sysv_msg.c revision 220399
1/*-
2 * Implementation of SVID messages
3 *
4 * Author:  Daniel Boulet
5 *
6 * Copyright 1993 Daniel Boulet and RTMX Inc.
7 *
8 * This system call was implemented by Daniel Boulet under contract from RTMX.
9 *
10 * Redistribution and use in source forms, with and without modification,
11 * are permitted provided that this entire comment appears intact.
12 *
13 * Redistribution in binary form may occur without any restrictions.
14 * Obviously, it would be nice if you gave credit where credit is due
15 * but requiring it would be too onerous.
16 *
17 * This software is provided ``AS IS'' without any warranties of any kind.
18 */
19/*-
20 * Copyright (c) 2003-2005 McAfee, Inc.
21 * All rights reserved.
22 *
23 * This software was developed for the FreeBSD Project in part by McAfee
24 * Research, the Security Research Division of McAfee, Inc under DARPA/SPAWAR
25 * contract N66001-01-C-8035 ("CBOSS"), as part of the DARPA CHATS research
26 * program.
27 *
28 * Redistribution and use in source and binary forms, with or without
29 * modification, are permitted provided that the following conditions
30 * are met:
31 * 1. Redistributions of source code must retain the above copyright
32 *    notice, this list of conditions and the following disclaimer.
33 * 2. Redistributions in binary form must reproduce the above copyright
34 *    notice, this list of conditions and the following disclaimer in the
35 *    documentation and/or other materials provided with the distribution.
36 *
37 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND
38 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
39 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
40 * ARE DISCLAIMED.  IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
41 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
42 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
43 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
44 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
45 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
46 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
47 * SUCH DAMAGE.
48 */
49
50#include <sys/cdefs.h>
51__FBSDID("$FreeBSD: head/sys/kern/sysv_msg.c 220399 2011-04-06 19:08:50Z trasz $");
52
53#include "opt_compat.h"
54#include "opt_sysvipc.h"
55
56#include <sys/param.h>
57#include <sys/systm.h>
58#include <sys/sysproto.h>
59#include <sys/kernel.h>
60#include <sys/priv.h>
61#include <sys/proc.h>
62#include <sys/lock.h>
63#include <sys/mutex.h>
64#include <sys/module.h>
65#include <sys/msg.h>
66#include <sys/racct.h>
67#include <sys/syscall.h>
68#include <sys/syscallsubr.h>
69#include <sys/sysent.h>
70#include <sys/sysctl.h>
71#include <sys/malloc.h>
72#include <sys/jail.h>
73
74#include <security/mac/mac_framework.h>
75
76FEATURE(sysv_msg, "System V message queues support");
77
78static MALLOC_DEFINE(M_MSG, "msg", "SVID compatible message queues");
79
80static int msginit(void);
81static int msgunload(void);
82static int sysvmsg_modload(struct module *, int, void *);
83
84#ifdef MSG_DEBUG
85#define DPRINTF(a)	printf a
86#else
87#define DPRINTF(a)	(void)0
88#endif
89
90static void msg_freehdr(struct msg *msghdr);
91
92#ifndef MSGSSZ
93#define MSGSSZ	8		/* Each segment must be 2^N long */
94#endif
95#ifndef MSGSEG
96#define MSGSEG	2048		/* must be less than 32767 */
97#endif
98#define MSGMAX	(MSGSSZ*MSGSEG)
99#ifndef MSGMNB
100#define MSGMNB	2048		/* max # of bytes in a queue */
101#endif
102#ifndef MSGMNI
103#define MSGMNI	40
104#endif
105#ifndef MSGTQL
106#define MSGTQL	40
107#endif
108
109/*
110 * Based on the configuration parameters described in an SVR2 (yes, two)
111 * config(1m) man page.
112 *
113 * Each message is broken up and stored in segments that are msgssz bytes
114 * long.  For efficiency reasons, this should be a power of two.  Also,
115 * it doesn't make sense if it is less than 8 or greater than about 256.
116 * Consequently, msginit in kern/sysv_msg.c checks that msgssz is a power of
117 * two between 8 and 1024 inclusive (and panic's if it isn't).
118 */
119struct msginfo msginfo = {
120                MSGMAX,         /* max chars in a message */
121                MSGMNI,         /* # of message queue identifiers */
122                MSGMNB,         /* max chars in a queue */
123                MSGTQL,         /* max messages in system */
124                MSGSSZ,         /* size of a message segment */
125                		/* (must be small power of 2 greater than 4) */
126                MSGSEG          /* number of message segments */
127};
128
129/*
130 * macros to convert between msqid_ds's and msqid's.
131 * (specific to this implementation)
132 */
133#define MSQID(ix,ds)	((ix) & 0xffff | (((ds).msg_perm.seq << 16) & 0xffff0000))
134#define MSQID_IX(id)	((id) & 0xffff)
135#define MSQID_SEQ(id)	(((id) >> 16) & 0xffff)
136
137/*
138 * The rest of this file is specific to this particular implementation.
139 */
140
141struct msgmap {
142	short	next;		/* next segment in buffer */
143    				/* -1 -> available */
144    				/* 0..(MSGSEG-1) -> index of next segment */
145};
146
147#define MSG_LOCKED	01000	/* Is this msqid_ds locked? */
148
149static int nfree_msgmaps;	/* # of free map entries */
150static short free_msgmaps;	/* head of linked list of free map entries */
151static struct msg *free_msghdrs;/* list of free msg headers */
152static char *msgpool;		/* MSGMAX byte long msg buffer pool */
153static struct msgmap *msgmaps;	/* MSGSEG msgmap structures */
154static struct msg *msghdrs;	/* MSGTQL msg headers */
155static struct msqid_kernel *msqids;	/* MSGMNI msqid_kernel struct's */
156static struct mtx msq_mtx;	/* global mutex for message queues. */
157
158static struct syscall_helper_data msg_syscalls[] = {
159	SYSCALL_INIT_HELPER(msgctl),
160	SYSCALL_INIT_HELPER(msgget),
161	SYSCALL_INIT_HELPER(msgsnd),
162	SYSCALL_INIT_HELPER(msgrcv),
163#if defined(COMPAT_FREEBSD4) || defined(COMPAT_FREEBSD5) || \
164    defined(COMPAT_FREEBSD6) || defined(COMPAT_FREEBSD7)
165	SYSCALL_INIT_HELPER(msgsys),
166	SYSCALL_INIT_HELPER(freebsd7_msgctl),
167#endif
168	SYSCALL_INIT_LAST
169};
170
171#ifdef COMPAT_FREEBSD32
172#include <compat/freebsd32/freebsd32.h>
173#include <compat/freebsd32/freebsd32_ipc.h>
174#include <compat/freebsd32/freebsd32_proto.h>
175#include <compat/freebsd32/freebsd32_signal.h>
176#include <compat/freebsd32/freebsd32_syscall.h>
177#include <compat/freebsd32/freebsd32_util.h>
178
179static struct syscall_helper_data msg32_syscalls[] = {
180	SYSCALL32_INIT_HELPER(freebsd32_msgctl),
181	SYSCALL32_INIT_HELPER(freebsd32_msgsnd),
182	SYSCALL32_INIT_HELPER(freebsd32_msgrcv),
183	SYSCALL32_INIT_HELPER(msgget),
184	SYSCALL32_INIT_HELPER(freebsd32_msgsys),
185#if defined(COMPAT_FREEBSD4) || defined(COMPAT_FREEBSD5) || \
186    defined(COMPAT_FREEBSD6) || defined(COMPAT_FREEBSD7)
187	SYSCALL32_INIT_HELPER(freebsd7_freebsd32_msgctl),
188#endif
189	SYSCALL_INIT_LAST
190};
191#endif
192
193static int
194msginit()
195{
196	int i, error;
197
198	TUNABLE_INT_FETCH("kern.ipc.msgseg", &msginfo.msgseg);
199	TUNABLE_INT_FETCH("kern.ipc.msgssz", &msginfo.msgssz);
200	msginfo.msgmax = msginfo.msgseg * msginfo.msgssz;
201	TUNABLE_INT_FETCH("kern.ipc.msgmni", &msginfo.msgmni);
202	TUNABLE_INT_FETCH("kern.ipc.msgmnb", &msginfo.msgmnb);
203	TUNABLE_INT_FETCH("kern.ipc.msgtql", &msginfo.msgtql);
204
205	msgpool = malloc(msginfo.msgmax, M_MSG, M_WAITOK);
206	msgmaps = malloc(sizeof(struct msgmap) * msginfo.msgseg, M_MSG, M_WAITOK);
207	msghdrs = malloc(sizeof(struct msg) * msginfo.msgtql, M_MSG, M_WAITOK);
208	msqids = malloc(sizeof(struct msqid_kernel) * msginfo.msgmni, M_MSG,
209	    M_WAITOK);
210
211	/*
212	 * msginfo.msgssz should be a power of two for efficiency reasons.
