xref: /freebsd/sys/kern/kern_exit.c (revision 7850fa71f55a16f414bb21163d80a03a5ab34522)
1 /*-
2  * Copyright (c) 1982, 1986, 1989, 1991, 1993
3  *	The Regents of the University of California.  All rights reserved.
4  * (c) UNIX System Laboratories, Inc.
5  * All or some portions of this file are derived from material licensed
6  * to the University of California by American Telephone and Telegraph
7  * Co. or Unix System Laboratories, Inc. and are reproduced herein with
8  * the permission of UNIX System Laboratories, Inc.
9  *
10  * Redistribution and use in source and binary forms, with or without
11  * modification, are permitted provided that the following conditions
12  * are met:
13  * 1. Redistributions of source code must retain the above copyright
14  *    notice, this list of conditions and the following disclaimer.
15  * 2. Redistributions in binary form must reproduce the above copyright
16  *    notice, this list of conditions and the following disclaimer in the
17  *    documentation and/or other materials provided with the distribution.
18  * 4. Neither the name of the University nor the names of its contributors
19  *    may be used to endorse or promote products derived from this software
20  *    without specific prior written permission.
21  *
22  * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
23  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
24  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
25  * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
26  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
27  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
28  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
29  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
30  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
31  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
32  * SUCH DAMAGE.
33  *
34  *	@(#)kern_exit.c	8.7 (Berkeley) 2/12/94
35  */
36 
37 #include <sys/cdefs.h>
38 __FBSDID("$FreeBSD$");
39 
40 #include "opt_compat.h"
41 #include "opt_kdtrace.h"
42 #include "opt_ktrace.h"
43 
44 #include <sys/param.h>
45 #include <sys/systm.h>
46 #include <sys/sysproto.h>
47 #include <sys/eventhandler.h>
48 #include <sys/kernel.h>
49 #include <sys/malloc.h>
50 #include <sys/lock.h>
51 #include <sys/mutex.h>
52 #include <sys/proc.h>
53 #include <sys/pioctl.h>
54 #include <sys/jail.h>
55 #include <sys/tty.h>
56 #include <sys/wait.h>
57 #include <sys/vmmeter.h>
58 #include <sys/vnode.h>
59 #include <sys/resourcevar.h>
60 #include <sys/sbuf.h>
61 #include <sys/signalvar.h>
62 #include <sys/sched.h>
63 #include <sys/sx.h>
64 #include <sys/syscallsubr.h>
65 #include <sys/syslog.h>
66 #include <sys/ptrace.h>
67 #include <sys/acct.h>		/* for acct_process() function prototype */
68 #include <sys/filedesc.h>
69 #include <sys/sdt.h>
70 #include <sys/shm.h>
71 #include <sys/sem.h>
72 #include <sys/vimage.h>
73 #ifdef KTRACE
74 #include <sys/ktrace.h>
75 #endif
76 
77 #include <security/audit/audit.h>
78 #include <security/mac/mac_framework.h>
79 
80 #include <vm/vm.h>
81 #include <vm/vm_extern.h>
82 #include <vm/vm_param.h>
83 #include <vm/pmap.h>
84 #include <vm/vm_map.h>
85 #include <vm/vm_page.h>
86 #include <vm/uma.h>
87 
88 #ifdef KDTRACE_HOOKS
89 #include <sys/dtrace_bsd.h>
90 dtrace_execexit_func_t	dtrace_fasttrap_exit;
91 #endif
92 
93 SDT_PROVIDER_DECLARE(proc);
94 SDT_PROBE_DEFINE(proc, kernel, , exit);
95 SDT_PROBE_ARGTYPE(proc, kernel, , exit, 0, "int");
96 
97 /* Required to be non-static for SysVR4 emulator */
98 MALLOC_DEFINE(M_ZOMBIE, "zombie", "zombie proc status");
99 
100 /* Hook for NFS teardown procedure. */
101 void (*nlminfo_release_p)(struct proc *p);
102 
103 /*
104  * exit -- death of process.
105  */
106 void
107 sys_exit(struct thread *td, struct sys_exit_args *uap)
108 {
109 
110 	exit1(td, W_EXITCODE(uap->rval, 0));
111 	/* NOTREACHED */
112 }
113 
114 /*
115  * Exit: deallocate address space and other resources, change proc state to
116  * zombie, and unlink proc from allproc and parent's lists.  Save exit status
117  * and rusage for wait().  Check for child processes and orphan them.
