mask must be subset of
291 * %JOBCTL_PENDING_MASK. If %JOBCTL_STOP_PENDING is being cleared, other
292 * STOP bits are cleared together.
e5c1902e 293 *
6dfca329
TH
294 * If clearing of @mask leaves no stop or trap pending, this function calls
295 * task_clear_jobctl_trapping().
e5c1902e
TH
296 *
297 * CONTEXT:
298 * Must be called with @task->sighand->siglock held.
299 */
3759a0d9 300void task_clear_jobctl_pending(struct task_struct *task, unsigned int mask)
e5c1902e 301{
3759a0d9
TH
302 BUG_ON(mask & ~JOBCTL_PENDING_MASK);
303
304 if (mask & JOBCTL_STOP_PENDING)
305 mask |= JOBCTL_STOP_CONSUME | JOBCTL_STOP_DEQUEUED;
306
307 task->jobctl &= ~mask;
6dfca329
TH
308
309 if (!(task->jobctl & JOBCTL_PENDING_MASK))
310 task_clear_jobctl_trapping(task);
e5c1902e
TH
311}
312
313/**
314 * task_participate_group_stop - participate in a group stop
315 * @task: task participating in a group stop
316 *
a8f072c1 317 * @task has %JOBCTL_STOP_PENDING set and is participating in a group stop.
39efa3ef 318 * Group stop states are cleared and the group stop count is consumed if
a8f072c1 319 * %JOBCTL_STOP_CONSUME was set. If the consumption completes the group
39efa3ef 320 * stop, the appropriate %SIGNAL_* flags are set.
e5c1902e
TH
321 *
322 * CONTEXT:
323 * Must be called with @task->sighand->siglock held.
244056f9
TH
324 *
325 * RETURNS:
326 * %true if group stop completion should be notified to the parent, %false
327 * otherwise.
e5c1902e
TH
328 */
329static bool task_participate_group_stop(struct task_struct *task)
330{
331 struct signal_struct *sig = task->signal;
a8f072c1 332 bool consume = task->jobctl & JOBCTL_STOP_CONSUME;
e5c1902e 333
a8f072c1 334 WARN_ON_ONCE(!(task->jobctl & JOBCTL_STOP_PENDING));
39efa3ef 335
3759a0d9 336 task_clear_jobctl_pending(task, JOBCTL_STOP_PENDING);
e5c1902e
TH
337
338 if (!consume)
339 return false;
340
341 if (!WARN_ON_ONCE(sig->group_stop_count == 0))
342 sig->group_stop_count--;
343
244056f9
TH
344 /*
345 * Tell the caller to notify completion iff we are entering into a
346 * fresh group stop. Read comment in do_signal_stop() for details.
347 */
348 if (!sig->group_stop_count && !(sig->flags & SIGNAL_STOP_STOPPED)) {
e5c1902e
TH
349 sig->flags = SIGNAL_STOP_STOPPED;
350 return true;
351 }
352 return false;
353}
354
c69e8d9c
DH
355/*
356 * allocate a new signal queue record
357 * - this may be called without locks if and only if t == current, otherwise an
5aba085e 358 * appropriate lock must be held to stop the target task from exiting
c69e8d9c 359 */
f84d49b2
NO
360static struct sigqueue *
361__sigqueue_alloc(int sig, struct task_struct *t, gfp_t flags, int override_rlimit)
1da177e4
LT
362{
363 struct sigqueue *q = NULL;
10b1fbdb 364 struct user_struct *user;
1da177e4 365
10b1fbdb 366 /*
7cf7db8d
TG
367 * Protect access to @t credentials. This can go away when all
368 * callers hold rcu read lock.
10b1fbdb 369 */
7cf7db8d 370 rcu_read_lock();
d84f4f99 371 user = get_uid(__task_cred(t)->user);
10b1fbdb 372 atomic_inc(&user->sigpending);
7cf7db8d 373 rcu_read_unlock();
f84d49b2 374
1da177e4 375 if (override_rlimit ||
10b1fbdb 376 atomic_read(&user->sigpending) <=
78d7d407 377 task_rlimit(t, RLIMIT_SIGPENDING)) {
1da177e4 378 q = kmem_cache_alloc(sigqueue_cachep, flags);
f84d49b2
NO
379 } else {
380 print_dropped_signal(sig);
381 }
382
1da177e4 383 if (unlikely(q == NULL)) {
10b1fbdb 384 atomic_dec(&user->sigpending);
d84f4f99 385 free_uid(user);
1da177e4
LT
386 } else {
387 INIT_LIST_HEAD(&q->list);
388 q->flags = 0;
d84f4f99 389 q->user = user;
1da177e4 390 }
d84f4f99
DH
391
392 return q;
1da177e4
LT
393}
394
514a01b8 395static void __sigqueue_free(struct sigqueue *q)
1da177e4
LT
396{
397 if (q->flags & SIGQUEUE_PREALLOC)
398 return;
399 atomic_dec(&q->user->sigpending);
400 free_uid(q->user);
401 kmem_cache_free(sigqueue_cachep, q);
402}
403
6a14c5c9 404void flush_sigqueue(struct sigpending *queue)
1da177e4
LT
405{
406 struct sigqueue *q;
407
408 sigemptyset(&queue->signal);
409 while (!list_empty(&queue->list)) {
410 q = list_entry(queue->list.next, struct sigqueue , list);
411 list_del_init(&q->list);
412 __sigqueue_free(q);
413 }
414}
415
416/*
417 * Flush all pending signals for a task.
418 */
3bcac026
DH
419void __flush_signals(struct task_struct *t)
420{
421 clear_tsk_thread_flag(t, TIF_SIGPENDING);
422 flush_sigqueue(&t->pending);
423 flush_sigqueue(&t->signal->shared_pending);
424}
425
c81addc9 426void flush_signals(struct task_struct *t)
1da177e4
LT
427{
428 unsigned long flags;
429
430 spin_lock_irqsave(&t->sighand->siglock, flags);
3bcac026 431 __flush_signals(t);
1da177e4
LT
432 spin_unlock_irqrestore(&t->sighand->siglock, flags);
433}
434
cbaffba1
ON
435static void __flush_itimer_signals(struct sigpending *pending)
436{
437 sigset_t signal, retain;
438 struct sigqueue *q, *n;
439
440 signal = pending->signal;
441 sigemptyset(&retain);
442
443 list_for_each_entry_safe(q, n, &pending->list, list) {
444 int sig = q->info.si_signo;
445
446 if (likely(q->info.si_code != SI_TIMER)) {
447 sigaddset(&retain, sig);
448 } else {
449 sigdelset(&signal, sig);
450 list_del_init(&q->list);
451 __sigqueue_free(q);
452 }
453 }
454
455 sigorsets(&pending->signal, &signal, &retain);
456}
457
458void flush_itimer_signals(void)
459{
460 struct task_struct *tsk = current;
461 unsigned long flags;
462
463 spin_lock_irqsave(&tsk->sighand->siglock, flags);
464 __flush_itimer_signals(&tsk->pending);
465 __flush_itimer_signals(&tsk->signal->shared_pending);
466 spin_unlock_irqrestore(&tsk->sighand->siglock, flags);
467}
468
10ab825b
ON
469void ignore_signals(struct task_struct *t)
470{
471 int i;
472
473 for (i = 0; i < _NSIG; ++i)
474 t->sighand->action[i].sa.sa_handler = SIG_IGN;
475
476 flush_signals(t);
477}
478
1da177e4
LT
479/*
480 * Flush all handlers for a task.
481 */
482
483void
484flush_signal_handlers(struct task_struct *t, int force_default)
485{
486 int i;
487 struct k_sigaction *ka = &t->sighand->action[0];
488 for (i = _NSIG ; i != 0 ; i--) {
489 if (force_default || ka->sa.sa_handler != SIG_IGN)
490 ka->sa.sa_handler = SIG_DFL;
491 ka->sa.sa_flags = 0;
522cff14 492#ifdef __ARCH_HAS_SA_RESTORER
2ca39528
KC
493 ka->sa.sa_restorer = NULL;
494#endif
1da177e4
LT
495 sigemptyset(&ka->sa.sa_mask);
496 ka++;
497 }
498}
499
abd4f750
MAS
500int unhandled_signal(struct task_struct *tsk, int sig)
501{
445a91d2 502 void __user *handler = tsk->sighand->action[sig-1].sa.sa_handler;
b460cbc5 503 if (is_global_init(tsk))
abd4f750 504 return 1;
445a91d2 505 if (handler != SIG_IGN && handler != SIG_DFL)
abd4f750 506 return 0;
a288eecc
TH
507 /* if ptraced, let the tracer determine */
508 return !tsk->ptrace;
abd4f750
MAS
509}
510
5aba085e
RD
511/*
512 * Notify the system that a driver wants to block all signals for this
1da177e4
LT
513 * process, and wants to be notified if any signals at all were to be
514 * sent/acted upon. If the notifier routine returns non-zero, then the
515 * signal will be acted upon after all. If the notifier routine returns 0,
516 * then then signal will be blocked. Only one block per process is
517 * allowed. priv is a pointer to private data that the notifier routine
5aba085e
RD
518 * can use to determine if the signal should be blocked or not.
519 */
1da177e4
LT
520void
521block_all_signals(int (*notifier)(void *priv), void *priv, sigset_t *mask)
522{
523 unsigned long flags;
524
525 spin_lock_irqsave(&current->sighand->siglock, flags);
526 current->notifier_mask = mask;
527 current->notifier_data = priv;
528 current->notifier = notifier;
529 spin_unlock_irqrestore(&current->sighand->siglock, flags);
530}
531
532/* Notify the system that blocking has ended. */
533
534void
535unblock_all_signals(void)
536{
537 unsigned long flags;
538
539 spin_lock_irqsave(&current->sighand->siglock, flags);
540 current->notifier = NULL;
541 current->notifier_data = NULL;
542 recalc_sigpending();
543 spin_unlock_irqrestore(&current->sighand->siglock, flags);
544}
545
100360f0 546static void collect_signal(int sig, struct sigpending *list, siginfo_t *info)
1da177e4
LT
547{
548 struct sigqueue *q, *first = NULL;
1da177e4 549
1da177e4
LT
550 /*
551 * Collect the siginfo appropriate to this signal. Check if
552 * there is another siginfo for the same signal.
553 */
554 list_for_each_entry(q, &list->list, list) {
555 if (q->info.si_signo == sig) {
d4434207
ON
556 if (first)
557 goto still_pending;
1da177e4
LT
558 first = q;
559 }
560 }
d4434207
ON
561
562 sigdelset(&list->signal, sig);
563
1da177e4 564 if (first) {
d4434207 565still_pending:
1da177e4
LT
566 list_del_init(&first->list);
567 copy_siginfo(info, &first->info);
568 __sigqueue_free(first);
1da177e4 569 } else {
5aba085e
RD
570 /*
571 * Ok, it wasn't in the queue. This must be
572 * a fast-pathed signal or we must have been
573 * out of queue space. So zero out the info.
1da177e4 574 */
1da177e4
LT
575 info->si_signo = sig;
576 info->si_errno = 0;
7486e5d9 577 info->si_code = SI_USER;
1da177e4
LT
578 info->si_pid = 0;
579 info->si_uid = 0;
580 }
1da177e4
LT
581}
582
583static int __dequeue_signal(struct sigpending *pending, sigset_t *mask,
584 siginfo_t *info)
585{
27d91e07 586 int sig = next_signal(pending, mask);
1da177e4 587
1da177e4
LT
588 if (sig) {
589 if (current->notifier) {
590 if (sigismember(current->notifier_mask, sig)) {
591 if (!(current->notifier)(current->notifier_data)) {
592 clear_thread_flag(TIF_SIGPENDING);
593 return 0;
594 }
595 }
596 }
597
100360f0 598 collect_signal(sig, pending, info);
1da177e4 599 }
1da177e4
LT
600
601 return sig;
602}
603
604/*
5aba085e 605 * Dequeue a signal and return the element to the caller, which is
1da177e4
LT
606 * expected to free it.
607 *
608 * All callers have to hold the siglock.
609 */
610int dequeue_signal(struct task_struct *tsk, sigset_t *mask, siginfo_t *info)
611{
c5363d03 612 int signr;
caec4e8d
BH
613
614 /* We only dequeue private signals from ourselves, we don't let
615 * signalfd steal them
616 */
b8fceee1 617 signr = __dequeue_signal(&tsk->pending, mask, info);
8bfd9a7a 618 if (!signr) {
1da177e4
LT
619 signr = __dequeue_signal(&tsk->signal->shared_pending,
620 mask, info);
8bfd9a7a
TG
621 /*
622 * itimer signal ?
623 *
624 * itimers are process shared and we restart periodic
625 * itimers in the signal delivery path to prevent DoS
626 * attacks in the high resolution timer case. This is
5aba085e 627 * compliant with the old way of self-restarting
8bfd9a7a
TG
628 * itimers, as the SIGALRM is a legacy signal and only
629 * queued once. Changing the restart behaviour to
630 * restart the timer in the signal dequeue path is
631 * reducing the timer noise on heavy loaded !highres
632 * systems too.
633 */
634 if (unlikely(signr == SIGALRM)) {
635 struct hrtimer *tmr = &tsk->signal->real_timer;
636
637 if (!hrtimer_is_queued(tmr) &&
638 tsk->signal->it_real_incr.tv64 != 0) {
639 hrtimer_forward(tmr, tmr->base->get_time(),
640 tsk->signal->it_real_incr);
641 hrtimer_restart(tmr);
642 }
643 }
644 }
c5363d03 645
b8fceee1 646 recalc_sigpending();
c5363d03
PE
647 if (!signr)
648 return 0;
649
650 if (unlikely(sig_kernel_stop(signr))) {
8bfd9a7a
TG
651 /*
652 * Set a marker that we have dequeued a stop signal. Our
653 * caller might release the siglock and then the pending
654 * stop signal it is about to process is no longer in the
655 * pending bitmasks, but must still be cleared by a SIGCONT
656 * (and overruled by a SIGKILL). So those cases clear this
657 * shared flag after we've set it. Note that this flag may
658 * remain set after the signal we return is ignored or
659 * handled. That doesn't matter because its only purpose
660 * is to alert stop-signal processing code when another
661 * processor has come along and cleared the flag.
662 */
a8f072c1 663 current->jobctl |= JOBCTL_STOP_DEQUEUED;
8bfd9a7a 664 }
c5363d03 665 if ((info->si_code & __SI_MASK) == __SI_TIMER && info->si_sys_private) {
1da177e4
LT
666 /*
667 * Release the siglock to ensure proper locking order
668 * of timer locks outside of siglocks. Note, we leave
669 * irqs disabled here, since the posix-timers code is
670 * about to disable them again anyway.
671 */
672 spin_unlock(&tsk->sighand->siglock);
673 do_schedule_next_timer(info);
674 spin_lock(&tsk->sighand->siglock);
675 }
676 return signr;
677}
678
679/*
680 * Tell a process that it has a new active signal..
681 *
682 * NOTE! we rely on the previous spin_lock to
683 * lock interrupts for us! We can only be called with
684 * "siglock" held, and the local interrupt must
685 * have been disabled when that got acquired!
686 *
687 * No need to set need_resched since signal event passing
688 * goes through ->blocked
689 */
910ffdb1 690void signal_wake_up_state(struct task_struct *t, unsigned int state)
1da177e4 691{
1da177e4 692 set_tsk_thread_flag(t, TIF_SIGPENDING);
1da177e4 693 /*
910ffdb1 694 * TASK_WAKEKILL also means wake it up in the stopped/traced/killable
f021a3c2 695 * case. We don't check t->state here because there is a race with it
1da177e4
LT
696 * executing another processor and just now entering stopped state.
697 * By using wake_up_state, we ensure the process will wake up and
698 * handle its death signal.
699 */
910ffdb1 700 if (!wake_up_state(t, state | TASK_INTERRUPTIBLE))
1da177e4
LT
701 kick_process(t);
702}
703
71fabd5e
GA
704/*
705 * Remove signals in mask from the pending set and queue.
706 * Returns 1 if any signals were found.
707 *
708 * All callers must be holding the siglock.
71fabd5e 709 */
c09c1441 710static int flush_sigqueue_mask(sigset_t *mask, struct sigpending *s)
71fabd5e
GA
711{
712 struct sigqueue *q, *n;
713 sigset_t m;
714
715 sigandsets(&m, mask, &s->signal);
716 if (sigisemptyset(&m))
717 return 0;
718
702a5073 719 sigandnsets(&s->signal, &s->signal, mask);
71fabd5e
GA
720 list_for_each_entry_safe(q, n, &s->list, list) {
721 if (sigismember(mask, q->info.si_signo)) {
722 list_del_init(&q->list);
723 __sigqueue_free(q);
724 }
725 }
726 return 1;
727}
1da177e4 728
614c517d
ON
729static inline int is_si_special(const struct siginfo *info)
730{
731 return info <= SEND_SIG_FORCED;
732}
733
734static inline bool si_fromuser(const struct siginfo *info)
735{
736 return info == SEND_SIG_NOINFO ||
737 (!is_si_special(info) && SI_FROMUSER(info));
738}
739
39fd3393
SH
740/*
741 * called with RCU read lock from check_kill_permission()
742 */
743static int kill_ok_by_cred(struct task_struct *t)
744{
745 const struct cred *cred = current_cred();
746 const struct cred *tcred = __task_cred(t);
747
5af66203
EB
748 if (uid_eq(cred->euid, tcred->suid) ||
749 uid_eq(cred->euid, tcred->uid) ||
750 uid_eq(cred->uid, tcred->suid) ||
751 uid_eq(cred->uid, tcred->uid))
39fd3393
SH
752 return 1;
753
c4a4d603 754 if (ns_capable(tcred->user_ns, CAP_KILL))
39fd3393
SH
755 return 1;
756
757 return 0;
758}
759
1da177e4
LT
760/*
761 * Bad permissions for sending the signal
694f690d 762 * - the caller must hold the RCU read lock
1da177e4
LT
763 */
764static int check_kill_permission(int sig, struct siginfo *info,
765 struct task_struct *t)
766{
2e2ba22e 767 struct pid *sid;
3b5e9e53
ON
768 int error;
769
7ed20e1a 770 if (!valid_signal(sig))
3b5e9e53
ON
771 return -EINVAL;
772
614c517d 773 if (!si_fromuser(info))
3b5e9e53 774 return 0;
e54dc243 775
3b5e9e53
ON
776 error = audit_signal_info(sig, t); /* Let audit system see the signal */
777 if (error)
1da177e4 778 return error;
3b5e9e53 779
065add39 780 if (!same_thread_group(current, t) &&
39fd3393 781 !kill_ok_by_cred(t)) {
2e2ba22e
ON
782 switch (sig) {
783 case SIGCONT:
2e2ba22e 784 sid = task_session(t);
2e2ba22e
ON
785 /*
786 * We don't return the error if sid == NULL. The
787 * task was unhashed, the caller must notice this.
