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kern_sig.c revision 1.214
      1  1.214      elad /*	$NetBSD: kern_sig.c,v 1.214 2006/02/02 17:48:51 elad Exp $	*/
      2   1.29       cgd 
      3   1.29       cgd /*
      4   1.29       cgd  * Copyright (c) 1982, 1986, 1989, 1991, 1993
      5   1.29       cgd  *	The Regents of the University of California.  All rights reserved.
      6   1.29       cgd  * (c) UNIX System Laboratories, Inc.
      7   1.29       cgd  * All or some portions of this file are derived from material licensed
      8   1.29       cgd  * to the University of California by American Telephone and Telegraph
      9   1.29       cgd  * Co. or Unix System Laboratories, Inc. and are reproduced herein with
     10   1.29       cgd  * the permission of UNIX System Laboratories, Inc.
     11   1.29       cgd  *
     12   1.29       cgd  * Redistribution and use in source and binary forms, with or without
     13   1.29       cgd  * modification, are permitted provided that the following conditions
     14   1.29       cgd  * are met:
     15   1.29       cgd  * 1. Redistributions of source code must retain the above copyright
     16   1.29       cgd  *    notice, this list of conditions and the following disclaimer.
     17   1.29       cgd  * 2. Redistributions in binary form must reproduce the above copyright
     18   1.29       cgd  *    notice, this list of conditions and the following disclaimer in the
     19   1.29       cgd  *    documentation and/or other materials provided with the distribution.
     20  1.146       agc  * 3. Neither the name of the University nor the names of its contributors
     21   1.29       cgd  *    may be used to endorse or promote products derived from this software
     22   1.29       cgd  *    without specific prior written permission.
     23   1.29       cgd  *
     24   1.29       cgd  * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
     25   1.29       cgd  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     26   1.29       cgd  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     27   1.29       cgd  * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
     28   1.29       cgd  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     29   1.29       cgd  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
     30   1.29       cgd  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     31   1.29       cgd  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     32   1.29       cgd  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     33   1.29       cgd  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     34   1.29       cgd  * SUCH DAMAGE.
     35   1.29       cgd  *
     36   1.71      fvdl  *	@(#)kern_sig.c	8.14 (Berkeley) 5/14/95
     37   1.29       cgd  */
     38  1.116     lukem 
     39  1.116     lukem #include <sys/cdefs.h>
     40  1.214      elad __KERNEL_RCSID(0, "$NetBSD: kern_sig.c,v 1.214 2006/02/02 17:48:51 elad Exp $");
     41   1.70       mrg 
     42   1.73   thorpej #include "opt_ktrace.h"
     43   1.74   thorpej #include "opt_compat_sunos.h"
     44  1.158  christos #include "opt_compat_netbsd.h"
     45  1.202     perry #include "opt_compat_netbsd32.h"
     46   1.29       cgd 
     47   1.29       cgd #define	SIGPROP		/* include signal properties table */
     48   1.29       cgd #include <sys/param.h>
     49   1.29       cgd #include <sys/signalvar.h>
     50   1.29       cgd #include <sys/resourcevar.h>
     51   1.29       cgd #include <sys/namei.h>
     52   1.29       cgd #include <sys/vnode.h>
     53   1.29       cgd #include <sys/proc.h>
     54   1.29       cgd #include <sys/systm.h>
     55   1.29       cgd #include <sys/timeb.h>
     56   1.29       cgd #include <sys/times.h>
     57   1.29       cgd #include <sys/buf.h>
     58   1.29       cgd #include <sys/acct.h>
     59   1.29       cgd #include <sys/file.h>
     60   1.29       cgd #include <sys/kernel.h>
     61   1.29       cgd #include <sys/wait.h>
     62   1.29       cgd #include <sys/ktrace.h>
     63   1.29       cgd #include <sys/syslog.h>
     64   1.29       cgd #include <sys/stat.h>
     65   1.29       cgd #include <sys/core.h>
     66   1.59       cgd #include <sys/filedesc.h>
     67   1.89   thorpej #include <sys/malloc.h>
     68   1.89   thorpej #include <sys/pool.h>
     69  1.130   thorpej #include <sys/ucontext.h>
     70  1.130   thorpej #include <sys/sa.h>
     71  1.130   thorpej #include <sys/savar.h>
     72  1.118   thorpej #include <sys/exec.h>
     73  1.214      elad #include <sys/sysctl.h>
     74   1.29       cgd 
     75   1.32       cgd #include <sys/mount.h>
     76   1.32       cgd #include <sys/syscallargs.h>
     77   1.32       cgd 
     78   1.29       cgd #include <machine/cpu.h>
     79   1.29       cgd 
     80   1.29       cgd #include <sys/user.h>		/* for coredump */
     81   1.52  christos 
     82  1.196     skrll #include <uvm/uvm.h>
     83   1.69       mrg #include <uvm/uvm_extern.h>
     84   1.69       mrg 
     85  1.151  christos static void	child_psignal(struct proc *, int);
     86  1.201  christos static int	build_corename(struct proc *, char *, const char *, size_t);
     87  1.152  christos static void	ksiginfo_exithook(struct proc *, void *);
     88  1.160  christos static void	ksiginfo_put(struct proc *, const ksiginfo_t *);
     89  1.152  christos static ksiginfo_t *ksiginfo_get(struct proc *, int);
     90  1.160  christos static void	kpsignal2(struct proc *, const ksiginfo_t *, int);
     91  1.152  christos 
     92  1.198  jdolecek sigset_t	contsigmask, stopsigmask, sigcantmask;
     93   1.29       cgd 
     94  1.196     skrll struct pool	sigacts_pool;	/* memory pool for sigacts structures */
     95  1.196     skrll 
     96  1.196     skrll /*
     97  1.196     skrll  * struct sigacts memory pool allocator.
     98  1.196     skrll  */
     99  1.196     skrll 
    100  1.196     skrll static void *
    101  1.196     skrll sigacts_poolpage_alloc(struct pool *pp, int flags)
    102  1.196     skrll {
    103  1.196     skrll 
    104  1.204      yamt 	return (void *)uvm_km_alloc(kernel_map,
    105  1.204      yamt 	    (PAGE_SIZE)*2, (PAGE_SIZE)*2,
    106  1.204      yamt 	    ((flags & PR_WAITOK) ? 0 : UVM_KMF_NOWAIT | UVM_KMF_TRYLOCK)
    107  1.204      yamt 	    | UVM_KMF_WIRED);
    108  1.196     skrll }
    109  1.196     skrll 
    110  1.196     skrll static void
    111  1.196     skrll sigacts_poolpage_free(struct pool *pp, void *v)
    112  1.196     skrll {
    113  1.204      yamt         uvm_km_free(kernel_map, (vaddr_t)v, (PAGE_SIZE)*2, UVM_KMF_WIRED);
    114  1.196     skrll }
    115  1.196     skrll 
    116  1.196     skrll static struct pool_allocator sigactspool_allocator = {
    117  1.197        he         sigacts_poolpage_alloc, sigacts_poolpage_free,
    118  1.196     skrll };
    119  1.196     skrll 
    120  1.194    simonb POOL_INIT(siginfo_pool, sizeof(siginfo_t), 0, 0, 0, "siginfo",
    121  1.194    simonb     &pool_allocator_nointr);
    122  1.194    simonb POOL_INIT(ksiginfo_pool, sizeof(ksiginfo_t), 0, 0, 0, "ksiginfo", NULL);
    123   1.89   thorpej 
    124   1.29       cgd /*
    125   1.29       cgd  * Can process p, with pcred pc, send the signal signum to process q?
    126   1.29       cgd  */
    127  1.112     lukem #define	CANSIGNAL(p, pc, q, signum) \
    128   1.29       cgd 	((pc)->pc_ucred->cr_uid == 0 || \
    129   1.29       cgd 	    (pc)->p_ruid == (q)->p_cred->p_ruid || \
    130   1.29       cgd 	    (pc)->pc_ucred->cr_uid == (q)->p_cred->p_ruid || \
    131   1.29       cgd 	    (pc)->p_ruid == (q)->p_ucred->cr_uid || \
    132   1.29       cgd 	    (pc)->pc_ucred->cr_uid == (q)->p_ucred->cr_uid || \
    133   1.29       cgd 	    ((signum) == SIGCONT && (q)->p_session == (p)->p_session))
    134   1.29       cgd 
    135   1.89   thorpej /*
    136  1.155  christos  * Remove and return the first ksiginfo element that matches our requested
    137  1.155  christos  * signal, or return NULL if one not found.
    138  1.152  christos  */
    139  1.152  christos static ksiginfo_t *
    140  1.152  christos ksiginfo_get(struct proc *p, int signo)
    141  1.152  christos {
    142  1.155  christos 	ksiginfo_t *ksi;
    143  1.168        pk 	int s;
    144  1.152  christos 
    145  1.168        pk 	s = splsoftclock();
    146  1.155  christos 	simple_lock(&p->p_sigctx.ps_silock);
    147  1.155  christos 	CIRCLEQ_FOREACH(ksi, &p->p_sigctx.ps_siginfo, ksi_list) {
    148  1.155  christos 		if (ksi->ksi_signo == signo) {
    149  1.155  christos 			CIRCLEQ_REMOVE(&p->p_sigctx.ps_siginfo, ksi, ksi_list);
    150  1.168        pk 			goto out;
    151  1.155  christos 		}
    152  1.152  christos 	}
    153  1.168        pk 	ksi = NULL;
    154  1.168        pk out:
    155  1.155  christos 	simple_unlock(&p->p_sigctx.ps_silock);
    156  1.168        pk 	splx(s);
    157  1.168        pk 	return ksi;
    158  1.152  christos }
    159  1.152  christos 
    160  1.155  christos /*
    161  1.155  christos  * Append a new ksiginfo element to the list of pending ksiginfo's, if
    162  1.155  christos  * we need to (SA_SIGINFO was requested). We replace non RT signals if
    163  1.155  christos  * they already existed in the queue and we add new entries for RT signals,
    164  1.155  christos  * or for non RT signals with non-existing entries.
    165  1.155  christos  */
    166  1.152  christos static void
    167  1.160  christos ksiginfo_put(struct proc *p, const ksiginfo_t *ksi)
    168  1.152  christos {
    169  1.155  christos 	ksiginfo_t *kp;
    170  1.155  christos 	struct sigaction *sa = &SIGACTION_PS(p->p_sigacts, ksi->ksi_signo);
    171  1.167        pk 	int s;
    172  1.152  christos 
    173  1.155  christos 	if ((sa->sa_flags & SA_SIGINFO) == 0)
    174  1.155  christos 		return;
    175  1.192      matt 	/*
    176  1.192      matt 	 * If there's no info, don't save it.
    177  1.192      matt 	 */
    178  1.192      matt 	if (KSI_EMPTY_P(ksi))
    179  1.192      matt 		return;
    180  1.152  christos 
    181  1.167        pk 	s = splsoftclock();
    182  1.155  christos 	simple_lock(&p->p_sigctx.ps_silock);
    183  1.152  christos #ifdef notyet	/* XXX: QUEUING */
    184  1.155  christos 	if (ksi->ksi_signo < SIGRTMIN)
    185  1.152  christos #endif
    186  1.155  christos 	{
    187  1.155  christos 		CIRCLEQ_FOREACH(kp, &p->p_sigctx.ps_siginfo, ksi_list) {
    188  1.155  christos 			if (kp->ksi_signo == ksi->ksi_signo) {
    189  1.174  jdolecek 				KSI_COPY(ksi, kp);
    190  1.167        pk 				goto out;
    191  1.155  christos 			}
    192  1.155  christos 		}
    193  1.153  christos 	}
    194  1.155  christos 	kp = pool_get(&ksiginfo_pool, PR_NOWAIT);
    195  1.157  christos 	if (kp == NULL) {
    196  1.157  christos #ifdef DIAGNOSTIC
    197  1.157  christos 		printf("Out of memory allocating siginfo for pid %d\n",
    198  1.157  christos 		    p->p_pid);
    199  1.157  christos #endif
    200  1.167        pk 		goto out;
    201  1.157  christos 	}
    202  1.155  christos 	*kp = *ksi;
    203  1.155  christos 	CIRCLEQ_INSERT_TAIL(&p->p_sigctx.ps_siginfo, kp, ksi_list);
    204  1.167        pk out:
    205  1.155  christos 	simple_unlock(&p->p_sigctx.ps_silock);
    206  1.167        pk 	splx(s);
    207  1.152  christos }
    208  1.152  christos 
    209  1.152  christos /*
    210  1.152  christos  * free all pending ksiginfo on exit
    211  1.152  christos  */
    212  1.152  christos static void
    213  1.152  christos ksiginfo_exithook(struct proc *p, void *v)
    214  1.152  christos {
    215  1.168        pk 	int s;
    216  1.152  christos 
    217  1.168        pk 	s = splsoftclock();
    218  1.155  christos 	simple_lock(&p->p_sigctx.ps_silock);
    219  1.155  christos 	while (!CIRCLEQ_EMPTY(&p->p_sigctx.ps_siginfo)) {
    220  1.155  christos 		ksiginfo_t *ksi = CIRCLEQ_FIRST(&p->p_sigctx.ps_siginfo);
    221  1.155  christos 		CIRCLEQ_REMOVE(&p->p_sigctx.ps_siginfo, ksi, ksi_list);
    222  1.152  christos 		pool_put(&ksiginfo_pool, ksi);
    223  1.152  christos 	}
    224  1.155  christos 	simple_unlock(&p->p_sigctx.ps_silock);
    225  1.168        pk 	splx(s);
    226  1.152  christos }
    227  1.152  christos 
    228  1.152  christos /*
    229   1.89   thorpej  * Initialize signal-related data structures.
    230   1.89   thorpej  */
    231   1.89   thorpej void
    232  1.112     lukem signal_init(void)
    233   1.89   thorpej {
    234  1.194    simonb 
    235  1.197        he 	sigactspool_allocator.pa_pagesz = (PAGE_SIZE)*2;
    236  1.197        he 
    237  1.196     skrll 	pool_init(&sigacts_pool, sizeof(struct sigacts), 0, 0, 0, "sigapl",
    238  1.196     skrll 	    sizeof(struct sigacts) > PAGE_SIZE ?
    239  1.196     skrll 	    &sigactspool_allocator : &pool_allocator_nointr);
    240  1.196     skrll 
    241  1.152  christos 	exithook_establish(ksiginfo_exithook, NULL);
    242  1.152  christos 	exechook_establish(ksiginfo_exithook, NULL);
    243   1.89   thorpej }
    244   1.89   thorpej 
    245   1.89   thorpej /*
    246  1.109  jdolecek  * Create an initial sigctx structure, using the same signal state
    247  1.109  jdolecek  * as p. If 'share' is set, share the sigctx_proc part, otherwise just
    248  1.109  jdolecek  * copy it from parent.
    249   1.89   thorpej  */
    250  1.109  jdolecek void
    251  1.112     lukem sigactsinit(struct proc *np, struct proc *pp, int share)
    252   1.89   thorpej {
    253   1.89   thorpej 	struct sigacts *ps;
    254   1.89   thorpej 
    255  1.109  jdolecek 	if (share) {
    256  1.109  jdolecek 		np->p_sigacts = pp->p_sigacts;
    257  1.109  jdolecek 		pp->p_sigacts->sa_refcnt++;
    258  1.109  jdolecek 	} else {
    259  1.109  jdolecek 		ps = pool_get(&sigacts_pool, PR_WAITOK);
    260  1.109  jdolecek 		if (pp)
    261  1.109  jdolecek 			memcpy(ps, pp->p_sigacts, sizeof(struct sigacts));
    262  1.109  jdolecek 		else
    263  1.109  jdolecek 			memset(ps, '\0', sizeof(struct sigacts));
    264  1.109  jdolecek 		ps->sa_refcnt = 1;
    265  1.109  jdolecek 		np->p_sigacts = ps;
    266  1.109  jdolecek 	}
    267   1.89   thorpej }
    268   1.89   thorpej 
    269   1.89   thorpej /*
    270  1.109  jdolecek  * Make this process not share its sigctx, maintaining all
    271   1.89   thorpej  * signal state.
    272   1.89   thorpej  */
    273   1.89   thorpej void
    274  1.112     lukem sigactsunshare(struct proc *p)
    275   1.89   thorpej {
    276  1.109  jdolecek 	struct sigacts *oldps;
    277   1.89   thorpej 
    278  1.109  jdolecek 	if (p->p_sigacts->sa_refcnt == 1)
    279   1.89   thorpej 		return;
    280   1.89   thorpej 
    281  1.109  jdolecek 	oldps = p->p_sigacts;
    282  1.109  jdolecek 	sigactsinit(p, NULL, 0);
    283  1.109  jdolecek 
    284  1.109  jdolecek 	if (--oldps->sa_refcnt == 0)
    285  1.109  jdolecek 		pool_put(&sigacts_pool, oldps);
    286   1.89   thorpej }
    287   1.89   thorpej 
    288   1.89   thorpej /*
    289  1.109  jdolecek  * Release a sigctx structure.
    290   1.89   thorpej  */
    291   1.89   thorpej void
    292  1.195        pk sigactsfree(struct sigacts *ps)
    293   1.89   thorpej {
    294   1.89   thorpej 
    295  1.109  jdolecek 	if (--ps->sa_refcnt > 0)
    296   1.89   thorpej 		return;
    297   1.89   thorpej 
    298   1.89   thorpej 	pool_put(&sigacts_pool, ps);
    299   1.89   thorpej }
    300   1.89   thorpej 
    301   1.79   mycroft int
    302  1.112     lukem sigaction1(struct proc *p, int signum, const struct sigaction *nsa,
    303  1.162      matt 	struct sigaction *osa, const void *tramp, int vers)
    304   1.79   mycroft {
    305  1.112     lukem 	struct sigacts	*ps;
    306  1.112     lukem 	int		prop;
    307   1.79   mycroft 
    308  1.112     lukem 	ps = p->p_sigacts;
    309   1.79   mycroft 	if (signum <= 0 || signum >= NSIG)
    310   1.79   mycroft 		return (EINVAL);
    311   1.79   mycroft 
    312  1.121   thorpej 	/*
    313  1.121   thorpej 	 * Trampoline ABI version 0 is reserved for the legacy
    314  1.162      matt 	 * kernel-provided on-stack trampoline.  Conversely, if we are
    315  1.162      matt 	 * using a non-0 ABI version, we must have a trampoline.  Only
    316  1.163  christos 	 * validate the vers if a new sigaction was supplied. Emulations
    317  1.163  christos 	 * use legacy kernel trampolines with version 0, alternatively
    318  1.163  christos 	 * check for that too.
    319  1.121   thorpej 	 */
    320  1.121   thorpej 	if ((vers != 0 && tramp == NULL) ||
    321  1.161      matt #ifdef SIGTRAMP_VALID
    322  1.202     perry 	    (nsa != NULL &&
    323  1.202     perry 	    ((vers == 0) ?
