libdm-nbsd-iface.c revision 1.5 1 1.5 haad /* $NetBSD: libdm-nbsd-iface.c,v 1.5 2009/12/05 11:42:24 haad Exp $ */
2 1.1 haad
3 1.1 haad /*
4 1.1 haad * Copyright (C) 2001-2004 Sistina Software, Inc. All rights reserved.
5 1.1 haad * Copyright (C) 2004-2007 Red Hat, Inc. All rights reserved.
6 1.1 haad * Copyright (C) 2008 Adam Hamsik. All rights reserved.
7 1.1 haad *
8 1.1 haad * This file is part of the device-mapper userspace tools.
9 1.1 haad *
10 1.1 haad * This copyrighted material is made available to anyone wishing to use,
11 1.1 haad * modify, copy, or redistribute it subject to the terms and conditions
12 1.1 haad * of the GNU Lesser General Public License v.2.1.
13 1.1 haad *
14 1.1 haad * You should have received a copy of the GNU Lesser General Public License
15 1.1 haad * along with this program; if not, write to the Free Software Foundation,
16 1.1 haad * Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
17 1.1 haad */
18 1.1 haad
19 1.1 haad #include "dmlib.h"
20 1.1 haad #include "libdm-targets.h"
21 1.1 haad #include "libdm-common.h"
22 1.5 haad #include "libdm-netbsd.h"
23 1.1 haad
24 1.1 haad #include <sys/ioctl.h>
25 1.1 haad #include <sys/sysctl.h>
26 1.1 haad
27 1.1 haad #include <fcntl.h>
28 1.1 haad #include <dirent.h>
29 1.1 haad #include <limits.h>
30 1.1 haad
31 1.5 haad #include <dev/dm/netbsd-dm.h>
32 1.1 haad
33 1.1 haad #include <dm-ioctl.h>
34 1.1 haad
35 1.1 haad /*
36 1.1 haad * Ensure build compatibility.
37 1.1 haad * The hard-coded versions here are the highest present
38 1.1 haad * in the _cmd_data arrays.
39 1.1 haad */
40 1.1 haad
41 1.1 haad #if !((DM_VERSION_MAJOR == 1 && DM_VERSION_MINOR >= 0) || \
42 1.1 haad (DM_VERSION_MAJOR == 4 && DM_VERSION_MINOR >= 0))
43 1.1 haad #error The version of dm-ioctl.h included is incompatible.
44 1.1 haad #endif
45 1.1 haad
46 1.1 haad /* dm major version no for running kernel */
47 1.1 haad static unsigned _dm_version_minor = 0;
48 1.1 haad static unsigned _dm_version_patchlevel = 0;
49 1.1 haad
50 1.1 haad static int _control_fd = -1;
51 1.1 haad static int _version_checked = 0;
52 1.1 haad static int _version_ok = 1;
53 1.1 haad static unsigned _ioctl_buffer_double_factor = 0;
54 1.1 haad
55 1.1 haad /* *INDENT-OFF* */
56 1.1 haad
57 1.1 haad /*
58 1.1 haad * XXX Remove this structure and write another own one
59 1.1 haad * I don't understand why ioctl calls has different
60 1.1 haad * names then dm task type
61 1.1 haad */
62 1.1 haad static struct cmd_data _cmd_data_v4[] = {
63 1.1 haad {"create", DM_DEV_CREATE, {4, 0, 0}},
64 1.1 haad {"reload", DM_TABLE_LOAD, {4, 0, 0}}, /* DM_DEVICE_RELOAD */
65 1.1 haad {"remove", DM_DEV_REMOVE, {4, 0, 0}},
66 1.1 haad {"remove_all", DM_REMOVE_ALL, {4, 0, 0}},
67 1.1 haad {"suspend", DM_DEV_SUSPEND, {4, 0, 0}},
68 1.1 haad {"resume", DM_DEV_SUSPEND, {4, 0, 0}},
69 1.1 haad {"info", DM_DEV_STATUS, {4, 0, 0}},
70 1.1 haad {"deps", DM_TABLE_DEPS, {4, 0, 0}}, /* DM_DEVICE_DEPS */
71 1.1 haad {"rename", DM_DEV_RENAME, {4, 0, 0}},
72 1.1 haad {"version", DM_VERSION, {4, 0, 0}},
73 1.1 haad {"status", DM_TABLE_STATUS, {4, 0, 0}},
74 1.1 haad {"table", DM_TABLE_STATUS, {4, 0, 0}}, /* DM_DEVICE_TABLE */
75 1.1 haad {"waitevent", DM_DEV_WAIT, {4, 0, 0}},
76 1.1 haad {"names", DM_LIST_DEVICES, {4, 0, 0}},
77 1.1 haad {"clear", DM_TABLE_CLEAR, {4, 0, 0}},
78 1.1 haad {"mknodes", DM_DEV_STATUS, {4, 0, 0}},
79 1.1 haad #ifdef DM_LIST_VERSIONS
80 1.1 haad {"targets", DM_LIST_VERSIONS, {4, 1, 0}},
81 1.1 haad #endif
82 1.1 haad #ifdef DM_TARGET_MSG
83 1.1 haad {"message", DM_TARGET_MSG, {4, 2, 0}},
84 1.1 haad #endif
85 1.1 haad #ifdef DM_DEV_SET_GEOMETRY
86 1.1 haad {"setgeometry", DM_DEV_SET_GEOMETRY, {4, 6, 0}},
87 1.1 haad #endif
88 1.1 haad };
89 1.1 haad /* *INDENT-ON* */
90 1.1 haad
91 1.1 haad /*
92 1.1 haad * In NetBSD we use sysctl to get kernel drivers info. control device
93 1.1 haad * has predefined minor number 0 and major number = char major number
94 1.1 haad * of dm driver. First slot is therefore ocupied with control device
95 1.1 haad * and minor device starts from 1;
96 1.1 haad */
97 1.1 haad
98 1.1 haad static int _control_device_number(uint32_t *major, uint32_t *minor)
99 1.1 haad {
100 1.1 haad
101 1.1 haad nbsd_get_dm_major(major, DM_CHAR_MAJOR);
102 1.1 haad
103 1.1 haad *minor = 0;
104 1.1 haad
105 1.1 haad return 1;
106 1.1 haad }
107 1.1 haad
108 1.1 haad /*
109 1.1 haad * Returns 1 if exists; 0 if it doesn't; -1 if it's wrong
110 1.1 haad */
111 1.1 haad static int _control_exists(const char *control, uint32_t major, uint32_t minor)
112 1.1 haad {
113 1.1 haad struct stat buf;
114 1.1 haad
115 1.1 haad if (stat(control, &buf) < 0) {
116 1.1 haad if (errno != ENOENT)
117 1.1 haad log_sys_error("stat", control);
118 1.1 haad return 0;
119 1.1 haad }
120 1.1 haad
121 1.1 haad if (!S_ISCHR(buf.st_mode)) {
122 1.1 haad log_verbose("%s: Wrong inode type", control);
123 1.1 haad if (!unlink(control))
124 1.1 haad return 0;
125 1.1 haad log_sys_error("unlink", control);
126 1.1 haad return -1;
