Home | History | Annotate | Line # | Download | only in netbsd32
netbsd32_netbsd.c revision 1.34
      1  1.34   thorpej /*	$NetBSD: netbsd32_netbsd.c,v 1.34 2000/07/14 07:21:21 thorpej Exp $	*/
      2   1.1       mrg 
      3   1.1       mrg /*
      4   1.1       mrg  * Copyright (c) 1998 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  * 3. The name of the author may not be used to endorse or promote products
     16   1.1       mrg  *    derived from this software without specific prior written permission.
     17   1.1       mrg  *
     18   1.1       mrg  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
     19   1.1       mrg  * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
     20   1.1       mrg  * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
     21   1.1       mrg  * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
     22   1.1       mrg  * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING,
     23   1.1       mrg  * BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
     24   1.1       mrg  * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED
     25   1.1       mrg  * AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY,
     26   1.1       mrg  * OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     27   1.1       mrg  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     28   1.1       mrg  * SUCH DAMAGE.
     29   1.1       mrg  */
     30   1.1       mrg 
     31  1.28       eeh #include "opt_ddb.h"
     32   1.4       eeh #include "opt_ktrace.h"
     33   1.6       eeh #include "opt_ntp.h"
     34  1.20       eeh #include "opt_compat_netbsd.h"
     35   1.7  drochner #include "opt_compat_freebsd.h"
     36   1.7  drochner #include "opt_compat_linux.h"
     37   1.7  drochner #include "opt_compat_sunos.h"
     38   1.7  drochner #include "opt_compat_43.h"
     39  1.20       eeh #include "opt_sysv.h"
     40   1.7  drochner #if defined(COMPAT_43) || defined(COMPAT_SUNOS) || defined(COMPAT_LINUX) || \
     41   1.7  drochner     defined(COMPAT_FREEBSD)
     42   1.7  drochner #define COMPAT_OLDSOCK /* used by <sys/socket.h> */
     43   1.7  drochner #endif
     44   1.7  drochner 
     45   1.6       eeh #include "fs_lfs.h"
     46   1.6       eeh #include "fs_nfs.h"
     47   1.4       eeh 
     48   1.1       mrg #include <sys/param.h>
     49   1.1       mrg #include <sys/systm.h>
     50  1.20       eeh #include <sys/filedesc.h>
     51   1.6       eeh #include <sys/kernel.h>
     52   1.1       mrg #include <sys/ipc.h>
     53   1.1       mrg #include <sys/msg.h>
     54  1.19       eeh #define msg __msg /* Don't ask me! */
     55   1.1       mrg #include <sys/sem.h>
     56   1.1       mrg #include <sys/shm.h>
     57   1.1       mrg #include <sys/malloc.h>
     58   1.1       mrg #include <sys/mount.h>
     59   1.1       mrg #include <sys/socket.h>
     60   1.1       mrg #include <sys/sockio.h>
     61   1.6       eeh #include <sys/socketvar.h>
     62   1.6       eeh #include <sys/mbuf.h>
     63   1.1       mrg #include <sys/stat.h>
     64   1.1       mrg #include <sys/time.h>
     65   1.1       mrg #include <sys/timex.h>
     66   1.4       eeh #include <sys/signalvar.h>
     67   1.6       eeh #include <sys/wait.h>
     68   1.6       eeh #include <sys/ptrace.h>
     69   1.6       eeh #include <sys/ktrace.h>
     70   1.6       eeh #include <sys/trace.h>
     71   1.6       eeh #include <sys/resourcevar.h>
     72   1.6       eeh #include <sys/pool.h>
     73   1.6       eeh #include <sys/vnode.h>
     74   1.6       eeh #include <sys/file.h>
     75   1.6       eeh #include <sys/filedesc.h>
     76   1.6       eeh #include <sys/namei.h>
     77  1.29       mrg 
     78  1.29       mrg #include <uvm/uvm_extern.h>
     79  1.29       mrg 
     80   1.1       mrg #include <sys/syscallargs.h>
     81   1.6       eeh #include <sys/proc.h>
     82  1.20       eeh #include <sys/acct.h>
     83  1.20       eeh #include <sys/exec.h>
     84  1.34   thorpej #define	__SYSCTL_PRIVATE
     85   1.6       eeh #include <sys/sysctl.h>
     86   1.1       mrg 
     87   1.1       mrg #include <net/if.h>
     88   1.1       mrg 
     89  1.10       mrg #include <compat/netbsd32/netbsd32.h>
     90  1.10       mrg #include <compat/netbsd32/netbsd32_syscallargs.h>
     91   1.1       mrg 
     92   1.4       eeh #include <machine/frame.h>
     93  1.28       eeh 
     94  1.28       eeh #if defined(DDB)
     95  1.28       eeh #include <ddb/ddbvar.h>
     96  1.28       eeh #endif
     97   1.4       eeh 
     98  1.10       mrg static __inline void netbsd32_from_timeval __P((struct timeval *, struct netbsd32_timeval *));
     99  1.10       mrg static __inline void netbsd32_to_timeval __P((struct netbsd32_timeval *, struct timeval *));
    100  1.10       mrg static __inline void netbsd32_from_itimerval __P((struct itimerval *, struct netbsd32_itimerval *));
    101  1.10       mrg static __inline void netbsd32_to_itimerval __P((struct netbsd32_itimerval *, struct itimerval *));
    102  1.10       mrg static __inline void netbsd32_to_timespec __P((struct netbsd32_timespec *, struct timespec *));
    103  1.10       mrg static __inline void netbsd32_from_timespec __P((struct timespec *, struct netbsd32_timespec *));
    104  1.10       mrg static __inline void netbsd32_from_rusage __P((struct rusage *, struct netbsd32_rusage *));
    105  1.10       mrg static __inline void netbsd32_to_rusage __P((struct netbsd32_rusage *, struct rusage *));
    106  1.10       mrg static __inline int netbsd32_to_iovecin __P((struct netbsd32_iovec *, struct iovec *, int));
    107  1.10       mrg static __inline void netbsd32_to_msghdr __P((struct netbsd32_msghdr *, struct msghdr *));
    108  1.10       mrg static __inline void netbsd32_from_msghdr __P((struct netbsd32_msghdr *, struct msghdr *));
    109  1.10       mrg static __inline void netbsd32_from_statfs __P((struct statfs *, struct netbsd32_statfs *));
    110  1.10       mrg static __inline void netbsd32_from_timex __P((struct timex *, struct netbsd32_timex *));
    111  1.10       mrg static __inline void netbsd32_to_timex __P((struct netbsd32_timex *, struct timex *));
    112  1.10       mrg static __inline void netbsd32_from___stat13 __P((struct stat *, struct netbsd32_stat *));
    113  1.10       mrg static __inline void netbsd32_to_ipc_perm __P((struct netbsd32_ipc_perm *, struct ipc_perm *));
    114  1.10       mrg static __inline void netbsd32_from_ipc_perm __P((struct ipc_perm *, struct netbsd32_ipc_perm *));
    115  1.10       mrg static __inline void netbsd32_to_msg __P((struct netbsd32_msg *, struct msg *));
    116  1.10       mrg static __inline void netbsd32_from_msg __P((struct msg *, struct netbsd32_msg *));
    117  1.10       mrg static __inline void netbsd32_to_msqid_ds __P((struct netbsd32_msqid_ds *, struct msqid_ds *));
    118  1.10       mrg static __inline void netbsd32_from_msqid_ds __P((struct msqid_ds *, struct netbsd32_msqid_ds *));
    119  1.10       mrg static __inline void netbsd32_to_shmid_ds __P((struct netbsd32_shmid_ds *, struct shmid_ds *));
    120  1.10       mrg static __inline void netbsd32_from_shmid_ds __P((struct shmid_ds *, struct netbsd32_shmid_ds *));
    121  1.10       mrg static __inline void netbsd32_to_semid_ds __P((struct  netbsd32_semid_ds *, struct  semid_ds *));
    122  1.10       mrg static __inline void netbsd32_from_semid_ds __P((struct  semid_ds *, struct  netbsd32_semid_ds *));
    123   1.4       eeh 
    124   1.6       eeh 
    125  1.10       mrg static int recvit32 __P((struct proc *, int, struct netbsd32_msghdr *, struct iovec *, caddr_t,
    126   1.6       eeh 			 register_t *));
    127  1.10       mrg static int dofilereadv32 __P((struct proc *, int, struct file *, struct netbsd32_iovec *,
    128   1.6       eeh 			      int, off_t *, int, register_t *));
    129  1.10       mrg static int dofilewritev32 __P((struct proc *, int, struct file *, struct netbsd32_iovec *,
    130   1.6       eeh 			       int,  off_t *, int, register_t *));
    131   1.6       eeh static int change_utimes32 __P((struct vnode *, struct timeval *, struct proc *));
    132   1.6       eeh 
    133   1.1       mrg /* converters for structures that we need */
    134   1.1       mrg static __inline void
    135  1.10       mrg netbsd32_from_timeval(tv, tv32)
    136   1.1       mrg 	struct timeval *tv;
    137  1.10       mrg 	struct netbsd32_timeval *tv32;
    138   1.1       mrg {
    139   1.1       mrg 
    140  1.10       mrg 	tv32->tv_sec = (netbsd32_long)tv->tv_sec;
    141  1.10       mrg 	tv32->tv_usec = (netbsd32_long)tv->tv_usec;
    142   1.1       mrg }
    143   1.1       mrg 
    144   1.1       mrg static __inline void
    145  1.10       mrg netbsd32_to_timeval(tv32, tv)
    146  1.10       mrg 	struct netbsd32_timeval *tv32;
    147   1.1       mrg 	struct timeval *tv;
    148   1.1       mrg {
    149   1.1       mrg 
    150   1.1       mrg 	tv->tv_sec = (long)tv32->tv_sec;
    151   1.1       mrg 	tv->tv_usec = (long)tv32->tv_usec;
    152   1.1       mrg }
    153   1.1       mrg 
    154   1.1       mrg static __inline void
    155  1.10       mrg netbsd32_from_itimerval(itv, itv32)
    156   1.1       mrg 	struct itimerval *itv;
    157  1.10       mrg 	struct netbsd32_itimerval *itv32;
    158   1.1       mrg {
    159   1.1       mrg 
    160  1.10       mrg 	netbsd32_from_timeval(&itv->it_interval,
    161   1.6       eeh 			     &itv32->it_interval);
    162  1.10       mrg 	netbsd32_from_timeval(&itv->it_value,
    163   1.6       eeh 			     &itv32->it_value);
    164   1.1       mrg }
    165   1.1       mrg 
    166   1.1       mrg static __inline void
    167  1.10       mrg netbsd32_to_itimerval(itv32, itv)
    168  1.10       mrg 	struct netbsd32_itimerval *itv32;
    169   1.1       mrg 	struct itimerval *itv;
    170   1.1       mrg {
    171   1.1       mrg 
    172  1.10       mrg 	netbsd32_to_timeval(&itv32->it_interval, &itv->it_interval);
    173  1.10       mrg 	netbsd32_to_timeval(&itv32->it_value, &itv->it_value);
    174   1.1       mrg }
    175   1.1       mrg 
    176   1.1       mrg static __inline void
    177  1.10       mrg netbsd32_to_timespec(s32p, p)
    178  1.10       mrg 	struct netbsd32_timespec *s32p;
    179   1.2       mrg 	struct timespec *p;
    180   1.2       mrg {
    181   1.2       mrg 
    182  1.20       eeh 	p->tv_sec = (time_t)s32p->tv_sec;
    183   1.2       mrg 	p->tv_nsec = (long)s32p->tv_nsec;
    184   1.2       mrg }
    185   1.2       mrg 
    186   1.2       mrg static __inline void
    187  1.10       mrg netbsd32_from_timespec(p, s32p)
    188   1.2       mrg 	struct timespec *p;
    189  1.10       mrg 	struct netbsd32_timespec *s32p;
    190   1.2       mrg {
    191   1.2       mrg 
    192  1.20       eeh 	s32p->tv_sec = (netbsd32_time_t)p->tv_sec;
    193  1.10       mrg 	s32p->tv_nsec = (netbsd32_long)p->tv_nsec;
    194   1.2       mrg }
    195   1.2       mrg 
    196   1.2       mrg static __inline void
    197  1.10       mrg netbsd32_from_rusage(rup, ru32p)
    198   1.1       mrg 	struct rusage *rup;
    199  1.10       mrg 	struct netbsd32_rusage *ru32p;
    200   1.1       mrg {
    201   1.1       mrg 
    202  1.10       mrg 	netbsd32_from_timeval(&rup->ru_utime, &ru32p->ru_utime);
    203  1.10       mrg 	netbsd32_from_timeval(&rup->ru_stime, &ru32p->ru_stime);
    204  1.10       mrg #define C(var)	ru32p->var = (netbsd32_long)rup->var
    205   1.1       mrg 	C(ru_maxrss);
    206   1.1       mrg 	C(ru_ixrss);
    207   1.1       mrg 	C(ru_idrss);
    208   1.1       mrg 	C(ru_isrss);
    209   1.1       mrg 	C(ru_minflt);
    210   1.1       mrg 	C(ru_majflt);
    211   1.1       mrg 	C(ru_nswap);
    212   1.1       mrg 	C(ru_inblock);
    213   1.1       mrg 	C(ru_oublock);
    214   1.1       mrg 	C(ru_msgsnd);
    215   1.1       mrg 	C(ru_msgrcv);
    216   1.1       mrg 	C(ru_nsignals);
    217   1.1       mrg 	C(ru_nvcsw);
    218   1.1       mrg 	C(ru_nivcsw);
    219   1.1       mrg #undef C
    220   1.1       mrg }
    221   1.1       mrg 
    222   1.1       mrg static __inline void
    223  1.10       mrg netbsd32_to_rusage(ru32p, rup)
    224  1.10       mrg 	struct netbsd32_rusage *ru32p;
    225   1.1       mrg 	struct rusage *rup;
    226   1.1       mrg {
    227   1.1       mrg 
    228  1.10       mrg 	netbsd32_to_timeval(&ru32p->ru_utime, &rup->ru_utime);
    229  1.10       mrg 	netbsd32_to_timeval(&ru32p->ru_stime, &rup->ru_stime);
    230   1.1       mrg #define C(var)	rup->var = (long)ru32p->var
    231   1.1       mrg 	C(ru_maxrss);
    232   1.1       mrg 	C(ru_ixrss);
    233   1.1       mrg 	C(ru_idrss);
    234   1.1       mrg 	C(ru_isrss);
    235   1.1       mrg 	C(ru_minflt);
    236   1.1       mrg 	C(ru_majflt);
    237   1.1       mrg 	C(ru_nswap);
    238   1.1       mrg 	C(ru_inblock);
    239   1.1       mrg 	C(ru_oublock);
    240   1.1       mrg 	C(ru_msgsnd);
    241   1.1       mrg 	C(ru_msgrcv);
    242   1.1       mrg 	C(ru_nsignals);
    243   1.1       mrg 	C(ru_nvcsw);
    244   1.1       mrg 	C(ru_nivcsw);
    245   1.1       mrg #undef C
    246   1.1       mrg }
    247   1.1       mrg 
    248   1.6       eeh static __inline int
    249  1.10       mrg netbsd32_to_iovecin(iov32p, iovp, len)
    250  1.10       mrg 	struct netbsd32_iovec *iov32p;
    251   1.1       mrg 	struct iovec *iovp;
    252   1.1       mrg 	int len;
    253   1.1       mrg {
    254   1.6       eeh 	int i, error=0;
    255   1.6       eeh 	u_int32_t iov_base;
    256   1.6       eeh 	u_int32_t iov_len;
    257   1.6       eeh 	/*
    258   1.6       eeh 	 * We could allocate an iov32p, do a copyin, and translate
    259   1.6       eeh 	 * each field and then free it all up, or we could copyin
    260   1.6       eeh 	 * each field separately.  I'm doing the latter to reduce
    261   1.6       eeh 	 * the number of MALLOC()s.
    262   1.6       eeh 	 */
    263   1.1       mrg 	for (i = 0; i < len; i++, iovp++, iov32p++) {
    264   1.6       eeh 		if ((error = copyin((caddr_t)&iov32p->iov_base, &iov_base, sizeof(iov_base))))
    265   1.6       eeh 		    return (error);
    266   1.6       eeh 		if ((error = copyin((caddr_t)&iov32p->iov_len, &iov_len, sizeof(iov_len))))
    267   1.6       eeh 		    return (error);
    268   1.6       eeh 		iovp->iov_base = (void *)(u_long)iov_base;
    269   1.6       eeh 		iovp->iov_len = (size_t)iov_len;
    270   1.1       mrg 	}
    271   1.1       mrg }
    272   1.1       mrg 
    273   1.6       eeh /* msg_iov must be done separately */
    274   1.1       mrg static __inline void
    275  1.10       mrg netbsd32_to_msghdr(mhp32, mhp)
    276  1.10       mrg 	struct netbsd32_msghdr *mhp32;
    277   1.1       mrg 	struct msghdr *mhp;
    278   1.1       mrg {
    279   1.1       mrg 
    280   1.1       mrg 	mhp->msg_name = (caddr_t)(u_long)mhp32->msg_name;
    281   1.1       mrg 	mhp->msg_namelen = mhp32->msg_namelen;
    282   1.1       mrg 	mhp->msg_iovlen = (size_t)mhp32->msg_iovlen;
    283   1.1       mrg 	mhp->msg_control = (caddr_t)(u_long)mhp32->msg_control;
    284   1.1       mrg 	mhp->msg_controllen = mhp32->msg_controllen;
    285   1.1       mrg 	mhp->msg_flags = mhp32->msg_flags;
    286   1.6       eeh }
    287   1.6       eeh 
    288   1.6       eeh /* msg_iov must be done separately */
    289   1.6       eeh static __inline void
    290  1.10       mrg netbsd32_from_msghdr(mhp32, mhp)
    291  1.10       mrg 	struct netbsd32_msghdr *mhp32;
    292   1.6       eeh 	struct msghdr *mhp;
    293   1.6       eeh {
    294   1.6       eeh 
    295   1.6       eeh 	mhp32->msg_name = mhp32->msg_name;
    296   1.6       eeh 	mhp32->msg_namelen = mhp32->msg_namelen;
    297   1.6       eeh 	mhp32->msg_iovlen = mhp32->msg_iovlen;
    298   1.6       eeh 	mhp32->msg_control = mhp32->msg_control;
    299   1.6       eeh 	mhp32->msg_controllen = mhp->msg_controllen;
    300   1.6       eeh 	mhp32->msg_flags = mhp->msg_flags;
    301   1.1       mrg }
    302   1.1       mrg 
    303   1.1       mrg static __inline void
    304  1.10       mrg netbsd32_from_statfs(sbp, sb32p)
    305   1.1       mrg 	struct statfs *sbp;
    306  1.10       mrg 	struct netbsd32_statfs *sb32p;
    307   1.1       mrg {
    308   1.1       mrg 	sb32p->f_type = sbp->f_type;
    309   1.1       mrg 	sb32p->f_flags = sbp->f_flags;
    310  1.10       mrg 	sb32p->f_bsize = (netbsd32_long)sbp->f_bsize;
    311  1.10       mrg 	sb32p->f_iosize = (netbsd32_long)sbp->f_iosize;
    312  1.10       mrg 	sb32p->f_blocks = (netbsd32_long)sbp->f_blocks;
    313  1.10       mrg 	sb32p->f_bfree = (netbsd32_long)sbp->f_bfree;
    314  1.10       mrg 	sb32p->f_bavail = (netbsd32_long)sbp->f_bavail;
    315  1.10       mrg 	sb32p->f_files = (netbsd32_long)sbp->f_files;
    316  1.10       mrg 	sb32p->f_ffree = (netbsd32_long)sbp->f_ffree;
    317   1.1       mrg 	sb32p->f_fsid = sbp->f_fsid;
    318   1.1       mrg 	sb32p->f_owner = sbp->f_owner;
    319   1.6       eeh 	sb32p->f_spare[0] = 0;
    320   1.6       eeh 	sb32p->f_spare[1] = 0;
    321   1.6       eeh 	sb32p->f_spare[2] = 0;
    322   1.6       eeh 	sb32p->f_spare[3] = 0;
    323   1.6       eeh #if 1
    324   1.6       eeh 	/* May as well do the whole batch in one go */
    325   1.6       eeh 	memcpy(sb32p->f_fstypename, sbp->f_fstypename, MFSNAMELEN+MNAMELEN+MNAMELEN);
    326   1.6       eeh #else
    327   1.6       eeh 	/* If we want to be careful */
    328   1.6       eeh 	memcpy(sb32p->f_fstypename, sbp->f_fstypename, MFSNAMELEN);
    329   1.6       eeh 	memcpy(sb32p->f_mntonname, sbp->f_mntonname, MNAMELEN);
    330   1.6       eeh 	memcpy(sb32p->f_mntfromname, sbp->f_mntfromname, MNAMELEN);
    331   1.6       eeh #endif
    332   1.1       mrg }
    333   1.1       mrg 
    334   1.1       mrg static __inline void
    335  1.10       mrg netbsd32_from_timex(txp, tx32p)
    336   1.1       mrg 	struct timex *txp;
    337  1.10       mrg 	struct netbsd32_timex *tx32p;
    338   1.1       mrg {
    339   1.1       mrg 
    340   1.1       mrg 	tx32p->modes = txp->modes;
    341  1.10       mrg 	tx32p->offset = (netbsd32_long)txp->offset;
    342  1.10       mrg 	tx32p->freq = (netbsd32_long)txp->freq;
    343  1.10       mrg 	tx32p->maxerror = (netbsd32_long)txp->maxerror;
    344  1.10       mrg 	tx32p->esterror = (netbsd32_long)txp->esterror;
    345   1.1       mrg 	tx32p->status = txp->status;
    346  1.10       mrg 	tx32p->constant = (netbsd32_long)txp->constant;
    347  1.10       mrg 	tx32p->precision = (netbsd32_long)txp->precision;
    348  1.10       mrg 	tx32p->tolerance = (netbsd32_long)txp->tolerance;
    349  1.10       mrg 	tx32p->ppsfreq = (netbsd32_long)txp->ppsfreq;
    350  1.10       mrg 	tx32p->jitter = (netbsd32_long)txp->jitter;
    351   1.1       mrg 	tx32p->shift = txp->shift;
    352  1.10       mrg 	tx32p->stabil = (netbsd32_long)txp->stabil;
    353  1.10       mrg 	tx32p->jitcnt = (netbsd32_long)txp->jitcnt;
    354  1.10       mrg 	tx32p->calcnt = (netbsd32_long)txp->calcnt;
    355  1.10       mrg 	tx32p->errcnt = (netbsd32_long)txp->errcnt;
    356  1.10       mrg 	tx32p->stbcnt = (netbsd32_long)txp->stbcnt;
    357   1.1       mrg }
    358   1.1       mrg 
    359   1.1       mrg static __inline void
    360  1.10       mrg netbsd32_to_timex(tx32p, txp)
    361  1.10       mrg 	struct netbsd32_timex *tx32p;
    362   1.1       mrg 	struct timex *txp;
    363   1.1       mrg {
    364   1.1       mrg 
    365   1.1       mrg 	txp->modes = tx32p->modes;
    366   1.1       mrg 	txp->offset = (long)tx32p->offset;
    367   1.1       mrg 	txp->freq = (long)tx32p->freq;
    368   1.1       mrg 	txp->maxerror = (long)tx32p->maxerror;
    369   1.1       mrg 	txp->esterror = (long)tx32p->esterror;
    370   1.1       mrg 	txp->status = tx32p->status;
    371   1.1       mrg 	txp->constant = (long)tx32p->constant;
    372   1.1       mrg 	txp->precision = (long)tx32p->precision;
    373   1.1       mrg 	txp->tolerance = (long)tx32p->tolerance;
    374   1.1       mrg 	txp->ppsfreq = (long)tx32p->ppsfreq;
    375   1.1       mrg 	txp->jitter = (long)tx32p->jitter;
    376   1.1       mrg 	txp->shift = tx32p->shift;
    377   1.1       mrg 	txp->stabil = (long)tx32p->stabil;
    378   1.1       mrg 	txp->jitcnt = (long)tx32p->jitcnt;
    379   1.1       mrg 	txp->calcnt = (long)tx32p->calcnt;
    380   1.1       mrg 	txp->errcnt = (long)tx32p->errcnt;
    381   1.1       mrg 	txp->stbcnt = (long)tx32p->stbcnt;
    382   1.1       mrg }
    383   1.1       mrg 
    384   1.1       mrg static __inline void
    385  1.10       mrg netbsd32_from___stat13(sbp, sb32p)
    386   1.1       mrg 	struct stat *sbp;
    387  1.10       mrg 	struct netbsd32_stat *sb32p;
    388   1.1       mrg {
    389   1.1       mrg 	sb32p->st_dev = sbp->st_dev;
    390   1.1       mrg 	sb32p->st_ino = sbp->st_ino;
    391   1.1       mrg 	sb32p->st_mode = sbp->st_mode;
    392   1.1       mrg 	sb32p->st_nlink = sbp->st_nlink;
    393   1.1       mrg 	sb32p->st_uid = sbp->st_uid;
    394   1.1       mrg 	sb32p->st_gid = sbp->st_gid;
    395   1.1       mrg 	sb32p->st_rdev = sbp->st_rdev;
    396   1.1       mrg 	if (sbp->st_size < (quad_t)1 << 32)
    397   1.1       mrg 		sb32p->st_size = sbp->st_size;
    398   1.1       mrg 	else
    399   1.1       mrg 		sb32p->st_size = -2;
    400  1.20       eeh 	sb32p->st_atimespec.tv_sec = (netbsd32_time_t)sbp->st_atimespec.tv_sec;
    401  1.10       mrg 	sb32p->st_atimespec.tv_nsec = (netbsd32_long)sbp->st_atimespec.tv_nsec;
    402  1.20       eeh 	sb32p->st_mtimespec.tv_sec = (netbsd32_time_t)sbp->st_mtimespec.tv_sec;
    403  1.10       mrg 	sb32p->st_mtimespec.tv_nsec = (netbsd32_long)sbp->st_mtimespec.tv_nsec;
    404  1.20       eeh 	sb32p->st_ctimespec.tv_sec = (netbsd32_time_t)sbp->st_ctimespec.tv_sec;
    405  1.10       mrg 	sb32p->st_ctimespec.tv_nsec = (netbsd32_long)sbp->st_ctimespec.tv_nsec;
    406   1.1       mrg 	sb32p->st_blksize = sbp->st_blksize;
    407   1.1       mrg 	sb32p->st_blocks = sbp->st_blocks;
    408   1.1       mrg 	sb32p->st_flags = sbp->st_flags;
    409   1.1       mrg 	sb32p->st_gen = sbp->st_gen;
    410   1.1       mrg }
    411   1.1       mrg 
    412   1.1       mrg static __inline void
    413  1.10       mrg netbsd32_to_ipc_perm(ip32p, ipp)
    414  1.10       mrg 	struct netbsd32_ipc_perm *ip32p;
    415   1.1       mrg 	struct ipc_perm *ipp;
    416   1.1       mrg {
    417   1.1       mrg 
    418   1.1       mrg 	ipp->cuid = ip32p->cuid;
    419   1.1       mrg 	ipp->cgid = ip32p->cgid;
    420   1.1       mrg 	ipp->uid = ip32p->uid;
    421   1.1       mrg 	ipp->gid = ip32p->gid;
    422   1.1       mrg 	ipp->mode = ip32p->mode;
    423  1.19       eeh 	ipp->_seq = ip32p->_seq;
    424  1.19       eeh 	ipp->_key = (key_t)ip32p->_key;
    425   1.1       mrg }
    426   1.1       mrg 
    427   1.1       mrg static __inline void
    428  1.10       mrg netbsd32_from_ipc_perm(ipp, ip32p)
    429   1.1       mrg 	struct ipc_perm *ipp;
    430  1.10       mrg 	struct netbsd32_ipc_perm *ip32p;
    431   1.1       mrg {
    432   1.1       mrg 
    433   1.1       mrg 	ip32p->cuid = ipp->cuid;
    434   1.1       mrg 	ip32p->cgid = ipp->cgid;
    435   1.1       mrg 	ip32p->uid = ipp->uid;
    436   1.1       mrg 	ip32p->gid = ipp->gid;
    437   1.1       mrg 	ip32p->mode = ipp->mode;
    438  1.19       eeh 	ip32p->_seq = ipp->_seq;
    439  1.19       eeh 	ip32p->_key = (netbsd32_key_t)ipp->_key;
    440   1.1       mrg }
    441   1.1       mrg 
    442   1.1       mrg static __inline void
    443  1.10       mrg netbsd32_to_msg(m32p, mp)
    444  1.10       mrg 	struct netbsd32_msg *m32p;
    445   1.1       mrg 	struct msg *mp;
    446   1.1       mrg {
    447   1.1       mrg 
    448   1.1       mrg 	mp->msg_next = (struct msg *)(u_long)m32p->msg_next;
    449   1.1       mrg 	mp->msg_type = (long)m32p->msg_type;
    450   1.1       mrg 	mp->msg_ts = m32p->msg_ts;
    451   1.1       mrg 	mp->msg_spot = m32p->msg_spot;
    452   1.1       mrg }
    453   1.1       mrg 
    454   1.1       mrg static __inline void
    455  1.10       mrg netbsd32_from_msg(mp, m32p)
    456   1.1       mrg 	struct msg *mp;
    457  1.10       mrg 	struct netbsd32_msg *m32p;
    458   1.1       mrg {
    459   1.1       mrg 
    460  1.10       mrg 	m32p->msg_next = (netbsd32_msgp_t)(u_long)mp->msg_next;
    461  1.10       mrg 	m32p->msg_type = (netbsd32_long)mp->msg_type;
    462   1.1       mrg 	m32p->msg_ts = mp->msg_ts;
    463   1.1       mrg 	m32p->msg_spot = mp->msg_spot;
    464   1.1       mrg }
    465   1.1       mrg 
    466   1.1       mrg static __inline void
    467  1.10       mrg netbsd32_to_msqid_ds(ds32p, dsp)
    468  1.10       mrg 	struct netbsd32_msqid_ds *ds32p;
    469   1.1       mrg 	struct msqid_ds *dsp;
    470   1.1       mrg {
    471   1.1       mrg 
    472  1.10       mrg 	netbsd32_to_ipc_perm(&ds32p->msg_perm, &dsp->msg_perm);
    473  1.19       eeh 	netbsd32_to_msg((struct netbsd32_msg *)(u_long)ds32p->_msg_first, dsp->_msg_first);
    474  1.19       eeh 	netbsd32_to_msg((struct netbsd32_msg *)(u_long)ds32p->_msg_last, dsp->_msg_last);
    475  1.19       eeh 	dsp->_msg_cbytes = (u_long)ds32p->_msg_cbytes;
    476   1.1       mrg 	dsp->msg_qnum = (u_long)ds32p->msg_qnum;
    477   1.1       mrg 	dsp->msg_qbytes = (u_long)ds32p->msg_qbytes;
    478   1.1       mrg 	dsp->msg_lspid = ds32p->msg_lspid;
    479   1.1       mrg 	dsp->msg_lrpid = ds32p->msg_lrpid;
    480   1.1       mrg 	dsp->msg_rtime = (time_t)ds32p->msg_rtime;
    481   1.1       mrg 	dsp->msg_stime = (time_t)ds32p->msg_stime;
    482   1.1       mrg 	dsp->msg_ctime = (time_t)ds32p->msg_ctime;
    483   1.1       mrg }
    484   1.1       mrg 
    485   1.1       mrg static __inline void
    486  1.10       mrg netbsd32_from_msqid_ds(dsp, ds32p)
    487   1.1       mrg 	struct msqid_ds *dsp;
    488  1.10       mrg 	struct netbsd32_msqid_ds *ds32p;
    489   1.1       mrg {
    490   1.1       mrg 
    491  1.10       mrg 	netbsd32_from_ipc_perm(&dsp->msg_perm, &ds32p->msg_perm);
    492  1.19       eeh 	netbsd32_from_msg(dsp->_msg_first, (struct netbsd32_msg *)(u_long)ds32p->_msg_first);
    493  1.19       eeh 	netbsd32_from_msg(dsp->_msg_last, (struct netbsd32_msg *)(u_long)ds32p->_msg_last);
    494  1.19       eeh 	ds32p->_msg_cbytes = (netbsd32_u_long)dsp->_msg_cbytes;
    495  1.10       mrg 	ds32p->msg_qnum = (netbsd32_u_long)dsp->msg_qnum;
    496  1.10       mrg 	ds32p->msg_qbytes = (netbsd32_u_long)dsp->msg_qbytes;
    497   1.1       mrg 	ds32p->msg_lspid = dsp->msg_lspid;
    498   1.1       mrg 	ds32p->msg_lrpid = dsp->msg_lrpid;
    499   1.1       mrg 	ds32p->msg_rtime = dsp->msg_rtime;
    500   1.1       mrg 	ds32p->msg_stime = dsp->msg_stime;
    501   1.1       mrg 	ds32p->msg_ctime = dsp->msg_ctime;
    502   1.1       mrg }
    503   1.1       mrg 
    504   1.1       mrg static __inline void
    505  1.10       mrg netbsd32_to_shmid_ds(ds32p, dsp)
    506  1.10       mrg 	struct netbsd32_shmid_ds *ds32p;
    507   1.1       mrg 	struct shmid_ds *dsp;
    508   1.1       mrg {
    509   1.1       mrg 
    510  1.10       mrg 	netbsd32_to_ipc_perm(&ds32p->shm_perm, &dsp->shm_perm);
    511   1.1       mrg 	dsp->shm_segsz = ds32p->shm_segsz;
    512   1.1       mrg 	dsp->shm_lpid = ds32p->shm_lpid;
    513   1.1       mrg 	dsp->shm_cpid = ds32p->shm_cpid;
    514   1.1       mrg 	dsp->shm_nattch = ds32p->shm_nattch;
    515   1.1       mrg 	dsp->shm_atime = (long)ds32p->shm_atime;
    516   1.1       mrg 	dsp->shm_dtime = (long)ds32p->shm_dtime;
    517   1.1       mrg 	dsp->shm_ctime = (long)ds32p->shm_ctime;
    518  1.19       eeh 	dsp->_shm_internal = (void *)(u_long)ds32p->_shm_internal;
    519   1.1       mrg }
    520   1.1       mrg 
    521   1.1       mrg static __inline void
    522  1.10       mrg netbsd32_from_shmid_ds(dsp, ds32p)
    523   1.1       mrg 	struct shmid_ds *dsp;
    524  1.10       mrg 	struct netbsd32_shmid_ds *ds32p;
    525   1.1       mrg {
    526   1.1       mrg 
    527  1.10       mrg 	netbsd32_from_ipc_perm(&dsp->shm_perm, &ds32p->shm_perm);
    528   1.1       mrg 	ds32p->shm_segsz = dsp->shm_segsz;
    529   1.1       mrg 	ds32p->shm_lpid = dsp->shm_lpid;
    530   1.1       mrg 	ds32p->shm_cpid = dsp->shm_cpid;
    531   1.1       mrg 	ds32p->shm_nattch = dsp->shm_nattch;
    532  1.10       mrg 	ds32p->shm_atime = (netbsd32_long)dsp->shm_atime;
    533  1.10       mrg 	ds32p->shm_dtime = (netbsd32_long)dsp->shm_dtime;
    534  1.10       mrg 	ds32p->shm_ctime = (netbsd32_long)dsp->shm_ctime;
    535  1.19       eeh 	ds32p->_shm_internal = (netbsd32_voidp)(u_long)dsp->_shm_internal;
    536   1.1       mrg }
    537   1.1       mrg 
    538   1.1       mrg static __inline void
    539  1.10       mrg netbsd32_to_semid_ds(s32dsp, dsp)
    540  1.10       mrg 	struct  netbsd32_semid_ds *s32dsp;
    541   1.1       mrg 	struct  semid_ds *dsp;
    542   1.1       mrg {
    543   1.1       mrg 
    544  1.10       mrg 	netbsd32_from_ipc_perm(&dsp->sem_perm, &s32dsp->sem_perm);
    545  1.19       eeh 	dsp->_sem_base = (struct __sem *)(u_long)s32dsp->_sem_base;
    546   1.1       mrg 	dsp->sem_nsems = s32dsp->sem_nsems;
    547   1.1       mrg 	dsp->sem_otime = s32dsp->sem_otime;
    548   1.1       mrg 	dsp->sem_ctime = s32dsp->sem_ctime;
    549   1.1       mrg }
    550   1.1       mrg 
    551   1.2       mrg static __inline void
    552  1.10       mrg netbsd32_from_semid_ds(dsp, s32dsp)
    553   1.2       mrg 	struct  semid_ds *dsp;
    554  1.10       mrg 	struct  netbsd32_semid_ds *s32dsp;
    555   1.2       mrg {
    556   1.2       mrg 
    557  1.10       mrg 	netbsd32_to_ipc_perm(&s32dsp->sem_perm, &dsp->sem_perm);
    558  1.19       eeh 	s32dsp->_sem_base = (netbsd32_semp_t)(u_long)dsp->_sem_base;
    559   1.2       mrg 	s32dsp->sem_nsems = dsp->sem_nsems;
    560   1.2       mrg 	s32dsp->sem_otime = dsp->sem_otime;
    561   1.2       mrg 	s32dsp->sem_ctime = dsp->sem_ctime;
    562   1.2       mrg }
    563   1.2       mrg 
    564   1.1       mrg /*
    565   1.1       mrg  * below are all the standard NetBSD system calls, in the 32bit
    566  1.32       mrg  * environment, with the necessary conversions to 64bit before
    567  1.32       mrg  * calling the real syscall, unless we need to inline the whole
    568  1.32       mrg  * syscall here, sigh.
    569   1.1       mrg  */
    570   1.1       mrg 
    571   1.6       eeh int
    572  1.19       eeh netbsd32_exit(p, v, retval)
    573   1.6       eeh 	struct proc *p;
    574   1.6       eeh 	void *v;
    575   1.6       eeh 	register_t *retval;
    576   1.6       eeh {
    577  1.19       eeh 	struct netbsd32_exit_args /* {
    578   1.6       eeh 		syscallarg(int) rval;
    579   1.6       eeh 	} */ *uap = v;
    580   1.6       eeh 	struct sys_exit_args ua;
    581   1.6       eeh 
    582  1.11       mrg 	NETBSD32TO64_UAP(rval);
    583   1.6       eeh 	sys_exit(p, &ua, retval);
    584   1.6       eeh }
    585   1.6       eeh 
    586   1.1       mrg int
    587  1.19       eeh netbsd32_read(p, v, retval)
    588   1.1       mrg 	struct proc *p;
    589   1.1       mrg 	void *v;
    590   1.1       mrg 	register_t *retval;
    591   1.1       mrg {
    592  1.19       eeh 	struct netbsd32_read_args /* {
    593   1.1       mrg 		syscallarg(int) fd;
    594  1.10       mrg 		syscallarg(netbsd32_voidp) buf;
    595  1.10       mrg 		syscallarg(netbsd32_size_t) nbyte;
    596   1.1       mrg 	} */ *uap = v;
    597   1.1       mrg 	struct sys_read_args ua;
    598   1.1       mrg 
    599  1.11       mrg 	NETBSD32TO64_UAP(fd);
    600  1.11       mrg 	NETBSD32TOP_UAP(buf, void *);
    601  1.11       mrg 	NETBSD32TOX_UAP(nbyte, size_t);
    602   1.6       eeh 	return sys_read(p, &ua, retval);
    603   1.1       mrg }
    604   1.1       mrg 
    605   1.1       mrg int
    606  1.19       eeh netbsd32_write(p, v, retval)
    607   1.1       mrg 	struct proc *p;
    608   1.1       mrg 	void *v;
    609   1.1       mrg 	register_t *retval;
    610   1.1       mrg {
    611  1.19       eeh 	struct netbsd32_write_args /* {
    612   1.1       mrg 		syscallarg(int) fd;
    613  1.10       mrg 		syscallarg(const netbsd32_voidp) buf;
    614  1.10       mrg 		syscallarg(netbsd32_size_t) nbyte;
    615   1.1       mrg 	} */ *uap = v;
    616   1.1       mrg 	struct sys_write_args ua;
    617   1.1       mrg 
    618  1.11       mrg 	NETBSD32TO64_UAP(fd);
    619  1.11       mrg 	NETBSD32TOP_UAP(buf, void *);
    620  1.11       mrg 	NETBSD32TOX_UAP(nbyte, size_t);
    621   1.6       eeh 	return sys_write(p, &ua, retval);
    622   1.6       eeh }
    623   1.6       eeh 
    624   1.6       eeh int
    625  1.19       eeh netbsd32_close(p, v, retval)
    626   1.6       eeh 	struct proc *p;
    627   1.6       eeh 	void *v;
    628   1.6       eeh 	register_t *retval;
    629   1.6       eeh {
    630  1.19       eeh 	struct netbsd32_close_args /* {
    631   1.6       eeh 		syscallarg(int) fd;
    632   1.6       eeh 	} */ *uap = v;
    633   1.6       eeh 	struct sys_close_args ua;
    634   1.1       mrg 
    635  1.11       mrg 	NETBSD32TO64_UAP(fd);
    636  1.21       eeh 	return sys_close(p, &ua, retval);
    637   1.1       mrg }
    638   1.1       mrg 
    639   1.1       mrg int
    640  1.19       eeh netbsd32_open(p, v, retval)
    641   1.1       mrg 	struct proc *p;
    642   1.1       mrg 	void *v;
    643   1.1       mrg 	register_t *retval;
    644   1.1       mrg {
    645  1.19       eeh 	struct netbsd32_open_args /* {
    646  1.10       mrg 		syscallarg(const netbsd32_charp) path;
    647   1.1       mrg 		syscallarg(int) flags;
    648   1.1       mrg 		syscallarg(mode_t) mode;
    649   1.1       mrg 	} */ *uap = v;
    650   1.1       mrg 	struct sys_open_args ua;
    651   1.1       mrg 	caddr_t sg;
    652   1.1       mrg 
    653  1.11       mrg 	NETBSD32TOP_UAP(path, const char);
    654  1.11       mrg 	NETBSD32TO64_UAP(flags);
    655  1.11       mrg 	NETBSD32TO64_UAP(mode);
    656   1.1       mrg 	sg = stackgap_init(p->p_emul);
    657  1.11       mrg 	NETBSD32_CHECK_ALT_EXIST(p, &sg, SCARG(&ua, path));
    658   1.1       mrg 
    659   1.1       mrg 	return (sys_open(p, &ua, retval));
    660   1.1       mrg }
    661   1.1       mrg 
    662   1.1       mrg int
    663  1.19       eeh netbsd32_wait4(q, v, retval)
    664   1.6       eeh 	struct proc *q;
    665   1.1       mrg 	void *v;
    666   1.1       mrg 	register_t *retval;
    667   1.1       mrg {
    668  1.19       eeh 	struct netbsd32_wait4_args /* {
    669   1.1       mrg 		syscallarg(int) pid;
    670  1.10       mrg 		syscallarg(netbsd32_intp) status;
    671   1.1       mrg 		syscallarg(int) options;
    672  1.10       mrg 		syscallarg(netbsd32_rusagep_t) rusage;
    673   1.1       mrg 	} */ *uap = v;
    674  1.10       mrg 	struct netbsd32_rusage ru32;
    675  1.25  augustss 	int nfound;
    676  1.25  augustss 	struct proc *p, *t;
    677   1.6       eeh 	int status, error;
    678   1.6       eeh 
    679   1.6       eeh 	if (SCARG(uap, pid) == 0)
    680   1.6       eeh 		SCARG(uap, pid) = -q->p_pgid;
    681   1.6       eeh 	if (SCARG(uap, options) &~ (WUNTRACED|WNOHANG))
    682   1.6       eeh 		return (EINVAL);
    683   1.1       mrg 
    684   1.6       eeh loop:
    685   1.6       eeh 	nfound = 0;
    686   1.6       eeh 	for (p = q->p_children.lh_first; p != 0; p = p->p_sibling.le_next) {
    687   1.6       eeh 		if (SCARG(uap, pid) != WAIT_ANY &&
    688   1.6       eeh 		    p->p_pid != SCARG(uap, pid) &&
    689   1.6       eeh 		    p->p_pgid != -SCARG(uap, pid))
    690   1.6       eeh 			continue;
    691   1.6       eeh 		nfound++;
    692   1.6       eeh 		if (p->p_stat == SZOMB) {
    693   1.6       eeh 			retval[0] = p->p_pid;
    694   1.6       eeh 
    695   1.6       eeh 			if (SCARG(uap, status)) {
    696   1.6       eeh 				status = p->p_xstat;	/* convert to int */
    697   1.6       eeh 				error = copyout((caddr_t)&status,
    698   1.6       eeh 						(caddr_t)(u_long)SCARG(uap, status),
    699   1.6       eeh 						sizeof(status));
    700   1.6       eeh 				if (error)
    701   1.6       eeh 					return (error);
    702   1.6       eeh 			}
    703   1.6       eeh 			if (SCARG(uap, rusage)) {
    704  1.10       mrg 				netbsd32_from_rusage(p->p_ru, &ru32);
    705   1.6       eeh 				if ((error = copyout((caddr_t)&ru32,
    706   1.6       eeh 						     (caddr_t)(u_long)SCARG(uap, rusage),
    707  1.10       mrg 						     sizeof(struct netbsd32_rusage))))
    708   1.6       eeh 					return (error);
    709   1.6       eeh 			}
    710   1.6       eeh 			/*
    711   1.6       eeh 			 * If we got the child via ptrace(2) or procfs, and
    712   1.6       eeh 			 * the parent is different (meaning the process was
    713   1.6       eeh 			 * attached, rather than run as a child), then we need
    714   1.6       eeh 			 * to give it back to the old parent, and send the
    715   1.6       eeh 			 * parent a SIGCHLD.  The rest of the cleanup will be
    716   1.6       eeh 			 * done when the old parent waits on the child.