    324  1.163  christos 		(p->p_emul->e_sigcode == NULL) :
    325  1.163  christos 		!SIGTRAMP_VALID(vers))) ||
    326  1.161      matt #endif
    327  1.121   thorpej 	    (vers == 0 && tramp != NULL))
    328  1.121   thorpej 		return (EINVAL);
    329  1.121   thorpej 
    330   1.79   mycroft 	if (osa)
    331  1.109  jdolecek 		*osa = SIGACTION_PS(ps, signum);
    332   1.79   mycroft 
    333   1.79   mycroft 	if (nsa) {
    334   1.79   mycroft 		if (nsa->sa_flags & ~SA_ALLBITS)
    335   1.79   mycroft 			return (EINVAL);
    336  1.149    kleink 
    337   1.79   mycroft 		prop = sigprop[signum];
    338   1.79   mycroft 		if (prop & SA_CANTMASK)
    339   1.79   mycroft 			return (EINVAL);
    340   1.79   mycroft 
    341  1.105   thorpej 		(void) splsched();	/* XXXSMP */
    342  1.109  jdolecek 		SIGACTION_PS(ps, signum) = *nsa;
    343  1.121   thorpej 		ps->sa_sigdesc[signum].sd_tramp = tramp;
    344  1.121   thorpej 		ps->sa_sigdesc[signum].sd_vers = vers;
    345  1.109  jdolecek 		sigminusset(&sigcantmask, &SIGACTION_PS(ps, signum).sa_mask);
    346   1.79   mycroft 		if ((prop & SA_NORESET) != 0)
    347  1.109  jdolecek 			SIGACTION_PS(ps, signum).sa_flags &= ~SA_RESETHAND;
    348   1.79   mycroft 		if (signum == SIGCHLD) {
    349   1.79   mycroft 			if (nsa->sa_flags & SA_NOCLDSTOP)
    350   1.79   mycroft 				p->p_flag |= P_NOCLDSTOP;
    351   1.79   mycroft 			else
    352   1.79   mycroft 				p->p_flag &= ~P_NOCLDSTOP;
    353   1.82     enami 			if (nsa->sa_flags & SA_NOCLDWAIT) {
    354   1.81  christos 				/*
    355   1.81  christos 				 * Paranoia: since SA_NOCLDWAIT is implemented
    356   1.81  christos 				 * by reparenting the dying child to PID 1 (and
    357  1.112     lukem 				 * trust it to reap the zombie), PID 1 itself
    358  1.112     lukem 				 * is forbidden to set SA_NOCLDWAIT.
    359   1.81  christos 				 */
    360   1.81  christos 				if (p->p_pid == 1)
    361   1.81  christos 					p->p_flag &= ~P_NOCLDWAIT;
    362   1.81  christos 				else
    363   1.81  christos 					p->p_flag |= P_NOCLDWAIT;
    364   1.81  christos 			} else
    365   1.81  christos 				p->p_flag &= ~P_NOCLDWAIT;
    366  1.203  christos 
    367  1.203  christos 			if (nsa->sa_handler == SIG_IGN) {
    368  1.203  christos 				/*
    369  1.203  christos 				 * Paranoia: same as above.
    370  1.203  christos 				 */
    371  1.203  christos 				if (p->p_pid == 1)
    372  1.203  christos 					p->p_flag &= ~P_CLDSIGIGN;
    373  1.203  christos 				else
    374  1.203  christos 					p->p_flag |= P_CLDSIGIGN;
    375  1.203  christos 			} else
    376  1.203  christos 				p->p_flag &= ~P_CLDSIGIGN;
    377  1.203  christos 
    378   1.79   mycroft 		}
    379   1.79   mycroft 		if ((nsa->sa_flags & SA_NODEFER) == 0)
    380  1.109  jdolecek 			sigaddset(&SIGACTION_PS(ps, signum).sa_mask, signum);
    381   1.79   mycroft 		else
    382  1.109  jdolecek 			sigdelset(&SIGACTION_PS(ps, signum).sa_mask, signum);
    383   1.79   mycroft 		/*
    384  1.112     lukem 	 	 * Set bit in p_sigctx.ps_sigignore for signals that are set to
    385  1.112     lukem 		 * SIG_IGN, and for signals set to SIG_DFL where the default is
    386  1.112     lukem 		 * to ignore. However, don't put SIGCONT in
    387  1.112     lukem 		 * p_sigctx.ps_sigignore, as we have to restart the process.
    388  1.112     lukem 	 	 */
    389   1.79   mycroft 		if (nsa->sa_handler == SIG_IGN ||
    390   1.79   mycroft 		    (nsa->sa_handler == SIG_DFL && (prop & SA_IGNORE) != 0)) {
    391  1.112     lukem 						/* never to be seen again */
    392  1.112     lukem 			sigdelset(&p->p_sigctx.ps_siglist, signum);
    393  1.112     lukem 			if (signum != SIGCONT) {
    394  1.112     lukem 						/* easier in psignal */
    395  1.112     lukem 				sigaddset(&p->p_sigctx.ps_sigignore, signum);
    396  1.112     lukem 			}
    397  1.109  jdolecek 			sigdelset(&p->p_sigctx.ps_sigcatch, signum);
    398   1.79   mycroft 		} else {
    399  1.109  jdolecek 			sigdelset(&p->p_sigctx.ps_sigignore, signum);
    400   1.79   mycroft 			if (nsa->sa_handler == SIG_DFL)
    401  1.109  jdolecek 				sigdelset(&p->p_sigctx.ps_sigcatch, signum);
    402   1.79   mycroft 			else
    403  1.109  jdolecek 				sigaddset(&p->p_sigctx.ps_sigcatch, signum);
    404   1.79   mycroft 		}
    405   1.79   mycroft 		(void) spl0();
    406   1.79   mycroft 	}
    407   1.79   mycroft 
    408   1.79   mycroft 	return (0);
    409   1.79   mycroft }
    410   1.79   mycroft 
    411  1.158  christos #ifdef COMPAT_16
    412   1.29       cgd /* ARGSUSED */
    413   1.52  christos int
    414  1.158  christos compat_16_sys___sigaction14(struct lwp *l, void *v, register_t *retval)
    415   1.48   thorpej {
    416  1.159   nathanw 	struct compat_16_sys___sigaction14_args /* {
    417  1.112     lukem 		syscallarg(int)				signum;
    418  1.112     lukem 		syscallarg(const struct sigaction *)	nsa;
    419  1.112     lukem 		syscallarg(struct sigaction *)		osa;
    420   1.48   thorpej 	} */ *uap = v;
    421  1.130   thorpej 	struct proc		*p;
    422  1.112     lukem 	struct sigaction	nsa, osa;
    423  1.112     lukem 	int			error;
    424   1.29       cgd 
    425   1.79   mycroft 	if (SCARG(uap, nsa)) {
    426   1.79   mycroft 		error = copyin(SCARG(uap, nsa), &nsa, sizeof(nsa));
    427   1.52  christos 		if (error)
    428   1.29       cgd 			return (error);
    429   1.29       cgd 	}
    430  1.130   thorpej 	p = l->l_proc;
    431   1.79   mycroft 	error = sigaction1(p, SCARG(uap, signum),
    432  1.121   thorpej 	    SCARG(uap, nsa) ? &nsa : 0, SCARG(uap, osa) ? &osa : 0,
    433  1.121   thorpej 	    NULL, 0);
    434  1.121   thorpej 	if (error)
    435  1.121   thorpej 		return (error);
    436  1.121   thorpej 	if (SCARG(uap, osa)) {
    437  1.121   thorpej 		error = copyout(&osa, SCARG(uap, osa), sizeof(osa));
    438  1.121   thorpej 		if (error)
    439  1.121   thorpej 			return (error);
    440  1.121   thorpej 	}
    441  1.121   thorpej 	return (0);
    442  1.121   thorpej }
    443  1.158  christos #endif
    444  1.121   thorpej 
    445  1.121   thorpej /* ARGSUSED */
    446  1.121   thorpej int
    447  1.130   thorpej sys___sigaction_sigtramp(struct lwp *l, void *v, register_t *retval)
    448  1.121   thorpej {
    449  1.121   thorpej 	struct sys___sigaction_sigtramp_args /* {
    450  1.121   thorpej 		syscallarg(int)				signum;
    451  1.121   thorpej 		syscallarg(const struct sigaction *)	nsa;
    452  1.121   thorpej 		syscallarg(struct sigaction *)		osa;
    453  1.121   thorpej 		syscallarg(void *)			tramp;
    454  1.121   thorpej 		syscallarg(int)				vers;
    455  1.121   thorpej 	} */ *uap = v;
    456  1.130   thorpej 	struct proc *p = l->l_proc;
    457  1.121   thorpej 	struct sigaction nsa, osa;
    458  1.121   thorpej 	int error;
    459  1.121   thorpej 
    460  1.121   thorpej 	if (SCARG(uap, nsa)) {
    461  1.121   thorpej 		error = copyin(SCARG(uap, nsa), &nsa, sizeof(nsa));
    462  1.121   thorpej 		if (error)
    463  1.121   thorpej 			return (error);
    464  1.121   thorpej 	}
    465  1.121   thorpej 	error = sigaction1(p, SCARG(uap, signum),
    466  1.121   thorpej 	    SCARG(uap, nsa) ? &nsa : 0, SCARG(uap, osa) ? &osa : 0,
    467  1.121   thorpej 	    SCARG(uap, tramp), SCARG(uap, vers));
    468   1.79   mycroft 	if (error)
    469   1.79   mycroft 		return (error);
    470   1.79   mycroft 	if (SCARG(uap, osa)) {
    471   1.79   mycroft 		error = copyout(&osa, SCARG(uap, osa), sizeof(osa));
    472   1.52  christos 		if (error)
    473   1.29       cgd 			return (error);
    474   1.29       cgd 	}
    475   1.29       cgd 	return (0);
    476   1.29       cgd }
    477   1.29       cgd 
    478   1.29       cgd /*
    479   1.29       cgd  * Initialize signal state for process 0;
    480   1.79   mycroft  * set to ignore signals that are ignored by default and disable the signal
    481   1.79   mycroft  * stack.
    482   1.29       cgd  */
    483   1.29       cgd void
    484  1.112     lukem siginit(struct proc *p)
    485   1.29       cgd {
    486  1.112     lukem 	struct sigacts	*ps;
    487  1.112     lukem 	int		signum, prop;
    488   1.79   mycroft 
    489  1.112     lukem 	ps = p->p_sigacts;
    490   1.79   mycroft 	sigemptyset(&contsigmask);
    491   1.79   mycroft 	sigemptyset(&stopsigmask);
    492   1.79   mycroft 	sigemptyset(&sigcantmask);
    493   1.85   mycroft 	for (signum = 1; signum < NSIG; signum++) {
    494   1.79   mycroft 		prop = sigprop[signum];
    495   1.79   mycroft 		if (prop & SA_CONT)
    496   1.79   mycroft 			sigaddset(&contsigmask, signum);
    497   1.79   mycroft 		if (prop & SA_STOP)
    498   1.79   mycroft 			sigaddset(&stopsigmask, signum);
    499   1.79   mycroft 		if (prop & SA_CANTMASK)
    500   1.79   mycroft 			sigaddset(&sigcantmask, signum);
    501   1.79   mycroft 		if (prop & SA_IGNORE && signum != SIGCONT)
    502  1.109  jdolecek 			sigaddset(&p->p_sigctx.ps_sigignore, signum);
    503  1.109  jdolecek 		sigemptyset(&SIGACTION_PS(ps, signum).sa_mask);
    504  1.109  jdolecek 		SIGACTION_PS(ps, signum).sa_flags = SA_RESTART;
    505   1.79   mycroft 	}
    506  1.109  jdolecek 	sigemptyset(&p->p_sigctx.ps_sigcatch);
    507  1.171  jdolecek 	p->p_sigctx.ps_sigwaited = NULL;
    508   1.79   mycroft 	p->p_flag &= ~P_NOCLDSTOP;
    509   1.29       cgd 
    510   1.79   mycroft 	/*
    511   1.79   mycroft 	 * Reset stack state to the user stack.
    512   1.79   mycroft 	 */
    513  1.109  jdolecek 	p->p_sigctx.ps_sigstk.ss_flags = SS_DISABLE;
    514  1.109  jdolecek 	p->p_sigctx.ps_sigstk.ss_size = 0;
    515  1.109  jdolecek 	p->p_sigctx.ps_sigstk.ss_sp = 0;
    516   1.89   thorpej 
    517   1.89   thorpej 	/* One reference. */
    518  1.109  jdolecek 	ps->sa_refcnt = 1;
    519   1.29       cgd }
    520   1.29       cgd 
    521   1.29       cgd /*
    522   1.29       cgd  * Reset signals for an exec of the specified process.
    523   1.29       cgd  */
    524   1.29       cgd void
    525  1.112     lukem execsigs(struct proc *p)
    526   1.29       cgd {
    527  1.112     lukem 	struct sigacts	*ps;
    528  1.112     lukem 	int		signum, prop;
    529   1.29       cgd 
    530  1.115   thorpej 	sigactsunshare(p);
    531  1.115   thorpej 
    532  1.112     lukem 	ps = p->p_sigacts;
    533  1.115   thorpej 
    534   1.29       cgd 	/*
    535   1.29       cgd 	 * Reset caught signals.  Held signals remain held
    536  1.109  jdolecek 	 * through p_sigctx.ps_sigmask (unless they were caught,
    537   1.29       cgd 	 * and are now ignored by default).
    538   1.29       cgd 	 */
    539   1.85   mycroft 	for (signum = 1; signum < NSIG; signum++) {
    540  1.109  jdolecek 		if (sigismember(&p->p_sigctx.ps_sigcatch, signum)) {
    541   1.79   mycroft 			prop = sigprop[signum];
    542   1.79   mycroft 			if (prop & SA_IGNORE) {
    543   1.79   mycroft 				if ((prop & SA_CONT) == 0)
    544  1.112     lukem 					sigaddset(&p->p_sigctx.ps_sigignore,
    545  1.112     lukem 					    signum);
    546  1.109  jdolecek 				sigdelset(&p->p_sigctx.ps_siglist, signum);
    547   1.79   mycroft 			}
    548  1.109  jdolecek 			SIGACTION_PS(ps, signum).sa_handler = SIG_DFL;
    549   1.29       cgd 		}
    550  1.109  jdolecek 		sigemptyset(&SIGACTION_PS(ps, signum).sa_mask);
    551  1.109  jdolecek 		SIGACTION_PS(ps, signum).sa_flags = SA_RESTART;
    552   1.29       cgd 	}
    553  1.109  jdolecek 	sigemptyset(&p->p_sigctx.ps_sigcatch);
    554  1.171  jdolecek 	p->p_sigctx.ps_sigwaited = NULL;
    555  1.205  christos 
    556  1.205  christos 	/*
    557  1.205  christos 	 * Reset no zombies if child dies flag as Solaris does.
    558  1.205  christos 	 */
    559  1.205  christos 	p->p_flag &= ~(P_NOCLDWAIT | P_CLDSIGIGN);
    560  1.205  christos 	if (SIGACTION_PS(ps, SIGCHLD).sa_handler == SIG_IGN)
    561  1.205  christos 		SIGACTION_PS(ps, SIGCHLD).sa_handler = SIG_DFL;
    562   1.79   mycroft 
    563   1.29       cgd 	/*
    564   1.29       cgd 	 * Reset stack state to the user stack.
    565   1.29       cgd 	 */
    566  1.109  jdolecek 	p->p_sigctx.ps_sigstk.ss_flags = SS_DISABLE;
    567  1.109  jdolecek 	p->p_sigctx.ps_sigstk.ss_size = 0;
    568  1.109  jdolecek 	p->p_sigctx.ps_sigstk.ss_sp = 0;
    569   1.29       cgd }
    570   1.29       cgd 
    571   1.79   mycroft int
    572  1.112     lukem sigprocmask1(struct proc *p, int how, const sigset_t *nss, sigset_t *oss)
    573   1.79   mycroft {
    574   1.79   mycroft 
    575   1.79   mycroft 	if (oss)
    576  1.109  jdolecek 		*oss = p->p_sigctx.ps_sigmask;
    577   1.79   mycroft 
    578   1.79   mycroft 	if (nss) {
    579  1.105   thorpej 		(void)splsched();	/* XXXSMP */
    580   1.79   mycroft 		switch (how) {
    581   1.79   mycroft 		case SIG_BLOCK:
    582  1.109  jdolecek 			sigplusset(nss, &p->p_sigctx.ps_sigmask);
    583   1.79   mycroft 			break;
    584   1.79   mycroft 		case SIG_UNBLOCK:
    585  1.109  jdolecek 			sigminusset(nss, &p->p_sigctx.ps_sigmask);
    586  1.110   thorpej 			CHECKSIGS(p);
    587   1.79   mycroft 			break;
    588   1.79   mycroft 		case SIG_SETMASK:
    589  1.109  jdolecek 			p->p_sigctx.ps_sigmask = *nss;
    590  1.110   thorpej 			CHECKSIGS(p);
    591   1.79   mycroft 			break;
    592   1.79   mycroft 		default:
    593  1.104   thorpej 			(void)spl0();	/* XXXSMP */
    594   1.79   mycroft 			return (EINVAL);
    595   1.79   mycroft 		}
    596  1.109  jdolecek 		sigminusset(&sigcantmask, &p->p_sigctx.ps_sigmask);
    597  1.104   thorpej 		(void)spl0();		/* XXXSMP */
    598   1.79   mycroft 	}
    599   1.79   mycroft 
    600   1.79   mycroft 	return (0);
    601   1.79   mycroft }
    602  1.202     perry 
    603   1.29       cgd /*
    604   1.29       cgd  * Manipulate signal mask.
    605   1.29       cgd  * Note that we receive new mask, not pointer,
    606   1.29       cgd  * and return old mask as return value;
    607   1.29       cgd  * the library stub does the rest.
    608   1.29       cgd  */
    609   1.52  christos int
    610  1.130   thorpej sys___sigprocmask14(struct lwp *l, void *v, register_t *retval)
    611   1.48   thorpej {
    612   1.79   mycroft 	struct sys___sigprocmask14_args /* {
    613  1.112     lukem 		syscallarg(int)			how;
    614  1.112     lukem 		syscallarg(const sigset_t *)	set;
    615  1.112     lukem 		syscallarg(sigset_t *)		oset;
    616   1.48   thorpej 	} */ *uap = v;
    617  1.130   thorpej 	struct proc	*p;
    618  1.112     lukem 	sigset_t	nss, oss;
    619  1.112     lukem 	int		error;
    620   1.29       cgd 
    621   1.79   mycroft 	if (SCARG(uap, set)) {
    622   1.79   mycroft 		error = copyin(SCARG(uap, set), &nss, sizeof(nss));
    623   1.79   mycroft 		if (error)
    624   1.79   mycroft 			return (error);
    625   1.79   mycroft 	}
    626  1.130   thorpej 	p = l->l_proc;
    627   1.79   mycroft 	error = sigprocmask1(p, SCARG(uap, how),
    628   1.79   mycroft 	    SCARG(uap, set) ? &nss : 0, SCARG(uap, oset) ? &oss : 0);
    629   1.79   mycroft 	if (error)
    630   1.79   mycroft 		return (error);
    631   1.79   mycroft 	if (SCARG(uap, oset)) {
    632   1.79   mycroft 		error = copyout(&oss, SCARG(uap, oset), sizeof(oss));
    633   1.79   mycroft 		if (error)
    634   1.79   mycroft 			return (error);
    635   1.79   mycroft 	}
    636   1.79   mycroft 	return (0);
    637   1.79   mycroft }
    638   1.79   mycroft 
    639   1.79   mycroft void
    640  1.112     lukem sigpending1(struct proc *p, sigset_t *ss)
    641   1.79   mycroft {
    642   1.29       cgd 
    643  1.109  jdolecek 	*ss = p->p_sigctx.ps_siglist;
    644  1.109  jdolecek 	sigminusset(&p->p_sigctx.ps_sigmask, ss);
    645   1.29       cgd }
    646   1.29       cgd 
    647   1.29       cgd /* ARGSUSED */
    648   1.52  christos int
    649  1.130   thorpej sys___sigpending14(struct lwp *l, void *v, register_t *retval)
    650   1.29       cgd {
    651   1.98  augustss 	struct sys___sigpending14_args /* {
    652  1.112     lukem 		syscallarg(sigset_t *)	set;
    653   1.79   mycroft 	} */ *uap = v;
    654  1.130   thorpej 	struct proc	*p;
    655  1.130   thorpej 	sigset_t	ss;
    656   1.79   mycroft 
    657  1.130   thorpej 	p = l->l_proc;
    658   1.79   mycroft 	sigpending1(p, &ss);
    659   1.79   mycroft 	return (copyout(&ss, SCARG(uap, set), sizeof(ss)));
    660   1.79   mycroft }
    661   1.79   mycroft 
    662   1.79   mycroft int
    663  1.112     lukem sigsuspend1(struct proc *p, const sigset_t *ss)
    664   1.79   mycroft {
    665  1.112     lukem 	struct sigacts *ps;
    666   1.29       cgd 
    667  1.112     lukem 	ps = p->p_sigacts;
    668   1.79   mycroft 	if (ss) {
    669   1.79   mycroft 		/*
    670   1.79   mycroft 		 * When returning from sigpause, we want
    671   1.79   mycroft 		 * the old mask to be restored after the
    672   1.79   mycroft 		 * signal handler has finished.  Thus, we
    673  1.109  jdolecek 		 * save it here and mark the sigctx structure
    674   1.79   mycroft 		 * to indicate this.
