kern_conf.c revision 231386
169408Sache/*-
269408Sache * Copyright (c) 1999-2002 Poul-Henning Kamp
369408Sache * All rights reserved.
469408Sache *
5 * Redistribution and use in source and binary forms, with or without
6 * modification, are permitted provided that the following conditions
7 * are met:
8 * 1. Redistributions of source code must retain the above copyright
9 *    notice, this list of conditions and the following disclaimer.
10 * 2. Redistributions in binary form must reproduce the above copyright
11 *    notice, this list of conditions and the following disclaimer in the
12 *    documentation and/or other materials provided with the distribution.
13 *
14 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND
15 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
16 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
17 * ARE DISCLAIMED.  IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
18 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
19 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
20 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
21 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
22 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
23 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
24 * SUCH DAMAGE.
25 */
26
27#include <sys/cdefs.h>
28__FBSDID("$FreeBSD: head/sys/kern/kern_conf.c 231386 2012-02-10 14:55:47Z ed $");
29
30#include <sys/param.h>
31#include <sys/kernel.h>
32#include <sys/systm.h>
33#include <sys/bus.h>
34#include <sys/bio.h>
35#include <sys/lock.h>
36#include <sys/mutex.h>
37#include <sys/module.h>
38#include <sys/malloc.h>
39#include <sys/conf.h>
40#include <sys/vnode.h>
41#include <sys/queue.h>
42#include <sys/poll.h>
43#include <sys/sx.h>
44#include <sys/ctype.h>
45#include <sys/ucred.h>
46#include <sys/taskqueue.h>
47#include <machine/stdarg.h>
48
49#include <fs/devfs/devfs_int.h>
50#include <vm/vm.h>
51
52static MALLOC_DEFINE(M_DEVT, "cdev", "cdev storage");
53
54struct mtx devmtx;
55static void destroy_devl(struct cdev *dev);
56static int destroy_dev_sched_cbl(struct cdev *dev,
57    void (*cb)(void *), void *arg);
58static void destroy_dev_tq(void *ctx, int pending);
59static int make_dev_credv(int flags, struct cdev **dres, struct cdevsw *devsw,
60    int unit, struct ucred *cr, uid_t uid, gid_t gid, int mode, const char *fmt,
61    va_list ap);
62
63static struct cdev_priv_list cdevp_free_list =
64    TAILQ_HEAD_INITIALIZER(cdevp_free_list);
65static SLIST_HEAD(free_cdevsw, cdevsw) cdevsw_gt_post_list =
66    SLIST_HEAD_INITIALIZER(cdevsw_gt_post_list);
67
68void
69dev_lock(void)
70{
71
72	mtx_lock(&devmtx);
73}
74
75/*
76 * Free all the memory collected while the cdev mutex was
77 * locked. Since devmtx is after the system map mutex, free() cannot
78 * be called immediately and is postponed until cdev mutex can be
79 * dropped.
80 */
81static void
82dev_unlock_and_free(void)
83{
84	struct cdev_priv_list cdp_free;
85	struct free_cdevsw csw_free;
86	struct cdev_priv *cdp;
87	struct cdevsw *csw;
88
89	mtx_assert(&devmtx, MA_OWNED);
90
91	/*
92	 * Make the local copy of the list heads while the dev_mtx is
93	 * held. Free it later.
94	 */
95	TAILQ_INIT(&cdp_free);
96	TAILQ_CONCAT(&cdp_free, &cdevp_free_list, cdp_list);
97	csw_free = cdevsw_gt_post_list;
98	SLIST_INIT(&cdevsw_gt_post_list);
99
100	mtx_unlock(&devmtx);
101
102	while ((cdp = TAILQ_FIRST(&cdp_free)) != NULL) {
103		TAILQ_REMOVE(&cdp_free, cdp, cdp_list);
104		devfs_free(&cdp->cdp_c);
105	}
106	while ((csw = SLIST_FIRST(&csw_free)) != NULL) {
107		SLIST_REMOVE_HEAD(&csw_free, d_postfree_list);
108		free(csw, M_DEVT);
109	}
110}
111
112static void
113dev_free_devlocked(struct cdev *cdev)
114{
115	struct cdev_priv *cdp;
116
117	mtx_assert(&devmtx, MA_OWNED);
118	cdp = cdev2priv(cdev);
119	TAILQ_INSERT_HEAD(&cdevp_free_list, cdp, cdp_list);
120}
121
122static void
123cdevsw_free_devlocked(struct cdevsw *csw)
124{
125
126	mtx_assert(&devmtx, MA_OWNED);
127	SLIST_INSERT_HEAD(&cdevsw_gt_post_list, csw, d_postfree_list);
128}
129
130void
131dev_unlock(void)
132{
133
134	mtx_unlock(&devmtx);
135}
136
137void
138dev_ref(struct cdev *dev)
139{
140
141	mtx_assert(&devmtx, MA_NOTOWNED);
142	mtx_lock(&devmtx);
143	dev->si_refcount++;
144	mtx_unlock(&devmtx);
145}
146
147void
148dev_refl(struct cdev *dev)
149{
150
151	mtx_assert(&devmtx, MA_OWNED);
152	dev->si_refcount++;
153}
154
155void
156dev_rel(struct cdev *dev)
157{
158	int flag = 0;
159
160	mtx_assert(&devmtx, MA_NOTOWNED);
161	dev_lock();
162	dev->si_refcount--;
163	KASSERT(dev->si_refcount >= 0,
164	    ("dev_rel(%s) gave negative count", devtoname(dev)));
165#if 0
166	if (dev->si_usecount == 0 &&
167	    (dev->si_flags & SI_CHEAPCLONE) && (dev->si_flags & SI_NAMED))
168		;
169	else
170#endif
171	if (dev->si_devsw == NULL && dev->si_refcount == 0) {
172		LIST_REMOVE(dev, si_list);
173		flag = 1;
174	}
175	dev_unlock();
176	if (flag)
