dm_dev.c revision 1.11.4.1 1 1.11.4.1 martin /* $NetBSD: dm_dev.c,v 1.11.4.1 2020/04/08 14:08:03 martin Exp $ */
2 1.2 haad
3 1.2 haad /*
4 1.2 haad * Copyright (c) 2008 The NetBSD Foundation, Inc.
5 1.2 haad * All rights reserved.
6 1.2 haad *
7 1.2 haad * This code is derived from software contributed to The NetBSD Foundation
8 1.2 haad * by Adam Hamsik.
9 1.2 haad *
10 1.2 haad * Redistribution and use in source and binary forms, with or without
11 1.2 haad * modification, are permitted provided that the following conditions
12 1.2 haad * are met:
13 1.2 haad * 1. Redistributions of source code must retain the above copyright
14 1.2 haad * notice, this list of conditions and the following disclaimer.
15 1.2 haad * 2. Redistributions in binary form must reproduce the above copyright
16 1.2 haad * notice, this list of conditions and the following disclaimer in the
17 1.2 haad * documentation and/or other materials provided with the distribution.
18 1.2 haad *
19 1.2 haad * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
20 1.2 haad * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
21 1.2 haad * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
22 1.2 haad * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
23 1.2 haad * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
24 1.2 haad * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
25 1.2 haad * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
26 1.2 haad * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
27 1.2 haad * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
28 1.2 haad * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
29 1.2 haad * POSSIBILITY OF SUCH DAMAGE.
30 1.2 haad */
31 1.11 christos #include <sys/cdefs.h>
32 1.11.4.1 martin __KERNEL_RCSID(0, "$NetBSD: dm_dev.c,v 1.11.4.1 2020/04/08 14:08:03 martin Exp $");
33 1.2 haad
34 1.2 haad #include <sys/types.h>
35 1.2 haad #include <sys/param.h>
36 1.3 haad #include <sys/disk.h>
37 1.2 haad #include <sys/disklabel.h>
38 1.2 haad #include <sys/ioctl.h>
39 1.2 haad #include <sys/ioccom.h>
40 1.2 haad #include <sys/kmem.h>
41 1.2 haad
42 1.2 haad #include "netbsd-dm.h"
43 1.2 haad #include "dm.h"
44 1.2 haad
45 1.8 haad static dm_dev_t *dm_dev_lookup_name(const char *);
46 1.8 haad static dm_dev_t *dm_dev_lookup_uuid(const char *);
47 1.8 haad static dm_dev_t *dm_dev_lookup_minor(int);
48 1.2 haad
49 1.11.4.1 martin static struct dm_dev_head dm_dev_list = TAILQ_HEAD_INITIALIZER(dm_dev_list);
50 1.2 haad
51 1.11.4.1 martin static kmutex_t dm_dev_mutex;
52 1.2 haad
53 1.7 haad /* dm_dev_mutex must be holdby caller before using disable_dev. */
54 1.11.4.1 martin static void
55 1.11.4.1 martin disable_dev(dm_dev_t *dmv)
56 1.2 haad {
57 1.11.4.1 martin
58 1.8 haad TAILQ_REMOVE(&dm_dev_list, dmv, next_devlist);
59 1.8 haad mutex_enter(&dmv->dev_mtx);
60 1.8 haad mutex_exit(&dm_dev_mutex);
61 1.8 haad while (dmv->ref_cnt != 0)
62 1.8 haad cv_wait(&dmv->dev_cv, &dmv->dev_mtx);
63 1.8 haad mutex_exit(&dmv->dev_mtx);
64 1.8 haad }
65 1.11 christos
66 1.2 haad /*
67 1.8 haad * Generic function used to lookup dm_dev_t. Calling with dm_dev_name
68 1.2 haad * and dm_dev_uuid NULL is allowed.