    675   1.79   mycroft 		 */
    676  1.109  jdolecek 		p->p_sigctx.ps_oldmask = p->p_sigctx.ps_sigmask;
    677  1.109  jdolecek 		p->p_sigctx.ps_flags |= SAS_OLDMASK;
    678  1.105   thorpej 		(void) splsched();	/* XXXSMP */
    679  1.109  jdolecek 		p->p_sigctx.ps_sigmask = *ss;
    680  1.110   thorpej 		CHECKSIGS(p);
    681  1.109  jdolecek 		sigminusset(&sigcantmask, &p->p_sigctx.ps_sigmask);
    682  1.104   thorpej 		(void) spl0();		/* XXXSMP */
    683   1.79   mycroft 	}
    684   1.79   mycroft 
    685   1.79   mycroft 	while (tsleep((caddr_t) ps, PPAUSE|PCATCH, "pause", 0) == 0)
    686  1.145   nathanw 		/* void */;
    687  1.202     perry 
    688   1.79   mycroft 	/* always return EINTR rather than ERESTART... */
    689   1.79   mycroft 	return (EINTR);
    690   1.29       cgd }
    691   1.29       cgd 
    692   1.29       cgd /*
    693   1.29       cgd  * Suspend process until signal, providing mask to be set
    694   1.29       cgd  * in the meantime.  Note nonstandard calling convention:
    695   1.29       cgd  * libc stub passes mask, not pointer, to save a copyin.
    696   1.29       cgd  */
    697   1.29       cgd /* ARGSUSED */
    698   1.29       cgd int
    699  1.130   thorpej sys___sigsuspend14(struct lwp *l, void *v, register_t *retval)
    700   1.48   thorpej {
    701   1.79   mycroft 	struct sys___sigsuspend14_args /* {
    702  1.112     lukem 		syscallarg(const sigset_t *)	set;
    703   1.48   thorpej 	} */ *uap = v;
    704  1.130   thorpej 	struct proc	*p;
    705  1.112     lukem 	sigset_t	ss;
    706  1.112     lukem 	int		error;
    707   1.79   mycroft 
    708   1.79   mycroft 	if (SCARG(uap, set)) {
    709   1.79   mycroft 		error = copyin(SCARG(uap, set), &ss, sizeof(ss));
    710   1.79   mycroft 		if (error)
    711   1.79   mycroft 			return (error);
    712   1.79   mycroft 	}
    713   1.79   mycroft 
    714  1.130   thorpej 	p = l->l_proc;
    715   1.79   mycroft 	return (sigsuspend1(p, SCARG(uap, set) ? &ss : 0));
    716   1.79   mycroft }
    717   1.79   mycroft 
    718   1.79   mycroft int
    719  1.112     lukem sigaltstack1(struct proc *p, const struct sigaltstack *nss,
    720  1.112     lukem 	struct sigaltstack *oss)
    721   1.79   mycroft {
    722  1.112     lukem 
    723   1.79   mycroft 	if (oss)
    724  1.109  jdolecek 		*oss = p->p_sigctx.ps_sigstk;
    725   1.79   mycroft 
    726   1.79   mycroft 	if (nss) {
    727   1.79   mycroft 		if (nss->ss_flags & ~SS_ALLBITS)
    728   1.79   mycroft 			return (EINVAL);
    729   1.79   mycroft 
    730   1.79   mycroft 		if (nss->ss_flags & SS_DISABLE) {
    731  1.109  jdolecek 			if (p->p_sigctx.ps_sigstk.ss_flags & SS_ONSTACK)
    732   1.79   mycroft 				return (EINVAL);
    733   1.79   mycroft 		} else {
    734   1.79   mycroft 			if (nss->ss_size < MINSIGSTKSZ)
    735   1.79   mycroft 				return (ENOMEM);
    736   1.79   mycroft 		}
    737  1.109  jdolecek 		p->p_sigctx.ps_sigstk = *nss;
    738   1.79   mycroft 	}
    739   1.79   mycroft 
    740   1.79   mycroft 	return (0);
    741   1.29       cgd }
    742   1.29       cgd 
    743   1.29       cgd /* ARGSUSED */
    744   1.52  christos int
    745  1.130   thorpej sys___sigaltstack14(struct lwp *l, void *v, register_t *retval)
    746   1.48   thorpej {
    747   1.98  augustss 	struct sys___sigaltstack14_args /* {
    748  1.112     lukem 		syscallarg(const struct sigaltstack *)	nss;
    749  1.112     lukem 		syscallarg(struct sigaltstack *)	oss;
    750   1.48   thorpej 	} */ *uap = v;
    751  1.130   thorpej 	struct proc		*p;
    752  1.112     lukem 	struct sigaltstack	nss, oss;
    753  1.112     lukem 	int			error;
    754   1.29       cgd 
    755   1.79   mycroft 	if (SCARG(uap, nss)) {
    756   1.79   mycroft 		error = copyin(SCARG(uap, nss), &nss, sizeof(nss));
    757   1.79   mycroft 		if (error)
    758   1.79   mycroft 			return (error);
    759   1.79   mycroft 	}
    760  1.130   thorpej 	p = l->l_proc;
    761   1.79   mycroft 	error = sigaltstack1(p,
    762   1.79   mycroft 	    SCARG(uap, nss) ? &nss : 0, SCARG(uap, oss) ? &oss : 0);
    763   1.52  christos 	if (error)
    764   1.29       cgd 		return (error);
    765   1.79   mycroft 	if (SCARG(uap, oss)) {
    766   1.79   mycroft 		error = copyout(&oss, SCARG(uap, oss), sizeof(oss));
    767   1.79   mycroft 		if (error)
    768   1.79   mycroft 			return (error);
    769   1.29       cgd 	}
    770   1.29       cgd 	return (0);
    771   1.29       cgd }
    772   1.29       cgd 
    773   1.29       cgd /* ARGSUSED */
    774   1.29       cgd int
    775  1.130   thorpej sys_kill(struct lwp *l, void *v, register_t *retval)
    776   1.48   thorpej {
    777   1.98  augustss 	struct sys_kill_args /* {
    778  1.112     lukem 		syscallarg(int)	pid;
    779  1.112     lukem 		syscallarg(int)	signum;
    780   1.48   thorpej 	} */ *uap = v;
    781  1.130   thorpej 	struct proc	*cp, *p;
    782  1.112     lukem 	struct pcred	*pc;
    783  1.148  christos 	ksiginfo_t	ksi;
    784   1.29       cgd 
    785  1.130   thorpej 	cp = l->l_proc;
    786  1.112     lukem 	pc = cp->p_cred;
    787   1.32       cgd 	if ((u_int)SCARG(uap, signum) >= NSIG)
    788   1.29       cgd 		return (EINVAL);
    789  1.191      matt 	KSI_INIT(&ksi);
    790  1.148  christos 	ksi.ksi_signo = SCARG(uap, signum);
    791  1.148  christos 	ksi.ksi_code = SI_USER;
    792  1.148  christos 	ksi.ksi_pid = cp->p_pid;
    793  1.148  christos 	ksi.ksi_uid = cp->p_ucred->cr_uid;
    794   1.32       cgd 	if (SCARG(uap, pid) > 0) {
    795   1.29       cgd 		/* kill single process */
    796   1.32       cgd 		if ((p = pfind(SCARG(uap, pid))) == NULL)
    797   1.29       cgd 			return (ESRCH);
    798   1.32       cgd 		if (!CANSIGNAL(cp, pc, p, SCARG(uap, signum)))
    799   1.29       cgd 			return (EPERM);
    800   1.32       cgd 		if (SCARG(uap, signum))
    801  1.160  christos 			kpsignal2(p, &ksi, 1);
    802   1.29       cgd 		return (0);
    803   1.29       cgd 	}
    804   1.32       cgd 	switch (SCARG(uap, pid)) {
    805   1.29       cgd 	case -1:		/* broadcast signal */
    806  1.148  christos 		return (killpg1(cp, &ksi, 0, 1));
    807   1.29       cgd 	case 0:			/* signal own process group */
    808  1.148  christos 		return (killpg1(cp, &ksi, 0, 0));
    809   1.29       cgd 	default:		/* negative explicit process group */
    810  1.148  christos 		return (killpg1(cp, &ksi, -SCARG(uap, pid), 0));
    811   1.29       cgd 	}
    812   1.29       cgd 	/* NOTREACHED */
    813   1.29       cgd }
    814   1.29       cgd 
    815   1.29       cgd /*
    816   1.29       cgd  * Common code for kill process group/broadcast kill.
    817   1.29       cgd  * cp is calling process.
    818   1.29       cgd  */
    819   1.52  christos int
    820  1.148  christos killpg1(struct proc *cp, ksiginfo_t *ksi, int pgid, int all)
    821   1.29       cgd {
    822  1.112     lukem 	struct proc	*p;
    823  1.112     lukem 	struct pcred	*pc;
    824  1.112     lukem 	struct pgrp	*pgrp;
    825  1.112     lukem 	int		nfound;
    826  1.148  christos 	int		signum = ksi->ksi_signo;
    827  1.202     perry 
    828  1.112     lukem 	pc = cp->p_cred;
    829  1.112     lukem 	nfound = 0;
    830   1.91   thorpej 	if (all) {
    831  1.202     perry 		/*
    832  1.202     perry 		 * broadcast
    833   1.29       cgd 		 */
    834   1.92   thorpej 		proclist_lock_read();
    835  1.199      yamt 		PROCLIST_FOREACH(p, &allproc) {
    836  1.202     perry 			if (p->p_pid <= 1 || p->p_flag & P_SYSTEM ||
    837   1.29       cgd 			    p == cp || !CANSIGNAL(cp, pc, p, signum))
    838   1.29       cgd 				continue;
    839   1.29       cgd 			nfound++;
    840   1.29       cgd 			if (signum)
    841  1.160  christos 				kpsignal2(p, ksi, 1);
    842   1.29       cgd 		}
    843   1.91   thorpej 		proclist_unlock_read();
    844   1.91   thorpej 	} else {
    845  1.202     perry 		if (pgid == 0)
    846  1.202     perry 			/*
    847   1.29       cgd 			 * zero pgid means send to my process group.
    848   1.29       cgd 			 */
    849   1.29       cgd 			pgrp = cp->p_pgrp;
    850   1.29       cgd 		else {
    851   1.29       cgd 			pgrp = pgfind(pgid);
    852   1.29       cgd 			if (pgrp == NULL)
    853   1.29       cgd 				return (ESRCH);
    854   1.29       cgd 		}
    855  1.124      matt 		LIST_FOREACH(p, &pgrp->pg_members, p_pglist) {
    856   1.29       cgd 			if (p->p_pid <= 1 || p->p_flag & P_SYSTEM ||
    857   1.29       cgd 			    !CANSIGNAL(cp, pc, p, signum))
    858   1.29       cgd 				continue;
    859   1.29       cgd 			nfound++;
    860   1.90   thorpej 			if (signum && P_ZOMBIE(p) == 0)
    861  1.160  christos 				kpsignal2(p, ksi, 1);
    862   1.29       cgd 		}
    863   1.29       cgd 	}
    864   1.29       cgd 	return (nfound ? 0 : ESRCH);
    865   1.29       cgd }
    866   1.29       cgd 
    867   1.29       cgd /*
    868   1.29       cgd  * Send a signal to a process group.
    869   1.29       cgd  */
    870   1.29       cgd void
    871  1.112     lukem gsignal(int pgid, int signum)
    872   1.29       cgd {
    873  1.148  christos 	ksiginfo_t ksi;
    874  1.192      matt 	KSI_INIT_EMPTY(&ksi);
    875  1.148  christos 	ksi.ksi_signo = signum;
    876  1.148  christos 	kgsignal(pgid, &ksi, NULL);
    877  1.148  christos }
    878  1.148  christos 
    879  1.148  christos void
    880  1.148  christos kgsignal(int pgid, ksiginfo_t *ksi, void *data)
    881  1.148  christos {
    882   1.29       cgd 	struct pgrp *pgrp;
    883   1.29       cgd 
    884   1.29       cgd 	if (pgid && (pgrp = pgfind(pgid)))
    885  1.148  christos 		kpgsignal(pgrp, ksi, data, 0);
    886   1.29       cgd }
    887   1.29       cgd 
    888   1.29       cgd /*
    889   1.71      fvdl  * Send a signal to a process group. If checktty is 1,
    890   1.29       cgd  * limit to members which have a controlling terminal.
    891   1.29       cgd  */
    892   1.29       cgd void
    893  1.148  christos pgsignal(struct pgrp *pgrp, int sig, int checkctty)
    894  1.148  christos {
    895  1.148  christos 	ksiginfo_t ksi;
    896  1.192      matt 	KSI_INIT_EMPTY(&ksi);
    897  1.148  christos 	ksi.ksi_signo = sig;
    898  1.148  christos 	kpgsignal(pgrp, &ksi, NULL, checkctty);
    899  1.148  christos }
    900  1.148  christos 
    901  1.148  christos void
    902  1.148  christos kpgsignal(struct pgrp *pgrp, ksiginfo_t *ksi, void *data, int checkctty)
    903   1.29       cgd {
    904   1.98  augustss 	struct proc *p;
    905   1.29       cgd 
    906   1.29       cgd 	if (pgrp)
    907  1.124      matt 		LIST_FOREACH(p, &pgrp->pg_members, p_pglist)
    908   1.29       cgd 			if (checkctty == 0 || p->p_flag & P_CONTROLT)
    909  1.148  christos 				kpsignal(p, ksi, data);
    910   1.29       cgd }
    911   1.29       cgd 
    912   1.29       cgd /*
    913   1.29       cgd  * Send a signal caused by a trap to the current process.
    914   1.29       cgd  * If it will be caught immediately, deliver it with correct code.
    915   1.29       cgd  * Otherwise, post it normally.
    916   1.29       cgd  */
    917  1.148  christos void
    918  1.160  christos trapsignal(struct lwp *l, const ksiginfo_t *ksi)
    919  1.148  christos {
    920  1.130   thorpej 	struct proc	*p;
    921  1.130   thorpej 	struct sigacts	*ps;
    922  1.148  christos 	int signum = ksi->ksi_signo;
    923   1.29       cgd 
    924  1.166   thorpej 	KASSERT(KSI_TRAP_P(ksi));
    925  1.166   thorpej 
    926  1.130   thorpej 	p = l->l_proc;
    927  1.112     lukem 	ps = p->p_sigacts;
    928   1.79   mycroft 	if ((p->p_flag & P_TRACED) == 0 &&
    929  1.109  jdolecek 	    sigismember(&p->p_sigctx.ps_sigcatch, signum) &&
    930  1.109  jdolecek 	    !sigismember(&p->p_sigctx.ps_sigmask, signum)) {
    931   1.29       cgd 		p->p_stats->p_ru.ru_nsignals++;
    932   1.29       cgd #ifdef KTRACE
    933   1.29       cgd 		if (KTRPOINT(p, KTR_PSIG))
    934  1.212  christos 			ktrpsig(l, signum, SIGACTION_PS(ps, signum).sa_handler,
    935  1.157  christos 			    &p->p_sigctx.ps_sigmask, ksi);
    936   1.29       cgd #endif
    937  1.148  christos 		kpsendsig(l, ksi, &p->p_sigctx.ps_sigmask);
    938  1.105   thorpej 		(void) splsched();	/* XXXSMP */
    939  1.112     lukem 		sigplusset(&SIGACTION_PS(ps, signum).sa_mask,
    940  1.112     lukem 		    &p->p_sigctx.ps_sigmask);
    941  1.109  jdolecek 		if (SIGACTION_PS(ps, signum).sa_flags & SA_RESETHAND) {
    942  1.109  jdolecek 			sigdelset(&p->p_sigctx.ps_sigcatch, signum);
    943   1.45   mycroft 			if (signum != SIGCONT && sigprop[signum] & SA_IGNORE)
    944  1.109  jdolecek 				sigaddset(&p->p_sigctx.ps_sigignore, signum);
    945  1.109  jdolecek 			SIGACTION_PS(ps, signum).sa_handler = SIG_DFL;
    946   1.45   mycroft 		}
    947  1.104   thorpej 		(void) spl0();		/* XXXSMP */
    948   1.29       cgd 	} else {
    949  1.152  christos 		p->p_sigctx.ps_lwp = l->l_lid;
    950  1.148  christos 		/* XXX for core dump/debugger */
    951  1.152  christos 		p->p_sigctx.ps_signo = ksi->ksi_signo;
    952  1.152  christos 		p->p_sigctx.ps_code = ksi->ksi_trap;
    953  1.160  christos 		kpsignal2(p, ksi, 1);
    954   1.29       cgd 	}
    955   1.29       cgd }
    956   1.29       cgd 
    957   1.29       cgd /*
    958  1.151  christos  * Fill in signal information and signal the parent for a child status change.
    959  1.151  christos  */
    960  1.151  christos static void
    961  1.151  christos child_psignal(struct proc *p, int dolock)
    962  1.151  christos {
    963  1.151  christos 	ksiginfo_t ksi;
    964  1.151  christos 
    965  1.191      matt 	KSI_INIT(&ksi);
    966  1.151  christos 	ksi.ksi_signo = SIGCHLD;
    967  1.151  christos 	ksi.ksi_code = p->p_xstat == SIGCONT ? CLD_CONTINUED : CLD_STOPPED;
    968  1.151  christos 	ksi.ksi_pid = p->p_pid;
    969  1.151  christos 	ksi.ksi_uid = p->p_ucred->cr_uid;
    970  1.151  christos 	ksi.ksi_status = p->p_xstat;
    971  1.151  christos 	ksi.ksi_utime = p->p_stats->p_ru.ru_utime.tv_sec;
    972  1.151  christos 	ksi.ksi_stime = p->p_stats->p_ru.ru_stime.tv_sec;
    973  1.160  christos 	kpsignal2(p->p_pptr, &ksi, dolock);
    974  1.151  christos }
    975  1.151  christos 
    976  1.151  christos /*
    977   1.29       cgd  * Send the signal to the process.  If the signal has an action, the action
    978   1.29       cgd  * is usually performed by the target process rather than the caller; we add
    979   1.29       cgd  * the signal to the set of pending signals for the process.