213	 * It is also pretty silly if msginfo.msgssz is less than 8
214	 * or greater than about 256 so ...
215	 */
216
217	i = 8;
218	while (i < 1024 && i != msginfo.msgssz)
219		i <<= 1;
220    	if (i != msginfo.msgssz) {
221		DPRINTF(("msginfo.msgssz=%d (0x%x)\n", msginfo.msgssz,
222		    msginfo.msgssz));
223		panic("msginfo.msgssz not a small power of 2");
224	}
225
226	if (msginfo.msgseg > 32767) {
227		DPRINTF(("msginfo.msgseg=%d\n", msginfo.msgseg));
228		panic("msginfo.msgseg > 32767");
229	}
230
231	for (i = 0; i < msginfo.msgseg; i++) {
232		if (i > 0)
233			msgmaps[i-1].next = i;
234		msgmaps[i].next = -1;	/* implies entry is available */
235	}
236	free_msgmaps = 0;
237	nfree_msgmaps = msginfo.msgseg;
238
239	for (i = 0; i < msginfo.msgtql; i++) {
240		msghdrs[i].msg_type = 0;
241		if (i > 0)
242			msghdrs[i-1].msg_next = &msghdrs[i];
243		msghdrs[i].msg_next = NULL;
244#ifdef MAC
245		mac_sysvmsg_init(&msghdrs[i]);
246#endif
247    	}
248	free_msghdrs = &msghdrs[0];
249
250	for (i = 0; i < msginfo.msgmni; i++) {
251		msqids[i].u.msg_qbytes = 0;	/* implies entry is available */
252		msqids[i].u.msg_perm.seq = 0;	/* reset to a known value */
253		msqids[i].u.msg_perm.mode = 0;
254#ifdef MAC
255		mac_sysvmsq_init(&msqids[i]);
256#endif
257	}
258	mtx_init(&msq_mtx, "msq", NULL, MTX_DEF);
259
260	error = syscall_helper_register(msg_syscalls);
261	if (error != 0)
262		return (error);
263#ifdef COMPAT_FREEBSD32
264	error = syscall32_helper_register(msg32_syscalls);
265	if (error != 0)
266		return (error);
267#endif
268	return (0);
269}
270
271static int
272msgunload()
273{
274	struct msqid_kernel *msqkptr;
275	int msqid;
276#ifdef MAC
277	int i;
278#endif
279
280	syscall_helper_unregister(msg_syscalls);
281#ifdef COMPAT_FREEBSD32
282	syscall32_helper_unregister(msg32_syscalls);
283#endif
284
285	for (msqid = 0; msqid < msginfo.msgmni; msqid++) {
286		/*
287		 * Look for an unallocated and unlocked msqid_ds.
288		 * msqid_ds's can be locked by msgsnd or msgrcv while
289		 * they are copying the message in/out.  We can't
290		 * re-use the entry until they release it.
291		 */
292		msqkptr = &msqids[msqid];
293		if (msqkptr->u.msg_qbytes != 0 ||
294		    (msqkptr->u.msg_perm.mode & MSG_LOCKED) != 0)
295			break;
296	}
297	if (msqid != msginfo.msgmni)
298		return (EBUSY);
299
300#ifdef MAC
301	for (i = 0; i < msginfo.msgtql; i++)
302		mac_sysvmsg_destroy(&msghdrs[i]);
303	for (msqid = 0; msqid < msginfo.msgmni; msqid++)
304		mac_sysvmsq_destroy(&msqids[msqid]);
305#endif
306	free(msgpool, M_MSG);
307	free(msgmaps, M_MSG);
308	free(msghdrs, M_MSG);
309	free(msqids, M_MSG);
310	mtx_destroy(&msq_mtx);
311	return (0);
312}
313
314
315static int
316sysvmsg_modload(struct module *module, int cmd, void *arg)
317{
318	int error = 0;
319
320	switch (cmd) {
321	case MOD_LOAD:
322		error = msginit();
323		if (error != 0)
324			msgunload();
325		break;
326	case MOD_UNLOAD:
327		error = msgunload();
328		break;
329	case MOD_SHUTDOWN:
330		break;
331	default:
332		error = EINVAL;
333		break;
334	}
335	return (error);
336}
337
338static moduledata_t sysvmsg_mod = {
339	"sysvmsg",
340	&sysvmsg_modload,
341	NULL
342};
343
344DECLARE_MODULE(sysvmsg, sysvmsg_mod, SI_SUB_SYSV_MSG, SI_ORDER_FIRST);
345MODULE_VERSION(sysvmsg, 1);
346
347static void
348msg_freehdr(msghdr)
349	struct msg *msghdr;
350{
351	while (msghdr->msg_ts > 0) {
352		short next;
353		if (msghdr->msg_spot < 0 || msghdr->msg_spot >= msginfo.msgseg)
354			panic("msghdr->msg_spot out of range");
355		next = msgmaps[msghdr->msg_spot].next;
356		msgmaps[msghdr->msg_spot].next = free_msgmaps;
357		free_msgmaps = msghdr->msg_spot;
358		nfree_msgmaps++;
359		msghdr->msg_spot = next;
360		if (msghdr->msg_ts >= msginfo.msgssz)
361			msghdr->msg_ts -= msginfo.msgssz;
362		else
363			msghdr->msg_ts = 0;
364	}
365	if (msghdr->msg_spot != -1)
366		panic("msghdr->msg_spot != -1");
367	msghdr->msg_next = free_msghdrs;
368	free_msghdrs = msghdr;
369#ifdef MAC
370	mac_sysvmsg_cleanup(msghdr);
371#endif
372}
373
374#ifndef _SYS_SYSPROTO_H_
375struct msgctl_args {
376	int	msqid;
377	int	cmd;
378	struct	msqid_ds *buf;
379};
380#endif
381int
382msgctl(td, uap)
383	struct thread *td;
384	register struct msgctl_args *uap;
385{
386	int msqid = uap->msqid;
387	int cmd = uap->cmd;
388	struct msqid_ds msqbuf;
389	int error;
390
391	DPRINTF(("call to msgctl(%d, %d, %p)\n", msqid, cmd, uap->buf));
392	if (cmd == IPC_SET &&
393	    (error = copyin(uap->buf, &msqbuf, sizeof(msqbuf))) != 0)
394		return (error);
395	error = kern_msgctl(td, msqid, cmd, &msqbuf);
396	if (cmd == IPC_STAT && error == 0)
397		error = copyout(&msqbuf, uap->buf, sizeof(struct msqid_ds));
398	return (error);
399}
400
401int
402kern_msgctl(td, msqid, cmd, msqbuf)
403	struct thread *td;
404	int msqid;
405	int cmd;
406	struct msqid_ds *msqbuf;
407{
408	int rval, error, msqix;
409	register struct msqid_kernel *msqkptr;
410
411	if (!prison_allow(td->td_ucred, PR_ALLOW_SYSVIPC))
412		return (ENOSYS);
413
414	msqix = IPCID_TO_IX(msqid);
415
416	if (msqix < 0 || msqix >= msginfo.msgmni) {
417		DPRINTF(("msqid (%d) out of range (0<=msqid<%d)\n", msqix,
418		    msginfo.msgmni));
419		return (EINVAL);
420	}
421
422	msqkptr = &msqids[msqix];
423
424	mtx_lock(&msq_mtx);
425	if (msqkptr->u.msg_qbytes == 0) {
426		DPRINTF(("no such msqid\n"));
427		error = EINVAL;
428		goto done2;
429	}
430	if (msqkptr->u.msg_perm.seq != IPCID_TO_SEQ(msqid)) {
431		DPRINTF(("wrong sequence number\n"));
432		error = EINVAL;
433		goto done2;
434	}
435#ifdef MAC
436	error = mac_sysvmsq_check_msqctl(td->td_ucred, msqkptr, cmd);
437	if (error != 0)
438		goto done2;
439#endif
440
441	error = 0;
442	rval = 0;
443
444	switch (cmd) {
445
446	case IPC_RMID:
447	{
448		struct msg *msghdr;
449		if ((error = ipcperm(td, &msqkptr->u.msg_perm, IPC_M)))
450			goto done2;
451
452#ifdef MAC
453		/*
454		 * Check that the thread has MAC access permissions to
455		 * individual msghdrs.  Note: We need to do this in a
456		 * separate loop because the actual loop alters the
457		 * msq/msghdr info as it progresses, and there is no going
458		 * back if half the way through we discover that the
459		 * thread cannot free a certain msghdr.  The msq will get
460		 * into an inconsistent state.
