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sys_sig.c revision 1.15.4.1
      1  1.15.4.1   simonb /*	$NetBSD: sys_sig.c,v 1.15.4.1 2008/06/27 15:11:39 simonb Exp $	*/
      2       1.2       ad 
      3       1.2       ad /*-
      4      1.14       ad  * Copyright (c) 2006, 2007, 2008 The NetBSD Foundation, Inc.
      5       1.2       ad  * All rights reserved.
      6       1.2       ad  *
      7       1.2       ad  * This code is derived from software contributed to The NetBSD Foundation
      8       1.2       ad  * by Andrew Doran.
      9       1.2       ad  *
     10       1.2       ad  * Redistribution and use in source and binary forms, with or without
     11       1.2       ad  * modification, are permitted provided that the following conditions
     12       1.2       ad  * are met:
     13       1.2       ad  * 1. Redistributions of source code must retain the above copyright
     14       1.2       ad  *    notice, this list of conditions and the following disclaimer.
     15       1.2       ad  * 2. Redistributions in binary form must reproduce the above copyright
     16       1.2       ad  *    notice, this list of conditions and the following disclaimer in the
     17       1.2       ad  *    documentation and/or other materials provided with the distribution.
     18       1.2       ad  *
     19       1.2       ad  * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
     20       1.2       ad  * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
     21       1.2       ad  * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
     22       1.2       ad  * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
     23       1.2       ad  * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
     24       1.2       ad  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
     25       1.2       ad  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
     26       1.2       ad  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
     27       1.2       ad  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
     28       1.2       ad  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
     29       1.2       ad  * POSSIBILITY OF SUCH DAMAGE.
     30       1.2       ad  */
     31       1.2       ad 
     32       1.2       ad /*
     33       1.2       ad  * Copyright (c) 1982, 1986, 1989, 1991, 1993
     34       1.2       ad  *	The Regents of the University of California.  All rights reserved.
     35       1.2       ad  * (c) UNIX System Laboratories, Inc.
     36       1.2       ad  * All or some portions of this file are derived from material licensed
     37       1.2       ad  * to the University of California by American Telephone and Telegraph
     38       1.2       ad  * Co. or Unix System Laboratories, Inc. and are reproduced herein with
     39       1.2       ad  * the permission of UNIX System Laboratories, Inc.
     40       1.2       ad  *
     41       1.2       ad  * Redistribution and use in source and binary forms, with or without
     42       1.2       ad  * modification, are permitted provided that the following conditions
     43       1.2       ad  * are met:
     44       1.2       ad  * 1. Redistributions of source code must retain the above copyright
     45       1.2       ad  *    notice, this list of conditions and the following disclaimer.
     46       1.2       ad  * 2. Redistributions in binary form must reproduce the above copyright
     47       1.2       ad  *    notice, this list of conditions and the following disclaimer in the
     48       1.2       ad  *    documentation and/or other materials provided with the distribution.
     49       1.2       ad  * 3. Neither the name of the University nor the names of its contributors
     50       1.2       ad  *    may be used to endorse or promote products derived from this software
     51       1.2       ad  *    without specific prior written permission.
     52       1.2       ad  *
     53       1.2       ad  * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
     54       1.2       ad  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     55       1.2       ad  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     56       1.2       ad  * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
     57       1.2       ad  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     58       1.2       ad  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
     59       1.2       ad  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     60       1.2       ad  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     61       1.2       ad  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     62       1.2       ad  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     63       1.2       ad  * SUCH DAMAGE.
     64       1.2       ad  *
     65       1.2       ad  *	@(#)kern_sig.c	8.14 (Berkeley) 5/14/95
     66       1.2       ad  */
     67       1.2       ad 
     68       1.2       ad #include <sys/cdefs.h>
     69  1.15.4.1   simonb __KERNEL_RCSID(0, "$NetBSD: sys_sig.c,v 1.15.4.1 2008/06/27 15:11:39 simonb Exp $");
     70       1.2       ad 
     71       1.2       ad #include "opt_ptrace.h"
     72       1.2       ad #include "opt_compat_netbsd.h"
     73       1.2       ad #include "opt_compat_netbsd32.h"
     74       1.2       ad 
     75       1.2       ad #include <sys/param.h>
     76       1.2       ad #include <sys/kernel.h>
     77       1.2       ad #include <sys/signalvar.h>
     78       1.2       ad #include <sys/proc.h>
     79       1.2       ad #include <sys/pool.h>
     80       1.2       ad #include <sys/syscallargs.h>
     81       1.2       ad #include <sys/kauth.h>
     82       1.2       ad #include <sys/wait.h>