    980   1.29       cgd  *
    981   1.29       cgd  * Exceptions:
    982   1.29       cgd  *   o When a stop signal is sent to a sleeping process that takes the
    983   1.29       cgd  *     default action, the process is stopped without awakening it.
    984   1.29       cgd  *   o SIGCONT restarts stopped processes (or puts them back to sleep)
    985   1.29       cgd  *     regardless of the signal action (eg, blocked or ignored).
    986   1.29       cgd  *
    987   1.29       cgd  * Other ignored signals are discarded immediately.
    988  1.104   thorpej  *
    989  1.104   thorpej  * XXXSMP: Invoked as psignal() or sched_psignal().
    990   1.29       cgd  */
    991   1.29       cgd void
    992  1.148  christos psignal1(struct proc *p, int signum, int dolock)
    993  1.148  christos {
    994  1.165   thorpej 	ksiginfo_t ksi;
    995  1.165   thorpej 
    996  1.192      matt 	KSI_INIT_EMPTY(&ksi);
    997  1.165   thorpej 	ksi.ksi_signo = signum;
    998  1.165   thorpej 	kpsignal2(p, &ksi, dolock);
    999  1.148  christos }
   1000  1.148  christos 
   1001  1.148  christos void
   1002  1.160  christos kpsignal1(struct proc *p, ksiginfo_t *ksi, void *data, int dolock)
   1003  1.160  christos {
   1004  1.165   thorpej 
   1005  1.164  christos 	if ((p->p_flag & P_WEXIT) == 0 && data) {
   1006  1.160  christos 		size_t fd;
   1007  1.160  christos 		struct filedesc *fdp = p->p_fd;
   1008  1.165   thorpej 
   1009  1.160  christos 		ksi->ksi_fd = -1;
   1010  1.160  christos 		for (fd = 0; fd < fdp->fd_nfiles; fd++) {
   1011  1.160  christos 			struct file *fp = fdp->fd_ofiles[fd];
   1012  1.160  christos 			/* XXX: lock? */
   1013  1.160  christos 			if (fp && fp->f_data == data) {
   1014  1.160  christos 				ksi->ksi_fd = fd;
   1015  1.160  christos 				break;
   1016  1.160  christos 			}
   1017  1.160  christos 		}
   1018  1.160  christos 	}
   1019  1.160  christos 	kpsignal2(p, ksi, dolock);
   1020  1.160  christos }
   1021  1.160  christos 
   1022  1.202     perry static void
   1023  1.160  christos kpsignal2(struct proc *p, const ksiginfo_t *ksi, int dolock)
   1024   1.29       cgd {
   1025  1.170  christos 	struct lwp *l, *suspended = NULL;
   1026  1.187        cl 	struct sadata_vp *vp;
   1027  1.130   thorpej 	int	s = 0, prop, allsusp;
   1028  1.112     lukem 	sig_t	action;
   1029  1.148  christos 	int	signum = ksi->ksi_signo;
   1030   1.29       cgd 
   1031   1.79   mycroft #ifdef DIAGNOSTIC
   1032   1.79   mycroft 	if (signum <= 0 || signum >= NSIG)
   1033  1.148  christos 		panic("psignal signal number %d", signum);
   1034  1.148  christos 
   1035  1.104   thorpej 	/* XXXSMP: works, but icky */
   1036  1.104   thorpej 	if (dolock)
   1037  1.104   thorpej 		SCHED_ASSERT_UNLOCKED();
   1038  1.104   thorpej 	else
   1039  1.104   thorpej 		SCHED_ASSERT_LOCKED();
   1040   1.79   mycroft #endif
   1041  1.148  christos 
   1042  1.183      fvdl 	/*
   1043  1.126  jdolecek 	 * Notify any interested parties in the signal.
   1044  1.126  jdolecek 	 */
   1045  1.126  jdolecek 	KNOTE(&p->p_klist, NOTE_SIGNAL | signum);
   1046  1.126  jdolecek 
   1047   1.29       cgd 	prop = sigprop[signum];
   1048   1.29       cgd 
   1049   1.29       cgd 	/*
   1050   1.29       cgd 	 * If proc is traced, always give parent a chance.
   1051   1.29       cgd 	 */
   1052  1.198  jdolecek 	if (p->p_flag & P_TRACED) {
   1053  1.198  jdolecek 		action = SIG_DFL;
   1054  1.198  jdolecek 
   1055  1.198  jdolecek 		/*
   1056  1.198  jdolecek 		 * If the process is being traced and the signal is being
   1057  1.198  jdolecek 		 * caught, make sure to save any ksiginfo.
   1058  1.198  jdolecek 		 */
   1059  1.198  jdolecek 		if (sigismember(&p->p_sigctx.ps_sigcatch, signum))
   1060  1.198  jdolecek 			ksiginfo_put(p, ksi);
   1061  1.198  jdolecek 	} else {
   1062  1.198  jdolecek 		/*
   1063  1.198  jdolecek 		 * If the signal was the result of a trap, reset it
   1064  1.198  jdolecek 		 * to default action if it's currently masked, so that it would
   1065  1.198  jdolecek 		 * coredump immediatelly instead of spinning repeatedly
   1066  1.198  jdolecek 		 * taking the signal.
   1067  1.198  jdolecek 		 */
   1068  1.198  jdolecek 		if (KSI_TRAP_P(ksi)
   1069  1.198  jdolecek 		    && sigismember(&p->p_sigctx.ps_sigmask, signum)
   1070  1.198  jdolecek 		    && !sigismember(&p->p_sigctx.ps_sigcatch, signum)) {
   1071  1.198  jdolecek 			sigdelset(&p->p_sigctx.ps_sigignore, signum);
   1072  1.198  jdolecek 			sigdelset(&p->p_sigctx.ps_sigcatch, signum);
   1073  1.198  jdolecek 			sigdelset(&p->p_sigctx.ps_sigmask, signum);
   1074  1.198  jdolecek 			SIGACTION(p, signum).sa_handler = SIG_DFL;
   1075  1.190      matt 		}
   1076  1.198  jdolecek 
   1077  1.198  jdolecek 		/*
   1078  1.198  jdolecek 		 * If the signal is being ignored,
   1079  1.198  jdolecek 		 * then we forget about it immediately.
   1080  1.198  jdolecek 		 * (Note: we don't set SIGCONT in p_sigctx.ps_sigignore,
   1081  1.198  jdolecek 		 * and if it is set to SIG_IGN,
   1082  1.198  jdolecek 		 * action will be SIG_DFL here.)
   1083  1.198  jdolecek 		 */
   1084  1.198  jdolecek 		if (sigismember(&p->p_sigctx.ps_sigignore, signum))
   1085  1.198  jdolecek 			return;
   1086  1.198  jdolecek 		if (sigismember(&p->p_sigctx.ps_sigmask, signum))
   1087  1.198  jdolecek 			action = SIG_HOLD;
   1088  1.198  jdolecek 		else if (sigismember(&p->p_sigctx.ps_sigcatch, signum))
   1089  1.198  jdolecek 			action = SIG_CATCH;
   1090  1.198  jdolecek 		else {
   1091  1.198  jdolecek 			action = SIG_DFL;
   1092  1.198  jdolecek 
   1093   1.44   mycroft 			if (prop & SA_KILL && p->p_nice > NZERO)
   1094   1.44   mycroft 				p->p_nice = NZERO;
   1095   1.44   mycroft 
   1096   1.44   mycroft 			/*
   1097   1.44   mycroft 			 * If sending a tty stop signal to a member of an
   1098   1.44   mycroft 			 * orphaned process group, discard the signal here if
   1099   1.44   mycroft 			 * the action is default; don't stop the process below
   1100   1.44   mycroft 			 * if sleeping, and don't clear any pending SIGCONT.
   1101   1.44   mycroft 			 */
   1102   1.44   mycroft 			if (prop & SA_TTYSTOP && p->p_pgrp->pg_jobc == 0)
   1103   1.44   mycroft 				return;
   1104   1.44   mycroft 		}
   1105   1.29       cgd 	}
   1106   1.29       cgd 
   1107   1.29       cgd 	if (prop & SA_CONT)
   1108  1.109  jdolecek 		sigminusset(&stopsigmask, &p->p_sigctx.ps_siglist);
   1109   1.29       cgd 
   1110   1.44   mycroft 	if (prop & SA_STOP)
   1111  1.109  jdolecek 		sigminusset(&contsigmask, &p->p_sigctx.ps_siglist);
   1112   1.44   mycroft 
   1113   1.29       cgd 	/*
   1114  1.135  jdolecek 	 * If the signal doesn't have SA_CANTMASK (no override for SIGKILL,
   1115  1.171  jdolecek 	 * please!), check if anything waits on it. If yes, save the
   1116  1.171  jdolecek 	 * info into provided ps_sigwaited, and wake-up the waiter.
   1117  1.135  jdolecek 	 * The signal won't be processed further here.
   1118  1.135  jdolecek 	 */
   1119  1.135  jdolecek 	if ((prop & SA_CANTMASK) == 0
   1120  1.171  jdolecek 	    && p->p_sigctx.ps_sigwaited
   1121  1.171  jdolecek 	    && sigismember(p->p_sigctx.ps_sigwait, signum)
   1122  1.152  christos 	    && p->p_stat != SSTOP) {
   1123  1.171  jdolecek 		p->p_sigctx.ps_sigwaited->ksi_info = ksi->ksi_info;
   1124  1.171  jdolecek 		p->p_sigctx.ps_sigwaited = NULL;
   1125  1.135  jdolecek 		if (dolock)
   1126  1.135  jdolecek 			wakeup_one(&p->p_sigctx.ps_sigwait);
   1127  1.135  jdolecek 		else
   1128  1.135  jdolecek 			sched_wakeup(&p->p_sigctx.ps_sigwait);
   1129  1.135  jdolecek 		return;
   1130  1.135  jdolecek 	}
   1131  1.135  jdolecek 
   1132  1.171  jdolecek 	sigaddset(&p->p_sigctx.ps_siglist, signum);
   1133  1.171  jdolecek 
   1134  1.171  jdolecek 	/* CHECKSIGS() is "inlined" here. */
   1135  1.171  jdolecek 	p->p_sigctx.ps_sigcheck = 1;
   1136  1.171  jdolecek 
   1137  1.135  jdolecek 	/*
   1138   1.29       cgd 	 * Defer further processing for signals which are held,
   1139   1.29       cgd 	 * except that stopped processes must be continued by SIGCONT.
   1140   1.29       cgd 	 */
   1141  1.152  christos 	if (action == SIG_HOLD &&
   1142  1.152  christos 	    ((prop & SA_CONT) == 0 || p->p_stat != SSTOP)) {
   1143  1.155  christos 		ksiginfo_put(p, ksi);
   1144   1.29       cgd 		return;
   1145  1.152  christos 	}
   1146  1.104   thorpej 	/* XXXSMP: works, but icky */
   1147  1.104   thorpej 	if (dolock)
   1148  1.104   thorpej 		SCHED_LOCK(s);
   1149  1.104   thorpej 
   1150  1.175        cl 	if (p->p_flag & P_SA) {
   1151  1.175        cl 		allsusp = 0;
   1152  1.187        cl 		l = NULL;
   1153  1.175        cl 		if (p->p_stat == SACTIVE) {
   1154  1.187        cl 			SLIST_FOREACH(vp, &p->p_sa->sa_vps, savp_next) {
   1155  1.187        cl 				l = vp->savp_lwp;
   1156  1.187        cl 				KDASSERT(l != NULL);
   1157  1.187        cl 				if (l->l_flag & L_SA_IDLE) {
   1158  1.187        cl 					/* wakeup idle LWP */
   1159  1.187        cl 					goto found;
   1160  1.187        cl 					/*NOTREACHED*/
   1161  1.187        cl 				} else if (l->l_flag & L_SA_YIELD) {
   1162  1.187        cl 					/* idle LWP is already waking up */
   1163  1.187        cl 					goto out;
   1164  1.187        cl 					/*NOTREACHED*/
   1165  1.187        cl 				}
   1166  1.187        cl 			}
   1167  1.187        cl 			SLIST_FOREACH(vp, &p->p_sa->sa_vps, savp_next) {
   1168  1.187        cl 				l = vp->savp_lwp;
   1169  1.175        cl 				if (l->l_stat == LSRUN ||
   1170  1.175        cl 				    l->l_stat == LSONPROC) {
   1171  1.175        cl 					signotify(p);
   1172  1.175        cl 					goto out;
   1173  1.175        cl 					/*NOTREACHED*/
   1174  1.175        cl 				}
   1175  1.202     perry 				if (l->l_stat == LSSLEEP &&
   1176  1.175        cl 				    l->l_flag & L_SINTR) {
   1177  1.175        cl 					/* ok to signal vp lwp */
   1178  1.211       chs 					break;
   1179  1.175        cl 				} else
   1180  1.175        cl 					l = NULL;
   1181  1.175        cl 			}
   1182  1.175        cl 		} else if (p->p_stat == SSTOP) {
   1183  1.187        cl 			SLIST_FOREACH(vp, &p->p_sa->sa_vps, savp_next) {
   1184  1.187        cl 				l = vp->savp_lwp;
   1185  1.187        cl 				if (l->l_stat == LSSLEEP && (l->l_flag & L_SINTR) != 0)
   1186  1.187        cl 					break;
   1187  1.175        cl 				l = NULL;
   1188  1.187        cl 			}
   1189  1.175        cl 		}
   1190  1.175        cl 	} else if (p->p_nrlwps > 0 && (p->p_stat != SSTOP)) {
   1191   1.29       cgd 		/*
   1192  1.202     perry 		 * At least one LWP is running or on a run queue.
   1193  1.202     perry 		 * The signal will be noticed when one of them returns
   1194  1.130   thorpej 		 * to userspace.
   1195   1.29       cgd 		 */
   1196  1.130   thorpej 		signotify(p);
   1197  1.202     perry 		/*
   1198  1.130   thorpej 		 * The signal will be noticed very soon.
   1199   1.29       cgd 		 */
   1200  1.130   thorpej 		goto out;
   1201  1.175        cl 		/*NOTREACHED*/
   1202  1.130   thorpej 	} else {
   1203  1.175        cl 		/*
   1204  1.175        cl 		 * Find out if any of the sleeps are interruptable,
   1205  1.175        cl 		 * and if all the live LWPs remaining are suspended.
   1206  1.175        cl 		 */
   1207  1.175        cl 		allsusp = 1;
   1208  1.175        cl 		LIST_FOREACH(l, &p->p_lwps, l_sibling) {
   1209  1.202     perry 			if (l->l_stat == LSSLEEP &&
   1210  1.175        cl 			    l->l_flag & L_SINTR)
   1211  1.175        cl 				break;
   1212  1.175        cl 			if (l->l_stat == LSSUSPENDED)
   1213  1.175        cl 				suspended = l;
   1214  1.202     perry 			else if ((l->l_stat != LSZOMB) &&
   1215  1.175        cl 			    (l->l_stat != LSDEAD))
   1216  1.144      fvdl 				allsusp = 0;
   1217   1.29       cgd 		}
   1218  1.175        cl 	}
   1219  1.175        cl 
   1220  1.187        cl  found:
   1221  1.186  christos 	switch (p->p_stat) {
   1222  1.186  christos 	case SACTIVE:
   1223  1.130   thorpej 
   1224  1.176        cl 		if (l != NULL && (p->p_flag & P_TRACED))
   1225  1.176        cl 			goto run;
   1226  1.202     perry 
   1227  1.176        cl 		/*
   1228  1.176        cl 		 * If SIGCONT is default (or ignored) and process is
   1229  1.176        cl 		 * asleep, we are finished; the process should not
   1230  1.176        cl 		 * be awakened.
   1231  1.176        cl 		 */
   1232  1.176        cl 		if ((prop & SA_CONT) && action == SIG_DFL) {
   1233  1.176        cl 			sigdelset(&p->p_sigctx.ps_siglist, signum);
   1234  1.176        cl 			goto done;
   1235  1.176        cl 		}
   1236  1.176        cl 
   1237  1.176        cl 		/*
   1238  1.176        cl 		 * When a sleeping process receives a stop
   1239  1.176        cl 		 * signal, process immediately if possible.
   1240  1.176        cl 		 */
   1241  1.176        cl 		if ((prop & SA_STOP) && action == SIG_DFL) {
   1242   1.29       cgd 			/*
   1243  1.176        cl 			 * If a child holding parent blocked,
   1244  1.176        cl 			 * stopping could cause deadlock.
   1245   1.29       cgd 			 */
   1246  1.176        cl 			if (p->p_flag & P_PPWAIT) {
   1247  1.176        cl 				goto out;
   1248  1.130   thorpej 			}
   1249  1.176        cl 			sigdelset(&p->p_sigctx.ps_siglist, signum);
   1250  1.176        cl 			p->p_xstat = signum;
   1251  1.176        cl 			if ((p->p_pptr->p_flag & P_NOCLDSTOP) == 0) {
   1252  1.104   thorpej 				/*
   1253  1.176        cl 				 * XXXSMP: recursive call; don't lock
   1254  1.176        cl 				 * the second time around.
   1255  1.104   thorpej 				 */
   1256  1.176        cl 				child_psignal(p, 0);
   1257  1.104   thorpej 			}
   1258  1.180      manu 			proc_stop(p, 1);	/* XXXSMP: recurse? */
   1259  1.176        cl 			goto done;
   1260  1.176        cl 		}
   1261   1.29       cgd 
   1262  1.176        cl 		if (l == NULL) {
   1263  1.130   thorpej 			/*
   1264  1.176        cl 			 * Special case: SIGKILL of a process
   1265  1.176        cl 			 * which is entirely composed of
   1266  1.176        cl 			 * suspended LWPs should succeed. We
   1267  1.176        cl 			 * make this happen by unsuspending one of
   1268  1.176        cl 			 * them.
   1269  1.130   thorpej 			 */
   1270  1.187        cl 			if (allsusp && (signum == SIGKILL)) {
   1271  1.176        cl 				lwp_continue(suspended);
   1272  1.187        cl 			}
   1273  1.176        cl 			goto done;
   1274  1.176        cl 		}
   1275  1.176        cl 		/*
   1276  1.176        cl 		 * All other (caught or default) signals
   1277  1.176        cl 		 * cause the process to run.
   1278  1.176        cl 		 */
   1279  1.176        cl 		goto runfast;
   1280  1.176        cl 		/*NOTREACHED*/
   1281  1.186  christos 	case SSTOP:
   1282  1.176        cl 		/* Process is stopped */
   1283  1.176        cl 		/*
   1284  1.176        cl 		 * If traced process is already stopped,
   1285  1.176        cl 		 * then no further action is necessary.
   1286  1.176        cl 		 */
   1287  1.176        cl 		if (p->p_flag & P_TRACED)
   1288  1.176        cl 			goto done;
   1289   1.29       cgd 
   1290  1.176        cl 		/*
   1291  1.176        cl 		 * Kill signal always sets processes running,
   1292  1.176        cl 		 * if possible.