127 1.1 haad }
128 1.1 haad
129 1.1 haad if (major && buf.st_rdev != MKDEV(major, minor)) {
130 1.1 haad log_verbose("%s: Wrong device number: (%u, %u) instead of "
131 1.1 haad "(%u, %u)", control,
132 1.1 haad MAJOR(buf.st_mode), MINOR(buf.st_mode),
133 1.1 haad major, minor);
134 1.1 haad if (!unlink(control))
135 1.1 haad return 0;
136 1.1 haad log_sys_error("unlink", control);
137 1.1 haad return -1;
138 1.1 haad }
139 1.1 haad
140 1.1 haad return 1;
141 1.1 haad }
142 1.1 haad
143 1.1 haad static int _create_control(const char *control, uint32_t major, uint32_t minor)
144 1.1 haad {
145 1.1 haad int ret;
146 1.1 haad mode_t old_umask;
147 1.1 haad
148 1.1 haad if (!major)
149 1.1 haad return 0;
150 1.1 haad
151 1.1 haad old_umask = umask(0022);
152 1.1 haad ret = dm_create_dir(dm_dir());
153 1.1 haad umask(old_umask);
154 1.1 haad
155 1.1 haad if (!ret)
156 1.1 haad return 0;
157 1.1 haad
158 1.1 haad log_verbose("Creating device %s (%u, %u)", control, major, minor);
159 1.1 haad
160 1.1 haad if (mknod(control, S_IFCHR | S_IRUSR | S_IWUSR,
161 1.1 haad MKDEV(major, minor)) < 0) {
162 1.1 haad log_sys_error("mknod", control);
163 1.1 haad return 0;
164 1.1 haad }
165 1.1 haad
166 1.1 haad
167 1.1 haad return 1;
168 1.1 haad }
169 1.1 haad
170 1.1 haad /* Check if major is device-mapper block device major number */
171 1.1 haad int dm_is_dm_major(uint32_t major)
172 1.1 haad {
173 1.1 haad uint32_t dm_major;
174 1.1 haad
175 1.1 haad nbsd_get_dm_major(&dm_major, DM_BLOCK_MAJOR);
176 1.1 haad
177 1.1 haad if (major == dm_major)
178 1.1 haad return 1;
179 1.1 haad
180 1.1 haad return 0;
181 1.1 haad }
182 1.1 haad
183 1.1 haad /* Open control device if doesn't exist create it. */
184 1.1 haad static int _open_control(void)
185 1.1 haad {
186 1.1 haad char control[PATH_MAX];
187 1.1 haad uint32_t major = 0, minor = 0;
188 1.1 haad
189 1.1 haad if (_control_fd != -1)
190 1.1 haad return 1;
191 1.1 haad
192 1.1 haad snprintf(control, sizeof(control), "%s/control", dm_dir());
193 1.1 haad
194 1.1 haad if (!_control_device_number(&major, &minor))
195 1.1 haad log_error("Is device-mapper driver missing from kernel?");
196 1.1 haad
197 1.1 haad if (!_control_exists(control, major, minor) &&
198 1.1 haad !_create_control(control, major, minor))
199 1.1 haad goto error;
200 1.1 haad
201 1.1 haad if ((_control_fd = open(control, O_RDWR)) < 0) {
202 1.1 haad log_sys_error("open", control);
203 1.1 haad goto error;
204 1.1 haad }
205 1.1 haad
206 1.1 haad return 1;
207 1.1 haad
208 1.1 haad error:
209 1.1 haad log_error("Failure to communicate with kernel device-mapper driver.");
210 1.1 haad return 0;
211 1.1 haad }
212 1.1 haad
213 1.1 haad /*
214 1.1 haad * Destroy dm task structure there are some dynamically alocated values there.
215 1.1 haad * name, uuid, head, tail list.
216 1.1 haad */
217 1.1 haad void dm_task_destroy(struct dm_task *dmt)
218 1.1 haad {
219 1.1 haad struct target *t, *n;
220 1.1 haad
221 1.1 haad for (t = dmt->head; t; t = n) {
222 1.1 haad n = t->next;
223 1.1 haad dm_free(t->params);
224 1.1 haad dm_free(t->type);
225 1.1 haad dm_free(t);
226 1.1 haad }
227 1.1 haad
228 1.1 haad if (dmt->dev_name)
229 1.1 haad dm_free(dmt->dev_name);
230 1.1 haad
231 1.1 haad if (dmt->newname)
232 1.1 haad dm_free(dmt->newname);
233 1.1 haad
234 1.1 haad if (dmt->message)
235 1.1 haad dm_free(dmt->message);
236 1.1 haad
237 1.1 haad if (dmt->dmi.v4)
238 1.1 haad dm_free(dmt->dmi.v4);
239 1.1 haad
240 1.1 haad if (dmt->uuid)
241 1.1 haad dm_free(dmt->uuid);
242 1.1 haad
243 1.1 haad dm_free(dmt);
244 1.1 haad
245 1.1 haad }
246 1.1 haad
247 1.1 haad /* Get kernel driver version from dm_ioctl structure. */
248 1.1 haad int dm_task_get_driver_version(struct dm_task *dmt, char *version, size_t size)
249 1.1 haad {
250 1.1 haad unsigned *v;
251 1.1 haad
252 1.1 haad if (!dmt->dmi.v4) {
253 1.1 haad version[0] = '\0';
254 1.1 haad return 0;
255 1.1 haad }
256 1.1 haad
257 1.1 haad v = dmt->dmi.v4->version;
258 1.1 haad snprintf(version, size, "%u.%u.%u", v[0], v[1], v[2]);
259 1.1 haad _dm_version_minor = v[1];
260 1.1 haad _dm_version_patchlevel = v[2];
261 1.1 haad
262 1.1 haad return 1;
263 1.1 haad }
264 1.1 haad
265 1.1 haad /* Get kernel driver protocol version and comapre it with library version. */
266 1.1 haad static int _check_version(char *version, size_t size)
267 1.1 haad {
268 1.1 haad struct dm_task *task;
269 1.1 haad int r;
270 1.1 haad
271 1.1 haad if (!(task = dm_task_create(DM_DEVICE_VERSION))) {
272 1.1 haad log_error("Failed to get device-mapper version");
273 1.1 haad version[0] = '\0';
274 1.1 haad return 0;
275 1.1 haad }
276 1.1 haad
277 1.1 haad r = dm_task_run(task);
278 1.1 haad dm_task_get_driver_version(task, version, size);
279 1.1 haad dm_task_destroy(task);
280 1.1 haad
281 1.1 haad return r;
282 1.1 haad }
283 1.1 haad
284 1.1 haad /*
285 1.1 haad * Find out device-mapper's major version number the first time
286 1.1 haad * this is called and whether or not we support it.
