xref: /freebsd/sys/compat/linux/linux_ipc.c (revision 1d386b48)
1 /*-
2  * SPDX-License-Identifier: BSD-2-Clause
3  *
4  * Copyright (c) 1994-1995 Søren Schmidt
5  * All rights reserved.
6  *
7  * Redistribution and use in source and binary forms, with or without
8  * modification, are permitted provided that the following conditions
9  * are met:
10  * 1. Redistributions of source code must retain the above copyright
11  *    notice, this list of conditions and the following disclaimer.
12  * 2. Redistributions in binary form must reproduce the above copyright
13  *    notice, this list of conditions and the following disclaimer in the
14  *    documentation and/or other materials provided with the distribution.
15  *
16  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND
17  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
18  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
19  * ARE DISCLAIMED.  IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
20  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
21  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
22  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
23  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
24  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
25  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
26  * SUCH DAMAGE.
27  */
28 
29 #include <sys/cdefs.h>
30 #include <sys/param.h>
31 #include <sys/limits.h>
32 #include <sys/msg.h>
33 #include <sys/proc.h>
34 #include <sys/sem.h>
35 #include <sys/shm.h>
36 #include <sys/stat.h>
37 #include <sys/syscallsubr.h>
38 #include <sys/sysent.h>
39 #include <sys/sysproto.h>
40 
41 #ifdef COMPAT_LINUX32
42 #include <machine/../linux32/linux.h>
43 #include <machine/../linux32/linux32_proto.h>
44 #else
45 #include <machine/../linux/linux.h>
46 #include <machine/../linux/linux_proto.h>
47 #endif
48 #include <compat/linux/linux_ipc.h>
49 #include <compat/linux/linux_ipc64.h>
50 #include <compat/linux/linux_time.h>
51 #include <compat/linux/linux_util.h>
52 
53 /*
54  * old, pre 2.4 kernel
55  */
56 struct l_ipc_perm {
57 	l_key_t		key;
58 	l_uid16_t	uid;
59 	l_gid16_t	gid;
60 	l_uid16_t	cuid;
61 	l_gid16_t	cgid;
62 	l_ushort	mode;
63 	l_ushort	seq;
64 };
65 
66 struct l_seminfo {
67 	l_int semmap;
68 	l_int semmni;
69 	l_int semmns;
70 	l_int semmnu;
71 	l_int semmsl;
72 	l_int semopm;
73 	l_int semume;
74 	l_int semusz;
75 	l_int semvmx;
76 	l_int semaem;
77 };
78 
79 struct l_shminfo {
80 	l_int shmmax;
81 	l_int shmmin;
82 	l_int shmmni;
83 	l_int shmseg;
84 	l_int shmall;
85 };
86 
87 struct l_shm_info {
88 	l_int used_ids;
89 	l_ulong shm_tot;  /* total allocated shm */
90 	l_ulong shm_rss;  /* total resident shm */
91 	l_ulong shm_swp;  /* total swapped shm */
92 	l_ulong swap_attempts;
93 	l_ulong swap_successes;
94 };
95 
96 struct l_msginfo {
97 	l_int msgpool;
98 	l_int msgmap;
99 	l_int msgmax;
100 	l_int msgmnb;
101 	l_int msgmni;
102 	l_int msgssz;
103 	l_int msgtql;
104 	l_ushort msgseg;
105 };
106 
107 static void
108 bsd_to_linux_shminfo( struct shminfo *bpp, struct l_shminfo64 *lpp)
109 {
110 
111 	lpp->shmmax = bpp->shmmax;
112 	lpp->shmmin = bpp->shmmin;
113 	lpp->shmmni = bpp->shmmni;
114 	lpp->shmseg = bpp->shmseg;
115 	lpp->shmall = bpp->shmall;
116 }
117 
118 static void
119 bsd_to_linux_shm_info( struct shm_info *bpp, struct l_shm_info *lpp)
120 {
121 
122 	lpp->used_ids = bpp->used_ids;
123 	lpp->shm_tot = bpp->shm_tot;
124 	lpp->shm_rss = bpp->shm_rss;
