netbsd32_conv.h revision 1.7 1 1.7 cube /* $NetBSD: netbsd32_conv.h,v 1.7 2005/07/23 21:51:29 cube Exp $ */
2 1.1 mrg
3 1.1 mrg /*
4 1.1 mrg * Copyright (c) 1998, 2001 Matthew R. Green
5 1.1 mrg * All rights reserved.
6 1.1 mrg *
7 1.1 mrg * Redistribution and use in source and binary forms, with or without
8 1.1 mrg * modification, are permitted provided that the following conditions
9 1.1 mrg * are met:
10 1.1 mrg * 1. Redistributions of source code must retain the above copyright
11 1.1 mrg * notice, this list of conditions and the following disclaimer.
12 1.1 mrg * 2. Redistributions in binary form must reproduce the above copyright
13 1.1 mrg * notice, this list of conditions and the following disclaimer in the
14 1.1 mrg * documentation and/or other materials provided with the distribution.
15 1.1 mrg * 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 1.1 mrg #ifndef _COMPAT_NETBSD32_NETBSD32_CONV_H_
32 1.1 mrg #define _COMPAT_NETBSD32_NETBSD32_CONV_H_
33 1.1 mrg
34 1.1 mrg /*
35 1.1 mrg * Though COMPAT_OLDSOCK is needed only for COMPAT_43, SunOS, Linux,
36 1.1 mrg * HP-UX, FreeBSD, Ultrix, OSF1, we define it unconditionally so that
37 1.1 mrg * this would be LKM-safe.
38 1.1 mrg */
39 1.1 mrg #define COMPAT_OLDSOCK /* used by <sys/socket.h> */
40 1.1 mrg
41 1.1 mrg #include <sys/param.h>
42 1.1 mrg #include <sys/systm.h>
43 1.1 mrg #include <sys/kernel.h>
44 1.1 mrg #include <sys/ipc.h>
45 1.1 mrg #include <sys/msg.h>
46 1.1 mrg #define msg __msg /* Don't ask me! */
47 1.1 mrg #include <sys/sem.h>
48 1.1 mrg #include <sys/shm.h>
49 1.1 mrg #include <sys/socket.h>
50 1.1 mrg #include <sys/stat.h>
51 1.1 mrg #include <sys/time.h>
52 1.1 mrg #include <sys/timex.h>
53 1.1 mrg
54 1.1 mrg #include <compat/netbsd32/netbsd32.h>
55 1.1 mrg
56 1.7 cube static __inline void netbsd32_from_timeval __P((const struct timeval *, struct netbsd32_timeval *));
57 1.7 cube static __inline void netbsd32_to_timeval __P((const struct netbsd32_timeval *, struct timeval *));
58 1.7 cube static __inline void netbsd32_from_itimerval __P((const struct itimerval *, struct netbsd32_itimerval *));
59 1.7 cube static __inline void netbsd32_to_itimerval __P((const struct netbsd32_itimerval *, struct itimerval *));
60 1.7 cube static __inline void netbsd32_to_timespec __P((const struct netbsd32_timespec *, struct timespec *));
61 1.7 cube static __inline void netbsd32_from_timespec __P((const struct timespec *, struct netbsd32_timespec *));
62 1.7 cube static __inline void netbsd32_from_rusage __P((const struct rusage *, struct netbsd32_rusage *));
63 1.7 cube static __inline void netbsd32_to_rusage __P((const struct netbsd32_rusage *, struct rusage *));
64 1.7 cube static __inline int netbsd32_to_iovecin __P((const struct netbsd32_iovec *, struct iovec *, int));
65 1.7 cube static __inline void netbsd32_to_msghdr __P((const struct netbsd32_msghdr *, struct msghdr *));
66 1.7 cube static __inline void netbsd32_from_msghdr __P((struct netbsd32_msghdr *, const struct msghdr *));
