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Merge branch 'akpm' (Andrew's fixups)
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CommitLineData
1da177e4
LT
1/*
2 * linux/kernel/exit.c
3 *
4 * Copyright (C) 1991, 1992 Linus Torvalds
5 */
6
1da177e4
LT
7#include <linux/mm.h>
8#include <linux/slab.h>
9#include <linux/interrupt.h>
1da177e4 10#include <linux/module.h>
c59ede7b 11#include <linux/capability.h>
1da177e4
LT
12#include <linux/completion.h>
13#include <linux/personality.h>
14#include <linux/tty.h>
da9cbc87 15#include <linux/iocontext.h>
1da177e4
LT
16#include <linux/key.h>
17#include <linux/security.h>
18#include <linux/cpu.h>
19#include <linux/acct.h>
8f0ab514 20#include <linux/tsacct_kern.h>
1da177e4 21#include <linux/file.h>
9f3acc31 22#include <linux/fdtable.h>
1da177e4 23#include <linux/binfmts.h>
ab516013 24#include <linux/nsproxy.h>
84d73786 25#include <linux/pid_namespace.h>
1da177e4
LT
26#include <linux/ptrace.h>
27#include <linux/profile.h>
28#include <linux/mount.h>
29#include <linux/proc_fs.h>
49d769d5 30#include <linux/kthread.h>
1da177e4 31#include <linux/mempolicy.h>
c757249a 32#include <linux/taskstats_kern.h>
ca74e92b 33#include <linux/delayacct.h>
83144186 34#include <linux/freezer.h>
b4f48b63 35#include <linux/cgroup.h>
1da177e4 36#include <linux/syscalls.h>
7ed20e1a 37#include <linux/signal.h>
6a14c5c9 38#include <linux/posix-timers.h>
9f46080c 39#include <linux/cn_proc.h>
de5097c2 40#include <linux/mutex.h>
0771dfef 41#include <linux/futex.h>
b92ce558 42#include <linux/pipe_fs_i.h>
fa84cb93 43#include <linux/audit.h> /* for audit_free() */
83cc5ed3 44#include <linux/resource.h>
0d67a46d 45#include <linux/blkdev.h>
6eaeeaba 46#include <linux/task_io_accounting_ops.h>
30199f5a 47#include <linux/tracehook.h>
5ad4e53b 48#include <linux/fs_struct.h>
d84f4f99 49#include <linux/init_task.h>
cdd6c482 50#include <linux/perf_event.h>
ad8d75ff 51#include <trace/events/sched.h>
24f1e32c 52#include <linux/hw_breakpoint.h>
3d5992d2 53#include <linux/oom.h>
54848d73 54#include <linux/writeback.h>
40401530 55#include <linux/shm.h>
1da177e4
LT
56
57#include <asm/uaccess.h>
58#include <asm/unistd.h>
59#include <asm/pgtable.h>
60#include <asm/mmu_context.h>
61
408b664a
AB
62static void exit_mm(struct task_struct * tsk);
63
d40e48e0 64static void __unhash_process(struct task_struct *p, bool group_dead)
1da177e4
LT
65{
66 nr_threads--;
67 detach_pid(p, PIDTYPE_PID);
d40e48e0 68 if (group_dead) {
1da177e4
LT
69 detach_pid(p, PIDTYPE_PGID);
70 detach_pid(p, PIDTYPE_SID);
c97d9893 71
5e85d4ab 72 list_del_rcu(&p->tasks);
9cd80bbb 73 list_del_init(&p->sibling);
909ea964 74 __this_cpu_dec(process_counts);
1da177e4 75 }
47e65328 76 list_del_rcu(&p->thread_group);
1da177e4
LT
77}
78
6a14c5c9
ON
79/*
80 * This function expects the tasklist_lock write-locked.
81 */
82static void __exit_signal(struct task_struct *tsk)
83{
84 struct signal_struct *sig = tsk->signal;
d40e48e0 85 bool group_dead = thread_group_leader(tsk);
6a14c5c9 86 struct sighand_struct *sighand;
4ada856f 87 struct tty_struct *uninitialized_var(tty);
6a14c5c9 88
d11c563d 89 sighand = rcu_dereference_check(tsk->sighand,
db1466b3 90 lockdep_tasklist_lock_is_held());
6a14c5c9
ON
91 spin_lock(&sighand->siglock);
92
93 posix_cpu_timers_exit(tsk);
d40e48e0 94 if (group_dead) {
6a14c5c9 95 posix_cpu_timers_exit_group(tsk);
4ada856f
ON
96 tty = sig->tty;
97 sig->tty = NULL;
4a599942 98 } else {
e0a70217
ON
99 /*
100 * This can only happen if the caller is de_thread().
101 * FIXME: this is the temporary hack, we should teach
102 * posix-cpu-timers to handle this case correctly.
103 */
104 if (unlikely(has_group_leader_pid(tsk)))
105 posix_cpu_timers_exit_group(tsk);
106
6a14c5c9
ON
107 /*
108 * If there is any task waiting for the group exit
109 * then notify it:
110 */
d344193a 111 if (sig->notify_count > 0 && !--sig->notify_count)
6a14c5c9 112 wake_up_process(sig->group_exit_task);
6db840fa 113
6a14c5c9
ON
114 if (tsk == sig->curr_target)
115 sig->curr_target = next_thread(tsk);
116 /*
117 * Accumulate here the counters for all threads but the
118 * group leader as they die, so they can be added into
119 * the process-wide totals when those are taken.
120 * The group leader stays around as a zombie as long
121 * as there are other threads. When it gets reaped,
122 * the exit.c code will add its counts into these totals.
123 * We won't ever get here for the group leader, since it
124 * will have been the last reference on the signal_struct.
125 */
64861634
MS
126 sig->utime += tsk->utime;
127 sig->stime += tsk->stime;
128 sig->gtime += tsk->gtime;
6a14c5c9
ON
129 sig->min_flt += tsk->min_flt;
130 sig->maj_flt += tsk->maj_flt;
131 sig->nvcsw += tsk->nvcsw;
132 sig->nivcsw += tsk->nivcsw;
6eaeeaba
ED
133 sig->inblock += task_io_get_inblock(tsk);
134 sig->oublock += task_io_get_oublock(tsk);
5995477a 135 task_io_accounting_add(&sig->ioac, &tsk->ioac);
32bd671d 136 sig->sum_sched_runtime += tsk->se.sum_exec_runtime;
6a14c5c9
ON
137 }
138
b3ac022c 139 sig->nr_threads--;
d40e48e0 140 __unhash_process(tsk, group_dead);
5876700c 141
da7978b0
ON
142 /*
143 * Do this under ->siglock, we can race with another thread
144 * doing sigqueue_free() if we have SIGQUEUE_PREALLOC signals.
145 */
146 flush_sigqueue(&tsk->pending);
a7e5328a 147 tsk->sighand = NULL;
6a14c5c9 148 spin_unlock(&sighand->siglock);
6a14c5c9 149
a7e5328a 150 __cleanup_sighand(sighand);
6a14c5c9 151 clear_tsk_thread_flag(tsk,TIF_SIGPENDING);
d40e48e0 152 if (group_dead) {
6a14c5c9 153 flush_sigqueue(&sig->shared_pending);
4ada856f 154 tty_kref_put(tty);
6a14c5c9
ON
155 }
156}
157
8c7904a0
EB
158static void delayed_put_task_struct(struct rcu_head *rhp)
159{
0a16b607
MD
160 struct task_struct *tsk = container_of(rhp, struct task_struct, rcu);
161
4e231c79 162 perf_event_delayed_put(tsk);
0a16b607
MD
163 trace_sched_process_free(tsk);
164 put_task_struct(tsk);
8c7904a0
EB
165}
166
f470021a 167
1da177e4
LT
168void release_task(struct task_struct * p)
169{
36c8b586 170 struct task_struct *leader;
1da177e4 171 int zap_leader;
1f09f974 172repeat:
c69e8d9c 173 /* don't need to get the RCU readlock here - the process is dead and
d11c563d
PM
174 * can't be modifying its own credentials. But shut RCU-lockdep up */
175 rcu_read_lock();
c69e8d9c 176 atomic_dec(&__task_cred(p)->user->processes);
d11c563d 177 rcu_read_unlock();
c69e8d9c 178
60347f67 179 proc_flush_task(p);
0203026b 180
1da177e4 181 write_lock_irq(&tasklist_lock);
a288eecc 182 ptrace_release_task(p);
1da177e4 183 __exit_signal(p);
35f5cad8 184
1da177e4
LT
185 /*
186 * If we are the last non-leader member of the thread
187 * group, and the leader is zombie, then notify the
188 * group leader's parent process. (if it wants notification.)
189 */
190 zap_leader = 0;
191 leader = p->group_leader;
192 if (leader != p && thread_group_empty(leader) && leader->exit_state == EXIT_ZOMBIE) {
1da177e4
LT
193 /*
194 * If we were the last child thread and the leader has
195 * exited already, and the leader's parent ignores SIGCHLD,
196 * then we are the one who should release the leader.
dae33574 197 */
86773473 198 zap_leader = do_notify_parent(leader, leader->exit_signal);
dae33574
RM
199 if (zap_leader)
200 leader->exit_state = EXIT_DEAD;
1da177e4
LT
201 }
202
1da177e4 203 write_unlock_irq(&tasklist_lock);
1da177e4 204 release_thread(p);
8c7904a0 205 call_rcu(&p->rcu, delayed_put_task_struct);
1da177e4
LT
206
207 p = leader;
208 if (unlikely(zap_leader))
209 goto repeat;
210}
211
1da177e4
LT
212/*
213 * This checks not only the pgrp, but falls back on the pid if no
214 * satisfactory pgrp is found. I dunno - gdb doesn't work correctly
215 * without this...
04a2e6a5
EB
216 *
217 * The caller must hold rcu lock or the tasklist lock.
