kern_conf.c revision 125800
1/*-
2 * Copyright (c) 1999-2002 Poul-Henning Kamp
3 * All rights reserved.
4 *
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 125800 2004-02-14 17:19:43Z phk $");
29
30#include <sys/param.h>
31#include <sys/kernel.h>
32#include <sys/systm.h>
33#include <sys/bio.h>
34#include <sys/lock.h>
35#include <sys/mutex.h>
36#include <sys/sysctl.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/ctype.h>
44#include <machine/stdarg.h>
45
46static MALLOC_DEFINE(M_DEVT, "dev_t", "dev_t storage");
47
48/* Built at compile time from sys/conf/majors */
49extern unsigned char reserved_majors[256];
50
51/*
52 * This is the number of hash-buckets.  Experiements with 'real-life'
53 * udev_t's show that a prime halfway between two powers of two works
54 * best.
55 */
56#define DEVT_HASH 83
57
58/* The number of dev_t's we can create before malloc(9) kick in.  */
59#define DEVT_STASH 50
60
61static struct cdev devt_stash[DEVT_STASH];
62
63static LIST_HEAD(, cdev) dev_hash[DEVT_HASH];
64
65static LIST_HEAD(, cdev) dev_free;
66
67static int free_devt;
68SYSCTL_INT(_debug, OID_AUTO, free_devt, CTLFLAG_RW, &free_devt, 0, "");
69
70int
71nullop(void)
72{
73
74	return (0);
75}
76
77int
78eopnotsupp(void)
79{
80
81	return (EOPNOTSUPP);
82}
83
84static int
85enxio(void)
86{
87	return (ENXIO);
88}
89
90static int
91enodev(void)
92{
93	return (ENODEV);
94}
95
96/* Define a dead_cdevsw for use when devices leave unexpectedly. */
97
98#define dead_open	(d_open_t *)enxio
99#define dead_close	(d_close_t *)enxio
100#define dead_read	(d_read_t *)enxio
101#define dead_write	(d_write_t *)enxio
102#define dead_ioctl	(d_ioctl_t *)enxio
103#define dead_poll	(d_poll_t *)enodev
104#define dead_mmap	(d_mmap_t *)enodev
105
106static void
107dead_strategy(struct bio *bp)
108{
109
110	biofinish(bp, NULL, ENXIO);
111}
112
113#define dead_dump	(dumper_t *)enxio
114#define dead_kqfilter	(d_kqfilter_t *)enxio
115
116static struct cdevsw dead_cdevsw = {
117	.d_open =	dead_open,
118	.d_close =	dead_close,
119	.d_read =	dead_read,
120	.d_write =	dead_write,
121	.d_ioctl =	dead_ioctl,
122	.d_poll =	dead_poll,
123	.d_mmap =	dead_mmap,
124	.d_strategy =	dead_strategy,
125	.d_name =	"dead",
126	.d_maj =	255,
127	.d_dump =	dead_dump,
128	.d_kqfilter =	dead_kqfilter
129};
130
131/* Default methods if driver does not specify method */
132
133#define null_open	(d_open_t *)nullop
134#define null_close	(d_close_t *)nullop
135#define no_read		(d_read_t *)enodev
136#define no_write	(d_write_t *)enodev
137#define no_ioctl	(d_ioctl_t *)enodev
138#define no_mmap		(d_mmap_t *)enodev
139
140static int
141no_kqfilter(dev_t dev __unused, struct knote *kn __unused)
142{
143
144	return (1);
145}
146
147static void
148no_strategy(struct bio *bp)
149{
150
151	biofinish(bp, NULL, ENODEV);
152}
153
154static int
155no_poll(dev_t dev __unused, int events, struct thread *td __unused)
156{
157	/*
158	 * Return true for read/write.  If the user asked for something
159	 * special, return POLLNVAL, so that clients have a way of
160	 * determining reliably whether or not the extended
161	 * functionality is present without hard-coding knowledge
162	 * of specific filesystem implementations.
163	 * Stay in sync with vop_nopoll().