118  */
119 void
120 exit1(struct thread *td, int rv)
121 {
122 	struct proc *p, *nq, *q;
123 	struct vnode *vtmp;
124 	struct vnode *ttyvp = NULL;
125 #ifdef KTRACE
126 	struct vnode *tracevp;
127 	struct ucred *tracecred;
128 #endif
129 	struct plimit *plim;
130 	int locked;
131 
132 	mtx_assert(&Giant, MA_NOTOWNED);
133 
134 	p = td->td_proc;
135 	if (p == initproc) {
136 		printf("init died (signal %d, exit %d)\n",
137 		    WTERMSIG(rv), WEXITSTATUS(rv));
138 		panic("Going nowhere without my init!");
139 	}
140 
141 	/*
142 	 * MUST abort all other threads before proceeding past here.
143 	 */
144 	PROC_LOCK(p);
145 	while (p->p_flag & P_HADTHREADS) {
146 		/*
147 		 * First check if some other thread got here before us..
148 		 * if so, act apropriatly, (exit or suspend);
149 		 */
150 		thread_suspend_check(0);
151 
152 		/*
153 		 * Kill off the other threads. This requires
154 		 * some co-operation from other parts of the kernel
155 		 * so it may not be instantaneous.  With this state set
156 		 * any thread entering the kernel from userspace will
157 		 * thread_exit() in trap().  Any thread attempting to
158 		 * sleep will return immediately with EINTR or EWOULDBLOCK
159 		 * which will hopefully force them to back out to userland
160 		 * freeing resources as they go.  Any thread attempting
161 		 * to return to userland will thread_exit() from userret().
162 		 * thread_exit() will unsuspend us when the last of the
163 		 * other threads exits.
164 		 * If there is already a thread singler after resumption,
165 		 * calling thread_single will fail; in that case, we just
166 		 * re-check all suspension request, the thread should
167 		 * either be suspended there or exit.
168 		 */
169 		if (! thread_single(SINGLE_EXIT))
170 			break;
171 
172 		/*
173 		 * All other activity in this process is now stopped.
174 		 * Threading support has been turned off.
175 		 */
176 	}
177 	KASSERT(p->p_numthreads == 1,
178 	    ("exit1: proc %p exiting with %d threads", p, p->p_numthreads));
179 	/*
180 	 * Wakeup anyone in procfs' PIOCWAIT.  They should have a hold
181 	 * on our vmspace, so we should block below until they have
182 	 * released their reference to us.  Note that if they have
183 	 * requested S_EXIT stops we will block here until they ack
184 	 * via PIOCCONT.
185 	 */
186 	_STOPEVENT(p, S_EXIT, rv);
187 
188 	/*
189 	 * Note that we are exiting and do another wakeup of anyone in
190 	 * PIOCWAIT in case they aren't listening for S_EXIT stops or
191 	 * decided to wait again after we told them we are exiting.
192 	 */
193 	p->p_flag |= P_WEXIT;
194 	wakeup(&p->p_stype);
195 
196 	/*
197 	 * Wait for any processes that have a hold on our vmspace to
198 	 * release their reference.
199 	 */
200 	while (p->p_lock > 0)
201 		msleep(&p->p_lock, &p->p_mtx, PWAIT, "exithold", 0);
202 
203 	PROC_UNLOCK(p);
204 	/* Drain the limit callout while we don't have the proc locked */
205 	callout_drain(&p->p_limco);
206 
207 #ifdef AUDIT
208 	/*
209 	 * The Sun BSM exit token contains two components: an exit status as
210 	 * passed to exit(), and a return value to indicate what sort of exit
211 	 * it was.  The exit status is WEXITSTATUS(rv), but it's not clear
212 	 * what the return value is.
213 	 */
214 	AUDIT_ARG_EXIT(WEXITSTATUS(rv), 0);
215 	AUDIT_SYSCALL_EXIT(0, td);
216 #endif
217 
218 	/* Are we a task leader? */
219 	if (p == p->p_leader) {
220 		mtx_lock(&ppeers_lock);
221 		q = p->p_peers;
222 		while (q != NULL) {
223 			PROC_LOCK(q);
224 			psignal(q, SIGKILL);
225 			PROC_UNLOCK(q);
226 			q = q->p_peers;
227 		}
228 		while (p->p_peers != NULL)
229 			msleep(p, &ppeers_lock, PWAIT, "exit1", 0);
230 		mtx_unlock(&ppeers_lock);
231 	}
232 
233 	/*
234 	 * Check if any loadable modules need anything done at process exit.
