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netbsd32_signal.c revision 1.39
      1  1.39    martin /*	$NetBSD: netbsd32_signal.c,v 1.39 2015/06/20 19:58:40 martin Exp $	*/
      2   1.1       mrg 
      3   1.1       mrg /*
      4   1.1       mrg  * Copyright (c) 1998, 2001 Matthew R. Green
      5   1.1       mrg  * All rights reserved.
      6   1.1       mrg  *
      7   1.1       mrg  * Redistribution and use in source and binary forms, with or without
      8   1.1       mrg  * modification, are permitted provided that the following conditions
      9   1.1       mrg  * are met:
     10   1.1       mrg  * 1. Redistributions of source code must retain the above copyright
     11   1.1       mrg  *    notice, this list of conditions and the following disclaimer.
     12   1.1       mrg  * 2. Redistributions in binary form must reproduce the above copyright
     13   1.1       mrg  *    notice, this list of conditions and the following disclaimer in the
     14   1.1       mrg  *    documentation and/or other materials provided with the distribution.
     15   1.1       mrg  *
     16   1.1       mrg  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
     17   1.1       mrg  * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
     18   1.1       mrg  * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
     19   1.1       mrg  * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
     20   1.1       mrg  * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING,
     21   1.1       mrg  * BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
     22   1.1       mrg  * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED
     23   1.1       mrg  * AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY,
     24   1.1       mrg  * OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     25   1.1       mrg  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     26   1.1       mrg  * SUCH DAMAGE.
     27   1.1       mrg  */
     28   1.2     lukem 
     29   1.2     lukem #include <sys/cdefs.h>
     30  1.39    martin __KERNEL_RCSID(0, "$NetBSD: netbsd32_signal.c,v 1.39 2015/06/20 19:58:40 martin Exp $");
     31   1.1       mrg 
     32   1.1       mrg #include <sys/param.h>
     33   1.1       mrg #include <sys/systm.h>
     34   1.1       mrg #include <sys/mount.h>
     35   1.1       mrg #include <sys/stat.h>
     36   1.1       mrg #include <sys/time.h>
     37   1.1       mrg #include <sys/signalvar.h>
     38   1.1       mrg #include <sys/proc.h>
     39   1.7      fvdl #include <sys/wait.h>
     40  1.11  christos #include <sys/dirent.h>
     41   1.7      fvdl 
     42   1.7      fvdl #include <uvm/uvm_extern.h>
     43   1.1       mrg 
     44   1.1       mrg #include <compat/netbsd32/netbsd32.h>
     45  1.10      cube #include <compat/netbsd32/netbsd32_conv.h>
     46   1.1       mrg #include <compat/netbsd32/netbsd32_syscallargs.h>
     47   1.1       mrg 
     48  1.12  christos #include <compat/sys/signal.h>
     49  1.12  christos #include <compat/sys/signalvar.h>
     50  1.13  christos #include <compat/sys/siginfo.h>
     51  1.12  christos #include <compat/sys/ucontext.h>
     52  1.25       dsl #include <compat/common/compat_sigaltstack.h>
     53  1.12  christos 
     54  1.14  christos 