287 1.1 haad */
288 1.1 haad int dm_check_version(void)
289 1.1 haad {
290 1.1 haad char dmversion[64];
291 1.1 haad
292 1.1 haad if (_version_checked)
293 1.1 haad return _version_ok;
294 1.1 haad
295 1.1 haad _version_checked = 1;
296 1.1 haad
297 1.1 haad if (_check_version(dmversion, sizeof(dmversion)))
298 1.1 haad return 1;
299 1.1 haad
300 1.1 haad
301 1.1 haad return 0;
302 1.1 haad }
303 1.1 haad
304 1.4 haad int dm_cookie_supported(void)
305 1.4 haad {
306 1.4 haad return (0);
307 1.4 haad }
308 1.4 haad
309 1.1 haad /* Get next target(table description) from list pointed by dmt->head. */
310 1.1 haad void *dm_get_next_target(struct dm_task *dmt, void *next,
311 1.1 haad uint64_t *start, uint64_t *length,
312 1.1 haad char **target_type, char **params)
313 1.1 haad {
314 1.1 haad struct target *t = (struct target *) next;
315 1.1 haad
316 1.1 haad if (!t)
317 1.1 haad t = dmt->head;
318 1.1 haad
319 1.1 haad if (!t)
320 1.1 haad return NULL;
321 1.1 haad
322 1.1 haad *start = t->start;
323 1.1 haad *length = t->length;
324 1.1 haad *target_type = t->type;
325 1.1 haad *params = t->params;
326 1.1 haad
327 1.1 haad return t->next;
328 1.1 haad }
329 1.1 haad
330 1.1 haad /* Unmarshall the target info returned from a status call */
331 1.1 haad static int _unmarshal_status(struct dm_task *dmt, struct dm_ioctl *dmi)
332 1.1 haad {
333 1.1 haad char *outbuf = (char *) dmi + dmi->data_start;
334 1.1 haad char *outptr = outbuf;
335 1.1 haad uint32_t i;
336 1.1 haad struct dm_target_spec *spec;
337 1.1 haad
338 1.1 haad for (i = 0; i < dmi->target_count; i++) {
339 1.1 haad spec = (struct dm_target_spec *) outptr;
340 1.1 haad if (!dm_task_add_target(dmt, spec->sector_start,
341 1.1 haad spec->length,
342 1.1 haad spec->target_type,
343 1.1 haad outptr + sizeof(*spec))) {
344 1.1 haad return 0;
345 1.1 haad }
346 1.1 haad
347 1.1 haad outptr = outbuf + spec->next;
348 1.1 haad }
349 1.1 haad
350 1.1 haad return 1;
351 1.1 haad }
352 1.1 haad
353 1.1 haad /*
354 1.1 haad * @dev_major is major number of char device
355 1.1 haad *
356 1.1 haad * I have to find it's block device number and lookup dev in
357 1.1 haad * device database to find device path.
358 1.1 haad *
359 1.1 haad */
360 1.1 haad
361 1.1 haad int dm_format_dev(char *buf, int bufsize, uint32_t dev_major,
362 1.1 haad uint32_t dev_minor)
363 1.1 haad {
364 1.1 haad int r;
365 1.1 haad uint32_t major, dm_major;
366 1.1 haad char *name;
367 1.1 haad mode_t mode;
368 1.1 haad dev_t dev;
369 1.1 haad size_t val_len,i;
370 1.1 haad struct kinfo_drivers *kd;
371 1.1 haad
372 1.1 haad mode = 0;
373 1.1 haad
374 1.1 haad nbsd_get_dm_major(&dm_major, DM_BLOCK_MAJOR);
375 1.1 haad
376 1.1 haad if (bufsize < 8)
377 1.1 haad return 0;
378 1.1 haad
379 1.1 haad if (sysctlbyname("kern.drivers",NULL,&val_len,NULL,0) < 0) {
380 1.1 haad printf("sysctlbyname failed");
381 1.1 haad return 0;
382 1.1 haad }
383 1.1 haad
384 1.1 haad if ((kd = malloc (val_len)) == NULL){
385 1.1 haad printf("malloc kd info error\n");
386 1.1 haad return 0;
387 1.1 haad }
388 1.1 haad
389 1.1 haad if (sysctlbyname("kern.drivers", kd, &val_len, NULL, 0) < 0) {
390 1.1 haad printf("sysctlbyname failed kd");
391 1.1 haad return 0;
392 1.1 haad }
393 1.1 haad
394 1.1 haad for (i = 0, val_len /= sizeof(*kd); i < val_len; i++){
395 1.1 haad if (kd[i].d_cmajor == dev_major) {
396 1.1 haad major = kd[i].d_bmajor;
397 1.1 haad break;
398 1.1 haad }
399 1.1 haad }
400 1.1 haad
401 1.1 haad dev = MKDEV(major,dev_minor);
402 1.1 haad
403 1.1 haad mode |= S_IFBLK;
404 1.1 haad
405 1.1 haad name = devname(dev,mode);
406 1.1 haad
407 1.1 haad r = snprintf(buf, (size_t) bufsize, "/dev/%s",name);
408 1.1 haad
409 1.1 haad free(kd);
410 1.1 haad
411 1.1 haad if (r < 0 || r > bufsize - 1 || name == NULL)
412 1.1 haad return 0;
413 1.1 haad
414 1.1 haad return 1;
415 1.1 haad }
416 1.1 haad
417 1.1 haad /* Fill info from dm_ioctl structure. Look at DM_EXISTS_FLAG*/
418 1.1 haad int dm_task_get_info(struct dm_task *dmt, struct dm_info *info)
419 1.1 haad {
420 1.1 haad if (!dmt->dmi.v4)
421 1.1 haad return 0;
422 1.1 haad
423 1.1 haad memset(info, 0, sizeof(*info));
424 1.1 haad
425 1.1 haad info->exists = dmt->dmi.v4->flags & DM_EXISTS_FLAG ? 1 : 0;
426 1.1 haad if (!info->exists)
427 1.1 haad return 1;
428 1.1 haad
429 1.1 haad info->suspended = dmt->dmi.v4->flags & DM_SUSPEND_FLAG ? 1 : 0;
430 1.1 haad info->read_only = dmt->dmi.v4->flags & DM_READONLY_FLAG ? 1 : 0;
431 1.1 haad info->live_table = dmt->dmi.v4->flags & DM_ACTIVE_PRESENT_FLAG ? 1 : 0;
432 1.1 haad info->inactive_table = dmt->dmi.v4->flags & DM_INACTIVE_PRESENT_FLAG ?