177		devfs_free(dev);
178}
179
180struct cdevsw *
181dev_refthread(struct cdev *dev, int *ref)
182{
183	struct cdevsw *csw;
184	struct cdev_priv *cdp;
185
186	mtx_assert(&devmtx, MA_NOTOWNED);
187	if ((dev->si_flags & SI_ETERNAL) != 0) {
188		*ref = 0;
189		return (dev->si_devsw);
190	}
191	dev_lock();
192	csw = dev->si_devsw;
193	if (csw != NULL) {
194		cdp = cdev2priv(dev);
195		if ((cdp->cdp_flags & CDP_SCHED_DTR) == 0)
196			dev->si_threadcount++;
197		else
198			csw = NULL;
199	}
200	dev_unlock();
201	*ref = 1;
202	return (csw);
203}
204
205struct cdevsw *
206devvn_refthread(struct vnode *vp, struct cdev **devp, int *ref)
207{
208	struct cdevsw *csw;
209	struct cdev_priv *cdp;
210	struct cdev *dev;
211
212	mtx_assert(&devmtx, MA_NOTOWNED);
213	if ((vp->v_vflag & VV_ETERNALDEV) != 0) {
214		dev = vp->v_rdev;
215		if (dev == NULL)
216			return (NULL);
217		KASSERT((dev->si_flags & SI_ETERNAL) != 0,
218		    ("Not eternal cdev"));
219		*ref = 0;
220		csw = dev->si_devsw;
221		KASSERT(csw != NULL, ("Eternal cdev is destroyed"));
222		*devp = dev;
223		return (csw);
224	}
225
226	csw = NULL;
227	dev_lock();
228	dev = vp->v_rdev;
229	if (dev == NULL) {
230		dev_unlock();
231		return (NULL);
232	}
233	cdp = cdev2priv(dev);
234	if ((cdp->cdp_flags & CDP_SCHED_DTR) == 0) {
235		csw = dev->si_devsw;
236		if (csw != NULL)
237			dev->si_threadcount++;
238	}
239	dev_unlock();
240	if (csw != NULL) {
241		*devp = dev;
242		*ref = 1;
243	}
244	return (csw);
245}
246
247void
248dev_relthread(struct cdev *dev, int ref)
249{
250
251	mtx_assert(&devmtx, MA_NOTOWNED);
252	if (!ref)
253		return;
254	dev_lock();
255	KASSERT(dev->si_threadcount > 0,
256	    ("%s threadcount is wrong", dev->si_name));
257	dev->si_threadcount--;
258	dev_unlock();
259}
260
261int
262nullop(void)
263{
264
265	return (0);
266}
267
268int
269eopnotsupp(void)
270{
271
272	return (EOPNOTSUPP);
273}
274
275static int
276enxio(void)
277{
278	return (ENXIO);
279}
280
281static int
282enodev(void)
283{
284	return (ENODEV);
285}
286
287/* Define a dead_cdevsw for use when devices leave unexpectedly. */
288
289#define dead_open	(d_open_t *)enxio
290#define dead_close	(d_close_t *)enxio
291#define dead_read	(d_read_t *)enxio
292#define dead_write	(d_write_t *)enxio
293#define dead_ioctl	(d_ioctl_t *)enxio
294#define dead_poll	(d_poll_t *)enodev
295#define dead_mmap	(d_mmap_t *)enodev
296
297static void
298dead_strategy(struct bio *bp)
299{
300
301	biofinish(bp, NULL, ENXIO);
302}
303
304#define dead_dump	(dumper_t *)enxio
305#define dead_kqfilter	(d_kqfilter_t *)enxio
306#define dead_mmap_single (d_mmap_single_t *)enodev
307
308static struct cdevsw dead_cdevsw = {
309	.d_version =	D_VERSION,
310	.d_flags =	D_NEEDGIANT, /* XXX: does dead_strategy need this ? */
311	.d_open =	dead_open,
312	.d_close =	dead_close,
313	.d_read =	dead_read,
314	.d_write =	dead_write,
315	.d_ioctl =	dead_ioctl,
316	.d_poll =	dead_poll,
317	.d_mmap =	dead_mmap,
318	.d_strategy =	dead_strategy,
319	.d_name =	"dead",
320	.d_dump =	dead_dump,
321	.d_kqfilter =	dead_kqfilter,
322	.d_mmap_single = dead_mmap_single
323};
324
325/* Default methods if driver does not specify method */
326
327#define null_open	(d_open_t *)nullop
328#define null_close	(d_close_t *)nullop
329#define no_read		(d_read_t *)enodev
330#define no_write	(d_write_t *)enodev
331#define no_ioctl	(d_ioctl_t *)enodev
332#define no_mmap		(d_mmap_t *)enodev
333#define no_kqfilter	(d_kqfilter_t *)enodev
334#define no_mmap_single	(d_mmap_single_t *)enodev
335
336static void
337no_strategy(struct bio *bp)
338{
339
340	biofinish(bp, NULL, ENODEV);
341}
342
343static int
344no_poll(struct cdev *dev __unused, int events, struct thread *td __unused)
345{
346
347	return (poll_no_poll(events));
348}
349
350#define no_dump		(dumper_t *)enodev
351
352static int
353giant_open(struct cdev *dev, int oflags, int devtype, struct thread *td)
354{
355	struct cdevsw *dsw;
356	int ref, retval;
357
358	dsw = dev_refthread(dev, &ref);
359	if (dsw == NULL)
360		return (ENXIO);
361	mtx_lock(&Giant);
362	retval = dsw->d_gianttrick->d_open(dev, oflags, devtype, td);
363	mtx_unlock(&Giant);
364	dev_relthread(dev, ref);
365	return (retval);
366}
367
368static int
369giant_fdopen(struct cdev *dev, int oflags, struct thread *td, struct file *fp)
370{
371	struct cdevsw *dsw;
372	int ref, retval;
373
374	dsw = dev_refthread(dev, &ref);
375	if (dsw == NULL)
376		return (ENXIO);
377	mtx_lock(&Giant);
378	retval = dsw->d_gianttrick->d_fdopen(dev, oflags, td, fp);
379	mtx_unlock(&Giant);
380	dev_relthread(dev, ref);
381	return (retval);
382}
383
384static int
385giant_close(struct cdev *dev, int fflag, int devtype, struct thread *td)
386{
387	struct cdevsw *dsw;
388	int ref, retval;
389
390	dsw = dev_refthread(dev, &ref);
391	if (dsw == NULL)
392		return (ENXIO);
393	mtx_lock(&Giant);
394	retval = dsw->d_gianttrick->d_close(dev, fflag, devtype, td);
395	mtx_unlock(&Giant);
