kern_exit.c revision 1.201 1 1.201 ad /* $NetBSD: kern_exit.c,v 1.201 2008/03/23 16:53:45 ad Exp $ */
2 1.56 thorpej
3 1.56 thorpej /*-
4 1.165 ad * Copyright (c) 1998, 1999, 2006, 2007 The NetBSD Foundation, Inc.
5 1.56 thorpej * All rights reserved.
6 1.58 christos *
7 1.56 thorpej * This code is derived from software contributed to The NetBSD Foundation
8 1.56 thorpej * by Jason R. Thorpe of the Numerical Aerospace Simulation Facility,
9 1.165 ad * NASA Ames Research Center, and by Andrew Doran.
10 1.56 thorpej *
11 1.56 thorpej * Redistribution and use in source and binary forms, with or without
12 1.56 thorpej * modification, are permitted provided that the following conditions
13 1.56 thorpej * are met:
14 1.56 thorpej * 1. Redistributions of source code must retain the above copyright
15 1.56 thorpej * notice, this list of conditions and the following disclaimer.
16 1.58 christos * 2. Redistributions in binary form must reproduce the above copyright
17 1.56 thorpej * notice, this list of conditions and the following disclaimer in the
18 1.56 thorpej * documentation and/or other materials provided with the distribution.
19 1.56 thorpej * 3. All advertising materials mentioning features or use of this software
20 1.56 thorpej * must display the following acknowledgement:
21 1.58 christos * This product includes software developed by the NetBSD
22 1.58 christos * Foundation, Inc. and its contributors.
23 1.56 thorpej * 4. Neither the name of The NetBSD Foundation nor the names of its
24 1.56 thorpej * contributors may be used to endorse or promote products derived
25 1.56 thorpej * from this software without specific prior written permission.
26 1.58 christos *
27 1.56 thorpej * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
28 1.56 thorpej * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
29 1.56 thorpej * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
30 1.56 thorpej * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
31 1.56 thorpej * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
32 1.56 thorpej * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
33 1.56 thorpej * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
34 1.56 thorpej * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
35 1.56 thorpej * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
36 1.56 thorpej * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
37 1.56 thorpej * POSSIBILITY OF SUCH DAMAGE.
38 1.56 thorpej */
39 1.24 cgd
40 1.24 cgd /*
41 1.24 cgd * Copyright (c) 1982, 1986, 1989, 1991, 1993
42 1.24 cgd * The Regents of the University of California. All rights reserved.
43 1.24 cgd * (c) UNIX System Laboratories, Inc.
44 1.24 cgd * All or some portions of this file are derived from material licensed
45 1.24 cgd * to the University of California by American Telephone and Telegraph
46 1.24 cgd * Co. or Unix System Laboratories, Inc. and are reproduced herein with
47 1.24 cgd * the permission of UNIX System Laboratories, Inc.
48 1.24 cgd *
49 1.24 cgd * Redistribution and use in source and binary forms, with or without
50 1.24 cgd * modification, are permitted provided that the following conditions
51 1.24 cgd * are met:
52 1.24 cgd * 1. Redistributions of source code must retain the above copyright
53 1.24 cgd * notice, this list of conditions and the following disclaimer.
54 1.24 cgd * 2. Redistributions in binary form must reproduce the above copyright
55 1.24 cgd * notice, this list of conditions and the following disclaimer in the
56 1.24 cgd * documentation and/or other materials provided with the distribution.
57 1.119 agc * 3. Neither the name of the University nor the names of its contributors
58 1.24 cgd * may be used to endorse or promote products derived from this software
59 1.24 cgd * without specific prior written permission.
60 1.24 cgd *
61 1.24 cgd * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
62 1.24 cgd * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
63 1.24 cgd * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
64 1.24 cgd * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
65 1.24 cgd * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
66 1.24 cgd * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
67 1.24 cgd * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
68 1.24 cgd * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
69 1.24 cgd * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
70 1.24 cgd * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
71 1.24 cgd * SUCH DAMAGE.
72 1.24 cgd *
73 1.49 fvdl * @(#)kern_exit.c 8.10 (Berkeley) 2/23/95
74 1.24 cgd */
75 1.92 lukem
76 1.92 lukem #include <sys/cdefs.h>
77 1.201 ad __KERNEL_RCSID(0, "$NetBSD: kern_exit.c,v 1.201 2008/03/23 16:53:45 ad Exp $");
78 1.48 mrg
79 1.51 thorpej #include "opt_ktrace.h"
80 1.97 briggs #include "opt_perfctrs.h"
81 1.60 tron #include "opt_sysv.h"
82 1.24 cgd
83 1.24 cgd #include <sys/param.h>
84 1.174 rmind #include <sys/aio.h>
85 1.24 cgd #include <sys/systm.h>
86 1.24 cgd #include <sys/ioctl.h>
87 1.24 cgd #include <sys/tty.h>
88 1.24 cgd #include <sys/time.h>
89 1.24 cgd #include <sys/resource.h>
90 1.24 cgd #include <sys/kernel.h>
91 1.24 cgd #include <sys/proc.h>
92 1.24 cgd #include <sys/buf.h>
93 1.24 cgd #include <sys/wait.h>
94 1.24 cgd #include <sys/file.h>
95 1.24 cgd #include <sys/vnode.h>
96 1.24 cgd #include <sys/syslog.h>
97 1.24 cgd #include <sys/malloc.h>
98 1.53 thorpej #include <sys/pool.h>
99 1.24 cgd #include <sys/resourcevar.h>
100 1.98 briggs #if defined(PERFCTRS)
101 1.97 briggs #include <sys/pmc.h>
102 1.98 briggs #endif
103 1.24 cgd #include <sys/ptrace.h>
104 1.29 cgd #include <sys/acct.h>
105 1.36 christos #include <sys/filedesc.h>
106 1.100 gmcgarry #include <sys/ras.h>
107 1.36 christos #include <sys/signalvar.h>
108 1.64 ross #include <sys/sched.h>
109 1.26 cgd #include <sys/mount.h>
110 1.26 cgd #include <sys/syscallargs.h>
111 1.156 elad #include <sys/kauth.h>
112 1.165 ad #include <sys/sleepq.h>
113 1.165 ad #include <sys/lockdebug.h>
114 1.165 ad #include <sys/ktrace.h>
115 1.189 ad #include <sys/cpu.h>
116 1.193 ad #include <sys/lwpctl.h>
117 1.194 ad #include <sys/atomic.h>
118 1.24 cgd
119 1.47 mrg #include <uvm/uvm_extern.h>
120 1.47 mrg
121 1.107 thorpej #define DEBUG_EXIT
122 1.107 thorpej
123 1.107 thorpej #ifdef DEBUG_EXIT
124 1.107 thorpej int debug_exit = 0;
125 1.107 thorpej #define DPRINTF(x) if (debug_exit) printf x
126 1.107 thorpej #else
127 1.107 thorpej #define DPRINTF(x)
128 1.107 thorpej #endif
129 1.107 thorpej
130 1.178 dsl static int find_stopped_child(struct proc *, pid_t, int, struct proc **, int *);
131 1.178 dsl static void proc_free(struct proc *, struct rusage *);
132 1.177 dsl
133 1.123 christos /*
134 1.132 jdolecek * Fill in the appropriate signal information, and signal the parent.