235 	 * E.g. SYSV IPC stuff
236 	 * XXX what if one of these generates an error?
237 	 */
238 	EVENTHANDLER_INVOKE(process_exit, p);
239 
240 	/*
241 	 * If parent is waiting for us to exit or exec,
242 	 * P_PPWAIT is set; we will wakeup the parent below.
243 	 */
244 	PROC_LOCK(p);
245 	stopprofclock(p);
246 	p->p_flag &= ~(P_TRACED | P_PPWAIT);
247 
248 	/*
249 	 * Stop the real interval timer.  If the handler is currently
250 	 * executing, prevent it from rearming itself and let it finish.
251 	 */
252 	if (timevalisset(&p->p_realtimer.it_value) &&
253 	    callout_stop(&p->p_itcallout) == 0) {
254 		timevalclear(&p->p_realtimer.it_interval);
255 		msleep(&p->p_itcallout, &p->p_mtx, PWAIT, "ritwait", 0);
256 		KASSERT(!timevalisset(&p->p_realtimer.it_value),
257 		    ("realtime timer is still armed"));
258 	}
259 	PROC_UNLOCK(p);
260 
261 	/*
262 	 * Reset any sigio structures pointing to us as a result of
263 	 * F_SETOWN with our pid.
264 	 */
265 	funsetownlst(&p->p_sigiolst);
266 
267 	/*
268 	 * If this process has an nlminfo data area (for lockd), release it
269 	 */
270 	if (nlminfo_release_p != NULL && p->p_nlminfo != NULL)
271 		(*nlminfo_release_p)(p);
272 
273 	/*
274 	 * Close open files and release open-file table.
275 	 * This may block!
276 	 */
277 	fdfree(td);
278 
279 	/*
280 	 * If this thread tickled GEOM, we need to wait for the giggling to
281 	 * stop before we return to userland
282 	 */
283 	if (td->td_pflags & TDP_GEOM)
284 		g_waitidle();
285 
286 	/*
287 	 * Remove ourself from our leader's peer list and wake our leader.
288 	 */
289 	mtx_lock(&ppeers_lock);
290 	if (p->p_leader->p_peers) {
291 		q = p->p_leader;
292 		while (q->p_peers != p)
293 			q = q->p_peers;
294 		q->p_peers = p->p_peers;
295 		wakeup(p->p_leader);
296 	}
297 	mtx_unlock(&ppeers_lock);
298 
299 	vmspace_exit(td);
300 
301 	sx_xlock(&proctree_lock);
302 	if (SESS_LEADER(p)) {
303 		struct session *sp = p->p_session;
304 		struct tty *tp;
305 
306 		/*
307 		 * s_ttyp is not zero'd; we use this to indicate that
308 		 * the session once had a controlling terminal. (for
309 		 * logging and informational purposes)
310 		 */
311 		SESS_LOCK(sp);
312 		ttyvp = sp->s_ttyvp;
313 		tp = sp->s_ttyp;
314 		sp->s_ttyvp = NULL;
315 		sp->s_leader = NULL;
316 		SESS_UNLOCK(sp);
317 
318 		/*
319 		 * Signal foreground pgrp and revoke access to
320 		 * controlling terminal if it has not been revoked
321 		 * already.
322 		 *
323 		 * Because the TTY may have been revoked in the mean
324 		 * time and could already have a new session associated
325 		 * with it, make sure we don't send a SIGHUP to a
326 		 * foreground process group that does not belong to this
327 		 * session.
328 		 */
329 
330 		if (tp != NULL) {
331 			tty_lock(tp);
332 			if (tp->t_session == sp)
333 				tty_signal_pgrp(tp, SIGHUP);
334 			tty_unlock(tp);
335 		}
336 
337 		if (ttyvp != NULL && ttyvp->v_type != VBAD) {
338 			sx_xunlock(&proctree_lock);
339 			VOP_LOCK(ttyvp, LK_EXCLUSIVE);
340 			VOP_REVOKE(ttyvp, REVOKEALL);
341 			VOP_UNLOCK(ttyvp, 0);
342 			sx_xlock(&proctree_lock);
343 		}
344 	}
345 	fixjobc(p, p->p_pgrp, 0);
346 	sx_xunlock(&proctree_lock);
347 	(void)acct_process(td);
348 
349 	/* Release the TTY now we've unlocked everything. */
350 	if (ttyvp != NULL)
351 		vrele(ttyvp);
352 #ifdef KTRACE
353 	/*
354 	 * Disable tracing, then drain any pending records and release
355 	 * the trace file.