   1293  1.176        cl 		 */
   1294  1.176        cl 		if (signum == SIGKILL) {
   1295  1.176        cl 			l = proc_unstop(p);
   1296  1.176        cl 			if (l)
   1297  1.176        cl 				goto runfast;
   1298  1.176        cl 			goto done;
   1299  1.176        cl 		}
   1300  1.202     perry 
   1301  1.176        cl 		if (prop & SA_CONT) {
   1302   1.29       cgd 			/*
   1303  1.176        cl 			 * If SIGCONT is default (or ignored),
   1304  1.176        cl 			 * we continue the process but don't
   1305  1.176        cl 			 * leave the signal in ps_siglist, as
   1306  1.176        cl 			 * it has no further action.  If
   1307  1.176        cl 			 * SIGCONT is held, we continue the
   1308  1.176        cl 			 * process and leave the signal in
   1309  1.176        cl 			 * ps_siglist.  If the process catches
   1310  1.176        cl 			 * SIGCONT, let it handle the signal
   1311  1.176        cl 			 * itself.  If it isn't waiting on an
   1312  1.176        cl 			 * event, then it goes back to run
   1313  1.176        cl 			 * state.  Otherwise, process goes
   1314  1.202     perry 			 * back to sleep state.
   1315   1.29       cgd 			 */
   1316  1.176        cl 			if (action == SIG_DFL)
   1317  1.202     perry 				sigdelset(&p->p_sigctx.ps_siglist,
   1318  1.176        cl 				    signum);
   1319  1.176        cl 			l = proc_unstop(p);
   1320  1.176        cl 			if (l && (action == SIG_CATCH))
   1321  1.176        cl 				goto runfast;
   1322  1.176        cl 			goto out;
   1323  1.176        cl 		}
   1324   1.29       cgd 
   1325  1.176        cl 		if (prop & SA_STOP) {
   1326   1.29       cgd 			/*
   1327  1.176        cl 			 * Already stopped, don't need to stop again.
   1328  1.176        cl 			 * (If we did the shell could get confused.)
   1329   1.29       cgd 			 */
   1330  1.176        cl 			sigdelset(&p->p_sigctx.ps_siglist, signum);
   1331  1.176        cl 			goto done;
   1332   1.29       cgd 		}
   1333  1.176        cl 
   1334  1.176        cl 		/*
   1335  1.176        cl 		 * If a lwp is sleeping interruptibly, then
   1336  1.176        cl 		 * wake it up; it will run until the kernel
   1337  1.176        cl 		 * boundary, where it will stop in issignal(),
   1338  1.176        cl 		 * since p->p_stat is still SSTOP. When the
   1339  1.176        cl 		 * process is continued, it will be made
   1340  1.176        cl 		 * runnable and can look at the signal.
   1341  1.176        cl 		 */
   1342  1.176        cl 		if (l)
   1343  1.176        cl 			goto run;
   1344  1.176        cl 		goto out;
   1345  1.186  christos 	case SIDL:
   1346  1.186  christos 		/* Process is being created by fork */
   1347  1.186  christos 		/* XXX: We are not ready to receive signals yet */
   1348  1.186  christos 		goto done;
   1349  1.186  christos 	default:
   1350  1.176        cl 		/* Else what? */
   1351  1.176        cl 		panic("psignal: Invalid process state %d.", p->p_stat);
   1352  1.176        cl 	}
   1353   1.29       cgd 	/*NOTREACHED*/
   1354   1.29       cgd 
   1355  1.112     lukem  runfast:
   1356  1.152  christos 	if (action == SIG_CATCH) {
   1357  1.155  christos 		ksiginfo_put(p, ksi);
   1358  1.152  christos 		action = SIG_HOLD;
   1359  1.152  christos 	}
   1360   1.29       cgd 	/*
   1361   1.29       cgd 	 * Raise priority to at least PUSER.
   1362   1.29       cgd 	 */
   1363  1.130   thorpej 	if (l->l_priority > PUSER)
   1364  1.130   thorpej 		l->l_priority = PUSER;
   1365  1.112     lukem  run:
   1366  1.152  christos 	if (action == SIG_CATCH) {
   1367  1.155  christos 		ksiginfo_put(p, ksi);
   1368  1.152  christos 		action = SIG_HOLD;
   1369  1.152  christos 	}
   1370  1.202     perry 
   1371  1.130   thorpej 	setrunnable(l);		/* XXXSMP: recurse? */
   1372  1.112     lukem  out:
   1373  1.152  christos 	if (action == SIG_CATCH)
   1374  1.155  christos 		ksiginfo_put(p, ksi);
   1375  1.152  christos  done:
   1376  1.104   thorpej 	/* XXXSMP: works, but icky */
   1377  1.104   thorpej 	if (dolock)
   1378  1.104   thorpej 		SCHED_UNLOCK(s);
   1379   1.29       cgd }
   1380   1.29       cgd 
   1381  1.209       chs siginfo_t *
   1382  1.209       chs siginfo_alloc(int flags)
   1383  1.209       chs {
   1384  1.209       chs 
   1385  1.209       chs 	return pool_get(&siginfo_pool, flags);
   1386  1.209       chs }
   1387  1.209       chs 
   1388  1.209       chs void
   1389  1.209       chs siginfo_free(void *arg)
   1390  1.209       chs {
   1391  1.209       chs 
   1392  1.209       chs 	pool_put(&siginfo_pool, arg);
   1393  1.209       chs }
   1394  1.209       chs 
   1395  1.130   thorpej void
   1396  1.160  christos kpsendsig(struct lwp *l, const ksiginfo_t *ksi, const sigset_t *mask)
   1397  1.130   thorpej {
   1398  1.130   thorpej 	struct proc *p = l->l_proc;
   1399  1.130   thorpej 	struct lwp *le, *li;
   1400  1.150        cl 	siginfo_t *si;
   1401  1.150        cl 	int f;
   1402  1.130   thorpej 
   1403  1.130   thorpej 	if (p->p_flag & P_SA) {
   1404  1.144      fvdl 
   1405  1.144      fvdl 		/* XXXUPSXXX What if not on sa_vp ? */
   1406  1.144      fvdl 
   1407  1.150        cl 		f = l->l_flag & L_SA;
   1408  1.202     perry 		l->l_flag &= ~L_SA;
   1409  1.209       chs 		si = siginfo_alloc(PR_WAITOK);
   1410  1.166   thorpej 		si->_info = ksi->ksi_info;
   1411  1.130   thorpej 		le = li = NULL;
   1412  1.166   thorpej 		if (KSI_TRAP_P(ksi))
   1413  1.130   thorpej 			le = l;
   1414  1.130   thorpej 		else
   1415  1.130   thorpej 			li = l;
   1416  1.202     perry 		if (sa_upcall(l, SA_UPCALL_SIGNAL | SA_UPCALL_DEFER, le, li,
   1417  1.209       chs 		    sizeof(*si), si, siginfo_free) != 0) {
   1418  1.209       chs 			siginfo_free(si);
   1419  1.200   mycroft 			if (KSI_TRAP_P(ksi))
   1420  1.200   mycroft 				/* XXX What do we do here?? */;
   1421  1.200   mycroft 		}
   1422  1.150        cl 		l->l_flag |= f;
   1423  1.130   thorpej 		return;
   1424  1.130   thorpej 	}
   1425  1.130   thorpej 
   1426  1.148  christos 	(*p->p_emul->e_sendsig)(ksi, mask);
   1427  1.130   thorpej }
   1428  1.130   thorpej 
   1429  1.213     perry static inline int firstsig(const sigset_t *);
   1430   1.79   mycroft 
   1431  1.213     perry static inline int
   1432  1.112     lukem firstsig(const sigset_t *ss)
   1433   1.79   mycroft {
   1434   1.79   mycroft 	int sig;
   1435   1.79   mycroft 
   1436   1.79   mycroft 	sig = ffs(ss->__bits[0]);
   1437   1.79   mycroft 	if (sig != 0)
   1438   1.79   mycroft 		return (sig);
   1439   1.79   mycroft #if NSIG > 33
   1440   1.79   mycroft 	sig = ffs(ss->__bits[1]);
   1441   1.79   mycroft 	if (sig != 0)
   1442   1.79   mycroft 		return (sig + 32);
   1443   1.79   mycroft #endif
   1444   1.79   mycroft #if NSIG > 65
   1445   1.79   mycroft 	sig = ffs(ss->__bits[2]);
   1446   1.79   mycroft 	if (sig != 0)
   1447   1.79   mycroft 		return (sig + 64);
   1448   1.79   mycroft #endif
   1449   1.79   mycroft #if NSIG > 97
   1450   1.79   mycroft 	sig = ffs(ss->__bits[3]);
   1451   1.79   mycroft 	if (sig != 0)
   1452   1.79   mycroft 		return (sig + 96);
   1453   1.79   mycroft #endif
   1454   1.79   mycroft 	return (0);
   1455   1.79   mycroft }
   1456   1.79   mycroft 
   1457   1.29       cgd /*
   1458   1.29       cgd  * If the current process has received a signal (should be caught or cause
   1459   1.29       cgd  * termination, should interrupt current syscall), return the signal number.
   1460   1.29       cgd  * Stop signals with default action are processed immediately, then cleared;
   1461   1.29       cgd  * they aren't returned.  This is checked after each entry to the system for
   1462   1.29       cgd  * a syscall or trap (though this can usually be done without calling issignal
   1463   1.29       cgd  * by checking the pending signal masks in the CURSIG macro.) The normal call
   1464   1.29       cgd  * sequence is
   1465   1.29       cgd  *
   1466  1.130   thorpej  *	while (signum = CURSIG(curlwp))
   1467   1.29       cgd  *		postsig(signum);
   1468   1.29       cgd  */
   1469   1.29       cgd int
   1470  1.130   thorpej issignal(struct lwp *l)
   1471   1.29       cgd {
   1472  1.130   thorpej 	struct proc	*p = l->l_proc;
   1473  1.127       scw 	int		s = 0, signum, prop;
   1474  1.130   thorpej 	int		dolock = (l->l_flag & L_SINTR) == 0, locked = !dolock;
   1475  1.112     lukem 	sigset_t	ss;
   1476   1.29       cgd 
   1477  1.187        cl 	/* Bail out if we do not own the virtual processor */
   1478  1.187        cl 	if (l->l_flag & L_SA && l->l_savp->savp_lwp != l)
   1479  1.187        cl 		return 0;
   1480  1.144      fvdl 
   1481  1.130   thorpej 	if (p->p_stat == SSTOP) {
   1482  1.130   thorpej 		/*
   1483  1.130   thorpej 		 * The process is stopped/stopping. Stop ourselves now that
   1484  1.130   thorpej 		 * we're on the kernel/userspace boundary.
   1485  1.130   thorpej 		 */
   1486  1.130   thorpej 		if (dolock)
   1487  1.130   thorpej 			SCHED_LOCK(s);
   1488  1.130   thorpej 		l->l_stat = LSSTOP;
   1489  1.130   thorpej 		p->p_nrlwps--;
   1490  1.130   thorpej 		if (p->p_flag & P_TRACED)
   1491  1.130   thorpej 			goto sigtraceswitch;
   1492  1.130   thorpej 		else
   1493  1.130   thorpej 			goto sigswitch;
   1494  1.130   thorpej 	}
   1495   1.29       cgd 	for (;;) {
   1496   1.79   mycroft 		sigpending1(p, &ss);
   1497   1.29       cgd 		if (p->p_flag & P_PPWAIT)
   1498   1.79   mycroft 			sigminusset(&stopsigmask, &ss);
   1499   1.79   mycroft 		signum = firstsig(&ss);
   1500   1.79   mycroft 		if (signum == 0) {		 	/* no signal to send */
   1501  1.109  jdolecek 			p->p_sigctx.ps_sigcheck = 0;
   1502  1.119  christos 			if (locked && dolock)
   1503  1.119  christos 				SCHED_LOCK(s);
   1504   1.29       cgd 			return (0);
   1505   1.79   mycroft 		}
   1506  1.112     lukem 							/* take the signal! */
   1507  1.112     lukem 		sigdelset(&p->p_sigctx.ps_siglist, signum);
   1508   1.42   mycroft 
   1509   1.29       cgd 		/*
   1510   1.29       cgd 		 * We should see pending but ignored signals
   1511   1.29       cgd 		 * only if P_TRACED was on when they were posted.
   1512   1.29       cgd 		 */
   1513  1.109  jdolecek 		if (sigismember(&p->p_sigctx.ps_sigignore, signum) &&
   1514   1.79   mycroft 		    (p->p_flag & P_TRACED) == 0)
   1515   1.29       cgd 			continue;
   1516   1.42   mycroft 
   1517   1.29       cgd 		if (p->p_flag & P_TRACED && (p->p_flag & P_PPWAIT) == 0) {
   1518   1.29       cgd 			/*
   1519   1.29       cgd 			 * If traced, always stop, and stay
   1520   1.29       cgd 			 * stopped until released by the debugger.
   1521   1.29       cgd 			 */
   1522   1.29       cgd 			p->p_xstat = signum;
   1523  1.184      manu 
   1524  1.184      manu 			/* Emulation-specific handling of signal trace */
   1525  1.184      manu 			if ((p->p_emul->e_tracesig != NULL) &&
   1526  1.184      manu 			    ((*p->p_emul->e_tracesig)(p, signum) != 0))
   1527  1.184      manu 				goto childresumed;
   1528  1.184      manu 
   1529   1.66   mycroft 			if ((p->p_flag & P_FSTRACE) == 0)
   1530  1.151  christos 				child_psignal(p, dolock);
   1531  1.119  christos 			if (dolock)
   1532  1.119  christos 				SCHED_LOCK(s);
   1533  1.180      manu 			proc_stop(p, 1);
   1534  1.130   thorpej 		sigtraceswitch:
   1535  1.130   thorpej 			mi_switch(l, NULL);
   1536  1.114   nathanw 			SCHED_ASSERT_UNLOCKED();
   1537  1.119  christos 			if (dolock)
   1538  1.119  christos 				splx(s);
   1539  1.119  christos 			else
   1540  1.119  christos 				dolock = 1;
   1541   1.29       cgd 
   1542  1.184      manu 		childresumed:
   1543   1.29       cgd 			/*
   1544   1.42   mycroft 			 * If we are no longer being traced, or the parent
   1545   1.42   mycroft 			 * didn't give us a signal, look for more signals.
   1546   1.29       cgd 			 */
   1547   1.42   mycroft 			if ((p->p_flag & P_TRACED) == 0 || p->p_xstat == 0)
   1548   1.29       cgd 				continue;
   1549   1.29       cgd 
   1550   1.29       cgd 			/*
   1551   1.42   mycroft 			 * If the new signal is being masked, look for other
   1552   1.42   mycroft 			 * signals.
   1553   1.29       cgd 			 */
   1554   1.42   mycroft 			signum = p->p_xstat;
   1555  1.130   thorpej 			p->p_xstat = 0;
   1556  1.112     lukem 			/*
   1557  1.112     lukem 			 * `p->p_sigctx.ps_siglist |= mask' is done
   1558  1.112     lukem 			 * in setrunnable().
   1559  1.112     lukem 			 */
   1560  1.109  jdolecek 			if (sigismember(&p->p_sigctx.ps_sigmask, signum))
   1561   1.29       cgd 				continue;
   1562  1.112     lukem 							/* take the signal! */
   1563  1.112     lukem 			sigdelset(&p->p_sigctx.ps_siglist, signum);
   1564   1.29       cgd 		}
   1565   1.29       cgd 
   1566   1.42   mycroft 		prop = sigprop[signum];
   1567   1.42   mycroft 
   1568   1.29       cgd 		/*
   1569   1.29       cgd 		 * Decide whether the signal should be returned.
   1570   1.29       cgd 		 * Return the signal's number, or fall through
   1571   1.29       cgd 		 * to clear it from the pending mask.
   1572   1.29       cgd 		 */
   1573  1.109  jdolecek 		switch ((long)SIGACTION(p, signum).sa_handler) {
   1574   1.29       cgd 
   1575   1.33       cgd 		case (long)SIG_DFL:
   1576   1.29       cgd 			/*
   1577   1.29       cgd 			 * Don't take default actions on system processes.
   1578   1.29       cgd 			 */
   1579   1.29       cgd 			if (p->p_pid <= 1) {
   1580   1.29       cgd #ifdef DIAGNOSTIC
   1581   1.29       cgd 				/*
   1582   1.29       cgd 				 * Are you sure you want to ignore SIGSEGV
   1583   1.29       cgd 				 * in init? XXX
   1584   1.29       cgd 				 */
   1585   1.57  christos 				printf("Process (pid %d) got signal %d\n",
   1586   1.29       cgd 				    p->p_pid, signum);
   1587   1.29       cgd #endif
   1588   1.29       cgd 				break;		/* == ignore */
   1589   1.29       cgd 			}
   1590   1.29       cgd 			/*
   1591   1.29       cgd 			 * If there is a pending stop signal to process
   1592   1.29       cgd 			 * with default action, stop here,
   1593   1.29       cgd 			 * then clear the signal.  However,
   1594   1.29       cgd 			 * if process is member of an orphaned
   1595   1.29       cgd 			 * process group, ignore tty stop signals.
   1596   1.29       cgd 			 */
   1597   1.29       cgd 			if (prop & SA_STOP) {
   1598   1.29       cgd 				if (p->p_flag & P_TRACED ||
   1599   1.29       cgd 		    		    (p->p_pgrp->pg_jobc == 0 &&
   1600   1.29       cgd 				    prop & SA_TTYSTOP))
   1601   1.29       cgd 					break;	/* == ignore */
   1602   1.29       cgd 				p->p_xstat = signum;
   1603   1.29       cgd 				if ((p->p_pptr->p_flag & P_NOCLDSTOP) == 0)
   1604  1.151  christos 					child_psignal(p, dolock);
   1605  1.119  christos 				if (dolock)
   1606  1.119  christos 					SCHED_LOCK(s);
   1607  1.180      manu 				proc_stop(p, 1);
   1608  1.130   thorpej 			sigswitch:
   1609  1.130   thorpej 				mi_switch(l, NULL);
   1610  1.104   thorpej 				SCHED_ASSERT_UNLOCKED();
   1611  1.119  christos 				if (dolock)
   1612  1.119  christos 					splx(s);
   1613  1.119  christos 				else
   1614  1.119  christos 					dolock = 1;
   1615   1.29       cgd 				break;
   1616   1.29       cgd 			} else if (prop & SA_IGNORE) {
   1617   1.29       cgd 				/*
   1618   1.29       cgd 				 * Except for SIGCONT, shouldn't get here.
   1619   1.29       cgd 				 * Default action is to ignore; drop it.
   1620   1.29       cgd 				 */
   1621   1.29       cgd 				break;		/* == ignore */
   1622   1.29       cgd 			} else
   1623   1.42   mycroft 				goto keep;
   1624   1.29       cgd 			/*NOTREACHED*/
   1625   1.29       cgd 
   1626   1.33       cgd 		case (long)SIG_IGN:
   1627   1.29       cgd 			/*
   1628   1.29       cgd 			 * Masking above should prevent us ever trying
   1629   1.29       cgd 			 * to take action on an ignored signal other
   1630   1.29       cgd 			 * than SIGCONT, unless process is traced.
