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sys_mqueue.c revision 1.29.2.1
      1 /*	$NetBSD: sys_mqueue.c,v 1.29.2.1 2010/08/17 06:47:31 uebayasi Exp $	*/
      2 
      3 /*
      4  * Copyright (c) 2007-2009 Mindaugas Rasiukevicius <rmind at NetBSD org>
      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 /*
     30  * Implementation of POSIX message queues.
     31  * Defined in the Base Definitions volume of IEEE Std 1003.1-2001.
     32  *
     33  * Locking
     34  *
     35  * Global list of message queues (mqueue_head) and proc_t::p_mqueue_cnt
     36  * counter are protected by mqlist_mtx lock.  The very message queue and
     37  * its members are protected by mqueue::mq_mtx.
     38  *
     39  * Lock order:
     40  * 	mqlist_mtx ->
     41  * 		mqueue::mq_mtx
     42  */
     43 
     44 #include <sys/cdefs.h>
     45 __KERNEL_RCSID(0, "$NetBSD: sys_mqueue.c,v 1.29.2.1 2010/08/17 06:47:31 uebayasi Exp $");
     46 
     47 #include <sys/param.h>
     48 #include <sys/types.h>
     49 #include <sys/condvar.h>
     50 #include <sys/errno.h>
     51 #include <sys/fcntl.h>
     52 #include <sys/file.h>
     53 #include <sys/filedesc.h>
     54 #include <sys/kauth.h>
     55 #include <sys/kernel.h>
     56 #include <sys/kmem.h>
     57 #include <sys/lwp.h>
     58 #include <sys/mqueue.h>
     59 #include <sys/module.h>
     60 #include <sys/mutex.h>
     61 #include <sys/pool.h>
     62 #include <sys/poll.h>
     63 #include <sys/proc.h>
     64 #include <sys/queue.h>
     65 #include <sys/select.h>
     66 #include <sys/signal.h>
     67 #include <sys/signalvar.h>
     68 #include <sys/stat.h>
     69 #include <sys/sysctl.h>
     70 #include <sys/syscall.h>
     71 #include <sys/syscallvar.h>
     72 #include <sys/syscallargs.h>
     73 #include <sys/systm.h>
     74 #include <sys/unistd.h>
     75 
     76 #include <miscfs/genfs/genfs.h>
     77 
     78 MODULE(MODULE_CLASS_MISC, mqueue, NULL);
     79 
     80 /* System-wide limits. */
     81 static u_int			mq_open_max = MQ_OPEN_MAX;
     82 static u_int			mq_prio_max = MQ_PRIO_MAX;
     83 static u_int			mq_max_msgsize = 16 * MQ_DEF_MSGSIZE;
     84 static u_int			mq_def_maxmsg = 32;
     85 static u_int			mq_max_maxmsg = 16 * 32;
     86 
     87 static kmutex_t			mqlist_mtx;
     88 static pool_cache_t		mqmsg_cache;
     89 static LIST_HEAD(, mqueue)	mqueue_head;
     90 static struct sysctllog		*mqsysctl_log;
     91 
     92 static int	mqueue_sysinit(void);
     93 static int	mqueue_sysfini(bool);
     94 static int	mqueue_sysctl_init(void);
     95 static int	mq_poll_fop(file_t *, int);
     96 static int	mq_stat_fop(file_t *, struct stat *);
     97 static int	mq_close_fop(file_t *);
     98 
     99 static const struct fileops mqops = {
    100 	.fo_read = fbadop_read,
    101 	.fo_write = fbadop_write,
    102 	.fo_ioctl = fbadop_ioctl,
    103 	.fo_fcntl = fnullop_fcntl,
    104 	.fo_poll = mq_poll_fop,
    105 	.fo_stat = mq_stat_fop,
    106 	.fo_close = mq_close_fop,
    107 	.fo_kqfilter = fnullop_kqfilter,
    108 	.fo_restart = fnullop_restart,
    109 };
    110 
    111 static const struct syscall_package mqueue_syscalls[] = {
    112 	{ SYS_mq_open, 0, (sy_call_t *)sys_mq_open },
    113 	{ SYS_mq_close, 0, (sy_call_t *)sys_mq_close },
    114 	{ SYS_mq_unlink, 0, (sy_call_t *)sys_mq_unlink },
    115 	{ SYS_mq_getattr, 0, (sy_call_t *)sys_mq_getattr },
    116 	{ SYS_mq_setattr, 0, (sy_call_t *)sys_mq_setattr },
    117 	{ SYS_mq_notify, 0, (sy_call_t *)sys_mq_notify },
    118 	{ SYS_mq_send, 0, (sy_call_t *)sys_mq_send },
    119 	{ SYS_mq_receive, 0, (sy_call_t *)sys_mq_receive },
    120 	{ SYS___mq_timedsend50, 0, (sy_call_t *)sys___mq_timedsend50 },
    121 	{ SYS___mq_timedreceive50, 0, (sy_call_t *)sys___mq_timedreceive50 },
    122 	{ 0, 0, NULL }
    123 };
    124 
    125 /*
    126  * Initialisation and unloading of POSIX message queue subsystem.
    127  */
    128 
    129 static int
    130 mqueue_sysinit(void)
    131 {
    132 	int error;
    133 
    134 	mqmsg_cache = pool_cache_init(MQ_DEF_MSGSIZE, coherency_unit,
    135 	    0, 0, "mqmsgpl", NULL, IPL_NONE, NULL, NULL, NULL);
    136 	mutex_init(&mqlist_mtx, MUTEX_DEFAULT, IPL_NONE);
    137 	LIST_INIT(&mqueue_head);
    138 
    139 	error = mqueue_sysctl_init();
    140 	if (error) {
    141 		(void)mqueue_sysfini(false);
    142 		return error;
    143 	}
    144 	error = syscall_establish(NULL, mqueue_syscalls);
    145 	if (error) {
    146 		(void)mqueue_sysfini(false);
    147 	}
    148 	return error;
    149 }
    150 
    151 static int
    152 mqueue_sysfini(bool interface)
    153 {
    154 
    155 	if (interface) {
    156 		int error;
    157 		bool inuse;
    158 
    159 		/* Stop syscall activity. */
    160 		error = syscall_disestablish(NULL, mqueue_syscalls);
    161 		if (error)
    162 			return error;
    163 		/*
    164 		 * Check if there are any message queues in use.