     83       1.2       ad #include <sys/kmem.h>
     84       1.2       ad 
     85       1.2       ad #ifdef COMPAT_16
     86       1.2       ad /* ARGSUSED */
     87       1.2       ad int
     88       1.9      dsl compat_16_sys___sigaction14(struct lwp *l, const struct compat_16_sys___sigaction14_args *uap, register_t *retval)
     89       1.2       ad {
     90       1.9      dsl 	/* {
     91       1.2       ad 		syscallarg(int)				signum;
     92       1.2       ad 		syscallarg(const struct sigaction *)	nsa;
     93       1.2       ad 		syscallarg(struct sigaction *)		osa;
     94       1.9      dsl 	} */
     95       1.2       ad 	struct sigaction	nsa, osa;
     96       1.2       ad 	int			error;
     97       1.2       ad 
     98       1.2       ad 	if (SCARG(uap, nsa)) {
     99       1.2       ad 		error = copyin(SCARG(uap, nsa), &nsa, sizeof(nsa));
    100       1.2       ad 		if (error)
    101       1.2       ad 			return (error);
    102       1.2       ad 	}
    103       1.2       ad 	error = sigaction1(l, SCARG(uap, signum),
    104       1.2       ad 	    SCARG(uap, nsa) ? &nsa : 0, SCARG(uap, osa) ? &osa : 0,
    105       1.2       ad 	    NULL, 0);
    106       1.2       ad 	if (error)
    107       1.2       ad 		return (error);
    108       1.2       ad 	if (SCARG(uap, osa)) {
    109       1.2       ad 		error = copyout(&osa, SCARG(uap, osa), sizeof(osa));
    110       1.2       ad 		if (error)
    111       1.2       ad 			return (error);
    112       1.2       ad 	}
    113       1.2       ad 	return (0);
    114       1.2       ad }
    115       1.2       ad #endif
    116       1.2       ad 
    117       1.2       ad /* ARGSUSED */
    118       1.2       ad int
    119       1.9      dsl sys___sigaction_sigtramp(struct lwp *l, const struct sys___sigaction_sigtramp_args *uap, register_t *retval)
    120       1.2       ad {
    121       1.9      dsl 	/* {
    122       1.2       ad 		syscallarg(int)				signum;
    123       1.2       ad 		syscallarg(const struct sigaction *)	nsa;
    124       1.2       ad 		syscallarg(struct sigaction *)		osa;
    125       1.2       ad 		syscallarg(void *)			tramp;
    126       1.2       ad 		syscallarg(int)				vers;
    127       1.9      dsl 	} */
    128       1.2       ad 	struct sigaction nsa, osa;
    129       1.2       ad 	int error;
    130       1.2       ad 
    131       1.2       ad 	if (SCARG(uap, nsa)) {
    132       1.2       ad 		error = copyin(SCARG(uap, nsa), &nsa, sizeof(nsa));
    133       1.2       ad 		if (error)
    134       1.2       ad 			return (error);
    135       1.2       ad 	}
    136       1.2       ad 	error = sigaction1(l, SCARG(uap, signum),
    137       1.2       ad 	    SCARG(uap, nsa) ? &nsa : 0, SCARG(uap, osa) ? &osa : 0,
    138       1.2       ad 	    SCARG(uap, tramp), SCARG(uap, vers));
    139       1.2       ad 	if (error)
    140       1.2       ad 		return (error);
    141       1.2       ad 	if (SCARG(uap, osa)) {
    142       1.2       ad 		error = copyout(&osa, SCARG(uap, osa), sizeof(osa));
    143       1.2       ad 		if (error)
    144       1.2       ad 			return (error);
    145       1.2       ad 	}
    146       1.2       ad 	return (0);
    147       1.2       ad }
    148       1.2       ad 
    149       1.2       ad /*
    150       1.2       ad  * Manipulate signal mask.  Note that we receive new mask, not pointer, and
    151       1.2       ad  * return old mask as return value; the library stub does the rest.
    152       1.2       ad  */
    153       1.2       ad int
    154       1.9      dsl sys___sigprocmask14(struct lwp *l, const struct sys___sigprocmask14_args *uap, register_t *retval)
    155       1.2       ad {
    156       1.9      dsl 	/* {
    157       1.2       ad 		syscallarg(int)			how;
    158       1.2       ad 		syscallarg(const sigset_t *)	set;
    159       1.2       ad 		syscallarg(sigset_t *)		oset;
    160       1.9      dsl 	} */
    161       1.2       ad 	struct proc	*p = l->l_proc;
    162       1.2       ad 	sigset_t	nss, oss;
    163       1.2       ad 	int		error;
    164       1.2       ad 
    165       1.2       ad 	if (SCARG(uap, set)) {
    166       1.2       ad 		error = copyin(SCARG(uap, set), &nss, sizeof(nss));
    167       1.2       ad 		if (error)
    168       1.2       ad 			return (error);
    169       1.2       ad 	}
    170      1.14       ad 	mutex_enter(p->p_lock);
    171       1.2       ad 	error = sigprocmask1(l, SCARG(uap, how),
    172       1.2       ad 	    SCARG(uap, set) ? &nss : 0, SCARG(uap, oset) ? &oss : 0);
    173      1.14       ad 	mutex_exit(p->p_lock);
    174       1.2       ad 	if (error)
    175       1.2       ad 		return (error);
    176       1.2       ad 	if (SCARG(uap, oset)) {
    177       1.2       ad 		error = copyout(&oss, SCARG(uap, oset), sizeof(oss));
    178       1.2       ad 		if (error)
    179       1.2       ad 			return (error);
    180       1.2       ad 	}
    181       1.2       ad 	return (0);
    182       1.2       ad }
    183       1.2       ad 
    184       1.2       ad /* ARGSUSED */
    185       1.2       ad int
    186       1.9      dsl sys___sigpending14(struct lwp *l, const struct sys___sigpending14_args *uap, register_t *retval)
    187       1.2       ad {
    188       1.9      dsl 	/* {
    189       1.2       ad 		syscallarg(sigset_t *)	set;
    190       1.9      dsl 	} */
    191       1.2       ad 	sigset_t ss;
    192       1.2       ad 
    193       1.2       ad 	sigpending1(l, &ss);
    194       1.2       ad 	return (copyout(&ss, SCARG(uap, set), sizeof(ss)));
    195       1.2       ad }
    196       1.2       ad 
    197       1.2       ad /*
    198       1.2       ad  * Suspend process until signal, providing mask to be set in the meantime.