788 */
789 if (!sid || sid == task_session(current))
790 break;
791 default:
792 return -EPERM;
793 }
794 }
c2f0c7c3 795
e54dc243 796 return security_task_kill(t, info, sig, 0);
1da177e4
LT
797}
798
fb1d910c
TH
799/**
800 * ptrace_trap_notify - schedule trap to notify ptracer
801 * @t: tracee wanting to notify tracer
802 *
803 * This function schedules sticky ptrace trap which is cleared on the next
804 * TRAP_STOP to notify ptracer of an event. @t must have been seized by
805 * ptracer.
806 *
544b2c91
TH
807 * If @t is running, STOP trap will be taken. If trapped for STOP and
808 * ptracer is listening for events, tracee is woken up so that it can
809 * re-trap for the new event. If trapped otherwise, STOP trap will be
810 * eventually taken without returning to userland after the existing traps
811 * are finished by PTRACE_CONT.
fb1d910c
TH
812 *
813 * CONTEXT:
814 * Must be called with @task->sighand->siglock held.
815 */
816static void ptrace_trap_notify(struct task_struct *t)
817{
818 WARN_ON_ONCE(!(t->ptrace & PT_SEIZED));
819 assert_spin_locked(&t->sighand->siglock);
820
821 task_set_jobctl_pending(t, JOBCTL_TRAP_NOTIFY);
910ffdb1 822 ptrace_signal_wake_up(t, t->jobctl & JOBCTL_LISTENING);
fb1d910c
TH
823}
824
1da177e4 825/*
7e695a5e
ON
826 * Handle magic process-wide effects of stop/continue signals. Unlike
827 * the signal actions, these happen immediately at signal-generation
1da177e4
LT
828 * time regardless of blocking, ignoring, or handling. This does the
829 * actual continuing for SIGCONT, but not the actual stopping for stop
7e695a5e
ON
830 * signals. The process stop is done as a signal action for SIG_DFL.
831 *
832 * Returns true if the signal should be actually delivered, otherwise
833 * it should be dropped.
1da177e4 834 */
403bad72 835static bool prepare_signal(int sig, struct task_struct *p, bool force)
1da177e4 836{
ad16a460 837 struct signal_struct *signal = p->signal;
1da177e4 838 struct task_struct *t;
9490592f 839 sigset_t flush;
1da177e4 840
403bad72
ON
841 if (signal->flags & (SIGNAL_GROUP_EXIT | SIGNAL_GROUP_COREDUMP)) {
842 if (signal->flags & SIGNAL_GROUP_COREDUMP)
843 return sig == SIGKILL;
1da177e4 844 /*
7e695a5e 845 * The process is in the middle of dying, nothing to do.
1da177e4 846 */
7e695a5e 847 } else if (sig_kernel_stop(sig)) {
1da177e4
LT
848 /*
849 * This is a stop signal. Remove SIGCONT from all queues.
850 */
9490592f 851 siginitset(&flush, sigmask(SIGCONT));
c09c1441 852 flush_sigqueue_mask(&flush, &signal->shared_pending);
9490592f 853 for_each_thread(p, t)
c09c1441 854 flush_sigqueue_mask(&flush, &t->pending);
1da177e4 855 } else if (sig == SIGCONT) {
fc321d2e 856 unsigned int why;
1da177e4 857 /*
1deac632 858 * Remove all stop signals from all queues, wake all threads.
1da177e4 859 */
9490592f 860 siginitset(&flush, SIG_KERNEL_STOP_MASK);
c09c1441 861 flush_sigqueue_mask(&flush, &signal->shared_pending);
9490592f 862 for_each_thread(p, t) {
c09c1441 863 flush_sigqueue_mask(&flush, &t->pending);
3759a0d9 864 task_clear_jobctl_pending(t, JOBCTL_STOP_PENDING);
fb1d910c
TH
865 if (likely(!(t->ptrace & PT_SEIZED)))
866 wake_up_state(t, __TASK_STOPPED);
867 else
868 ptrace_trap_notify(t);
9490592f 869 }
1da177e4 870
fc321d2e
ON
871 /*
872 * Notify the parent with CLD_CONTINUED if we were stopped.
873 *
874 * If we were in the middle of a group stop, we pretend it
875 * was already finished, and then continued. Since SIGCHLD
876 * doesn't queue we report only CLD_STOPPED, as if the next
877 * CLD_CONTINUED was dropped.
878 */
879 why = 0;
ad16a460 880 if (signal->flags & SIGNAL_STOP_STOPPED)
fc321d2e 881 why |= SIGNAL_CLD_CONTINUED;
ad16a460 882 else if (signal->group_stop_count)
fc321d2e
ON
883 why |= SIGNAL_CLD_STOPPED;
884
885 if (why) {
021e1ae3 886 /*
ae6d2ed7 887 * The first thread which returns from do_signal_stop()
021e1ae3
ON
888 * will take ->siglock, notice SIGNAL_CLD_MASK, and
889 * notify its parent. See get_signal_to_deliver().
890 */
ad16a460
ON
891 signal->flags = why | SIGNAL_STOP_CONTINUED;
892 signal->group_stop_count = 0;
893 signal->group_exit_code = 0;
1da177e4 894 }
1da177e4 895 }
7e695a5e 896
def8cf72 897 return !sig_ignored(p, sig, force);
1da177e4
LT
898}
899
71f11dc0
ON
900/*
901 * Test if P wants to take SIG. After we've checked all threads with this,
902 * it's equivalent to finding no threads not blocking SIG. Any threads not
903 * blocking SIG were ruled out because they are not running and already
904 * have pending signals. Such threads will dequeue from the shared queue
905 * as soon as they're available, so putting the signal on the shared queue
906 * will be equivalent to sending it to one such thread.
907 */
908static inline int wants_signal(int sig, struct task_struct *p)
909{
910 if (sigismember(&p->blocked, sig))
911 return 0;
912 if (p->flags & PF_EXITING)
913 return 0;
914 if (sig == SIGKILL)
915 return 1;
916 if (task_is_stopped_or_traced(p))
917 return 0;
918 return task_curr(p) || !signal_pending(p);
919}
920
5fcd835b 921static void complete_signal(int sig, struct task_struct *p, int group)
71f11dc0
ON
922{
923 struct signal_struct *signal = p->signal;
924 struct task_struct *t;
925
926 /*
927 * Now find a thread we can wake up to take the signal off the queue.
928 *
929 * If the main thread wants the signal, it gets first crack.
930 * Probably the least surprising to the average bear.
931 */
932 if (wants_signal(sig, p))
933 t = p;
5fcd835b 934 else if (!group || thread_group_empty(p))
71f11dc0
ON
935 /*
936 * There is just one thread and it does not need to be woken.
937 * It will dequeue unblocked signals before it runs again.
938 */
939 return;
940 else {
941 /*
942 * Otherwise try to find a suitable thread.
943 */
944 t = signal->curr_target;
945 while (!wants_signal(sig, t)) {
946 t = next_thread(t);
947 if (t == signal->curr_target)
948 /*
949 * No thread needs to be woken.
950 * Any eligible threads will see
951 * the signal in the queue soon.
952 */
953 return;
954 }
955 signal->curr_target = t;
956 }
957
958 /*
959 * Found a killable thread. If the signal will be fatal,
960 * then start taking the whole group down immediately.
961 */
fae5fa44
ON
962 if (sig_fatal(p, sig) &&
963 !(signal->flags & (SIGNAL_UNKILLABLE | SIGNAL_GROUP_EXIT)) &&
71f11dc0 964 !sigismember(&t->real_blocked, sig) &&
a288eecc 965 (sig == SIGKILL || !t->ptrace)) {
71f11dc0
ON
966 /*
967 * This signal will be fatal to the whole group.
968 */
969 if (!sig_kernel_coredump(sig)) {
970 /*
971 * Start a group exit and wake everybody up.
972 * This way we don't have other threads
973 * running and doing things after a slower
974 * thread has the fatal signal pending.
975 */
976 signal->flags = SIGNAL_GROUP_EXIT;
977 signal->group_exit_code = sig;
978 signal->group_stop_count = 0;
979 t = p;
980 do {
6dfca329 981 task_clear_jobctl_pending(t, JOBCTL_PENDING_MASK);
71f11dc0
ON
982 sigaddset(&t->pending.signal, SIGKILL);
983 signal_wake_up(t, 1);
984 } while_each_thread(p, t);
985 return;
986 }
987 }
988
989 /*
990 * The signal is already in the shared-pending queue.
991 * Tell the chosen thread to wake up and dequeue it.
992 */
993 signal_wake_up(t, sig == SIGKILL);
994 return;
995}
996
af7fff9c
PE
997static inline int legacy_queue(struct sigpending *signals, int sig)
998{
999 return (sig < SIGRTMIN) && sigismember(&signals->signal, sig);
1000}
1001
6b550f94
SH
1002#ifdef CONFIG_USER_NS
1003static inline void userns_fixup_signal_uid(struct siginfo *info, struct task_struct *t)
1004{
1005 if (current_user_ns() == task_cred_xxx(t, user_ns))
1006 return;
1007
1008 if (SI_FROMKERNEL(info))
1009 return;
1010
078de5f7
EB
1011 rcu_read_lock();
1012 info->si_uid = from_kuid_munged(task_cred_xxx(t, user_ns),
1013 make_kuid(current_user_ns(), info->si_uid));
1014 rcu_read_unlock();
6b550f94
SH
1015}
1016#else
1017static inline void userns_fixup_signal_uid(struct siginfo *info, struct task_struct *t)
1018{
1019 return;
1020}
1021#endif
1022
7978b567
SB
1023static int __send_signal(int sig, struct siginfo *info, struct task_struct *t,
1024 int group, int from_ancestor_ns)
1da177e4 1025{
2ca3515a 1026 struct sigpending *pending;
6e65acba 1027 struct sigqueue *q;
7a0aeb14 1028 int override_rlimit;
6c303d3a 1029 int ret = 0, result;
0a16b607 1030
6e65acba 1031 assert_spin_locked(&t->sighand->siglock);
921cf9f6 1032
6c303d3a 1033 result = TRACE_SIGNAL_IGNORED;
629d362b
ON
1034 if (!prepare_signal(sig, t,
1035 from_ancestor_ns || (info == SEND_SIG_FORCED)))
6c303d3a 1036 goto ret;
2ca3515a
ON
1037
1038 pending = group ? &t->signal->shared_pending : &t->pending;
2acb024d
PE
1039 /*
1040 * Short-circuit ignored signals and support queuing
1041 * exactly one non-rt signal, so that we can get more
1042 * detailed information about the cause of the signal.
1043 */
6c303d3a 1044 result = TRACE_SIGNAL_ALREADY_PENDING;
7e695a5e 1045 if (legacy_queue(pending, sig))
6c303d3a
ON
1046 goto ret;
1047
1048 result = TRACE_SIGNAL_DELIVERED;
1da177e4
LT
1049 /*
1050 * fast-pathed signals for kernel-internal things like SIGSTOP
1051 * or SIGKILL.
1052 */
b67a1b9e 1053 if (info == SEND_SIG_FORCED)
1da177e4
LT
1054 goto out_set;
1055
5aba085e
RD
1056 /*
1057 * Real-time signals must be queued if sent by sigqueue, or
1058 * some other real-time mechanism. It is implementation
1059 * defined whether kill() does so. We attempt to do so, on
1060 * the principle of least surprise, but since kill is not
1061 * allowed to fail with EAGAIN when low on memory we just
1062 * make sure at least one signal gets delivered and don't
1063 * pass on the info struct.
1064 */
7a0aeb14
VN
1065 if (sig < SIGRTMIN)
1066 override_rlimit = (is_si_special(info) || info->si_code >= 0);
1067 else
1068 override_rlimit = 0;
1069
f84d49b2 1070 q = __sigqueue_alloc(sig, t, GFP_ATOMIC | __GFP_NOTRACK_FALSE_POSITIVE,
7a0aeb14 1071 override_rlimit);
1da177e4 1072 if (q) {
2ca3515a 1073 list_add_tail(&q->list, &pending->list);
1da177e4 1074 switch ((unsigned long) info) {
b67a1b9e 1075 case (unsigned long) SEND_SIG_NOINFO:
1da177e4
LT
1076 q->info.si_signo = sig;
1077 q->info.si_errno = 0;
1078 q->info.si_code = SI_USER;
9cd4fd10 1079 q->info.si_pid = task_tgid_nr_ns(current,
09bca05c 1080 task_active_pid_ns(t));
078de5f7 1081 q->info.si_uid = from_kuid_munged(current_user_ns(), current_uid());
1da177e4 1082 break;
b67a1b9e 1083 case (unsigned long) SEND_SIG_PRIV:
1da177e4
LT
1084 q->info.si_signo = sig;
1085 q->info.si_errno = 0;
1086 q->info.si_code = SI_KERNEL;
1087 q->info.si_pid = 0;
1088 q->info.si_uid = 0;
1089 break;
1090 default:
1091 copy_siginfo(&q->info, info);
6588c1e3
SB
1092 if (from_ancestor_ns)
1093 q->info.si_pid = 0;
1da177e4
LT
1094 break;
1095 }
6b550f94
SH
1096
1097 userns_fixup_signal_uid(&q->info, t);
1098
621d3121 1099 } else if (!is_si_special(info)) {
ba005e1f
MH
1100 if (sig >= SIGRTMIN && info->si_code != SI_USER) {
1101 /*
1102 * Queue overflow, abort. We may abort if the
1103 * signal was rt and sent by user using something
1104 * other than kill().
1105 */
6c303d3a
ON
1106 result = TRACE_SIGNAL_OVERFLOW_FAIL;
1107 ret = -EAGAIN;
1108 goto ret;
ba005e1f
MH
1109 } else {
1110 /*
1111 * This is a silent loss of information. We still
1112 * send the signal, but the *info bits are lost.
1113 */
6c303d3a 1114 result = TRACE_SIGNAL_LOSE_INFO;
ba005e1f 1115 }
1da177e4
LT
1116 }
1117
1118out_set:
53c30337 1119 signalfd_notify(t, sig);
2ca3515a 1120 sigaddset(&pending->signal, sig);
4cd4b6d4 1121 complete_signal(sig, t, group);
6c303d3a
ON
1122ret:
1123 trace_signal_generate(sig, info, t, group, result);
1124 return ret;
1da177e4
LT
1125}
1126
7978b567
SB
1127static int send_signal(int sig, struct siginfo *info, struct task_struct *t,
1128 int group)
1129{
921cf9f6
SB
1130 int from_ancestor_ns = 0;
1131
1132#ifdef CONFIG_PID_NS
dd34200a
ON
1133 from_ancestor_ns = si_fromuser(info) &&
1134 !task_pid_nr_ns(current, task_active_pid_ns(t));
921cf9f6
SB
1135#endif
1136
1137 return __send_signal(sig, info, t, group, from_ancestor_ns);
7978b567
SB
1138}
1139
4aaefee5 1140static void print_fatal_signal(int signr)
45807a1d 1141{
4aaefee5 1142 struct pt_regs *regs = signal_pt_regs();
681a90ff 1143 printk(KERN_INFO "potentially unexpected fatal signal %d.\n", signr);
45807a1d 1144
ca5cd877 1145#if defined(__i386__) && !defined(__arch_um__)
5d1fadc1 1146 printk(KERN_INFO "code at %08lx: ", regs->ip);
45807a1d
IM
1147 {
1148 int i;
1149 for (i = 0; i < 16; i++) {
1150 unsigned char insn;
1151
b45c6e76
AK
1152 if (get_user(insn, (unsigned char *)(regs->ip + i)))
1153 break;
5d1fadc1 1154 printk(KERN_CONT "%02x ", insn);
45807a1d
IM
1155 }
1156 }
5d1fadc1 1157 printk(KERN_CONT "\n");
45807a1d 1158#endif
3a9f84d3 1159 preempt_disable();
45807a1d 1160 show_regs(regs);
3a9f84d3 1161 preempt_enable();
45807a1d
IM
1162}
1163
1164static int __init setup_print_fatal_signals(char *str)
1165{
1166 get_option (&str, &print_fatal_signals);
1167
1168 return 1;
1169}
1170
1171__setup("print-fatal-signals=", setup_print_fatal_signals);
1da177e4 1172
4cd4b6d4
PE
1173int
1174__group_send_sig_info(int sig, struct siginfo *info, struct task_struct *p)
1175{
1176 return send_signal(sig, info, p, 1);
1177}
1178
1da177e4
LT
1179static int
1180specific_send_sig_info(int sig, struct siginfo *info, struct task_struct *t)
1181{
4cd4b6d4 1182 return send_signal(sig, info, t, 0);
1da177e4
LT
1183}
1184
4a30debf
ON
1185int do_send_sig_info(int sig, struct siginfo *info, struct task_struct *p,
1186 bool group)
1187{
1188 unsigned long flags;
1189 int ret = -ESRCH;
1190
1191 if (lock_task_sighand(p, &flags)) {
1192 ret = send_signal(sig, info, p, group);
1193 unlock_task_sighand(p, &flags);
1194 }
1195
1196 return ret;
1197}
1198
1da177e4
LT
1199/*
1200 * Force a signal that the process can't ignore: if necessary
1201 * we unblock the signal and change any SIG_IGN to SIG_DFL.
ae74c3b6
LT
1202 *
1203 * Note: If we unblock the signal, we always reset it to SIG_DFL,
1204 * since we do not want to have a signal handler that was blocked
1205 * be invoked when user space had explicitly blocked it.