396	dev_relthread(dev, ref);
397	return (retval);
398}
399
400static void
401giant_strategy(struct bio *bp)
402{
403	struct cdevsw *dsw;
404	struct cdev *dev;
405	int ref;
406
407	dev = bp->bio_dev;
408	dsw = dev_refthread(dev, &ref);
409	if (dsw == NULL) {
410		biofinish(bp, NULL, ENXIO);
411		return;
412	}
413	mtx_lock(&Giant);
414	dsw->d_gianttrick->d_strategy(bp);
415	mtx_unlock(&Giant);
416	dev_relthread(dev, ref);
417}
418
419static int
420giant_ioctl(struct cdev *dev, u_long cmd, caddr_t data, int fflag, struct thread *td)
421{
422	struct cdevsw *dsw;
423	int ref, retval;
424
425	dsw = dev_refthread(dev, &ref);
426	if (dsw == NULL)
427		return (ENXIO);
428	mtx_lock(&Giant);
429	retval = dsw->d_gianttrick->d_ioctl(dev, cmd, data, fflag, td);
430	mtx_unlock(&Giant);
431	dev_relthread(dev, ref);
432	return (retval);
433}
434
435static int
436giant_read(struct cdev *dev, struct uio *uio, int ioflag)
437{
438	struct cdevsw *dsw;
439	int ref, retval;
440
441	dsw = dev_refthread(dev, &ref);
442	if (dsw == NULL)
443		return (ENXIO);
444	mtx_lock(&Giant);
445	retval = dsw->d_gianttrick->d_read(dev, uio, ioflag);
446	mtx_unlock(&Giant);
447	dev_relthread(dev, ref);
448	return (retval);
449}
450
451static int
452giant_write(struct cdev *dev, struct uio *uio, int ioflag)
453{
454	struct cdevsw *dsw;
455	int ref, retval;
456
457	dsw = dev_refthread(dev, &ref);
458	if (dsw == NULL)
459		return (ENXIO);
460	mtx_lock(&Giant);
461	retval = dsw->d_gianttrick->d_write(dev, uio, ioflag);
462	mtx_unlock(&Giant);
463	dev_relthread(dev, ref);
464	return (retval);
465}
466
467static int
468giant_poll(struct cdev *dev, int events, struct thread *td)
469{
470	struct cdevsw *dsw;
471	int ref, retval;
472
473	dsw = dev_refthread(dev, &ref);
474	if (dsw == NULL)
475		return (ENXIO);
476	mtx_lock(&Giant);
477	retval = dsw->d_gianttrick->d_poll(dev, events, td);
478	mtx_unlock(&Giant);
479	dev_relthread(dev, ref);
480	return (retval);
481}
482
483static int
484giant_kqfilter(struct cdev *dev, struct knote *kn)
485{
486	struct cdevsw *dsw;
487	int ref, retval;
488
489	dsw = dev_refthread(dev, &ref);
490	if (dsw == NULL)
491		return (ENXIO);
492	mtx_lock(&Giant);
493	retval = dsw->d_gianttrick->d_kqfilter(dev, kn);
494	mtx_unlock(&Giant);
495	dev_relthread(dev, ref);
496	return (retval);
497}
498
499static int
500giant_mmap(struct cdev *dev, vm_ooffset_t offset, vm_paddr_t *paddr, int nprot,
501    vm_memattr_t *memattr)
502{
503	struct cdevsw *dsw;
504	int ref, retval;
505
506	dsw = dev_refthread(dev, &ref);
507	if (dsw == NULL)
508		return (ENXIO);
509	mtx_lock(&Giant);
510	retval = dsw->d_gianttrick->d_mmap(dev, offset, paddr, nprot,
511	    memattr);
512	mtx_unlock(&Giant);
513	dev_relthread(dev, ref);
514	return (retval);
515}
516
517static int
518giant_mmap_single(struct cdev *dev, vm_ooffset_t *offset, vm_size_t size,
519    vm_object_t *object, int nprot)
520{
521	struct cdevsw *dsw;
522	int ref, retval;
523
524	dsw = dev_refthread(dev, &ref);
525	if (dsw == NULL)
526		return (ENXIO);
527	mtx_lock(&Giant);
528	retval = dsw->d_gianttrick->d_mmap_single(dev, offset, size, object,
529	    nprot);
530	mtx_unlock(&Giant);
531	dev_relthread(dev, ref);
532	return (retval);
533}
534
535static void
536notify(struct cdev *dev, const char *ev, int flags)
537{
538	static const char prefix[] = "cdev=";
539	char *data;
540	int namelen, mflags;
541
542	if (cold)
543		return;
544	mflags = (flags & MAKEDEV_NOWAIT) ? M_NOWAIT : M_WAITOK;
545	namelen = strlen(dev->si_name);
546	data = malloc(namelen + sizeof(prefix), M_TEMP, mflags);
547	if (data == NULL)
548		return;
549	memcpy(data, prefix, sizeof(prefix) - 1);
550	memcpy(data + sizeof(prefix) - 1, dev->si_name, namelen + 1);
551	devctl_notify_f("DEVFS", "CDEV", ev, data, mflags);
552	free(data, M_TEMP);
553}
554
555static void
556notify_create(struct cdev *dev, int flags)
557{
558
559	notify(dev, "CREATE", flags);
560}
561
562static void
563notify_destroy(struct cdev *dev)
564{
565
566	notify(dev, "DESTROY", MAKEDEV_WAITOK);
567}
568
569static struct cdev *
570newdev(struct cdevsw *csw, int unit, struct cdev *si)
571{
572	struct cdev *si2;
573
574	mtx_assert(&devmtx, MA_OWNED);
575	if (csw->d_flags & D_NEEDMINOR) {
576		/* We may want to return an existing device */
577		LIST_FOREACH(si2, &csw->d_devs, si_list) {
578			if (dev2unit(si2) == unit) {
579				dev_free_devlocked(si);
580				return (si2);
581			}
582		}
583	}
584	si->si_drv0 = unit;
585	si->si_devsw = csw;
586	LIST_INSERT_HEAD(&csw->d_devs, si, si_list);
587	return (si);
588}
589
590static void
591fini_cdevsw(struct cdevsw *devsw)
592{
593	struct cdevsw *gt;
594
595	if (devsw->d_gianttrick != NULL) {
596		gt = devsw->d_gianttrick;
597		memcpy(devsw, gt, sizeof *devsw);
598		cdevsw_free_devlocked(gt);
599		devsw->d_gianttrick = NULL;
600	}
601	devsw->d_flags &= ~D_INIT;
602}
603
604static int
605prep_cdevsw(struct cdevsw *devsw, int flags)