     55   1.1       mrg int
     56  1.28       dsl netbsd32_sigaction(struct lwp *l, const struct netbsd32_sigaction_args *uap, register_t *retval)
     57   1.1       mrg {
     58  1.28       dsl 	/* {
     59   1.1       mrg 		syscallarg(int) signum;
     60   1.1       mrg 		syscallarg(const netbsd32_sigactionp_t) nsa;
     61   1.1       mrg 		syscallarg(netbsd32_sigactionp_t) osa;
     62  1.28       dsl 	} */
     63   1.1       mrg 	struct sigaction nsa, osa;
     64  1.38  christos 	struct netbsd32_sigaction13 *sa32p, sa32;
     65   1.1       mrg 	int error;
     66   1.1       mrg 
     67  1.23       dsl 	if (SCARG_P32(uap, nsa)) {
     68  1.23       dsl 		sa32p = SCARG_P32(uap, nsa);
     69   1.1       mrg 		if (copyin(sa32p, &sa32, sizeof(sa32)))
     70   1.1       mrg 			return EFAULT;
     71   1.5    atatat 		nsa.sa_handler = (void *)NETBSD32PTR64(sa32.netbsd32_sa_handler);
     72  1.38  christos 		memset(&nsa.sa_mask, 0, sizeof(nsa.sa_mask));
     73  1.38  christos 		nsa.sa_mask.__bits[0] = sa32.netbsd32_sa_mask;
     74   1.5    atatat 		nsa.sa_flags = sa32.netbsd32_sa_flags;
     75   1.1       mrg 	}
     76  1.19        ad 	error = sigaction1(l, SCARG(uap, signum),
     77  1.23       dsl 			   SCARG_P32(uap, nsa) ? &nsa : 0,
     78  1.23       dsl 			   SCARG_P32(uap, osa) ? &osa : 0,
     79   1.3   thorpej 			   NULL, 0);
     80   1.8     perry 
     81   1.1       mrg 	if (error)
     82   1.1       mrg 		return (error);
     83   1.1       mrg 
     84  1.23       dsl 	if (SCARG_P32(uap, osa)) {
     85  1.22       dsl 		NETBSD32PTR32(sa32.netbsd32_sa_handler, osa.sa_handler);
     86  1.38  christos 		sa32.netbsd32_sa_mask = osa.sa_mask.__bits[0];
     87   1.5    atatat 		sa32.netbsd32_sa_flags = osa.sa_flags;
     88  1.23       dsl 		sa32p = SCARG_P32(uap, osa);
     89   1.1       mrg 		if (copyout(&sa32, sa32p, sizeof(sa32)))
     90   1.1       mrg 			return EFAULT;
     91   1.1       mrg 	}
     92   1.1       mrg 
     93   1.1       mrg 	return (0);
     94   1.1       mrg }
     95   1.1       mrg 
     96   1.1       mrg int
     97  1.28       dsl netbsd32___sigaltstack14(struct lwp *l, const struct netbsd32___sigaltstack14_args *uap, register_t *retval)
     98   1.1       mrg {
     99  1.28       dsl 	/* {
    100   1.1       mrg 		syscallarg(const netbsd32_sigaltstackp_t) nss;
    101   1.1       mrg 		syscallarg(netbsd32_sigaltstackp_t) oss;
    102  1.28       dsl 	} */
    103  1.25       dsl 	compat_sigaltstack(uap, netbsd32_sigaltstack, SS_ONSTACK, SS_DISABLE);
    104   1.1       mrg }
    105   1.1       mrg 
    106   1.1       mrg /* ARGSUSED */
    107   1.1       mrg int
    108  1.28       dsl netbsd32___sigaction14(struct lwp *l, const struct netbsd32___sigaction14_args *uap, register_t *retval)
    109   1.1       mrg {
    110  1.28       dsl 	/* {
    111   1.1       mrg 		syscallarg(int) signum;
    112   1.1       mrg 		syscallarg(const struct sigaction *) nsa;
    113   1.1       mrg 		syscallarg(struct sigaction *) osa;
    114  1.28       dsl 	} */
    115   1.1       mrg 	struct netbsd32_sigaction sa32;
    116   1.1       mrg 	struct sigaction nsa, osa;
    117   1.1       mrg 	int error;
    118   1.1       mrg 
    119  1.23       dsl 	if (SCARG_P32(uap, nsa)) {
