1 /*
2 * CDDL HEADER START
3 *
4 * The contents of this file are subject to the terms of the
5 * Common Development and Distribution License (the "License").
6 * You may not use this file except in compliance with the License.
7 *
8 * You can obtain a copy of the license at usr/src/OPENSOLARIS.LICENSE
9 * or http://www.opensolaris.org/os/licensing.
10 * See the License for the specific language governing permissions
11 * and limitations under the License.
12 *
13 * When distributing Covered Code, include this CDDL HEADER in each
14 * file and include the License file at usr/src/OPENSOLARIS.LICENSE.
15 * If applicable, add the following below this CDDL HEADER, with the
16 * fields enclosed by brackets "[]" replaced with your own identifying
17 * information: Portions Copyright [yyyy] [name of copyright owner]
18 *
19 * CDDL HEADER END
20 */
21
22 /*
23 * Copyright (c) 2005, 2010, Oracle and/or its affiliates. All rights reserved.
24 * Copyright (c) 2013, Joyent, Inc. All rights reserved.
25 * Copyright (c) 2011, 2014 by Delphix. All rights reserved.
26 * Copyright (c) 2012 DEY Storage Systems, Inc. All rights reserved.
27 * Copyright (c) 2011-2012 Pawel Jakub Dawidek <pawel@dawidek.net>.
28 * All rights reserved.
29 * Copyright (c) 2012 Martin Matuska <mm@FreeBSD.org>. All rights reserved.
30 * Copyright (c) 2013 Steven Hartland. All rights reserved.
31 * Copyright 2013 Nexenta Systems, Inc. All rights reserved.
32 */
33
34 #include <ctype.h>
35 #include <errno.h>
36 #include <libintl.h>
37 #include <math.h>
38 #include <stdio.h>
39 #include <stdlib.h>
40 #include <strings.h>
41 #include <unistd.h>
42 #include <stddef.h>
43 #include <zone.h>
44 #include <fcntl.h>
45 #include <sys/mntent.h>
46 #include <sys/mount.h>
47 #include <priv.h>
48 #include <pwd.h>
49 #include <grp.h>
50 #include <stddef.h>
51 #include <idmap.h>
52
53 #include <sys/dnode.h>
54 #include <sys/spa.h>
55 #include <sys/zap.h>
56 #include <sys/misc.h>
57 #include <libzfs.h>
58
59 #include "zfs_namecheck.h"
60 #include "zfs_prop.h"
61 #include "libzfs_impl.h"
62 #include "zfs_deleg.h"
63
64 static int userquota_propname_decode(const char *propname, boolean_t zoned,
65 zfs_userquota_prop_t *typep, char *domain, int domainlen, uint64_t *ridp);
66
67 /*
68 * Given a single type (not a mask of types), return the type in a human
69 * readable form.
70 */
71 const char *
zfs_type_to_name(zfs_type_t type)72 zfs_type_to_name(zfs_type_t type)
73 {
74 switch (type) {
75 case ZFS_TYPE_FILESYSTEM:
76 return (dgettext(TEXT_DOMAIN, "filesystem"));
77 case ZFS_TYPE_SNAPSHOT:
78 return (dgettext(TEXT_DOMAIN, "snapshot"));
79 case ZFS_TYPE_VOLUME:
80 return (dgettext(TEXT_DOMAIN, "volume"));
81 }
82
83 return (NULL);
84 }
85
86 /*
87 * Given a path and mask of ZFS types, return a string describing this dataset.
88 * This is used when we fail to open a dataset and we cannot get an exact type.
89 * We guess what the type would have been based on the path and the mask of
90 * acceptable types.
91 */
92 static const char *
path_to_str(const char * path,int types)93 path_to_str(const char *path, int types)
94 {
95 /*
96 * When given a single type, always report the exact type.
97 */
98 if (types == ZFS_TYPE_SNAPSHOT)
99 return (dgettext(TEXT_DOMAIN, "snapshot"));
100 if (types == ZFS_TYPE_FILESYSTEM)
101 return (dgettext(TEXT_DOMAIN, "filesystem"));
102 if (types == ZFS_TYPE_VOLUME)
103 return (dgettext(TEXT_DOMAIN, "volume"));
104
105 /*
106 * The user is requesting more than one type of dataset. If this is the
107 * case, consult the path itself. If we're looking for a snapshot, and
108 * a '@' is found, then report it as "snapshot". Otherwise, remove the
109 * snapshot attribute and try again.
110 */
111 if (types & ZFS_TYPE_SNAPSHOT) {
112 if (strchr(path, '@') != NULL)
113 return (dgettext(TEXT_DOMAIN, "snapshot"));
114 return (path_to_str(path, types & ~ZFS_TYPE_SNAPSHOT));
115 }
116
117 /*
118 * The user has requested either filesystems or volumes.
119 * We have no way of knowing a priori what type this would be, so always
120 * report it as "filesystem" or "volume", our two primitive types.
121 */
122 if (types & ZFS_TYPE_FILESYSTEM)
123 return (dgettext(TEXT_DOMAIN, "filesystem"));
124
125 assert(types & ZFS_TYPE_VOLUME);
126 return (dgettext(TEXT_DOMAIN, "volume"));
127 }
128
129 /*
130 * Validate a ZFS path. This is used even before trying to open the dataset, to
131 * provide a more meaningful error message. We call zfs_error_aux() to
132 * explain exactly why the name was not valid.