135 1.123 christos */
136 1.123 christos static void
137 1.162 yamt exit_psignal(struct proc *p, struct proc *pp, ksiginfo_t *ksi)
138 1.123 christos {
139 1.123 christos
140 1.163 yamt KSI_INIT(ksi);
141 1.140 pk if ((ksi->ksi_signo = P_EXITSIG(p)) == SIGCHLD) {
142 1.123 christos if (WIFSIGNALED(p->p_xstat)) {
143 1.123 christos if (WCOREDUMP(p->p_xstat))
144 1.140 pk ksi->ksi_code = CLD_DUMPED;
145 1.123 christos else
146 1.140 pk ksi->ksi_code = CLD_KILLED;
147 1.123 christos } else {
148 1.140 pk ksi->ksi_code = CLD_EXITED;
149 1.123 christos }
150 1.123 christos }
151 1.123 christos /*
152 1.165 ad * We fill those in, even for non-SIGCHLD.
153 1.165 ad * It's safe to access p->p_cred unlocked here.
154 1.123 christos */
155 1.140 pk ksi->ksi_pid = p->p_pid;
156 1.156 elad ksi->ksi_uid = kauth_cred_geteuid(p->p_cred);
157 1.140 pk ksi->ksi_status = p->p_xstat;
158 1.123 christos /* XXX: is this still valid? */
159 1.175 dsl ksi->ksi_utime = p->p_stats->p_ru.ru_utime.tv_sec;
160 1.175 dsl ksi->ksi_stime = p->p_stats->p_ru.ru_stime.tv_sec;
161 1.123 christos }
162 1.94 christos
163 1.24 cgd /*
164 1.24 cgd * exit --
165 1.24 cgd * Death of process.
166 1.24 cgd */
167 1.31 thorpej int
168 1.195 dsl sys_exit(struct lwp *l, const struct sys_exit_args *uap, register_t *retval)
169 1.31 thorpej {
170 1.195 dsl /* {
171 1.89 lukem syscallarg(int) rval;
172 1.195 dsl } */
173 1.165 ad struct proc *p = l->l_proc;
174 1.24 cgd
175 1.165 ad /* Don't call exit1() multiple times in the same process. */
176 1.198 ad KERNEL_LOCK(1, NULL);
177 1.165 ad mutex_enter(&p->p_smutex);
178 1.165 ad if (p->p_sflag & PS_WEXIT) {
179 1.165 ad mutex_exit(&p->p_smutex);
180 1.107 thorpej lwp_exit(l);
181 1.165 ad }
182 1.107 thorpej
183 1.165 ad /* exit1() will release the mutex. */
184 1.107 thorpej exit1(l, W_EXITCODE(SCARG(uap, rval), 0));
185 1.24 cgd /* NOTREACHED */
186 1.31 thorpej return (0);
187 1.24 cgd }
188 1.24 cgd
189 1.24 cgd /*
190 1.24 cgd * Exit: deallocate address space and other resources, change proc state
191 1.24 cgd * to zombie, and unlink proc from allproc and parent's lists. Save exit
192 1.24 cgd * status and rusage for wait(). Check for child processes and orphan them.
193 1.165 ad *
194 1.165 ad * Must be called with p->p_smutex held. Does not return.
195 1.24 cgd */
196 1.31 thorpej void
197 1.107 thorpej exit1(struct lwp *l, int rv)
198 1.24 cgd {
199 1.107 thorpej struct proc *p, *q, *nq;
200 1.201 ad struct pgrp *pgrp;
201 1.140 pk ksiginfo_t ksi;
202 1.165 ad ksiginfoq_t kq;
203 1.192 ad int wakeinit;
204 1.24 cgd
205 1.107 thorpej p = l->l_proc;
206 1.107 thorpej
207 1.172 ad KASSERT(mutex_owned(&p->p_smutex));
208 1.165 ad
209 1.78 thorpej if (__predict_false(p == initproc))
210 1.24 cgd panic("init died (signal %d, exit %d)",
211 1.24 cgd WTERMSIG(rv), WEXITSTATUS(rv));
212 1.73 thorpej
213 1.165 ad p->p_sflag |= PS_WEXIT;
214 1.165 ad
215 1.165 ad /*
216 1.165 ad * Force all other LWPs to exit before we do. Only then can we
217 1.165 ad * begin to tear down the rest of the process state.
218 1.165 ad */
219 1.165 ad if (p->p_nlwps > 1)
220 1.165 ad exit_lwps(l);
221 1.165 ad
222 1.165 ad ksiginfo_queue_init(&kq);
223 1.165 ad
224 1.165 ad /*
225 1.165 ad * If we have been asked to stop on exit, do so now.
226 1.165 ad */
227 1.165 ad if (p->p_sflag & PS_STOPEXIT) {
228 1.165 ad KERNEL_UNLOCK_ALL(l, &l->l_biglocks);
229 1.165 ad sigclearall(p, &contsigmask, &kq);
230 1.165 ad p->p_waited = 0;
231 1.194 ad membar_producer();
232 1.130 atatat p->p_stat = SSTOP;
233 1.165 ad lwp_lock(l);
234 1.165 ad p->p_nrlwps--;
235 1.130 atatat l->l_stat = LSSTOP;
236 1.165 ad mutex_exit(&p->p_smutex);
237 1.179 yamt mi_switch(l);
238 1.165 ad KERNEL_LOCK(l->l_biglocks, l);
239 1.165 ad } else
240 1.165 ad mutex_exit(&p->p_smutex);
241 1.165 ad
242 1.193 ad /* Destroy any lwpctl info. */
243 1.193 ad if (p->p_lwpctl != NULL)
244 1.193 ad lwp_ctl_exit();
245 1.193 ad
246 1.174 rmind /* Destroy all AIO works */
247 1.180 rmind aio_exit(p, p->p_aio);
248 1.174 rmind
249 1.165 ad /*
250 1.165 ad * Drain all remaining references that procfs, ptrace and others may
251 1.165 ad * have on the process.