461		 */
462		for (msghdr = msqkptr->u.msg_first; msghdr != NULL;
463		    msghdr = msghdr->msg_next) {
464			error = mac_sysvmsq_check_msgrmid(td->td_ucred, msghdr);
465			if (error != 0)
466				goto done2;
467		}
468#endif
469
470		racct_sub_cred(msqkptr->cred, RACCT_NMSGQ, 1);
471		racct_sub_cred(msqkptr->cred, RACCT_MSGQQUEUED, msqkptr->u.msg_qnum);
472		racct_sub_cred(msqkptr->cred, RACCT_MSGQSIZE, msqkptr->u.msg_cbytes);
473		crfree(msqkptr->cred);
474		msqkptr->cred = NULL;
475
476		/* Free the message headers */
477		msghdr = msqkptr->u.msg_first;
478		while (msghdr != NULL) {
479			struct msg *msghdr_tmp;
480
481			/* Free the segments of each message */
482			msqkptr->u.msg_cbytes -= msghdr->msg_ts;
483			msqkptr->u.msg_qnum--;
484			msghdr_tmp = msghdr;
485			msghdr = msghdr->msg_next;
486			msg_freehdr(msghdr_tmp);
487		}
488
489		if (msqkptr->u.msg_cbytes != 0)
490			panic("msg_cbytes is screwed up");
491		if (msqkptr->u.msg_qnum != 0)
492			panic("msg_qnum is screwed up");
493
494		msqkptr->u.msg_qbytes = 0;	/* Mark it as free */
495
496#ifdef MAC
497		mac_sysvmsq_cleanup(msqkptr);
498#endif
499
500		wakeup(msqkptr);
501	}
502
503		break;
504
505	case IPC_SET:
506		if ((error = ipcperm(td, &msqkptr->u.msg_perm, IPC_M)))
507			goto done2;
508		if (msqbuf->msg_qbytes > msqkptr->u.msg_qbytes) {
509			error = priv_check(td, PRIV_IPC_MSGSIZE);
510			if (error)
511				goto done2;
512		}
513		if (msqbuf->msg_qbytes > msginfo.msgmnb) {
514			DPRINTF(("can't increase msg_qbytes beyond %d"
515			    "(truncating)\n", msginfo.msgmnb));
516			msqbuf->msg_qbytes = msginfo.msgmnb;	/* silently restrict qbytes to system limit */
517		}
518		if (msqbuf->msg_qbytes == 0) {
519			DPRINTF(("can't reduce msg_qbytes to 0\n"));
520			error = EINVAL;		/* non-standard errno! */
521			goto done2;
522		}
523		msqkptr->u.msg_perm.uid = msqbuf->msg_perm.uid;	/* change the owner */
524		msqkptr->u.msg_perm.gid = msqbuf->msg_perm.gid;	/* change the owner */
525		msqkptr->u.msg_perm.mode = (msqkptr->u.msg_perm.mode & ~0777) |
526		    (msqbuf->msg_perm.mode & 0777);
527		msqkptr->u.msg_qbytes = msqbuf->msg_qbytes;
528		msqkptr->u.msg_ctime = time_second;
529		break;
530
531	case IPC_STAT:
532		if ((error = ipcperm(td, &msqkptr->u.msg_perm, IPC_R))) {
533			DPRINTF(("requester doesn't have read access\n"));
534			goto done2;
535		}
536		*msqbuf = msqkptr->u;
537		break;
538
539	default:
540		DPRINTF(("invalid command %d\n", cmd));
541		error = EINVAL;
542		goto done2;
543	}
544
545	if (error == 0)
546		td->td_retval[0] = rval;
547done2:
548	mtx_unlock(&msq_mtx);
549	return (error);
550}
551
552#ifndef _SYS_SYSPROTO_H_
553struct msgget_args {
554	key_t	key;
555	int	msgflg;
556};
557#endif
558int
559msgget(td, uap)
560	struct thread *td;
561	register struct msgget_args *uap;
562{
563	int msqid, error = 0;
564	int key = uap->key;
565	int msgflg = uap->msgflg;
566	struct ucred *cred = td->td_ucred;
567	register struct msqid_kernel *msqkptr = NULL;
568
569	DPRINTF(("msgget(0x%x, 0%o)\n", key, msgflg));
570
571	if (!prison_allow(td->td_ucred, PR_ALLOW_SYSVIPC))
572		return (ENOSYS);
573
574	mtx_lock(&msq_mtx);
575	if (key != IPC_PRIVATE) {
576		for (msqid = 0; msqid < msginfo.msgmni; msqid++) {
577			msqkptr = &msqids[msqid];
578			if (msqkptr->u.msg_qbytes != 0 &&
579			    msqkptr->u.msg_perm.key == key)
580				break;
581		}
582		if (msqid < msginfo.msgmni) {
583			DPRINTF(("found public key\n"));
584			if ((msgflg & IPC_CREAT) && (msgflg & IPC_EXCL)) {
585				DPRINTF(("not exclusive\n"));
586				error = EEXIST;
587				goto done2;
588			}
589			if ((error = ipcperm(td, &msqkptr->u.msg_perm,
590			    msgflg & 0700))) {
591				DPRINTF(("requester doesn't have 0%o access\n",
592				    msgflg & 0700));
593				goto done2;
594			}
595#ifdef MAC
596			error = mac_sysvmsq_check_msqget(cred, msqkptr);
597			if (error != 0)
598				goto done2;
599#endif
600			goto found;
601		}
602	}
603
604	DPRINTF(("need to allocate the msqid_ds\n"));
605	if (key == IPC_PRIVATE || (msgflg & IPC_CREAT)) {
606		for (msqid = 0; msqid < msginfo.msgmni; msqid++) {
607			/*
608			 * Look for an unallocated and unlocked msqid_ds.
609			 * msqid_ds's can be locked by msgsnd or msgrcv while
610			 * they are copying the message in/out.  We can't
611			 * re-use the entry until they release it.