1206 *
80fe728d
ON
1207 * We don't want to have recursive SIGSEGV's etc, for example,
1208 * that is why we also clear SIGNAL_UNKILLABLE.
1da177e4 1209 */
1da177e4
LT
1210int
1211force_sig_info(int sig, struct siginfo *info, struct task_struct *t)
1212{
1213 unsigned long int flags;
ae74c3b6
LT
1214 int ret, blocked, ignored;
1215 struct k_sigaction *action;
1da177e4
LT
1216
1217 spin_lock_irqsave(&t->sighand->siglock, flags);
ae74c3b6
LT
1218 action = &t->sighand->action[sig-1];
1219 ignored = action->sa.sa_handler == SIG_IGN;
1220 blocked = sigismember(&t->blocked, sig);
1221 if (blocked || ignored) {
1222 action->sa.sa_handler = SIG_DFL;
1223 if (blocked) {
1224 sigdelset(&t->blocked, sig);
7bb44ade 1225 recalc_sigpending_and_wake(t);
ae74c3b6 1226 }
1da177e4 1227 }
80fe728d
ON
1228 if (action->sa.sa_handler == SIG_DFL)
1229 t->signal->flags &= ~SIGNAL_UNKILLABLE;
1da177e4
LT
1230 ret = specific_send_sig_info(sig, info, t);
1231 spin_unlock_irqrestore(&t->sighand->siglock, flags);
1232
1233 return ret;
1234}
1235
1da177e4
LT
1236/*
1237 * Nuke all other threads in the group.
1238 */
09faef11 1239int zap_other_threads(struct task_struct *p)
1da177e4 1240{
09faef11
ON
1241 struct task_struct *t = p;
1242 int count = 0;
1da177e4 1243
1da177e4
LT
1244 p->signal->group_stop_count = 0;
1245
09faef11 1246 while_each_thread(p, t) {
6dfca329 1247 task_clear_jobctl_pending(t, JOBCTL_PENDING_MASK);
09faef11
ON
1248 count++;
1249
1250 /* Don't bother with already dead threads */
1da177e4
LT
1251 if (t->exit_state)
1252 continue;
1da177e4 1253 sigaddset(&t->pending.signal, SIGKILL);
1da177e4
LT
1254 signal_wake_up(t, 1);
1255 }
09faef11
ON
1256
1257 return count;
1da177e4
LT
1258}
1259
b8ed374e
NK
1260struct sighand_struct *__lock_task_sighand(struct task_struct *tsk,
1261 unsigned long *flags)
f63ee72e
ON
1262{
1263 struct sighand_struct *sighand;
1264
1265 for (;;) {
a841796f
PM
1266 local_irq_save(*flags);
1267 rcu_read_lock();
f63ee72e 1268 sighand = rcu_dereference(tsk->sighand);
a841796f
PM
1269 if (unlikely(sighand == NULL)) {
1270 rcu_read_unlock();
1271 local_irq_restore(*flags);
f63ee72e 1272 break;
a841796f 1273 }
f63ee72e 1274
a841796f
PM
1275 spin_lock(&sighand->siglock);
1276 if (likely(sighand == tsk->sighand)) {
1277 rcu_read_unlock();
f63ee72e 1278 break;
a841796f
PM
1279 }
1280 spin_unlock(&sighand->siglock);
1281 rcu_read_unlock();
1282 local_irq_restore(*flags);
f63ee72e
ON
1283 }
1284
1285 return sighand;
1286}
1287
c69e8d9c
DH
1288/*
1289 * send signal info to all the members of a group
c69e8d9c 1290 */
1da177e4
LT
1291int group_send_sig_info(int sig, struct siginfo *info, struct task_struct *p)
1292{
694f690d
DH
1293 int ret;
1294
1295 rcu_read_lock();
1296 ret = check_kill_permission(sig, info, p);
1297 rcu_read_unlock();
f63ee72e 1298
4a30debf
ON
1299 if (!ret && sig)
1300 ret = do_send_sig_info(sig, info, p, true);
1da177e4
LT
1301
1302 return ret;
1303}
1304
1305/*
146a505d 1306 * __kill_pgrp_info() sends a signal to a process group: this is what the tty
1da177e4 1307 * control characters do (^C, ^Z etc)
c69e8d9c 1308 * - the caller must hold at least a readlock on tasklist_lock
1da177e4 1309 */
c4b92fc1 1310int __kill_pgrp_info(int sig, struct siginfo *info, struct pid *pgrp)
1da177e4
LT
1311{
1312 struct task_struct *p = NULL;
1313 int retval, success;
1314
1da177e4
LT
1315 success = 0;
1316 retval = -ESRCH;
c4b92fc1 1317 do_each_pid_task(pgrp, PIDTYPE_PGID, p) {
1da177e4
LT
1318 int err = group_send_sig_info(sig, info, p);
1319 success |= !err;
1320 retval = err;
c4b92fc1 1321 } while_each_pid_task(pgrp, PIDTYPE_PGID, p);
1da177e4
LT
1322 return success ? 0 : retval;
1323}
1324
c4b92fc1 1325int kill_pid_info(int sig, struct siginfo *info, struct pid *pid)
1da177e4 1326{
d36174bc 1327 int error = -ESRCH;
1da177e4
LT
1328 struct task_struct *p;
1329
e56d0903 1330 rcu_read_lock();
d36174bc 1331retry:
c4b92fc1 1332 p = pid_task(pid, PIDTYPE_PID);
d36174bc 1333 if (p) {
1da177e4 1334 error = group_send_sig_info(sig, info, p);
d36174bc
ON
1335 if (unlikely(error == -ESRCH))
1336 /*
1337 * The task was unhashed in between, try again.
1338 * If it is dead, pid_task() will return NULL,
1339 * if we race with de_thread() it will find the
1340 * new leader.
1341 */
1342 goto retry;
1343 }
e56d0903 1344 rcu_read_unlock();
6ca25b55 1345
1da177e4
LT
1346 return error;
1347}
1348
5aba085e 1349int kill_proc_info(int sig, struct siginfo *info, pid_t pid)
c4b92fc1
EB
1350{
1351 int error;
1352 rcu_read_lock();
b488893a 1353 error = kill_pid_info(sig, info, find_vpid(pid));
c4b92fc1
EB
1354 rcu_read_unlock();
1355 return error;
1356}
1357
d178bc3a
SH
1358static int kill_as_cred_perm(const struct cred *cred,
1359 struct task_struct *target)
1360{
1361 const struct cred *pcred = __task_cred(target);
5af66203
EB
1362 if (!uid_eq(cred->euid, pcred->suid) && !uid_eq(cred->euid, pcred->uid) &&
1363 !uid_eq(cred->uid, pcred->suid) && !uid_eq(cred->uid, pcred->uid))
d178bc3a
SH
1364 return 0;
1365 return 1;
1366}
1367
2425c08b 1368/* like kill_pid_info(), but doesn't use uid/euid of "current" */
d178bc3a
SH
1369int kill_pid_info_as_cred(int sig, struct siginfo *info, struct pid *pid,
1370 const struct cred *cred, u32 secid)
46113830
HW
1371{
1372 int ret = -EINVAL;
1373 struct task_struct *p;
14d8c9f3 1374 unsigned long flags;
46113830
HW
1375
1376 if (!valid_signal(sig))
1377 return ret;
1378
14d8c9f3 1379 rcu_read_lock();
2425c08b 1380 p = pid_task(pid, PIDTYPE_PID);
46113830
HW
1381 if (!p) {
1382 ret = -ESRCH;
1383 goto out_unlock;
1384 }
d178bc3a 1385 if (si_fromuser(info) && !kill_as_cred_perm(cred, p)) {
46113830
HW
1386 ret = -EPERM;
1387 goto out_unlock;
1388 }
8f95dc58
DQ
1389 ret = security_task_kill(p, info, sig, secid);
1390 if (ret)
1391 goto out_unlock;
14d8c9f3
TG
1392
1393 if (sig) {
1394 if (lock_task_sighand(p, &flags)) {
1395 ret = __send_signal(sig, info, p, 1, 0);
1396 unlock_task_sighand(p, &flags);
1397 } else
1398 ret = -ESRCH;
46113830
HW
1399 }
1400out_unlock:
14d8c9f3 1401 rcu_read_unlock();
46113830
HW
1402 return ret;
1403}
d178bc3a 1404EXPORT_SYMBOL_GPL(kill_pid_info_as_cred);
1da177e4
LT
1405
1406/*
1407 * kill_something_info() interprets pid in interesting ways just like kill(2).
1408 *
1409 * POSIX specifies that kill(-1,sig) is unspecified, but what we have
1410 * is probably wrong. Should make it like BSD or SYSV.
1411 */
1412
bc64efd2 1413static int kill_something_info(int sig, struct siginfo *info, pid_t pid)
1da177e4 1414{
8d42db18 1415 int ret;
d5df763b
PE
1416
1417 if (pid > 0) {
1418 rcu_read_lock();
1419 ret = kill_pid_info(sig, info, find_vpid(pid));
1420 rcu_read_unlock();
1421 return ret;
1422 }
1423
1424 read_lock(&tasklist_lock);
1425 if (pid != -1) {
1426 ret = __kill_pgrp_info(sig, info,
1427 pid ? find_vpid(-pid) : task_pgrp(current));
1428 } else {
1da177e4
LT
1429 int retval = 0, count = 0;
1430 struct task_struct * p;
1431
1da177e4 1432 for_each_process(p) {
d25141a8
SB
1433 if (task_pid_vnr(p) > 1 &&
1434 !same_thread_group(p, current)) {
1da177e4
LT
1435 int err = group_send_sig_info(sig, info, p);
1436 ++count;
1437 if (err != -EPERM)
1438 retval = err;
1439 }
1440 }
8d42db18 1441 ret = count ? retval : -ESRCH;
1da177e4 1442 }
d5df763b
PE
1443 read_unlock(&tasklist_lock);
1444
8d42db18 1445 return ret;
1da177e4
LT
1446}
1447
1448/*
1449 * These are for backward compatibility with the rest of the kernel source.
1450 */
1451
5aba085e 1452int send_sig_info(int sig, struct siginfo *info, struct task_struct *p)
1da177e4 1453{
1da177e4
LT
1454 /*
1455 * Make sure legacy kernel users don't send in bad values
1456 * (normal paths check this in check_kill_permission).
1457 */
7ed20e1a 1458 if (!valid_signal(sig))
1da177e4
LT
1459 return -EINVAL;
1460
4a30debf 1461 return do_send_sig_info(sig, info, p, false);
1da177e4
LT
1462}
1463
b67a1b9e
ON
1464#define __si_special(priv) \
1465 ((priv) ? SEND_SIG_PRIV : SEND_SIG_NOINFO)
1466
1da177e4
LT
1467int
1468send_sig(int sig, struct task_struct *p, int priv)
1469{
b67a1b9e 1470 return send_sig_info(sig, __si_special(priv), p);
1da177e4
LT
1471}
1472
1da177e4
LT
1473void
1474force_sig(int sig, struct task_struct *p)
1475{
b67a1b9e 1476 force_sig_info(sig, SEND_SIG_PRIV, p);
1da177e4
LT
1477}
1478
1479/*
1480 * When things go south during signal handling, we
1481 * will force a SIGSEGV. And if the signal that caused
1482 * the problem was already a SIGSEGV, we'll want to
1483 * make sure we don't even try to deliver the signal..
1484 */
1485int
1486force_sigsegv(int sig, struct task_struct *p)
1487{
1488 if (sig == SIGSEGV) {
1489 unsigned long flags;
1490 spin_lock_irqsave(&p->sighand->siglock, flags);
1491 p->sighand->action[sig - 1].sa.sa_handler = SIG_DFL;
1492 spin_unlock_irqrestore(&p->sighand->siglock, flags);
1493 }
1494 force_sig(SIGSEGV, p);
1495 return 0;
1496}
1497
c4b92fc1
EB
1498int kill_pgrp(struct pid *pid, int sig, int priv)
1499{
146a505d
PE
1500 int ret;
1501
1502 read_lock(&tasklist_lock);
1503 ret = __kill_pgrp_info(sig, __si_special(priv), pid);
1504 read_unlock(&tasklist_lock);
1505
1506 return ret;
c4b92fc1
EB
1507}
1508EXPORT_SYMBOL(kill_pgrp);
1509
1510int kill_pid(struct pid *pid, int sig, int priv)
1511{
1512 return kill_pid_info(sig, __si_special(priv), pid);
1513}
1514EXPORT_SYMBOL(kill_pid);
1515
1da177e4
LT
1516/*
1517 * These functions support sending signals using preallocated sigqueue
1518 * structures. This is needed "because realtime applications cannot
1519 * afford to lose notifications of asynchronous events, like timer
5aba085e 1520 * expirations or I/O completions". In the case of POSIX Timers
1da177e4
LT
1521 * we allocate the sigqueue structure from the timer_create. If this
1522 * allocation fails we are able to report the failure to the application
1523 * with an EAGAIN error.
1524 */
1da177e4
LT
1525struct sigqueue *sigqueue_alloc(void)
1526{
f84d49b2 1527 struct sigqueue *q = __sigqueue_alloc(-1, current, GFP_KERNEL, 0);
1da177e4 1528
f84d49b2 1529 if (q)
1da177e4 1530 q->flags |= SIGQUEUE_PREALLOC;
f84d49b2
NO
1531
1532 return q;
1da177e4
LT
1533}
1534
1535void sigqueue_free(struct sigqueue *q)
1536{
1537 unsigned long flags;
60187d27
ON
1538 spinlock_t *lock = &current->sighand->siglock;
1539
1da177e4
LT
1540 BUG_ON(!(q->flags & SIGQUEUE_PREALLOC));
1541 /*
c8e85b4f
ON
1542 * We must hold ->siglock while testing q->list
1543 * to serialize with collect_signal() or with
da7978b0 1544 * __exit_signal()->flush_sigqueue().
1da177e4 1545 */
60187d27 1546 spin_lock_irqsave(lock, flags);
c8e85b4f
ON
1547 q->flags &= ~SIGQUEUE_PREALLOC;
1548 /*
1549 * If it is queued it will be freed when dequeued,
1550 * like the "regular" sigqueue.
1551 */
60187d27 1552 if (!list_empty(&q->list))
c8e85b4f 1553 q = NULL;
60187d27
ON
1554 spin_unlock_irqrestore(lock, flags);
1555
c8e85b4f
ON
1556 if (q)
1557 __sigqueue_free(q);
1da177e4
LT
1558}
1559
ac5c2153 1560int send_sigqueue(struct sigqueue *q, struct task_struct *t, int group)
9e3bd6c3 1561{
e62e6650 1562 int sig = q->info.si_signo;
2ca3515a 1563 struct sigpending *pending;
e62e6650 1564 unsigned long flags;
163566f6 1565 int ret, result;
2ca3515a 1566
4cd4b6d4 1567 BUG_ON(!(q->flags & SIGQUEUE_PREALLOC));
e62e6650
ON
1568
1569 ret = -1;
1570 if (!likely(lock_task_sighand(t, &flags)))
1571 goto ret;
1572
7e695a5e 1573 ret = 1; /* the signal is ignored */
163566f6 1574 result = TRACE_SIGNAL_IGNORED;
def8cf72 1575 if (!prepare_signal(sig, t, false))
e62e6650
ON
1576 goto out;
1577
1578 ret = 0;
9e3bd6c3
PE
1579 if (unlikely(!list_empty(&q->list))) {
1580 /*
1581 * If an SI_TIMER entry is already queue just increment
1582 * the overrun count.
1583 */
9e3bd6c3
PE
1584 BUG_ON(q->info.si_code != SI_TIMER);
1585 q->info.si_overrun++;
163566f6 1586 result = TRACE_SIGNAL_ALREADY_PENDING;
e62e6650 1587 goto out;
9e3bd6c3 1588 }
ba661292 1589 q->info.si_overrun = 0;
9e3bd6c3 1590
9e3bd6c3 1591 signalfd_notify(t, sig);
2ca3515a 1592 pending = group ? &t->signal->shared_pending : &t->pending;
9e3bd6c3
PE
1593 list_add_tail(&q->list, &pending->list);
1594 sigaddset(&pending->signal, sig);
4cd4b6d4 1595 complete_signal(sig, t, group);
163566f6 1596 result = TRACE_SIGNAL_DELIVERED;
e62e6650 1597out:
163566f6 1598 trace_signal_generate(sig, &q->info, t, group, result);
e62e6650
ON
1599 unlock_task_sighand(t, &flags);
1600ret:
1601 return ret;
9e3bd6c3
PE
1602}
1603
1da177e4
LT
1604/*
1605 * Let a parent know about the death of a child.
1606 * For a stopped/continued status change, use do_notify_parent_cldstop instead.
2b2a1ff6 1607 *
53c8f9f1
ON
1608 * Returns true if our parent ignored us and so we've switched to
1609 * self-reaping.
1da177e4 1610 */
53c8f9f1 1611bool do_notify_parent(struct task_struct *tsk, int sig)
1da177e4
LT
1612{
1613 struct siginfo info;
1614 unsigned long flags;
1615 struct sighand_struct *psig;
53c8f9f1 1616 bool autoreap = false;
6fac4829 1617 cputime_t utime, stime;
1da177e4
LT
1618
1619 BUG_ON(sig == -1);
1620
1621 /* do_notify_parent_cldstop should have been called instead. */
e1abb39c 1622 BUG_ON(task_is_stopped_or_traced(tsk));
1da177e4 1623
d21142ec 1624 BUG_ON(!tsk->ptrace &&
1da177e4
LT
1625 (tsk->group_leader != tsk || !thread_group_empty(tsk)));
1626
b6e238dc
ON
1627 if (sig != SIGCHLD) {
1628 /*
1629 * This is only possible if parent == real_parent.