606{
607	struct cdevsw *dsw2;
608
609	mtx_assert(&devmtx, MA_OWNED);
610	if (devsw->d_flags & D_INIT)
611		return (0);
612	if (devsw->d_flags & D_NEEDGIANT) {
613		dev_unlock();
614		dsw2 = malloc(sizeof *dsw2, M_DEVT,
615		     (flags & MAKEDEV_NOWAIT) ? M_NOWAIT : M_WAITOK);
616		dev_lock();
617		if (dsw2 == NULL && !(devsw->d_flags & D_INIT))
618			return (ENOMEM);
619	} else
620		dsw2 = NULL;
621	if (devsw->d_flags & D_INIT) {
622		if (dsw2 != NULL)
623			cdevsw_free_devlocked(dsw2);
624		return (0);
625	}
626
627	if (devsw->d_version != D_VERSION_03) {
628		printf(
629		    "WARNING: Device driver \"%s\" has wrong version %s\n",
630		    devsw->d_name == NULL ? "???" : devsw->d_name,
631		    "and is disabled.  Recompile KLD module.");
632		devsw->d_open = dead_open;
633		devsw->d_close = dead_close;
634		devsw->d_read = dead_read;
635		devsw->d_write = dead_write;
636		devsw->d_ioctl = dead_ioctl;
637		devsw->d_poll = dead_poll;
638		devsw->d_mmap = dead_mmap;
639		devsw->d_mmap_single = dead_mmap_single;
640		devsw->d_strategy = dead_strategy;
641		devsw->d_dump = dead_dump;
642		devsw->d_kqfilter = dead_kqfilter;
643	}
644
645	if (devsw->d_flags & D_NEEDGIANT) {
646		if (devsw->d_gianttrick == NULL) {
647			memcpy(dsw2, devsw, sizeof *dsw2);
648			devsw->d_gianttrick = dsw2;
649			dsw2 = NULL;
650		}
651	}
652
653#define FIXUP(member, noop, giant) 				\
654	do {							\
655		if (devsw->member == NULL) {			\
656			devsw->member = noop;			\
657		} else if (devsw->d_flags & D_NEEDGIANT)	\
658			devsw->member = giant;			\
659		}						\
660	while (0)
661
662	FIXUP(d_open,		null_open,	giant_open);
663	FIXUP(d_fdopen,		NULL,		giant_fdopen);
664	FIXUP(d_close,		null_close,	giant_close);
665	FIXUP(d_read,		no_read,	giant_read);
666	FIXUP(d_write,		no_write,	giant_write);
667	FIXUP(d_ioctl,		no_ioctl,	giant_ioctl);
668	FIXUP(d_poll,		no_poll,	giant_poll);
669	FIXUP(d_mmap,		no_mmap,	giant_mmap);
670	FIXUP(d_strategy,	no_strategy,	giant_strategy);
671	FIXUP(d_kqfilter,	no_kqfilter,	giant_kqfilter);
672	FIXUP(d_mmap_single,	no_mmap_single,	giant_mmap_single);
673
674	if (devsw->d_dump == NULL)	devsw->d_dump = no_dump;
675
676	LIST_INIT(&devsw->d_devs);
677
678	devsw->d_flags |= D_INIT;
679
680	if (dsw2 != NULL)
681		cdevsw_free_devlocked(dsw2);
682	return (0);
683}
684
685static int
686prep_devname(struct cdev *dev, const char *fmt, va_list ap)
687{
688	int len;
689	char *from, *q, *s, *to;
690
691	mtx_assert(&devmtx, MA_OWNED);
692
693	len = vsnrprintf(dev->si_name, sizeof(dev->si_name), 32, fmt, ap);
694	if (len > sizeof(dev->si_name) - 1)
695		return (ENAMETOOLONG);
696
697	/* Strip leading slashes. */
698	for (from = dev->si_name; *from == '/'; from++)
699		;
700
701	for (to = dev->si_name; *from != '\0'; from++, to++) {
702		/* Treat multiple sequential slashes as single. */
703		while (from[0] == '/' && from[1] == '/')
704			from++;
705		/* Trailing slash is considered invalid. */
706		if (from[0] == '/' && from[1] == '\0')
707			return (EINVAL);
708		*to = *from;
709	}
710	*to = '\0';
711
712	if (dev->si_name[0] == '\0')
713		return (EINVAL);
714
715	/* Disallow "." and ".." components. */
716	for (s = dev->si_name;;) {
717		for (q = s; *q != '/' && *q != '\0'; q++)
718			;
719		if (q - s == 1 && s[0] == '.')
720			return (EINVAL);
721		if (q - s == 2 && s[0] == '.' && s[1] == '.')
722			return (EINVAL);
723		if (*q != '/')
724			break;
725		s = q + 1;
726	}
727
728	if (devfs_dev_exists(dev->si_name) != 0)
729		return (EEXIST);
730
731	return (0);
732}
733
734static int
735make_dev_credv(int flags, struct cdev **dres, struct cdevsw *devsw, int unit,
736    struct ucred *cr, uid_t uid, gid_t gid, int mode, const char *fmt,
737    va_list ap)
738{
739	struct cdev *dev, *dev_new;
740	int res;
741
742	KASSERT((flags & MAKEDEV_WAITOK) == 0 || (flags & MAKEDEV_NOWAIT) == 0,
743	    ("make_dev_credv: both WAITOK and NOWAIT specified"));
744	dev_new = devfs_alloc(flags);
745	if (dev_new == NULL)
746		return (ENOMEM);
747	dev_lock();
748	res = prep_cdevsw(devsw, flags);
749	if (res != 0) {
750		dev_unlock();
751		devfs_free(dev_new);
752		return (res);
753	}
754	dev = newdev(devsw, unit, dev_new);
755	if ((dev->si_flags & SI_NAMED) == 0) {
756		res = prep_devname(dev, fmt, ap);
757		if (res != 0) {
758			if ((flags & MAKEDEV_CHECKNAME) == 0) {
759				panic(
760			"make_dev_credv: bad si_name (error=%d, si_name=%s)",
761				    res, dev->si_name);
762			}
763			if (dev == dev_new) {
764				LIST_REMOVE(dev, si_list);
765				dev_unlock();
766				devfs_free(dev);
767			} else
768				dev_unlock();
769			return (res);
770		}
771	}
772	if (flags & MAKEDEV_REF)
773		dev_refl(dev);
774	if (flags & MAKEDEV_ETERNAL)
775		dev->si_flags |= SI_ETERNAL;
776	if (dev->si_flags & SI_CHEAPCLONE &&
777	    dev->si_flags & SI_NAMED) {
778		/*
779		 * This is allowed as it removes races and generally
780		 * simplifies cloning devices.