67 1.7 cube static __inline void netbsd32_from_statvfs __P((const struct statvfs *, struct netbsd32_statvfs *));
68 1.7 cube static __inline void netbsd32_from_timex __P((const struct timex *, struct netbsd32_timex *));
69 1.7 cube static __inline void netbsd32_to_timex __P((const struct netbsd32_timex *, struct timex *));
70 1.7 cube static __inline void netbsd32_from___stat13 __P((const struct stat *, struct netbsd32_stat *));
71 1.7 cube static __inline void netbsd32_to_ipc_perm __P((const struct netbsd32_ipc_perm *, struct ipc_perm *));
72 1.7 cube static __inline void netbsd32_from_ipc_perm __P((const struct ipc_perm *, struct netbsd32_ipc_perm *));
73 1.7 cube static __inline void netbsd32_to_msg __P((const struct netbsd32_msg *, struct msg *));
74 1.7 cube static __inline void netbsd32_from_msg __P((const struct msg *, struct netbsd32_msg *));
75 1.7 cube static __inline void netbsd32_to_msqid_ds __P((const struct netbsd32_msqid_ds *, struct msqid_ds *));
76 1.7 cube static __inline void netbsd32_from_msqid_ds __P((const struct msqid_ds *, struct netbsd32_msqid_ds *));
77 1.7 cube static __inline void netbsd32_to_shmid_ds __P((const struct netbsd32_shmid_ds *, struct shmid_ds *));
78 1.7 cube static __inline void netbsd32_from_shmid_ds __P((const struct shmid_ds *, struct netbsd32_shmid_ds *));
79 1.7 cube static __inline void netbsd32_to_semid_ds __P((const struct netbsd32_semid_ds *, struct semid_ds *));
80 1.7 cube static __inline void netbsd32_from_semid_ds __P((const struct semid_ds *, struct netbsd32_semid_ds *));
81 1.7 cube static __inline void netbsd32_from_loadavg __P((struct netbsd32_loadavg *, const struct loadavg *));
82 1.7 cube static __inline void netbsd32_to_sigevent(const struct netbsd32_sigevent *, struct sigevent *);
83 1.1 mrg
84 1.1 mrg /* converters for structures that we need */
85 1.1 mrg static __inline void
86 1.1 mrg netbsd32_from_timeval(tv, tv32)
87 1.7 cube const struct timeval *tv;
88 1.1 mrg struct netbsd32_timeval *tv32;
89 1.1 mrg {
90 1.1 mrg
91 1.1 mrg tv32->tv_sec = (netbsd32_long)tv->tv_sec;
92 1.1 mrg tv32->tv_usec = (netbsd32_long)tv->tv_usec;
93 1.1 mrg }
94 1.1 mrg
95 1.1 mrg static __inline void
96 1.1 mrg netbsd32_to_timeval(tv32, tv)
97 1.7 cube const struct netbsd32_timeval *tv32;
98 1.1 mrg struct timeval *tv;
99 1.1 mrg {
100 1.1 mrg
101 1.1 mrg tv->tv_sec = (long)tv32->tv_sec;
102 1.1 mrg tv->tv_usec = (long)tv32->tv_usec;
103 1.1 mrg }
104 1.1 mrg
105 1.1 mrg static __inline void
106 1.1 mrg netbsd32_from_itimerval(itv, itv32)
107 1.7 cube const struct itimerval *itv;
108 1.1 mrg struct netbsd32_itimerval *itv32;
109 1.1 mrg {
110 1.1 mrg
111 1.5 perry netbsd32_from_timeval(&itv->it_interval,
112 1.1 mrg &itv32->it_interval);
113 1.5 perry netbsd32_from_timeval(&itv->it_value,
114 1.1 mrg &itv32->it_value);
115 1.1 mrg }
116 1.1 mrg
117 1.1 mrg static __inline void
118 1.1 mrg netbsd32_to_itimerval(itv32, itv)
119 1.7 cube const struct netbsd32_itimerval *itv32;