    165 		 * TODO: We shall support forced unload.
    166 		 */
    167 		mutex_enter(&mqlist_mtx);
    168 		inuse = !LIST_EMPTY(&mqueue_head);
    169 		mutex_exit(&mqlist_mtx);
    170 		if (inuse) {
    171 			error = syscall_establish(NULL, mqueue_syscalls);
    172 			KASSERT(error == 0);
    173 			return EBUSY;
    174 		}
    175 	}
    176 
    177 	if (mqsysctl_log != NULL)
    178 		sysctl_teardown(&mqsysctl_log);
    179 
    180 	mutex_destroy(&mqlist_mtx);
    181 	pool_cache_destroy(mqmsg_cache);
    182 	return 0;
    183 }
    184 
    185 /*
    186  * Module interface.
    187  */
    188 static int
    189 mqueue_modcmd(modcmd_t cmd, void *arg)
    190 {
    191 
    192 	switch (cmd) {
    193 	case MODULE_CMD_INIT:
    194 		return mqueue_sysinit();
    195 	case MODULE_CMD_FINI:
    196 		return mqueue_sysfini(true);
    197 	default:
    198 		return ENOTTY;
    199 	}
    200 }
    201 
    202 /*
    203  * Free the message.
    204  */
    205 static void
    206 mqueue_freemsg(struct mq_msg *msg, const size_t size)
    207 {
    208 
    209 	if (size > MQ_DEF_MSGSIZE) {
    210 		kmem_free(msg, size);
    211 	} else {
    212 		pool_cache_put(mqmsg_cache, msg);
    213 	}
    214 }
    215 
    216 /*
    217  * Destroy the message queue.
    218  */
    219 static void
    220 mqueue_destroy(struct mqueue *mq)
    221 {
    222 	struct mq_msg *msg;
    223 	size_t msz;
    224 	u_int i;
    225 
    226 	/* Note MQ_PQSIZE + 1. */
    227 	for (i = 0; i <= MQ_PQSIZE; i++) {
    228 		while ((msg = TAILQ_FIRST(&mq->mq_head[i])) != NULL) {
    229 			TAILQ_REMOVE(&mq->mq_head[i], msg, msg_queue);
    230 			msz = sizeof(struct mq_msg) + msg->msg_len;
    231 			mqueue_freemsg(msg, msz);
    232 		}
    233 	}
    234 	seldestroy(&mq->mq_rsel);
    235 	seldestroy(&mq->mq_wsel);
    236 	cv_destroy(&mq->mq_send_cv);
    237 	cv_destroy(&mq->mq_recv_cv);
    238 	mutex_destroy(&mq->mq_mtx);
    239 	kmem_free(mq, sizeof(struct mqueue));
    240 }
    241 
    242 /*
    243  * Lookup for file name in general list of message queues.
    244  *  => locks the message queue
    245  */
    246 static void *
    247 mqueue_lookup(char *name)
    248 {
    249 	struct mqueue *mq;
    250 	KASSERT(mutex_owned(&mqlist_mtx));
    251 
    252 	LIST_FOREACH(mq, &mqueue_head, mq_list) {
    253 		if (strncmp(mq->mq_name, name, MQ_NAMELEN) == 0) {
    254 			mutex_enter(&mq->mq_mtx);
    255 			return mq;
    256 		}
    257 	}
    258 
    259 	return NULL;
    260 }
    261 
    262 /*
    263  * mqueue_get: get the mqueue from the descriptor.
    264  *  => locks the message queue, if found.
    265  *  => holds a reference on the file descriptor.
    266  */
    267 static int
    268 mqueue_get(mqd_t mqd, file_t **fpr)
    269 {
    270 	struct mqueue *mq;
    271 	file_t *fp;
    272 
    273 	fp = fd_getfile((int)mqd);
    274 	if (__predict_false(fp == NULL)) {
    275 		return EBADF;
    276 	}
    277 	if (__predict_false(fp->f_type != DTYPE_MQUEUE)) {
    278 		fd_putfile((int)mqd);
    279 		return EBADF;
    280 	}
    281 	mq = fp->f_data;
    282 	mutex_enter(&mq->mq_mtx);
    283 
    284 	*fpr = fp;
    285 	return 0;
    286 }
    287 
    288 /*
    289  * mqueue_linear_insert: perform linear insert according to the message
    290  * priority into the reserved queue (MQ_PQRESQ).  Reserved queue is a
    291  * sorted list used only when mq_prio_max is increased via sysctl.