69 1.2 haad */
70 1.8 haad dm_dev_t *
71 1.2 haad dm_dev_lookup(const char *dm_dev_name, const char *dm_dev_uuid,
72 1.8 haad int dm_dev_minor)
73 1.2 haad {
74 1.2 haad dm_dev_t *dmv;
75 1.8 haad
76 1.2 haad mutex_enter(&dm_dev_mutex);
77 1.8 haad /* KASSERT(dm_dev_name != NULL && dm_dev_uuid != NULL && dm_dev_minor
78 1.8 haad * > 0); */
79 1.2 haad if (dm_dev_minor > 0)
80 1.8 haad if ((dmv = dm_dev_lookup_minor(dm_dev_minor)) != NULL) {
81 1.2 haad dm_dev_busy(dmv);
82 1.2 haad mutex_exit(&dm_dev_mutex);
83 1.2 haad return dmv;
84 1.2 haad }
85 1.8 haad if (dm_dev_name != NULL)
86 1.8 haad if ((dmv = dm_dev_lookup_name(dm_dev_name)) != NULL) {
87 1.2 haad dm_dev_busy(dmv);
88 1.2 haad mutex_exit(&dm_dev_mutex);
89 1.8 haad return dmv;
90 1.2 haad }
91 1.2 haad if (dm_dev_uuid != NULL)
92 1.8 haad if ((dmv = dm_dev_lookup_uuid(dm_dev_uuid)) != NULL) {
93 1.2 haad dm_dev_busy(dmv);
94 1.2 haad mutex_exit(&dm_dev_mutex);
95 1.2 haad return dmv;
96 1.2 haad }
97 1.8 haad mutex_exit(&dm_dev_mutex);
98 1.11.4.1 martin
99 1.8 haad return NULL;
100 1.2 haad }
101 1.2 haad
102 1.2 haad /*
103 1.2 haad * Lookup device with its minor number.
104 1.2 haad */
105 1.8 haad static dm_dev_t *
106 1.2 haad dm_dev_lookup_minor(int dm_dev_minor)
107 1.2 haad {
108 1.2 haad dm_dev_t *dmv;
109 1.8 haad
110 1.11.4.1 martin TAILQ_FOREACH(dmv, &dm_dev_list, next_devlist)
111 1.2 haad if (dm_dev_minor == dmv->minor)
112 1.2 haad return dmv;
113 1.8 haad
114 1.2 haad return NULL;
115 1.2 haad }
116 1.11 christos
117 1.2 haad /*
118 1.9 snj * Lookup device with its device name.
119 1.2 haad */
120 1.8 haad static dm_dev_t *
121 1.2 haad dm_dev_lookup_name(const char *dm_dev_name)
122 1.2 haad {
123 1.2 haad dm_dev_t *dmv;
124 1.11 christos size_t dlen;
125 1.11 christos size_t slen;
126 1.2 haad
127 1.2 haad slen = strlen(dm_dev_name);
128 1.2 haad
129 1.2 haad if (slen == 0)
130 1.2 haad return NULL;
131 1.8 haad
132 1.8 haad TAILQ_FOREACH(dmv, &dm_dev_list, next_devlist) {
133 1.2 haad dlen = strlen(dmv->name);
134 1.8 haad
135 1.8 haad if (slen != dlen)
136 1.2 haad continue;
137 1.2 haad
138 1.2 haad if (strncmp(dm_dev_name, dmv->name, slen) == 0)
139 1.2 haad return dmv;
140 1.2 haad }
141 1.2 haad
142 1.2 haad return NULL;
143 1.2 haad }
144 1.11 christos
145 1.2 haad /*
146 1.9 snj * Lookup device with its device uuid. Used mostly by LVM2tools.