120 1.1 mrg struct itimerval *itv;
121 1.1 mrg {
122 1.1 mrg
123 1.1 mrg netbsd32_to_timeval(&itv32->it_interval, &itv->it_interval);
124 1.1 mrg netbsd32_to_timeval(&itv32->it_value, &itv->it_value);
125 1.1 mrg }
126 1.1 mrg
127 1.1 mrg static __inline void
128 1.1 mrg netbsd32_to_timespec(s32p, p)
129 1.7 cube const struct netbsd32_timespec *s32p;
130 1.1 mrg struct timespec *p;
131 1.1 mrg {
132 1.1 mrg
133 1.1 mrg p->tv_sec = (time_t)s32p->tv_sec;
134 1.1 mrg p->tv_nsec = (long)s32p->tv_nsec;
135 1.1 mrg }
136 1.1 mrg
137 1.1 mrg static __inline void
138 1.1 mrg netbsd32_from_timespec(p, s32p)
139 1.7 cube const struct timespec *p;
140 1.1 mrg struct netbsd32_timespec *s32p;
141 1.1 mrg {
142 1.1 mrg
143 1.1 mrg s32p->tv_sec = (netbsd32_time_t)p->tv_sec;
144 1.1 mrg s32p->tv_nsec = (netbsd32_long)p->tv_nsec;
145 1.1 mrg }
146 1.1 mrg
147 1.1 mrg static __inline void
148 1.1 mrg netbsd32_from_rusage(rup, ru32p)
149 1.7 cube const struct rusage *rup;
150 1.1 mrg struct netbsd32_rusage *ru32p;
151 1.1 mrg {
152 1.1 mrg
153 1.1 mrg netbsd32_from_timeval(&rup->ru_utime, &ru32p->ru_utime);
154 1.1 mrg netbsd32_from_timeval(&rup->ru_stime, &ru32p->ru_stime);
155 1.1 mrg #define C(var) ru32p->var = (netbsd32_long)rup->var
156 1.1 mrg C(ru_maxrss);
157 1.1 mrg C(ru_ixrss);
158 1.1 mrg C(ru_idrss);
159 1.1 mrg C(ru_isrss);
160 1.1 mrg C(ru_minflt);
161 1.1 mrg C(ru_majflt);
162 1.1 mrg C(ru_nswap);
163 1.1 mrg C(ru_inblock);
164 1.1 mrg C(ru_oublock);
165 1.1 mrg C(ru_msgsnd);
166 1.1 mrg C(ru_msgrcv);
167 1.1 mrg C(ru_nsignals);
168 1.1 mrg C(ru_nvcsw);
169 1.1 mrg C(ru_nivcsw);
170 1.1 mrg #undef C
171 1.1 mrg }
172 1.1 mrg
173 1.1 mrg static __inline void
174 1.1 mrg netbsd32_to_rusage(ru32p, rup)
175 1.7 cube const struct netbsd32_rusage *ru32p;
176 1.1 mrg struct rusage *rup;
177 1.1 mrg {
178 1.1 mrg
179 1.1 mrg netbsd32_to_timeval(&ru32p->ru_utime, &rup->ru_utime);
180 1.1 mrg netbsd32_to_timeval(&ru32p->ru_stime, &rup->ru_stime);
181 1.1 mrg #define C(var) rup->var = (long)ru32p->var
182 1.1 mrg C(ru_maxrss);
183 1.1 mrg C(ru_ixrss);
184 1.1 mrg C(ru_idrss);
185 1.1 mrg C(ru_isrss);
186 1.1 mrg C(ru_minflt);
187 1.1 mrg C(ru_majflt);
188 1.1 mrg C(ru_nswap);
189 1.1 mrg C(ru_inblock);
190 1.1 mrg C(ru_oublock);
191 1.1 mrg C(ru_msgsnd);
192 1.1 mrg C(ru_msgrcv);
193 1.1 mrg C(ru_nsignals);
194 1.1 mrg C(ru_nvcsw);
195 1.1 mrg C(ru_nivcsw);
196 1.1 mrg #undef C
197 1.1 mrg }
198 1.1 mrg
199 1.1 mrg static __inline int
200 1.1 mrg netbsd32_to_iovecin(iov32p, iovp, len)
201 1.7 cube const struct netbsd32_iovec *iov32p;
202 1.1 mrg struct iovec *iovp;
203 1.1 mrg int len;
204 1.1 mrg {
205 1.1 mrg int i, error=0;
206 1.1 mrg u_int32_t iov_base;
207 1.1 mrg u_int32_t iov_len;
208 1.5 perry /*
209 1.1 mrg * We could allocate an iov32p, do a copyin, and translate
210 1.1 mrg * each field and then free it all up, or we could copyin
211 1.1 mrg * each field separately. I'm doing the latter to reduce
212 1.1 mrg * the number of MALLOC()s.