433 1.1 haad 1 : 0;
434 1.1 haad info->target_count = dmt->dmi.v4->target_count;
435 1.1 haad info->open_count = dmt->dmi.v4->open_count;
436 1.1 haad info->event_nr = dmt->dmi.v4->event_nr;
437 1.1 haad
438 1.1 haad nbsd_get_dm_major(&info->major, DM_BLOCK_MAJOR); /* get netbsd dm device major number */
439 1.1 haad info->minor = MINOR(dmt->dmi.v4->dev);
440 1.1 haad
441 1.1 haad return 1;
442 1.1 haad }
443 1.1 haad
444 1.1 haad /* Unsupported on NetBSD */
445 1.1 haad uint32_t dm_task_get_read_ahead(const struct dm_task *dmt, uint32_t *read_ahead)
446 1.1 haad {
447 1.1 haad *read_ahead = DM_READ_AHEAD_NONE;
448 1.1 haad return 1;
449 1.1 haad }
450 1.1 haad
451 1.1 haad const char *dm_task_get_name(const struct dm_task *dmt)
452 1.1 haad {
453 1.1 haad
454 1.1 haad return (dmt->dmi.v4->name);
455 1.1 haad }
456 1.1 haad
457 1.1 haad const char *dm_task_get_uuid(const struct dm_task *dmt)
458 1.1 haad {
459 1.1 haad
460 1.1 haad return (dmt->dmi.v4->uuid);
461 1.1 haad }
462 1.1 haad
463 1.1 haad struct dm_deps *dm_task_get_deps(struct dm_task *dmt)
464 1.1 haad {
465 1.1 haad return (struct dm_deps *) (((void *) dmt->dmi.v4) +
466 1.1 haad dmt->dmi.v4->data_start);
467 1.1 haad }
468 1.1 haad
469 1.1 haad struct dm_names *dm_task_get_names(struct dm_task *dmt)
470 1.1 haad {
471 1.1 haad return (struct dm_names *) (((void *) dmt->dmi.v4) +
472 1.1 haad dmt->dmi.v4->data_start);
473 1.1 haad }
474 1.1 haad
475 1.1 haad struct dm_versions *dm_task_get_versions(struct dm_task *dmt)
476 1.1 haad {
477 1.1 haad return (struct dm_versions *) (((void *) dmt->dmi.v4) +
478 1.1 haad dmt->dmi.v4->data_start);
479 1.1 haad }
480 1.1 haad
481 1.1 haad int dm_task_set_ro(struct dm_task *dmt)
482 1.1 haad {
483 1.1 haad dmt->read_only = 1;
484 1.1 haad return 1;
485 1.1 haad }
486 1.1 haad
487 1.1 haad /* Unsupported on NetBSD */
488 1.1 haad int dm_task_set_read_ahead(struct dm_task *dmt, uint32_t read_ahead,
489 1.1 haad uint32_t read_ahead_flags)
490 1.1 haad {
491 1.1 haad return 1;
492 1.1 haad }
493 1.1 haad
494 1.1 haad int dm_task_suppress_identical_reload(struct dm_task *dmt)
495 1.1 haad {
496 1.1 haad dmt->suppress_identical_reload = 1;
497 1.1 haad return 1;
498 1.1 haad }
499 1.1 haad
500 1.1 haad int dm_task_set_newname(struct dm_task *dmt, const char *newname)
501 1.1 haad {
502 1.1 haad if (!(dmt->newname = dm_strdup(newname))) {
503 1.1 haad log_error("dm_task_set_newname: strdup(%s) failed", newname);
504 1.1 haad return 0;
505 1.1 haad }
506 1.1 haad
507 1.1 haad return 1;
508 1.1 haad }
509 1.1 haad
510 1.1 haad int dm_task_set_message(struct dm_task *dmt, const char *message)
511 1.1 haad {
512 1.1 haad if (!(dmt->message = dm_strdup(message))) {
513 1.1 haad log_error("dm_task_set_message: strdup(%s) failed", message);
514 1.1 haad return 0;
515 1.1 haad }
516 1.1 haad
517 1.1 haad return 1;
518 1.1 haad }
519 1.1 haad
520 1.1 haad int dm_task_set_sector(struct dm_task *dmt, uint64_t sector)
521 1.1 haad {
522 1.1 haad dmt->sector = sector;
523 1.1 haad
524 1.1 haad return 1;
525 1.1 haad }
526 1.1 haad
527 1.1 haad /* Unsupported in NetBSD */
528 1.1 haad int dm_task_set_geometry(struct dm_task *dmt, const char *cylinders,
529 1.1 haad const char *heads, const char *sectors, const char *start)
530 1.1 haad {
531 1.1 haad return 0;
532 1.1 haad }
533 1.1 haad
534 1.1 haad int dm_task_no_flush(struct dm_task *dmt)
535 1.1 haad {
536 1.1 haad dmt->no_flush = 1;
537 1.1 haad
538 1.1 haad return 1;
539 1.1 haad }
540 1.1 haad
541 1.1 haad int dm_task_no_open_count(struct dm_task *dmt)
542 1.1 haad {
543 1.1 haad dmt->no_open_count = 1;
544 1.1 haad
545 1.1 haad return 1;
546 1.1 haad }
547 1.1 haad
548 1.1 haad int dm_task_skip_lockfs(struct dm_task *dmt)
549 1.1 haad {
550 1.1 haad dmt->skip_lockfs = 1;
551 1.1 haad
552 1.1 haad return 1;
553 1.1 haad }
554 1.1 haad
555 1.4 haad int dm_task_query_inactive_table(struct dm_task *dmt)
556 1.4 haad {
557 1.4 haad dmt->query_inactive_table = 1;
558 1.4 haad
559 1.4 haad return 1;
560 1.4 haad }
561 1.4 haad
562 1.1 haad int dm_task_set_event_nr(struct dm_task *dmt, uint32_t event_nr)
563 1.1 haad {
564 1.1 haad dmt->event_nr = event_nr;
565 1.1 haad
566 1.1 haad return 1;
567 1.1 haad }
568 1.1 haad
569 1.1 haad /* Allocate one target(table description) entry. */
570 1.1 haad struct target *create_target(uint64_t start, uint64_t len, const char *type,
571 1.1 haad const char *params)
572 1.1 haad {
573 1.1 haad struct target *t = dm_malloc(sizeof(*t));
574 1.1 haad
575 1.1 haad if (!t) {
576 1.1 haad log_error("create_target: malloc(%" PRIsize_t ") failed",
577 1.1 haad sizeof(*t));
578 1.1 haad return NULL;
579 1.1 haad }
580 1.1 haad
581 1.1 haad memset(t, 0, sizeof(*t));
582 1.1 haad
583 1.1 haad if (!(t->params = dm_strdup(params))) {
584 1.1 haad log_error("create_target: strdup(params) failed");
585 1.1 haad goto bad;
586 1.1 haad }
587 1.1 haad
588 1.1 haad if (!(t->type = dm_strdup(type))) {
589 1.1 haad log_error("create_target: strdup(type) failed");
590 1.1 haad goto bad;