    199       1.2       ad  * Note nonstandard calling convention: libc stub passes mask, not pointer,
    200       1.2       ad  * to save a copyin.
    201       1.2       ad  */
    202       1.2       ad /* ARGSUSED */
    203       1.2       ad int
    204       1.9      dsl sys___sigsuspend14(struct lwp *l, const struct sys___sigsuspend14_args *uap, register_t *retval)
    205       1.2       ad {
    206       1.9      dsl 	/* {
    207       1.2       ad 		syscallarg(const sigset_t *)	set;
    208       1.9      dsl 	} */
    209       1.2       ad 	sigset_t	ss;
    210       1.2       ad 	int		error;
    211       1.2       ad 
    212       1.2       ad 	if (SCARG(uap, set)) {
    213       1.2       ad 		error = copyin(SCARG(uap, set), &ss, sizeof(ss));
    214       1.2       ad 		if (error)
    215       1.2       ad 			return (error);
    216       1.2       ad 	}
    217       1.2       ad 
    218       1.2       ad 	return (sigsuspend1(l, SCARG(uap, set) ? &ss : 0));
    219       1.2       ad }
    220       1.2       ad 
    221       1.2       ad /* ARGSUSED */
    222       1.2       ad int
    223       1.9      dsl sys___sigaltstack14(struct lwp *l, const struct sys___sigaltstack14_args *uap, register_t *retval)
    224       1.2       ad {
    225       1.9      dsl 	/* {
    226       1.2       ad 		syscallarg(const struct sigaltstack *)	nss;
    227       1.2       ad 		syscallarg(struct sigaltstack *)	oss;
    228       1.9      dsl 	} */
    229       1.2       ad 	struct sigaltstack	nss, oss;
    230       1.2       ad 	int			error;
    231       1.2       ad 
    232       1.2       ad 	if (SCARG(uap, nss)) {
    233       1.2       ad 		error = copyin(SCARG(uap, nss), &nss, sizeof(nss));
    234       1.2       ad 		if (error)
    235       1.2       ad 			return (error);
    236       1.2       ad 	}
    237       1.2       ad 	error = sigaltstack1(l,
    238       1.2       ad 	    SCARG(uap, nss) ? &nss : 0, SCARG(uap, oss) ? &oss : 0);
    239       1.2       ad 	if (error)
    240       1.2       ad 		return (error);
    241       1.2       ad 	if (SCARG(uap, oss)) {
    242       1.2       ad 		error = copyout(&oss, SCARG(uap, oss), sizeof(oss));
    243       1.2       ad 		if (error)
    244       1.2       ad 			return (error);
    245       1.2       ad 	}
    246       1.2       ad 	return (0);
    247       1.2       ad }
    248       1.2       ad 
    249       1.2       ad /* ARGSUSED */
    250       1.2       ad int
    251       1.9      dsl sys_kill(struct lwp *l, const struct sys_kill_args *uap, register_t *retval)
    252       1.2       ad {
    253       1.9      dsl 	/* {
    254       1.2       ad 		syscallarg(int)	pid;
    255       1.2       ad 		syscallarg(int)	signum;
    256       1.9      dsl 	} */
    257       1.2       ad 	struct proc	*p;
    258       1.2       ad 	ksiginfo_t	ksi;
    259       1.2       ad 	int signum = SCARG(uap, signum);
    260       1.2       ad 	int error;
    261       1.2       ad 
    262       1.2       ad 	if ((u_int)signum >= NSIG)
    263       1.2       ad 		return (EINVAL);
    264       1.2       ad 	KSI_INIT(&ksi);
    265       1.2       ad 	ksi.ksi_signo = signum;
    266       1.2       ad 	ksi.ksi_code = SI_USER;
    267       1.2       ad 	ksi.ksi_pid = l->l_proc->p_pid;
    268       1.2       ad 	ksi.ksi_uid = kauth_cred_geteuid(l->l_cred);
    269       1.2       ad 	if (SCARG(uap, pid) > 0) {
    270       1.2       ad 		/* kill single process */
    271      1.13       ad 		mutex_enter(proc_lock);
    272      1.13       ad 		if ((p = p_find(SCARG(uap, pid), PFIND_LOCKED)) == NULL) {
    273      1.13       ad 			mutex_exit(proc_lock);
    274       1.2       ad 			return (ESRCH);
    275      1.13       ad 		}
    276      1.14       ad 		mutex_enter(p->p_lock);
    277       1.2       ad 		error = kauth_authorize_process(l->l_cred,
    278      1.11     elad 		    KAUTH_PROCESS_SIGNAL, p, KAUTH_ARG(signum),
    279       1.2       ad 		    NULL, NULL);
    280       1.2       ad 		if (!error && signum) {
    281       1.2       ad 			kpsignal2(p, &ksi);
    282       1.2       ad 		}
    283      1.14       ad 		mutex_exit(p->p_lock);
    284      1.13       ad 		mutex_exit(proc_lock);
    285       1.2       ad 		return (error);
    286       1.2       ad 	}
    287       1.2       ad 	switch (SCARG(uap, pid)) {
    288       1.2       ad 	case -1:		/* broadcast signal */
    289       1.2       ad 		return (killpg1(l, &ksi, 0, 1));