   1631   1.29       cgd 			 */
   1632  1.128  jdolecek #ifdef DEBUG_ISSIGNAL
   1633   1.29       cgd 			if ((prop & SA_CONT) == 0 &&
   1634   1.29       cgd 			    (p->p_flag & P_TRACED) == 0)
   1635   1.57  christos 				printf("issignal\n");
   1636  1.128  jdolecek #endif
   1637   1.29       cgd 			break;		/* == ignore */
   1638   1.29       cgd 
   1639   1.29       cgd 		default:
   1640   1.29       cgd 			/*
   1641   1.29       cgd 			 * This signal has an action, let
   1642   1.29       cgd 			 * postsig() process it.
   1643   1.29       cgd 			 */
   1644   1.42   mycroft 			goto keep;
   1645   1.29       cgd 		}
   1646   1.29       cgd 	}
   1647   1.29       cgd 	/* NOTREACHED */
   1648   1.42   mycroft 
   1649  1.112     lukem  keep:
   1650  1.112     lukem 						/* leave the signal for later */
   1651  1.112     lukem 	sigaddset(&p->p_sigctx.ps_siglist, signum);
   1652  1.110   thorpej 	CHECKSIGS(p);
   1653  1.119  christos 	if (locked && dolock)
   1654  1.119  christos 		SCHED_LOCK(s);
   1655   1.42   mycroft 	return (signum);
   1656   1.29       cgd }
   1657   1.29       cgd 
   1658   1.29       cgd /*
   1659   1.29       cgd  * Put the argument process into the stopped state and notify the parent
   1660   1.29       cgd  * via wakeup.  Signals are handled elsewhere.  The process must not be
   1661   1.29       cgd  * on the run queue.
   1662   1.29       cgd  */
   1663  1.179  christos void
   1664  1.206  christos proc_stop(struct proc *p, int dowakeup)
   1665   1.29       cgd {
   1666  1.130   thorpej 	struct lwp *l;
   1667  1.178       dsl 	struct proc *parent;
   1668  1.187        cl 	struct sadata_vp *vp;
   1669   1.29       cgd 
   1670  1.104   thorpej 	SCHED_ASSERT_LOCKED();
   1671  1.104   thorpej 
   1672  1.130   thorpej 	/* XXX lock process LWP state */
   1673  1.178       dsl 	p->p_flag &= ~P_WAITED;
   1674   1.29       cgd 	p->p_stat = SSTOP;
   1675  1.178       dsl 	parent = p->p_pptr;
   1676  1.178       dsl 	parent->p_nstopchild++;
   1677  1.130   thorpej 
   1678  1.175        cl 	if (p->p_flag & P_SA) {
   1679  1.175        cl 		/*
   1680  1.175        cl 		 * Only (try to) put the LWP on the VP in stopped
   1681  1.202     perry 		 * state.
   1682  1.177        cl 		 * All other LWPs will suspend in sa_setwoken()
   1683  1.177        cl 		 * because the VP-LWP in stopped state cannot be
   1684  1.177        cl 		 * repossessed.
   1685  1.175        cl 		 */
   1686  1.187        cl 		SLIST_FOREACH(vp, &p->p_sa->sa_vps, savp_next) {
   1687  1.187        cl 			l = vp->savp_lwp;
   1688  1.187        cl 			if (l->l_stat == LSONPROC && l->l_cpu == curcpu()) {
   1689  1.187        cl 				l->l_stat = LSSTOP;
   1690  1.187        cl 				p->p_nrlwps--;
   1691  1.187        cl 			} else if (l->l_stat == LSRUN) {
   1692  1.187        cl 				/* Remove LWP from the run queue */
   1693  1.187        cl 				remrunqueue(l);
   1694  1.187        cl 				l->l_stat = LSSTOP;
   1695  1.187        cl 				p->p_nrlwps--;
   1696  1.187        cl 			} else if (l->l_stat == LSSLEEP &&
   1697  1.187        cl 			    l->l_flag & L_SA_IDLE) {
   1698  1.187        cl 				l->l_flag &= ~L_SA_IDLE;
   1699  1.187        cl 				l->l_stat = LSSTOP;
   1700  1.187        cl 			}
   1701  1.175        cl 		}
   1702  1.175        cl 		goto out;
   1703  1.175        cl 	}
   1704  1.175        cl 
   1705  1.202     perry 	/*
   1706  1.202     perry 	 * Put as many LWP's as possible in stopped state.
   1707  1.130   thorpej 	 * Sleeping ones will notice the stopped state as they try to
   1708  1.130   thorpej 	 * return to userspace.
   1709  1.130   thorpej 	 */
   1710  1.175        cl 
   1711  1.132  jdolecek 	LIST_FOREACH(l, &p->p_lwps, l_sibling) {
   1712  1.175        cl 		if (l->l_stat == LSONPROC) {
   1713  1.130   thorpej 			/* XXX SMP this assumes that a LWP that is LSONPROC
   1714  1.202     perry 			 * is curlwp and hence is about to be mi_switched
   1715  1.130   thorpej 			 * away; the only callers of proc_stop() are:
   1716  1.130   thorpej 			 * - psignal
   1717  1.130   thorpej 			 * - issignal()
   1718  1.130   thorpej 			 * For the former, proc_stop() is only called when
   1719  1.130   thorpej 			 * no processes are running, so we don't worry.
   1720  1.130   thorpej 			 * For the latter, proc_stop() is called right
   1721  1.130   thorpej 			 * before mi_switch().
   1722  1.130   thorpej 			 */
   1723  1.130   thorpej 			l->l_stat = LSSTOP;
   1724  1.130   thorpej 			p->p_nrlwps--;
   1725  1.175        cl 		} else if (l->l_stat == LSRUN) {
   1726  1.130   thorpej 			/* Remove LWP from the run queue */
   1727  1.130   thorpej 			remrunqueue(l);
   1728  1.130   thorpej 			l->l_stat = LSSTOP;
   1729  1.130   thorpej 			p->p_nrlwps--;
   1730  1.130   thorpej 		} else if ((l->l_stat == LSSLEEP) ||
   1731  1.202     perry 		    (l->l_stat == LSSUSPENDED) ||
   1732  1.130   thorpej 		    (l->l_stat == LSZOMB) ||
   1733  1.130   thorpej 		    (l->l_stat == LSDEAD)) {
   1734  1.130   thorpej 			/*
   1735  1.130   thorpej 			 * Don't do anything; let sleeping LWPs
   1736  1.130   thorpej 			 * discover the stopped state of the process
   1737  1.130   thorpej 			 * on their way out of the kernel; otherwise,
   1738  1.130   thorpej 			 * things like NFS threads that sleep with
   1739  1.130   thorpej 			 * locks will block the rest of the system
   1740  1.130   thorpej 			 * from getting any work done.
   1741  1.130   thorpej 			 *
   1742  1.130   thorpej 			 * Suspended/dead/zombie LWPs aren't going
   1743  1.130   thorpej 			 * anywhere, so we don't need to touch them.
   1744  1.130   thorpej 			 */
   1745  1.130   thorpej 		}
   1746  1.130   thorpej #ifdef DIAGNOSTIC
   1747  1.130   thorpej 		else {
   1748  1.130   thorpej 			panic("proc_stop: process %d lwp %d "
   1749  1.202     perry 			      "in unstoppable state %d.\n",
   1750  1.130   thorpej 			    p->p_pid, l->l_lid, l->l_stat);
   1751  1.130   thorpej 		}
   1752  1.130   thorpej #endif
   1753  1.130   thorpej 	}
   1754  1.175        cl 
   1755  1.175        cl  out:
   1756  1.130   thorpej 	/* XXX unlock process LWP state */
   1757  1.144      fvdl 
   1758  1.206  christos 	if (dowakeup)
   1759  1.180      manu 		sched_wakeup((caddr_t)p->p_pptr);
   1760   1.29       cgd }
   1761   1.29       cgd 
   1762  1.133   nathanw /*
   1763  1.202     perry  * Given a process in state SSTOP, set the state back to SACTIVE and
   1764  1.133   nathanw  * move LSSTOP'd LWPs to LSSLEEP or make them runnable.
   1765  1.133   nathanw  *
   1766  1.133   nathanw  * If no LWPs ended up runnable (and therefore able to take a signal),
   1767  1.133   nathanw  * return a LWP that is sleeping interruptably. The caller can wake
   1768  1.133   nathanw  * that LWP up to take a signal.
   1769  1.133   nathanw  */
   1770  1.130   thorpej struct lwp *
   1771  1.139     skrll proc_unstop(struct proc *p)
   1772  1.130   thorpej {
   1773  1.130   thorpej 	struct lwp *l, *lr = NULL;
   1774  1.187        cl 	struct sadata_vp *vp;
   1775  1.133   nathanw 	int cantake = 0;
   1776  1.130   thorpej 
   1777  1.130   thorpej 	SCHED_ASSERT_LOCKED();
   1778  1.130   thorpej 
   1779  1.130   thorpej 	/*
   1780  1.140   nathanw 	 * Our caller wants to be informed if there are only sleeping
   1781  1.140   nathanw 	 * and interruptable LWPs left after we have run so that it
   1782  1.140   nathanw 	 * can invoke setrunnable() if required - return one of the
   1783  1.140   nathanw 	 * interruptable LWPs if this is the case.
   1784  1.130   thorpej 	 */
   1785  1.130   thorpej 
   1786  1.178       dsl 	if (!(p->p_flag & P_WAITED))
   1787  1.178       dsl 		p->p_pptr->p_nstopchild--;
   1788  1.130   thorpej 	p->p_stat = SACTIVE;
   1789  1.132  jdolecek 	LIST_FOREACH(l, &p->p_lwps, l_sibling) {
   1790  1.140   nathanw 		if (l->l_stat == LSRUN) {
   1791  1.140   nathanw 			lr = NULL;
   1792  1.133   nathanw 			cantake = 1;
   1793  1.140   nathanw 		}
   1794  1.132  jdolecek 		if (l->l_stat != LSSTOP)
   1795  1.132  jdolecek 			continue;
   1796  1.132  jdolecek 
   1797  1.133   nathanw 		if (l->l_wchan != NULL) {
   1798  1.133   nathanw 			l->l_stat = LSSLEEP;
   1799  1.133   nathanw 			if ((cantake == 0) && (l->l_flag & L_SINTR)) {
   1800  1.132  jdolecek 				lr = l;
   1801  1.133   nathanw 				cantake = 1;
   1802  1.133   nathanw 			}
   1803  1.133   nathanw 		} else {
   1804  1.140   nathanw 			setrunnable(l);
   1805  1.140   nathanw 			lr = NULL;
   1806  1.133   nathanw 			cantake = 1;
   1807  1.133   nathanw 		}
   1808  1.132  jdolecek 	}
   1809  1.175        cl 	if (p->p_flag & P_SA) {
   1810  1.175        cl 		/* Only consider returning the LWP on the VP. */
   1811  1.187        cl 		SLIST_FOREACH(vp, &p->p_sa->sa_vps, savp_next) {
   1812  1.187        cl 			lr = vp->savp_lwp;
   1813  1.187        cl 			if (lr->l_stat == LSSLEEP) {
   1814  1.187        cl 				if (lr->l_flag & L_SA_YIELD) {
   1815  1.187        cl 					setrunnable(lr);
   1816  1.187        cl 					break;
   1817  1.187        cl 				} else if (lr->l_flag & L_SINTR)
   1818  1.187        cl 					return lr;
   1819  1.187        cl 			}
   1820  1.175        cl 		}
   1821  1.175        cl 		return NULL;
   1822  1.175        cl 	}
   1823  1.130   thorpej 	return lr;
   1824  1.130   thorpej }
   1825  1.130   thorpej 
   1826   1.29       cgd /*
   1827   1.29       cgd  * Take the action for the specified signal
   1828   1.29       cgd  * from the current set of pending signals.
   1829   1.29       cgd  */
   1830   1.29       cgd void
   1831  1.112     lukem postsig(int signum)
   1832   1.29       cgd {
   1833  1.130   thorpej 	struct lwp *l;
   1834  1.112     lukem 	struct proc	*p;
   1835  1.112     lukem 	struct sigacts	*ps;
   1836  1.112     lukem 	sig_t		action;
   1837  1.112     lukem 	sigset_t	*returnmask;
   1838   1.29       cgd 
   1839  1.130   thorpej 	l = curlwp;
   1840  1.130   thorpej 	p = l->l_proc;
   1841  1.112     lukem 	ps = p->p_sigacts;
   1842   1.29       cgd #ifdef DIAGNOSTIC
   1843   1.29       cgd 	if (signum == 0)
   1844   1.29       cgd 		panic("postsig");
   1845   1.29       cgd #endif
   1846  1.106   thorpej 
   1847  1.130   thorpej 	KERNEL_PROC_LOCK(l);
   1848  1.106   thorpej 
   1849  1.188        cl #ifdef MULTIPROCESSOR
   1850  1.188        cl 	/*
   1851  1.188        cl 	 * On MP, issignal() can return the same signal to multiple
   1852  1.188        cl 	 * LWPs.  The LWPs will block above waiting for the kernel
   1853  1.188        cl 	 * lock and the first LWP which gets through will then remove
   1854  1.188        cl 	 * the signal from ps_siglist.  All other LWPs exit here.
   1855  1.188        cl 	 */
   1856  1.188        cl 	if (!sigismember(&p->p_sigctx.ps_siglist, signum)) {
   1857  1.188        cl 		KERNEL_PROC_UNLOCK(l);
   1858  1.188        cl 		return;
   1859  1.188        cl 	}
   1860  1.188        cl #endif
   1861  1.109  jdolecek 	sigdelset(&p->p_sigctx.ps_siglist, signum);
   1862  1.109  jdolecek 	action = SIGACTION_PS(ps, signum).sa_handler;
   1863  1.157  christos 	if (action == SIG_DFL) {
   1864   1.29       cgd #ifdef KTRACE
   1865  1.157  christos 		if (KTRPOINT(p, KTR_PSIG))
   1866  1.212  christos 			ktrpsig(l, signum, action,
   1867  1.157  christos 			    p->p_sigctx.ps_flags & SAS_OLDMASK ?
   1868  1.157  christos 			    &p->p_sigctx.ps_oldmask : &p->p_sigctx.ps_sigmask,
   1869  1.157  christos 			    NULL);
   1870   1.29       cgd #endif
   1871   1.29       cgd 		/*
   1872   1.29       cgd 		 * Default action, where the default is to kill
   1873   1.29       cgd 		 * the process.  (Other cases were ignored above.)
   1874   1.29       cgd 		 */
   1875  1.130   thorpej 		sigexit(l, signum);
   1876   1.29       cgd 		/* NOTREACHED */
   1877   1.29       cgd 	} else {
   1878  1.152  christos 		ksiginfo_t *ksi;
   1879   1.29       cgd 		/*
   1880   1.29       cgd 		 * If we get here, the signal must be caught.
   1881   1.29       cgd 		 */
   1882   1.29       cgd #ifdef DIAGNOSTIC
   1883  1.112     lukem 		if (action == SIG_IGN ||
   1884  1.112     lukem 		    sigismember(&p->p_sigctx.ps_sigmask, signum))
   1885   1.29       cgd 			panic("postsig action");
   1886   1.29       cgd #endif
   1887   1.29       cgd 		/*
   1888   1.29       cgd 		 * Set the new mask value and also defer further
   1889  1.138       wiz 		 * occurrences of this signal.
   1890   1.29       cgd 		 *
   1891   1.29       cgd 		 * Special case: user has done a sigpause.  Here the
   1892   1.29       cgd 		 * current mask is not of interest, but rather the
   1893   1.29       cgd 		 * mask from before the sigpause is what we want
   1894   1.29       cgd 		 * restored after the signal processing is completed.
   1895   1.29       cgd 		 */
   1896  1.109  jdolecek 		if (p->p_sigctx.ps_flags & SAS_OLDMASK) {
   1897  1.109  jdolecek 			returnmask = &p->p_sigctx.ps_oldmask;
   1898  1.109  jdolecek 			p->p_sigctx.ps_flags &= ~SAS_OLDMASK;
   1899   1.29       cgd 		} else
   1900  1.109  jdolecek 			returnmask = &p->p_sigctx.ps_sigmask;
   1901   1.29       cgd 		p->p_stats->p_ru.ru_nsignals++;
   1902  1.152  christos 		ksi = ksiginfo_get(p, signum);
   1903  1.157  christos #ifdef KTRACE
   1904  1.157  christos 		if (KTRPOINT(p, KTR_PSIG))
   1905  1.212  christos 			ktrpsig(l, signum, action,
   1906  1.157  christos 			    p->p_sigctx.ps_flags & SAS_OLDMASK ?
   1907  1.157  christos 			    &p->p_sigctx.ps_oldmask : &p->p_sigctx.ps_sigmask,
   1908  1.157  christos 			    ksi);
   1909  1.157  christos #endif
   1910  1.152  christos 		if (ksi == NULL) {
   1911  1.152  christos 			ksiginfo_t ksi1;
   1912  1.152  christos 			/*
   1913  1.152  christos 			 * we did not save any siginfo for this, either
   1914  1.152  christos 			 * because the signal was not caught, or because the
   1915  1.152  christos 			 * user did not request SA_SIGINFO
   1916  1.152  christos 			 */
   1917  1.192      matt 			KSI_INIT_EMPTY(&ksi1);
   1918  1.152  christos 			ksi1.ksi_signo = signum;
   1919  1.152  christos 			kpsendsig(l, &ksi1, returnmask);
   1920   1.29       cgd 		} else {
   1921  1.152  christos 			kpsendsig(l, ksi, returnmask);
   1922  1.152  christos 			pool_put(&ksiginfo_pool, ksi);
   1923  1.152  christos 		}
   1924  1.152  christos 		p->p_sigctx.ps_lwp = 0;
   1925  1.152  christos 		p->p_sigctx.ps_code = 0;
   1926  1.152  christos 		p->p_sigctx.ps_signo = 0;
   1927  1.105   thorpej 		(void) splsched();	/* XXXSMP */
   1928  1.112     lukem 		sigplusset(&SIGACTION_PS(ps, signum).sa_mask,
   1929  1.112     lukem 		    &p->p_sigctx.ps_sigmask);
   1930  1.109  jdolecek 		if (SIGACTION_PS(ps, signum).sa_flags & SA_RESETHAND) {
   1931  1.109  jdolecek 			sigdelset(&p->p_sigctx.ps_sigcatch, signum);
   1932   1.79   mycroft 			if (signum != SIGCONT && sigprop[signum] & SA_IGNORE)
   1933  1.109  jdolecek 				sigaddset(&p->p_sigctx.ps_sigignore, signum);
   1934  1.109  jdolecek 			SIGACTION_PS(ps, signum).sa_handler = SIG_DFL;
   1935   1.79   mycroft 		}
   1936  1.104   thorpej 		(void) spl0();		/* XXXSMP */
   1937   1.29       cgd 	}
   1938  1.106   thorpej 
   1939  1.130   thorpej 	KERNEL_PROC_UNLOCK(l);
   1940   1.29       cgd }
   1941   1.29       cgd 
   1942   1.29       cgd /*
   1943   1.29       cgd  * Kill the current process for stated reason.