213 1.1 mrg */
214 1.1 mrg for (i = 0; i < len; i++, iovp++, iov32p++) {
215 1.7 cube if ((error = copyin(&iov32p->iov_base, &iov_base, sizeof(iov_base))))
216 1.1 mrg return (error);
217 1.7 cube if ((error = copyin(&iov32p->iov_len, &iov_len, sizeof(iov_len))))
218 1.1 mrg return (error);
219 1.1 mrg iovp->iov_base = (void *)(u_long)iov_base;
220 1.1 mrg iovp->iov_len = (size_t)iov_len;
221 1.1 mrg }
222 1.1 mrg return error;
223 1.1 mrg }
224 1.1 mrg
225 1.1 mrg /* msg_iov must be done separately */
226 1.1 mrg static __inline void
227 1.1 mrg netbsd32_to_msghdr(mhp32, mhp)
228 1.7 cube const struct netbsd32_msghdr *mhp32;
229 1.1 mrg struct msghdr *mhp;
230 1.1 mrg {
231 1.1 mrg
232 1.1 mrg mhp->msg_name = (caddr_t)(u_long)mhp32->msg_name;
233 1.1 mrg mhp->msg_namelen = mhp32->msg_namelen;
234 1.1 mrg mhp->msg_iovlen = (size_t)mhp32->msg_iovlen;
235 1.1 mrg mhp->msg_control = (caddr_t)(u_long)mhp32->msg_control;
236 1.1 mrg mhp->msg_controllen = mhp32->msg_controllen;
237 1.1 mrg mhp->msg_flags = mhp32->msg_flags;
238 1.1 mrg }
239 1.1 mrg
240 1.1 mrg /* msg_iov must be done separately */
241 1.1 mrg static __inline void
242 1.1 mrg netbsd32_from_msghdr(mhp32, mhp)
243 1.1 mrg struct netbsd32_msghdr *mhp32;
244 1.7 cube const struct msghdr *mhp;
245 1.1 mrg {
246 1.1 mrg
247 1.1 mrg mhp32->msg_name = mhp32->msg_name;
248 1.1 mrg mhp32->msg_namelen = mhp32->msg_namelen;
249 1.1 mrg mhp32->msg_iovlen = mhp32->msg_iovlen;
250 1.1 mrg mhp32->msg_control = mhp32->msg_control;
251 1.1 mrg mhp32->msg_controllen = mhp->msg_controllen;
252 1.1 mrg mhp32->msg_flags = mhp->msg_flags;
253 1.1 mrg }
254 1.1 mrg
255 1.1 mrg static __inline void
256 1.2 christos netbsd32_from_statvfs(sbp, sb32p)
257 1.7 cube const struct statvfs *sbp;
258 1.4 cube struct netbsd32_statvfs *sb32p;
259 1.1 mrg {
260 1.4 cube sb32p->f_flag = sbp->f_flag;
261 1.4 cube sb32p->f_bsize = (netbsd32_u_long)sbp->f_bsize;
262 1.4 cube sb32p->f_frsize = (netbsd32_u_long)sbp->f_frsize;
263 1.4 cube sb32p->f_iosize = (netbsd32_u_long)sbp->f_iosize;
264 1.4 cube sb32p->f_blocks = sbp->f_blocks;
265 1.4 cube sb32p->f_bfree = sbp->f_bfree;
266 1.4 cube sb32p->f_bavail = sbp->f_bavail;
267 1.4 cube sb32p->f_bresvd = sbp->f_bresvd;
268 1.4 cube sb32p->f_files = sbp->f_files;
269 1.4 cube sb32p->f_ffree = sbp->f_ffree;
270 1.4 cube sb32p->f_favail = sbp->f_favail;
271 1.4 cube sb32p->f_fresvd = sbp->f_fresvd;
272 1.4 cube sb32p->f_syncreads = sbp->f_syncreads;
273 1.4 cube sb32p->f_syncwrites = sbp->f_syncwrites;
274 1.4 cube sb32p->f_asyncreads = sbp->f_asyncreads;
275 1.4 cube sb32p->f_asyncwrites = sbp->f_asyncwrites;
276 1.4 cube sb32p->f_fsidx = sbp->f_fsidx;
277 1.4 cube sb32p->f_fsid = (netbsd32_u_long)sbp->f_fsid;
278 1.4 cube sb32p->f_namemax = (netbsd32_u_long)sbp->f_namemax;
279 1.1 mrg sb32p->f_owner = sbp->f_owner;