125 	lpp->shm_swp = bpp->shm_swp;
126 	lpp->swap_attempts = bpp->swap_attempts;
127 	lpp->swap_successes = bpp->swap_successes;
128 }
129 
130 static void
131 linux_to_bsd_ipc_perm(struct l_ipc64_perm *lpp, struct ipc_perm *bpp)
132 {
133 
134 	bpp->key = lpp->key;
135 	bpp->uid = lpp->uid;
136 	bpp->gid = lpp->gid;
137 	bpp->cuid = lpp->cuid;
138 	bpp->cgid = lpp->cgid;
139 	bpp->mode = lpp->mode;
140 	bpp->seq = lpp->seq;
141 }
142 
143 static void
144 bsd_to_linux_ipc_perm(struct ipc_perm *bpp, struct l_ipc64_perm *lpp)
145 {
146 
147 	lpp->key = bpp->key;
148 	lpp->uid = bpp->uid;
149 	lpp->gid = bpp->gid;
150 	lpp->cuid = bpp->cuid;
151 	lpp->cgid = bpp->cgid;
152 	lpp->mode = bpp->mode & (S_IRWXU|S_IRWXG|S_IRWXO);
153 	lpp->seq = bpp->seq;
154 }
155 
156 struct l_msqid_ds {
157 	struct l_ipc_perm	msg_perm;
158 	l_uintptr_t		msg_first;	/* first message on queue,unused */
159 	l_uintptr_t		msg_last;	/* last message in queue,unused */
160 	l_time_t		msg_stime;	/* last msgsnd time */
161 	l_time_t		msg_rtime;	/* last msgrcv time */
162 	l_time_t		msg_ctime;	/* last change time */
163 	l_ulong			msg_lcbytes;	/* Reuse junk fields for 32 bit */
164 	l_ulong			msg_lqbytes;	/* ditto */
165 	l_ushort		msg_cbytes;	/* current number of bytes on queue */
166 	l_ushort		msg_qnum;	/* number of messages in queue */
167 	l_ushort		msg_qbytes;	/* max number of bytes on queue */
168 	l_pid_t			msg_lspid;	/* pid of last msgsnd */
169 	l_pid_t			msg_lrpid;	/* last receive pid */
170 };
171 
172 struct l_semid_ds {
173 	struct l_ipc_perm	sem_perm;
174 	l_time_t		sem_otime;
175 	l_time_t		sem_ctime;
176 	l_uintptr_t		sem_base;
177 	l_uintptr_t		sem_pending;
178 	l_uintptr_t		sem_pending_last;
179 	l_uintptr_t		undo;
180 	l_ushort		sem_nsems;
181 };
182 
183 struct l_shmid_ds {
184 	struct l_ipc_perm	shm_perm;
185 	l_int			shm_segsz;
186 	l_time_t		shm_atime;
187 	l_time_t		shm_dtime;
188 	l_time_t		shm_ctime;
189 	l_ushort		shm_cpid;
190 	l_ushort		shm_lpid;
191 	l_short			shm_nattch;
192 	l_ushort		private1;
193 	l_uintptr_t		private2;
194 	l_uintptr_t		private3;
195 };
196 
197 static void
198 linux_to_bsd_semid_ds(struct l_semid64_ds *lsp, struct semid_ds *bsp)
199 {
200 
201 	linux_to_bsd_ipc_perm(&lsp->sem_perm, &bsp->sem_perm);
202 	bsp->sem_otime = lsp->sem_otime;
203 	bsp->sem_ctime = lsp->sem_ctime;
204 	bsp->sem_nsems = lsp->sem_nsems;
205 }
206 
207 static void
208 bsd_to_linux_semid_ds(struct semid_ds *bsp, struct l_semid64_ds *lsp)
209 {
210 
211 	bsd_to_linux_ipc_perm(&bsp->sem_perm, &lsp->sem_perm);
212 	lsp->sem_otime = bsp->sem_otime;
213 	lsp->sem_ctime = bsp->sem_ctime;
214 	lsp->sem_nsems = bsp->sem_nsems;
215 }
216 
217 static void
218 linux_to_bsd_shmid_ds(struct l_shmid64_ds *lsp, struct shmid_ds *bsp)
219 {
220 
221 	linux_to_bsd_ipc_perm(&lsp->shm_perm, &bsp->shm_perm);
222 	bsp->shm_segsz = lsp->shm_segsz;
223 	bsp->shm_lpid = lsp->shm_lpid;
224 	bsp->shm_cpid = lsp->shm_cpid;
225 	bsp->shm_nattch = lsp->shm_nattch;
226 	bsp->shm_atime = lsp->shm_atime;
227 	bsp->shm_dtime = lsp->shm_dtime;
228 	bsp->shm_ctime = lsp->shm_ctime;
229 }
230 
231 static void
232 bsd_to_linux_shmid_ds(struct shmid_ds *bsp, struct l_shmid64_ds *lsp)
233 {
234 
235 	bsd_to_linux_ipc_perm(&bsp->shm_perm, &lsp->shm_perm);
236 	lsp->shm_segsz = bsp->shm_segsz;
237 	lsp->shm_lpid = bsp->shm_lpid;
238 	lsp->shm_cpid = bsp->shm_cpid;
239 	lsp->shm_nattch = bsp->shm_nattch;
240 	lsp->shm_atime = bsp->shm_atime;
241 	lsp->shm_dtime = bsp->shm_dtime;
242 	lsp->shm_ctime = bsp->shm_ctime;