591 1.1 haad }
592 1.1 haad
593 1.1 haad t->start = start;
594 1.1 haad t->length = len;
595 1.1 haad return t;
596 1.1 haad
597 1.1 haad bad:
598 1.1 haad dm_free(t->params);
599 1.1 haad dm_free(t->type);
600 1.1 haad dm_free(t);
601 1.1 haad return NULL;
602 1.1 haad }
603 1.1 haad
604 1.1 haad /* Parse given dm task structure to proplib dictionary. */
605 1.1 haad static int _flatten(struct dm_task *dmt, prop_dictionary_t dm_dict)
606 1.1 haad {
607 1.1 haad prop_array_t cmd_array;
608 1.1 haad prop_dictionary_t target_spec;
609 1.1 haad
610 1.1 haad struct target *t;
611 1.1 haad
612 1.1 haad size_t len;
613 1.1 haad char type[DM_MAX_TYPE_NAME];
614 1.1 haad
615 1.1 haad uint32_t major, flags;
616 1.1 haad int count = 0;
617 1.1 haad const int (*version)[3];
618 1.1 haad
619 1.1 haad flags = 0;
620 1.1 haad version = &_cmd_data_v4[dmt->type].version;
621 1.1 haad
622 1.1 haad cmd_array = prop_array_create();
623 1.1 haad
624 1.1 haad for (t = dmt->head; t; t = t->next) {
625 1.1 haad target_spec = prop_dictionary_create();
626 1.1 haad
627 1.1 haad prop_dictionary_set_uint64(target_spec,DM_TABLE_START,t->start);
628 1.1 haad prop_dictionary_set_uint64(target_spec,DM_TABLE_LENGTH,t->length);
629 1.1 haad
630 1.1 haad strlcpy(type,t->type,DM_MAX_TYPE_NAME);
631 1.1 haad
632 1.1 haad prop_dictionary_set_cstring(target_spec,DM_TABLE_TYPE,type);
633 1.3 haad prop_dictionary_set_cstring(target_spec,DM_TABLE_PARAMS,t->params);
634 1.1 haad
635 1.1 haad prop_array_set(cmd_array,count,target_spec);
636 1.1 haad
637 1.1 haad prop_object_release(target_spec);
638 1.1 haad
639 1.1 haad count++;
640 1.1 haad }
641 1.1 haad
642 1.1 haad
643 1.1 haad if (count && (dmt->sector || dmt->message)) {
644 1.1 haad log_error("targets and message are incompatible");
645 1.1 haad return -1;
646 1.1 haad }
647 1.1 haad
648 1.1 haad if (count && dmt->newname) {
649 1.1 haad log_error("targets and newname are incompatible");
650 1.1 haad return -1;
651 1.1 haad }
652 1.1 haad
653 1.1 haad if (count && dmt->geometry) {
654 1.1 haad log_error("targets and geometry are incompatible");
655 1.1 haad return -1;
656 1.1 haad }
657 1.1 haad
658 1.1 haad if (dmt->newname && (dmt->sector || dmt->message)) {
659 1.1 haad log_error("message and newname are incompatible");
660 1.1 haad return -1;
661 1.1 haad }
662 1.1 haad
663 1.1 haad if (dmt->newname && dmt->geometry) {
664 1.1 haad log_error("geometry and newname are incompatible");
665 1.1 haad return -1;
666 1.1 haad }
667 1.1 haad
668 1.1 haad if (dmt->geometry && (dmt->sector || dmt->message)) {
669 1.1 haad log_error("geometry and message are incompatible");
670 1.1 haad return -1;
671 1.1 haad }
672 1.1 haad
673 1.1 haad if (dmt->sector && !dmt->message) {
674 1.1 haad log_error("message is required with sector");
675 1.1 haad return -1;
676 1.1 haad }
677 1.1 haad
678 1.1 haad if (dmt->newname)
679 1.1 haad len += strlen(dmt->newname) + 1;
680 1.1 haad
681 1.1 haad if (dmt->message)
682 1.1 haad len += sizeof(struct dm_target_msg) + strlen(dmt->message) + 1;
683 1.1 haad
684 1.1 haad if (dmt->geometry)
685 1.1 haad len += strlen(dmt->geometry) + 1;
686 1.1 haad
687 1.1 haad nbsd_dmi_add_version((*version), dm_dict);
688 1.1 haad
689 1.1 haad nbsd_get_dm_major(&major, DM_BLOCK_MAJOR);
690 1.1 haad /*
691 1.1 haad * Only devices with major which is equal to netbsd dm major
692 1.1 haad * dm devices in NetBSD can't have more majors then one assigned to dm.
693 1.1 haad */
694 1.1 haad if (dmt->major != major && dmt->major != -1)
695 1.1 haad return -1;
696 1.1 haad
697 1.1 haad if (dmt->minor >= 0) {
698 1.1 haad flags |= DM_PERSISTENT_DEV_FLAG;
699 1.1 haad
700 1.1 haad prop_dictionary_set_uint32(dm_dict, DM_IOCTL_MINOR, dmt->minor);
701 1.1 haad }
702 1.1 haad
703 1.1 haad /* Set values to dictionary. */
704 1.1 haad if (dmt->dev_name)
705 1.1 haad prop_dictionary_set_cstring(dm_dict, DM_IOCTL_NAME, dmt->dev_name);
706 1.1 haad
707 1.1 haad if (dmt->uuid)
708 1.1 haad prop_dictionary_set_cstring(dm_dict, DM_IOCTL_UUID, dmt->uuid);
709 1.1 haad
710 1.1 haad if (dmt->type == DM_DEVICE_SUSPEND)
711 1.1 haad flags |= DM_SUSPEND_FLAG;
712 1.1 haad if (dmt->no_flush)
713 1.1 haad flags |= DM_NOFLUSH_FLAG;
714 1.1 haad if (dmt->read_only)
715 1.1 haad flags |= DM_READONLY_FLAG;
716 1.1 haad if (dmt->skip_lockfs)
717 1.1 haad flags |= DM_SKIP_LOCKFS_FLAG;
718 1.1 haad
719 1.4 haad if (dmt->query_inactive_table) {
720 1.4 haad if (_dm_version_minor < 16)
721 1.4 haad log_warn("WARNING: Inactive table query unsupported "
722 1.4 haad "by kernel. It will use live table.");
723 1.4 haad flags |= DM_QUERY_INACTIVE_TABLE_FLAG;
724 1.4 haad }
725 1.4 haad
726 1.1 haad prop_dictionary_set_uint32(dm_dict, DM_IOCTL_FLAGS, flags);
727 1.1 haad
728 1.1 haad prop_dictionary_set_uint32(dm_dict, DM_IOCTL_EVENT, dmt->event_nr);
729 1.1 haad
730 1.1 haad if (dmt->newname)
731 1.1 haad prop_array_set_cstring(cmd_array, 0, dmt->newname);
732 1.1 haad
733 1.1 haad /* Add array for all COMMAND specific data. */