1630 * Check if it has changed security domain.
1631 */
1632 if (tsk->parent_exec_id != tsk->parent->self_exec_id)
1633 sig = SIGCHLD;
1634 }
1635
1da177e4
LT
1636 info.si_signo = sig;
1637 info.si_errno = 0;
b488893a 1638 /*
32084504
EB
1639 * We are under tasklist_lock here so our parent is tied to
1640 * us and cannot change.
b488893a 1641 *
32084504
EB
1642 * task_active_pid_ns will always return the same pid namespace
1643 * until a task passes through release_task.
b488893a
PE
1644 *
1645 * write_lock() currently calls preempt_disable() which is the
1646 * same as rcu_read_lock(), but according to Oleg, this is not
1647 * correct to rely on this
1648 */
1649 rcu_read_lock();
32084504 1650 info.si_pid = task_pid_nr_ns(tsk, task_active_pid_ns(tsk->parent));
54ba47ed
EB
1651 info.si_uid = from_kuid_munged(task_cred_xxx(tsk->parent, user_ns),
1652 task_uid(tsk));
b488893a
PE
1653 rcu_read_unlock();
1654
6fac4829
FW
1655 task_cputime(tsk, &utime, &stime);
1656 info.si_utime = cputime_to_clock_t(utime + tsk->signal->utime);
1657 info.si_stime = cputime_to_clock_t(stime + tsk->signal->stime);
1da177e4
LT
1658
1659 info.si_status = tsk->exit_code & 0x7f;
1660 if (tsk->exit_code & 0x80)
1661 info.si_code = CLD_DUMPED;
1662 else if (tsk->exit_code & 0x7f)
1663 info.si_code = CLD_KILLED;
1664 else {
1665 info.si_code = CLD_EXITED;
1666 info.si_status = tsk->exit_code >> 8;
1667 }
1668
1669 psig = tsk->parent->sighand;
1670 spin_lock_irqsave(&psig->siglock, flags);
d21142ec 1671 if (!tsk->ptrace && sig == SIGCHLD &&
1da177e4
LT
1672 (psig->action[SIGCHLD-1].sa.sa_handler == SIG_IGN ||
1673 (psig->action[SIGCHLD-1].sa.sa_flags & SA_NOCLDWAIT))) {
1674 /*
1675 * We are exiting and our parent doesn't care. POSIX.1
1676 * defines special semantics for setting SIGCHLD to SIG_IGN
1677 * or setting the SA_NOCLDWAIT flag: we should be reaped
1678 * automatically and not left for our parent's wait4 call.
1679 * Rather than having the parent do it as a magic kind of
1680 * signal handler, we just set this to tell do_exit that we
1681 * can be cleaned up without becoming a zombie. Note that
1682 * we still call __wake_up_parent in this case, because a
1683 * blocked sys_wait4 might now return -ECHILD.
1684 *
1685 * Whether we send SIGCHLD or not for SA_NOCLDWAIT
1686 * is implementation-defined: we do (if you don't want
1687 * it, just use SIG_IGN instead).
1688 */
53c8f9f1 1689 autoreap = true;
1da177e4 1690 if (psig->action[SIGCHLD-1].sa.sa_handler == SIG_IGN)
53c8f9f1 1691 sig = 0;
1da177e4 1692 }
53c8f9f1 1693 if (valid_signal(sig) && sig)
1da177e4
LT
1694 __group_send_sig_info(sig, &info, tsk->parent);
1695 __wake_up_parent(tsk, tsk->parent);
1696 spin_unlock_irqrestore(&psig->siglock, flags);
2b2a1ff6 1697
53c8f9f1 1698 return autoreap;
1da177e4
LT
1699}
1700
75b95953
TH
1701/**
1702 * do_notify_parent_cldstop - notify parent of stopped/continued state change
1703 * @tsk: task reporting the state change
1704 * @for_ptracer: the notification is for ptracer
1705 * @why: CLD_{CONTINUED|STOPPED|TRAPPED} to report
1706 *
1707 * Notify @tsk's parent that the stopped/continued state has changed. If
1708 * @for_ptracer is %false, @tsk's group leader notifies to its real parent.
1709 * If %true, @tsk reports to @tsk->parent which should be the ptracer.
1710 *
1711 * CONTEXT:
1712 * Must be called with tasklist_lock at least read locked.
1713 */
1714static void do_notify_parent_cldstop(struct task_struct *tsk,
1715 bool for_ptracer, int why)
1da177e4
LT
1716{
1717 struct siginfo info;
1718 unsigned long flags;
bc505a47 1719 struct task_struct *parent;
1da177e4 1720 struct sighand_struct *sighand;
6fac4829 1721 cputime_t utime, stime;
1da177e4 1722
75b95953 1723 if (for_ptracer) {
bc505a47 1724 parent = tsk->parent;
75b95953 1725 } else {
bc505a47
ON
1726 tsk = tsk->group_leader;
1727 parent = tsk->real_parent;
1728 }
1729
1da177e4
LT
1730 info.si_signo = SIGCHLD;
1731 info.si_errno = 0;
b488893a 1732 /*
5aba085e 1733 * see comment in do_notify_parent() about the following 4 lines
b488893a
PE
1734 */
1735 rcu_read_lock();
17cf22c3 1736 info.si_pid = task_pid_nr_ns(tsk, task_active_pid_ns(parent));
54ba47ed 1737 info.si_uid = from_kuid_munged(task_cred_xxx(parent, user_ns), task_uid(tsk));
b488893a
PE
1738 rcu_read_unlock();
1739
6fac4829
FW
1740 task_cputime(tsk, &utime, &stime);
1741 info.si_utime = cputime_to_clock_t(utime);
1742 info.si_stime = cputime_to_clock_t(stime);
1da177e4
LT
1743
1744 info.si_code = why;
1745 switch (why) {
1746 case CLD_CONTINUED:
1747 info.si_status = SIGCONT;
1748 break;
1749 case CLD_STOPPED:
1750 info.si_status = tsk->signal->group_exit_code & 0x7f;
1751 break;
1752 case CLD_TRAPPED:
1753 info.si_status = tsk->exit_code & 0x7f;
1754 break;
1755 default:
1756 BUG();
1757 }
1758
1759 sighand = parent->sighand;
1760 spin_lock_irqsave(&sighand->siglock, flags);
1761 if (sighand->action[SIGCHLD-1].sa.sa_handler != SIG_IGN &&
1762 !(sighand->action[SIGCHLD-1].sa.sa_flags & SA_NOCLDSTOP))
1763 __group_send_sig_info(SIGCHLD, &info, parent);
1764 /*
1765 * Even if SIGCHLD is not generated, we must wake up wait4 calls.
1766 */
1767 __wake_up_parent(tsk, parent);
1768 spin_unlock_irqrestore(&sighand->siglock, flags);
1769}
1770
d5f70c00
ON
1771static inline int may_ptrace_stop(void)
1772{
d21142ec 1773 if (!likely(current->ptrace))
d5f70c00 1774 return 0;
d5f70c00
ON
1775 /*
1776 * Are we in the middle of do_coredump?
1777 * If so and our tracer is also part of the coredump stopping
1778 * is a deadlock situation, and pointless because our tracer
1779 * is dead so don't allow us to stop.
1780 * If SIGKILL was already sent before the caller unlocked
999d9fc1 1781 * ->siglock we must see ->core_state != NULL. Otherwise it
d5f70c00 1782 * is safe to enter schedule().
9899d11f
ON
1783 *
1784 * This is almost outdated, a task with the pending SIGKILL can't
1785 * block in TASK_TRACED. But PTRACE_EVENT_EXIT can be reported
1786 * after SIGKILL was already dequeued.
d5f70c00 1787 */
999d9fc1 1788 if (unlikely(current->mm->core_state) &&
d5f70c00
ON
1789 unlikely(current->mm == current->parent->mm))
1790 return 0;
1791
1792 return 1;
1793}
1794
1a669c2f 1795/*
5aba085e 1796 * Return non-zero if there is a SIGKILL that should be waking us up.
1a669c2f
RM
1797 * Called with the siglock held.
1798 */
1799static int sigkill_pending(struct task_struct *tsk)
1800{
3d749b9e
ON
1801 return sigismember(&tsk->pending.signal, SIGKILL) ||
1802 sigismember(&tsk->signal->shared_pending.signal, SIGKILL);
1a669c2f
RM
1803}
1804
1da177e4
LT
1805/*
1806 * This must be called with current->sighand->siglock held.
1807 *
1808 * This should be the path for all ptrace stops.
1809 * We always set current->last_siginfo while stopped here.
1810 * That makes it a way to test a stopped process for
1811 * being ptrace-stopped vs being job-control-stopped.
1812 *
20686a30
ON
1813 * If we actually decide not to stop at all because the tracer
1814 * is gone, we keep current->exit_code unless clear_code.
1da177e4 1815 */
fe1bc6a0 1816static void ptrace_stop(int exit_code, int why, int clear_code, siginfo_t *info)
b8401150
NK
1817 __releases(&current->sighand->siglock)
1818 __acquires(&current->sighand->siglock)
1da177e4 1819{
ceb6bd67
TH
1820 bool gstop_done = false;
1821
1a669c2f
RM
1822 if (arch_ptrace_stop_needed(exit_code, info)) {
1823 /*
1824 * The arch code has something special to do before a
1825 * ptrace stop. This is allowed to block, e.g. for faults
1826 * on user stack pages. We can't keep the siglock while
1827 * calling arch_ptrace_stop, so we must release it now.
1828 * To preserve proper semantics, we must do this before
1829 * any signal bookkeeping like checking group_stop_count.
1830 * Meanwhile, a SIGKILL could come in before we retake the
1831 * siglock. That must prevent us from sleeping in TASK_TRACED.
1832 * So after regaining the lock, we must check for SIGKILL.
1833 */
1834 spin_unlock_irq(&current->sighand->siglock);
1835 arch_ptrace_stop(exit_code, info);
1836 spin_lock_irq(&current->sighand->siglock);
3d749b9e
ON
1837 if (sigkill_pending(current))
1838 return;
1a669c2f
RM
1839 }
1840
1da177e4 1841 /*
81be24b8
TH
1842 * We're committing to trapping. TRACED should be visible before
1843 * TRAPPING is cleared; otherwise, the tracer might fail do_wait().
1844 * Also, transition to TRACED and updates to ->jobctl should be
1845 * atomic with respect to siglock and should be done after the arch
1846 * hook as siglock is released and regrabbed across it.
1da177e4 1847 */
81be24b8 1848 set_current_state(TASK_TRACED);
1da177e4
LT
1849
1850 current->last_siginfo = info;
1851 current->exit_code = exit_code;
1852
d79fdd6d 1853 /*
0ae8ce1c
TH
1854 * If @why is CLD_STOPPED, we're trapping to participate in a group
1855 * stop. Do the bookkeeping. Note that if SIGCONT was delievered
73ddff2b
TH
1856 * across siglock relocks since INTERRUPT was scheduled, PENDING
1857 * could be clear now. We act as if SIGCONT is received after
1858 * TASK_TRACED is entered - ignore it.
d79fdd6d 1859 */
a8f072c1 1860 if (why == CLD_STOPPED && (current->jobctl & JOBCTL_STOP_PENDING))
ceb6bd67 1861 gstop_done = task_participate_group_stop(current);
d79fdd6d 1862
fb1d910c 1863 /* any trap clears pending STOP trap, STOP trap clears NOTIFY */
73ddff2b 1864 task_clear_jobctl_pending(current, JOBCTL_TRAP_STOP);
fb1d910c
TH
1865 if (info && info->si_code >> 8 == PTRACE_EVENT_STOP)
1866 task_clear_jobctl_pending(current, JOBCTL_TRAP_NOTIFY);
73ddff2b 1867
81be24b8 1868 /* entering a trap, clear TRAPPING */
a8f072c1 1869 task_clear_jobctl_trapping(current);
d79fdd6d 1870
1da177e4
LT
1871 spin_unlock_irq(&current->sighand->siglock);
1872 read_lock(&tasklist_lock);
3d749b9e 1873 if (may_ptrace_stop()) {
ceb6bd67
TH
1874 /*
1875 * Notify parents of the stop.
1876 *
1877 * While ptraced, there are two parents - the ptracer and
1878 * the real_parent of the group_leader. The ptracer should
1879 * know about every stop while the real parent is only
1880 * interested in the completion of group stop. The states
1881 * for the two don't interact with each other. Notify
1882 * separately unless they're gonna be duplicates.
1883 */
1884 do_notify_parent_cldstop(current, true, why);
bb3696da 1885 if (gstop_done && ptrace_reparented(current))
ceb6bd67
TH
1886 do_notify_parent_cldstop(current, false, why);
1887
53da1d94
MS
1888 /*
1889 * Don't want to allow preemption here, because
1890 * sys_ptrace() needs this task to be inactive.
1891 *
1892 * XXX: implement read_unlock_no_resched().
1893 */
1894 preempt_disable();
1da177e4 1895 read_unlock(&tasklist_lock);
53da1d94 1896 preempt_enable_no_resched();
5d8f72b5 1897 freezable_schedule();
1da177e4
LT
1898 } else {
1899 /*
1900 * By the time we got the lock, our tracer went away.
6405f7f4 1901 * Don't drop the lock yet, another tracer may come.
ceb6bd67
TH
1902 *
1903 * If @gstop_done, the ptracer went away between group stop
1904 * completion and here. During detach, it would have set
a8f072c1
TH
1905 * JOBCTL_STOP_PENDING on us and we'll re-enter
1906 * TASK_STOPPED in do_signal_stop() on return, so notifying
1907 * the real parent of the group stop completion is enough.
1da177e4 1908 */
ceb6bd67
TH
1909 if (gstop_done)
1910 do_notify_parent_cldstop(current, false, why);
1911
9899d11f 1912 /* tasklist protects us from ptrace_freeze_traced() */
6405f7f4 1913 __set_current_state(TASK_RUNNING);
20686a30
ON
1914 if (clear_code)
1915 current->exit_code = 0;
6405f7f4 1916 read_unlock(&tasklist_lock);
1da177e4
LT
1917 }
1918
1919 /*
1920 * We are back. Now reacquire the siglock before touching
1921 * last_siginfo, so that we are sure to have synchronized with
1922 * any signal-sending on another CPU that wants to examine it.
1923 */
1924 spin_lock_irq(&current->sighand->siglock);
1925 current->last_siginfo = NULL;
1926
544b2c91
TH
1927 /* LISTENING can be set only during STOP traps, clear it */
1928 current->jobctl &= ~JOBCTL_LISTENING;
1929
1da177e4
LT
1930 /*
1931 * Queued signals ignored us while we were stopped for tracing.
1932 * So check for any that we should take before resuming user mode.
b74d0deb 1933 * This sets TIF_SIGPENDING, but never clears it.
1da177e4 1934 */
b74d0deb 1935 recalc_sigpending_tsk(current);
1da177e4
LT
1936}
1937
3544d72a 1938static void ptrace_do_notify(int signr, int exit_code, int why)
1da177e4
LT
1939{
1940 siginfo_t info;
1941
1da177e4 1942 memset(&info, 0, sizeof info);
3544d72a 1943 info.si_signo = signr;
1da177e4 1944 info.si_code = exit_code;
b488893a 1945 info.si_pid = task_pid_vnr(current);
078de5f7 1946 info.si_uid = from_kuid_munged(current_user_ns(), current_uid());
1da177e4
LT
1947
1948 /* Let the debugger run. */
3544d72a
TH
1949 ptrace_stop(exit_code, why, 1, &info);
1950}
1951
1952void ptrace_notify(int exit_code)
1953{
1954 BUG_ON((exit_code & (0x7f | ~0xffff)) != SIGTRAP);
f784e8a7
ON
1955 if (unlikely(current->task_works))
1956 task_work_run();
3544d72a 1957
1da177e4 1958 spin_lock_irq(&current->sighand->siglock);
3544d72a 1959 ptrace_do_notify(SIGTRAP, exit_code, CLD_TRAPPED);
1da177e4
LT
1960 spin_unlock_irq(&current->sighand->siglock);
1961}
1962
73ddff2b
TH
1963/**
1964 * do_signal_stop - handle group stop for SIGSTOP and other stop signals
1965 * @signr: signr causing group stop if initiating
1966 *
1967 * If %JOBCTL_STOP_PENDING is not set yet, initiate group stop with @signr
1968 * and participate in it. If already set, participate in the existing
1969 * group stop. If participated in a group stop (and thus slept), %true is
1970 * returned with siglock released.
1971 *
1972 * If ptraced, this function doesn't handle stop itself. Instead,
1973 * %JOBCTL_TRAP_STOP is scheduled and %false is returned with siglock
1974 * untouched. The caller must ensure that INTERRUPT trap handling takes
1975 * places afterwards.
1976 *
1977 * CONTEXT:
1978 * Must be called with @current->sighand->siglock held, which is released
1979 * on %true return.
1980 *
1981 * RETURNS:
1982 * %false if group stop is already cancelled or ptrace trap is scheduled.
1983 * %true if participated in group stop.
1da177e4 1984 */
73ddff2b
TH
1985static bool do_signal_stop(int signr)
1986 __releases(&current->sighand->siglock)
1da177e4
LT
1987{
1988 struct signal_struct *sig = current->signal;
1da177e4 1989
a8f072c1
TH
1990 if (!(current->jobctl & JOBCTL_STOP_PENDING)) {
1991 unsigned int gstop = JOBCTL_STOP_PENDING | JOBCTL_STOP_CONSUME;
f558b7e4
ON
1992 struct task_struct *t;
1993
a8f072c1
TH
1994 /* signr will be recorded in task->jobctl for retries */
1995 WARN_ON_ONCE(signr & ~JOBCTL_STOP_SIGMASK);
d79fdd6d 1996
a8f072c1 1997 if (!likely(current->jobctl & JOBCTL_STOP_DEQUEUED) ||
573cf9ad 1998 unlikely(signal_group_exit(sig)))
73ddff2b 1999 return false;
1da177e4 2000 /*
408a37de
TH
2001 * There is no group stop already in progress. We must
2002 * initiate one now.