243 }
244 
245 static void
246 linux_to_bsd_msqid_ds(struct l_msqid64_ds *lsp, struct msqid_ds *bsp)
247 {
248 
249 	linux_to_bsd_ipc_perm(&lsp->msg_perm, &bsp->msg_perm);
250 	bsp->msg_cbytes = lsp->msg_cbytes;
251 	bsp->msg_qnum = lsp->msg_qnum;
252 	bsp->msg_qbytes = lsp->msg_qbytes;
253 	bsp->msg_lspid = lsp->msg_lspid;
254 	bsp->msg_lrpid = lsp->msg_lrpid;
255 	bsp->msg_stime = lsp->msg_stime;
256 	bsp->msg_rtime = lsp->msg_rtime;
257 	bsp->msg_ctime = lsp->msg_ctime;
258 }
259 
260 static void
261 bsd_to_linux_msqid_ds(struct msqid_ds *bsp, struct l_msqid64_ds *lsp)
262 {
263 
264 	bsd_to_linux_ipc_perm(&bsp->msg_perm, &lsp->msg_perm);
265 	lsp->msg_cbytes = bsp->msg_cbytes;
266 	lsp->msg_qnum = bsp->msg_qnum;
267 	lsp->msg_qbytes = bsp->msg_qbytes;
268 	lsp->msg_lspid = bsp->msg_lspid;
269 	lsp->msg_lrpid = bsp->msg_lrpid;
270 	lsp->msg_stime = bsp->msg_stime;
271 	lsp->msg_rtime = bsp->msg_rtime;
272 	lsp->msg_ctime = bsp->msg_ctime;
273 }
274 
275 static int
276 linux_ipc64_perm_to_ipc_perm(struct l_ipc64_perm *in, struct l_ipc_perm *out)
277 {
278 
279 	out->key = in->key;
280 	out->uid = in->uid;
281 	out->gid = in->gid;
282 	out->cuid = in->cuid;
283 	out->cgid = in->cgid;
284 	out->mode = in->mode;
285 	out->seq = in->seq;
286 
287 	/* Linux does not check overflow */
288 	if (out->uid != in->uid || out->gid != in->gid ||
289 	    out->cuid != in->cuid || out->cgid != in->cgid ||
290 	    out->mode != in->mode)
291 		return (EOVERFLOW);
292 	else
293 		return (0);
294 }
295 
296 static int
297 linux_msqid_pullup(l_int ver, struct l_msqid64_ds *linux_msqid64, caddr_t uaddr)
298 {
299 	struct l_msqid_ds linux_msqid;
300 	int error;
301 
302 	if (ver == LINUX_IPC_64 || SV_CURPROC_FLAG(SV_LP64))
303 		return (copyin(uaddr, linux_msqid64, sizeof(*linux_msqid64)));
304 
305 	error = copyin(uaddr, &linux_msqid, sizeof(linux_msqid));
306 	if (error != 0)
307 		return (error);
308 
309 	bzero(linux_msqid64, sizeof(*linux_msqid64));
310 	linux_msqid64->msg_perm.uid = linux_msqid.msg_perm.uid;
311 	linux_msqid64->msg_perm.gid = linux_msqid.msg_perm.gid;
312 	linux_msqid64->msg_perm.mode = linux_msqid.msg_perm.mode;
313 	if (linux_msqid.msg_qbytes == 0)
314 		linux_msqid64->msg_qbytes = linux_msqid.msg_lqbytes;
315 	else
316 		linux_msqid64->msg_qbytes = linux_msqid.msg_qbytes;
317 	return (0);
318 }
319 
320 static int
321 linux_msqid_pushdown(l_int ver, struct l_msqid64_ds *linux_msqid64, caddr_t uaddr)
322 {
323 	struct l_msqid_ds linux_msqid;
324 	int error;
325 
326 	if (ver == LINUX_IPC_64 || SV_CURPROC_FLAG(SV_LP64))
327 		return (copyout(linux_msqid64, uaddr, sizeof(*linux_msqid64)));
328 
329 	bzero(&linux_msqid, sizeof(linux_msqid));
330 	error = linux_ipc64_perm_to_ipc_perm(&linux_msqid64->msg_perm,
331 	    &linux_msqid.msg_perm);
332 	if (error != 0)
333 		return (error);
334 
335 	linux_msqid.msg_stime = linux_msqid64->msg_stime;
336 	linux_msqid.msg_rtime = linux_msqid64->msg_rtime;
337 	linux_msqid.msg_ctime = linux_msqid64->msg_ctime;
338 
339 	if (linux_msqid64->msg_cbytes > USHRT_MAX)
340 		linux_msqid.msg_cbytes = USHRT_MAX;
341 	else
342 		linux_msqid.msg_cbytes = linux_msqid64->msg_cbytes;
343 	linux_msqid.msg_lcbytes = linux_msqid64->msg_cbytes;
344 	if (linux_msqid64->msg_qnum > USHRT_MAX)
345 		linux_msqid.msg_qnum = USHRT_MAX;
346 	else
347 		linux_msqid.msg_qnum = linux_msqid64->msg_qnum;
348 	if (linux_msqid64->msg_qbytes > USHRT_MAX)
349 		linux_msqid.msg_qbytes = USHRT_MAX;
350 	else