612			 */
613			msqkptr = &msqids[msqid];
614			if (msqkptr->u.msg_qbytes == 0 &&
615			    (msqkptr->u.msg_perm.mode & MSG_LOCKED) == 0)
616				break;
617		}
618		if (msqid == msginfo.msgmni) {
619			DPRINTF(("no more msqid_ds's available\n"));
620			error = ENOSPC;
621			goto done2;
622		}
623		PROC_LOCK(td->td_proc);
624		error = racct_add(td->td_proc, RACCT_NMSGQ, 1);
625		PROC_UNLOCK(td->td_proc);
626		if (error != 0) {
627			error = ENOSPC;
628			goto done2;
629		}
630		DPRINTF(("msqid %d is available\n", msqid));
631		msqkptr->u.msg_perm.key = key;
632		msqkptr->u.msg_perm.cuid = cred->cr_uid;
633		msqkptr->u.msg_perm.uid = cred->cr_uid;
634		msqkptr->u.msg_perm.cgid = cred->cr_gid;
635		msqkptr->u.msg_perm.gid = cred->cr_gid;
636		msqkptr->u.msg_perm.mode = (msgflg & 0777);
637		msqkptr->cred = crhold(cred);
638		/* Make sure that the returned msqid is unique */
639		msqkptr->u.msg_perm.seq = (msqkptr->u.msg_perm.seq + 1) & 0x7fff;
640		msqkptr->u.msg_first = NULL;
641		msqkptr->u.msg_last = NULL;
642		msqkptr->u.msg_cbytes = 0;
643		msqkptr->u.msg_qnum = 0;
644		msqkptr->u.msg_qbytes = msginfo.msgmnb;
645		msqkptr->u.msg_lspid = 0;
646		msqkptr->u.msg_lrpid = 0;
647		msqkptr->u.msg_stime = 0;
648		msqkptr->u.msg_rtime = 0;
649		msqkptr->u.msg_ctime = time_second;
650#ifdef MAC
651		mac_sysvmsq_create(cred, msqkptr);
652#endif
653	} else {
654		DPRINTF(("didn't find it and wasn't asked to create it\n"));
655		error = ENOENT;
656		goto done2;
657	}
658
659found:
660	/* Construct the unique msqid */
661	td->td_retval[0] = IXSEQ_TO_IPCID(msqid, msqkptr->u.msg_perm);
662done2:
663	mtx_unlock(&msq_mtx);
664	return (error);
665}
666
667#ifndef _SYS_SYSPROTO_H_
668struct msgsnd_args {
669	int	msqid;
670	const void	*msgp;
671	size_t	msgsz;
672	int	msgflg;
673};
674#endif
675int
676kern_msgsnd(td, msqid, msgp, msgsz, msgflg, mtype)
677	struct thread *td;
678	int msqid;
679	const void *msgp;	/* XXX msgp is actually mtext. */
680	size_t msgsz;
681	int msgflg;
682	long mtype;
683{
684	int msqix, segs_needed, error = 0;
685	register struct msqid_kernel *msqkptr;
686	register struct msg *msghdr;
687	short next;
688	size_t saved_msgsz;
689
690	if (!prison_allow(td->td_ucred, PR_ALLOW_SYSVIPC))
691		return (ENOSYS);
692
693	mtx_lock(&msq_mtx);
694	msqix = IPCID_TO_IX(msqid);
695
696	if (msqix < 0 || msqix >= msginfo.msgmni) {
697		DPRINTF(("msqid (%d) out of range (0<=msqid<%d)\n", msqix,
698		    msginfo.msgmni));
699		error = EINVAL;
700		goto done2;
701	}
702
703	msqkptr = &msqids[msqix];
704	if (msqkptr->u.msg_qbytes == 0) {
705		DPRINTF(("no such message queue id\n"));
706		error = EINVAL;
707		goto done2;
708	}
709	if (msqkptr->u.msg_perm.seq != IPCID_TO_SEQ(msqid)) {
710		DPRINTF(("wrong sequence number\n"));
711		error = EINVAL;
712		goto done2;
713	}
714
715	if ((error = ipcperm(td, &msqkptr->u.msg_perm, IPC_W))) {
716		DPRINTF(("requester doesn't have write access\n"));
717		goto done2;
718	}
719
720#ifdef MAC
721	error = mac_sysvmsq_check_msqsnd(td->td_ucred, msqkptr);
722	if (error != 0)
723		goto done2;
724#endif
725
726	PROC_LOCK(td->td_proc);
727	if (racct_add(td->td_proc, RACCT_MSGQQUEUED, 1)) {
728		PROC_UNLOCK(td->td_proc);
729		error = EAGAIN;
730		goto done2;
731	}
732	saved_msgsz = msgsz;
733	if (racct_add(td->td_proc, RACCT_MSGQSIZE, msgsz)) {
734		racct_sub(td->td_proc, RACCT_MSGQQUEUED, 1);
735		PROC_UNLOCK(td->td_proc);
736		error = EAGAIN;
737		goto done2;
738	}
739	PROC_UNLOCK(td->td_proc);
740
741	segs_needed = (msgsz + msginfo.msgssz - 1) / msginfo.msgssz;
742	DPRINTF(("msgsz=%zu, msgssz=%d, segs_needed=%d\n", msgsz,
743	    msginfo.msgssz, segs_needed));
744	for (;;) {
745		int need_more_resources = 0;
746
747		/*
748		 * check msgsz
749		 * (inside this loop in case msg_qbytes changes while we sleep)
750		 */
751
752		if (msgsz > msqkptr->u.msg_qbytes) {
753			DPRINTF(("msgsz > msqkptr->u.msg_qbytes\n"));
754			error = EINVAL;
755			goto done3;
756		}
757
758		if (msqkptr->u.msg_perm.mode & MSG_LOCKED) {
759			DPRINTF(("msqid is locked\n"));
760			need_more_resources = 1;
761		}
762		if (msgsz + msqkptr->u.msg_cbytes > msqkptr->u.msg_qbytes) {
763			DPRINTF(("msgsz + msg_cbytes > msg_qbytes\n"));
764			need_more_resources = 1;
765		}
766		if (segs_needed > nfree_msgmaps) {
767			DPRINTF(("segs_needed > nfree_msgmaps\n"));
768			need_more_resources = 1;
769		}
770		if (free_msghdrs == NULL) {
771			DPRINTF(("no more msghdrs\n"));
772			need_more_resources = 1;
773		}
774
775		if (need_more_resources) {
776			int we_own_it;
777
778			if ((msgflg & IPC_NOWAIT) != 0) {
779				DPRINTF(("need more resources but caller "
780				    "doesn't want to wait\n"));
781				error = EAGAIN;
782				goto done3;
783			}
784
785			if ((msqkptr->u.msg_perm.mode & MSG_LOCKED) != 0) {
786				DPRINTF(("we don't own the msqid_ds\n"));
787				we_own_it = 0;
788			} else {
789				/* Force later arrivals to wait for our
790				   request */
791				DPRINTF(("we own the msqid_ds\n"));
792				msqkptr->u.msg_perm.mode |= MSG_LOCKED;
793				we_own_it = 1;
794			}
795			DPRINTF(("msgsnd:  goodnight\n"));
796			error = msleep(msqkptr, &msq_mtx, (PZERO - 4) | PCATCH,
797			    "msgsnd", hz);
798			DPRINTF(("msgsnd:  good morning, error=%d\n", error));
799			if (we_own_it)
800				msqkptr->u.msg_perm.mode &= ~MSG_LOCKED;
801			if (error == EWOULDBLOCK) {
802				DPRINTF(("msgsnd:  timed out\n"));
803				continue;
804			}
805			if (error != 0) {
806				DPRINTF(("msgsnd:  interrupted system call\n"));
807				error = EINTR;
808				goto done3;
809			}
810
811			/*
812			 * Make sure that the msq queue still exists
813			 */
814
815			if (msqkptr->u.msg_qbytes == 0) {
816				DPRINTF(("msqid deleted\n"));
817				error = EIDRM;
818				goto done3;
819			}
820
821		} else {
822			DPRINTF(("got all the resources that we need\n"));
823			break;
824		}
825	}
826
827	/*
828	 * We have the resources that we need.