164	 */
165	if (events & ~POLLSTANDARD)
166		return (POLLNVAL);
167
168	return (events & (POLLIN | POLLOUT | POLLRDNORM | POLLWRNORM));
169}
170
171#define no_dump		(dumper_t *)enodev
172
173struct cdevsw *
174devsw(dev_t dev)
175{
176	if (dev->si_devsw)
177		return (dev->si_devsw);
178	return (&dead_cdevsw);
179}
180
181/*
182 * dev_t and u_dev_t primitives
183 */
184
185int
186major(dev_t x)
187{
188	if (x == NODEV)
189		return NOUDEV;
190	return((x->si_udev >> 8) & 0xff);
191}
192
193int
194minor(dev_t x)
195{
196	if (x == NODEV)
197		return NOUDEV;
198	return(x->si_udev & 0xffff00ff);
199}
200
201int
202dev2unit(dev_t x)
203{
204	int i;
205
206	if (x == NODEV)
207		return NOUDEV;
208	i = minor(x);
209	return ((i & 0xff) | (i >> 8));
210}
211
212int
213unit2minor(int unit)
214{
215
216	KASSERT(unit <= 0xffffff, ("Invalid unit (%d) in unit2minor", unit));
217	return ((unit & 0xff) | ((unit << 8) & ~0xffff));
218}
219
220static dev_t
221allocdev(void)
222{
223	static int stashed;
224	struct cdev *si;
225
226	if (LIST_FIRST(&dev_free)) {
227		si = LIST_FIRST(&dev_free);
228		LIST_REMOVE(si, si_hash);
229	} else if (stashed >= DEVT_STASH) {
230		MALLOC(si, struct cdev *, sizeof(*si), M_DEVT,
231		    M_USE_RESERVE | M_ZERO | M_WAITOK);
232	} else {
233		si = devt_stash + stashed++;
234		bzero(si, sizeof *si);
235		si->si_flags |= SI_STASHED;
236	}
237	si->__si_namebuf[0] = '\0';
238	si->si_name = si->__si_namebuf;
239	LIST_INIT(&si->si_children);
240	TAILQ_INIT(&si->si_snapshots);
241	return (si);
242}
243
244dev_t
245makedev(int x, int y)
246{
247	struct cdev *si;
248	udev_t	udev;
249	int hash;
250
251	if (x == umajor(NOUDEV) && y == uminor(NOUDEV))
252		panic("makedev of NOUDEV");
253	udev = (x << 8) | y;
254	hash = udev % DEVT_HASH;
255	LIST_FOREACH(si, &dev_hash[hash], si_hash) {
256		if (si->si_udev == udev)
257			return (si);
258	}
259	si = allocdev();
260	si->si_udev = udev;
261	LIST_INSERT_HEAD(&dev_hash[hash], si, si_hash);
262        return (si);
263}
264
265void
266freedev(dev_t dev)
267{
268
269	if (!free_devt)
270		return;
271	if (SLIST_FIRST(&dev->si_hlist))
272		return;
273	if (dev->si_devsw || dev->si_drv1 || dev->si_drv2)
274		return;
275	LIST_REMOVE(dev, si_hash);
276	if (dev->si_flags & SI_STASHED) {
277		bzero(dev, sizeof(*dev));
278		dev->si_flags |= SI_STASHED;
279		LIST_INSERT_HEAD(&dev_free, dev, si_hash);
280	} else {
281		FREE(dev, M_DEVT);
282	}
283}
284
285udev_t
286dev2udev(dev_t x)
287{
288	if (x == NODEV)
289		return NOUDEV;
290	return (x->si_udev);
291}
292
293dev_t
294udev2dev(udev_t x, int b)
295{
296
297	if (x == NOUDEV)
298		return (NODEV);
299	switch (b) {
300		case 0:
301			return makedev(umajor(x), uminor(x));
302		case 1:
303			return (NODEV);
304		default:
305			Debugger("udev2dev(...,X)");
306			return NODEV;
307	}
308}
309
310int
311uminor(udev_t dev)
312{
313	return(dev & 0xffff00ff);
314}
315
316int
317umajor(udev_t dev)
318{
319	return((dev & 0xff00) >> 8);
320}
321
322udev_t
323makeudev(int x, int y)
324{
325        return ((x << 8) | y);
326}
327
328dev_t
329make_dev(struct cdevsw *devsw, int minor, uid_t uid, gid_t gid, int perms, const char *fmt, ...)