    292  */
    293 static inline void
    294 mqueue_linear_insert(struct mqueue *mq, struct mq_msg *msg)
    295 {
    296 	struct mq_msg *mit;
    297 
    298 	TAILQ_FOREACH(mit, &mq->mq_head[MQ_PQRESQ], msg_queue) {
    299 		if (msg->msg_prio > mit->msg_prio)
    300 			break;
    301 	}
    302 	if (mit == NULL) {
    303 		TAILQ_INSERT_TAIL(&mq->mq_head[MQ_PQRESQ], msg, msg_queue);
    304 	} else {
    305 		TAILQ_INSERT_BEFORE(mit, msg, msg_queue);
    306 	}
    307 }
    308 
    309 static int
    310 mq_stat_fop(file_t *fp, struct stat *st)
    311 {
    312 	struct mqueue *mq = fp->f_data;
    313 
    314 	memset(st, 0, sizeof(*st));
    315 
    316 	mutex_enter(&mq->mq_mtx);
    317 	st->st_mode = mq->mq_mode;
    318 	st->st_uid = mq->mq_euid;
    319 	st->st_gid = mq->mq_egid;
    320 	st->st_atimespec = mq->mq_atime;
    321 	st->st_mtimespec = mq->mq_mtime;
    322 	st->st_ctimespec = st->st_birthtimespec = mq->mq_btime;
    323 	st->st_uid = kauth_cred_geteuid(fp->f_cred);
    324 	st->st_gid = kauth_cred_getegid(fp->f_cred);
    325 	mutex_exit(&mq->mq_mtx);
    326 
    327 	return 0;
    328 }
    329 
    330 static int
    331 mq_poll_fop(file_t *fp, int events)
    332 {
    333 	struct mqueue *mq = fp->f_data;
    334 	struct mq_attr *mqattr;
    335 	int revents = 0;
    336 
    337 	mutex_enter(&mq->mq_mtx);
    338 	mqattr = &mq->mq_attrib;
    339 	if (events & (POLLIN | POLLRDNORM)) {
    340 		/* Ready for receiving, if there are messages in the queue */
    341 		if (mqattr->mq_curmsgs)
    342 			revents |= (POLLIN | POLLRDNORM);
    343 		else
    344 			selrecord(curlwp, &mq->mq_rsel);
    345 	}
    346 	if (events & (POLLOUT | POLLWRNORM)) {
    347 		/* Ready for sending, if the message queue is not full */
    348 		if (mqattr->mq_curmsgs < mqattr->mq_maxmsg)
    349 			revents |= (POLLOUT | POLLWRNORM);
    350 		else
    351 			selrecord(curlwp, &mq->mq_wsel);
    352 	}
    353 	mutex_exit(&mq->mq_mtx);
    354 
    355 	return revents;
    356 }
    357 
    358 static int
    359 mq_close_fop(file_t *fp)
    360 {
    361 	struct proc *p = curproc;
    362 	struct mqueue *mq = fp->f_data;
    363 	bool destroy;
    364 
    365 	mutex_enter(&mqlist_mtx);
    366 	mutex_enter(&mq->mq_mtx);
    367 
    368 	/* Decrease the counters */
    369 	p->p_mqueue_cnt--;
    370 	mq->mq_refcnt--;
    371 
    372 	/* Remove notification if registered for this process */
    373 	if (mq->mq_notify_proc == p)
    374 		mq->mq_notify_proc = NULL;
    375 
    376 	/*
    377 	 * If this is the last reference and mqueue is marked for unlink,
    378 	 * remove and later destroy the message queue.
    379 	 */
    380 	if (mq->mq_refcnt == 0 && (mq->mq_attrib.mq_flags & MQ_UNLINK)) {
    381 		LIST_REMOVE(mq, mq_list);
    382 		destroy = true;
    383 	} else
    384 		destroy = false;
    385 
    386 	mutex_exit(&mq->mq_mtx);
    387 	mutex_exit(&mqlist_mtx);
    388 
    389 	if (destroy)
    390 		mqueue_destroy(mq);
    391 
    392 	return 0;
    393 }
    394 
    395 static int
    396 mqueue_access(struct mqueue *mq, mode_t mode, kauth_cred_t cred)
    397 {
    398 
    399 	if (genfs_can_access(VNON, mq->mq_mode, mq->mq_euid,
    400 	    mq->mq_egid, mode, cred)) {
    401 		return EACCES;
    402 	}
    403 
    404 	return 0;
    405 }
    406 
    407 /*
    408  * General mqueue system calls.
    409  */
    410 
    411 int
    412 sys_mq_open(struct lwp *l, const struct sys_mq_open_args *uap,
    413     register_t *retval)
    414 {
    415 	/* {
    416 		syscallarg(const char *) name;
    417 		syscallarg(int) oflag;
    418 		syscallarg(mode_t) mode;
    419 		syscallarg(struct mq_attr) attr;
    420 	} */
    421 	struct proc *p = l->l_proc;
    422 	struct mqueue *mq, *mq_new = NULL;
    423 	file_t *fp;
    424 	char *name;
    425 	int mqd, error, oflag;
    426 
    427 	oflag = SCARG(uap, oflag);
    428 
    429 	/* Get the name from the user-space */
    430 	name = kmem_zalloc(MQ_NAMELEN, KM_SLEEP);
    431 	error = copyinstr(SCARG(uap, name), name, MQ_NAMELEN - 1, NULL);
    432 	if (error) {
    433 		kmem_free(name, MQ_NAMELEN);
    434 		return error;
    435 	}
    436 
    437 	if (oflag & O_CREAT) {
    438 		struct cwdinfo *cwdi = p->p_cwdi;
    439 		struct mq_attr attr;
    440 		u_int i;
    441 
    442 		/* Check the limit */
    443 		if (p->p_mqueue_cnt == mq_open_max) {
    444 			kmem_free(name, MQ_NAMELEN);
    445 			return EMFILE;
    446 		}
    447 
    448 		/* Empty name is invalid */
    449 		if (name[0] == '\0') {
    450 			kmem_free(name, MQ_NAMELEN);
    451 			return EINVAL;
    452 		}
    453 
    454 		/* Check for mqueue attributes */
    455 		if (SCARG(uap, attr)) {
    456 			error = copyin(SCARG(uap, attr), &attr,
    457 			    sizeof(struct mq_attr));
    458 			if (error) {
    459 				kmem_free(name, MQ_NAMELEN);
    460 				return error;
    461 			}
    462 			if (attr.mq_maxmsg <= 0 ||
    463 			    attr.mq_maxmsg > mq_max_maxmsg ||
    464 			    attr.mq_msgsize <= 0 ||
    465 			    attr.mq_msgsize > mq_max_msgsize) {
    466 				kmem_free(name, MQ_NAMELEN);
    467 				return EINVAL;
    468 			}
    469 			attr.mq_curmsgs = 0;
    470 		} else {
    471 			memset(&attr, 0, sizeof(struct mq_attr));
    472 			attr.mq_maxmsg = mq_def_maxmsg;
    473 			attr.mq_msgsize =
    474 			    MQ_DEF_MSGSIZE - sizeof(struct mq_msg);
    475 		}
    476 
    477 		/*
    478 		 * Allocate new mqueue, initialize data structures,
    479 		 * copy the name, attributes and set the flag.