1da177e4 218 */
04a2e6a5 219struct pid *session_of_pgrp(struct pid *pgrp)
1da177e4
LT
220{
221 struct task_struct *p;
04a2e6a5 222 struct pid *sid = NULL;
62dfb554 223
04a2e6a5 224 p = pid_task(pgrp, PIDTYPE_PGID);
62dfb554 225 if (p == NULL)
04a2e6a5 226 p = pid_task(pgrp, PIDTYPE_PID);
62dfb554 227 if (p != NULL)
04a2e6a5 228 sid = task_session(p);
62dfb554 229
1da177e4
LT
230 return sid;
231}
232
233/*
234 * Determine if a process group is "orphaned", according to the POSIX
235 * definition in 2.2.2.52. Orphaned process groups are not to be affected
236 * by terminal-generated stop signals. Newly orphaned process groups are
237 * to receive a SIGHUP and a SIGCONT.
238 *
239 * "I ask you, have you ever known what it is to be an orphan?"
240 */
0475ac08 241static int will_become_orphaned_pgrp(struct pid *pgrp, struct task_struct *ignored_task)
1da177e4
LT
242{
243 struct task_struct *p;
1da177e4 244
0475ac08 245 do_each_pid_task(pgrp, PIDTYPE_PGID, p) {
05e83df6
ON
246 if ((p == ignored_task) ||
247 (p->exit_state && thread_group_empty(p)) ||
248 is_global_init(p->real_parent))
1da177e4 249 continue;
05e83df6 250
0475ac08 251 if (task_pgrp(p->real_parent) != pgrp &&
05e83df6
ON
252 task_session(p->real_parent) == task_session(p))
253 return 0;
0475ac08 254 } while_each_pid_task(pgrp, PIDTYPE_PGID, p);
05e83df6
ON
255
256 return 1;
1da177e4
LT
257}
258
3e7cd6c4 259int is_current_pgrp_orphaned(void)
1da177e4
LT
260{
261 int retval;
262
263 read_lock(&tasklist_lock);
3e7cd6c4 264 retval = will_become_orphaned_pgrp(task_pgrp(current), NULL);
1da177e4
LT
265 read_unlock(&tasklist_lock);
266
267 return retval;
268}
269
961c4675 270static bool has_stopped_jobs(struct pid *pgrp)
1da177e4 271{
1da177e4
LT
272 struct task_struct *p;
273
0475ac08 274 do_each_pid_task(pgrp, PIDTYPE_PGID, p) {
961c4675
ON
275 if (p->signal->flags & SIGNAL_STOP_STOPPED)
276 return true;
0475ac08 277 } while_each_pid_task(pgrp, PIDTYPE_PGID, p);
961c4675
ON
278
279 return false;
1da177e4
LT
280}
281
f49ee505
ON
282/*
283 * Check to see if any process groups have become orphaned as
284 * a result of our exiting, and if they have any stopped jobs,
285 * send them a SIGHUP and then a SIGCONT. (POSIX 3.2.2.2)
286 */
287static void
288kill_orphaned_pgrp(struct task_struct *tsk, struct task_struct *parent)
289{
290 struct pid *pgrp = task_pgrp(tsk);
291 struct task_struct *ignored_task = tsk;
292
293 if (!parent)
294 /* exit: our father is in a different pgrp than
295 * we are and we were the only connection outside.
296 */
297 parent = tsk->real_parent;
298 else
299 /* reparent: our child is in a different pgrp than
300 * we are, and it was the only connection outside.
301 */
302 ignored_task = NULL;
303
304 if (task_pgrp(parent) != pgrp &&
305 task_session(parent) == task_session(tsk) &&
306 will_become_orphaned_pgrp(pgrp, ignored_task) &&
307 has_stopped_jobs(pgrp)) {
308 __kill_pgrp_info(SIGHUP, SEND_SIG_PRIV, pgrp);
309 __kill_pgrp_info(SIGCONT, SEND_SIG_PRIV, pgrp);
310 }
311}
312
1da177e4 313/**
49d769d5 314 * reparent_to_kthreadd - Reparent the calling kernel thread to kthreadd
1da177e4
LT
315 *
316 * If a kernel thread is launched as a result of a system call, or if
49d769d5
EB
317 * it ever exits, it should generally reparent itself to kthreadd so it
318 * isn't in the way of other processes and is correctly cleaned up on exit.
1da177e4
LT
319 *
320 * The various task state such as scheduling policy and priority may have
321 * been inherited from a user process, so we reset them to sane values here.
322 *
49d769d5 323 * NOTE that reparent_to_kthreadd() gives the caller full capabilities.
1da177e4 324 */
49d769d5 325static void reparent_to_kthreadd(void)
1da177e4
LT
326{
327 write_lock_irq(&tasklist_lock);
328
329 ptrace_unlink(current);
330 /* Reparent to init */
49d769d5 331 current->real_parent = current->parent = kthreadd_task;
f470021a 332 list_move_tail(&current->sibling, &current->real_parent->children);
1da177e4
LT
333
334 /* Set the exit signal to SIGCHLD so we signal init on exit */
335 current->exit_signal = SIGCHLD;
336
e05606d3 337 if (task_nice(current) < 0)
1da177e4
LT
338 set_user_nice(current, 0);
339 /* cpus_allowed? */
340 /* rt_priority? */
341 /* signals? */
1da177e4
LT
342 memcpy(current->signal->rlim, init_task.signal->rlim,
343 sizeof(current->signal->rlim));
d84f4f99
DH
344
345 atomic_inc(&init_cred.usage);
346 commit_creds(&init_cred);
1da177e4 347 write_unlock_irq(&tasklist_lock);
1da177e4
LT
348}
349
8520d7c7 350void __set_special_pids(struct pid *pid)
1da177e4 351{
e19f247a 352 struct task_struct *curr = current->group_leader;
1da177e4 353
0d0df599 354 if (task_session(curr) != pid)
7d8da096 355 change_pid(curr, PIDTYPE_SID, pid);
1b0f7ffd
ON
356
357 if (task_pgrp(curr) != pid)
7d8da096 358 change_pid(curr, PIDTYPE_PGID, pid);
1da177e4
LT
359}
360
8520d7c7 361static void set_special_pids(struct pid *pid)
1da177e4
LT
362{
363 write_lock_irq(&tasklist_lock);
8520d7c7 364 __set_special_pids(pid);
1da177e4
LT
365 write_unlock_irq(&tasklist_lock);
366}
367
368/*
87245135
ON
369 * Let kernel threads use this to say that they allow a certain signal.
370 * Must not be used if kthread was cloned with CLONE_SIGHAND.
1da177e4
LT
371 */
372int allow_signal(int sig)
373{
7ed20e1a 374 if (!valid_signal(sig) || sig < 1)
1da177e4
LT
375 return -EINVAL;
376
377 spin_lock_irq(&current->sighand->siglock);
87245135 378 /* This is only needed for daemonize()'ed kthreads */
1da177e4 379 sigdelset(&current->blocked, sig);
87245135
ON
380 /*
381 * Kernel threads handle their own signals. Let the signal code
382 * know it'll be handled, so that they don't get converted to
383 * SIGKILL or just silently dropped.
384 */
385 current->sighand->action[(sig)-1].sa.sa_handler = (void __user *)2;
1da177e4
LT
386 recalc_sigpending();
387 spin_unlock_irq(&current->sighand->siglock);
388 return 0;
389}
390
391EXPORT_SYMBOL(allow_signal);
392
393int disallow_signal(int sig)
394{
7ed20e1a 395 if (!valid_signal(sig) || sig < 1)
1da177e4
LT
396 return -EINVAL;
397
398 spin_lock_irq(&current->sighand->siglock);
10ab825b 399 current->sighand->action[(sig)-1].sa.sa_handler = SIG_IGN;
1da177e4
LT
400 recalc_sigpending();
401 spin_unlock_irq(&current->sighand->siglock);
402 return 0;
403}
404
405EXPORT_SYMBOL(disallow_signal);
406
407/*
408 * Put all the gunge required to become a kernel thread without
409 * attached user resources in one place where it belongs.
410 */
411
412void daemonize(const char *name, ...)
413{
414 va_list args;
1da177e4
LT
415 sigset_t blocked;
416
417 va_start(args, name);
418 vsnprintf(current->comm, sizeof(current->comm), name, args);
419 va_end(args);
420
421 /*
422 * If we were started as result of loading a module, close all of the
423 * user space pages. We don't need them, and if we didn't close them
424 * they would be locked into memory.
425 */
40af1bbd 426 mm_release(current, current->mm);
1da177e4 427 exit_mm(current);
83144186 428 /*
37f08be1 429 * We don't want to get frozen, in case system-wide hibernation
83144186
RW
430 * or suspend transition begins right now.
431 */
7b34e428 432 current->flags |= (PF_NOFREEZE | PF_KTHREAD);
1da177e4 433
8520d7c7
ON
434 if (current->nsproxy != &init_nsproxy) {
435 get_nsproxy(&init_nsproxy);
436 switch_task_namespaces(current, &init_nsproxy);
437 }
297bd42b 438 set_special_pids(&init_struct_pid);
24ec839c 439 proc_clear_tty(current);
1da177e4
LT
440
441 /* Block and flush all signals */
442 sigfillset(&blocked);
443 sigprocmask(SIG_BLOCK, &blocked, NULL);
444 flush_signals(current);
445
446 /* Become as one with the init task */
447
3e93cd67 448 daemonize_fs_struct();
d4c5e41f 449 exit_files(current);
1da177e4
LT
450 current->files = init_task.files;
451 atomic_inc(&current->files->count);
452
49d769d5 453 reparent_to_kthreadd();
1da177e4
LT
454}
455
456EXPORT_SYMBOL(daemonize);
457
858119e1 458static void close_files(struct files_struct * files)
1da177e4
LT
459{
460 int i, j;
badf1662 461 struct fdtable *fdt;
1da177e4
LT
462
463 j = 0;
4fb3a538
DS
464
465 /*
466 * It is safe to dereference the fd table without RCU or
467 * ->file_lock because this is the last reference to the
d11c563d 468 * files structure. But use RCU to shut RCU-lockdep up.