330{
331	dev_t	dev;
332	va_list ap;
333	int i;
334
335	KASSERT((minor & ~0xffff00ff) == 0,
336	    ("Invalid minor (0x%x) in make_dev", minor));
337
338	if (devsw->d_open == NULL)	devsw->d_open = null_open;
339	if (devsw->d_close == NULL)	devsw->d_close = null_close;
340	if (devsw->d_read == NULL)	devsw->d_read = no_read;
341	if (devsw->d_write == NULL)	devsw->d_write = no_write;
342	if (devsw->d_ioctl == NULL)	devsw->d_ioctl = no_ioctl;
343	if (devsw->d_poll == NULL)	devsw->d_poll = no_poll;
344	if (devsw->d_mmap == NULL)	devsw->d_mmap = no_mmap;
345	if (devsw->d_strategy == NULL)	devsw->d_strategy = no_strategy;
346	if (devsw->d_dump == NULL)	devsw->d_dump = no_dump;
347	if (devsw->d_kqfilter == NULL)	devsw->d_kqfilter = no_kqfilter;
348
349	if (devsw->d_maj == MAJOR_AUTO) {
350		for (i = NUMCDEVSW - 1; i > 0; i--)
351			if (reserved_majors[i] != i)
352				break;
353		KASSERT(i > 0, ("Out of major numbers (%s)", devsw->d_name));
354		devsw->d_maj = i;
355		reserved_majors[i] = i;
356	} else {
357		if (devsw->d_maj == 256)	/* XXX: tty_cons.c is magic */
358			devsw->d_maj = 0;
359		KASSERT(devsw->d_maj >= 0 && devsw->d_maj < 256,
360		    ("Invalid major (%d) in make_dev", devsw->d_maj));
361		if (reserved_majors[devsw->d_maj] != devsw->d_maj) {
362			printf("WARNING: driver \"%s\" used %s %d\n",
363			    devsw->d_name, "unreserved major device number",
364			    devsw->d_maj);
365			reserved_majors[devsw->d_maj] = devsw->d_maj;
366		}
367	}
368
369	dev = makedev(devsw->d_maj, minor);
370	if (dev->si_flags & SI_CHEAPCLONE &&
371	    dev->si_flags & SI_NAMED &&
372	    dev->si_devsw == devsw) {
373		/*
374		 * This is allowed as it removes races and generally
375		 * simplifies cloning devices.
376		 */
377		return (dev);
378	}
379	if (dev->si_flags & SI_NAMED) {
380		printf( "WARNING: Driver mistake: repeat make_dev(\"%s\")\n",
381		    dev->si_name);
382		panic("don't do that");
383	}
384	va_start(ap, fmt);
385	i = vsnrprintf(dev->__si_namebuf, sizeof dev->__si_namebuf, 32, fmt, ap);
386	if (i > (sizeof dev->__si_namebuf - 1)) {
387		printf("WARNING: Device name truncated! (%s)",
388		    dev->__si_namebuf);
389	}
390	va_end(ap);
391	dev->si_devsw = devsw;
392	dev->si_uid = uid;
393	dev->si_gid = gid;
394	dev->si_mode = perms;
395	dev->si_flags |= SI_NAMED;
396
397	devfs_create(dev);
398	return (dev);
399}
400
401int
402dev_named(dev_t pdev, const char *name)
403{
404	dev_t cdev;
405
406	if (strcmp(devtoname(pdev), name) == 0)
407		return (1);
408	LIST_FOREACH(cdev, &pdev->si_children, si_siblings)
409		if (strcmp(devtoname(cdev), name) == 0)
410			return (1);
411	return (0);
412}
413
414void
415dev_depends(dev_t pdev, dev_t cdev)
416{
417
418	cdev->si_parent = pdev;
419	cdev->si_flags |= SI_CHILD;
420	LIST_INSERT_HEAD(&pdev->si_children, cdev, si_siblings);
421}
422
423dev_t
424make_dev_alias(dev_t pdev, const char *fmt, ...)