147 1.2 haad */
148 1.8 haad static dm_dev_t *
149 1.2 haad dm_dev_lookup_uuid(const char *dm_dev_uuid)
150 1.2 haad {
151 1.2 haad dm_dev_t *dmv;
152 1.2 haad size_t len;
153 1.8 haad
154 1.2 haad len = 0;
155 1.2 haad len = strlen(dm_dev_uuid);
156 1.8 haad
157 1.2 haad if (len == 0)
158 1.2 haad return NULL;
159 1.2 haad
160 1.8 haad TAILQ_FOREACH(dmv, &dm_dev_list, next_devlist) {
161 1.2 haad if (strlen(dmv->uuid) != len)
162 1.2 haad continue;
163 1.8 haad
164 1.2 haad if (strncmp(dm_dev_uuid, dmv->uuid, strlen(dmv->uuid)) == 0)
165 1.2 haad return dmv;
166 1.2 haad }
167 1.2 haad
168 1.2 haad return NULL;
169 1.2 haad }
170 1.11 christos
171 1.2 haad /*
172 1.2 haad * Insert new device to the global list of devices.
173 1.2 haad */
174 1.2 haad int
175 1.11.4.1 martin dm_dev_insert(dm_dev_t *dev)
176 1.2 haad {
177 1.2 haad dm_dev_t *dmv;
178 1.2 haad int r;
179 1.2 haad
180 1.2 haad dmv = NULL;
181 1.2 haad r = 0;
182 1.8 haad
183 1.2 haad KASSERT(dev != NULL);
184 1.2 haad mutex_enter(&dm_dev_mutex);
185 1.2 haad if (((dmv = dm_dev_lookup_uuid(dev->uuid)) == NULL) &&
186 1.2 haad ((dmv = dm_dev_lookup_name(dev->name)) == NULL) &&
187 1.8 haad ((dmv = dm_dev_lookup_minor(dev->minor)) == NULL)) {
188 1.2 haad TAILQ_INSERT_TAIL(&dm_dev_list, dev, next_devlist);
189 1.2 haad } else
190 1.2 haad r = EEXIST;
191 1.8 haad mutex_exit(&dm_dev_mutex);
192 1.11.4.1 martin
193 1.2 haad return r;
194 1.2 haad }
195 1.11 christos
196 1.8 haad #ifdef notyet
197 1.2 haad /*
198 1.2 haad * Lookup device with its minor number.
199 1.2 haad */
200 1.2 haad int
201 1.2 haad dm_dev_test_minor(int dm_dev_minor)
202 1.2 haad {
203 1.2 haad dm_dev_t *dmv;
204 1.8 haad
205 1.2 haad mutex_enter(&dm_dev_mutex);
206 1.8 haad TAILQ_FOREACH(dmv, &dm_dev_list, next_devlist) {
207 1.8 haad if (dm_dev_minor == dmv->minor) {
208 1.2 haad mutex_exit(&dm_dev_mutex);
209 1.2 haad return 1;
210 1.2 haad }
211 1.2 haad }
212 1.2 haad mutex_exit(&dm_dev_mutex);
213 1.8 haad
214 1.2 haad return 0;
215 1.2 haad }
216 1.2 haad #endif
217 1.2 haad
218 1.7 haad /*
219 1.7 haad * dm_dev_lookup_devt look for selected device_t. We keep this routine
220 1.7 haad * outside of dm_dev_lookup because it is a temporally solution.
221 1.7 haad *
222 1.7 haad * TODO: This is a hack autoconf should be more flexible.
223 1.7 haad */
224 1.7 haad dm_dev_t *
225 1.7 haad dm_dev_detach(device_t devt)
226 1.7 haad {
227 1.7 haad dm_dev_t *dmv;
228 1.8 haad
229 1.7 haad mutex_enter(&dm_dev_mutex);
230 1.8 haad TAILQ_FOREACH(dmv, &dm_dev_list, next_devlist) {
231 1.8 haad if (devt == dmv->devt) {
232 1.7 haad disable_dev(dmv);
233 1.7 haad return dmv;
234 1.7 haad }
235 1.7 haad }
236 1.7 haad mutex_exit(&dm_dev_mutex);
237 1.8 haad
238 1.7 haad return NULL;
239 1.7 haad }
240 1.11 christos
241 1.8 haad /*
242 1.8 haad * Remove device selected with dm_dev from global list of devices.