356 	 */
357 	if (p->p_traceflag != 0) {
358 		PROC_LOCK(p);
359 		mtx_lock(&ktrace_mtx);
360 		p->p_traceflag = 0;
361 		mtx_unlock(&ktrace_mtx);
362 		PROC_UNLOCK(p);
363 		ktrprocexit(td);
364 		PROC_LOCK(p);
365 		mtx_lock(&ktrace_mtx);
366 		tracevp = p->p_tracevp;
367 		p->p_tracevp = NULL;
368 		tracecred = p->p_tracecred;
369 		p->p_tracecred = NULL;
370 		mtx_unlock(&ktrace_mtx);
371 		PROC_UNLOCK(p);
372 		if (tracevp != NULL) {
373 			locked = VFS_LOCK_GIANT(tracevp->v_mount);
374 			vrele(tracevp);
375 			VFS_UNLOCK_GIANT(locked);
376 		}
377 		if (tracecred != NULL)
378 			crfree(tracecred);
379 	}
380 #endif
381 	/*
382 	 * Release reference to text vnode
383 	 */
384 	if ((vtmp = p->p_textvp) != NULL) {
385 		p->p_textvp = NULL;
386 		locked = VFS_LOCK_GIANT(vtmp->v_mount);
387 		vrele(vtmp);
388 		VFS_UNLOCK_GIANT(locked);
389 	}
390 
391 	/*
392 	 * Release our limits structure.
393 	 */
394 	PROC_LOCK(p);
395 	plim = p->p_limit;
396 	p->p_limit = NULL;
397 	PROC_UNLOCK(p);
398 	lim_free(plim);
399 
400 	/*
401 	 * Remove proc from allproc queue and pidhash chain.
402 	 * Place onto zombproc.  Unlink from parent's child list.
403 	 */
404 	sx_xlock(&allproc_lock);
405 	LIST_REMOVE(p, p_list);
406 	LIST_INSERT_HEAD(&zombproc, p, p_list);
407 	LIST_REMOVE(p, p_hash);
408 	sx_xunlock(&allproc_lock);
409 
410 	/*
411 	 * Call machine-dependent code to release any
412 	 * machine-dependent resources other than the address space.
413 	 * The address space is released by "vmspace_exitfree(p)" in
414 	 * vm_waitproc().
415 	 */
416 	cpu_exit(td);
417 
418 	WITNESS_WARN(WARN_PANIC, NULL, "process (pid %d) exiting", p->p_pid);
419 
420 	/*
421 	 * Reparent all of our children to init.
422 	 */
423 	sx_xlock(&proctree_lock);
424 	q = LIST_FIRST(&p->p_children);
425 	if (q != NULL)		/* only need this if any child is S_ZOMB */
426 		wakeup(initproc);
427 	for (; q != NULL; q = nq) {
428 		nq = LIST_NEXT(q, p_sibling);
429 		PROC_LOCK(q);
430 		proc_reparent(q, initproc);
431 		q->p_sigparent = SIGCHLD;
432 		/*
433 		 * Traced processes are killed
434 		 * since their existence means someone is screwing up.
435 		 */
436 		if (q->p_flag & P_TRACED) {
437 			struct thread *temp;
438 
439 			q->p_flag &= ~(P_TRACED | P_STOPPED_TRACE);
440 			FOREACH_THREAD_IN_PROC(q, temp)
441 				temp->td_dbgflags &= ~TDB_SUSPEND;
442 			psignal(q, SIGKILL);
443 		}
444 		PROC_UNLOCK(q);
445 	}
446 
447 	/* Save exit status. */
448 	PROC_LOCK(p);
449 	p->p_xstat = rv;
450 	p->p_xthread = td;
451 
452 	/* Tell the prison that we are gone. */
453 	prison_proc_free(p->p_ucred->cr_prison);
454 
455 #ifdef KDTRACE_HOOKS
456 	/*
457 	 * Tell the DTrace fasttrap provider about the exit if it
458 	 * has declared an interest.
459 	 */
460 	if (dtrace_fasttrap_exit)
461 		dtrace_fasttrap_exit(p);
462 #endif
463 
464 	/*
465 	 * Notify interested parties of our demise.