    120  1.23       dsl 		error = copyin(SCARG_P32(uap, nsa), &sa32, sizeof(sa32));
    121   1.1       mrg 		if (error)
    122   1.1       mrg 			return (error);
    123  1.22       dsl 		nsa.sa_handler = NETBSD32PTR64(sa32.netbsd32_sa_handler);
    124   1.5    atatat 		nsa.sa_mask = sa32.netbsd32_sa_mask;
    125   1.5    atatat 		nsa.sa_flags = sa32.netbsd32_sa_flags;
    126   1.1       mrg 	}
    127  1.19        ad 	error = sigaction1(l, SCARG(uap, signum),
    128  1.23       dsl 		    SCARG_P32(uap, nsa) ? &nsa : 0,
    129  1.23       dsl 		    SCARG_P32(uap, osa) ? &osa : 0,
    130  1.22       dsl 		    NULL, 0);
    131   1.1       mrg 	if (error)
    132   1.1       mrg 		return (error);
    133  1.23       dsl 	if (SCARG_P32(uap, osa)) {
    134  1.22       dsl 		NETBSD32PTR32(sa32.netbsd32_sa_handler, osa.sa_handler);
    135   1.5    atatat 		sa32.netbsd32_sa_mask = osa.sa_mask;
    136   1.5    atatat 		sa32.netbsd32_sa_flags = osa.sa_flags;
    137  1.23       dsl 		error = copyout(&sa32, SCARG_P32(uap, osa), sizeof(sa32));
    138   1.4       scw 		if (error)
    139   1.4       scw 			return (error);
    140   1.4       scw 	}
    141   1.4       scw 	return (0);
    142   1.4       scw }
    143   1.4       scw 
    144   1.4       scw /* ARGSUSED */
    145   1.4       scw int
    146  1.28       dsl netbsd32___sigaction_sigtramp(struct lwp *l, const struct netbsd32___sigaction_sigtramp_args *uap, register_t *retval)
    147   1.4       scw {
    148  1.28       dsl 	/* {
    149   1.4       scw 		syscallarg(int) signum;
    150   1.4       scw 		syscallarg(const netbsd32_sigactionp_t) nsa;
    151   1.4       scw 		syscallarg(netbsd32_sigactionp_t) osa;
    152   1.4       scw 		syscallarg(netbsd32_voidp) tramp;
    153   1.4       scw 		syscallarg(int) vers;
    154  1.28       dsl 	} */
    155   1.4       scw 	struct netbsd32_sigaction sa32;
    156   1.4       scw 	struct sigaction nsa, osa;
    157   1.4       scw 	int error;
    158   1.4       scw 
    159  1.23       dsl 	if (SCARG_P32(uap, nsa)) {
    160  1.23       dsl 		error = copyin(SCARG_P32(uap, nsa), &sa32, sizeof(sa32));
    161   1.4       scw 		if (error)
    162   1.4       scw 			return (error);
    163  1.22       dsl 		nsa.sa_handler = NETBSD32PTR64(sa32.netbsd32_sa_handler);
    164   1.5    atatat 		nsa.sa_mask = sa32.netbsd32_sa_mask;
    165   1.5    atatat 		nsa.sa_flags = sa32.netbsd32_sa_flags;
    166   1.4       scw 	}
    167  1.19        ad 	error = sigaction1(l, SCARG(uap, signum),
    168  1.23       dsl 	    SCARG_P32(uap, nsa) ? &nsa : 0,
    169  1.23       dsl 	    SCARG_P32(uap, osa) ? &osa : 0,
    170  1.23       dsl 	    SCARG_P32(uap, tramp), SCARG(uap, vers));
    171   1.4       scw 	if (error)
    172   1.4       scw 		return (error);
    173  1.23       dsl 	if (SCARG_P32(uap, osa)) {
    174  1.22       dsl 		NETBSD32PTR32(sa32.netbsd32_sa_handler, osa.sa_handler);
    175   1.5    atatat 		sa32.netbsd32_sa_mask = osa.sa_mask;
    176   1.5    atatat 		sa32.netbsd32_sa_flags = osa.sa_flags;
    177  1.23       dsl 		error = copyout(&sa32, SCARG_P32(uap, osa), sizeof(sa32));
    178   1.1       mrg 		if (error)
    179   1.1       mrg 			return (error);
    180   1.1       mrg 	}
