netbsd32_netbsd.c revision 1.41 1 1.41 jdolecek /* $NetBSD: netbsd32_netbsd.c,v 1.41 2000/12/01 12:28:34 jdolecek 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 1.41 jdolecek 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 1.41 jdolecek 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 1.41 jdolecek 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 1.41 jdolecek 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 1.40 jdolecek /* ARGSUSED */
1741 1.1 mrg int
1742 1.19 eeh netbsd32_execve(p, v, retval)
1743 1.1 mrg struct proc *p;
1744 1.1 mrg void *v;
1745 1.1 mrg register_t *retval;
1746 1.1 mrg {
1747 1.19 eeh struct netbsd32_execve_args /* {
1748 1.10 mrg syscallarg(const netbsd32_charp) path;
1749 1.10 mrg syscallarg(netbsd32_charpp) argp;
1750 1.10 mrg syscallarg(netbsd32_charpp) envp;
1751 1.1 mrg } */ *uap = v;
1752 1.1 mrg struct sys_execve_args ua;
1753 1.1 mrg caddr_t sg;
1754 1.20 eeh /* Function args */
1755 1.20 eeh int error, i;
1756 1.20 eeh struct exec_package pack;
1757 1.20 eeh struct nameidata nid;
1758 1.20 eeh struct vattr attr;
1759 1.20 eeh struct ucred *cred = p->p_ucred;
1760 1.20 eeh char *argp;
1761 1.20 eeh netbsd32_charp const *cpp;
1762 1.20 eeh char *dp;
1763 1.20 eeh netbsd32_charp sp;
1764 1.20 eeh long argc, envc;
1765 1.20 eeh size_t len;
1766 1.20 eeh char *stack;
1767 1.20 eeh struct ps_strings arginfo;
1768 1.20 eeh struct vmspace *vm;
1769 1.20 eeh char **tmpfap;
1770 1.20 eeh int szsigcode;
1771 1.40 jdolecek struct exec_vmcmd *base_vcp = NULL;
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 1.41 jdolecek 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 1.39 mrg pack.ep_hdr = malloc(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_flags = 0;
1808 1.20 eeh
1809 1.20 eeh /* see if we can run it. */
1810 1.20 eeh if ((error = check_exec(p, &pack)) != 0)
1811 1.20 eeh goto freehdr;
1812 1.20 eeh
1813 1.20 eeh /* XXX -- THE FOLLOWING SECTION NEEDS MAJOR CLEANUP */
1814 1.20 eeh
1815 1.20 eeh /* allocate an argument buffer */
1816 1.20 eeh argp = (char *) uvm_km_valloc_wait(exec_map, NCARGS);
1817 1.20 eeh #ifdef DIAGNOSTIC
1818 1.20 eeh if (argp == (vaddr_t) 0)
1819 1.20 eeh panic("execve: argp == NULL");
1820 1.20 eeh #endif
1821 1.20 eeh dp = argp;
1822 1.20 eeh argc = 0;
1823 1.20 eeh
1824 1.20 eeh /* copy the fake args list, if there's one, freeing it as we go */
1825 1.20 eeh if (pack.ep_flags & EXEC_HASARGL) {
1826 1.20 eeh tmpfap = pack.ep_fa;
1827 1.20 eeh while (*tmpfap != NULL) {
1828 1.20 eeh char *cp;
1829 1.20 eeh
1830 1.20 eeh cp = *tmpfap;
1831 1.20 eeh while (*cp)
1832 1.20 eeh *dp++ = *cp++;
1833 1.20 eeh dp++;
1834 1.20 eeh
1835 1.20 eeh FREE(*tmpfap, M_EXEC);
1836 1.20 eeh tmpfap++; argc++;
1837 1.20 eeh }
1838 1.20 eeh FREE(pack.ep_fa, M_EXEC);
1839 1.20 eeh pack.ep_flags &= ~EXEC_HASARGL;
1840 1.20 eeh }
1841 1.20 eeh
1842 1.20 eeh /* Now get argv & environment */
1843 1.20 eeh if (!(cpp = (netbsd32_charp *)SCARG(&ua, argp))) {
1844 1.20 eeh error = EINVAL;
1845 1.20 eeh goto bad;
1846 1.20 eeh }
1847 1.20 eeh
1848 1.20 eeh if (pack.ep_flags & EXEC_SKIPARG)
1849 1.20 eeh cpp++;
1850 1.20 eeh
1851 1.20 eeh while (1) {
1852 1.20 eeh len = argp + ARG_MAX - dp;
1853 1.20 eeh if ((error = copyin(cpp, &sp, sizeof(sp))) != 0)
1854 1.20 eeh goto bad;
1855 1.20 eeh if (!sp)
1856 1.20 eeh break;
1857 1.20 eeh if ((error = copyinstr((char *)(u_long)sp, dp,
1858 1.20 eeh len, &len)) != 0) {
1859 1.20 eeh if (error == ENAMETOOLONG)
1860 1.20 eeh error = E2BIG;
1861 1.20 eeh goto bad;
1862 1.20 eeh }
1863 1.20 eeh dp += len;
1864 1.20 eeh cpp++;
1865 1.20 eeh argc++;
1866 1.20 eeh }
1867 1.20 eeh
1868 1.20 eeh envc = 0;
1869 1.20 eeh /* environment need not be there */
1870 1.20 eeh if ((cpp = (netbsd32_charp *)SCARG(&ua, envp)) != NULL ) {
1871 1.20 eeh while (1) {
1872 1.20 eeh len = argp + ARG_MAX - dp;
1873 1.20 eeh if ((error = copyin(cpp, &sp, sizeof(sp))) != 0)
1874 1.20 eeh goto bad;
1875 1.20 eeh if (!sp)
1876 1.20 eeh break;
1877 1.20 eeh if ((error = copyinstr((char *)(u_long)sp,
1878 1.20 eeh dp, len, &len)) != 0) {
1879 1.20 eeh if (error == ENAMETOOLONG)
1880 1.20 eeh error = E2BIG;
1881 1.20 eeh goto bad;
1882 1.20 eeh }
1883 1.20 eeh dp += len;
1884 1.20 eeh cpp++;
1885 1.20 eeh envc++;
1886 1.20 eeh }
1887 1.20 eeh }
1888 1.20 eeh
1889 1.20 eeh dp = (char *) ALIGN(dp);
1890 1.20 eeh
1891 1.39 mrg szsigcode = pack.ep_es->es_emul->e_esigcode -
1892 1.39 mrg pack.ep_es->es_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 1.39 mrg len = ((argc + envc + 2 + pack.ep_es->es_arglen) *
1897 1.39 mrg sizeof(int) + sizeof(int) + dp + STACKGAPLEN +
1898 1.39 mrg szsigcode + sizeof(struct ps_strings)) - argp;
1899 1.20 eeh else
1900 1.39 mrg len = ((argc + envc + 2 + pack.ep_es->es_arglen) *
1901 1.39 mrg sizeof(char *) + sizeof(int) + dp + STACKGAPLEN +
1902 1.39 mrg szsigcode + 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 1.38 eeh vm->vm_minsaddr = (char *) pack.ep_minsaddr;
1930 1.20 eeh
1931 1.20 eeh /* create the new process's VM space by running the vmcmds */
1932 1.20 eeh #ifdef DIAGNOSTIC
1933 1.20 eeh if (pack.ep_vmcmds.evs_used == 0)
1934 1.20 eeh panic("execve: no vmcmds");
1935 1.20 eeh #endif
1936 1.20 eeh for (i = 0; i < pack.ep_vmcmds.evs_used && !error; i++) {
1937 1.20 eeh struct exec_vmcmd *vcp;
1938 1.20 eeh
1939 1.20 eeh vcp = &pack.ep_vmcmds.evs_cmds[i];
1940 1.40 jdolecek if (vcp->ev_flags & VMCMD_RELATIVE) {
1941 1.40 jdolecek #ifdef DIAGNOSTIC
1942 1.40 jdolecek if (base_vcp == NULL)
1943 1.40 jdolecek panic("execve: relative vmcmd with no base");
1944 1.40 jdolecek if (vcp->ev_flags & VMCMD_BASE)
1945 1.40 jdolecek panic("execve: illegal base & relative vmcmd");
1946 1.40 jdolecek #endif
1947 1.40 jdolecek vcp->ev_addr += base_vcp->ev_addr;
1948 1.40 jdolecek }
1949 1.20 eeh error = (*vcp->ev_proc)(p, vcp);
1950 1.40 jdolecek #ifdef DEBUG
1951 1.40 jdolecek if (error) {
1952 1.40 jdolecek if (i > 0)
1953 1.40 jdolecek printf("vmcmd[%d] = %#lx/%#lx @ %#lx\n", i-1,
1954 1.40 jdolecek vcp[-1].ev_addr, vcp[-1].ev_len,
1955 1.40 jdolecek vcp[-1].ev_offset);
1956 1.40 jdolecek printf("vmcmd[%d] = %#lx/%#lx @ %#lx\n", i,
1957 1.40 jdolecek vcp->ev_addr, vcp->ev_len, vcp->ev_offset);
1958 1.40 jdolecek }
1959 1.40 jdolecek #endif
1960 1.40 jdolecek if (vcp->ev_flags & VMCMD_BASE)
1961 1.40 jdolecek base_vcp = vcp;
1962 1.20 eeh }
1963 1.20 eeh
1964 1.20 eeh /* free the vmspace-creation commands, and release their references */
1965 1.20 eeh kill_vmcmds(&pack.ep_vmcmds);
1966 1.20 eeh
1967 1.20 eeh /* if an error happened, deallocate and punt */
1968 1.40 jdolecek if (error) {
1969 1.40 jdolecek #ifdef DEBUG
1970 1.40 jdolecek printf("execve: vmcmd %i failed: %d\n", i-1, error);
1971 1.40 jdolecek #endif
1972 1.20 eeh goto exec_abort;
1973 1.40 jdolecek }
1974 1.20 eeh
1975 1.20 eeh /* remember information about the process */
1976 1.20 eeh arginfo.ps_nargvstr = argc;
1977 1.20 eeh arginfo.ps_nenvstr = envc;
1978 1.20 eeh
1979 1.38 eeh stack = (char *) (vm->vm_minsaddr - len);
1980 1.20 eeh /* Now copy argc, args & environ to new stack */
1981 1.40 jdolecek if (!(*pack.ep_es->es_copyargs)(&pack, &arginfo, stack, argp)) {
1982 1.40 jdolecek #ifdef DEBUG
1983 1.40 jdolecek printf("execve: copyargs failed\n");
1984 1.40 jdolecek #endif
1985 1.20 eeh goto exec_abort;
1986 1.40 jdolecek }
1987 1.20 eeh
1988 1.38 eeh /* fill process ps_strings info */
1989 1.38 eeh p->p_psstr = (struct ps_strings *)(stack - sizeof(struct ps_strings));
1990 1.38 eeh p->p_psargv = offsetof(struct ps_strings, ps_argvstr);
1991 1.38 eeh p->p_psnargv = offsetof(struct ps_strings, ps_nargvstr);
1992 1.38 eeh p->p_psenv = offsetof(struct ps_strings, ps_envstr);
1993 1.38 eeh p->p_psnenv = offsetof(struct ps_strings, ps_nenvstr);
1994 1.38 eeh
1995 1.20 eeh /* copy out the process's ps_strings structure */
1996 1.40 jdolecek if (copyout(&arginfo, (char *)p->p_psstr, sizeof(arginfo))) {
1997 1.40 jdolecek #ifdef DEBUG
1998 1.40 jdolecek printf("execve: ps_strings copyout failed\n");
1999 1.40 jdolecek #endif
2000 1.20 eeh goto exec_abort;
2001 1.40 jdolecek }
2002 1.20 eeh
2003 1.20 eeh /* copy out the process's signal trapoline code */
2004 1.20 eeh if (szsigcode) {
2005 1.39 mrg if (copyout((char *)pack.ep_es->es_emul->e_sigcode,
2006 1.38 eeh p->p_sigacts->ps_sigcode = (char *)p->p_psstr - szsigcode,
2007 1.40 jdolecek szsigcode)) {
2008 1.40 jdolecek #ifdef DEBUG
2009 1.40 jdolecek printf("execve: sig trampoline copyout failed\n");
2010 1.40 jdolecek #endif
2011 1.20 eeh goto exec_abort;
2012 1.40 jdolecek }
2013 1.20 eeh #ifdef PMAP_NEED_PROCWR
2014 1.20 eeh /* This is code. Let the pmap do what is needed. */
2015 1.20 eeh pmap_procwr(p, (vaddr_t)p->p_sigacts->ps_sigcode, szsigcode);
2016 1.20 eeh #endif
2017 1.20 eeh }
2018 1.20 eeh
2019 1.20 eeh stopprofclock(p); /* stop profiling */
2020 1.20 eeh fdcloseexec(p); /* handle close on exec */
2021 1.20 eeh execsigs(p); /* reset catched signals */
2022 1.20 eeh p->p_ctxlink = NULL; /* reset ucontext link */
2023 1.20 eeh
2024 1.20 eeh /* set command name & other accounting info */
2025 1.20 eeh len = min(nid.ni_cnd.cn_namelen, MAXCOMLEN);
2026 1.20 eeh memcpy(p->p_comm, nid.ni_cnd.cn_nameptr, len);
2027 1.20 eeh p->p_comm[len] = 0;
2028 1.20 eeh p->p_acflag &= ~AFORK;
2029 1.20 eeh
2030 1.20 eeh /* record proc's vnode, for use by procfs and others */
2031 1.20 eeh if (p->p_textvp)
2032 1.20 eeh vrele(p->p_textvp);
2033 1.20 eeh VREF(pack.ep_vp);
2034 1.20 eeh p->p_textvp = pack.ep_vp;
2035 1.20 eeh
2036 1.20 eeh p->p_flag |= P_EXEC;
2037 1.20 eeh if (p->p_flag & P_PPWAIT) {
2038 1.20 eeh p->p_flag &= ~P_PPWAIT;
2039 1.20 eeh wakeup((caddr_t) p->p_pptr);
2040 1.20 eeh }
2041 1.20 eeh
2042 1.20 eeh /*
2043 1.20 eeh * deal with set[ug]id.
2044 1.20 eeh * MNT_NOSUID and P_TRACED have already been used to disable s[ug]id.
2045 1.20 eeh */
2046 1.20 eeh if (((attr.va_mode & S_ISUID) != 0 && p->p_ucred->cr_uid != attr.va_uid)
2047 1.20 eeh || ((attr.va_mode & S_ISGID) != 0 && p->p_ucred->cr_gid != attr.va_gid)){
2048 1.20 eeh p->p_ucred = crcopy(cred);
2049 1.20 eeh #ifdef KTRACE
2050 1.20 eeh /*
2051 1.20 eeh * If process is being ktraced, turn off - unless
2052 1.20 eeh * root set it.
2053 1.20 eeh */
2054 1.20 eeh if (p->p_tracep && !(p->p_traceflag & KTRFAC_ROOT))
2055 1.20 eeh ktrderef(p);
2056 1.20 eeh #endif
2057 1.20 eeh if (attr.va_mode & S_ISUID)
2058 1.20 eeh p->p_ucred->cr_uid = attr.va_uid;
2059 1.20 eeh if (attr.va_mode & S_ISGID)
2060 1.20 eeh p->p_ucred->cr_gid = attr.va_gid;
2061 1.20 eeh p_sugid(p);
2062 1.20 eeh } else
2063 1.20 eeh p->p_flag &= ~P_SUGID;
2064 1.20 eeh p->p_cred->p_svuid = p->p_ucred->cr_uid;
2065 1.20 eeh p->p_cred->p_svgid = p->p_ucred->cr_gid;
2066 1.20 eeh
2067 1.40 jdolecek doexechooks(p);
2068 1.40 jdolecek
2069 1.20 eeh uvm_km_free_wakeup(exec_map, (vaddr_t) argp, NCARGS);
2070 1.20 eeh
2071 1.35 thorpej PNBUF_PUT(nid.ni_cnd.cn_pnbuf);
2072 1.20 eeh vn_lock(pack.ep_vp, LK_EXCLUSIVE | LK_RETRY);
2073 1.20 eeh VOP_CLOSE(pack.ep_vp, FREAD, cred, p);
2074 1.20 eeh vput(pack.ep_vp);
2075 1.20 eeh
2076 1.20 eeh /* setup new registers and do misc. setup. */
2077 1.39 mrg (*pack.ep_es->es_setregs)(p, &pack, (u_long) stack);
2078 1.20 eeh
2079 1.20 eeh if (p->p_flag & P_TRACED)
2080 1.20 eeh psignal(p, SIGTRAP);
2081 1.20 eeh
2082 1.39 mrg free(pack.ep_hdr, M_EXEC);
2083 1.39 mrg
2084 1.39 mrg /*
2085 1.39 mrg * Call emulation specific exec hook. This can setup setup per-process
2086 1.39 mrg * p->p_emuldata or do any other per-process stuff an emulation needs.
2087 1.39 mrg *
2088 1.39 mrg * If we are executing process of different emulation than the
2089 1.39 mrg * original forked process, call e_proc_exit() of the old emulation
2090 1.39 mrg * first, then e_proc_exec() of new emulation. If the emulation is
2091 1.39 mrg * same, the exec hook code should deallocate any old emulation
2092 1.39 mrg * resources held previously by this process.
2093 1.39 mrg */
2094 1.39 mrg if (p->p_emul && p->p_emul->e_proc_exit
2095 1.39 mrg && p->p_emul != pack.ep_es->es_emul)
2096 1.39 mrg (*p->p_emul->e_proc_exit)(p);
2097 1.39 mrg
2098 1.39 mrg /*
2099 1.39 mrg * Call exec hook. Emulation code may NOT store reference to anything
2100 1.39 mrg * from &pack.
2101 1.39 mrg */
2102 1.39 mrg if (pack.ep_es->es_emul->e_proc_exec)
2103 1.39 mrg (*pack.ep_es->es_emul->e_proc_exec)(p, &pack);
2104 1.39 mrg
2105 1.39 mrg /* update p_emul, the old value is no longer needed */
2106 1.39 mrg p->p_emul = pack.ep_es->es_emul;
2107 1.20 eeh
2108 1.20 eeh #ifdef KTRACE
2109 1.20 eeh if (KTRPOINT(p, KTR_EMUL))
2110 1.26 sommerfe ktremul(p);
2111 1.20 eeh #endif
2112 1.20 eeh
2113 1.20 eeh return (EJUSTRETURN);
2114 1.20 eeh
2115 1.20 eeh bad:
2116 1.20 eeh /* free the vmspace-creation commands, and release their references */
2117 1.20 eeh kill_vmcmds(&pack.ep_vmcmds);
2118 1.20 eeh /* kill any opened file descriptor, if necessary */
2119 1.20 eeh if (pack.ep_flags & EXEC_HASFD) {
2120 1.20 eeh pack.ep_flags &= ~EXEC_HASFD;
2121 1.20 eeh (void) fdrelease(p, pack.ep_fd);
2122 1.20 eeh }
2123 1.20 eeh /* close and put the exec'd file */
2124 1.20 eeh vn_lock(pack.ep_vp, LK_EXCLUSIVE | LK_RETRY);
2125 1.20 eeh VOP_CLOSE(pack.ep_vp, FREAD, cred, p);
2126 1.20 eeh vput(pack.ep_vp);
2127 1.35 thorpej PNBUF_PUT(nid.ni_cnd.cn_pnbuf);
2128 1.20 eeh uvm_km_free_wakeup(exec_map, (vaddr_t) argp, NCARGS);
2129 1.20 eeh
2130 1.20 eeh freehdr:
2131 1.39 mrg free(pack.ep_hdr, M_EXEC);
2132 1.20 eeh return error;
2133 1.20 eeh
2134 1.20 eeh exec_abort:
2135 1.20 eeh /*
2136 1.20 eeh * the old process doesn't exist anymore. exit gracefully.