    717   1.6       eeh 			 */
    718   1.6       eeh 			if ((p->p_flag & P_TRACED) &&
    719   1.6       eeh 			    p->p_oppid != p->p_pptr->p_pid) {
    720   1.6       eeh 				t = pfind(p->p_oppid);
    721   1.6       eeh 				proc_reparent(p, t ? t : initproc);
    722   1.6       eeh 				p->p_oppid = 0;
    723   1.6       eeh 				p->p_flag &= ~(P_TRACED|P_WAITED|P_FSTRACE);
    724   1.6       eeh 				psignal(p->p_pptr, SIGCHLD);
    725   1.6       eeh 				wakeup((caddr_t)p->p_pptr);
    726   1.6       eeh 				return (0);
    727   1.6       eeh 			}
    728   1.6       eeh 			p->p_xstat = 0;
    729   1.6       eeh 			ruadd(&q->p_stats->p_cru, p->p_ru);
    730   1.6       eeh 			pool_put(&rusage_pool, p->p_ru);
    731   1.6       eeh 
    732   1.6       eeh 			/*
    733   1.6       eeh 			 * Finally finished with old proc entry.
    734   1.6       eeh 			 * Unlink it from its process group and free it.
    735   1.6       eeh 			 */
    736   1.6       eeh 			leavepgrp(p);
    737   1.6       eeh 
    738   1.6       eeh 			LIST_REMOVE(p, p_list);	/* off zombproc */
    739   1.6       eeh 
    740   1.6       eeh 			LIST_REMOVE(p, p_sibling);
    741   1.6       eeh 
    742   1.6       eeh 			/*
    743   1.6       eeh 			 * Decrement the count of procs running with this uid.
    744   1.6       eeh 			 */
    745   1.6       eeh 			(void)chgproccnt(p->p_cred->p_ruid, -1);
    746   1.6       eeh 
    747   1.6       eeh 			/*
    748   1.6       eeh 			 * Free up credentials.
    749   1.6       eeh 			 */
    750   1.6       eeh 			if (--p->p_cred->p_refcnt == 0) {
    751   1.6       eeh 				crfree(p->p_cred->pc_ucred);
    752   1.6       eeh 				pool_put(&pcred_pool, p->p_cred);
    753   1.6       eeh 			}
    754   1.6       eeh 
    755   1.6       eeh 			/*
    756   1.6       eeh 			 * Release reference to text vnode
    757   1.6       eeh 			 */
    758   1.6       eeh 			if (p->p_textvp)
    759   1.6       eeh 				vrele(p->p_textvp);
    760   1.6       eeh 
    761   1.6       eeh 			pool_put(&proc_pool, p);
    762   1.6       eeh 			nprocs--;
    763   1.6       eeh 			return (0);
    764   1.6       eeh 		}
    765   1.6       eeh 		if (p->p_stat == SSTOP && (p->p_flag & P_WAITED) == 0 &&
    766   1.6       eeh 		    (p->p_flag & P_TRACED || SCARG(uap, options) & WUNTRACED)) {
    767   1.6       eeh 			p->p_flag |= P_WAITED;
    768   1.6       eeh 			retval[0] = p->p_pid;
    769   1.6       eeh 
    770   1.6       eeh 			if (SCARG(uap, status)) {
    771   1.6       eeh 				status = W_STOPCODE(p->p_xstat);
    772   1.6       eeh 				error = copyout((caddr_t)&status,
    773   1.6       eeh 				    (caddr_t)(u_long)SCARG(uap, status),
    774   1.6       eeh 				    sizeof(status));
    775   1.6       eeh 			} else
    776   1.6       eeh 				error = 0;
    777   1.6       eeh 			return (error);
    778   1.6       eeh 		}
    779   1.6       eeh 	}
    780   1.6       eeh 	if (nfound == 0)
    781   1.6       eeh 		return (ECHILD);
    782   1.6       eeh 	if (SCARG(uap, options) & WNOHANG) {
    783   1.6       eeh 		retval[0] = 0;
    784   1.6       eeh 		return (0);
    785   1.5       eeh 	}
    786   1.6       eeh 	if ((error = tsleep((caddr_t)q, PWAIT | PCATCH, "wait", 0)) != 0)
    787   1.6       eeh 		return (error);
    788   1.6       eeh 	goto loop;
    789   1.1       mrg }
    790   1.1       mrg 
    791   1.1       mrg int
    792  1.19       eeh netbsd32_link(p, v, retval)
    793   1.1       mrg 	struct proc *p;
    794   1.1       mrg 	void *v;
    795   1.1       mrg 	register_t *retval;
    796   1.1       mrg {
    797  1.19       eeh 	struct netbsd32_link_args /* {
    798  1.10       mrg 		syscallarg(const netbsd32_charp) path;
    799  1.10       mrg 		syscallarg(const netbsd32_charp) link;
    800   1.1       mrg 	} */ *uap = v;
    801   1.1       mrg 	struct sys_link_args ua;
    802   1.1       mrg 
    803  1.11       mrg 	NETBSD32TOP_UAP(path, const char);
    804  1.11       mrg 	NETBSD32TOP_UAP(link, const char);
    805   1.1       mrg 	return (sys_link(p, &ua, retval));
    806   1.1       mrg }
    807   1.1       mrg 
    808   1.1       mrg int
    809  1.19       eeh netbsd32_unlink(p, v, retval)
    810   1.1       mrg 	struct proc *p;
    811   1.1       mrg 	void *v;
    812   1.1       mrg 	register_t *retval;
    813   1.1       mrg {
    814  1.19       eeh 	struct netbsd32_unlink_args /* {
    815  1.10       mrg 		syscallarg(const netbsd32_charp) path;
    816   1.1       mrg 	} */ *uap = v;
    817   1.1       mrg 	struct sys_unlink_args ua;
    818   1.1       mrg 
    819  1.11       mrg 	NETBSD32TOP_UAP(path, const char);
    820   1.1       mrg 
    821   1.1       mrg 	return (sys_unlink(p, &ua, retval));
    822   1.1       mrg }
    823   1.1       mrg 
    824   1.1       mrg int
    825  1.19       eeh netbsd32_chdir(p, v, retval)
    826   1.1       mrg 	struct proc *p;
    827   1.1       mrg 	void *v;
    828   1.1       mrg 	register_t *retval;
    829   1.1       mrg {
    830  1.19       eeh 	struct netbsd32_chdir_args /* {
    831  1.10       mrg 		syscallarg(const netbsd32_charp) path;
    832   1.1       mrg 	} */ *uap = v;
    833   1.1       mrg 	struct sys_chdir_args ua;
    834   1.1       mrg 
    835  1.11       mrg 	NETBSD32TOP_UAP(path, const char);
    836   1.1       mrg 
    837   1.1       mrg 	return (sys_chdir(p, &ua, retval));
    838   1.1       mrg }
    839   1.1       mrg 
    840   1.1       mrg int
    841  1.19       eeh netbsd32_fchdir(p, v, retval)
    842   1.6       eeh 	struct proc *p;
    843   1.6       eeh 	void *v;
    844   1.6       eeh 	register_t *retval;
    845   1.6       eeh {
    846  1.19       eeh 	struct netbsd32_fchdir_args /* {
    847   1.6       eeh 		syscallarg(int) fd;
    848   1.6       eeh 	} */ *uap = v;
    849   1.6       eeh 	struct sys_fchdir_args ua;
    850   1.6       eeh 
    851  1.11       mrg 	NETBSD32TO64_UAP(fd);
    852   1.6       eeh 
    853   1.6       eeh 	return (sys_fchdir(p, &ua, retval));
    854   1.6       eeh }
    855   1.6       eeh 
    856   1.6       eeh int
    857  1.19       eeh netbsd32_mknod(p, v, retval)
    858   1.1       mrg 	struct proc *p;
    859   1.1       mrg 	void *v;
    860   1.1       mrg 	register_t *retval;
    861   1.1       mrg {
    862  1.19       eeh 	struct netbsd32_mknod_args /* {
    863  1.10       mrg 		syscallarg(const netbsd32_charp) path;
    864   1.1       mrg 		syscallarg(mode_t) mode;
    865   1.1       mrg 		syscallarg(dev_t) dev;
    866   1.1       mrg 	} */ *uap = v;
    867   1.1       mrg 	struct sys_mknod_args ua;
    868   1.1       mrg 
    869  1.11       mrg 	NETBSD32TOP_UAP(path, const char);
    870  1.11       mrg 	NETBSD32TO64_UAP(dev);
    871  1.11       mrg 	NETBSD32TO64_UAP(mode);
    872   1.1       mrg 
    873   1.1       mrg 	return (sys_mknod(p, &ua, retval));
    874   1.1       mrg }
    875   1.1       mrg 
    876   1.1       mrg int
    877  1.19       eeh netbsd32_chmod(p, v, retval)
    878   1.1       mrg 	struct proc *p;
    879   1.1       mrg 	void *v;
    880   1.1       mrg 	register_t *retval;
    881   1.1       mrg {
    882  1.19       eeh 	struct netbsd32_chmod_args /* {
    883  1.10       mrg 		syscallarg(const netbsd32_charp) path;
    884   1.1       mrg 		syscallarg(mode_t) mode;
    885   1.1       mrg 	} */ *uap = v;
    886   1.1       mrg 	struct sys_chmod_args ua;
    887   1.1       mrg 
    888  1.11       mrg 	NETBSD32TOP_UAP(path, const char);
    889  1.11       mrg 	NETBSD32TO64_UAP(mode);
    890   1.1       mrg 
    891   1.1       mrg 	return (sys_chmod(p, &ua, retval));
    892   1.1       mrg }
    893   1.1       mrg 
    894   1.1       mrg int
    895  1.19       eeh netbsd32_chown(p, v, retval)
    896   1.1       mrg 	struct proc *p;
    897   1.1       mrg 	void *v;
    898   1.1       mrg 	register_t *retval;
    899   1.1       mrg {
    900  1.19       eeh 	struct netbsd32_chown_args /* {
    901  1.10       mrg 		syscallarg(const netbsd32_charp) path;
    902   1.1       mrg 		syscallarg(uid_t) uid;
    903   1.1       mrg 		syscallarg(gid_t) gid;
    904   1.1       mrg 	} */ *uap = v;
    905   1.1       mrg 	struct sys_chown_args ua;
    906   1.1       mrg 
    907  1.11       mrg 	NETBSD32TOP_UAP(path, const char);
    908  1.11       mrg 	NETBSD32TO64_UAP(uid);
    909  1.11       mrg 	NETBSD32TO64_UAP(gid);
    910   1.1       mrg 
    911   1.1       mrg 	return (sys_chown(p, &ua, retval));
    912   1.1       mrg }
    913   1.1       mrg 
    914   1.1       mrg int
    915  1.19       eeh netbsd32_break(p, v, retval)
    916   1.1       mrg 	struct proc *p;
    917   1.1       mrg 	void *v;
    918   1.1       mrg 	register_t *retval;
    919   1.1       mrg {
    920  1.19       eeh 	struct netbsd32_break_args /* {
    921  1.10       mrg 		syscallarg(netbsd32_charp) nsize;
    922   1.1       mrg 	} */ *uap = v;
    923   1.1       mrg 	struct sys_obreak_args ua;
    924   1.1       mrg 
    925   1.1       mrg 	SCARG(&ua, nsize) = (char *)(u_long)SCARG(uap, nsize);
    926  1.11       mrg 	NETBSD32TOP_UAP(nsize, char);
    927   1.1       mrg 	return (sys_obreak(p, &ua, retval));
    928   1.1       mrg }
    929   1.1       mrg 
    930   1.1       mrg int
    931  1.19       eeh netbsd32_getfsstat(p, v, retval)
    932   1.1       mrg 	struct proc *p;
    933   1.1       mrg 	void *v;
    934   1.1       mrg 	register_t *retval;
    935   1.1       mrg {
    936  1.19       eeh 	struct netbsd32_getfsstat_args /* {
    937  1.10       mrg 		syscallarg(netbsd32_statfsp_t) buf;
    938  1.10       mrg 		syscallarg(netbsd32_long) bufsize;
    939   1.1       mrg 		syscallarg(int) flags;
    940   1.1       mrg 	} */ *uap = v;
    941  1.25  augustss 	struct mount *mp, *nmp;
    942  1.25  augustss 	struct statfs *sp;
    943  1.21       eeh 	struct netbsd32_statfs sb32;
    944  1.21       eeh 	caddr_t sfsp;
    945  1.21       eeh 	long count, maxcount, error;
    946  1.21       eeh 
    947  1.21       eeh 	maxcount = SCARG(uap, bufsize) / sizeof(struct netbsd32_statfs);
    948  1.32       mrg 	sfsp = (caddr_t)(u_long)SCARG(uap, buf);
    949  1.21       eeh 	simple_lock(&mountlist_slock);
    950  1.21       eeh 	count = 0;
    951  1.21       eeh 	for (mp = mountlist.cqh_first; mp != (void *)&mountlist; mp = nmp) {
    952  1.21       eeh 		if (vfs_busy(mp, LK_NOWAIT, &mountlist_slock)) {
    953  1.21       eeh 			nmp = mp->mnt_list.cqe_next;
    954  1.21       eeh 			continue;
    955  1.21       eeh 		}
    956  1.21       eeh 		if (sfsp && count < maxcount) {
    957  1.21       eeh 			sp = &mp->mnt_stat;
    958  1.21       eeh 			/*
    959  1.21       eeh 			 * If MNT_NOWAIT or MNT_LAZY is specified, do not
    960  1.21       eeh 			 * refresh the fsstat cache. MNT_WAIT or MNT_LAXY
    961  1.21       eeh 			 * overrides MNT_NOWAIT.
    962  1.21       eeh 			 */
    963  1.21       eeh 			if (SCARG(uap, flags) != MNT_NOWAIT &&
    964  1.21       eeh 			    SCARG(uap, flags) != MNT_LAZY &&
    965  1.21       eeh 			    (SCARG(uap, flags) == MNT_WAIT ||
    966  1.21       eeh 			     SCARG(uap, flags) == 0) &&
    967  1.21       eeh 			    (error = VFS_STATFS(mp, sp, p)) != 0) {
    968  1.21       eeh 				simple_lock(&mountlist_slock);
    969  1.21       eeh 				nmp = mp->mnt_list.cqe_next;
    970  1.21       eeh 				vfs_unbusy(mp);
    971  1.21       eeh 				continue;
    972  1.21       eeh 			}
    973  1.21       eeh 			sp->f_flags = mp->mnt_flag & MNT_VISFLAGMASK;
    974  1.21       eeh 			sp->f_oflags = sp->f_flags & 0xffff;
    975  1.21       eeh 			netbsd32_from_statfs(sp, &sb32);
    976  1.21       eeh 			error = copyout(&sb32, sfsp, sizeof(sb32));
    977  1.21       eeh 			if (error) {
    978  1.21       eeh 				vfs_unbusy(mp);
    979  1.21       eeh 				return (error);
    980  1.21       eeh 			}
    981  1.21       eeh 			sfsp += sizeof(sb32);
    982  1.21       eeh 		}
    983  1.21       eeh 		count++;
    984  1.21       eeh 		simple_lock(&mountlist_slock);
    985  1.21       eeh 		nmp = mp->mnt_list.cqe_next;
    986  1.21       eeh 		vfs_unbusy(mp);
    987  1.21       eeh 	}
    988  1.21       eeh 	simple_unlock(&mountlist_slock);
    989  1.21       eeh 	if (sfsp && count > maxcount)
    990  1.21       eeh 		*retval = maxcount;
    991   1.1       mrg 	else
    992  1.21       eeh 		*retval = count;
    993   1.1       mrg 	return (0);
    994   1.1       mrg }
    995   1.1       mrg 
    996   1.1       mrg int
    997  1.19       eeh netbsd32_mount(p, v, retval)
    998   1.1       mrg 	struct proc *p;
    999   1.1       mrg 	void *v;
   1000   1.1       mrg 	register_t *retval;
   1001   1.1       mrg {
   1002  1.19       eeh 	struct netbsd32_mount_args /* {
   1003  1.10       mrg 		syscallarg(const netbsd32_charp) type;
   1004  1.10       mrg 		syscallarg(const netbsd32_charp) path;
   1005   1.1       mrg 		syscallarg(int) flags;
   1006  1.10       mrg 		syscallarg(netbsd32_voidp) data;
   1007   1.1       mrg 	} */ *uap = v;
   1008   1.1       mrg 	struct sys_mount_args ua;
   1009   1.1       mrg 
   1010  1.11       mrg 	NETBSD32TOP_UAP(type, const char);
   1011  1.11       mrg 	NETBSD32TOP_UAP(path, const char);
   1012  1.11       mrg 	NETBSD32TO64_UAP(flags);
   1013  1.11       mrg 	NETBSD32TOP_UAP(data, void);
   1014   1.1       mrg 	return (sys_mount(p, &ua, retval));
   1015   1.1       mrg }
   1016   1.1       mrg 
   1017   1.1       mrg int
   1018  1.19       eeh netbsd32_unmount(p, v, retval)
   1019   1.1       mrg 	struct proc *p;
   1020   1.1       mrg 	void *v;
   1021   1.1       mrg 	register_t *retval;
   1022   1.1       mrg {
   1023  1.19       eeh 	struct netbsd32_unmount_args /* {
   1024  1.10       mrg 		syscallarg(const netbsd32_charp) path;
   1025   1.1       mrg 		syscallarg(int) flags;
   1026   1.1       mrg 	} */ *uap = v;
   1027   1.1       mrg 	struct sys_unmount_args ua;
   1028   1.1       mrg 
   1029  1.11       mrg 	NETBSD32TOP_UAP(path, const char);
   1030  1.11       mrg 	NETBSD32TO64_UAP(flags);
   1031   1.1       mrg 	return (sys_unmount(p, &ua, retval));
   1032   1.1       mrg }
   1033   1.1       mrg 
   1034   1.1       mrg int
   1035  1.19       eeh netbsd32_setuid(p, v, retval)
   1036   1.6       eeh 	struct proc *p;
   1037   1.6       eeh 	void *v;
   1038   1.6       eeh 	register_t *retval;
   1039   1.6       eeh {
   1040  1.19       eeh 	struct netbsd32_setuid_args /* {
   1041   1.6       eeh 		syscallarg(uid_t) uid;
   1042   1.6       eeh 	} */ *uap = v;
   1043   1.6       eeh 	struct sys_setuid_args ua;
   1044   1.6       eeh 
   1045  1.11       mrg 	NETBSD32TO64_UAP(uid);
   1046   1.6       eeh 	return (sys_setuid(p, &ua, retval));
   1047   1.6       eeh }
   1048   1.6       eeh 
   1049   1.6       eeh int
   1050  1.19       eeh netbsd32_ptrace(p, v, retval)
   1051   1.1       mrg 	struct proc *p;
   1052   1.1       mrg 	void *v;
   1053   1.1       mrg 	register_t *retval;
   1054   1.1       mrg {
   1055  1.19       eeh 	struct netbsd32_ptrace_args /* {
   1056   1.1       mrg 		syscallarg(int) req;
   1057   1.1       mrg 		syscallarg(pid_t) pid;
   1058  1.10       mrg 		syscallarg(netbsd32_caddr_t) addr;
   1059   1.1       mrg 		syscallarg(int) data;
   1060   1.1       mrg 	} */ *uap = v;
   1061   1.1       mrg 	struct sys_ptrace_args ua;
   1062   1.1       mrg 
   1063  1.11       mrg 	NETBSD32TO64_UAP(req);
   1064  1.11       mrg 	NETBSD32TO64_UAP(pid);
   1065  1.11       mrg 	NETBSD32TOX64_UAP(addr, caddr_t);
   1066  1.11       mrg 	NETBSD32TO64_UAP(data);
   1067   1.1       mrg 	return (sys_ptrace(p, &ua, retval));
   1068   1.1       mrg }
   1069   1.1       mrg 
   1070   1.1       mrg int
   1071  1.19       eeh netbsd32_recvmsg(p, v, retval)
   1072   1.1       mrg 	struct proc *p;
   1073   1.1       mrg 	void *v;
   1074   1.1       mrg 	register_t *retval;
   1075   1.1       mrg {
   1076  1.19       eeh 	struct netbsd32_recvmsg_args /* {
   1077   1.1       mrg 		syscallarg(int) s;
   1078  1.10       mrg 		syscallarg(netbsd32_msghdrp_t) msg;
   1079   1.1       mrg 		syscallarg(int) flags;
   1080   1.1       mrg 	} */ *uap = v;
   1081  1.10       mrg 	struct netbsd32_msghdr msg;
   1082   1.6       eeh 	struct iovec aiov[UIO_SMALLIOV], *uiov, *iov;
   1083  1.25  augustss 	int error;
   1084   1.6       eeh 
   1085   1.6       eeh 	error = copyin((caddr_t)(u_long)SCARG(uap, msg), (caddr_t)&msg,
   1086   1.6       eeh 		       sizeof(msg));
   1087  1.10       mrg 		/* netbsd32_msghdr needs the iov pre-allocated */
   1088   1.6       eeh 	if (error)
   1089   1.6       eeh 		return (error);
   1090   1.6       eeh 	if ((u_int)msg.msg_iovlen > UIO_SMALLIOV) {
   1091   1.6       eeh 		if ((u_int)msg.msg_iovlen > IOV_MAX)
   1092   1.6       eeh 			return (EMSGSIZE);
   1093   1.6       eeh 		MALLOC(iov, struct iovec *,
   1094   1.6       eeh 		       sizeof(struct iovec) * (u_int)msg.msg_iovlen, M_IOV,
   1095   1.6       eeh 		       M_WAITOK);
   1096   1.6       eeh 	} else if ((u_int)msg.msg_iovlen > 0)
   1097   1.6       eeh 		iov = aiov;
   1098   1.6       eeh 	else
   1099   1.6       eeh 		return (EMSGSIZE);
   1100   1.6       eeh #ifdef COMPAT_OLDSOCK
   1101   1.6       eeh 	msg.msg_flags = SCARG(uap, flags) &~ MSG_COMPAT;
   1102   1.6       eeh #else
   1103   1.6       eeh 	msg.msg_flags = SCARG(uap, flags);
   1104   1.6       eeh #endif
   1105   1.6       eeh 	uiov = (struct iovec *)(u_long)msg.msg_iov;
   1106  1.10       mrg 	error = netbsd32_to_iovecin((struct netbsd32_iovec *)uiov,
   1107   1.6       eeh 				   iov, msg.msg_iovlen);
   1108   1.6       eeh 	if (error)
   1109   1.6       eeh 		goto done;
   1110   1.6       eeh 	if ((error = recvit32(p, SCARG(uap, s), &msg, iov, (caddr_t)0, retval)) == 0) {
   1111   1.6       eeh 		error = copyout((caddr_t)&msg, (caddr_t)(u_long)SCARG(uap, msg),
   1112   1.6       eeh 		    sizeof(msg));
   1113   1.6       eeh 	}
   1114   1.6       eeh done:
   1115   1.6       eeh 	if (iov != aiov)
   1116   1.6       eeh 		FREE(iov, M_IOV);
   1117   1.6       eeh 	return (error);
   1118   1.6       eeh }
   1119   1.1       mrg 
   1120   1.6       eeh int
   1121   1.6       eeh recvit32(p, s, mp, iov, namelenp, retsize)
   1122   1.6       eeh 	struct proc *p;
   1123   1.6       eeh 	int s;
   1124  1.10       mrg 	struct netbsd32_msghdr *mp;
   1125   1.6       eeh 	struct iovec *iov;
   1126   1.6       eeh 	caddr_t namelenp;
   1127   1.6       eeh 	register_t *retsize;
   1128   1.6       eeh {
   1129   1.6       eeh 	struct file *fp;
   1130   1.6       eeh 	struct uio auio;
   1131  1.25  augustss 	int i;
   1132   1.6       eeh 	int len, error;
   1133   1.6       eeh 	struct mbuf *from = 0, *control = 0;
   1134   1.6       eeh 	struct socket *so;
   1135   1.6       eeh #ifdef KTRACE
   1136   1.6       eeh 	struct iovec *ktriov = NULL;
   1137   1.6       eeh #endif
   1138   1.6       eeh 
   1139  1.12   thorpej 	/* getsock() will use the descriptor for us */
   1140   1.6       eeh 	if ((error = getsock(p->p_fd, s, &fp)) != 0)
   1141   1.6       eeh 		return (error);
   1142   1.6       eeh 	auio.uio_iov = (struct iovec *)(u_long)mp->msg_iov;
   1143   1.6       eeh 	auio.uio_iovcnt = mp->msg_iovlen;
   1144   1.6       eeh 	auio.uio_segflg = UIO_USERSPACE;
   1145   1.6       eeh 	auio.uio_rw = UIO_READ;
   1146   1.6       eeh 	auio.uio_procp = p;
   1147   1.6       eeh 	auio.uio_offset = 0;			/* XXX */
   1148   1.6       eeh 	auio.uio_resid = 0;
   1149   1.6       eeh 	for (i = 0; i < mp->msg_iovlen; i++, iov++) {
   1150   1.6       eeh #if 0
   1151   1.6       eeh 		/* cannot happen iov_len is unsigned */
   1152  1.12   thorpej 		if (iov->iov_len < 0) {
   1153  1.12   thorpej 			error = EINVAL;
   1154  1.12   thorpej 			goto out1;
   1155  1.12   thorpej 		}
   1156   1.6       eeh #endif
   1157   1.6       eeh 		/*
   1158   1.6       eeh 		 * Reads return ssize_t because -1 is returned on error.
   1159   1.6       eeh 		 * Therefore we must restrict the length to SSIZE_MAX to
   1160   1.6       eeh 		 * avoid garbage return values.
   1161   1.6       eeh 		 */
   1162   1.6       eeh 		auio.uio_resid += iov->iov_len;
   1163  1.12   thorpej 		if (iov->iov_len > SSIZE_MAX || auio.uio_resid > SSIZE_MAX) {
   1164  1.12   thorpej 			error = EINVAL;
   1165  1.12   thorpej 			goto out1;
   1166  1.12   thorpej 		}
   1167   1.6       eeh 	}
   1168   1.6       eeh #ifdef KTRACE
   1169   1.6       eeh 	if (KTRPOINT(p, KTR_GENIO)) {
   1170   1.6       eeh 		int iovlen = auio.uio_iovcnt * sizeof(struct iovec);
   1171   1.1       mrg 
   1172   1.6       eeh 		MALLOC(ktriov, struct iovec *, iovlen, M_TEMP, M_WAITOK);
   1173   1.6       eeh 		memcpy((caddr_t)ktriov, (caddr_t)auio.uio_iov, iovlen);
   1174   1.6       eeh 	}
   1175   1.6       eeh #endif
   1176   1.6       eeh 	len = auio.uio_resid;
   1177   1.6       eeh 	so = (struct socket *)fp->f_data;
   1178   1.6       eeh 	error = (*so->so_receive)(so, &from, &auio, NULL,
   1179   1.6       eeh 			  mp->msg_control ? &control : NULL, &mp->msg_flags);
   1180   1.6       eeh 	if (error) {
   1181   1.6       eeh 		if (auio.uio_resid != len && (error == ERESTART ||
   1182   1.6       eeh 		    error == EINTR || error == EWOULDBLOCK))
   1183   1.6       eeh 			error = 0;
   1184   1.6       eeh 	}
   1185   1.6       eeh #ifdef KTRACE
   1186   1.6       eeh 	if (ktriov != NULL) {
   1187   1.6       eeh 		if (error == 0)
   1188  1.26  sommerfe 			ktrgenio(p, s, UIO_READ, ktriov,
   1189  1.26  sommerfe 			    len - auio.uio_resid, error);
   1190   1.6       eeh 		FREE(ktriov, M_TEMP);
   1191   1.6       eeh 	}
   1192   1.6       eeh #endif
   1193   1.6       eeh 	if (error)
   1194   1.6       eeh 		goto out;
   1195   1.6       eeh 	*retsize = len - auio.uio_resid;
   1196   1.6       eeh 	if (mp->msg_name) {
   1197   1.6       eeh 		len = mp->msg_namelen;
   1198   1.6       eeh 		if (len <= 0 || from == 0)
   1199   1.6       eeh 			len = 0;
   1200   1.6       eeh 		else {
   1201   1.6       eeh #ifdef COMPAT_OLDSOCK
   1202   1.6       eeh 			if (mp->msg_flags & MSG_COMPAT)
   1203   1.6       eeh 				mtod(from, struct osockaddr *)->sa_family =
   1204   1.6       eeh 				    mtod(from, struct sockaddr *)->sa_family;
   1205   1.6       eeh #endif
   1206   1.6       eeh 			if (len > from->m_len)
   1207   1.6       eeh 				len = from->m_len;
   1208   1.6       eeh 			/* else if len < from->m_len ??? */
   1209   1.6       eeh 			error = copyout(mtod(from, caddr_t),
   1210   1.6       eeh 					(caddr_t)(u_long)mp->msg_name, (unsigned)len);
   1211   1.6       eeh 			if (error)
   1212   1.6       eeh 				goto out;
   1213   1.6       eeh 		}
   1214   1.6       eeh 		mp->msg_namelen = len;
   1215   1.6       eeh 		if (namelenp &&
   1216   1.6       eeh 		    (error = copyout((caddr_t)&len, namelenp, sizeof(int)))) {
   1217   1.6       eeh #ifdef COMPAT_OLDSOCK
   1218   1.6       eeh 			if (mp->msg_flags & MSG_COMPAT)
   1219   1.6       eeh 				error = 0;	/* old recvfrom didn't check */
   1220   1.6       eeh 			else
   1221   1.6       eeh #endif
   1222   1.6       eeh 			goto out;
   1223   1.6       eeh 		}
   1224   1.6       eeh 	}
   1225   1.6       eeh 	if (mp->msg_control) {
   1226   1.6       eeh #ifdef COMPAT_OLDSOCK
   1227   1.6       eeh 		/*
   1228   1.6       eeh 		 * We assume that old recvmsg calls won't receive access
   1229   1.6       eeh 		 * rights and other control info, esp. as control info
   1230   1.6       eeh 		 * is always optional and those options didn't exist in 4.3.
   1231   1.6       eeh 		 * If we receive rights, trim the cmsghdr; anything else
   1232   1.6       eeh 		 * is tossed.