    480 		 */
    481 		mq_new = kmem_zalloc(sizeof(struct mqueue), KM_SLEEP);
    482 
    483 		mutex_init(&mq_new->mq_mtx, MUTEX_DEFAULT, IPL_NONE);
    484 		cv_init(&mq_new->mq_send_cv, "mqsendcv");
    485 		cv_init(&mq_new->mq_recv_cv, "mqrecvcv");
    486 		for (i = 0; i < (MQ_PQSIZE + 1); i++) {
    487 			TAILQ_INIT(&mq_new->mq_head[i]);
    488 		}
    489 		selinit(&mq_new->mq_rsel);
    490 		selinit(&mq_new->mq_wsel);
    491 
    492 		strlcpy(mq_new->mq_name, name, MQ_NAMELEN);
    493 		memcpy(&mq_new->mq_attrib, &attr, sizeof(struct mq_attr));
    494 
    495 		CTASSERT((O_MASK & (MQ_UNLINK | MQ_RECEIVE)) == 0);
    496 		mq_new->mq_attrib.mq_flags = (O_MASK & oflag);
    497 
    498 		/* Store mode and effective UID with GID */
    499 		mq_new->mq_mode = ((SCARG(uap, mode) &
    500 		    ~cwdi->cwdi_cmask) & ALLPERMS) & ~S_ISTXT;
    501 		mq_new->mq_euid = kauth_cred_geteuid(l->l_cred);
    502 		mq_new->mq_egid = kauth_cred_getegid(l->l_cred);
    503 	}
    504 
    505 	/* Allocate file structure and descriptor */
    506 	error = fd_allocfile(&fp, &mqd);
    507 	if (error) {
    508 		if (mq_new)
    509 			mqueue_destroy(mq_new);
    510 		kmem_free(name, MQ_NAMELEN);
    511 		return error;
    512 	}
    513 	fp->f_type = DTYPE_MQUEUE;
    514 	fp->f_flag = FFLAGS(oflag) & (FREAD | FWRITE);
    515 	fp->f_ops = &mqops;
    516 
    517 	/* Look up for mqueue with such name */
    518 	mutex_enter(&mqlist_mtx);
    519 	mq = mqueue_lookup(name);
    520 	if (mq) {
    521 		mode_t acc_mode;
    522 
    523 		KASSERT(mutex_owned(&mq->mq_mtx));
    524 
    525 		/* Check if mqueue is not marked as unlinking */
    526 		if (mq->mq_attrib.mq_flags & MQ_UNLINK) {
    527 			error = EACCES;
    528 			goto exit;
    529 		}
    530 
    531 		/* Fail if O_EXCL is set, and mqueue already exists */
    532 		if ((oflag & O_CREAT) && (oflag & O_EXCL)) {
    533 			error = EEXIST;
    534 			goto exit;
    535 		}
    536 
    537 		/*
    538 		 * Check the permissions.  Note the difference between
    539 		 * VREAD/VWRITE and FREAD/FWRITE.
    540 		 */
    541 		acc_mode = 0;
    542 		if (fp->f_flag & FREAD) {
    543 			acc_mode |= VREAD;
    544 		}
    545 		if (fp->f_flag & FWRITE) {
    546 			acc_mode |= VWRITE;
    547 		}
    548 		if (mqueue_access(mq, acc_mode, l->l_cred) != 0) {
    549 			error = EACCES;
    550 			goto exit;
    551 		}
    552 	} else {
    553 		/* Fail if mqueue neither exists, nor we create it */
    554 		if ((oflag & O_CREAT) == 0) {
    555 			mutex_exit(&mqlist_mtx);
    556 			KASSERT(mq_new == NULL);
    557 			fd_abort(p, fp, mqd);
    558 			kmem_free(name, MQ_NAMELEN);
    559 			return ENOENT;
    560 		}
    561 
    562 		/* Check the limit */
    563 		if (p->p_mqueue_cnt == mq_open_max) {
    564 			error = EMFILE;
    565 			goto exit;
    566 		}
    567 
    568 		/* Insert the queue to the list */
    569 		mq = mq_new;
    570 		mutex_enter(&mq->mq_mtx);
    571 		LIST_INSERT_HEAD(&mqueue_head, mq, mq_list);
    572 		mq_new = NULL;
    573 		getnanotime(&mq->mq_btime);
    574 		mq->mq_atime = mq->mq_mtime = mq->mq_btime;
    575 	}
    576 
    577 	/* Increase the counters, and make descriptor ready */
    578 	p->p_mqueue_cnt++;
    579 	mq->mq_refcnt++;
    580 	fp->f_data = mq;
    581 exit:
    582 	mutex_exit(&mq->mq_mtx);
    583 	mutex_exit(&mqlist_mtx);
    584 
    585 	if (mq_new)
    586 		mqueue_destroy(mq_new);
    587 	if (error) {
    588 		fd_abort(p, fp, mqd);
    589 	} else {
    590 		fd_affix(p, fp, mqd);
    591 		*retval = mqd;
    592 	}
    593 	kmem_free(name, MQ_NAMELEN);
    594 
    595 	return error;
    596 }
    597 
    598 int
    599 sys_mq_close(struct lwp *l, const struct sys_mq_close_args *uap,
    600     register_t *retval)
    601 {
    602 
    603 	return sys_close(l, (const void *)uap, retval);
    604 }
    605 
    606 /*
    607  * Primary mq_recv1() function.
    608  */
    609 int
    610 mq_recv1(mqd_t mqdes, void *msg_ptr, size_t msg_len, u_int *msg_prio,
    611     struct timespec *ts, ssize_t *mlen)
    612 {
    613 	file_t *fp = NULL;
    614 	struct mqueue *mq;
    615 	struct mq_msg *msg = NULL;
    616 	struct mq_attr *mqattr;
    617 	u_int idx;
    618 	int error;
    619 
    620 	/* Get the message queue */
    621 	error = mqueue_get(mqdes, &fp);
    622 	if (error) {
    623 		return error;
    624 	}
    625 	mq = fp->f_data;
    626 	if ((fp->f_flag & FREAD) == 0) {
    627 		error = EBADF;
    628 		goto error;
    629 	}
    630 	getnanotime(&mq->mq_atime);
    631 	mqattr = &mq->mq_attrib;
    632 
    633 	/* Check the message size limits */
    634 	if (msg_len < mqattr->mq_msgsize) {
    635 		error = EMSGSIZE;
    636 		goto error;
    637 	}
    638 
    639 	/* Check if queue is empty */
    640 	while (mqattr->mq_curmsgs == 0) {
    641 		int t;
    642 
    643 		if (mqattr->mq_flags & O_NONBLOCK) {
    644 			error = EAGAIN;
    645 			goto error;
    646 		}
    647 		if (ts) {
    648 			error = abstimeout2timo(ts, &t);
    649 			if (error)
    650 				goto error;
    651 		} else
    652 			t = 0;
    653 		/*
    654 		 * Block until someone sends the message.