2137 1.20 eeh * get rid of the (new) address space we have created, if any, get rid
2138 1.20 eeh * of our namei data and vnode, and exit noting failure
2139 1.20 eeh */
2140 1.20 eeh uvm_deallocate(&vm->vm_map, VM_MIN_ADDRESS,
2141 1.20 eeh VM_MAXUSER_ADDRESS - VM_MIN_ADDRESS);
2142 1.20 eeh if (pack.ep_emul_arg)
2143 1.20 eeh FREE(pack.ep_emul_arg, M_TEMP);
2144 1.35 thorpej PNBUF_PUT(nid.ni_cnd.cn_pnbuf);
2145 1.20 eeh vn_lock(pack.ep_vp, LK_EXCLUSIVE | LK_RETRY);
2146 1.20 eeh VOP_CLOSE(pack.ep_vp, FREAD, cred, p);
2147 1.20 eeh vput(pack.ep_vp);
2148 1.20 eeh uvm_km_free_wakeup(exec_map, (vaddr_t) argp, NCARGS);
2149 1.40 jdolecek free(pack.ep_hdr, M_EXEC);
2150 1.20 eeh exit1(p, W_EXITCODE(0, SIGABRT));
2151 1.20 eeh exit1(p, -1);
2152 1.20 eeh
2153 1.20 eeh /* NOTREACHED */
2154 1.20 eeh return 0;
2155 1.1 mrg }
2156 1.1 mrg
2157 1.1 mrg int
2158 1.19 eeh netbsd32_umask(p, v, retval)
2159 1.6 eeh struct proc *p;
2160 1.6 eeh void *v;
2161 1.6 eeh register_t *retval;
2162 1.6 eeh {
2163 1.19 eeh struct netbsd32_umask_args /* {
2164 1.6 eeh syscallarg(mode_t) newmask;
2165 1.6 eeh } */ *uap = v;
2166 1.6 eeh struct sys_umask_args ua;
2167 1.6 eeh
2168 1.11 mrg NETBSD32TO64_UAP(newmask);
2169 1.6 eeh return (sys_umask(p, &ua, retval));
2170 1.6 eeh }
2171 1.6 eeh
2172 1.6 eeh int
2173 1.19 eeh netbsd32_chroot(p, v, retval)
2174 1.1 mrg struct proc *p;
2175 1.1 mrg void *v;
2176 1.1 mrg register_t *retval;
2177 1.1 mrg {
2178 1.19 eeh struct netbsd32_chroot_args /* {
2179 1.10 mrg syscallarg(const netbsd32_charp) path;
2180 1.1 mrg } */ *uap = v;
2181 1.1 mrg struct sys_chroot_args ua;
2182 1.1 mrg
2183 1.11 mrg NETBSD32TOP_UAP(path, const char);
2184 1.1 mrg return (sys_chroot(p, &ua, retval));
2185 1.1 mrg }
2186 1.1 mrg
2187 1.1 mrg int
2188 1.19 eeh netbsd32_sbrk(p, v, retval)
2189 1.6 eeh struct proc *p;
2190 1.6 eeh void *v;
2191 1.6 eeh register_t *retval;
2192 1.6 eeh {
2193 1.19 eeh struct netbsd32_sbrk_args /* {
2194 1.6 eeh syscallarg(int) incr;
2195 1.6 eeh } */ *uap = v;
2196 1.6 eeh struct sys_sbrk_args ua;
2197 1.6 eeh
2198 1.11 mrg NETBSD32TO64_UAP(incr);
2199 1.6 eeh return (sys_sbrk(p, &ua, retval));
2200 1.6 eeh }
2201 1.6 eeh
2202 1.6 eeh int
2203 1.19 eeh netbsd32_sstk(p, v, retval)
2204 1.6 eeh struct proc *p;
2205 1.6 eeh void *v;
2206 1.6 eeh register_t *retval;
2207 1.6 eeh {
2208 1.19 eeh struct netbsd32_sstk_args /* {
2209 1.6 eeh syscallarg(int) incr;
2210 1.6 eeh } */ *uap = v;
2211 1.6 eeh struct sys_sstk_args ua;
2212 1.6 eeh
2213 1.11 mrg NETBSD32TO64_UAP(incr);
2214 1.6 eeh return (sys_sstk(p, &ua, retval));
2215 1.6 eeh }
2216 1.6 eeh
2217 1.6 eeh int
2218 1.19 eeh netbsd32_munmap(p, v, retval)
2219 1.1 mrg struct proc *p;
2220 1.1 mrg void *v;
2221 1.1 mrg register_t *retval;
2222 1.1 mrg {
2223 1.19 eeh struct netbsd32_munmap_args /* {
2224 1.10 mrg syscallarg(netbsd32_voidp) addr;
2225 1.10 mrg syscallarg(netbsd32_size_t) len;
2226 1.1 mrg } */ *uap = v;
2227 1.1 mrg struct sys_munmap_args ua;
2228 1.1 mrg
2229 1.11 mrg NETBSD32TOP_UAP(addr, void);
2230 1.11 mrg NETBSD32TOX_UAP(len, size_t);
2231 1.1 mrg return (sys_munmap(p, &ua, retval));
2232 1.1 mrg }
2233 1.1 mrg
2234 1.1 mrg int
2235 1.19 eeh netbsd32_mprotect(p, v, retval)
2236 1.1 mrg struct proc *p;
2237 1.1 mrg void *v;
2238 1.1 mrg register_t *retval;
2239 1.1 mrg {
2240 1.19 eeh struct netbsd32_mprotect_args /* {
2241 1.10 mrg syscallarg(netbsd32_voidp) addr;
2242 1.10 mrg syscallarg(netbsd32_size_t) len;
2243 1.1 mrg syscallarg(int) prot;
2244 1.1 mrg } */ *uap = v;
2245 1.1 mrg struct sys_mprotect_args ua;
2246 1.1 mrg
2247 1.11 mrg NETBSD32TOP_UAP(addr, void);
2248 1.11 mrg NETBSD32TOX_UAP(len, size_t);
2249 1.11 mrg NETBSD32TO64_UAP(prot);
2250 1.1 mrg return (sys_mprotect(p, &ua, retval));
2251 1.1 mrg }
2252 1.1 mrg
2253 1.1 mrg int
2254 1.19 eeh netbsd32_madvise(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_madvise_args /* {
2260 1.10 mrg syscallarg(netbsd32_voidp) addr;
2261 1.10 mrg syscallarg(netbsd32_size_t) len;
2262 1.1 mrg syscallarg(int) behav;
2263 1.1 mrg } */ *uap = v;
2264 1.1 mrg struct sys_madvise_args ua;
2265 1.1 mrg
2266 1.11 mrg NETBSD32TOP_UAP(addr, void);
2267 1.11 mrg NETBSD32TOX_UAP(len, size_t);
2268 1.11 mrg NETBSD32TO64_UAP(behav);
2269 1.1 mrg return (sys_madvise(p, &ua, retval));
2270 1.1 mrg }
2271 1.1 mrg
2272 1.1 mrg int
2273 1.19 eeh netbsd32_mincore(p, v, retval)
2274 1.1 mrg struct proc *p;
2275 1.1 mrg void *v;
2276 1.1 mrg register_t *retval;
2277 1.1 mrg {
2278 1.19 eeh struct netbsd32_mincore_args /* {
2279 1.10 mrg syscallarg(netbsd32_caddr_t) addr;
2280 1.10 mrg syscallarg(netbsd32_size_t) len;
2281 1.10 mrg syscallarg(netbsd32_charp) vec;
2282 1.1 mrg } */ *uap = v;
2283 1.1 mrg struct sys_mincore_args ua;
2284 1.1 mrg
2285 1.11 mrg NETBSD32TOX64_UAP(addr, caddr_t);
2286 1.11 mrg NETBSD32TOX_UAP(len, size_t);
2287 1.11 mrg NETBSD32TOP_UAP(vec, char);
2288 1.1 mrg return (sys_mincore(p, &ua, retval));
2289 1.1 mrg }
2290 1.1 mrg
2291 1.1 mrg int
2292 1.19 eeh netbsd32_getgroups(p, v, retval)
2293 1.1 mrg struct proc *p;
2294 1.1 mrg void *v;
2295 1.1 mrg register_t *retval;
2296 1.1 mrg {
2297 1.19 eeh struct netbsd32_getgroups_args /* {
2298 1.1 mrg syscallarg(int) gidsetsize;
2299 1.10 mrg syscallarg(netbsd32_gid_tp) gidset;
2300 1.1 mrg } */ *uap = v;
2301 1.25 augustss struct pcred *pc = p->p_cred;
2302 1.25 augustss int ngrp;
2303 1.6 eeh int error;
2304 1.1 mrg
2305 1.6 eeh ngrp = SCARG(uap, gidsetsize);
2306 1.6 eeh if (ngrp == 0) {
2307 1.6 eeh *retval = pc->pc_ucred->cr_ngroups;
2308 1.6 eeh return (0);
2309 1.6 eeh }
2310 1.6 eeh if (ngrp < pc->pc_ucred->cr_ngroups)
2311 1.6 eeh return (EINVAL);
2312 1.6 eeh ngrp = pc->pc_ucred->cr_ngroups;
2313 1.10 mrg /* Should convert gid_t to netbsd32_gid_t, but they're the same */
2314 1.6 eeh error = copyout((caddr_t)pc->pc_ucred->cr_groups,
2315 1.6 eeh (caddr_t)(u_long)SCARG(uap, gidset),
2316 1.6 eeh ngrp * sizeof(gid_t));
2317 1.6 eeh if (error)
2318 1.6 eeh return (error);
2319 1.6 eeh *retval = ngrp;
2320 1.6 eeh return (0);
2321 1.1 mrg }
2322 1.1 mrg
2323 1.1 mrg int
2324 1.19 eeh netbsd32_setgroups(p, v, retval)
2325 1.1 mrg struct proc *p;
2326 1.1 mrg void *v;
2327 1.1 mrg register_t *retval;
2328 1.1 mrg {
2329 1.19 eeh struct netbsd32_setgroups_args /* {
2330 1.1 mrg syscallarg(int) gidsetsize;
2331 1.10 mrg syscallarg(const netbsd32_gid_tp) gidset;
2332 1.1 mrg } */ *uap = v;
2333 1.1 mrg struct sys_setgroups_args ua;
2334 1.1 mrg
2335 1.11 mrg NETBSD32TO64_UAP(gidsetsize);
2336 1.11 mrg NETBSD32TOP_UAP(gidset, gid_t);
2337 1.1 mrg return (sys_setgroups(p, &ua, retval));
2338 1.1 mrg }
2339 1.1 mrg
2340 1.1 mrg int
2341 1.19 eeh netbsd32_setpgid(p, v, retval)
2342 1.6 eeh struct proc *p;
2343 1.6 eeh void *v;
2344 1.6 eeh register_t *retval;
2345 1.6 eeh {
2346 1.19 eeh struct netbsd32_setpgid_args /* {
2347 1.6 eeh syscallarg(int) pid;
2348 1.6 eeh syscallarg(int) pgid;
2349 1.6 eeh } */ *uap = v;
2350 1.6 eeh struct sys_setpgid_args ua;
2351 1.6 eeh
2352 1.11 mrg NETBSD32TO64_UAP(pid);
2353 1.11 mrg NETBSD32TO64_UAP(pgid);
2354 1.6 eeh return (sys_setpgid(p, &ua, retval));
2355 1.6 eeh }
2356 1.6 eeh
2357 1.6 eeh int
2358 1.19 eeh netbsd32_setitimer(p, v, retval)
2359 1.1 mrg struct proc *p;
2360 1.1 mrg void *v;
2361 1.1 mrg register_t *retval;
2362 1.1 mrg {
2363 1.19 eeh struct netbsd32_setitimer_args /* {
2364 1.1 mrg syscallarg(int) which;
2365 1.10 mrg syscallarg(const netbsd32_itimervalp_t) itv;
2366 1.10 mrg syscallarg(netbsd32_itimervalp_t) oitv;
2367 1.1 mrg } */ *uap = v;
2368 1.10 mrg struct netbsd32_itimerval s32it, *itvp;
2369 1.6 eeh int which = SCARG(uap, which);
2370 1.19 eeh struct netbsd32_getitimer_args getargs;
2371 1.6 eeh struct itimerval aitv;
2372 1.6 eeh int s, error;
2373 1.1 mrg
2374 1.6 eeh if ((u_int)which > ITIMER_PROF)
2375 1.6 eeh return (EINVAL);
2376 1.10 mrg itvp = (struct netbsd32_itimerval *)(u_long)SCARG(uap, itv);
2377 1.6 eeh if (itvp && (error = copyin(itvp, &s32it, sizeof(s32it))))
2378 1.6 eeh return (error);
2379 1.10 mrg netbsd32_to_itimerval(&s32it, &aitv);
2380 1.6 eeh if (SCARG(uap, oitv) != NULL) {
2381 1.6 eeh SCARG(&getargs, which) = which;
2382 1.6 eeh SCARG(&getargs, itv) = SCARG(uap, oitv);
2383 1.19 eeh if ((error = netbsd32_getitimer(p, &getargs, retval)) != 0)
2384 1.6 eeh return (error);
2385 1.6 eeh }
2386 1.6 eeh if (itvp == 0)
2387 1.6 eeh return (0);
2388 1.6 eeh if (itimerfix(&aitv.it_value) || itimerfix(&aitv.it_interval))
2389 1.6 eeh return (EINVAL);
2390 1.6 eeh s = splclock();
2391 1.6 eeh if (which == ITIMER_REAL) {
2392 1.24 thorpej callout_stop(&p->p_realit_ch);
2393 1.6 eeh if (timerisset(&aitv.it_value)) {
2394 1.33 thorpej /*
2395 1.33 thorpej * Don't need to check hzto() return value, here.
2396 1.33 thorpej * callout_reset() does it for us.
2397 1.33 thorpej */
2398 1.6 eeh timeradd(&aitv.it_value, &time, &aitv.it_value);
2399 1.24 thorpej callout_reset(&p->p_realit_ch, hzto(&aitv.it_value),
2400 1.24 thorpej realitexpire, p);
2401 1.6 eeh }
2402 1.6 eeh p->p_realtimer = aitv;
2403 1.1 mrg } else
2404 1.6 eeh p->p_stats->p_timer[which] = aitv;
2405 1.6 eeh splx(s);
2406 1.6 eeh return (0);
2407 1.6 eeh }
2408 1.1 mrg
2409 1.1 mrg int
2410 1.19 eeh netbsd32_getitimer(p, v, retval)
2411 1.1 mrg struct proc *p;
2412 1.1 mrg void *v;
2413 1.1 mrg register_t *retval;
2414 1.1 mrg {
2415 1.19 eeh struct netbsd32_getitimer_args /* {
2416 1.1 mrg syscallarg(int) which;
2417 1.10 mrg syscallarg(netbsd32_itimervalp_t) itv;
2418 1.1 mrg } */ *uap = v;
2419 1.6 eeh int which = SCARG(uap, which);
2420 1.10 mrg struct netbsd32_itimerval s32it;
2421 1.6 eeh struct itimerval aitv;
2422 1.6 eeh int s;
2423 1.1 mrg
2424 1.6 eeh if ((u_int)which > ITIMER_PROF)
2425 1.6 eeh return (EINVAL);
2426 1.6 eeh s = splclock();
2427 1.6 eeh if (which == ITIMER_REAL) {
2428 1.6 eeh /*
2429 1.6 eeh * Convert from absolute to relative time in .it_value
2430 1.6 eeh * part of real time timer. If time for real time timer
2431 1.6 eeh * has passed return 0, else return difference between
2432 1.6 eeh * current time and time for the timer to go off.
2433 1.6 eeh */
2434 1.6 eeh aitv = p->p_realtimer;
2435 1.6 eeh if (timerisset(&aitv.it_value)) {
2436 1.6 eeh if (timercmp(&aitv.it_value, &time, <))
2437 1.6 eeh timerclear(&aitv.it_value);
2438 1.6 eeh else
2439 1.6 eeh timersub(&aitv.it_value, &time, &aitv.it_value);
2440 1.6 eeh }
2441 1.6 eeh } else
2442 1.6 eeh aitv = p->p_stats->p_timer[which];
2443 1.6 eeh splx(s);
2444 1.10 mrg netbsd32_from_itimerval(&aitv, &s32it);
2445 1.6 eeh return (copyout(&s32it, (caddr_t)(u_long)SCARG(uap, itv), sizeof(s32it)));
2446 1.1 mrg }
2447 1.1 mrg
2448 1.1 mrg int
2449 1.19 eeh netbsd32_fcntl(p, v, retval)
2450 1.1 mrg struct proc *p;
2451 1.1 mrg void *v;
2452 1.1 mrg register_t *retval;
2453 1.1 mrg {
2454 1.19 eeh struct netbsd32_fcntl_args /* {
2455 1.1 mrg syscallarg(int) fd;
2456 1.1 mrg syscallarg(int) cmd;
2457 1.10 mrg syscallarg(netbsd32_voidp) arg;
2458 1.1 mrg } */ *uap = v;
2459 1.1 mrg struct sys_fcntl_args ua;
2460 1.1 mrg
2461 1.11 mrg NETBSD32TO64_UAP(fd);
2462 1.11 mrg NETBSD32TO64_UAP(cmd);
2463 1.11 mrg NETBSD32TOP_UAP(arg, void);
2464 1.6 eeh /* XXXX we can do this 'cause flock doesn't change */
2465 1.1 mrg return (sys_fcntl(p, &ua, retval));
2466 1.1 mrg }
2467 1.1 mrg
2468 1.1 mrg int
2469 1.19 eeh netbsd32_dup2(p, v, retval)
2470 1.6 eeh struct proc *p;
2471 1.6 eeh void *v;
2472 1.6 eeh register_t *retval;
2473 1.6 eeh {
2474 1.19 eeh struct netbsd32_dup2_args /* {
2475 1.6 eeh syscallarg(int) from;
2476 1.6 eeh syscallarg(int) to;
2477 1.6 eeh } */ *uap = v;
2478 1.6 eeh struct sys_dup2_args ua;
2479 1.6 eeh
2480 1.11 mrg NETBSD32TO64_UAP(from);
2481 1.11 mrg NETBSD32TO64_UAP(to);
2482 1.6 eeh return (sys_dup2(p, &ua, retval));
2483 1.6 eeh }
2484 1.6 eeh
2485 1.6 eeh int
2486 1.19 eeh netbsd32_select(p, v, retval)
2487 1.1 mrg struct proc *p;
2488 1.1 mrg void *v;
2489 1.1 mrg register_t *retval;
2490 1.1 mrg {
2491 1.19 eeh struct netbsd32_select_args /* {
2492 1.1 mrg syscallarg(int) nd;
2493 1.10 mrg syscallarg(netbsd32_fd_setp_t) in;
2494 1.10 mrg syscallarg(netbsd32_fd_setp_t) ou;
2495 1.10 mrg syscallarg(netbsd32_fd_setp_t) ex;
2496 1.10 mrg syscallarg(netbsd32_timevalp_t) tv;
2497 1.1 mrg } */ *uap = v;
2498 1.6 eeh /* This one must be done in-line 'cause of the timeval */
2499 1.10 mrg struct netbsd32_timeval tv32;
2500 1.6 eeh caddr_t bits;
2501 1.6 eeh char smallbits[howmany(FD_SETSIZE, NFDBITS) * sizeof(fd_mask) * 6];
2502 1.6 eeh struct timeval atv;
2503 1.6 eeh int s, ncoll, error = 0, timo;
2504 1.6 eeh size_t ni;
2505 1.6 eeh extern int selwait, nselcoll;
2506 1.6 eeh extern int selscan __P((struct proc *, fd_mask *, fd_mask *, int, register_t *));
2507 1.1 mrg
2508 1.6 eeh if (SCARG(uap, nd) < 0)
2509 1.6 eeh return (EINVAL);
2510 1.6 eeh if (SCARG(uap, nd) > p->p_fd->fd_nfiles) {
2511 1.6 eeh /* forgiving; slightly wrong */
2512 1.6 eeh SCARG(uap, nd) = p->p_fd->fd_nfiles;
2513 1.5 eeh }
2514 1.6 eeh ni = howmany(SCARG(uap, nd), NFDBITS) * sizeof(fd_mask);
2515 1.6 eeh if (ni * 6 > sizeof(smallbits))
2516 1.6 eeh bits = malloc(ni * 6, M_TEMP, M_WAITOK);
2517 1.6 eeh else
2518 1.6 eeh bits = smallbits;
2519 1.1 mrg
2520 1.6 eeh #define getbits(name, x) \
2521 1.6 eeh if (SCARG(uap, name)) { \
2522 1.6 eeh error = copyin((caddr_t)(u_long)SCARG(uap, name), bits + ni * x, ni); \
2523 1.6 eeh if (error) \
2524 1.6 eeh goto done; \
2525 1.6 eeh } else \
2526 1.6 eeh memset(bits + ni * x, 0, ni);
2527 1.6 eeh getbits(in, 0);
2528 1.6 eeh getbits(ou, 1);
2529 1.6 eeh getbits(ex, 2);
2530 1.6 eeh #undef getbits
2531 1.6 eeh
2532 1.6 eeh if (SCARG(uap, tv)) {
2533 1.6 eeh error = copyin((caddr_t)(u_long)SCARG(uap, tv), (caddr_t)&tv32,
2534 1.6 eeh sizeof(tv32));
2535 1.6 eeh if (error)
2536 1.6 eeh goto done;
2537 1.10 mrg netbsd32_to_timeval(&tv32, &atv);
2538 1.6 eeh if (itimerfix(&atv)) {
2539 1.6 eeh error = EINVAL;
2540 1.6 eeh goto done;
2541 1.6 eeh }
2542 1.6 eeh s = splclock();
2543 1.6 eeh timeradd(&atv, &time, &atv);
2544 1.6 eeh splx(s);
2545 1.6 eeh } else
2546 1.6 eeh timo = 0;
2547 1.6 eeh retry:
2548 1.6 eeh ncoll = nselcoll;
2549 1.6 eeh p->p_flag |= P_SELECT;
2550 1.6 eeh error = selscan(p, (fd_mask *)(bits + ni * 0),
2551 1.6 eeh (fd_mask *)(bits + ni * 3), SCARG(uap, nd), retval);
2552 1.6 eeh if (error || *retval)
2553 1.6 eeh goto done;
2554 1.33 thorpej if (SCARG(uap, tv)) {
2555 1.33 thorpej /*
2556 1.33 thorpej * We have to recalculate the timeout on every retry.
2557 1.33 thorpej */
2558 1.33 thorpej timo = hzto(&atv);
2559 1.33 thorpej if (timo <= 0)
2560 1.33 thorpej goto done;
2561 1.33 thorpej }
2562 1.6 eeh s = splhigh();
2563 1.6 eeh if ((p->p_flag & P_SELECT) == 0 || nselcoll != ncoll) {
2564 1.6 eeh splx(s);
2565 1.6 eeh goto retry;
2566 1.6 eeh }
2567 1.6 eeh p->p_flag &= ~P_SELECT;
2568 1.6 eeh error = tsleep((caddr_t)&selwait, PSOCK | PCATCH, "select", timo);
2569 1.6 eeh splx(s);
2570 1.6 eeh if (error == 0)
2571 1.6 eeh goto retry;
2572 1.6 eeh done:
2573 1.6 eeh p->p_flag &= ~P_SELECT;
2574 1.6 eeh /* select is not restarted after signals... */
2575 1.6 eeh if (error == ERESTART)
2576 1.6 eeh error = EINTR;
2577 1.6 eeh if (error == EWOULDBLOCK)
2578 1.6 eeh error = 0;
2579 1.6 eeh if (error == 0) {
2580 1.6 eeh #define putbits(name, x) \
2581 1.6 eeh if (SCARG(uap, name)) { \
2582 1.6 eeh error = copyout(bits + ni * x, (caddr_t)(u_long)SCARG(uap, name), ni); \
2583 1.6 eeh if (error) \
2584 1.6 eeh goto out; \
2585 1.6 eeh }
2586 1.6 eeh putbits(in, 3);
2587 1.6 eeh putbits(ou, 4);
2588 1.6 eeh putbits(ex, 5);
2589 1.6 eeh #undef putbits
2590 1.5 eeh }
2591 1.6 eeh out:
2592 1.6 eeh if (ni * 6 > sizeof(smallbits))
2593 1.6 eeh free(bits, M_TEMP);
2594 1.6 eeh return (error);
2595 1.6 eeh }
2596 1.6 eeh
2597 1.6 eeh int
2598 1.19 eeh netbsd32_fsync(p, v, retval)
2599 1.6 eeh struct proc *p;
2600 1.6 eeh void *v;
2601 1.6 eeh register_t *retval;
2602 1.6 eeh {
2603 1.19 eeh struct netbsd32_fsync_args /* {
2604 1.6 eeh syscallarg(int) fd;
2605 1.6 eeh } */ *uap = v;
2606 1.6 eeh struct sys_fsync_args ua;
2607 1.1 mrg
2608 1.11 mrg NETBSD32TO64_UAP(fd);
2609 1.6 eeh return (sys_fsync(p, &ua, retval));
2610 1.6 eeh }
2611 1.6 eeh
2612 1.6 eeh int
2613 1.19 eeh netbsd32_setpriority(p, v, retval)
2614 1.6 eeh struct proc *p;
2615 1.6 eeh void *v;
2616 1.6 eeh register_t *retval;
2617 1.6 eeh {
2618 1.19 eeh struct netbsd32_setpriority_args /* {
2619 1.6 eeh syscallarg(int) which;
2620 1.6 eeh syscallarg(int) who;
2621 1.6 eeh syscallarg(int) prio;
2622 1.6 eeh } */ *uap = v;
2623 1.6 eeh struct sys_setpriority_args ua;
2624 1.6 eeh
2625 1.11 mrg NETBSD32TO64_UAP(which);
2626 1.11 mrg NETBSD32TO64_UAP(who);
2627 1.11 mrg NETBSD32TO64_UAP(prio);
2628 1.6 eeh return (sys_setpriority(p, &ua, retval));
2629 1.6 eeh }
2630 1.6 eeh
2631 1.6 eeh int
2632 1.19 eeh netbsd32_socket(p, v, retval)
2633 1.6 eeh struct proc *p;
2634 1.6 eeh void *v;
2635 1.6 eeh register_t *retval;
2636 1.6 eeh {
2637 1.19 eeh struct netbsd32_socket_args /* {
2638 1.6 eeh syscallarg(int) domain;
2639 1.6 eeh syscallarg(int) type;
2640 1.6 eeh syscallarg(int) protocol;
2641 1.6 eeh } */ *uap = v;
2642 1.6 eeh struct sys_socket_args ua;
2643 1.6 eeh
2644 1.11 mrg NETBSD32TO64_UAP(domain);
2645 1.11 mrg NETBSD32TO64_UAP(type);
2646 1.11 mrg NETBSD32TO64_UAP(protocol);
2647 1.6 eeh return (sys_socket(p, &ua, retval));
2648 1.1 mrg }
2649 1.1 mrg
2650 1.1 mrg int
2651 1.19 eeh netbsd32_connect(p, v, retval)
2652 1.1 mrg struct proc *p;
2653 1.1 mrg void *v;
2654 1.1 mrg register_t *retval;
2655 1.1 mrg {
2656 1.19 eeh struct netbsd32_connect_args /* {
2657 1.1 mrg syscallarg(int) s;
2658 1.10 mrg syscallarg(const netbsd32_sockaddrp_t) name;
2659 1.1 mrg syscallarg(int) namelen;
2660 1.1 mrg } */ *uap = v;
2661 1.1 mrg struct sys_connect_args ua;
2662 1.1 mrg
2663 1.11 mrg NETBSD32TO64_UAP(s);
2664 1.11 mrg NETBSD32TOP_UAP(name, struct sockaddr);
2665 1.11 mrg NETBSD32TO64_UAP(namelen);
2666 1.1 mrg return (sys_connect(p, &ua, retval));
2667 1.1 mrg }
2668 1.1 mrg
2669 1.6 eeh int
2670 1.19 eeh netbsd32_getpriority(p, v, retval)
2671 1.6 eeh struct proc *p;
2672 1.6 eeh void *v;
2673 1.6 eeh register_t *retval;
2674 1.6 eeh {
2675 1.19 eeh struct netbsd32_getpriority_args /* {
2676 1.6 eeh syscallarg(int) which;
2677 1.6 eeh syscallarg(int) who;
2678 1.6 eeh } */ *uap = v;
2679 1.6 eeh struct sys_getpriority_args ua;
2680 1.6 eeh
2681 1.11 mrg NETBSD32TO64_UAP(which);
2682 1.11 mrg NETBSD32TO64_UAP(who);
2683 1.6 eeh return (sys_getpriority(p, &ua, retval));
2684 1.6 eeh }
2685 1.6 eeh
2686 1.1 mrg int
2687 1.19 eeh netbsd32_bind(p, v, retval)
2688 1.1 mrg struct proc *p;
2689 1.1 mrg void *v;
2690 1.1 mrg register_t *retval;
2691 1.1 mrg {
2692 1.19 eeh struct netbsd32_bind_args /* {
2693 1.1 mrg syscallarg(int) s;
2694 1.10 mrg syscallarg(const netbsd32_sockaddrp_t) name;
2695 1.1 mrg syscallarg(int) namelen;
2696 1.1 mrg } */ *uap = v;
2697 1.6 eeh struct sys_bind_args ua;
2698 1.1 mrg
2699 1.11 mrg NETBSD32TO64_UAP(s);
2700 1.11 mrg NETBSD32TOP_UAP(name, struct sockaddr);
2701 1.11 mrg NETBSD32TO64_UAP(namelen);
2702 1.6 eeh return (sys_bind(p, &ua, retval));
2703 1.1 mrg }
2704 1.1 mrg
2705 1.1 mrg int
2706 1.19 eeh netbsd32_setsockopt(p, v, retval)
2707 1.1 mrg struct proc *p;
2708 1.1 mrg void *v;
2709 1.1 mrg register_t *retval;
2710 1.1 mrg {
2711 1.19 eeh struct netbsd32_setsockopt_args /* {
2712 1.1 mrg syscallarg(int) s;
2713 1.1 mrg syscallarg(int) level;
2714 1.1 mrg syscallarg(int) name;
2715 1.10 mrg syscallarg(const netbsd32_voidp) val;
2716 1.1 mrg syscallarg(int) valsize;
2717 1.1 mrg } */ *uap = v;
2718 1.1 mrg struct sys_setsockopt_args ua;
2719 1.1 mrg
2720 1.11 mrg NETBSD32TO64_UAP(s);
2721 1.11 mrg NETBSD32TO64_UAP(level);
2722 1.11 mrg NETBSD32TO64_UAP(name);
2723 1.11 mrg NETBSD32TOP_UAP(val, void);
2724 1.11 mrg NETBSD32TO64_UAP(valsize);
2725 1.6 eeh /* may be more efficient to do this inline. */
2726 1.1 mrg return (sys_setsockopt(p, &ua, retval));
2727 1.1 mrg }
2728 1.1 mrg
2729 1.1 mrg int
2730 1.19 eeh netbsd32_listen(p, v, retval)
2731 1.6 eeh struct proc *p;
2732 1.6 eeh void *v;
2733 1.6 eeh register_t *retval;
2734 1.6 eeh {
2735 1.19 eeh struct netbsd32_listen_args /* {
2736 1.6 eeh syscallarg(int) s;
2737 1.6 eeh syscallarg(int) backlog;
2738 1.6 eeh } */ *uap = v;
2739 1.6 eeh struct sys_listen_args ua;
2740 1.6 eeh
2741 1.11 mrg NETBSD32TO64_UAP(s);
2742 1.11 mrg NETBSD32TO64_UAP(backlog);
2743 1.6 eeh return (sys_listen(p, &ua, retval));
2744 1.6 eeh }
2745 1.6 eeh
2746 1.6 eeh int
2747 1.19 eeh netbsd32_gettimeofday(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_gettimeofday_args /* {
2753 1.10 mrg syscallarg(netbsd32_timevalp_t) tp;
2754 1.10 mrg syscallarg(netbsd32_timezonep_t) tzp;
2755 1.1 mrg } */ *uap = v;
2756 1.6 eeh struct timeval atv;
2757 1.10 mrg struct netbsd32_timeval tv32;
2758 1.6 eeh int error = 0;
2759 1.10 mrg struct netbsd32_timezone tzfake;
2760 1.6 eeh
2761 1.6 eeh if (SCARG(uap, tp)) {
2762 1.6 eeh microtime(&atv);
2763 1.10 mrg netbsd32_from_timeval(&atv, &tv32);
2764 1.6 eeh error = copyout(&tv32, (caddr_t)(u_long)SCARG(uap, tp), sizeof(tv32));
2765 1.6 eeh if (error)
2766 1.6 eeh return (error);
2767 1.6 eeh }
2768 1.6 eeh if (SCARG(uap, tzp)) {
2769 1.6 eeh /*
2770 1.6 eeh * NetBSD has no kernel notion of time zone, so we just
2771 1.6 eeh * fake up a timezone struct and return it if demanded.