280 1.1 mrg sb32p->f_spare[0] = 0;
281 1.1 mrg sb32p->f_spare[1] = 0;
282 1.1 mrg sb32p->f_spare[2] = 0;
283 1.1 mrg sb32p->f_spare[3] = 0;
284 1.1 mrg #if 1
285 1.1 mrg /* May as well do the whole batch in one go */
286 1.4 cube memcpy(sb32p->f_fstypename, sbp->f_fstypename,
287 1.4 cube sizeof(sb32p->f_fstypename) + sizeof(sb32p->f_mntonname) +
288 1.4 cube sizeof(sb32p->f_mntfromname));
289 1.1 mrg #else
290 1.1 mrg /* If we want to be careful */
291 1.4 cube memcpy(sb32p->f_fstypename, sbp->f_fstypename, sizeof(sb32p->f_fstypename));
292 1.4 cube memcpy(sb32p->f_mntonname, sbp->f_mntonname, sizeof(sb32p->f_mntonname));
293 1.4 cube memcpy(sb32p->f_mntfromname, sbp->f_mntfromname, sizeof(sb32p->f_mntfromname));
294 1.1 mrg #endif
295 1.1 mrg }
296 1.1 mrg
297 1.1 mrg static __inline void
298 1.1 mrg netbsd32_from_timex(txp, tx32p)
299 1.7 cube const struct timex *txp;
300 1.1 mrg struct netbsd32_timex *tx32p;
301 1.1 mrg {
302 1.1 mrg
303 1.1 mrg tx32p->modes = txp->modes;
304 1.1 mrg tx32p->offset = (netbsd32_long)txp->offset;
305 1.1 mrg tx32p->freq = (netbsd32_long)txp->freq;
306 1.1 mrg tx32p->maxerror = (netbsd32_long)txp->maxerror;
307 1.1 mrg tx32p->esterror = (netbsd32_long)txp->esterror;
308 1.1 mrg tx32p->status = txp->status;
309 1.1 mrg tx32p->constant = (netbsd32_long)txp->constant;
310 1.1 mrg tx32p->precision = (netbsd32_long)txp->precision;
311 1.1 mrg tx32p->tolerance = (netbsd32_long)txp->tolerance;
312 1.1 mrg tx32p->ppsfreq = (netbsd32_long)txp->ppsfreq;
313 1.1 mrg tx32p->jitter = (netbsd32_long)txp->jitter;
314 1.1 mrg tx32p->shift = txp->shift;
315 1.1 mrg tx32p->stabil = (netbsd32_long)txp->stabil;
316 1.1 mrg tx32p->jitcnt = (netbsd32_long)txp->jitcnt;
317 1.1 mrg tx32p->calcnt = (netbsd32_long)txp->calcnt;
318 1.1 mrg tx32p->errcnt = (netbsd32_long)txp->errcnt;
319 1.1 mrg tx32p->stbcnt = (netbsd32_long)txp->stbcnt;
320 1.1 mrg }
321 1.1 mrg
322 1.1 mrg static __inline void
323 1.1 mrg netbsd32_to_timex(tx32p, txp)
324 1.7 cube const struct netbsd32_timex *tx32p;
325 1.1 mrg struct timex *txp;
326 1.1 mrg {
327 1.1 mrg
328 1.1 mrg txp->modes = tx32p->modes;
329 1.1 mrg txp->offset = (long)tx32p->offset;
330 1.1 mrg txp->freq = (long)tx32p->freq;
331 1.1 mrg txp->maxerror = (long)tx32p->maxerror;
332 1.1 mrg txp->esterror = (long)tx32p->esterror;
333 1.1 mrg txp->status = tx32p->status;
334 1.1 mrg txp->constant = (long)tx32p->constant;
335 1.1 mrg txp->precision = (long)tx32p->precision;
336 1.1 mrg txp->tolerance = (long)tx32p->tolerance;
337 1.1 mrg txp->ppsfreq = (long)tx32p->ppsfreq;
338 1.1 mrg txp->jitter = (long)tx32p->jitter;
339 1.1 mrg txp->shift = tx32p->shift;
340 1.1 mrg txp->stabil = (long)tx32p->stabil;
341 1.1 mrg txp->jitcnt = (long)tx32p->jitcnt;
342 1.1 mrg txp->calcnt = (long)tx32p->calcnt;
343 1.1 mrg txp->errcnt = (long)tx32p->errcnt;