   1944   1.29       cgd  */
   1945   1.52  christos void
   1946  1.122      manu killproc(struct proc *p, const char *why)
   1947   1.29       cgd {
   1948   1.29       cgd 	log(LOG_ERR, "pid %d was killed: %s\n", p->p_pid, why);
   1949   1.29       cgd 	uprintf("sorry, pid %d was killed: %s\n", p->p_pid, why);
   1950   1.29       cgd 	psignal(p, SIGKILL);
   1951   1.29       cgd }
   1952   1.29       cgd 
   1953   1.29       cgd /*
   1954   1.29       cgd  * Force the current process to exit with the specified signal, dumping core
   1955   1.29       cgd  * if appropriate.  We bypass the normal tests for masked and caught signals,
   1956   1.29       cgd  * allowing unrecoverable failures to terminate the process without changing
   1957   1.29       cgd  * signal state.  Mark the accounting record with the signal termination.
   1958   1.29       cgd  * If dumping core, save the signal number for the debugger.  Calls exit and
   1959   1.29       cgd  * does not return.
   1960   1.29       cgd  */
   1961   1.96      fair 
   1962   1.97      fair #if defined(DEBUG)
   1963   1.96      fair int	kern_logsigexit = 1;	/* not static to make public for sysctl */
   1964   1.96      fair #else
   1965   1.96      fair int	kern_logsigexit = 0;	/* not static to make public for sysctl */
   1966   1.96      fair #endif
   1967   1.96      fair 
   1968  1.102  sommerfe static	const char logcoredump[] =
   1969   1.96      fair 	"pid %d (%s), uid %d: exited on signal %d (core dumped)\n";
   1970  1.102  sommerfe static	const char lognocoredump[] =
   1971   1.96      fair 	"pid %d (%s), uid %d: exited on signal %d (core not dumped, err = %d)\n";
   1972   1.96      fair 
   1973  1.130   thorpej /* Wrapper function for use in p_userret */
   1974  1.130   thorpej static void
   1975  1.130   thorpej lwp_coredump_hook(struct lwp *l, void *arg)
   1976  1.130   thorpej {
   1977  1.130   thorpej 	int s;
   1978  1.130   thorpej 
   1979  1.130   thorpej 	/*
   1980  1.130   thorpej 	 * Suspend ourselves, so that the kernel stack and therefore
   1981  1.130   thorpej 	 * the userland registers saved in the trapframe are around
   1982  1.130   thorpej 	 * for coredump() to write them out.
   1983  1.130   thorpej 	 */
   1984  1.130   thorpej 	KERNEL_PROC_LOCK(l);
   1985  1.130   thorpej 	l->l_flag &= ~L_DETACHED;
   1986  1.130   thorpej 	SCHED_LOCK(s);
   1987  1.130   thorpej 	l->l_stat = LSSUSPENDED;
   1988  1.130   thorpej 	l->l_proc->p_nrlwps--;
   1989  1.130   thorpej 	/* XXX NJWLWP check if this makes sense here: */
   1990  1.202     perry 	l->l_proc->p_stats->p_ru.ru_nvcsw++;
   1991  1.130   thorpej 	mi_switch(l, NULL);
   1992  1.130   thorpej 	SCHED_ASSERT_UNLOCKED();
   1993  1.130   thorpej 	splx(s);
   1994  1.130   thorpej 
   1995  1.130   thorpej 	lwp_exit(l);
   1996  1.130   thorpej }
   1997  1.130   thorpej 
   1998   1.52  christos void
   1999  1.130   thorpej sigexit(struct lwp *l, int signum)
   2000   1.29       cgd {
   2001  1.130   thorpej 	struct proc	*p;
   2002  1.144      fvdl #if 0
   2003  1.136   nathanw 	struct lwp	*l2;
   2004  1.144      fvdl #endif
   2005  1.130   thorpej 	int		error, exitsig;
   2006  1.130   thorpej 
   2007  1.130   thorpej 	p = l->l_proc;
   2008  1.130   thorpej 
   2009  1.130   thorpej 	/*
   2010  1.202     perry 	 * Don't permit coredump() or exit1() multiple times
   2011  1.130   thorpej 	 * in the same process.
   2012  1.130   thorpej 	 */
   2013  1.136   nathanw 	if (p->p_flag & P_WEXIT) {
   2014  1.136   nathanw 		KERNEL_PROC_UNLOCK(l);
   2015  1.130   thorpej 		(*p->p_userret)(l, p->p_userret_arg);
   2016  1.136   nathanw 	}
   2017  1.130   thorpej 	p->p_flag |= P_WEXIT;
   2018  1.130   thorpej 	/* We don't want to switch away from exiting. */
   2019  1.130   thorpej 	/* XXX multiprocessor: stop LWPs on other processors. */
   2020  1.144      fvdl #if 0
   2021  1.136   nathanw 	if (p->p_flag & P_SA) {
   2022  1.136   nathanw 		LIST_FOREACH(l2, &p->p_lwps, l_sibling)
   2023  1.136   nathanw 		    l2->l_flag &= ~L_SA;
   2024  1.130   thorpej 		p->p_flag &= ~P_SA;
   2025  1.130   thorpej 	}
   2026  1.144      fvdl #endif
   2027  1.130   thorpej 
   2028  1.130   thorpej 	/* Make other LWPs stick around long enough to be dumped */
   2029  1.130   thorpej 	p->p_userret = lwp_coredump_hook;
   2030  1.130   thorpej 	p->p_userret_arg = NULL;
   2031   1.96      fair 
   2032  1.112     lukem 	exitsig = signum;
   2033   1.29       cgd 	p->p_acflag |= AXSIG;
   2034   1.29       cgd 	if (sigprop[signum] & SA_CORE) {
   2035  1.152  christos 		p->p_sigctx.ps_signo = signum;
   2036  1.201  christos 		if ((error = coredump(l, NULL)) == 0)
   2037  1.102  sommerfe 			exitsig |= WCOREFLAG;
   2038  1.102  sommerfe 
   2039  1.102  sommerfe 		if (kern_logsigexit) {
   2040  1.123   thorpej 			/* XXX What if we ever have really large UIDs? */
   2041  1.202     perry 			int uid = p->p_cred && p->p_ucred ?
   2042  1.123   thorpej 				(int) p->p_ucred->cr_uid : -1;
   2043  1.102  sommerfe 
   2044  1.202     perry 			if (error)
   2045  1.102  sommerfe 				log(LOG_INFO, lognocoredump, p->p_pid,
   2046  1.102  sommerfe 				    p->p_comm, uid, signum, error);
   2047  1.102  sommerfe 			else
   2048  1.102  sommerfe 				log(LOG_INFO, logcoredump, p->p_pid,
   2049  1.102  sommerfe 				    p->p_comm, uid, signum);
   2050   1.96      fair 		}
   2051   1.96      fair 
   2052   1.29       cgd 	}
   2053   1.96      fair 
   2054  1.130   thorpej 	exit1(l, W_EXITCODE(0, exitsig));
   2055   1.29       cgd 	/* NOTREACHED */
   2056   1.29       cgd }
   2057   1.29       cgd 
   2058  1.207      matt struct coredump_iostate {
   2059  1.212  christos 	struct lwp *io_lwp;
   2060  1.207      matt 	struct vnode *io_vp;
   2061  1.207      matt 	struct ucred *io_cred;
   2062  1.207      matt 	off_t io_offset;
   2063  1.207      matt };
   2064  1.207      matt 
   2065  1.207      matt int
   2066  1.207      matt coredump_write(void *cookie, enum uio_seg segflg, const void *data, size_t len)
   2067  1.207      matt {
   2068  1.207      matt 	struct coredump_iostate *io = cookie;
   2069  1.207      matt 	int error;
   2070  1.207      matt 
   2071  1.207      matt 	error = vn_rdwr(UIO_WRITE, io->io_vp, __UNCONST(data), len,
   2072  1.207      matt 	    io->io_offset, segflg,
   2073  1.207      matt 	    IO_NODELOCKED|IO_UNIT, io->io_cred, NULL,
   2074  1.212  christos 	    segflg == UIO_USERSPACE ? io->io_lwp : NULL);
   2075  1.207      matt 	if (error)
   2076  1.207      matt 		return (error);
   2077  1.207      matt 
   2078  1.207      matt 	io->io_offset += len;
   2079  1.207      matt 	return (0);
   2080  1.207      matt }
   2081  1.207      matt 
   2082   1.29       cgd /*
   2083  1.202     perry  * Dump core, into a file named "progname.core" or "core" (depending on the
   2084   1.75   nathanw  * value of shortcorename), unless the process was setuid/setgid.
   2085   1.29       cgd  */
   2086   1.29       cgd int
   2087  1.201  christos coredump(struct lwp *l, const char *pattern)
   2088   1.29       cgd {
   2089  1.112     lukem 	struct vnode		*vp;
   2090  1.130   thorpej 	struct proc		*p;
   2091  1.112     lukem 	struct vmspace		*vm;
   2092  1.112     lukem 	struct ucred		*cred;
   2093  1.112     lukem 	struct nameidata	nd;
   2094  1.112     lukem 	struct vattr		vattr;
   2095  1.169   hannken 	struct mount		*mp;
   2096  1.207      matt 	struct coredump_iostate	io;
   2097  1.112     lukem 	int			error, error1;
   2098  1.112     lukem 	char			name[MAXPATHLEN];
   2099  1.112     lukem 
   2100  1.130   thorpej 	p = l->l_proc;
   2101  1.112     lukem 	vm = p->p_vmspace;
   2102  1.112     lukem 	cred = p->p_cred->pc_ucred;
   2103   1.29       cgd 
   2104   1.59       cgd 	/*
   2105  1.214      elad 	 * Make sure the process has not set-id, to prevent data leaks,
   2106  1.214      elad 	 * unless it was specifically requested to allow set-id coredumps.
   2107   1.59       cgd 	 */
   2108  1.214      elad 	if ((p->p_flag & P_SUGID) && !security_setidcore_dump)
   2109   1.59       cgd 		return (EPERM);
   2110   1.59       cgd 
   2111   1.59       cgd 	/*
   2112   1.59       cgd 	 * Refuse to core if the data + stack + user size is larger than
   2113   1.59       cgd 	 * the core dump limit.  XXX THIS IS WRONG, because of mapped
   2114   1.59       cgd 	 * data.
   2115   1.59       cgd 	 */
   2116   1.30   deraadt 	if (USPACE + ctob(vm->vm_dsize + vm->vm_ssize) >=
   2117   1.29       cgd 	    p->p_rlimit[RLIMIT_CORE].rlim_cur)
   2118   1.59       cgd 		return (EFBIG);		/* better error code? */
   2119   1.59       cgd 
   2120  1.169   hannken restart:
   2121   1.59       cgd 	/*
   2122   1.59       cgd 	 * The core dump will go in the current working directory.  Make
   2123   1.80        pk 	 * sure that the directory is still there and that the mount flags
   2124   1.80        pk 	 * allow us to write core dumps there.
   2125   1.59       cgd 	 */
   2126   1.88   thorpej 	vp = p->p_cwdi->cwdi_cdir;
   2127   1.80        pk 	if (vp->v_mount == NULL ||
   2128   1.80        pk 	    (vp->v_mount->mnt_flag & MNT_NOCOREDUMP) != 0)
   2129   1.59       cgd 		return (EPERM);
   2130   1.59       cgd 
   2131  1.214      elad 	if (p->p_flag & P_SUGID && security_setidcore_dump)
   2132  1.214      elad 		pattern = security_setidcore_path;
   2133  1.214      elad 
   2134  1.201  christos 	if (pattern == NULL)
   2135  1.201  christos 		pattern = p->p_limit->pl_corename;
   2136  1.201  christos 	if ((error = build_corename(p, name, pattern, sizeof(name))) != 0)
   2137   1.94    bouyer 		return error;
   2138   1.94    bouyer 
   2139  1.212  christos 	NDINIT(&nd, LOOKUP, NOFOLLOW, UIO_SYSSPACE, name, l);
   2140  1.129  christos 	error = vn_open(&nd, O_CREAT | O_NOFOLLOW | FWRITE, S_IRUSR | S_IWUSR);
   2141   1.52  christos 	if (error)
   2142   1.29       cgd 		return (error);
   2143   1.29       cgd 	vp = nd.ni_vp;
   2144   1.29       cgd 
   2145  1.169   hannken 	if (vn_start_write(vp, &mp, V_NOWAIT) != 0) {
   2146  1.169   hannken 		VOP_UNLOCK(vp, 0);
   2147  1.212  christos 		if ((error = vn_close(vp, FWRITE, cred, l)) != 0)
   2148  1.169   hannken 			return (error);
   2149  1.169   hannken 		if ((error = vn_start_write(NULL, &mp,
   2150  1.169   hannken 		    V_WAIT | V_SLEEPONLY | V_PCATCH)) != 0)
   2151  1.169   hannken 			return (error);
   2152  1.169   hannken 		goto restart;
   2153  1.169   hannken 	}
   2154  1.169   hannken 
   2155   1.29       cgd 	/* Don't dump to non-regular files or files with links. */
   2156   1.29       cgd 	if (vp->v_type != VREG ||
   2157  1.212  christos 	    VOP_GETATTR(vp, &vattr, cred, l) || vattr.va_nlink != 1) {
   2158   1.59       cgd 		error = EINVAL;
   2159   1.29       cgd 		goto out;
   2160   1.29       cgd 	}
   2161   1.29       cgd 	VATTR_NULL(&vattr);
   2162   1.29       cgd 	vattr.va_size = 0;
   2163  1.214      elad 
   2164  1.214      elad 	if (p->p_flag & P_SUGID && security_setidcore_dump) {
   2165  1.214      elad 		vattr.va_uid = security_setidcore_owner;
   2166  1.214      elad 		vattr.va_gid = security_setidcore_group;
   2167  1.214      elad 		vattr.va_mode = security_setidcore_mode;
   2168  1.214      elad 	}
   2169  1.214      elad 
   2170  1.212  christos 	VOP_LEASE(vp, l, cred, LEASE_WRITE);
   2171  1.212  christos 	VOP_SETATTR(vp, &vattr, cred, l);
   2172   1.29       cgd 	p->p_acflag |= ACORE;
   2173   1.95       eeh 
   2174  1.212  christos 	io.io_lwp = l;
   2175  1.207      matt 	io.io_vp = vp;
   2176  1.207      matt 	io.io_cred = cred;
   2177  1.207      matt 	io.io_offset = 0;
   2178  1.207      matt 
   2179  1.118   thorpej 	/* Now dump the actual core file. */
   2180  1.207      matt 	error = (*p->p_execsw->es_coredump)(l, &io);
   2181  1.112     lukem  out:
   2182   1.71      fvdl 	VOP_UNLOCK(vp, 0);
   2183  1.169   hannken 	vn_finished_write(mp, 0);
   2184  1.212  christos 	error1 = vn_close(vp, FWRITE, cred, l);
   2185   1.29       cgd 	if (error == 0)
   2186   1.29       cgd 		error = error1;
   2187   1.29       cgd 	return (error);
   2188   1.29       cgd }
   2189   1.29       cgd 
   2190   1.29       cgd /*
   2191   1.29       cgd  * Nonexistent system call-- signal process (may want to handle it).
   2192   1.29       cgd  * Flag error in case process won't see signal immediately (blocked or ignored).
   2193   1.29       cgd  */
   2194   1.29       cgd /* ARGSUSED */
   2195   1.29       cgd int
   2196  1.130   thorpej sys_nosys(struct lwp *l, void *v, register_t *retval)
   2197   1.29       cgd {
   2198  1.130   thorpej 	struct proc 	*p;
   2199   1.29       cgd 
   2200  1.130   thorpej 	p = l->l_proc;
   2201   1.29       cgd 	psignal(p, SIGSYS);
   2202   1.36       cgd 	return (ENOSYS);
   2203   1.94    bouyer }
   2204   1.94    bouyer 
   2205   1.94    bouyer static int
   2206  1.201  christos build_corename(struct proc *p, char *dst, const char *src, size_t len)
   2207   1.94    bouyer {
   2208  1.112     lukem 	const char	*s;
   2209  1.112     lukem 	char		*d, *end;
   2210  1.112     lukem 	int		i;
   2211  1.202     perry 
   2212  1.201  christos 	for (s = src, d = dst, end = d + len; *s != '\0'; s++) {
   2213   1.94    bouyer 		if (*s == '%') {
   2214  1.107     enami 			switch (*(s + 1)) {
   2215   1.94    bouyer 			case 'n':
   2216  1.107     enami 				i = snprintf(d, end - d, "%s", p->p_comm);
   2217   1.94    bouyer 				break;
   2218   1.94    bouyer 			case 'p':
   2219  1.107     enami 				i = snprintf(d, end - d, "%d", p->p_pid);
   2220   1.94    bouyer 				break;
   2221   1.94    bouyer 			case 'u':
   2222  1.134       dsl 				i = snprintf(d, end - d, "%.*s",
   2223  1.134       dsl 				    (int)sizeof p->p_pgrp->pg_session->s_login,
   2224  1.100  sommerfe 				    p->p_pgrp->pg_session->s_login);
   2225   1.94    bouyer 				break;
   2226   1.94    bouyer 			case 't':
   2227  1.107     enami 				i = snprintf(d, end - d, "%ld",
   2228  1.100  sommerfe 				    p->p_stats->p_start.tv_sec);
   2229   1.94    bouyer 				break;
   2230   1.94    bouyer 			default:
   2231   1.94    bouyer 				goto copy;
   2232   1.94    bouyer 			}
   2233   1.94    bouyer 			d += i;
   2234   1.94    bouyer 			s++;
   2235   1.94    bouyer 		} else {
   2236  1.112     lukem  copy:			*d = *s;
   2237   1.94    bouyer 			d++;
   2238   1.94    bouyer 		}
   2239  1.107     enami 		if (d >= end)
   2240  1.107     enami 			return (ENAMETOOLONG);
   2241   1.94    bouyer 	}
   2242   1.94    bouyer 	*d = '\0';
   2243  1.130   thorpej 	return 0;
   2244  1.130   thorpej }
   2245  1.130   thorpej 
   2246  1.130   thorpej void
   2247  1.130   thorpej getucontext(struct lwp *l, ucontext_t *ucp)
   2248  1.130   thorpej {
   2249  1.130   thorpej 	struct proc	*p;
   2250  1.130   thorpej 
   2251  1.130   thorpej 	p = l->l_proc;
   2252  1.130   thorpej 
   2253  1.130   thorpej 	ucp->uc_flags = 0;
   2254  1.130   thorpej 	ucp->uc_link = l->l_ctxlink;
   2255  1.130   thorpej 
   2256  1.130   thorpej 	(void)sigprocmask1(p, 0, NULL, &ucp->uc_sigmask);
   2257  1.130   thorpej 	ucp->uc_flags |= _UC_SIGMASK;
   2258  1.130   thorpej 
   2259  1.130   thorpej 	/*
   2260  1.130   thorpej 	 * The (unsupplied) definition of the `current execution stack'
   2261  1.130   thorpej 	 * in the System V Interface Definition appears to allow returning
   2262  1.130   thorpej 	 * the main context stack.