    290       1.2       ad 	case 0:			/* signal own process group */
    291       1.2       ad 		return (killpg1(l, &ksi, 0, 0));
    292       1.2       ad 	default:		/* negative explicit process group */
    293       1.2       ad 		return (killpg1(l, &ksi, -SCARG(uap, pid), 0));
    294       1.2       ad 	}
    295       1.2       ad 	/* NOTREACHED */
    296       1.2       ad }
    297       1.2       ad 
    298       1.2       ad /* ARGSUSED */
    299       1.2       ad int
    300       1.9      dsl sys_getcontext(struct lwp *l, const struct sys_getcontext_args *uap, register_t *retval)
    301       1.2       ad {
    302       1.9      dsl 	/* {
    303       1.2       ad 		syscallarg(struct __ucontext *) ucp;
    304       1.9      dsl 	} */
    305       1.2       ad 	struct proc *p = l->l_proc;
    306       1.2       ad 	ucontext_t uc;
    307       1.2       ad 
    308      1.14       ad 	mutex_enter(p->p_lock);
    309       1.2       ad 	getucontext(l, &uc);
    310      1.14       ad 	mutex_exit(p->p_lock);
    311       1.2       ad 
    312       1.2       ad 	return (copyout(&uc, SCARG(uap, ucp), sizeof (*SCARG(uap, ucp))));
    313       1.2       ad }
    314       1.2       ad 
    315       1.2       ad /* ARGSUSED */
    316       1.2       ad int
    317       1.9      dsl sys_setcontext(struct lwp *l, const struct sys_setcontext_args *uap, register_t *retval)
    318       1.2       ad {
    319       1.9      dsl 	/* {
    320       1.2       ad 		syscallarg(const ucontext_t *) ucp;
    321       1.9      dsl 	} */
    322       1.2       ad 	struct proc *p = l->l_proc;
    323       1.2       ad 	ucontext_t uc;
    324       1.2       ad 	int error;
    325       1.2       ad 
    326       1.2       ad 	error = copyin(SCARG(uap, ucp), &uc, sizeof (uc));
    327       1.2       ad 	if (error)
    328       1.2       ad 		return (error);
    329       1.2       ad 	if (!(uc.uc_flags & _UC_CPU))
    330       1.2       ad 		return (EINVAL);
    331      1.14       ad 	mutex_enter(p->p_lock);
    332       1.2       ad 	error = setucontext(l, &uc);
    333      1.14       ad 	mutex_exit(p->p_lock);
    334       1.2       ad 	if (error)
    335       1.2       ad  		return (error);
    336       1.2       ad 
    337       1.2       ad 	return (EJUSTRETURN);
    338       1.2       ad }
    339       1.2       ad 
    340       1.2       ad /*
    341       1.2       ad  * sigtimedwait(2) system call, used also for implementation
    342       1.2       ad  * of sigwaitinfo() and sigwait().
    343       1.2       ad  *
    344       1.2       ad  * This only handles single LWP in signal wait. libpthread provides
    345       1.2       ad  * it's own sigtimedwait() wrapper to DTRT WRT individual threads.
    346       1.2       ad  */
    347       1.2       ad int
    348       1.9      dsl sys___sigtimedwait(struct lwp *l, const struct sys___sigtimedwait_args *uap, register_t *retval)
    349       1.2       ad {
    350       1.2       ad 
    351       1.9      dsl 	return __sigtimedwait1(l, uap, retval, copyout, copyin, copyout);
    352       1.2       ad }
    353       1.2       ad 
    354       1.2       ad int
    355       1.2       ad sigaction1(struct lwp *l, int signum, const struct sigaction *nsa,
    356       1.2       ad 	struct sigaction *osa, const void *tramp, int vers)
    357       1.2       ad {
    358       1.2       ad 	struct proc *p;
    359       1.2       ad 	struct sigacts *ps;
    360       1.2       ad 	sigset_t tset;
    361       1.2       ad 	int prop, error;
    362       1.2       ad 	ksiginfoq_t kq;
    363       1.2       ad 
    364       1.2       ad 	if (signum <= 0 || signum >= NSIG)
    365       1.2       ad 		return (EINVAL);
    366       1.2       ad 
    367       1.2       ad 	p = l->l_proc;
    368       1.2       ad 	error = 0;
    369       1.2       ad 	ksiginfo_queue_init(&kq);
    370       1.2       ad 
    371       1.2       ad 	/*
    372       1.2       ad 	 * Trampoline ABI version 0 is reserved for the legacy kernel
    373       1.2       ad 	 * provided on-stack trampoline.  Conversely, if we are using a
    374       1.2       ad 	 * non-0 ABI version, we must have a trampoline.  Only validate the
    375       1.2       ad 	 * vers if a new sigaction was supplied. Emulations use legacy
    376       1.2       ad 	 * kernel trampolines with version 0, alternatively check for that
    377       1.2       ad 	 * too.