344 1.1 mrg txp->stbcnt = (long)tx32p->stbcnt;
345 1.1 mrg }
346 1.1 mrg
347 1.1 mrg static __inline void
348 1.1 mrg netbsd32_from___stat13(sbp, sb32p)
349 1.7 cube const struct stat *sbp;
350 1.1 mrg struct netbsd32_stat *sb32p;
351 1.1 mrg {
352 1.1 mrg sb32p->st_dev = sbp->st_dev;
353 1.1 mrg sb32p->st_ino = sbp->st_ino;
354 1.1 mrg sb32p->st_mode = sbp->st_mode;
355 1.1 mrg sb32p->st_nlink = sbp->st_nlink;
356 1.1 mrg sb32p->st_uid = sbp->st_uid;
357 1.1 mrg sb32p->st_gid = sbp->st_gid;
358 1.1 mrg sb32p->st_rdev = sbp->st_rdev;
359 1.1 mrg if (sbp->st_size < (quad_t)1 << 32)
360 1.1 mrg sb32p->st_size = sbp->st_size;
361 1.1 mrg else
362 1.1 mrg sb32p->st_size = -2;
363 1.1 mrg sb32p->st_atimespec.tv_sec = (netbsd32_time_t)sbp->st_atimespec.tv_sec;
364 1.1 mrg sb32p->st_atimespec.tv_nsec = (netbsd32_long)sbp->st_atimespec.tv_nsec;
365 1.1 mrg sb32p->st_mtimespec.tv_sec = (netbsd32_time_t)sbp->st_mtimespec.tv_sec;
366 1.1 mrg sb32p->st_mtimespec.tv_nsec = (netbsd32_long)sbp->st_mtimespec.tv_nsec;
367 1.1 mrg sb32p->st_ctimespec.tv_sec = (netbsd32_time_t)sbp->st_ctimespec.tv_sec;
368 1.1 mrg sb32p->st_ctimespec.tv_nsec = (netbsd32_long)sbp->st_ctimespec.tv_nsec;
369 1.1 mrg sb32p->st_blksize = sbp->st_blksize;
370 1.1 mrg sb32p->st_blocks = sbp->st_blocks;
371 1.1 mrg sb32p->st_flags = sbp->st_flags;
372 1.1 mrg sb32p->st_gen = sbp->st_gen;
373 1.1 mrg }
374 1.1 mrg
375 1.1 mrg static __inline void
376 1.1 mrg netbsd32_to_ipc_perm(ip32p, ipp)
377 1.7 cube const struct netbsd32_ipc_perm *ip32p;
378 1.1 mrg struct ipc_perm *ipp;
379 1.1 mrg {
380 1.1 mrg
381 1.1 mrg ipp->cuid = ip32p->cuid;
382 1.1 mrg ipp->cgid = ip32p->cgid;
383 1.1 mrg ipp->uid = ip32p->uid;
384 1.1 mrg ipp->gid = ip32p->gid;
385 1.1 mrg ipp->mode = ip32p->mode;
386 1.1 mrg ipp->_seq = ip32p->_seq;
387 1.1 mrg ipp->_key = (key_t)ip32p->_key;
388 1.1 mrg }
389 1.1 mrg
390 1.1 mrg static __inline void
391 1.1 mrg netbsd32_from_ipc_perm(ipp, ip32p)
392 1.7 cube const struct ipc_perm *ipp;
393 1.1 mrg struct netbsd32_ipc_perm *ip32p;
394 1.1 mrg {
395 1.1 mrg
396 1.1 mrg ip32p->cuid = ipp->cuid;
397 1.1 mrg ip32p->cgid = ipp->cgid;
398 1.1 mrg ip32p->uid = ipp->uid;
399 1.1 mrg ip32p->gid = ipp->gid;
400 1.1 mrg ip32p->mode = ipp->mode;
401 1.1 mrg ip32p->_seq = ipp->_seq;
402 1.1 mrg ip32p->_key = (netbsd32_key_t)ipp->_key;
403 1.1 mrg }
404 1.1 mrg
405 1.1 mrg static __inline void
406 1.1 mrg netbsd32_to_msg(m32p, mp)
407 1.7 cube const struct netbsd32_msg *m32p;
408 1.1 mrg struct msg *mp;
409 1.1 mrg {
410 1.1 mrg
411 1.1 mrg mp->msg_next = (struct msg *)(u_long)m32p->msg_next;
412 1.1 mrg mp->msg_type = (long)m32p->msg_type;
413 1.1 mrg mp->msg_ts = m32p->msg_ts;
414 1.1 mrg mp->msg_spot = m32p->msg_spot;
415 1.1 mrg }
416 1.1 mrg
417 1.1 mrg static __inline void
418 1.1 mrg netbsd32_from_msg(mp, m32p)
419 1.7 cube const struct msg *mp;