829	 * Make sure!
830	 */
831
832	if (msqkptr->u.msg_perm.mode & MSG_LOCKED)
833		panic("msg_perm.mode & MSG_LOCKED");
834	if (segs_needed > nfree_msgmaps)
835		panic("segs_needed > nfree_msgmaps");
836	if (msgsz + msqkptr->u.msg_cbytes > msqkptr->u.msg_qbytes)
837		panic("msgsz + msg_cbytes > msg_qbytes");
838	if (free_msghdrs == NULL)
839		panic("no more msghdrs");
840
841	/*
842	 * Re-lock the msqid_ds in case we page-fault when copying in the
843	 * message
844	 */
845
846	if ((msqkptr->u.msg_perm.mode & MSG_LOCKED) != 0)
847		panic("msqid_ds is already locked");
848	msqkptr->u.msg_perm.mode |= MSG_LOCKED;
849
850	/*
851	 * Allocate a message header
852	 */
853
854	msghdr = free_msghdrs;
855	free_msghdrs = msghdr->msg_next;
856	msghdr->msg_spot = -1;
857	msghdr->msg_ts = msgsz;
858	msghdr->msg_type = mtype;
859#ifdef MAC
860	/*
861	 * XXXMAC: Should the mac_sysvmsq_check_msgmsq check follow here
862	 * immediately?  Or, should it be checked just before the msg is
863	 * enqueued in the msgq (as it is done now)?
864	 */
865	mac_sysvmsg_create(td->td_ucred, msqkptr, msghdr);
866#endif
867
868	/*
869	 * Allocate space for the message
870	 */
871
872	while (segs_needed > 0) {
873		if (nfree_msgmaps <= 0)
874			panic("not enough msgmaps");
875		if (free_msgmaps == -1)
876			panic("nil free_msgmaps");
877		next = free_msgmaps;
878		if (next <= -1)
879			panic("next too low #1");
880		if (next >= msginfo.msgseg)
881			panic("next out of range #1");
882		DPRINTF(("allocating segment %d to message\n", next));
883		free_msgmaps = msgmaps[next].next;
884		nfree_msgmaps--;
885		msgmaps[next].next = msghdr->msg_spot;
886		msghdr->msg_spot = next;
887		segs_needed--;
888	}
889
890	/*
891	 * Validate the message type
892	 */
893
894	if (msghdr->msg_type < 1) {
895		msg_freehdr(msghdr);
896		msqkptr->u.msg_perm.mode &= ~MSG_LOCKED;
897		wakeup(msqkptr);
898		DPRINTF(("mtype (%ld) < 1\n", msghdr->msg_type));
899		error = EINVAL;
900		goto done3;
901	}
902
903	/*
904	 * Copy in the message body
905	 */
906
907	next = msghdr->msg_spot;
908	while (msgsz > 0) {
909		size_t tlen;
910		if (msgsz > msginfo.msgssz)
911			tlen = msginfo.msgssz;
912		else
913			tlen = msgsz;
914		if (next <= -1)
915			panic("next too low #2");
916		if (next >= msginfo.msgseg)
917			panic("next out of range #2");
918		mtx_unlock(&msq_mtx);
919		if ((error = copyin(msgp, &msgpool[next * msginfo.msgssz],
920		    tlen)) != 0) {
921			mtx_lock(&msq_mtx);
922			DPRINTF(("error %d copying in message segment\n",
923			    error));
924			msg_freehdr(msghdr);
925			msqkptr->u.msg_perm.mode &= ~MSG_LOCKED;
926			wakeup(msqkptr);
927			goto done3;
928		}
929		mtx_lock(&msq_mtx);
930		msgsz -= tlen;
931		msgp = (const char *)msgp + tlen;
932		next = msgmaps[next].next;
933	}
934	if (next != -1)
935		panic("didn't use all the msg segments");
936
937	/*
938	 * We've got the message.  Unlock the msqid_ds.
939	 */
940
941	msqkptr->u.msg_perm.mode &= ~MSG_LOCKED;
942
943	/*
944	 * Make sure that the msqid_ds is still allocated.
945	 */
946
947	if (msqkptr->u.msg_qbytes == 0) {
948		msg_freehdr(msghdr);
949		wakeup(msqkptr);
950		error = EIDRM;
951		goto done3;
952	}
953
954#ifdef MAC
955	/*
956	 * Note: Since the task/thread allocates the msghdr and usually
957	 * primes it with its own MAC label, for a majority of policies, it
958	 * won't be necessary to check whether the msghdr has access
959	 * permissions to the msgq.  The mac_sysvmsq_check_msqsnd check would
960	 * suffice in that case.  However, this hook may be required where
961	 * individual policies derive a non-identical label for the msghdr
962	 * from the current thread label and may want to check the msghdr
963	 * enqueue permissions, along with read/write permissions to the
964	 * msgq.
965	 */
966	error = mac_sysvmsq_check_msgmsq(td->td_ucred, msghdr, msqkptr);
967	if (error != 0) {
968		msg_freehdr(msghdr);
969		wakeup(msqkptr);
970		goto done3;
971	}
972#endif
973
974	/*
975	 * Put the message into the queue
976	 */
977	if (msqkptr->u.msg_first == NULL) {
978		msqkptr->u.msg_first = msghdr;
979		msqkptr->u.msg_last = msghdr;
980	} else {
981		msqkptr->u.msg_last->msg_next = msghdr;
982		msqkptr->u.msg_last = msghdr;
983	}
984	msqkptr->u.msg_last->msg_next = NULL;
985
986	msqkptr->u.msg_cbytes += msghdr->msg_ts;
987	msqkptr->u.msg_qnum++;
988	msqkptr->u.msg_lspid = td->td_proc->p_pid;
989	msqkptr->u.msg_stime = time_second;
990
991	wakeup(msqkptr);
992	td->td_retval[0] = 0;
993done3:
994	if (error != 0) {
995		PROC_LOCK(td->td_proc);
996		racct_sub(td->td_proc, RACCT_MSGQQUEUED, 1);
997		racct_sub(td->td_proc, RACCT_MSGQSIZE, saved_msgsz);
998		PROC_UNLOCK(td->td_proc);
999	}
1000done2:
1001	mtx_unlock(&msq_mtx);
1002	return (error);
1003}
1004
1005int
1006msgsnd(td, uap)
1007	struct thread *td;
1008	register struct msgsnd_args *uap;
1009{
1010	int error;
1011	long mtype;
1012
1013	DPRINTF(("call to msgsnd(%d, %p, %zu, %d)\n", uap->msqid, uap->msgp,
1014	    uap->msgsz, uap->msgflg));
1015
1016	if ((error = copyin(uap->msgp, &mtype, sizeof(mtype))) != 0) {
1017		DPRINTF(("error %d copying the message type\n", error));
1018		return (error);
1019	}
1020	return (kern_msgsnd(td, uap->msqid,
1021	    (const char *)uap->msgp + sizeof(mtype),
1022	    uap->msgsz, uap->msgflg, mtype));
1023}
1024
1025#ifndef _SYS_SYSPROTO_H_
1026struct msgrcv_args {
1027	int	msqid;
1028	void	*msgp;
1029	size_t	msgsz;
1030	long	msgtyp;
1031	int	msgflg;
1032};
1033#endif
1034int
1035kern_msgrcv(td, msqid, msgp, msgsz, msgtyp, msgflg, mtype)
1036	struct thread *td;
1037	int msqid;
1038	void *msgp;	/* XXX msgp is actually mtext. */
1039	size_t msgsz;