    655 		 * While doing this, notification should not be sent.
    656 		 */
    657 		mqattr->mq_flags |= MQ_RECEIVE;
    658 		error = cv_timedwait_sig(&mq->mq_send_cv, &mq->mq_mtx, t);
    659 		mqattr->mq_flags &= ~MQ_RECEIVE;
    660 		if (error || (mqattr->mq_flags & MQ_UNLINK)) {
    661 			error = (error == EWOULDBLOCK) ? ETIMEDOUT : EINTR;
    662 			goto error;
    663 		}
    664 	}
    665 
    666 	/*
    667 	 * Find the highest priority message, and remove it from the queue.
    668 	 * At first, reserved queue is checked, bitmap is next.
    669 	 */
    670 	msg = TAILQ_FIRST(&mq->mq_head[MQ_PQRESQ]);
    671 	if (__predict_true(msg == NULL)) {
    672 		idx = ffs(mq->mq_bitmap);
    673 		msg = TAILQ_FIRST(&mq->mq_head[idx]);
    674 		KASSERT(msg != NULL);
    675 	} else {
    676 		idx = MQ_PQRESQ;
    677 	}
    678 	TAILQ_REMOVE(&mq->mq_head[idx], msg, msg_queue);
    679 
    680 	/* Unmark the bit, if last message. */
    681 	if (__predict_true(idx) && TAILQ_EMPTY(&mq->mq_head[idx])) {
    682 		KASSERT((MQ_PQSIZE - idx) == msg->msg_prio);
    683 		mq->mq_bitmap &= ~(1 << --idx);
    684 	}
    685 
    686 	/* Decrement the counter and signal waiter, if any */
    687 	mqattr->mq_curmsgs--;
    688 	cv_signal(&mq->mq_recv_cv);
    689 
    690 	/* Ready for sending now */
    691 	selnotify(&mq->mq_wsel, POLLOUT | POLLWRNORM, 0);
    692 error:
    693 	mutex_exit(&mq->mq_mtx);
    694 	fd_putfile((int)mqdes);
    695 	if (error)
    696 		return error;
    697 
    698 	/*
    699 	 * Copy the data to the user-space.
    700 	 * Note: According to POSIX, no message should be removed from the
    701 	 * queue in case of fail - this would be violated.
    702 	 */
    703 	*mlen = msg->msg_len;
    704 	error = copyout(msg->msg_ptr, msg_ptr, msg->msg_len);
    705 	if (error == 0 && msg_prio)
    706 		error = copyout(&msg->msg_prio, msg_prio, sizeof(unsigned));
    707 	mqueue_freemsg(msg, sizeof(struct mq_msg) + msg->msg_len);
    708 
    709 	return error;
    710 }
    711 
    712 int
    713 sys_mq_receive(struct lwp *l, const struct sys_mq_receive_args *uap,
    714     register_t *retval)
    715 {
    716 	/* {
    717 		syscallarg(mqd_t) mqdes;
    718 		syscallarg(char *) msg_ptr;
    719 		syscallarg(size_t) msg_len;
    720 		syscallarg(unsigned *) msg_prio;
    721 	} */
    722 	ssize_t mlen;
    723 	int error;
    724 
    725 	error = mq_recv1(SCARG(uap, mqdes), SCARG(uap, msg_ptr),
    726 	    SCARG(uap, msg_len), SCARG(uap, msg_prio), NULL, &mlen);
    727 	if (error == 0)
    728 		*retval = mlen;
    729 
    730 	return error;
    731 }
    732 
    733 int
    734 sys___mq_timedreceive50(struct lwp *l,
    735     const struct sys___mq_timedreceive50_args *uap, register_t *retval)
    736 {
    737 	/* {
    738 		syscallarg(mqd_t) mqdes;
    739 		syscallarg(char *) msg_ptr;
    740 		syscallarg(size_t) msg_len;
    741 		syscallarg(unsigned *) msg_prio;
    742 		syscallarg(const struct timespec *) abs_timeout;
    743 	} */
    744 	struct timespec ts, *tsp;
    745 	ssize_t mlen;
    746 	int error;
    747 
    748 	/* Get and convert time value */
    749 	if (SCARG(uap, abs_timeout)) {
    750 		error = copyin(SCARG(uap, abs_timeout), &ts, sizeof(ts));
    751 		if (error)
    752 			return error;
    753 		tsp = &ts;
    754 	} else {
    755 		tsp = NULL;
    756 	}
    757 
    758 	error = mq_recv1(SCARG(uap, mqdes), SCARG(uap, msg_ptr),
    759 	    SCARG(uap, msg_len), SCARG(uap, msg_prio), tsp, &mlen);
    760 	if (error == 0)
    761 		*retval = mlen;
    762 
    763 	return error;
    764 }
    765 
    766 /*
    767  * Primary mq_send1() function.