2003 *
2004 * While ptraced, a task may be resumed while group stop is
2005 * still in effect and then receive a stop signal and
2006 * initiate another group stop. This deviates from the
2007 * usual behavior as two consecutive stop signals can't
780006ea
ON
2008 * cause two group stops when !ptraced. That is why we
2009 * also check !task_is_stopped(t) below.
408a37de
TH
2010 *
2011 * The condition can be distinguished by testing whether
2012 * SIGNAL_STOP_STOPPED is already set. Don't generate
2013 * group_exit_code in such case.
2014 *
2015 * This is not necessary for SIGNAL_STOP_CONTINUED because
2016 * an intervening stop signal is required to cause two
2017 * continued events regardless of ptrace.
1da177e4 2018 */
408a37de
TH
2019 if (!(sig->flags & SIGNAL_STOP_STOPPED))
2020 sig->group_exit_code = signr;
1da177e4 2021
7dd3db54
TH
2022 sig->group_stop_count = 0;
2023
2024 if (task_set_jobctl_pending(current, signr | gstop))
2025 sig->group_stop_count++;
1da177e4 2026
8d38f203
ON
2027 t = current;
2028 while_each_thread(current, t) {
1da177e4 2029 /*
a122b341
ON
2030 * Setting state to TASK_STOPPED for a group
2031 * stop is always done with the siglock held,
2032 * so this check has no races.
1da177e4 2033 */
7dd3db54
TH
2034 if (!task_is_stopped(t) &&
2035 task_set_jobctl_pending(t, signr | gstop)) {
ae6d2ed7 2036 sig->group_stop_count++;
fb1d910c
TH
2037 if (likely(!(t->ptrace & PT_SEIZED)))
2038 signal_wake_up(t, 0);
2039 else
2040 ptrace_trap_notify(t);
a122b341 2041 }
d79fdd6d 2042 }
1da177e4 2043 }
73ddff2b 2044
d21142ec 2045 if (likely(!current->ptrace)) {
5224fa36 2046 int notify = 0;
1da177e4 2047
5224fa36
TH
2048 /*
2049 * If there are no other threads in the group, or if there
2050 * is a group stop in progress and we are the last to stop,
2051 * report to the parent.
2052 */
2053 if (task_participate_group_stop(current))
2054 notify = CLD_STOPPED;
2055
ae6d2ed7 2056 __set_current_state(TASK_STOPPED);
5224fa36
TH
2057 spin_unlock_irq(&current->sighand->siglock);
2058
62bcf9d9
TH
2059 /*
2060 * Notify the parent of the group stop completion. Because
2061 * we're not holding either the siglock or tasklist_lock
2062 * here, ptracer may attach inbetween; however, this is for
2063 * group stop and should always be delivered to the real
2064 * parent of the group leader. The new ptracer will get
2065 * its notification when this task transitions into
2066 * TASK_TRACED.
2067 */
5224fa36
TH
2068 if (notify) {
2069 read_lock(&tasklist_lock);
62bcf9d9 2070 do_notify_parent_cldstop(current, false, notify);
5224fa36
TH
2071 read_unlock(&tasklist_lock);
2072 }
2073
2074 /* Now we don't run again until woken by SIGCONT or SIGKILL */
5d8f72b5 2075 freezable_schedule();
73ddff2b 2076 return true;
d79fdd6d 2077 } else {
73ddff2b
TH
2078 /*
2079 * While ptraced, group stop is handled by STOP trap.
2080 * Schedule it and let the caller deal with it.
2081 */
2082 task_set_jobctl_pending(current, JOBCTL_TRAP_STOP);
2083 return false;
ae6d2ed7 2084 }
73ddff2b 2085}
1da177e4 2086
73ddff2b
TH
2087/**
2088 * do_jobctl_trap - take care of ptrace jobctl traps
2089 *
3544d72a
TH
2090 * When PT_SEIZED, it's used for both group stop and explicit
2091 * SEIZE/INTERRUPT traps. Both generate PTRACE_EVENT_STOP trap with
2092 * accompanying siginfo. If stopped, lower eight bits of exit_code contain
2093 * the stop signal; otherwise, %SIGTRAP.
2094 *
2095 * When !PT_SEIZED, it's used only for group stop trap with stop signal
2096 * number as exit_code and no siginfo.
73ddff2b
TH
2097 *
2098 * CONTEXT:
2099 * Must be called with @current->sighand->siglock held, which may be
2100 * released and re-acquired before returning with intervening sleep.
2101 */
2102static void do_jobctl_trap(void)
2103{
3544d72a 2104 struct signal_struct *signal = current->signal;
73ddff2b 2105 int signr = current->jobctl & JOBCTL_STOP_SIGMASK;
ae6d2ed7 2106
3544d72a
TH
2107 if (current->ptrace & PT_SEIZED) {
2108 if (!signal->group_stop_count &&
2109 !(signal->flags & SIGNAL_STOP_STOPPED))
2110 signr = SIGTRAP;
2111 WARN_ON_ONCE(!signr);
2112 ptrace_do_notify(signr, signr | (PTRACE_EVENT_STOP << 8),
2113 CLD_STOPPED);
2114 } else {
2115 WARN_ON_ONCE(!signr);
2116 ptrace_stop(signr, CLD_STOPPED, 0, NULL);
2117 current->exit_code = 0;
ae6d2ed7 2118 }
1da177e4
LT
2119}
2120
94eb22d5 2121static int ptrace_signal(int signr, siginfo_t *info)
18c98b65 2122{
b7f9591c 2123 ptrace_signal_deliver();
8a352418
ON
2124 /*
2125 * We do not check sig_kernel_stop(signr) but set this marker
2126 * unconditionally because we do not know whether debugger will
2127 * change signr. This flag has no meaning unless we are going
2128 * to stop after return from ptrace_stop(). In this case it will
2129 * be checked in do_signal_stop(), we should only stop if it was
2130 * not cleared by SIGCONT while we were sleeping. See also the
2131 * comment in dequeue_signal().
2132 */
2133 current->jobctl |= JOBCTL_STOP_DEQUEUED;
fe1bc6a0 2134 ptrace_stop(signr, CLD_TRAPPED, 0, info);
18c98b65
RM
2135
2136 /* We're back. Did the debugger cancel the sig? */
2137 signr = current->exit_code;
2138 if (signr == 0)
2139 return signr;
2140
2141 current->exit_code = 0;
2142
5aba085e
RD
2143 /*
2144 * Update the siginfo structure if the signal has
2145 * changed. If the debugger wanted something
2146 * specific in the siginfo structure then it should
2147 * have updated *info via PTRACE_SETSIGINFO.
2148 */
18c98b65
RM
2149 if (signr != info->si_signo) {
2150 info->si_signo = signr;
2151 info->si_errno = 0;
2152 info->si_code = SI_USER;
6b550f94 2153 rcu_read_lock();
18c98b65 2154 info->si_pid = task_pid_vnr(current->parent);
54ba47ed
EB
2155 info->si_uid = from_kuid_munged(current_user_ns(),
2156 task_uid(current->parent));
6b550f94 2157 rcu_read_unlock();
18c98b65
RM
2158 }
2159
2160 /* If the (new) signal is now blocked, requeue it. */
2161 if (sigismember(&current->blocked, signr)) {
2162 specific_send_sig_info(signr, info, current);
2163 signr = 0;
2164 }
2165
2166 return signr;
2167}
2168
828b1f65 2169int get_signal(struct ksignal *ksig)
1da177e4 2170{
f6b76d4f
ON
2171 struct sighand_struct *sighand = current->sighand;
2172 struct signal_struct *signal = current->signal;
2173 int signr;
1da177e4 2174
f784e8a7
ON
2175 if (unlikely(current->task_works))
2176 task_work_run();
72667028 2177
0326f5a9
SD
2178 if (unlikely(uprobe_deny_signal()))
2179 return 0;
2180
13b1c3d4 2181 /*
5d8f72b5
ON
2182 * Do this once, we can't return to user-mode if freezing() == T.
2183 * do_signal_stop() and ptrace_stop() do freezable_schedule() and
2184 * thus do not need another check after return.
13b1c3d4 2185 */
fc558a74
RW
2186 try_to_freeze();
2187
5d8f72b5 2188relock:
f6b76d4f 2189 spin_lock_irq(&sighand->siglock);
021e1ae3
ON
2190 /*
2191 * Every stopped thread goes here after wakeup. Check to see if
2192 * we should notify the parent, prepare_signal(SIGCONT) encodes
2193 * the CLD_ si_code into SIGNAL_CLD_MASK bits.
2194 */
f6b76d4f 2195 if (unlikely(signal->flags & SIGNAL_CLD_MASK)) {
c672af35
TH
2196 int why;
2197
2198 if (signal->flags & SIGNAL_CLD_CONTINUED)
2199 why = CLD_CONTINUED;
2200 else
2201 why = CLD_STOPPED;
2202
f6b76d4f 2203 signal->flags &= ~SIGNAL_CLD_MASK;
e4420551 2204
ae6d2ed7 2205 spin_unlock_irq(&sighand->siglock);
fa00b80b 2206
ceb6bd67
TH
2207 /*
2208 * Notify the parent that we're continuing. This event is
2209 * always per-process and doesn't make whole lot of sense
2210 * for ptracers, who shouldn't consume the state via
2211 * wait(2) either, but, for backward compatibility, notify
2212 * the ptracer of the group leader too unless it's gonna be
2213 * a duplicate.
2214 */
edf2ed15 2215 read_lock(&tasklist_lock);
ceb6bd67
TH
2216 do_notify_parent_cldstop(current, false, why);
2217
bb3696da
ON
2218 if (ptrace_reparented(current->group_leader))
2219 do_notify_parent_cldstop(current->group_leader,
2220 true, why);
edf2ed15 2221 read_unlock(&tasklist_lock);
ceb6bd67 2222
e4420551
ON
2223 goto relock;
2224 }
2225
1da177e4
LT
2226 for (;;) {
2227 struct k_sigaction *ka;
1be53963 2228
dd1d6772
TH
2229 if (unlikely(current->jobctl & JOBCTL_STOP_PENDING) &&
2230 do_signal_stop(0))
7bcf6a2c 2231 goto relock;
1be53963 2232
73ddff2b
TH
2233 if (unlikely(current->jobctl & JOBCTL_TRAP_MASK)) {
2234 do_jobctl_trap();
2235 spin_unlock_irq(&sighand->siglock);
2236 goto relock;
2237 }
1da177e4 2238
828b1f65 2239 signr = dequeue_signal(current, &current->blocked, &ksig->info);
7bcf6a2c 2240
dd1d6772
TH
2241 if (!signr)
2242 break; /* will return 0 */
7bcf6a2c 2243
8a352418 2244 if (unlikely(current->ptrace) && signr != SIGKILL) {
828b1f65 2245 signr = ptrace_signal(signr, &ksig->info);
dd1d6772
TH
2246 if (!signr)
2247 continue;
1da177e4
LT
2248 }
2249
dd1d6772
TH
2250 ka = &sighand->action[signr-1];
2251
f9d4257e 2252 /* Trace actually delivered signals. */
828b1f65 2253 trace_signal_deliver(signr, &ksig->info, ka);
f9d4257e 2254
1da177e4
LT
2255 if (ka->sa.sa_handler == SIG_IGN) /* Do nothing. */
2256 continue;
2257 if (ka->sa.sa_handler != SIG_DFL) {
2258 /* Run the handler. */
828b1f65 2259 ksig->ka = *ka;
1da177e4
LT
2260
2261 if (ka->sa.sa_flags & SA_ONESHOT)
2262 ka->sa.sa_handler = SIG_DFL;
2263
2264 break; /* will return non-zero "signr" value */
2265 }
2266
2267 /*
2268 * Now we are doing the default action for this signal.
2269 */
2270 if (sig_kernel_ignore(signr)) /* Default is nothing. */
2271 continue;
2272
84d73786 2273 /*
0fbc26a6 2274 * Global init gets no signals it doesn't want.
b3bfa0cb
SB
2275 * Container-init gets no signals it doesn't want from same
2276 * container.
2277 *
2278 * Note that if global/container-init sees a sig_kernel_only()
2279 * signal here, the signal must have been generated internally
2280 * or must have come from an ancestor namespace. In either
2281 * case, the signal cannot be dropped.
84d73786 2282 */
fae5fa44 2283 if (unlikely(signal->flags & SIGNAL_UNKILLABLE) &&
b3bfa0cb 2284 !sig_kernel_only(signr))
1da177e4
LT
2285 continue;
2286
2287 if (sig_kernel_stop(signr)) {
2288 /*
2289 * The default action is to stop all threads in
2290 * the thread group. The job control signals
2291 * do nothing in an orphaned pgrp, but SIGSTOP
2292 * always works. Note that siglock needs to be
2293 * dropped during the call to is_orphaned_pgrp()
2294 * because of lock ordering with tasklist_lock.
2295 * This allows an intervening SIGCONT to be posted.
2296 * We need to check for that and bail out if necessary.
2297 */
2298 if (signr != SIGSTOP) {
f6b76d4f 2299 spin_unlock_irq(&sighand->siglock);
1da177e4
LT
2300
2301 /* signals can be posted during this window */
2302
3e7cd6c4 2303 if (is_current_pgrp_orphaned())
1da177e4
LT
2304 goto relock;
2305
f6b76d4f 2306 spin_lock_irq(&sighand->siglock);
1da177e4
LT
2307 }
2308
828b1f65 2309 if (likely(do_signal_stop(ksig->info.si_signo))) {
1da177e4
LT
2310 /* It released the siglock. */
2311 goto relock;
2312 }
2313
2314 /*
2315 * We didn't actually stop, due to a race
2316 * with SIGCONT or something like that.
2317 */
2318 continue;
2319 }
2320
f6b76d4f 2321 spin_unlock_irq(&sighand->siglock);
1da177e4
LT
2322
2323 /*
2324 * Anything else is fatal, maybe with a core dump.
2325 */
2326 current->flags |= PF_SIGNALED;
2dce81bf 2327
1da177e4 2328 if (sig_kernel_coredump(signr)) {
2dce81bf 2329 if (print_fatal_signals)
828b1f65 2330 print_fatal_signal(ksig->info.si_signo);
2b5faa4c 2331 proc_coredump_connector(current);
1da177e4
LT
2332 /*
2333 * If it was able to dump core, this kills all
2334 * other threads in the group and synchronizes with
2335 * their demise. If we lost the race with another
2336 * thread getting here, it set group_exit_code
2337 * first and our do_group_exit call below will use
2338 * that value and ignore the one we pass it.
2339 */
828b1f65 2340 do_coredump(&ksig->info);
1da177e4
LT
2341 }
2342
2343 /*
2344 * Death signals, no core dump.
2345 */
828b1f65 2346 do_group_exit(ksig->info.si_signo);
1da177e4
LT
2347 /* NOTREACHED */
2348 }
f6b76d4f 2349 spin_unlock_irq(&sighand->siglock);
828b1f65
RW
2350
2351 ksig->sig = signr;
2352 return ksig->sig > 0;
1da177e4
LT
2353}
2354
5e6292c0 2355/**
efee984c 2356 * signal_delivered -
10b1c7ac 2357 * @ksig: kernel signal struct
efee984c 2358 * @stepping: nonzero if debugger single-step or block-step in use
5e6292c0 2359 *
e227867f 2360 * This function should be called when a signal has successfully been
10b1c7ac 2361 * delivered. It updates the blocked signals accordingly (@ksig->ka.sa.sa_mask
efee984c 2362 * is always blocked, and the signal itself is blocked unless %SA_NODEFER
10b1c7ac 2363 * is set in @ksig->ka.sa.sa_flags. Tracing is notified.
5e6292c0 2364 */
10b1c7ac 2365static void signal_delivered(struct ksignal *ksig, int stepping)
5e6292c0
MF
2366{
2367 sigset_t blocked;
2368
a610d6e6
AV
2369 /* A signal was successfully delivered, and the
2370 saved sigmask was stored on the signal frame,
2371 and will be restored by sigreturn. So we can
2372 simply clear the restore sigmask flag. */
2373 clear_restore_sigmask();
2374
10b1c7ac
RW
2375 sigorsets(&blocked, &current->blocked, &ksig->ka.sa.sa_mask);
2376 if (!(ksig->ka.sa.sa_flags & SA_NODEFER))
2377 sigaddset(&blocked, ksig->sig);
5e6292c0 2378 set_current_blocked(&blocked);
df5601f9 2379 tracehook_signal_handler(stepping);
5e6292c0
MF
2380}
2381
2ce5da17
AV
2382void signal_setup_done(int failed, struct ksignal *ksig, int stepping)
2383{
2384 if (failed)
2385 force_sigsegv(ksig->sig, current);
2386 else
10b1c7ac 2387 signal_delivered(ksig, stepping);
2ce5da17
AV
2388}
2389
0edceb7b
ON
2390/*
2391 * It could be that complete_signal() picked us to notify about the
fec9993d
ON
2392 * group-wide signal. Other threads should be notified now to take
2393 * the shared signals in @which since we will not.
0edceb7b 2394 */
f646e227 2395static void retarget_shared_pending(struct task_struct *tsk, sigset_t *which)
0edceb7b 2396{
f646e227 2397 sigset_t retarget;
0edceb7b
ON
2398 struct task_struct *t;
2399
f646e227
ON
2400 sigandsets(&retarget, &tsk->signal->shared_pending.signal, which);
2401 if (sigisemptyset(&retarget))
2402 return;
2403
0edceb7b
ON
2404 t = tsk;
2405 while_each_thread(tsk, t) {
fec9993d
ON
2406 if (t->flags & PF_EXITING)
2407 continue;
2408
2409 if (!has_pending_signals(&retarget, &t->blocked))
2410 continue;
2411 /* Remove the signals this thread can handle. */
2412 sigandsets(&retarget, &retarget, &t->blocked);
2413
2414 if (!signal_pending(t))
2415 signal_wake_up(t, 0);
2416
2417 if (sigisemptyset(&retarget))
2418 break;
0edceb7b
ON
2419 }
2420}
2421
d12619b5
ON
2422void exit_signals(struct task_struct *tsk)
2423{
2424 int group_stop = 0;
f646e227 2425 sigset_t unblocked;
d12619b5 2426
77e4ef99
TH
2427 /*
2428 * @tsk is about to have PF_EXITING set - lock out users which
2429 * expect stable threadgroup.