420 1.1 mrg struct netbsd32_msg *m32p;
421 1.1 mrg {
422 1.1 mrg
423 1.1 mrg m32p->msg_next = (netbsd32_msgp_t)(u_long)mp->msg_next;
424 1.1 mrg m32p->msg_type = (netbsd32_long)mp->msg_type;
425 1.1 mrg m32p->msg_ts = mp->msg_ts;
426 1.1 mrg m32p->msg_spot = mp->msg_spot;
427 1.1 mrg }
428 1.1 mrg
429 1.1 mrg static __inline void
430 1.1 mrg netbsd32_to_msqid_ds(ds32p, dsp)
431 1.7 cube const struct netbsd32_msqid_ds *ds32p;
432 1.1 mrg struct msqid_ds *dsp;
433 1.1 mrg {
434 1.1 mrg
435 1.1 mrg netbsd32_to_ipc_perm(&ds32p->msg_perm, &dsp->msg_perm);
436 1.1 mrg netbsd32_to_msg((struct netbsd32_msg *)(u_long)ds32p->_msg_first, dsp->_msg_first);
437 1.1 mrg netbsd32_to_msg((struct netbsd32_msg *)(u_long)ds32p->_msg_last, dsp->_msg_last);
438 1.1 mrg dsp->_msg_cbytes = (u_long)ds32p->_msg_cbytes;
439 1.1 mrg dsp->msg_qnum = (u_long)ds32p->msg_qnum;
440 1.1 mrg dsp->msg_qbytes = (u_long)ds32p->msg_qbytes;
441 1.1 mrg dsp->msg_lspid = ds32p->msg_lspid;
442 1.1 mrg dsp->msg_lrpid = ds32p->msg_lrpid;
443 1.1 mrg dsp->msg_rtime = (time_t)ds32p->msg_rtime;
444 1.1 mrg dsp->msg_stime = (time_t)ds32p->msg_stime;
445 1.1 mrg dsp->msg_ctime = (time_t)ds32p->msg_ctime;
446 1.1 mrg }
447 1.1 mrg
448 1.1 mrg static __inline void
449 1.1 mrg netbsd32_from_msqid_ds(dsp, ds32p)
450 1.7 cube const struct msqid_ds *dsp;
451 1.1 mrg struct netbsd32_msqid_ds *ds32p;
452 1.1 mrg {
453 1.1 mrg
454 1.1 mrg netbsd32_from_ipc_perm(&dsp->msg_perm, &ds32p->msg_perm);
455 1.1 mrg netbsd32_from_msg(dsp->_msg_first, (struct netbsd32_msg *)(u_long)ds32p->_msg_first);
456 1.1 mrg netbsd32_from_msg(dsp->_msg_last, (struct netbsd32_msg *)(u_long)ds32p->_msg_last);
457 1.1 mrg ds32p->_msg_cbytes = (netbsd32_u_long)dsp->_msg_cbytes;
458 1.1 mrg ds32p->msg_qnum = (netbsd32_u_long)dsp->msg_qnum;
459 1.1 mrg ds32p->msg_qbytes = (netbsd32_u_long)dsp->msg_qbytes;
460 1.1 mrg ds32p->msg_lspid = dsp->msg_lspid;
461 1.1 mrg ds32p->msg_lrpid = dsp->msg_lrpid;
462 1.1 mrg ds32p->msg_rtime = dsp->msg_rtime;
463 1.1 mrg ds32p->msg_stime = dsp->msg_stime;
464 1.1 mrg ds32p->msg_ctime = dsp->msg_ctime;
465 1.1 mrg }
466 1.1 mrg
467 1.1 mrg static __inline void
468 1.1 mrg netbsd32_to_shmid_ds(ds32p, dsp)
469 1.7 cube const struct netbsd32_shmid_ds *ds32p;
470 1.1 mrg struct shmid_ds *dsp;
471 1.1 mrg {
472 1.1 mrg
473 1.1 mrg netbsd32_to_ipc_perm(&ds32p->shm_perm, &dsp->shm_perm);
474 1.1 mrg dsp->shm_segsz = ds32p->shm_segsz;
475 1.1 mrg dsp->shm_lpid = ds32p->shm_lpid;
476 1.1 mrg dsp->shm_cpid = ds32p->shm_cpid;
477 1.1 mrg dsp->shm_nattch = ds32p->shm_nattch;
478 1.1 mrg dsp->shm_atime = (long)ds32p->shm_atime;
479 1.1 mrg dsp->shm_dtime = (long)ds32p->shm_dtime;
480 1.1 mrg dsp->shm_ctime = (long)ds32p->shm_ctime;
481 1.1 mrg dsp->_shm_internal = (void *)(u_long)ds32p->_shm_internal;
482 1.1 mrg }
483 1.1 mrg
484 1.1 mrg static __inline void