4fb3a538 469 */
d11c563d 470 rcu_read_lock();
badf1662 471 fdt = files_fdtable(files);
d11c563d 472 rcu_read_unlock();
1da177e4
LT
473 for (;;) {
474 unsigned long set;
475 i = j * __NFDBITS;
bbea9f69 476 if (i >= fdt->max_fds)
1da177e4 477 break;
1fd36adc 478 set = fdt->open_fds[j++];
1da177e4
LT
479 while (set) {
480 if (set & 1) {
badf1662 481 struct file * file = xchg(&fdt->fd[i], NULL);
944be0b2 482 if (file) {
1da177e4 483 filp_close(file, files);
944be0b2
IM
484 cond_resched();
485 }
1da177e4
LT
486 }
487 i++;
488 set >>= 1;
489 }
490 }
491}
492
493struct files_struct *get_files_struct(struct task_struct *task)
494{
495 struct files_struct *files;
496
497 task_lock(task);
498 files = task->files;
499 if (files)
500 atomic_inc(&files->count);
501 task_unlock(task);
502
503 return files;
504}
505
7ad5b3a5 506void put_files_struct(struct files_struct *files)
1da177e4 507{
badf1662
DS
508 struct fdtable *fdt;
509
1da177e4
LT
510 if (atomic_dec_and_test(&files->count)) {
511 close_files(files);
512 /*
513 * Free the fd and fdset arrays if we expanded them.
ab2af1f5
DS
514 * If the fdtable was embedded, pass files for freeing
515 * at the end of the RCU grace period. Otherwise,
516 * you can free files immediately.
1da177e4 517 */
d11c563d 518 rcu_read_lock();
badf1662 519 fdt = files_fdtable(files);
4fd45812 520 if (fdt != &files->fdtab)
ab2af1f5 521 kmem_cache_free(files_cachep, files);
01b2d93c 522 free_fdtable(fdt);
d11c563d 523 rcu_read_unlock();
1da177e4
LT
524 }
525}
526
3b125388 527void reset_files_struct(struct files_struct *files)
3b9b8ab6 528{
3b125388 529 struct task_struct *tsk = current;
3b9b8ab6
KK
530 struct files_struct *old;
531
532 old = tsk->files;
533 task_lock(tsk);
534 tsk->files = files;
535 task_unlock(tsk);
536 put_files_struct(old);
537}
3b9b8ab6 538
1ec7f1dd 539void exit_files(struct task_struct *tsk)
1da177e4
LT
540{
541 struct files_struct * files = tsk->files;
542
543 if (files) {
544 task_lock(tsk);
545 tsk->files = NULL;
546 task_unlock(tsk);
547 put_files_struct(files);
548 }
549}
550
cf475ad2
BS
551#ifdef CONFIG_MM_OWNER
552/*
733eda7a 553 * A task is exiting. If it owned this mm, find a new owner for the mm.
cf475ad2 554 */
cf475ad2
BS
555void mm_update_next_owner(struct mm_struct *mm)
556{
557 struct task_struct *c, *g, *p = current;
558
559retry:
733eda7a
KH
560 /*
561 * If the exiting or execing task is not the owner, it's
562 * someone else's problem.
563 */
564 if (mm->owner != p)
cf475ad2 565 return;
733eda7a
KH
566 /*
567 * The current owner is exiting/execing and there are no other
568 * candidates. Do not leave the mm pointing to a possibly
569 * freed task structure.
570 */
571 if (atomic_read(&mm->mm_users) <= 1) {
572 mm->owner = NULL;
573 return;
574 }
cf475ad2
BS
575
576 read_lock(&tasklist_lock);
577 /*
578 * Search in the children
579 */
580 list_for_each_entry(c, &p->children, sibling) {
581 if (c->mm == mm)
582 goto assign_new_owner;
583 }
584
585 /*
586 * Search in the siblings
587 */
dea33cfd 588 list_for_each_entry(c, &p->real_parent->children, sibling) {
cf475ad2
BS
589 if (c->mm == mm)
590 goto assign_new_owner;
591 }
592
593 /*
594 * Search through everything else. We should not get
595 * here often
596 */
597 do_each_thread(g, c) {
598 if (c->mm == mm)
599 goto assign_new_owner;
600 } while_each_thread(g, c);
601
602 read_unlock(&tasklist_lock);
31a78f23
BS
603 /*
604 * We found no owner yet mm_users > 1: this implies that we are
605 * most likely racing with swapoff (try_to_unuse()) or /proc or
e5991371 606 * ptrace or page migration (get_task_mm()). Mark owner as NULL.
31a78f23 607 */
31a78f23 608 mm->owner = NULL;
cf475ad2
BS
609 return;
610
611assign_new_owner:
612 BUG_ON(c == p);
613 get_task_struct(c);
614 /*
615 * The task_lock protects c->mm from changing.
616 * We always want mm->owner->mm == mm
617 */
618 task_lock(c);
e5991371
HD
619 /*
620 * Delay read_unlock() till we have the task_lock()
621 * to ensure that c does not slip away underneath us
622 */
623 read_unlock(&tasklist_lock);
cf475ad2
BS
624 if (c->mm != mm) {
625 task_unlock(c);
626 put_task_struct(c);
627 goto retry;
628 }
cf475ad2
BS
629 mm->owner = c;
630 task_unlock(c);
631 put_task_struct(c);
632}
633#endif /* CONFIG_MM_OWNER */
634
1da177e4
LT
635/*
636 * Turn us into a lazy TLB process if we
637 * aren't already..
638 */
408b664a 639static void exit_mm(struct task_struct * tsk)
1da177e4
LT
640{
641 struct mm_struct *mm = tsk->mm;
b564daf8 642 struct core_state *core_state;
1da177e4 643
1da177e4
LT
644 if (!mm)
645 return;
646 /*
647 * Serialize with any possible pending coredump.
999d9fc1 648 * We must hold mmap_sem around checking core_state
1da177e4 649 * and clearing tsk->mm. The core-inducing thread
999d9fc1 650 * will increment ->nr_threads for each thread in the
1da177e4
LT
651 * group with ->mm != NULL.
652 */
653 down_read(&mm->mmap_sem);
b564daf8
ON
654 core_state = mm->core_state;
655 if (core_state) {
656 struct core_thread self;
1da177e4 657 up_read(&mm->mmap_sem);
1da177e4 658
b564daf8
ON
659 self.task = tsk;
660 self.next = xchg(&core_state->dumper.next, &self);
661 /*
662 * Implies mb(), the result of xchg() must be visible
663 * to core_state->dumper.
664 */
665 if (atomic_dec_and_test(&core_state->nr_threads))
666 complete(&core_state->startup);
1da177e4 667
a94e2d40
ON
668 for (;;) {
669 set_task_state(tsk, TASK_UNINTERRUPTIBLE);
670 if (!self.task) /* see coredump_finish() */
671 break;
672 schedule();
673 }
674 __set_task_state(tsk, TASK_RUNNING);
1da177e4
LT
675 down_read(&mm->mmap_sem);
676 }
677 atomic_inc(&mm->mm_count);
125e1874 678 BUG_ON(mm != tsk->active_mm);
1da177e4
LT
679 /* more a memory barrier than a real lock */
680 task_lock(tsk);
681 tsk->mm = NULL;
682 up_read(&mm->mmap_sem);
683 enter_lazy_tlb(mm, current);
684 task_unlock(tsk);
cf475ad2 685 mm_update_next_owner(mm);
1da177e4
LT
686 mmput(mm);
687}
688
1da177e4 689/*
ebec18a6
LP
690 * When we die, we re-parent all our children, and try to:
691 * 1. give them to another thread in our thread group, if such a member exists
692 * 2. give it to the first ancestor process which prctl'd itself as a
693 * child_subreaper for its children (like a service manager)
694 * 3. give it to the init process (PID 1) in our pid namespace
1da177e4 695 */
950bbabb 696static struct task_struct *find_new_reaper(struct task_struct *father)
d16e15f5
NK
697 __releases(&tasklist_lock)
698 __acquires(&tasklist_lock)
1da177e4 699{
950bbabb
ON
700 struct pid_namespace *pid_ns = task_active_pid_ns(father);
701 struct task_struct *thread;
1da177e4 702
950bbabb
ON
703 thread = father;
704 while_each_thread(father, thread) {
705 if (thread->flags & PF_EXITING)
706 continue;
707 if (unlikely(pid_ns->child_reaper == father))
708 pid_ns->child_reaper = thread;
709 return thread;
710 }
1da177e4 711
950bbabb
ON
712 if (unlikely(pid_ns->child_reaper == father)) {
713 write_unlock_irq(&tasklist_lock);
397a21f2
DV
714 if (unlikely(pid_ns == &init_pid_ns)) {
715 panic("Attempted to kill init! exitcode=0x%08x\n",
716 father->signal->group_exit_code ?:
717 father->exit_code);
718 }
1da177e4 719
950bbabb
ON
720 zap_pid_ns_processes(pid_ns);
721 write_lock_irq(&tasklist_lock);
1da177e4 722 /*
950bbabb
ON
723 * We can not clear ->child_reaper or leave it alone.
724 * There may by stealth EXIT_DEAD tasks on ->children,
725 * forget_original_parent() must move them somewhere.
1da177e4 726 */
950bbabb 727 pid_ns->child_reaper = init_pid_ns.child_reaper;
ebec18a6
LP
728 } else if (father->signal->has_child_subreaper) {
729 struct task_struct *reaper;
730
731 /*
732 * Find the first ancestor marked as child_subreaper.