    181   1.1       mrg 	return (0);
    182   1.7      fvdl }
    183   1.7      fvdl 
    184  1.39    martin void
    185  1.39    martin netbsd32_ksi32_to_ksi(struct _ksiginfo *si, const struct __ksiginfo32 *si32)
    186   1.7      fvdl {
    187   1.7      fvdl 	memset(si, 0, sizeof (*si));
    188  1.39    martin 	si->_signo = si32->_signo;
    189  1.39    martin 	si->_code = si32->_code;
    190  1.39    martin 	si->_errno = si32->_errno;
    191   1.7      fvdl 
    192  1.39    martin 	switch (si32->_signo) {
    193   1.7      fvdl 	case SIGILL:
    194   1.7      fvdl 	case SIGBUS:
    195   1.7      fvdl 	case SIGSEGV:
    196   1.7      fvdl 	case SIGFPE:
    197   1.7      fvdl 	case SIGTRAP:
    198  1.39    martin 		si->_reason._fault._addr = NETBSD32IPTR64(si32->_reason._fault._addr);
    199  1.39    martin 		si->_reason._fault._trap = si32->_reason._fault._trap;
    200   1.7      fvdl 		break;
    201   1.7      fvdl 	case SIGALRM:
    202   1.7      fvdl 	case SIGVTALRM:
    203   1.7      fvdl 	case SIGPROF:
    204  1.39    martin 	default:	/* see sigqueue() and kill1() */
    205  1.39    martin 		si->_reason._rt._pid = si32->_reason._rt._pid;
    206  1.39    martin 		si->_reason._rt._uid = si32->_reason._rt._uid;
    207  1.39    martin 		si->_reason._rt._value.sival_int = si32->_reason._rt._value.sival_int;
    208   1.7      fvdl 		break;
    209   1.7      fvdl 	case SIGCHLD:
    210  1.39    martin 		si->_reason._child._pid = si32->_reason._child._pid;
    211  1.39    martin 		si->_reason._child._uid = si32->_reason._child._uid;
    212  1.39    martin 		si->_reason._child._utime = si32->_reason._child._utime;
    213  1.39    martin 		si->_reason._child._stime = si32->_reason._child._stime;
    214   1.7      fvdl 		break;
    215   1.7      fvdl 	case SIGURG:
    216   1.7      fvdl 	case SIGIO:
    217  1.39    martin 		si->_reason._poll._band = si32->_reason._poll._band;
    218  1.39    martin 		si->_reason._poll._fd = si32->_reason._poll._fd;
    219   1.7      fvdl 		break;
    220   1.7      fvdl 	}
    221   1.7      fvdl }
    222   1.7      fvdl 
    223  1.15       chs void
    224   1.9  drochner netbsd32_si_to_si32(siginfo32_t *si32, const siginfo_t *si)
    225   1.7      fvdl {
    226   1.7      fvdl 	memset(si32, 0, sizeof (*si32));
    227   1.7      fvdl 	si32->si_signo = si->si_signo;
    228   1.7      fvdl 	si32->si_code = si->si_code;
    229   1.7      fvdl 	si32->si_errno = si->si_errno;
    230   1.7      fvdl 
    231   1.7      fvdl 	switch (si32->si_signo) {
    232  1.17      cube 	case 0:	/* SA */
    233  1.24  christos 		si32->si_value.sival_int = si->si_value.sival_int;
    234  1.17      cube 		break;
    235   1.7      fvdl 	case SIGILL:
    236   1.7      fvdl 	case SIGBUS:
    237   1.7      fvdl 	case SIGSEGV:
    238   1.7      fvdl 	case SIGFPE:
    239   1.7      fvdl 	case SIGTRAP:
    240   1.7      fvdl 		si32->si_addr = (uint32_t)(uintptr_t)si->si_addr;
    241   1.7      fvdl 		si32->si_trap = si->si_trap;
    242   1.7      fvdl 		break;
    243   1.7      fvdl 	case SIGALRM:
    244   1.7      fvdl 	case SIGVTALRM:
    245   1.7      fvdl 	case SIGPROF:
    246  1.39    martin 	default:
    247   1.7      fvdl 		si32->si_pid = si->si_pid;