781		 * XXX: still ??
782		 */
783		dev_unlock_and_free();
784		*dres = dev;
785		return (0);
786	}
787	KASSERT(!(dev->si_flags & SI_NAMED),
788	    ("make_dev() by driver %s on pre-existing device (min=%x, name=%s)",
789	    devsw->d_name, dev2unit(dev), devtoname(dev)));
790	dev->si_flags |= SI_NAMED;
791	if (cr != NULL)
792		dev->si_cred = crhold(cr);
793	dev->si_uid = uid;
794	dev->si_gid = gid;
795	dev->si_mode = mode;
796
797	devfs_create(dev);
798	clean_unrhdrl(devfs_inos);
799	dev_unlock_and_free();
800
801	notify_create(dev, flags);
802
803	*dres = dev;
804	return (0);
805}
806
807struct cdev *
808make_dev(struct cdevsw *devsw, int unit, uid_t uid, gid_t gid, int mode,
809    const char *fmt, ...)
810{
811	struct cdev *dev;
812	va_list ap;
813	int res;
814
815	va_start(ap, fmt);
816	res = make_dev_credv(0, &dev, devsw, unit, NULL, uid, gid, mode, fmt,
817	    ap);
818	va_end(ap);
819	KASSERT(res == 0 && dev != NULL,
820	    ("make_dev: failed make_dev_credv (error=%d)", res));
821	return (dev);
822}
823
824struct cdev *
825make_dev_cred(struct cdevsw *devsw, int unit, struct ucred *cr, uid_t uid,
826    gid_t gid, int mode, const char *fmt, ...)
827{
828	struct cdev *dev;
829	va_list ap;
830	int res;
831
832	va_start(ap, fmt);
833	res = make_dev_credv(0, &dev, devsw, unit, cr, uid, gid, mode, fmt, ap);
834	va_end(ap);
835
836	KASSERT(res == 0 && dev != NULL,
837	    ("make_dev_cred: failed make_dev_credv (error=%d)", res));
838	return (dev);
839}
840
841struct cdev *
842make_dev_credf(int flags, struct cdevsw *devsw, int unit, struct ucred *cr,
843    uid_t uid, gid_t gid, int mode, const char *fmt, ...)
844{
845	struct cdev *dev;
846	va_list ap;
847	int res;
848
849	va_start(ap, fmt);
850	res = make_dev_credv(flags, &dev, devsw, unit, cr, uid, gid, mode,
851	    fmt, ap);
852	va_end(ap);
853
854	KASSERT(((flags & MAKEDEV_NOWAIT) != 0 && res == ENOMEM) ||
855	    ((flags & MAKEDEV_CHECKNAME) != 0 && res != ENOMEM) || res == 0,
856	    ("make_dev_credf: failed make_dev_credv (error=%d)", res));
857	return (res == 0 ? dev : NULL);
858}
859
860int
861make_dev_p(int flags, struct cdev **cdev, struct cdevsw *devsw,
862    struct ucred *cr, uid_t uid, gid_t gid, int mode, const char *fmt, ...)
863{
864	va_list ap;
865	int res;
866
867	va_start(ap, fmt);
868	res = make_dev_credv(flags, cdev, devsw, 0, cr, uid, gid, mode,
869	    fmt, ap);
870	va_end(ap);
871
872	KASSERT(((flags & MAKEDEV_NOWAIT) != 0 && res == ENOMEM) ||
873	    ((flags & MAKEDEV_CHECKNAME) != 0 && res != ENOMEM) || res == 0,
874	    ("make_dev_p: failed make_dev_credv (error=%d)", res));
875	return (res);
876}
877
878static void
879dev_dependsl(struct cdev *pdev, struct cdev *cdev)
880{
881
882	cdev->si_parent = pdev;
883	cdev->si_flags |= SI_CHILD;
884	LIST_INSERT_HEAD(&pdev->si_children, cdev, si_siblings);
885}
886
887
888void
889dev_depends(struct cdev *pdev, struct cdev *cdev)
890{
891
892	dev_lock();
893	dev_dependsl(pdev, cdev);
894	dev_unlock();
895}
896
897static int
898make_dev_alias_v(int flags, struct cdev **cdev, struct cdev *pdev,
899    const char *fmt, va_list ap)
900{
901	struct cdev *dev;
902	int error;
903
904	KASSERT(pdev != NULL, ("make_dev_alias_v: pdev is NULL"));
905	KASSERT((flags & MAKEDEV_WAITOK) == 0 || (flags & MAKEDEV_NOWAIT) == 0,
906	    ("make_dev_alias_v: both WAITOK and NOWAIT specified"));
907	KASSERT((flags & ~(MAKEDEV_WAITOK | MAKEDEV_NOWAIT |
908	    MAKEDEV_CHECKNAME)) == 0,
909	    ("make_dev_alias_v: invalid flags specified (flags=%02x)", flags));
910
911	dev = devfs_alloc(flags);
912	if (dev == NULL)
913		return (ENOMEM);
914	dev_lock();
915	dev->si_flags |= SI_ALIAS;
916	error = prep_devname(dev, fmt, ap);
917	if (error != 0) {
918		if ((flags & MAKEDEV_CHECKNAME) == 0) {
919			panic("make_dev_alias_v: bad si_name "
920			    "(error=%d, si_name=%s)", error, dev->si_name);
921		}
922		dev_unlock();
923		devfs_free(dev);
924		return (error);
925	}
926	dev->si_flags |= SI_NAMED;
927	devfs_create(dev);
928	dev_dependsl(pdev, dev);
929	clean_unrhdrl(devfs_inos);
930	dev_unlock();
931
932	notify_create(dev, flags);
933	*cdev = dev;
934
935	return (0);
936}
937
938struct cdev *
939make_dev_alias(struct cdev *pdev, const char *fmt, ...)
940{
941	struct cdev *dev;
942	va_list ap;
943	int res;
944
945	va_start(ap, fmt);
946	res = make_dev_alias_v(MAKEDEV_WAITOK, &dev, pdev, fmt, ap);
947	va_end(ap);
948
949	KASSERT(res == 0 && dev != NULL,
950	    ("make_dev_alias: failed make_dev_alias_v (error=%d)", res));
951	return (dev);
952}
953
954int
955make_dev_alias_p(int flags, struct cdev **cdev, struct cdev *pdev,
956    const char *fmt, ...)