733 * Note that the code below checks same_thread_group(reaper,
734 * pid_ns->child_reaper). This is what we need to DTRT in a
735 * PID namespace. However we still need the check above, see
736 * http://marc.info/?l=linux-kernel&m=131385460420380
737 */
738 for (reaper = father->real_parent;
739 reaper != &init_task;
740 reaper = reaper->real_parent) {
741 if (same_thread_group(reaper, pid_ns->child_reaper))
742 break;
743 if (!reaper->signal->is_child_subreaper)
744 continue;
745 thread = reaper;
746 do {
747 if (!(thread->flags & PF_EXITING))
748 return reaper;
749 } while_each_thread(reaper, thread);
750 }
1da177e4 751 }
762a24be 752
950bbabb
ON
753 return pid_ns->child_reaper;
754}
755
5dfc80be
ON
756/*
757* Any that need to be release_task'd are put on the @dead list.
758 */
9cd80bbb 759static void reparent_leader(struct task_struct *father, struct task_struct *p,
5dfc80be
ON
760 struct list_head *dead)
761{
5dfc80be
ON
762 list_move_tail(&p->sibling, &p->real_parent->children);
763
0976a03e 764 if (p->exit_state == EXIT_DEAD)
5dfc80be
ON
765 return;
766 /*
767 * If this is a threaded reparent there is no need to
768 * notify anyone anything has happened.
769 */
770 if (same_thread_group(p->real_parent, father))
771 return;
772
773 /* We don't want people slaying init. */
774 p->exit_signal = SIGCHLD;
775
776 /* If it has exited notify the new parent about this child's death. */
d21142ec 777 if (!p->ptrace &&
5dfc80be 778 p->exit_state == EXIT_ZOMBIE && thread_group_empty(p)) {
86773473 779 if (do_notify_parent(p, p->exit_signal)) {
5dfc80be
ON
780 p->exit_state = EXIT_DEAD;
781 list_move_tail(&p->sibling, dead);
782 }
783 }
784
785 kill_orphaned_pgrp(p, father);
786}
787
762a24be 788static void forget_original_parent(struct task_struct *father)
1da177e4 789{
950bbabb 790 struct task_struct *p, *n, *reaper;
5dfc80be 791 LIST_HEAD(dead_children);
762a24be
ON
792
793 write_lock_irq(&tasklist_lock);
c7e49c14
ON
794 /*
795 * Note that exit_ptrace() and find_new_reaper() might
796 * drop tasklist_lock and reacquire it.
797 */
798 exit_ptrace(father);
950bbabb 799 reaper = find_new_reaper(father);
f470021a 800
03ff1797 801 list_for_each_entry_safe(p, n, &father->children, sibling) {
9cd80bbb
ON
802 struct task_struct *t = p;
803 do {
804 t->real_parent = reaper;
805 if (t->parent == father) {
d21142ec 806 BUG_ON(t->ptrace);
9cd80bbb
ON
807 t->parent = t->real_parent;
808 }
809 if (t->pdeath_signal)
810 group_send_sig_info(t->pdeath_signal,
811 SEND_SIG_NOINFO, t);
812 } while_each_thread(p, t);
813 reparent_leader(father, p, &dead_children);
1da177e4 814 }
762a24be 815 write_unlock_irq(&tasklist_lock);
5dfc80be 816
762a24be 817 BUG_ON(!list_empty(&father->children));
762a24be 818
5dfc80be
ON
819 list_for_each_entry_safe(p, n, &dead_children, sibling) {
820 list_del_init(&p->sibling);
39c626ae
ON
821 release_task(p);
822 }
1da177e4
LT
823}
824
825/*
826 * Send signals to all our closest relatives so that they know
827 * to properly mourn us..
828 */
821c7de7 829static void exit_notify(struct task_struct *tsk, int group_dead)
1da177e4 830{
53c8f9f1 831 bool autoreap;
1da177e4 832
1da177e4
LT
833 /*
834 * This does two things:
835 *
836 * A. Make init inherit all the child processes
837 * B. Check to see if any process groups have become orphaned
838 * as a result of our exiting, and if they have any stopped
839 * jobs, send them a SIGHUP and then a SIGCONT. (POSIX 3.2.2.2)
840 */
762a24be 841 forget_original_parent(tsk);
2e4a7072 842 exit_task_namespaces(tsk);
1da177e4 843
762a24be 844 write_lock_irq(&tasklist_lock);
821c7de7
ON
845 if (group_dead)
846 kill_orphaned_pgrp(tsk->group_leader, NULL);
1da177e4 847
45cdf5cc
ON
848 if (unlikely(tsk->ptrace)) {
849 int sig = thread_group_leader(tsk) &&
850 thread_group_empty(tsk) &&
851 !ptrace_reparented(tsk) ?
852 tsk->exit_signal : SIGCHLD;
853 autoreap = do_notify_parent(tsk, sig);
854 } else if (thread_group_leader(tsk)) {
855 autoreap = thread_group_empty(tsk) &&
856 do_notify_parent(tsk, tsk->exit_signal);
857 } else {
858 autoreap = true;
859 }
1da177e4 860
53c8f9f1 861 tsk->exit_state = autoreap ? EXIT_DEAD : EXIT_ZOMBIE;
1da177e4 862
9c339168
ON
863 /* mt-exec, de_thread() is waiting for group leader */
864 if (unlikely(tsk->signal->notify_count < 0))
6db840fa 865 wake_up_process(tsk->signal->group_exit_task);
1da177e4
LT
866 write_unlock_irq(&tasklist_lock);
867
1da177e4 868 /* If the process is dead, release it - nobody will wait for it */
53c8f9f1 869 if (autoreap)
1da177e4 870 release_task(tsk);
1da177e4
LT
871}
872
e18eecb8
JD
873#ifdef CONFIG_DEBUG_STACK_USAGE
874static void check_stack_usage(void)
875{
876 static DEFINE_SPINLOCK(low_water_lock);
877 static int lowest_to_date = THREAD_SIZE;
e18eecb8
JD
878 unsigned long free;
879
7c9f8861 880 free = stack_not_used(current);
e18eecb8
JD
881
882 if (free >= lowest_to_date)
883 return;
884
885 spin_lock(&low_water_lock);
886 if (free < lowest_to_date) {
168eeccb
TB
887 printk(KERN_WARNING "%s (%d) used greatest stack depth: "
888 "%lu bytes left\n",
889 current->comm, task_pid_nr(current), free);
e18eecb8
JD
890 lowest_to_date = free;
891 }
892 spin_unlock(&low_water_lock);
893}
894#else
895static inline void check_stack_usage(void) {}
896#endif
897
9402c95f 898void do_exit(long code)
1da177e4
LT
899{
900 struct task_struct *tsk = current;
901 int group_dead;
902
903 profile_task_exit(tsk);
904
73c10101 905 WARN_ON(blk_needs_flush_plug(tsk));
22e2c507 906
1da177e4
LT
907 if (unlikely(in_interrupt()))
908 panic("Aiee, killing interrupt handler!");
909 if (unlikely(!tsk->pid))
910 panic("Attempted to kill the idle task!");
1da177e4 911
33dd94ae
NE
912 /*
913 * If do_exit is called because this processes oopsed, it's possible
914 * that get_fs() was left as KERNEL_DS, so reset it to USER_DS before
915 * continuing. Amongst other possible reasons, this is to prevent
916 * mm_release()->clear_child_tid() from writing to a user-controlled
917 * kernel address.
918 */
919 set_fs(USER_DS);
920
a288eecc 921 ptrace_event(PTRACE_EVENT_EXIT, code);
1da177e4 922
e0e81739
DH
923 validate_creds_for_do_exit(tsk);
924
df164db5
AN
925 /*
926 * We're taking recursive faults here in do_exit. Safest is to just
927 * leave this task alone and wait for reboot.
928 */
929 if (unlikely(tsk->flags & PF_EXITING)) {
930 printk(KERN_ALERT
931 "Fixing recursive fault but reboot is needed!\n");
778e9a9c
AK
932 /*
933 * We can do this unlocked here. The futex code uses
934 * this flag just to verify whether the pi state
935 * cleanup has been done or not. In the worst case it
936 * loops once more. We pretend that the cleanup was
937 * done as there is no way to return. Either the
938 * OWNER_DIED bit is set by now or we push the blocked
939 * task into the wait for ever nirwana as well.
940 */
941 tsk->flags |= PF_EXITPIDONE;
df164db5
AN
942 set_current_state(TASK_UNINTERRUPTIBLE);
943 schedule();
944 }
945
d12619b5 946 exit_signals(tsk); /* sets PF_EXITING */
778e9a9c
AK
947 /*
948 * tsk->flags are checked in the futex code to protect against
e73f8959
ON
949 * an exiting task cleaning up the robust pi futexes, and in
950 * task_work_add() to avoid the race with exit_task_work().
778e9a9c 951 */
d2ee7198 952 smp_mb();
1d615482 953 raw_spin_unlock_wait(&tsk->pi_lock);
1da177e4 954
e73f8959 955 exit_task_work(tsk);
5234ffb9 956
1da177e4
LT
957 if (unlikely(in_atomic()))
958 printk(KERN_INFO "note: %s[%d] exited with preempt_count %d\n",
ba25f9dc 959 current->comm, task_pid_nr(current),
1da177e4
LT
960 preempt_count());
961
962 acct_update_integrals(tsk);
40af1bbd
KK
963
964 /* Set exit_code before complete_vfork_done() in mm_release() */
965 tsk->exit_code = code;
966
967 /* Release mm and sync mm's RSS info before statistics gathering */
968 mm_release(tsk, tsk->mm);
969
1da177e4 970 group_dead = atomic_dec_and_test(&tsk->signal->live);
c3068951 971 if (group_dead) {
778e9a9c 972 hrtimer_cancel(&tsk->signal->real_timer);
25f407f0 973 exit_itimers(tsk->signal);
1f10206c
JP
974 if (tsk->mm)
975 setmax_mm_hiwater_rss(&tsk->signal->maxrss, tsk->mm);
c3068951 976 }
f6ec29a4 977 acct_collect(code, group_dead);
522ed776
MT
978 if (group_dead)
979 tty_audit_exit();
a4ff8dba 980 audit_free(tsk);
115085ea
ON
981
982 taskstats_exit(tsk, group_dead);
c757249a 983
1da177e4
LT
984 exit_mm(tsk);
985
0e464814 986 if (group_dead)
f6ec29a4 987 acct_process();
0a16b607
MD
988 trace_sched_process_exit(tsk);
989
1da177e4 990 exit_sem(tsk);
b34a6b1d 991 exit_shm(tsk);
1ec7f1dd
AV
992 exit_files(tsk);
993 exit_fs(tsk);
e18eecb8 994 check_stack_usage();
1da177e4 995 exit_thread();
0b3fcf17
SE
996
997 /*
998 * Flush inherited counters to the parent - before the parent
999 * gets woken up by child-exit notifications.