2772 1.6 eeh */
2773 1.6 eeh tzfake.tz_minuteswest = 0;
2774 1.6 eeh tzfake.tz_dsttime = 0;
2775 1.6 eeh error = copyout(&tzfake, (caddr_t)(u_long)SCARG(uap, tzp), sizeof(tzfake));
2776 1.6 eeh }
2777 1.6 eeh return (error);
2778 1.6 eeh }
2779 1.1 mrg
2780 1.20 eeh #if 0
2781 1.20 eeh static int settime32 __P((struct timeval *));
2782 1.6 eeh /* This function is used by clock_settime and settimeofday */
2783 1.6 eeh static int
2784 1.20 eeh settime32(tv)
2785 1.6 eeh struct timeval *tv;
2786 1.6 eeh {
2787 1.6 eeh struct timeval delta;
2788 1.6 eeh int s;
2789 1.1 mrg
2790 1.6 eeh /* WHAT DO WE DO ABOUT PENDING REAL-TIME TIMEOUTS??? */
2791 1.6 eeh s = splclock();
2792 1.6 eeh timersub(tv, &time, &delta);
2793 1.6 eeh if ((delta.tv_sec < 0 || delta.tv_usec < 0) && securelevel > 1)
2794 1.6 eeh return (EPERM);
2795 1.6 eeh #ifdef notyet
2796 1.6 eeh if ((delta.tv_sec < 86400) && securelevel > 0)
2797 1.6 eeh return (EPERM);
2798 1.6 eeh #endif
2799 1.6 eeh time = *tv;
2800 1.17 thorpej (void) spllowersoftclock();
2801 1.6 eeh timeradd(&boottime, &delta, &boottime);
2802 1.6 eeh timeradd(&runtime, &delta, &runtime);
2803 1.6 eeh # if defined(NFS) || defined(NFSSERVER)
2804 1.20 eeh {
2805 1.20 eeh extern void nqnfs_lease_updatetime __P((int));
2806 1.20 eeh
2807 1.6 eeh nqnfs_lease_updatetime(delta.tv_sec);
2808 1.20 eeh }
2809 1.6 eeh # endif
2810 1.6 eeh splx(s);
2811 1.6 eeh resettodr();
2812 1.1 mrg return (0);
2813 1.1 mrg }
2814 1.20 eeh #endif
2815 1.6 eeh
2816 1.1 mrg int
2817 1.19 eeh netbsd32_settimeofday(p, v, retval)
2818 1.1 mrg struct proc *p;
2819 1.1 mrg void *v;
2820 1.1 mrg register_t *retval;
2821 1.1 mrg {
2822 1.19 eeh struct netbsd32_settimeofday_args /* {
2823 1.10 mrg syscallarg(const netbsd32_timevalp_t) tv;
2824 1.10 mrg syscallarg(const netbsd32_timezonep_t) tzp;
2825 1.1 mrg } */ *uap = v;
2826 1.10 mrg struct netbsd32_timeval atv32;
2827 1.6 eeh struct timeval atv;
2828 1.10 mrg struct netbsd32_timezone atz;
2829 1.1 mrg int error;
2830 1.1 mrg
2831 1.6 eeh if ((error = suser(p->p_ucred, &p->p_acflag)) != 0)
2832 1.6 eeh return (error);
2833 1.6 eeh /* Verify all parameters before changing time. */
2834 1.6 eeh if (SCARG(uap, tv) && (error = copyin((caddr_t)(u_long)SCARG(uap, tv),
2835 1.6 eeh &atv32, sizeof(atv32))))
2836 1.6 eeh return (error);
2837 1.10 mrg netbsd32_to_timeval(&atv32, &atv);
2838 1.6 eeh /* XXX since we don't use tz, probably no point in doing copyin. */
2839 1.6 eeh if (SCARG(uap, tzp) && (error = copyin((caddr_t)(u_long)SCARG(uap, tzp),
2840 1.6 eeh &atz, sizeof(atz))))
2841 1.1 mrg return (error);
2842 1.6 eeh if (SCARG(uap, tv))
2843 1.6 eeh if ((error = settime(&atv)))
2844 1.6 eeh return (error);
2845 1.6 eeh /*
2846 1.6 eeh * NetBSD has no kernel notion of time zone, and only an
2847 1.6 eeh * obsolete program would try to set it, so we log a warning.
2848 1.6 eeh */
2849 1.6 eeh if (SCARG(uap, tzp))
2850 1.6 eeh printf("pid %d attempted to set the "
2851 1.6 eeh "(obsolete) kernel time zone\n", p->p_pid);
2852 1.6 eeh return (0);
2853 1.6 eeh }
2854 1.6 eeh
2855 1.6 eeh int
2856 1.19 eeh netbsd32_fchown(p, v, retval)
2857 1.6 eeh struct proc *p;
2858 1.6 eeh void *v;
2859 1.6 eeh register_t *retval;
2860 1.6 eeh {
2861 1.19 eeh struct netbsd32_fchown_args /* {
2862 1.6 eeh syscallarg(int) fd;
2863 1.6 eeh syscallarg(uid_t) uid;
2864 1.6 eeh syscallarg(gid_t) gid;
2865 1.6 eeh } */ *uap = v;
2866 1.6 eeh struct sys_fchown_args ua;
2867 1.6 eeh
2868 1.11 mrg NETBSD32TO64_UAP(fd);
2869 1.11 mrg NETBSD32TO64_UAP(uid);
2870 1.11 mrg NETBSD32TO64_UAP(gid);
2871 1.6 eeh return (sys_fchown(p, &ua, retval));
2872 1.6 eeh }
2873 1.6 eeh
2874 1.6 eeh int
2875 1.19 eeh netbsd32_fchmod(p, v, retval)
2876 1.6 eeh struct proc *p;
2877 1.6 eeh void *v;
2878 1.6 eeh register_t *retval;
2879 1.6 eeh {
2880 1.19 eeh struct netbsd32_fchmod_args /* {
2881 1.6 eeh syscallarg(int) fd;
2882 1.6 eeh syscallarg(mode_t) mode;
2883 1.6 eeh } */ *uap = v;
2884 1.6 eeh struct sys_fchmod_args ua;
2885 1.6 eeh
2886 1.11 mrg NETBSD32TO64_UAP(fd);
2887 1.11 mrg NETBSD32TO64_UAP(mode);
2888 1.6 eeh return (sys_fchmod(p, &ua, retval));
2889 1.6 eeh }
2890 1.6 eeh
2891 1.6 eeh int
2892 1.19 eeh netbsd32_setreuid(p, v, retval)
2893 1.6 eeh struct proc *p;
2894 1.6 eeh void *v;
2895 1.6 eeh register_t *retval;
2896 1.6 eeh {
2897 1.19 eeh struct netbsd32_setreuid_args /* {
2898 1.6 eeh syscallarg(uid_t) ruid;
2899 1.6 eeh syscallarg(uid_t) euid;
2900 1.6 eeh } */ *uap = v;
2901 1.6 eeh struct sys_setreuid_args ua;
2902 1.6 eeh
2903 1.11 mrg NETBSD32TO64_UAP(ruid);
2904 1.11 mrg NETBSD32TO64_UAP(euid);
2905 1.6 eeh return (sys_setreuid(p, &ua, retval));
2906 1.6 eeh }
2907 1.1 mrg
2908 1.6 eeh int
2909 1.19 eeh netbsd32_setregid(p, v, retval)
2910 1.6 eeh struct proc *p;
2911 1.6 eeh void *v;
2912 1.6 eeh register_t *retval;
2913 1.6 eeh {
2914 1.19 eeh struct netbsd32_setregid_args /* {
2915 1.6 eeh syscallarg(gid_t) rgid;
2916 1.6 eeh syscallarg(gid_t) egid;
2917 1.6 eeh } */ *uap = v;
2918 1.6 eeh struct sys_setregid_args ua;
2919 1.6 eeh
2920 1.11 mrg NETBSD32TO64_UAP(rgid);
2921 1.11 mrg NETBSD32TO64_UAP(egid);
2922 1.6 eeh return (sys_setregid(p, &ua, retval));
2923 1.1 mrg }
2924 1.1 mrg
2925 1.1 mrg int
2926 1.19 eeh netbsd32_getrusage(p, v, retval)
2927 1.1 mrg struct proc *p;
2928 1.1 mrg void *v;
2929 1.1 mrg register_t *retval;
2930 1.1 mrg {
2931 1.19 eeh struct netbsd32_getrusage_args /* {
2932 1.1 mrg syscallarg(int) who;
2933 1.10 mrg syscallarg(netbsd32_rusagep_t) rusage;
2934 1.1 mrg } */ *uap = v;
2935 1.6 eeh struct rusage *rup;
2936 1.10 mrg struct netbsd32_rusage ru;
2937 1.6 eeh
2938 1.6 eeh switch (SCARG(uap, who)) {
2939 1.1 mrg
2940 1.6 eeh case RUSAGE_SELF:
2941 1.6 eeh rup = &p->p_stats->p_ru;
2942 1.6 eeh calcru(p, &rup->ru_utime, &rup->ru_stime, NULL);
2943 1.6 eeh break;
2944 1.1 mrg
2945 1.6 eeh case RUSAGE_CHILDREN:
2946 1.6 eeh rup = &p->p_stats->p_cru;
2947 1.6 eeh break;
2948 1.1 mrg
2949 1.6 eeh default:
2950 1.6 eeh return (EINVAL);
2951 1.6 eeh }
2952 1.10 mrg netbsd32_from_rusage(rup, &ru);
2953 1.6 eeh return (copyout(&ru, (caddr_t)(u_long)SCARG(uap, rusage), sizeof(ru)));
2954 1.1 mrg }
2955 1.1 mrg
2956 1.1 mrg int
2957 1.19 eeh netbsd32_getsockopt(p, v, retval)
2958 1.1 mrg struct proc *p;
2959 1.1 mrg void *v;
2960 1.1 mrg register_t *retval;
2961 1.1 mrg {
2962 1.19 eeh struct netbsd32_getsockopt_args /* {
2963 1.1 mrg syscallarg(int) s;
2964 1.1 mrg syscallarg(int) level;
2965 1.1 mrg syscallarg(int) name;
2966 1.10 mrg syscallarg(netbsd32_voidp) val;
2967 1.10 mrg syscallarg(netbsd32_intp) avalsize;
2968 1.1 mrg } */ *uap = v;
2969 1.1 mrg struct sys_getsockopt_args ua;
2970 1.1 mrg
2971 1.11 mrg NETBSD32TO64_UAP(s);
2972 1.11 mrg NETBSD32TO64_UAP(level);
2973 1.11 mrg NETBSD32TO64_UAP(name);
2974 1.11 mrg NETBSD32TOP_UAP(val, void);
2975 1.11 mrg NETBSD32TOP_UAP(avalsize, int);
2976 1.1 mrg return (sys_getsockopt(p, &ua, retval));
2977 1.1 mrg }
2978 1.1 mrg
2979 1.1 mrg int
2980 1.19 eeh netbsd32_readv(p, v, retval)
2981 1.1 mrg struct proc *p;
2982 1.1 mrg void *v;
2983 1.1 mrg register_t *retval;
2984 1.1 mrg {
2985 1.19 eeh struct netbsd32_readv_args /* {
2986 1.1 mrg syscallarg(int) fd;
2987 1.10 mrg syscallarg(const netbsd32_iovecp_t) iovp;
2988 1.1 mrg syscallarg(int) iovcnt;
2989 1.1 mrg } */ *uap = v;
2990 1.6 eeh int fd = SCARG(uap, fd);
2991 1.25 augustss struct file *fp;
2992 1.25 augustss struct filedesc *fdp = p->p_fd;
2993 1.6 eeh
2994 1.6 eeh if ((u_int)fd >= fdp->fd_nfiles ||
2995 1.6 eeh (fp = fdp->fd_ofiles[fd]) == NULL ||
2996 1.6 eeh (fp->f_flag & FREAD) == 0)
2997 1.6 eeh return (EBADF);
2998 1.6 eeh
2999 1.10 mrg return (dofilereadv32(p, fd, fp, (struct netbsd32_iovec *)(u_long)SCARG(uap, iovp),
3000 1.6 eeh SCARG(uap, iovcnt), &fp->f_offset, FOF_UPDATE_OFFSET, retval));
3001 1.6 eeh }
3002 1.6 eeh
3003 1.6 eeh /* Damn thing copies in the iovec! */
3004 1.6 eeh int
3005 1.6 eeh dofilereadv32(p, fd, fp, iovp, iovcnt, offset, flags, retval)
3006 1.6 eeh struct proc *p;
3007 1.6 eeh int fd;
3008 1.6 eeh struct file *fp;
3009 1.10 mrg struct netbsd32_iovec *iovp;
3010 1.6 eeh int iovcnt;
3011 1.6 eeh off_t *offset;
3012 1.6 eeh int flags;
3013 1.6 eeh register_t *retval;
3014 1.6 eeh {
3015 1.6 eeh struct uio auio;
3016 1.25 augustss struct iovec *iov;
3017 1.6 eeh struct iovec *needfree;
3018 1.6 eeh struct iovec aiov[UIO_SMALLIOV];
3019 1.6 eeh long i, cnt, error = 0;
3020 1.6 eeh u_int iovlen;
3021 1.6 eeh #ifdef KTRACE
3022 1.6 eeh struct iovec *ktriov = NULL;
3023 1.6 eeh #endif
3024 1.1 mrg
3025 1.6 eeh /* note: can't use iovlen until iovcnt is validated */
3026 1.6 eeh iovlen = iovcnt * sizeof(struct iovec);
3027 1.6 eeh if ((u_int)iovcnt > UIO_SMALLIOV) {
3028 1.6 eeh if ((u_int)iovcnt > IOV_MAX)
3029 1.6 eeh return (EINVAL);
3030 1.6 eeh MALLOC(iov, struct iovec *, iovlen, M_IOV, M_WAITOK);
3031 1.6 eeh needfree = iov;
3032 1.6 eeh } else if ((u_int)iovcnt > 0) {
3033 1.6 eeh iov = aiov;
3034 1.6 eeh needfree = NULL;
3035 1.6 eeh } else
3036 1.6 eeh return (EINVAL);
3037 1.1 mrg
3038 1.6 eeh auio.uio_iov = iov;
3039 1.6 eeh auio.uio_iovcnt = iovcnt;
3040 1.6 eeh auio.uio_rw = UIO_READ;
3041 1.6 eeh auio.uio_segflg = UIO_USERSPACE;
3042 1.6 eeh auio.uio_procp = p;
3043 1.10 mrg error = netbsd32_to_iovecin(iovp, iov, iovcnt);
3044 1.6 eeh if (error)
3045 1.6 eeh goto done;
3046 1.6 eeh auio.uio_resid = 0;
3047 1.6 eeh for (i = 0; i < iovcnt; i++) {
3048 1.6 eeh auio.uio_resid += iov->iov_len;
3049 1.6 eeh /*
3050 1.6 eeh * Reads return ssize_t because -1 is returned on error.
3051 1.6 eeh * Therefore we must restrict the length to SSIZE_MAX to
3052 1.6 eeh * avoid garbage return values.
3053 1.6 eeh */
3054 1.6 eeh if (iov->iov_len > SSIZE_MAX || auio.uio_resid > SSIZE_MAX) {
3055 1.6 eeh error = EINVAL;
3056 1.6 eeh goto done;
3057 1.6 eeh }
3058 1.6 eeh iov++;
3059 1.6 eeh }
3060 1.6 eeh #ifdef KTRACE
3061 1.6 eeh /*
3062 1.6 eeh * if tracing, save a copy of iovec
3063 1.6 eeh */
3064 1.6 eeh if (KTRPOINT(p, KTR_GENIO)) {
3065 1.6 eeh MALLOC(ktriov, struct iovec *, iovlen, M_TEMP, M_WAITOK);
3066 1.6 eeh memcpy((caddr_t)ktriov, (caddr_t)auio.uio_iov, iovlen);
3067 1.6 eeh }
3068 1.6 eeh #endif
3069 1.6 eeh cnt = auio.uio_resid;
3070 1.6 eeh error = (*fp->f_ops->fo_read)(fp, offset, &auio, fp->f_cred, flags);
3071 1.6 eeh if (error)
3072 1.6 eeh if (auio.uio_resid != cnt && (error == ERESTART ||
3073 1.6 eeh error == EINTR || error == EWOULDBLOCK))
3074 1.6 eeh error = 0;
3075 1.6 eeh cnt -= auio.uio_resid;
3076 1.6 eeh #ifdef KTRACE
3077 1.6 eeh if (KTRPOINT(p, KTR_GENIO))
3078 1.6 eeh if (error == 0) {
3079 1.26 sommerfe ktrgenio(p, fd, UIO_READ, ktriov, cnt,
3080 1.6 eeh error);
3081 1.6 eeh FREE(ktriov, M_TEMP);
3082 1.6 eeh }
3083 1.6 eeh #endif
3084 1.6 eeh *retval = cnt;
3085 1.6 eeh done:
3086 1.6 eeh if (needfree)
3087 1.6 eeh FREE(needfree, M_IOV);
3088 1.1 mrg return (error);
3089 1.1 mrg }
3090 1.1 mrg
3091 1.6 eeh
3092 1.1 mrg int
3093 1.19 eeh netbsd32_writev(p, v, retval)
3094 1.1 mrg struct proc *p;
3095 1.1 mrg void *v;
3096 1.1 mrg register_t *retval;
3097 1.1 mrg {
3098 1.19 eeh struct netbsd32_writev_args /* {
3099 1.1 mrg syscallarg(int) fd;
3100 1.10 mrg syscallarg(const netbsd32_iovecp_t) iovp;
3101 1.1 mrg syscallarg(int) iovcnt;
3102 1.1 mrg } */ *uap = v;
3103 1.6 eeh int fd = SCARG(uap, fd);
3104 1.25 augustss struct file *fp;
3105 1.25 augustss struct filedesc *fdp = p->p_fd;
3106 1.6 eeh
3107 1.6 eeh if ((u_int)fd >= fdp->fd_nfiles ||
3108 1.6 eeh (fp = fdp->fd_ofiles[fd]) == NULL ||
3109 1.6 eeh (fp->f_flag & FWRITE) == 0)
3110 1.6 eeh return (EBADF);
3111 1.6 eeh
3112 1.10 mrg return (dofilewritev32(p, fd, fp, (struct netbsd32_iovec *)(u_long)SCARG(uap, iovp),
3113 1.6 eeh SCARG(uap, iovcnt), &fp->f_offset, FOF_UPDATE_OFFSET, retval));
3114 1.6 eeh }
3115 1.6 eeh
3116 1.6 eeh int
3117 1.6 eeh dofilewritev32(p, fd, fp, iovp, iovcnt, offset, flags, retval)
3118 1.6 eeh struct proc *p;
3119 1.6 eeh int fd;
3120 1.6 eeh struct file *fp;
3121 1.10 mrg struct netbsd32_iovec *iovp;
3122 1.6 eeh int iovcnt;
3123 1.6 eeh off_t *offset;
3124 1.6 eeh int flags;
3125 1.6 eeh register_t *retval;
3126 1.6 eeh {
3127 1.6 eeh struct uio auio;
3128 1.25 augustss struct iovec *iov;
3129 1.6 eeh struct iovec *needfree;
3130 1.6 eeh struct iovec aiov[UIO_SMALLIOV];
3131 1.6 eeh long i, cnt, error = 0;
3132 1.6 eeh u_int iovlen;
3133 1.6 eeh #ifdef KTRACE
3134 1.6 eeh struct iovec *ktriov = NULL;
3135 1.6 eeh #endif
3136 1.1 mrg
3137 1.6 eeh /* note: can't use iovlen until iovcnt is validated */
3138 1.6 eeh iovlen = iovcnt * sizeof(struct iovec);
3139 1.6 eeh if ((u_int)iovcnt > UIO_SMALLIOV) {
3140 1.6 eeh if ((u_int)iovcnt > IOV_MAX)
3141 1.6 eeh return (EINVAL);
3142 1.6 eeh MALLOC(iov, struct iovec *, iovlen, M_IOV, M_WAITOK);
3143 1.6 eeh needfree = iov;
3144 1.6 eeh } else if ((u_int)iovcnt > 0) {
3145 1.6 eeh iov = aiov;
3146 1.6 eeh needfree = NULL;
3147 1.6 eeh } else
3148 1.6 eeh return (EINVAL);
3149 1.1 mrg
3150 1.6 eeh auio.uio_iov = iov;
3151 1.6 eeh auio.uio_iovcnt = iovcnt;
3152 1.6 eeh auio.uio_rw = UIO_WRITE;
3153 1.6 eeh auio.uio_segflg = UIO_USERSPACE;
3154 1.6 eeh auio.uio_procp = p;
3155 1.10 mrg error = netbsd32_to_iovecin(iovp, iov, iovcnt);
3156 1.6 eeh if (error)
3157 1.6 eeh goto done;
3158 1.6 eeh auio.uio_resid = 0;
3159 1.6 eeh for (i = 0; i < iovcnt; i++) {
3160 1.6 eeh auio.uio_resid += iov->iov_len;
3161 1.6 eeh /*
3162 1.6 eeh * Writes return ssize_t because -1 is returned on error.
3163 1.6 eeh * Therefore we must restrict the length to SSIZE_MAX to
3164 1.6 eeh * avoid garbage return values.