   1233   1.6       eeh 		 */
   1234   1.6       eeh 		if (control && mp->msg_flags & MSG_COMPAT) {
   1235   1.6       eeh 			if (mtod(control, struct cmsghdr *)->cmsg_level !=
   1236   1.6       eeh 			    SOL_SOCKET ||
   1237   1.6       eeh 			    mtod(control, struct cmsghdr *)->cmsg_type !=
   1238   1.6       eeh 			    SCM_RIGHTS) {
   1239   1.6       eeh 				mp->msg_controllen = 0;
   1240   1.6       eeh 				goto out;
   1241   1.6       eeh 			}
   1242   1.6       eeh 			control->m_len -= sizeof(struct cmsghdr);
   1243   1.6       eeh 			control->m_data += sizeof(struct cmsghdr);
   1244   1.6       eeh 		}
   1245   1.6       eeh #endif
   1246   1.6       eeh 		len = mp->msg_controllen;
   1247   1.6       eeh 		if (len <= 0 || control == 0)
   1248   1.6       eeh 			len = 0;
   1249   1.6       eeh 		else {
   1250   1.6       eeh 			struct mbuf *m = control;
   1251   1.6       eeh 			caddr_t p = (caddr_t)(u_long)mp->msg_control;
   1252   1.6       eeh 
   1253   1.6       eeh 			do {
   1254   1.6       eeh 				i = m->m_len;
   1255   1.6       eeh 				if (len < i) {
   1256   1.6       eeh 					mp->msg_flags |= MSG_CTRUNC;
   1257   1.6       eeh 					i = len;
   1258   1.6       eeh 				}
   1259   1.6       eeh 				error = copyout(mtod(m, caddr_t), p,
   1260   1.6       eeh 				    (unsigned)i);
   1261   1.6       eeh 				if (m->m_next)
   1262   1.6       eeh 					i = ALIGN(i);
   1263   1.6       eeh 				p += i;
   1264   1.6       eeh 				len -= i;
   1265   1.6       eeh 				if (error != 0 || len <= 0)
   1266   1.6       eeh 					break;
   1267   1.6       eeh 			} while ((m = m->m_next) != NULL);
   1268   1.6       eeh 			len = p - (caddr_t)(u_long)mp->msg_control;
   1269   1.6       eeh 		}
   1270   1.6       eeh 		mp->msg_controllen = len;
   1271   1.6       eeh 	}
   1272  1.12   thorpej  out:
   1273   1.6       eeh 	if (from)
   1274   1.6       eeh 		m_freem(from);
   1275   1.6       eeh 	if (control)
   1276   1.6       eeh 		m_freem(control);
   1277  1.12   thorpej  out1:
   1278  1.19       eeh 	FILE_UNUSE(fp, p);
   1279   1.1       mrg 	return (error);
   1280   1.1       mrg }
   1281   1.1       mrg 
   1282   1.6       eeh 
   1283   1.1       mrg int
   1284  1.19       eeh netbsd32_sendmsg(p, v, retval)
   1285   1.1       mrg 	struct proc *p;
   1286   1.1       mrg 	void *v;
   1287   1.1       mrg 	register_t *retval;
   1288   1.1       mrg {
   1289  1.19       eeh 	struct netbsd32_sendmsg_args /* {
   1290   1.1       mrg 		syscallarg(int) s;
   1291  1.10       mrg 		syscallarg(const netbsd32_msghdrp_t) msg;
   1292   1.1       mrg 		syscallarg(int) flags;
   1293   1.1       mrg 	} */ *uap = v;
   1294   1.6       eeh 	struct msghdr msg;
   1295  1.10       mrg 	struct netbsd32_msghdr msg32;
   1296   1.6       eeh 	struct iovec aiov[UIO_SMALLIOV], *iov;
   1297   1.1       mrg 	int error;
   1298   1.1       mrg 
   1299   1.6       eeh 	error = copyin((caddr_t)(u_long)SCARG(uap, msg),
   1300   1.6       eeh 		       (caddr_t)&msg32, sizeof(msg32));
   1301   1.6       eeh 	if (error)
   1302   1.6       eeh 		return (error);
   1303  1.10       mrg 	netbsd32_to_msghdr(&msg32, &msg);
   1304   1.6       eeh 	if ((u_int)msg.msg_iovlen > UIO_SMALLIOV) {
   1305   1.6       eeh 		if ((u_int)msg.msg_iovlen > IOV_MAX)
   1306   1.6       eeh 			return (EMSGSIZE);
   1307   1.6       eeh 		MALLOC(iov, struct iovec *,
   1308   1.6       eeh 		       sizeof(struct iovec) * (u_int)msg.msg_iovlen, M_IOV,
   1309   1.6       eeh 		       M_WAITOK);
   1310   1.6       eeh 	} else if ((u_int)msg.msg_iovlen > 0)
   1311   1.6       eeh 		iov = aiov;
   1312   1.6       eeh 	else
   1313   1.6       eeh 		return (EMSGSIZE);
   1314  1.10       mrg 	error = netbsd32_to_iovecin((struct netbsd32_iovec *)msg.msg_iov,
   1315   1.6       eeh 				   iov, msg.msg_iovlen);
   1316   1.6       eeh 	if (error)
   1317   1.6       eeh 		goto done;
   1318   1.6       eeh 	msg.msg_iov = iov;
   1319   1.6       eeh #ifdef COMPAT_OLDSOCK
   1320   1.6       eeh 	msg.msg_flags = 0;
   1321   1.6       eeh #endif
   1322   1.6       eeh 	/* Luckily we can use this directly */
   1323   1.6       eeh 	error = sendit(p, SCARG(uap, s), &msg, SCARG(uap, flags), retval);
   1324   1.6       eeh done:
   1325   1.6       eeh 	if (iov != aiov)
   1326   1.6       eeh 		FREE(iov, M_IOV);
   1327   1.1       mrg 	return (error);
   1328   1.1       mrg }
   1329   1.1       mrg 
   1330   1.1       mrg int
   1331  1.19       eeh netbsd32_recvfrom(p, v, retval)
   1332   1.1       mrg 	struct proc *p;
   1333   1.1       mrg 	void *v;
   1334   1.1       mrg 	register_t *retval;
   1335   1.1       mrg {
   1336  1.19       eeh 	struct netbsd32_recvfrom_args /* {
   1337   1.1       mrg 		syscallarg(int) s;
   1338  1.10       mrg 		syscallarg(netbsd32_voidp) buf;
   1339  1.10       mrg 		syscallarg(netbsd32_size_t) len;
   1340   1.1       mrg 		syscallarg(int) flags;
   1341  1.10       mrg 		syscallarg(netbsd32_sockaddrp_t) from;
   1342  1.10       mrg 		syscallarg(netbsd32_intp) fromlenaddr;
   1343   1.1       mrg 	} */ *uap = v;
   1344  1.10       mrg 	struct netbsd32_msghdr msg;
   1345   1.6       eeh 	struct iovec aiov;
   1346   1.1       mrg 	int error;
   1347   1.1       mrg 
   1348   1.6       eeh 	if (SCARG(uap, fromlenaddr)) {
   1349   1.6       eeh 		error = copyin((caddr_t)(u_long)SCARG(uap, fromlenaddr),
   1350   1.6       eeh 			       (caddr_t)&msg.msg_namelen,
   1351   1.6       eeh 			       sizeof(msg.msg_namelen));
   1352   1.6       eeh 		if (error)
   1353   1.6       eeh 			return (error);
   1354   1.6       eeh 	} else
   1355   1.6       eeh 		msg.msg_namelen = 0;
   1356   1.6       eeh 	msg.msg_name = SCARG(uap, from);
   1357   1.6       eeh 	msg.msg_iov = NULL; /* We can't store a real pointer here */
   1358   1.6       eeh 	msg.msg_iovlen = 1;
   1359   1.6       eeh 	aiov.iov_base = (caddr_t)(u_long)SCARG(uap, buf);
   1360   1.6       eeh 	aiov.iov_len = (u_long)SCARG(uap, len);
   1361   1.6       eeh 	msg.msg_control = 0;
   1362   1.6       eeh 	msg.msg_flags = SCARG(uap, flags);
   1363   1.6       eeh 	return (recvit32(p, SCARG(uap, s), &msg, &aiov,
   1364   1.6       eeh 		       (caddr_t)(u_long)SCARG(uap, fromlenaddr), retval));
   1365   1.1       mrg }
   1366   1.1       mrg 
   1367   1.1       mrg int
   1368  1.19       eeh netbsd32_sendto(p, v, retval)
   1369   1.1       mrg 	struct proc *p;
   1370   1.1       mrg 	void *v;
   1371   1.1       mrg 	register_t *retval;
   1372   1.1       mrg {
   1373  1.19       eeh 	struct netbsd32_sendto_args /* {
   1374   1.1       mrg 		syscallarg(int) s;
   1375  1.10       mrg 		syscallarg(const netbsd32_voidp) buf;
   1376  1.10       mrg 		syscallarg(netbsd32_size_t) len;
   1377   1.1       mrg 		syscallarg(int) flags;
   1378  1.10       mrg 		syscallarg(const netbsd32_sockaddrp_t) to;
   1379   1.1       mrg 		syscallarg(int) tolen;
   1380   1.1       mrg 	} */ *uap = v;
   1381   1.6       eeh 	struct msghdr msg;
   1382   1.6       eeh 	struct iovec aiov;
   1383   1.1       mrg 
   1384   1.6       eeh 	msg.msg_name = (caddr_t)(u_long)SCARG(uap, to);		/* XXX kills const */
   1385   1.6       eeh 	msg.msg_namelen = SCARG(uap, tolen);
   1386   1.6       eeh 	msg.msg_iov = &aiov;
   1387   1.6       eeh 	msg.msg_iovlen = 1;
   1388   1.6       eeh 	msg.msg_control = 0;
   1389   1.6       eeh #ifdef COMPAT_OLDSOCK
   1390   1.6       eeh 	msg.msg_flags = 0;
   1391   1.6       eeh #endif
   1392   1.6       eeh 	aiov.iov_base = (char *)(u_long)SCARG(uap, buf);	/* XXX kills const */
   1393   1.6       eeh 	aiov.iov_len = SCARG(uap, len);
   1394   1.6       eeh 	return (sendit(p, SCARG(uap, s), &msg, SCARG(uap, flags), retval));
   1395   1.1       mrg }
   1396   1.1       mrg 
   1397   1.1       mrg int
   1398  1.19       eeh netbsd32_accept(p, v, retval)
   1399   1.1       mrg 	struct proc *p;
   1400   1.1       mrg 	void *v;
   1401   1.1       mrg 	register_t *retval;
   1402   1.1       mrg {
   1403  1.19       eeh 	struct netbsd32_accept_args /* {
   1404   1.1       mrg 		syscallarg(int) s;
   1405  1.10       mrg 		syscallarg(netbsd32_sockaddrp_t) name;
   1406  1.10       mrg 		syscallarg(netbsd32_intp) anamelen;
   1407   1.1       mrg 	} */ *uap = v;
   1408   1.1       mrg 	struct sys_accept_args ua;
   1409   1.1       mrg 
   1410  1.11       mrg 	NETBSD32TO64_UAP(s);
   1411  1.11       mrg 	NETBSD32TOP_UAP(name, struct sockaddr);
   1412  1.11       mrg 	NETBSD32TOP_UAP(anamelen, int);
   1413   1.1       mrg 	return (sys_accept(p, &ua, retval));
   1414   1.1       mrg }
   1415   1.1       mrg 
   1416   1.1       mrg int
   1417  1.19       eeh netbsd32_getpeername(p, v, retval)
   1418   1.1       mrg 	struct proc *p;
   1419   1.1       mrg 	void *v;
   1420   1.1       mrg 	register_t *retval;
   1421   1.1       mrg {
   1422  1.19       eeh 	struct netbsd32_getpeername_args /* {
   1423   1.1       mrg 		syscallarg(int) fdes;
   1424  1.10       mrg 		syscallarg(netbsd32_sockaddrp_t) asa;
   1425  1.10       mrg 		syscallarg(netbsd32_intp) alen;
   1426   1.1       mrg 	} */ *uap = v;
   1427   1.1       mrg 	struct sys_getpeername_args ua;
   1428   1.1       mrg 
   1429  1.11       mrg 	NETBSD32TO64_UAP(fdes);
   1430  1.11       mrg 	NETBSD32TOP_UAP(asa, struct sockaddr);
   1431  1.11       mrg 	NETBSD32TOP_UAP(alen, int);
   1432   1.6       eeh /* NB: do the protocol specific sockaddrs need to be converted? */
   1433   1.1       mrg 	return (sys_getpeername(p, &ua, retval));
   1434   1.1       mrg }
   1435   1.1       mrg 
   1436   1.1       mrg int
   1437  1.19       eeh netbsd32_getsockname(p, v, retval)
   1438   1.1       mrg 	struct proc *p;
   1439   1.1       mrg 	void *v;
   1440   1.1       mrg 	register_t *retval;
   1441   1.1       mrg {
   1442  1.19       eeh 	struct netbsd32_getsockname_args /* {
   1443   1.1       mrg 		syscallarg(int) fdes;
   1444  1.10       mrg 		syscallarg(netbsd32_sockaddrp_t) asa;
   1445  1.10       mrg 		syscallarg(netbsd32_intp) alen;
   1446   1.1       mrg 	} */ *uap = v;
   1447   1.1       mrg 	struct sys_getsockname_args ua;
   1448   1.1       mrg 
   1449  1.11       mrg 	NETBSD32TO64_UAP(fdes);
   1450  1.11       mrg 	NETBSD32TOP_UAP(asa, struct sockaddr);
   1451  1.11       mrg 	NETBSD32TOP_UAP(alen, int);
   1452   1.1       mrg 	return (sys_getsockname(p, &ua, retval));
   1453   1.1       mrg }
   1454   1.1       mrg 
   1455   1.1       mrg int
   1456  1.19       eeh netbsd32_access(p, v, retval)
   1457   1.1       mrg 	struct proc *p;
   1458   1.1       mrg 	void *v;
   1459   1.1       mrg 	register_t *retval;
   1460   1.1       mrg {
   1461  1.19       eeh 	struct netbsd32_access_args /* {
   1462  1.10       mrg 		syscallarg(const netbsd32_charp) path;
   1463   1.1       mrg 		syscallarg(int) flags;
   1464   1.1       mrg 	} */ *uap = v;
   1465   1.1       mrg 	struct sys_access_args ua;
   1466   1.1       mrg 	caddr_t sg;
   1467   1.1       mrg 
   1468  1.11       mrg 	NETBSD32TOP_UAP(path, const char);
   1469  1.11       mrg 	NETBSD32TO64_UAP(flags);
   1470   1.1       mrg 	sg = stackgap_init(p->p_emul);
   1471  1.11       mrg 	NETBSD32_CHECK_ALT_EXIST(p, &sg, SCARG(&ua, path));
   1472   1.1       mrg 
   1473   1.1       mrg 	return (sys_access(p, &ua, retval));
   1474   1.1       mrg }
   1475   1.1       mrg 
   1476   1.1       mrg int
   1477  1.19       eeh netbsd32_chflags(p, v, retval)
   1478   1.1       mrg 	struct proc *p;
   1479   1.1       mrg 	void *v;
   1480   1.1       mrg 	register_t *retval;
   1481   1.1       mrg {
   1482  1.19       eeh 	struct netbsd32_chflags_args /* {
   1483  1.10       mrg 		syscallarg(const netbsd32_charp) path;
   1484  1.10       mrg 		syscallarg(netbsd32_u_long) flags;
   1485   1.1       mrg 	} */ *uap = v;
   1486   1.1       mrg 	struct sys_chflags_args ua;
   1487   1.1       mrg 
   1488  1.11       mrg 	NETBSD32TOP_UAP(path, const char);
   1489  1.11       mrg 	NETBSD32TO64_UAP(flags);
   1490   1.1       mrg 
   1491   1.1       mrg 	return (sys_chflags(p, &ua, retval));
   1492   1.1       mrg }
   1493   1.1       mrg 
   1494   1.1       mrg int
   1495  1.19       eeh netbsd32_fchflags(p, v, retval)
   1496   1.1       mrg 	struct proc *p;
   1497   1.1       mrg 	void *v;
   1498   1.1       mrg 	register_t *retval;
   1499   1.1       mrg {
   1500  1.19       eeh 	struct netbsd32_fchflags_args /* {
   1501   1.1       mrg 		syscallarg(int) fd;
   1502  1.10       mrg 		syscallarg(netbsd32_u_long) flags;
   1503   1.1       mrg 	} */ *uap = v;
   1504   1.1       mrg 	struct sys_fchflags_args ua;
   1505   1.1       mrg 
   1506  1.11       mrg 	NETBSD32TO64_UAP(fd);
   1507  1.11       mrg 	NETBSD32TO64_UAP(flags);
   1508   1.1       mrg 
   1509   1.1       mrg 	return (sys_fchflags(p, &ua, retval));
   1510   1.1       mrg }
   1511   1.1       mrg 
   1512   1.1       mrg int
   1513  1.19       eeh netbsd32_kill(p, v, retval)
   1514   1.6       eeh 	struct proc *p;
   1515   1.6       eeh 	void *v;
   1516   1.6       eeh 	register_t *retval;
   1517   1.6       eeh {
   1518  1.19       eeh 	struct netbsd32_kill_args /* {
   1519   1.6       eeh 		syscallarg(int) pid;
   1520   1.6       eeh 		syscallarg(int) signum;
   1521   1.6       eeh 	} */ *uap = v;
   1522   1.6       eeh 	struct sys_kill_args ua;
   1523   1.6       eeh 
   1524  1.11       mrg 	NETBSD32TO64_UAP(pid);
   1525  1.11       mrg 	NETBSD32TO64_UAP(signum);
   1526   1.6       eeh 
   1527   1.6       eeh 	return (sys_kill(p, &ua, retval));
   1528   1.6       eeh }
   1529   1.6       eeh 
   1530   1.6       eeh int
   1531  1.19       eeh netbsd32_dup(p, v, retval)
   1532   1.6       eeh 	struct proc *p;
   1533   1.6       eeh 	void *v;
   1534   1.6       eeh 	register_t *retval;
   1535   1.6       eeh {
   1536  1.19       eeh 	struct netbsd32_dup_args /* {
   1537   1.6       eeh 		syscallarg(int) fd;
   1538   1.6       eeh 	} */ *uap = v;
   1539   1.6       eeh 	struct sys_dup_args ua;
   1540   1.6       eeh 
   1541  1.11       mrg 	NETBSD32TO64_UAP(fd);
   1542   1.6       eeh 
   1543   1.6       eeh 	return (sys_dup(p, &ua, retval));
   1544   1.6       eeh }
   1545   1.6       eeh 
   1546   1.6       eeh int
   1547  1.19       eeh netbsd32_profil(p, v, retval)
   1548   1.1       mrg 	struct proc *p;
   1549   1.1       mrg 	void *v;
   1550   1.1       mrg 	register_t *retval;
   1551   1.1       mrg {
   1552  1.19       eeh 	struct netbsd32_profil_args /* {
   1553  1.10       mrg 		syscallarg(netbsd32_caddr_t) samples;
   1554  1.10       mrg 		syscallarg(netbsd32_size_t) size;
   1555  1.10       mrg 		syscallarg(netbsd32_u_long) offset;
   1556   1.1       mrg 		syscallarg(u_int) scale;
   1557   1.1       mrg 	} */ *uap = v;
   1558   1.1       mrg 	struct sys_profil_args ua;
   1559   1.1       mrg 
   1560  1.11       mrg 	NETBSD32TOX64_UAP(samples, caddr_t);
   1561  1.11       mrg 	NETBSD32TOX_UAP(size, size_t);
   1562  1.11       mrg 	NETBSD32TOX_UAP(offset, u_long);
   1563  1.11       mrg 	NETBSD32TO64_UAP(scale);
   1564   1.1       mrg 	return (sys_profil(p, &ua, retval));
   1565   1.1       mrg }
   1566   1.1       mrg 
   1567   1.1       mrg int
   1568  1.19       eeh netbsd32_ktrace(p, v, retval)
   1569   1.1       mrg 	struct proc *p;
   1570   1.1       mrg 	void *v;
   1571   1.1       mrg 	register_t *retval;
   1572   1.1       mrg {
   1573  1.19       eeh 	struct netbsd32_ktrace_args /* {
   1574  1.10       mrg 		syscallarg(const netbsd32_charp) fname;
   1575   1.1       mrg 		syscallarg(int) ops;
   1576   1.1       mrg 		syscallarg(int) facs;
   1577   1.1       mrg 		syscallarg(int) pid;
   1578   1.1       mrg 	} */ *uap = v;
   1579   1.1       mrg 	struct sys_ktrace_args ua;
   1580   1.1       mrg 
   1581  1.11       mrg 	NETBSD32TOP_UAP(fname, const char);
   1582  1.11       mrg 	NETBSD32TO64_UAP(ops);
   1583  1.11       mrg 	NETBSD32TO64_UAP(facs);
   1584  1.11       mrg 	NETBSD32TO64_UAP(pid);
   1585   1.1       mrg 	return (sys_ktrace(p, &ua, retval));
   1586   1.1       mrg }
   1587   1.1       mrg 
   1588   1.1       mrg int
   1589  1.19       eeh netbsd32_sigaction(p, v, retval)
   1590   1.1       mrg 	struct proc *p;
   1591   1.1       mrg 	void *v;
   1592   1.1       mrg 	register_t *retval;
   1593   1.1       mrg {
   1594  1.19       eeh 	struct netbsd32_sigaction_args /* {
   1595   1.1       mrg 		syscallarg(int) signum;
   1596  1.10       mrg 		syscallarg(const netbsd32_sigactionp_t) nsa;
   1597  1.10       mrg 		syscallarg(netbsd32_sigactionp_t) osa;
   1598   1.1       mrg 	} */ *uap = v;
   1599   1.1       mrg 	struct sigaction nsa, osa;
   1600  1.10       mrg 	struct netbsd32_sigaction *sa32p, sa32;
   1601   1.1       mrg 	int error;
   1602   1.1       mrg 
   1603   1.1       mrg 	if (SCARG(uap, nsa)) {
   1604  1.10       mrg 		sa32p = (struct netbsd32_sigaction *)(u_long)SCARG(uap, nsa);
   1605   1.5       eeh 		if (copyin(sa32p, &sa32, sizeof(sa32)))
   1606   1.5       eeh 			return EFAULT;
   1607   1.5       eeh 		nsa.sa_handler = (void *)(u_long)sa32.sa_handler;
   1608   1.5       eeh 		nsa.sa_mask = sa32.sa_mask;
   1609   1.5       eeh 		nsa.sa_flags = sa32.sa_flags;
   1610   1.6       eeh 	}
   1611   1.6       eeh 	error = sigaction1(p, SCARG(uap, signum),
   1612   1.6       eeh 			   SCARG(uap, nsa) ? &nsa : 0,
   1613   1.6       eeh 			   SCARG(uap, osa) ? &osa : 0);
   1614   1.6       eeh 
   1615   1.1       mrg 	if (error)
   1616   1.1       mrg 		return (error);
   1617   1.1       mrg 
   1618   1.1       mrg 	if (SCARG(uap, osa)) {
   1619  1.10       mrg 		sa32.sa_handler = (netbsd32_sigactionp_t)(u_long)osa.sa_handler;
   1620   1.5       eeh 		sa32.sa_mask = osa.sa_mask;
   1621   1.5       eeh 		sa32.sa_flags = osa.sa_flags;
   1622  1.10       mrg 		sa32p = (struct netbsd32_sigaction *)(u_long)SCARG(uap, osa);
   1623   1.5       eeh 		if (copyout(&sa32, sa32p, sizeof(sa32)))
   1624   1.5       eeh 			return EFAULT;
   1625   1.1       mrg 	}
   1626   1.1       mrg 
   1627   1.1       mrg 	return (0);
   1628   1.1       mrg }
   1629   1.1       mrg 
   1630   1.1       mrg int
   1631  1.19       eeh netbsd32___getlogin(p, v, retval)
   1632   1.1       mrg 	struct proc *p;
   1633   1.1       mrg 	void *v;
   1634   1.1       mrg 	register_t *retval;
   1635   1.1       mrg {
   1636  1.19       eeh 	struct netbsd32___getlogin_args /* {
   1637  1.10       mrg 		syscallarg(netbsd32_charp) namebuf;
   1638   1.1       mrg 		syscallarg(u_int) namelen;
   1639   1.1       mrg 	} */ *uap = v;
   1640   1.1       mrg 	struct sys___getlogin_args ua;
   1641   1.1       mrg 
   1642  1.11       mrg 	NETBSD32TOP_UAP(namebuf, char);
   1643  1.11       mrg 	NETBSD32TO64_UAP(namelen);
   1644   1.1       mrg 	return (sys___getlogin(p, &ua, retval));
   1645   1.1       mrg }
   1646   1.1       mrg 
   1647   1.1       mrg int
   1648  1.19       eeh netbsd32_setlogin(p, v, retval)
   1649   1.1       mrg 	struct proc *p;
   1650   1.1       mrg 	void *v;
   1651   1.1       mrg 	register_t *retval;
   1652   1.1       mrg {
   1653  1.19       eeh 	struct netbsd32_setlogin_args /* {
   1654  1.10       mrg 		syscallarg(const netbsd32_charp) namebuf;
   1655   1.1       mrg 	} */ *uap = v;
   1656   1.1       mrg 	struct sys_setlogin_args ua;
   1657   1.1       mrg 
   1658  1.11       mrg 	NETBSD32TOP_UAP(namebuf, char);
   1659   1.1       mrg 	return (sys_setlogin(p, &ua, retval));
   1660   1.1       mrg }
   1661   1.1       mrg 
   1662   1.1       mrg int
   1663  1.19       eeh netbsd32_acct(p, v, retval)
   1664   1.1       mrg 	struct proc *p;
   1665   1.1       mrg 	void *v;
   1666   1.1       mrg 	register_t *retval;
   1667   1.1       mrg {
   1668  1.19       eeh 	struct netbsd32_acct_args /* {
   1669  1.10       mrg 		syscallarg(const netbsd32_charp) path;
   1670   1.1       mrg 	} */ *uap = v;
   1671   1.1       mrg 	struct sys_acct_args ua;
   1672   1.1       mrg 
   1673  1.11       mrg 	NETBSD32TOP_UAP(path, const char);
   1674   1.1       mrg 	return (sys_acct(p, &ua, retval));
   1675   1.1       mrg }
   1676   1.1       mrg 
   1677   1.1       mrg int
   1678  1.19       eeh netbsd32_revoke(p, v, retval)
   1679   1.1       mrg 	struct proc *p;
   1680   1.1       mrg 	void *v;
   1681   1.1       mrg 	register_t *retval;
   1682   1.1       mrg {
   1683  1.19       eeh 	struct netbsd32_revoke_args /* {
   1684  1.10       mrg 		syscallarg(const netbsd32_charp) path;
   1685   1.1       mrg 	} */ *uap = v;
   1686   1.1       mrg 	struct sys_revoke_args ua;
   1687   1.1       mrg 	caddr_t sg;
   1688   1.1       mrg 
   1689  1.11       mrg 	NETBSD32TOP_UAP(path, const char);
   1690   1.1       mrg 	sg = stackgap_init(p->p_emul);
   1691  1.11       mrg 	NETBSD32_CHECK_ALT_EXIST(p, &sg, SCARG(&ua, path));
   1692   1.1       mrg 
   1693   1.1       mrg 	return (sys_revoke(p, &ua, retval));
   1694   1.1       mrg }
   1695   1.1       mrg 
   1696   1.1       mrg int
   1697  1.19       eeh netbsd32_symlink(p, v, retval)
   1698   1.1       mrg 	struct proc *p;
   1699   1.1       mrg 	void *v;
   1700   1.1       mrg 	register_t *retval;
   1701   1.1       mrg {
   1702  1.19       eeh 	struct netbsd32_symlink_args /* {
   1703  1.10       mrg 		syscallarg(const netbsd32_charp) path;
   1704  1.10       mrg 		syscallarg(const netbsd32_charp) link;
   1705   1.1       mrg 	} */ *uap = v;
   1706   1.1       mrg 	struct sys_symlink_args ua;
   1707   1.1       mrg 
   1708  1.11       mrg 	NETBSD32TOP_UAP(path, const char);
   1709  1.11       mrg 	NETBSD32TOP_UAP(link, const char);
   1710   1.1       mrg 
   1711   1.1       mrg 	return (sys_symlink(p, &ua, retval));
   1712   1.1       mrg }
   1713   1.1       mrg 
   1714   1.1       mrg int
   1715  1.19       eeh netbsd32_readlink(p, v, retval)
   1716   1.1       mrg 	struct proc *p;
   1717   1.1       mrg 	void *v;
   1718   1.1       mrg 	register_t *retval;
   1719   1.1       mrg {
   1720  1.19       eeh 	struct netbsd32_readlink_args /* {
   1721  1.10       mrg 		syscallarg(const netbsd32_charp) path;
   1722  1.10       mrg 		syscallarg(netbsd32_charp) buf;
   1723  1.10       mrg 		syscallarg(netbsd32_size_t) count;
   1724   1.1       mrg 	} */ *uap = v;
   1725   1.1       mrg 	struct sys_readlink_args ua;
   1726   1.1       mrg 	caddr_t sg;
   1727   1.1       mrg 
   1728  1.11       mrg 	NETBSD32TOP_UAP(path, const char);
   1729  1.11       mrg 	NETBSD32TOP_UAP(buf, char);
   1730  1.11       mrg 	NETBSD32TOX_UAP(count, size_t);
   1731   1.1       mrg 	sg = stackgap_init(p->p_emul);
   1732  1.11       mrg 	NETBSD32_CHECK_ALT_EXIST(p, &sg, SCARG(&ua, path));
   1733   1.1       mrg 
   1734   1.1       mrg 	return (sys_readlink(p, &ua, retval));
   1735   1.1       mrg }
   1736   1.1       mrg 
   1737  1.20       eeh /*
   1738  1.20       eeh  * Need to completly reimplement this syscall due to argument copying.
   1739  1.20       eeh  */
   1740   1.1       mrg int
   1741  1.19       eeh netbsd32_execve(p, v, retval)
   1742   1.1       mrg 	struct proc *p;
   1743   1.1       mrg 	void *v;
   1744   1.1       mrg 	register_t *retval;
   1745   1.1       mrg {
   1746  1.19       eeh 	struct netbsd32_execve_args /* {
   1747  1.10       mrg 		syscallarg(const netbsd32_charp) path;
   1748  1.10       mrg 		syscallarg(netbsd32_charpp) argp;
   1749  1.10       mrg 		syscallarg(netbsd32_charpp) envp;
   1750   1.1       mrg 	} */ *uap = v;
   1751   1.1       mrg 	struct sys_execve_args ua;
   1752   1.1       mrg 	caddr_t sg;
   1753  1.20       eeh 	/* Function args */
   1754  1.20       eeh 	int error, i;
   1755  1.20       eeh 	struct exec_package pack;
   1756  1.20       eeh 	struct nameidata nid;
   1757  1.20       eeh 	struct vattr attr;
   1758  1.20       eeh 	struct ucred *cred = p->p_ucred;
   1759  1.20       eeh 	char *argp;
   1760  1.20       eeh 	netbsd32_charp const *cpp;
   1761  1.20       eeh 	char *dp;
   1762  1.20       eeh 	netbsd32_charp sp;
   1763  1.20       eeh 	long argc, envc;
   1764  1.20       eeh 	size_t len;
   1765  1.20       eeh 	char *stack;
   1766  1.20       eeh 	struct ps_strings arginfo;
   1767  1.20       eeh 	struct vmspace *vm;
   1768  1.20       eeh 	char **tmpfap;
   1769  1.20       eeh 	int szsigcode;
   1770  1.20       eeh 	extern struct emul emul_netbsd;
   1771  1.20       eeh 
   1772   1.1       mrg 
   1773  1.11       mrg 	NETBSD32TOP_UAP(path, const char);
   1774  1.11       mrg 	NETBSD32TOP_UAP(argp, char *);
   1775  1.11       mrg 	NETBSD32TOP_UAP(envp, char *);
   1776   1.1       mrg 	sg = stackgap_init(p->p_emul);
   1777  1.11       mrg 	NETBSD32_CHECK_ALT_EXIST(p, &sg, SCARG(&ua, path));
   1778   1.1       mrg 
   1779  1.20       eeh 	/*
   1780  1.20       eeh 	 * figure out the maximum size of an exec header, if necessary.
   1781  1.20       eeh 	 * XXX should be able to keep LKM code from modifying exec switch
   1782  1.20       eeh 	 * when we're still using it, but...
   1783  1.20       eeh 	 */
   1784  1.20       eeh 	if (exec_maxhdrsz == 0) {
   1785  1.20       eeh 		for (i = 0; i < nexecs; i++)
   1786  1.20       eeh 			if (execsw[i].es_check != NULL
   1787  1.20       eeh 			    && execsw[i].es_hdrsz > exec_maxhdrsz)
   1788  1.20       eeh 				exec_maxhdrsz = execsw[i].es_hdrsz;
   1789  1.20       eeh 	}
   1790  1.20       eeh 
   1791  1.20       eeh 	/* init the namei data to point the file user's program name */
   1792  1.20       eeh 	/* XXX cgd 960926: why do this here?  most will be clobbered. */
   1793  1.20       eeh 	NDINIT(&nid, LOOKUP, NOFOLLOW, UIO_USERSPACE, SCARG(&ua, path), p);
   1794  1.20       eeh 
   1795  1.20       eeh 	/*
   1796  1.20       eeh 	 * initialize the fields of the exec package.
   1797  1.20       eeh 	 */
   1798  1.20       eeh 	pack.ep_name = SCARG(&ua, path);
   1799  1.20       eeh 	MALLOC(pack.ep_hdr, void *, exec_maxhdrsz, M_EXEC, M_WAITOK);
   1800  1.20       eeh 	pack.ep_hdrlen = exec_maxhdrsz;
   1801  1.20       eeh 	pack.ep_hdrvalid = 0;
   1802  1.20       eeh 	pack.ep_ndp = &nid;
   1803  1.20       eeh 	pack.ep_emul_arg = NULL;
   1804  1.20       eeh 	pack.ep_vmcmds.evs_cnt = 0;
   1805  1.20       eeh 	pack.ep_vmcmds.evs_used = 0;
   1806  1.20       eeh 	pack.ep_vap = &attr;
   1807  1.20       eeh 	pack.ep_emul = &emul_netbsd;
   1808  1.20       eeh 	pack.ep_flags = 0;
   1809  1.20       eeh 
   1810  1.20       eeh 	/* see if we can run it. */
   1811  1.20       eeh 	if ((error = check_exec(p, &pack)) != 0)
   1812  1.20       eeh 		goto freehdr;
   1813  1.20       eeh 
   1814  1.20       eeh 	/* XXX -- THE FOLLOWING SECTION NEEDS MAJOR CLEANUP */
   1815  1.20       eeh 
   1816  1.20       eeh 	/* allocate an argument buffer */
   1817  1.20       eeh 	argp = (char *) uvm_km_valloc_wait(exec_map, NCARGS);
   1818  1.20       eeh #ifdef DIAGNOSTIC
   1819  1.20       eeh 	if (argp == (vaddr_t) 0)
   1820  1.20       eeh 		panic("execve: argp == NULL");
   1821  1.20       eeh #endif
   1822  1.20       eeh 	dp = argp;
   1823  1.20       eeh 	argc = 0;
   1824  1.20       eeh 
   1825  1.20       eeh 	/* copy the fake args list, if there's one, freeing it as we go */
   1826  1.20       eeh 	if (pack.ep_flags & EXEC_HASARGL) {
   1827  1.20       eeh 		tmpfap = pack.ep_fa;
   1828  1.20       eeh 		while (*tmpfap != NULL) {
   1829  1.20       eeh 			char *cp;
   1830  1.20       eeh 
   1831  1.20       eeh 			cp = *tmpfap;
   1832  1.20       eeh 			while (*cp)
   1833  1.20       eeh 				*dp++ = *cp++;
   1834  1.20       eeh 			dp++;
   1835  1.20       eeh 
   1836  1.20       eeh 			FREE(*tmpfap, M_EXEC);
   1837  1.20       eeh 			tmpfap++; argc++;
   1838  1.20       eeh 		}
   1839  1.20       eeh 		FREE(pack.ep_fa, M_EXEC);
   1840  1.20       eeh 		pack.ep_flags &= ~EXEC_HASARGL;
   1841  1.20       eeh 	}
   1842  1.20       eeh 
   1843  1.20       eeh 	/* Now get argv & environment */
   1844  1.20       eeh 	if (!(cpp = (netbsd32_charp *)SCARG(&ua, argp))) {
   1845  1.20       eeh 		error = EINVAL;
   1846  1.20       eeh 		goto bad;
   1847  1.20       eeh 	}
   1848  1.20       eeh 
   1849  1.20       eeh 	if (pack.ep_flags & EXEC_SKIPARG)
   1850  1.20       eeh 		cpp++;
   1851  1.20       eeh 
   1852  1.20       eeh 	while (1) {
   1853  1.20       eeh 		len = argp + ARG_MAX - dp;
   1854  1.20       eeh 		if ((error = copyin(cpp, &sp, sizeof(sp))) != 0)
   1855  1.20       eeh 			goto bad;
   1856  1.20       eeh 		if (!sp)
   1857  1.20       eeh 			break;
   1858  1.20       eeh 		if ((error = copyinstr((char *)(u_long)sp, dp,
   1859  1.20       eeh 				       len, &len)) != 0) {
   1860  1.20       eeh 			if (error == ENAMETOOLONG)
   1861  1.20       eeh 				error = E2BIG;
   1862  1.20       eeh 			goto bad;
   1863  1.20       eeh 		}
   1864  1.20       eeh 		dp += len;
   1865  1.20       eeh 		cpp++;
   1866  1.20       eeh 		argc++;
   1867  1.20       eeh 	}
   1868  1.20       eeh 
   1869  1.20       eeh 	envc = 0;
   1870  1.20       eeh 	/* environment need not be there */
   1871  1.20       eeh 	if ((cpp = (netbsd32_charp *)SCARG(&ua, envp)) != NULL ) {
   1872  1.20       eeh 		while (1) {
   1873  1.20       eeh 			len = argp + ARG_MAX - dp;
   1874  1.20       eeh 			if ((error = copyin(cpp, &sp, sizeof(sp))) != 0)
   1875  1.20       eeh 				goto bad;
   1876  1.20       eeh 			if (!sp)
   1877  1.20       eeh 				break;
   1878  1.20       eeh 			if ((error = copyinstr((char *)(u_long)sp,
   1879  1.20       eeh 					       dp, len, &len)) != 0) {
   1880  1.20       eeh 				if (error == ENAMETOOLONG)
   1881  1.20       eeh 					error = E2BIG;
   1882  1.20       eeh 				goto bad;
   1883  1.20       eeh 			}
   1884  1.20       eeh 			dp += len;
   1885  1.20       eeh 			cpp++;
   1886  1.20       eeh 			envc++;
   1887  1.20       eeh 		}
   1888  1.20       eeh 	}
   1889  1.20       eeh 
   1890  1.20       eeh 	dp = (char *) ALIGN(dp);
   1891  1.20       eeh 
   1892  1.20       eeh 	szsigcode = pack.ep_emul->e_esigcode - pack.ep_emul->e_sigcode;
   1893  1.20       eeh 
   1894  1.20       eeh 	/* Now check if args & environ fit into new stack */
   1895  1.20       eeh 	if (pack.ep_flags & EXEC_32)
   1896  1.23       eeh 		len = ((argc + envc + 2 + pack.ep_emul->e_arglen) * sizeof(int) +
   1897  1.20       eeh 		       sizeof(int) + dp + STACKGAPLEN + szsigcode +
   1898  1.20       eeh 		       sizeof(struct ps_strings)) - argp;
   1899  1.20       eeh 	else
   1900  1.23       eeh 		len = ((argc + envc + 2 + pack.ep_emul->e_arglen) * sizeof(char *) +
   1901  1.20       eeh 		       sizeof(int) + dp + STACKGAPLEN + szsigcode +
   1902  1.20       eeh 		       sizeof(struct ps_strings)) - argp;
   1903  1.20       eeh 
   1904  1.20       eeh 	len = ALIGN(len);	/* make the stack "safely" aligned */
   1905  1.20       eeh 
   1906  1.20       eeh 	if (len > pack.ep_ssize) { /* in effect, compare to initial limit */
   1907  1.20       eeh 		error = ENOMEM;
   1908  1.20       eeh 		goto bad;
   1909  1.20       eeh 	}
   1910  1.20       eeh 
   1911  1.20       eeh 	/* adjust "active stack depth" for process VSZ */
   1912  1.20       eeh 	pack.ep_ssize = len;	/* maybe should go elsewhere, but... */
   1913  1.20       eeh 
   1914  1.20       eeh 	/*
   1915  1.20       eeh 	 * Do whatever is necessary to prepare the address space
   1916  1.20       eeh 	 * for remapping.  Note that this might replace the current
   1917  1.20       eeh 	 * vmspace with another!
   1918  1.20       eeh 	 */
   1919  1.20       eeh 	uvmspace_exec(p);
   1920  1.20       eeh 
   1921  1.20       eeh 	/* Now map address space */
   1922  1.20       eeh 	vm = p->p_vmspace;
   1923  1.20       eeh 	vm->vm_taddr = (char *) pack.ep_taddr;
   1924  1.20       eeh 	vm->vm_tsize = btoc(pack.ep_tsize);
   1925  1.20       eeh 	vm->vm_daddr = (char *) pack.ep_daddr;
   1926  1.20       eeh 	vm->vm_dsize = btoc(pack.ep_dsize);
   1927  1.20       eeh 	vm->vm_ssize = btoc(pack.ep_ssize);
   1928  1.20       eeh 	vm->vm_maxsaddr = (char *) pack.ep_maxsaddr;
   1929  1.20       eeh 
   1930  1.20       eeh 	/* create the new process's VM space by running the vmcmds */
   1931  1.20       eeh #ifdef DIAGNOSTIC
   1932  1.20       eeh 	if (pack.ep_vmcmds.evs_used == 0)
   1933  1.20       eeh 		panic("execve: no vmcmds");
   1934  1.20       eeh #endif
   1935  1.20       eeh 	for (i = 0; i < pack.ep_vmcmds.evs_used && !error; i++) {
   1936  1.20       eeh 		struct exec_vmcmd *vcp;
   1937  1.20       eeh 
   1938  1.20       eeh 		vcp = &pack.ep_vmcmds.evs_cmds[i];
   1939  1.20       eeh 		error = (*vcp->ev_proc)(p, vcp);
   1940  1.20       eeh 	}
   1941  1.20       eeh 
   1942  1.20       eeh 	/* free the vmspace-creation commands, and release their references */
   1943  1.20       eeh 	kill_vmcmds(&pack.ep_vmcmds);
   1944  1.20       eeh 
   1945  1.20       eeh 	/* if an error happened, deallocate and punt */
   1946  1.20       eeh 	if (error)
   1947  1.20       eeh 		goto exec_abort;
   1948  1.20       eeh 
   1949  1.20       eeh 	/* remember information about the process */
   1950  1.20       eeh 	arginfo.ps_nargvstr = argc;
   1951  1.20       eeh 	arginfo.ps_nenvstr = envc;
   1952  1.20       eeh 
   1953  1.20       eeh 	stack = (char *) (USRSTACK - len);
   1954  1.20       eeh 	/* Now copy argc, args & environ to new stack */
   1955  1.20       eeh 	if (!(*pack.ep_emul->e_copyargs)(&pack, &arginfo, stack, argp))
   1956  1.20       eeh 		goto exec_abort;
   1957  1.20       eeh 
   1958  1.20       eeh 	/* copy out the process's ps_strings structure */
   1959  1.20       eeh 	if (copyout(&arginfo, (char *) PS_STRINGS, sizeof(arginfo)))
   1960  1.20       eeh 		goto exec_abort;
   1961  1.20       eeh 
   1962  1.20       eeh 	/* copy out the process's signal trapoline code */
   1963  1.20       eeh 	if (szsigcode) {
   1964  1.20       eeh 		if (copyout((char *)pack.ep_emul->e_sigcode,
   1965  1.20       eeh 		    p->p_sigacts->ps_sigcode = (char *)PS_STRINGS - szsigcode,
   1966  1.20       eeh 		    szsigcode))
   1967  1.20       eeh 			goto exec_abort;
   1968  1.20       eeh #ifdef PMAP_NEED_PROCWR
   1969  1.20       eeh 		/* This is code. Let the pmap do what is needed. */
   1970  1.20       eeh 		pmap_procwr(p, (vaddr_t)p->p_sigacts->ps_sigcode, szsigcode);
   1971  1.20       eeh #endif
   1972  1.20       eeh 	}
   1973  1.20       eeh 
   1974  1.20       eeh 	stopprofclock(p);	/* stop profiling */
   1975  1.20       eeh 	fdcloseexec(p);		/* handle close on exec */
   1976  1.20       eeh 	execsigs(p);		/* reset catched signals */
   1977  1.20       eeh 	p->p_ctxlink = NULL;	/* reset ucontext link */
   1978  1.20       eeh 
   1979  1.20       eeh 	/* set command name & other accounting info */
   1980  1.20       eeh 	len = min(nid.ni_cnd.cn_namelen, MAXCOMLEN);
   1981  1.20       eeh 	memcpy(p->p_comm, nid.ni_cnd.cn_nameptr, len);
   1982  1.20       eeh 	p->p_comm[len] = 0;
   1983  1.20       eeh 	p->p_acflag &= ~AFORK;
   1984  1.20       eeh 
   1985  1.20       eeh 	/* record proc's vnode, for use by procfs and others */
   1986  1.20       eeh         if (p->p_textvp)
   1987  1.20       eeh                 vrele(p->p_textvp);
   1988  1.20       eeh 	VREF(pack.ep_vp);
   1989  1.20       eeh 	p->p_textvp = pack.ep_vp;
   1990  1.20       eeh 
   1991  1.20       eeh 	p->p_flag |= P_EXEC;
   1992  1.20       eeh 	if (p->p_flag & P_PPWAIT) {
   1993  1.20       eeh 		p->p_flag &= ~P_PPWAIT;
   1994  1.20       eeh 		wakeup((caddr_t) p->p_pptr);
   1995  1.20       eeh 	}
   1996  1.20       eeh 
   1997  1.20       eeh 	/*
   1998  1.20       eeh 	 * deal with set[ug]id.
   1999  1.20       eeh 	 * MNT_NOSUID and P_TRACED have already been used to disable s[ug]id.
   2000  1.20       eeh 	 */
   2001  1.20       eeh 	if (((attr.va_mode & S_ISUID) != 0 && p->p_ucred->cr_uid != attr.va_uid)
   2002  1.20       eeh 	 || ((attr.va_mode & S_ISGID) != 0 && p->p_ucred->cr_gid != attr.va_gid)){
   2003  1.20       eeh 		p->p_ucred = crcopy(cred);
   2004  1.20       eeh #ifdef KTRACE
   2005  1.20       eeh 		/*
   2006  1.20       eeh 		 * If process is being ktraced, turn off - unless
   2007  1.20       eeh 		 * root set it.
   2008  1.20       eeh 		 */
   2009  1.20       eeh 		if (p->p_tracep && !(p->p_traceflag & KTRFAC_ROOT))
   2010  1.20       eeh 			ktrderef(p);
   2011  1.20       eeh #endif
   2012  1.20       eeh 		if (attr.va_mode & S_ISUID)
   2013  1.20       eeh 			p->p_ucred->cr_uid = attr.va_uid;
   2014  1.20       eeh 		if (attr.va_mode & S_ISGID)
   2015  1.20       eeh 			p->p_ucred->cr_gid = attr.va_gid;
   2016  1.20       eeh 		p_sugid(p);
   2017  1.20       eeh 	} else
   2018  1.20       eeh 		p->p_flag &= ~P_SUGID;
   2019  1.20       eeh 	p->p_cred->p_svuid = p->p_ucred->cr_uid;
   2020  1.20       eeh 	p->p_cred->p_svgid = p->p_ucred->cr_gid;
   2021  1.20       eeh 
   2022  1.20       eeh 	uvm_km_free_wakeup(exec_map, (vaddr_t) argp, NCARGS);
   2023  1.20       eeh 
   2024  1.20       eeh 	FREE(nid.ni_cnd.cn_pnbuf, M_NAMEI);
   2025  1.20       eeh 	vn_lock(pack.ep_vp, LK_EXCLUSIVE | LK_RETRY);
   2026  1.20       eeh 	VOP_CLOSE(pack.ep_vp, FREAD, cred, p);
   2027  1.20       eeh 	vput(pack.ep_vp);
   2028  1.20       eeh 
   2029  1.20       eeh 	/* setup new registers and do misc. setup. */
   2030  1.20       eeh 	(*pack.ep_emul->e_setregs)(p, &pack, (u_long) stack);
   2031  1.20       eeh 
   2032  1.20       eeh 	if (p->p_flag & P_TRACED)
   2033  1.20       eeh 		psignal(p, SIGTRAP);
   2034  1.20       eeh 
   2035  1.20       eeh 	p->p_emul = pack.ep_emul;
   2036  1.20       eeh 	FREE(pack.ep_hdr, M_EXEC);
   2037  1.20       eeh 
   2038  1.20       eeh #ifdef KTRACE
   2039  1.20       eeh 	if (KTRPOINT(p, KTR_EMUL))
   2040  1.26  sommerfe 		ktremul(p);
   2041  1.20       eeh #endif
   2042  1.20       eeh 
   2043  1.20       eeh 	return (EJUSTRETURN);
   2044  1.20       eeh 
   2045  1.20       eeh bad:
   2046  1.20       eeh 	/* free the vmspace-creation commands, and release their references */
   2047  1.20       eeh 	kill_vmcmds(&pack.ep_vmcmds);
   2048  1.20       eeh 	/* kill any opened file descriptor, if necessary */
   2049  1.20       eeh 	if (pack.ep_flags & EXEC_HASFD) {
   2050  1.20       eeh 		pack.ep_flags &= ~EXEC_HASFD;
   2051  1.20       eeh 		(void) fdrelease(p, pack.ep_fd);
   2052  1.20       eeh 	}
   2053  1.20       eeh 	/* close and put the exec'd file */
   2054  1.20       eeh 	vn_lock(pack.ep_vp, LK_EXCLUSIVE | LK_RETRY);
   2055  1.20       eeh 	VOP_CLOSE(pack.ep_vp, FREAD, cred, p);
   2056  1.20       eeh 	vput(pack.ep_vp);
   2057  1.20       eeh 	FREE(nid.ni_cnd.cn_pnbuf, M_NAMEI);
   2058  1.20       eeh 	uvm_km_free_wakeup(exec_map, (vaddr_t) argp, NCARGS);
   2059  1.20       eeh 
   2060  1.20       eeh freehdr:
   2061  1.20       eeh 	FREE(pack.ep_hdr, M_EXEC);
   2062  1.20       eeh 	return error;
   2063  1.20       eeh 
   2064  1.20       eeh exec_abort:
   2065  1.20       eeh 	/*
   2066  1.20       eeh 	 * the old process doesn't exist anymore.  exit gracefully.