1000 *
1001 * because of cgroup mode, must be called before cgroup_exit()
1002 */
1003 perf_event_exit_task(tsk);
1004
b4f48b63 1005 cgroup_exit(tsk, 1);
1da177e4 1006
5ec93d11 1007 if (group_dead)
1da177e4
LT
1008 disassociate_ctty(1);
1009
a1261f54 1010 module_put(task_thread_info(tsk)->exec_domain->module);
1da177e4 1011
9f46080c 1012 proc_exit_connector(tsk);
33b2fb30 1013
24f1e32c
FW
1014 /*
1015 * FIXME: do that only when needed, using sched_exit tracepoint
1016 */
bf26c018 1017 ptrace_put_breakpoints(tsk);
33b2fb30 1018
821c7de7 1019 exit_notify(tsk, group_dead);
1da177e4 1020#ifdef CONFIG_NUMA
c0ff7453 1021 task_lock(tsk);
f0be3d32 1022 mpol_put(tsk->mempolicy);
1da177e4 1023 tsk->mempolicy = NULL;
c0ff7453 1024 task_unlock(tsk);
1da177e4 1025#endif
42b2dd0a 1026#ifdef CONFIG_FUTEX
c87e2837
IM
1027 if (unlikely(current->pi_state_cache))
1028 kfree(current->pi_state_cache);
42b2dd0a 1029#endif
de5097c2 1030 /*
9a11b49a 1031 * Make sure we are holding no locks:
de5097c2 1032 */
9a11b49a 1033 debug_check_no_locks_held(tsk);
778e9a9c
AK
1034 /*
1035 * We can do this unlocked here. The futex code uses this flag
1036 * just to verify whether the pi state cleanup has been done
1037 * or not. In the worst case it loops once more.
1038 */
1039 tsk->flags |= PF_EXITPIDONE;
1da177e4 1040
afc847b7 1041 if (tsk->io_context)
b69f2292 1042 exit_io_context(tsk);
afc847b7 1043
b92ce558
JA
1044 if (tsk->splice_pipe)
1045 __free_pipe_info(tsk->splice_pipe);
1046
e0e81739
DH
1047 validate_creds_for_do_exit(tsk);
1048
7407251a 1049 preempt_disable();
54848d73
WF
1050 if (tsk->nr_dirtied)
1051 __this_cpu_add(dirty_throttle_leaks, tsk->nr_dirtied);
f41d911f 1052 exit_rcu();
b5740f4b
YG
1053
1054 /*
1055 * The setting of TASK_RUNNING by try_to_wake_up() may be delayed
1056 * when the following two conditions become true.
1057 * - There is race condition of mmap_sem (It is acquired by
1058 * exit_mm()), and
1059 * - SMI occurs before setting TASK_RUNINNG.
1060 * (or hypervisor of virtual machine switches to other guest)
1061 * As a result, we may become TASK_RUNNING after becoming TASK_DEAD
1062 *
1063 * To avoid it, we have to wait for releasing tsk->pi_lock which
1064 * is held by try_to_wake_up()
1065 */
1066 smp_mb();
1067 raw_spin_unlock_wait(&tsk->pi_lock);
1068
55a101f8 1069 /* causes final put_task_struct in finish_task_switch(). */
c394cc9f 1070 tsk->state = TASK_DEAD;
a585042f 1071 tsk->flags |= PF_NOFREEZE; /* tell freezer to ignore us */
1da177e4
LT
1072 schedule();
1073 BUG();
1074 /* Avoid "noreturn function does return". */
54306cf0
AC
1075 for (;;)
1076 cpu_relax(); /* For when BUG is null */
1da177e4
LT
1077}
1078
012914da
RA
1079EXPORT_SYMBOL_GPL(do_exit);
1080
9402c95f 1081void complete_and_exit(struct completion *comp, long code)
1da177e4
LT
1082{
1083 if (comp)
1084 complete(comp);
55a101f8 1085
1da177e4
LT
1086 do_exit(code);
1087}
1088
1089EXPORT_SYMBOL(complete_and_exit);
1090
754fe8d2 1091SYSCALL_DEFINE1(exit, int, error_code)
1da177e4
LT
1092{
1093 do_exit((error_code&0xff)<<8);
1094}
1095
1da177e4
LT
1096/*
1097 * Take down every thread in the group. This is called by fatal signals
1098 * as well as by sys_exit_group (below).
1099 */
9402c95f 1100void
1da177e4
LT
1101do_group_exit(int exit_code)
1102{
bfc4b089
ON
1103 struct signal_struct *sig = current->signal;
1104
1da177e4
LT
1105 BUG_ON(exit_code & 0x80); /* core dumps don't get here */
1106
bfc4b089
ON
1107 if (signal_group_exit(sig))
1108 exit_code = sig->group_exit_code;
1da177e4 1109 else if (!thread_group_empty(current)) {
1da177e4 1110 struct sighand_struct *const sighand = current->sighand;
1da177e4 1111 spin_lock_irq(&sighand->siglock);
ed5d2cac 1112 if (signal_group_exit(sig))
1da177e4
LT
1113 /* Another thread got here before we took the lock. */
1114 exit_code = sig->group_exit_code;
1115 else {
1da177e4 1116 sig->group_exit_code = exit_code;
ed5d2cac 1117 sig->flags = SIGNAL_GROUP_EXIT;
1da177e4
LT
1118 zap_other_threads(current);
1119 }
1120 spin_unlock_irq(&sighand->siglock);
1da177e4
LT
1121 }
1122
1123 do_exit(exit_code);
1124 /* NOTREACHED */
1125}
1126
1127/*
1128 * this kills every thread in the thread group. Note that any externally
1129 * wait4()-ing process will get the correct exit code - even if this
1130 * thread is not the thread group leader.
1131 */
754fe8d2 1132SYSCALL_DEFINE1(exit_group, int, error_code)
1da177e4
LT
1133{
1134 do_group_exit((error_code & 0xff) << 8);
2ed7c03e
HC
1135 /* NOTREACHED */
1136 return 0;
1da177e4
LT
1137}
1138
9e8ae01d
ON
1139struct wait_opts {
1140 enum pid_type wo_type;
9e8ae01d 1141 int wo_flags;
e1eb1ebc 1142 struct pid *wo_pid;
9e8ae01d
ON
1143
1144 struct siginfo __user *wo_info;
1145 int __user *wo_stat;
1146 struct rusage __user *wo_rusage;
1147
0b7570e7 1148 wait_queue_t child_wait;
9e8ae01d
ON
1149 int notask_error;
1150};
1151
989264f4
ON
1152static inline
1153struct pid *task_pid_type(struct task_struct *task, enum pid_type type)
161550d7 1154{
989264f4
ON
1155 if (type != PIDTYPE_PID)
1156 task = task->group_leader;
1157 return task->pids[type].pid;
161550d7
EB
1158}
1159
989264f4 1160static int eligible_pid(struct wait_opts *wo, struct task_struct *p)
1da177e4 1161{
5c01ba49
ON
1162 return wo->wo_type == PIDTYPE_MAX ||
1163 task_pid_type(p, wo->wo_type) == wo->wo_pid;
1164}
1da177e4 1165
5c01ba49
ON
1166static int eligible_child(struct wait_opts *wo, struct task_struct *p)
1167{
1168 if (!eligible_pid(wo, p))
1169 return 0;
1da177e4
LT
1170 /* Wait for all children (clone and not) if __WALL is set;
1171 * otherwise, wait for clone children *only* if __WCLONE is
1172 * set; otherwise, wait for non-clone children *only*. (Note:
1173 * A "clone" child here is one that reports to its parent
1174 * using a signal other than SIGCHLD.) */
9e8ae01d
ON
1175 if (((p->exit_signal != SIGCHLD) ^ !!(wo->wo_flags & __WCLONE))
1176 && !(wo->wo_flags & __WALL))
1da177e4 1177 return 0;
1da177e4 1178
14dd0b81 1179 return 1;
1da177e4
LT
1180}
1181
9e8ae01d
ON
1182static int wait_noreap_copyout(struct wait_opts *wo, struct task_struct *p,
1183 pid_t pid, uid_t uid, int why, int status)
1da177e4 1184{
9e8ae01d
ON
1185 struct siginfo __user *infop;
1186 int retval = wo->wo_rusage
1187 ? getrusage(p, RUSAGE_BOTH, wo->wo_rusage) : 0;
36c8b586 1188
1da177e4 1189 put_task_struct(p);
9e8ae01d 1190 infop = wo->wo_info;
b6fe2d11
VM
1191 if (infop) {
1192 if (!retval)
1193 retval = put_user(SIGCHLD, &infop->si_signo);
1194 if (!retval)
1195 retval = put_user(0, &infop->si_errno);
1196 if (!retval)
1197 retval = put_user((short)why, &infop->si_code);
1198 if (!retval)
1199 retval = put_user(pid, &infop->si_pid);
1200 if (!retval)
1201 retval = put_user(uid, &infop->si_uid);
1202 if (!retval)
1203 retval = put_user(status, &infop->si_status);
1204 }
1da177e4
LT
1205 if (!retval)
1206 retval = pid;
1207 return retval;
1208}
1209
1210/*
1211 * Handle sys_wait4 work for one task in state EXIT_ZOMBIE. We hold
1212 * read_lock(&tasklist_lock) on entry. If we return zero, we still hold
1213 * the lock and this task is uninteresting. If we return nonzero, we have
1214 * released the lock and the system call should return.