1040	long msgtyp;
1041	int msgflg;
1042	long *mtype;
1043{
1044	size_t len;
1045	register struct msqid_kernel *msqkptr;
1046	register struct msg *msghdr;
1047	int msqix, error = 0;
1048	short next;
1049
1050	if (!prison_allow(td->td_ucred, PR_ALLOW_SYSVIPC))
1051		return (ENOSYS);
1052
1053	msqix = IPCID_TO_IX(msqid);
1054
1055	if (msqix < 0 || msqix >= msginfo.msgmni) {
1056		DPRINTF(("msqid (%d) out of range (0<=msqid<%d)\n", msqix,
1057		    msginfo.msgmni));
1058		return (EINVAL);
1059	}
1060
1061	msqkptr = &msqids[msqix];
1062	mtx_lock(&msq_mtx);
1063	if (msqkptr->u.msg_qbytes == 0) {
1064		DPRINTF(("no such message queue id\n"));
1065		error = EINVAL;
1066		goto done2;
1067	}
1068	if (msqkptr->u.msg_perm.seq != IPCID_TO_SEQ(msqid)) {
1069		DPRINTF(("wrong sequence number\n"));
1070		error = EINVAL;
1071		goto done2;
1072	}
1073
1074	if ((error = ipcperm(td, &msqkptr->u.msg_perm, IPC_R))) {
1075		DPRINTF(("requester doesn't have read access\n"));
1076		goto done2;
1077	}
1078
1079#ifdef MAC
1080	error = mac_sysvmsq_check_msqrcv(td->td_ucred, msqkptr);
1081	if (error != 0)
1082		goto done2;
1083#endif
1084
1085	msghdr = NULL;
1086	while (msghdr == NULL) {
1087		if (msgtyp == 0) {
1088			msghdr = msqkptr->u.msg_first;
1089			if (msghdr != NULL) {
1090				if (msgsz < msghdr->msg_ts &&
1091				    (msgflg & MSG_NOERROR) == 0) {
1092					DPRINTF(("first message on the queue "
1093					    "is too big (want %zu, got %d)\n",
1094					    msgsz, msghdr->msg_ts));
1095					error = E2BIG;
1096					goto done2;
1097				}
1098#ifdef MAC
1099				error = mac_sysvmsq_check_msgrcv(td->td_ucred,
1100				    msghdr);
1101				if (error != 0)
1102					goto done2;
1103#endif
1104				if (msqkptr->u.msg_first == msqkptr->u.msg_last) {
1105					msqkptr->u.msg_first = NULL;
1106					msqkptr->u.msg_last = NULL;
1107				} else {
1108					msqkptr->u.msg_first = msghdr->msg_next;
1109					if (msqkptr->u.msg_first == NULL)
1110						panic("msg_first/last screwed up #1");
1111				}
1112			}
1113		} else {
1114			struct msg *previous;
1115			struct msg **prev;
1116
1117			previous = NULL;
1118			prev = &(msqkptr->u.msg_first);
1119			while ((msghdr = *prev) != NULL) {
1120				/*
1121				 * Is this message's type an exact match or is
1122				 * this message's type less than or equal to
1123				 * the absolute value of a negative msgtyp?
1124				 * Note that the second half of this test can
1125				 * NEVER be true if msgtyp is positive since
1126				 * msg_type is always positive!
1127				 */
1128
1129				if (msgtyp == msghdr->msg_type ||
1130				    msghdr->msg_type <= -msgtyp) {
1131					DPRINTF(("found message type %ld, "
1132					    "requested %ld\n",
1133					    msghdr->msg_type, msgtyp));
1134					if (msgsz < msghdr->msg_ts &&
1135					    (msgflg & MSG_NOERROR) == 0) {
1136						DPRINTF(("requested message "
1137						    "on the queue is too big "
1138						    "(want %zu, got %hu)\n",
1139						    msgsz, msghdr->msg_ts));
1140						error = E2BIG;
1141						goto done2;
1142					}
1143#ifdef MAC
1144					error = mac_sysvmsq_check_msgrcv(
1145					    td->td_ucred, msghdr);
1146					if (error != 0)
1147						goto done2;
1148#endif
1149					*prev = msghdr->msg_next;
1150					if (msghdr == msqkptr->u.msg_last) {
1151						if (previous == NULL) {
1152							if (prev !=
1153							    &msqkptr->u.msg_first)
1154								panic("msg_first/last screwed up #2");
1155							msqkptr->u.msg_first =
1156							    NULL;
1157							msqkptr->u.msg_last =
1158							    NULL;
1159						} else {
1160							if (prev ==
1161							    &msqkptr->u.msg_first)
1162								panic("msg_first/last screwed up #3");
1163							msqkptr->u.msg_last =
1164							    previous;
1165						}
1166					}
1167					break;
1168				}
1169				previous = msghdr;
1170				prev = &(msghdr->msg_next);
1171			}
1172		}
1173
1174		/*
1175		 * We've either extracted the msghdr for the appropriate
1176		 * message or there isn't one.
1177		 * If there is one then bail out of this loop.
1178		 */
1179
1180		if (msghdr != NULL)
1181			break;
1182
1183		/*
1184		 * Hmph!  No message found.  Does the user want to wait?
1185		 */
1186
1187		if ((msgflg & IPC_NOWAIT) != 0) {
1188			DPRINTF(("no appropriate message found (msgtyp=%ld)\n",
1189			    msgtyp));
1190			/* The SVID says to return ENOMSG. */
1191			error = ENOMSG;
1192			goto done2;
1193		}
1194
1195		/*
1196		 * Wait for something to happen
1197		 */
1198
1199		DPRINTF(("msgrcv:  goodnight\n"));
1200		error = msleep(msqkptr, &msq_mtx, (PZERO - 4) | PCATCH,
1201		    "msgrcv", 0);
1202		DPRINTF(("msgrcv:  good morning (error=%d)\n", error));
1203
1204		if (error != 0) {
1205			DPRINTF(("msgrcv:  interrupted system call\n"));
1206			error = EINTR;
1207			goto done2;
1208		}
1209
1210		/*
1211		 * Make sure that the msq queue still exists
1212		 */
1213
1214		if (msqkptr->u.msg_qbytes == 0 ||
1215		    msqkptr->u.msg_perm.seq != IPCID_TO_SEQ(msqid)) {
1216			DPRINTF(("msqid deleted\n"));
1217			error = EIDRM;
1218			goto done2;
1219		}
1220	}
1221
1222	/*
1223	 * Return the message to the user.
1224	 *
1225	 * First, do the bookkeeping (before we risk being interrupted).
1226	 */
1227
1228	msqkptr->u.msg_cbytes -= msghdr->msg_ts;
1229	msqkptr->u.msg_qnum--;
1230	msqkptr->u.msg_lrpid = td->td_proc->p_pid;
1231	msqkptr->u.msg_rtime = time_second;
1232
1233	racct_sub_cred(msqkptr->cred, RACCT_MSGQQUEUED, 1);
1234	racct_sub_cred(msqkptr->cred, RACCT_MSGQSIZE, msghdr->msg_ts);
1235
1236	/*
1237	 * Make msgsz the actual amount that we'll be returning.
1238	 * Note that this effectively truncates the message if it is too long
1239	 * (since msgsz is never increased).