   2067  1.20       eeh 	 * get rid of the (new) address space we have created, if any, get rid
   2068  1.20       eeh 	 * of our namei data and vnode, and exit noting failure
   2069  1.20       eeh 	 */
   2070  1.20       eeh 	uvm_deallocate(&vm->vm_map, VM_MIN_ADDRESS,
   2071  1.20       eeh 		VM_MAXUSER_ADDRESS - VM_MIN_ADDRESS);
   2072  1.20       eeh 	if (pack.ep_emul_arg)
   2073  1.20       eeh 		FREE(pack.ep_emul_arg, M_TEMP);
   2074  1.20       eeh 	FREE(nid.ni_cnd.cn_pnbuf, M_NAMEI);
   2075  1.20       eeh 	vn_lock(pack.ep_vp, LK_EXCLUSIVE | LK_RETRY);
   2076  1.20       eeh 	VOP_CLOSE(pack.ep_vp, FREAD, cred, p);
   2077  1.20       eeh 	vput(pack.ep_vp);
   2078  1.20       eeh 	uvm_km_free_wakeup(exec_map, (vaddr_t) argp, NCARGS);
   2079  1.20       eeh 	FREE(pack.ep_hdr, M_EXEC);
   2080  1.20       eeh 	exit1(p, W_EXITCODE(0, SIGABRT));
   2081  1.20       eeh 	exit1(p, -1);
   2082  1.20       eeh 
   2083  1.20       eeh 	/* NOTREACHED */
   2084  1.20       eeh 	return 0;
   2085   1.1       mrg }
   2086   1.1       mrg 
   2087   1.1       mrg int
   2088  1.19       eeh netbsd32_umask(p, v, retval)
   2089   1.6       eeh 	struct proc *p;
   2090   1.6       eeh 	void *v;
   2091   1.6       eeh 	register_t *retval;
   2092   1.6       eeh {
   2093  1.19       eeh 	struct netbsd32_umask_args /* {
   2094   1.6       eeh 		syscallarg(mode_t) newmask;
   2095   1.6       eeh 	} */ *uap = v;
   2096   1.6       eeh 	struct sys_umask_args ua;
   2097   1.6       eeh 
   2098  1.11       mrg 	NETBSD32TO64_UAP(newmask);
   2099   1.6       eeh 	return (sys_umask(p, &ua, retval));
   2100   1.6       eeh }
   2101   1.6       eeh 
   2102   1.6       eeh int
   2103  1.19       eeh netbsd32_chroot(p, v, retval)
   2104   1.1       mrg 	struct proc *p;
   2105   1.1       mrg 	void *v;
   2106   1.1       mrg 	register_t *retval;
   2107   1.1       mrg {
   2108  1.19       eeh 	struct netbsd32_chroot_args /* {
   2109  1.10       mrg 		syscallarg(const netbsd32_charp) path;
   2110   1.1       mrg 	} */ *uap = v;
   2111   1.1       mrg 	struct sys_chroot_args ua;
   2112   1.1       mrg 
   2113  1.11       mrg 	NETBSD32TOP_UAP(path, const char);
   2114   1.1       mrg 	return (sys_chroot(p, &ua, retval));
   2115   1.1       mrg }
   2116   1.1       mrg 
   2117   1.1       mrg int
   2118  1.19       eeh netbsd32_sbrk(p, v, retval)
   2119   1.6       eeh 	struct proc *p;
   2120   1.6       eeh 	void *v;
   2121   1.6       eeh 	register_t *retval;
   2122   1.6       eeh {
   2123  1.19       eeh 	struct netbsd32_sbrk_args /* {
   2124   1.6       eeh 		syscallarg(int) incr;
   2125   1.6       eeh 	} */ *uap = v;
   2126   1.6       eeh 	struct sys_sbrk_args ua;
   2127   1.6       eeh 
   2128  1.11       mrg 	NETBSD32TO64_UAP(incr);
   2129   1.6       eeh 	return (sys_sbrk(p, &ua, retval));
   2130   1.6       eeh }
   2131   1.6       eeh 
   2132   1.6       eeh int
   2133  1.19       eeh netbsd32_sstk(p, v, retval)
   2134   1.6       eeh 	struct proc *p;
   2135   1.6       eeh 	void *v;
   2136   1.6       eeh 	register_t *retval;
   2137   1.6       eeh {
   2138  1.19       eeh 	struct netbsd32_sstk_args /* {
   2139   1.6       eeh 		syscallarg(int) incr;
   2140   1.6       eeh 	} */ *uap = v;
   2141   1.6       eeh 	struct sys_sstk_args ua;
   2142   1.6       eeh 
   2143  1.11       mrg 	NETBSD32TO64_UAP(incr);
   2144   1.6       eeh 	return (sys_sstk(p, &ua, retval));
   2145   1.6       eeh }
   2146   1.6       eeh 
   2147   1.6       eeh int
   2148  1.19       eeh netbsd32_munmap(p, v, retval)
   2149   1.1       mrg 	struct proc *p;
   2150   1.1       mrg 	void *v;
   2151   1.1       mrg 	register_t *retval;
   2152   1.1       mrg {
   2153  1.19       eeh 	struct netbsd32_munmap_args /* {
   2154  1.10       mrg 		syscallarg(netbsd32_voidp) addr;
   2155  1.10       mrg 		syscallarg(netbsd32_size_t) len;
   2156   1.1       mrg 	} */ *uap = v;
   2157   1.1       mrg 	struct sys_munmap_args ua;
   2158   1.1       mrg 
   2159  1.11       mrg 	NETBSD32TOP_UAP(addr, void);
   2160  1.11       mrg 	NETBSD32TOX_UAP(len, size_t);
   2161   1.1       mrg 	return (sys_munmap(p, &ua, retval));
   2162   1.1       mrg }
   2163   1.1       mrg 
   2164   1.1       mrg int
   2165  1.19       eeh netbsd32_mprotect(p, v, retval)
   2166   1.1       mrg 	struct proc *p;
   2167   1.1       mrg 	void *v;
   2168   1.1       mrg 	register_t *retval;
   2169   1.1       mrg {
   2170  1.19       eeh 	struct netbsd32_mprotect_args /* {
   2171  1.10       mrg 		syscallarg(netbsd32_voidp) addr;
   2172  1.10       mrg 		syscallarg(netbsd32_size_t) len;
   2173   1.1       mrg 		syscallarg(int) prot;
   2174   1.1       mrg 	} */ *uap = v;
   2175   1.1       mrg 	struct sys_mprotect_args ua;
   2176   1.1       mrg 
   2177  1.11       mrg 	NETBSD32TOP_UAP(addr, void);
   2178  1.11       mrg 	NETBSD32TOX_UAP(len, size_t);
   2179  1.11       mrg 	NETBSD32TO64_UAP(prot);
   2180   1.1       mrg 	return (sys_mprotect(p, &ua, retval));
   2181   1.1       mrg }
   2182   1.1       mrg 
   2183   1.1       mrg int
   2184  1.19       eeh netbsd32_madvise(p, v, retval)
   2185   1.1       mrg 	struct proc *p;
   2186   1.1       mrg 	void *v;
   2187   1.1       mrg 	register_t *retval;
   2188   1.1       mrg {
   2189  1.19       eeh 	struct netbsd32_madvise_args /* {
   2190  1.10       mrg 		syscallarg(netbsd32_voidp) addr;
   2191  1.10       mrg 		syscallarg(netbsd32_size_t) len;
   2192   1.1       mrg 		syscallarg(int) behav;
   2193   1.1       mrg 	} */ *uap = v;
   2194   1.1       mrg 	struct sys_madvise_args ua;
   2195   1.1       mrg 
   2196  1.11       mrg 	NETBSD32TOP_UAP(addr, void);
   2197  1.11       mrg 	NETBSD32TOX_UAP(len, size_t);
   2198  1.11       mrg 	NETBSD32TO64_UAP(behav);
   2199   1.1       mrg 	return (sys_madvise(p, &ua, retval));
   2200   1.1       mrg }
   2201   1.1       mrg 
   2202   1.1       mrg int
   2203  1.19       eeh netbsd32_mincore(p, v, retval)
   2204   1.1       mrg 	struct proc *p;
   2205   1.1       mrg 	void *v;
   2206   1.1       mrg 	register_t *retval;
   2207   1.1       mrg {
   2208  1.19       eeh 	struct netbsd32_mincore_args /* {
   2209  1.10       mrg 		syscallarg(netbsd32_caddr_t) addr;
   2210  1.10       mrg 		syscallarg(netbsd32_size_t) len;
   2211  1.10       mrg 		syscallarg(netbsd32_charp) vec;
   2212   1.1       mrg 	} */ *uap = v;
   2213   1.1       mrg 	struct sys_mincore_args ua;
   2214   1.1       mrg 
   2215  1.11       mrg 	NETBSD32TOX64_UAP(addr, caddr_t);
   2216  1.11       mrg 	NETBSD32TOX_UAP(len, size_t);
   2217  1.11       mrg 	NETBSD32TOP_UAP(vec, char);
   2218   1.1       mrg 	return (sys_mincore(p, &ua, retval));
   2219   1.1       mrg }
   2220   1.1       mrg 
   2221   1.1       mrg int
   2222  1.19       eeh netbsd32_getgroups(p, v, retval)
   2223   1.1       mrg 	struct proc *p;
   2224   1.1       mrg 	void *v;
   2225   1.1       mrg 	register_t *retval;
   2226   1.1       mrg {
   2227  1.19       eeh 	struct netbsd32_getgroups_args /* {
   2228   1.1       mrg 		syscallarg(int) gidsetsize;
   2229  1.10       mrg 		syscallarg(netbsd32_gid_tp) gidset;
   2230   1.1       mrg 	} */ *uap = v;
   2231  1.25  augustss 	struct pcred *pc = p->p_cred;
   2232  1.25  augustss 	int ngrp;
   2233   1.6       eeh 	int error;
   2234   1.1       mrg 
   2235   1.6       eeh 	ngrp = SCARG(uap, gidsetsize);
   2236   1.6       eeh 	if (ngrp == 0) {
   2237   1.6       eeh 		*retval = pc->pc_ucred->cr_ngroups;
   2238   1.6       eeh 		return (0);
   2239   1.6       eeh 	}
   2240   1.6       eeh 	if (ngrp < pc->pc_ucred->cr_ngroups)
   2241   1.6       eeh 		return (EINVAL);
   2242   1.6       eeh 	ngrp = pc->pc_ucred->cr_ngroups;
   2243  1.10       mrg 	/* Should convert gid_t to netbsd32_gid_t, but they're the same */
   2244   1.6       eeh 	error = copyout((caddr_t)pc->pc_ucred->cr_groups,
   2245   1.6       eeh 			(caddr_t)(u_long)SCARG(uap, gidset),
   2246   1.6       eeh 			ngrp * sizeof(gid_t));
   2247   1.6       eeh 	if (error)
   2248   1.6       eeh 		return (error);
   2249   1.6       eeh 	*retval = ngrp;
   2250   1.6       eeh 	return (0);
   2251   1.1       mrg }
   2252   1.1       mrg 
   2253   1.1       mrg int
   2254  1.19       eeh netbsd32_setgroups(p, v, retval)
   2255   1.1       mrg 	struct proc *p;
   2256   1.1       mrg 	void *v;
   2257   1.1       mrg 	register_t *retval;
   2258   1.1       mrg {
   2259  1.19       eeh 	struct netbsd32_setgroups_args /* {
   2260   1.1       mrg 		syscallarg(int) gidsetsize;
   2261  1.10       mrg 		syscallarg(const netbsd32_gid_tp) gidset;
   2262   1.1       mrg 	} */ *uap = v;
   2263   1.1       mrg 	struct sys_setgroups_args ua;
   2264   1.1       mrg 
   2265  1.11       mrg 	NETBSD32TO64_UAP(gidsetsize);
   2266  1.11       mrg 	NETBSD32TOP_UAP(gidset, gid_t);
   2267   1.1       mrg 	return (sys_setgroups(p, &ua, retval));
   2268   1.1       mrg }
   2269   1.1       mrg 
   2270   1.1       mrg int
   2271  1.19       eeh netbsd32_setpgid(p, v, retval)
   2272   1.6       eeh 	struct proc *p;
   2273   1.6       eeh 	void *v;
   2274   1.6       eeh 	register_t *retval;
   2275   1.6       eeh {
   2276  1.19       eeh 	struct netbsd32_setpgid_args /* {
   2277   1.6       eeh 		syscallarg(int) pid;
   2278   1.6       eeh 		syscallarg(int) pgid;
   2279   1.6       eeh 	} */ *uap = v;
   2280   1.6       eeh 	struct sys_setpgid_args ua;
   2281   1.6       eeh 
   2282  1.11       mrg 	NETBSD32TO64_UAP(pid);
   2283  1.11       mrg 	NETBSD32TO64_UAP(pgid);
   2284   1.6       eeh 	return (sys_setpgid(p, &ua, retval));
   2285   1.6       eeh }
   2286   1.6       eeh 
   2287   1.6       eeh int
   2288  1.19       eeh netbsd32_setitimer(p, v, retval)
   2289   1.1       mrg 	struct proc *p;
   2290   1.1       mrg 	void *v;
   2291   1.1       mrg 	register_t *retval;
   2292   1.1       mrg {
   2293  1.19       eeh 	struct netbsd32_setitimer_args /* {
   2294   1.1       mrg 		syscallarg(int) which;
   2295  1.10       mrg 		syscallarg(const netbsd32_itimervalp_t) itv;
   2296  1.10       mrg 		syscallarg(netbsd32_itimervalp_t) oitv;
   2297   1.1       mrg 	} */ *uap = v;
   2298  1.10       mrg 	struct netbsd32_itimerval s32it, *itvp;
   2299   1.6       eeh 	int which = SCARG(uap, which);
   2300  1.19       eeh 	struct netbsd32_getitimer_args getargs;
   2301   1.6       eeh 	struct itimerval aitv;
   2302   1.6       eeh 	int s, error;
   2303   1.1       mrg 
   2304   1.6       eeh 	if ((u_int)which > ITIMER_PROF)
   2305   1.6       eeh 		return (EINVAL);
   2306  1.10       mrg 	itvp = (struct netbsd32_itimerval *)(u_long)SCARG(uap, itv);
   2307   1.6       eeh 	if (itvp && (error = copyin(itvp, &s32it, sizeof(s32it))))
   2308   1.6       eeh 		return (error);
   2309  1.10       mrg 	netbsd32_to_itimerval(&s32it, &aitv);
   2310   1.6       eeh 	if (SCARG(uap, oitv) != NULL) {
   2311   1.6       eeh 		SCARG(&getargs, which) = which;
   2312   1.6       eeh 		SCARG(&getargs, itv) = SCARG(uap, oitv);
   2313  1.19       eeh 		if ((error = netbsd32_getitimer(p, &getargs, retval)) != 0)
   2314   1.6       eeh 			return (error);
   2315   1.6       eeh 	}
   2316   1.6       eeh 	if (itvp == 0)
   2317   1.6       eeh 		return (0);
   2318   1.6       eeh 	if (itimerfix(&aitv.it_value) || itimerfix(&aitv.it_interval))
   2319   1.6       eeh 		return (EINVAL);
   2320   1.6       eeh 	s = splclock();
   2321   1.6       eeh 	if (which == ITIMER_REAL) {
   2322  1.24   thorpej 		callout_stop(&p->p_realit_ch);
   2323   1.6       eeh 		if (timerisset(&aitv.it_value)) {
   2324  1.33   thorpej 			/*
   2325  1.33   thorpej 			 * Don't need to check hzto() return value, here.
   2326  1.33   thorpej 			 * callout_reset() does it for us.
   2327  1.33   thorpej 			 */
   2328   1.6       eeh 			timeradd(&aitv.it_value, &time, &aitv.it_value);
   2329  1.24   thorpej 			callout_reset(&p->p_realit_ch, hzto(&aitv.it_value),
   2330  1.24   thorpej 			    realitexpire, p);
   2331   1.6       eeh 		}
   2332   1.6       eeh 		p->p_realtimer = aitv;
   2333   1.1       mrg 	} else
   2334   1.6       eeh 		p->p_stats->p_timer[which] = aitv;
   2335   1.6       eeh 	splx(s);
   2336   1.6       eeh 	return (0);
   2337   1.6       eeh }
   2338   1.1       mrg 
   2339   1.1       mrg int
   2340  1.19       eeh netbsd32_getitimer(p, v, retval)
   2341   1.1       mrg 	struct proc *p;
   2342   1.1       mrg 	void *v;
   2343   1.1       mrg 	register_t *retval;
   2344   1.1       mrg {
   2345  1.19       eeh 	struct netbsd32_getitimer_args /* {
   2346   1.1       mrg 		syscallarg(int) which;
   2347  1.10       mrg 		syscallarg(netbsd32_itimervalp_t) itv;
   2348   1.1       mrg 	} */ *uap = v;
   2349   1.6       eeh 	int which = SCARG(uap, which);
   2350  1.10       mrg 	struct netbsd32_itimerval s32it;
   2351   1.6       eeh 	struct itimerval aitv;
   2352   1.6       eeh 	int s;
   2353   1.1       mrg 
   2354   1.6       eeh 	if ((u_int)which > ITIMER_PROF)
   2355   1.6       eeh 		return (EINVAL);
   2356   1.6       eeh 	s = splclock();
   2357   1.6       eeh 	if (which == ITIMER_REAL) {
   2358   1.6       eeh 		/*
   2359   1.6       eeh 		 * Convert from absolute to relative time in .it_value
   2360   1.6       eeh 		 * part of real time timer.  If time for real time timer
   2361   1.6       eeh 		 * has passed return 0, else return difference between
   2362   1.6       eeh 		 * current time and time for the timer to go off.
   2363   1.6       eeh 		 */
   2364   1.6       eeh 		aitv = p->p_realtimer;
   2365   1.6       eeh 		if (timerisset(&aitv.it_value)) {
   2366   1.6       eeh 			if (timercmp(&aitv.it_value, &time, <))
   2367   1.6       eeh 				timerclear(&aitv.it_value);
   2368   1.6       eeh 			else
   2369   1.6       eeh 				timersub(&aitv.it_value, &time, &aitv.it_value);
   2370   1.6       eeh 		}
   2371   1.6       eeh 	} else
   2372   1.6       eeh 		aitv = p->p_stats->p_timer[which];
   2373   1.6       eeh 	splx(s);
   2374  1.10       mrg 	netbsd32_from_itimerval(&aitv, &s32it);
   2375   1.6       eeh 	return (copyout(&s32it, (caddr_t)(u_long)SCARG(uap, itv), sizeof(s32it)));
   2376   1.1       mrg }
   2377   1.1       mrg 
   2378   1.1       mrg int
   2379  1.19       eeh netbsd32_fcntl(p, v, retval)
   2380   1.1       mrg 	struct proc *p;
   2381   1.1       mrg 	void *v;
   2382   1.1       mrg 	register_t *retval;
   2383   1.1       mrg {
   2384  1.19       eeh 	struct netbsd32_fcntl_args /* {
   2385   1.1       mrg 		syscallarg(int) fd;
   2386   1.1       mrg 		syscallarg(int) cmd;
   2387  1.10       mrg 		syscallarg(netbsd32_voidp) arg;
   2388   1.1       mrg 	} */ *uap = v;
   2389   1.1       mrg 	struct sys_fcntl_args ua;
   2390   1.1       mrg 
   2391  1.11       mrg 	NETBSD32TO64_UAP(fd);
   2392  1.11       mrg 	NETBSD32TO64_UAP(cmd);
   2393  1.11       mrg 	NETBSD32TOP_UAP(arg, void);
   2394   1.6       eeh 	/* XXXX we can do this 'cause flock doesn't change */
   2395   1.1       mrg 	return (sys_fcntl(p, &ua, retval));
   2396   1.1       mrg }
   2397   1.1       mrg 
   2398   1.1       mrg int
   2399  1.19       eeh netbsd32_dup2(p, v, retval)
   2400   1.6       eeh 	struct proc *p;
   2401   1.6       eeh 	void *v;
   2402   1.6       eeh 	register_t *retval;
   2403   1.6       eeh {
   2404  1.19       eeh 	struct netbsd32_dup2_args /* {
   2405   1.6       eeh 		syscallarg(int) from;
   2406   1.6       eeh 		syscallarg(int) to;
   2407   1.6       eeh 	} */ *uap = v;
   2408   1.6       eeh 	struct sys_dup2_args ua;
   2409   1.6       eeh 
   2410  1.11       mrg 	NETBSD32TO64_UAP(from);
   2411  1.11       mrg 	NETBSD32TO64_UAP(to);
   2412   1.6       eeh 	return (sys_dup2(p, &ua, retval));
   2413   1.6       eeh }
   2414   1.6       eeh 
   2415   1.6       eeh int
   2416  1.19       eeh netbsd32_select(p, v, retval)
   2417   1.1       mrg 	struct proc *p;
   2418   1.1       mrg 	void *v;
   2419   1.1       mrg 	register_t *retval;
   2420   1.1       mrg {
   2421  1.19       eeh 	struct netbsd32_select_args /* {
   2422   1.1       mrg 		syscallarg(int) nd;
   2423  1.10       mrg 		syscallarg(netbsd32_fd_setp_t) in;
   2424  1.10       mrg 		syscallarg(netbsd32_fd_setp_t) ou;
   2425  1.10       mrg 		syscallarg(netbsd32_fd_setp_t) ex;
   2426  1.10       mrg 		syscallarg(netbsd32_timevalp_t) tv;
   2427   1.1       mrg 	} */ *uap = v;
   2428   1.6       eeh /* This one must be done in-line 'cause of the timeval */
   2429  1.10       mrg 	struct netbsd32_timeval tv32;
   2430   1.6       eeh 	caddr_t bits;
   2431   1.6       eeh 	char smallbits[howmany(FD_SETSIZE, NFDBITS) * sizeof(fd_mask) * 6];
   2432   1.6       eeh 	struct timeval atv;
   2433   1.6       eeh 	int s, ncoll, error = 0, timo;
   2434   1.6       eeh 	size_t ni;
   2435   1.6       eeh 	extern int	selwait, nselcoll;
   2436   1.6       eeh 	extern int selscan __P((struct proc *, fd_mask *, fd_mask *, int, register_t *));
   2437   1.1       mrg 
   2438   1.6       eeh 	if (SCARG(uap, nd) < 0)
   2439   1.6       eeh 		return (EINVAL);
   2440   1.6       eeh 	if (SCARG(uap, nd) > p->p_fd->fd_nfiles) {
   2441   1.6       eeh 		/* forgiving; slightly wrong */
   2442   1.6       eeh 		SCARG(uap, nd) = p->p_fd->fd_nfiles;
   2443   1.5       eeh 	}
   2444   1.6       eeh 	ni = howmany(SCARG(uap, nd), NFDBITS) * sizeof(fd_mask);
   2445   1.6       eeh 	if (ni * 6 > sizeof(smallbits))
   2446   1.6       eeh 		bits = malloc(ni * 6, M_TEMP, M_WAITOK);
   2447   1.6       eeh 	else
   2448   1.6       eeh 		bits = smallbits;
   2449   1.1       mrg 
   2450   1.6       eeh #define	getbits(name, x) \
   2451   1.6       eeh 	if (SCARG(uap, name)) { \
   2452   1.6       eeh 		error = copyin((caddr_t)(u_long)SCARG(uap, name), bits + ni * x, ni); \
   2453   1.6       eeh 		if (error) \
   2454   1.6       eeh 			goto done; \
   2455   1.6       eeh 	} else \
   2456   1.6       eeh 		memset(bits + ni * x, 0, ni);
   2457   1.6       eeh 	getbits(in, 0);
   2458   1.6       eeh 	getbits(ou, 1);
   2459   1.6       eeh 	getbits(ex, 2);
   2460   1.6       eeh #undef	getbits
   2461   1.6       eeh 
   2462   1.6       eeh 	if (SCARG(uap, tv)) {
   2463   1.6       eeh 		error = copyin((caddr_t)(u_long)SCARG(uap, tv), (caddr_t)&tv32,
   2464   1.6       eeh 			sizeof(tv32));
   2465   1.6       eeh 		if (error)
   2466   1.6       eeh 			goto done;
   2467  1.10       mrg 		netbsd32_to_timeval(&tv32, &atv);
   2468   1.6       eeh 		if (itimerfix(&atv)) {
   2469   1.6       eeh 			error = EINVAL;
   2470   1.6       eeh 			goto done;
   2471   1.6       eeh 		}
   2472   1.6       eeh 		s = splclock();
   2473   1.6       eeh 		timeradd(&atv, &time, &atv);
   2474   1.6       eeh 		splx(s);
   2475   1.6       eeh 	} else
   2476   1.6       eeh 		timo = 0;
   2477   1.6       eeh retry:
   2478   1.6       eeh 	ncoll = nselcoll;
   2479   1.6       eeh 	p->p_flag |= P_SELECT;
   2480   1.6       eeh 	error = selscan(p, (fd_mask *)(bits + ni * 0),
   2481   1.6       eeh 			   (fd_mask *)(bits + ni * 3), SCARG(uap, nd), retval);
   2482   1.6       eeh 	if (error || *retval)
   2483   1.6       eeh 		goto done;
   2484  1.33   thorpej 	if (SCARG(uap, tv)) {
   2485  1.33   thorpej 		/*
   2486  1.33   thorpej 		 * We have to recalculate the timeout on every retry.
   2487  1.33   thorpej 		 */
   2488  1.33   thorpej 		timo = hzto(&atv);
   2489  1.33   thorpej 		if (timo <= 0)
   2490  1.33   thorpej 			goto done;
   2491  1.33   thorpej 	}
   2492   1.6       eeh 	s = splhigh();
   2493   1.6       eeh 	if ((p->p_flag & P_SELECT) == 0 || nselcoll != ncoll) {
   2494   1.6       eeh 		splx(s);
   2495   1.6       eeh 		goto retry;
   2496   1.6       eeh 	}
   2497   1.6       eeh 	p->p_flag &= ~P_SELECT;
   2498   1.6       eeh 	error = tsleep((caddr_t)&selwait, PSOCK | PCATCH, "select", timo);
   2499   1.6       eeh 	splx(s);
   2500   1.6       eeh 	if (error == 0)
   2501   1.6       eeh 		goto retry;
   2502   1.6       eeh done:
   2503   1.6       eeh 	p->p_flag &= ~P_SELECT;
   2504   1.6       eeh 	/* select is not restarted after signals... */
   2505   1.6       eeh 	if (error == ERESTART)
   2506   1.6       eeh 		error = EINTR;
   2507   1.6       eeh 	if (error == EWOULDBLOCK)
   2508   1.6       eeh 		error = 0;
   2509   1.6       eeh 	if (error == 0) {
   2510   1.6       eeh #define	putbits(name, x) \
   2511   1.6       eeh 		if (SCARG(uap, name)) { \
   2512   1.6       eeh 			error = copyout(bits + ni * x, (caddr_t)(u_long)SCARG(uap, name), ni); \
   2513   1.6       eeh 			if (error) \
   2514   1.6       eeh 				goto out; \
   2515   1.6       eeh 		}
   2516   1.6       eeh 		putbits(in, 3);
   2517   1.6       eeh 		putbits(ou, 4);
   2518   1.6       eeh 		putbits(ex, 5);
   2519   1.6       eeh #undef putbits
   2520   1.5       eeh 	}
   2521   1.6       eeh out:
   2522   1.6       eeh 	if (ni * 6 > sizeof(smallbits))
   2523   1.6       eeh 		free(bits, M_TEMP);
   2524   1.6       eeh 	return (error);
   2525   1.6       eeh }
   2526   1.6       eeh 
   2527   1.6       eeh int
   2528  1.19       eeh netbsd32_fsync(p, v, retval)
   2529   1.6       eeh 	struct proc *p;
   2530   1.6       eeh 	void *v;
   2531   1.6       eeh 	register_t *retval;
   2532   1.6       eeh {
   2533  1.19       eeh 	struct netbsd32_fsync_args /* {
   2534   1.6       eeh 		syscallarg(int) fd;
   2535   1.6       eeh 	} */ *uap = v;
   2536   1.6       eeh 	struct sys_fsync_args ua;
   2537   1.1       mrg 
   2538  1.11       mrg 	NETBSD32TO64_UAP(fd);
   2539   1.6       eeh 	return (sys_fsync(p, &ua, retval));
   2540   1.6       eeh }
   2541   1.6       eeh 
   2542   1.6       eeh int
   2543  1.19       eeh netbsd32_setpriority(p, v, retval)
   2544   1.6       eeh 	struct proc *p;
   2545   1.6       eeh 	void *v;
   2546   1.6       eeh 	register_t *retval;
   2547   1.6       eeh {
   2548  1.19       eeh 	struct netbsd32_setpriority_args /* {
   2549   1.6       eeh 		syscallarg(int) which;
   2550   1.6       eeh 		syscallarg(int) who;
   2551   1.6       eeh 		syscallarg(int) prio;
   2552   1.6       eeh 	} */ *uap = v;
   2553   1.6       eeh 	struct sys_setpriority_args ua;
   2554   1.6       eeh 
   2555  1.11       mrg 	NETBSD32TO64_UAP(which);
   2556  1.11       mrg 	NETBSD32TO64_UAP(who);
   2557  1.11       mrg 	NETBSD32TO64_UAP(prio);
   2558   1.6       eeh 	return (sys_setpriority(p, &ua, retval));
   2559   1.6       eeh }
   2560   1.6       eeh 
   2561   1.6       eeh int
   2562  1.19       eeh netbsd32_socket(p, v, retval)
   2563   1.6       eeh 	struct proc *p;
   2564   1.6       eeh 	void *v;
   2565   1.6       eeh 	register_t *retval;
   2566   1.6       eeh {
   2567  1.19       eeh 	struct netbsd32_socket_args /* {
   2568   1.6       eeh 		syscallarg(int) domain;
   2569   1.6       eeh 		syscallarg(int) type;
   2570   1.6       eeh 		syscallarg(int) protocol;
   2571   1.6       eeh 	} */ *uap = v;
   2572   1.6       eeh 	struct sys_socket_args ua;
   2573   1.6       eeh 
   2574  1.11       mrg 	NETBSD32TO64_UAP(domain);
   2575  1.11       mrg 	NETBSD32TO64_UAP(type);
   2576  1.11       mrg 	NETBSD32TO64_UAP(protocol);
   2577   1.6       eeh 	return (sys_socket(p, &ua, retval));
   2578   1.1       mrg }
   2579   1.1       mrg 
   2580   1.1       mrg int
   2581  1.19       eeh netbsd32_connect(p, v, retval)
   2582   1.1       mrg 	struct proc *p;
   2583   1.1       mrg 	void *v;
   2584   1.1       mrg 	register_t *retval;
   2585   1.1       mrg {
   2586  1.19       eeh 	struct netbsd32_connect_args /* {
   2587   1.1       mrg 		syscallarg(int) s;
   2588  1.10       mrg 		syscallarg(const netbsd32_sockaddrp_t) name;
   2589   1.1       mrg 		syscallarg(int) namelen;
   2590   1.1       mrg 	} */ *uap = v;
   2591   1.1       mrg 	struct sys_connect_args ua;
   2592   1.1       mrg 
   2593  1.11       mrg 	NETBSD32TO64_UAP(s);
   2594  1.11       mrg 	NETBSD32TOP_UAP(name, struct sockaddr);
   2595  1.11       mrg 	NETBSD32TO64_UAP(namelen);
   2596   1.1       mrg 	return (sys_connect(p, &ua, retval));
   2597   1.1       mrg }
   2598   1.1       mrg 
   2599   1.6       eeh int
   2600  1.19       eeh netbsd32_getpriority(p, v, retval)
   2601   1.6       eeh 	struct proc *p;
   2602   1.6       eeh 	void *v;
   2603   1.6       eeh 	register_t *retval;
   2604   1.6       eeh {
   2605  1.19       eeh 	struct netbsd32_getpriority_args /* {
   2606   1.6       eeh 		syscallarg(int) which;
   2607   1.6       eeh 		syscallarg(int) who;
   2608   1.6       eeh 	} */ *uap = v;
   2609   1.6       eeh 	struct sys_getpriority_args ua;
   2610   1.6       eeh 
   2611  1.11       mrg 	NETBSD32TO64_UAP(which);
   2612  1.11       mrg 	NETBSD32TO64_UAP(who);
   2613   1.6       eeh 	return (sys_getpriority(p, &ua, retval));
   2614   1.6       eeh }
   2615   1.6       eeh 
   2616   1.1       mrg int
   2617  1.19       eeh netbsd32_bind(p, v, retval)
   2618   1.1       mrg 	struct proc *p;
   2619   1.1       mrg 	void *v;
   2620   1.1       mrg 	register_t *retval;
   2621   1.1       mrg {
   2622  1.19       eeh 	struct netbsd32_bind_args /* {
   2623   1.1       mrg 		syscallarg(int) s;
   2624  1.10       mrg 		syscallarg(const netbsd32_sockaddrp_t) name;
   2625   1.1       mrg 		syscallarg(int) namelen;
   2626   1.1       mrg 	} */ *uap = v;
   2627   1.6       eeh 	struct sys_bind_args ua;
   2628   1.1       mrg 
   2629  1.11       mrg 	NETBSD32TO64_UAP(s);
   2630  1.11       mrg 	NETBSD32TOP_UAP(name, struct sockaddr);
   2631  1.11       mrg 	NETBSD32TO64_UAP(namelen);
   2632   1.6       eeh 	return (sys_bind(p, &ua, retval));
   2633   1.1       mrg }
   2634   1.1       mrg 
   2635   1.1       mrg int
   2636  1.19       eeh netbsd32_setsockopt(p, v, retval)
   2637   1.1       mrg 	struct proc *p;
   2638   1.1       mrg 	void *v;
   2639   1.1       mrg 	register_t *retval;
   2640   1.1       mrg {
   2641  1.19       eeh 	struct netbsd32_setsockopt_args /* {
   2642   1.1       mrg 		syscallarg(int) s;
   2643   1.1       mrg 		syscallarg(int) level;
   2644   1.1       mrg 		syscallarg(int) name;
   2645  1.10       mrg 		syscallarg(const netbsd32_voidp) val;
   2646   1.1       mrg 		syscallarg(int) valsize;
   2647   1.1       mrg 	} */ *uap = v;
   2648   1.1       mrg 	struct sys_setsockopt_args ua;
   2649   1.1       mrg 
   2650  1.11       mrg 	NETBSD32TO64_UAP(s);
   2651  1.11       mrg 	NETBSD32TO64_UAP(level);
   2652  1.11       mrg 	NETBSD32TO64_UAP(name);
   2653  1.11       mrg 	NETBSD32TOP_UAP(val, void);
   2654  1.11       mrg 	NETBSD32TO64_UAP(valsize);
   2655   1.6       eeh 	/* may be more efficient to do this inline. */
   2656   1.1       mrg 	return (sys_setsockopt(p, &ua, retval));
   2657   1.1       mrg }
   2658   1.1       mrg 
   2659   1.1       mrg int
   2660  1.19       eeh netbsd32_listen(p, v, retval)
   2661   1.6       eeh 	struct proc *p;
   2662   1.6       eeh 	void *v;
   2663   1.6       eeh 	register_t *retval;
   2664   1.6       eeh {
   2665  1.19       eeh 	struct netbsd32_listen_args /* {
   2666   1.6       eeh 		syscallarg(int) s;
   2667   1.6       eeh 		syscallarg(int) backlog;
   2668   1.6       eeh 	} */ *uap = v;
   2669   1.6       eeh 	struct sys_listen_args ua;
   2670   1.6       eeh 
   2671  1.11       mrg 	NETBSD32TO64_UAP(s);
   2672  1.11       mrg 	NETBSD32TO64_UAP(backlog);
   2673   1.6       eeh 	return (sys_listen(p, &ua, retval));
   2674   1.6       eeh }
   2675   1.6       eeh 
   2676   1.6       eeh int
   2677  1.19       eeh netbsd32_gettimeofday(p, v, retval)
   2678   1.1       mrg 	struct proc *p;
   2679   1.1       mrg 	void *v;
   2680   1.1       mrg 	register_t *retval;
   2681   1.1       mrg {
   2682  1.19       eeh 	struct netbsd32_gettimeofday_args /* {
   2683  1.10       mrg 		syscallarg(netbsd32_timevalp_t) tp;
   2684  1.10       mrg 		syscallarg(netbsd32_timezonep_t) tzp;
   2685   1.1       mrg 	} */ *uap = v;
   2686   1.6       eeh 	struct timeval atv;
   2687  1.10       mrg 	struct netbsd32_timeval tv32;
   2688   1.6       eeh 	int error = 0;
   2689  1.10       mrg 	struct netbsd32_timezone tzfake;
   2690   1.6       eeh 
   2691   1.6       eeh 	if (SCARG(uap, tp)) {
   2692   1.6       eeh 		microtime(&atv);
   2693  1.10       mrg 		netbsd32_from_timeval(&atv, &tv32);
   2694   1.6       eeh 		error = copyout(&tv32, (caddr_t)(u_long)SCARG(uap, tp), sizeof(tv32));
   2695   1.6       eeh 		if (error)
   2696   1.6       eeh 			return (error);
   2697   1.6       eeh 	}
   2698   1.6       eeh 	if (SCARG(uap, tzp)) {
   2699   1.6       eeh 		/*
   2700   1.6       eeh 		 * NetBSD has no kernel notion of time zone, so we just
   2701   1.6       eeh 		 * fake up a timezone struct and return it if demanded.
   2702   1.6       eeh 		 */
   2703   1.6       eeh 		tzfake.tz_minuteswest = 0;
   2704   1.6       eeh 		tzfake.tz_dsttime = 0;
   2705   1.6       eeh 		error = copyout(&tzfake, (caddr_t)(u_long)SCARG(uap, tzp), sizeof(tzfake));
   2706   1.6       eeh 	}
   2707   1.6       eeh 	return (error);
   2708   1.6       eeh }
   2709   1.1       mrg 
   2710  1.20       eeh #if 0
   2711  1.20       eeh static int settime32 __P((struct timeval *));
   2712   1.6       eeh /* This function is used by clock_settime and settimeofday */
   2713   1.6       eeh static int
   2714  1.20       eeh settime32(tv)
   2715   1.6       eeh 	struct timeval *tv;
   2716   1.6       eeh {
   2717   1.6       eeh 	struct timeval delta;
   2718   1.6       eeh 	int s;
   2719   1.1       mrg 
   2720   1.6       eeh 	/* WHAT DO WE DO ABOUT PENDING REAL-TIME TIMEOUTS??? */
   2721   1.6       eeh 	s = splclock();
   2722   1.6       eeh 	timersub(tv, &time, &delta);
   2723   1.6       eeh 	if ((delta.tv_sec < 0 || delta.tv_usec < 0) && securelevel > 1)
   2724   1.6       eeh 		return (EPERM);
   2725   1.6       eeh #ifdef notyet
   2726   1.6       eeh 	if ((delta.tv_sec < 86400) && securelevel > 0)
   2727   1.6       eeh 		return (EPERM);
   2728   1.6       eeh #endif
   2729   1.6       eeh 	time = *tv;
   2730  1.17   thorpej 	(void) spllowersoftclock();
   2731   1.6       eeh 	timeradd(&boottime, &delta, &boottime);
   2732   1.6       eeh 	timeradd(&runtime, &delta, &runtime);
   2733   1.6       eeh #	if defined(NFS) || defined(NFSSERVER)
   2734  1.20       eeh 	{
   2735  1.20       eeh 		extern void	nqnfs_lease_updatetime __P((int));
   2736  1.20       eeh 
   2737   1.6       eeh 		nqnfs_lease_updatetime(delta.tv_sec);
   2738  1.20       eeh 	}
   2739   1.6       eeh #	endif
   2740   1.6       eeh 	splx(s);
   2741   1.6       eeh 	resettodr();
   2742   1.1       mrg 	return (0);
   2743   1.1       mrg }
   2744  1.20       eeh #endif
   2745   1.6       eeh 
   2746   1.1       mrg int
   2747  1.19       eeh netbsd32_settimeofday(p, v, retval)
   2748   1.1       mrg 	struct proc *p;
   2749   1.1       mrg 	void *v;
   2750   1.1       mrg 	register_t *retval;
   2751   1.1       mrg {
   2752  1.19       eeh 	struct netbsd32_settimeofday_args /* {
   2753  1.10       mrg 		syscallarg(const netbsd32_timevalp_t) tv;
   2754  1.10       mrg 		syscallarg(const netbsd32_timezonep_t) tzp;
   2755   1.1       mrg 	} */ *uap = v;
   2756  1.10       mrg 	struct netbsd32_timeval atv32;
   2757   1.6       eeh 	struct timeval atv;
   2758  1.10       mrg 	struct netbsd32_timezone atz;
   2759   1.1       mrg 	int error;
   2760   1.1       mrg 
   2761   1.6       eeh 	if ((error = suser(p->p_ucred, &p->p_acflag)) != 0)
   2762   1.6       eeh 		return (error);
   2763   1.6       eeh 	/* Verify all parameters before changing time. */
   2764   1.6       eeh 	if (SCARG(uap, tv) && (error = copyin((caddr_t)(u_long)SCARG(uap, tv),
   2765   1.6       eeh 	    &atv32, sizeof(atv32))))
   2766   1.6       eeh 		return (error);
   2767  1.10       mrg 	netbsd32_to_timeval(&atv32, &atv);
   2768   1.6       eeh 	/* XXX since we don't use tz, probably no point in doing copyin. */
   2769   1.6       eeh 	if (SCARG(uap, tzp) && (error = copyin((caddr_t)(u_long)SCARG(uap, tzp),
   2770   1.6       eeh 	    &atz, sizeof(atz))))
   2771   1.1       mrg 		return (error);
   2772   1.6       eeh 	if (SCARG(uap, tv))
   2773   1.6       eeh 		if ((error = settime(&atv)))
   2774   1.6       eeh 			return (error);
   2775   1.6       eeh 	/*
   2776   1.6       eeh 	 * NetBSD has no kernel notion of time zone, and only an
   2777   1.6       eeh 	 * obsolete program would try to set it, so we log a warning.