351 		linux_msqid.msg_qbytes = linux_msqid64->msg_qbytes;
352 	linux_msqid.msg_lqbytes = linux_msqid64->msg_qbytes;
353 	linux_msqid.msg_lspid = linux_msqid64->msg_lspid;
354 	linux_msqid.msg_lrpid = linux_msqid64->msg_lrpid;
355 
356 	/* Linux does not check overflow */
357 	if (linux_msqid.msg_stime != linux_msqid64->msg_stime ||
358 	    linux_msqid.msg_rtime != linux_msqid64->msg_rtime ||
359 	    linux_msqid.msg_ctime != linux_msqid64->msg_ctime)
360 		return (EOVERFLOW);
361 	return (copyout(&linux_msqid, uaddr, sizeof(linux_msqid)));
362 }
363 
364 static int
365 linux_semid_pullup(l_int ver, struct l_semid64_ds *linux_semid64, caddr_t uaddr)
366 {
367 	struct l_semid_ds linux_semid;
368 	int error;
369 
370 	if (ver == LINUX_IPC_64 || SV_CURPROC_FLAG(SV_LP64))
371 		return (copyin(uaddr, linux_semid64, sizeof(*linux_semid64)));
372 	error = copyin(uaddr, &linux_semid, sizeof(linux_semid));
373 	if (error != 0)
374 		return (error);
375 
376 	bzero(linux_semid64, sizeof(*linux_semid64));
377 	linux_semid64->sem_perm.uid = linux_semid.sem_perm.uid;
378 	linux_semid64->sem_perm.gid = linux_semid.sem_perm.gid;
379 	linux_semid64->sem_perm.mode = linux_semid.sem_perm.mode;
380 	return (0);
381 }
382 
383 static int
384 linux_semid_pushdown(l_int ver, struct l_semid64_ds *linux_semid64, caddr_t uaddr)
385 {
386 	struct l_semid_ds linux_semid;
387 	int error;
388 
389 	if (ver == LINUX_IPC_64 || SV_CURPROC_FLAG(SV_LP64))
390 		return (copyout(linux_semid64, uaddr, sizeof(*linux_semid64)));
391 
392 	bzero(&linux_semid, sizeof(linux_semid));
393 		error = linux_ipc64_perm_to_ipc_perm(&linux_semid64->sem_perm,
394 	    &linux_semid.sem_perm);
395 	if (error != 0)
396 		return (error);
397 
398 	linux_semid.sem_otime = linux_semid64->sem_otime;
399 	linux_semid.sem_ctime = linux_semid64->sem_ctime;
400 	linux_semid.sem_nsems = linux_semid64->sem_nsems;
401 
402 	/* Linux does not check overflow */
403 	if (linux_semid.sem_otime != linux_semid64->sem_otime ||
404 	    linux_semid.sem_ctime != linux_semid64->sem_ctime ||
405 	    linux_semid.sem_nsems != linux_semid64->sem_nsems)
406 		return (EOVERFLOW);
407 	return (copyout(&linux_semid, uaddr, sizeof(linux_semid)));
408 }
409 
410 static int
411 linux_shmid_pullup(l_int ver, struct l_shmid64_ds *linux_shmid64, caddr_t uaddr)
412 {
413 	struct l_shmid_ds linux_shmid;
414 	int error;
415 
416 	if (ver == LINUX_IPC_64 || SV_CURPROC_FLAG(SV_LP64))
417 		return (copyin(uaddr, linux_shmid64, sizeof(*linux_shmid64)));
418 
419 	error = copyin(uaddr, &linux_shmid, sizeof(linux_shmid));
420 	if (error != 0)
421 		return (error);
422 
423 	bzero(linux_shmid64, sizeof(*linux_shmid64));
424 	linux_shmid64->shm_perm.uid = linux_shmid.shm_perm.uid;
425 	linux_shmid64->shm_perm.gid = linux_shmid.shm_perm.gid;
426 	linux_shmid64->shm_perm.mode = linux_shmid.shm_perm.mode;
427 	return (0);
428 }
429 
430 static int
431 linux_shmid_pushdown(l_int ver, struct l_shmid64_ds *linux_shmid64, caddr_t uaddr)
432 {
433 	struct l_shmid_ds linux_shmid;
434 	int error;
435 
436 	if (ver == LINUX_IPC_64 || SV_CURPROC_FLAG(SV_LP64))
437 		return (copyout(linux_shmid64, uaddr, sizeof(*linux_shmid64)));
438 
439 	bzero(&linux_shmid, sizeof(linux_shmid));
440 	error = linux_ipc64_perm_to_ipc_perm(&linux_shmid64->shm_perm,
441 	    &linux_shmid.shm_perm);
442 	if (error != 0)
443 		return (error);
444 
445 	linux_shmid.shm_segsz = linux_shmid64->shm_segsz;
446 	linux_shmid.shm_atime = linux_shmid64->shm_atime;