3165 1.6 eeh */
3166 1.6 eeh if (iov->iov_len > SSIZE_MAX || auio.uio_resid > SSIZE_MAX) {
3167 1.6 eeh error = EINVAL;
3168 1.6 eeh goto done;
3169 1.6 eeh }
3170 1.6 eeh iov++;
3171 1.6 eeh }
3172 1.6 eeh #ifdef KTRACE
3173 1.6 eeh /*
3174 1.6 eeh * if tracing, save a copy of iovec
3175 1.6 eeh */
3176 1.6 eeh if (KTRPOINT(p, KTR_GENIO)) {
3177 1.6 eeh MALLOC(ktriov, struct iovec *, iovlen, M_TEMP, M_WAITOK);
3178 1.6 eeh memcpy((caddr_t)ktriov, (caddr_t)auio.uio_iov, iovlen);
3179 1.6 eeh }
3180 1.6 eeh #endif
3181 1.6 eeh cnt = auio.uio_resid;
3182 1.6 eeh error = (*fp->f_ops->fo_write)(fp, offset, &auio, fp->f_cred, flags);
3183 1.6 eeh if (error) {
3184 1.6 eeh if (auio.uio_resid != cnt && (error == ERESTART ||
3185 1.6 eeh error == EINTR || error == EWOULDBLOCK))
3186 1.6 eeh error = 0;
3187 1.6 eeh if (error == EPIPE)
3188 1.6 eeh psignal(p, SIGPIPE);
3189 1.6 eeh }
3190 1.6 eeh cnt -= auio.uio_resid;
3191 1.6 eeh #ifdef KTRACE
3192 1.6 eeh if (KTRPOINT(p, KTR_GENIO))
3193 1.6 eeh if (error == 0) {
3194 1.26 sommerfe ktrgenio(p, fd, UIO_WRITE, ktriov, cnt,
3195 1.6 eeh error);
3196 1.6 eeh FREE(ktriov, M_TEMP);
3197 1.6 eeh }
3198 1.6 eeh #endif
3199 1.6 eeh *retval = cnt;
3200 1.6 eeh done:
3201 1.6 eeh if (needfree)
3202 1.6 eeh FREE(needfree, M_IOV);
3203 1.1 mrg return (error);
3204 1.1 mrg }
3205 1.1 mrg
3206 1.6 eeh
3207 1.1 mrg int
3208 1.19 eeh netbsd32_rename(p, v, retval)
3209 1.1 mrg struct proc *p;
3210 1.1 mrg void *v;
3211 1.1 mrg register_t *retval;
3212 1.1 mrg {
3213 1.19 eeh struct netbsd32_rename_args /* {
3214 1.10 mrg syscallarg(const netbsd32_charp) from;
3215 1.10 mrg syscallarg(const netbsd32_charp) to;
3216 1.1 mrg } */ *uap = v;
3217 1.1 mrg struct sys_rename_args ua;
3218 1.1 mrg
3219 1.20 eeh NETBSD32TOP_UAP(from, const char);
3220 1.20 eeh NETBSD32TOP_UAP(to, const char)
3221 1.6 eeh
3222 1.1 mrg return (sys_rename(p, &ua, retval));
3223 1.1 mrg }
3224 1.1 mrg
3225 1.1 mrg int
3226 1.19 eeh netbsd32_flock(p, v, retval)
3227 1.6 eeh struct proc *p;
3228 1.6 eeh void *v;
3229 1.6 eeh register_t *retval;
3230 1.6 eeh {
3231 1.19 eeh struct netbsd32_flock_args /* {
3232 1.6 eeh syscallarg(int) fd;
3233 1.6 eeh syscallarg(int) how;
3234 1.6 eeh } */ *uap = v;
3235 1.6 eeh struct sys_flock_args ua;
3236 1.6 eeh
3237 1.11 mrg NETBSD32TO64_UAP(fd);
3238 1.11 mrg NETBSD32TO64_UAP(how)
3239 1.6 eeh
3240 1.6 eeh return (sys_flock(p, &ua, retval));
3241 1.6 eeh }
3242 1.6 eeh
3243 1.6 eeh int
3244 1.19 eeh netbsd32_mkfifo(p, v, retval)
3245 1.1 mrg struct proc *p;
3246 1.1 mrg void *v;
3247 1.1 mrg register_t *retval;
3248 1.1 mrg {
3249 1.19 eeh struct netbsd32_mkfifo_args /* {
3250 1.10 mrg syscallarg(const netbsd32_charp) path;
3251 1.1 mrg syscallarg(mode_t) mode;
3252 1.1 mrg } */ *uap = v;
3253 1.1 mrg struct sys_mkfifo_args ua;
3254 1.1 mrg
3255 1.11 mrg NETBSD32TOP_UAP(path, const char)
3256 1.11 mrg NETBSD32TO64_UAP(mode);
3257 1.1 mrg return (sys_mkfifo(p, &ua, retval));
3258 1.1 mrg }
3259 1.1 mrg
3260 1.1 mrg int
3261 1.19 eeh netbsd32_shutdown(p, v, retval)
3262 1.6 eeh struct proc *p;
3263 1.6 eeh void *v;
3264 1.6 eeh register_t *retval;
3265 1.6 eeh {
3266 1.19 eeh struct netbsd32_shutdown_args /* {
3267 1.6 eeh syscallarg(int) s;
3268 1.6 eeh syscallarg(int) how;
3269 1.6 eeh } */ *uap = v;
3270 1.6 eeh struct sys_shutdown_args ua;
3271 1.6 eeh
3272 1.11 mrg NETBSD32TO64_UAP(s)
3273 1.11 mrg NETBSD32TO64_UAP(how);
3274 1.6 eeh return (sys_shutdown(p, &ua, retval));
3275 1.6 eeh }
3276 1.6 eeh
3277 1.6 eeh int
3278 1.19 eeh netbsd32_socketpair(p, v, retval)
3279 1.6 eeh struct proc *p;
3280 1.6 eeh void *v;
3281 1.6 eeh register_t *retval;
3282 1.6 eeh {
3283 1.19 eeh struct netbsd32_socketpair_args /* {
3284 1.6 eeh syscallarg(int) domain;
3285 1.6 eeh syscallarg(int) type;
3286 1.6 eeh syscallarg(int) protocol;
3287 1.10 mrg syscallarg(netbsd32_intp) rsv;
3288 1.6 eeh } */ *uap = v;
3289 1.6 eeh struct sys_socketpair_args ua;
3290 1.6 eeh
3291 1.11 mrg NETBSD32TO64_UAP(domain);
3292 1.11 mrg NETBSD32TO64_UAP(type);
3293 1.11 mrg NETBSD32TO64_UAP(protocol);
3294 1.11 mrg NETBSD32TOP_UAP(rsv, int);
3295 1.6 eeh /* Since we're just copying out two `int's we can do this */
3296 1.6 eeh return (sys_socketpair(p, &ua, retval));
3297 1.6 eeh }
3298 1.6 eeh
3299 1.6 eeh int
3300 1.19 eeh netbsd32_mkdir(p, v, retval)
3301 1.1 mrg struct proc *p;
3302 1.1 mrg void *v;
3303 1.1 mrg register_t *retval;
3304 1.1 mrg {
3305 1.19 eeh struct netbsd32_mkdir_args /* {
3306 1.10 mrg syscallarg(const netbsd32_charp) path;
3307 1.1 mrg syscallarg(mode_t) mode;
3308 1.1 mrg } */ *uap = v;
3309 1.1 mrg struct sys_mkdir_args ua;
3310 1.1 mrg
3311 1.11 mrg NETBSD32TOP_UAP(path, const char)
3312 1.11 mrg NETBSD32TO64_UAP(mode);
3313 1.1 mrg return (sys_mkdir(p, &ua, retval));
3314 1.1 mrg }
3315 1.1 mrg
3316 1.1 mrg int
3317 1.19 eeh netbsd32_rmdir(p, v, retval)
3318 1.1 mrg struct proc *p;
3319 1.1 mrg void *v;
3320 1.1 mrg register_t *retval;
3321 1.1 mrg {
3322 1.19 eeh struct netbsd32_rmdir_args /* {
3323 1.10 mrg syscallarg(const netbsd32_charp) path;
3324 1.1 mrg } */ *uap = v;
3325 1.1 mrg struct sys_rmdir_args ua;
3326 1.1 mrg
3327 1.11 mrg NETBSD32TOP_UAP(path, const char);
3328 1.1 mrg return (sys_rmdir(p, &ua, retval));
3329 1.1 mrg }
3330 1.1 mrg
3331 1.1 mrg int
3332 1.19 eeh netbsd32_utimes(p, v, retval)
3333 1.1 mrg struct proc *p;
3334 1.1 mrg void *v;
3335 1.1 mrg register_t *retval;
3336 1.1 mrg {
3337 1.19 eeh struct netbsd32_utimes_args /* {
3338 1.10 mrg syscallarg(const netbsd32_charp) path;
3339 1.10 mrg syscallarg(const netbsd32_timevalp_t) tptr;
3340 1.1 mrg } */ *uap = v;
3341 1.6 eeh int error;
3342 1.6 eeh struct nameidata nd;
3343 1.6 eeh
3344 1.6 eeh NDINIT(&nd, LOOKUP, FOLLOW, UIO_USERSPACE, (char *)(u_long)SCARG(uap, path), p);
3345 1.6 eeh if ((error = namei(&nd)) != 0)
3346 1.6 eeh return (error);
3347 1.1 mrg
3348 1.6 eeh error = change_utimes32(nd.ni_vp, (struct timeval *)(u_long)SCARG(uap, tptr), p);
3349 1.1 mrg
3350 1.6 eeh vrele(nd.ni_vp);
3351 1.6 eeh return (error);
3352 1.6 eeh }
3353 1.6 eeh
3354 1.6 eeh /*
3355 1.6 eeh * Common routine to set access and modification times given a vnode.
3356 1.6 eeh */
3357 1.6 eeh static int
3358 1.6 eeh change_utimes32(vp, tptr, p)
3359 1.6 eeh struct vnode *vp;
3360 1.6 eeh struct timeval *tptr;
3361 1.6 eeh struct proc *p;
3362 1.6 eeh {
3363 1.10 mrg struct netbsd32_timeval tv32[2];
3364 1.6 eeh struct timeval tv[2];
3365 1.6 eeh struct vattr vattr;
3366 1.6 eeh int error;
3367 1.6 eeh
3368 1.6 eeh VATTR_NULL(&vattr);
3369 1.6 eeh if (tptr == NULL) {
3370 1.6 eeh microtime(&tv[0]);
3371 1.6 eeh tv[1] = tv[0];
3372 1.6 eeh vattr.va_vaflags |= VA_UTIMES_NULL;
3373 1.6 eeh } else {
3374 1.6 eeh error = copyin(tptr, tv, sizeof(tv));
3375 1.6 eeh if (error)
3376 1.6 eeh return (error);
3377 1.6 eeh }
3378 1.10 mrg netbsd32_to_timeval(&tv32[0], &tv[0]);
3379 1.10 mrg netbsd32_to_timeval(&tv32[1], &tv[1]);
3380 1.6 eeh VOP_LEASE(vp, p, p->p_ucred, LEASE_WRITE);
3381 1.6 eeh vn_lock(vp, LK_EXCLUSIVE | LK_RETRY);
3382 1.6 eeh vattr.va_atime.tv_sec = tv[0].tv_sec;
3383 1.6 eeh vattr.va_atime.tv_nsec = tv[0].tv_usec * 1000;
3384 1.6 eeh vattr.va_mtime.tv_sec = tv[1].tv_sec;
3385 1.6 eeh vattr.va_mtime.tv_nsec = tv[1].tv_usec * 1000;
3386 1.6 eeh error = VOP_SETATTR(vp, &vattr, p->p_ucred, p);
3387 1.6 eeh VOP_UNLOCK(vp, 0);
3388 1.6 eeh return (error);
3389 1.1 mrg }
3390 1.1 mrg
3391 1.1 mrg int
3392 1.19 eeh netbsd32_adjtime(p, v, retval)
3393 1.1 mrg struct proc *p;
3394 1.1 mrg void *v;
3395 1.1 mrg register_t *retval;
3396 1.1 mrg {
3397 1.19 eeh struct netbsd32_adjtime_args /* {
3398 1.10 mrg syscallarg(const netbsd32_timevalp_t) delta;
3399 1.10 mrg syscallarg(netbsd32_timevalp_t) olddelta;
3400 1.1 mrg } */ *uap = v;
3401 1.10 mrg struct netbsd32_timeval atv;
3402 1.6 eeh int32_t ndelta, ntickdelta, odelta;
3403 1.6 eeh int s, error;
3404 1.6 eeh extern long bigadj, timedelta;
3405 1.6 eeh extern int tickdelta;
3406 1.1 mrg
3407 1.6 eeh if ((error = suser(p->p_ucred, &p->p_acflag)) != 0)
3408 1.6 eeh return (error);
3409 1.1 mrg
3410 1.6 eeh error = copyin((caddr_t)(u_long)SCARG(uap, delta), &atv, sizeof(struct timeval));
3411 1.1 mrg if (error)
3412 1.1 mrg return (error);
3413 1.6 eeh /*
3414 1.6 eeh * Compute the total correction and the rate at which to apply it.
3415 1.6 eeh * Round the adjustment down to a whole multiple of the per-tick
3416 1.6 eeh * delta, so that after some number of incremental changes in
3417 1.6 eeh * hardclock(), tickdelta will become zero, lest the correction
3418 1.6 eeh * overshoot and start taking us away from the desired final time.
3419 1.6 eeh */
3420 1.6 eeh ndelta = atv.tv_sec * 1000000 + atv.tv_usec;
3421 1.6 eeh if (ndelta > bigadj)
3422 1.6 eeh ntickdelta = 10 * tickadj;
3423 1.6 eeh else
3424 1.6 eeh ntickdelta = tickadj;
3425 1.6 eeh if (ndelta % ntickdelta)
3426 1.6 eeh ndelta = ndelta / ntickdelta * ntickdelta;
3427 1.1 mrg
3428 1.6 eeh /*
3429 1.6 eeh * To make hardclock()'s job easier, make the per-tick delta negative
3430 1.6 eeh * if we want time to run slower; then hardclock can simply compute
3431 1.6 eeh * tick + tickdelta, and subtract tickdelta from timedelta.
3432 1.6 eeh */
3433 1.6 eeh if (ndelta < 0)
3434 1.6 eeh ntickdelta = -ntickdelta;
3435 1.6 eeh s = splclock();
3436 1.6 eeh odelta = timedelta;
3437 1.6 eeh timedelta = ndelta;
3438 1.6 eeh tickdelta = ntickdelta;
3439 1.6 eeh splx(s);
3440 1.6 eeh
3441 1.6 eeh if (SCARG(uap, olddelta)) {
3442 1.6 eeh atv.tv_sec = odelta / 1000000;
3443 1.6 eeh atv.tv_usec = odelta % 1000000;
3444 1.6 eeh (void) copyout(&atv, (caddr_t)(u_long)SCARG(uap, olddelta),
3445 1.6 eeh sizeof(struct timeval));
3446 1.6 eeh }
3447 1.1 mrg return (0);
3448 1.1 mrg }
3449 1.1 mrg
3450 1.1 mrg int
3451 1.19 eeh netbsd32_quotactl(p, v, retval)
3452 1.1 mrg struct proc *p;
3453 1.1 mrg void *v;
3454 1.1 mrg register_t *retval;
3455 1.1 mrg {
3456 1.19 eeh struct netbsd32_quotactl_args /* {
3457 1.10 mrg syscallarg(const netbsd32_charp) path;
3458 1.1 mrg syscallarg(int) cmd;
3459 1.1 mrg syscallarg(int) uid;
3460 1.10 mrg syscallarg(netbsd32_caddr_t) arg;
3461 1.1 mrg } */ *uap = v;
3462 1.1 mrg struct sys_quotactl_args ua;
3463 1.1 mrg
3464 1.11 mrg NETBSD32TOP_UAP(path, const char);
3465 1.11 mrg NETBSD32TO64_UAP(cmd);
3466 1.11 mrg NETBSD32TO64_UAP(uid);
3467 1.11 mrg NETBSD32TOX64_UAP(arg, caddr_t);
3468 1.1 mrg return (sys_quotactl(p, &ua, retval));
3469 1.1 mrg }
3470 1.1 mrg
3471 1.6 eeh #if defined(NFS) || defined(NFSSERVER)
3472 1.1 mrg int
3473 1.19 eeh netbsd32_nfssvc(p, v, retval)
3474 1.1 mrg struct proc *p;
3475 1.1 mrg void *v;
3476 1.1 mrg register_t *retval;
3477 1.1 mrg {
3478 1.6 eeh #if 0
3479 1.19 eeh struct netbsd32_nfssvc_args /* {
3480 1.1 mrg syscallarg(int) flag;
3481 1.10 mrg syscallarg(netbsd32_voidp) argp;
3482 1.1 mrg } */ *uap = v;
3483 1.1 mrg struct sys_nfssvc_args ua;
3484 1.1 mrg
3485 1.11 mrg NETBSD32TO64_UAP(flag);
3486 1.11 mrg NETBSD32TOP_UAP(argp, void);
3487 1.1 mrg return (sys_nfssvc(p, &ua, retval));
3488 1.6 eeh #else
3489 1.6 eeh /* Why would we want to support a 32-bit nfsd? */
3490 1.6 eeh return (ENOSYS);
3491 1.6 eeh #endif
3492 1.1 mrg }
3493 1.6 eeh #endif
3494 1.1 mrg
3495 1.1 mrg int
3496 1.19 eeh netbsd32_statfs(p, v, retval)
3497 1.1 mrg struct proc *p;
3498 1.1 mrg void *v;
3499 1.1 mrg register_t *retval;
3500 1.1 mrg {
3501 1.19 eeh struct netbsd32_statfs_args /* {
3502 1.10 mrg syscallarg(const netbsd32_charp) path;
3503 1.10 mrg syscallarg(netbsd32_statfsp_t) buf;
3504 1.1 mrg } */ *uap = v;
3505 1.25 augustss struct mount *mp;
3506 1.25 augustss struct statfs *sp;
3507 1.10 mrg struct netbsd32_statfs s32;
3508 1.1 mrg int error;
3509 1.6 eeh struct nameidata nd;
3510 1.1 mrg
3511 1.6 eeh NDINIT(&nd, LOOKUP, FOLLOW, UIO_USERSPACE, (char *)(u_long)SCARG(uap, path), p);
3512 1.6 eeh if ((error = namei(&nd)) != 0)
3513 1.6 eeh return (error);
3514 1.6 eeh mp = nd.ni_vp->v_mount;
3515 1.6 eeh sp = &mp->mnt_stat;
3516 1.6 eeh vrele(nd.ni_vp);
3517 1.6 eeh if ((error = VFS_STATFS(mp, sp, p)) != 0)
3518 1.1 mrg return (error);
3519 1.6 eeh sp->f_flags = mp->mnt_flag & MNT_VISFLAGMASK;
3520 1.10 mrg netbsd32_from_statfs(sp, &s32);
3521 1.6 eeh return (copyout(&s32, (caddr_t)(u_long)SCARG(uap, buf), sizeof(s32)));
3522 1.1 mrg }
3523 1.1 mrg
3524 1.1 mrg int
3525 1.19 eeh netbsd32_fstatfs(p, v, retval)
3526 1.1 mrg struct proc *p;
3527 1.1 mrg void *v;
3528 1.1 mrg register_t *retval;
3529 1.1 mrg {
3530 1.19 eeh struct netbsd32_fstatfs_args /* {
3531 1.1 mrg syscallarg(int) fd;
3532 1.10 mrg syscallarg(netbsd32_statfsp_t) buf;
3533 1.1 mrg } */ *uap = v;
3534 1.6 eeh struct file *fp;
3535 1.25 augustss struct mount *mp;
3536 1.25 augustss struct statfs *sp;
3537 1.10 mrg struct netbsd32_statfs s32;
3538 1.1 mrg int error;
3539 1.1 mrg
3540 1.12 thorpej /* getvnode() will use the descriptor for us */
3541 1.6 eeh if ((error = getvnode(p->p_fd, SCARG(uap, fd), &fp)) != 0)
3542 1.6 eeh return (error);
3543 1.6 eeh mp = ((struct vnode *)fp->f_data)->v_mount;
3544 1.6 eeh sp = &mp->mnt_stat;
3545 1.6 eeh if ((error = VFS_STATFS(mp, sp, p)) != 0)
3546 1.12 thorpej goto out;
3547 1.6 eeh sp->f_flags = mp->mnt_flag & MNT_VISFLAGMASK;
3548 1.10 mrg netbsd32_from_statfs(sp, &s32);
3549 1.12 thorpej error = copyout(&s32, (caddr_t)(u_long)SCARG(uap, buf), sizeof(s32));
3550 1.12 thorpej out:
3551 1.19 eeh FILE_UNUSE(fp, p);
3552 1.12 thorpej return (error);
3553 1.1 mrg }
3554 1.1 mrg
3555 1.6 eeh #if defined(NFS) || defined(NFSSERVER)
3556 1.1 mrg int
3557 1.19 eeh netbsd32_getfh(p, v, retval)
3558 1.1 mrg struct proc *p;
3559 1.1 mrg void *v;
3560 1.1 mrg register_t *retval;
3561 1.1 mrg {
3562 1.19 eeh struct netbsd32_getfh_args /* {
3563 1.10 mrg syscallarg(const netbsd32_charp) fname;
3564 1.10 mrg syscallarg(netbsd32_fhandlep_t) fhp;
3565 1.1 mrg } */ *uap = v;
3566 1.1 mrg struct sys_getfh_args ua;
3567 1.1 mrg
3568 1.11 mrg NETBSD32TOP_UAP(fname, const char);
3569 1.11 mrg NETBSD32TOP_UAP(fhp, struct fhandle);
3570 1.6 eeh /* Lucky for us a fhandlep_t doesn't change sizes */
3571 1.1 mrg return (sys_getfh(p, &ua, retval));
3572 1.1 mrg }
3573 1.6 eeh #endif
3574 1.1 mrg
3575 1.1 mrg int
3576 1.19 eeh netbsd32_sysarch(p, v, retval)
3577 1.1 mrg struct proc *p;
3578 1.1 mrg void *v;
3579 1.1 mrg register_t *retval;
3580 1.1 mrg {
3581 1.19 eeh struct netbsd32_sysarch_args /* {
3582 1.1 mrg syscallarg(int) op;
3583 1.10 mrg syscallarg(netbsd32_voidp) parms;
3584 1.1 mrg } */ *uap = v;
3585 1.1 mrg
3586 1.6 eeh switch (SCARG(uap, op)) {
3587 1.6 eeh default:
3588 1.19 eeh printf("(sparc64) netbsd32_sysarch(%d)\n", SCARG(uap, op));
3589 1.6 eeh return EINVAL;
3590 1.6 eeh }
3591 1.1 mrg }
3592 1.1 mrg
3593 1.1 mrg int
3594 1.19 eeh netbsd32_pread(p, v, retval)
3595 1.1 mrg struct proc *p;
3596 1.1 mrg void *v;
3597 1.1 mrg register_t *retval;
3598 1.1 mrg {
3599 1.19 eeh struct netbsd32_pread_args /* {
3600 1.1 mrg syscallarg(int) fd;
3601 1.10 mrg syscallarg(netbsd32_voidp) buf;
3602 1.10 mrg syscallarg(netbsd32_size_t) nbyte;
3603 1.1 mrg syscallarg(int) pad;
3604 1.1 mrg syscallarg(off_t) offset;
3605 1.1 mrg } */ *uap = v;
3606 1.1 mrg struct sys_pread_args ua;
3607 1.1 mrg ssize_t rt;
3608 1.1 mrg int error;
3609 1.1 mrg
3610 1.11 mrg NETBSD32TO64_UAP(fd);
3611 1.11 mrg NETBSD32TOP_UAP(buf, void);
3612 1.11 mrg NETBSD32TOX_UAP(nbyte, size_t);
3613 1.11 mrg NETBSD32TO64_UAP(pad);
3614 1.11 mrg NETBSD32TO64_UAP(offset);
3615 1.1 mrg error = sys_pread(p, &ua, (register_t *)&rt);
3616 1.32 mrg *retval = rt;
3617 1.1 mrg return (error);
3618 1.1 mrg }
3619 1.1 mrg
3620 1.1 mrg int
3621 1.19 eeh netbsd32_pwrite(p, v, retval)
3622 1.1 mrg struct proc *p;
3623 1.1 mrg void *v;
3624 1.1 mrg register_t *retval;
3625 1.1 mrg {
3626 1.19 eeh struct netbsd32_pwrite_args /* {
3627 1.1 mrg syscallarg(int) fd;
3628 1.10 mrg syscallarg(const netbsd32_voidp) buf;
3629 1.10 mrg syscallarg(netbsd32_size_t) nbyte;
3630 1.1 mrg syscallarg(int) pad;
3631 1.1 mrg syscallarg(off_t) offset;
3632 1.1 mrg } */ *uap = v;
3633 1.1 mrg struct sys_pwrite_args ua;
3634 1.1 mrg ssize_t rt;
3635 1.1 mrg int error;
3636 1.1 mrg
3637 1.11 mrg NETBSD32TO64_UAP(fd);
3638 1.11 mrg NETBSD32TOP_UAP(buf, void);
3639 1.11 mrg NETBSD32TOX_UAP(nbyte, size_t);
3640 1.11 mrg NETBSD32TO64_UAP(pad);
3641 1.11 mrg NETBSD32TO64_UAP(offset);
3642 1.1 mrg error = sys_pwrite(p, &ua, (register_t *)&rt);
3643 1.32 mrg *retval = rt;
3644 1.1 mrg return (error);
3645 1.1 mrg }
3646 1.1 mrg
3647 1.6 eeh #ifdef NTP
3648 1.1 mrg int
3649 1.19 eeh netbsd32_ntp_gettime(p, v, retval)
3650 1.1 mrg struct proc *p;
3651 1.1 mrg void *v;
3652 1.1 mrg register_t *retval;
3653 1.1 mrg {
3654 1.19 eeh struct netbsd32_ntp_gettime_args /* {
3655 1.10 mrg syscallarg(netbsd32_ntptimevalp_t) ntvp;
3656 1.1 mrg } */ *uap = v;
3657 1.10 mrg struct netbsd32_ntptimeval ntv32;
3658 1.6 eeh struct timeval atv;
3659 1.1 mrg struct ntptimeval ntv;
3660 1.6 eeh int error = 0;
3661 1.6 eeh int s;
3662 1.1 mrg
3663 1.6 eeh /* The following are NTP variables */
3664 1.6 eeh extern long time_maxerror;
3665 1.6 eeh extern long time_esterror;
3666 1.6 eeh extern int time_status;
3667 1.6 eeh extern int time_state; /* clock state */
3668 1.6 eeh extern int time_status; /* clock status bits */
3669 1.6 eeh
3670 1.6 eeh if (SCARG(uap, ntvp)) {
3671 1.6 eeh s = splclock();
3672 1.6 eeh #ifdef EXT_CLOCK
3673 1.6 eeh /*
3674 1.6 eeh * The microtime() external clock routine returns a
3675 1.6 eeh * status code. If less than zero, we declare an error
3676 1.6 eeh * in the clock status word and return the kernel
3677 1.6 eeh * (software) time variable. While there are other
3678 1.6 eeh * places that call microtime(), this is the only place
3679 1.6 eeh * that matters from an application point of view.
3680 1.6 eeh */
3681 1.6 eeh if (microtime(&atv) < 0) {
3682 1.6 eeh time_status |= STA_CLOCKERR;
3683 1.6 eeh ntv.time = time;
3684 1.6 eeh } else
3685 1.6 eeh time_status &= ~STA_CLOCKERR;
3686 1.6 eeh #else /* EXT_CLOCK */
3687 1.6 eeh microtime(&atv);
3688 1.6 eeh #endif /* EXT_CLOCK */
3689 1.6 eeh ntv.time = atv;
3690 1.6 eeh ntv.maxerror = time_maxerror;
3691 1.6 eeh ntv.esterror = time_esterror;
3692 1.6 eeh (void) splx(s);
3693 1.1 mrg
3694 1.10 mrg netbsd32_from_timeval(&ntv.time, &ntv32.time);
3695 1.10 mrg ntv32.maxerror = (netbsd32_long)ntv.maxerror;
3696 1.10 mrg ntv32.esterror = (netbsd32_long)ntv.esterror;
3697 1.6 eeh error = copyout((caddr_t)&ntv32, (caddr_t)(u_long)SCARG(uap, ntvp),
3698 1.6 eeh sizeof(ntv32));
3699 1.6 eeh }
3700 1.6 eeh if (!error) {
3701 1.6 eeh
3702 1.6 eeh /*
3703 1.6 eeh * Status word error decode. If any of these conditions
3704 1.6 eeh * occur, an error is returned, instead of the status
3705 1.6 eeh * word. Most applications will care only about the fact
3706 1.6 eeh * the system clock may not be trusted, not about the
3707 1.6 eeh * details.