252 1.165 ad */
253 1.191 ad rw_enter(&p->p_reflock, RW_WRITER);
254 1.112 nathanw
255 1.107 thorpej /*
256 1.165 ad * Bin any remaining signals and mark the process as dying so it will
257 1.165 ad * not be found for, e.g. signals.
258 1.107 thorpej */
259 1.165 ad mutex_enter(&p->p_smutex);
260 1.165 ad sigfillset(&p->p_sigctx.ps_sigignore);
261 1.165 ad sigclearall(p, NULL, &kq);
262 1.165 ad p->p_stat = SDYING;
263 1.165 ad mutex_exit(&p->p_smutex);
264 1.165 ad ksiginfo_queue_drain(&kq);
265 1.165 ad
266 1.165 ad DPRINTF(("exit1: %d.%d exiting.\n", p->p_pid, l->l_lid));
267 1.107 thorpej
268 1.24 cgd #ifdef PGINPROF
269 1.24 cgd vmsizmon();
270 1.24 cgd #endif
271 1.107 thorpej timers_free(p, TIMERS_ALL);
272 1.100 gmcgarry #if defined(__HAVE_RAS)
273 1.190 ad ras_purgeall();
274 1.100 gmcgarry #endif
275 1.24 cgd
276 1.24 cgd /*
277 1.165 ad * Close open files, release open-file table and free signal
278 1.165 ad * actions. This may block!
279 1.24 cgd */
280 1.200 ad fd_free();
281 1.141 pk cwdfree(p->p_cwdi);
282 1.165 ad p->p_cwdi = NULL;
283 1.93 christos doexithooks(p);
284 1.165 ad sigactsfree(p->p_sigacts);
285 1.157 ad
286 1.157 ad /*
287 1.164 ad * Write out accounting data.
288 1.157 ad */
289 1.154 christos (void)acct_process(l);
290 1.157 ad
291 1.24 cgd #ifdef KTRACE
292 1.145 perry /*
293 1.157 ad * Release trace file.
294 1.24 cgd */
295 1.165 ad if (p->p_tracep != NULL) {
296 1.185 ad mutex_enter(&ktrace_lock);
297 1.165 ad ktrderef(p);
298 1.185 ad mutex_exit(&ktrace_lock);
299 1.165 ad }
300 1.94 christos #endif
301 1.157 ad
302 1.24 cgd /*
303 1.99 manu * If emulation has process exit hook, call it now.
304 1.158 manu * Set the exit status now so that the exit hook has
305 1.158 manu * an opportunity to tweak it (COMPAT_LINUX requires
306 1.158 manu * this for thread group emulation)
307 1.99 manu */
308 1.158 manu p->p_xstat = rv;
309 1.99 manu if (p->p_emul->e_proc_exit)
310 1.99 manu (*p->p_emul->e_proc_exit)(p);
311 1.99 manu
312 1.160 thorpej /*
313 1.140 pk * Free the VM resources we're still holding on to.
314 1.140 pk * We must do this from a valid thread because doing
315 1.140 pk * so may block. This frees vmspace, which we don't
316 1.140 pk * need anymore. The only remaining lwp is the one
317 1.140 pk * we run at this moment, nothing runs in userland
318 1.140 pk * anymore.
319 1.140 pk */
320 1.140 pk uvm_proc_exit(p);
321 1.140 pk
322 1.140 pk /*
323 1.183 ad * While we can still block, and mark the LWP as unswappable to
324 1.183 ad * prevent conflicts with the with the swapper. We also shouldn't
325 1.183 ad * be swapped out, because we are about to exit and will release
326 1.183 ad * memory.
327 1.183 ad */
328 1.183 ad uvm_lwp_hold(l);
329 1.183 ad
330 1.183 ad /*
331 1.165 ad * Stop profiling.
332 1.140 pk */
333 1.165 ad if ((p->p_stflag & PST_PROFIL) != 0) {
334 1.165 ad mutex_spin_enter(&p->p_stmutex);
335 1.165 ad stopprofclock(p);
336 1.165 ad mutex_spin_exit(&p->p_stmutex);
337 1.165 ad }
338 1.140 pk
339 1.140 pk /*
340 1.165 ad * If parent is waiting for us to exit or exec, P_PPWAIT is set; we
341 1.165 ad * wake up the parent early to avoid deadlock. We can do this once
342 1.165 ad * the VM resources are released.
343 1.140 pk */
344 1.169 ad mutex_enter(&proclist_lock);
345 1.165 ad
346 1.165 ad mutex_enter(&p->p_smutex);
347 1.165 ad if (p->p_sflag & PS_PPWAIT) {
348 1.165 ad p->p_sflag &= ~PS_PPWAIT;
349 1.184 ad cv_broadcast(&p->p_pptr->p_waitcv);
350 1.165 ad }
351 1.165 ad mutex_exit(&p->p_smutex);
352 1.165 ad
353 1.165 ad if (SESS_LEADER(p)) {
354 1.165 ad struct vnode *vprele = NULL, *vprevoke = NULL;
355 1.165 ad struct session *sp = p->p_session;
356 1.165 ad struct tty *tp;
357 1.165 ad
358 1.165 ad if (sp->s_ttyvp) {
359 1.165 ad /*
360 1.165 ad * Controlling process.
361 1.165 ad * Signal foreground pgrp,
362 1.165 ad * drain controlling terminal
363 1.165 ad * and revoke access to controlling terminal.
364 1.165 ad */
365 1.165 ad tp = sp->s_ttyp;
366 1.192 ad mutex_spin_enter(&tty_lock);
367 1.165 ad if (tp->t_session == sp) {
368 1.165 ad /* we can't guarantee the revoke will do this */
369 1.201 ad pgrp = tp->t_pgrp;
370 1.165 ad tp->t_pgrp = NULL;
371 1.165 ad tp->t_session = NULL;
372 1.192 ad mutex_spin_exit(&tty_lock);
373 1.201 ad if (pgrp != NULL) {
374 1.201 ad mutex_enter(&proclist_mutex);
375 1.201 ad pgsignal(pgrp, SIGHUP, 1);
376 1.201 ad mutex_exit(&proclist_mutex);
377 1.201 ad }
378 1.169 ad mutex_exit(&proclist_lock);
379 1.165 ad (void) ttywait(tp);
380 1.169 ad mutex_enter(&proclist_lock);
381 1.165 ad
382 1.198 ad /* The tty could have been revoked. */
383 1.165 ad vprevoke = sp->s_ttyvp;
384 1.192 ad } else
385 1.192 ad mutex_spin_exit(&tty_lock);
386 1.165 ad vprele = sp->s_ttyvp;
387 1.165 ad sp->s_ttyvp = NULL;
388 1.165 ad /*
389 1.165 ad * s_ttyp is not zero'd; we use this to indicate
390 1.165 ad * that the session once had a controlling terminal.