466 	 */
467 	KNOTE_LOCKED(&p->p_klist, NOTE_EXIT);
468 
469 #ifdef KDTRACE_HOOKS
470 	int reason = CLD_EXITED;
471 	if (WCOREDUMP(rv))
472 		reason = CLD_DUMPED;
473 	else if (WIFSIGNALED(rv))
474 		reason = CLD_KILLED;
475 	SDT_PROBE(proc, kernel, , exit, reason, 0, 0, 0, 0);
476 #endif
477 
478 	/*
479 	 * Just delete all entries in the p_klist. At this point we won't
480 	 * report any more events, and there are nasty race conditions that
481 	 * can beat us if we don't.
482 	 */
483 	knlist_clear(&p->p_klist, 1);
484 
485 	/*
486 	 * Notify parent that we're gone.  If parent has the PS_NOCLDWAIT
487 	 * flag set, or if the handler is set to SIG_IGN, notify process
488 	 * 1 instead (and hope it will handle this situation).
489 	 */
490 	PROC_LOCK(p->p_pptr);
491 	mtx_lock(&p->p_pptr->p_sigacts->ps_mtx);
492 	if (p->p_pptr->p_sigacts->ps_flag & (PS_NOCLDWAIT | PS_CLDSIGIGN)) {
493 		struct proc *pp;
494 
495 		mtx_unlock(&p->p_pptr->p_sigacts->ps_mtx);
496 		pp = p->p_pptr;
497 		PROC_UNLOCK(pp);
498 		proc_reparent(p, initproc);
499 		p->p_sigparent = SIGCHLD;
500 		PROC_LOCK(p->p_pptr);
501 
502 		/*
503 		 * Notify parent, so in case he was wait(2)ing or
504 		 * executing waitpid(2) with our pid, he will
505 		 * continue.
506 		 */
507 		wakeup(pp);
508 	} else
509 		mtx_unlock(&p->p_pptr->p_sigacts->ps_mtx);
510 
511 	if (p->p_pptr == initproc)
512 		psignal(p->p_pptr, SIGCHLD);
513 	else if (p->p_sigparent != 0) {
514 		if (p->p_sigparent == SIGCHLD)
515 			childproc_exited(p);
516 		else	/* LINUX thread */
517 			psignal(p->p_pptr, p->p_sigparent);
518 	}
519 	sx_xunlock(&proctree_lock);
520 
521 	/*
522 	 * The state PRS_ZOMBIE prevents other proesses from sending
523 	 * signal to the process, to avoid memory leak, we free memory
524 	 * for signal queue at the time when the state is set.
525 	 */
526 	sigqueue_flush(&p->p_sigqueue);
527 	sigqueue_flush(&td->td_sigqueue);
528 
529 	/*
530 	 * We have to wait until after acquiring all locks before
531 	 * changing p_state.  We need to avoid all possible context
532 	 * switches (including ones from blocking on a mutex) while
533 	 * marked as a zombie.  We also have to set the zombie state
534 	 * before we release the parent process' proc lock to avoid
535 	 * a lost wakeup.  So, we first call wakeup, then we grab the
536 	 * sched lock, update the state, and release the parent process'
537 	 * proc lock.
538 	 */
539 	wakeup(p->p_pptr);
540 	cv_broadcast(&p->p_pwait);
541 	sched_exit(p->p_pptr, td);
542 	PROC_SLOCK(p);
543 	p->p_state = PRS_ZOMBIE;
544 	PROC_UNLOCK(p->p_pptr);
545 
546 	/*
547 	 * Hopefully no one will try to deliver a signal to the process this
548 	 * late in the game.
549 	 */
550 	knlist_destroy(&p->p_klist);
551 
552 	/*
553 	 * Save our children's rusage information in our exit rusage.
554 	 */
555 	ruadd(&p->p_ru, &p->p_rux, &p->p_stats->p_cru, &p->p_crux);
556 
557 	/*
558 	 * Make sure the scheduler takes this thread out of its tables etc.
559 	 * This will also release this thread's reference to the ucred.
560 	 * Other thread parts to release include pcb bits and such.
561 	 */
562 	thread_exit();
563 }
564 
565 
566 #ifndef _SYS_SYSPROTO_H_
567 struct abort2_args {
568 	char *why;
569 	int nargs;
570 	void **args;
571 };
572 #endif
573 
574 int
575 abort2(struct thread *td, struct abort2_args *uap)
576 {
577 	struct proc *p = td->td_proc;
578 	struct sbuf *sb;
579 	void *uargs[16];
580 	int error, i, sig;
581 
582 	/*
583 	 * Do it right now so we can log either proper call of abort2(), or
584 	 * note, that invalid argument was passed. 512 is big enough to
585 	 * handle 16 arguments' descriptions with additional comments.