    378       1.2       ad 	 */
    379       1.2       ad 	if ((vers != 0 && tramp == NULL) ||
    380       1.2       ad #ifdef SIGTRAMP_VALID
    381       1.2       ad 	    (nsa != NULL &&
    382       1.2       ad 	    ((vers == 0) ?
    383       1.2       ad 		(p->p_emul->e_sigcode == NULL) :
    384       1.2       ad 		!SIGTRAMP_VALID(vers))) ||
    385       1.2       ad #endif
    386       1.2       ad 	    (vers == 0 && tramp != NULL)) {
    387       1.2       ad 		return (EINVAL);
    388       1.2       ad 	}
    389       1.2       ad 
    390      1.14       ad 	mutex_enter(p->p_lock);
    391       1.2       ad 
    392       1.2       ad 	ps = p->p_sigacts;
    393       1.2       ad 	if (osa)
    394       1.2       ad 		*osa = SIGACTION_PS(ps, signum);
    395       1.2       ad 	if (!nsa)
    396       1.2       ad 		goto out;
    397       1.2       ad 
    398       1.2       ad 	prop = sigprop[signum];
    399       1.2       ad 	if ((nsa->sa_flags & ~SA_ALLBITS) || (prop & SA_CANTMASK)) {
    400       1.2       ad 		error = EINVAL;
    401       1.2       ad 		goto out;
    402       1.2       ad 	}
    403       1.2       ad 
    404       1.2       ad 	SIGACTION_PS(ps, signum) = *nsa;
    405       1.2       ad 	ps->sa_sigdesc[signum].sd_tramp = tramp;
    406       1.2       ad 	ps->sa_sigdesc[signum].sd_vers = vers;
    407       1.2       ad 	sigminusset(&sigcantmask, &SIGACTION_PS(ps, signum).sa_mask);
    408       1.2       ad 
    409       1.2       ad 	if ((prop & SA_NORESET) != 0)
    410       1.2       ad 		SIGACTION_PS(ps, signum).sa_flags &= ~SA_RESETHAND;
    411       1.2       ad 
    412       1.2       ad 	if (signum == SIGCHLD) {
    413       1.2       ad 		if (nsa->sa_flags & SA_NOCLDSTOP)
    414       1.2       ad 			p->p_sflag |= PS_NOCLDSTOP;
    415       1.2       ad 		else
    416       1.2       ad 			p->p_sflag &= ~PS_NOCLDSTOP;
    417       1.2       ad 		if (nsa->sa_flags & SA_NOCLDWAIT) {
    418       1.2       ad 			/*
    419       1.2       ad 			 * Paranoia: since SA_NOCLDWAIT is implemented by
    420       1.2       ad 			 * reparenting the dying child to PID 1 (and trust
    421       1.2       ad 			 * it to reap the zombie), PID 1 itself is forbidden
    422       1.2       ad 			 * to set SA_NOCLDWAIT.
    423       1.2       ad 			 */
    424       1.2       ad 			if (p->p_pid == 1)
    425       1.4    pavel 				p->p_flag &= ~PK_NOCLDWAIT;
    426       1.2       ad 			else
    427       1.4    pavel 				p->p_flag |= PK_NOCLDWAIT;
    428       1.2       ad 		} else
    429       1.4    pavel 			p->p_flag &= ~PK_NOCLDWAIT;
    430       1.2       ad 
    431       1.2       ad 		if (nsa->sa_handler == SIG_IGN) {
    432       1.2       ad 			/*
    433       1.2       ad 			 * Paranoia: same as above.
    434       1.2       ad 			 */
    435       1.2       ad 			if (p->p_pid == 1)
    436       1.4    pavel 				p->p_flag &= ~PK_CLDSIGIGN;
    437       1.2       ad 			else
    438       1.4    pavel 				p->p_flag |= PK_CLDSIGIGN;
    439       1.2       ad 		} else
    440       1.4    pavel 			p->p_flag &= ~PK_CLDSIGIGN;
    441       1.2       ad 	}
    442       1.2       ad 
    443       1.2       ad 	if ((nsa->sa_flags & SA_NODEFER) == 0)
    444       1.2       ad 		sigaddset(&SIGACTION_PS(ps, signum).sa_mask, signum);
    445       1.2       ad 	else
    446       1.2       ad 		sigdelset(&SIGACTION_PS(ps, signum).sa_mask, signum);
    447       1.2       ad 
    448       1.2       ad 	/*
    449       1.2       ad 	 * Set bit in p_sigctx.ps_sigignore for signals that are set to
    450       1.2       ad 	 * SIG_IGN, and for signals set to SIG_DFL where the default is to
    451       1.2       ad 	 * ignore. However, don't put SIGCONT in p_sigctx.ps_sigignore, as
    452       1.2       ad 	 * we have to restart the process.