391 1.165 ad * (for logging and informational purposes)
392 1.165 ad */
393 1.165 ad }
394 1.165 ad sp->s_leader = NULL;
395 1.140 pk
396 1.165 ad if (vprevoke != NULL || vprele != NULL) {
397 1.198 ad if (vprevoke != NULL) {
398 1.198 ad SESSRELE(sp);
399 1.198 ad mutex_exit(&proclist_lock);
400 1.165 ad VOP_REVOKE(vprevoke, REVOKEALL);
401 1.198 ad } else
402 1.198 ad mutex_exit(&proclist_lock);
403 1.165 ad if (vprele != NULL)
404 1.165 ad vrele(vprele);
405 1.169 ad mutex_enter(&proclist_lock);
406 1.165 ad }
407 1.165 ad }
408 1.165 ad mutex_enter(&proclist_mutex);
409 1.165 ad fixjobc(p, p->p_pgrp, 0);
410 1.165 ad mutex_exit(&proclist_mutex);
411 1.140 pk
412 1.140 pk /*
413 1.171 ad * Finalize the last LWP's specificdata, as well as the
414 1.171 ad * specificdata for the proc itself.
415 1.171 ad */
416 1.171 ad lwp_finispecific(l);
417 1.171 ad proc_finispecific(p);
418 1.171 ad
419 1.171 ad /*
420 1.140 pk * Notify interested parties of our demise.
421 1.140 pk */
422 1.140 pk KNOTE(&p->p_klist, NOTE_EXIT);
423 1.140 pk
424 1.196 ad
425 1.198 ad
426 1.140 pk #if PERFCTRS
427 1.140 pk /*
428 1.140 pk * Save final PMC information in parent process & clean up.
429 1.140 pk */
430 1.140 pk if (PMC_ENABLED(p)) {
431 1.140 pk pmc_save_context(p);
432 1.140 pk pmc_accumulate(p->p_pptr, p);
433 1.140 pk pmc_process_exit(p);
434 1.140 pk }
435 1.140 pk #endif
436 1.140 pk
437 1.140 pk /*
438 1.128 dsl * Reset p_opptr pointer of all former children which got
439 1.128 dsl * traced by another process and were reparented. We reset
440 1.128 dsl * it to NULL here; the trace detach code then reparents
441 1.128 dsl * the child to initproc. We only check allproc list, since
442 1.128 dsl * eventual former children on zombproc list won't reference
443 1.128 dsl * p_opptr anymore.
444 1.128 dsl */
445 1.165 ad if (p->p_slflag & PSL_CHTRACED) {
446 1.143 yamt PROCLIST_FOREACH(q, &allproc) {
447 1.128 dsl if (q->p_opptr == p)
448 1.128 dsl q->p_opptr = NULL;
449 1.128 dsl }
450 1.128 dsl }
451 1.128 dsl
452 1.128 dsl /*
453 1.72 thorpej * Give orphaned children to init(8).
454 1.72 thorpej */
455 1.101 matt q = LIST_FIRST(&p->p_children);
456 1.165 ad wakeinit = (q != NULL);
457 1.132 jdolecek for (; q != NULL; q = nq) {
458 1.101 matt nq = LIST_NEXT(q, p_sibling);
459 1.104 jdolecek
460 1.24 cgd /*
461 1.104 jdolecek * Traced processes are killed since their existence
462 1.104 jdolecek * means someone is screwing up. Since we reset the
463 1.104 jdolecek * trace flags, the logic in sys_wait4() would not be
464 1.104 jdolecek * triggered to reparent the process to its
465 1.106 jdolecek * original parent, so we must do this here.
466 1.24 cgd */
467 1.165 ad if (q->p_slflag & PSL_TRACED) {
468 1.165 ad mutex_enter(&p->p_smutex);
469 1.165 ad q->p_slflag &= ~(PSL_TRACED|PSL_FSTRACE|PSL_SYSCALL);
470 1.165 ad mutex_exit(&p->p_smutex);
471 1.104 jdolecek if (q->p_opptr != q->p_pptr) {
472 1.104 jdolecek struct proc *t = q->p_opptr;
473 1.104 jdolecek proc_reparent(q, t ? t : initproc);
474 1.104 jdolecek q->p_opptr = NULL;
475 1.105 jdolecek } else
476 1.105 jdolecek proc_reparent(q, initproc);
477 1.153 jdolecek killproc(q, "orphaned traced process");
478 1.165 ad } else
479 1.104 jdolecek proc_reparent(q, initproc);
480 1.24 cgd }
481 1.115 dsl
482 1.115 dsl /*
483 1.165 ad * Move proc from allproc to zombproc, it's now nearly ready to be
484 1.165 ad * collected by parent.
485 1.115 dsl */
486 1.165 ad mutex_enter(&proclist_mutex);
487 1.165 ad LIST_REMOVE(l, l_list);
488 1.115 dsl LIST_REMOVE(p, p_list);
489 1.115 dsl LIST_INSERT_HEAD(&zombproc, p, p_list);
490 1.133 jdolecek
491 1.165 ad /*
492 1.165 ad * Mark the process as dead. We must do this before we signal
493 1.165 ad * the parent.
494 1.165 ad */
495 1.165 ad p->p_stat = SDEAD;
496 1.133 jdolecek
497 1.133 jdolecek /* Put in front of parent's sibling list for parent to collect it */
498 1.133 jdolecek q = p->p_pptr;
499 1.133 jdolecek q->p_nstopchild++;
500 1.133 jdolecek if (LIST_FIRST(&q->p_children) != p) {
501 1.133 jdolecek /* Put child where it can be found quickly */
502 1.133 jdolecek LIST_REMOVE(p, p_sibling);
503 1.133 jdolecek LIST_INSERT_HEAD(&q->p_children, p, p_sibling);
504 1.133 jdolecek }
505 1.165 ad mutex_exit(&proclist_mutex);
506 1.133 jdolecek
507 1.59 christos /*
508 1.59 christos * Notify parent that we're gone. If parent has the P_NOCLDWAIT
509 1.59 christos * flag set, notify init instead (and hope it will handle
510 1.59 christos * this situation).