586 	 */
587 	sb = sbuf_new(NULL, NULL, 512, SBUF_FIXEDLEN);
588 	sbuf_clear(sb);
589 	sbuf_printf(sb, "%s(pid %d uid %d) aborted: ",
590 	    p->p_comm, p->p_pid, td->td_ucred->cr_uid);
591 	/*
592 	 * Since we can't return from abort2(), send SIGKILL in cases, where
593 	 * abort2() was called improperly
594 	 */
595 	sig = SIGKILL;
596 	/* Prevent from DoSes from user-space. */
597 	if (uap->nargs < 0 || uap->nargs > 16)
598 		goto out;
599 	if (uap->nargs > 0) {
600 		if (uap->args == NULL)
601 			goto out;
602 		error = copyin(uap->args, uargs, uap->nargs * sizeof(void *));
603 		if (error != 0)
604 			goto out;
605 	}
606 	/*
607 	 * Limit size of 'reason' string to 128. Will fit even when
608 	 * maximal number of arguments was chosen to be logged.
609 	 */
610 	if (uap->why != NULL) {
611 		error = sbuf_copyin(sb, uap->why, 128);
612 		if (error < 0)
613 			goto out;
614 	} else {
615 		sbuf_printf(sb, "(null)");
616 	}
617 	if (uap->nargs > 0) {
618 		sbuf_printf(sb, "(");
619 		for (i = 0;i < uap->nargs; i++)
620 			sbuf_printf(sb, "%s%p", i == 0 ? "" : ", ", uargs[i]);
621 		sbuf_printf(sb, ")");
622 	}
623 	/*
624 	 * Final stage: arguments were proper, string has been
625 	 * successfully copied from userspace, and copying pointers
626 	 * from user-space succeed.
627 	 */
628 	sig = SIGABRT;
629 out:
630 	if (sig == SIGKILL) {
631 		sbuf_trim(sb);
632 		sbuf_printf(sb, " (Reason text inaccessible)");
633 	}
634 	sbuf_cat(sb, "\n");
635 	sbuf_finish(sb);
636 	log(LOG_INFO, "%s", sbuf_data(sb));
637 	sbuf_delete(sb);
638 	exit1(td, W_EXITCODE(0, sig));
639 	return (0);
640 }
641 
642 
643 #ifdef COMPAT_43
644 /*
645  * The dirty work is handled by kern_wait().
646  */
647 int
648 owait(struct thread *td, struct owait_args *uap __unused)
649 {
650 	int error, status;
651 
652 	error = kern_wait(td, WAIT_ANY, &status, 0, NULL);
653 	if (error == 0)
654 		td->td_retval[1] = status;
655 	return (error);
656 }
657 #endif /* COMPAT_43 */
658 
659 /*
660  * The dirty work is handled by kern_wait().
661  */
662 int
663 wait4(struct thread *td, struct wait_args *uap)
664 {
665 	struct rusage ru, *rup;
666 	int error, status;
667 
668 	if (uap->rusage != NULL)
669 		rup = &ru;
670 	else
671 		rup = NULL;
672 	error = kern_wait(td, uap->pid, &status, uap->options, rup);
673 	if (uap->status != NULL && error == 0)
674 		error = copyout(&status, uap->status, sizeof(status));
675 	if (uap->rusage != NULL && error == 0)
676 		error = copyout(&ru, uap->rusage, sizeof(struct rusage));
677 	return (error);
678 }
679 
680 /*
681  * Reap the remains of a zombie process and optionally return status and
682  * rusage.  Asserts and will release both the proctree_lock and the process
683  * lock as part of its work.
684  */
685 static void
686 proc_reap(struct thread *td, struct proc *p, int *status, int options,
687     struct rusage *rusage)
688 {
689 	INIT_VPROCG(P_TO_VPROCG(p));
690 	struct proc *q, *t;
691 
692 	sx_assert(&proctree_lock, SA_XLOCKED);
693 	PROC_LOCK_ASSERT(p, MA_OWNED);
694 	PROC_SLOCK_ASSERT(p, MA_OWNED);
695 	KASSERT(p->p_state == PRS_ZOMBIE, ("proc_reap: !PRS_ZOMBIE"));
696 
697 	q = td->td_proc;
698 	if (rusage) {
699 		*rusage = p->p_ru;
700 		calcru(p, &rusage->ru_utime, &rusage->ru_stime);
701 	}
702 	PROC_SUNLOCK(p);
703 	td->td_retval[0] = p->p_pid;
704 	if (status)
705 		*status = p->p_xstat;	/* convert to int */
706 	if (options & WNOWAIT) {
707 		/*
708 		 *  Only poll, returning the status.  Caller does not wish to
709 		 * release the proc struct just yet.