    453       1.2       ad 	 */
    454       1.2       ad 	if (nsa->sa_handler == SIG_IGN ||
    455       1.2       ad 	    (nsa->sa_handler == SIG_DFL && (prop & SA_IGNORE) != 0)) {
    456       1.2       ad 		/* Never to be seen again. */
    457       1.2       ad 		sigemptyset(&tset);
    458       1.2       ad 		sigaddset(&tset, signum);
    459       1.2       ad 		sigclearall(p, &tset, &kq);
    460       1.2       ad 		if (signum != SIGCONT) {
    461       1.2       ad 			/* Easier in psignal */
    462       1.2       ad 			sigaddset(&p->p_sigctx.ps_sigignore, signum);
    463       1.2       ad 		}
    464       1.2       ad 		sigdelset(&p->p_sigctx.ps_sigcatch, signum);
    465       1.2       ad 	} else {
    466       1.2       ad 		sigdelset(&p->p_sigctx.ps_sigignore, signum);
    467       1.2       ad 		if (nsa->sa_handler == SIG_DFL)
    468       1.2       ad 			sigdelset(&p->p_sigctx.ps_sigcatch, signum);
    469       1.2       ad 		else
    470       1.2       ad 			sigaddset(&p->p_sigctx.ps_sigcatch, signum);
    471       1.2       ad 	}
    472       1.2       ad 
    473       1.2       ad 	/*
    474       1.2       ad 	 * Previously held signals may now have become visible.  Ensure that
    475       1.2       ad 	 * we check for them before returning to userspace.
    476       1.2       ad 	 */
    477       1.6       ad 	if (sigispending(l, 0)) {
    478       1.6       ad 		lwp_lock(l);
    479       1.6       ad 		l->l_flag |= LW_PENDSIG;
    480       1.6       ad 		lwp_unlock(l);
    481       1.6       ad 	}
    482       1.2       ad  out:
    483      1.14       ad 	mutex_exit(p->p_lock);
    484       1.2       ad 	ksiginfo_queue_drain(&kq);
    485       1.2       ad 
    486       1.2       ad 	return (error);
    487       1.2       ad }
    488       1.2       ad 
    489       1.2       ad int
    490       1.2       ad sigprocmask1(struct lwp *l, int how, const sigset_t *nss, sigset_t *oss)
    491       1.2       ad {
    492       1.2       ad 	int more;
    493       1.2       ad 
    494      1.14       ad 	KASSERT(mutex_owned(l->l_proc->p_lock));
    495       1.2       ad 
    496       1.2       ad 	if (oss)
    497       1.2       ad 		*oss = l->l_sigmask;
    498       1.2       ad 	if (nss) {
    499       1.2       ad 		switch (how) {
    500       1.2       ad 		case SIG_BLOCK:
    501       1.2       ad 			sigplusset(nss, &l->l_sigmask);
    502       1.2       ad 			more = 0;
    503       1.2       ad 			break;
    504       1.2       ad 		case SIG_UNBLOCK:
    505       1.2       ad 			sigminusset(nss, &l->l_sigmask);
    506       1.2       ad 			more = 1;
    507       1.2       ad 			break;
    508       1.2       ad 		case SIG_SETMASK:
    509       1.2       ad 			l->l_sigmask = *nss;
    510       1.2       ad 			more = 1;
    511       1.2       ad 			break;
    512       1.2       ad 		default:
    513       1.2       ad 			return (EINVAL);
    514       1.2       ad 		}
    515       1.2       ad 		sigminusset(&sigcantmask, &l->l_sigmask);
    516       1.6       ad 		if (more && sigispending(l, 0)) {
    517       1.2       ad 			/*
    518       1.2       ad 			 * Check for pending signals on return to user.
    519       1.2       ad 			 */
    520       1.2       ad 			lwp_lock(l);
    521       1.4    pavel 			l->l_flag |= LW_PENDSIG;
    522       1.2       ad 			lwp_unlock(l);
    523       1.2       ad 		}
    524       1.2       ad 	}
    525       1.2       ad 
    526       1.2       ad 	return (0);
    527       1.2       ad }
    528       1.2       ad 
    529       1.2       ad void
    530       1.2       ad sigpending1(struct lwp *l, sigset_t *ss)
    531       1.2       ad {
    532       1.2       ad 	struct proc *p = l->l_proc;
    533       1.2       ad 
    534      1.14       ad 	mutex_enter(p->p_lock);
    535       1.2       ad 	*ss = l->l_sigpend.sp_set;
    536       1.2       ad 	sigplusset(&p->p_sigpend.sp_set, ss);
    537      1.14       ad 	mutex_exit(p->p_lock);
    538       1.2       ad }
    539       1.2       ad 
    540       1.2       ad int
    541       1.2       ad sigsuspend1(struct lwp *l, const sigset_t *ss)
    542       1.2       ad {
    543       1.2       ad 	struct proc *p;
    544       1.2       ad 
    545       1.2       ad 	p = l->l_proc;
    546       1.2       ad 
    547       1.2       ad 	if (ss) {
    548       1.2       ad 		/*
    549      1.12     yamt 		 * When returning from sigsuspend, we want
    550       1.2       ad 		 * the old mask to be restored after the
    551       1.2       ad 		 * signal handler has finished.  Thus, we
    552       1.2       ad 		 * save it here and mark the sigctx structure
    553       1.2       ad 		 * to indicate this.