    768  */
    769 int
    770 mq_send1(mqd_t mqdes, const char *msg_ptr, size_t msg_len, u_int msg_prio,
    771     struct timespec *ts)
    772 {
    773 	file_t *fp = NULL;
    774 	struct mqueue *mq;
    775 	struct mq_msg *msg;
    776 	struct mq_attr *mqattr;
    777 	struct proc *notify = NULL;
    778 	ksiginfo_t ksi;
    779 	size_t size;
    780 	int error;
    781 
    782 	/* Check the priority range */
    783 	if (msg_prio >= mq_prio_max)
    784 		return EINVAL;
    785 
    786 	/* Allocate a new message */
    787 	size = sizeof(struct mq_msg) + msg_len;
    788 	if (size > mq_max_msgsize)
    789 		return EMSGSIZE;
    790 
    791 	if (size > MQ_DEF_MSGSIZE) {
    792 		msg = kmem_alloc(size, KM_SLEEP);
    793 	} else {
    794 		msg = pool_cache_get(mqmsg_cache, PR_WAITOK);
    795 	}
    796 
    797 	/* Get the data from user-space */
    798 	error = copyin(msg_ptr, msg->msg_ptr, msg_len);
    799 	if (error) {
    800 		mqueue_freemsg(msg, size);
    801 		return error;
    802 	}
    803 	msg->msg_len = msg_len;
    804 	msg->msg_prio = msg_prio;
    805 
    806 	/* Get the mqueue */
    807 	error = mqueue_get(mqdes, &fp);
    808 	if (error) {
    809 		mqueue_freemsg(msg, size);
    810 		return error;
    811 	}
    812 	mq = fp->f_data;
    813 	if ((fp->f_flag & FWRITE) == 0) {
    814 		error = EBADF;
    815 		goto error;
    816 	}
    817 	getnanotime(&mq->mq_mtime);
    818 	mqattr = &mq->mq_attrib;
    819 
    820 	/* Check the message size limit */
    821 	if (msg_len <= 0 || msg_len > mqattr->mq_msgsize) {
    822 		error = EMSGSIZE;
    823 		goto error;
    824 	}
    825 
    826 	/* Check if queue is full */
    827 	while (mqattr->mq_curmsgs >= mqattr->mq_maxmsg) {
    828 		int t;
    829 
    830 		if (mqattr->mq_flags & O_NONBLOCK) {
    831 			error = EAGAIN;
    832 			goto error;
    833 		}
    834 		if (ts) {
    835 			error = abstimeout2timo(ts, &t);
    836 			if (error)
    837 				goto error;
    838 		} else
    839 			t = 0;
    840 		/* Block until queue becomes available */
    841 		error = cv_timedwait_sig(&mq->mq_recv_cv, &mq->mq_mtx, t);
    842 		if (error || (mqattr->mq_flags & MQ_UNLINK)) {
    843 			error = (error == EWOULDBLOCK) ? ETIMEDOUT : error;
    844 			goto error;
    845 		}
    846 	}
    847 	KASSERT(mqattr->mq_curmsgs < mqattr->mq_maxmsg);
    848 
    849 	/*
    850 	 * Insert message into the queue, according to the priority.
    851 	 * Note the difference between index and priority.
    852 	 */
    853 	if (__predict_true(msg_prio < MQ_PQSIZE)) {
    854 		u_int idx = MQ_PQSIZE - msg_prio;
    855 
    856 		KASSERT(idx != MQ_PQRESQ);
    857 		TAILQ_INSERT_TAIL(&mq->mq_head[idx], msg, msg_queue);
    858 		mq->mq_bitmap |= (1 << --idx);
    859 	} else {
    860 		mqueue_linear_insert(mq, msg);
    861 	}
    862 
    863 	/* Check for the notify */
    864 	if (mqattr->mq_curmsgs == 0 && mq->mq_notify_proc &&
    865 	    (mqattr->mq_flags & MQ_RECEIVE) == 0 &&
    866 	    mq->mq_sig_notify.sigev_notify == SIGEV_SIGNAL) {
    867 		/* Initialize the signal */
    868 		KSI_INIT(&ksi);
    869 		ksi.ksi_signo = mq->mq_sig_notify.sigev_signo;
    870 		ksi.ksi_code = SI_MESGQ;
    871 		ksi.ksi_value = mq->mq_sig_notify.sigev_value;
    872 		/* Unregister the process */
    873 		notify = mq->mq_notify_proc;
    874 		mq->mq_notify_proc = NULL;
    875 	}
    876 
    877 	/* Increment the counter and signal waiter, if any */
    878 	mqattr->mq_curmsgs++;
    879 	cv_signal(&mq->mq_send_cv);
    880 
    881 	/* Ready for receiving now */
    882 	selnotify(&mq->mq_rsel, POLLIN | POLLRDNORM, 0);
    883 error:
    884 	mutex_exit(&mq->mq_mtx);
    885 	fd_putfile((int)mqdes);
    886 
    887 	if (error) {
    888 		mqueue_freemsg(msg, size);
    889 	} else if (notify) {
    890 		/* Send the notify, if needed */
    891 		mutex_enter(proc_lock);
    892 		kpsignal(notify, &ksi, NULL);
    893 		mutex_exit(proc_lock);
    894 	}
    895 	return error;
    896 }
    897 
    898 int
    899 sys_mq_send(struct lwp *l, const struct sys_mq_send_args *uap,
    900     register_t *retval)
    901 {
    902 	/* {
    903 		syscallarg(mqd_t) mqdes;
    904 		syscallarg(const char *) msg_ptr;
    905 		syscallarg(size_t) msg_len;
    906 		syscallarg(unsigned) msg_prio;
    907 	} */
    908 
    909 	return mq_send1(SCARG(uap, mqdes), SCARG(uap, msg_ptr),
    910 	    SCARG(uap, msg_len), SCARG(uap, msg_prio), NULL);
    911 }
    912 
    913 int
    914 sys___mq_timedsend50(struct lwp *l, const struct sys___mq_timedsend50_args *uap,
    915     register_t *retval)
    916 {
    917 	/* {
    918 		syscallarg(mqd_t) mqdes;
    919 		syscallarg(const char *) msg_ptr;
    920 		syscallarg(size_t) msg_len;
    921 		syscallarg(unsigned) msg_prio;
    922 		syscallarg(const struct timespec *) abs_timeout;
    923 	} */
    924 	struct timespec ts, *tsp;
    925 	int error;
    926 
    927 	/* Get and convert time value */
    928 	if (SCARG(uap, abs_timeout)) {
    929 		error = copyin(SCARG(uap, abs_timeout), &ts, sizeof(ts));
    930 		if (error)
    931 			return error;
    932 		tsp = &ts;
    933 	} else {
    934 		tsp = NULL;
    935 	}
    936 
    937 	return mq_send1(SCARG(uap, mqdes), SCARG(uap, msg_ptr),
    938 	    SCARG(uap, msg_len), SCARG(uap, msg_prio), tsp);
    939 }
    940 
    941 int
    942 sys_mq_notify(struct lwp *l, const struct sys_mq_notify_args *uap,
    943     register_t *retval)
    944 {