    248   1.7      fvdl 		si32->si_uid = si->si_uid;
    249  1.24  christos 		si32->si_value.sival_int = si->si_value.sival_int;
    250   1.7      fvdl 		break;
    251   1.7      fvdl 	case SIGCHLD:
    252   1.7      fvdl 		si32->si_pid = si->si_pid;
    253   1.7      fvdl 		si32->si_uid = si->si_uid;
    254   1.7      fvdl 		si32->si_status = si->si_status;
    255   1.7      fvdl 		si32->si_utime = si->si_utime;
    256   1.7      fvdl 		si32->si_stime = si->si_stime;
    257   1.7      fvdl 		break;
    258   1.7      fvdl 	case SIGURG:
    259   1.7      fvdl 	case SIGIO:
    260   1.7      fvdl 		si32->si_band = si->si_band;
    261   1.7      fvdl 		si32->si_fd = si->si_fd;
    262   1.7      fvdl 		break;
    263   1.7      fvdl 	}
    264   1.7      fvdl }
    265   1.7      fvdl 
    266   1.7      fvdl void
    267   1.7      fvdl getucontext32(struct lwp *l, ucontext32_t *ucp)
    268   1.7      fvdl {
    269  1.20      cube 	struct proc *p = l->l_proc;
    270   1.7      fvdl 
    271  1.29        ad 	KASSERT(mutex_owned(p->p_lock));
    272   1.7      fvdl 
    273   1.7      fvdl 	ucp->uc_flags = 0;
    274   1.7      fvdl 	ucp->uc_link = (uint32_t)(intptr_t)l->l_ctxlink;
    275  1.37     rmind 	ucp->uc_sigmask = l->l_sigmask;
    276   1.7      fvdl 	ucp->uc_flags |= _UC_SIGMASK;
    277   1.7      fvdl 
    278   1.7      fvdl 	/*
    279   1.7      fvdl 	 * The (unsupplied) definition of the `current execution stack'
    280   1.7      fvdl 	 * in the System V Interface Definition appears to allow returning
    281   1.7      fvdl 	 * the main context stack.
    282   1.7      fvdl 	 */
    283  1.19        ad 	if ((l->l_sigstk.ss_flags & SS_ONSTACK) == 0) {
    284   1.7      fvdl 		ucp->uc_stack.ss_sp = USRSTACK32;
    285   1.7      fvdl 		ucp->uc_stack.ss_size = ctob(p->p_vmspace->vm_ssize);
    286   1.7      fvdl 		ucp->uc_stack.ss_flags = 0;	/* XXX, def. is Very Fishy */
    287   1.7      fvdl 	} else {
    288   1.7      fvdl 		/* Simply copy alternate signal execution stack. */
    289   1.7      fvdl 		ucp->uc_stack.ss_sp =
    290  1.19        ad 		    (uint32_t)(intptr_t)l->l_sigstk.ss_sp;
    291  1.19        ad 		ucp->uc_stack.ss_size = l->l_sigstk.ss_size;
    292  1.19        ad 		ucp->uc_stack.ss_flags = l->l_sigstk.ss_flags;
    293   1.7      fvdl 	}
    294   1.7      fvdl 	ucp->uc_flags |= _UC_STACK;
    295  1.29        ad 	mutex_exit(p->p_lock);
    296   1.7      fvdl 	cpu_getmcontext32(l, &ucp->uc_mcontext, &ucp->uc_flags);
    297  1.29        ad 	mutex_enter(p->p_lock);
    298   1.7      fvdl }
    299   1.7      fvdl 
    300   1.7      fvdl int
    301  1.28       dsl netbsd32_getcontext(struct lwp *l, const struct netbsd32_getcontext_args *uap, register_t *retval)
    302   1.7      fvdl {
    303  1.28       dsl 	/* {
    304   1.7      fvdl 		syscallarg(netbsd32_ucontextp) ucp;
    305  1.28       dsl 	} */
    306  1.20      cube 	struct proc *p = l->l_proc;
    307   1.7      fvdl 	ucontext32_t uc;
    308   1.7      fvdl 
    309  1.35     joerg 	memset(&uc, 0, sizeof(uc));
    310  1.35     joerg 
    311  1.29        ad 	mutex_enter(p->p_lock);
    312   1.7      fvdl 	getucontext32(l, &uc);
    313  1.29        ad 	mutex_exit(p->p_lock);
    314   1.7      fvdl 