3708 1.6 eeh *
3709 1.6 eeh * Hardware or software error
3710 1.6 eeh */
3711 1.6 eeh if ((time_status & (STA_UNSYNC | STA_CLOCKERR)) ||
3712 1.6 eeh
3713 1.6 eeh /*
3714 1.6 eeh * PPS signal lost when either time or frequency
3715 1.6 eeh * synchronization requested
3716 1.6 eeh */
3717 1.6 eeh (time_status & (STA_PPSFREQ | STA_PPSTIME) &&
3718 1.6 eeh !(time_status & STA_PPSSIGNAL)) ||
3719 1.6 eeh
3720 1.6 eeh /*
3721 1.6 eeh * PPS jitter exceeded when time synchronization
3722 1.6 eeh * requested
3723 1.6 eeh */
3724 1.6 eeh (time_status & STA_PPSTIME &&
3725 1.6 eeh time_status & STA_PPSJITTER) ||
3726 1.6 eeh
3727 1.6 eeh /*
3728 1.6 eeh * PPS wander exceeded or calibration error when
3729 1.6 eeh * frequency synchronization requested
3730 1.6 eeh */
3731 1.6 eeh (time_status & STA_PPSFREQ &&
3732 1.6 eeh time_status & (STA_PPSWANDER | STA_PPSERROR)))
3733 1.6 eeh *retval = TIME_ERROR;
3734 1.6 eeh else
3735 1.32 mrg *retval = time_state;
3736 1.1 mrg }
3737 1.6 eeh return(error);
3738 1.1 mrg }
3739 1.1 mrg
3740 1.1 mrg int
3741 1.19 eeh netbsd32_ntp_adjtime(p, v, retval)
3742 1.1 mrg struct proc *p;
3743 1.1 mrg void *v;
3744 1.1 mrg register_t *retval;
3745 1.1 mrg {
3746 1.19 eeh struct netbsd32_ntp_adjtime_args /* {
3747 1.10 mrg syscallarg(netbsd32_timexp_t) tp;
3748 1.1 mrg } */ *uap = v;
3749 1.10 mrg struct netbsd32_timex ntv32;
3750 1.6 eeh struct timex ntv;
3751 1.6 eeh int error = 0;
3752 1.6 eeh int modes;
3753 1.6 eeh int s;
3754 1.6 eeh extern long time_freq; /* frequency offset (scaled ppm) */
3755 1.6 eeh extern long time_maxerror;
3756 1.6 eeh extern long time_esterror;
3757 1.6 eeh extern int time_state; /* clock state */
3758 1.6 eeh extern int time_status; /* clock status bits */
3759 1.6 eeh extern long time_constant; /* pll time constant */
3760 1.6 eeh extern long time_offset; /* time offset (us) */
3761 1.6 eeh extern long time_tolerance; /* frequency tolerance (scaled ppm) */
3762 1.6 eeh extern long time_precision; /* clock precision (us) */
3763 1.6 eeh
3764 1.6 eeh if ((error = copyin((caddr_t)(u_long)SCARG(uap, tp), (caddr_t)&ntv32,
3765 1.6 eeh sizeof(ntv32))))
3766 1.6 eeh return (error);
3767 1.10 mrg netbsd32_to_timex(&ntv32, &ntv);
3768 1.1 mrg
3769 1.6 eeh /*
3770 1.6 eeh * Update selected clock variables - only the superuser can
3771 1.6 eeh * change anything. Note that there is no error checking here on
3772 1.6 eeh * the assumption the superuser should know what it is doing.
3773 1.6 eeh */
3774 1.6 eeh modes = ntv.modes;
3775 1.6 eeh if (modes != 0 && (error = suser(p->p_ucred, &p->p_acflag)))
3776 1.1 mrg return (error);
3777 1.1 mrg
3778 1.6 eeh s = splclock();
3779 1.6 eeh if (modes & MOD_FREQUENCY)
3780 1.6 eeh #ifdef PPS_SYNC
3781 1.6 eeh time_freq = ntv.freq - pps_freq;
3782 1.6 eeh #else /* PPS_SYNC */
3783 1.6 eeh time_freq = ntv.freq;
3784 1.6 eeh #endif /* PPS_SYNC */
3785 1.6 eeh if (modes & MOD_MAXERROR)
3786 1.6 eeh time_maxerror = ntv.maxerror;
3787 1.6 eeh if (modes & MOD_ESTERROR)
3788 1.6 eeh time_esterror = ntv.esterror;
3789 1.6 eeh if (modes & MOD_STATUS) {
3790 1.6 eeh time_status &= STA_RONLY;
3791 1.6 eeh time_status |= ntv.status & ~STA_RONLY;
3792 1.6 eeh }
3793 1.6 eeh if (modes & MOD_TIMECONST)
3794 1.6 eeh time_constant = ntv.constant;
3795 1.6 eeh if (modes & MOD_OFFSET)
3796 1.6 eeh hardupdate(ntv.offset);
3797 1.6 eeh
3798 1.6 eeh /*
3799 1.6 eeh * Retrieve all clock variables
3800 1.6 eeh */
3801 1.6 eeh if (time_offset < 0)
3802 1.6 eeh ntv.offset = -(-time_offset >> SHIFT_UPDATE);
3803 1.6 eeh else
3804 1.6 eeh ntv.offset = time_offset >> SHIFT_UPDATE;
3805 1.6 eeh #ifdef PPS_SYNC
3806 1.6 eeh ntv.freq = time_freq + pps_freq;
3807 1.6 eeh #else /* PPS_SYNC */
3808 1.6 eeh ntv.freq = time_freq;
3809 1.6 eeh #endif /* PPS_SYNC */
3810 1.6 eeh ntv.maxerror = time_maxerror;
3811 1.6 eeh ntv.esterror = time_esterror;
3812 1.6 eeh ntv.status = time_status;
3813 1.6 eeh ntv.constant = time_constant;
3814 1.6 eeh ntv.precision = time_precision;
3815 1.6 eeh ntv.tolerance = time_tolerance;
3816 1.6 eeh #ifdef PPS_SYNC
3817 1.6 eeh ntv.shift = pps_shift;
3818 1.6 eeh ntv.ppsfreq = pps_freq;
3819 1.6 eeh ntv.jitter = pps_jitter >> PPS_AVG;
3820 1.6 eeh ntv.stabil = pps_stabil;
3821 1.6 eeh ntv.calcnt = pps_calcnt;
3822 1.6 eeh ntv.errcnt = pps_errcnt;
3823 1.6 eeh ntv.jitcnt = pps_jitcnt;
3824 1.6 eeh ntv.stbcnt = pps_stbcnt;
3825 1.6 eeh #endif /* PPS_SYNC */
3826 1.6 eeh (void)splx(s);
3827 1.6 eeh
3828 1.32 mrg netbsd32_from_timex(&ntv, &ntv32);
3829 1.32 mrg error = copyout((caddr_t)&ntv32, (caddr_t)(u_long)SCARG(uap, tp),
3830 1.32 mrg sizeof(ntv32));
3831 1.6 eeh if (!error) {
3832 1.6 eeh
3833 1.6 eeh /*
3834 1.6 eeh * Status word error decode. See comments in
3835 1.6 eeh * ntp_gettime() routine.
3836 1.6 eeh */
3837 1.6 eeh if ((time_status & (STA_UNSYNC | STA_CLOCKERR)) ||
3838 1.6 eeh (time_status & (STA_PPSFREQ | STA_PPSTIME) &&
3839 1.6 eeh !(time_status & STA_PPSSIGNAL)) ||
3840 1.6 eeh (time_status & STA_PPSTIME &&
3841 1.6 eeh time_status & STA_PPSJITTER) ||
3842 1.6 eeh (time_status & STA_PPSFREQ &&
3843 1.6 eeh time_status & (STA_PPSWANDER | STA_PPSERROR)))
3844 1.6 eeh *retval = TIME_ERROR;
3845 1.6 eeh else
3846 1.32 mrg *retval = time_state;
3847 1.6 eeh }
3848 1.6 eeh return error;
3849 1.36 eeh }
3850 1.36 eeh #else
3851 1.36 eeh int
3852 1.36 eeh netbsd32_ntp_gettime(p, v, retval)
3853 1.36 eeh struct proc *p;
3854 1.36 eeh void *v;
3855 1.36 eeh register_t *retval;
3856 1.36 eeh {
3857 1.36 eeh return(ENOSYS);
3858 1.36 eeh }
3859 1.36 eeh
3860 1.36 eeh int
3861 1.36 eeh netbsd32_ntp_adjtime(p, v, retval)
3862 1.36 eeh struct proc *p;
3863 1.36 eeh void *v;
3864 1.36 eeh register_t *retval;
3865 1.36 eeh {
3866 1.36 eeh return (ENOSYS);
3867 1.6 eeh }
3868 1.6 eeh #endif
3869 1.6 eeh
3870 1.6 eeh int
3871 1.19 eeh netbsd32_setgid(p, v, retval)
3872 1.6 eeh struct proc *p;
3873 1.6 eeh void *v;
3874 1.6 eeh register_t *retval;
3875 1.6 eeh {
3876 1.19 eeh struct netbsd32_setgid_args /* {
3877 1.6 eeh syscallarg(gid_t) gid;
3878 1.6 eeh } */ *uap = v;
3879 1.6 eeh struct sys_setgid_args ua;
3880 1.6 eeh
3881 1.11 mrg NETBSD32TO64_UAP(gid);
3882 1.6 eeh return (sys_setgid(p, v, retval));
3883 1.6 eeh }
3884 1.6 eeh
3885 1.6 eeh int
3886 1.19 eeh netbsd32_setegid(p, v, retval)
3887 1.6 eeh struct proc *p;
3888 1.6 eeh void *v;
3889 1.6 eeh register_t *retval;
3890 1.6 eeh {
3891 1.19 eeh struct netbsd32_setegid_args /* {
3892 1.6 eeh syscallarg(gid_t) egid;
3893 1.6 eeh } */ *uap = v;
3894 1.6 eeh struct sys_setegid_args ua;
3895 1.6 eeh
3896 1.11 mrg NETBSD32TO64_UAP(egid);
3897 1.6 eeh return (sys_setegid(p, v, retval));
3898 1.6 eeh }
3899 1.6 eeh
3900 1.6 eeh int
3901 1.19 eeh netbsd32_seteuid(p, v, retval)
3902 1.6 eeh struct proc *p;
3903 1.6 eeh void *v;
3904 1.6 eeh register_t *retval;
3905 1.6 eeh {
3906 1.19 eeh struct netbsd32_seteuid_args /* {
3907 1.6 eeh syscallarg(gid_t) euid;
3908 1.6 eeh } */ *uap = v;
3909 1.6 eeh struct sys_seteuid_args ua;
3910 1.6 eeh
3911 1.11 mrg NETBSD32TO64_UAP(euid);
3912 1.6 eeh return (sys_seteuid(p, v, retval));
3913 1.1 mrg }
3914 1.1 mrg
3915 1.6 eeh #ifdef LFS
3916 1.1 mrg int
3917 1.20 eeh netbsd32_sys_lfs_bmapv(p, v, retval)
3918 1.1 mrg struct proc *p;
3919 1.1 mrg void *v;
3920 1.1 mrg register_t *retval;
3921 1.1 mrg {
3922 1.6 eeh #if 0
3923 1.19 eeh struct netbsd32_lfs_bmapv_args /* {
3924 1.10 mrg syscallarg(netbsd32_fsid_tp_t) fsidp;
3925 1.10 mrg syscallarg(netbsd32_block_infop_t) blkiov;
3926 1.1 mrg syscallarg(int) blkcnt;
3927 1.1 mrg } */ *uap = v;
3928 1.1 mrg struct sys_lfs_bmapv_args ua;
3929 1.1 mrg
3930 1.11 mrg NETBSD32TOP_UAP(fdidp, struct fsid);
3931 1.11 mrg NETBSD32TO64_UAP(blkcnt);
3932 1.1 mrg /* XXX finish me */
3933 1.1 mrg #else
3934 1.1 mrg
3935 1.1 mrg return (ENOSYS); /* XXX */
3936 1.1 mrg #endif
3937 1.1 mrg }
3938 1.1 mrg
3939 1.1 mrg int
3940 1.20 eeh netbsd32_sys_lfs_markv(p, v, retval)
3941 1.1 mrg struct proc *p;
3942 1.1 mrg void *v;
3943 1.1 mrg register_t *retval;
3944 1.1 mrg {
3945 1.20 eeh #if 0
3946 1.19 eeh struct netbsd32_lfs_markv_args /* {
3947 1.10 mrg syscallarg(netbsd32_fsid_tp_t) fsidp;
3948 1.10 mrg syscallarg(netbsd32_block_infop_t) blkiov;
3949 1.1 mrg syscallarg(int) blkcnt;
3950 1.1 mrg } */ *uap = v;
3951 1.20 eeh #endif
3952 1.1 mrg
3953 1.1 mrg return (ENOSYS); /* XXX */
3954 1.1 mrg }
3955 1.1 mrg
3956 1.1 mrg int
3957 1.20 eeh netbsd32_sys_lfs_segclean(p, v, retval)
3958 1.1 mrg struct proc *p;
3959 1.1 mrg void *v;
3960 1.1 mrg register_t *retval;
3961 1.1 mrg {
3962 1.20 eeh #if 0
3963 1.19 eeh struct netbsd32_lfs_segclean_args /* {
3964 1.10 mrg syscallarg(netbsd32_fsid_tp_t) fsidp;
3965 1.10 mrg syscallarg(netbsd32_u_long) segment;
3966 1.1 mrg } */ *uap = v;
3967 1.20 eeh #endif
3968 1.20 eeh
3969 1.1 mrg return (ENOSYS); /* XXX */
3970 1.1 mrg }
3971 1.1 mrg
3972 1.1 mrg int
3973 1.20 eeh netbsd32_sys_lfs_segwait(p, v, retval)
3974 1.1 mrg struct proc *p;
3975 1.1 mrg void *v;
3976 1.1 mrg register_t *retval;
3977 1.1 mrg {
3978 1.20 eeh #if 0
3979 1.19 eeh struct netbsd32_lfs_segwait_args /* {
3980 1.10 mrg syscallarg(netbsd32_fsid_tp_t) fsidp;
3981 1.10 mrg syscallarg(netbsd32_timevalp_t) tv;
3982 1.1 mrg } */ *uap = v;
3983 1.20 eeh #endif
3984 1.20 eeh
3985 1.1 mrg return (ENOSYS); /* XXX */
3986 1.1 mrg }
3987 1.6 eeh #endif
3988 1.1 mrg
3989 1.1 mrg int
3990 1.19 eeh netbsd32_pathconf(p, v, retval)
3991 1.1 mrg struct proc *p;
3992 1.1 mrg void *v;
3993 1.1 mrg register_t *retval;
3994 1.1 mrg {
3995 1.19 eeh struct netbsd32_pathconf_args /* {
3996 1.1 mrg syscallarg(int) fd;
3997 1.1 mrg syscallarg(int) name;
3998 1.1 mrg } */ *uap = v;
3999 1.1 mrg struct sys_pathconf_args ua;
4000 1.1 mrg long rt;
4001 1.1 mrg int error;
4002 1.1 mrg
4003 1.11 mrg NETBSD32TOP_UAP(path, const char);
4004 1.11 mrg NETBSD32TO64_UAP(name);
4005 1.1 mrg error = sys_pathconf(p, &ua, (register_t *)&rt);
4006 1.32 mrg *retval = rt;
4007 1.1 mrg return (error);
4008 1.1 mrg }
4009 1.1 mrg
4010 1.1 mrg int
4011 1.19 eeh netbsd32_fpathconf(p, v, retval)
4012 1.1 mrg struct proc *p;
4013 1.1 mrg void *v;
4014 1.1 mrg register_t *retval;
4015 1.1 mrg {
4016 1.19 eeh struct netbsd32_fpathconf_args /* {
4017 1.1 mrg syscallarg(int) fd;
4018 1.1 mrg syscallarg(int) name;
4019 1.1 mrg } */ *uap = v;
4020 1.1 mrg struct sys_fpathconf_args ua;
4021 1.1 mrg long rt;
4022 1.1 mrg int error;
4023 1.1 mrg
4024 1.11 mrg NETBSD32TO64_UAP(fd);
4025 1.11 mrg NETBSD32TO64_UAP(name);
4026 1.1 mrg error = sys_fpathconf(p, &ua, (register_t *)&rt);
4027 1.32 mrg *retval = rt;
4028 1.1 mrg return (error);
4029 1.1 mrg }
4030 1.1 mrg
4031 1.1 mrg int
4032 1.19 eeh netbsd32_getrlimit(p, v, retval)
4033 1.1 mrg struct proc *p;
4034 1.1 mrg void *v;
4035 1.1 mrg register_t *retval;
4036 1.1 mrg {
4037 1.19 eeh struct netbsd32_getrlimit_args /* {
4038 1.1 mrg syscallarg(int) which;
4039 1.10 mrg syscallarg(netbsd32_rlimitp_t) rlp;
4040 1.1 mrg } */ *uap = v;
4041 1.6 eeh int which = SCARG(uap, which);
4042 1.1 mrg
4043 1.6 eeh if ((u_int)which >= RLIM_NLIMITS)
4044 1.6 eeh return (EINVAL);
4045 1.6 eeh return (copyout(&p->p_rlimit[which], (caddr_t)(u_long)SCARG(uap, rlp),
4046 1.6 eeh sizeof(struct rlimit)));
4047 1.1 mrg }
4048 1.1 mrg
4049 1.1 mrg int
4050 1.19 eeh netbsd32_setrlimit(p, v, retval)
4051 1.1 mrg struct proc *p;
4052 1.1 mrg void *v;
4053 1.1 mrg register_t *retval;
4054 1.1 mrg {
4055 1.19 eeh struct netbsd32_setrlimit_args /* {
4056 1.1 mrg syscallarg(int) which;
4057 1.10 mrg syscallarg(const netbsd32_rlimitp_t) rlp;
4058 1.1 mrg } */ *uap = v;
4059 1.6 eeh int which = SCARG(uap, which);
4060 1.6 eeh struct rlimit alim;
4061 1.6 eeh int error;
4062 1.1 mrg
4063 1.6 eeh error = copyin((caddr_t)(u_long)SCARG(uap, rlp), &alim, sizeof(struct rlimit));
4064 1.6 eeh if (error)
4065 1.6 eeh return (error);
4066 1.18 bouyer return (dosetrlimit(p, p->p_cred, which, &alim));
4067 1.1 mrg }
4068 1.1 mrg
4069 1.1 mrg int
4070 1.19 eeh netbsd32_mmap(p, v, retval)
4071 1.1 mrg struct proc *p;
4072 1.1 mrg void *v;
4073 1.1 mrg register_t *retval;
4074 1.1 mrg {
4075 1.19 eeh struct netbsd32_mmap_args /* {
4076 1.10 mrg syscallarg(netbsd32_voidp) addr;
4077 1.10 mrg syscallarg(netbsd32_size_t) len;
4078 1.1 mrg syscallarg(int) prot;
4079 1.1 mrg syscallarg(int) flags;
4080 1.1 mrg syscallarg(int) fd;
4081 1.10 mrg syscallarg(netbsd32_long) pad;
4082 1.1 mrg syscallarg(off_t) pos;
4083 1.1 mrg } */ *uap = v;
4084 1.1 mrg struct sys_mmap_args ua;
4085 1.1 mrg void *rt;
4086 1.1 mrg int error;
4087 1.1 mrg
4088 1.11 mrg NETBSD32TOP_UAP(addr, void);
4089 1.11 mrg NETBSD32TOX_UAP(len, size_t);
4090 1.11 mrg NETBSD32TO64_UAP(prot);
4091 1.11 mrg NETBSD32TO64_UAP(flags);
4092 1.11 mrg NETBSD32TO64_UAP(fd);
4093 1.11 mrg NETBSD32TOX_UAP(pad, long);
4094 1.11 mrg NETBSD32TOX_UAP(pos, off_t);
4095 1.1 mrg error = sys_mmap(p, &ua, (register_t *)&rt);
4096 1.1 mrg if ((long)rt > (long)UINT_MAX)
4097 1.19 eeh printf("netbsd32_mmap: retval out of range: 0x%qx",
4098 1.1 mrg rt);
4099 1.10 mrg *retval = (netbsd32_voidp)(u_long)rt;
4100 1.1 mrg return (error);
4101 1.1 mrg }
4102 1.1 mrg
4103 1.1 mrg int
4104 1.19 eeh netbsd32_lseek(p, v, retval)
4105 1.6 eeh struct proc *p;
4106 1.6 eeh void *v;
4107 1.6 eeh register_t *retval;
4108 1.6 eeh {
4109 1.19 eeh struct netbsd32_lseek_args /* {
4110 1.6 eeh syscallarg(int) fd;
4111 1.6 eeh syscallarg(int) pad;
4112 1.6 eeh syscallarg(off_t) offset;
4113 1.6 eeh syscallarg(int) whence;
4114 1.6 eeh } */ *uap = v;
4115 1.6 eeh struct sys_lseek_args ua;
4116 1.6 eeh
4117 1.11 mrg NETBSD32TO64_UAP(fd);
4118 1.11 mrg NETBSD32TO64_UAP(pad);
4119 1.11 mrg NETBSD32TO64_UAP(offset);
4120 1.11 mrg NETBSD32TO64_UAP(whence);
4121 1.6 eeh return (sys_lseek(p, &ua, retval));
4122 1.6 eeh }
4123 1.6 eeh
4124 1.6 eeh int
4125 1.19 eeh netbsd32_truncate(p, v, retval)
4126 1.1 mrg struct proc *p;
4127 1.1 mrg void *v;
4128 1.1 mrg register_t *retval;
4129 1.1 mrg {
4130 1.19 eeh struct netbsd32_truncate_args /* {
4131 1.10 mrg syscallarg(const netbsd32_charp) path;
4132 1.1 mrg syscallarg(int) pad;
4133 1.1 mrg syscallarg(off_t) length;
4134 1.1 mrg } */ *uap = v;
4135 1.1 mrg struct sys_truncate_args ua;
4136 1.1 mrg
4137 1.11 mrg NETBSD32TOP_UAP(path, const char);
4138 1.11 mrg NETBSD32TO64_UAP(pad);
4139 1.11 mrg NETBSD32TO64_UAP(length);
4140 1.1 mrg return (sys_truncate(p, &ua, retval));
4141 1.1 mrg }
4142 1.1 mrg
4143 1.1 mrg int
4144 1.19 eeh netbsd32_ftruncate(p, v, retval)
4145 1.6 eeh struct proc *p;
4146 1.6 eeh void *v;
4147 1.6 eeh register_t *retval;
4148 1.6 eeh {
4149 1.19 eeh struct netbsd32_ftruncate_args /* {
4150 1.6 eeh syscallarg(int) fd;
4151 1.6 eeh syscallarg(int) pad;
4152 1.6 eeh syscallarg(off_t) length;
4153 1.6 eeh } */ *uap = v;
4154 1.6 eeh struct sys_ftruncate_args ua;
4155 1.6 eeh
4156 1.11 mrg NETBSD32TO64_UAP(fd);
4157 1.11 mrg NETBSD32TO64_UAP(pad);
4158 1.11 mrg NETBSD32TO64_UAP(length);
4159 1.6 eeh return (sys_ftruncate(p, &ua, retval));
4160 1.6 eeh }
4161 1.6 eeh
4162 1.6 eeh int
4163 1.19 eeh netbsd32___sysctl(p, v, retval)
4164 1.1 mrg struct proc *p;
4165 1.1 mrg void *v;
4166 1.1 mrg register_t *retval;
4167 1.1 mrg {
4168 1.19 eeh struct netbsd32___sysctl_args /* {
4169 1.10 mrg syscallarg(netbsd32_intp) name;
4170 1.1 mrg syscallarg(u_int) namelen;
4171 1.10 mrg syscallarg(netbsd32_voidp) old;
4172 1.10 mrg syscallarg(netbsd32_size_tp) oldlenp;
4173 1.10 mrg syscallarg(netbsd32_voidp) new;
4174 1.10 mrg syscallarg(netbsd32_size_t) newlen;
4175 1.1 mrg } */ *uap = v;
4176 1.34 thorpej int error;
4177 1.10 mrg netbsd32_size_t savelen = 0;
4178 1.6 eeh size_t oldlen = 0;
4179 1.6 eeh sysctlfn *fn;
4180 1.6 eeh int name[CTL_MAXNAME];
4181 1.6 eeh
4182 1.6 eeh /*
4183 1.6 eeh * Some of these sysctl functions do their own copyin/copyout.
4184 1.6 eeh * We need to disable or emulate the ones that need their
4185 1.6 eeh * arguments converted.
4186 1.6 eeh */
4187 1.6 eeh
4188 1.6 eeh if (SCARG(uap, new) != NULL &&
4189 1.6 eeh (error = suser(p->p_ucred, &p->p_acflag)))
4190 1.6 eeh return (error);
4191 1.6 eeh /*
4192 1.6 eeh * all top-level sysctl names are non-terminal
4193 1.6 eeh */
4194 1.6 eeh if (SCARG(uap, namelen) > CTL_MAXNAME || SCARG(uap, namelen) < 2)
4195 1.6 eeh return (EINVAL);
4196 1.6 eeh error = copyin((caddr_t)(u_long)SCARG(uap, name), &name,
4197 1.6 eeh SCARG(uap, namelen) * sizeof(int));
4198 1.6 eeh if (error)
4199 1.6 eeh return (error);
4200 1.6 eeh
4201 1.6 eeh switch (name[0]) {
4202 1.6 eeh case CTL_KERN:
4203 1.6 eeh fn = kern_sysctl;
4204 1.6 eeh break;
4205 1.6 eeh case CTL_HW:
4206 1.6 eeh fn = hw_sysctl;
4207 1.6 eeh break;
4208 1.6 eeh case CTL_VM:
4209 1.6 eeh fn = uvm_sysctl;
4210 1.6 eeh break;
4211 1.6 eeh case CTL_NET:
4212 1.6 eeh fn = net_sysctl;
4213 1.6 eeh break;
4214 1.6 eeh case CTL_VFS:
4215 1.6 eeh fn = vfs_sysctl;
4216 1.6 eeh break;
4217 1.6 eeh case CTL_MACHDEP:
4218 1.6 eeh fn = cpu_sysctl;
4219 1.6 eeh break;
4220 1.6 eeh #ifdef DEBUG
4221 1.6 eeh case CTL_DEBUG:
4222 1.6 eeh fn = debug_sysctl;
4223 1.6 eeh break;
4224 1.6 eeh #endif
4225 1.6 eeh #ifdef DDB
4226 1.6 eeh case CTL_DDB:
4227 1.6 eeh fn = ddb_sysctl;
4228 1.6 eeh break;
4229 1.6 eeh #endif
4230 1.34 thorpej case CTL_PROC:
4231 1.34 thorpej fn = proc_sysctl;
4232 1.34 thorpej break;
4233 1.6 eeh default:
4234 1.6 eeh return (EOPNOTSUPP);
4235 1.6 eeh }
4236 1.1 mrg
4237 1.34 thorpej /*
4238 1.34 thorpej * XXX Hey, we wire `old', but what about `new'?