    945 	/* {
    946 		syscallarg(mqd_t) mqdes;
    947 		syscallarg(const struct sigevent *) notification;
    948 	} */
    949 	file_t *fp = NULL;
    950 	struct mqueue *mq;
    951 	struct sigevent sig;
    952 	int error;
    953 
    954 	if (SCARG(uap, notification)) {
    955 		/* Get the signal from user-space */
    956 		error = copyin(SCARG(uap, notification), &sig,
    957 		    sizeof(struct sigevent));
    958 		if (error)
    959 			return error;
    960 		if (sig.sigev_notify == SIGEV_SIGNAL &&
    961 		    (sig.sigev_signo <=0 || sig.sigev_signo >= NSIG))
    962 			return EINVAL;
    963 	}
    964 
    965 	error = mqueue_get(SCARG(uap, mqdes), &fp);
    966 	if (error)
    967 		return error;
    968 	mq = fp->f_data;
    969 
    970 	if (SCARG(uap, notification)) {
    971 		/* Register notification: set the signal and target process */
    972 		if (mq->mq_notify_proc == NULL) {
    973 			memcpy(&mq->mq_sig_notify, &sig,
    974 			    sizeof(struct sigevent));
    975 			mq->mq_notify_proc = l->l_proc;
    976 		} else {
    977 			/* Fail if someone else already registered */
    978 			error = EBUSY;
    979 		}
    980 	} else {
    981 		/* Unregister the notification */
    982 		mq->mq_notify_proc = NULL;
    983 	}
    984 	mutex_exit(&mq->mq_mtx);
    985 	fd_putfile((int)SCARG(uap, mqdes));
    986 
    987 	return error;
    988 }
    989 
    990 int
    991 sys_mq_getattr(struct lwp *l, const struct sys_mq_getattr_args *uap,
    992     register_t *retval)
    993 {
    994 	/* {
    995 		syscallarg(mqd_t) mqdes;
    996 		syscallarg(struct mq_attr *) mqstat;
    997 	} */
    998 	file_t *fp = NULL;
    999 	struct mqueue *mq;
   1000 	struct mq_attr attr;
   1001 	int error;
   1002 
   1003 	/* Get the message queue */
   1004 	error = mqueue_get(SCARG(uap, mqdes), &fp);
   1005 	if (error)
   1006 		return error;
   1007 	mq = fp->f_data;
   1008 	memcpy(&attr, &mq->mq_attrib, sizeof(struct mq_attr));
   1009 	mutex_exit(&mq->mq_mtx);
   1010 	fd_putfile((int)SCARG(uap, mqdes));
   1011 
   1012 	return copyout(&attr, SCARG(uap, mqstat), sizeof(struct mq_attr));
   1013 }
   1014 
   1015 int
   1016 sys_mq_setattr(struct lwp *l, const struct sys_mq_setattr_args *uap,
   1017     register_t *retval)
   1018 {
   1019 	/* {
   1020 		syscallarg(mqd_t) mqdes;
   1021 		syscallarg(const struct mq_attr *) mqstat;
   1022 		syscallarg(struct mq_attr *) omqstat;
   1023 	} */
   1024 	file_t *fp = NULL;
   1025 	struct mqueue *mq;
   1026 	struct mq_attr attr;
   1027 	int error, nonblock;
   1028 
   1029 	error = copyin(SCARG(uap, mqstat), &attr, sizeof(struct mq_attr));
   1030 	if (error)
   1031 		return error;
   1032 	nonblock = (attr.mq_flags & O_NONBLOCK);
   1033 
   1034 	/* Get the message queue */
   1035 	error = mqueue_get(SCARG(uap, mqdes), &fp);
   1036 	if (error)
   1037 		return error;
   1038 	mq = fp->f_data;
   1039 
   1040 	/* Copy the old attributes, if needed */
   1041 	if (SCARG(uap, omqstat)) {
   1042 		memcpy(&attr, &mq->mq_attrib, sizeof(struct mq_attr));
   1043 	}
   1044 
   1045 	/* Ignore everything, except O_NONBLOCK */
   1046 	if (nonblock)
   1047 		mq->mq_attrib.mq_flags |= O_NONBLOCK;
   1048 	else
   1049 		mq->mq_attrib.mq_flags &= ~O_NONBLOCK;
   1050 
   1051 	mutex_exit(&mq->mq_mtx);
   1052 	fd_putfile((int)SCARG(uap, mqdes));
   1053 
   1054 	/*
   1055 	 * Copy the data to the user-space.
   1056 	 * Note: According to POSIX, the new attributes should not be set in
   1057 	 * case of fail - this would be violated.
   1058 	 */
   1059 	if (SCARG(uap, omqstat))
   1060 		error = copyout(&attr, SCARG(uap, omqstat),
   1061 		    sizeof(struct mq_attr));
   1062 
   1063 	return error;
   1064 }
   1065 
   1066 int
   1067 sys_mq_unlink(struct lwp *l, const struct sys_mq_unlink_args *uap,
   1068     register_t *retval)
   1069 {
   1070 	/* {
   1071 		syscallarg(const char *) name;
   1072 	} */
   1073 	struct mqueue *mq;
   1074 	char *name;
   1075 	int error, refcnt = 0;
   1076 
   1077 	/* Get the name from the user-space */
   1078 	name = kmem_zalloc(MQ_NAMELEN, KM_SLEEP);
   1079 	error = copyinstr(SCARG(uap, name), name, MQ_NAMELEN - 1, NULL);
   1080 	if (error) {
   1081 		kmem_free(name, MQ_NAMELEN);
   1082 		return error;
   1083 	}
   1084 
   1085 	/* Lookup for this file */
   1086 	mutex_enter(&mqlist_mtx);
   1087 	mq = mqueue_lookup(name);
   1088 	if (mq == NULL) {
   1089 		error = ENOENT;
   1090 		goto error;
   1091 	}
   1092 
   1093 	/* Check the permissions */
   1094 	if (kauth_cred_geteuid(l->l_cred) != mq->mq_euid &&
   1095 	    kauth_authorize_generic(l->l_cred, KAUTH_GENERIC_ISSUSER, NULL)) {
   1096 		mutex_exit(&mq->mq_mtx);
   1097 		error = EACCES;
   1098 		goto error;
   1099 	}
   1100 
   1101 	/* Mark message queue as unlinking, before leaving the window */
   1102 	mq->mq_attrib.mq_flags |= MQ_UNLINK;
   1103 
   1104 	/* Wake up all waiters, if there are such */
   1105 	cv_broadcast(&mq->mq_send_cv);
   1106 	cv_broadcast(&mq->mq_recv_cv);
   1107 
   1108 	selnotify(&mq->mq_rsel, POLLHUP, 0);
   1109 	selnotify(&mq->mq_wsel, POLLHUP, 0);
   1110 
   1111 	refcnt = mq->mq_refcnt;
   1112 	if (refcnt == 0)
   1113 		LIST_REMOVE(mq, mq_list);
   1114 
   1115 	mutex_exit(&mq->mq_mtx);
   1116 error:
   1117 	mutex_exit(&mqlist_mtx);
   1118 
   1119 	/*
   1120 	 * If there are no references - destroy the message
   1121 	 * queue, otherwise, the last mq_close() will do that.