957{
958	va_list ap;
959	int res;
960
961	va_start(ap, fmt);
962	res = make_dev_alias_v(flags, cdev, pdev, fmt, ap);
963	va_end(ap);
964	return (res);
965}
966
967int
968make_dev_physpath_alias(int flags, struct cdev **cdev, struct cdev *pdev,
969    struct cdev *old_alias, const char *physpath)
970{
971	char *devfspath;
972	int physpath_len;
973	int max_parentpath_len;
974	int parentpath_len;
975	int devfspathbuf_len;
976	int mflags;
977	int ret;
978
979	*cdev = NULL;
980	devfspath = NULL;
981	physpath_len = strlen(physpath);
982	ret = EINVAL;
983	if (physpath_len == 0)
984		goto out;
985
986	if (strncmp("id1,", physpath, 4) == 0) {
987		physpath += 4;
988		physpath_len -= 4;
989		if (physpath_len == 0)
990			goto out;
991	}
992
993	max_parentpath_len = SPECNAMELEN - physpath_len - /*/*/1;
994	parentpath_len = strlen(pdev->si_name);
995	if (max_parentpath_len < parentpath_len) {
996		printf("make_dev_physpath_alias: WARNING - Unable to alias %s "
997		    "to %s/%s - path too long\n",
998		    pdev->si_name, physpath, pdev->si_name);
999		ret = ENAMETOOLONG;
1000		goto out;
1001	}
1002
1003	mflags = (flags & MAKEDEV_NOWAIT) ? M_NOWAIT : M_WAITOK;
1004	devfspathbuf_len = physpath_len + /*/*/1 + parentpath_len + /*NUL*/1;
1005	devfspath = malloc(devfspathbuf_len, M_DEVBUF, mflags);
1006	if (devfspath == NULL) {
1007		ret = ENOMEM;
1008		goto out;
1009	}
1010
1011	sprintf(devfspath, "%s/%s", physpath, pdev->si_name);
1012	if (old_alias != NULL && strcmp(old_alias->si_name, devfspath) == 0) {
1013		/* Retain the existing alias. */
1014		*cdev = old_alias;
1015		old_alias = NULL;
1016		ret = 0;
1017	} else {
1018		ret = make_dev_alias_p(flags, cdev, pdev, "%s", devfspath);
1019	}
1020out:
1021	if (old_alias != NULL)
1022		destroy_dev(old_alias);
1023	if (devfspath != NULL)
1024		free(devfspath, M_DEVBUF);
1025	return (ret);
1026}
1027
1028static void
1029destroy_devl(struct cdev *dev)
1030{
1031	struct cdevsw *csw;
1032	struct cdev_privdata *p;
1033
1034	mtx_assert(&devmtx, MA_OWNED);
1035	KASSERT(dev->si_flags & SI_NAMED,
1036	    ("WARNING: Driver mistake: destroy_dev on %d\n", dev2unit(dev)));
1037	KASSERT((dev->si_flags & SI_ETERNAL) == 0,
1038	    ("WARNING: Driver mistake: destroy_dev on eternal %d\n",
1039	     dev2unit(dev)));
1040
1041	devfs_destroy(dev);
1042
1043	/* Remove name marking */
1044	dev->si_flags &= ~SI_NAMED;
1045
1046	dev->si_refcount++;	/* Avoid race with dev_rel() */
1047
1048	/* If we are a child, remove us from the parents list */
1049	if (dev->si_flags & SI_CHILD) {
1050		LIST_REMOVE(dev, si_siblings);
1051		dev->si_flags &= ~SI_CHILD;
1052	}
1053
1054	/* Kill our children */
1055	while (!LIST_EMPTY(&dev->si_children))
1056		destroy_devl(LIST_FIRST(&dev->si_children));
1057
1058	/* Remove from clone list */
1059	if (dev->si_flags & SI_CLONELIST) {
1060		LIST_REMOVE(dev, si_clone);
1061		dev->si_flags &= ~SI_CLONELIST;
1062	}
1063
1064	csw = dev->si_devsw;
1065	dev->si_devsw = NULL;	/* already NULL for SI_ALIAS */
1066	while (csw != NULL && csw->d_purge != NULL && dev->si_threadcount) {
1067		csw->d_purge(dev);
1068		msleep(csw, &devmtx, PRIBIO, "devprg", hz/10);
1069		if (dev->si_threadcount)
1070			printf("Still %lu threads in %s\n",
1071			    dev->si_threadcount, devtoname(dev));
1072	}
1073	while (dev->si_threadcount != 0) {
1074		/* Use unique dummy wait ident */
1075		msleep(&csw, &devmtx, PRIBIO, "devdrn", hz / 10);
1076	}
1077
1078	dev_unlock();
1079	notify_destroy(dev);
1080	mtx_lock(&cdevpriv_mtx);
1081	while ((p = LIST_FIRST(&cdev2priv(dev)->cdp_fdpriv)) != NULL) {
1082		devfs_destroy_cdevpriv(p);
1083		mtx_lock(&cdevpriv_mtx);
1084	}
1085	mtx_unlock(&cdevpriv_mtx);
1086	dev_lock();
1087
1088	dev->si_drv1 = 0;
1089	dev->si_drv2 = 0;
1090	bzero(&dev->__si_u, sizeof(dev->__si_u));
1091
1092	if (!(dev->si_flags & SI_ALIAS)) {
1093		/* Remove from cdevsw list */
1094		LIST_REMOVE(dev, si_list);
1095
1096		/* If cdevsw has no more struct cdev *'s, clean it */
1097		if (LIST_EMPTY(&csw->d_devs)) {
1098			fini_cdevsw(csw);
1099			wakeup(&csw->d_devs);
1100		}
1101	}
1102	dev->si_flags &= ~SI_ALIAS;
1103	dev->si_refcount--;	/* Avoid race with dev_rel() */
1104
1105	if (dev->si_refcount > 0) {
1106		LIST_INSERT_HEAD(&dead_cdevsw.d_devs, dev, si_list);
1107	} else {
1108		dev_free_devlocked(dev);
1109	}
1110}
1111
1112void
1113destroy_dev(struct cdev *dev)
1114{
1115
1116	WITNESS_WARN(WARN_GIANTOK | WARN_SLEEPOK, NULL, "destroy_dev");
1117	dev_lock();
1118	destroy_devl(dev);
1119	dev_unlock_and_free();
1120}
1121
1122const char *
1123devtoname(struct cdev *dev)
1124{
1125
1126	return (dev->si_name);
1127}
1128
1129int
1130dev_stdclone(char *name, char **namep, const char *stem, int *unit)
1131{
1132	int u, i;
1133
1134	i = strlen(stem);
1135	if (bcmp(stem, name, i) != 0)
1136		return (0);
1137	if (!isdigit(name[i]))
1138		return (0);
1139	u = 0;
1140	if (name[i] == '0' && isdigit(name[i+1]))
1141		return (0);
1142	while (isdigit(name[i])) {
1143		u *= 10;
1144		u += name[i++] - '0';
1145	}
1146	if (u > 0xffffff)
1147		return (0);
1148	*unit = u;
1149	if (namep)
1150		*namep = &name[i];
1151	if (name[i])
1152		return (2);
1153	return (1);
1154}
1155
1156/*
1157 * Helper functions for cloning device drivers.