511 1.59 christos */
512 1.165 ad mutex_enter(&q->p_mutex);
513 1.167 pavel if (q->p_flag & (PK_NOCLDWAIT|PK_CLDSIGIGN)) {
514 1.59 christos proc_reparent(p, initproc);
515 1.165 ad wakeinit = 1;
516 1.133 jdolecek
517 1.59 christos /*
518 1.59 christos * If this was the last child of our parent, notify
519 1.59 christos * parent, so in case he was wait(2)ing, he will
520 1.59 christos * continue.
521 1.59 christos */
522 1.140 pk if (LIST_FIRST(&q->p_children) == NULL)
523 1.184 ad cv_broadcast(&q->p_waitcv);
524 1.59 christos }
525 1.165 ad mutex_exit(&q->p_mutex);
526 1.24 cgd
527 1.140 pk /* Reload parent pointer, since p may have been reparented above */
528 1.140 pk q = p->p_pptr;
529 1.140 pk
530 1.165 ad if ((p->p_slflag & PSL_FSTRACE) == 0 && p->p_exitsig != 0) {
531 1.140 pk exit_psignal(p, q, &ksi);
532 1.165 ad mutex_enter(&proclist_mutex);
533 1.165 ad kpsignal(q, &ksi, NULL);
534 1.165 ad mutex_exit(&proclist_mutex);
535 1.140 pk }
536 1.140 pk
537 1.175 dsl /* Calculate the final rusage info. */
538 1.175 dsl calcru(p, &p->p_stats->p_ru.ru_utime, &p->p_stats->p_ru.ru_stime,
539 1.175 dsl NULL, NULL);
540 1.140 pk
541 1.165 ad if (wakeinit)
542 1.184 ad cv_broadcast(&initproc->p_waitcv);
543 1.165 ad
544 1.187 ad callout_destroy(&l->l_timeout_ch);
545 1.183 ad
546 1.165 ad /*
547 1.165 ad * Remaining lwp resources will be freed in lwp_exit2() once we've
548 1.165 ad * switch to idle context; at that point, we will be marked as a
549 1.165 ad * full blown zombie.
550 1.165 ad *
551 1.165 ad * XXXSMP disable preemption.
552 1.165 ad */
553 1.165 ad mutex_enter(&p->p_smutex);
554 1.165 ad lwp_drainrefs(l);
555 1.165 ad lwp_lock(l);
556 1.165 ad l->l_prflag &= ~LPR_DETACHED;
557 1.165 ad l->l_stat = LSZOMB;
558 1.165 ad lwp_unlock(l);
559 1.165 ad KASSERT(curlwp == l);
560 1.165 ad KASSERT(p->p_nrlwps == 1);
561 1.165 ad KASSERT(p->p_nlwps == 1);
562 1.165 ad p->p_stat = SZOMB;
563 1.165 ad p->p_nrlwps--;
564 1.165 ad p->p_nzlwps++;
565 1.165 ad p->p_ndlwps = 0;
566 1.165 ad mutex_exit(&p->p_smutex);
567 1.140 pk
568 1.165 ad /*
569 1.165 ad * Signal the parent to collect us, and drop the proclist lock.
570 1.191 ad * Drop debugger/procfs lock; no new references can be gained.
571 1.165 ad */
572 1.184 ad cv_broadcast(&p->p_pptr->p_waitcv);
573 1.169 ad mutex_exit(&proclist_lock);
574 1.191 ad rw_exit(&p->p_reflock);
575 1.140 pk
576 1.165 ad /* Verify that we hold no locks other than the kernel lock. */
577 1.165 ad #ifdef MULTIPROCESSOR
578 1.165 ad LOCKDEBUG_BARRIER(&kernel_lock, 0);
579 1.165 ad #else
580 1.165 ad LOCKDEBUG_BARRIER(NULL, 0);
581 1.165 ad #endif
582 1.85 thorpej
583 1.165 ad /*
584 1.165 ad * NOTE: WE ARE NO LONGER ALLOWED TO SLEEP!
585 1.165 ad */
586 1.157 ad
587 1.165 ad /*
588 1.165 ad * Give machine-dependent code a chance to free any MD LWP
589 1.165 ad * resources. This must be done before uvm_lwp_exit(), in
590 1.165 ad * case these resources are in the PCB.
591 1.165 ad */
592 1.165 ad #ifndef __NO_CPU_LWP_FREE
593 1.165 ad cpu_lwp_free(l, 1);
594 1.133 jdolecek #endif
595 1.165 ad pmap_deactivate(l);
596 1.133 jdolecek
597 1.140 pk /* This process no longer needs to hold the kernel lock. */
598 1.165 ad #ifdef notyet
599 1.165 ad /* XXXSMP hold in lwp_userret() */
600 1.165 ad KERNEL_UNLOCK_LAST(l);
601 1.165 ad #else
602 1.165 ad KERNEL_UNLOCK_ALL(l, NULL);
603 1.165 ad #endif
604 1.140 pk
605 1.179 yamt lwp_exit_switchaway(l);
606 1.107 thorpej }
607 1.107 thorpej
608 1.107 thorpej void
609 1.107 thorpej exit_lwps(struct lwp *l)
610 1.107 thorpej {
611 1.107 thorpej struct proc *p;
612 1.107 thorpej struct lwp *l2;
613 1.165 ad int error;
614 1.165 ad lwpid_t waited;
615 1.165 ad #if defined(MULTIPROCESSOR)
616 1.165 ad int nlocks;
617 1.165 ad #endif
618 1.165 ad
619 1.165 ad KERNEL_UNLOCK_ALL(l, &nlocks);
620 1.107 thorpej
621 1.107 thorpej p = l->l_proc;
622 1.181 yamt KASSERT(mutex_owned(&p->p_smutex));
623 1.107 thorpej
624 1.165 ad retry:
625 1.107 thorpej /*
626 1.107 thorpej * Interrupt LWPs in interruptable sleep, unsuspend suspended
627 1.165 ad * LWPs and then wait for everyone else to finish.