2430 */
2431 threadgroup_change_begin(tsk);
2432
5dee1707
ON
2433 if (thread_group_empty(tsk) || signal_group_exit(tsk->signal)) {
2434 tsk->flags |= PF_EXITING;
77e4ef99 2435 threadgroup_change_end(tsk);
5dee1707 2436 return;
d12619b5
ON
2437 }
2438
5dee1707 2439 spin_lock_irq(&tsk->sighand->siglock);
d12619b5
ON
2440 /*
2441 * From now this task is not visible for group-wide signals,
2442 * see wants_signal(), do_signal_stop().
2443 */
2444 tsk->flags |= PF_EXITING;
77e4ef99
TH
2445
2446 threadgroup_change_end(tsk);
2447
5dee1707
ON
2448 if (!signal_pending(tsk))
2449 goto out;
2450
f646e227
ON
2451 unblocked = tsk->blocked;
2452 signotset(&unblocked);
2453 retarget_shared_pending(tsk, &unblocked);
5dee1707 2454
a8f072c1 2455 if (unlikely(tsk->jobctl & JOBCTL_STOP_PENDING) &&
e5c1902e 2456 task_participate_group_stop(tsk))
edf2ed15 2457 group_stop = CLD_STOPPED;
5dee1707 2458out:
d12619b5
ON
2459 spin_unlock_irq(&tsk->sighand->siglock);
2460
62bcf9d9
TH
2461 /*
2462 * If group stop has completed, deliver the notification. This
2463 * should always go to the real parent of the group leader.
2464 */
ae6d2ed7 2465 if (unlikely(group_stop)) {
d12619b5 2466 read_lock(&tasklist_lock);
62bcf9d9 2467 do_notify_parent_cldstop(tsk, false, group_stop);
d12619b5
ON
2468 read_unlock(&tasklist_lock);
2469 }
2470}
2471
1da177e4
LT
2472EXPORT_SYMBOL(recalc_sigpending);
2473EXPORT_SYMBOL_GPL(dequeue_signal);
2474EXPORT_SYMBOL(flush_signals);
2475EXPORT_SYMBOL(force_sig);
1da177e4
LT
2476EXPORT_SYMBOL(send_sig);
2477EXPORT_SYMBOL(send_sig_info);
2478EXPORT_SYMBOL(sigprocmask);
2479EXPORT_SYMBOL(block_all_signals);
2480EXPORT_SYMBOL(unblock_all_signals);
2481
2482
2483/*
2484 * System call entry points.
2485 */
2486
41c57892
RD
2487/**
2488 * sys_restart_syscall - restart a system call
2489 */
754fe8d2 2490SYSCALL_DEFINE0(restart_syscall)
1da177e4
LT
2491{
2492 struct restart_block *restart = &current_thread_info()->restart_block;
2493 return restart->fn(restart);
2494}
2495
2496long do_no_restart_syscall(struct restart_block *param)
2497{
2498 return -EINTR;
2499}
2500
b182801a
ON
2501static void __set_task_blocked(struct task_struct *tsk, const sigset_t *newset)
2502{
2503 if (signal_pending(tsk) && !thread_group_empty(tsk)) {
2504 sigset_t newblocked;
2505 /* A set of now blocked but previously unblocked signals. */
702a5073 2506 sigandnsets(&newblocked, newset, &current->blocked);
b182801a
ON
2507 retarget_shared_pending(tsk, &newblocked);
2508 }
2509 tsk->blocked = *newset;
2510 recalc_sigpending();
2511}
2512
e6fa16ab
ON
2513/**
2514 * set_current_blocked - change current->blocked mask
2515 * @newset: new mask
2516 *
2517 * It is wrong to change ->blocked directly, this helper should be used
2518 * to ensure the process can't miss a shared signal we are going to block.
1da177e4 2519 */
77097ae5
AV
2520void set_current_blocked(sigset_t *newset)
2521{
77097ae5 2522 sigdelsetmask(newset, sigmask(SIGKILL) | sigmask(SIGSTOP));
0c4a8423 2523 __set_current_blocked(newset);
77097ae5
AV
2524}
2525
2526void __set_current_blocked(const sigset_t *newset)
e6fa16ab
ON
2527{
2528 struct task_struct *tsk = current;
2529
2530 spin_lock_irq(&tsk->sighand->siglock);
b182801a 2531 __set_task_blocked(tsk, newset);
e6fa16ab
ON
2532 spin_unlock_irq(&tsk->sighand->siglock);
2533}
1da177e4
LT
2534
2535/*
2536 * This is also useful for kernel threads that want to temporarily
2537 * (or permanently) block certain signals.
2538 *
2539 * NOTE! Unlike the user-mode sys_sigprocmask(), the kernel
2540 * interface happily blocks "unblockable" signals like SIGKILL
2541 * and friends.
2542 */
2543int sigprocmask(int how, sigset_t *set, sigset_t *oldset)
2544{
73ef4aeb
ON
2545 struct task_struct *tsk = current;
2546 sigset_t newset;
1da177e4 2547
73ef4aeb 2548 /* Lockless, only current can change ->blocked, never from irq */
a26fd335 2549 if (oldset)
73ef4aeb 2550 *oldset = tsk->blocked;
a26fd335 2551
1da177e4
LT
2552 switch (how) {
2553 case SIG_BLOCK:
73ef4aeb 2554 sigorsets(&newset, &tsk->blocked, set);
1da177e4
LT
2555 break;
2556 case SIG_UNBLOCK:
702a5073 2557 sigandnsets(&newset, &tsk->blocked, set);
1da177e4
LT
2558 break;
2559 case SIG_SETMASK:
73ef4aeb 2560 newset = *set;
1da177e4
LT
2561 break;
2562 default:
73ef4aeb 2563 return -EINVAL;
1da177e4 2564 }
a26fd335 2565
77097ae5 2566 __set_current_blocked(&newset);
73ef4aeb 2567 return 0;
1da177e4
LT
2568}
2569
41c57892
RD
2570/**
2571 * sys_rt_sigprocmask - change the list of currently blocked signals
2572 * @how: whether to add, remove, or set signals
ada9c933 2573 * @nset: stores pending signals
41c57892
RD
2574 * @oset: previous value of signal mask if non-null
2575 * @sigsetsize: size of sigset_t type
2576 */
bb7efee2 2577SYSCALL_DEFINE4(rt_sigprocmask, int, how, sigset_t __user *, nset,
17da2bd9 2578 sigset_t __user *, oset, size_t, sigsetsize)
1da177e4 2579{
1da177e4 2580 sigset_t old_set, new_set;
bb7efee2 2581 int error;
1da177e4
LT
2582
2583 /* XXX: Don't preclude handling different sized sigset_t's. */
2584 if (sigsetsize != sizeof(sigset_t))
bb7efee2 2585 return -EINVAL;
1da177e4 2586
bb7efee2
ON
2587 old_set = current->blocked;
2588
2589 if (nset) {
2590 if (copy_from_user(&new_set, nset, sizeof(sigset_t)))
2591 return -EFAULT;
1da177e4
LT
2592 sigdelsetmask(&new_set, sigmask(SIGKILL)|sigmask(SIGSTOP));
2593
bb7efee2 2594 error = sigprocmask(how, &new_set, NULL);
1da177e4 2595 if (error)
bb7efee2
ON
2596 return error;
2597 }
1da177e4 2598
bb7efee2
ON
2599 if (oset) {
2600 if (copy_to_user(oset, &old_set, sizeof(sigset_t)))
2601 return -EFAULT;
1da177e4 2602 }
bb7efee2
ON
2603
2604 return 0;
1da177e4
LT
2605}
2606
322a56cb 2607#ifdef CONFIG_COMPAT
322a56cb
AV
2608COMPAT_SYSCALL_DEFINE4(rt_sigprocmask, int, how, compat_sigset_t __user *, nset,
2609 compat_sigset_t __user *, oset, compat_size_t, sigsetsize)
1da177e4 2610{
322a56cb
AV
2611#ifdef __BIG_ENDIAN
2612 sigset_t old_set = current->blocked;
2613
2614 /* XXX: Don't preclude handling different sized sigset_t's. */
2615 if (sigsetsize != sizeof(sigset_t))
2616 return -EINVAL;
2617
2618 if (nset) {
2619 compat_sigset_t new32;
2620 sigset_t new_set;
2621 int error;
2622 if (copy_from_user(&new32, nset, sizeof(compat_sigset_t)))
2623 return -EFAULT;
2624
2625 sigset_from_compat(&new_set, &new32);
2626 sigdelsetmask(&new_set, sigmask(SIGKILL)|sigmask(SIGSTOP));
2627
2628 error = sigprocmask(how, &new_set, NULL);
2629 if (error)
2630 return error;
2631 }
2632 if (oset) {
2633 compat_sigset_t old32;
2634 sigset_to_compat(&old32, &old_set);
db61ec29 2635 if (copy_to_user(oset, &old32, sizeof(compat_sigset_t)))
322a56cb
AV
2636 return -EFAULT;
2637 }
2638 return 0;
2639#else
2640 return sys_rt_sigprocmask(how, (sigset_t __user *)nset,
2641 (sigset_t __user *)oset, sigsetsize);
2642#endif
2643}
2644#endif
1da177e4 2645
fe9c1db2 2646static int do_sigpending(void *set, unsigned long sigsetsize)
1da177e4 2647{
1da177e4 2648 if (sigsetsize > sizeof(sigset_t))
fe9c1db2 2649 return -EINVAL;
1da177e4
LT
2650
2651 spin_lock_irq(&current->sighand->siglock);
fe9c1db2 2652 sigorsets(set, &current->pending.signal,
1da177e4
LT
2653 &current->signal->shared_pending.signal);
2654 spin_unlock_irq(&current->sighand->siglock);
2655
2656 /* Outside the lock because only this thread touches it. */
fe9c1db2
AV
2657 sigandsets(set, &current->blocked, set);
2658 return 0;
5aba085e 2659}
1da177e4 2660
41c57892
RD
2661/**
2662 * sys_rt_sigpending - examine a pending signal that has been raised
2663 * while blocked
20f22ab4 2664 * @uset: stores pending signals
41c57892
RD
2665 * @sigsetsize: size of sigset_t type or larger
2666 */
fe9c1db2 2667SYSCALL_DEFINE2(rt_sigpending, sigset_t __user *, uset, size_t, sigsetsize)
1da177e4 2668{
fe9c1db2
AV
2669 sigset_t set;
2670 int err = do_sigpending(&set, sigsetsize);
2671 if (!err && copy_to_user(uset, &set, sigsetsize))
2672 err = -EFAULT;
2673 return err;
2674}
2675
2676#ifdef CONFIG_COMPAT
fe9c1db2
AV
2677COMPAT_SYSCALL_DEFINE2(rt_sigpending, compat_sigset_t __user *, uset,
2678 compat_size_t, sigsetsize)
1da177e4 2679{
fe9c1db2
AV
2680#ifdef __BIG_ENDIAN
2681 sigset_t set;
2682 int err = do_sigpending(&set, sigsetsize);
2683 if (!err) {
2684 compat_sigset_t set32;
2685 sigset_to_compat(&set32, &set);
2686 /* we can get here only if sigsetsize <= sizeof(set) */
2687 if (copy_to_user(uset, &set32, sigsetsize))
2688 err = -EFAULT;
2689 }
2690 return err;
2691#else
2692 return sys_rt_sigpending((sigset_t __user *)uset, sigsetsize);
2693#endif
1da177e4 2694}
fe9c1db2 2695#endif
1da177e4
LT
2696
2697#ifndef HAVE_ARCH_COPY_SIGINFO_TO_USER
2698
ce395960 2699int copy_siginfo_to_user(siginfo_t __user *to, const siginfo_t *from)
1da177e4
LT
2700{
2701 int err;
2702
2703 if (!access_ok (VERIFY_WRITE, to, sizeof(siginfo_t)))
2704 return -EFAULT;
2705 if (from->si_code < 0)
2706 return __copy_to_user(to, from, sizeof(siginfo_t))
2707 ? -EFAULT : 0;
2708 /*
2709 * If you change siginfo_t structure, please be sure
2710 * this code is fixed accordingly.
fba2afaa
DL
2711 * Please remember to update the signalfd_copyinfo() function
2712 * inside fs/signalfd.c too, in case siginfo_t changes.
1da177e4
LT
2713 * It should never copy any pad contained in the structure
2714 * to avoid security leaks, but must copy the generic
2715 * 3 ints plus the relevant union member.
2716 */
2717 err = __put_user(from->si_signo, &to->si_signo);
2718 err |= __put_user(from->si_errno, &to->si_errno);
2719 err |= __put_user((short)from->si_code, &to->si_code);
2720 switch (from->si_code & __SI_MASK) {
2721 case __SI_KILL:
2722 err |= __put_user(from->si_pid, &to->si_pid);
2723 err |= __put_user(from->si_uid, &to->si_uid);
2724 break;
2725 case __SI_TIMER:
2726 err |= __put_user(from->si_tid, &to->si_tid);
2727 err |= __put_user(from->si_overrun, &to->si_overrun);
2728 err |= __put_user(from->si_ptr, &to->si_ptr);
2729 break;
2730 case __SI_POLL:
2731 err |= __put_user(from->si_band, &to->si_band);
2732 err |= __put_user(from->si_fd, &to->si_fd);
2733 break;
2734 case __SI_FAULT:
2735 err |= __put_user(from->si_addr, &to->si_addr);
2736#ifdef __ARCH_SI_TRAPNO
2737 err |= __put_user(from->si_trapno, &to->si_trapno);
a337fdac
AK
2738#endif
2739#ifdef BUS_MCEERR_AO
5aba085e 2740 /*
a337fdac 2741 * Other callers might not initialize the si_lsb field,
5aba085e 2742 * so check explicitly for the right codes here.
a337fdac
AK
2743 */
2744 if (from->si_code == BUS_MCEERR_AR || from->si_code == BUS_MCEERR_AO)
2745 err |= __put_user(from->si_addr_lsb, &to->si_addr_lsb);
1da177e4
LT
2746#endif
2747 break;
2748 case __SI_CHLD:
2749 err |= __put_user(from->si_pid, &to->si_pid);
2750 err |= __put_user(from->si_uid, &to->si_uid);
2751 err |= __put_user(from->si_status, &to->si_status);
2752 err |= __put_user(from->si_utime, &to->si_utime);
2753 err |= __put_user(from->si_stime, &to->si_stime);
2754 break;
2755 case __SI_RT: /* This is not generated by the kernel as of now. */
2756 case __SI_MESGQ: /* But this is */
2757 err |= __put_user(from->si_pid, &to->si_pid);
2758 err |= __put_user(from->si_uid, &to->si_uid);
2759 err |= __put_user(from->si_ptr, &to->si_ptr);
2760 break;
a0727e8c
WD
2761#ifdef __ARCH_SIGSYS
2762 case __SI_SYS:
2763 err |= __put_user(from->si_call_addr, &to->si_call_addr);
2764 err |= __put_user(from->si_syscall, &to->si_syscall);
2765 err |= __put_user(from->si_arch, &to->si_arch);
2766 break;
2767#endif
1da177e4
LT
2768 default: /* this is just in case for now ... */
2769 err |= __put_user(from->si_pid, &to->si_pid);
2770 err |= __put_user(from->si_uid, &to->si_uid);
2771 break;
2772 }
2773 return err;
2774}
2775
2776#endif
2777
943df148
ON
2778/**
2779 * do_sigtimedwait - wait for queued signals specified in @which
2780 * @which: queued signals to wait for
2781 * @info: if non-null, the signal's siginfo is returned here
2782 * @ts: upper bound on process time suspension
2783 */
2784int do_sigtimedwait(const sigset_t *which, siginfo_t *info,
2785 const struct timespec *ts)
2786{
2787 struct task_struct *tsk = current;
2788 long timeout = MAX_SCHEDULE_TIMEOUT;
2789 sigset_t mask = *which;
2790 int sig;
2791
2792 if (ts) {
2793 if (!timespec_valid(ts))
2794 return -EINVAL;
2795 timeout = timespec_to_jiffies(ts);
2796 /*
2797 * We can be close to the next tick, add another one
2798 * to ensure we will wait at least the time asked for.
2799 */
2800 if (ts->tv_sec || ts->tv_nsec)
2801 timeout++;
2802 }
2803
2804 /*
2805 * Invert the set of allowed signals to get those we want to block.
2806 */
2807 sigdelsetmask(&mask, sigmask(SIGKILL) | sigmask(SIGSTOP));
2808 signotset(&mask);
2809
2810 spin_lock_irq(&tsk->sighand->siglock);
2811 sig = dequeue_signal(tsk, &mask, info);
2812 if (!sig && timeout) {
2813 /*
2814 * None ready, temporarily unblock those we're interested
2815 * while we are sleeping in so that we'll be awakened when
b182801a
ON
2816 * they arrive. Unblocking is always fine, we can avoid
2817 * set_current_blocked().