447 	linux_shmid.shm_dtime = linux_shmid64->shm_dtime;
448 	linux_shmid.shm_ctime = linux_shmid64->shm_ctime;
449 	linux_shmid.shm_cpid = linux_shmid64->shm_cpid;
450 	linux_shmid.shm_lpid = linux_shmid64->shm_lpid;
451 	linux_shmid.shm_nattch = linux_shmid64->shm_nattch;
452 
453 	/* Linux does not check overflow */
454 	if (linux_shmid.shm_segsz != linux_shmid64->shm_segsz ||
455 	    linux_shmid.shm_atime != linux_shmid64->shm_atime ||
456 	    linux_shmid.shm_dtime != linux_shmid64->shm_dtime ||
457 	    linux_shmid.shm_ctime != linux_shmid64->shm_ctime ||
458 	    linux_shmid.shm_cpid != linux_shmid64->shm_cpid ||
459 	    linux_shmid.shm_lpid != linux_shmid64->shm_lpid ||
460 	    linux_shmid.shm_nattch != linux_shmid64->shm_nattch)
461 		return (EOVERFLOW);
462 	return (copyout(&linux_shmid, uaddr, sizeof(linux_shmid)));
463 }
464 
465 static int
466 linux_shminfo_pushdown(l_int ver, struct l_shminfo64 *linux_shminfo64,
467     caddr_t uaddr)
468 {
469 	struct l_shminfo linux_shminfo;
470 
471 	if (ver == LINUX_IPC_64 || SV_CURPROC_FLAG(SV_LP64))
472 		return (copyout(linux_shminfo64, uaddr,
473 		    sizeof(*linux_shminfo64)));
474 
475 	bzero(&linux_shminfo, sizeof(linux_shminfo));
476 	linux_shminfo.shmmax = linux_shminfo64->shmmax;
477 	linux_shminfo.shmmin = linux_shminfo64->shmmin;
478 	linux_shminfo.shmmni = linux_shminfo64->shmmni;
479 	linux_shminfo.shmseg = linux_shminfo64->shmseg;
480 	linux_shminfo.shmall = linux_shminfo64->shmall;
481 	return (copyout(&linux_shminfo, uaddr, sizeof(linux_shminfo)));
482 }
483 
484 #if defined(__i386__) || (defined(__amd64__) && defined(COMPAT_LINUX32))
485 int
486 linux_semtimedop_time64(struct thread *td, struct linux_semtimedop_time64_args *args)
487 {
488 	struct timespec ts, *tsa;
489 	int error;
490 
491 	if (args->timeout) {
492 		error = linux_get_timespec64(&ts, args->timeout);
493 		if (error != 0)
494 			return (error);
495 		tsa = &ts;
496 	} else
497 		tsa = NULL;
498 
499 	return (kern_semop(td, args->semid, PTRIN(args->tsops),
500 	    args->nsops, tsa));
501 }
502 #endif /* __i386__) || (__amd64__ && COMPAT_LINUX32) */
503 
504 int
505 linux_semtimedop(struct thread *td, struct linux_semtimedop_args *args)
506 {
507 	struct timespec ts, *tsa;
508 	int error;
509 
510 	if (args->timeout) {
511 		error = linux_get_timespec(&ts, args->timeout);
512 		if (error != 0)
513 			return (error);
514 		tsa = &ts;
515 	} else
516 		tsa = NULL;
517 
518 	return (kern_semop(td, args->semid, PTRIN(args->tsops),
519 	    args->nsops, tsa));
520 }
521 
522 int
523 linux_semget(struct thread *td, struct linux_semget_args *args)
524 {
525 	struct semget_args bsd_args = {
526 		.key = args->key,
527 		.nsems = args->nsems,
528 		.semflg = args->semflg
529 	};
530 
531 	if (args->nsems < 0)
532 		return (EINVAL);
533 	return (sys_semget(td, &bsd_args));
534 }
535 
536 int
537 linux_semctl(struct thread *td, struct linux_semctl_args *args)
538 {
539 	struct l_semid64_ds linux_semid64;
540 	struct l_seminfo linux_seminfo;
541 	struct semid_ds semid;
542 	union semun semun;
543 	register_t rval;
544 	int cmd, error;
545 
546 	memset(&linux_seminfo, 0, sizeof(linux_seminfo));
547 	memset(&linux_semid64, 0, sizeof(linux_semid64));
548 
549 	switch (args->cmd & ~LINUX_IPC_64) {
550 	case LINUX_IPC_RMID:
551 		cmd = IPC_RMID;
552 		break;
553 	case LINUX_GETNCNT:
554 		cmd = GETNCNT;
555 		break;
556 	case LINUX_GETPID:
557 		cmd = GETPID;
558 		break;
559 	case LINUX_GETVAL:
560 		cmd = GETVAL;
561 		break;