1158 *
1159 * The objective here is to make it unnecessary for the device drivers to
1160 * use rman or similar to manage their unit number space.  Due to the way
1161 * we do "on-demand" devices, using rman or other "private" methods
1162 * will be very tricky to lock down properly once we lock down this file.
1163 *
1164 * Instead we give the drivers these routines which puts the struct cdev *'s
1165 * that are to be managed on their own list, and gives the driver the ability
1166 * to ask for the first free unit number or a given specified unit number.
1167 *
1168 * In addition these routines support paired devices (pty, nmdm and similar)
1169 * by respecting a number of "flag" bits in the minor number.
1170 *
1171 */
1172
1173struct clonedevs {
1174	LIST_HEAD(,cdev)	head;
1175};
1176
1177void
1178clone_setup(struct clonedevs **cdp)
1179{
1180
1181	*cdp = malloc(sizeof **cdp, M_DEVBUF, M_WAITOK | M_ZERO);
1182	LIST_INIT(&(*cdp)->head);
1183}
1184
1185int
1186clone_create(struct clonedevs **cdp, struct cdevsw *csw, int *up,
1187    struct cdev **dp, int extra)
1188{
1189	struct clonedevs *cd;
1190	struct cdev *dev, *ndev, *dl, *de;
1191	int unit, low, u;
1192
1193	KASSERT(*cdp != NULL,
1194	    ("clone_setup() not called in driver \"%s\"", csw->d_name));
1195	KASSERT(!(extra & CLONE_UNITMASK),
1196	    ("Illegal extra bits (0x%x) in clone_create", extra));
1197	KASSERT(*up <= CLONE_UNITMASK,
1198	    ("Too high unit (0x%x) in clone_create", *up));
1199	KASSERT(csw->d_flags & D_NEEDMINOR,
1200	    ("clone_create() on cdevsw without minor numbers"));
1201
1202
1203	/*
1204	 * Search the list for a lot of things in one go:
1205	 *   A preexisting match is returned immediately.
1206	 *   The lowest free unit number if we are passed -1, and the place
1207	 *	 in the list where we should insert that new element.
1208	 *   The place to insert a specified unit number, if applicable
1209	 *       the end of the list.
1210	 */
1211	unit = *up;
1212	ndev = devfs_alloc(MAKEDEV_WAITOK);
1213	dev_lock();
1214	prep_cdevsw(csw, MAKEDEV_WAITOK);
1215	low = extra;
1216	de = dl = NULL;
1217	cd = *cdp;
1218	LIST_FOREACH(dev, &cd->head, si_clone) {
1219		KASSERT(dev->si_flags & SI_CLONELIST,
1220		    ("Dev %p(%s) should be on clonelist", dev, dev->si_name));
1221		u = dev2unit(dev);
1222		if (u == (unit | extra)) {
1223			*dp = dev;
1224			dev_unlock();
1225			devfs_free(ndev);
1226			return (0);
1227		}
1228		if (unit == -1 && u == low) {
1229			low++;
1230			de = dev;
1231			continue;
1232		} else if (u < (unit | extra)) {
1233			de = dev;
1234			continue;
1235		} else if (u > (unit | extra)) {
1236			dl = dev;
1237			break;
1238		}
1239	}
1240	if (unit == -1)
1241		unit = low & CLONE_UNITMASK;
1242	dev = newdev(csw, unit | extra, ndev);
1243	if (dev->si_flags & SI_CLONELIST) {
1244		printf("dev %p (%s) is on clonelist\n", dev, dev->si_name);
1245		printf("unit=%d, low=%d, extra=0x%x\n", unit, low, extra);
1246		LIST_FOREACH(dev, &cd->head, si_clone) {
1247			printf("\t%p %s\n", dev, dev->si_name);
1248		}
1249		panic("foo");
1250	}
1251	KASSERT(!(dev->si_flags & SI_CLONELIST),
1252	    ("Dev %p(%s) should not be on clonelist", dev, dev->si_name));
1253	if (dl != NULL)
1254		LIST_INSERT_BEFORE(dl, dev, si_clone);
1255	else if (de != NULL)
1256		LIST_INSERT_AFTER(de, dev, si_clone);
1257	else
1258		LIST_INSERT_HEAD(&cd->head, dev, si_clone);
1259	dev->si_flags |= SI_CLONELIST;
1260	*up = unit;
1261	dev_unlock_and_free();
1262	return (1);
1263}
1264
1265/*
1266 * Kill everything still on the list.  The driver should already have
1267 * disposed of any softc hung of the struct cdev *'s at this time.