   1122 	 */
   1123 	if (error == 0 && refcnt == 0)
   1124 		mqueue_destroy(mq);
   1125 
   1126 	kmem_free(name, MQ_NAMELEN);
   1127 	return error;
   1128 }
   1129 
   1130 /*
   1131  * System control nodes.
   1132  */
   1133 static int
   1134 mqueue_sysctl_init(void)
   1135 {
   1136 	const struct sysctlnode *node = NULL;
   1137 
   1138 	mqsysctl_log = NULL;
   1139 
   1140 	sysctl_createv(&mqsysctl_log, 0, NULL, NULL,
   1141 		CTLFLAG_PERMANENT,
   1142 		CTLTYPE_NODE, "kern", NULL,
   1143 		NULL, 0, NULL, 0,
   1144 		CTL_KERN, CTL_EOL);
   1145 	sysctl_createv(&mqsysctl_log, 0, NULL, NULL,
   1146 		CTLFLAG_PERMANENT|CTLFLAG_IMMEDIATE,
   1147 		CTLTYPE_INT, "posix_msg",
   1148 		SYSCTL_DESCR("Version of IEEE Std 1003.1 and its "
   1149 			     "Message Passing option to which the "
   1150 			     "system attempts to conform"),
   1151 		NULL, _POSIX_MESSAGE_PASSING, NULL, 0,
   1152 		CTL_KERN, CTL_CREATE, CTL_EOL);
   1153 	sysctl_createv(&mqsysctl_log, 0, NULL, &node,
   1154 		CTLFLAG_PERMANENT,
   1155 		CTLTYPE_NODE, "mqueue",
   1156 		SYSCTL_DESCR("Message queue options"),
   1157 		NULL, 0, NULL, 0,
   1158 		CTL_KERN, CTL_CREATE, CTL_EOL);
   1159 
   1160 	if (node == NULL)
   1161 		return ENXIO;
   1162 
   1163 	sysctl_createv(&mqsysctl_log, 0, &node, NULL,
   1164 		CTLFLAG_PERMANENT | CTLFLAG_READWRITE,
   1165 		CTLTYPE_INT, "mq_open_max",
   1166 		SYSCTL_DESCR("Maximal number of message queue descriptors "
   1167 			     "that process could open"),
   1168 		NULL, 0, &mq_open_max, 0,
   1169 		CTL_CREATE, CTL_EOL);
   1170 	sysctl_createv(&mqsysctl_log, 0, &node, NULL,
   1171 		CTLFLAG_PERMANENT | CTLFLAG_READWRITE,
   1172 		CTLTYPE_INT, "mq_prio_max",
   1173 		SYSCTL_DESCR("Maximal priority of the message"),
   1174 		NULL, 0, &mq_prio_max, 0,
   1175 		CTL_CREATE, CTL_EOL);
   1176 	sysctl_createv(&mqsysctl_log, 0, &node, NULL,
   1177 		CTLFLAG_PERMANENT | CTLFLAG_READWRITE,
   1178 		CTLTYPE_INT, "mq_max_msgsize",
   1179 		SYSCTL_DESCR("Maximal allowed size of the message"),
   1180 		NULL, 0, &mq_max_msgsize, 0,
   1181 		CTL_CREATE, CTL_EOL);
   1182 	sysctl_createv(&mqsysctl_log, 0, &node, NULL,
   1183 		CTLFLAG_PERMANENT | CTLFLAG_READWRITE,
   1184 		CTLTYPE_INT, "mq_def_maxmsg",
   1185 		SYSCTL_DESCR("Default maximal message count"),
   1186 		NULL, 0, &mq_def_maxmsg, 0,
   1187 		CTL_CREATE, CTL_EOL);
   1188 	sysctl_createv(&mqsysctl_log, 0, &node, NULL,
   1189 		CTLFLAG_PERMANENT | CTLFLAG_READWRITE,
   1190 		CTLTYPE_INT, "mq_max_maxmsg",
   1191 		SYSCTL_DESCR("Maximal allowed message count"),
   1192 		NULL, 0, &mq_max_maxmsg, 0,
   1193 		CTL_CREATE, CTL_EOL);
   1194 
   1195 	return 0;
   1196 }
   1197 
   1198 /*
   1199  * Debugging.
   1200  */
   1201 #if defined(DDB)
   1202 
   1203 void
   1204 mqueue_print_list(void (*pr)(const char *, ...))
   1205 {
   1206 	struct mqueue *mq;
   1207 
   1208 	(*pr)("Global list of the message queues:\n");
   1209 	(*pr)("%20s %10s %8s %8s %3s %4s %4s %4s\n",
   1210 	    "Name", "Ptr", "Mode", "Flags",  "Ref",
   1211 	    "MaxMsg", "MsgSze", "CurMsg");
   1212 	LIST_FOREACH(mq, &mqueue_head, mq_list) {
   1213 		(*pr)("%20s %10p %8x %8x %3u %6lu %6lu %6lu\n",
   1214 		    mq->mq_name, mq, mq->mq_mode,
   1215 		    mq->mq_attrib.mq_flags, mq->mq_refcnt,
   1216 		    mq->mq_attrib.mq_maxmsg, mq->mq_attrib.mq_msgsize,
   1217 		    mq->mq_attrib.mq_curmsgs);
   1218 	}
   1219 }
   1220 
   1221 #endif /* defined(DDB) */
   1222