734 1.1 haad prop_dictionary_set(dm_dict, DM_IOCTL_CMD_DATA, cmd_array);
735 1.1 haad prop_object_release(cmd_array);
736 1.1 haad
737 1.1 haad return 0;
738 1.1 haad }
739 1.1 haad
740 1.1 haad static int _process_mapper_dir(struct dm_task *dmt)
741 1.1 haad {
742 1.1 haad struct dirent *dirent;
743 1.1 haad DIR *d;
744 1.1 haad const char *dir;
745 1.1 haad int r = 1;
746 1.1 haad
747 1.1 haad dir = dm_dir();
748 1.1 haad if (!(d = opendir(dir))) {
749 1.1 haad log_sys_error("opendir", dir);
750 1.1 haad return 0;
751 1.1 haad }
752 1.1 haad
753 1.1 haad while ((dirent = readdir(d))) {
754 1.1 haad if (!strcmp(dirent->d_name, ".") ||
755 1.1 haad !strcmp(dirent->d_name, "..") ||
756 1.1 haad !strcmp(dirent->d_name, "control"))
757 1.1 haad continue;
758 1.1 haad dm_task_set_name(dmt, dirent->d_name);
759 1.1 haad dm_task_run(dmt);
760 1.1 haad }
761 1.1 haad
762 1.1 haad if (closedir(d))
763 1.1 haad log_sys_error("closedir", dir);
764 1.1 haad
765 1.1 haad return r;
766 1.1 haad }
767 1.1 haad
768 1.1 haad /* Get list of all devices. */
769 1.1 haad static int _process_all_v4(struct dm_task *dmt)
770 1.1 haad {
771 1.1 haad struct dm_task *task;
772 1.1 haad struct dm_names *names;
773 1.1 haad unsigned next = 0;
774 1.1 haad int r = 1;
775 1.1 haad
776 1.1 haad if (!(task = dm_task_create(DM_DEVICE_LIST)))
777 1.1 haad return 0;
778 1.1 haad
779 1.1 haad if (!dm_task_run(task)) {
780 1.1 haad r = 0;
781 1.1 haad goto out;
782 1.1 haad }
783 1.1 haad
784 1.1 haad if (!(names = dm_task_get_names(task))) {
785 1.1 haad r = 0;
786 1.1 haad goto out;
787 1.1 haad }
788 1.1 haad
789 1.1 haad if (!names->dev)
790 1.1 haad goto out;
791 1.1 haad
792 1.1 haad do {
793 1.1 haad names = (void *) names + next;
794 1.1 haad if (!dm_task_set_name(dmt, names->name)) {
795 1.1 haad r = 0;
796 1.1 haad goto out;
797 1.1 haad }
798 1.1 haad if (!dm_task_run(dmt))
799 1.1 haad r = 0;
800 1.1 haad next = names->next;
801 1.1 haad } while (next);
802 1.1 haad
803 1.1 haad out:
804 1.1 haad dm_task_destroy(task);
805 1.1 haad return r;
806 1.1 haad }
807 1.1 haad
808 1.1 haad static int _mknodes_v4(struct dm_task *dmt)
809 1.1 haad {
810 1.1 haad (void) _process_mapper_dir(dmt);
811 1.1 haad
812 1.1 haad return _process_all_v4(dmt);
813 1.1 haad }
814 1.1 haad
815 1.1 haad /* Create new device and load table to it. */
816 1.1 haad static int _create_and_load_v4(struct dm_task *dmt)
817 1.1 haad {
818 1.1 haad struct dm_task *task;
819 1.1 haad int r;
820 1.1 haad
821 1.1 haad printf("create and load called \n");
822 1.1 haad
823 1.1 haad /* Use new task struct to create the device */
824 1.1 haad if (!(task = dm_task_create(DM_DEVICE_CREATE))) {
825 1.1 haad log_error("Failed to create device-mapper task struct");
826 1.1 haad return 0;
827 1.1 haad }
828 1.1 haad
829 1.1 haad /* Copy across relevant fields */
830 1.1 haad if (dmt->dev_name && !dm_task_set_name(task, dmt->dev_name)) {
831 1.1 haad dm_task_destroy(task);
832 1.1 haad return 0;
833 1.1 haad }
834 1.1 haad
835 1.1 haad if (dmt->uuid && !dm_task_set_uuid(task, dmt->uuid)) {
836 1.1 haad dm_task_destroy(task);
837 1.1 haad return 0;
838 1.1 haad }
839 1.1 haad
840 1.1 haad task->major = dmt->major;
841 1.1 haad task->minor = dmt->minor;
842 1.1 haad task->uid = dmt->uid;
843 1.1 haad task->gid = dmt->gid;
844 1.1 haad task->mode = dmt->mode;
845 1.1 haad
846 1.1 haad r = dm_task_run(task);
847 1.1 haad dm_task_destroy(task);
848 1.1 haad if (!r)
849 1.1 haad return r;
850 1.1 haad
851 1.1 haad /* Next load the table */
852 1.1 haad if (!(task = dm_task_create(DM_DEVICE_RELOAD))) {
853 1.1 haad log_error("Failed to create device-mapper task struct");
854 1.1 haad return 0;
855 1.1 haad }
856 1.1 haad
857 1.1 haad /* Copy across relevant fields */
858 1.1 haad if (dmt->dev_name && !dm_task_set_name(task, dmt->dev_name)) {
859 1.1 haad dm_task_destroy(task);
860 1.1 haad return 0;
861 1.1 haad }
862 1.1 haad
863 1.1 haad task->read_only = dmt->read_only;
864 1.1 haad task->head = dmt->head;
865 1.1 haad task->tail = dmt->tail;
866 1.1 haad
867 1.1 haad r = dm_task_run(task);
868 1.1 haad
869 1.1 haad task->head = NULL;
870 1.1 haad task->tail = NULL;
871 1.1 haad dm_task_destroy(task);
872 1.1 haad if (!r)
873 1.1 haad goto revert;
874 1.1 haad
875 1.1 haad /* Use the original structure last so the info will be correct */
876 1.1 haad dmt->type = DM_DEVICE_RESUME;
877 1.1 haad dm_free(dmt->uuid);
878 1.1 haad dmt->uuid = NULL;
879 1.1 haad
880 1.1 haad r = dm_task_run(dmt);
881 1.1 haad
882 1.1 haad if (r)
883 1.1 haad return r;
884 1.1 haad
885 1.1 haad revert:
886 1.1 haad dmt->type = DM_DEVICE_REMOVE;
887 1.1 haad dm_free(dmt->uuid);
888 1.1 haad dmt->uuid = NULL;
889 1.1 haad
890 1.1 haad if (!dm_task_run(dmt))
891 1.1 haad log_error("Failed to revert device creation.");
892 1.1 haad
893 1.1 haad return r;
894 1.1 haad }
895 1.1 haad
896 1.1 haad uint64_t dm_task_get_existing_table_size(struct dm_task *dmt)
897 1.1 haad {
898 1.1 haad return dmt->existing_table_size;
899 1.1 haad }