   2778   1.6       eeh 	 */
   2779   1.6       eeh 	if (SCARG(uap, tzp))
   2780   1.6       eeh 		printf("pid %d attempted to set the "
   2781   1.6       eeh 		    "(obsolete) kernel time zone\n", p->p_pid);
   2782   1.6       eeh 	return (0);
   2783   1.6       eeh }
   2784   1.6       eeh 
   2785   1.6       eeh int
   2786  1.19       eeh netbsd32_fchown(p, v, retval)
   2787   1.6       eeh 	struct proc *p;
   2788   1.6       eeh 	void *v;
   2789   1.6       eeh 	register_t *retval;
   2790   1.6       eeh {
   2791  1.19       eeh 	struct netbsd32_fchown_args /* {
   2792   1.6       eeh 		syscallarg(int) fd;
   2793   1.6       eeh 		syscallarg(uid_t) uid;
   2794   1.6       eeh 		syscallarg(gid_t) gid;
   2795   1.6       eeh 	} */ *uap = v;
   2796   1.6       eeh 	struct sys_fchown_args ua;
   2797   1.6       eeh 
   2798  1.11       mrg 	NETBSD32TO64_UAP(fd);
   2799  1.11       mrg 	NETBSD32TO64_UAP(uid);
   2800  1.11       mrg 	NETBSD32TO64_UAP(gid);
   2801   1.6       eeh 	return (sys_fchown(p, &ua, retval));
   2802   1.6       eeh }
   2803   1.6       eeh 
   2804   1.6       eeh int
   2805  1.19       eeh netbsd32_fchmod(p, v, retval)
   2806   1.6       eeh 	struct proc *p;
   2807   1.6       eeh 	void *v;
   2808   1.6       eeh 	register_t *retval;
   2809   1.6       eeh {
   2810  1.19       eeh 	struct netbsd32_fchmod_args /* {
   2811   1.6       eeh 		syscallarg(int) fd;
   2812   1.6       eeh 		syscallarg(mode_t) mode;
   2813   1.6       eeh 	} */ *uap = v;
   2814   1.6       eeh 	struct sys_fchmod_args ua;
   2815   1.6       eeh 
   2816  1.11       mrg 	NETBSD32TO64_UAP(fd);
   2817  1.11       mrg 	NETBSD32TO64_UAP(mode);
   2818   1.6       eeh 	return (sys_fchmod(p, &ua, retval));
   2819   1.6       eeh }
   2820   1.6       eeh 
   2821   1.6       eeh int
   2822  1.19       eeh netbsd32_setreuid(p, v, retval)
   2823   1.6       eeh 	struct proc *p;
   2824   1.6       eeh 	void *v;
   2825   1.6       eeh 	register_t *retval;
   2826   1.6       eeh {
   2827  1.19       eeh 	struct netbsd32_setreuid_args /* {
   2828   1.6       eeh 		syscallarg(uid_t) ruid;
   2829   1.6       eeh 		syscallarg(uid_t) euid;
   2830   1.6       eeh 	} */ *uap = v;
   2831   1.6       eeh 	struct sys_setreuid_args ua;
   2832   1.6       eeh 
   2833  1.11       mrg 	NETBSD32TO64_UAP(ruid);
   2834  1.11       mrg 	NETBSD32TO64_UAP(euid);
   2835   1.6       eeh 	return (sys_setreuid(p, &ua, retval));
   2836   1.6       eeh }
   2837   1.1       mrg 
   2838   1.6       eeh int
   2839  1.19       eeh netbsd32_setregid(p, v, retval)
   2840   1.6       eeh 	struct proc *p;
   2841   1.6       eeh 	void *v;
   2842   1.6       eeh 	register_t *retval;
   2843   1.6       eeh {
   2844  1.19       eeh 	struct netbsd32_setregid_args /* {
   2845   1.6       eeh 		syscallarg(gid_t) rgid;
   2846   1.6       eeh 		syscallarg(gid_t) egid;
   2847   1.6       eeh 	} */ *uap = v;
   2848   1.6       eeh 	struct sys_setregid_args ua;
   2849   1.6       eeh 
   2850  1.11       mrg 	NETBSD32TO64_UAP(rgid);
   2851  1.11       mrg 	NETBSD32TO64_UAP(egid);
   2852   1.6       eeh 	return (sys_setregid(p, &ua, retval));
   2853   1.1       mrg }
   2854   1.1       mrg 
   2855   1.1       mrg int
   2856  1.19       eeh netbsd32_getrusage(p, v, retval)
   2857   1.1       mrg 	struct proc *p;
   2858   1.1       mrg 	void *v;
   2859   1.1       mrg 	register_t *retval;
   2860   1.1       mrg {
   2861  1.19       eeh 	struct netbsd32_getrusage_args /* {
   2862   1.1       mrg 		syscallarg(int) who;
   2863  1.10       mrg 		syscallarg(netbsd32_rusagep_t) rusage;
   2864   1.1       mrg 	} */ *uap = v;
   2865   1.6       eeh 	struct rusage *rup;
   2866  1.10       mrg 	struct netbsd32_rusage ru;
   2867   1.6       eeh 
   2868   1.6       eeh 	switch (SCARG(uap, who)) {
   2869   1.1       mrg 
   2870   1.6       eeh 	case RUSAGE_SELF:
   2871   1.6       eeh 		rup = &p->p_stats->p_ru;
   2872   1.6       eeh 		calcru(p, &rup->ru_utime, &rup->ru_stime, NULL);
   2873   1.6       eeh 		break;
   2874   1.1       mrg 
   2875   1.6       eeh 	case RUSAGE_CHILDREN:
   2876   1.6       eeh 		rup = &p->p_stats->p_cru;
   2877   1.6       eeh 		break;
   2878   1.1       mrg 
   2879   1.6       eeh 	default:
   2880   1.6       eeh 		return (EINVAL);
   2881   1.6       eeh 	}
   2882  1.10       mrg 	netbsd32_from_rusage(rup, &ru);
   2883   1.6       eeh 	return (copyout(&ru, (caddr_t)(u_long)SCARG(uap, rusage), sizeof(ru)));
   2884   1.1       mrg }
   2885   1.1       mrg 
   2886   1.1       mrg int
   2887  1.19       eeh netbsd32_getsockopt(p, v, retval)
   2888   1.1       mrg 	struct proc *p;
   2889   1.1       mrg 	void *v;
   2890   1.1       mrg 	register_t *retval;
   2891   1.1       mrg {
   2892  1.19       eeh 	struct netbsd32_getsockopt_args /* {
   2893   1.1       mrg 		syscallarg(int) s;
   2894   1.1       mrg 		syscallarg(int) level;
   2895   1.1       mrg 		syscallarg(int) name;
   2896  1.10       mrg 		syscallarg(netbsd32_voidp) val;
   2897  1.10       mrg 		syscallarg(netbsd32_intp) avalsize;
   2898   1.1       mrg 	} */ *uap = v;
   2899   1.1       mrg 	struct sys_getsockopt_args ua;
   2900   1.1       mrg 
   2901  1.11       mrg 	NETBSD32TO64_UAP(s);
   2902  1.11       mrg 	NETBSD32TO64_UAP(level);
   2903  1.11       mrg 	NETBSD32TO64_UAP(name);
   2904  1.11       mrg 	NETBSD32TOP_UAP(val, void);
   2905  1.11       mrg 	NETBSD32TOP_UAP(avalsize, int);
   2906   1.1       mrg 	return (sys_getsockopt(p, &ua, retval));
   2907   1.1       mrg }
   2908   1.1       mrg 
   2909   1.1       mrg int
   2910  1.19       eeh netbsd32_readv(p, v, retval)
   2911   1.1       mrg 	struct proc *p;
   2912   1.1       mrg 	void *v;
   2913   1.1       mrg 	register_t *retval;
   2914   1.1       mrg {
   2915  1.19       eeh 	struct netbsd32_readv_args /* {
   2916   1.1       mrg 		syscallarg(int) fd;
   2917  1.10       mrg 		syscallarg(const netbsd32_iovecp_t) iovp;
   2918   1.1       mrg 		syscallarg(int) iovcnt;
   2919   1.1       mrg 	} */ *uap = v;
   2920   1.6       eeh 	int fd = SCARG(uap, fd);
   2921  1.25  augustss 	struct file *fp;
   2922  1.25  augustss 	struct filedesc *fdp = p->p_fd;
   2923   1.6       eeh 
   2924   1.6       eeh 	if ((u_int)fd >= fdp->fd_nfiles ||
   2925   1.6       eeh 	    (fp = fdp->fd_ofiles[fd]) == NULL ||
   2926   1.6       eeh 	    (fp->f_flag & FREAD) == 0)
   2927   1.6       eeh 		return (EBADF);
   2928   1.6       eeh 
   2929  1.10       mrg 	return (dofilereadv32(p, fd, fp, (struct netbsd32_iovec *)(u_long)SCARG(uap, iovp),
   2930   1.6       eeh 			      SCARG(uap, iovcnt), &fp->f_offset, FOF_UPDATE_OFFSET, retval));
   2931   1.6       eeh }
   2932   1.6       eeh 
   2933   1.6       eeh /* Damn thing copies in the iovec! */
   2934   1.6       eeh int
   2935   1.6       eeh dofilereadv32(p, fd, fp, iovp, iovcnt, offset, flags, retval)
   2936   1.6       eeh 	struct proc *p;
   2937   1.6       eeh 	int fd;
   2938   1.6       eeh 	struct file *fp;
   2939  1.10       mrg 	struct netbsd32_iovec *iovp;
   2940   1.6       eeh 	int iovcnt;
   2941   1.6       eeh 	off_t *offset;
   2942   1.6       eeh 	int flags;
   2943   1.6       eeh 	register_t *retval;
   2944   1.6       eeh {
   2945   1.6       eeh 	struct uio auio;
   2946  1.25  augustss 	struct iovec *iov;
   2947   1.6       eeh 	struct iovec *needfree;
   2948   1.6       eeh 	struct iovec aiov[UIO_SMALLIOV];
   2949   1.6       eeh 	long i, cnt, error = 0;
   2950   1.6       eeh 	u_int iovlen;
   2951   1.6       eeh #ifdef KTRACE
   2952   1.6       eeh 	struct iovec *ktriov = NULL;
   2953   1.6       eeh #endif
   2954   1.1       mrg 
   2955   1.6       eeh 	/* note: can't use iovlen until iovcnt is validated */
   2956   1.6       eeh 	iovlen = iovcnt * sizeof(struct iovec);
   2957   1.6       eeh 	if ((u_int)iovcnt > UIO_SMALLIOV) {
   2958   1.6       eeh 		if ((u_int)iovcnt > IOV_MAX)
   2959   1.6       eeh 			return (EINVAL);
   2960   1.6       eeh 		MALLOC(iov, struct iovec *, iovlen, M_IOV, M_WAITOK);
   2961   1.6       eeh 		needfree = iov;
   2962   1.6       eeh 	} else if ((u_int)iovcnt > 0) {
   2963   1.6       eeh 		iov = aiov;
   2964   1.6       eeh 		needfree = NULL;
   2965   1.6       eeh 	} else
   2966   1.6       eeh 		return (EINVAL);
   2967   1.1       mrg 
   2968   1.6       eeh 	auio.uio_iov = iov;
   2969   1.6       eeh 	auio.uio_iovcnt = iovcnt;
   2970   1.6       eeh 	auio.uio_rw = UIO_READ;
   2971   1.6       eeh 	auio.uio_segflg = UIO_USERSPACE;
   2972   1.6       eeh 	auio.uio_procp = p;
   2973  1.10       mrg 	error = netbsd32_to_iovecin(iovp, iov, iovcnt);
   2974   1.6       eeh 	if (error)
   2975   1.6       eeh 		goto done;
   2976   1.6       eeh 	auio.uio_resid = 0;
   2977   1.6       eeh 	for (i = 0; i < iovcnt; i++) {
   2978   1.6       eeh 		auio.uio_resid += iov->iov_len;
   2979   1.6       eeh 		/*
   2980   1.6       eeh 		 * Reads return ssize_t because -1 is returned on error.
   2981   1.6       eeh 		 * Therefore we must restrict the length to SSIZE_MAX to
   2982   1.6       eeh 		 * avoid garbage return values.
   2983   1.6       eeh 		 */
   2984   1.6       eeh 		if (iov->iov_len > SSIZE_MAX || auio.uio_resid > SSIZE_MAX) {
   2985   1.6       eeh 			error = EINVAL;
   2986   1.6       eeh 			goto done;
   2987   1.6       eeh 		}
   2988   1.6       eeh 		iov++;
   2989   1.6       eeh 	}
   2990   1.6       eeh #ifdef KTRACE
   2991   1.6       eeh 	/*
   2992   1.6       eeh 	 * if tracing, save a copy of iovec
   2993   1.6       eeh 	 */
   2994   1.6       eeh 	if (KTRPOINT(p, KTR_GENIO))  {
   2995   1.6       eeh 		MALLOC(ktriov, struct iovec *, iovlen, M_TEMP, M_WAITOK);
   2996   1.6       eeh 		memcpy((caddr_t)ktriov, (caddr_t)auio.uio_iov, iovlen);
   2997   1.6       eeh 	}
   2998   1.6       eeh #endif
   2999   1.6       eeh 	cnt = auio.uio_resid;
   3000   1.6       eeh 	error = (*fp->f_ops->fo_read)(fp, offset, &auio, fp->f_cred, flags);
   3001   1.6       eeh 	if (error)
   3002   1.6       eeh 		if (auio.uio_resid != cnt && (error == ERESTART ||
   3003   1.6       eeh 		    error == EINTR || error == EWOULDBLOCK))
   3004   1.6       eeh 			error = 0;
   3005   1.6       eeh 	cnt -= auio.uio_resid;
   3006   1.6       eeh #ifdef KTRACE
   3007   1.6       eeh 	if (KTRPOINT(p, KTR_GENIO))
   3008   1.6       eeh 		if (error == 0) {
   3009  1.26  sommerfe 			ktrgenio(p, fd, UIO_READ, ktriov, cnt,
   3010   1.6       eeh 			    error);
   3011   1.6       eeh 		FREE(ktriov, M_TEMP);
   3012   1.6       eeh 	}
   3013   1.6       eeh #endif
   3014   1.6       eeh 	*retval = cnt;
   3015   1.6       eeh done:
   3016   1.6       eeh 	if (needfree)
   3017   1.6       eeh 		FREE(needfree, M_IOV);
   3018   1.1       mrg 	return (error);
   3019   1.1       mrg }
   3020   1.1       mrg 
   3021   1.6       eeh 
   3022   1.1       mrg int
   3023  1.19       eeh netbsd32_writev(p, v, retval)
   3024   1.1       mrg 	struct proc *p;
   3025   1.1       mrg 	void *v;
   3026   1.1       mrg 	register_t *retval;
   3027   1.1       mrg {
   3028  1.19       eeh 	struct netbsd32_writev_args /* {
   3029   1.1       mrg 		syscallarg(int) fd;
   3030  1.10       mrg 		syscallarg(const netbsd32_iovecp_t) iovp;
   3031   1.1       mrg 		syscallarg(int) iovcnt;
   3032   1.1       mrg 	} */ *uap = v;
   3033   1.6       eeh 	int fd = SCARG(uap, fd);
   3034  1.25  augustss 	struct file *fp;
   3035  1.25  augustss 	struct filedesc *fdp = p->p_fd;
   3036   1.6       eeh 
   3037   1.6       eeh 	if ((u_int)fd >= fdp->fd_nfiles ||
   3038   1.6       eeh 	    (fp = fdp->fd_ofiles[fd]) == NULL ||
   3039   1.6       eeh 	    (fp->f_flag & FWRITE) == 0)
   3040   1.6       eeh 		return (EBADF);
   3041   1.6       eeh 
   3042  1.10       mrg 	return (dofilewritev32(p, fd, fp, (struct netbsd32_iovec *)(u_long)SCARG(uap, iovp),
   3043   1.6       eeh 			       SCARG(uap, iovcnt), &fp->f_offset, FOF_UPDATE_OFFSET, retval));
   3044   1.6       eeh }
   3045   1.6       eeh 
   3046   1.6       eeh int
   3047   1.6       eeh dofilewritev32(p, fd, fp, iovp, iovcnt, offset, flags, retval)
   3048   1.6       eeh 	struct proc *p;
   3049   1.6       eeh 	int fd;
   3050   1.6       eeh 	struct file *fp;
   3051  1.10       mrg 	struct netbsd32_iovec *iovp;
   3052   1.6       eeh 	int iovcnt;
   3053   1.6       eeh 	off_t *offset;
   3054   1.6       eeh 	int flags;
   3055   1.6       eeh 	register_t *retval;
   3056   1.6       eeh {
   3057   1.6       eeh 	struct uio auio;
   3058  1.25  augustss 	struct iovec *iov;
   3059   1.6       eeh 	struct iovec *needfree;
   3060   1.6       eeh 	struct iovec aiov[UIO_SMALLIOV];
   3061   1.6       eeh 	long i, cnt, error = 0;
   3062   1.6       eeh 	u_int iovlen;
   3063   1.6       eeh #ifdef KTRACE
   3064   1.6       eeh 	struct iovec *ktriov = NULL;
   3065   1.6       eeh #endif
   3066   1.1       mrg 
   3067   1.6       eeh 	/* note: can't use iovlen until iovcnt is validated */
   3068   1.6       eeh 	iovlen = iovcnt * sizeof(struct iovec);
   3069   1.6       eeh 	if ((u_int)iovcnt > UIO_SMALLIOV) {
   3070   1.6       eeh 		if ((u_int)iovcnt > IOV_MAX)
   3071   1.6       eeh 			return (EINVAL);
   3072   1.6       eeh 		MALLOC(iov, struct iovec *, iovlen, M_IOV, M_WAITOK);
   3073   1.6       eeh 		needfree = iov;
   3074   1.6       eeh 	} else if ((u_int)iovcnt > 0) {
   3075   1.6       eeh 		iov = aiov;
   3076   1.6       eeh 		needfree = NULL;
   3077   1.6       eeh 	} else
   3078   1.6       eeh 		return (EINVAL);
   3079   1.1       mrg 
   3080   1.6       eeh 	auio.uio_iov = iov;
   3081   1.6       eeh 	auio.uio_iovcnt = iovcnt;
   3082   1.6       eeh 	auio.uio_rw = UIO_WRITE;
   3083   1.6       eeh 	auio.uio_segflg = UIO_USERSPACE;
   3084   1.6       eeh 	auio.uio_procp = p;
   3085  1.10       mrg 	error = netbsd32_to_iovecin(iovp, iov, iovcnt);
   3086   1.6       eeh 	if (error)
   3087   1.6       eeh 		goto done;
   3088   1.6       eeh 	auio.uio_resid = 0;
   3089   1.6       eeh 	for (i = 0; i < iovcnt; i++) {
   3090   1.6       eeh 		auio.uio_resid += iov->iov_len;
   3091   1.6       eeh 		/*
   3092   1.6       eeh 		 * Writes return ssize_t because -1 is returned on error.
   3093   1.6       eeh 		 * Therefore we must restrict the length to SSIZE_MAX to
   3094   1.6       eeh 		 * avoid garbage return values.
   3095   1.6       eeh 		 */
   3096   1.6       eeh 		if (iov->iov_len > SSIZE_MAX || auio.uio_resid > SSIZE_MAX) {
   3097   1.6       eeh 			error = EINVAL;
   3098   1.6       eeh 			goto done;
   3099   1.6       eeh 		}
   3100   1.6       eeh 		iov++;
   3101   1.6       eeh 	}
   3102   1.6       eeh #ifdef KTRACE
   3103   1.6       eeh 	/*
   3104   1.6       eeh 	 * if tracing, save a copy of iovec
   3105   1.6       eeh 	 */
   3106   1.6       eeh 	if (KTRPOINT(p, KTR_GENIO))  {
   3107   1.6       eeh 		MALLOC(ktriov, struct iovec *, iovlen, M_TEMP, M_WAITOK);
   3108   1.6       eeh 		memcpy((caddr_t)ktriov, (caddr_t)auio.uio_iov, iovlen);
   3109   1.6       eeh 	}
   3110   1.6       eeh #endif
   3111   1.6       eeh 	cnt = auio.uio_resid;
   3112   1.6       eeh 	error = (*fp->f_ops->fo_write)(fp, offset, &auio, fp->f_cred, flags);
   3113   1.6       eeh 	if (error) {
   3114   1.6       eeh 		if (auio.uio_resid != cnt && (error == ERESTART ||
   3115   1.6       eeh 		    error == EINTR || error == EWOULDBLOCK))
   3116   1.6       eeh 			error = 0;
   3117   1.6       eeh 		if (error == EPIPE)
   3118   1.6       eeh 			psignal(p, SIGPIPE);
   3119   1.6       eeh 	}
   3120   1.6       eeh 	cnt -= auio.uio_resid;
   3121   1.6       eeh #ifdef KTRACE
   3122   1.6       eeh 	if (KTRPOINT(p, KTR_GENIO))
   3123   1.6       eeh 		if (error == 0) {
   3124  1.26  sommerfe 			ktrgenio(p, fd, UIO_WRITE, ktriov, cnt,
   3125   1.6       eeh 			    error);
   3126   1.6       eeh 		FREE(ktriov, M_TEMP);
   3127   1.6       eeh 	}
   3128   1.6       eeh #endif
   3129   1.6       eeh 	*retval = cnt;
   3130   1.6       eeh done:
   3131   1.6       eeh 	if (needfree)
   3132   1.6       eeh 		FREE(needfree, M_IOV);
   3133   1.1       mrg 	return (error);
   3134   1.1       mrg }
   3135   1.1       mrg 
   3136   1.6       eeh 
   3137   1.1       mrg int
   3138  1.19       eeh netbsd32_rename(p, v, retval)
   3139   1.1       mrg 	struct proc *p;
   3140   1.1       mrg 	void *v;
   3141   1.1       mrg 	register_t *retval;
   3142   1.1       mrg {
   3143  1.19       eeh 	struct netbsd32_rename_args /* {
   3144  1.10       mrg 		syscallarg(const netbsd32_charp) from;
   3145  1.10       mrg 		syscallarg(const netbsd32_charp) to;
   3146   1.1       mrg 	} */ *uap = v;
   3147   1.1       mrg 	struct sys_rename_args ua;
   3148   1.1       mrg 
   3149  1.20       eeh 	NETBSD32TOP_UAP(from, const char);
   3150  1.20       eeh 	NETBSD32TOP_UAP(to, const char)
   3151   1.6       eeh 
   3152   1.1       mrg 	return (sys_rename(p, &ua, retval));
   3153   1.1       mrg }
   3154   1.1       mrg 
   3155   1.1       mrg int
   3156  1.19       eeh netbsd32_flock(p, v, retval)
   3157   1.6       eeh 	struct proc *p;
   3158   1.6       eeh 	void *v;
   3159   1.6       eeh 	register_t *retval;
   3160   1.6       eeh {
   3161  1.19       eeh 	struct netbsd32_flock_args /* {
   3162   1.6       eeh 		syscallarg(int) fd;
   3163   1.6       eeh 		syscallarg(int) how;
   3164   1.6       eeh 	} */ *uap = v;
   3165   1.6       eeh 	struct sys_flock_args ua;
   3166   1.6       eeh 
   3167  1.11       mrg 	NETBSD32TO64_UAP(fd);
   3168  1.11       mrg 	NETBSD32TO64_UAP(how)
   3169   1.6       eeh 
   3170   1.6       eeh 	return (sys_flock(p, &ua, retval));
   3171   1.6       eeh }
   3172   1.6       eeh 
   3173   1.6       eeh int
   3174  1.19       eeh netbsd32_mkfifo(p, v, retval)
   3175   1.1       mrg 	struct proc *p;
   3176   1.1       mrg 	void *v;
   3177   1.1       mrg 	register_t *retval;
   3178   1.1       mrg {
   3179  1.19       eeh 	struct netbsd32_mkfifo_args /* {
   3180  1.10       mrg 		syscallarg(const netbsd32_charp) path;
   3181   1.1       mrg 		syscallarg(mode_t) mode;
   3182   1.1       mrg 	} */ *uap = v;
   3183   1.1       mrg 	struct sys_mkfifo_args ua;
   3184   1.1       mrg 
   3185  1.11       mrg 	NETBSD32TOP_UAP(path, const char)
   3186  1.11       mrg 	NETBSD32TO64_UAP(mode);
   3187   1.1       mrg 	return (sys_mkfifo(p, &ua, retval));
   3188   1.1       mrg }
   3189   1.1       mrg 
   3190   1.1       mrg int
   3191  1.19       eeh netbsd32_shutdown(p, v, retval)
   3192   1.6       eeh 	struct proc *p;
   3193   1.6       eeh 	void *v;
   3194   1.6       eeh 	register_t *retval;
   3195   1.6       eeh {
   3196  1.19       eeh 	struct netbsd32_shutdown_args /* {
   3197   1.6       eeh 		syscallarg(int) s;
   3198   1.6       eeh 		syscallarg(int) how;
   3199   1.6       eeh 	} */ *uap = v;
   3200   1.6       eeh 	struct sys_shutdown_args ua;
   3201   1.6       eeh 
   3202  1.11       mrg 	NETBSD32TO64_UAP(s)
   3203  1.11       mrg 	NETBSD32TO64_UAP(how);
   3204   1.6       eeh 	return (sys_shutdown(p, &ua, retval));
   3205   1.6       eeh }
   3206   1.6       eeh 
   3207   1.6       eeh int
   3208  1.19       eeh netbsd32_socketpair(p, v, retval)
   3209   1.6       eeh 	struct proc *p;
   3210   1.6       eeh 	void *v;
   3211   1.6       eeh 	register_t *retval;
   3212   1.6       eeh {
   3213  1.19       eeh 	struct netbsd32_socketpair_args /* {
   3214   1.6       eeh 		syscallarg(int) domain;
   3215   1.6       eeh 		syscallarg(int) type;
   3216   1.6       eeh 		syscallarg(int) protocol;
   3217  1.10       mrg 		syscallarg(netbsd32_intp) rsv;
   3218   1.6       eeh 	} */ *uap = v;
   3219   1.6       eeh 	struct sys_socketpair_args ua;
   3220   1.6       eeh 
   3221  1.11       mrg 	NETBSD32TO64_UAP(domain);
   3222  1.11       mrg 	NETBSD32TO64_UAP(type);
   3223  1.11       mrg 	NETBSD32TO64_UAP(protocol);
   3224  1.11       mrg 	NETBSD32TOP_UAP(rsv, int);
   3225   1.6       eeh 	/* Since we're just copying out two `int's we can do this */
   3226   1.6       eeh 	return (sys_socketpair(p, &ua, retval));
   3227   1.6       eeh }
   3228   1.6       eeh 
   3229   1.6       eeh int
   3230  1.19       eeh netbsd32_mkdir(p, v, retval)
   3231   1.1       mrg 	struct proc *p;
   3232   1.1       mrg 	void *v;
   3233   1.1       mrg 	register_t *retval;
   3234   1.1       mrg {
   3235  1.19       eeh 	struct netbsd32_mkdir_args /* {
   3236  1.10       mrg 		syscallarg(const netbsd32_charp) path;
   3237   1.1       mrg 		syscallarg(mode_t) mode;
   3238   1.1       mrg 	} */ *uap = v;
   3239   1.1       mrg 	struct sys_mkdir_args ua;
   3240   1.1       mrg 
   3241  1.11       mrg 	NETBSD32TOP_UAP(path, const char)
   3242  1.11       mrg 	NETBSD32TO64_UAP(mode);
   3243   1.1       mrg 	return (sys_mkdir(p, &ua, retval));
   3244   1.1       mrg }
   3245   1.1       mrg 
   3246   1.1       mrg int
   3247  1.19       eeh netbsd32_rmdir(p, v, retval)
   3248   1.1       mrg 	struct proc *p;
   3249   1.1       mrg 	void *v;
   3250   1.1       mrg 	register_t *retval;
   3251   1.1       mrg {
   3252  1.19       eeh 	struct netbsd32_rmdir_args /* {
   3253  1.10       mrg 		syscallarg(const netbsd32_charp) path;
   3254   1.1       mrg 	} */ *uap = v;
   3255   1.1       mrg 	struct sys_rmdir_args ua;
   3256   1.1       mrg 
   3257  1.11       mrg 	NETBSD32TOP_UAP(path, const char);
   3258   1.1       mrg 	return (sys_rmdir(p, &ua, retval));
   3259   1.1       mrg }
   3260   1.1       mrg 
   3261   1.1       mrg int
   3262  1.19       eeh netbsd32_utimes(p, v, retval)
   3263   1.1       mrg 	struct proc *p;
   3264   1.1       mrg 	void *v;
   3265   1.1       mrg 	register_t *retval;
   3266   1.1       mrg {
   3267  1.19       eeh 	struct netbsd32_utimes_args /* {
   3268  1.10       mrg 		syscallarg(const netbsd32_charp) path;
   3269  1.10       mrg 		syscallarg(const netbsd32_timevalp_t) tptr;
   3270   1.1       mrg 	} */ *uap = v;
   3271   1.6       eeh 	int error;
   3272   1.6       eeh 	struct nameidata nd;
   3273   1.6       eeh 
   3274   1.6       eeh 	NDINIT(&nd, LOOKUP, FOLLOW, UIO_USERSPACE, (char *)(u_long)SCARG(uap, path), p);
   3275   1.6       eeh 	if ((error = namei(&nd)) != 0)
   3276   1.6       eeh 		return (error);
   3277   1.1       mrg 
   3278   1.6       eeh 	error = change_utimes32(nd.ni_vp, (struct timeval *)(u_long)SCARG(uap, tptr), p);
   3279   1.1       mrg 
   3280   1.6       eeh 	vrele(nd.ni_vp);
   3281   1.6       eeh 	return (error);
   3282   1.6       eeh }
   3283   1.6       eeh 
   3284   1.6       eeh /*
   3285   1.6       eeh  * Common routine to set access and modification times given a vnode.
   3286   1.6       eeh  */
   3287   1.6       eeh static int
   3288   1.6       eeh change_utimes32(vp, tptr, p)
   3289   1.6       eeh 	struct vnode *vp;
   3290   1.6       eeh 	struct timeval *tptr;
   3291   1.6       eeh 	struct proc *p;
   3292   1.6       eeh {
   3293  1.10       mrg 	struct netbsd32_timeval tv32[2];
   3294   1.6       eeh 	struct timeval tv[2];
   3295   1.6       eeh 	struct vattr vattr;
   3296   1.6       eeh 	int error;
   3297   1.6       eeh 
   3298   1.6       eeh 	VATTR_NULL(&vattr);
   3299   1.6       eeh 	if (tptr == NULL) {
   3300   1.6       eeh 		microtime(&tv[0]);
   3301   1.6       eeh 		tv[1] = tv[0];
   3302   1.6       eeh 		vattr.va_vaflags |= VA_UTIMES_NULL;
   3303   1.6       eeh 	} else {
   3304   1.6       eeh 		error = copyin(tptr, tv, sizeof(tv));
   3305   1.6       eeh 		if (error)
   3306   1.6       eeh 			return (error);
   3307   1.6       eeh 	}
   3308  1.10       mrg 	netbsd32_to_timeval(&tv32[0], &tv[0]);
   3309  1.10       mrg 	netbsd32_to_timeval(&tv32[1], &tv[1]);
   3310   1.6       eeh 	VOP_LEASE(vp, p, p->p_ucred, LEASE_WRITE);
   3311   1.6       eeh 	vn_lock(vp, LK_EXCLUSIVE | LK_RETRY);
   3312   1.6       eeh 	vattr.va_atime.tv_sec = tv[0].tv_sec;
   3313   1.6       eeh 	vattr.va_atime.tv_nsec = tv[0].tv_usec * 1000;
   3314   1.6       eeh 	vattr.va_mtime.tv_sec = tv[1].tv_sec;
   3315   1.6       eeh 	vattr.va_mtime.tv_nsec = tv[1].tv_usec * 1000;
   3316   1.6       eeh 	error = VOP_SETATTR(vp, &vattr, p->p_ucred, p);
   3317   1.6       eeh 	VOP_UNLOCK(vp, 0);
   3318   1.6       eeh 	return (error);
   3319   1.1       mrg }
   3320   1.1       mrg 
   3321   1.1       mrg int
   3322  1.19       eeh netbsd32_adjtime(p, v, retval)
   3323   1.1       mrg 	struct proc *p;
   3324   1.1       mrg 	void *v;
   3325   1.1       mrg 	register_t *retval;
   3326   1.1       mrg {
   3327  1.19       eeh 	struct netbsd32_adjtime_args /* {
   3328  1.10       mrg 		syscallarg(const netbsd32_timevalp_t) delta;
   3329  1.10       mrg 		syscallarg(netbsd32_timevalp_t) olddelta;
   3330   1.1       mrg 	} */ *uap = v;
   3331  1.10       mrg 	struct netbsd32_timeval atv;
   3332   1.6       eeh 	int32_t ndelta, ntickdelta, odelta;
   3333   1.6       eeh 	int s, error;
   3334   1.6       eeh 	extern long bigadj, timedelta;
   3335   1.6       eeh 	extern int tickdelta;
   3336   1.1       mrg 
   3337   1.6       eeh 	if ((error = suser(p->p_ucred, &p->p_acflag)) != 0)
   3338   1.6       eeh 		return (error);
   3339   1.1       mrg 
   3340   1.6       eeh 	error = copyin((caddr_t)(u_long)SCARG(uap, delta), &atv, sizeof(struct timeval));
   3341   1.1       mrg 	if (error)
   3342   1.1       mrg 		return (error);
   3343   1.6       eeh 	/*
   3344   1.6       eeh 	 * Compute the total correction and the rate at which to apply it.
   3345   1.6       eeh 	 * Round the adjustment down to a whole multiple of the per-tick
   3346   1.6       eeh 	 * delta, so that after some number of incremental changes in
   3347   1.6       eeh 	 * hardclock(), tickdelta will become zero, lest the correction
   3348   1.6       eeh 	 * overshoot and start taking us away from the desired final time.
   3349   1.6       eeh 	 */
   3350   1.6       eeh 	ndelta = atv.tv_sec * 1000000 + atv.tv_usec;
   3351   1.6       eeh 	if (ndelta > bigadj)
   3352   1.6       eeh 		ntickdelta = 10 * tickadj;
   3353   1.6       eeh 	else
   3354   1.6       eeh 		ntickdelta = tickadj;
   3355   1.6       eeh 	if (ndelta % ntickdelta)
   3356   1.6       eeh 		ndelta = ndelta / ntickdelta * ntickdelta;
   3357   1.1       mrg 
   3358   1.6       eeh 	/*
   3359   1.6       eeh 	 * To make hardclock()'s job easier, make the per-tick delta negative
   3360   1.6       eeh 	 * if we want time to run slower; then hardclock can simply compute
   3361   1.6       eeh 	 * tick + tickdelta, and subtract tickdelta from timedelta.