562 	case LINUX_GETZCNT:
563 		cmd = GETZCNT;
564 		break;
565 	case LINUX_SETVAL:
566 		cmd = SETVAL;
567 		semun.val = args->arg.val;
568 		break;
569 	case LINUX_IPC_SET:
570 		cmd = IPC_SET;
571 		error = linux_semid_pullup(args->cmd & LINUX_IPC_64,
572 		    &linux_semid64, PTRIN(args->arg.buf));
573 		if (error != 0)
574 			return (error);
575 		linux_to_bsd_semid_ds(&linux_semid64, &semid);
576 		semun.buf = &semid;
577 		return (kern_semctl(td, args->semid, args->semnum, cmd, &semun,
578 		    td->td_retval));
579 	case LINUX_IPC_STAT:
580 		cmd = IPC_STAT;
581 		semun.buf = &semid;
582 		error = kern_semctl(td, args->semid, args->semnum, cmd, &semun,
583 		    &rval);
584 		if (error != 0)
585 			return (error);
586 		bsd_to_linux_semid_ds(&semid, &linux_semid64);
587 		return (linux_semid_pushdown(args->cmd & LINUX_IPC_64,
588 		    &linux_semid64, PTRIN(args->arg.buf)));
589 	case LINUX_SEM_STAT:
590 		cmd = SEM_STAT;
591 		semun.buf = &semid;
592 		error = kern_semctl(td, args->semid, args->semnum, cmd, &semun,
593 		    &rval);
594 		if (error != 0)
595 			return (error);
596 		bsd_to_linux_semid_ds(&semid, &linux_semid64);
597 		error = linux_semid_pushdown(args->cmd & LINUX_IPC_64,
598 		    &linux_semid64, PTRIN(args->arg.buf));
599 		if (error == 0)
600 			td->td_retval[0] = rval;
601 		return (error);
602 	case LINUX_IPC_INFO:
603 	case LINUX_SEM_INFO:
604 		bcopy(&seminfo, &linux_seminfo.semmni, sizeof(linux_seminfo) -
605 		    sizeof(linux_seminfo.semmap) );
606 		/*
607 		 * Linux does not use the semmap field but populates it with
608 		 * the defined value from SEMMAP, which really is redefined to
609 		 * SEMMNS, which they define as SEMMNI * SEMMSL.  Try to
610 		 * simulate this returning our dynamic semmns value.
611 		 */
612 		linux_seminfo.semmap = linux_seminfo.semmns;
613 /* XXX BSD equivalent?
614 #define used_semids 10
615 #define used_sems 10
616 		linux_seminfo.semusz = used_semids;
617 		linux_seminfo.semaem = used_sems;
618 */
619 		error = copyout(&linux_seminfo,
620 		    PTRIN(args->arg.buf), sizeof(linux_seminfo));
621 		if (error != 0)
622 			return (error);
623 		/*
624 		 * TODO: Linux return the last assigned id, not the semmni.
625 		 */
626 		td->td_retval[0] = seminfo.semmni;
627 		return (0);
628 	case LINUX_GETALL:
629 		cmd = GETALL;
630 		semun.array = PTRIN(args->arg.array);
631 		break;
632 	case LINUX_SETALL:
633 		cmd = SETALL;
634 		semun.array = PTRIN(args->arg.array);
635 		break;
636 	default:
637 		linux_msg(td, "ipc type %d is not implemented",
638 		  args->cmd & ~LINUX_IPC_64);
639 		return (EINVAL);
640 	}
641 	return (kern_semctl(td, args->semid, args->semnum, cmd, &semun,
642 	    td->td_retval));
643 }
644 
645 int
646 linux_msgsnd(struct thread *td, struct linux_msgsnd_args *args)
647 {
648 	const void *msgp;
649 	long mtype;
650 	l_long lmtype;
651 	int error;
652 
653 	if ((l_long)args->msgsz < 0 || args->msgsz > (l_long)msginfo.msgmax)
654 		return (EINVAL);
655 	msgp = PTRIN(args->msgp);
656 	if ((error = copyin(msgp, &lmtype, sizeof(lmtype))) != 0)
657 		return (error);
658 	mtype = (long)lmtype;
659 	return (kern_msgsnd(td, args->msqid,
660 	    (const char *)msgp + sizeof(lmtype),
661 	    args->msgsz, args->msgflg, mtype));
662 }
663 
664 int
665 linux_msgrcv(struct thread *td, struct linux_msgrcv_args *args)
666 {
667 	void *msgp;
668 	long mtype;
669 	l_long lmtype;
670 	int error;
671 
672 	if ((l_long)args->msgsz < 0 || args->msgsz > (l_long)msginfo.msgmax)