900 1.1 haad
901 1.1 haad static int _reload_with_suppression_v4(struct dm_task *dmt)
902 1.1 haad {
903 1.1 haad struct dm_task *task;
904 1.1 haad struct target *t1, *t2;
905 1.1 haad int r;
906 1.1 haad
907 1.1 haad /* New task to get existing table information */
908 1.1 haad if (!(task = dm_task_create(DM_DEVICE_TABLE))) {
909 1.1 haad log_error("Failed to create device-mapper task struct");
910 1.1 haad return 0;
911 1.1 haad }
912 1.1 haad
913 1.1 haad /* Copy across relevant fields */
914 1.1 haad if (dmt->dev_name && !dm_task_set_name(task, dmt->dev_name)) {
915 1.1 haad dm_task_destroy(task);
916 1.1 haad return 0;
917 1.1 haad }
918 1.1 haad
919 1.1 haad if (dmt->uuid && !dm_task_set_uuid(task, dmt->uuid)) {
920 1.1 haad dm_task_destroy(task);
921 1.1 haad return 0;
922 1.1 haad }
923 1.1 haad
924 1.1 haad task->major = dmt->major;
925 1.1 haad task->minor = dmt->minor;
926 1.1 haad
927 1.1 haad r = dm_task_run(task);
928 1.1 haad
929 1.1 haad if (!r) {
930 1.1 haad dm_task_destroy(task);
931 1.1 haad return r;
932 1.1 haad }
933 1.1 haad
934 1.1 haad /* Store existing table size */
935 1.1 haad t2 = task->head;
936 1.1 haad while (t2 && t2->next)
937 1.1 haad t2 = t2->next;
938 1.1 haad dmt->existing_table_size = t2 ? t2->start + t2->length : 0;
939 1.1 haad
940 1.1 haad if ((task->dmi.v4->flags & DM_READONLY_FLAG) ? 1 : 0 != dmt->read_only)
941 1.1 haad goto no_match;
942 1.1 haad
943 1.1 haad t1 = dmt->head;
944 1.1 haad t2 = task->head;
945 1.1 haad
946 1.1 haad while (t1 && t2) {
947 1.1 haad while (t2->params[strlen(t2->params) - 1] == ' ')
948 1.1 haad t2->params[strlen(t2->params) - 1] = '\0';
949 1.1 haad if ((t1->start != t2->start) ||
950 1.1 haad (t1->length != t2->length) ||
951 1.1 haad (strcmp(t1->type, t2->type)) ||
952 1.1 haad (strcmp(t1->params, t2->params)))
953 1.1 haad goto no_match;
954 1.1 haad t1 = t1->next;
955 1.1 haad t2 = t2->next;
956 1.1 haad }
957 1.1 haad
958 1.1 haad if (!t1 && !t2) {
959 1.1 haad dmt->dmi.v4 = task->dmi.v4;
960 1.1 haad task->dmi.v4 = NULL;
961 1.1 haad dm_task_destroy(task);
962 1.1 haad return 1;
963 1.1 haad }
964 1.1 haad
965 1.1 haad no_match:
966 1.1 haad dm_task_destroy(task);
967 1.1 haad
968 1.1 haad /* Now do the original reload */
969 1.1 haad dmt->suppress_identical_reload = 0;
970 1.1 haad r = dm_task_run(dmt);
971 1.1 haad
972 1.1 haad return r;
973 1.1 haad }
974 1.1 haad
975 1.1 haad /*
976 1.1 haad * This function is heart of NetBSD libdevmapper-> device-mapper kernel protocol
977 1.1 haad * It creates proplib_dictionary from dm task structure and sends it to NetBSD
978 1.1 haad * kernel driver. After succesfull ioctl it create dmi structure from returned
979 1.1 haad * proplib dictionary. This way I keep number of changes in NetBSD version of
980 1.1 haad * libdevmapper as small as posible.
981 1.1 haad */
982 1.1 haad static struct dm_ioctl *_do_dm_ioctl(struct dm_task *dmt, unsigned command)
983 1.1 haad {
984 1.1 haad struct dm_ioctl *dmi;
985 1.1 haad prop_dictionary_t dm_dict_in, dm_dict_out;
986 1.1 haad
987 1.1 haad uint32_t flags;
988 1.1 haad
989 1.1 haad dm_dict_in = NULL;
990 1.1 haad
991 1.1 haad dm_dict_in = prop_dictionary_create(); /* Dictionary send to kernel */
992 1.1 haad dm_dict_out = prop_dictionary_create(); /* Dictionary received from kernel */
993 1.1 haad
994 1.1 haad /* Set command name to dictionary */
995 1.1 haad prop_dictionary_set_cstring(dm_dict_in, DM_IOCTL_COMMAND,
996 1.1 haad _cmd_data_v4[dmt->type].name);
997 1.1 haad
998 1.1 haad /* Parse dmi from libdevmapper to dictionary */
999 1.1 haad if (_flatten(dmt, dm_dict_in) < 0)
1000 1.1 haad goto bad;
1001 1.1 haad
1002 1.1 haad prop_dictionary_get_uint32(dm_dict_in, DM_IOCTL_FLAGS, &flags);
1003 1.1 haad
1004 1.1 haad if (dmt->type == DM_DEVICE_TABLE)
1005 1.1 haad flags |= DM_STATUS_TABLE_FLAG;
1006 1.1 haad
1007 1.1 haad if (dmt->no_open_count)
1008 1.1 haad flags |= DM_SKIP_BDGET_FLAG;
1009 1.1 haad
1010 1.1 haad flags |= DM_EXISTS_FLAG;
1011 1.1 haad
1012 1.1 haad /* Set flags to dictionary. */
1013 1.1 haad prop_dictionary_set_uint32(dm_dict_in,DM_IOCTL_FLAGS,flags);
1014 1.1 haad
1015 1.1 haad prop_dictionary_externalize_to_file(dm_dict_in,"/tmp/test_in");
1016 1.1 haad
1017 1.1 haad log_very_verbose("Ioctl type %s --- flags %d",_cmd_data_v4[dmt->type].name,flags);
1018 1.1 haad //printf("name %s, major %d minor %d\n uuid %s\n",
1019 1.1 haad //dm_task_get_name(dmt), dmt->minor, dmt->major, dm_task_get_uuid(dmt));
1020 1.1 haad /* Send dictionary to kernel and wait for reply. */
1021 1.1 haad if (prop_dictionary_sendrecv_ioctl(dm_dict_in,_control_fd,
1022 1.1 haad NETBSD_DM_IOCTL,&dm_dict_out) != 0) {
1023 1.1 haad
1024 1.1 haad if (errno == ENOENT &&
1025 1.1 haad ((dmt->type == DM_DEVICE_INFO) ||
1026 1.1 haad (dmt->type == DM_DEVICE_MKNODES) ||
1027 1.1 haad (dmt->type == DM_DEVICE_STATUS))) {
1028 1.1 haad
1029 1.1 haad /*
1030 1.1 haad * Linux version doesn't fail when ENOENT is returned
1031 1.1 haad * for nonexisting device after info, deps, mknodes call.