    315  1.23       dsl 	return copyout(&uc, SCARG_P32(uap, ucp), sizeof (ucontext32_t));
    316   1.7      fvdl }
    317   1.7      fvdl 
    318   1.7      fvdl int
    319   1.7      fvdl setucontext32(struct lwp *l, const ucontext32_t *ucp)
    320   1.7      fvdl {
    321  1.20      cube 	struct proc *p = l->l_proc;
    322  1.20      cube 	int error;
    323  1.20      cube 
    324  1.29        ad 	KASSERT(mutex_owned(p->p_lock));
    325  1.20      cube 
    326  1.20      cube 	if ((ucp->uc_flags & _UC_SIGMASK) != 0) {
    327  1.20      cube 		error = sigprocmask1(l, SIG_SETMASK, &ucp->uc_sigmask, NULL);
    328  1.20      cube 		if (error != 0)
    329  1.20      cube 			return error;
    330  1.20      cube 	}
    331   1.7      fvdl 
    332  1.29        ad 	mutex_exit(p->p_lock);
    333  1.20      cube 	error = cpu_setmcontext32(l, &ucp->uc_mcontext, ucp->uc_flags);
    334  1.29        ad 	mutex_enter(p->p_lock);
    335  1.20      cube 	if (error != 0)
    336   1.7      fvdl 		return (error);
    337  1.20      cube 
    338   1.7      fvdl 	l->l_ctxlink = (void *)(intptr_t)ucp->uc_link;
    339  1.20      cube 
    340   1.7      fvdl 	/*
    341  1.20      cube 	 * If there was stack information, update whether or not we are
    342  1.20      cube 	 * still running on an alternate signal stack.
    343   1.7      fvdl 	 */
    344  1.20      cube 	if ((ucp->uc_flags & _UC_STACK) != 0) {
    345  1.20      cube 		if (ucp->uc_stack.ss_flags & SS_ONSTACK)
    346  1.20      cube 			l->l_sigstk.ss_flags |= SS_ONSTACK;
    347  1.20      cube 		else
    348  1.20      cube 			l->l_sigstk.ss_flags &= ~SS_ONSTACK;
    349  1.20      cube 	}
    350   1.7      fvdl 
    351   1.7      fvdl 	return 0;
    352   1.7      fvdl }
    353   1.7      fvdl 
    354   1.7      fvdl /* ARGSUSED */
    355   1.7      fvdl int
    356  1.28       dsl netbsd32_setcontext(struct lwp *l, const struct netbsd32_setcontext_args *uap, register_t *retval)
    357   1.7      fvdl {
    358  1.28       dsl 	/* {
    359   1.7      fvdl 		syscallarg(netbsd32_ucontextp) ucp;
    360  1.28       dsl 	} */
    361   1.7      fvdl 	ucontext32_t uc;
    362   1.7      fvdl 	int error;
    363  1.20      cube 	struct proc *p = l->l_proc;
    364   1.7      fvdl 
    365  1.23       dsl 	error = copyin(SCARG_P32(uap, ucp), &uc, sizeof (uc));
    366  1.18  drochner 	if (error)
    367  1.18  drochner 		return (error);
    368  1.18  drochner 	if (!(uc.uc_flags & _UC_CPU))
    369  1.18  drochner 		return (EINVAL);
    370  1.29        ad 	mutex_enter(p->p_lock);
    371  1.18  drochner 	error = setucontext32(l, &uc);
    372  1.29        ad 	mutex_exit(p->p_lock);
    373  1.18  drochner 	if (error)
    374   1.7      fvdl 		return (error);
    375   1.7      fvdl 
    376   1.7      fvdl 	return (EJUSTRETURN);
    377   1.1       mrg }
    378  1.10      cube 
    379  1.10      cube static int
    380  1.10      cube netbsd32_sigtimedwait_put_info(const void *src, void *dst, size_t size)
    381  1.10      cube {
    382  1.10      cube 	const siginfo_t *info = src;
    383  1.10      cube 	siginfo32_t info32;
    384  1.10      cube 
    385  1.10      cube 	netbsd32_si_to_si32(&info32, info);
    386  1.10      cube 
    387  1.10      cube 	return copyout(&info32, dst, sizeof(info32));