710 		 */
711 		PROC_UNLOCK(p);
712 		sx_xunlock(&proctree_lock);
713 		return;
714 	}
715 
716 	PROC_LOCK(q);
717 	sigqueue_take(p->p_ksi);
718 	PROC_UNLOCK(q);
719 	PROC_UNLOCK(p);
720 
721 	/*
722 	 * If we got the child via a ptrace 'attach', we need to give it back
723 	 * to the old parent.
724 	 */
725 	if (p->p_oppid && (t = pfind(p->p_oppid)) != NULL) {
726 		PROC_LOCK(p);
727 		p->p_oppid = 0;
728 		proc_reparent(p, t);
729 		PROC_UNLOCK(p);
730 		tdsignal(t, NULL, SIGCHLD, p->p_ksi);
731 		wakeup(t);
732 		cv_broadcast(&p->p_pwait);
733 		PROC_UNLOCK(t);
734 		sx_xunlock(&proctree_lock);
735 		return;
736 	}
737 
738 	/*
739 	 * Remove other references to this process to ensure we have an
740 	 * exclusive reference.
741 	 */
742 	sx_xlock(&allproc_lock);
743 	LIST_REMOVE(p, p_list);	/* off zombproc */
744 	sx_xunlock(&allproc_lock);
745 	LIST_REMOVE(p, p_sibling);
746 	leavepgrp(p);
747 	sx_xunlock(&proctree_lock);
748 
749 	/*
750 	 * As a side effect of this lock, we know that all other writes to
751 	 * this proc are visible now, so no more locking is needed for p.
752 	 */
753 	PROC_LOCK(p);
754 	p->p_xstat = 0;		/* XXX: why? */
755 	PROC_UNLOCK(p);
756 	PROC_LOCK(q);
757 	ruadd(&q->p_stats->p_cru, &q->p_crux, &p->p_ru, &p->p_rux);
758 	PROC_UNLOCK(q);
759 
760 	/*
761 	 * Decrement the count of procs running with this uid.
762 	 */
763 	(void)chgproccnt(p->p_ucred->cr_ruidinfo, -1, 0);
764 
765 	/*
766 	 * Free credentials, arguments, and sigacts.
767 	 */
768 	crfree(p->p_ucred);
769 	p->p_ucred = NULL;
770 	pargs_drop(p->p_args);
771 	p->p_args = NULL;
772 	sigacts_free(p->p_sigacts);
773 	p->p_sigacts = NULL;
774 
775 	/*
776 	 * Do any thread-system specific cleanups.
777 	 */
778 	thread_wait(p);
779 
780 	/*
781 	 * Give vm and machine-dependent layer a chance to free anything that
782 	 * cpu_exit couldn't release while still running in process context.
783 	 */
784 	vm_waitproc(p);
785 #ifdef MAC
786 	mac_proc_destroy(p);
787 #endif
788 	KASSERT(FIRST_THREAD_IN_PROC(p),
789 	    ("proc_reap: no residual thread!"));
790 	uma_zfree(proc_zone, p);
791 	sx_xlock(&allproc_lock);
792 	nprocs--;
793 #ifdef VIMAGE
794 	vprocg->nprocs--;
795 #endif
796 	sx_xunlock(&allproc_lock);
797 }
798 
799 int
800 kern_wait(struct thread *td, pid_t pid, int *status, int options,
801     struct rusage *rusage)
802 {
803 	struct proc *p, *q;
804 	int error, nfound;
805 
806 	AUDIT_ARG_PID(pid);
807 
808 	q = td->td_proc;
809 	if (pid == 0) {
810 		PROC_LOCK(q);
811 		pid = -q->p_pgid;
812 		PROC_UNLOCK(q);
813 	}
814 	if (options &~ (WUNTRACED|WNOHANG|WCONTINUED|WNOWAIT|WLINUXCLONE))
815 		return (EINVAL);
816 loop:
817 	if (q->p_flag & P_STATCHILD) {
818 		PROC_LOCK(q);
819 		q->p_flag &= ~P_STATCHILD;
820 		PROC_UNLOCK(q);
821 	}
822 	nfound = 0;
823 	sx_xlock(&proctree_lock);
824 	LIST_FOREACH(p, &q->p_children, p_sibling) {
825 		PROC_LOCK(p);
826 		if (pid != WAIT_ANY &&
827 		    p->p_pid != pid && p->p_pgid != -pid) {
828 			PROC_UNLOCK(p);
829 			continue;
830 		}
831 		if (p_canwait(td, p)) {
832 			PROC_UNLOCK(p);
833 			continue;
834 		}
835 
836 		/*
837 		 * This special case handles a kthread spawned by linux_clone
838 		 * (see linux_misc.c).  The linux_wait4 and linux_waitpid
839 		 * functions need to be able to distinguish between waiting
840 		 * on a process and waiting on a thread.  It is a thread if
841 		 * p_sigparent is not SIGCHLD, and the WLINUXCLONE option
842 		 * signifies we want to wait for threads and not processes.