1032 1.1 haad * It returns dmi sent to kernel with DM_EXISTS_FLAG = 0;
1033 1.1 haad */
1034 1.1 haad
1035 1.1 haad dmi = nbsd_dm_dict_to_dmi(dm_dict_in,_cmd_data_v4[dmt->type].cmd);
1036 1.1 haad
1037 1.1 haad dmi->flags &= ~DM_EXISTS_FLAG;
1038 1.1 haad
1039 1.1 haad prop_object_release(dm_dict_in);
1040 1.1 haad prop_object_release(dm_dict_out);
1041 1.1 haad
1042 1.1 haad goto out;
1043 1.1 haad } else {
1044 1.1 haad log_error("ioctl %s call failed with errno %d\n",
1045 1.1 haad _cmd_data_v4[dmt->type].name, errno);
1046 1.1 haad
1047 1.1 haad prop_object_release(dm_dict_in);
1048 1.1 haad prop_object_release(dm_dict_out);
1049 1.1 haad
1050 1.1 haad goto bad;
1051 1.1 haad }
1052 1.1 haad }
1053 1.1 haad
1054 1.1 haad prop_dictionary_externalize_to_file(dm_dict_out,"/tmp/test_out");
1055 1.1 haad
1056 1.1 haad /* Parse kernel dictionary to dmi structure and return it to libdevmapper. */
1057 1.1 haad dmi = nbsd_dm_dict_to_dmi(dm_dict_out,_cmd_data_v4[dmt->type].cmd);
1058 1.1 haad
1059 1.1 haad prop_object_release(dm_dict_in);
1060 1.1 haad prop_object_release(dm_dict_out);
1061 1.1 haad out:
1062 1.1 haad return dmi;
1063 1.1 haad bad:
1064 1.1 haad return NULL;
1065 1.1 haad }
1066 1.1 haad
1067 1.1 haad /* Create new edvice nodes in mapper/ dir. */
1068 1.1 haad void dm_task_update_nodes(void)
1069 1.1 haad {
1070 1.1 haad update_devs();
1071 1.1 haad }
1072 1.1 haad
1073 1.1 haad /* Run dm command which is descirbed in dm_task structure. */
1074 1.1 haad int dm_task_run(struct dm_task *dmt)
1075 1.1 haad {
1076 1.1 haad struct dm_ioctl *dmi;
1077 1.1 haad unsigned command;
1078 1.1 haad
1079 1.1 haad if ((unsigned) dmt->type >=
1080 1.1 haad (sizeof(_cmd_data_v4) / sizeof(*_cmd_data_v4))) {
1081 1.1 haad log_error("Internal error: unknown device-mapper task %d",
1082 1.1 haad dmt->type);
1083 1.1 haad return 0;
1084 1.1 haad }
1085 1.1 haad
1086 1.1 haad command = _cmd_data_v4[dmt->type].cmd;
1087 1.1 haad
1088 1.1 haad /* Old-style creation had a table supplied */
1089 1.1 haad if (dmt->type == DM_DEVICE_CREATE && dmt->head)
1090 1.1 haad return _create_and_load_v4(dmt);
1091 1.1 haad
1092 1.1 haad if (dmt->type == DM_DEVICE_MKNODES && !dmt->dev_name &&
1093 1.1 haad !dmt->uuid && dmt->major <= 0)
1094 1.1 haad return _mknodes_v4(dmt);
1095 1.1 haad
1096 1.1 haad if ((dmt->type == DM_DEVICE_RELOAD) && dmt->suppress_identical_reload)
1097 1.1 haad return _reload_with_suppression_v4(dmt);
1098 1.1 haad
1099 1.1 haad if (!_open_control())
1100 1.1 haad return 0;
1101 1.1 haad
1102 1.1 haad if (!(dmi = _do_dm_ioctl(dmt, command)))
1103 1.1 haad return 0;
1104 1.1 haad
1105 1.1 haad switch (dmt->type) {
1106 1.1 haad case DM_DEVICE_CREATE:
1107 1.1 haad add_dev_node(dmt->dev_name, MAJOR(dmi->dev), MINOR(dmi->dev),
1108 1.4 haad dmt->uid, dmt->gid, dmt->mode, 0);
1109 1.1 haad break;
1110 1.1 haad
1111 1.1 haad case DM_DEVICE_REMOVE:
1112 1.1 haad /* FIXME Kernel needs to fill in dmi->name */
1113 1.1 haad if (dmt->dev_name)
1114 1.4 haad rm_dev_node(dmt->dev_name, 0);
1115 1.1 haad break;
1116 1.1 haad
1117 1.1 haad case DM_DEVICE_RENAME:
1118 1.1 haad /* FIXME Kernel needs to fill in dmi->name */
1119 1.1 haad if (dmt->dev_name)
1120 1.4 haad rename_dev_node(dmt->dev_name, dmt->newname, 0);
1121 1.1 haad break;
1122 1.1 haad
1123 1.1 haad case DM_DEVICE_RESUME:
1124 1.1 haad /* FIXME Kernel needs to fill in dmi->name */
1125 1.1 haad set_dev_node_read_ahead(dmt->dev_name, dmt->read_ahead,
1126 1.1 haad dmt->read_ahead_flags);
1127 1.1 haad break;
1128 1.1 haad
1129 1.1 haad case DM_DEVICE_MKNODES:
1130 1.1 haad if (dmi->flags & DM_EXISTS_FLAG)
1131 1.1 haad add_dev_node(dmi->name, MAJOR(dmi->dev),
1132 1.1 haad MINOR(dmi->dev),
1133 1.4 haad dmt->uid, dmt->gid, dmt->mode, 0);
1134 1.1 haad else if (dmt->dev_name)
1135 1.4 haad rm_dev_node(dmt->dev_name, 0);
1136 1.1 haad break;
1137 1.1 haad
1138 1.1 haad case DM_DEVICE_STATUS:
1139 1.1 haad case DM_DEVICE_TABLE:
1140 1.1 haad case DM_DEVICE_WAITEVENT:
1141 1.1 haad if (!_unmarshal_status(dmt, dmi))
1142 1.1 haad goto bad;
1143 1.1 haad break;
1144 1.1 haad }
1145 1.1 haad
1146 1.1 haad /* Was structure reused? */
1147 1.1 haad if (dmt->dmi.v4)
1148 1.1 haad dm_free(dmt->dmi.v4);
1149 1.1 haad
1150 1.1 haad dmt->dmi.v4 = dmi;
1151 1.1 haad return 1;
1152 1.1 haad
1153 1.1 haad bad:
1154 1.1 haad dm_free(dmi);
1155 1.1 haad return 0;
1156 1.1 haad }
1157 1.1 haad
1158 1.1 haad void dm_lib_release(void)
1159 1.1 haad {
1160 1.1 haad if (_control_fd != -1) {
1161 1.1 haad close(_control_fd);
1162 1.1 haad _control_fd = -1;
1163 1.1 haad }
1164 1.1 haad update_devs();
1165 1.1 haad }
1166 1.1 haad
1167 1.1 haad void dm_lib_exit(void)
1168 1.1 haad {
1169 1.1 haad dm_lib_release();
1170 1.1 haad dm_dump_memory();
1171 1.1 haad _version_ok = 1;
1172 1.1 haad _version_checked = 0;
1173 1.1 haad }
1174