1215 */
9e8ae01d 1216static int wait_task_zombie(struct wait_opts *wo, struct task_struct *p)
1da177e4
LT
1217{
1218 unsigned long state;
2f4e6e2a 1219 int retval, status, traced;
6c5f3e7b 1220 pid_t pid = task_pid_vnr(p);
43e13cc1 1221 uid_t uid = from_kuid_munged(current_user_ns(), task_uid(p));
9e8ae01d 1222 struct siginfo __user *infop;
1da177e4 1223
9e8ae01d 1224 if (!likely(wo->wo_flags & WEXITED))
98abed02
RM
1225 return 0;
1226
9e8ae01d 1227 if (unlikely(wo->wo_flags & WNOWAIT)) {
1da177e4 1228 int exit_code = p->exit_code;
f3abd4f9 1229 int why;
1da177e4 1230
1da177e4
LT
1231 get_task_struct(p);
1232 read_unlock(&tasklist_lock);
1233 if ((exit_code & 0x7f) == 0) {
1234 why = CLD_EXITED;
1235 status = exit_code >> 8;
1236 } else {
1237 why = (exit_code & 0x80) ? CLD_DUMPED : CLD_KILLED;
1238 status = exit_code & 0x7f;
1239 }
9e8ae01d 1240 return wait_noreap_copyout(wo, p, pid, uid, why, status);
1da177e4
LT
1241 }
1242
1243 /*
1244 * Try to move the task's state to DEAD
1245 * only one thread is allowed to do this:
1246 */
1247 state = xchg(&p->exit_state, EXIT_DEAD);
1248 if (state != EXIT_ZOMBIE) {
1249 BUG_ON(state != EXIT_DEAD);
1250 return 0;
1251 }
1da177e4 1252
53b6f9fb 1253 traced = ptrace_reparented(p);
befca967
ON
1254 /*
1255 * It can be ptraced but not reparented, check
e550f14d 1256 * thread_group_leader() to filter out sub-threads.
befca967 1257 */
e550f14d 1258 if (likely(!traced) && thread_group_leader(p)) {
3795e161
JJ
1259 struct signal_struct *psig;
1260 struct signal_struct *sig;
1f10206c 1261 unsigned long maxrss;
0cf55e1e 1262 cputime_t tgutime, tgstime;
3795e161 1263
1da177e4
LT
1264 /*
1265 * The resource counters for the group leader are in its
1266 * own task_struct. Those for dead threads in the group
1267 * are in its signal_struct, as are those for the child
1268 * processes it has previously reaped. All these
1269 * accumulate in the parent's signal_struct c* fields.
1270 *
1271 * We don't bother to take a lock here to protect these
1272 * p->signal fields, because they are only touched by
1273 * __exit_signal, which runs with tasklist_lock
1274 * write-locked anyway, and so is excluded here. We do
d1e98f42 1275 * need to protect the access to parent->signal fields,
1da177e4
LT
1276 * as other threads in the parent group can be right
1277 * here reaping other children at the same time.
0cf55e1e
HS
1278 *
1279 * We use thread_group_times() to get times for the thread
1280 * group, which consolidates times for all threads in the
1281 * group including the group leader.
1da177e4 1282 */
0cf55e1e 1283 thread_group_times(p, &tgutime, &tgstime);
d1e98f42
ON
1284 spin_lock_irq(&p->real_parent->sighand->siglock);
1285 psig = p->real_parent->signal;
3795e161 1286 sig = p->signal;
64861634
MS
1287 psig->cutime += tgutime + sig->cutime;
1288 psig->cstime += tgstime + sig->cstime;
1289 psig->cgtime += p->gtime + sig->gtime + sig->cgtime;
3795e161
JJ
1290 psig->cmin_flt +=
1291 p->min_flt + sig->min_flt + sig->cmin_flt;
1292 psig->cmaj_flt +=
1293 p->maj_flt + sig->maj_flt + sig->cmaj_flt;
1294 psig->cnvcsw +=
1295 p->nvcsw + sig->nvcsw + sig->cnvcsw;
1296 psig->cnivcsw +=
1297 p->nivcsw + sig->nivcsw + sig->cnivcsw;
6eaeeaba
ED
1298 psig->cinblock +=
1299 task_io_get_inblock(p) +
1300 sig->inblock + sig->cinblock;
1301 psig->coublock +=
1302 task_io_get_oublock(p) +
1303 sig->oublock + sig->coublock;
1f10206c
JP
1304 maxrss = max(sig->maxrss, sig->cmaxrss);
1305 if (psig->cmaxrss < maxrss)
1306 psig->cmaxrss = maxrss;
5995477a
AR
1307 task_io_accounting_add(&psig->ioac, &p->ioac);
1308 task_io_accounting_add(&psig->ioac, &sig->ioac);
d1e98f42 1309 spin_unlock_irq(&p->real_parent->sighand->siglock);
1da177e4
LT
1310 }
1311
1312 /*
1313 * Now we are sure this task is interesting, and no other
1314 * thread can reap it because we set its state to EXIT_DEAD.
1315 */
1316 read_unlock(&tasklist_lock);
1317
9e8ae01d
ON
1318 retval = wo->wo_rusage
1319 ? getrusage(p, RUSAGE_BOTH, wo->wo_rusage) : 0;
1da177e4
LT
1320 status = (p->signal->flags & SIGNAL_GROUP_EXIT)
1321 ? p->signal->group_exit_code : p->exit_code;
9e8ae01d
ON
1322 if (!retval && wo->wo_stat)
1323 retval = put_user(status, wo->wo_stat);
1324
1325 infop = wo->wo_info;
1da177e4
LT
1326 if (!retval && infop)
1327 retval = put_user(SIGCHLD, &infop->si_signo);
1328 if (!retval && infop)
1329 retval = put_user(0, &infop->si_errno);
1330 if (!retval && infop) {
1331 int why;
1332
1333 if ((status & 0x7f) == 0) {
1334 why = CLD_EXITED;
1335 status >>= 8;
1336 } else {
1337 why = (status & 0x80) ? CLD_DUMPED : CLD_KILLED;
1338 status &= 0x7f;
1339 }
1340 retval = put_user((short)why, &infop->si_code);
1341 if (!retval)
1342 retval = put_user(status, &infop->si_status);
1343 }
1344 if (!retval && infop)
3a515e4a 1345 retval = put_user(pid, &infop->si_pid);
1da177e4 1346 if (!retval && infop)
c69e8d9c 1347 retval = put_user(uid, &infop->si_uid);
2f4e6e2a 1348 if (!retval)
3a515e4a 1349 retval = pid;
2f4e6e2a
ON
1350
1351 if (traced) {
1da177e4 1352 write_lock_irq(&tasklist_lock);
2f4e6e2a
ON
1353 /* We dropped tasklist, ptracer could die and untrace */
1354 ptrace_unlink(p);
1355 /*
86773473
ON
1356 * If this is not a sub-thread, notify the parent.
1357 * If parent wants a zombie, don't release it now.
2f4e6e2a 1358 */
86773473
ON
1359 if (thread_group_leader(p) &&
1360 !do_notify_parent(p, p->exit_signal)) {
1361 p->exit_state = EXIT_ZOMBIE;
1362 p = NULL;
1da177e4
LT
1363 }
1364 write_unlock_irq(&tasklist_lock);
1365 }
1366 if (p != NULL)
1367 release_task(p);
2f4e6e2a 1368
1da177e4
LT
1369 return retval;
1370}
1371
90bc8d8b
ON
1372static int *task_stopped_code(struct task_struct *p, bool ptrace)
1373{
1374 if (ptrace) {
544b2c91
TH
1375 if (task_is_stopped_or_traced(p) &&
1376 !(p->jobctl & JOBCTL_LISTENING))
90bc8d8b
ON
1377 return &p->exit_code;
1378 } else {
1379 if (p->signal->flags & SIGNAL_STOP_STOPPED)
1380 return &p->signal->group_exit_code;
1381 }
1382 return NULL;
1383}
1384
19e27463
TH
1385/**
1386 * wait_task_stopped - Wait for %TASK_STOPPED or %TASK_TRACED
1387 * @wo: wait options
1388 * @ptrace: is the wait for ptrace
1389 * @p: task to wait for
1390 *
1391 * Handle sys_wait4() work for %p in state %TASK_STOPPED or %TASK_TRACED.
1392 *
1393 * CONTEXT:
1394 * read_lock(&tasklist_lock), which is released if return value is
1395 * non-zero. Also, grabs and releases @p->sighand->siglock.
1396 *
1397 * RETURNS:
1398 * 0 if wait condition didn't exist and search for other wait conditions
1399 * should continue. Non-zero return, -errno on failure and @p's pid on
1400 * success, implies that tasklist_lock is released and wait condition
1401 * search should terminate.
1da177e4 1402 */
9e8ae01d
ON
1403static int wait_task_stopped(struct wait_opts *wo,
1404 int ptrace, struct task_struct *p)
1da177e4 1405{
9e8ae01d 1406 struct siginfo __user *infop;
90bc8d8b 1407 int retval, exit_code, *p_code, why;
ee7c82da 1408 uid_t uid = 0; /* unneeded, required by compiler */
c8950783 1409 pid_t pid;
1da177e4 1410
47918025
ON
1411 /*
1412 * Traditionally we see ptrace'd stopped tasks regardless of options.