1240	 */
1241
1242	DPRINTF(("found a message, msgsz=%zu, msg_ts=%hu\n", msgsz,
1243	    msghdr->msg_ts));
1244	if (msgsz > msghdr->msg_ts)
1245		msgsz = msghdr->msg_ts;
1246	*mtype = msghdr->msg_type;
1247
1248	/*
1249	 * Return the segments to the user
1250	 */
1251
1252	next = msghdr->msg_spot;
1253	for (len = 0; len < msgsz; len += msginfo.msgssz) {
1254		size_t tlen;
1255
1256		if (msgsz - len > msginfo.msgssz)
1257			tlen = msginfo.msgssz;
1258		else
1259			tlen = msgsz - len;
1260		if (next <= -1)
1261			panic("next too low #3");
1262		if (next >= msginfo.msgseg)
1263			panic("next out of range #3");
1264		mtx_unlock(&msq_mtx);
1265		error = copyout(&msgpool[next * msginfo.msgssz], msgp, tlen);
1266		mtx_lock(&msq_mtx);
1267		if (error != 0) {
1268			DPRINTF(("error (%d) copying out message segment\n",
1269			    error));
1270			msg_freehdr(msghdr);
1271			wakeup(msqkptr);
1272			goto done2;
1273		}
1274		msgp = (char *)msgp + tlen;
1275		next = msgmaps[next].next;
1276	}
1277
1278	/*
1279	 * Done, return the actual number of bytes copied out.
1280	 */
1281
1282	msg_freehdr(msghdr);
1283	wakeup(msqkptr);
1284	td->td_retval[0] = msgsz;
1285done2:
1286	mtx_unlock(&msq_mtx);
1287	return (error);
1288}
1289
1290int
1291msgrcv(td, uap)
1292	struct thread *td;
1293	register struct msgrcv_args *uap;
1294{
1295	int error;
1296	long mtype;
1297
1298	DPRINTF(("call to msgrcv(%d, %p, %zu, %ld, %d)\n", uap->msqid,
1299	    uap->msgp, uap->msgsz, uap->msgtyp, uap->msgflg));
1300
1301	if ((error = kern_msgrcv(td, uap->msqid,
1302	    (char *)uap->msgp + sizeof(mtype), uap->msgsz,
1303	    uap->msgtyp, uap->msgflg, &mtype)) != 0)
1304		return (error);
1305	if ((error = copyout(&mtype, uap->msgp, sizeof(mtype))) != 0)
1306		DPRINTF(("error %d copying the message type\n", error));
1307	return (error);
1308}
1309
1310static int
1311sysctl_msqids(SYSCTL_HANDLER_ARGS)
1312{
1313
1314	return (SYSCTL_OUT(req, msqids,
1315	    sizeof(struct msqid_kernel) * msginfo.msgmni));
1316}
1317
1318SYSCTL_INT(_kern_ipc, OID_AUTO, msgmax, CTLFLAG_RD, &msginfo.msgmax, 0,
1319    "Maximum message size");
1320SYSCTL_INT(_kern_ipc, OID_AUTO, msgmni, CTLFLAG_RDTUN, &msginfo.msgmni, 0,
1321    "Number of message queue identifiers");
1322SYSCTL_INT(_kern_ipc, OID_AUTO, msgmnb, CTLFLAG_RDTUN, &msginfo.msgmnb, 0,
1323    "Maximum number of bytes in a queue");
1324SYSCTL_INT(_kern_ipc, OID_AUTO, msgtql, CTLFLAG_RDTUN, &msginfo.msgtql, 0,
1325    "Maximum number of messages in the system");
1326SYSCTL_INT(_kern_ipc, OID_AUTO, msgssz, CTLFLAG_RDTUN, &msginfo.msgssz, 0,
1327    "Size of a message segment");
1328SYSCTL_INT(_kern_ipc, OID_AUTO, msgseg, CTLFLAG_RDTUN, &msginfo.msgseg, 0,
1329    "Number of message segments");
1330SYSCTL_PROC(_kern_ipc, OID_AUTO, msqids, CTLTYPE_OPAQUE | CTLFLAG_RD,
1331    NULL, 0, sysctl_msqids, "", "Message queue IDs");
1332
1333#ifdef COMPAT_FREEBSD32
1334int
1335freebsd32_msgsys(struct thread *td, struct freebsd32_msgsys_args *uap)
1336{
1337
1338#if defined(COMPAT_FREEBSD4) || defined(COMPAT_FREEBSD5) || \
1339    defined(COMPAT_FREEBSD6) || defined(COMPAT_FREEBSD7)
1340	switch (uap->which) {
1341	case 0:
1342		return (freebsd7_freebsd32_msgctl(td,
1343		    (struct freebsd7_freebsd32_msgctl_args *)&uap->a2));
1344	case 2:
1345		return (freebsd32_msgsnd(td,
1346		    (struct freebsd32_msgsnd_args *)&uap->a2));
1347	case 3:
1348		return (freebsd32_msgrcv(td,
1349		    (struct freebsd32_msgrcv_args *)&uap->a2));
1350	default:
1351		return (msgsys(td, (struct msgsys_args *)uap));
1352	}
1353#else
1354	return (nosys(td, NULL));
1355#endif
1356}
1357
1358#if defined(COMPAT_FREEBSD4) || defined(COMPAT_FREEBSD5) || \
1359    defined(COMPAT_FREEBSD6) || defined(COMPAT_FREEBSD7)
1360int
1361freebsd7_freebsd32_msgctl(struct thread *td,
1362    struct freebsd7_freebsd32_msgctl_args *uap)
1363{
1364	struct msqid_ds msqbuf;
1365	struct msqid_ds32_old msqbuf32;
1366	int error;
1367
1368	if (uap->cmd == IPC_SET) {
1369		error = copyin(uap->buf, &msqbuf32, sizeof(msqbuf32));
1370		if (error)
1371			return (error);
1372		freebsd32_ipcperm_old_in(&msqbuf32.msg_perm, &msqbuf.msg_perm);
1373		PTRIN_CP(msqbuf32, msqbuf, msg_first);
1374		PTRIN_CP(msqbuf32, msqbuf, msg_last);
1375		CP(msqbuf32, msqbuf, msg_cbytes);
1376		CP(msqbuf32, msqbuf, msg_qnum);
1377		CP(msqbuf32, msqbuf, msg_qbytes);
1378		CP(msqbuf32, msqbuf, msg_lspid);
1379		CP(msqbuf32, msqbuf, msg_lrpid);
1380		CP(msqbuf32, msqbuf, msg_stime);
1381		CP(msqbuf32, msqbuf, msg_rtime);
1382		CP(msqbuf32, msqbuf, msg_ctime);
1383	}
1384	error = kern_msgctl(td, uap->msqid, uap->cmd, &msqbuf);
1385	if (error)
1386		return (error);
1387	if (uap->cmd == IPC_STAT) {
1388		bzero(&msqbuf32, sizeof(msqbuf32));
1389		freebsd32_ipcperm_old_out(&msqbuf.msg_perm, &msqbuf32.msg_perm);
1390		PTROUT_CP(msqbuf, msqbuf32, msg_first);
1391		PTROUT_CP(msqbuf, msqbuf32, msg_last);
1392		CP(msqbuf, msqbuf32, msg_cbytes);
1393		CP(msqbuf, msqbuf32, msg_qnum);
1394		CP(msqbuf, msqbuf32, msg_qbytes);
1395		CP(msqbuf, msqbuf32, msg_lspid);
1396		CP(msqbuf, msqbuf32, msg_lrpid);
1397		CP(msqbuf, msqbuf32, msg_stime);
1398		CP(msqbuf, msqbuf32, msg_rtime);
1399		CP(msqbuf, msqbuf32, msg_ctime);
1400		error = copyout(&msqbuf32, uap->buf, sizeof(struct msqid_ds32));
1401	}
1402	return (error);