243 1.2 haad */
244 1.8 haad dm_dev_t *
245 1.2 haad dm_dev_rem(const char *dm_dev_name, const char *dm_dev_uuid,
246 1.8 haad int dm_dev_minor)
247 1.8 haad {
248 1.2 haad dm_dev_t *dmv;
249 1.8 haad
250 1.2 haad mutex_enter(&dm_dev_mutex);
251 1.2 haad if (dm_dev_minor > 0)
252 1.8 haad if ((dmv = dm_dev_lookup_minor(dm_dev_minor)) != NULL) {
253 1.2 haad disable_dev(dmv);
254 1.2 haad return dmv;
255 1.2 haad }
256 1.8 haad if (dm_dev_name != NULL)
257 1.8 haad if ((dmv = dm_dev_lookup_name(dm_dev_name)) != NULL) {
258 1.2 haad disable_dev(dmv);
259 1.2 haad return dmv;
260 1.2 haad }
261 1.2 haad if (dm_dev_uuid != NULL)
262 1.8 haad if ((dmv = dm_dev_lookup_name(dm_dev_uuid)) != NULL) {
263 1.2 haad disable_dev(dmv);
264 1.2 haad return dmv;
265 1.2 haad }
266 1.2 haad mutex_exit(&dm_dev_mutex);
267 1.2 haad
268 1.2 haad return NULL;
269 1.2 haad }
270 1.11 christos
271 1.2 haad /*
272 1.2 haad * Destroy all devices created in device-mapper. Remove all tables
273 1.8 haad * free all allocated memmory.
274 1.2 haad */
275 1.2 haad int
276 1.2 haad dm_dev_destroy(void)
277 1.2 haad {
278 1.2 haad dm_dev_t *dmv;
279 1.2 haad
280 1.11.4.1 martin mutex_enter(&dm_dev_mutex);
281 1.8 haad while (TAILQ_FIRST(&dm_dev_list) != NULL) {
282 1.2 haad dmv = TAILQ_FIRST(&dm_dev_list);
283 1.8 haad
284 1.2 haad TAILQ_REMOVE(&dm_dev_list, TAILQ_FIRST(&dm_dev_list),
285 1.2 haad next_devlist);
286 1.2 haad
287 1.2 haad mutex_enter(&dmv->dev_mtx);
288 1.2 haad
289 1.2 haad while (dmv->ref_cnt != 0)
290 1.2 haad cv_wait(&dmv->dev_cv, &dmv->dev_mtx);
291 1.8 haad
292 1.2 haad /* Destroy active table first. */
293 1.2 haad dm_table_destroy(&dmv->table_head, DM_TABLE_ACTIVE);
294 1.2 haad
295 1.2 haad /* Destroy inactive table if exits, too. */
296 1.2 haad dm_table_destroy(&dmv->table_head, DM_TABLE_INACTIVE);
297 1.2 haad
298 1.2 haad dm_table_head_destroy(&dmv->table_head);
299 1.2 haad
300 1.2 haad mutex_exit(&dmv->dev_mtx);
301 1.2 haad mutex_destroy(&dmv->dev_mtx);
302 1.2 haad cv_destroy(&dmv->dev_cv);
303 1.8 haad
304 1.11.4.1 martin kmem_free(dmv, sizeof(dm_dev_t));
305 1.2 haad }
306 1.2 haad mutex_exit(&dm_dev_mutex);
307 1.2 haad
308 1.2 haad mutex_destroy(&dm_dev_mutex);
309 1.8 haad return 0;
310 1.2 haad }
311 1.11 christos
312 1.2 haad /*
313 1.2 haad * Allocate new device entry.
314 1.2 haad */
315 1.8 haad dm_dev_t *
316 1.4 cegger dm_dev_alloc(void)
317 1.2 haad {
318 1.2 haad dm_dev_t *dmv;
319 1.8 haad
320 1.6 haad dmv = kmem_zalloc(sizeof(dm_dev_t), KM_SLEEP);
321 1.10 chs dmv->diskp = kmem_zalloc(sizeof(struct disk), KM_SLEEP);
322 1.2 haad return dmv;
323 1.2 haad }
324 1.11 christos
325 1.2 haad /*
326 1.2 haad * Freed device entry.