   2263  1.130   thorpej 	 */
   2264  1.130   thorpej 	if ((p->p_sigctx.ps_sigstk.ss_flags & SS_ONSTACK) == 0) {
   2265  1.130   thorpej 		ucp->uc_stack.ss_sp = (void *)USRSTACK;
   2266  1.130   thorpej 		ucp->uc_stack.ss_size = ctob(p->p_vmspace->vm_ssize);
   2267  1.130   thorpej 		ucp->uc_stack.ss_flags = 0;	/* XXX, def. is Very Fishy */
   2268  1.130   thorpej 	} else {
   2269  1.130   thorpej 		/* Simply copy alternate signal execution stack. */
   2270  1.130   thorpej 		ucp->uc_stack = p->p_sigctx.ps_sigstk;
   2271  1.130   thorpej 	}
   2272  1.130   thorpej 	ucp->uc_flags |= _UC_STACK;
   2273  1.130   thorpej 
   2274  1.130   thorpej 	cpu_getmcontext(l, &ucp->uc_mcontext, &ucp->uc_flags);
   2275  1.130   thorpej }
   2276  1.130   thorpej 
   2277  1.130   thorpej /* ARGSUSED */
   2278  1.130   thorpej int
   2279  1.130   thorpej sys_getcontext(struct lwp *l, void *v, register_t *retval)
   2280  1.130   thorpej {
   2281  1.130   thorpej 	struct sys_getcontext_args /* {
   2282  1.130   thorpej 		syscallarg(struct __ucontext *) ucp;
   2283  1.130   thorpej 	} */ *uap = v;
   2284  1.130   thorpej 	ucontext_t uc;
   2285  1.130   thorpej 
   2286  1.130   thorpej 	getucontext(l, &uc);
   2287  1.130   thorpej 
   2288  1.130   thorpej 	return (copyout(&uc, SCARG(uap, ucp), sizeof (*SCARG(uap, ucp))));
   2289  1.130   thorpej }
   2290  1.130   thorpej 
   2291  1.130   thorpej int
   2292  1.130   thorpej setucontext(struct lwp *l, const ucontext_t *ucp)
   2293  1.130   thorpej {
   2294  1.130   thorpej 	struct proc	*p;
   2295  1.130   thorpej 	int		error;
   2296  1.130   thorpej 
   2297  1.130   thorpej 	p = l->l_proc;
   2298  1.130   thorpej 	if ((error = cpu_setmcontext(l, &ucp->uc_mcontext, ucp->uc_flags)) != 0)
   2299  1.130   thorpej 		return (error);
   2300  1.130   thorpej 	l->l_ctxlink = ucp->uc_link;
   2301  1.185      matt 
   2302  1.185      matt 	if ((ucp->uc_flags & _UC_SIGMASK) != 0)
   2303  1.185      matt 		sigprocmask1(p, SIG_SETMASK, &ucp->uc_sigmask, NULL);
   2304  1.185      matt 
   2305  1.130   thorpej 	/*
   2306  1.185      matt 	 * If there was stack information, update whether or not we are
   2307  1.185      matt 	 * still running on an alternate signal stack.
   2308  1.130   thorpej 	 */
   2309  1.185      matt 	if ((ucp->uc_flags & _UC_STACK) != 0) {
   2310  1.185      matt 		if (ucp->uc_stack.ss_flags & SS_ONSTACK)
   2311  1.185      matt 			p->p_sigctx.ps_sigstk.ss_flags |= SS_ONSTACK;
   2312  1.185      matt 		else
   2313  1.185      matt 			p->p_sigctx.ps_sigstk.ss_flags &= ~SS_ONSTACK;
   2314  1.185      matt 	}
   2315  1.130   thorpej 
   2316  1.130   thorpej 	return 0;
   2317  1.130   thorpej }
   2318  1.130   thorpej 
   2319  1.130   thorpej /* ARGSUSED */
   2320  1.130   thorpej int
   2321  1.130   thorpej sys_setcontext(struct lwp *l, void *v, register_t *retval)
   2322  1.130   thorpej {
   2323  1.130   thorpej 	struct sys_setcontext_args /* {
   2324  1.130   thorpej 		syscallarg(const ucontext_t *) ucp;
   2325  1.130   thorpej 	} */ *uap = v;
   2326  1.130   thorpej 	ucontext_t uc;
   2327  1.130   thorpej 	int error;
   2328  1.130   thorpej 
   2329  1.130   thorpej 	if (SCARG(uap, ucp) == NULL)	/* i.e. end of uc_link chain */
   2330  1.130   thorpej 		exit1(l, W_EXITCODE(0, 0));
   2331  1.130   thorpej 	else if ((error = copyin(SCARG(uap, ucp), &uc, sizeof (uc))) != 0 ||
   2332  1.130   thorpej 	    (error = setucontext(l, &uc)) != 0)
   2333  1.130   thorpej 		return (error);
   2334  1.130   thorpej 
   2335  1.130   thorpej 	return (EJUSTRETURN);
   2336  1.108  jdolecek }
   2337  1.130   thorpej 
   2338  1.135  jdolecek /*
   2339  1.135  jdolecek  * sigtimedwait(2) system call, used also for implementation
   2340  1.135  jdolecek  * of sigwaitinfo() and sigwait().
   2341  1.135  jdolecek  *
   2342  1.135  jdolecek  * This only handles single LWP in signal wait. libpthread provides
   2343  1.135  jdolecek  * it's own sigtimedwait() wrapper to DTRT WRT individual threads.
   2344  1.135  jdolecek  */
   2345  1.135  jdolecek int
   2346  1.135  jdolecek sys___sigtimedwait(struct lwp *l, void *v, register_t *retval)
   2347  1.135  jdolecek {
   2348  1.208      cube 	return __sigtimedwait1(l, v, retval, copyout, copyin, copyout);
   2349  1.208      cube }
   2350  1.208      cube 
   2351  1.208      cube int
   2352  1.208      cube __sigtimedwait1(struct lwp *l, void *v, register_t *retval,
   2353  1.210      cube     copyout_t put_info, copyin_t fetch_timeout, copyout_t put_timeout)
   2354  1.208      cube {
   2355  1.135  jdolecek 	struct sys___sigtimedwait_args /* {
   2356  1.135  jdolecek 		syscallarg(const sigset_t *) set;
   2357  1.135  jdolecek 		syscallarg(siginfo_t *) info;
   2358  1.135  jdolecek 		syscallarg(struct timespec *) timeout;
   2359  1.135  jdolecek 	} */ *uap = v;
   2360  1.173  jdolecek 	sigset_t *waitset, twaitset;
   2361  1.135  jdolecek 	struct proc *p = l->l_proc;
   2362  1.135  jdolecek 	int error, signum, s;
   2363  1.135  jdolecek 	int timo = 0;
   2364  1.135  jdolecek 	struct timeval tvstart;
   2365  1.135  jdolecek 	struct timespec ts;
   2366  1.171  jdolecek 	ksiginfo_t *ksi;
   2367  1.135  jdolecek 
   2368  1.173  jdolecek 	MALLOC(waitset, sigset_t *, sizeof(sigset_t), M_TEMP, M_WAITOK);
   2369  1.173  jdolecek 
   2370  1.173  jdolecek 	if ((error = copyin(SCARG(uap, set), waitset, sizeof(sigset_t)))) {
   2371  1.173  jdolecek 		FREE(waitset, M_TEMP);
   2372  1.135  jdolecek 		return (error);
   2373  1.173  jdolecek 	}
   2374  1.135  jdolecek 
   2375  1.135  jdolecek 	/*
   2376  1.135  jdolecek 	 * Silently ignore SA_CANTMASK signals. psignal1() would
   2377  1.135  jdolecek 	 * ignore SA_CANTMASK signals in waitset, we do this
   2378  1.135  jdolecek 	 * only for the below siglist check.
   2379  1.135  jdolecek 	 */
   2380  1.173  jdolecek 	sigminusset(&sigcantmask, waitset);
   2381  1.135  jdolecek 
   2382  1.135  jdolecek 	/*
   2383  1.135  jdolecek 	 * First scan siglist and check if there is signal from
   2384  1.135  jdolecek 	 * our waitset already pending.
   2385  1.135  jdolecek 	 */
   2386  1.173  jdolecek 	twaitset = *waitset;
   2387  1.135  jdolecek 	__sigandset(&p->p_sigctx.ps_siglist, &twaitset);
   2388  1.135  jdolecek 	if ((signum = firstsig(&twaitset))) {
   2389  1.135  jdolecek 		/* found pending signal */
   2390  1.135  jdolecek 		sigdelset(&p->p_sigctx.ps_siglist, signum);
   2391  1.171  jdolecek 		ksi = ksiginfo_get(p, signum);
   2392  1.171  jdolecek 		if (!ksi) {
   2393  1.171  jdolecek 			/* No queued siginfo, manufacture one */
   2394  1.171  jdolecek 			ksi = pool_get(&ksiginfo_pool, PR_WAITOK);
   2395  1.171  jdolecek 			KSI_INIT(ksi);
   2396  1.171  jdolecek 			ksi->ksi_info._signo = signum;
   2397  1.171  jdolecek 			ksi->ksi_info._code = SI_USER;
   2398  1.171  jdolecek 		}
   2399  1.202     perry 
   2400  1.135  jdolecek 		goto sig;
   2401  1.135  jdolecek 	}
   2402  1.135  jdolecek 
   2403  1.135  jdolecek 	/*
   2404  1.135  jdolecek 	 * Calculate timeout, if it was specified.
   2405  1.135  jdolecek 	 */
   2406  1.135  jdolecek 	if (SCARG(uap, timeout)) {
   2407  1.135  jdolecek 		uint64_t ms;
   2408  1.135  jdolecek 
   2409  1.208      cube 		if ((error = (*fetch_timeout)(SCARG(uap, timeout), &ts, sizeof(ts))))
   2410  1.135  jdolecek 			return (error);
   2411  1.135  jdolecek 
   2412  1.135  jdolecek 		ms = (ts.tv_sec * 1000) + (ts.tv_nsec / 1000000);
   2413  1.135  jdolecek 		timo = mstohz(ms);
   2414  1.135  jdolecek 		if (timo == 0 && ts.tv_sec == 0 && ts.tv_nsec > 0)
   2415  1.135  jdolecek 			timo = 1;
   2416  1.135  jdolecek 		if (timo <= 0)
   2417  1.135  jdolecek 			return (EAGAIN);
   2418  1.135  jdolecek 
   2419  1.135  jdolecek 		/*
   2420  1.135  jdolecek 		 * Remember current mono_time, it would be used in
   2421  1.135  jdolecek 		 * ECANCELED/ERESTART case.
   2422  1.135  jdolecek 		 */
   2423  1.135  jdolecek 		s = splclock();
   2424  1.135  jdolecek 		tvstart = mono_time;
   2425  1.135  jdolecek 		splx(s);
   2426  1.135  jdolecek 	}
   2427  1.135  jdolecek 
   2428  1.135  jdolecek 	/*
   2429  1.173  jdolecek 	 * Setup ps_sigwait list. Pass pointer to malloced memory
   2430  1.173  jdolecek 	 * here; it's not possible to pass pointer to a structure
   2431  1.173  jdolecek 	 * on current process's stack, the current process might
   2432  1.173  jdolecek 	 * be swapped out at the time the signal would get delivered.
   2433  1.135  jdolecek 	 */
   2434  1.171  jdolecek 	ksi = pool_get(&ksiginfo_pool, PR_WAITOK);
   2435  1.171  jdolecek 	p->p_sigctx.ps_sigwaited = ksi;
   2436  1.173  jdolecek 	p->p_sigctx.ps_sigwait = waitset;
   2437  1.135  jdolecek 
   2438  1.135  jdolecek 	/*
   2439  1.135  jdolecek 	 * Wait for signal to arrive. We can either be woken up or
   2440  1.135  jdolecek 	 * time out.
   2441  1.135  jdolecek 	 */
   2442  1.135  jdolecek 	error = tsleep(&p->p_sigctx.ps_sigwait, PPAUSE|PCATCH, "sigwait", timo);
   2443  1.135  jdolecek 
   2444  1.135  jdolecek 	/*
   2445  1.171  jdolecek 	 * Need to find out if we woke as a result of lwp_wakeup()
   2446  1.171  jdolecek 	 * or a signal outside our wait set.
   2447  1.135  jdolecek 	 */
   2448  1.171  jdolecek 	if (error == EINTR && p->p_sigctx.ps_sigwaited
   2449  1.171  jdolecek 	    && !firstsig(&p->p_sigctx.ps_siglist)) {
   2450  1.171  jdolecek 		/* wakeup via _lwp_wakeup() */
   2451  1.171  jdolecek 		error = ECANCELED;
   2452  1.171  jdolecek 	} else if (!error && p->p_sigctx.ps_sigwaited) {
   2453  1.171  jdolecek 		/* spurious wakeup - arrange for syscall restart */
   2454  1.171  jdolecek 		error = ERESTART;
   2455  1.171  jdolecek 		goto fail;
   2456  1.135  jdolecek 	}
   2457  1.135  jdolecek 
   2458  1.135  jdolecek 	/*
   2459  1.171  jdolecek 	 * On error, clear sigwait indication. psignal1() clears it
   2460  1.135  jdolecek 	 * in !error case.
   2461  1.135  jdolecek 	 */
   2462  1.135  jdolecek 	if (error) {
   2463  1.171  jdolecek 		p->p_sigctx.ps_sigwaited = NULL;
   2464  1.135  jdolecek 
   2465  1.135  jdolecek 		/*
   2466  1.135  jdolecek 		 * If the sleep was interrupted (either by signal or wakeup),
   2467  1.135  jdolecek 		 * update the timeout and copyout new value back.
   2468  1.135  jdolecek 		 * It would be used when the syscall would be restarted
   2469  1.135  jdolecek 		 * or called again.
   2470  1.135  jdolecek 		 */
   2471  1.135  jdolecek 		if (timo && (error == ERESTART || error == ECANCELED)) {
   2472  1.135  jdolecek 			struct timeval tvnow, tvtimo;
   2473  1.135  jdolecek 			int err;
   2474  1.135  jdolecek 
   2475  1.135  jdolecek 			s = splclock();
   2476  1.135  jdolecek 			tvnow = mono_time;
   2477  1.135  jdolecek 			splx(s);
   2478  1.135  jdolecek 
   2479  1.135  jdolecek 			TIMESPEC_TO_TIMEVAL(&tvtimo, &ts);
   2480  1.135  jdolecek 
   2481  1.135  jdolecek 			/* compute how much time has passed since start */
   2482  1.135  jdolecek 			timersub(&tvnow, &tvstart, &tvnow);
   2483  1.135  jdolecek 			/* substract passed time from timeout */
   2484  1.135  jdolecek 			timersub(&tvtimo, &tvnow, &tvtimo);
   2485  1.135  jdolecek 
   2486  1.171  jdolecek 			if (tvtimo.tv_sec < 0) {
   2487  1.171  jdolecek 				error = EAGAIN;
   2488  1.171  jdolecek 				goto fail;
   2489  1.171  jdolecek 			}
   2490  1.171  jdolecek 
   2491  1.135  jdolecek 			TIMEVAL_TO_TIMESPEC(&tvtimo, &ts);
   2492  1.135  jdolecek 
   2493  1.135  jdolecek 			/* copy updated timeout to userland */
   2494  1.208      cube 			if ((err = (*put_timeout)(&ts, SCARG(uap, timeout),
   2495  1.208      cube 			    sizeof(ts)))) {
   2496  1.171  jdolecek 				error = err;
   2497  1.171  jdolecek 				goto fail;
   2498  1.171  jdolecek 			}
   2499  1.135  jdolecek 		}
   2500  1.135  jdolecek 
   2501  1.171  jdolecek 		goto fail;
   2502  1.135  jdolecek 	}
   2503  1.135  jdolecek 
   2504  1.135  jdolecek 	/*
   2505  1.135  jdolecek 	 * If a signal from the wait set arrived, copy it to userland.
   2506  1.171  jdolecek 	 * Copy only the used part of siginfo, the padding part is
   2507  1.171  jdolecek 	 * left unchanged (userland is not supposed to touch it anyway).
   2508  1.135  jdolecek 	 */
   2509  1.135  jdolecek  sig:
   2510  1.208      cube 	return (*put_info)(&ksi->ksi_info, SCARG(uap, info), sizeof(ksi->ksi_info));
   2511  1.135  jdolecek 
   2512  1.171  jdolecek  fail:
   2513  1.173  jdolecek 	FREE(waitset, M_TEMP);
   2514  1.171  jdolecek 	pool_put(&ksiginfo_pool, ksi);
   2515  1.171  jdolecek 	p->p_sigctx.ps_sigwait = NULL;
   2516  1.135  jdolecek 
   2517  1.171  jdolecek 	return (error);
   2518  1.135  jdolecek }
   2519  1.108  jdolecek 
   2520  1.108  jdolecek /*
   2521  1.108  jdolecek  * Returns true if signal is ignored or masked for passed process.
   2522  1.108  jdolecek  */
   2523  1.108  jdolecek int
   2524  1.112     lukem sigismasked(struct proc *p, int sig)
   2525  1.108  jdolecek {
   2526  1.112     lukem 
   2527  1.117     enami 	return (sigismember(&p->p_sigctx.ps_sigignore, sig) ||
   2528  1.117     enami 	    sigismember(&p->p_sigctx.ps_sigmask, sig));
   2529   1.29       cgd }
   2530  1.126  jdolecek 
   2531  1.126  jdolecek static int
   2532  1.126  jdolecek filt_sigattach(struct knote *kn)
   2533  1.126  jdolecek {
   2534  1.126  jdolecek 	struct proc *p = curproc;
   2535  1.126  jdolecek 
   2536  1.126  jdolecek 	kn->kn_ptr.p_proc = p;
   2537  1.126  jdolecek 	kn->kn_flags |= EV_CLEAR;               /* automatically set */
   2538  1.126  jdolecek 
   2539  1.126  jdolecek 	SLIST_INSERT_HEAD(&p->p_klist, kn, kn_selnext);
   2540  1.126  jdolecek 
   2541  1.126  jdolecek 	return (0);
   2542  1.126  jdolecek }
   2543  1.126  jdolecek 
   2544  1.126  jdolecek static void
   2545  1.126  jdolecek filt_sigdetach(struct knote *kn)
   2546  1.126  jdolecek {
   2547  1.126  jdolecek 	struct proc *p = kn->kn_ptr.p_proc;
   2548  1.126  jdolecek 
   2549  1.126  jdolecek 	SLIST_REMOVE(&p->p_klist, kn, knote, kn_selnext);
   2550  1.126  jdolecek }
   2551  1.126  jdolecek 
   2552  1.126  jdolecek /*
   2553  1.126  jdolecek  * signal knotes are shared with proc knotes, so we apply a mask to
   2554  1.126  jdolecek  * the hint in order to differentiate them from process hints.  This
   2555  1.126  jdolecek  * could be avoided by using a signal-specific knote list, but probably
   2556  1.126  jdolecek  * isn't worth the trouble.
   2557  1.126  jdolecek  */
   2558  1.126  jdolecek static int
   2559  1.126  jdolecek filt_signal(struct knote *kn, long hint)
   2560  1.126  jdolecek {
   2561  1.126  jdolecek 
   2562  1.126  jdolecek 	if (hint & NOTE_SIGNAL) {
   2563  1.126  jdolecek 		hint &= ~NOTE_SIGNAL;
   2564  1.126  jdolecek 
   2565  1.126  jdolecek 		if (kn->kn_id == hint)
   2566  1.126  jdolecek 			kn->kn_data++;
   2567  1.126  jdolecek 	}
   2568  1.126  jdolecek 	return (kn->kn_data != 0);
   2569  1.126  jdolecek }
   2570  1.126  jdolecek 
   2571  1.126  jdolecek const struct filterops sig_filtops = {
   2572  1.126  jdolecek 	0, filt_sigattach, filt_sigdetach, filt_signal
   2573  1.126  jdolecek };
   2574