943df148
ON
2818 */
2819 tsk->real_blocked = tsk->blocked;
2820 sigandsets(&tsk->blocked, &tsk->blocked, &mask);
2821 recalc_sigpending();
2822 spin_unlock_irq(&tsk->sighand->siglock);
2823
a2d5f1f5 2824 timeout = freezable_schedule_timeout_interruptible(timeout);
943df148
ON
2825
2826 spin_lock_irq(&tsk->sighand->siglock);
b182801a 2827 __set_task_blocked(tsk, &tsk->real_blocked);
6114041a 2828 sigemptyset(&tsk->real_blocked);
b182801a 2829 sig = dequeue_signal(tsk, &mask, info);
943df148
ON
2830 }
2831 spin_unlock_irq(&tsk->sighand->siglock);
2832
2833 if (sig)
2834 return sig;
2835 return timeout ? -EINTR : -EAGAIN;
2836}
2837
41c57892
RD
2838/**
2839 * sys_rt_sigtimedwait - synchronously wait for queued signals specified
2840 * in @uthese
2841 * @uthese: queued signals to wait for
2842 * @uinfo: if non-null, the signal's siginfo is returned here
2843 * @uts: upper bound on process time suspension
2844 * @sigsetsize: size of sigset_t type
2845 */
17da2bd9
HC
2846SYSCALL_DEFINE4(rt_sigtimedwait, const sigset_t __user *, uthese,
2847 siginfo_t __user *, uinfo, const struct timespec __user *, uts,
2848 size_t, sigsetsize)
1da177e4 2849{
1da177e4
LT
2850 sigset_t these;
2851 struct timespec ts;
2852 siginfo_t info;
943df148 2853 int ret;
1da177e4
LT
2854
2855 /* XXX: Don't preclude handling different sized sigset_t's. */
2856 if (sigsetsize != sizeof(sigset_t))
2857 return -EINVAL;
2858
2859 if (copy_from_user(&these, uthese, sizeof(these)))
2860 return -EFAULT;
5aba085e 2861
1da177e4
LT
2862 if (uts) {
2863 if (copy_from_user(&ts, uts, sizeof(ts)))
2864 return -EFAULT;
1da177e4
LT
2865 }
2866
943df148 2867 ret = do_sigtimedwait(&these, &info, uts ? &ts : NULL);
1da177e4 2868
943df148
ON
2869 if (ret > 0 && uinfo) {
2870 if (copy_siginfo_to_user(uinfo, &info))
2871 ret = -EFAULT;
1da177e4
LT
2872 }
2873
2874 return ret;
2875}
2876
41c57892
RD
2877/**
2878 * sys_kill - send a signal to a process
2879 * @pid: the PID of the process
2880 * @sig: signal to be sent
2881 */
17da2bd9 2882SYSCALL_DEFINE2(kill, pid_t, pid, int, sig)
1da177e4
LT
2883{
2884 struct siginfo info;
2885
2886 info.si_signo = sig;
2887 info.si_errno = 0;
2888 info.si_code = SI_USER;
b488893a 2889 info.si_pid = task_tgid_vnr(current);
078de5f7 2890 info.si_uid = from_kuid_munged(current_user_ns(), current_uid());
1da177e4
LT
2891
2892 return kill_something_info(sig, &info, pid);
2893}
2894
30b4ae8a
TG
2895static int
2896do_send_specific(pid_t tgid, pid_t pid, int sig, struct siginfo *info)
1da177e4 2897{
1da177e4 2898 struct task_struct *p;
30b4ae8a 2899 int error = -ESRCH;
1da177e4 2900
3547ff3a 2901 rcu_read_lock();
228ebcbe 2902 p = find_task_by_vpid(pid);
b488893a 2903 if (p && (tgid <= 0 || task_tgid_vnr(p) == tgid)) {
30b4ae8a 2904 error = check_kill_permission(sig, info, p);
1da177e4
LT
2905 /*
2906 * The null signal is a permissions and process existence
2907 * probe. No signal is actually delivered.
2908 */
4a30debf
ON
2909 if (!error && sig) {
2910 error = do_send_sig_info(sig, info, p, false);
2911 /*
2912 * If lock_task_sighand() failed we pretend the task
2913 * dies after receiving the signal. The window is tiny,
2914 * and the signal is private anyway.
2915 */
2916 if (unlikely(error == -ESRCH))
2917 error = 0;
1da177e4
LT
2918 }
2919 }
3547ff3a 2920 rcu_read_unlock();
6dd69f10 2921
1da177e4
LT
2922 return error;
2923}
2924
30b4ae8a
TG
2925static int do_tkill(pid_t tgid, pid_t pid, int sig)
2926{
b9e146d8 2927 struct siginfo info = {};
30b4ae8a
TG
2928
2929 info.si_signo = sig;
2930 info.si_errno = 0;
2931 info.si_code = SI_TKILL;
2932 info.si_pid = task_tgid_vnr(current);
078de5f7 2933 info.si_uid = from_kuid_munged(current_user_ns(), current_uid());
30b4ae8a
TG
2934
2935 return do_send_specific(tgid, pid, sig, &info);
2936}
2937
6dd69f10
VL
2938/**
2939 * sys_tgkill - send signal to one specific thread
2940 * @tgid: the thread group ID of the thread
2941 * @pid: the PID of the thread
2942 * @sig: signal to be sent
2943 *
72fd4a35 2944 * This syscall also checks the @tgid and returns -ESRCH even if the PID
6dd69f10
VL
2945 * exists but it's not belonging to the target process anymore. This
2946 * method solves the problem of threads exiting and PIDs getting reused.
2947 */
a5f8fa9e 2948SYSCALL_DEFINE3(tgkill, pid_t, tgid, pid_t, pid, int, sig)
6dd69f10
VL
2949{
2950 /* This is only valid for single tasks */
2951 if (pid <= 0 || tgid <= 0)
2952 return -EINVAL;
2953
2954 return do_tkill(tgid, pid, sig);
2955}
2956
41c57892
RD
2957/**
2958 * sys_tkill - send signal to one specific task
2959 * @pid: the PID of the task
2960 * @sig: signal to be sent
2961 *
1da177e4
LT
2962 * Send a signal to only one task, even if it's a CLONE_THREAD task.
2963 */
a5f8fa9e 2964SYSCALL_DEFINE2(tkill, pid_t, pid, int, sig)
1da177e4 2965{
1da177e4
LT
2966 /* This is only valid for single tasks */
2967 if (pid <= 0)
2968 return -EINVAL;
2969
6dd69f10 2970 return do_tkill(0, pid, sig);
1da177e4
LT
2971}
2972
75907d4d
AV
2973static int do_rt_sigqueueinfo(pid_t pid, int sig, siginfo_t *info)
2974{
2975 /* Not even root can pretend to send signals from the kernel.
2976 * Nor can they impersonate a kill()/tgkill(), which adds source info.
2977 */
66dd34ad
AV
2978 if ((info->si_code >= 0 || info->si_code == SI_TKILL) &&
2979 (task_pid_vnr(current) != pid)) {
75907d4d
AV
2980 /* We used to allow any < 0 si_code */
2981 WARN_ON_ONCE(info->si_code < 0);
2982 return -EPERM;
2983 }
2984 info->si_signo = sig;
2985
2986 /* POSIX.1b doesn't mention process groups. */
2987 return kill_proc_info(sig, info, pid);
2988}
2989
41c57892
RD
2990/**
2991 * sys_rt_sigqueueinfo - send signal information to a signal
2992 * @pid: the PID of the thread
2993 * @sig: signal to be sent
2994 * @uinfo: signal info to be sent
2995 */
a5f8fa9e
HC
2996SYSCALL_DEFINE3(rt_sigqueueinfo, pid_t, pid, int, sig,
2997 siginfo_t __user *, uinfo)
1da177e4
LT
2998{
2999 siginfo_t info;
1da177e4
LT
3000 if (copy_from_user(&info, uinfo, sizeof(siginfo_t)))
3001 return -EFAULT;
75907d4d
AV
3002 return do_rt_sigqueueinfo(pid, sig, &info);
3003}
1da177e4 3004
75907d4d 3005#ifdef CONFIG_COMPAT
75907d4d
AV
3006COMPAT_SYSCALL_DEFINE3(rt_sigqueueinfo,
3007 compat_pid_t, pid,
3008 int, sig,
3009 struct compat_siginfo __user *, uinfo)
3010{
3011 siginfo_t info;
3012 int ret = copy_siginfo_from_user32(&info, uinfo);
3013 if (unlikely(ret))
3014 return ret;
3015 return do_rt_sigqueueinfo(pid, sig, &info);
1da177e4 3016}
75907d4d 3017#endif
1da177e4 3018
9aae8fc0 3019static int do_rt_tgsigqueueinfo(pid_t tgid, pid_t pid, int sig, siginfo_t *info)
62ab4505
TG
3020{
3021 /* This is only valid for single tasks */
3022 if (pid <= 0 || tgid <= 0)
3023 return -EINVAL;
3024
3025 /* Not even root can pretend to send signals from the kernel.
da48524e
JT
3026 * Nor can they impersonate a kill()/tgkill(), which adds source info.
3027 */
66dd34ad
AV
3028 if (((info->si_code >= 0 || info->si_code == SI_TKILL)) &&
3029 (task_pid_vnr(current) != pid)) {
da48524e
JT
3030 /* We used to allow any < 0 si_code */
3031 WARN_ON_ONCE(info->si_code < 0);
62ab4505 3032 return -EPERM;
da48524e 3033 }
62ab4505
TG
3034 info->si_signo = sig;
3035
3036 return do_send_specific(tgid, pid, sig, info);
3037}
3038
3039SYSCALL_DEFINE4(rt_tgsigqueueinfo, pid_t, tgid, pid_t, pid, int, sig,
3040 siginfo_t __user *, uinfo)
3041{
3042 siginfo_t info;
3043
3044 if (copy_from_user(&info, uinfo, sizeof(siginfo_t)))
3045 return -EFAULT;
3046
3047 return do_rt_tgsigqueueinfo(tgid, pid, sig, &info);
3048}
3049
9aae8fc0
AV
3050#ifdef CONFIG_COMPAT
3051COMPAT_SYSCALL_DEFINE4(rt_tgsigqueueinfo,
3052 compat_pid_t, tgid,
3053 compat_pid_t, pid,
3054 int, sig,
3055 struct compat_siginfo __user *, uinfo)
3056{
3057 siginfo_t info;
3058
3059 if (copy_siginfo_from_user32(&info, uinfo))
3060 return -EFAULT;
3061 return do_rt_tgsigqueueinfo(tgid, pid, sig, &info);
3062}
3063#endif
3064
0341729b 3065/*
b4e74264 3066 * For kthreads only, must not be used if cloned with CLONE_SIGHAND
0341729b 3067 */
b4e74264 3068void kernel_sigaction(int sig, __sighandler_t action)
0341729b 3069{
ec5955b8 3070 spin_lock_irq(&current->sighand->siglock);
b4e74264
ON
3071 current->sighand->action[sig - 1].sa.sa_handler = action;
3072 if (action == SIG_IGN) {
3073 sigset_t mask;
0341729b 3074
b4e74264
ON
3075 sigemptyset(&mask);
3076 sigaddset(&mask, sig);
580d34e4 3077
b4e74264
ON
3078 flush_sigqueue_mask(&mask, &current->signal->shared_pending);
3079 flush_sigqueue_mask(&mask, &current->pending);
3080 recalc_sigpending();
3081 }
0341729b
ON
3082 spin_unlock_irq(&current->sighand->siglock);
3083}
b4e74264 3084EXPORT_SYMBOL(kernel_sigaction);
0341729b 3085
88531f72 3086int do_sigaction(int sig, struct k_sigaction *act, struct k_sigaction *oact)
1da177e4 3087{
afe2b038 3088 struct task_struct *p = current, *t;
1da177e4 3089 struct k_sigaction *k;
71fabd5e 3090 sigset_t mask;
1da177e4 3091
7ed20e1a 3092 if (!valid_signal(sig) || sig < 1 || (act && sig_kernel_only(sig)))
1da177e4
LT
3093 return -EINVAL;
3094
afe2b038 3095 k = &p->sighand->action[sig-1];
1da177e4 3096
afe2b038 3097 spin_lock_irq(&p->sighand->siglock);
1da177e4
LT
3098 if (oact)
3099 *oact = *k;
3100
3101 if (act) {
9ac95f2f
ON
3102 sigdelsetmask(&act->sa.sa_mask,
3103 sigmask(SIGKILL) | sigmask(SIGSTOP));
88531f72 3104 *k = *act;
1da177e4
LT
3105 /*
3106 * POSIX 3.3.1.3:
3107 * "Setting a signal action to SIG_IGN for a signal that is
3108 * pending shall cause the pending signal to be discarded,
3109 * whether or not it is blocked."
3110 *
3111 * "Setting a signal action to SIG_DFL for a signal that is
3112 * pending and whose default action is to ignore the signal
3113 * (for example, SIGCHLD), shall cause the pending signal to
3114 * be discarded, whether or not it is blocked"
3115 */
afe2b038 3116 if (sig_handler_ignored(sig_handler(p, sig), sig)) {
71fabd5e
GA
3117 sigemptyset(&mask);
3118 sigaddset(&mask, sig);
afe2b038
ON
3119 flush_sigqueue_mask(&mask, &p->signal->shared_pending);
3120 for_each_thread(p, t)
c09c1441 3121 flush_sigqueue_mask(&mask, &t->pending);
1da177e4 3122 }
1da177e4
LT
3123 }
3124
afe2b038 3125 spin_unlock_irq(&p->sighand->siglock);
1da177e4
LT
3126 return 0;
3127}
3128
c09c1441 3129static int
1da177e4
LT
3130do_sigaltstack (const stack_t __user *uss, stack_t __user *uoss, unsigned long sp)
3131{
3132 stack_t oss;
3133 int error;
3134
0083fc2c
LT
3135 oss.ss_sp = (void __user *) current->sas_ss_sp;
3136 oss.ss_size = current->sas_ss_size;
3137 oss.ss_flags = sas_ss_flags(sp);
1da177e4
LT
3138
3139 if (uss) {
3140 void __user *ss_sp;
3141 size_t ss_size;
3142 int ss_flags;
3143
3144 error = -EFAULT;
0dd8486b
LT
3145 if (!access_ok(VERIFY_READ, uss, sizeof(*uss)))
3146 goto out;
3147 error = __get_user(ss_sp, &uss->ss_sp) |
3148 __get_user(ss_flags, &uss->ss_flags) |
3149 __get_user(ss_size, &uss->ss_size);
3150 if (error)
1da177e4
LT
3151 goto out;
3152
3153 error = -EPERM;
3154 if (on_sig_stack(sp))
3155 goto out;
3156
3157 error = -EINVAL;
3158 /*
5aba085e 3159 * Note - this code used to test ss_flags incorrectly:
1da177e4
LT
3160 * old code may have been written using ss_flags==0
3161 * to mean ss_flags==SS_ONSTACK (as this was the only
3162 * way that worked) - this fix preserves that older
5aba085e 3163 * mechanism.
1da177e4
LT
3164 */
3165 if (ss_flags != SS_DISABLE && ss_flags != SS_ONSTACK && ss_flags != 0)
3166 goto out;
3167
3168 if (ss_flags == SS_DISABLE) {
3169 ss_size = 0;
3170 ss_sp = NULL;
3171 } else {
3172 error = -ENOMEM;
3173 if (ss_size < MINSIGSTKSZ)
3174 goto out;
3175 }
3176
3177 current->sas_ss_sp = (unsigned long) ss_sp;
3178 current->sas_ss_size = ss_size;
3179 }
3180
0083fc2c 3181 error = 0;
1da177e4
LT
3182 if (uoss) {
3183 error = -EFAULT;
0083fc2c 3184 if (!access_ok(VERIFY_WRITE, uoss, sizeof(*uoss)))
1da177e4 3185 goto out;
0083fc2c
LT
3186 error = __put_user(oss.ss_sp, &uoss->ss_sp) |
3187 __put_user(oss.ss_size, &uoss->ss_size) |
3188 __put_user(oss.ss_flags, &uoss->ss_flags);
1da177e4
LT
3189 }
3190
1da177e4
LT
3191out:
3192 return error;
3193}
6bf9adfc
AV
3194SYSCALL_DEFINE2(sigaltstack,const stack_t __user *,uss, stack_t __user *,uoss)
3195{
3196 return do_sigaltstack(uss, uoss, current_user_stack_pointer());
3197}
1da177e4 3198
5c49574f
AV
3199int restore_altstack(const stack_t __user *uss)
3200{
3201 int err = do_sigaltstack(uss, NULL, current_user_stack_pointer());
3202 /* squash all but EFAULT for now */
3203 return err == -EFAULT ? err : 0;
3204}
3205
c40702c4
AV
3206int __save_altstack(stack_t __user *uss, unsigned long sp)
3207{
3208 struct task_struct *t = current;
3209 return __put_user((void __user *)t->sas_ss_sp, &uss->ss_sp) |
3210 __put_user(sas_ss_flags(sp), &uss->ss_flags) |
3211 __put_user(t->sas_ss_size, &uss->ss_size);
3212}
3213
90268439 3214#ifdef CONFIG_COMPAT
90228fc1
AV
3215COMPAT_SYSCALL_DEFINE2(sigaltstack,
3216 const compat_stack_t __user *, uss_ptr,
3217 compat_stack_t __user *, uoss_ptr)
90268439
AV
3218{
3219 stack_t uss, uoss;
3220 int ret;
3221 mm_segment_t seg;
3222
3223 if (uss_ptr) {
3224 compat_stack_t uss32;
3225
3226 memset(&uss, 0, sizeof(stack_t));
3227 if (copy_from_user(&uss32, uss_ptr, sizeof(compat_stack_t)))
3228 return -EFAULT;
3229 uss.ss_sp = compat_ptr(uss32.ss_sp);
3230 uss.ss_flags = uss32.ss_flags;
3231 uss.ss_size = uss32.ss_size;
3232 }
3233 seg = get_fs();
3234 set_fs(KERNEL_DS);
3235 ret = do_sigaltstack((stack_t __force __user *) (uss_ptr ? &uss : NULL),
3236 (stack_t __force __user *) &uoss,
3237 compat_user_stack_pointer());
3238 set_fs(seg);
3239 if (ret >= 0 && uoss_ptr) {
3240 if (!access_ok(VERIFY_WRITE, uoss_ptr, sizeof(compat_stack_t)) ||
3241 __put_user(ptr_to_compat(uoss.ss_sp), &uoss_ptr->ss_sp) ||
3242 __put_user(uoss.ss_flags, &uoss_ptr->ss_flags) ||
3243 __put_user(uoss.ss_size, &uoss_ptr->ss_size))
3244 ret = -EFAULT;
3245 }
3246 return ret;
3247}
3248
3249int compat_restore_altstack(const compat_stack_t __user *uss)
3250{
3251 int err = compat_sys_sigaltstack(uss, NULL);
3252 /* squash all but -EFAULT for now */
3253 return err == -EFAULT ? err : 0;
3254}
c40702c4
AV
3255
3256int __compat_save_altstack(compat_stack_t __user *uss, unsigned long sp)
3257{
3258 struct task_struct *t = current;
3259 return __put_user(ptr_to_compat((void __user *)t->sas_ss_sp), &uss->ss_sp) |
3260 __put_user(sas_ss_flags(sp), &uss->ss_flags) |
3261 __put_user(t->sas_ss_size, &uss->ss_size);
3262}
90268439 3263#endif
1da177e4
LT
3264
3265#ifdef __ARCH_WANT_SYS_SIGPENDING
3266
41c57892
RD
3267/**
3268 * sys_sigpending - examine pending signals
3269 * @set: where mask of pending signal is returned
3270 */
b290ebe2 3271SYSCALL_DEFINE1(sigpending, old_sigset_t __user *, set)
1da177e4 3272{
fe9c1db2 3273 return sys_rt_sigpending((sigset_t __user *)set, sizeof(old_sigset_t));
1da177e4
LT
3274}
3275
3276#endif
3277
3278#ifdef __ARCH_WANT_SYS_SIGPROCMASK
41c57892
RD
3279/**
3280 * sys_sigprocmask - examine and change blocked signals
3281 * @how: whether to add, remove, or set signals
b013c399 3282 * @nset: signals to add or remove (if non-null)
41c57892
RD
3283 * @oset: previous value of signal mask if non-null
3284 *
5aba085e
RD
3285 * Some platforms have their own version with special arguments;
3286 * others support only sys_rt_sigprocmask.