1413 */
9e8ae01d 1414 if (!ptrace && !(wo->wo_flags & WUNTRACED))
98abed02
RM
1415 return 0;
1416
19e27463
TH
1417 if (!task_stopped_code(p, ptrace))
1418 return 0;
1419
ee7c82da
ON
1420 exit_code = 0;
1421 spin_lock_irq(&p->sighand->siglock);
1422
90bc8d8b
ON
1423 p_code = task_stopped_code(p, ptrace);
1424 if (unlikely(!p_code))
ee7c82da
ON
1425 goto unlock_sig;
1426
90bc8d8b 1427 exit_code = *p_code;
ee7c82da
ON
1428 if (!exit_code)
1429 goto unlock_sig;
1430
9e8ae01d 1431 if (!unlikely(wo->wo_flags & WNOWAIT))
90bc8d8b 1432 *p_code = 0;
ee7c82da 1433
8ca937a6 1434 uid = from_kuid_munged(current_user_ns(), task_uid(p));
ee7c82da
ON
1435unlock_sig:
1436 spin_unlock_irq(&p->sighand->siglock);
1437 if (!exit_code)
1da177e4
LT
1438 return 0;
1439
1440 /*
1441 * Now we are pretty sure this task is interesting.
1442 * Make sure it doesn't get reaped out from under us while we
1443 * give up the lock and then examine it below. We don't want to
1444 * keep holding onto the tasklist_lock while we call getrusage and
1445 * possibly take page faults for user memory.
1446 */
1447 get_task_struct(p);
6c5f3e7b 1448 pid = task_pid_vnr(p);
f470021a 1449 why = ptrace ? CLD_TRAPPED : CLD_STOPPED;
1da177e4
LT
1450 read_unlock(&tasklist_lock);
1451
9e8ae01d
ON
1452 if (unlikely(wo->wo_flags & WNOWAIT))
1453 return wait_noreap_copyout(wo, p, pid, uid, why, exit_code);
1454
1455 retval = wo->wo_rusage
1456 ? getrusage(p, RUSAGE_BOTH, wo->wo_rusage) : 0;
1457 if (!retval && wo->wo_stat)
1458 retval = put_user((exit_code << 8) | 0x7f, wo->wo_stat);
1da177e4 1459
9e8ae01d 1460 infop = wo->wo_info;
1da177e4
LT
1461 if (!retval && infop)
1462 retval = put_user(SIGCHLD, &infop->si_signo);
1463 if (!retval && infop)
1464 retval = put_user(0, &infop->si_errno);
1465 if (!retval && infop)
6efcae46 1466 retval = put_user((short)why, &infop->si_code);
1da177e4
LT
1467 if (!retval && infop)
1468 retval = put_user(exit_code, &infop->si_status);
1469 if (!retval && infop)
c8950783 1470 retval = put_user(pid, &infop->si_pid);
1da177e4 1471 if (!retval && infop)
ee7c82da 1472 retval = put_user(uid, &infop->si_uid);
1da177e4 1473 if (!retval)
c8950783 1474 retval = pid;
1da177e4
LT
1475 put_task_struct(p);
1476
1477 BUG_ON(!retval);
1478 return retval;
1479}
1480
1481/*
1482 * Handle do_wait work for one task in a live, non-stopped state.
1483 * read_lock(&tasklist_lock) on entry. If we return zero, we still hold
1484 * the lock and this task is uninteresting. If we return nonzero, we have
1485 * released the lock and the system call should return.
1486 */
9e8ae01d 1487static int wait_task_continued(struct wait_opts *wo, struct task_struct *p)
1da177e4
LT
1488{
1489 int retval;
1490 pid_t pid;
1491 uid_t uid;
1492
9e8ae01d 1493 if (!unlikely(wo->wo_flags & WCONTINUED))
98abed02
RM
1494 return 0;
1495
1da177e4
LT
1496 if (!(p->signal->flags & SIGNAL_STOP_CONTINUED))
1497 return 0;
1498
1499 spin_lock_irq(&p->sighand->siglock);
1500 /* Re-check with the lock held. */
1501 if (!(p->signal->flags & SIGNAL_STOP_CONTINUED)) {
1502 spin_unlock_irq(&p->sighand->siglock);
1503 return 0;
1504 }
9e8ae01d 1505 if (!unlikely(wo->wo_flags & WNOWAIT))
1da177e4 1506 p->signal->flags &= ~SIGNAL_STOP_CONTINUED;
8ca937a6 1507 uid = from_kuid_munged(current_user_ns(), task_uid(p));
1da177e4
LT
1508 spin_unlock_irq(&p->sighand->siglock);
1509
6c5f3e7b 1510 pid = task_pid_vnr(p);
1da177e4
LT
1511 get_task_struct(p);
1512 read_unlock(&tasklist_lock);
1513
9e8ae01d
ON
1514 if (!wo->wo_info) {
1515 retval = wo->wo_rusage
1516 ? getrusage(p, RUSAGE_BOTH, wo->wo_rusage) : 0;
1da177e4 1517 put_task_struct(p);
9e8ae01d
ON
1518 if (!retval && wo->wo_stat)
1519 retval = put_user(0xffff, wo->wo_stat);
1da177e4 1520 if (!retval)
3a515e4a 1521 retval = pid;
1da177e4 1522 } else {
9e8ae01d
ON
1523 retval = wait_noreap_copyout(wo, p, pid, uid,
1524 CLD_CONTINUED, SIGCONT);
1da177e4
LT
1525 BUG_ON(retval == 0);
1526 }
1527
1528 return retval;
1529}
1530
98abed02
RM
1531/*
1532 * Consider @p for a wait by @parent.
1533 *
9e8ae01d 1534 * -ECHILD should be in ->notask_error before the first call.
98abed02
RM
1535 * Returns nonzero for a final return, when we have unlocked tasklist_lock.
1536 * Returns zero if the search for a child should continue;
9e8ae01d 1537 * then ->notask_error is 0 if @p is an eligible child,
14dd0b81 1538 * or another error from security_task_wait(), or still -ECHILD.
98abed02 1539 */
b6e763f0
ON
1540static int wait_consider_task(struct wait_opts *wo, int ptrace,
1541 struct task_struct *p)
98abed02 1542{
9e8ae01d 1543 int ret = eligible_child(wo, p);
14dd0b81 1544 if (!ret)
98abed02
RM
1545 return ret;
1546
a2322e1d 1547 ret = security_task_wait(p);
14dd0b81
RM
1548 if (unlikely(ret < 0)) {
1549 /*
1550 * If we have not yet seen any eligible child,
1551 * then let this error code replace -ECHILD.
1552 * A permission error will give the user a clue
1553 * to look for security policy problems, rather
1554 * than for mysterious wait bugs.
1555 */
9e8ae01d
ON
1556 if (wo->notask_error)
1557 wo->notask_error = ret;
78a3d9d5 1558 return 0;
14dd0b81
RM
1559 }
1560
823b018e 1561 /* dead body doesn't have much to contribute */
50b8d257
ON
1562 if (unlikely(p->exit_state == EXIT_DEAD)) {
1563 /*
1564 * But do not ignore this task until the tracer does
1565 * wait_task_zombie()->do_notify_parent().
1566 */
1567 if (likely(!ptrace) && unlikely(ptrace_reparented(p)))
1568 wo->notask_error = 0;
823b018e 1569 return 0;
50b8d257 1570 }
823b018e 1571
45cb24a1
TH
1572 /* slay zombie? */
1573 if (p->exit_state == EXIT_ZOMBIE) {
f470021a 1574 /*
45cb24a1
TH
1575 * A zombie ptracee is only visible to its ptracer.
1576 * Notification and reaping will be cascaded to the real
1577 * parent when the ptracer detaches.
f470021a 1578 */
d21142ec 1579 if (likely(!ptrace) && unlikely(p->ptrace)) {
45cb24a1
TH
1580 /* it will become visible, clear notask_error */
1581 wo->notask_error = 0;
1582 return 0;
1583 }
f470021a 1584
9b84cca2
TH
1585 /* we don't reap group leaders with subthreads */
1586 if (!delay_group_leader(p))
1587 return wait_task_zombie(wo, p);
98abed02 1588
f470021a 1589 /*
9b84cca2
TH
1590 * Allow access to stopped/continued state via zombie by
1591 * falling through. Clearing of notask_error is complex.
1592 *
1593 * When !@ptrace:
1594 *
1595 * If WEXITED is set, notask_error should naturally be
1596 * cleared. If not, subset of WSTOPPED|WCONTINUED is set,
1597 * so, if there are live subthreads, there are events to
1598 * wait for. If all subthreads are dead, it's still safe
1599 * to clear - this function will be called again in finite
1600 * amount time once all the subthreads are released and
1601 * will then return without clearing.
1602 *
1603 * When @ptrace:
1604 *
1605 * Stopped state is per-task and thus can't change once the
1606 * target task dies. Only continued and exited can happen.
1607 * Clear notask_error if WCONTINUED | WEXITED.
1608 */
1609 if (likely(!ptrace) || (wo->wo_flags & (WCONTINUED | WEXITED)))
1610 wo->notask_error = 0;
1611 } else {
45cb24a1
TH
1612 /*
1613 * If @p is ptraced by a task in its real parent's group,
1614 * hide group stop/continued state when looking at @p as
1615 * the real parent; otherwise, a single stop can be
1616 * reported twice as group and ptrace stops.
1617 *
1618 * If a ptracer wants to distinguish the two events for its
1619 * own children, it should create a separate process which
1620 * takes the role of real parent.
1621 */
479bf98c 1622 if (likely(!ptrace) && p->ptrace && !ptrace_reparented(p))
45cb24a1
TH
1623 return 0;
1624
9b84cca2
TH
1625 /*
1626 * @p is alive and it's gonna stop, continue or exit, so
1627 * there always is something to wait for.
f470021a 1628 */
9e8ae01d 1629 wo->notask_error = 0;
f470021a
RM
1630 }
1631
98abed02 1632 /*
45cb24a1
TH
1633 * Wait for stopped. Depending on @ptrace, different stopped state
1634 * is used and the two don't interact with each other.
98abed02 1635 */
19e27463
TH
1636 ret = wait_task_stopped(wo, ptrace, p);
1637 if (ret)
1638 return ret;
98abed02
RM
1639
1640 /*
45cb24a1
TH
1641 * Wait for continued. There's only one continued state and the
1642 * ptracer can consume it which can confuse the real parent. Don't
1643 * use WCONTINUED from ptracer. You don't need or want it.