425{
426	dev_t	dev;
427	va_list ap;
428	int i;
429
430	dev = allocdev();
431	dev->si_flags |= SI_ALIAS;
432	dev->si_flags |= SI_NAMED;
433	dev_depends(pdev, dev);
434	va_start(ap, fmt);
435	i = vsnrprintf(dev->__si_namebuf, sizeof dev->__si_namebuf, 32, fmt, ap);
436	if (i > (sizeof dev->__si_namebuf - 1)) {
437		printf("WARNING: Device name truncated! (%s)",
438		    dev->__si_namebuf);
439	}
440	va_end(ap);
441
442	devfs_create(dev);
443	return (dev);
444}
445
446void
447destroy_dev(dev_t dev)
448{
449
450	if (!(dev->si_flags & SI_NAMED)) {
451		printf( "WARNING: Driver mistake: destroy_dev on %d/%d\n",
452		    major(dev), minor(dev));
453		panic("don't do that");
454	}
455
456	devfs_destroy(dev);
457	if (dev->si_flags & SI_CHILD) {
458		LIST_REMOVE(dev, si_siblings);
459		dev->si_flags &= ~SI_CHILD;
460	}
461	while (!LIST_EMPTY(&dev->si_children))
462		destroy_dev(LIST_FIRST(&dev->si_children));
463	dev->si_drv1 = 0;
464	dev->si_drv2 = 0;
465	dev->si_devsw = 0;
466	bzero(&dev->__si_u, sizeof(dev->__si_u));
467	dev->si_flags &= ~SI_NAMED;
468	dev->si_flags &= ~SI_ALIAS;
469	freedev(dev);
470}
471
472const char *
473devtoname(dev_t dev)
474{
475	char *p;
476	int mynor;
477
478	if (dev->si_name[0] == '#' || dev->si_name[0] == '\0') {
479		p = dev->si_name;
480		if (devsw(dev))
481			sprintf(p, "#%s/", devsw(dev)->d_name);
482		else
483			sprintf(p, "#%d/", major(dev));
484		p += strlen(p);
485		mynor = minor(dev);
486		if (mynor < 0 || mynor > 255)
487			sprintf(p, "%#x", (u_int)mynor);
488		else
489			sprintf(p, "%d", mynor);
490	}
491	return (dev->si_name);
492}
493
494int
495dev_stdclone(char *name, char **namep, const char *stem, int *unit)
496{
497	int u, i;
498
499	i = strlen(stem);
500	if (bcmp(stem, name, i) != 0)
501		return (0);
502	if (!isdigit(name[i]))
503		return (0);
504	u = 0;
505	if (name[i] == '0' && isdigit(name[i+1]))
506		return (0);
507	while (isdigit(name[i])) {
508		u *= 10;
509		u += name[i++] - '0';
510	}
511	if (u > 0xffffff)
512		return (0);
513	*unit = u;
514	if (namep)
515		*namep = &name[i];
516	if (name[i])
517		return (2);
518	return (1);
519}
520
521/*
522 * Helper sysctl for devname(3).  We're given a {u}dev_t and return
523 * the name, if any, registered by the device driver.
524 */
525static int
526sysctl_devname(SYSCTL_HANDLER_ARGS)
527{
528	int error;
529	udev_t ud;
530	dev_t dev;
531
532	error = SYSCTL_IN(req, &ud, sizeof (ud));
533	if (error)
534		return (error);
535	if (ud == NOUDEV)
536		return(EINVAL);
537	dev = makedev(umajor(ud), uminor(ud));
538	if (dev->si_name[0] == '\0')
539		error = ENOENT;
540	else
541		error = SYSCTL_OUT(req, dev->si_name, strlen(dev->si_name) + 1);
542	freedev(dev);
543	return (error);
544}
545
546SYSCTL_PROC(_kern, OID_AUTO, devname, CTLTYPE_OPAQUE|CTLFLAG_RW|CTLFLAG_ANYBODY,
547	NULL, 0, sysctl_devname, "", "devname(3) handler");
548