4239 1.34 thorpej */
4240 1.34 thorpej
4241 1.6 eeh if (SCARG(uap, oldlenp) &&
4242 1.34 thorpej (error = copyin((caddr_t)(u_long)SCARG(uap, oldlenp), &savelen,
4243 1.34 thorpej sizeof(savelen))))
4244 1.6 eeh return (error);
4245 1.6 eeh if (SCARG(uap, old) != NULL) {
4246 1.34 thorpej error = lockmgr(&sysctl_memlock, LK_EXCLUSIVE, NULL);
4247 1.34 thorpej if (error)
4248 1.34 thorpej return (error);
4249 1.34 thorpej if (uvm_vslock(p, (void *)(u_long)SCARG(uap, old), savelen,
4250 1.34 thorpej VM_PROT_READ|VM_PROT_WRITE) != KERN_SUCCESS) {
4251 1.34 thorpej (void) lockmgr(&sysctl_memlock, LK_RELEASE, NULL);
4252 1.6 eeh return (EFAULT);
4253 1.13 thorpej }
4254 1.6 eeh oldlen = savelen;
4255 1.6 eeh }
4256 1.20 eeh error = (*fn)(name + 1, SCARG(uap, namelen) - 1,
4257 1.20 eeh (void *)(u_long)SCARG(uap, old), &oldlen,
4258 1.20 eeh (void *)(u_long)SCARG(uap, new), SCARG(uap, newlen), p);
4259 1.6 eeh if (SCARG(uap, old) != NULL) {
4260 1.34 thorpej uvm_vsunlock(p, (void *)(u_long)SCARG(uap, old), savelen);
4261 1.34 thorpej (void) lockmgr(&sysctl_memlock, LK_RELEASE, NULL);
4262 1.6 eeh }
4263 1.6 eeh savelen = oldlen;
4264 1.6 eeh if (error)
4265 1.6 eeh return (error);
4266 1.6 eeh if (SCARG(uap, oldlenp))
4267 1.34 thorpej error = copyout(&savelen,
4268 1.34 thorpej (caddr_t)(u_long)SCARG(uap, oldlenp), sizeof(savelen));
4269 1.6 eeh return (error);
4270 1.1 mrg }
4271 1.1 mrg
4272 1.1 mrg int
4273 1.19 eeh netbsd32_mlock(p, v, retval)
4274 1.1 mrg struct proc *p;
4275 1.1 mrg void *v;
4276 1.1 mrg register_t *retval;
4277 1.1 mrg {
4278 1.19 eeh struct netbsd32_mlock_args /* {
4279 1.10 mrg syscallarg(const netbsd32_voidp) addr;
4280 1.10 mrg syscallarg(netbsd32_size_t) len;
4281 1.1 mrg } */ *uap = v;
4282 1.1 mrg struct sys_mlock_args ua;
4283 1.1 mrg
4284 1.11 mrg NETBSD32TOP_UAP(addr, const void);
4285 1.11 mrg NETBSD32TO64_UAP(len);
4286 1.1 mrg return (sys_mlock(p, &ua, retval));
4287 1.1 mrg }
4288 1.1 mrg
4289 1.1 mrg int
4290 1.19 eeh netbsd32_munlock(p, v, retval)
4291 1.1 mrg struct proc *p;
4292 1.1 mrg void *v;
4293 1.1 mrg register_t *retval;
4294 1.1 mrg {
4295 1.19 eeh struct netbsd32_munlock_args /* {
4296 1.10 mrg syscallarg(const netbsd32_voidp) addr;
4297 1.10 mrg syscallarg(netbsd32_size_t) len;
4298 1.1 mrg } */ *uap = v;
4299 1.1 mrg struct sys_munlock_args ua;
4300 1.1 mrg
4301 1.11 mrg NETBSD32TOP_UAP(addr, const void);
4302 1.11 mrg NETBSD32TO64_UAP(len);
4303 1.1 mrg return (sys_munlock(p, &ua, retval));
4304 1.1 mrg }
4305 1.1 mrg
4306 1.1 mrg int
4307 1.19 eeh netbsd32_undelete(p, v, retval)
4308 1.1 mrg struct proc *p;
4309 1.1 mrg void *v;
4310 1.1 mrg register_t *retval;
4311 1.1 mrg {
4312 1.19 eeh struct netbsd32_undelete_args /* {
4313 1.10 mrg syscallarg(const netbsd32_charp) path;
4314 1.1 mrg } */ *uap = v;
4315 1.1 mrg struct sys_undelete_args ua;
4316 1.1 mrg
4317 1.11 mrg NETBSD32TOP_UAP(path, const char);
4318 1.1 mrg return (sys_undelete(p, &ua, retval));
4319 1.1 mrg }
4320 1.1 mrg
4321 1.1 mrg int
4322 1.19 eeh netbsd32_futimes(p, v, retval)
4323 1.1 mrg struct proc *p;
4324 1.1 mrg void *v;
4325 1.1 mrg register_t *retval;
4326 1.1 mrg {
4327 1.19 eeh struct netbsd32_futimes_args /* {
4328 1.1 mrg syscallarg(int) fd;
4329 1.10 mrg syscallarg(const netbsd32_timevalp_t) tptr;
4330 1.1 mrg } */ *uap = v;
4331 1.6 eeh int error;
4332 1.6 eeh struct file *fp;
4333 1.6 eeh
4334 1.12 thorpej /* getvnode() will use the descriptor for us */
4335 1.6 eeh if ((error = getvnode(p->p_fd, SCARG(uap, fd), &fp)) != 0)
4336 1.6 eeh return (error);
4337 1.6 eeh
4338 1.12 thorpej error = change_utimes32((struct vnode *)fp->f_data,
4339 1.12 thorpej (struct timeval *)(u_long)SCARG(uap, tptr), p);
4340 1.19 eeh FILE_UNUSE(fp, p);
4341 1.12 thorpej return (error);
4342 1.6 eeh }
4343 1.6 eeh
4344 1.6 eeh int
4345 1.19 eeh netbsd32_getpgid(p, v, retval)
4346 1.6 eeh struct proc *p;
4347 1.6 eeh void *v;
4348 1.6 eeh register_t *retval;
4349 1.6 eeh {
4350 1.19 eeh struct netbsd32_getpgid_args /* {
4351 1.6 eeh syscallarg(pid_t) pid;
4352 1.6 eeh } */ *uap = v;
4353 1.6 eeh struct sys_getpgid_args ua;
4354 1.1 mrg
4355 1.11 mrg NETBSD32TO64_UAP(pid);
4356 1.6 eeh return (sys_getpgid(p, &ua, retval));
4357 1.1 mrg }
4358 1.1 mrg
4359 1.1 mrg int
4360 1.19 eeh netbsd32_reboot(p, v, retval)
4361 1.1 mrg struct proc *p;
4362 1.1 mrg void *v;
4363 1.1 mrg register_t *retval;
4364 1.1 mrg {
4365 1.19 eeh struct netbsd32_reboot_args /* {
4366 1.1 mrg syscallarg(int) opt;
4367 1.10 mrg syscallarg(netbsd32_charp) bootstr;
4368 1.1 mrg } */ *uap = v;
4369 1.1 mrg struct sys_reboot_args ua;
4370 1.1 mrg
4371 1.11 mrg NETBSD32TO64_UAP(opt);
4372 1.11 mrg NETBSD32TOP_UAP(bootstr, char);
4373 1.1 mrg return (sys_reboot(p, &ua, retval));
4374 1.1 mrg }
4375 1.1 mrg
4376 1.1 mrg int
4377 1.19 eeh netbsd32_poll(p, v, retval)
4378 1.1 mrg struct proc *p;
4379 1.1 mrg void *v;
4380 1.1 mrg register_t *retval;
4381 1.1 mrg {
4382 1.19 eeh struct netbsd32_poll_args /* {
4383 1.10 mrg syscallarg(netbsd32_pollfdp_t) fds;
4384 1.1 mrg syscallarg(u_int) nfds;
4385 1.1 mrg syscallarg(int) timeout;
4386 1.1 mrg } */ *uap = v;
4387 1.1 mrg struct sys_poll_args ua;
4388 1.1 mrg
4389 1.11 mrg NETBSD32TOP_UAP(fds, struct pollfd);
4390 1.11 mrg NETBSD32TO64_UAP(nfds);
4391 1.11 mrg NETBSD32TO64_UAP(timeout);
4392 1.1 mrg return (sys_poll(p, &ua, retval));
4393 1.1 mrg }
4394 1.1 mrg
4395 1.20 eeh #if defined(SYSVSEM)
4396 1.6 eeh /*
4397 1.6 eeh * XXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXX
4398 1.6 eeh *
4399 1.6 eeh * This is BSD. We won't support System V IPC.
4400 1.6 eeh * Too much work.
4401 1.6 eeh *
4402 1.6 eeh * XXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXX
4403 1.6 eeh */
4404 1.1 mrg int
4405 1.22 christos netbsd32___semctl14(p, v, retval)
4406 1.1 mrg struct proc *p;
4407 1.1 mrg void *v;
4408 1.1 mrg register_t *retval;
4409 1.1 mrg {
4410 1.6 eeh #if 0
4411 1.19 eeh struct netbsd32___semctl_args /* {
4412 1.1 mrg syscallarg(int) semid;
4413 1.1 mrg syscallarg(int) semnum;
4414 1.1 mrg syscallarg(int) cmd;
4415 1.22 christos syscallarg(netbsd32_semunu_t *) arg;
4416 1.1 mrg } */ *uap = v;
4417 1.10 mrg union netbsd32_semun sem32;
4418 1.6 eeh int semid = SCARG(uap, semid);
4419 1.6 eeh int semnum = SCARG(uap, semnum);
4420 1.6 eeh int cmd = SCARG(uap, cmd);
4421 1.10 mrg union netbsd32_semun *arg = (void*)(u_long)SCARG(uap, arg);
4422 1.10 mrg union netbsd32_semun real_arg;
4423 1.6 eeh struct ucred *cred = p->p_ucred;
4424 1.6 eeh int i, rval, eval;
4425 1.10 mrg struct netbsd32_semid_ds sbuf;
4426 1.25 augustss struct semid_ds *semaptr;
4427 1.6 eeh
4428 1.6 eeh semlock(p);
4429 1.6 eeh
4430 1.6 eeh semid = IPCID_TO_IX(semid);
4431 1.6 eeh if (semid < 0 || semid >= seminfo.semmsl)
4432 1.6 eeh return(EINVAL);
4433 1.6 eeh
4434 1.6 eeh semaptr = &sema[semid];
4435 1.6 eeh if ((semaptr->sem_perm.mode & SEM_ALLOC) == 0 ||
4436 1.6 eeh semaptr->sem_perm.seq != IPCID_TO_SEQ(SCARG(uap, semid)))
4437 1.6 eeh return(EINVAL);
4438 1.6 eeh
4439 1.6 eeh eval = 0;
4440 1.6 eeh rval = 0;
4441 1.6 eeh
4442 1.6 eeh switch (cmd) {
4443 1.6 eeh case IPC_RMID:
4444 1.6 eeh if ((eval = ipcperm(cred, &semaptr->sem_perm, IPC_M)) != 0)
4445 1.6 eeh return(eval);
4446 1.6 eeh semaptr->sem_perm.cuid = cred->cr_uid;
4447 1.6 eeh semaptr->sem_perm.uid = cred->cr_uid;
4448 1.6 eeh semtot -= semaptr->sem_nsems;
4449 1.19 eeh for (i = semaptr->_sem_base - sem; i < semtot; i++)
4450 1.6 eeh sem[i] = sem[i + semaptr->sem_nsems];
4451 1.6 eeh for (i = 0; i < seminfo.semmni; i++) {
4452 1.6 eeh if ((sema[i].sem_perm.mode & SEM_ALLOC) &&
4453 1.19 eeh sema[i]._sem_base > semaptr->_sem_base)
4454 1.19 eeh sema[i]._sem_base -= semaptr->sem_nsems;
4455 1.6 eeh }
4456 1.6 eeh semaptr->sem_perm.mode = 0;
4457 1.6 eeh semundo_clear(semid, -1);
4458 1.6 eeh wakeup((caddr_t)semaptr);
4459 1.6 eeh break;
4460 1.6 eeh
4461 1.6 eeh case IPC_SET:
4462 1.6 eeh if ((eval = ipcperm(cred, &semaptr->sem_perm, IPC_M)))
4463 1.6 eeh return(eval);
4464 1.6 eeh if ((eval = copyin(arg, &real_arg, sizeof(real_arg))) != 0)
4465 1.6 eeh return(eval);
4466 1.6 eeh if ((eval = copyin((caddr_t)(u_long)real_arg.buf, (caddr_t)&sbuf,
4467 1.6 eeh sizeof(sbuf))) != 0)
4468 1.6 eeh return(eval);
4469 1.6 eeh semaptr->sem_perm.uid = sbuf.sem_perm.uid;
4470 1.6 eeh semaptr->sem_perm.gid = sbuf.sem_perm.gid;
4471 1.6 eeh semaptr->sem_perm.mode = (semaptr->sem_perm.mode & ~0777) |
4472 1.6 eeh (sbuf.sem_perm.mode & 0777);
4473 1.6 eeh semaptr->sem_ctime = time.tv_sec;
4474 1.6 eeh break;
4475 1.6 eeh
4476 1.6 eeh case IPC_STAT:
4477 1.6 eeh if ((eval = ipcperm(cred, &semaptr->sem_perm, IPC_R)))
4478 1.6 eeh return(eval);
4479 1.6 eeh if ((eval = copyin(arg, &real_arg, sizeof(real_arg))) != 0)
4480 1.6 eeh return(eval);
4481 1.6 eeh eval = copyout((caddr_t)semaptr, (caddr_t)(u_long)real_arg.buf,
4482 1.6 eeh sizeof(struct semid_ds));
4483 1.6 eeh break;
4484 1.6 eeh
4485 1.6 eeh case GETNCNT:
4486 1.6 eeh if ((eval = ipcperm(cred, &semaptr->sem_perm, IPC_R)))
4487 1.6 eeh return(eval);
4488 1.6 eeh if (semnum < 0 || semnum >= semaptr->sem_nsems)
4489 1.6 eeh return(EINVAL);
4490 1.19 eeh rval = semaptr->_sem_base[semnum].semncnt;
4491 1.6 eeh break;
4492 1.6 eeh
4493 1.6 eeh case GETPID:
4494 1.6 eeh if ((eval = ipcperm(cred, &semaptr->sem_perm, IPC_R)))
4495 1.6 eeh return(eval);
4496 1.6 eeh if (semnum < 0 || semnum >= semaptr->sem_nsems)
4497 1.6 eeh return(EINVAL);
4498 1.19 eeh rval = semaptr->_sem_base[semnum].sempid;
4499 1.6 eeh break;
4500 1.6 eeh
4501 1.6 eeh case GETVAL:
4502 1.6 eeh if ((eval = ipcperm(cred, &semaptr->sem_perm, IPC_R)))
4503 1.6 eeh return(eval);
4504 1.6 eeh if (semnum < 0 || semnum >= semaptr->sem_nsems)
4505 1.6 eeh return(EINVAL);
4506 1.19 eeh rval = semaptr->_sem_base[semnum].semval;
4507 1.6 eeh break;
4508 1.6 eeh
4509 1.6 eeh case GETALL:
4510 1.6 eeh if ((eval = ipcperm(cred, &semaptr->sem_perm, IPC_R)))
4511 1.6 eeh return(eval);
4512 1.6 eeh if ((eval = copyin(arg, &real_arg, sizeof(real_arg))) != 0)
4513 1.6 eeh return(eval);
4514 1.6 eeh for (i = 0; i < semaptr->sem_nsems; i++) {
4515 1.19 eeh eval = copyout((caddr_t)&semaptr->_sem_base[i].semval,
4516 1.6 eeh &real_arg.array[i], sizeof(real_arg.array[0]));
4517 1.6 eeh if (eval != 0)
4518 1.6 eeh break;
4519 1.6 eeh }
4520 1.6 eeh break;
4521 1.1 mrg
4522 1.6 eeh case GETZCNT:
4523 1.6 eeh if ((eval = ipcperm(cred, &semaptr->sem_perm, IPC_R)))
4524 1.6 eeh return(eval);
4525 1.6 eeh if (semnum < 0 || semnum >= semaptr->sem_nsems)
4526 1.6 eeh return(EINVAL);
4527 1.19 eeh rval = semaptr->_sem_base[semnum].semzcnt;
4528 1.6 eeh break;
4529 1.6 eeh
4530 1.6 eeh case SETVAL:
4531 1.6 eeh if ((eval = ipcperm(cred, &semaptr->sem_perm, IPC_W)))
4532 1.6 eeh return(eval);
4533 1.6 eeh if (semnum < 0 || semnum >= semaptr->sem_nsems)
4534 1.6 eeh return(EINVAL);
4535 1.6 eeh if ((eval = copyin(arg, &real_arg, sizeof(real_arg))) != 0)
4536 1.6 eeh return(eval);
4537 1.19 eeh semaptr->_sem_base[semnum].semval = real_arg.val;
4538 1.6 eeh semundo_clear(semid, semnum);
4539 1.6 eeh wakeup((caddr_t)semaptr);
4540 1.6 eeh break;
4541 1.6 eeh
4542 1.6 eeh case SETALL:
4543 1.6 eeh if ((eval = ipcperm(cred, &semaptr->sem_perm, IPC_W)))
4544 1.6 eeh return(eval);
4545 1.6 eeh if ((eval = copyin(arg, &real_arg, sizeof(real_arg))) != 0)
4546 1.6 eeh return(eval);
4547 1.6 eeh for (i = 0; i < semaptr->sem_nsems; i++) {
4548 1.6 eeh eval = copyin(&real_arg.array[i],
4549 1.19 eeh (caddr_t)&semaptr->_sem_base[i].semval,
4550 1.6 eeh sizeof(real_arg.array[0]));
4551 1.6 eeh if (eval != 0)
4552 1.6 eeh break;
4553 1.1 mrg }
4554 1.6 eeh semundo_clear(semid, -1);
4555 1.6 eeh wakeup((caddr_t)semaptr);
4556 1.6 eeh break;
4557 1.1 mrg
4558 1.6 eeh default:
4559 1.6 eeh return(EINVAL);
4560 1.6 eeh }
4561 1.1 mrg
4562 1.6 eeh if (eval == 0)
4563 1.6 eeh *retval = rval;
4564 1.6 eeh return(eval);
4565 1.6 eeh #else
4566 1.6 eeh return (ENOSYS);
4567 1.6 eeh #endif
4568 1.1 mrg }
4569 1.1 mrg
4570 1.1 mrg int
4571 1.19 eeh netbsd32_semget(p, v, retval)
4572 1.1 mrg struct proc *p;
4573 1.1 mrg void *v;
4574 1.1 mrg register_t *retval;
4575 1.1 mrg {
4576 1.19 eeh struct netbsd32_semget_args /* {
4577 1.10 mrg syscallarg(netbsd32_key_t) key;
4578 1.1 mrg syscallarg(int) nsems;
4579 1.1 mrg syscallarg(int) semflg;
4580 1.1 mrg } */ *uap = v;
4581 1.1 mrg struct sys_semget_args ua;
4582 1.1 mrg
4583 1.11 mrg NETBSD32TOX_UAP(key, key_t);
4584 1.11 mrg NETBSD32TO64_UAP(nsems);
4585 1.11 mrg NETBSD32TO64_UAP(semflg);
4586 1.1 mrg return (sys_semget(p, &ua, retval));
4587 1.1 mrg }
4588 1.1 mrg
4589 1.1 mrg int
4590 1.19 eeh netbsd32_semop(p, v, retval)
4591 1.1 mrg struct proc *p;
4592 1.1 mrg void *v;
4593 1.1 mrg register_t *retval;
4594 1.1 mrg {
4595 1.19 eeh struct netbsd32_semop_args /* {
4596 1.1 mrg syscallarg(int) semid;
4597 1.10 mrg syscallarg(netbsd32_sembufp_t) sops;
4598 1.10 mrg syscallarg(netbsd32_size_t) nsops;
4599 1.1 mrg } */ *uap = v;
4600 1.1 mrg struct sys_semop_args ua;
4601 1.1 mrg
4602 1.11 mrg NETBSD32TO64_UAP(semid);
4603 1.11 mrg NETBSD32TOP_UAP(sops, struct sembuf);
4604 1.11 mrg NETBSD32TOX_UAP(nsops, size_t);
4605 1.2 mrg return (sys_semop(p, &ua, retval));
4606 1.1 mrg }
4607 1.1 mrg
4608 1.1 mrg int
4609 1.19 eeh netbsd32_semconfig(p, v, retval)
4610 1.6 eeh struct proc *p;
4611 1.6 eeh void *v;
4612 1.6 eeh register_t *retval;
4613 1.6 eeh {
4614 1.19 eeh struct netbsd32_semconfig_args /* {
4615 1.6 eeh syscallarg(int) flag;
4616 1.6 eeh } */ *uap = v;
4617 1.6 eeh struct sys_semconfig_args ua;
4618 1.6 eeh
4619 1.11 mrg NETBSD32TO64_UAP(flag);
4620 1.6 eeh return (sys_semconfig(p, &ua, retval));
4621 1.6 eeh }
4622 1.20 eeh #endif /* SYSVSEM */
4623 1.20 eeh
4624 1.20 eeh #if defined(SYSVMSG)
4625 1.6 eeh
4626 1.6 eeh int
4627 1.20 eeh netbsd32___msgctl13(p, v, retval)
4628 1.1 mrg struct proc *p;
4629 1.1 mrg void *v;
4630 1.1 mrg register_t *retval;
4631 1.1 mrg {
4632 1.6 eeh #if 0
4633 1.19 eeh struct netbsd32_msgctl_args /* {
4634 1.1 mrg syscallarg(int) msqid;
4635 1.1 mrg syscallarg(int) cmd;
4636 1.10 mrg syscallarg(netbsd32_msqid_dsp_t) buf;
4637 1.1 mrg } */ *uap = v;
4638 1.1 mrg struct sys_msgctl_args ua;
4639 1.1 mrg struct msqid_ds ds;
4640 1.10 mrg struct netbsd32_msqid_ds *ds32p;
4641 1.1 mrg int error;
4642 1.1 mrg
4643 1.11 mrg NETBSD32TO64_UAP(msqid);
4644 1.11 mrg NETBSD32TO64_UAP(cmd);
4645 1.10 mrg ds32p = (struct netbsd32_msqid_ds *)(u_long)SCARG(uap, buf);
4646 1.1 mrg if (ds32p) {
4647 1.1 mrg SCARG(&ua, buf) = NULL;
4648 1.10 mrg netbsd32_to_msqid_ds(ds32p, &ds);
4649 1.1 mrg } else
4650 1.1 mrg SCARG(&ua, buf) = NULL;
4651 1.1 mrg error = sys_msgctl(p, &ua, retval);
4652 1.1 mrg if (error)
4653 1.1 mrg return (error);
4654 1.1 mrg
4655 1.1 mrg if (ds32p)
4656 1.10 mrg netbsd32_from_msqid_ds(&ds, ds32p);
4657 1.1 mrg return (0);
4658 1.6 eeh #else
4659 1.6 eeh return (ENOSYS);
4660 1.6 eeh #endif
4661 1.1 mrg }
4662 1.1 mrg
4663 1.1 mrg int
4664 1.19 eeh netbsd32_msgget(p, v, retval)
4665 1.1 mrg struct proc *p;
4666 1.1 mrg void *v;
4667 1.1 mrg register_t *retval;
4668 1.1 mrg {
4669 1.6 eeh #if 0
4670 1.19 eeh struct netbsd32_msgget_args /* {
4671 1.10 mrg syscallarg(netbsd32_key_t) key;
4672 1.1 mrg syscallarg(int) msgflg;
4673 1.1 mrg } */ *uap = v;
4674 1.1 mrg struct sys_msgget_args ua;
4675 1.1 mrg
4676 1.11 mrg NETBSD32TOX_UAP(key, key_t);
4677 1.11 mrg NETBSD32TO64_UAP(msgflg);
4678 1.1 mrg return (sys_msgget(p, &ua, retval));
4679 1.6 eeh #else
4680 1.6 eeh return (ENOSYS);
4681 1.6 eeh #endif
4682 1.1 mrg }
4683 1.1 mrg
4684 1.1 mrg int
4685 1.19 eeh netbsd32_msgsnd(p, v, retval)
4686 1.1 mrg struct proc *p;
4687 1.1 mrg void *v;
4688 1.1 mrg register_t *retval;
4689 1.1 mrg {
4690 1.6 eeh #if 0
4691 1.19 eeh struct netbsd32_msgsnd_args /* {
4692 1.1 mrg syscallarg(int) msqid;
4693 1.10 mrg syscallarg(const netbsd32_voidp) msgp;
4694 1.10 mrg syscallarg(netbsd32_size_t) msgsz;
4695 1.1 mrg syscallarg(int) msgflg;
4696 1.1 mrg } */ *uap = v;
4697 1.1 mrg struct sys_msgsnd_args ua;
4698 1.1 mrg
4699 1.11 mrg NETBSD32TO64_UAP(msqid);
4700 1.11 mrg NETBSD32TOP_UAP(msgp, void);
4701 1.11 mrg NETBSD32TOX_UAP(msgsz, size_t);
4702 1.11 mrg NETBSD32TO64_UAP(msgflg);
4703 1.1 mrg return (sys_msgsnd(p, &ua, retval));
4704 1.6 eeh #else
4705 1.6 eeh return (ENOSYS);
4706 1.6 eeh #endif
4707 1.1 mrg }
4708 1.1 mrg
4709 1.1 mrg int
4710 1.19 eeh netbsd32_msgrcv(p, v, retval)
4711 1.1 mrg struct proc *p;
4712 1.1 mrg void *v;
4713 1.1 mrg register_t *retval;
4714 1.1 mrg {
4715 1.6 eeh #if 0
4716 1.19 eeh struct netbsd32_msgrcv_args /* {
4717 1.1 mrg syscallarg(int) msqid;
4718 1.10 mrg syscallarg(netbsd32_voidp) msgp;
4719 1.10 mrg syscallarg(netbsd32_size_t) msgsz;
4720 1.10 mrg syscallarg(netbsd32_long) msgtyp;
4721 1.1 mrg syscallarg(int) msgflg;
4722 1.1 mrg } */ *uap = v;
4723 1.1 mrg struct sys_msgrcv_args ua;
4724 1.1 mrg ssize_t rt;
4725 1.1 mrg int error;
4726 1.1 mrg
4727 1.11 mrg NETBSD32TO64_UAP(msqid);
4728 1.11 mrg NETBSD32TOP_UAP(msgp, void);
