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