    554       1.2       ad 		 */
    555      1.14       ad 		mutex_enter(p->p_lock);
    556       1.2       ad 		l->l_sigrestore = 1;
    557       1.2       ad 		l->l_sigoldmask = l->l_sigmask;
    558       1.2       ad 		l->l_sigmask = *ss;
    559       1.2       ad 		sigminusset(&sigcantmask, &l->l_sigmask);
    560       1.2       ad 
    561       1.2       ad 		/* Check for pending signals when sleeping. */
    562       1.6       ad 		if (sigispending(l, 0)) {
    563       1.6       ad 			lwp_lock(l);
    564       1.6       ad 			l->l_flag |= LW_PENDSIG;
    565       1.6       ad 			lwp_unlock(l);
    566       1.6       ad 		}
    567      1.14       ad 		mutex_exit(p->p_lock);
    568       1.2       ad 	}
    569       1.2       ad 
    570       1.5  thorpej 	while (kpause("pause", true, 0, NULL) == 0)
    571       1.2       ad 		;
    572       1.2       ad 
    573       1.2       ad 	/* always return EINTR rather than ERESTART... */
    574       1.2       ad 	return (EINTR);
    575       1.2       ad }
    576       1.2       ad 
    577       1.2       ad int
    578       1.2       ad sigaltstack1(struct lwp *l, const struct sigaltstack *nss,
    579       1.2       ad 	     struct sigaltstack *oss)
    580       1.2       ad {
    581       1.2       ad 	struct proc *p = l->l_proc;
    582       1.2       ad 	int error = 0;
    583       1.2       ad 
    584      1.14       ad 	mutex_enter(p->p_lock);
    585       1.2       ad 
    586       1.2       ad 	if (oss)
    587       1.2       ad 		*oss = l->l_sigstk;
    588       1.2       ad 
    589       1.2       ad 	if (nss) {
    590       1.2       ad 		if (nss->ss_flags & ~SS_ALLBITS)
    591       1.2       ad 			error = EINVAL;
    592       1.2       ad 		else if (nss->ss_flags & SS_DISABLE) {
    593       1.2       ad 			if (l->l_sigstk.ss_flags & SS_ONSTACK)
    594       1.2       ad 				error = EINVAL;
    595       1.2       ad 		} else if (nss->ss_size < MINSIGSTKSZ)
    596       1.2       ad 			error = ENOMEM;
    597       1.2       ad 
    598       1.2       ad 		if (!error)
    599       1.2       ad 			l->l_sigstk = *nss;
    600       1.2       ad 	}
    601       1.2       ad 
    602      1.14       ad 	mutex_exit(p->p_lock);
    603       1.2       ad 
    604       1.2       ad 	return (error);
    605       1.2       ad }
    606       1.2       ad 
    607       1.2       ad int
    608       1.9      dsl __sigtimedwait1(struct lwp *l, const struct sys___sigtimedwait_args *uap, register_t *retval,
    609       1.2       ad     copyout_t put_info, copyin_t fetch_timeout, copyout_t put_timeout)
    610       1.2       ad {
    611       1.9      dsl 	/* {
    612       1.2       ad 		syscallarg(const sigset_t *) set;
    613       1.2       ad 		syscallarg(siginfo_t *) info;
    614       1.2       ad 		syscallarg(struct timespec *) timeout;
    615       1.9      dsl 	} */
    616       1.2       ad 	struct proc *p = l->l_proc;
    617       1.2       ad 	int error, signum;
    618       1.2       ad 	int timo = 0;
    619       1.2       ad 	struct timespec ts, tsstart, tsnow;
    620       1.2       ad 	ksiginfo_t *ksi;
    621       1.2       ad 
    622       1.2       ad 	memset(&tsstart, 0, sizeof tsstart);	 /* XXX gcc */
    623       1.2       ad 
    624       1.2       ad 	/*
    625       1.2       ad 	 * Calculate timeout, if it was specified.
    626       1.2       ad 	 */
    627       1.2       ad 	if (SCARG(uap, timeout)) {
    628       1.2       ad 		uint64_t ms;
    629       1.2       ad 
    630       1.2       ad 		if ((error = (*fetch_timeout)(SCARG(uap, timeout), &ts, sizeof(ts))))
    631       1.2       ad 			return (error);
    632       1.2       ad 
    633       1.2       ad 		ms = (ts.tv_sec * 1000) + (ts.tv_nsec / 1000000);
    634       1.2       ad 		timo = mstohz(ms);
    635       1.2       ad 		if (timo == 0 && ts.tv_sec == 0 && ts.tv_nsec > 0)
    636       1.2       ad 			timo = 1;
    637       1.2       ad 		if (timo <= 0)
    638       1.2       ad 			return (EAGAIN);
    639       1.2       ad 
    640       1.2       ad 		/*
    641       1.2       ad 		 * Remember current uptime, it would be used in
    642       1.2       ad 		 * ECANCELED/ERESTART case.
    643       1.2       ad 		 */
    644       1.2       ad 		getnanouptime(&tsstart);
    645       1.2       ad 	}
    646       1.2       ad 
    647       1.2       ad 	error = copyin(SCARG(uap, set), &l->l_sigwaitset,
    648       1.2       ad 	    sizeof(l->l_sigwaitset));
    649       1.2       ad 	if (error != 0)
    650       1.2       ad 		return (error);
    651       1.2       ad 
    652       1.2       ad 	/*
    653       1.2       ad 	 * Silently ignore SA_CANTMASK signals. psignal1() would ignore
    654       1.2       ad 	 * SA_CANTMASK signals in waitset, we do this only for the below
    655       1.2       ad 	 * siglist check.