843 		 */
844 		if ((p->p_sigparent != SIGCHLD) ^
845 		    ((options & WLINUXCLONE) != 0)) {
846 			PROC_UNLOCK(p);
847 			continue;
848 		}
849 
850 		nfound++;
851 		PROC_SLOCK(p);
852 		if (p->p_state == PRS_ZOMBIE) {
853 			proc_reap(td, p, status, options, rusage);
854 			return (0);
855 		}
856 		if ((p->p_flag & P_STOPPED_SIG) &&
857 		    (p->p_suspcount == p->p_numthreads) &&
858 		    (p->p_flag & P_WAITED) == 0 &&
859 		    (p->p_flag & P_TRACED || options & WUNTRACED)) {
860 			PROC_SUNLOCK(p);
861 			p->p_flag |= P_WAITED;
862 			sx_xunlock(&proctree_lock);
863 			td->td_retval[0] = p->p_pid;
864 			if (status)
865 				*status = W_STOPCODE(p->p_xstat);
866 
867 			PROC_LOCK(q);
868 			sigqueue_take(p->p_ksi);
869 			PROC_UNLOCK(q);
870 			PROC_UNLOCK(p);
871 
872 			return (0);
873 		}
874 		PROC_SUNLOCK(p);
875 		if (options & WCONTINUED && (p->p_flag & P_CONTINUED)) {
876 			sx_xunlock(&proctree_lock);
877 			td->td_retval[0] = p->p_pid;
878 			p->p_flag &= ~P_CONTINUED;
879 
880 			PROC_LOCK(q);
881 			sigqueue_take(p->p_ksi);
882 			PROC_UNLOCK(q);
883 			PROC_UNLOCK(p);
884 
885 			if (status)
886 				*status = SIGCONT;
887 			return (0);
888 		}
889 		PROC_UNLOCK(p);
890 	}
891 	if (nfound == 0) {
892 		sx_xunlock(&proctree_lock);
893 		return (ECHILD);
894 	}
895 	if (options & WNOHANG) {
896 		sx_xunlock(&proctree_lock);
897 		td->td_retval[0] = 0;
898 		return (0);
899 	}
900 	PROC_LOCK(q);
901 	sx_xunlock(&proctree_lock);
902 	if (q->p_flag & P_STATCHILD) {
903 		q->p_flag &= ~P_STATCHILD;
904 		error = 0;
905 	} else
906 		error = msleep(q, &q->p_mtx, PWAIT | PCATCH, "wait", 0);
907 	PROC_UNLOCK(q);
908 	if (error)
909 		return (error);
910 	goto loop;
911 }
912 
913 /*
914  * Make process 'parent' the new parent of process 'child'.
915  * Must be called with an exclusive hold of proctree lock.
916  */
917 void
918 proc_reparent(struct proc *child, struct proc *parent)
919 {
920 
921 	sx_assert(&proctree_lock, SX_XLOCKED);
922 	PROC_LOCK_ASSERT(child, MA_OWNED);
923 	if (child->p_pptr == parent)
924 		return;
925 
926 	PROC_LOCK(child->p_pptr);
927 	sigqueue_take(child->p_ksi);
928 	PROC_UNLOCK(child->p_pptr);
929 	LIST_REMOVE(child, p_sibling);
930 	LIST_INSERT_HEAD(&parent->p_children, child, p_sibling);
931 	child->p_pptr = parent;
932 }
933