1268 */
1269void
1270clone_cleanup(struct clonedevs **cdp)
1271{
1272	struct cdev *dev;
1273	struct cdev_priv *cp;
1274	struct clonedevs *cd;
1275
1276	cd = *cdp;
1277	if (cd == NULL)
1278		return;
1279	dev_lock();
1280	while (!LIST_EMPTY(&cd->head)) {
1281		dev = LIST_FIRST(&cd->head);
1282		LIST_REMOVE(dev, si_clone);
1283		KASSERT(dev->si_flags & SI_CLONELIST,
1284		    ("Dev %p(%s) should be on clonelist", dev, dev->si_name));
1285		dev->si_flags &= ~SI_CLONELIST;
1286		cp = cdev2priv(dev);
1287		if (!(cp->cdp_flags & CDP_SCHED_DTR)) {
1288			cp->cdp_flags |= CDP_SCHED_DTR;
1289			KASSERT(dev->si_flags & SI_NAMED,
1290				("Driver has goofed in cloning underways udev %x unit %x", dev2udev(dev), dev2unit(dev)));
1291			destroy_devl(dev);
1292		}
1293	}
1294	dev_unlock_and_free();
1295	free(cd, M_DEVBUF);
1296	*cdp = NULL;
1297}
1298
1299static TAILQ_HEAD(, cdev_priv) dev_ddtr =
1300	TAILQ_HEAD_INITIALIZER(dev_ddtr);
1301static struct task dev_dtr_task = TASK_INITIALIZER(0, destroy_dev_tq, NULL);
1302
1303static void
1304destroy_dev_tq(void *ctx, int pending)
1305{
1306	struct cdev_priv *cp;
1307	struct cdev *dev;
1308	void (*cb)(void *);
1309	void *cb_arg;
1310
1311	dev_lock();
1312	while (!TAILQ_EMPTY(&dev_ddtr)) {
1313		cp = TAILQ_FIRST(&dev_ddtr);
1314		dev = &cp->cdp_c;
1315		KASSERT(cp->cdp_flags & CDP_SCHED_DTR,
1316		    ("cdev %p in dev_destroy_tq without CDP_SCHED_DTR", cp));
1317		TAILQ_REMOVE(&dev_ddtr, cp, cdp_dtr_list);
1318		cb = cp->cdp_dtr_cb;
1319		cb_arg = cp->cdp_dtr_cb_arg;
1320		destroy_devl(dev);
1321		dev_unlock_and_free();
1322		dev_rel(dev);
1323		if (cb != NULL)
1324			cb(cb_arg);
1325		dev_lock();
1326	}
1327	dev_unlock();
1328}
1329
1330/*
1331 * devmtx shall be locked on entry. devmtx will be unlocked after
1332 * function return.
1333 */
1334static int
1335destroy_dev_sched_cbl(struct cdev *dev, void (*cb)(void *), void *arg)
1336{
1337	struct cdev_priv *cp;
1338
1339	mtx_assert(&devmtx, MA_OWNED);
1340	cp = cdev2priv(dev);
1341	if (cp->cdp_flags & CDP_SCHED_DTR) {
1342		dev_unlock();
1343		return (0);
1344	}
1345	dev_refl(dev);
1346	cp->cdp_flags |= CDP_SCHED_DTR;
1347	cp->cdp_dtr_cb = cb;
1348	cp->cdp_dtr_cb_arg = arg;
1349	TAILQ_INSERT_TAIL(&dev_ddtr, cp, cdp_dtr_list);
1350	dev_unlock();
1351	taskqueue_enqueue(taskqueue_swi_giant, &dev_dtr_task);
1352	return (1);
1353}
1354
1355int
1356destroy_dev_sched_cb(struct cdev *dev, void (*cb)(void *), void *arg)
1357{
1358
1359	dev_lock();
1360	return (destroy_dev_sched_cbl(dev, cb, arg));
1361}
1362
1363int
1364destroy_dev_sched(struct cdev *dev)
1365{
1366
1367	return (destroy_dev_sched_cb(dev, NULL, NULL));
1368}
1369
1370void
1371destroy_dev_drain(struct cdevsw *csw)
1372{
1373
1374	dev_lock();
1375	while (!LIST_EMPTY(&csw->d_devs)) {
1376		msleep(&csw->d_devs, &devmtx, PRIBIO, "devscd", hz/10);
1377	}
1378	dev_unlock();
1379}
1380
1381void
1382drain_dev_clone_events(void)
1383{
1384
1385	sx_xlock(&clone_drain_lock);
1386	sx_xunlock(&clone_drain_lock);
1387}
1388
1389#include "opt_ddb.h"
1390#ifdef DDB
1391#include <sys/kernel.h>
1392
1393#include <ddb/ddb.h>
1394
1395DB_SHOW_COMMAND(cdev, db_show_cdev)
1396{
1397	struct cdev_priv *cdp;
1398	struct cdev *dev;
1399	u_int flags;
1400	char buf[512];
1401
1402	if (!have_addr) {
1403		TAILQ_FOREACH(cdp, &cdevp_list, cdp_list) {
1404			dev = &cdp->cdp_c;
1405			db_printf("%s %p\n", dev->si_name, dev);
1406			if (db_pager_quit)
1407				break;
1408		}
1409		return;
1410	}
1411
1412	dev = (struct cdev *)addr;
1413	cdp = cdev2priv(dev);
1414	db_printf("dev %s ref %d use %ld thr %ld inuse %u fdpriv %p\n",
1415	    dev->si_name, dev->si_refcount, dev->si_usecount,
1416	    dev->si_threadcount, cdp->cdp_inuse, cdp->cdp_fdpriv.lh_first);
1417	db_printf("devsw %p si_drv0 %d si_drv1 %p si_drv2 %p\n",
1418	    dev->si_devsw, dev->si_drv0, dev->si_drv1, dev->si_drv2);
1419	flags = dev->si_flags;
1420#define	SI_FLAG(flag)	do {						\
1421	if (flags & (flag)) {						\
1422		if (buf[0] != '\0')					\
1423			strlcat(buf, ", ", sizeof(buf));		\
1424		strlcat(buf, (#flag) + 3, sizeof(buf));			\
1425		flags &= ~(flag);					\
1426	}								\
1427} while (0)
1428	buf[0] = '\0';
1429	SI_FLAG(SI_ETERNAL);
1430	SI_FLAG(SI_ALIAS);
1431	SI_FLAG(SI_NAMED);
1432	SI_FLAG(SI_CHEAPCLONE);
1433	SI_FLAG(SI_CHILD);
1434	SI_FLAG(SI_DEVOPEN);
1435	SI_FLAG(SI_CONSOPEN);
1436	SI_FLAG(SI_DUMPDEV);
1437	SI_FLAG(SI_CANDELETE);
1438	SI_FLAG(SI_CLONELIST);
1439	db_printf("si_flags %s\n", buf);
1440
1441	flags = cdp->cdp_flags;
1442#define	CDP_FLAG(flag)	do {						\
1443	if (flags & (flag)) {						\
1444		if (buf[0] != '\0')					\
1445			strlcat(buf, ", ", sizeof(buf));		\
1446		strlcat(buf, (#flag) + 4, sizeof(buf));			\
1447		flags &= ~(flag);					\
1448	}								\
1449} while (0)
1450	buf[0] = '\0';
1451	CDP_FLAG(CDP_ACTIVE);
1452	CDP_FLAG(CDP_SCHED_DTR);
1453	db_printf("cdp_flags %s\n", buf);
1454}
1455#endif
1456