98abed02 1644 */
9e8ae01d 1645 return wait_task_continued(wo, p);
98abed02
RM
1646}
1647
1648/*
1649 * Do the work of do_wait() for one thread in the group, @tsk.
1650 *
9e8ae01d 1651 * -ECHILD should be in ->notask_error before the first call.
98abed02
RM
1652 * Returns nonzero for a final return, when we have unlocked tasklist_lock.
1653 * Returns zero if the search for a child should continue; then
9e8ae01d 1654 * ->notask_error is 0 if there were any eligible children,
14dd0b81 1655 * or another error from security_task_wait(), or still -ECHILD.
98abed02 1656 */
9e8ae01d 1657static int do_wait_thread(struct wait_opts *wo, struct task_struct *tsk)
98abed02
RM
1658{
1659 struct task_struct *p;
1660
1661 list_for_each_entry(p, &tsk->children, sibling) {
9cd80bbb
ON
1662 int ret = wait_consider_task(wo, 0, p);
1663 if (ret)
1664 return ret;
98abed02
RM
1665 }
1666
1667 return 0;
1668}
1669
9e8ae01d 1670static int ptrace_do_wait(struct wait_opts *wo, struct task_struct *tsk)
98abed02
RM
1671{
1672 struct task_struct *p;
1673
f470021a 1674 list_for_each_entry(p, &tsk->ptraced, ptrace_entry) {
b6e763f0 1675 int ret = wait_consider_task(wo, 1, p);
f470021a 1676 if (ret)
98abed02 1677 return ret;
98abed02
RM
1678 }
1679
1680 return 0;
1681}
1682
0b7570e7
ON
1683static int child_wait_callback(wait_queue_t *wait, unsigned mode,
1684 int sync, void *key)
1685{
1686 struct wait_opts *wo = container_of(wait, struct wait_opts,
1687 child_wait);
1688 struct task_struct *p = key;
1689
5c01ba49 1690 if (!eligible_pid(wo, p))
0b7570e7
ON
1691 return 0;
1692
b4fe5182
ON
1693 if ((wo->wo_flags & __WNOTHREAD) && wait->private != p->parent)
1694 return 0;
1695
0b7570e7
ON
1696 return default_wake_function(wait, mode, sync, key);
1697}
1698
a7f0765e
ON
1699void __wake_up_parent(struct task_struct *p, struct task_struct *parent)
1700{
0b7570e7
ON
1701 __wake_up_sync_key(&parent->signal->wait_chldexit,
1702 TASK_INTERRUPTIBLE, 1, p);
a7f0765e
ON
1703}
1704
9e8ae01d 1705static long do_wait(struct wait_opts *wo)
1da177e4 1706{
1da177e4 1707 struct task_struct *tsk;
98abed02 1708 int retval;
1da177e4 1709
9e8ae01d 1710 trace_sched_process_wait(wo->wo_pid);
0a16b607 1711
0b7570e7
ON
1712 init_waitqueue_func_entry(&wo->child_wait, child_wait_callback);
1713 wo->child_wait.private = current;
1714 add_wait_queue(&current->signal->wait_chldexit, &wo->child_wait);
1da177e4 1715repeat:
98abed02
RM
1716 /*
1717 * If there is nothing that can match our critiera just get out.
9e8ae01d
ON
1718 * We will clear ->notask_error to zero if we see any child that
1719 * might later match our criteria, even if we are not able to reap
1720 * it yet.
98abed02 1721 */
64a16caf 1722 wo->notask_error = -ECHILD;
9e8ae01d
ON
1723 if ((wo->wo_type < PIDTYPE_MAX) &&
1724 (!wo->wo_pid || hlist_empty(&wo->wo_pid->tasks[wo->wo_type])))
64a16caf 1725 goto notask;
161550d7 1726
f95d39d1 1727 set_current_state(TASK_INTERRUPTIBLE);
1da177e4
LT
1728 read_lock(&tasklist_lock);
1729 tsk = current;
1730 do {
64a16caf
ON
1731 retval = do_wait_thread(wo, tsk);
1732 if (retval)
1733 goto end;
9e8ae01d 1734
64a16caf
ON
1735 retval = ptrace_do_wait(wo, tsk);
1736 if (retval)
98abed02 1737 goto end;
98abed02 1738
9e8ae01d 1739 if (wo->wo_flags & __WNOTHREAD)
1da177e4 1740 break;
a3f6dfb7 1741 } while_each_thread(current, tsk);
1da177e4 1742 read_unlock(&tasklist_lock);
f2cc3eb1 1743
64a16caf 1744notask:
9e8ae01d
ON
1745 retval = wo->notask_error;
1746 if (!retval && !(wo->wo_flags & WNOHANG)) {
1da177e4 1747 retval = -ERESTARTSYS;
98abed02
RM
1748 if (!signal_pending(current)) {
1749 schedule();
1750 goto repeat;
1751 }
1da177e4 1752 }
1da177e4 1753end:
f95d39d1 1754 __set_current_state(TASK_RUNNING);
0b7570e7 1755 remove_wait_queue(&current->signal->wait_chldexit, &wo->child_wait);
1da177e4
LT
1756 return retval;
1757}
1758
17da2bd9
HC
1759SYSCALL_DEFINE5(waitid, int, which, pid_t, upid, struct siginfo __user *,
1760 infop, int, options, struct rusage __user *, ru)
1da177e4 1761{
9e8ae01d 1762 struct wait_opts wo;
161550d7
EB
1763 struct pid *pid = NULL;
1764 enum pid_type type;
1da177e4
LT
1765 long ret;
1766
1767 if (options & ~(WNOHANG|WNOWAIT|WEXITED|WSTOPPED|WCONTINUED))
1768 return -EINVAL;
1769 if (!(options & (WEXITED|WSTOPPED|WCONTINUED)))
1770 return -EINVAL;
1771
1772 switch (which) {
1773 case P_ALL:
161550d7 1774 type = PIDTYPE_MAX;
1da177e4
LT
1775 break;
1776 case P_PID:
161550d7
EB
1777 type = PIDTYPE_PID;
1778 if (upid <= 0)
1da177e4
LT
1779 return -EINVAL;
1780 break;
1781 case P_PGID:
161550d7
EB
1782 type = PIDTYPE_PGID;
1783 if (upid <= 0)
1da177e4 1784 return -EINVAL;
1da177e4
LT
1785 break;
1786 default:
1787 return -EINVAL;
1788 }
1789
161550d7
EB
1790 if (type < PIDTYPE_MAX)
1791 pid = find_get_pid(upid);
9e8ae01d
ON
1792
1793 wo.wo_type = type;
1794 wo.wo_pid = pid;
1795 wo.wo_flags = options;
1796 wo.wo_info = infop;
1797 wo.wo_stat = NULL;
1798 wo.wo_rusage = ru;
1799 ret = do_wait(&wo);
dfe16dfa
VM
1800
1801 if (ret > 0) {
1802 ret = 0;
1803 } else if (infop) {
1804 /*
1805 * For a WNOHANG return, clear out all the fields
1806 * we would set so the user can easily tell the
1807 * difference.
1808 */
1809 if (!ret)
1810 ret = put_user(0, &infop->si_signo);
1811 if (!ret)
1812 ret = put_user(0, &infop->si_errno);
1813 if (!ret)
1814 ret = put_user(0, &infop->si_code);
1815 if (!ret)
1816 ret = put_user(0, &infop->si_pid);
1817 if (!ret)
1818 ret = put_user(0, &infop->si_uid);
1819 if (!ret)
1820 ret = put_user(0, &infop->si_status);
1821 }
1822
161550d7 1823 put_pid(pid);
1da177e4
LT
1824
1825 /* avoid REGPARM breakage on x86: */
54a01510 1826 asmlinkage_protect(5, ret, which, upid, infop, options, ru);
1da177e4
LT
1827 return ret;
1828}
1829
754fe8d2
HC
1830SYSCALL_DEFINE4(wait4, pid_t, upid, int __user *, stat_addr,
1831 int, options, struct rusage __user *, ru)
1da177e4 1832{
9e8ae01d 1833 struct wait_opts wo;
161550d7
EB
1834 struct pid *pid = NULL;
1835 enum pid_type type;
1da177e4
LT
1836 long ret;
1837
1838 if (options & ~(WNOHANG|WUNTRACED|WCONTINUED|
1839 __WNOTHREAD|__WCLONE|__WALL))
1840 return -EINVAL;
161550d7
EB
1841
1842 if (upid == -1)
1843 type = PIDTYPE_MAX;
1844 else if (upid < 0) {
1845 type = PIDTYPE_PGID;
1846 pid = find_get_pid(-upid);
1847 } else if (upid == 0) {
1848 type = PIDTYPE_PGID;
2ae448ef 1849 pid = get_task_pid(current, PIDTYPE_PGID);
161550d7
EB
1850 } else /* upid > 0 */ {
1851 type = PIDTYPE_PID;
1852 pid = find_get_pid(upid);
1853 }
1854
9e8ae01d
ON
1855 wo.wo_type = type;
1856 wo.wo_pid = pid;
1857 wo.wo_flags = options | WEXITED;
1858 wo.wo_info = NULL;
1859 wo.wo_stat = stat_addr;
1860 wo.wo_rusage = ru;
1861 ret = do_wait(&wo);
161550d7 1862 put_pid(pid);
1da177e4
LT
1863
1864 /* avoid REGPARM breakage on x86: */
54a01510 1865 asmlinkage_protect(4, ret, upid, stat_addr, options, ru);
1da177e4
LT
1866 return ret;
1867}
1868
1869#ifdef __ARCH_WANT_SYS_WAITPID
1870
1871/*
1872 * sys_waitpid() remains for compatibility. waitpid() should be
1873 * implemented by calling sys_wait4() from libc.a.
1874 */
17da2bd9 1875SYSCALL_DEFINE3(waitpid, pid_t, pid, int __user *, stat_addr, int, options)
1da177e4
LT
1876{
1877 return sys_wait4(pid, stat_addr, options, NULL);
1878}
1879
1880#endif