   3362   1.6       eeh 	 */
   3363   1.6       eeh 	if (ndelta < 0)
   3364   1.6       eeh 		ntickdelta = -ntickdelta;
   3365   1.6       eeh 	s = splclock();
   3366   1.6       eeh 	odelta = timedelta;
   3367   1.6       eeh 	timedelta = ndelta;
   3368   1.6       eeh 	tickdelta = ntickdelta;
   3369   1.6       eeh 	splx(s);
   3370   1.6       eeh 
   3371   1.6       eeh 	if (SCARG(uap, olddelta)) {
   3372   1.6       eeh 		atv.tv_sec = odelta / 1000000;
   3373   1.6       eeh 		atv.tv_usec = odelta % 1000000;
   3374   1.6       eeh 		(void) copyout(&atv, (caddr_t)(u_long)SCARG(uap, olddelta),
   3375   1.6       eeh 		    sizeof(struct timeval));
   3376   1.6       eeh 	}
   3377   1.1       mrg 	return (0);
   3378   1.1       mrg }
   3379   1.1       mrg 
   3380   1.1       mrg int
   3381  1.19       eeh netbsd32_quotactl(p, v, retval)
   3382   1.1       mrg 	struct proc *p;
   3383   1.1       mrg 	void *v;
   3384   1.1       mrg 	register_t *retval;
   3385   1.1       mrg {
   3386  1.19       eeh 	struct netbsd32_quotactl_args /* {
   3387  1.10       mrg 		syscallarg(const netbsd32_charp) path;
   3388   1.1       mrg 		syscallarg(int) cmd;
   3389   1.1       mrg 		syscallarg(int) uid;
   3390  1.10       mrg 		syscallarg(netbsd32_caddr_t) arg;
   3391   1.1       mrg 	} */ *uap = v;
   3392   1.1       mrg 	struct sys_quotactl_args ua;
   3393   1.1       mrg 
   3394  1.11       mrg 	NETBSD32TOP_UAP(path, const char);
   3395  1.11       mrg 	NETBSD32TO64_UAP(cmd);
   3396  1.11       mrg 	NETBSD32TO64_UAP(uid);
   3397  1.11       mrg 	NETBSD32TOX64_UAP(arg, caddr_t);
   3398   1.1       mrg 	return (sys_quotactl(p, &ua, retval));
   3399   1.1       mrg }
   3400   1.1       mrg 
   3401   1.6       eeh #if defined(NFS) || defined(NFSSERVER)
   3402   1.1       mrg int
   3403  1.19       eeh netbsd32_nfssvc(p, v, retval)
   3404   1.1       mrg 	struct proc *p;
   3405   1.1       mrg 	void *v;
   3406   1.1       mrg 	register_t *retval;
   3407   1.1       mrg {
   3408   1.6       eeh #if 0
   3409  1.19       eeh 	struct netbsd32_nfssvc_args /* {
   3410   1.1       mrg 		syscallarg(int) flag;
   3411  1.10       mrg 		syscallarg(netbsd32_voidp) argp;
   3412   1.1       mrg 	} */ *uap = v;
   3413   1.1       mrg 	struct sys_nfssvc_args ua;
   3414   1.1       mrg 
   3415  1.11       mrg 	NETBSD32TO64_UAP(flag);
   3416  1.11       mrg 	NETBSD32TOP_UAP(argp, void);
   3417   1.1       mrg 	return (sys_nfssvc(p, &ua, retval));
   3418   1.6       eeh #else
   3419   1.6       eeh 	/* Why would we want to support a 32-bit nfsd? */
   3420   1.6       eeh 	return (ENOSYS);
   3421   1.6       eeh #endif
   3422   1.1       mrg }
   3423   1.6       eeh #endif
   3424   1.1       mrg 
   3425   1.1       mrg int
   3426  1.19       eeh netbsd32_statfs(p, v, retval)
   3427   1.1       mrg 	struct proc *p;
   3428   1.1       mrg 	void *v;
   3429   1.1       mrg 	register_t *retval;
   3430   1.1       mrg {
   3431  1.19       eeh 	struct netbsd32_statfs_args /* {
   3432  1.10       mrg 		syscallarg(const netbsd32_charp) path;
   3433  1.10       mrg 		syscallarg(netbsd32_statfsp_t) buf;
   3434   1.1       mrg 	} */ *uap = v;
   3435  1.25  augustss 	struct mount *mp;
   3436  1.25  augustss 	struct statfs *sp;
   3437  1.10       mrg 	struct netbsd32_statfs s32;
   3438   1.1       mrg 	int error;
   3439   1.6       eeh 	struct nameidata nd;
   3440   1.1       mrg 
   3441   1.6       eeh 	NDINIT(&nd, LOOKUP, FOLLOW, UIO_USERSPACE, (char *)(u_long)SCARG(uap, path), p);
   3442   1.6       eeh 	if ((error = namei(&nd)) != 0)
   3443   1.6       eeh 		return (error);
   3444   1.6       eeh 	mp = nd.ni_vp->v_mount;
   3445   1.6       eeh 	sp = &mp->mnt_stat;
   3446   1.6       eeh 	vrele(nd.ni_vp);
   3447   1.6       eeh 	if ((error = VFS_STATFS(mp, sp, p)) != 0)
   3448   1.1       mrg 		return (error);
   3449   1.6       eeh 	sp->f_flags = mp->mnt_flag & MNT_VISFLAGMASK;
   3450  1.10       mrg 	netbsd32_from_statfs(sp, &s32);
   3451   1.6       eeh 	return (copyout(&s32, (caddr_t)(u_long)SCARG(uap, buf), sizeof(s32)));
   3452   1.1       mrg }
   3453   1.1       mrg 
   3454   1.1       mrg int
   3455  1.19       eeh netbsd32_fstatfs(p, v, retval)
   3456   1.1       mrg 	struct proc *p;
   3457   1.1       mrg 	void *v;
   3458   1.1       mrg 	register_t *retval;
   3459   1.1       mrg {
   3460  1.19       eeh 	struct netbsd32_fstatfs_args /* {
   3461   1.1       mrg 		syscallarg(int) fd;
   3462  1.10       mrg 		syscallarg(netbsd32_statfsp_t) buf;
   3463   1.1       mrg 	} */ *uap = v;
   3464   1.6       eeh 	struct file *fp;
   3465  1.25  augustss 	struct mount *mp;
   3466  1.25  augustss 	struct statfs *sp;
   3467  1.10       mrg 	struct netbsd32_statfs s32;
   3468   1.1       mrg 	int error;
   3469   1.1       mrg 
   3470  1.12   thorpej 	/* getvnode() will use the descriptor for us */
   3471   1.6       eeh 	if ((error = getvnode(p->p_fd, SCARG(uap, fd), &fp)) != 0)
   3472   1.6       eeh 		return (error);
   3473   1.6       eeh 	mp = ((struct vnode *)fp->f_data)->v_mount;
   3474   1.6       eeh 	sp = &mp->mnt_stat;
   3475   1.6       eeh 	if ((error = VFS_STATFS(mp, sp, p)) != 0)
   3476  1.12   thorpej 		goto out;
   3477   1.6       eeh 	sp->f_flags = mp->mnt_flag & MNT_VISFLAGMASK;
   3478  1.10       mrg 	netbsd32_from_statfs(sp, &s32);
   3479  1.12   thorpej 	error = copyout(&s32, (caddr_t)(u_long)SCARG(uap, buf), sizeof(s32));
   3480  1.12   thorpej  out:
   3481  1.19       eeh 	FILE_UNUSE(fp, p);
   3482  1.12   thorpej 	return (error);
   3483   1.1       mrg }
   3484   1.1       mrg 
   3485   1.6       eeh #if defined(NFS) || defined(NFSSERVER)
   3486   1.1       mrg int
   3487  1.19       eeh netbsd32_getfh(p, v, retval)
   3488   1.1       mrg 	struct proc *p;
   3489   1.1       mrg 	void *v;
   3490   1.1       mrg 	register_t *retval;
   3491   1.1       mrg {
   3492  1.19       eeh 	struct netbsd32_getfh_args /* {
   3493  1.10       mrg 		syscallarg(const netbsd32_charp) fname;
   3494  1.10       mrg 		syscallarg(netbsd32_fhandlep_t) fhp;
   3495   1.1       mrg 	} */ *uap = v;
   3496   1.1       mrg 	struct sys_getfh_args ua;
   3497   1.1       mrg 
   3498  1.11       mrg 	NETBSD32TOP_UAP(fname, const char);
   3499  1.11       mrg 	NETBSD32TOP_UAP(fhp, struct fhandle);
   3500   1.6       eeh 	/* Lucky for us a fhandlep_t doesn't change sizes */
   3501   1.1       mrg 	return (sys_getfh(p, &ua, retval));
   3502   1.1       mrg }
   3503   1.6       eeh #endif
   3504   1.1       mrg 
   3505   1.1       mrg int
   3506  1.19       eeh netbsd32_sysarch(p, v, retval)
   3507   1.1       mrg 	struct proc *p;
   3508   1.1       mrg 	void *v;
   3509   1.1       mrg 	register_t *retval;
   3510   1.1       mrg {
   3511  1.19       eeh 	struct netbsd32_sysarch_args /* {
   3512   1.1       mrg 		syscallarg(int) op;
   3513  1.10       mrg 		syscallarg(netbsd32_voidp) parms;
   3514   1.1       mrg 	} */ *uap = v;
   3515   1.1       mrg 
   3516   1.6       eeh 	switch (SCARG(uap, op)) {
   3517   1.6       eeh 	default:
   3518  1.19       eeh 		printf("(sparc64) netbsd32_sysarch(%d)\n", SCARG(uap, op));
   3519   1.6       eeh 		return EINVAL;
   3520   1.6       eeh 	}
   3521   1.1       mrg }
   3522   1.1       mrg 
   3523   1.1       mrg int
   3524  1.19       eeh netbsd32_pread(p, v, retval)
   3525   1.1       mrg 	struct proc *p;
   3526   1.1       mrg 	void *v;
   3527   1.1       mrg 	register_t *retval;
   3528   1.1       mrg {
   3529  1.19       eeh 	struct netbsd32_pread_args /* {
   3530   1.1       mrg 		syscallarg(int) fd;
   3531  1.10       mrg 		syscallarg(netbsd32_voidp) buf;
   3532  1.10       mrg 		syscallarg(netbsd32_size_t) nbyte;
   3533   1.1       mrg 		syscallarg(int) pad;
   3534   1.1       mrg 		syscallarg(off_t) offset;
   3535   1.1       mrg 	} */ *uap = v;
   3536   1.1       mrg 	struct sys_pread_args ua;
   3537   1.1       mrg 	ssize_t rt;
   3538   1.1       mrg 	int error;
   3539   1.1       mrg 
   3540  1.11       mrg 	NETBSD32TO64_UAP(fd);
   3541  1.11       mrg 	NETBSD32TOP_UAP(buf, void);
   3542  1.11       mrg 	NETBSD32TOX_UAP(nbyte, size_t);
   3543  1.11       mrg 	NETBSD32TO64_UAP(pad);
   3544  1.11       mrg 	NETBSD32TO64_UAP(offset);
   3545   1.1       mrg 	error = sys_pread(p, &ua, (register_t *)&rt);
   3546  1.32       mrg 	*retval = rt;
   3547   1.1       mrg 	return (error);
   3548   1.1       mrg }
   3549   1.1       mrg 
   3550   1.1       mrg int
   3551  1.19       eeh netbsd32_pwrite(p, v, retval)
   3552   1.1       mrg 	struct proc *p;
   3553   1.1       mrg 	void *v;
   3554   1.1       mrg 	register_t *retval;
   3555   1.1       mrg {
   3556  1.19       eeh 	struct netbsd32_pwrite_args /* {
   3557   1.1       mrg 		syscallarg(int) fd;
   3558  1.10       mrg 		syscallarg(const netbsd32_voidp) buf;
   3559  1.10       mrg 		syscallarg(netbsd32_size_t) nbyte;
   3560   1.1       mrg 		syscallarg(int) pad;
   3561   1.1       mrg 		syscallarg(off_t) offset;
   3562   1.1       mrg 	} */ *uap = v;
   3563   1.1       mrg 	struct sys_pwrite_args ua;
   3564   1.1       mrg 	ssize_t rt;
   3565   1.1       mrg 	int error;
   3566   1.1       mrg 
   3567  1.11       mrg 	NETBSD32TO64_UAP(fd);
   3568  1.11       mrg 	NETBSD32TOP_UAP(buf, void);
   3569  1.11       mrg 	NETBSD32TOX_UAP(nbyte, size_t);
   3570  1.11       mrg 	NETBSD32TO64_UAP(pad);
   3571  1.11       mrg 	NETBSD32TO64_UAP(offset);
   3572   1.1       mrg 	error = sys_pwrite(p, &ua, (register_t *)&rt);
   3573  1.32       mrg 	*retval = rt;
   3574   1.1       mrg 	return (error);
   3575   1.1       mrg }
   3576   1.1       mrg 
   3577   1.6       eeh #ifdef NTP
   3578   1.1       mrg int
   3579  1.19       eeh netbsd32_ntp_gettime(p, v, retval)
   3580   1.1       mrg 	struct proc *p;
   3581   1.1       mrg 	void *v;
   3582   1.1       mrg 	register_t *retval;
   3583   1.1       mrg {
   3584  1.19       eeh 	struct netbsd32_ntp_gettime_args /* {
   3585  1.10       mrg 		syscallarg(netbsd32_ntptimevalp_t) ntvp;
   3586   1.1       mrg 	} */ *uap = v;
   3587  1.10       mrg 	struct netbsd32_ntptimeval ntv32;
   3588   1.6       eeh 	struct timeval atv;
   3589   1.1       mrg 	struct ntptimeval ntv;
   3590   1.6       eeh 	int error = 0;
   3591   1.6       eeh 	int s;
   3592   1.1       mrg 
   3593   1.6       eeh 	/* The following are NTP variables */
   3594   1.6       eeh 	extern long time_maxerror;
   3595   1.6       eeh 	extern long time_esterror;
   3596   1.6       eeh 	extern int time_status;
   3597   1.6       eeh 	extern int time_state;	/* clock state */
   3598   1.6       eeh 	extern int time_status;	/* clock status bits */
   3599   1.6       eeh 
   3600   1.6       eeh 	if (SCARG(uap, ntvp)) {
   3601   1.6       eeh 		s = splclock();
   3602   1.6       eeh #ifdef EXT_CLOCK
   3603   1.6       eeh 		/*
   3604   1.6       eeh 		 * The microtime() external clock routine returns a
   3605   1.6       eeh 		 * status code. If less than zero, we declare an error
   3606   1.6       eeh 		 * in the clock status word and return the kernel
   3607   1.6       eeh 		 * (software) time variable. While there are other
   3608   1.6       eeh 		 * places that call microtime(), this is the only place
   3609   1.6       eeh 		 * that matters from an application point of view.
   3610   1.6       eeh 		 */
   3611   1.6       eeh 		if (microtime(&atv) < 0) {
   3612   1.6       eeh 			time_status |= STA_CLOCKERR;
   3613   1.6       eeh 			ntv.time = time;
   3614   1.6       eeh 		} else
   3615   1.6       eeh 			time_status &= ~STA_CLOCKERR;
   3616   1.6       eeh #else /* EXT_CLOCK */
   3617   1.6       eeh 		microtime(&atv);
   3618   1.6       eeh #endif /* EXT_CLOCK */
   3619   1.6       eeh 		ntv.time = atv;
   3620   1.6       eeh 		ntv.maxerror = time_maxerror;
   3621   1.6       eeh 		ntv.esterror = time_esterror;
   3622   1.6       eeh 		(void) splx(s);
   3623   1.1       mrg 
   3624  1.10       mrg 		netbsd32_from_timeval(&ntv.time, &ntv32.time);
   3625  1.10       mrg 		ntv32.maxerror = (netbsd32_long)ntv.maxerror;
   3626  1.10       mrg 		ntv32.esterror = (netbsd32_long)ntv.esterror;
   3627   1.6       eeh 		error = copyout((caddr_t)&ntv32, (caddr_t)(u_long)SCARG(uap, ntvp),
   3628   1.6       eeh 		    sizeof(ntv32));
   3629   1.6       eeh 	}
   3630   1.6       eeh 	if (!error) {
   3631   1.6       eeh 
   3632   1.6       eeh 		/*
   3633   1.6       eeh 		 * Status word error decode. If any of these conditions
   3634   1.6       eeh 		 * occur, an error is returned, instead of the status
   3635   1.6       eeh 		 * word. Most applications will care only about the fact
   3636   1.6       eeh 		 * the system clock may not be trusted, not about the
   3637   1.6       eeh 		 * details.
   3638   1.6       eeh 		 *
   3639   1.6       eeh 		 * Hardware or software error
   3640   1.6       eeh 		 */
   3641   1.6       eeh 		if ((time_status & (STA_UNSYNC | STA_CLOCKERR)) ||
   3642   1.6       eeh 
   3643   1.6       eeh 		/*
   3644   1.6       eeh 		 * PPS signal lost when either time or frequency
   3645   1.6       eeh 		 * synchronization requested
   3646   1.6       eeh 		 */
   3647   1.6       eeh 		    (time_status & (STA_PPSFREQ | STA_PPSTIME) &&
   3648   1.6       eeh 		    !(time_status & STA_PPSSIGNAL)) ||
   3649   1.6       eeh 
   3650   1.6       eeh 		/*
   3651   1.6       eeh 		 * PPS jitter exceeded when time synchronization
   3652   1.6       eeh 		 * requested
   3653   1.6       eeh 		 */
   3654   1.6       eeh 		    (time_status & STA_PPSTIME &&
   3655   1.6       eeh 		    time_status & STA_PPSJITTER) ||
   3656   1.6       eeh 
   3657   1.6       eeh 		/*
   3658   1.6       eeh 		 * PPS wander exceeded or calibration error when
   3659   1.6       eeh 		 * frequency synchronization requested
   3660   1.6       eeh 		 */
   3661   1.6       eeh 		    (time_status & STA_PPSFREQ &&
   3662   1.6       eeh 		    time_status & (STA_PPSWANDER | STA_PPSERROR)))
   3663   1.6       eeh 			*retval = TIME_ERROR;
   3664   1.6       eeh 		else
   3665  1.32       mrg 			*retval = time_state;
   3666   1.1       mrg 	}
   3667   1.6       eeh 	return(error);
   3668   1.1       mrg }
   3669   1.1       mrg 
   3670   1.1       mrg int
   3671  1.19       eeh netbsd32_ntp_adjtime(p, v, retval)
   3672   1.1       mrg 	struct proc *p;
   3673   1.1       mrg 	void *v;
   3674   1.1       mrg 	register_t *retval;
   3675   1.1       mrg {
   3676  1.19       eeh 	struct netbsd32_ntp_adjtime_args /* {
   3677  1.10       mrg 		syscallarg(netbsd32_timexp_t) tp;
   3678   1.1       mrg 	} */ *uap = v;
   3679  1.10       mrg 	struct netbsd32_timex ntv32;
   3680   1.6       eeh 	struct timex ntv;
   3681   1.6       eeh 	int error = 0;
   3682   1.6       eeh 	int modes;
   3683   1.6       eeh 	int s;
   3684   1.6       eeh 	extern long time_freq;		/* frequency offset (scaled ppm) */
   3685   1.6       eeh 	extern long time_maxerror;
   3686   1.6       eeh 	extern long time_esterror;
   3687   1.6       eeh 	extern int time_state;	/* clock state */
   3688   1.6       eeh 	extern int time_status;	/* clock status bits */
   3689   1.6       eeh 	extern long time_constant;		/* pll time constant */
   3690   1.6       eeh 	extern long time_offset;		/* time offset (us) */
   3691   1.6       eeh 	extern long time_tolerance;	/* frequency tolerance (scaled ppm) */
   3692   1.6       eeh 	extern long time_precision;	/* clock precision (us) */
   3693   1.6       eeh 
   3694   1.6       eeh 	if ((error = copyin((caddr_t)(u_long)SCARG(uap, tp), (caddr_t)&ntv32,
   3695   1.6       eeh 			sizeof(ntv32))))
   3696   1.6       eeh 		return (error);
   3697  1.10       mrg 	netbsd32_to_timex(&ntv32, &ntv);
   3698   1.1       mrg 
   3699   1.6       eeh 	/*
   3700   1.6       eeh 	 * Update selected clock variables - only the superuser can
   3701   1.6       eeh 	 * change anything. Note that there is no error checking here on
   3702   1.6       eeh 	 * the assumption the superuser should know what it is doing.
   3703   1.6       eeh 	 */
   3704   1.6       eeh 	modes = ntv.modes;
   3705   1.6       eeh 	if (modes != 0 && (error = suser(p->p_ucred, &p->p_acflag)))
   3706   1.1       mrg 		return (error);
   3707   1.1       mrg 
   3708   1.6       eeh 	s = splclock();
   3709   1.6       eeh 	if (modes & MOD_FREQUENCY)
   3710   1.6       eeh #ifdef PPS_SYNC
   3711   1.6       eeh 		time_freq = ntv.freq - pps_freq;
   3712   1.6       eeh #else /* PPS_SYNC */
   3713   1.6       eeh 		time_freq = ntv.freq;
   3714   1.6       eeh #endif /* PPS_SYNC */
   3715   1.6       eeh 	if (modes & MOD_MAXERROR)
   3716   1.6       eeh 		time_maxerror = ntv.maxerror;
   3717   1.6       eeh 	if (modes & MOD_ESTERROR)
   3718   1.6       eeh 		time_esterror = ntv.esterror;
   3719   1.6       eeh 	if (modes & MOD_STATUS) {
   3720   1.6       eeh 		time_status &= STA_RONLY;
   3721   1.6       eeh 		time_status |= ntv.status & ~STA_RONLY;
   3722   1.6       eeh 	}
   3723   1.6       eeh 	if (modes & MOD_TIMECONST)
   3724   1.6       eeh 		time_constant = ntv.constant;
   3725   1.6       eeh 	if (modes & MOD_OFFSET)
   3726   1.6       eeh 		hardupdate(ntv.offset);
   3727   1.6       eeh 
   3728   1.6       eeh 	/*
   3729   1.6       eeh 	 * Retrieve all clock variables
   3730   1.6       eeh 	 */
   3731   1.6       eeh 	if (time_offset < 0)
   3732   1.6       eeh 		ntv.offset = -(-time_offset >> SHIFT_UPDATE);
   3733   1.6       eeh 	else
   3734   1.6       eeh 		ntv.offset = time_offset >> SHIFT_UPDATE;
   3735   1.6       eeh #ifdef PPS_SYNC
   3736   1.6       eeh 	ntv.freq = time_freq + pps_freq;
   3737   1.6       eeh #else /* PPS_SYNC */
   3738   1.6       eeh 	ntv.freq = time_freq;
   3739   1.6       eeh #endif /* PPS_SYNC */
   3740   1.6       eeh 	ntv.maxerror = time_maxerror;
   3741   1.6       eeh 	ntv.esterror = time_esterror;
   3742   1.6       eeh 	ntv.status = time_status;
   3743   1.6       eeh 	ntv.constant = time_constant;
   3744   1.6       eeh 	ntv.precision = time_precision;
   3745   1.6       eeh 	ntv.tolerance = time_tolerance;
   3746   1.6       eeh #ifdef PPS_SYNC
   3747   1.6       eeh 	ntv.shift = pps_shift;
   3748   1.6       eeh 	ntv.ppsfreq = pps_freq;
   3749   1.6       eeh 	ntv.jitter = pps_jitter >> PPS_AVG;
   3750   1.6       eeh 	ntv.stabil = pps_stabil;
   3751   1.6       eeh 	ntv.calcnt = pps_calcnt;
   3752   1.6       eeh 	ntv.errcnt = pps_errcnt;
   3753   1.6       eeh 	ntv.jitcnt = pps_jitcnt;
   3754   1.6       eeh 	ntv.stbcnt = pps_stbcnt;
   3755   1.6       eeh #endif /* PPS_SYNC */
   3756   1.6       eeh 	(void)splx(s);
   3757   1.6       eeh 
   3758  1.32       mrg 	netbsd32_from_timex(&ntv, &ntv32);
   3759  1.32       mrg 	error = copyout((caddr_t)&ntv32, (caddr_t)(u_long)SCARG(uap, tp),
   3760  1.32       mrg 	    sizeof(ntv32));
   3761   1.6       eeh 	if (!error) {
   3762   1.6       eeh 
   3763   1.6       eeh 		/*
   3764   1.6       eeh 		 * Status word error decode. See comments in
   3765   1.6       eeh 		 * ntp_gettime() routine.
   3766   1.6       eeh 		 */
   3767   1.6       eeh 		if ((time_status & (STA_UNSYNC | STA_CLOCKERR)) ||
   3768   1.6       eeh 		    (time_status & (STA_PPSFREQ | STA_PPSTIME) &&
   3769   1.6       eeh 		    !(time_status & STA_PPSSIGNAL)) ||
   3770   1.6       eeh 		    (time_status & STA_PPSTIME &&
   3771   1.6       eeh 		    time_status & STA_PPSJITTER) ||
   3772   1.6       eeh 		    (time_status & STA_PPSFREQ &&
   3773   1.6       eeh 		    time_status & (STA_PPSWANDER | STA_PPSERROR)))
   3774   1.6       eeh 			*retval = TIME_ERROR;
   3775   1.6       eeh 		else
   3776  1.32       mrg 			*retval = time_state;
   3777   1.6       eeh 	}
   3778   1.6       eeh 	return error;
   3779   1.6       eeh }
   3780   1.6       eeh #endif
   3781   1.6       eeh 
   3782   1.6       eeh int
   3783  1.19       eeh netbsd32_setgid(p, v, retval)
   3784   1.6       eeh 	struct proc *p;
   3785   1.6       eeh 	void *v;
   3786   1.6       eeh 	register_t *retval;
   3787   1.6       eeh {
   3788  1.19       eeh 	struct netbsd32_setgid_args /* {
   3789   1.6       eeh 		syscallarg(gid_t) gid;
   3790   1.6       eeh 	} */ *uap = v;
   3791   1.6       eeh 	struct sys_setgid_args ua;
   3792   1.6       eeh 
   3793  1.11       mrg 	NETBSD32TO64_UAP(gid);
   3794   1.6       eeh 	return (sys_setgid(p, v, retval));
   3795   1.6       eeh }
   3796   1.6       eeh 
   3797   1.6       eeh int
   3798  1.19       eeh netbsd32_setegid(p, v, retval)
   3799   1.6       eeh 	struct proc *p;
   3800   1.6       eeh 	void *v;
   3801   1.6       eeh 	register_t *retval;
   3802   1.6       eeh {
   3803  1.19       eeh 	struct netbsd32_setegid_args /* {
   3804   1.6       eeh 		syscallarg(gid_t) egid;
   3805   1.6       eeh 	} */ *uap = v;
   3806   1.6       eeh 	struct sys_setegid_args ua;
   3807   1.6       eeh 
   3808  1.11       mrg 	NETBSD32TO64_UAP(egid);
   3809   1.6       eeh 	return (sys_setegid(p, v, retval));
   3810   1.6       eeh }
   3811   1.6       eeh 
   3812   1.6       eeh int
   3813  1.19       eeh netbsd32_seteuid(p, v, retval)
   3814   1.6       eeh 	struct proc *p;
   3815   1.6       eeh 	void *v;
   3816   1.6       eeh 	register_t *retval;
   3817   1.6       eeh {
   3818  1.19       eeh 	struct netbsd32_seteuid_args /* {
   3819   1.6       eeh 		syscallarg(gid_t) euid;
   3820   1.6       eeh 	} */ *uap = v;
   3821   1.6       eeh 	struct sys_seteuid_args ua;
   3822   1.6       eeh 
   3823  1.11       mrg 	NETBSD32TO64_UAP(euid);
   3824   1.6       eeh 	return (sys_seteuid(p, v, retval));
   3825   1.1       mrg }
   3826   1.1       mrg 
   3827   1.6       eeh #ifdef LFS
   3828   1.1       mrg int
   3829  1.20       eeh netbsd32_sys_lfs_bmapv(p, v, retval)
   3830   1.1       mrg 	struct proc *p;
   3831   1.1       mrg 	void *v;
   3832   1.1       mrg 	register_t *retval;
   3833   1.1       mrg {
   3834   1.6       eeh #if 0
   3835  1.19       eeh 	struct netbsd32_lfs_bmapv_args /* {
   3836  1.10       mrg 		syscallarg(netbsd32_fsid_tp_t) fsidp;
   3837  1.10       mrg 		syscallarg(netbsd32_block_infop_t) blkiov;
   3838   1.1       mrg 		syscallarg(int) blkcnt;
   3839   1.1       mrg 	} */ *uap = v;
   3840   1.1       mrg 	struct sys_lfs_bmapv_args ua;
   3841   1.1       mrg 
   3842  1.11       mrg 	NETBSD32TOP_UAP(fdidp, struct fsid);
   3843  1.11       mrg 	NETBSD32TO64_UAP(blkcnt);
   3844   1.1       mrg 	/* XXX finish me */
   3845   1.1       mrg #else
   3846   1.1       mrg 
   3847   1.1       mrg 	return (ENOSYS);	/* XXX */
   3848   1.1       mrg #endif
   3849   1.1       mrg }
   3850   1.1       mrg 
   3851   1.1       mrg int
   3852  1.20       eeh netbsd32_sys_lfs_markv(p, v, retval)
   3853   1.1       mrg 	struct proc *p;
   3854   1.1       mrg 	void *v;
   3855   1.1       mrg 	register_t *retval;
   3856   1.1       mrg {
   3857  1.20       eeh #if 0
   3858  1.19       eeh 	struct netbsd32_lfs_markv_args /* {
   3859  1.10       mrg 		syscallarg(netbsd32_fsid_tp_t) fsidp;
   3860  1.10       mrg 		syscallarg(netbsd32_block_infop_t) blkiov;
   3861   1.1       mrg 		syscallarg(int) blkcnt;
   3862   1.1       mrg 	} */ *uap = v;
   3863  1.20       eeh #endif
   3864   1.1       mrg 
   3865   1.1       mrg 	return (ENOSYS);	/* XXX */
   3866   1.1       mrg }
   3867   1.1       mrg 
   3868   1.1       mrg int
   3869  1.20       eeh netbsd32_sys_lfs_segclean(p, v, retval)
   3870   1.1       mrg 	struct proc *p;
   3871   1.1       mrg 	void *v;
   3872   1.1       mrg 	register_t *retval;
   3873   1.1       mrg {
   3874  1.20       eeh #if 0
   3875  1.19       eeh 	struct netbsd32_lfs_segclean_args /* {
   3876  1.10       mrg 		syscallarg(netbsd32_fsid_tp_t) fsidp;
   3877  1.10       mrg 		syscallarg(netbsd32_u_long) segment;
   3878   1.1       mrg 	} */ *uap = v;
   3879  1.20       eeh #endif
   3880  1.20       eeh 
   3881   1.1       mrg 	return (ENOSYS);	/* XXX */
   3882   1.1       mrg }
   3883   1.1       mrg 
   3884   1.1       mrg int
   3885  1.20       eeh netbsd32_sys_lfs_segwait(p, v, retval)
   3886   1.1       mrg 	struct proc *p;
   3887   1.1       mrg 	void *v;
   3888   1.1       mrg 	register_t *retval;
   3889   1.1       mrg {
   3890  1.20       eeh #if 0
   3891  1.19       eeh 	struct netbsd32_lfs_segwait_args /* {
   3892  1.10       mrg 		syscallarg(netbsd32_fsid_tp_t) fsidp;
   3893  1.10       mrg 		syscallarg(netbsd32_timevalp_t) tv;
   3894   1.1       mrg 	} */ *uap = v;
   3895  1.20       eeh #endif
   3896  1.20       eeh 
   3897   1.1       mrg 	return (ENOSYS);	/* XXX */
   3898   1.1       mrg }
   3899   1.6       eeh #endif
   3900   1.1       mrg 
   3901   1.1       mrg int
   3902  1.19       eeh netbsd32_pathconf(p, v, retval)
   3903   1.1       mrg 	struct proc *p;
   3904   1.1       mrg 	void *v;
   3905   1.1       mrg 	register_t *retval;
   3906   1.1       mrg {
   3907  1.19       eeh 	struct netbsd32_pathconf_args /* {
   3908   1.1       mrg 		syscallarg(int) fd;
   3909   1.1       mrg 		syscallarg(int) name;
   3910   1.1       mrg 	} */ *uap = v;
   3911   1.1       mrg 	struct sys_pathconf_args ua;
   3912   1.1       mrg 	long rt;
   3913   1.1       mrg 	int error;
   3914   1.1       mrg 
   3915  1.11       mrg 	NETBSD32TOP_UAP(path, const char);
   3916  1.11       mrg 	NETBSD32TO64_UAP(name);
   3917   1.1       mrg 	error = sys_pathconf(p, &ua, (register_t *)&rt);
   3918  1.32       mrg 	*retval = rt;
   3919   1.1       mrg 	return (error);
   3920   1.1       mrg }
   3921   1.1       mrg 
   3922   1.1       mrg int
   3923  1.19       eeh netbsd32_fpathconf(p, v, retval)
   3924   1.1       mrg 	struct proc *p;
   3925   1.1       mrg 	void *v;
   3926   1.1       mrg 	register_t *retval;
   3927   1.1       mrg {
   3928  1.19       eeh 	struct netbsd32_fpathconf_args /* {
   3929   1.1       mrg 		syscallarg(int) fd;
   3930   1.1       mrg 		syscallarg(int) name;
   3931   1.1       mrg 	} */ *uap = v;
   3932   1.1       mrg 	struct sys_fpathconf_args ua;
   3933   1.1       mrg 	long rt;
   3934   1.1       mrg 	int error;
   3935   1.1       mrg 
   3936  1.11       mrg 	NETBSD32TO64_UAP(fd);
   3937  1.11       mrg 	NETBSD32TO64_UAP(name);
   3938   1.1       mrg 	error = sys_fpathconf(p, &ua, (register_t *)&rt);
   3939  1.32       mrg 	*retval = rt;
   3940   1.1       mrg 	return (error);
   3941   1.1       mrg }
   3942   1.1       mrg 
   3943   1.1       mrg int
   3944  1.19       eeh netbsd32_getrlimit(p, v, retval)
   3945   1.1       mrg 	struct proc *p;
   3946   1.1       mrg 	void *v;
   3947   1.1       mrg 	register_t *retval;
   3948   1.1       mrg {
   3949  1.19       eeh 	struct netbsd32_getrlimit_args /* {
   3950   1.1       mrg 		syscallarg(int) which;
   3951  1.10       mrg 		syscallarg(netbsd32_rlimitp_t) rlp;
   3952   1.1       mrg 	} */ *uap = v;
   3953   1.6       eeh 	int which = SCARG(uap, which);
   3954   1.1       mrg 
   3955   1.6       eeh 	if ((u_int)which >= RLIM_NLIMITS)
   3956   1.6       eeh 		return (EINVAL);
   3957   1.6       eeh 	return (copyout(&p->p_rlimit[which], (caddr_t)(u_long)SCARG(uap, rlp),
   3958   1.6       eeh 	    sizeof(struct rlimit)));
   3959   1.1       mrg }
   3960   1.1       mrg 
   3961   1.1       mrg int
   3962  1.19       eeh netbsd32_setrlimit(p, v, retval)
   3963   1.1       mrg 	struct proc *p;
   3964   1.1       mrg 	void *v;
   3965   1.1       mrg 	register_t *retval;
   3966   1.1       mrg {
   3967  1.19       eeh 	struct netbsd32_setrlimit_args /* {
   3968   1.1       mrg 		syscallarg(int) which;
   3969  1.10       mrg 		syscallarg(const netbsd32_rlimitp_t) rlp;
   3970   1.1       mrg 	} */ *uap = v;
   3971   1.6       eeh 		int which = SCARG(uap, which);
   3972   1.6       eeh 	struct rlimit alim;
   3973   1.6       eeh 	int error;
   3974   1.1       mrg 
   3975   1.6       eeh 	error = copyin((caddr_t)(u_long)SCARG(uap, rlp), &alim, sizeof(struct rlimit));
   3976   1.6       eeh 	if (error)
   3977   1.6       eeh 		return (error);
   3978  1.18    bouyer 	return (dosetrlimit(p, p->p_cred, which, &alim));
   3979   1.1       mrg }
   3980   1.1       mrg 
   3981   1.1       mrg int
   3982  1.19       eeh netbsd32_mmap(p, v, retval)
   3983   1.1       mrg 	struct proc *p;
   3984   1.1       mrg 	void *v;
   3985   1.1       mrg 	register_t *retval;
   3986   1.1       mrg {
   3987  1.19       eeh 	struct netbsd32_mmap_args /* {
   3988  1.10       mrg 		syscallarg(netbsd32_voidp) addr;
   3989  1.10       mrg 		syscallarg(netbsd32_size_t) len;
   3990   1.1       mrg 		syscallarg(int) prot;
   3991   1.1       mrg 		syscallarg(int) flags;
   3992   1.1       mrg 		syscallarg(int) fd;
   3993  1.10       mrg 		syscallarg(netbsd32_long) pad;
   3994   1.1       mrg 		syscallarg(off_t) pos;
   3995   1.1       mrg 	} */ *uap = v;
   3996   1.1       mrg 	struct sys_mmap_args ua;
   3997   1.1       mrg 	void *rt;
   3998   1.1       mrg 	int error;
   3999   1.1       mrg 
   4000  1.11       mrg 	NETBSD32TOP_UAP(addr, void);
   4001  1.11       mrg 	NETBSD32TOX_UAP(len, size_t);
   4002  1.11       mrg 	NETBSD32TO64_UAP(prot);
   4003  1.11       mrg 	NETBSD32TO64_UAP(flags);
   4004  1.11       mrg 	NETBSD32TO64_UAP(fd);
   4005  1.11       mrg 	NETBSD32TOX_UAP(pad, long);
   4006  1.11       mrg 	NETBSD32TOX_UAP(pos, off_t);
   4007   1.1       mrg 	error = sys_mmap(p, &ua, (register_t *)&rt);
   4008   1.1       mrg 	if ((long)rt > (long)UINT_MAX)
   4009  1.19       eeh 		printf("netbsd32_mmap: retval out of range: 0x%qx",
   4010   1.1       mrg 		    rt);
   4011  1.10       mrg 	*retval = (netbsd32_voidp)(u_long)rt;
   4012   1.1       mrg 	return (error);
   4013   1.1       mrg }
   4014   1.1       mrg 
   4015   1.1       mrg int
   4016  1.19       eeh netbsd32_lseek(p, v, retval)
   4017   1.6       eeh 	struct proc *p;
   4018   1.6       eeh 	void *v;
   4019   1.6       eeh 	register_t *retval;
   4020   1.6       eeh {
   4021  1.19       eeh 	struct netbsd32_lseek_args /* {
   4022   1.6       eeh 		syscallarg(int) fd;
   4023   1.6       eeh 		syscallarg(int) pad;
   4024   1.6       eeh 		syscallarg(off_t) offset;
   4025   1.6       eeh 		syscallarg(int) whence;
   4026   1.6       eeh 	} */ *uap = v;
   4027   1.6       eeh 	struct sys_lseek_args ua;
   4028   1.6       eeh 
   4029  1.11       mrg 	NETBSD32TO64_UAP(fd);
   4030  1.11       mrg 	NETBSD32TO64_UAP(pad);
   4031  1.11       mrg 	NETBSD32TO64_UAP(offset);
   4032  1.11       mrg 	NETBSD32TO64_UAP(whence);
   4033   1.6       eeh 	return (sys_lseek(p, &ua, retval));
   4034   1.6       eeh }
   4035   1.6       eeh 
   4036   1.6       eeh int
   4037  1.19       eeh netbsd32_truncate(p, v, retval)
   4038   1.1       mrg 	struct proc *p;
   4039   1.1       mrg 	void *v;
   4040   1.1       mrg 	register_t *retval;
   4041   1.1       mrg {
   4042  1.19       eeh 	struct netbsd32_truncate_args /* {
   4043  1.10       mrg 		syscallarg(const netbsd32_charp) path;
   4044   1.1       mrg 		syscallarg(int) pad;
   4045   1.1       mrg 		syscallarg(off_t) length;
   4046   1.1       mrg 	} */ *uap = v;
   4047   1.1       mrg 	struct sys_truncate_args ua;
   4048   1.1       mrg 
   4049  1.11       mrg 	NETBSD32TOP_UAP(path, const char);
   4050  1.11       mrg 	NETBSD32TO64_UAP(pad);
   4051  1.11       mrg 	NETBSD32TO64_UAP(length);
   4052   1.1       mrg 	return (sys_truncate(p, &ua, retval));
   4053   1.1       mrg }
   4054   1.1       mrg 
   4055   1.1       mrg int
   4056  1.19       eeh netbsd32_ftruncate(p, v, retval)
   4057   1.6       eeh 	struct proc *p;
   4058   1.6       eeh 	void *v;
   4059   1.6       eeh 	register_t *retval;
   4060   1.6       eeh {
   4061  1.19       eeh 	struct netbsd32_ftruncate_args /* {
   4062   1.6       eeh 		syscallarg(int) fd;
   4063   1.6       eeh 		syscallarg(int) pad;
   4064   1.6       eeh 		syscallarg(off_t) length;
   4065   1.6       eeh 	} */ *uap = v;
   4066   1.6       eeh 	struct sys_ftruncate_args ua;
   4067   1.6       eeh 
   4068  1.11       mrg 	NETBSD32TO64_UAP(fd);
   4069  1.11       mrg 	NETBSD32TO64_UAP(pad);
   4070  1.11       mrg 	NETBSD32TO64_UAP(length);
   4071   1.6       eeh 	return (sys_ftruncate(p, &ua, retval));
   4072   1.6       eeh }
   4073   1.6       eeh 
   4074   1.6       eeh int
   4075  1.19       eeh netbsd32___sysctl(p, v, retval)
   4076   1.1       mrg 	struct proc *p;
   4077   1.1       mrg 	void *v;
   4078   1.1       mrg 	register_t *retval;
   4079   1.1       mrg {
   4080  1.19       eeh 	struct netbsd32___sysctl_args /* {
   4081  1.10       mrg 		syscallarg(netbsd32_intp) name;
   4082   1.1       mrg 		syscallarg(u_int) namelen;
   4083  1.10       mrg 		syscallarg(netbsd32_voidp) old;
   4084  1.10       mrg 		syscallarg(netbsd32_size_tp) oldlenp;
   4085  1.10       mrg 		syscallarg(netbsd32_voidp) new;
   4086  1.10       mrg 		syscallarg(netbsd32_size_t) newlen;
   4087   1.1       mrg 	} */ *uap = v;
   4088  1.34   thorpej 	int error;
   4089  1.10       mrg 	netbsd32_size_t savelen = 0;
   4090   1.6       eeh 	size_t oldlen = 0;
   4091   1.6       eeh 	sysctlfn *fn;
   4092   1.6       eeh 	int name[CTL_MAXNAME];
   4093   1.6       eeh 
   4094   1.6       eeh /*
   4095   1.6       eeh  * Some of these sysctl functions do their own copyin/copyout.
   4096   1.6       eeh  * We need to disable or emulate the ones that need their
   4097   1.6       eeh  * arguments converted.
   4098   1.6       eeh  */
   4099   1.6       eeh 
   4100   1.6       eeh 	if (SCARG(uap, new) != NULL &&
   4101   1.6       eeh 	    (error = suser(p->p_ucred, &p->p_acflag)))
   4102   1.6       eeh 		return (error);
   4103   1.6       eeh 	/*
   4104   1.6       eeh 	 * all top-level sysctl names are non-terminal
   4105   1.6       eeh 	 */
   4106   1.6       eeh 	if (SCARG(uap, namelen) > CTL_MAXNAME || SCARG(uap, namelen) < 2)
   4107   1.6       eeh 		return (EINVAL);
   4108   1.6       eeh 	error = copyin((caddr_t)(u_long)SCARG(uap, name), &name,
   4109   1.6       eeh 		       SCARG(uap, namelen) * sizeof(int));
   4110   1.6       eeh 	if (error)
   4111   1.6       eeh 		return (error);
   4112   1.6       eeh 
   4113   1.6       eeh 	switch (name[0]) {
   4114   1.6       eeh 	case CTL_KERN:
   4115   1.6       eeh 		fn = kern_sysctl;
   4116   1.6       eeh 		break;
   4117   1.6       eeh 	case CTL_HW:
   4118   1.6       eeh 		fn = hw_sysctl;
   4119   1.6       eeh 		break;
   4120   1.6       eeh 	case CTL_VM:
   4121   1.6       eeh 		fn = uvm_sysctl;
   4122   1.6       eeh 		break;
   4123   1.6       eeh 	case CTL_NET:
   4124   1.6       eeh 		fn = net_sysctl;
   4125   1.6       eeh 		break;
   4126   1.6       eeh 	case CTL_VFS:
   4127   1.6       eeh 		fn = vfs_sysctl;
   4128   1.6       eeh 		break;
   4129   1.6       eeh 	case CTL_MACHDEP:
   4130   1.6       eeh 		fn = cpu_sysctl;
   4131   1.6       eeh 		break;
   4132   1.6       eeh #ifdef DEBUG
   4133   1.6       eeh 	case CTL_DEBUG:
   4134   1.6       eeh 		fn = debug_sysctl;
   4135   1.6       eeh 		break;
   4136   1.6       eeh #endif
   4137   1.6       eeh #ifdef DDB
   4138   1.6       eeh 	case CTL_DDB:
   4139   1.6       eeh 		fn = ddb_sysctl;
   4140   1.6       eeh 		break;
   4141   1.6       eeh #endif
   4142  1.34   thorpej 	case CTL_PROC:
   4143  1.34   thorpej 		fn = proc_sysctl;
   4144  1.34   thorpej 		break;
   4145   1.6       eeh 	default:
   4146   1.6       eeh 		return (EOPNOTSUPP);
   4147   1.6       eeh 	}
   4148   1.1       mrg 
   4149  1.34   thorpej 	/*
   4150  1.34   thorpej 	 * XXX Hey, we wire `old', but what about `new'?