673 		return (EINVAL);
674 	msgp = PTRIN(args->msgp);
675 	if ((error = kern_msgrcv(td, args->msqid,
676 	    (char *)msgp + sizeof(lmtype), args->msgsz,
677 	    args->msgtyp, args->msgflg, &mtype)) != 0)
678 		return (error);
679 	lmtype = (l_long)mtype;
680 	return (copyout(&lmtype, msgp, sizeof(lmtype)));
681 }
682 
683 int
684 linux_msgget(struct thread *td, struct linux_msgget_args *args)
685 {
686 	struct msgget_args bsd_args = {
687 		.key = args->key,
688 		.msgflg = args->msgflg
689 	};
690 
691 	return (sys_msgget(td, &bsd_args));
692 }
693 
694 int
695 linux_msgctl(struct thread *td, struct linux_msgctl_args *args)
696 {
697 	int error, bsd_cmd;
698 	struct l_msqid64_ds linux_msqid64;
699 	struct msqid_ds bsd_msqid;
700 
701 	memset(&linux_msqid64, 0, sizeof(linux_msqid64));
702 
703 	bsd_cmd = args->cmd & ~LINUX_IPC_64;
704 	switch (bsd_cmd) {
705 	case LINUX_IPC_INFO:
706 	case LINUX_MSG_INFO: {
707 		struct l_msginfo linux_msginfo;
708 
709 		memset(&linux_msginfo, 0, sizeof(linux_msginfo));
710 		/*
711 		 * XXX MSG_INFO uses the same data structure but returns different
712 		 * dynamic counters in msgpool, msgmap, and msgtql fields.
713 		 */
714 		linux_msginfo.msgpool = (long)msginfo.msgmni *
715 		    (long)msginfo.msgmnb / 1024L;	/* XXX MSG_INFO. */
716 		linux_msginfo.msgmap = msginfo.msgmnb;	/* XXX MSG_INFO. */
717 		linux_msginfo.msgmax = msginfo.msgmax;
718 		linux_msginfo.msgmnb = msginfo.msgmnb;
719 		linux_msginfo.msgmni = msginfo.msgmni;
720 		linux_msginfo.msgssz = msginfo.msgssz;
721 		linux_msginfo.msgtql = msginfo.msgtql;	/* XXX MSG_INFO. */
722 		linux_msginfo.msgseg = msginfo.msgseg;
723 		error = copyout(&linux_msginfo, PTRIN(args->buf),
724 		    sizeof(linux_msginfo));
725 		if (error == 0)
726 		    td->td_retval[0] = msginfo.msgmni;	/* XXX */
727 
728 		return (error);
729 	}
730 
731 	/*
732 	 * TODO: implement this
733 	 * case LINUX_MSG_STAT:
734 	 */
735 	case LINUX_IPC_STAT:
736 		/* NOTHING */
737 		break;
738 
739 	case LINUX_IPC_SET:
740 		error = linux_msqid_pullup(args->cmd & LINUX_IPC_64,
741 		    &linux_msqid64, PTRIN(args->buf));
742 		if (error != 0)
743 			return (error);
744 		linux_to_bsd_msqid_ds(&linux_msqid64, &bsd_msqid);
745 		break;
746 
747 	case LINUX_IPC_RMID:
748 		/* NOTHING */
749 		break;
750 
751 	default:
752 		return (EINVAL);
753 		break;
754 	}
755 
756 	error = kern_msgctl(td, args->msqid, bsd_cmd, &bsd_msqid);
757 	if (error != 0) {
758 		if (bsd_cmd == LINUX_IPC_RMID && error == EACCES)
759 			return (EPERM);
760 		if (bsd_cmd != LINUX_IPC_RMID || error != EINVAL)
761 			return (error);
762 	}
763 
764 	if (bsd_cmd == LINUX_IPC_STAT) {
765 		bsd_to_linux_msqid_ds(&bsd_msqid, &linux_msqid64);
766 		return (linux_msqid_pushdown(args->cmd & LINUX_IPC_64,
767 		    &linux_msqid64, PTRIN(args->buf)));
768 	}
769 
770 	return (0);
771 }
772 
773 int
774 linux_shmat(struct thread *td, struct linux_shmat_args *args)
775 {
776 	struct shmat_args bsd_args = {
777 		.shmid = args->shmid,
778 		.shmaddr = PTRIN(args->shmaddr),
779 		.shmflg = args->shmflg
780 	};
781 
782 	return (sys_shmat(td, &bsd_args));
783 }
784 
785 int
786 linux_shmdt(struct thread *td, struct linux_shmdt_args *args)
787 {
788 	struct shmdt_args bsd_args = {
789 		.shmaddr = PTRIN(args->shmaddr)
790 	};
791 
792 	return (sys_shmdt(td, &bsd_args));
793 }
794 
795 int
796 linux_shmget(struct thread *td, struct linux_shmget_args *args)
797 {
798 	struct shmget_args bsd_args = {
799 		.key = args->key,