628 1.107 thorpej */
629 1.107 thorpej LIST_FOREACH(l2, &p->p_lwps, l_sibling) {
630 1.165 ad if (l2 == l)
631 1.165 ad continue;
632 1.165 ad lwp_lock(l2);
633 1.167 pavel l2->l_flag |= LW_WEXIT;
634 1.167 pavel if ((l2->l_stat == LSSLEEP && (l2->l_flag & LW_SINTR)) ||
635 1.118 fvdl l2->l_stat == LSSUSPENDED || l2->l_stat == LSSTOP) {
636 1.165 ad /* setrunnable() will release the lock. */
637 1.107 thorpej setrunnable(l2);
638 1.107 thorpej DPRINTF(("exit_lwps: Made %d.%d runnable\n",
639 1.107 thorpej p->p_pid, l2->l_lid));
640 1.165 ad continue;
641 1.107 thorpej }
642 1.165 ad lwp_unlock(l2);
643 1.107 thorpej }
644 1.107 thorpej while (p->p_nlwps > 1) {
645 1.165 ad DPRINTF(("exit_lwps: waiting for %d LWPs (%d zombies)\n",
646 1.165 ad p->p_nlwps, p->p_nzlwps));
647 1.107 thorpej error = lwp_wait1(l, 0, &waited, LWPWAIT_EXITCONTROL);
648 1.165 ad if (p->p_nlwps == 1)
649 1.165 ad break;
650 1.150 yamt if (error == EDEADLK) {
651 1.150 yamt /*
652 1.150 yamt * LWPs can get suspended/slept behind us.
653 1.150 yamt * (eg. sa_setwoken)
654 1.150 yamt * kick them again and retry.
655 1.150 yamt */
656 1.150 yamt goto retry;
657 1.150 yamt }
658 1.107 thorpej if (error)
659 1.147 christos panic("exit_lwps: lwp_wait1 failed with error %d",
660 1.107 thorpej error);
661 1.107 thorpej DPRINTF(("exit_lwps: Got LWP %d from lwp_wait1()\n", waited));
662 1.145 perry }
663 1.107 thorpej
664 1.181 yamt #if defined(MULTIPROCESSOR)
665 1.181 yamt if (nlocks > 0) {
666 1.181 yamt mutex_exit(&p->p_smutex);
667 1.181 yamt KERNEL_LOCK(nlocks, l);
668 1.181 yamt mutex_enter(&p->p_smutex);
669 1.181 yamt }
670 1.181 yamt #endif /* defined(MULTIPROCESSOR) */
671 1.181 yamt KASSERT(p->p_nlwps == 1);
672 1.24 cgd }
673 1.24 cgd
674 1.24 cgd int
675 1.177 dsl do_sys_wait(struct lwp *l, int *pid, int *status, int options,
676 1.177 dsl struct rusage *ru, int *was_zombie)
677 1.177 dsl {
678 1.177 dsl struct proc *child;
679 1.177 dsl int error;
680 1.177 dsl
681 1.198 ad KERNEL_LOCK(1, NULL); /* XXXSMP */
682 1.177 dsl mutex_enter(&proclist_lock);
683 1.177 dsl error = find_stopped_child(l->l_proc, *pid, options, &child, status);
684 1.198 ad KERNEL_UNLOCK_ONE(NULL); /* XXXSMP */
685 1.177 dsl
686 1.177 dsl if (child == NULL) {
687 1.177 dsl mutex_exit(&proclist_lock);
688 1.177 dsl *pid = 0;
689 1.177 dsl return error;
690 1.177 dsl }
691 1.177 dsl
692 1.177 dsl *pid = child->p_pid;
693 1.177 dsl
694 1.177 dsl if (child->p_stat == SZOMB) {
695 1.177 dsl /* proc_free() will release the proclist_lock. */
696 1.177 dsl *was_zombie = 1;
697 1.177 dsl if (options & WNOWAIT)
698 1.177 dsl mutex_exit(&proclist_lock);
699 1.177 dsl else {
700 1.178 dsl proc_free(child, ru);
701 1.177 dsl }
702 1.177 dsl } else {
703 1.177 dsl /* Child state must have been SSTOP. */
704 1.177 dsl *was_zombie = 0;
705 1.177 dsl mutex_exit(&proclist_lock);
706 1.177 dsl *status = W_STOPCODE(*status);
707 1.177 dsl }
708 1.177 dsl
709 1.177 dsl return 0;
710 1.177 dsl }
711 1.177 dsl
712 1.177 dsl int
713 1.195 dsl sys_wait4(struct lwp *l, const struct sys_wait4_args *uap, register_t *retval)
714 1.31 thorpej {
715 1.195 dsl /* {
716 1.89 lukem syscallarg(int) pid;
717 1.89 lukem syscallarg(int *) status;
718 1.89 lukem syscallarg(int) options;
719 1.89 lukem syscallarg(struct rusage *) rusage;
720 1.195 dsl } */
721 1.109 dsl int status, error;
722 1.177 dsl int was_zombie;
723 1.166 ad struct rusage ru;
724 1.195 dsl int pid = SCARG(uap, pid);
725 1.24 cgd
726 1.195 dsl error = do_sys_wait(l, &pid, &status, SCARG(uap, options),
727 1.177 dsl SCARG(uap, rusage) != NULL ? &ru : NULL, &was_zombie);
728 1.107 thorpej
729 1.195 dsl retval[0] = pid;
730 1.195 dsl if (pid == 0)
731 1.109 dsl return error;
732 1.165 ad
733 1.177 dsl if (SCARG(uap, rusage))
734 1.177 dsl error = copyout(&ru, SCARG(uap, rusage), sizeof(ru));
735 1.109 dsl
736 1.177 dsl if (error == 0 && SCARG(uap, status))
737 1.177 dsl error = copyout(&status, SCARG(uap, status), sizeof(status));
738 1.109 dsl
739 1.177 dsl return error;
740 1.109 dsl }
741 1.109 dsl
742 1.109 dsl /*
743 1.109 dsl * Scan list of child processes for a child process that has stopped or
744 1.109 dsl * exited. Used by sys_wait4 and 'compat' equivalents.
745 1.165 ad *
746 1.169 ad * Must be called with the proclist_lock held, and may release
747 1.165 ad * while waiting.