3287 */
1da177e4 3288
b013c399 3289SYSCALL_DEFINE3(sigprocmask, int, how, old_sigset_t __user *, nset,
b290ebe2 3290 old_sigset_t __user *, oset)
1da177e4 3291{
1da177e4 3292 old_sigset_t old_set, new_set;
2e4f7c77 3293 sigset_t new_blocked;
1da177e4 3294
b013c399 3295 old_set = current->blocked.sig[0];
1da177e4 3296
b013c399
ON
3297 if (nset) {
3298 if (copy_from_user(&new_set, nset, sizeof(*nset)))
3299 return -EFAULT;
1da177e4 3300
2e4f7c77 3301 new_blocked = current->blocked;
1da177e4 3302
1da177e4 3303 switch (how) {
1da177e4 3304 case SIG_BLOCK:
2e4f7c77 3305 sigaddsetmask(&new_blocked, new_set);
1da177e4
LT
3306 break;
3307 case SIG_UNBLOCK:
2e4f7c77 3308 sigdelsetmask(&new_blocked, new_set);
1da177e4
LT
3309 break;
3310 case SIG_SETMASK:
2e4f7c77 3311 new_blocked.sig[0] = new_set;
1da177e4 3312 break;
2e4f7c77
ON
3313 default:
3314 return -EINVAL;
1da177e4
LT
3315 }
3316
0c4a8423 3317 set_current_blocked(&new_blocked);
b013c399
ON
3318 }
3319
3320 if (oset) {
1da177e4 3321 if (copy_to_user(oset, &old_set, sizeof(*oset)))
b013c399 3322 return -EFAULT;
1da177e4 3323 }
b013c399
ON
3324
3325 return 0;
1da177e4
LT
3326}
3327#endif /* __ARCH_WANT_SYS_SIGPROCMASK */
3328
eaca6eae 3329#ifndef CONFIG_ODD_RT_SIGACTION
41c57892
RD
3330/**
3331 * sys_rt_sigaction - alter an action taken by a process
3332 * @sig: signal to be sent
f9fa0bc1
RD
3333 * @act: new sigaction
3334 * @oact: used to save the previous sigaction
41c57892
RD
3335 * @sigsetsize: size of sigset_t type
3336 */
d4e82042
HC
3337SYSCALL_DEFINE4(rt_sigaction, int, sig,
3338 const struct sigaction __user *, act,
3339 struct sigaction __user *, oact,
3340 size_t, sigsetsize)
1da177e4
LT
3341{
3342 struct k_sigaction new_sa, old_sa;
3343 int ret = -EINVAL;
3344
3345 /* XXX: Don't preclude handling different sized sigset_t's. */
3346 if (sigsetsize != sizeof(sigset_t))
3347 goto out;
3348
3349 if (act) {
3350 if (copy_from_user(&new_sa.sa, act, sizeof(new_sa.sa)))
3351 return -EFAULT;
3352 }
3353
3354 ret = do_sigaction(sig, act ? &new_sa : NULL, oact ? &old_sa : NULL);
3355
3356 if (!ret && oact) {
3357 if (copy_to_user(oact, &old_sa.sa, sizeof(old_sa.sa)))
3358 return -EFAULT;
3359 }
3360out:
3361 return ret;
3362}
08d32fe5 3363#ifdef CONFIG_COMPAT
08d32fe5
AV
3364COMPAT_SYSCALL_DEFINE4(rt_sigaction, int, sig,
3365 const struct compat_sigaction __user *, act,
3366 struct compat_sigaction __user *, oact,
3367 compat_size_t, sigsetsize)
3368{
3369 struct k_sigaction new_ka, old_ka;
3370 compat_sigset_t mask;
3371#ifdef __ARCH_HAS_SA_RESTORER
3372 compat_uptr_t restorer;
3373#endif
3374 int ret;
3375
3376 /* XXX: Don't preclude handling different sized sigset_t's. */
3377 if (sigsetsize != sizeof(compat_sigset_t))
3378 return -EINVAL;
3379
3380 if (act) {
3381 compat_uptr_t handler;
3382 ret = get_user(handler, &act->sa_handler);
3383 new_ka.sa.sa_handler = compat_ptr(handler);
3384#ifdef __ARCH_HAS_SA_RESTORER
3385 ret |= get_user(restorer, &act->sa_restorer);
3386 new_ka.sa.sa_restorer = compat_ptr(restorer);
3387#endif
3388 ret |= copy_from_user(&mask, &act->sa_mask, sizeof(mask));
3ddc5b46 3389 ret |= get_user(new_ka.sa.sa_flags, &act->sa_flags);
08d32fe5
AV
3390 if (ret)
3391 return -EFAULT;
3392 sigset_from_compat(&new_ka.sa.sa_mask, &mask);
3393 }
3394
3395 ret = do_sigaction(sig, act ? &new_ka : NULL, oact ? &old_ka : NULL);
3396 if (!ret && oact) {
3397 sigset_to_compat(&mask, &old_ka.sa.sa_mask);
3398 ret = put_user(ptr_to_compat(old_ka.sa.sa_handler),
3399 &oact->sa_handler);
3400 ret |= copy_to_user(&oact->sa_mask, &mask, sizeof(mask));
3ddc5b46 3401 ret |= put_user(old_ka.sa.sa_flags, &oact->sa_flags);
08d32fe5
AV
3402#ifdef __ARCH_HAS_SA_RESTORER
3403 ret |= put_user(ptr_to_compat(old_ka.sa.sa_restorer),
3404 &oact->sa_restorer);
3405#endif
3406 }
3407 return ret;
3408}
3409#endif
eaca6eae 3410#endif /* !CONFIG_ODD_RT_SIGACTION */
1da177e4 3411
495dfbf7
AV
3412#ifdef CONFIG_OLD_SIGACTION
3413SYSCALL_DEFINE3(sigaction, int, sig,
3414 const struct old_sigaction __user *, act,
3415 struct old_sigaction __user *, oact)
3416{
3417 struct k_sigaction new_ka, old_ka;
3418 int ret;
3419
3420 if (act) {
3421 old_sigset_t mask;
3422 if (!access_ok(VERIFY_READ, act, sizeof(*act)) ||
3423 __get_user(new_ka.sa.sa_handler, &act->sa_handler) ||
3424 __get_user(new_ka.sa.sa_restorer, &act->sa_restorer) ||
3425 __get_user(new_ka.sa.sa_flags, &act->sa_flags) ||
3426 __get_user(mask, &act->sa_mask))
3427 return -EFAULT;
3428#ifdef __ARCH_HAS_KA_RESTORER
3429 new_ka.ka_restorer = NULL;
3430#endif
3431 siginitset(&new_ka.sa.sa_mask, mask);
3432 }
3433
3434 ret = do_sigaction(sig, act ? &new_ka : NULL, oact ? &old_ka : NULL);
3435
3436 if (!ret && oact) {
3437 if (!access_ok(VERIFY_WRITE, oact, sizeof(*oact)) ||
3438 __put_user(old_ka.sa.sa_handler, &oact->sa_handler) ||
3439 __put_user(old_ka.sa.sa_restorer, &oact->sa_restorer) ||
3440 __put_user(old_ka.sa.sa_flags, &oact->sa_flags) ||
3441 __put_user(old_ka.sa.sa_mask.sig[0], &oact->sa_mask))
3442 return -EFAULT;
3443 }
3444
3445 return ret;
3446}
3447#endif
3448#ifdef CONFIG_COMPAT_OLD_SIGACTION
3449COMPAT_SYSCALL_DEFINE3(sigaction, int, sig,
3450 const struct compat_old_sigaction __user *, act,
3451 struct compat_old_sigaction __user *, oact)
3452{
3453 struct k_sigaction new_ka, old_ka;
3454 int ret;
3455 compat_old_sigset_t mask;
3456 compat_uptr_t handler, restorer;
3457
3458 if (act) {
3459 if (!access_ok(VERIFY_READ, act, sizeof(*act)) ||
3460 __get_user(handler, &act->sa_handler) ||
3461 __get_user(restorer, &act->sa_restorer) ||
3462 __get_user(new_ka.sa.sa_flags, &act->sa_flags) ||
3463 __get_user(mask, &act->sa_mask))
3464 return -EFAULT;
3465
3466#ifdef __ARCH_HAS_KA_RESTORER
3467 new_ka.ka_restorer = NULL;
3468#endif
3469 new_ka.sa.sa_handler = compat_ptr(handler);
3470 new_ka.sa.sa_restorer = compat_ptr(restorer);
3471 siginitset(&new_ka.sa.sa_mask, mask);
3472 }
3473
3474 ret = do_sigaction(sig, act ? &new_ka : NULL, oact ? &old_ka : NULL);
3475
3476 if (!ret && oact) {
3477 if (!access_ok(VERIFY_WRITE, oact, sizeof(*oact)) ||
3478 __put_user(ptr_to_compat(old_ka.sa.sa_handler),
3479 &oact->sa_handler) ||
3480 __put_user(ptr_to_compat(old_ka.sa.sa_restorer),
3481 &oact->sa_restorer) ||
3482 __put_user(old_ka.sa.sa_flags, &oact->sa_flags) ||
3483 __put_user(old_ka.sa.sa_mask.sig[0], &oact->sa_mask))
3484 return -EFAULT;
3485 }
3486 return ret;
3487}
3488#endif
1da177e4 3489
f6187769 3490#ifdef CONFIG_SGETMASK_SYSCALL
1da177e4
LT
3491
3492/*
3493 * For backwards compatibility. Functionality superseded by sigprocmask.
3494 */
a5f8fa9e 3495SYSCALL_DEFINE0(sgetmask)
1da177e4
LT
3496{
3497 /* SMP safe */
3498 return current->blocked.sig[0];
3499}
3500
a5f8fa9e 3501SYSCALL_DEFINE1(ssetmask, int, newmask)
1da177e4 3502{
c1095c6d
ON
3503 int old = current->blocked.sig[0];
3504 sigset_t newset;
1da177e4 3505
5ba53ff6 3506 siginitset(&newset, newmask);
c1095c6d 3507 set_current_blocked(&newset);
1da177e4
LT
3508
3509 return old;
3510}
f6187769 3511#endif /* CONFIG_SGETMASK_SYSCALL */
1da177e4
LT
3512
3513#ifdef __ARCH_WANT_SYS_SIGNAL
3514/*
3515 * For backwards compatibility. Functionality superseded by sigaction.
3516 */
a5f8fa9e 3517SYSCALL_DEFINE2(signal, int, sig, __sighandler_t, handler)
1da177e4
LT
3518{
3519 struct k_sigaction new_sa, old_sa;
3520 int ret;
3521
3522 new_sa.sa.sa_handler = handler;
3523 new_sa.sa.sa_flags = SA_ONESHOT | SA_NOMASK;
c70d3d70 3524 sigemptyset(&new_sa.sa.sa_mask);
1da177e4
LT
3525
3526 ret = do_sigaction(sig, &new_sa, &old_sa);
3527
3528 return ret ? ret : (unsigned long)old_sa.sa.sa_handler;
3529}
3530#endif /* __ARCH_WANT_SYS_SIGNAL */
3531
3532#ifdef __ARCH_WANT_SYS_PAUSE
3533
a5f8fa9e 3534SYSCALL_DEFINE0(pause)
1da177e4 3535{
d92fcf05
ON
3536 while (!signal_pending(current)) {
3537 current->state = TASK_INTERRUPTIBLE;
3538 schedule();
3539 }
1da177e4
LT
3540 return -ERESTARTNOHAND;
3541}
3542
3543#endif
3544
68f3f16d
AV
3545int sigsuspend(sigset_t *set)
3546{
68f3f16d
AV
3547 current->saved_sigmask = current->blocked;
3548 set_current_blocked(set);
3549
3550 current->state = TASK_INTERRUPTIBLE;
3551 schedule();
3552 set_restore_sigmask();
3553 return -ERESTARTNOHAND;
3554}
68f3f16d 3555
41c57892
RD
3556/**
3557 * sys_rt_sigsuspend - replace the signal mask for a value with the
3558 * @unewset value until a signal is received
3559 * @unewset: new signal mask value
3560 * @sigsetsize: size of sigset_t type
3561 */
d4e82042 3562SYSCALL_DEFINE2(rt_sigsuspend, sigset_t __user *, unewset, size_t, sigsetsize)
150256d8
DW
3563{
3564 sigset_t newset;
3565
3566 /* XXX: Don't preclude handling different sized sigset_t's. */
3567 if (sigsetsize != sizeof(sigset_t))
3568 return -EINVAL;
3569
3570 if (copy_from_user(&newset, unewset, sizeof(newset)))
3571 return -EFAULT;
68f3f16d 3572 return sigsuspend(&newset);
150256d8 3573}
ad4b65a4
AV
3574
3575#ifdef CONFIG_COMPAT
3576COMPAT_SYSCALL_DEFINE2(rt_sigsuspend, compat_sigset_t __user *, unewset, compat_size_t, sigsetsize)
3577{
3578#ifdef __BIG_ENDIAN
3579 sigset_t newset;
3580 compat_sigset_t newset32;
3581
3582 /* XXX: Don't preclude handling different sized sigset_t's. */
3583 if (sigsetsize != sizeof(sigset_t))
3584 return -EINVAL;
3585
3586 if (copy_from_user(&newset32, unewset, sizeof(compat_sigset_t)))
3587 return -EFAULT;
3588 sigset_from_compat(&newset, &newset32);
3589 return sigsuspend(&newset);
3590#else
3591 /* on little-endian bitmaps don't care about granularity */
3592 return sys_rt_sigsuspend((sigset_t __user *)unewset, sigsetsize);
3593#endif
3594}
3595#endif
150256d8 3596
0a0e8cdf
AV
3597#ifdef CONFIG_OLD_SIGSUSPEND
3598SYSCALL_DEFINE1(sigsuspend, old_sigset_t, mask)
3599{
3600 sigset_t blocked;
3601 siginitset(&blocked, mask);
3602 return sigsuspend(&blocked);
3603}
3604#endif
3605#ifdef CONFIG_OLD_SIGSUSPEND3
3606SYSCALL_DEFINE3(sigsuspend, int, unused1, int, unused2, old_sigset_t, mask)
3607{
3608 sigset_t blocked;
3609 siginitset(&blocked, mask);
3610 return sigsuspend(&blocked);
3611}
3612#endif
150256d8 3613
52f5684c 3614__weak const char *arch_vma_name(struct vm_area_struct *vma)
f269fdd1
DH
3615{
3616 return NULL;
3617}
3618
1da177e4
LT
3619void __init signals_init(void)
3620{
0a31bd5f 3621 sigqueue_cachep = KMEM_CACHE(sigqueue, SLAB_PANIC);
1da177e4 3622}
67fc4e0c
JW
3623
3624#ifdef CONFIG_KGDB_KDB
3625#include <linux/kdb.h>
3626/*
3627 * kdb_send_sig_info - Allows kdb to send signals without exposing
3628 * signal internals. This function checks if the required locks are
3629 * available before calling the main signal code, to avoid kdb
3630 * deadlocks.
3631 */
3632void
3633kdb_send_sig_info(struct task_struct *t, struct siginfo *info)
3634{
3635 static struct task_struct *kdb_prev_t;
3636 int sig, new_t;
3637 if (!spin_trylock(&t->sighand->siglock)) {
3638 kdb_printf("Can't do kill command now.\n"
3639 "The sigmask lock is held somewhere else in "
3640 "kernel, try again later\n");
3641 return;
3642 }
3643 spin_unlock(&t->sighand->siglock);
3644 new_t = kdb_prev_t != t;
3645 kdb_prev_t = t;
3646 if (t->state != TASK_RUNNING && new_t) {
3647 kdb_printf("Process is not RUNNING, sending a signal from "
3648 "kdb risks deadlock\n"
3649 "on the run queue locks. "
3650 "The signal has _not_ been sent.\n"
3651 "Reissue the kill command if you want to risk "
3652 "the deadlock.\n");
3653 return;
3654 }
3655 sig = info->si_signo;
3656 if (send_sig_info(sig, info, t))
3657 kdb_printf("Fail to deliver Signal %d to process %d.\n",
3658 sig, t->pid);
3659 else
3660 kdb_printf("Signal %d is sent to process %d.\n", sig, t->pid);
3661}
3662#endif /* CONFIG_KGDB_KDB */