    388  1.10      cube }
    389  1.10      cube 
    390  1.10      cube static int
    391  1.10      cube netbsd32_sigtimedwait_fetch_timeout(const void *src, void *dst, size_t size)
    392  1.10      cube {
    393  1.10      cube 	struct timespec *ts = dst;
    394  1.10      cube 	struct netbsd32_timespec ts32;
    395  1.10      cube 	int error;
    396  1.10      cube 
    397  1.10      cube 	error = copyin(src, &ts32, sizeof(ts32));
    398  1.10      cube 	if (error)
    399  1.10      cube 		return error;
    400  1.10      cube 
    401  1.10      cube 	netbsd32_to_timespec(&ts32, ts);
    402  1.10      cube 	return 0;
    403  1.10      cube }
    404  1.10      cube 
    405  1.10      cube static int
    406  1.10      cube netbsd32_sigtimedwait_put_timeout(const void *src, void *dst, size_t size)
    407  1.10      cube {
    408  1.10      cube 	const struct timespec *ts = src;
    409  1.10      cube 	struct netbsd32_timespec ts32;
    410  1.10      cube 
    411  1.10      cube 	netbsd32_from_timespec(ts, &ts32);
    412  1.10      cube 
    413  1.10      cube 	return copyout(&ts32, dst, sizeof(ts32));
    414  1.10      cube }
    415  1.10      cube 
    416  1.10      cube int
    417  1.32  christos netbsd32_____sigtimedwait50(struct lwp *l, const struct netbsd32_____sigtimedwait50_args *uap, register_t *retval)
    418  1.10      cube {
    419  1.28       dsl 	/* {
    420  1.10      cube 		syscallarg(netbsd32_sigsetp_t) set;
    421  1.10      cube 		syscallarg(netbsd32_siginfop_t) info;
    422  1.32  christos 		syscallarg(netbsd32_timespec50p_t) timeout;
    423  1.28       dsl 	} */
    424  1.32  christos 	struct sys_____sigtimedwait50_args ua;
    425  1.10      cube 
    426  1.10      cube 	NETBSD32TOP_UAP(set, const sigset_t);
    427  1.10      cube 	NETBSD32TOP_UAP(info, siginfo_t);
    428  1.10      cube 	NETBSD32TOP_UAP(timeout, struct timespec);
    429  1.10      cube 
    430  1.33     pooka 	return sigtimedwait1(l, &ua, retval,
    431  1.36  christos 	    copyin,
    432  1.32  christos 	    netbsd32_sigtimedwait_put_info,
    433  1.10      cube 	    netbsd32_sigtimedwait_fetch_timeout,
    434  1.10      cube 	    netbsd32_sigtimedwait_put_timeout);
    435  1.10      cube }
    436  1.39    martin 
    437  1.39    martin int
    438  1.39    martin netbsd32_sigqueueinfo(struct lwp *l,
    439  1.39    martin     const struct netbsd32_sigqueueinfo_args *uap, register_t *retval)
    440  1.39    martin {
    441  1.39    martin 	/* {
    442  1.39    martin 		syscallarg(pid_t) pid;
    443  1.39    martin 		syscallarg(const netbsd32_siginfop_t) info;
    444  1.39    martin 	} */
    445  1.39    martin 	struct __ksiginfo32 ksi32;
    446  1.39    martin 	ksiginfo_t ksi;
    447  1.39    martin 	int error;
    448  1.39    martin 
    449  1.39    martin 	if ((error = copyin(SCARG_P32(uap, info), &ksi32,
    450  1.39    martin 	    sizeof(ksi32))) != 0)
    451  1.39    martin 		return error;
    452  1.39    martin 
    453  1.39    martin 	KSI_INIT(&ksi);
    454  1.39    martin 	netbsd32_ksi32_to_ksi(&ksi.ksi_info, &ksi32);
    455  1.39    martin 
    456  1.39    martin 	return kill1(l, SCARG(uap, pid), &ksi, retval);
    457  1.39    martin }
    458