748 1.109 dsl */
749 1.177 dsl static int
750 1.109 dsl find_stopped_child(struct proc *parent, pid_t pid, int options,
751 1.165 ad struct proc **child_p, int *status_p)
752 1.109 dsl {
753 1.165 ad struct proc *child, *dead;
754 1.128 dsl int error;
755 1.68 thorpej
756 1.169 ad KASSERT(mutex_owned(&proclist_lock));
757 1.165 ad
758 1.177 dsl if (options & ~(WUNTRACED|WNOHANG|WALTSIG|WALLSIG)
759 1.177 dsl && !(options & WOPTSCHECKED)) {
760 1.177 dsl *child_p = NULL;
761 1.177 dsl return EINVAL;
762 1.177 dsl }
763 1.177 dsl
764 1.177 dsl if (pid == 0 && !(options & WOPTSCHECKED))
765 1.177 dsl pid = -parent->p_pgid;
766 1.177 dsl
767 1.120 yamt for (;;) {
768 1.128 dsl error = ECHILD;
769 1.165 ad dead = NULL;
770 1.165 ad
771 1.165 ad mutex_enter(&proclist_mutex);
772 1.109 dsl LIST_FOREACH(child, &parent->p_children, p_sibling) {
773 1.128 dsl if (pid >= 0) {
774 1.128 dsl if (child->p_pid != pid) {
775 1.128 dsl child = p_find(pid, PFIND_ZOMBIE |
776 1.165 ad PFIND_LOCKED);
777 1.165 ad if (child == NULL ||
778 1.165 ad child->p_pptr != parent) {
779 1.128 dsl child = NULL;
780 1.128 dsl break;
781 1.128 dsl }
782 1.128 dsl }
783 1.165 ad } else if (pid != WAIT_ANY && child->p_pgid != -pid) {
784 1.165 ad /* Child not in correct pgrp */
785 1.165 ad continue;
786 1.165 ad }
787 1.165 ad
788 1.109 dsl /*
789 1.109 dsl * Wait for processes with p_exitsig != SIGCHLD
790 1.109 dsl * processes only if WALTSIG is set; wait for
791 1.109 dsl * processes with p_exitsig == SIGCHLD only
792 1.109 dsl * if WALTSIG is clear.
793 1.109 dsl */
794 1.109 dsl if (((options & WALLSIG) == 0) &&
795 1.109 dsl (options & WALTSIG ? child->p_exitsig == SIGCHLD
796 1.128 dsl : P_EXITSIG(child) != SIGCHLD)){
797 1.128 dsl if (child->p_pid == pid) {
798 1.128 dsl child = NULL;
799 1.128 dsl break;
800 1.128 dsl }
801 1.109 dsl continue;
802 1.128 dsl }
803 1.109 dsl
804 1.128 dsl error = 0;
805 1.165 ad if ((options & WNOZOMBIE) == 0) {
806 1.165 ad if (child->p_stat == SZOMB)
807 1.165 ad break;
808 1.165 ad if (child->p_stat == SDEAD) {
809 1.165 ad /*
810 1.165 ad * We may occasionally arrive here
811 1.165 ad * after receiving a signal, but
812 1.165 ad * immediatley before the child
813 1.165 ad * process is zombified. The wait
814 1.165 ad * will be short, so avoid returning
815 1.165 ad * to userspace.
816 1.165 ad */
817 1.165 ad dead = child;
818 1.165 ad }
819 1.165 ad }
820 1.109 dsl
821 1.109 dsl if (child->p_stat == SSTOP &&
822 1.165 ad child->p_waited == 0 &&
823 1.165 ad (child->p_slflag & PSL_TRACED ||
824 1.165 ad options & WUNTRACED)) {
825 1.128 dsl if ((options & WNOWAIT) == 0) {
826 1.165 ad child->p_waited = 1;
827 1.128 dsl parent->p_nstopchild--;
828 1.128 dsl }
829 1.128 dsl break;
830 1.128 dsl }
831 1.128 dsl if (parent->p_nstopchild == 0 || child->p_pid == pid) {
832 1.128 dsl child = NULL;
833 1.128 dsl break;
834 1.24 cgd }
835 1.109 dsl }
836 1.165 ad
837 1.165 ad if (child != NULL || error != 0 ||
838 1.165 ad ((options & WNOHANG) != 0 && dead == NULL)) {
839 1.176 dsl if (child != NULL) {
840 1.165 ad *status_p = child->p_xstat;
841 1.176 dsl }
842 1.165 ad mutex_exit(&proclist_mutex);
843 1.128 dsl *child_p = child;
844 1.128 dsl return error;
845 1.109 dsl }
846 1.165 ad
847 1.165 ad /*
848 1.165 ad * Wait for another child process to stop.
849 1.165 ad */
850 1.169 ad mutex_exit(&proclist_lock);
851 1.165 ad error = cv_wait_sig(&parent->p_waitcv, &proclist_mutex);
852 1.165 ad mutex_exit(&proclist_mutex);
853 1.169 ad mutex_enter(&proclist_lock);
854 1.165 ad
855 1.177 dsl if (error != 0) {
856 1.177 dsl *child_p = NULL;
857 1.109 dsl return error;
858 1.177 dsl }
859 1.109 dsl }
860 1.109 dsl }
861 1.109 dsl
862 1.109 dsl /*
863 1.165 ad * Free a process after parent has taken all the state info. Must be called
864 1.169 ad * with the proclist lock held, and will release before returning.
865 1.165 ad *
866 1.165 ad * *ru is returned to the caller, and must be freed by the caller.
867 1.109 dsl */
868 1.178 dsl static void
869 1.178 dsl proc_free(struct proc *p, struct rusage *ru)
870 1.109 dsl {
871 1.165 ad struct proc *parent;
872 1.165 ad struct lwp *l;
873 1.140 pk ksiginfo_t ksi;
874 1.182 ad kauth_cred_t cred1, cred2;
875 1.165 ad uid_t uid;
876 1.24 cgd
877 1.169 ad KASSERT(mutex_owned(&proclist_lock));
878 1.165 ad KASSERT(p->p_nlwps == 1);
879 1.165 ad KASSERT(p->p_nzlwps == 1);
880 1.137 yamt KASSERT(p->p_nrlwps == 0);
881 1.165 ad KASSERT(p->p_stat == SZOMB);
882 1.137 yamt
883 1.109 dsl /*
884 1.109 dsl * If we got the child via ptrace(2) or procfs, and
885 1.109 dsl * the parent is different (meaning the process was
886 1.109 dsl * attached, rather than run as a child), then we need
887 1.109 dsl * to give it back to the old parent, and send the
888 1.109 dsl * parent the exit signal. The rest of the cleanup
889 1.109 dsl * will be done when the old parent waits on the child.