800 		.size = args->size,
801 		.shmflg = args->shmflg
802 	};
803 
804 	return (sys_shmget(td, &bsd_args));
805 }
806 
807 int
808 linux_shmctl(struct thread *td, struct linux_shmctl_args *args)
809 {
810 	struct l_shmid64_ds linux_shmid64;
811 	struct l_shminfo64 linux_shminfo64;
812 	struct l_shm_info linux_shm_info;
813 	struct shmid_ds bsd_shmid;
814 	int error;
815 
816 	memset(&linux_shm_info, 0, sizeof(linux_shm_info));
817 	memset(&linux_shmid64, 0, sizeof(linux_shmid64));
818 	memset(&linux_shminfo64, 0, sizeof(linux_shminfo64));
819 
820 	switch (args->cmd & ~LINUX_IPC_64) {
821 	case LINUX_IPC_INFO: {
822 		struct shminfo bsd_shminfo;
823 
824 		/* Perform shmctl wanting removed segments lookup */
825 		error = kern_shmctl(td, args->shmid, IPC_INFO,
826 		    (void *)&bsd_shminfo, NULL);
827 		if (error != 0)
828 			return (error);
829 
830 		bsd_to_linux_shminfo(&bsd_shminfo, &linux_shminfo64);
831 
832 		return (linux_shminfo_pushdown(args->cmd & LINUX_IPC_64,
833 		    &linux_shminfo64, PTRIN(args->buf)));
834 	}
835 
836 	case LINUX_SHM_INFO: {
837 		struct shm_info bsd_shm_info;
838 
839 		/* Perform shmctl wanting removed segments lookup */
840 		error = kern_shmctl(td, args->shmid, SHM_INFO,
841 		    (void *)&bsd_shm_info, NULL);
842 		if (error != 0)
843 			return (error);
844 
845 		bsd_to_linux_shm_info(&bsd_shm_info, &linux_shm_info);
846 
847 		return (copyout(&linux_shm_info, PTRIN(args->buf),
848 		    sizeof(struct l_shm_info)));
849 	}
850 
851 	case LINUX_IPC_STAT:
852 		/* Perform shmctl wanting removed segments lookup */
853 		error = kern_shmctl(td, args->shmid, IPC_STAT,
854 		    (void *)&bsd_shmid, NULL);
855 		if (error != 0)
856 			return (error);
857 
858 		bsd_to_linux_shmid_ds(&bsd_shmid, &linux_shmid64);
859 
860 		return (linux_shmid_pushdown(args->cmd & LINUX_IPC_64,
861 		    &linux_shmid64, PTRIN(args->buf)));
862 
863 	case LINUX_SHM_STAT:
864 		/* Perform shmctl wanting removed segments lookup */
865 		error = kern_shmctl(td, args->shmid, IPC_STAT,
866 		    (void *)&bsd_shmid, NULL);
867 		if (error != 0)
868 			return (error);
869 
870 		bsd_to_linux_shmid_ds(&bsd_shmid, &linux_shmid64);
871 
872 		return (linux_shmid_pushdown(args->cmd & LINUX_IPC_64,
873 		    &linux_shmid64, PTRIN(args->buf)));
874 
875 	case LINUX_IPC_SET:
876 		error = linux_shmid_pullup(args->cmd & LINUX_IPC_64,
877 		    &linux_shmid64, PTRIN(args->buf));
878 		if (error != 0)
879 			return (error);
880 
881 		linux_to_bsd_shmid_ds(&linux_shmid64, &bsd_shmid);
882 
883 		/* Perform shmctl wanting removed segments lookup */
884 		return (kern_shmctl(td, args->shmid, IPC_SET,
885 		    (void *)&bsd_shmid, NULL));
886 
887 	case LINUX_IPC_RMID: {
888 		void *buf;
889 
890 		if (args->buf == 0)
891 			buf = NULL;
892 		else {
893 			error = linux_shmid_pullup(args->cmd & LINUX_IPC_64,
894 			    &linux_shmid64, PTRIN(args->buf));
895 			if (error != 0)
896 				return (error);
897 			linux_to_bsd_shmid_ds(&linux_shmid64, &bsd_shmid);
898 			buf = (void *)&bsd_shmid;
899 		}
900 		return (kern_shmctl(td, args->shmid, IPC_RMID, buf, NULL));
901 	}
902 
903 	case LINUX_SHM_LOCK:
904 		/* FALLTHROUGH */
905 	case LINUX_SHM_UNLOCK:
906 		/* FALLTHROUGH */
907 	default:
908 		linux_msg(td, "ipc type %d not implemented",
909 		    args->cmd & ~LINUX_IPC_64);
910 		return (EINVAL);
911 	}
912 }
913 
914 MODULE_DEPEND(linux, sysvmsg, 1, 1, 1);
915 MODULE_DEPEND(linux, sysvsem, 1, 1, 1);
916 MODULE_DEPEND(linux, sysvshm, 1, 1, 1);
917