1403}
1404#endif
1405
1406int
1407freebsd32_msgctl(struct thread *td, struct freebsd32_msgctl_args *uap)
1408{
1409	struct msqid_ds msqbuf;
1410	struct msqid_ds32 msqbuf32;
1411	int error;
1412
1413	if (uap->cmd == IPC_SET) {
1414		error = copyin(uap->buf, &msqbuf32, sizeof(msqbuf32));
1415		if (error)
1416			return (error);
1417		freebsd32_ipcperm_in(&msqbuf32.msg_perm, &msqbuf.msg_perm);
1418		PTRIN_CP(msqbuf32, msqbuf, msg_first);
1419		PTRIN_CP(msqbuf32, msqbuf, msg_last);
1420		CP(msqbuf32, msqbuf, msg_cbytes);
1421		CP(msqbuf32, msqbuf, msg_qnum);
1422		CP(msqbuf32, msqbuf, msg_qbytes);
1423		CP(msqbuf32, msqbuf, msg_lspid);
1424		CP(msqbuf32, msqbuf, msg_lrpid);
1425		CP(msqbuf32, msqbuf, msg_stime);
1426		CP(msqbuf32, msqbuf, msg_rtime);
1427		CP(msqbuf32, msqbuf, msg_ctime);
1428	}
1429	error = kern_msgctl(td, uap->msqid, uap->cmd, &msqbuf);
1430	if (error)
1431		return (error);
1432	if (uap->cmd == IPC_STAT) {
1433		freebsd32_ipcperm_out(&msqbuf.msg_perm, &msqbuf32.msg_perm);
1434		PTROUT_CP(msqbuf, msqbuf32, msg_first);
1435		PTROUT_CP(msqbuf, msqbuf32, msg_last);
1436		CP(msqbuf, msqbuf32, msg_cbytes);
1437		CP(msqbuf, msqbuf32, msg_qnum);
1438		CP(msqbuf, msqbuf32, msg_qbytes);
1439		CP(msqbuf, msqbuf32, msg_lspid);
1440		CP(msqbuf, msqbuf32, msg_lrpid);
1441		CP(msqbuf, msqbuf32, msg_stime);
1442		CP(msqbuf, msqbuf32, msg_rtime);
1443		CP(msqbuf, msqbuf32, msg_ctime);
1444		error = copyout(&msqbuf32, uap->buf, sizeof(struct msqid_ds32));
1445	}
1446	return (error);
1447}
1448
1449int
1450freebsd32_msgsnd(struct thread *td, struct freebsd32_msgsnd_args *uap)
1451{
1452	const void *msgp;
1453	long mtype;
1454	int32_t mtype32;
1455	int error;
1456
1457	msgp = PTRIN(uap->msgp);
1458	if ((error = copyin(msgp, &mtype32, sizeof(mtype32))) != 0)
1459		return (error);
1460	mtype = mtype32;
1461	return (kern_msgsnd(td, uap->msqid,
1462	    (const char *)msgp + sizeof(mtype32),
1463	    uap->msgsz, uap->msgflg, mtype));
1464}
1465
1466int
1467freebsd32_msgrcv(struct thread *td, struct freebsd32_msgrcv_args *uap)
1468{
1469	void *msgp;
1470	long mtype;
1471	int32_t mtype32;
1472	int error;
1473
1474	msgp = PTRIN(uap->msgp);
1475	if ((error = kern_msgrcv(td, uap->msqid,
1476	    (char *)msgp + sizeof(mtype32), uap->msgsz,
1477	    uap->msgtyp, uap->msgflg, &mtype)) != 0)
1478		return (error);
1479	mtype32 = (int32_t)mtype;
1480	return (copyout(&mtype32, msgp, sizeof(mtype32)));
1481}
1482#endif
1483
1484#if defined(COMPAT_FREEBSD4) || defined(COMPAT_FREEBSD5) || \
1485    defined(COMPAT_FREEBSD6) || defined(COMPAT_FREEBSD7)
1486
1487/* XXX casting to (sy_call_t *) is bogus, as usual. */
1488static sy_call_t *msgcalls[] = {
1489	(sy_call_t *)freebsd7_msgctl, (sy_call_t *)msgget,
1490	(sy_call_t *)msgsnd, (sy_call_t *)msgrcv
1491};
1492
1493/*
1494 * Entry point for all MSG calls.
1495 */
1496int
1497msgsys(td, uap)
1498	struct thread *td;
1499	/* XXX actually varargs. */
1500	struct msgsys_args /* {
1501		int	which;
1502		int	a2;
1503		int	a3;
1504		int	a4;
1505		int	a5;
1506		int	a6;
1507	} */ *uap;
1508{
1509	int error;
1510
1511	if (!prison_allow(td->td_ucred, PR_ALLOW_SYSVIPC))
1512		return (ENOSYS);
1513	if (uap->which < 0 ||
1514	    uap->which >= sizeof(msgcalls)/sizeof(msgcalls[0]))
1515		return (EINVAL);
1516	error = (*msgcalls[uap->which])(td, &uap->a2);
1517	return (error);
1518}
1519
1520#ifndef CP
1521#define CP(src, dst, fld)	do { (dst).fld = (src).fld; } while (0)
1522#endif
1523
1524#ifndef _SYS_SYSPROTO_H_
1525struct freebsd7_msgctl_args {
1526	int	msqid;
1527	int	cmd;
1528	struct	msqid_ds_old *buf;
1529};
1530#endif
1531int
1532freebsd7_msgctl(td, uap)
1533	struct thread *td;
1534	struct freebsd7_msgctl_args *uap;
1535{
1536	struct msqid_ds_old msqold;
1537	struct msqid_ds msqbuf;
1538	int error;
1539
1540	DPRINTF(("call to freebsd7_msgctl(%d, %d, %p)\n", uap->msqid, uap->cmd,
1541	    uap->buf));
1542	if (uap->cmd == IPC_SET) {
1543		error = copyin(uap->buf, &msqold, sizeof(msqold));
1544		if (error)
1545			return (error);
1546		ipcperm_old2new(&msqold.msg_perm, &msqbuf.msg_perm);
1547		CP(msqold, msqbuf, msg_first);
1548		CP(msqold, msqbuf, msg_last);
1549		CP(msqold, msqbuf, msg_cbytes);
1550		CP(msqold, msqbuf, msg_qnum);
1551		CP(msqold, msqbuf, msg_qbytes);
1552		CP(msqold, msqbuf, msg_lspid);
1553		CP(msqold, msqbuf, msg_lrpid);
1554		CP(msqold, msqbuf, msg_stime);
1555		CP(msqold, msqbuf, msg_rtime);
1556		CP(msqold, msqbuf, msg_ctime);
1557	}
1558	error = kern_msgctl(td, uap->msqid, uap->cmd, &msqbuf);
1559	if (error)
1560		return (error);
1561	if (uap->cmd == IPC_STAT) {
1562		bzero(&msqold, sizeof(msqold));
1563		ipcperm_new2old(&msqbuf.msg_perm, &msqold.msg_perm);
1564		CP(msqbuf, msqold, msg_first);
1565		CP(msqbuf, msqold, msg_last);
1566		CP(msqbuf, msqold, msg_cbytes);
1567		CP(msqbuf, msqold, msg_qnum);
1568		CP(msqbuf, msqold, msg_qbytes);
1569		CP(msqbuf, msqold, msg_lspid);
1570		CP(msqbuf, msqold, msg_lrpid);
1571		CP(msqbuf, msqold, msg_stime);
1572		CP(msqbuf, msqold, msg_rtime);
1573		CP(msqbuf, msqold, msg_ctime);
1574		error = copyout(&msqold, uap->buf, sizeof(struct msqid_ds_old));
1575	}
1576	return (error);
1577}
1578
1579#undef CP
1580
1581#endif	/* COMPAT_FREEBSD4 || COMPAT_FREEBSD5 || COMPAT_FREEBSD6 ||
1582	   COMPAT_FREEBSD7 */
1583