4729 1.11 mrg NETBSD32TOX_UAP(msgsz, size_t);
4730 1.11 mrg NETBSD32TOX_UAP(msgtyp, long);
4731 1.11 mrg NETBSD32TO64_UAP(msgflg);
4732 1.1 mrg error = sys_msgrcv(p, &ua, (register_t *)&rt);
4733 1.32 mrg *retval = rt;
4734 1.1 mrg return (error);
4735 1.6 eeh #else
4736 1.6 eeh return (ENOSYS);
4737 1.6 eeh #endif
4738 1.1 mrg }
4739 1.20 eeh #endif /* SYSVMSG */
4740 1.20 eeh
4741 1.20 eeh #if defined(SYSVSHM)
4742 1.1 mrg
4743 1.1 mrg int
4744 1.19 eeh netbsd32_shmat(p, v, retval)
4745 1.1 mrg struct proc *p;
4746 1.1 mrg void *v;
4747 1.1 mrg register_t *retval;
4748 1.1 mrg {
4749 1.6 eeh #if 0
4750 1.19 eeh struct netbsd32_shmat_args /* {
4751 1.1 mrg syscallarg(int) shmid;
4752 1.10 mrg syscallarg(const netbsd32_voidp) shmaddr;
4753 1.1 mrg syscallarg(int) shmflg;
4754 1.1 mrg } */ *uap = v;
4755 1.1 mrg struct sys_shmat_args ua;
4756 1.1 mrg void *rt;
4757 1.1 mrg int error;
4758 1.1 mrg
4759 1.11 mrg NETBSD32TO64_UAP(shmid);
4760 1.11 mrg NETBSD32TOP_UAP(shmaddr, void);
4761 1.11 mrg NETBSD32TO64_UAP(shmflg);
4762 1.1 mrg error = sys_shmat(p, &ua, (register_t *)&rt);
4763 1.32 mrg *retval = rt;
4764 1.1 mrg return (error);
4765 1.6 eeh #else
4766 1.6 eeh return (ENOSYS);
4767 1.6 eeh #endif
4768 1.1 mrg }
4769 1.1 mrg
4770 1.1 mrg int
4771 1.20 eeh netbsd32___shmctl13(p, v, retval)
4772 1.1 mrg struct proc *p;
4773 1.1 mrg void *v;
4774 1.1 mrg register_t *retval;
4775 1.1 mrg {
4776 1.6 eeh #if 0
4777 1.19 eeh struct netbsd32_shmctl_args /* {
4778 1.1 mrg syscallarg(int) shmid;
4779 1.1 mrg syscallarg(int) cmd;
4780 1.10 mrg syscallarg(netbsd32_shmid_dsp_t) buf;
4781 1.1 mrg } */ *uap = v;
4782 1.1 mrg struct sys_shmctl_args ua;
4783 1.1 mrg struct shmid_ds ds;
4784 1.10 mrg struct netbsd32_shmid_ds *ds32p;
4785 1.1 mrg int error;
4786 1.1 mrg
4787 1.11 mrg NETBSD32TO64_UAP(shmid);
4788 1.11 mrg NETBSD32TO64_UAP(cmd);
4789 1.10 mrg ds32p = (struct netbsd32_shmid_ds *)(u_long)SCARG(uap, buf);
4790 1.1 mrg if (ds32p) {
4791 1.1 mrg SCARG(&ua, buf) = NULL;
4792 1.10 mrg netbsd32_to_shmid_ds(ds32p, &ds);
4793 1.1 mrg } else
4794 1.1 mrg SCARG(&ua, buf) = NULL;
4795 1.1 mrg error = sys_shmctl(p, &ua, retval);
4796 1.1 mrg if (error)
4797 1.1 mrg return (error);
4798 1.1 mrg
4799 1.1 mrg if (ds32p)
4800 1.10 mrg netbsd32_from_shmid_ds(&ds, ds32p);
4801 1.1 mrg return (0);
4802 1.6 eeh #else
4803 1.6 eeh return (ENOSYS);
4804 1.6 eeh #endif
4805 1.1 mrg }
4806 1.1 mrg
4807 1.1 mrg int
4808 1.19 eeh netbsd32_shmdt(p, v, retval)
4809 1.1 mrg struct proc *p;
4810 1.1 mrg void *v;
4811 1.1 mrg register_t *retval;
4812 1.1 mrg {
4813 1.6 eeh #if 0
4814 1.19 eeh struct netbsd32_shmdt_args /* {
4815 1.10 mrg syscallarg(const netbsd32_voidp) shmaddr;
4816 1.1 mrg } */ *uap = v;
4817 1.1 mrg struct sys_shmdt_args ua;
4818 1.1 mrg
4819 1.11 mrg NETBSD32TOP_UAP(shmaddr, const char);
4820 1.1 mrg return (sys_shmdt(p, &ua, retval));
4821 1.6 eeh #else
4822 1.6 eeh return (ENOSYS);
4823 1.6 eeh #endif
4824 1.1 mrg }
4825 1.1 mrg
4826 1.1 mrg int
4827 1.19 eeh netbsd32_shmget(p, v, retval)
4828 1.1 mrg struct proc *p;
4829 1.1 mrg void *v;
4830 1.1 mrg register_t *retval;
4831 1.1 mrg {
4832 1.6 eeh #if 0
4833 1.19 eeh struct netbsd32_shmget_args /* {
4834 1.10 mrg syscallarg(netbsd32_key_t) key;
4835 1.10 mrg syscallarg(netbsd32_size_t) size;
4836 1.1 mrg syscallarg(int) shmflg;
4837 1.1 mrg } */ *uap = v;
4838 1.1 mrg struct sys_shmget_args ua;
4839 1.1 mrg
4840 1.11 mrg NETBSD32TOX_UAP(key, key_t)
4841 1.11 mrg NETBSD32TOX_UAP(size, size_t)
4842 1.11 mrg NETBSD32TO64_UAP(shmflg);
4843 1.1 mrg return (sys_shmget(p, &ua, retval));
4844 1.6 eeh #else
4845 1.6 eeh return (ENOSYS);
4846 1.6 eeh #endif
4847 1.1 mrg }
4848 1.20 eeh #endif /* SYSVSHM */
4849 1.1 mrg
4850 1.1 mrg int
4851 1.19 eeh netbsd32_clock_gettime(p, v, retval)
4852 1.1 mrg struct proc *p;
4853 1.1 mrg void *v;
4854 1.1 mrg register_t *retval;
4855 1.1 mrg {
4856 1.19 eeh struct netbsd32_clock_gettime_args /* {
4857 1.10 mrg syscallarg(netbsd32_clockid_t) clock_id;
4858 1.10 mrg syscallarg(netbsd32_timespecp_t) tp;
4859 1.1 mrg } */ *uap = v;
4860 1.6 eeh clockid_t clock_id;
4861 1.6 eeh struct timeval atv;
4862 1.6 eeh struct timespec ats;
4863 1.10 mrg struct netbsd32_timespec ts32;
4864 1.6 eeh
4865 1.6 eeh clock_id = SCARG(uap, clock_id);
4866 1.6 eeh if (clock_id != CLOCK_REALTIME)
4867 1.6 eeh return (EINVAL);
4868 1.1 mrg
4869 1.6 eeh microtime(&atv);
4870 1.6 eeh TIMEVAL_TO_TIMESPEC(&atv,&ats);
4871 1.10 mrg netbsd32_from_timespec(&ats, &ts32);
4872 1.1 mrg
4873 1.6 eeh return copyout(&ts32, (caddr_t)(u_long)SCARG(uap, tp), sizeof(ts32));
4874 1.1 mrg }
4875 1.1 mrg
4876 1.1 mrg int
4877 1.19 eeh netbsd32_clock_settime(p, v, retval)
4878 1.1 mrg struct proc *p;
4879 1.1 mrg void *v;
4880 1.1 mrg register_t *retval;
4881 1.1 mrg {
4882 1.19 eeh struct netbsd32_clock_settime_args /* {
4883 1.10 mrg syscallarg(netbsd32_clockid_t) clock_id;
4884 1.10 mrg syscallarg(const netbsd32_timespecp_t) tp;
4885 1.1 mrg } */ *uap = v;
4886 1.10 mrg struct netbsd32_timespec ts32;
4887 1.6 eeh clockid_t clock_id;
4888 1.6 eeh struct timeval atv;
4889 1.6 eeh struct timespec ats;
4890 1.6 eeh int error;
4891 1.6 eeh
4892 1.6 eeh if ((error = suser(p->p_ucred, &p->p_acflag)) != 0)
4893 1.6 eeh return (error);
4894 1.6 eeh
4895 1.6 eeh clock_id = SCARG(uap, clock_id);
4896 1.6 eeh if (clock_id != CLOCK_REALTIME)
4897 1.6 eeh return (EINVAL);
4898 1.6 eeh
4899 1.6 eeh if ((error = copyin((caddr_t)(u_long)SCARG(uap, tp), &ts32, sizeof(ts32))) != 0)
4900 1.6 eeh return (error);
4901 1.6 eeh
4902 1.10 mrg netbsd32_to_timespec(&ts32, &ats);
4903 1.6 eeh TIMESPEC_TO_TIMEVAL(&atv,&ats);
4904 1.6 eeh if ((error = settime(&atv)))
4905 1.6 eeh return (error);
4906 1.1 mrg
4907 1.6 eeh return 0;
4908 1.1 mrg }
4909 1.1 mrg
4910 1.1 mrg int
4911 1.19 eeh netbsd32_clock_getres(p, v, retval)
4912 1.1 mrg struct proc *p;
4913 1.1 mrg void *v;
4914 1.1 mrg register_t *retval;
4915 1.1 mrg {
4916 1.19 eeh struct netbsd32_clock_getres_args /* {
4917 1.10 mrg syscallarg(netbsd32_clockid_t) clock_id;
4918 1.10 mrg syscallarg(netbsd32_timespecp_t) tp;
4919 1.1 mrg } */ *uap = v;
4920 1.10 mrg struct netbsd32_timespec ts32;
4921 1.6 eeh clockid_t clock_id;
4922 1.1 mrg struct timespec ts;
4923 1.6 eeh int error = 0;
4924 1.6 eeh
4925 1.6 eeh clock_id = SCARG(uap, clock_id);
4926 1.6 eeh if (clock_id != CLOCK_REALTIME)
4927 1.6 eeh return (EINVAL);
4928 1.6 eeh
4929 1.6 eeh if (SCARG(uap, tp)) {
4930 1.6 eeh ts.tv_sec = 0;
4931 1.6 eeh ts.tv_nsec = 1000000000 / hz;
4932 1.1 mrg
4933 1.10 mrg netbsd32_from_timespec(&ts, &ts32);
4934 1.6 eeh error = copyout(&ts, (caddr_t)(u_long)SCARG(uap, tp), sizeof(ts));
4935 1.6 eeh }
4936 1.1 mrg
4937 1.6 eeh return error;
4938 1.1 mrg }
4939 1.1 mrg
4940 1.1 mrg int
4941 1.19 eeh netbsd32_nanosleep(p, v, retval)
4942 1.1 mrg struct proc *p;
4943 1.1 mrg void *v;
4944 1.1 mrg register_t *retval;
4945 1.1 mrg {
4946 1.19 eeh struct netbsd32_nanosleep_args /* {
4947 1.10 mrg syscallarg(const netbsd32_timespecp_t) rqtp;
4948 1.10 mrg syscallarg(netbsd32_timespecp_t) rmtp;
4949 1.1 mrg } */ *uap = v;
4950 1.6 eeh static int nanowait;
4951 1.10 mrg struct netbsd32_timespec ts32;
4952 1.6 eeh struct timespec rqt;
4953 1.6 eeh struct timespec rmt;
4954 1.6 eeh struct timeval atv, utv;
4955 1.6 eeh int error, s, timo;
4956 1.6 eeh
4957 1.6 eeh error = copyin((caddr_t)(u_long)SCARG(uap, rqtp), (caddr_t)&ts32,
4958 1.6 eeh sizeof(ts32));
4959 1.1 mrg if (error)
4960 1.1 mrg return (error);
4961 1.1 mrg
4962 1.10 mrg netbsd32_to_timespec(&ts32, &rqt);
4963 1.6 eeh TIMESPEC_TO_TIMEVAL(&atv,&rqt)
4964 1.6 eeh if (itimerfix(&atv))
4965 1.6 eeh return (EINVAL);
4966 1.6 eeh
4967 1.6 eeh s = splclock();
4968 1.6 eeh timeradd(&atv,&time,&atv);
4969 1.6 eeh timo = hzto(&atv);
4970 1.6 eeh /*
4971 1.6 eeh * Avoid inadvertantly sleeping forever
4972 1.6 eeh */
4973 1.6 eeh if (timo == 0)
4974 1.6 eeh timo = 1;
4975 1.6 eeh splx(s);
4976 1.6 eeh
4977 1.6 eeh error = tsleep(&nanowait, PWAIT | PCATCH, "nanosleep", timo);
4978 1.6 eeh if (error == ERESTART)
4979 1.6 eeh error = EINTR;
4980 1.6 eeh if (error == EWOULDBLOCK)
4981 1.6 eeh error = 0;
4982 1.6 eeh
4983 1.6 eeh if (SCARG(uap, rmtp)) {
4984 1.6 eeh int error;
4985 1.6 eeh
4986 1.6 eeh s = splclock();
4987 1.6 eeh utv = time;
4988 1.6 eeh splx(s);
4989 1.6 eeh
4990 1.6 eeh timersub(&atv, &utv, &utv);
4991 1.6 eeh if (utv.tv_sec < 0)
4992 1.6 eeh timerclear(&utv);
4993 1.6 eeh
4994 1.6 eeh TIMEVAL_TO_TIMESPEC(&utv,&rmt);
4995 1.10 mrg netbsd32_from_timespec(&rmt, &ts32);
4996 1.6 eeh error = copyout((caddr_t)&ts32, (caddr_t)(u_long)SCARG(uap,rmtp),
4997 1.6 eeh sizeof(ts32));
4998 1.6 eeh if (error)
4999 1.6 eeh return (error);
5000 1.6 eeh }
5001 1.6 eeh
5002 1.6 eeh return error;
5003 1.6 eeh }
5004 1.6 eeh
5005 1.6 eeh int
5006 1.19 eeh netbsd32_fdatasync(p, v, retval)
5007 1.6 eeh struct proc *p;
5008 1.6 eeh void *v;
5009 1.6 eeh register_t *retval;
5010 1.6 eeh {
5011 1.19 eeh struct netbsd32_fdatasync_args /* {
5012 1.6 eeh syscallarg(int) fd;
5013 1.6 eeh } */ *uap = v;
5014 1.6 eeh struct sys_fdatasync_args ua;
5015 1.6 eeh
5016 1.11 mrg NETBSD32TO64_UAP(fd);
5017 1.6 eeh
5018 1.6 eeh return (sys_fdatasync(p, &ua, retval));
5019 1.1 mrg }
5020 1.1 mrg
5021 1.1 mrg int
5022 1.19 eeh netbsd32___posix_rename(p, v, retval)
5023 1.1 mrg struct proc *p;
5024 1.1 mrg void *v;
5025 1.1 mrg register_t *retval;
5026 1.1 mrg {
5027 1.19 eeh struct netbsd32___posix_rename_args /* {
5028 1.10 mrg syscallarg(const netbsd32_charp) from;
5029 1.10 mrg syscallarg(const netbsd32_charp) to;
5030 1.1 mrg } */ *uap = v;
5031 1.1 mrg struct sys___posix_rename_args ua;
5032 1.1 mrg
5033 1.20 eeh NETBSD32TOP_UAP(from, const char);
5034 1.20 eeh NETBSD32TOP_UAP(to, const char);
5035 1.6 eeh
5036 1.1 mrg return (sys___posix_rename(p, &ua, retval));
5037 1.1 mrg }
5038 1.1 mrg
5039 1.1 mrg int
5040 1.19 eeh netbsd32_swapctl(p, v, retval)
5041 1.1 mrg struct proc *p;
5042 1.1 mrg void *v;
5043 1.1 mrg register_t *retval;
5044 1.1 mrg {
5045 1.19 eeh struct netbsd32_swapctl_args /* {
5046 1.1 mrg syscallarg(int) cmd;
5047 1.10 mrg syscallarg(const netbsd32_voidp) arg;
5048 1.1 mrg syscallarg(int) misc;
5049 1.1 mrg } */ *uap = v;
5050 1.1 mrg struct sys_swapctl_args ua;
5051 1.1 mrg
5052 1.11 mrg NETBSD32TO64_UAP(cmd);
5053 1.11 mrg NETBSD32TOP_UAP(arg, const void);
5054 1.11 mrg NETBSD32TO64_UAP(misc);
5055 1.1 mrg return (sys_swapctl(p, &ua, retval));
5056 1.1 mrg }
5057 1.1 mrg
5058 1.1 mrg int
5059 1.19 eeh netbsd32_getdents(p, v, retval)
5060 1.1 mrg struct proc *p;
5061 1.1 mrg void *v;
5062 1.1 mrg register_t *retval;
5063 1.1 mrg {
5064 1.19 eeh struct netbsd32_getdents_args /* {
5065 1.1 mrg syscallarg(int) fd;
5066 1.10 mrg syscallarg(netbsd32_charp) buf;
5067 1.10 mrg syscallarg(netbsd32_size_t) count;
5068 1.1 mrg } */ *uap = v;
5069 1.6 eeh struct file *fp;
5070 1.6 eeh int error, done;
5071 1.1 mrg
5072 1.12 thorpej /* getvnode() will use the descriptor for us */
5073 1.6 eeh if ((error = getvnode(p->p_fd, SCARG(uap, fd), &fp)) != 0)
5074 1.6 eeh return (error);
5075 1.12 thorpej if ((fp->f_flag & FREAD) == 0) {
5076 1.12 thorpej error = EBADF;
5077 1.12 thorpej goto out;
5078 1.12 thorpej }
5079 1.6 eeh error = vn_readdir(fp, (caddr_t)(u_long)SCARG(uap, buf), UIO_USERSPACE,
5080 1.6 eeh SCARG(uap, count), &done, p, 0, 0);
5081 1.6 eeh *retval = done;
5082 1.12 thorpej out:
5083 1.19 eeh FILE_UNUSE(fp, p);
5084 1.6 eeh return (error);
5085 1.1 mrg }
5086 1.1 mrg
5087 1.6 eeh
5088 1.1 mrg int
5089 1.19 eeh netbsd32_minherit(p, v, retval)
5090 1.1 mrg struct proc *p;
5091 1.1 mrg void *v;
5092 1.1 mrg register_t *retval;
5093 1.1 mrg {
5094 1.19 eeh struct netbsd32_minherit_args /* {
5095 1.10 mrg syscallarg(netbsd32_voidp) addr;
5096 1.10 mrg syscallarg(netbsd32_size_t) len;
5097 1.1 mrg syscallarg(int) inherit;
5098 1.1 mrg } */ *uap = v;
5099 1.1 mrg struct sys_minherit_args ua;
5100 1.1 mrg
5101 1.11 mrg NETBSD32TOP_UAP(addr, void);
5102 1.11 mrg NETBSD32TOX_UAP(len, size_t);
5103 1.11 mrg NETBSD32TO64_UAP(inherit);
5104 1.1 mrg return (sys_minherit(p, &ua, retval));
5105 1.1 mrg }
5106 1.1 mrg
5107 1.1 mrg int
5108 1.19 eeh netbsd32_lchmod(p, v, retval)
5109 1.1 mrg struct proc *p;
5110 1.1 mrg void *v;
5111 1.1 mrg register_t *retval;
5112 1.1 mrg {
5113 1.19 eeh struct netbsd32_lchmod_args /* {
5114 1.10 mrg syscallarg(const netbsd32_charp) path;
5115 1.1 mrg syscallarg(mode_t) mode;
5116 1.1 mrg } */ *uap = v;
5117 1.1 mrg struct sys_lchmod_args ua;
5118 1.1 mrg
5119 1.11 mrg NETBSD32TOP_UAP(path, const char);
5120 1.11 mrg NETBSD32TO64_UAP(mode);
5121 1.1 mrg return (sys_lchmod(p, &ua, retval));
5122 1.1 mrg }
5123 1.1 mrg
5124 1.1 mrg int
5125 1.19 eeh netbsd32_lchown(p, v, retval)
5126 1.1 mrg struct proc *p;
5127 1.1 mrg void *v;
5128 1.1 mrg register_t *retval;
5129 1.1 mrg {
5130 1.19 eeh struct netbsd32_lchown_args /* {
5131 1.10 mrg syscallarg(const netbsd32_charp) path;
5132 1.1 mrg syscallarg(uid_t) uid;
5133 1.1 mrg syscallarg(gid_t) gid;
5134 1.1 mrg } */ *uap = v;
5135 1.1 mrg struct sys_lchown_args ua;
5136 1.1 mrg
5137 1.11 mrg NETBSD32TOP_UAP(path, const char);
5138 1.11 mrg NETBSD32TO64_UAP(uid);
5139 1.11 mrg NETBSD32TO64_UAP(gid);
5140 1.1 mrg return (sys_lchown(p, &ua, retval));
5141 1.1 mrg }
5142 1.1 mrg
5143 1.1 mrg int
5144 1.19 eeh netbsd32_lutimes(p, v, retval)
5145 1.1 mrg struct proc *p;
5146 1.1 mrg void *v;
5147 1.1 mrg register_t *retval;
5148 1.1 mrg {
5149 1.19 eeh struct netbsd32_lutimes_args /* {
5150 1.10 mrg syscallarg(const netbsd32_charp) path;
5151 1.10 mrg syscallarg(const netbsd32_timevalp_t) tptr;
5152 1.1 mrg } */ *uap = v;
5153 1.6 eeh int error;
5154 1.6 eeh struct nameidata nd;
5155 1.1 mrg
5156 1.6 eeh NDINIT(&nd, LOOKUP, NOFOLLOW, UIO_USERSPACE, (caddr_t)(u_long)SCARG(uap, path), p);
5157 1.6 eeh if ((error = namei(&nd)) != 0)
5158 1.6 eeh return (error);
5159 1.6 eeh
5160 1.6 eeh error = change_utimes32(nd.ni_vp, (struct timeval *)(u_long)SCARG(uap, tptr), p);
5161 1.6 eeh
5162 1.6 eeh vrele(nd.ni_vp);
5163 1.6 eeh return (error);
5164 1.1 mrg }
5165 1.1 mrg
5166 1.6 eeh
5167 1.1 mrg int
5168 1.19 eeh netbsd32___msync13(p, v, retval)
5169 1.1 mrg struct proc *p;
5170 1.1 mrg void *v;
5171 1.1 mrg register_t *retval;
5172 1.1 mrg {
5173 1.19 eeh struct netbsd32___msync13_args /* {
5174 1.10 mrg syscallarg(netbsd32_voidp) addr;
5175 1.10 mrg syscallarg(netbsd32_size_t) len;
5176 1.1 mrg syscallarg(int) flags;
5177 1.1 mrg } */ *uap = v;
5178 1.1 mrg struct sys___msync13_args ua;
5179 1.1 mrg
5180 1.11 mrg NETBSD32TOP_UAP(addr, void);
5181 1.11 mrg NETBSD32TOX_UAP(len, size_t);
5182 1.11 mrg NETBSD32TO64_UAP(flags);
5183 1.1 mrg return (sys___msync13(p, &ua, retval));
5184 1.1 mrg }
5185 1.1 mrg
5186 1.1 mrg int
5187 1.19 eeh netbsd32___stat13(p, v, retval)
5188 1.1 mrg struct proc *p;
5189 1.1 mrg void *v;
5190 1.1 mrg register_t *retval;
5191 1.1 mrg {
5192 1.19 eeh struct netbsd32___stat13_args /* {
5193 1.10 mrg syscallarg(const netbsd32_charp) path;
5194 1.10 mrg syscallarg(netbsd32_statp_t) ub;
5195 1.1 mrg } */ *uap = v;
5196 1.10 mrg struct netbsd32_stat sb32;
5197 1.1 mrg struct stat sb;
5198 1.1 mrg int error;
5199 1.6 eeh struct nameidata nd;
5200 1.31 mrg caddr_t sg;
5201 1.31 mrg char *path;
5202 1.31 mrg
5203 1.31 mrg path = (char *)(u_long)SCARG(uap, path);
5204 1.31 mrg sg = stackgap_init(p->p_emul);
5205 1.41 jdolecek CHECK_ALT_EXIST(p, &sg, path);
5206 1.1 mrg
5207 1.31 mrg NDINIT(&nd, LOOKUP, FOLLOW | LOCKLEAF, UIO_USERSPACE, path, p);
5208 1.6 eeh if ((error = namei(&nd)) != 0)
5209 1.6 eeh return (error);
5210 1.6 eeh error = vn_stat(nd.ni_vp, &sb, p);
5211 1.6 eeh vput(nd.ni_vp);
5212 1.1 mrg if (error)
5213 1.1 mrg return (error);
5214 1.10 mrg netbsd32_from___stat13(&sb, &sb32);
5215 1.6 eeh error = copyout(&sb32, (caddr_t)(u_long)SCARG(uap, ub), sizeof(sb32));
5216 1.6 eeh return (error);
5217 1.1 mrg }
5218 1.1 mrg
5219 1.1 mrg int
5220 1.19 eeh netbsd32___fstat13(p, v, retval)
5221 1.1 mrg struct proc *p;
5222 1.1 mrg void *v;
5223 1.1 mrg register_t *retval;
5224 1.1 mrg {
5225 1.19 eeh struct netbsd32___fstat13_args /* {
5226 1.1 mrg syscallarg(int) fd;
5227 1.10 mrg syscallarg(netbsd32_statp_t) sb;
5228 1.1 mrg } */ *uap = v;
5229 1.6 eeh int fd = SCARG(uap, fd);
5230 1.25 augustss struct filedesc *fdp = p->p_fd;
5231 1.25 augustss struct file *fp;
5232 1.10 mrg struct netbsd32_stat sb32;
5233 1.6 eeh struct stat ub;
5234 1.6 eeh int error = 0;
5235 1.6 eeh
5236 1.6 eeh if ((u_int)fd >= fdp->fd_nfiles ||
5237 1.6 eeh (fp = fdp->fd_ofiles[fd]) == NULL)
5238 1.6 eeh return (EBADF);
5239 1.6 eeh switch (fp->f_type) {
5240 1.6 eeh
5241 1.6 eeh case DTYPE_VNODE:
5242 1.6 eeh error = vn_stat((struct vnode *)fp->f_data, &ub, p);
5243 1.6 eeh break;
5244 1.6 eeh
5245 1.6 eeh case DTYPE_SOCKET:
5246 1.6 eeh error = soo_stat((struct socket *)fp->f_data, &ub);
5247 1.6 eeh break;
5248 1.6 eeh
5249 1.6 eeh default:
5250 1.6 eeh panic("fstat");