890 1.109 dsl */
891 1.165 ad if ((p->p_slflag & PSL_TRACED) != 0) {
892 1.165 ad parent = p->p_pptr;
893 1.165 ad if (p->p_opptr != parent){
894 1.165 ad mutex_enter(&p->p_smutex);
895 1.165 ad p->p_slflag &= ~(PSL_TRACED|PSL_FSTRACE|PSL_SYSCALL);
896 1.165 ad mutex_exit(&p->p_smutex);
897 1.165 ad parent = p->p_opptr;
898 1.165 ad if (parent == NULL)
899 1.165 ad parent = initproc;
900 1.165 ad proc_reparent(p, parent);
901 1.165 ad p->p_opptr = NULL;
902 1.165 ad if (p->p_exitsig != 0) {
903 1.165 ad exit_psignal(p, parent, &ksi);
904 1.165 ad mutex_enter(&proclist_mutex);
905 1.165 ad kpsignal(parent, &ksi, NULL);
906 1.165 ad mutex_exit(&proclist_mutex);
907 1.165 ad }
908 1.198 ad KERNEL_LOCK(1, NULL); /* XXXSMP */
909 1.184 ad cv_broadcast(&parent->p_waitcv);
910 1.198 ad KERNEL_UNLOCK_ONE(NULL); /* XXXSMP */
911 1.169 ad mutex_exit(&proclist_lock);
912 1.165 ad return;
913 1.140 pk }
914 1.109 dsl }
915 1.109 dsl
916 1.165 ad /*
917 1.165 ad * Finally finished with old proc entry. Unlink it from its process
918 1.165 ad * group.
919 1.165 ad */
920 1.165 ad leavepgrp(p);
921 1.165 ad
922 1.165 ad parent = p->p_pptr;
923 1.179 yamt sched_proc_exit(parent, p);
924 1.178 dsl /*
925 1.178 dsl * Add child times of exiting process onto its own times.
926 1.178 dsl * This cannot be done any earlier else it might get done twice.
927 1.178 dsl */
928 1.178 dsl ruadd(&p->p_stats->p_ru, &p->p_stats->p_cru);
929 1.175 dsl ruadd(&parent->p_stats->p_cru, &p->p_stats->p_ru);
930 1.178 dsl if (ru != NULL)
931 1.178 dsl *ru = p->p_stats->p_ru;
932 1.109 dsl p->p_xstat = 0;
933 1.115 dsl
934 1.115 dsl /*
935 1.165 ad * At this point we are going to start freeing the final resources.
936 1.165 ad * If anyone tries to access the proc structure after here they will
937 1.165 ad * get a shock - bits are missing. Attempt to make it hard! We
938 1.165 ad * don't bother with any further locking past this point.
939 1.115 dsl */
940 1.165 ad mutex_enter(&proclist_mutex);
941 1.165 ad p->p_stat = SIDL; /* not even a zombie any more */
942 1.165 ad LIST_REMOVE(p, p_list); /* off zombproc */
943 1.165 ad parent = p->p_pptr;
944 1.165 ad p->p_pptr->p_nstopchild--;
945 1.165 ad mutex_exit(&proclist_mutex);
946 1.165 ad LIST_REMOVE(p, p_sibling);
947 1.115 dsl
948 1.188 ad /*
949 1.188 ad * Let pid be reallocated.
950 1.188 ad */
951 1.188 ad proc_free_pid(p);
952 1.188 ad mutex_exit(&proclist_lock);
953 1.182 ad
954 1.165 ad l = LIST_FIRST(&p->p_lwps);
955 1.165 ad
956 1.109 dsl /*
957 1.188 ad * Delay release until after lwp_free.
958 1.109 dsl */
959 1.182 ad cred2 = l->l_cred;
960 1.182 ad
961 1.182 ad /*
962 1.188 ad * Free the last LWP's resources.
963 1.188 ad *
964 1.188 ad * lwp_free ensures the LWP is no longer running on another CPU.
965 1.182 ad */
966 1.182 ad lwp_free(l, false, true);
967 1.56 thorpej
968 1.165 ad /*
969 1.188 ad * Now no one except us can reach the process p.
970 1.165 ad */
971 1.35 mycroft
972 1.109 dsl /*
973 1.109 dsl * Decrement the count of procs running with this uid.
974 1.109 dsl */
975 1.188 ad cred1 = p->p_cred;
976 1.188 ad uid = kauth_cred_getuid(cred1);
977 1.165 ad (void)chgproccnt(uid, -1);
978 1.24 cgd
979 1.109 dsl /*
980 1.165 ad * Release substructures.
981 1.109 dsl */
982 1.188 ad
983 1.188 ad limfree(p->p_limit);
984 1.188 ad pstatsfree(p->p_stats);
985 1.182 ad kauth_cred_free(cred1);
986 1.182 ad kauth_cred_free(cred2);
987 1.107 thorpej
988 1.109 dsl /*
989 1.109 dsl * Release reference to text vnode
990 1.109 dsl */
991 1.188 ad if (p->p_textvp)
992 1.188 ad vrele(p->p_textvp);
993 1.188 ad
994 1.198 ad mutex_destroy(&p->p_auxlock);
995 1.188 ad mutex_destroy(&p->p_mutex);
996 1.188 ad mutex_destroy(&p->p_stmutex);
997 1.188 ad mutex_destroy(&p->p_smutex);
998 1.188 ad cv_destroy(&p->p_waitcv);
999 1.188 ad cv_destroy(&p->p_lwpcv);
1000 1.191 ad rw_destroy(&p->p_reflock);
1001 1.188 ad
1002 1.196 ad proc_free_mem(p);
1003 1.24 cgd }
1004 1.24 cgd
1005 1.24 cgd /*
1006 1.24 cgd * make process 'parent' the new parent of process 'child'.
1007 1.128 dsl *
1008 1.169 ad * Must be called with proclist_lock lock held.
1009 1.24 cgd */
1010 1.24 cgd void
1011 1.82 thorpej proc_reparent(struct proc *child, struct proc *parent)
1012 1.24 cgd {
1013 1.24 cgd
1014 1.169 ad KASSERT(mutex_owned(&proclist_lock));
1015 1.165 ad
1016 1.24 cgd if (child->p_pptr == parent)
1017 1.24 cgd return;
1018 1.70 thorpej
1019 1.165 ad mutex_enter(&proclist_mutex);
1020 1.165 ad if (child->p_stat == SZOMB ||
1021 1.165 ad (child->p_stat == SSTOP && !child->p_waited)) {
1022 1.128 dsl child->p_pptr->p_nstopchild--;
1023 1.128 dsl parent->p_nstopchild++;
1024 1.128 dsl }
1025 1.165 ad mutex_exit(&proclist_mutex);
1026 1.70 thorpej if (parent == initproc)
1027 1.70 thorpej child->p_exitsig = SIGCHLD;
1028 1.24 cgd
1029 1.25 mycroft LIST_REMOVE(child, p_sibling);
1030 1.25 mycroft LIST_INSERT_HEAD(&parent->p_children, child, p_sibling);
1031 1.24 cgd child->p_pptr = parent;
1032 1.24 cgd }
1033