   4151  1.34   thorpej 	 */
   4152  1.34   thorpej 
   4153   1.6       eeh 	if (SCARG(uap, oldlenp) &&
   4154  1.34   thorpej 	    (error = copyin((caddr_t)(u_long)SCARG(uap, oldlenp), &savelen,
   4155  1.34   thorpej 	     sizeof(savelen))))
   4156   1.6       eeh 		return (error);
   4157   1.6       eeh 	if (SCARG(uap, old) != NULL) {
   4158  1.34   thorpej 		error = lockmgr(&sysctl_memlock, LK_EXCLUSIVE, NULL);
   4159  1.34   thorpej 		if (error)
   4160  1.34   thorpej 			return (error);
   4161  1.34   thorpej 		if (uvm_vslock(p, (void *)(u_long)SCARG(uap, old), savelen,
   4162  1.34   thorpej 		    VM_PROT_READ|VM_PROT_WRITE) != KERN_SUCCESS) {
   4163  1.34   thorpej 			(void) lockmgr(&sysctl_memlock, LK_RELEASE, NULL);
   4164   1.6       eeh 			return (EFAULT);
   4165  1.13   thorpej 		}
   4166   1.6       eeh 		oldlen = savelen;
   4167   1.6       eeh 	}
   4168  1.20       eeh 	error = (*fn)(name + 1, SCARG(uap, namelen) - 1,
   4169  1.20       eeh 		      (void *)(u_long)SCARG(uap, old), &oldlen,
   4170  1.20       eeh 		      (void *)(u_long)SCARG(uap, new), SCARG(uap, newlen), p);
   4171   1.6       eeh 	if (SCARG(uap, old) != NULL) {
   4172  1.34   thorpej 		uvm_vsunlock(p, (void *)(u_long)SCARG(uap, old), savelen);
   4173  1.34   thorpej 		(void) lockmgr(&sysctl_memlock, LK_RELEASE, NULL);
   4174   1.6       eeh 	}
   4175   1.6       eeh 	savelen = oldlen;
   4176   1.6       eeh 	if (error)
   4177   1.6       eeh 		return (error);
   4178   1.6       eeh 	if (SCARG(uap, oldlenp))
   4179  1.34   thorpej 		error = copyout(&savelen,
   4180  1.34   thorpej 		    (caddr_t)(u_long)SCARG(uap, oldlenp), sizeof(savelen));
   4181   1.6       eeh 	return (error);
   4182   1.1       mrg }
   4183   1.1       mrg 
   4184   1.1       mrg int
   4185  1.19       eeh netbsd32_mlock(p, v, retval)
   4186   1.1       mrg 	struct proc *p;
   4187   1.1       mrg 	void *v;
   4188   1.1       mrg 	register_t *retval;
   4189   1.1       mrg {
   4190  1.19       eeh 	struct netbsd32_mlock_args /* {
   4191  1.10       mrg 		syscallarg(const netbsd32_voidp) addr;
   4192  1.10       mrg 		syscallarg(netbsd32_size_t) len;
   4193   1.1       mrg 	} */ *uap = v;
   4194   1.1       mrg 	struct sys_mlock_args ua;
   4195   1.1       mrg 
   4196  1.11       mrg 	NETBSD32TOP_UAP(addr, const void);
   4197  1.11       mrg 	NETBSD32TO64_UAP(len);
   4198   1.1       mrg 	return (sys_mlock(p, &ua, retval));
   4199   1.1       mrg }
   4200   1.1       mrg 
   4201   1.1       mrg int
   4202  1.19       eeh netbsd32_munlock(p, v, retval)
   4203   1.1       mrg 	struct proc *p;
   4204   1.1       mrg 	void *v;
   4205   1.1       mrg 	register_t *retval;
   4206   1.1       mrg {
   4207  1.19       eeh 	struct netbsd32_munlock_args /* {
   4208  1.10       mrg 		syscallarg(const netbsd32_voidp) addr;
   4209  1.10       mrg 		syscallarg(netbsd32_size_t) len;
   4210   1.1       mrg 	} */ *uap = v;
   4211   1.1       mrg 	struct sys_munlock_args ua;
   4212   1.1       mrg 
   4213  1.11       mrg 	NETBSD32TOP_UAP(addr, const void);
   4214  1.11       mrg 	NETBSD32TO64_UAP(len);
   4215   1.1       mrg 	return (sys_munlock(p, &ua, retval));
   4216   1.1       mrg }
   4217   1.1       mrg 
   4218   1.1       mrg int
   4219  1.19       eeh netbsd32_undelete(p, v, retval)
   4220   1.1       mrg 	struct proc *p;
   4221   1.1       mrg 	void *v;
   4222   1.1       mrg 	register_t *retval;
   4223   1.1       mrg {
   4224  1.19       eeh 	struct netbsd32_undelete_args /* {
   4225  1.10       mrg 		syscallarg(const netbsd32_charp) path;
   4226   1.1       mrg 	} */ *uap = v;
   4227   1.1       mrg 	struct sys_undelete_args ua;
   4228   1.1       mrg 
   4229  1.11       mrg 	NETBSD32TOP_UAP(path, const char);
   4230   1.1       mrg 	return (sys_undelete(p, &ua, retval));
   4231   1.1       mrg }
   4232   1.1       mrg 
   4233   1.1       mrg int
   4234  1.19       eeh netbsd32_futimes(p, v, retval)
   4235   1.1       mrg 	struct proc *p;
   4236   1.1       mrg 	void *v;
   4237   1.1       mrg 	register_t *retval;
   4238   1.1       mrg {
   4239  1.19       eeh 	struct netbsd32_futimes_args /* {
   4240   1.1       mrg 		syscallarg(int) fd;
   4241  1.10       mrg 		syscallarg(const netbsd32_timevalp_t) tptr;
   4242   1.1       mrg 	} */ *uap = v;
   4243   1.6       eeh 	int error;
   4244   1.6       eeh 	struct file *fp;
   4245   1.6       eeh 
   4246  1.12   thorpej 	/* getvnode() will use the descriptor for us */
   4247   1.6       eeh 	if ((error = getvnode(p->p_fd, SCARG(uap, fd), &fp)) != 0)
   4248   1.6       eeh 		return (error);
   4249   1.6       eeh 
   4250  1.12   thorpej 	error = change_utimes32((struct vnode *)fp->f_data,
   4251  1.12   thorpej 				(struct timeval *)(u_long)SCARG(uap, tptr), p);
   4252  1.19       eeh 	FILE_UNUSE(fp, p);
   4253  1.12   thorpej 	return (error);
   4254   1.6       eeh }
   4255   1.6       eeh 
   4256   1.6       eeh int
   4257  1.19       eeh netbsd32_getpgid(p, v, retval)
   4258   1.6       eeh 	struct proc *p;
   4259   1.6       eeh 	void *v;
   4260   1.6       eeh 	register_t *retval;
   4261   1.6       eeh {
   4262  1.19       eeh 	struct netbsd32_getpgid_args /* {
   4263   1.6       eeh 		syscallarg(pid_t) pid;
   4264   1.6       eeh 	} */ *uap = v;
   4265   1.6       eeh 	struct sys_getpgid_args ua;
   4266   1.1       mrg 
   4267  1.11       mrg 	NETBSD32TO64_UAP(pid);
   4268   1.6       eeh 	return (sys_getpgid(p, &ua, retval));
   4269   1.1       mrg }
   4270   1.1       mrg 
   4271   1.1       mrg int
   4272  1.19       eeh netbsd32_reboot(p, v, retval)
   4273   1.1       mrg 	struct proc *p;
   4274   1.1       mrg 	void *v;
   4275   1.1       mrg 	register_t *retval;
   4276   1.1       mrg {
   4277  1.19       eeh 	struct netbsd32_reboot_args /* {
   4278   1.1       mrg 		syscallarg(int) opt;
   4279  1.10       mrg 		syscallarg(netbsd32_charp) bootstr;
   4280   1.1       mrg 	} */ *uap = v;
   4281   1.1       mrg 	struct sys_reboot_args ua;
   4282   1.1       mrg 
   4283  1.11       mrg 	NETBSD32TO64_UAP(opt);
   4284  1.11       mrg 	NETBSD32TOP_UAP(bootstr, char);
   4285   1.1       mrg 	return (sys_reboot(p, &ua, retval));
   4286   1.1       mrg }
   4287   1.1       mrg 
   4288   1.1       mrg int
   4289  1.19       eeh netbsd32_poll(p, v, retval)
   4290   1.1       mrg 	struct proc *p;
   4291   1.1       mrg 	void *v;
   4292   1.1       mrg 	register_t *retval;
   4293   1.1       mrg {
   4294  1.19       eeh 	struct netbsd32_poll_args /* {
   4295  1.10       mrg 		syscallarg(netbsd32_pollfdp_t) fds;
   4296   1.1       mrg 		syscallarg(u_int) nfds;
   4297   1.1       mrg 		syscallarg(int) timeout;
   4298   1.1       mrg 	} */ *uap = v;
   4299   1.1       mrg 	struct sys_poll_args ua;
   4300   1.1       mrg 
   4301  1.11       mrg 	NETBSD32TOP_UAP(fds, struct pollfd);
   4302  1.11       mrg 	NETBSD32TO64_UAP(nfds);
   4303  1.11       mrg 	NETBSD32TO64_UAP(timeout);
   4304   1.1       mrg 	return (sys_poll(p, &ua, retval));
   4305   1.1       mrg }
   4306   1.1       mrg 
   4307  1.20       eeh #if defined(SYSVSEM)
   4308   1.6       eeh /*
   4309   1.6       eeh  * XXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXX
   4310   1.6       eeh  *
   4311   1.6       eeh  * This is BSD.  We won't support System V IPC.
   4312   1.6       eeh  * Too much work.
   4313   1.6       eeh  *
   4314   1.6       eeh  * XXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXX
   4315   1.6       eeh  */
   4316   1.1       mrg int
   4317  1.22  christos netbsd32___semctl14(p, v, retval)
   4318   1.1       mrg 	struct proc *p;
   4319   1.1       mrg 	void *v;
   4320   1.1       mrg 	register_t *retval;
   4321   1.1       mrg {
   4322   1.6       eeh #if 0
   4323  1.19       eeh 	struct netbsd32___semctl_args /* {
   4324   1.1       mrg 		syscallarg(int) semid;
   4325   1.1       mrg 		syscallarg(int) semnum;
   4326   1.1       mrg 		syscallarg(int) cmd;
   4327  1.22  christos 		syscallarg(netbsd32_semunu_t *) arg;
   4328   1.1       mrg 	} */ *uap = v;
   4329  1.10       mrg 	union netbsd32_semun sem32;
   4330   1.6       eeh 	int semid = SCARG(uap, semid);
   4331   1.6       eeh 	int semnum = SCARG(uap, semnum);
   4332   1.6       eeh 	int cmd = SCARG(uap, cmd);
   4333  1.10       mrg 	union netbsd32_semun *arg = (void*)(u_long)SCARG(uap, arg);
   4334  1.10       mrg 	union netbsd32_semun real_arg;
   4335   1.6       eeh 	struct ucred *cred = p->p_ucred;
   4336   1.6       eeh 	int i, rval, eval;
   4337  1.10       mrg 	struct netbsd32_semid_ds sbuf;
   4338  1.25  augustss 	struct semid_ds *semaptr;
   4339   1.6       eeh 
   4340   1.6       eeh 	semlock(p);
   4341   1.6       eeh 
   4342   1.6       eeh 	semid = IPCID_TO_IX(semid);
   4343   1.6       eeh 	if (semid < 0 || semid >= seminfo.semmsl)
   4344   1.6       eeh 		return(EINVAL);
   4345   1.6       eeh 
   4346   1.6       eeh 	semaptr = &sema[semid];
   4347   1.6       eeh 	if ((semaptr->sem_perm.mode & SEM_ALLOC) == 0 ||
   4348   1.6       eeh 	    semaptr->sem_perm.seq != IPCID_TO_SEQ(SCARG(uap, semid)))
   4349   1.6       eeh 		return(EINVAL);
   4350   1.6       eeh 
   4351   1.6       eeh 	eval = 0;
   4352   1.6       eeh 	rval = 0;
   4353   1.6       eeh 
   4354   1.6       eeh 	switch (cmd) {
   4355   1.6       eeh 	case IPC_RMID:
   4356   1.6       eeh 		if ((eval = ipcperm(cred, &semaptr->sem_perm, IPC_M)) != 0)
   4357   1.6       eeh 			return(eval);
   4358   1.6       eeh 		semaptr->sem_perm.cuid = cred->cr_uid;
   4359   1.6       eeh 		semaptr->sem_perm.uid = cred->cr_uid;
   4360   1.6       eeh 		semtot -= semaptr->sem_nsems;
   4361  1.19       eeh 		for (i = semaptr->_sem_base - sem; i < semtot; i++)
   4362   1.6       eeh 			sem[i] = sem[i + semaptr->sem_nsems];
   4363   1.6       eeh 		for (i = 0; i < seminfo.semmni; i++) {
   4364   1.6       eeh 			if ((sema[i].sem_perm.mode & SEM_ALLOC) &&
   4365  1.19       eeh 			    sema[i]._sem_base > semaptr->_sem_base)
   4366  1.19       eeh 				sema[i]._sem_base -= semaptr->sem_nsems;
   4367   1.6       eeh 		}
   4368   1.6       eeh 		semaptr->sem_perm.mode = 0;
   4369   1.6       eeh 		semundo_clear(semid, -1);
   4370   1.6       eeh 		wakeup((caddr_t)semaptr);
   4371   1.6       eeh 		break;
   4372   1.6       eeh 
   4373   1.6       eeh 	case IPC_SET:
   4374   1.6       eeh 		if ((eval = ipcperm(cred, &semaptr->sem_perm, IPC_M)))
   4375   1.6       eeh 			return(eval);
   4376   1.6       eeh 		if ((eval = copyin(arg, &real_arg, sizeof(real_arg))) != 0)
   4377   1.6       eeh 			return(eval);
   4378   1.6       eeh 		if ((eval = copyin((caddr_t)(u_long)real_arg.buf, (caddr_t)&sbuf,
   4379   1.6       eeh 		    sizeof(sbuf))) != 0)
   4380   1.6       eeh 			return(eval);
   4381   1.6       eeh 		semaptr->sem_perm.uid = sbuf.sem_perm.uid;
   4382   1.6       eeh 		semaptr->sem_perm.gid = sbuf.sem_perm.gid;
   4383   1.6       eeh 		semaptr->sem_perm.mode = (semaptr->sem_perm.mode & ~0777) |
   4384   1.6       eeh 		    (sbuf.sem_perm.mode & 0777);
   4385   1.6       eeh 		semaptr->sem_ctime = time.tv_sec;
   4386   1.6       eeh 		break;
   4387   1.6       eeh 
   4388   1.6       eeh 	case IPC_STAT:
   4389   1.6       eeh 		if ((eval = ipcperm(cred, &semaptr->sem_perm, IPC_R)))
   4390   1.6       eeh 			return(eval);
   4391   1.6       eeh 		if ((eval = copyin(arg, &real_arg, sizeof(real_arg))) != 0)
   4392   1.6       eeh 			return(eval);
   4393   1.6       eeh 		eval = copyout((caddr_t)semaptr, (caddr_t)(u_long)real_arg.buf,
   4394   1.6       eeh 		    sizeof(struct semid_ds));
   4395   1.6       eeh 		break;
   4396   1.6       eeh 
   4397   1.6       eeh 	case GETNCNT:
   4398   1.6       eeh 		if ((eval = ipcperm(cred, &semaptr->sem_perm, IPC_R)))
   4399   1.6       eeh 			return(eval);
   4400   1.6       eeh 		if (semnum < 0 || semnum >= semaptr->sem_nsems)
   4401   1.6       eeh 			return(EINVAL);
   4402  1.19       eeh 		rval = semaptr->_sem_base[semnum].semncnt;
   4403   1.6       eeh 		break;
   4404   1.6       eeh 
   4405   1.6       eeh 	case GETPID:
   4406   1.6       eeh 		if ((eval = ipcperm(cred, &semaptr->sem_perm, IPC_R)))
   4407   1.6       eeh 			return(eval);
   4408   1.6       eeh 		if (semnum < 0 || semnum >= semaptr->sem_nsems)
   4409   1.6       eeh 			return(EINVAL);
   4410  1.19       eeh 		rval = semaptr->_sem_base[semnum].sempid;
   4411   1.6       eeh 		break;
   4412   1.6       eeh 
   4413   1.6       eeh 	case GETVAL:
   4414   1.6       eeh 		if ((eval = ipcperm(cred, &semaptr->sem_perm, IPC_R)))
   4415   1.6       eeh 			return(eval);
   4416   1.6       eeh 		if (semnum < 0 || semnum >= semaptr->sem_nsems)
   4417   1.6       eeh 			return(EINVAL);
   4418  1.19       eeh 		rval = semaptr->_sem_base[semnum].semval;
   4419   1.6       eeh 		break;
   4420   1.6       eeh 
   4421   1.6       eeh 	case GETALL:
   4422   1.6       eeh 		if ((eval = ipcperm(cred, &semaptr->sem_perm, IPC_R)))
   4423   1.6       eeh 			return(eval);
   4424   1.6       eeh 		if ((eval = copyin(arg, &real_arg, sizeof(real_arg))) != 0)
   4425   1.6       eeh 			return(eval);
   4426   1.6       eeh 		for (i = 0; i < semaptr->sem_nsems; i++) {
   4427  1.19       eeh 			eval = copyout((caddr_t)&semaptr->_sem_base[i].semval,
   4428   1.6       eeh 			    &real_arg.array[i], sizeof(real_arg.array[0]));
   4429   1.6       eeh 			if (eval != 0)
   4430   1.6       eeh 				break;
   4431   1.6       eeh 		}
   4432   1.6       eeh 		break;
   4433   1.1       mrg 
   4434   1.6       eeh 	case GETZCNT:
   4435   1.6       eeh 		if ((eval = ipcperm(cred, &semaptr->sem_perm, IPC_R)))
   4436   1.6       eeh 			return(eval);
   4437   1.6       eeh 		if (semnum < 0 || semnum >= semaptr->sem_nsems)
   4438   1.6       eeh 			return(EINVAL);
   4439  1.19       eeh 		rval = semaptr->_sem_base[semnum].semzcnt;
   4440   1.6       eeh 		break;
   4441   1.6       eeh 
   4442   1.6       eeh 	case SETVAL:
   4443   1.6       eeh 		if ((eval = ipcperm(cred, &semaptr->sem_perm, IPC_W)))
   4444   1.6       eeh 			return(eval);
   4445   1.6       eeh 		if (semnum < 0 || semnum >= semaptr->sem_nsems)
   4446   1.6       eeh 			return(EINVAL);
   4447   1.6       eeh 		if ((eval = copyin(arg, &real_arg, sizeof(real_arg))) != 0)
   4448   1.6       eeh 			return(eval);
   4449  1.19       eeh 		semaptr->_sem_base[semnum].semval = real_arg.val;
   4450   1.6       eeh 		semundo_clear(semid, semnum);
   4451   1.6       eeh 		wakeup((caddr_t)semaptr);
   4452   1.6       eeh 		break;
   4453   1.6       eeh 
   4454   1.6       eeh 	case SETALL:
   4455   1.6       eeh 		if ((eval = ipcperm(cred, &semaptr->sem_perm, IPC_W)))
   4456   1.6       eeh 			return(eval);
   4457   1.6       eeh 		if ((eval = copyin(arg, &real_arg, sizeof(real_arg))) != 0)
   4458   1.6       eeh 			return(eval);
   4459   1.6       eeh 		for (i = 0; i < semaptr->sem_nsems; i++) {
   4460   1.6       eeh 			eval = copyin(&real_arg.array[i],
   4461  1.19       eeh 			    (caddr_t)&semaptr->_sem_base[i].semval,
   4462   1.6       eeh 			    sizeof(real_arg.array[0]));
   4463   1.6       eeh 			if (eval != 0)
   4464   1.6       eeh 				break;
   4465   1.1       mrg 		}
   4466   1.6       eeh 		semundo_clear(semid, -1);
   4467   1.6       eeh 		wakeup((caddr_t)semaptr);
   4468   1.6       eeh 		break;
   4469   1.1       mrg 
   4470   1.6       eeh 	default:
   4471   1.6       eeh 		return(EINVAL);
   4472   1.6       eeh 	}
   4473   1.1       mrg 
   4474   1.6       eeh 	if (eval == 0)
   4475   1.6       eeh 		*retval = rval;
   4476   1.6       eeh 	return(eval);
   4477   1.6       eeh #else
   4478   1.6       eeh 	return (ENOSYS);
   4479   1.6       eeh #endif
   4480   1.1       mrg }
   4481   1.1       mrg 
   4482   1.1       mrg int
   4483  1.19       eeh netbsd32_semget(p, v, retval)
   4484   1.1       mrg 	struct proc *p;
   4485   1.1       mrg 	void *v;
   4486   1.1       mrg 	register_t *retval;
   4487   1.1       mrg {
   4488  1.19       eeh 	struct netbsd32_semget_args /* {
   4489  1.10       mrg 		syscallarg(netbsd32_key_t) key;
   4490   1.1       mrg 		syscallarg(int) nsems;
   4491   1.1       mrg 		syscallarg(int) semflg;
   4492   1.1       mrg 	} */ *uap = v;
   4493   1.1       mrg 	struct sys_semget_args ua;
   4494   1.1       mrg 
   4495  1.11       mrg 	NETBSD32TOX_UAP(key, key_t);
   4496  1.11       mrg 	NETBSD32TO64_UAP(nsems);
   4497  1.11       mrg 	NETBSD32TO64_UAP(semflg);
   4498   1.1       mrg 	return (sys_semget(p, &ua, retval));
   4499   1.1       mrg }
   4500   1.1       mrg 
   4501   1.1       mrg int
   4502  1.19       eeh netbsd32_semop(p, v, retval)
   4503   1.1       mrg 	struct proc *p;
   4504   1.1       mrg 	void *v;
   4505   1.1       mrg 	register_t *retval;
   4506   1.1       mrg {
   4507  1.19       eeh 	struct netbsd32_semop_args /* {
   4508   1.1       mrg 		syscallarg(int) semid;
   4509  1.10       mrg 		syscallarg(netbsd32_sembufp_t) sops;
   4510  1.10       mrg 		syscallarg(netbsd32_size_t) nsops;
   4511   1.1       mrg 	} */ *uap = v;
   4512   1.1       mrg 	struct sys_semop_args ua;
   4513   1.1       mrg 
   4514  1.11       mrg 	NETBSD32TO64_UAP(semid);
   4515  1.11       mrg 	NETBSD32TOP_UAP(sops, struct sembuf);
   4516  1.11       mrg 	NETBSD32TOX_UAP(nsops, size_t);
   4517   1.2       mrg 	return (sys_semop(p, &ua, retval));
   4518   1.1       mrg }
   4519   1.1       mrg 
   4520   1.1       mrg int
   4521  1.19       eeh netbsd32_semconfig(p, v, retval)
   4522   1.6       eeh 	struct proc *p;
   4523   1.6       eeh 	void *v;
   4524   1.6       eeh 	register_t *retval;
   4525   1.6       eeh {
   4526  1.19       eeh 	struct netbsd32_semconfig_args /* {
   4527   1.6       eeh 		syscallarg(int) flag;
   4528   1.6       eeh 	} */ *uap = v;
   4529   1.6       eeh 	struct sys_semconfig_args ua;
   4530   1.6       eeh 
   4531  1.11       mrg 	NETBSD32TO64_UAP(flag);
   4532   1.6       eeh 	return (sys_semconfig(p, &ua, retval));
   4533   1.6       eeh }
   4534  1.20       eeh #endif /* SYSVSEM */
   4535  1.20       eeh 
   4536  1.20       eeh #if defined(SYSVMSG)
   4537   1.6       eeh 
   4538   1.6       eeh int
   4539  1.20       eeh netbsd32___msgctl13(p, v, retval)
   4540   1.1       mrg 	struct proc *p;
   4541   1.1       mrg 	void *v;
   4542   1.1       mrg 	register_t *retval;
   4543   1.1       mrg {
   4544   1.6       eeh #if 0
   4545  1.19       eeh 	struct netbsd32_msgctl_args /* {
   4546   1.1       mrg 		syscallarg(int) msqid;
   4547   1.1       mrg 		syscallarg(int) cmd;
   4548  1.10       mrg 		syscallarg(netbsd32_msqid_dsp_t) buf;
   4549   1.1       mrg 	} */ *uap = v;
   4550   1.1       mrg 	struct sys_msgctl_args ua;
   4551   1.1       mrg 	struct msqid_ds ds;
   4552  1.10       mrg 	struct netbsd32_msqid_ds *ds32p;
   4553   1.1       mrg 	int error;
   4554   1.1       mrg 
   4555  1.11       mrg 	NETBSD32TO64_UAP(msqid);
   4556  1.11       mrg 	NETBSD32TO64_UAP(cmd);
   4557  1.10       mrg 	ds32p = (struct netbsd32_msqid_ds *)(u_long)SCARG(uap, buf);
   4558   1.1       mrg 	if (ds32p) {
   4559   1.1       mrg 		SCARG(&ua, buf) = NULL;
   4560  1.10       mrg 		netbsd32_to_msqid_ds(ds32p, &ds);
   4561   1.1       mrg 	} else
   4562   1.1       mrg 		SCARG(&ua, buf) = NULL;
   4563   1.1       mrg 	error = sys_msgctl(p, &ua, retval);
   4564   1.1       mrg 	if (error)
   4565   1.1       mrg 		return (error);
   4566   1.1       mrg 
   4567   1.1       mrg 	if (ds32p)
   4568  1.10       mrg 		netbsd32_from_msqid_ds(&ds, ds32p);
   4569   1.1       mrg 	return (0);
   4570   1.6       eeh #else
   4571   1.6       eeh 	return (ENOSYS);
   4572   1.6       eeh #endif
   4573   1.1       mrg }
   4574   1.1       mrg 
   4575   1.1       mrg int
   4576  1.19       eeh netbsd32_msgget(p, v, retval)
   4577   1.1       mrg 	struct proc *p;
   4578   1.1       mrg 	void *v;
   4579   1.1       mrg 	register_t *retval;
   4580   1.1       mrg {
   4581   1.6       eeh #if 0
   4582  1.19       eeh 	struct netbsd32_msgget_args /* {
   4583  1.10       mrg 		syscallarg(netbsd32_key_t) key;
   4584   1.1       mrg 		syscallarg(int) msgflg;
   4585   1.1       mrg 	} */ *uap = v;
   4586   1.1       mrg 	struct sys_msgget_args ua;
   4587   1.1       mrg 
   4588  1.11       mrg 	NETBSD32TOX_UAP(key, key_t);
   4589  1.11       mrg 	NETBSD32TO64_UAP(msgflg);
   4590   1.1       mrg 	return (sys_msgget(p, &ua, retval));
   4591   1.6       eeh #else
   4592   1.6       eeh 	return (ENOSYS);
   4593   1.6       eeh #endif
   4594   1.1       mrg }
   4595   1.1       mrg 
   4596   1.1       mrg int
   4597  1.19       eeh netbsd32_msgsnd(p, v, retval)
   4598   1.1       mrg 	struct proc *p;
   4599   1.1       mrg 	void *v;
   4600   1.1       mrg 	register_t *retval;
   4601   1.1       mrg {
   4602   1.6       eeh #if 0
   4603  1.19       eeh 	struct netbsd32_msgsnd_args /* {
   4604   1.1       mrg 		syscallarg(int) msqid;
   4605  1.10       mrg 		syscallarg(const netbsd32_voidp) msgp;
   4606  1.10       mrg 		syscallarg(netbsd32_size_t) msgsz;
   4607   1.1       mrg 		syscallarg(int) msgflg;
   4608   1.1       mrg 	} */ *uap = v;
   4609   1.1       mrg 	struct sys_msgsnd_args ua;
   4610   1.1       mrg 
   4611  1.11       mrg 	NETBSD32TO64_UAP(msqid);
   4612  1.11       mrg 	NETBSD32TOP_UAP(msgp, void);
   4613  1.11       mrg 	NETBSD32TOX_UAP(msgsz, size_t);
   4614  1.11       mrg 	NETBSD32TO64_UAP(msgflg);
   4615   1.1       mrg 	return (sys_msgsnd(p, &ua, retval));
   4616   1.6       eeh #else
   4617   1.6       eeh 	return (ENOSYS);
   4618   1.6       eeh #endif
   4619   1.1       mrg }
   4620   1.1       mrg 
   4621   1.1       mrg int
   4622  1.19       eeh netbsd32_msgrcv(p, v, retval)
   4623   1.1       mrg 	struct proc *p;
   4624   1.1       mrg 	void *v;
   4625   1.1       mrg 	register_t *retval;
   4626   1.1       mrg {
   4627   1.6       eeh #if 0
   4628  1.19       eeh 	struct netbsd32_msgrcv_args /* {
   4629   1.1       mrg 		syscallarg(int) msqid;
   4630  1.10       mrg 		syscallarg(netbsd32_voidp) msgp;
   4631  1.10       mrg 		syscallarg(netbsd32_size_t) msgsz;
   4632  1.10       mrg 		syscallarg(netbsd32_long) msgtyp;
   4633   1.1       mrg 		syscallarg(int) msgflg;
   4634   1.1       mrg 	} */ *uap = v;
   4635   1.1       mrg 	struct sys_msgrcv_args ua;
   4636   1.1       mrg 	ssize_t rt;
   4637   1.1       mrg 	int error;
   4638   1.1       mrg 
   4639  1.11       mrg 	NETBSD32TO64_UAP(msqid);
   4640  1.11       mrg 	NETBSD32TOP_UAP(msgp, void);
   4641  1.11       mrg 	NETBSD32TOX_UAP(msgsz, size_t);
   4642  1.11       mrg 	NETBSD32TOX_UAP(msgtyp, long);
   4643  1.11       mrg 	NETBSD32TO64_UAP(msgflg);
   4644   1.1       mrg 	error = sys_msgrcv(p, &ua, (register_t *)&rt);
   4645  1.32       mrg 	*retval = rt;
   4646   1.1       mrg 	return (error);
   4647   1.6       eeh #else
   4648   1.6       eeh 	return (ENOSYS);
   4649   1.6       eeh #endif
   4650   1.1       mrg }
   4651  1.20       eeh #endif /* SYSVMSG */
   4652  1.20       eeh 
   4653  1.20       eeh #if defined(SYSVSHM)
   4654   1.1       mrg 
   4655   1.1       mrg int
   4656  1.19       eeh netbsd32_shmat(p, v, retval)
   4657   1.1       mrg 	struct proc *p;
   4658   1.1       mrg 	void *v;
   4659   1.1       mrg 	register_t *retval;
   4660   1.1       mrg {
   4661   1.6       eeh #if 0
   4662  1.19       eeh 	struct netbsd32_shmat_args /* {
   4663   1.1       mrg 		syscallarg(int) shmid;
   4664  1.10       mrg 		syscallarg(const netbsd32_voidp) shmaddr;
   4665   1.1       mrg 		syscallarg(int) shmflg;
   4666   1.1       mrg 	} */ *uap = v;
   4667   1.1       mrg 	struct sys_shmat_args ua;
   4668   1.1       mrg 	void *rt;
   4669   1.1       mrg 	int error;
   4670   1.1       mrg 
   4671  1.11       mrg 	NETBSD32TO64_UAP(shmid);
   4672  1.11       mrg 	NETBSD32TOP_UAP(shmaddr, void);
   4673  1.11       mrg 	NETBSD32TO64_UAP(shmflg);
   4674   1.1       mrg 	error = sys_shmat(p, &ua, (register_t *)&rt);
   4675  1.32       mrg 	*retval = rt;
   4676   1.1       mrg 	return (error);
   4677   1.6       eeh #else
   4678   1.6       eeh 	return (ENOSYS);
   4679   1.6       eeh #endif
   4680   1.1       mrg }
   4681   1.1       mrg 
   4682   1.1       mrg int
   4683  1.20       eeh netbsd32___shmctl13(p, v, retval)
   4684   1.1       mrg 	struct proc *p;
   4685   1.1       mrg 	void *v;
   4686   1.1       mrg 	register_t *retval;
   4687   1.1       mrg {
   4688   1.6       eeh #if 0
   4689  1.19       eeh 	struct netbsd32_shmctl_args /* {
   4690   1.1       mrg 		syscallarg(int) shmid;
   4691   1.1       mrg 		syscallarg(int) cmd;
   4692  1.10       mrg 		syscallarg(netbsd32_shmid_dsp_t) buf;
   4693   1.1       mrg 	} */ *uap = v;
   4694   1.1       mrg 	struct sys_shmctl_args ua;
   4695   1.1       mrg 	struct shmid_ds ds;
   4696  1.10       mrg 	struct netbsd32_shmid_ds *ds32p;
   4697   1.1       mrg 	int error;
   4698   1.1       mrg 
   4699  1.11       mrg 	NETBSD32TO64_UAP(shmid);
   4700  1.11       mrg 	NETBSD32TO64_UAP(cmd);
   4701  1.10       mrg 	ds32p = (struct netbsd32_shmid_ds *)(u_long)SCARG(uap, buf);
   4702   1.1       mrg 	if (ds32p) {
   4703   1.1       mrg 		SCARG(&ua, buf) = NULL;
   4704  1.10       mrg 		netbsd32_to_shmid_ds(ds32p, &ds);
   4705   1.1       mrg 	} else
   4706   1.1       mrg 		SCARG(&ua, buf) = NULL;
   4707   1.1       mrg 	error = sys_shmctl(p, &ua, retval);
   4708   1.1       mrg 	if (error)
   4709   1.1       mrg 		return (error);
   4710   1.1       mrg 
   4711   1.1       mrg 	if (ds32p)
   4712  1.10       mrg 		netbsd32_from_shmid_ds(&ds, ds32p);
   4713   1.1       mrg 	return (0);
   4714   1.6       eeh #else
   4715   1.6       eeh 	return (ENOSYS);
   4716   1.6       eeh #endif
   4717   1.1       mrg }
   4718   1.1       mrg 
   4719   1.1       mrg int
   4720  1.19       eeh netbsd32_shmdt(p, v, retval)
   4721   1.1       mrg 	struct proc *p;
   4722   1.1       mrg 	void *v;
   4723   1.1       mrg 	register_t *retval;
   4724   1.1       mrg {
   4725   1.6       eeh #if 0
   4726  1.19       eeh 	struct netbsd32_shmdt_args /* {
   4727  1.10       mrg 		syscallarg(const netbsd32_voidp) shmaddr;
   4728   1.1       mrg 	} */ *uap = v;
   4729   1.1       mrg 	struct sys_shmdt_args ua;
   4730   1.1       mrg 
   4731  1.11       mrg 	NETBSD32TOP_UAP(shmaddr, const char);
   4732   1.1       mrg 	return (sys_shmdt(p, &ua, retval));
   4733   1.6       eeh #else
   4734   1.6       eeh 	return (ENOSYS);
   4735   1.6       eeh #endif
   4736   1.1       mrg }
   4737   1.1       mrg 
   4738   1.1       mrg int
   4739  1.19       eeh netbsd32_shmget(p, v, retval)
   4740   1.1       mrg 	struct proc *p;
   4741   1.1       mrg 	void *v;
   4742   1.1       mrg 	register_t *retval;
   4743   1.1       mrg {
   4744   1.6       eeh #if 0
   4745  1.19       eeh 	struct netbsd32_shmget_args /* {
   4746  1.10       mrg 		syscallarg(netbsd32_key_t) key;
   4747  1.10       mrg 		syscallarg(netbsd32_size_t) size;
   4748   1.1       mrg 		syscallarg(int) shmflg;
   4749   1.1       mrg 	} */ *uap = v;
   4750   1.1       mrg 	struct sys_shmget_args ua;
   4751   1.1       mrg 
   4752  1.11       mrg 	NETBSD32TOX_UAP(key, key_t)
   4753  1.11       mrg 	NETBSD32TOX_UAP(size, size_t)
   4754  1.11       mrg 	NETBSD32TO64_UAP(shmflg);
   4755   1.1       mrg 	return (sys_shmget(p, &ua, retval));
   4756   1.6       eeh #else
   4757   1.6       eeh 	return (ENOSYS);
   4758   1.6       eeh #endif
   4759   1.1       mrg }
   4760  1.20       eeh #endif /* SYSVSHM */
   4761   1.1       mrg 
   4762   1.1       mrg int
   4763  1.19       eeh netbsd32_clock_gettime(p, v, retval)
   4764   1.1       mrg 	struct proc *p;
   4765   1.1       mrg 	void *v;
   4766   1.1       mrg 	register_t *retval;
   4767   1.1       mrg {
   4768  1.19       eeh 	struct netbsd32_clock_gettime_args /* {
   4769  1.10       mrg 		syscallarg(netbsd32_clockid_t) clock_id;
   4770  1.10       mrg 		syscallarg(netbsd32_timespecp_t) tp;
   4771   1.1       mrg 	} */ *uap = v;
   4772   1.6       eeh 	clockid_t clock_id;
   4773   1.6       eeh 	struct timeval atv;
   4774   1.6       eeh 	struct timespec ats;
   4775  1.10       mrg 	struct netbsd32_timespec ts32;
   4776   1.6       eeh 
   4777   1.6       eeh 	clock_id = SCARG(uap, clock_id);
   4778   1.6       eeh 	if (clock_id != CLOCK_REALTIME)
   4779   1.6       eeh 		return (EINVAL);
   4780   1.1       mrg 
   4781   1.6       eeh 	microtime(&atv);
   4782   1.6       eeh 	TIMEVAL_TO_TIMESPEC(&atv,&ats);
   4783  1.10       mrg 	netbsd32_from_timespec(&ats, &ts32);
   4784   1.1       mrg 
   4785   1.6       eeh 	return copyout(&ts32, (caddr_t)(u_long)SCARG(uap, tp), sizeof(ts32));
   4786   1.1       mrg }
   4787   1.1       mrg 
   4788   1.1       mrg int
   4789  1.19       eeh netbsd32_clock_settime(p, v, retval)
   4790   1.1       mrg 	struct proc *p;
   4791   1.1       mrg 	void *v;
   4792   1.1       mrg 	register_t *retval;
   4793   1.1       mrg {
   4794  1.19       eeh 	struct netbsd32_clock_settime_args /* {
   4795  1.10       mrg 		syscallarg(netbsd32_clockid_t) clock_id;
   4796  1.10       mrg 		syscallarg(const netbsd32_timespecp_t) tp;
   4797   1.1       mrg 	} */ *uap = v;
   4798  1.10       mrg 	struct netbsd32_timespec ts32;
   4799   1.6       eeh 	clockid_t clock_id;
   4800   1.6       eeh 	struct timeval atv;
   4801   1.6       eeh 	struct timespec ats;
   4802   1.6       eeh 	int error;
   4803   1.6       eeh 
   4804   1.6       eeh 	if ((error = suser(p->p_ucred, &p->p_acflag)) != 0)
   4805   1.6       eeh 		return (error);
   4806   1.6       eeh 
   4807   1.6       eeh 	clock_id = SCARG(uap, clock_id);
   4808   1.6       eeh 	if (clock_id != CLOCK_REALTIME)
   4809   1.6       eeh 		return (EINVAL);
   4810   1.6       eeh 
   4811   1.6       eeh 	if ((error = copyin((caddr_t)(u_long)SCARG(uap, tp), &ts32, sizeof(ts32))) != 0)
   4812   1.6       eeh 		return (error);
   4813   1.6       eeh 
   4814  1.10       mrg 	netbsd32_to_timespec(&ts32, &ats);
   4815   1.6       eeh 	TIMESPEC_TO_TIMEVAL(&atv,&ats);
   4816   1.6       eeh 	if ((error = settime(&atv)))
   4817   1.6       eeh 		return (error);
   4818   1.1       mrg 
   4819   1.6       eeh 	return 0;
   4820   1.1       mrg }
   4821   1.1       mrg 
   4822   1.1       mrg int
   4823  1.19       eeh netbsd32_clock_getres(p, v, retval)
   4824   1.1       mrg 	struct proc *p;
   4825   1.1       mrg 	void *v;
   4826   1.1       mrg 	register_t *retval;
   4827   1.1       mrg {
   4828  1.19       eeh 	struct netbsd32_clock_getres_args /* {
   4829  1.10       mrg 		syscallarg(netbsd32_clockid_t) clock_id;
   4830  1.10       mrg 		syscallarg(netbsd32_timespecp_t) tp;
   4831   1.1       mrg 	} */ *uap = v;
   4832  1.10       mrg 	struct netbsd32_timespec ts32;
   4833   1.6       eeh 	clockid_t clock_id;
   4834   1.1       mrg 	struct timespec ts;
   4835   1.6       eeh 	int error = 0;
   4836   1.6       eeh 
   4837   1.6       eeh 	clock_id = SCARG(uap, clock_id);
   4838   1.6       eeh 	if (clock_id != CLOCK_REALTIME)
   4839   1.6       eeh 		return (EINVAL);
   4840   1.6       eeh 
   4841   1.6       eeh 	if (SCARG(uap, tp)) {
   4842   1.6       eeh 		ts.tv_sec = 0;
   4843   1.6       eeh 		ts.tv_nsec = 1000000000 / hz;
   4844   1.1       mrg 
   4845  1.10       mrg 		netbsd32_from_timespec(&ts, &ts32);
   4846   1.6       eeh 		error = copyout(&ts, (caddr_t)(u_long)SCARG(uap, tp), sizeof(ts));
   4847   1.6       eeh 	}
   4848   1.1       mrg 
   4849   1.6       eeh 	return error;
   4850   1.1       mrg }
   4851   1.1       mrg 
   4852   1.1       mrg int
   4853  1.19       eeh netbsd32_nanosleep(p, v, retval)
   4854   1.1       mrg 	struct proc *p;
   4855   1.1       mrg 	void *v;
   4856   1.1       mrg 	register_t *retval;
   4857   1.1       mrg {
   4858  1.19       eeh 	struct netbsd32_nanosleep_args /* {
   4859  1.10       mrg 		syscallarg(const netbsd32_timespecp_t) rqtp;
   4860  1.10       mrg 		syscallarg(netbsd32_timespecp_t) rmtp;
   4861   1.1       mrg 	} */ *uap = v;
   4862   1.6       eeh 	static int nanowait;
   4863  1.10       mrg 	struct netbsd32_timespec ts32;
   4864   1.6       eeh 	struct timespec rqt;
   4865   1.6       eeh 	struct timespec rmt;
   4866   1.6       eeh 	struct timeval atv, utv;
   4867   1.6       eeh 	int error, s, timo;
   4868   1.6       eeh 
   4869   1.6       eeh 	error = copyin((caddr_t)(u_long)SCARG(uap, rqtp), (caddr_t)&ts32,
   4870   1.6       eeh 		       sizeof(ts32));
   4871   1.1       mrg 	if (error)
   4872   1.1       mrg 		return (error);
   4873   1.1       mrg 
   4874  1.10       mrg 	netbsd32_to_timespec(&ts32, &rqt);
   4875   1.6       eeh 	TIMESPEC_TO_TIMEVAL(&atv,&rqt)
   4876   1.6       eeh 	if (itimerfix(&atv))
   4877   1.6       eeh 		return (EINVAL);
   4878   1.6       eeh 
   4879   1.6       eeh 	s = splclock();
   4880   1.6       eeh 	timeradd(&atv,&time,&atv);
   4881   1.6       eeh 	timo = hzto(&atv);
   4882   1.6       eeh 	/*
   4883   1.6       eeh 	 * Avoid inadvertantly sleeping forever
   4884   1.6       eeh 	 */
   4885   1.6       eeh 	if (timo == 0)
   4886   1.6       eeh 		timo = 1;
   4887   1.6       eeh 	splx(s);
   4888   1.6       eeh 
   4889   1.6       eeh 	error = tsleep(&nanowait, PWAIT | PCATCH, "nanosleep", timo);
   4890   1.6       eeh 	if (error == ERESTART)
   4891   1.6       eeh 		error = EINTR;