    656       1.2       ad 	 */
    657       1.2       ad 	sigminusset(&sigcantmask, &l->l_sigwaitset);
    658       1.2       ad 
    659       1.2       ad 	/*
    660       1.2       ad 	 * Allocate a ksi up front.  We can't sleep with the mutex held.
    661       1.2       ad 	 */
    662       1.2       ad 	ksi = ksiginfo_alloc(p, NULL, PR_WAITOK);
    663       1.2       ad 	if (ksi == NULL)
    664       1.2       ad 		return (ENOMEM);
    665       1.2       ad 
    666      1.14       ad 	mutex_enter(p->p_lock);
    667       1.2       ad 
    668       1.2       ad 	if ((signum = sigget(&p->p_sigpend, ksi, 0, &l->l_sigwaitset)) == 0)
    669       1.2       ad 		signum = sigget(&l->l_sigpend, ksi, 0, &l->l_sigwaitset);
    670       1.2       ad 
    671       1.2       ad 	if (signum != 0) {
    672       1.2       ad 		/*
    673       1.2       ad 		 * We found a pending signal - copy it out to the user.
    674       1.2       ad 		 */
    675      1.14       ad 		mutex_exit(p->p_lock);
    676       1.2       ad 		goto out;
    677       1.2       ad 	}
    678       1.2       ad 
    679       1.2       ad 	/*
    680       1.2       ad 	 * Set up the sigwait list.
    681       1.2       ad 	 */
    682       1.2       ad 	l->l_sigwaited = ksi;
    683       1.2       ad 	LIST_INSERT_HEAD(&p->p_sigwaiters, l, l_sigwaiter);
    684       1.2       ad 
    685       1.2       ad 	/*
    686       1.2       ad 	 * Wait for signal to arrive. We can either be woken up or time out.
    687       1.2       ad 	 */
    688      1.14       ad 	error = cv_timedwait_sig(&l->l_sigcv, p->p_lock, timo);
    689       1.2       ad 
    690       1.2       ad 	/*
    691       1.2       ad 	 * Need to find out if we woke as a result of lwp_wakeup() or a
    692       1.2       ad 	 * signal outside our wait set.
    693       1.2       ad 	 */
    694       1.2       ad 	if (l->l_sigwaited != NULL) {
    695       1.2       ad 		if (error == EINTR) {
    696       1.2       ad 			/* wakeup via _lwp_wakeup() */
    697       1.2       ad 			error = ECANCELED;
    698       1.2       ad 		} else if (!error) {
    699       1.2       ad 			/* spurious wakeup - arrange for syscall restart */
    700       1.2       ad 			error = ERESTART;
    701       1.2       ad 		}
    702       1.2       ad 		l->l_sigwaited = NULL;
    703       1.2       ad 		LIST_REMOVE(l, l_sigwaiter);
    704       1.2       ad 	}
    705       1.2       ad 
    706      1.14       ad 	mutex_exit(p->p_lock);
    707       1.2       ad 
    708       1.2       ad 	/*
    709       1.2       ad 	 * If the sleep was interrupted (either by signal or wakeup), update
    710       1.2       ad 	 * the timeout and copyout new value back.  It would be used when
    711       1.2       ad 	 * the syscall would be restarted or called again.
    712       1.2       ad 	 */
    713       1.2       ad 	if (timo && (error == ERESTART || error == ECANCELED)) {
    714       1.2       ad 		getnanouptime(&tsnow);
    715       1.2       ad 
    716       1.2       ad 		/* compute how much time has passed since start */
    717       1.2       ad 		timespecsub(&tsnow, &tsstart, &tsnow);
    718       1.2       ad 		/* substract passed time from timeout */
    719       1.2       ad 		timespecsub(&ts, &tsnow, &ts);
    720       1.2       ad 
    721       1.2       ad 		if (ts.tv_sec < 0)
    722       1.2       ad 			error = EAGAIN;
    723       1.2       ad 		else {
    724       1.2       ad 			/* copy updated timeout to userland */
    725       1.2       ad 			error = (*put_timeout)(&ts, SCARG(uap, timeout),
    726       1.2       ad 			    sizeof(ts));
    727       1.2       ad 		}
    728       1.2       ad 	}
    729       1.2       ad 
    730       1.2       ad 	/*
    731       1.2       ad 	 * If a signal from the wait set arrived, copy it to userland.
    732       1.2       ad 	 * Copy only the used part of siginfo, the padding part is
    733       1.2       ad 	 * left unchanged (userland is not supposed to touch it anyway).
    734       1.2       ad 	 */
    735       1.2       ad  out:
    736       1.2       ad 	if (error == 0)
    737       1.2       ad 		error = (*put_info)(&ksi->ksi_info, SCARG(uap, info),
    738       1.2       ad 		    sizeof(ksi->ksi_info));
    739       1.2       ad 
    740       1.2       ad 	ksiginfo_free(ksi);
    741       1.2       ad 
    742       1.2       ad 	return error;
    743       1.2       ad }
    744