327 1.2 haad */
328 1.2 haad int
329 1.11.4.1 martin dm_dev_free(dm_dev_t *dmv)
330 1.2 haad {
331 1.11.4.1 martin
332 1.2 haad KASSERT(dmv != NULL);
333 1.3 haad
334 1.5 haad mutex_destroy(&dmv->dev_mtx);
335 1.7 haad mutex_destroy(&dmv->diskp_mtx);
336 1.5 haad cv_destroy(&dmv->dev_cv);
337 1.5 haad
338 1.8 haad if (dmv->diskp != NULL)
339 1.11.4.1 martin kmem_free(dmv->diskp, sizeof(struct disk));
340 1.8 haad
341 1.11.4.1 martin kmem_free(dmv, sizeof(dm_dev_t));
342 1.8 haad
343 1.2 haad return 0;
344 1.2 haad }
345 1.2 haad
346 1.2 haad void
347 1.11.4.1 martin dm_dev_busy(dm_dev_t *dmv)
348 1.2 haad {
349 1.11.4.1 martin
350 1.2 haad mutex_enter(&dmv->dev_mtx);
351 1.2 haad dmv->ref_cnt++;
352 1.2 haad mutex_exit(&dmv->dev_mtx);
353 1.8 haad }
354 1.2 haad
355 1.2 haad void
356 1.11.4.1 martin dm_dev_unbusy(dm_dev_t *dmv)
357 1.2 haad {
358 1.11.4.1 martin
359 1.2 haad KASSERT(dmv->ref_cnt != 0);
360 1.8 haad
361 1.2 haad mutex_enter(&dmv->dev_mtx);
362 1.2 haad if (--dmv->ref_cnt == 0)
363 1.2 haad cv_broadcast(&dmv->dev_cv);
364 1.2 haad mutex_exit(&dmv->dev_mtx);
365 1.2 haad }
366 1.11 christos
367 1.2 haad /*
368 1.2 haad * Return prop_array of dm_targer_list dictionaries.
369 1.2 haad */
370 1.2 haad prop_array_t
371 1.2 haad dm_dev_prop_list(void)
372 1.2 haad {
373 1.2 haad dm_dev_t *dmv;
374 1.2 haad prop_array_t dev_array;
375 1.2 haad prop_dictionary_t dev_dict;
376 1.8 haad
377 1.2 haad dev_array = prop_array_create();
378 1.8 haad
379 1.2 haad mutex_enter(&dm_dev_mutex);
380 1.8 haad
381 1.2 haad TAILQ_FOREACH(dmv, &dm_dev_list, next_devlist) {
382 1.8 haad dev_dict = prop_dictionary_create();
383 1.8 haad
384 1.2 haad prop_dictionary_set_cstring(dev_dict, DM_DEV_NAME, dmv->name);
385 1.2 haad prop_dictionary_set_uint32(dev_dict, DM_DEV_DEV, dmv->minor);
386 1.2 haad
387 1.2 haad prop_array_add(dev_array, dev_dict);
388 1.2 haad prop_object_release(dev_dict);
389 1.2 haad }
390 1.2 haad
391 1.8 haad mutex_exit(&dm_dev_mutex);
392 1.2 haad return dev_array;
393 1.2 haad }
394 1.11 christos
395 1.2 haad /*
396 1.2 haad * Initialize global device mutex.
397 1.2 haad */
398 1.2 haad int
399 1.4 cegger dm_dev_init(void)
400 1.2 haad {
401 1.11.4.1 martin
402 1.8 haad TAILQ_INIT(&dm_dev_list); /* initialize global dev list */
403 1.2 haad mutex_init(&dm_dev_mutex, MUTEX_DEFAULT, IPL_NONE);
404 1.2 haad return 0;
405 1.2 haad }
406