485 1.1 mrg netbsd32_from_shmid_ds(dsp, ds32p)
486 1.7 cube const struct shmid_ds *dsp;
487 1.1 mrg struct netbsd32_shmid_ds *ds32p;
488 1.1 mrg {
489 1.1 mrg
490 1.1 mrg netbsd32_from_ipc_perm(&dsp->shm_perm, &ds32p->shm_perm);
491 1.1 mrg ds32p->shm_segsz = dsp->shm_segsz;
492 1.1 mrg ds32p->shm_lpid = dsp->shm_lpid;
493 1.1 mrg ds32p->shm_cpid = dsp->shm_cpid;
494 1.1 mrg ds32p->shm_nattch = dsp->shm_nattch;
495 1.1 mrg ds32p->shm_atime = (netbsd32_long)dsp->shm_atime;
496 1.1 mrg ds32p->shm_dtime = (netbsd32_long)dsp->shm_dtime;
497 1.1 mrg ds32p->shm_ctime = (netbsd32_long)dsp->shm_ctime;
498 1.1 mrg ds32p->_shm_internal = (netbsd32_voidp)(u_long)dsp->_shm_internal;
499 1.1 mrg }
500 1.1 mrg
501 1.1 mrg static __inline void
502 1.1 mrg netbsd32_to_semid_ds(s32dsp, dsp)
503 1.7 cube const struct netbsd32_semid_ds *s32dsp;
504 1.1 mrg struct semid_ds *dsp;
505 1.1 mrg {
506 1.1 mrg
507 1.7 cube netbsd32_to_ipc_perm(&s32dsp->sem_perm, &dsp->sem_perm);
508 1.1 mrg dsp->_sem_base = (struct __sem *)(u_long)s32dsp->_sem_base;
509 1.1 mrg dsp->sem_nsems = s32dsp->sem_nsems;
510 1.1 mrg dsp->sem_otime = s32dsp->sem_otime;
511 1.1 mrg dsp->sem_ctime = s32dsp->sem_ctime;
512 1.1 mrg }
513 1.1 mrg
514 1.1 mrg static __inline void
515 1.1 mrg netbsd32_from_semid_ds(dsp, s32dsp)
516 1.7 cube const struct semid_ds *dsp;
517 1.1 mrg struct netbsd32_semid_ds *s32dsp;
518 1.1 mrg {
519 1.1 mrg
520 1.7 cube netbsd32_from_ipc_perm(&dsp->sem_perm, &s32dsp->sem_perm);
521 1.1 mrg s32dsp->_sem_base = (netbsd32_semp_t)(u_long)dsp->_sem_base;
522 1.1 mrg s32dsp->sem_nsems = dsp->sem_nsems;
523 1.1 mrg s32dsp->sem_otime = dsp->sem_otime;
524 1.1 mrg s32dsp->sem_ctime = dsp->sem_ctime;
525 1.1 mrg }
526 1.1 mrg
527 1.1 mrg static __inline void
528 1.1 mrg netbsd32_from_loadavg(av32, av)
529 1.1 mrg struct netbsd32_loadavg *av32;
530 1.7 cube const struct loadavg *av;
531 1.1 mrg {
532 1.1 mrg
533 1.1 mrg av32->ldavg[0] = av->ldavg[0];
534 1.1 mrg av32->ldavg[1] = av->ldavg[1];
535 1.1 mrg av32->ldavg[2] = av->ldavg[2];
536 1.1 mrg av32->fscale = (netbsd32_long)av->fscale;
537 1.1 mrg }
538 1.1 mrg
539 1.6 cube static __inline void
540 1.7 cube netbsd32_to_sigevent(const struct netbsd32_sigevent *ev32, struct sigevent *ev)
541 1.6 cube {
542 1.6 cube ev->sigev_notify = ev32->sigev_notify;
543 1.6 cube ev->sigev_signo = ev32->sigev_signo;
544 1.6 cube /*
545 1.6 cube * XXX sival_ptr, sigev_notify_function and
546 1.6 cube * sigev_notify_attributes are currently unused
547 1.6 cube */
548 1.6 cube ev->sigev_value.sival_int = ev32->sigev_value.sival_int;
549 1.6 cube ev->sigev_notify_function = (void *)(intptr_t)ev32->sigev_notify_function;
550 1.6 cube ev->sigev_notify_attributes = (void *)(intptr_t)ev32->sigev_notify_attributes;
551 1.6 cube }
552 1.6 cube
553 1.1 mrg #endif /* _COMPAT_NETBSD32_NETBSD32_CONV_H_ */
554