5251 1.6 eeh /*NOTREACHED*/
5252 1.6 eeh }
5253 1.6 eeh if (error == 0) {
5254 1.10 mrg netbsd32_from___stat13(&ub, &sb32);
5255 1.6 eeh error = copyout(&sb32, (caddr_t)(u_long)SCARG(uap, sb), sizeof(sb32));
5256 1.6 eeh }
5257 1.6 eeh return (error);
5258 1.1 mrg }
5259 1.1 mrg
5260 1.1 mrg int
5261 1.19 eeh netbsd32___lstat13(p, v, retval)
5262 1.1 mrg struct proc *p;
5263 1.1 mrg void *v;
5264 1.1 mrg register_t *retval;
5265 1.1 mrg {
5266 1.19 eeh struct netbsd32___lstat13_args /* {
5267 1.10 mrg syscallarg(const netbsd32_charp) path;
5268 1.10 mrg syscallarg(netbsd32_statp_t) ub;
5269 1.1 mrg } */ *uap = v;
5270 1.10 mrg struct netbsd32_stat sb32;
5271 1.1 mrg struct stat sb;
5272 1.1 mrg int error;
5273 1.6 eeh struct nameidata nd;
5274 1.31 mrg caddr_t sg;
5275 1.31 mrg char *path;
5276 1.31 mrg
5277 1.31 mrg path = (char *)(u_long)SCARG(uap, path);
5278 1.31 mrg sg = stackgap_init(p->p_emul);
5279 1.41 jdolecek CHECK_ALT_EXIST(p, &sg, path);
5280 1.1 mrg
5281 1.31 mrg NDINIT(&nd, LOOKUP, FOLLOW | LOCKLEAF, UIO_USERSPACE, path, p);
5282 1.6 eeh if ((error = namei(&nd)) != 0)
5283 1.6 eeh return (error);
5284 1.6 eeh error = vn_stat(nd.ni_vp, &sb, p);
5285 1.6 eeh vput(nd.ni_vp);
5286 1.1 mrg if (error)
5287 1.1 mrg return (error);
5288 1.10 mrg netbsd32_from___stat13(&sb, &sb32);
5289 1.6 eeh error = copyout(&sb32, (caddr_t)(u_long)SCARG(uap, ub), sizeof(sb32));
5290 1.6 eeh return (error);
5291 1.1 mrg }
5292 1.1 mrg
5293 1.1 mrg int
5294 1.19 eeh netbsd32___sigaltstack14(p, v, retval)
5295 1.1 mrg struct proc *p;
5296 1.1 mrg void *v;
5297 1.1 mrg register_t *retval;
5298 1.1 mrg {
5299 1.19 eeh struct netbsd32___sigaltstack14_args /* {
5300 1.10 mrg syscallarg(const netbsd32_sigaltstackp_t) nss;
5301 1.10 mrg syscallarg(netbsd32_sigaltstackp_t) oss;
5302 1.1 mrg } */ *uap = v;
5303 1.10 mrg struct netbsd32_sigaltstack s32;
5304 1.1 mrg struct sigaltstack nss, oss;
5305 1.1 mrg int error;
5306 1.1 mrg
5307 1.6 eeh if (SCARG(uap, nss)) {
5308 1.6 eeh error = copyin((caddr_t)(u_long)SCARG(uap, nss), &s32, sizeof(s32));
5309 1.6 eeh if (error)
5310 1.6 eeh return (error);
5311 1.6 eeh nss.ss_sp = (void *)(u_long)s32.ss_sp;
5312 1.6 eeh nss.ss_size = (size_t)s32.ss_size;
5313 1.6 eeh nss.ss_flags = s32.ss_flags;
5314 1.6 eeh }
5315 1.6 eeh error = sigaltstack1(p,
5316 1.6 eeh SCARG(uap, nss) ? &nss : 0, SCARG(uap, oss) ? &oss : 0);
5317 1.1 mrg if (error)
5318 1.1 mrg return (error);
5319 1.6 eeh if (SCARG(uap, oss)) {
5320 1.10 mrg s32.ss_sp = (netbsd32_voidp)(u_long)oss.ss_sp;
5321 1.10 mrg s32.ss_size = (netbsd32_size_t)oss.ss_size;
5322 1.6 eeh s32.ss_flags = oss.ss_flags;
5323 1.6 eeh error = copyout(&s32, (caddr_t)(u_long)SCARG(uap, oss), sizeof(s32));
5324 1.6 eeh if (error)
5325 1.6 eeh return (error);
5326 1.1 mrg }
5327 1.1 mrg return (0);
5328 1.1 mrg }
5329 1.1 mrg
5330 1.1 mrg int
5331 1.19 eeh netbsd32___posix_chown(p, v, retval)
5332 1.1 mrg struct proc *p;
5333 1.1 mrg void *v;
5334 1.1 mrg register_t *retval;
5335 1.1 mrg {
5336 1.19 eeh struct netbsd32___posix_chown_args /* {
5337 1.10 mrg syscallarg(const netbsd32_charp) path;
5338 1.1 mrg syscallarg(uid_t) uid;
5339 1.1 mrg syscallarg(gid_t) gid;
5340 1.1 mrg } */ *uap = v;
5341 1.1 mrg struct sys___posix_chown_args ua;
5342 1.1 mrg
5343 1.11 mrg NETBSD32TOP_UAP(path, const char);
5344 1.11 mrg NETBSD32TO64_UAP(uid);
5345 1.11 mrg NETBSD32TO64_UAP(gid);
5346 1.1 mrg return (sys___posix_chown(p, &ua, retval));
5347 1.1 mrg }
5348 1.1 mrg
5349 1.1 mrg int
5350 1.19 eeh netbsd32___posix_fchown(p, v, retval)
5351 1.6 eeh struct proc *p;
5352 1.6 eeh void *v;
5353 1.6 eeh register_t *retval;
5354 1.6 eeh {
5355 1.19 eeh struct netbsd32___posix_fchown_args /* {
5356 1.6 eeh syscallarg(int) fd;
5357 1.6 eeh syscallarg(uid_t) uid;
5358 1.6 eeh syscallarg(gid_t) gid;
5359 1.6 eeh } */ *uap = v;
5360 1.6 eeh struct sys___posix_fchown_args ua;
5361 1.6 eeh
5362 1.11 mrg NETBSD32TO64_UAP(fd);
5363 1.11 mrg NETBSD32TO64_UAP(uid);
5364 1.11 mrg NETBSD32TO64_UAP(gid);
5365 1.6 eeh return (sys___posix_fchown(p, &ua, retval));
5366 1.6 eeh }
5367 1.6 eeh
5368 1.6 eeh int
5369 1.19 eeh netbsd32___posix_lchown(p, v, retval)
5370 1.1 mrg struct proc *p;
5371 1.1 mrg void *v;
5372 1.1 mrg register_t *retval;
5373 1.1 mrg {
5374 1.19 eeh struct netbsd32___posix_lchown_args /* {
5375 1.10 mrg syscallarg(const netbsd32_charp) path;
5376 1.1 mrg syscallarg(uid_t) uid;
5377 1.1 mrg syscallarg(gid_t) gid;
5378 1.1 mrg } */ *uap = v;
5379 1.1 mrg struct sys___posix_lchown_args ua;
5380 1.1 mrg
5381 1.11 mrg NETBSD32TOP_UAP(path, const char);
5382 1.11 mrg NETBSD32TO64_UAP(uid);
5383 1.11 mrg NETBSD32TO64_UAP(gid);
5384 1.1 mrg return (sys___posix_lchown(p, &ua, retval));
5385 1.1 mrg }
5386 1.1 mrg
5387 1.1 mrg int
5388 1.19 eeh netbsd32_getsid(p, v, retval)
5389 1.6 eeh struct proc *p;
5390 1.6 eeh void *v;
5391 1.6 eeh register_t *retval;
5392 1.6 eeh {
5393 1.19 eeh struct netbsd32_getsid_args /* {
5394 1.6 eeh syscallarg(pid_t) pid;
5395 1.6 eeh } */ *uap = v;
5396 1.6 eeh struct sys_getsid_args ua;
5397 1.6 eeh
5398 1.11 mrg NETBSD32TO64_UAP(pid);
5399 1.6 eeh return (sys_getsid(p, &ua, retval));
5400 1.6 eeh }
5401 1.6 eeh
5402 1.6 eeh int
5403 1.19 eeh netbsd32_fktrace(p, v, retval)
5404 1.6 eeh struct proc *p;
5405 1.6 eeh void *v;
5406 1.6 eeh register_t *retval;
5407 1.6 eeh {
5408 1.19 eeh struct netbsd32_fktrace_args /* {
5409 1.6 eeh syscallarg(const int) fd;
5410 1.6 eeh syscallarg(int) ops;
5411 1.6 eeh syscallarg(int) facs;
5412 1.6 eeh syscallarg(int) pid;
5413 1.6 eeh } */ *uap = v;
5414 1.6 eeh struct sys_fktrace_args ua;
5415 1.6 eeh
5416 1.32 mrg NETBSD32TOX_UAP(fd, int);
5417 1.11 mrg NETBSD32TO64_UAP(ops);
5418 1.11 mrg NETBSD32TO64_UAP(facs);
5419 1.11 mrg NETBSD32TO64_UAP(pid);
5420 1.6 eeh return (sys_fktrace(p, &ua, retval));
5421 1.6 eeh }
5422 1.6 eeh
5423 1.6 eeh int
5424 1.19 eeh netbsd32_preadv(p, v, retval)
5425 1.1 mrg struct proc *p;
5426 1.1 mrg void *v;
5427 1.1 mrg register_t *retval;
5428 1.1 mrg {
5429 1.19 eeh struct netbsd32_preadv_args /* {
5430 1.1 mrg syscallarg(int) fd;
5431 1.10 mrg syscallarg(const netbsd32_iovecp_t) iovp;
5432 1.1 mrg syscallarg(int) iovcnt;
5433 1.1 mrg syscallarg(int) pad;
5434 1.1 mrg syscallarg(off_t) offset;
5435 1.1 mrg } */ *uap = v;
5436 1.6 eeh struct filedesc *fdp = p->p_fd;
5437 1.6 eeh struct file *fp;
5438 1.6 eeh struct vnode *vp;
5439 1.6 eeh off_t offset;
5440 1.6 eeh int error, fd = SCARG(uap, fd);
5441 1.6 eeh
5442 1.6 eeh if ((u_int)fd >= fdp->fd_nfiles ||
5443 1.6 eeh (fp = fdp->fd_ofiles[fd]) == NULL ||
5444 1.6 eeh (fp->f_flag & FREAD) == 0)
5445 1.6 eeh return (EBADF);
5446 1.6 eeh
5447 1.6 eeh vp = (struct vnode *)fp->f_data;
5448 1.6 eeh if (fp->f_type != DTYPE_VNODE
5449 1.6 eeh || vp->v_type == VFIFO)
5450 1.6 eeh return (ESPIPE);
5451 1.6 eeh
5452 1.6 eeh offset = SCARG(uap, offset);
5453 1.1 mrg
5454 1.6 eeh /*
5455 1.6 eeh * XXX This works because no file systems actually
5456 1.6 eeh * XXX take any action on the seek operation.
5457 1.6 eeh */
5458 1.6 eeh if ((error = VOP_SEEK(vp, fp->f_offset, offset, fp->f_cred)) != 0)
5459 1.6 eeh return (error);
5460 1.1 mrg
5461 1.10 mrg return (dofilereadv32(p, fd, fp, (struct netbsd32_iovec *)(u_long)SCARG(uap, iovp), SCARG(uap, iovcnt),
5462 1.6 eeh &offset, 0, retval));
5463 1.1 mrg }
5464 1.1 mrg
5465 1.1 mrg int
5466 1.19 eeh netbsd32_pwritev(p, v, retval)
5467 1.1 mrg struct proc *p;
5468 1.1 mrg void *v;
5469 1.1 mrg register_t *retval;
5470 1.1 mrg {
5471 1.19 eeh struct netbsd32_pwritev_args /* {
5472 1.1 mrg syscallarg(int) fd;
5473 1.10 mrg syscallarg(const netbsd32_iovecp_t) iovp;
5474 1.1 mrg syscallarg(int) iovcnt;
5475 1.1 mrg syscallarg(int) pad;
5476 1.1 mrg syscallarg(off_t) offset;
5477 1.1 mrg } */ *uap = v;
5478 1.6 eeh struct filedesc *fdp = p->p_fd;
5479 1.6 eeh struct file *fp;
5480 1.6 eeh struct vnode *vp;
5481 1.6 eeh off_t offset;
5482 1.6 eeh int error, fd = SCARG(uap, fd);
5483 1.6 eeh
5484 1.6 eeh if ((u_int)fd >= fdp->fd_nfiles ||
5485 1.6 eeh (fp = fdp->fd_ofiles[fd]) == NULL ||
5486 1.6 eeh (fp->f_flag & FWRITE) == 0)
5487 1.6 eeh return (EBADF);
5488 1.6 eeh
5489 1.6 eeh vp = (struct vnode *)fp->f_data;
5490 1.6 eeh if (fp->f_type != DTYPE_VNODE
5491 1.6 eeh || vp->v_type == VFIFO)
5492 1.6 eeh return (ESPIPE);
5493 1.6 eeh
5494 1.6 eeh offset = SCARG(uap, offset);
5495 1.6 eeh
5496 1.6 eeh /*
5497 1.6 eeh * XXX This works because no file systems actually
5498 1.6 eeh * XXX take any action on the seek operation.
5499 1.6 eeh */
5500 1.6 eeh if ((error = VOP_SEEK(vp, fp->f_offset, offset, fp->f_cred)) != 0)
5501 1.6 eeh return (error);
5502 1.6 eeh
5503 1.10 mrg return (dofilewritev32(p, fd, fp, (struct netbsd32_iovec *)(u_long)SCARG(uap, iovp), SCARG(uap, iovcnt),
5504 1.6 eeh &offset, 0, retval));
5505 1.6 eeh }
5506 1.6 eeh
5507 1.20 eeh /* ARGSUSED */
5508 1.6 eeh int
5509 1.20 eeh netbsd32___sigaction14(p, v, retval)
5510 1.20 eeh struct proc *p;
5511 1.6 eeh void *v;
5512 1.6 eeh register_t *retval;
5513 1.6 eeh {
5514 1.25 augustss struct netbsd32___sigaction14_args /* {
5515 1.20 eeh syscallarg(int) signum;
5516 1.20 eeh syscallarg(const struct sigaction *) nsa;
5517 1.20 eeh syscallarg(struct sigaction *) osa;
5518 1.6 eeh } */ *uap = v;
5519 1.20 eeh struct netbsd32_sigaction sa32;
5520 1.20 eeh struct sigaction nsa, osa;
5521 1.1 mrg int error;
5522 1.1 mrg
5523 1.20 eeh if (SCARG(uap, nsa)) {
5524 1.20 eeh error = copyin((caddr_t)(u_long)SCARG(uap, nsa),
5525 1.20 eeh &sa32, sizeof(sa32));
5526 1.20 eeh if (error)
5527 1.20 eeh return (error);
5528 1.20 eeh nsa.sa_handler = (void *)(u_long)sa32.sa_handler;
5529 1.20 eeh nsa.sa_mask = sa32.sa_mask;
5530 1.20 eeh nsa.sa_flags = sa32.sa_flags;
5531 1.20 eeh }
5532 1.20 eeh error = sigaction1(p, SCARG(uap, signum),
5533 1.20 eeh SCARG(uap, nsa) ? &nsa : 0, SCARG(uap, osa) ? &osa : 0);
5534 1.6 eeh if (error)
5535 1.6 eeh return (error);
5536 1.20 eeh if (SCARG(uap, osa)) {
5537 1.20 eeh sa32.sa_handler = (netbsd32_voidp)(u_long)osa.sa_handler;
5538 1.20 eeh sa32.sa_mask = osa.sa_mask;
5539 1.20 eeh sa32.sa_flags = osa.sa_flags;
5540 1.20 eeh error = copyout(&sa32, (caddr_t)(u_long)SCARG(uap, osa), sizeof(sa32));
5541 1.20 eeh if (error)
5542 1.20 eeh return (error);
5543 1.20 eeh }
5544 1.6 eeh return (0);
5545 1.6 eeh }
5546 1.6 eeh
5547 1.20 eeh int netbsd32___sigpending14(p, v, retval)
5548 1.20 eeh struct proc *p;
5549 1.20 eeh void *v;
5550 1.20 eeh register_t *retval;
5551 1.20 eeh {
5552 1.25 augustss struct netbsd32___sigpending14_args /* {
5553 1.20 eeh syscallarg(sigset_t *) set;
5554 1.20 eeh } */ *uap = v;
5555 1.20 eeh struct sys___sigpending14_args ua;
5556 1.20 eeh
5557 1.20 eeh NETBSD32TOP_UAP(set, sigset_t);
5558 1.20 eeh return (sys___sigpending14(p, &ua, retval));
5559 1.20 eeh }
5560 1.20 eeh
5561 1.20 eeh int netbsd32___sigprocmask14(p, v, retval)
5562 1.20 eeh struct proc *p;
5563 1.20 eeh void *v;
5564 1.20 eeh register_t *retval;
5565 1.20 eeh {
5566 1.25 augustss struct netbsd32___sigprocmask14_args /* {
5567 1.20 eeh syscallarg(int) how;
5568 1.20 eeh syscallarg(const sigset_t *) set;
5569 1.20 eeh syscallarg(sigset_t *) oset;
5570 1.20 eeh } */ *uap = v;
5571 1.20 eeh struct sys___sigprocmask14_args ua;
5572 1.20 eeh
5573 1.20 eeh NETBSD32TO64_UAP(how);
5574 1.20 eeh NETBSD32TOP_UAP(set, sigset_t);
5575 1.20 eeh NETBSD32TOP_UAP(oset, sigset_t);
5576 1.20 eeh return (sys___sigprocmask14(p, &ua, retval));
5577 1.20 eeh }
5578 1.20 eeh
5579 1.20 eeh int netbsd32___sigsuspend14(p, v, retval)
5580 1.20 eeh struct proc *p;
5581 1.20 eeh void *v;
5582 1.20 eeh register_t *retval;
5583 1.20 eeh {
5584 1.20 eeh struct netbsd32___sigsuspend14_args /* {
5585 1.20 eeh syscallarg(const sigset_t *) set;
5586 1.20 eeh } */ *uap = v;
5587 1.20 eeh struct sys___sigsuspend14_args ua;
5588 1.20 eeh
5589 1.20 eeh NETBSD32TOP_UAP(set, sigset_t);
5590 1.20 eeh return (sys___sigsuspend14(p, &ua, retval));
5591 1.20 eeh };
5592 1.20 eeh
5593 1.20 eeh
5594 1.20 eeh /*
5595 1.20 eeh * Find pathname of process's current directory.
5596 1.20 eeh *
5597 1.20 eeh * Use vfs vnode-to-name reverse cache; if that fails, fall back
5598 1.20 eeh * to reading directory contents.
5599 1.20 eeh */
5600 1.20 eeh int
5601 1.20 eeh getcwd_common __P((struct vnode *, struct vnode *,
5602 1.20 eeh char **, char *, int, int, struct proc *));
5603 1.20 eeh
5604 1.20 eeh int netbsd32___getcwd(p, v, retval)
5605 1.20 eeh struct proc *p;
5606 1.20 eeh void *v;
5607 1.20 eeh register_t *retval;
5608 1.20 eeh {
5609 1.25 augustss struct netbsd32___getcwd_args /* {
5610 1.20 eeh syscallarg(char *) bufp;
5611 1.20 eeh syscallarg(size_t) length;
5612 1.20 eeh } */ *uap = v;
5613 1.20 eeh
5614 1.20 eeh int error;
5615 1.20 eeh char *path;
5616 1.20 eeh char *bp, *bend;
5617 1.20 eeh int len = (int)SCARG(uap, length);
5618 1.20 eeh int lenused;
5619 1.20 eeh
5620 1.20 eeh if (len > MAXPATHLEN*4)
5621 1.20 eeh len = MAXPATHLEN*4;
5622 1.20 eeh else if (len < 2)
5623 1.20 eeh return ERANGE;
5624 1.20 eeh
5625 1.20 eeh path = (char *)malloc(len, M_TEMP, M_WAITOK);
5626 1.20 eeh if (!path)
5627 1.20 eeh return ENOMEM;
5628 1.20 eeh
5629 1.20 eeh bp = &path[len];
5630 1.20 eeh bend = bp;
5631 1.20 eeh *(--bp) = '\0';
5632 1.20 eeh
5633 1.20 eeh /*
5634 1.20 eeh * 5th argument here is "max number of vnodes to traverse".
5635 1.20 eeh * Since each entry takes up at least 2 bytes in the output buffer,
5636 1.20 eeh * limit it to N/2 vnodes for an N byte buffer.
5637 1.20 eeh */
5638 1.20 eeh #define GETCWD_CHECK_ACCESS 0x0001
5639 1.20 eeh error = getcwd_common (p->p_cwdi->cwdi_cdir, NULL, &bp, path, len/2,
5640 1.20 eeh GETCWD_CHECK_ACCESS, p);
5641 1.20 eeh
5642 1.20 eeh if (error)
5643 1.20 eeh goto out;
5644 1.20 eeh lenused = bend - bp;
5645 1.20 eeh *retval = lenused;
5646 1.20 eeh /* put the result into user buffer */
5647 1.20 eeh error = copyout(bp, (caddr_t)(u_long)SCARG(uap, bufp), lenused);
5648 1.20 eeh
5649 1.20 eeh out:
5650 1.20 eeh free(path, M_TEMP);
5651 1.20 eeh return error;
5652 1.20 eeh }
5653 1.20 eeh
5654 1.20 eeh int netbsd32_fchroot(p, v, retval)
5655 1.20 eeh struct proc *p;
5656 1.20 eeh void *v;
5657 1.20 eeh register_t *retval;
5658 1.20 eeh {
5659 1.25 augustss struct netbsd32_fchroot_args /* {
5660 1.20 eeh syscallarg(int) fd;
5661 1.20 eeh } */ *uap = v;
5662 1.20 eeh struct sys_fchroot_args ua;
5663 1.20 eeh
5664 1.20 eeh NETBSD32TO64_UAP(fd);
5665 1.20 eeh return (sys_fchroot(p, &ua, retval));
5666 1.20 eeh }
5667 1.20 eeh
5668 1.20 eeh /*
5669 1.20 eeh * Open a file given a file handle.
5670 1.20 eeh *
5671 1.20 eeh * Check permissions, allocate an open file structure,
5672 1.20 eeh * and call the device open routine if any.
5673 1.20 eeh */
5674 1.6 eeh int
5675 1.20 eeh netbsd32_fhopen(p, v, retval)
5676 1.20 eeh struct proc *p;
5677 1.20 eeh void *v;
5678 1.20 eeh register_t *retval;
5679 1.20 eeh {
5680 1.25 augustss struct netbsd32_fhopen_args /* {
5681 1.20 eeh syscallarg(const fhandle_t *) fhp;
5682 1.20 eeh syscallarg(int) flags;
5683 1.20 eeh } */ *uap = v;
5684 1.20 eeh struct sys_fhopen_args ua;
5685 1.20 eeh
5686 1.20 eeh NETBSD32TOP_UAP(fhp, fhandle_t);
5687 1.20 eeh NETBSD32TO64_UAP(flags);
5688 1.20 eeh return (sys_fhopen(p, &ua, retval));
5689 1.20 eeh }
5690 1.20 eeh
5691 1.20 eeh int netbsd32_fhstat(p, v, retval)
5692 1.20 eeh struct proc *p;
5693 1.20 eeh void *v;
5694 1.20 eeh register_t *retval;
5695 1.20 eeh {
5696 1.25 augustss struct netbsd32_fhstat_args /* {
5697 1.20 eeh syscallarg(const netbsd32_fhandlep_t) fhp;
5698 1.20 eeh syscallarg(struct stat *) sb;
5699 1.20 eeh } */ *uap = v;
5700 1.20 eeh struct sys_fhstat_args ua;
5701 1.20 eeh
5702 1.20 eeh NETBSD32TOP_UAP(fhp, const fhandle_t);
5703 1.20 eeh NETBSD32TOP_UAP(sb, struct stat);
5704 1.20 eeh return (sys_fhstat(p, &ua, retval));
5705 1.20 eeh }
5706 1.20 eeh
5707 1.20 eeh int netbsd32_fhstatfs(p, v, retval)
5708 1.20 eeh struct proc *p;
5709 1.6 eeh void *v;
5710 1.6 eeh register_t *retval;
5711 1.6 eeh {
5712 1.25 augustss struct netbsd32_fhstatfs_args /* {
5713 1.20 eeh syscallarg(const netbsd32_fhandlep_t) fhp;
5714 1.20 eeh syscallarg(struct statfs *) buf;
5715 1.6 eeh } */ *uap = v;
5716 1.20 eeh struct sys_fhstatfs_args ua;
5717 1.1 mrg
5718 1.20 eeh NETBSD32TOP_UAP(fhp, const fhandle_t);
5719 1.20 eeh NETBSD32TOP_UAP(buf, struct statfs);
5720 1.20 eeh return (sys_fhstatfs(p, &ua, retval));
5721 1.1 mrg }
5722 1.37 martin
5723 1.37 martin /* virtual memory syscalls */
5724 1.37 martin int
5725 1.37 martin netbsd32_ovadvise(p, v, retval)
5726 1.37 martin struct proc *p;
5727 1.37 martin void *v;
5728 1.37 martin register_t *retval;
5729 1.37 martin {
5730 1.37 martin struct netbsd32_ovadvise_args /* {
5731 1.37 martin syscallarg(int) anom;
5732 1.37 martin } */ *uap = v;
5733 1.37 martin struct sys_ovadvise_args ua;
5734 1.37 martin
5735 1.37 martin NETBSD32TO64_UAP(anom);
5736 1.37 martin return (sys_ovadvise(p, &ua, retval));
5737 1.37 martin }
5738 1.37 martin
5739