   4892   1.6       eeh 	if (error == EWOULDBLOCK)
   4893   1.6       eeh 		error = 0;
   4894   1.6       eeh 
   4895   1.6       eeh 	if (SCARG(uap, rmtp)) {
   4896   1.6       eeh 		int error;
   4897   1.6       eeh 
   4898   1.6       eeh 		s = splclock();
   4899   1.6       eeh 		utv = time;
   4900   1.6       eeh 		splx(s);
   4901   1.6       eeh 
   4902   1.6       eeh 		timersub(&atv, &utv, &utv);
   4903   1.6       eeh 		if (utv.tv_sec < 0)
   4904   1.6       eeh 			timerclear(&utv);
   4905   1.6       eeh 
   4906   1.6       eeh 		TIMEVAL_TO_TIMESPEC(&utv,&rmt);
   4907  1.10       mrg 		netbsd32_from_timespec(&rmt, &ts32);
   4908   1.6       eeh 		error = copyout((caddr_t)&ts32, (caddr_t)(u_long)SCARG(uap,rmtp),
   4909   1.6       eeh 			sizeof(ts32));
   4910   1.6       eeh 		if (error)
   4911   1.6       eeh 			return (error);
   4912   1.6       eeh 	}
   4913   1.6       eeh 
   4914   1.6       eeh 	return error;
   4915   1.6       eeh }
   4916   1.6       eeh 
   4917   1.6       eeh int
   4918  1.19       eeh netbsd32_fdatasync(p, v, retval)
   4919   1.6       eeh 	struct proc *p;
   4920   1.6       eeh 	void *v;
   4921   1.6       eeh 	register_t *retval;
   4922   1.6       eeh {
   4923  1.19       eeh 	struct netbsd32_fdatasync_args /* {
   4924   1.6       eeh 		syscallarg(int) fd;
   4925   1.6       eeh 	} */ *uap = v;
   4926   1.6       eeh 	struct sys_fdatasync_args ua;
   4927   1.6       eeh 
   4928  1.11       mrg 	NETBSD32TO64_UAP(fd);
   4929   1.6       eeh 
   4930   1.6       eeh 	return (sys_fdatasync(p, &ua, retval));
   4931   1.1       mrg }
   4932   1.1       mrg 
   4933   1.1       mrg int
   4934  1.19       eeh netbsd32___posix_rename(p, v, retval)
   4935   1.1       mrg 	struct proc *p;
   4936   1.1       mrg 	void *v;
   4937   1.1       mrg 	register_t *retval;
   4938   1.1       mrg {
   4939  1.19       eeh 	struct netbsd32___posix_rename_args /* {
   4940  1.10       mrg 		syscallarg(const netbsd32_charp) from;
   4941  1.10       mrg 		syscallarg(const netbsd32_charp) to;
   4942   1.1       mrg 	} */ *uap = v;
   4943   1.1       mrg 	struct sys___posix_rename_args ua;
   4944   1.1       mrg 
   4945  1.20       eeh 	NETBSD32TOP_UAP(from, const char);
   4946  1.20       eeh 	NETBSD32TOP_UAP(to, const char);
   4947   1.6       eeh 
   4948   1.1       mrg 	return (sys___posix_rename(p, &ua, retval));
   4949   1.1       mrg }
   4950   1.1       mrg 
   4951   1.1       mrg int
   4952  1.19       eeh netbsd32_swapctl(p, v, retval)
   4953   1.1       mrg 	struct proc *p;
   4954   1.1       mrg 	void *v;
   4955   1.1       mrg 	register_t *retval;
   4956   1.1       mrg {
   4957  1.19       eeh 	struct netbsd32_swapctl_args /* {
   4958   1.1       mrg 		syscallarg(int) cmd;
   4959  1.10       mrg 		syscallarg(const netbsd32_voidp) arg;
   4960   1.1       mrg 		syscallarg(int) misc;
   4961   1.1       mrg 	} */ *uap = v;
   4962   1.1       mrg 	struct sys_swapctl_args ua;
   4963   1.1       mrg 
   4964  1.11       mrg 	NETBSD32TO64_UAP(cmd);
   4965  1.11       mrg 	NETBSD32TOP_UAP(arg, const void);
   4966  1.11       mrg 	NETBSD32TO64_UAP(misc);
   4967   1.1       mrg 	return (sys_swapctl(p, &ua, retval));
   4968   1.1       mrg }
   4969   1.1       mrg 
   4970   1.1       mrg int
   4971  1.19       eeh netbsd32_getdents(p, v, retval)
   4972   1.1       mrg 	struct proc *p;
   4973   1.1       mrg 	void *v;
   4974   1.1       mrg 	register_t *retval;
   4975   1.1       mrg {
   4976  1.19       eeh 	struct netbsd32_getdents_args /* {
   4977   1.1       mrg 		syscallarg(int) fd;
   4978  1.10       mrg 		syscallarg(netbsd32_charp) buf;
   4979  1.10       mrg 		syscallarg(netbsd32_size_t) count;
   4980   1.1       mrg 	} */ *uap = v;
   4981   1.6       eeh 	struct file *fp;
   4982   1.6       eeh 	int error, done;
   4983   1.1       mrg 
   4984  1.12   thorpej 	/* getvnode() will use the descriptor for us */
   4985   1.6       eeh 	if ((error = getvnode(p->p_fd, SCARG(uap, fd), &fp)) != 0)
   4986   1.6       eeh 		return (error);
   4987  1.12   thorpej 	if ((fp->f_flag & FREAD) == 0) {
   4988  1.12   thorpej 		error = EBADF;
   4989  1.12   thorpej 		goto out;
   4990  1.12   thorpej 	}
   4991   1.6       eeh 	error = vn_readdir(fp, (caddr_t)(u_long)SCARG(uap, buf), UIO_USERSPACE,
   4992   1.6       eeh 			SCARG(uap, count), &done, p, 0, 0);
   4993   1.6       eeh 	*retval = done;
   4994  1.12   thorpej  out:
   4995  1.19       eeh 	FILE_UNUSE(fp, p);
   4996   1.6       eeh 	return (error);
   4997   1.1       mrg }
   4998   1.1       mrg 
   4999   1.6       eeh 
   5000   1.1       mrg int
   5001  1.19       eeh netbsd32_minherit(p, v, retval)
   5002   1.1       mrg 	struct proc *p;
   5003   1.1       mrg 	void *v;
   5004   1.1       mrg 	register_t *retval;
   5005   1.1       mrg {
   5006  1.19       eeh 	struct netbsd32_minherit_args /* {
   5007  1.10       mrg 		syscallarg(netbsd32_voidp) addr;
   5008  1.10       mrg 		syscallarg(netbsd32_size_t) len;
   5009   1.1       mrg 		syscallarg(int) inherit;
   5010   1.1       mrg 	} */ *uap = v;
   5011   1.1       mrg 	struct sys_minherit_args ua;
   5012   1.1       mrg 
   5013  1.11       mrg 	NETBSD32TOP_UAP(addr, void);
   5014  1.11       mrg 	NETBSD32TOX_UAP(len, size_t);
   5015  1.11       mrg 	NETBSD32TO64_UAP(inherit);
   5016   1.1       mrg 	return (sys_minherit(p, &ua, retval));
   5017   1.1       mrg }
   5018   1.1       mrg 
   5019   1.1       mrg int
   5020  1.19       eeh netbsd32_lchmod(p, v, retval)
   5021   1.1       mrg 	struct proc *p;
   5022   1.1       mrg 	void *v;
   5023   1.1       mrg 	register_t *retval;
   5024   1.1       mrg {
   5025  1.19       eeh 	struct netbsd32_lchmod_args /* {
   5026  1.10       mrg 		syscallarg(const netbsd32_charp) path;
   5027   1.1       mrg 		syscallarg(mode_t) mode;
   5028   1.1       mrg 	} */ *uap = v;
   5029   1.1       mrg 	struct sys_lchmod_args ua;
   5030   1.1       mrg 
   5031  1.11       mrg 	NETBSD32TOP_UAP(path, const char);
   5032  1.11       mrg 	NETBSD32TO64_UAP(mode);
   5033   1.1       mrg 	return (sys_lchmod(p, &ua, retval));
   5034   1.1       mrg }
   5035   1.1       mrg 
   5036   1.1       mrg int
   5037  1.19       eeh netbsd32_lchown(p, v, retval)
   5038   1.1       mrg 	struct proc *p;
   5039   1.1       mrg 	void *v;
   5040   1.1       mrg 	register_t *retval;
   5041   1.1       mrg {
   5042  1.19       eeh 	struct netbsd32_lchown_args /* {
   5043  1.10       mrg 		syscallarg(const netbsd32_charp) path;
   5044   1.1       mrg 		syscallarg(uid_t) uid;
   5045   1.1       mrg 		syscallarg(gid_t) gid;
   5046   1.1       mrg 	} */ *uap = v;
   5047   1.1       mrg 	struct sys_lchown_args ua;
   5048   1.1       mrg 
   5049  1.11       mrg 	NETBSD32TOP_UAP(path, const char);
   5050  1.11       mrg 	NETBSD32TO64_UAP(uid);
   5051  1.11       mrg 	NETBSD32TO64_UAP(gid);
   5052   1.1       mrg 	return (sys_lchown(p, &ua, retval));
   5053   1.1       mrg }
   5054   1.1       mrg 
   5055   1.1       mrg int
   5056  1.19       eeh netbsd32_lutimes(p, v, retval)
   5057   1.1       mrg 	struct proc *p;
   5058   1.1       mrg 	void *v;
   5059   1.1       mrg 	register_t *retval;
   5060   1.1       mrg {
   5061  1.19       eeh 	struct netbsd32_lutimes_args /* {
   5062  1.10       mrg 		syscallarg(const netbsd32_charp) path;
   5063  1.10       mrg 		syscallarg(const netbsd32_timevalp_t) tptr;
   5064   1.1       mrg 	} */ *uap = v;
   5065   1.6       eeh 	int error;
   5066   1.6       eeh 	struct nameidata nd;
   5067   1.1       mrg 
   5068   1.6       eeh 	NDINIT(&nd, LOOKUP, NOFOLLOW, UIO_USERSPACE, (caddr_t)(u_long)SCARG(uap, path), p);
   5069   1.6       eeh 	if ((error = namei(&nd)) != 0)
   5070   1.6       eeh 		return (error);
   5071   1.6       eeh 
   5072   1.6       eeh 	error = change_utimes32(nd.ni_vp, (struct timeval *)(u_long)SCARG(uap, tptr), p);
   5073   1.6       eeh 
   5074   1.6       eeh 	vrele(nd.ni_vp);
   5075   1.6       eeh 	return (error);
   5076   1.1       mrg }
   5077   1.1       mrg 
   5078   1.6       eeh 
   5079   1.1       mrg int
   5080  1.19       eeh netbsd32___msync13(p, v, retval)
   5081   1.1       mrg 	struct proc *p;
   5082   1.1       mrg 	void *v;
   5083   1.1       mrg 	register_t *retval;
   5084   1.1       mrg {
   5085  1.19       eeh 	struct netbsd32___msync13_args /* {
   5086  1.10       mrg 		syscallarg(netbsd32_voidp) addr;
   5087  1.10       mrg 		syscallarg(netbsd32_size_t) len;
   5088   1.1       mrg 		syscallarg(int) flags;
   5089   1.1       mrg 	} */ *uap = v;
   5090   1.1       mrg 	struct sys___msync13_args ua;
   5091   1.1       mrg 
   5092  1.11       mrg 	NETBSD32TOP_UAP(addr, void);
   5093  1.11       mrg 	NETBSD32TOX_UAP(len, size_t);
   5094  1.11       mrg 	NETBSD32TO64_UAP(flags);
   5095   1.1       mrg 	return (sys___msync13(p, &ua, retval));
   5096   1.1       mrg }
   5097   1.1       mrg 
   5098   1.1       mrg int
   5099  1.19       eeh netbsd32___stat13(p, v, retval)
   5100   1.1       mrg 	struct proc *p;
   5101   1.1       mrg 	void *v;
   5102   1.1       mrg 	register_t *retval;
   5103   1.1       mrg {
   5104  1.19       eeh 	struct netbsd32___stat13_args /* {
   5105  1.10       mrg 		syscallarg(const netbsd32_charp) path;
   5106  1.10       mrg 		syscallarg(netbsd32_statp_t) ub;
   5107   1.1       mrg 	} */ *uap = v;
   5108  1.10       mrg 	struct netbsd32_stat sb32;
   5109   1.1       mrg 	struct stat sb;
   5110   1.1       mrg 	int error;
   5111   1.6       eeh 	struct nameidata nd;
   5112  1.31       mrg 	caddr_t sg;
   5113  1.31       mrg 	char *path;
   5114  1.31       mrg 
   5115  1.31       mrg 	path = (char *)(u_long)SCARG(uap, path);
   5116  1.31       mrg 	sg = stackgap_init(p->p_emul);
   5117  1.31       mrg 	NETBSD32_CHECK_ALT_EXIST(p, &sg, path);
   5118   1.1       mrg 
   5119  1.31       mrg 	NDINIT(&nd, LOOKUP, FOLLOW | LOCKLEAF, UIO_USERSPACE, path, p);
   5120   1.6       eeh 	if ((error = namei(&nd)) != 0)
   5121   1.6       eeh 		return (error);
   5122   1.6       eeh 	error = vn_stat(nd.ni_vp, &sb, p);
   5123   1.6       eeh 	vput(nd.ni_vp);
   5124   1.1       mrg 	if (error)
   5125   1.1       mrg 		return (error);
   5126  1.10       mrg 	netbsd32_from___stat13(&sb, &sb32);
   5127   1.6       eeh 	error = copyout(&sb32, (caddr_t)(u_long)SCARG(uap, ub), sizeof(sb32));
   5128   1.6       eeh 	return (error);
   5129   1.1       mrg }
   5130   1.1       mrg 
   5131   1.1       mrg int
   5132  1.19       eeh netbsd32___fstat13(p, v, retval)
   5133   1.1       mrg 	struct proc *p;
   5134   1.1       mrg 	void *v;
   5135   1.1       mrg 	register_t *retval;
   5136   1.1       mrg {
   5137  1.19       eeh 	struct netbsd32___fstat13_args /* {
   5138   1.1       mrg 		syscallarg(int) fd;
   5139  1.10       mrg 		syscallarg(netbsd32_statp_t) sb;
   5140   1.1       mrg 	} */ *uap = v;
   5141   1.6       eeh 	int fd = SCARG(uap, fd);
   5142  1.25  augustss 	struct filedesc *fdp = p->p_fd;
   5143  1.25  augustss 	struct file *fp;
   5144  1.10       mrg 	struct netbsd32_stat sb32;
   5145   1.6       eeh 	struct stat ub;
   5146   1.6       eeh 	int error = 0;
   5147   1.6       eeh 
   5148   1.6       eeh 	if ((u_int)fd >= fdp->fd_nfiles ||
   5149   1.6       eeh 	    (fp = fdp->fd_ofiles[fd]) == NULL)
   5150   1.6       eeh 		return (EBADF);
   5151   1.6       eeh 	switch (fp->f_type) {
   5152   1.6       eeh 
   5153   1.6       eeh 	case DTYPE_VNODE:
   5154   1.6       eeh 		error = vn_stat((struct vnode *)fp->f_data, &ub, p);
   5155   1.6       eeh 		break;
   5156   1.6       eeh 
   5157   1.6       eeh 	case DTYPE_SOCKET:
   5158   1.6       eeh 		error = soo_stat((struct socket *)fp->f_data, &ub);
   5159   1.6       eeh 		break;
   5160   1.6       eeh 
   5161   1.6       eeh 	default:
   5162   1.6       eeh 		panic("fstat");
   5163   1.6       eeh 		/*NOTREACHED*/
   5164   1.6       eeh 	}
   5165   1.6       eeh 	if (error == 0) {
   5166  1.10       mrg 		netbsd32_from___stat13(&ub, &sb32);
   5167   1.6       eeh 		error = copyout(&sb32, (caddr_t)(u_long)SCARG(uap, sb), sizeof(sb32));
   5168   1.6       eeh 	}
   5169   1.6       eeh 	return (error);
   5170   1.1       mrg }
   5171   1.1       mrg 
   5172   1.1       mrg int
   5173  1.19       eeh netbsd32___lstat13(p, v, retval)
   5174   1.1       mrg 	struct proc *p;
   5175   1.1       mrg 	void *v;
   5176   1.1       mrg 	register_t *retval;
   5177   1.1       mrg {
   5178  1.19       eeh 	struct netbsd32___lstat13_args /* {
   5179  1.10       mrg 		syscallarg(const netbsd32_charp) path;
   5180  1.10       mrg 		syscallarg(netbsd32_statp_t) ub;
   5181   1.1       mrg 	} */ *uap = v;
   5182  1.10       mrg 	struct netbsd32_stat sb32;
   5183   1.1       mrg 	struct stat sb;
   5184   1.1       mrg 	int error;
   5185   1.6       eeh 	struct nameidata nd;
   5186  1.31       mrg 	caddr_t sg;
   5187  1.31       mrg 	char *path;
   5188  1.31       mrg 
   5189  1.31       mrg 	path = (char *)(u_long)SCARG(uap, path);
   5190  1.31       mrg 	sg = stackgap_init(p->p_emul);
   5191  1.31       mrg 	NETBSD32_CHECK_ALT_EXIST(p, &sg, path);
   5192   1.1       mrg 
   5193  1.31       mrg 	NDINIT(&nd, LOOKUP, FOLLOW | LOCKLEAF, UIO_USERSPACE, path, p);
   5194   1.6       eeh 	if ((error = namei(&nd)) != 0)
   5195   1.6       eeh 		return (error);
   5196   1.6       eeh 	error = vn_stat(nd.ni_vp, &sb, p);
   5197   1.6       eeh 	vput(nd.ni_vp);
   5198   1.1       mrg 	if (error)
   5199   1.1       mrg 		return (error);
   5200  1.10       mrg 	netbsd32_from___stat13(&sb, &sb32);
   5201   1.6       eeh 	error = copyout(&sb32, (caddr_t)(u_long)SCARG(uap, ub), sizeof(sb32));
   5202   1.6       eeh 	return (error);
   5203   1.1       mrg }
   5204   1.1       mrg 
   5205   1.1       mrg int
   5206  1.19       eeh netbsd32___sigaltstack14(p, v, retval)
   5207   1.1       mrg 	struct proc *p;
   5208   1.1       mrg 	void *v;
   5209   1.1       mrg 	register_t *retval;
   5210   1.1       mrg {
   5211  1.19       eeh 	struct netbsd32___sigaltstack14_args /* {
   5212  1.10       mrg 		syscallarg(const netbsd32_sigaltstackp_t) nss;
   5213  1.10       mrg 		syscallarg(netbsd32_sigaltstackp_t) oss;
   5214   1.1       mrg 	} */ *uap = v;
   5215  1.10       mrg 	struct netbsd32_sigaltstack s32;
   5216   1.1       mrg 	struct sigaltstack nss, oss;
   5217   1.1       mrg 	int error;
   5218   1.1       mrg 
   5219   1.6       eeh 	if (SCARG(uap, nss)) {
   5220   1.6       eeh 		error = copyin((caddr_t)(u_long)SCARG(uap, nss), &s32, sizeof(s32));
   5221   1.6       eeh 		if (error)
   5222   1.6       eeh 			return (error);
   5223   1.6       eeh 		nss.ss_sp = (void *)(u_long)s32.ss_sp;
   5224   1.6       eeh 		nss.ss_size = (size_t)s32.ss_size;
   5225   1.6       eeh 		nss.ss_flags = s32.ss_flags;
   5226   1.6       eeh 	}
   5227   1.6       eeh 	error = sigaltstack1(p,
   5228   1.6       eeh 	    SCARG(uap, nss) ? &nss : 0, SCARG(uap, oss) ? &oss : 0);
   5229   1.1       mrg 	if (error)
   5230   1.1       mrg 		return (error);
   5231   1.6       eeh 	if (SCARG(uap, oss)) {
   5232  1.10       mrg 		s32.ss_sp = (netbsd32_voidp)(u_long)oss.ss_sp;
   5233  1.10       mrg 		s32.ss_size = (netbsd32_size_t)oss.ss_size;
   5234   1.6       eeh 		s32.ss_flags = oss.ss_flags;
   5235   1.6       eeh 		error = copyout(&s32, (caddr_t)(u_long)SCARG(uap, oss), sizeof(s32));
   5236   1.6       eeh 		if (error)
   5237   1.6       eeh 			return (error);
   5238   1.1       mrg 	}
   5239   1.1       mrg 	return (0);
   5240   1.1       mrg }
   5241   1.1       mrg 
   5242   1.1       mrg int
   5243  1.19       eeh netbsd32___posix_chown(p, v, retval)
   5244   1.1       mrg 	struct proc *p;
   5245   1.1       mrg 	void *v;
   5246   1.1       mrg 	register_t *retval;
   5247   1.1       mrg {
   5248  1.19       eeh 	struct netbsd32___posix_chown_args /* {
   5249  1.10       mrg 		syscallarg(const netbsd32_charp) path;
   5250   1.1       mrg 		syscallarg(uid_t) uid;
   5251   1.1       mrg 		syscallarg(gid_t) gid;
   5252   1.1       mrg 	} */ *uap = v;
   5253   1.1       mrg 	struct sys___posix_chown_args ua;
   5254   1.1       mrg 
   5255  1.11       mrg 	NETBSD32TOP_UAP(path, const char);
   5256  1.11       mrg 	NETBSD32TO64_UAP(uid);
   5257  1.11       mrg 	NETBSD32TO64_UAP(gid);
   5258   1.1       mrg 	return (sys___posix_chown(p, &ua, retval));
   5259   1.1       mrg }
   5260   1.1       mrg 
   5261   1.1       mrg int
   5262  1.19       eeh netbsd32___posix_fchown(p, v, retval)
   5263   1.6       eeh 	struct proc *p;
   5264   1.6       eeh 	void *v;
   5265   1.6       eeh 	register_t *retval;
   5266   1.6       eeh {
   5267  1.19       eeh 	struct netbsd32___posix_fchown_args /* {
   5268   1.6       eeh 		syscallarg(int) fd;
   5269   1.6       eeh 		syscallarg(uid_t) uid;
   5270   1.6       eeh 		syscallarg(gid_t) gid;
   5271   1.6       eeh 	} */ *uap = v;
   5272   1.6       eeh 	struct sys___posix_fchown_args ua;
   5273   1.6       eeh 
   5274  1.11       mrg 	NETBSD32TO64_UAP(fd);
   5275  1.11       mrg 	NETBSD32TO64_UAP(uid);
   5276  1.11       mrg 	NETBSD32TO64_UAP(gid);
   5277   1.6       eeh 	return (sys___posix_fchown(p, &ua, retval));
   5278   1.6       eeh }
   5279   1.6       eeh 
   5280   1.6       eeh int
   5281  1.19       eeh netbsd32___posix_lchown(p, v, retval)
   5282   1.1       mrg 	struct proc *p;
   5283   1.1       mrg 	void *v;
   5284   1.1       mrg 	register_t *retval;
   5285   1.1       mrg {
   5286  1.19       eeh 	struct netbsd32___posix_lchown_args /* {
   5287  1.10       mrg 		syscallarg(const netbsd32_charp) path;
   5288   1.1       mrg 		syscallarg(uid_t) uid;
   5289   1.1       mrg 		syscallarg(gid_t) gid;
   5290   1.1       mrg 	} */ *uap = v;
   5291   1.1       mrg 	struct sys___posix_lchown_args ua;
   5292   1.1       mrg 
   5293  1.11       mrg 	NETBSD32TOP_UAP(path, const char);
   5294  1.11       mrg 	NETBSD32TO64_UAP(uid);
   5295  1.11       mrg 	NETBSD32TO64_UAP(gid);
   5296   1.1       mrg 	return (sys___posix_lchown(p, &ua, retval));
   5297   1.1       mrg }
   5298   1.1       mrg 
   5299   1.1       mrg int
   5300  1.19       eeh netbsd32_getsid(p, v, retval)
   5301   1.6       eeh 	struct proc *p;
   5302   1.6       eeh 	void *v;
   5303   1.6       eeh 	register_t *retval;
   5304   1.6       eeh {
   5305  1.19       eeh 	struct netbsd32_getsid_args /* {
   5306   1.6       eeh 		syscallarg(pid_t) pid;
   5307   1.6       eeh 	} */ *uap = v;
   5308   1.6       eeh 	struct sys_getsid_args ua;
   5309   1.6       eeh 
   5310  1.11       mrg 	NETBSD32TO64_UAP(pid);
   5311   1.6       eeh 	return (sys_getsid(p, &ua, retval));
   5312   1.6       eeh }
   5313   1.6       eeh 
   5314   1.6       eeh int
   5315  1.19       eeh netbsd32_fktrace(p, v, retval)
   5316   1.6       eeh 	struct proc *p;
   5317   1.6       eeh 	void *v;
   5318   1.6       eeh 	register_t *retval;
   5319   1.6       eeh {
   5320  1.19       eeh 	struct netbsd32_fktrace_args /* {
   5321   1.6       eeh 		syscallarg(const int) fd;
   5322   1.6       eeh 		syscallarg(int) ops;
   5323   1.6       eeh 		syscallarg(int) facs;
   5324   1.6       eeh 		syscallarg(int) pid;
   5325   1.6       eeh 	} */ *uap = v;
   5326   1.6       eeh 	struct sys_fktrace_args ua;
   5327   1.6       eeh 
   5328  1.32       mrg 	NETBSD32TOX_UAP(fd, int);
   5329  1.11       mrg 	NETBSD32TO64_UAP(ops);
   5330  1.11       mrg 	NETBSD32TO64_UAP(facs);
   5331  1.11       mrg 	NETBSD32TO64_UAP(pid);
   5332   1.6       eeh 	return (sys_fktrace(p, &ua, retval));
   5333   1.6       eeh }
   5334   1.6       eeh 
   5335   1.6       eeh int
   5336  1.19       eeh netbsd32_preadv(p, v, retval)
   5337   1.1       mrg 	struct proc *p;
   5338   1.1       mrg 	void *v;
   5339   1.1       mrg 	register_t *retval;
   5340   1.1       mrg {
   5341  1.19       eeh 	struct netbsd32_preadv_args /* {
   5342   1.1       mrg 		syscallarg(int) fd;
   5343  1.10       mrg 		syscallarg(const netbsd32_iovecp_t) iovp;
   5344   1.1       mrg 		syscallarg(int) iovcnt;
   5345   1.1       mrg 		syscallarg(int) pad;
   5346   1.1       mrg 		syscallarg(off_t) offset;
   5347   1.1       mrg 	} */ *uap = v;
   5348   1.6       eeh 	struct filedesc *fdp = p->p_fd;
   5349   1.6       eeh 	struct file *fp;
   5350   1.6       eeh 	struct vnode *vp;
   5351   1.6       eeh 	off_t offset;
   5352   1.6       eeh 	int error, fd = SCARG(uap, fd);
   5353   1.6       eeh 
   5354   1.6       eeh 	if ((u_int)fd >= fdp->fd_nfiles ||
   5355   1.6       eeh 	    (fp = fdp->fd_ofiles[fd]) == NULL ||
   5356   1.6       eeh 	    (fp->f_flag & FREAD) == 0)
   5357   1.6       eeh 		return (EBADF);
   5358   1.6       eeh 
   5359   1.6       eeh 	vp = (struct vnode *)fp->f_data;
   5360   1.6       eeh 	if (fp->f_type != DTYPE_VNODE
   5361   1.6       eeh 	    || vp->v_type == VFIFO)
   5362   1.6       eeh 		return (ESPIPE);
   5363   1.6       eeh 
   5364   1.6       eeh 	offset = SCARG(uap, offset);
   5365   1.1       mrg 
   5366   1.6       eeh 	/*
   5367   1.6       eeh 	 * XXX This works because no file systems actually
   5368   1.6       eeh 	 * XXX take any action on the seek operation.
   5369   1.6       eeh 	 */
   5370   1.6       eeh 	if ((error = VOP_SEEK(vp, fp->f_offset, offset, fp->f_cred)) != 0)
   5371   1.6       eeh 		return (error);
   5372   1.1       mrg 
   5373  1.10       mrg 	return (dofilereadv32(p, fd, fp, (struct netbsd32_iovec *)(u_long)SCARG(uap, iovp), SCARG(uap, iovcnt),
   5374   1.6       eeh 	    &offset, 0, retval));
   5375   1.1       mrg }
   5376   1.1       mrg 
   5377   1.1       mrg int
   5378  1.19       eeh netbsd32_pwritev(p, v, retval)
   5379   1.1       mrg 	struct proc *p;
   5380   1.1       mrg 	void *v;
   5381   1.1       mrg 	register_t *retval;
   5382   1.1       mrg {
   5383  1.19       eeh 	struct netbsd32_pwritev_args /* {
   5384   1.1       mrg 		syscallarg(int) fd;
   5385  1.10       mrg 		syscallarg(const netbsd32_iovecp_t) iovp;
   5386   1.1       mrg 		syscallarg(int) iovcnt;
   5387   1.1       mrg 		syscallarg(int) pad;
   5388   1.1       mrg 		syscallarg(off_t) offset;
   5389   1.1       mrg 	} */ *uap = v;
   5390   1.6       eeh 	struct filedesc *fdp = p->p_fd;
   5391   1.6       eeh 	struct file *fp;
   5392   1.6       eeh 	struct vnode *vp;
   5393   1.6       eeh 	off_t offset;
   5394   1.6       eeh 	int error, fd = SCARG(uap, fd);
   5395   1.6       eeh 
   5396   1.6       eeh 	if ((u_int)fd >= fdp->fd_nfiles ||
   5397   1.6       eeh 	    (fp = fdp->fd_ofiles[fd]) == NULL ||
   5398   1.6       eeh 	    (fp->f_flag & FWRITE) == 0)
   5399   1.6       eeh 		return (EBADF);
   5400   1.6       eeh 
   5401   1.6       eeh 	vp = (struct vnode *)fp->f_data;
   5402   1.6       eeh 	if (fp->f_type != DTYPE_VNODE
   5403   1.6       eeh 	    || vp->v_type == VFIFO)
   5404   1.6       eeh 		return (ESPIPE);
   5405   1.6       eeh 
   5406   1.6       eeh 	offset = SCARG(uap, offset);
   5407   1.6       eeh 
   5408   1.6       eeh 	/*
   5409   1.6       eeh 	 * XXX This works because no file systems actually
   5410   1.6       eeh 	 * XXX take any action on the seek operation.
   5411   1.6       eeh 	 */
   5412   1.6       eeh 	if ((error = VOP_SEEK(vp, fp->f_offset, offset, fp->f_cred)) != 0)
   5413   1.6       eeh 		return (error);
   5414   1.6       eeh 
   5415  1.10       mrg 	return (dofilewritev32(p, fd, fp, (struct netbsd32_iovec *)(u_long)SCARG(uap, iovp), SCARG(uap, iovcnt),
   5416   1.6       eeh 	    &offset, 0, retval));
   5417   1.6       eeh }
   5418   1.6       eeh 
   5419  1.20       eeh /* ARGSUSED */
   5420   1.6       eeh int
   5421  1.20       eeh netbsd32___sigaction14(p, v, retval)
   5422  1.20       eeh 	struct proc *p;
   5423   1.6       eeh 	void *v;
   5424   1.6       eeh 	register_t *retval;
   5425   1.6       eeh {
   5426  1.25  augustss 	struct netbsd32___sigaction14_args /* {
   5427  1.20       eeh 		syscallarg(int) signum;
   5428  1.20       eeh 		syscallarg(const struct sigaction *) nsa;
   5429  1.20       eeh 		syscallarg(struct sigaction *) osa;
   5430   1.6       eeh 	} */ *uap = v;
   5431  1.20       eeh 	struct netbsd32_sigaction sa32;
   5432  1.20       eeh 	struct sigaction nsa, osa;
   5433   1.1       mrg 	int error;
   5434   1.1       mrg 
   5435  1.20       eeh 	if (SCARG(uap, nsa)) {
   5436  1.20       eeh 		error = copyin((caddr_t)(u_long)SCARG(uap, nsa),
   5437  1.20       eeh 			       &sa32, sizeof(sa32));
   5438  1.20       eeh 		if (error)
   5439  1.20       eeh 			return (error);
   5440  1.20       eeh 		nsa.sa_handler = (void *)(u_long)sa32.sa_handler;
   5441  1.20       eeh 		nsa.sa_mask = sa32.sa_mask;
   5442  1.20       eeh 		nsa.sa_flags = sa32.sa_flags;
   5443  1.20       eeh 	}
   5444  1.20       eeh 	error = sigaction1(p, SCARG(uap, signum),
   5445  1.20       eeh 	    SCARG(uap, nsa) ? &nsa : 0, SCARG(uap, osa) ? &osa : 0);
   5446   1.6       eeh 	if (error)
   5447   1.6       eeh 		return (error);
   5448  1.20       eeh 	if (SCARG(uap, osa)) {
   5449  1.20       eeh 		sa32.sa_handler = (netbsd32_voidp)(u_long)osa.sa_handler;
   5450  1.20       eeh 		sa32.sa_mask = osa.sa_mask;
   5451  1.20       eeh 		sa32.sa_flags = osa.sa_flags;
   5452  1.20       eeh 		error = copyout(&sa32, (caddr_t)(u_long)SCARG(uap, osa), sizeof(sa32));
   5453  1.20       eeh 		if (error)
   5454  1.20       eeh 			return (error);
   5455  1.20       eeh 	}
   5456   1.6       eeh 	return (0);
   5457   1.6       eeh }
   5458   1.6       eeh 
   5459  1.20       eeh int netbsd32___sigpending14(p, v, retval)
   5460  1.20       eeh 	struct proc *p;
   5461  1.20       eeh 	void   *v;
   5462  1.20       eeh 	register_t *retval;
   5463  1.20       eeh {
   5464  1.25  augustss 	struct netbsd32___sigpending14_args /* {
   5465  1.20       eeh 		syscallarg(sigset_t *) set;
   5466  1.20       eeh 	} */ *uap = v;
   5467  1.20       eeh 	struct sys___sigpending14_args ua;
   5468  1.20       eeh 
   5469  1.20       eeh 	NETBSD32TOP_UAP(set, sigset_t);
   5470  1.20       eeh 	return (sys___sigpending14(p, &ua, retval));
   5471  1.20       eeh }
   5472  1.20       eeh 
   5473  1.20       eeh int netbsd32___sigprocmask14(p, v, retval)
   5474  1.20       eeh 	struct proc *p;
   5475  1.20       eeh 	void   *v;
   5476  1.20       eeh 	register_t *retval;
   5477  1.20       eeh {
   5478  1.25  augustss 	struct netbsd32___sigprocmask14_args /* {
   5479  1.20       eeh 		syscallarg(int) how;
   5480  1.20       eeh 		syscallarg(const sigset_t *) set;
   5481  1.20       eeh 		syscallarg(sigset_t *) oset;
   5482  1.20       eeh 	} */ *uap = v;
   5483  1.20       eeh 	struct sys___sigprocmask14_args ua;
   5484  1.20       eeh 
   5485  1.20       eeh 	NETBSD32TO64_UAP(how);
   5486  1.20       eeh 	NETBSD32TOP_UAP(set, sigset_t);
   5487  1.20       eeh 	NETBSD32TOP_UAP(oset, sigset_t);
   5488  1.20       eeh 	return (sys___sigprocmask14(p, &ua, retval));
   5489  1.20       eeh }
   5490  1.20       eeh 
   5491  1.20       eeh int netbsd32___sigsuspend14(p, v, retval)
   5492  1.20       eeh 	struct proc *p;
   5493  1.20       eeh 	void   *v;
   5494  1.20       eeh 	register_t *retval;
   5495  1.20       eeh {
   5496  1.20       eeh 	struct netbsd32___sigsuspend14_args /* {
   5497  1.20       eeh 		syscallarg(const sigset_t *) set;
   5498  1.20       eeh 	} */ *uap = v;
   5499  1.20       eeh 	struct sys___sigsuspend14_args ua;
   5500  1.20       eeh 
   5501  1.20       eeh 	NETBSD32TOP_UAP(set, sigset_t);
   5502  1.20       eeh 	return (sys___sigsuspend14(p, &ua, retval));
   5503  1.20       eeh };
   5504  1.20       eeh 
   5505  1.20       eeh 
   5506  1.20       eeh /*
   5507  1.20       eeh  * Find pathname of process's current directory.
   5508  1.20       eeh  *
   5509  1.20       eeh  * Use vfs vnode-to-name reverse cache; if that fails, fall back
   5510  1.20       eeh  * to reading directory contents.
   5511  1.20       eeh  */
   5512  1.20       eeh int
   5513  1.20       eeh getcwd_common __P((struct vnode *, struct vnode *,
   5514  1.20       eeh 		   char **, char *, int, int, struct proc *));
   5515  1.20       eeh 
   5516  1.20       eeh int netbsd32___getcwd(p, v, retval)
   5517  1.20       eeh 	struct proc *p;
   5518  1.20       eeh 	void   *v;
   5519  1.20       eeh 	register_t *retval;
   5520  1.20       eeh {
   5521  1.25  augustss 	struct netbsd32___getcwd_args /* {
   5522  1.20       eeh 		syscallarg(char *) bufp;
   5523  1.20       eeh 		syscallarg(size_t) length;
   5524  1.20       eeh 	} */ *uap = v;
   5525  1.20       eeh 
   5526  1.20       eeh 	int     error;
   5527  1.20       eeh 	char   *path;
   5528  1.20       eeh 	char   *bp, *bend;
   5529  1.20       eeh 	int     len = (int)SCARG(uap, length);
   5530  1.20       eeh 	int	lenused;
   5531  1.20       eeh 
   5532  1.20       eeh 	if (len > MAXPATHLEN*4)
   5533  1.20       eeh 		len = MAXPATHLEN*4;
   5534  1.20       eeh 	else if (len < 2)
   5535  1.20       eeh 		return ERANGE;
   5536  1.20       eeh 
   5537  1.20       eeh 	path = (char *)malloc(len, M_TEMP, M_WAITOK);
   5538  1.20       eeh 	if (!path)
   5539  1.20       eeh 		return ENOMEM;
   5540  1.20       eeh 
   5541  1.20       eeh 	bp = &path[len];
   5542  1.20       eeh 	bend = bp;
   5543  1.20       eeh 	*(--bp) = '\0';
   5544  1.20       eeh 
   5545  1.20       eeh 	/*
   5546  1.20       eeh 	 * 5th argument here is "max number of vnodes to traverse".
   5547  1.20       eeh 	 * Since each entry takes up at least 2 bytes in the output buffer,
   5548  1.20       eeh 	 * limit it to N/2 vnodes for an N byte buffer.
   5549  1.20       eeh 	 */
   5550  1.20       eeh #define GETCWD_CHECK_ACCESS 0x0001
   5551  1.20       eeh 	error = getcwd_common (p->p_cwdi->cwdi_cdir, NULL, &bp, path, len/2,
   5552  1.20       eeh 			       GETCWD_CHECK_ACCESS, p);
   5553  1.20       eeh 
   5554  1.20       eeh 	if (error)
   5555  1.20       eeh 		goto out;
   5556  1.20       eeh 	lenused = bend - bp;
   5557  1.20       eeh 	*retval = lenused;
   5558  1.20       eeh 	/* put the result into user buffer */
   5559  1.20       eeh 	error = copyout(bp, (caddr_t)(u_long)SCARG(uap, bufp), lenused);
   5560  1.20       eeh 
   5561  1.20       eeh out:
   5562  1.20       eeh 	free(path, M_TEMP);
   5563  1.20       eeh 	return error;
   5564  1.20       eeh }
   5565  1.20       eeh 
   5566  1.20       eeh int netbsd32_fchroot(p, v, retval)
   5567  1.20       eeh 	struct proc *p;
   5568  1.20       eeh 	void *v;
   5569  1.20       eeh 	register_t *retval;
   5570  1.20       eeh {
   5571  1.25  augustss 	struct netbsd32_fchroot_args /* {
   5572  1.20       eeh 		syscallarg(int) fd;
   5573  1.20       eeh 	} */ *uap = v;
   5574  1.20       eeh 	struct sys_fchroot_args ua;
   5575  1.20       eeh 
   5576  1.20       eeh 	NETBSD32TO64_UAP(fd);
   5577  1.20       eeh 	return (sys_fchroot(p, &ua, retval));
   5578  1.20       eeh }
   5579  1.20       eeh 
   5580  1.20       eeh /*
   5581  1.20       eeh  * Open a file given a file handle.
   5582  1.20       eeh  *
   5583  1.20       eeh  * Check permissions, allocate an open file structure,
   5584  1.20       eeh  * and call the device open routine if any.
   5585  1.20       eeh  */
   5586   1.6       eeh int
   5587  1.20       eeh netbsd32_fhopen(p, v, retval)
   5588  1.20       eeh 	struct proc *p;
   5589  1.20       eeh 	void *v;
   5590  1.20       eeh 	register_t *retval;
   5591  1.20       eeh {
   5592  1.25  augustss 	struct netbsd32_fhopen_args /* {
   5593  1.20       eeh 		syscallarg(const fhandle_t *) fhp;
   5594  1.20       eeh 		syscallarg(int) flags;
   5595  1.20       eeh 	} */ *uap = v;
   5596  1.20       eeh 	struct sys_fhopen_args ua;
   5597  1.20       eeh 
   5598  1.20       eeh 	NETBSD32TOP_UAP(fhp, fhandle_t);
   5599  1.20       eeh 	NETBSD32TO64_UAP(flags);
   5600  1.20       eeh 	return (sys_fhopen(p, &ua, retval));
   5601  1.20       eeh }
   5602  1.20       eeh 
   5603  1.20       eeh int netbsd32_fhstat(p, v, retval)
   5604  1.20       eeh 	struct proc *p;
   5605  1.20       eeh 	void *v;
   5606  1.20       eeh 	register_t *retval;
   5607  1.20       eeh {
   5608  1.25  augustss 	struct netbsd32_fhstat_args /* {
   5609  1.20       eeh 		syscallarg(const netbsd32_fhandlep_t) fhp;
   5610  1.20       eeh 		syscallarg(struct stat *) sb;
   5611  1.20       eeh 	} */ *uap = v;
   5612  1.20       eeh 	struct sys_fhstat_args ua;
   5613  1.20       eeh 
   5614  1.20       eeh 	NETBSD32TOP_UAP(fhp, const fhandle_t);
   5615  1.20       eeh 	NETBSD32TOP_UAP(sb, struct stat);
   5616  1.20       eeh 	return (sys_fhstat(p, &ua, retval));
   5617  1.20       eeh }
   5618  1.20       eeh 
   5619  1.20       eeh int netbsd32_fhstatfs(p, v, retval)
   5620  1.20       eeh 	struct proc *p;
   5621   1.6       eeh 	void *v;
   5622   1.6       eeh 	register_t *retval;
   5623   1.6       eeh {
   5624  1.25  augustss 	struct netbsd32_fhstatfs_args /* {
   5625  1.20       eeh 		syscallarg(const netbsd32_fhandlep_t) fhp;
   5626  1.20       eeh 		syscallarg(struct statfs *) buf;
   5627   1.6       eeh 	} */ *uap = v;
   5628  1.20       eeh 	struct sys_fhstatfs_args ua;
   5629   1.1       mrg 
   5630  1.20       eeh 	NETBSD32TOP_UAP(fhp, const fhandle_t);
   5631  1.20       eeh 	NETBSD32TOP_UAP(buf, struct statfs);
   5632  1.20       eeh 	return (sys_fhstatfs(p, &ua, retval));
   5633   1.1       mrg }
   5634