133 */
134 int
zfs_validate_name(libzfs_handle_t * hdl,const char * path,int type,boolean_t modifying)135 zfs_validate_name(libzfs_handle_t *hdl, const char *path, int type,
136 boolean_t modifying)
137 {
138 namecheck_err_t why;
139 char what;
140
141 (void) zfs_prop_get_table();
142 if (dataset_namecheck(path, &why, &what) != 0) {
143 if (hdl != NULL) {
144 switch (why) {
145 case NAME_ERR_TOOLONG:
146 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN,
147 "name is too long"));
148 break;
149
150 case NAME_ERR_LEADING_SLASH:
151 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN,
152 "leading slash in name"));
153 break;
154
155 case NAME_ERR_EMPTY_COMPONENT:
156 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN,
157 "empty component in name"));
158 break;
159
160 case NAME_ERR_TRAILING_SLASH:
161 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN,
162 "trailing slash in name"));
163 break;
164
165 case NAME_ERR_INVALCHAR:
166 zfs_error_aux(hdl,
167 dgettext(TEXT_DOMAIN, "invalid character "
168 "'%c' in name"), what);
169 break;
170
171 case NAME_ERR_MULTIPLE_AT:
172 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN,
173 "multiple '@' delimiters in name"));
174 break;
175
176 case NAME_ERR_NOLETTER:
177 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN,
178 "pool doesn't begin with a letter"));
179 break;
180
181 case NAME_ERR_RESERVED:
182 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN,
183 "name is reserved"));
184 break;
185
186 case NAME_ERR_DISKLIKE:
187 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN,
188 "reserved disk name"));
189 break;
190 }
191 }
192
193 return (0);
194 }
195
196 if (!(type & ZFS_TYPE_SNAPSHOT) && strchr(path, '@') != NULL) {
197 if (hdl != NULL)
198 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN,
199 "snapshot delimiter '@' in filesystem name"));
200 return (0);
201 }
202
203 if (type == ZFS_TYPE_SNAPSHOT && strchr(path, '@') == NULL) {
204 if (hdl != NULL)
205 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN,
206 "missing '@' delimiter in snapshot name"));
207 return (0);
208 }
209
210 if (modifying && strchr(path, '%') != NULL) {
211 if (hdl != NULL)
212 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN,
213 "invalid character %c in name"), '%');
214 return (0);
215 }
216
217 return (-1);
218 }
219
220 int
zfs_name_valid(const char * name,zfs_type_t type)221 zfs_name_valid(const char *name, zfs_type_t type)
222 {
223 if (type == ZFS_TYPE_POOL)
224 return (zpool_name_valid(NULL, B_FALSE, name));
225 return (zfs_validate_name(NULL, name, type, B_FALSE));
226 }
227
228 /*
229 * This function takes the raw DSL properties, and filters out the user-defined
230 * properties into a separate nvlist.
231 */
232 static nvlist_t *
process_user_props(zfs_handle_t * zhp,nvlist_t * props)233 process_user_props(zfs_handle_t *zhp, nvlist_t *props)
234 {
235 libzfs_handle_t *hdl = zhp->zfs_hdl;
236 nvpair_t *elem;
237 nvlist_t *propval;
238 nvlist_t *nvl;
239
240 if (nvlist_alloc(&nvl, NV_UNIQUE_NAME, 0) != 0) {
241 (void) no_memory(hdl);
242 return (NULL);
243 }
244
245 elem = NULL;
246 while ((elem = nvlist_next_nvpair(props, elem)) != NULL) {
247 if (!zfs_prop_user(nvpair_name(elem)))
248 continue;
249
250 verify(nvpair_value_nvlist(elem, &propval) == 0);
251 if (nvlist_add_nvlist(nvl, nvpair_name(elem), propval) != 0) {
252 nvlist_free(nvl);
253 (void) no_memory(hdl);
254 return (NULL);
255 }
256 }
257
258 return (nvl);
259 }
260
261 static zpool_handle_t *
zpool_add_handle(zfs_handle_t * zhp,const char * pool_name)262 zpool_add_handle(zfs_handle_t *zhp, const char *pool_name)
263 {
264 libzfs_handle_t *hdl = zhp->zfs_hdl;
265 zpool_handle_t *zph;
266
267 if ((zph = zpool_open_canfail(hdl, pool_name)) != NULL) {
268 if (hdl->libzfs_pool_handles != NULL)
269 zph->zpool_next = hdl->libzfs_pool_handles;
270 hdl->libzfs_pool_handles = zph;
271 }
272 return (zph);
273 }
274
275 static zpool_handle_t *
zpool_find_handle(zfs_handle_t * zhp,const char * pool_name,int len)276 zpool_find_handle(zfs_handle_t *zhp, const char *pool_name, int len)
277 {
278 libzfs_handle_t *hdl = zhp->zfs_hdl;
279 zpool_handle_t *zph = hdl->libzfs_pool_handles;
280
281 while ((zph != NULL) &&
282 (strncmp(pool_name, zpool_get_name(zph), len) != 0))
283 zph = zph->zpool_next;
284 return (zph);
285 }
286
287 /*
288 * Returns a handle to the pool that contains the provided dataset.
289 * If a handle to that pool already exists then that handle is returned.
290 * Otherwise, a new handle is created and added to the list of handles.
291 */
292 static zpool_handle_t *
zpool_handle(zfs_handle_t * zhp)293 zpool_handle(zfs_handle_t *zhp)
294 {
295 char *pool_name;
296 int len;
297 zpool_handle_t *zph;
298
299 len = strcspn(zhp->zfs_name, "/@#") + 1;
300 pool_name = zfs_alloc(zhp->zfs_hdl, len);
301 (void) strlcpy(pool_name, zhp->zfs_name, len);
302
303 zph = zpool_find_handle(zhp, pool_name, len);
304 if (zph == NULL)
305 zph = zpool_add_handle(zhp, pool_name);
306
307 free(pool_name);
308 return (zph);
309 }
310
311 void
zpool_free_handles(libzfs_handle_t * hdl)312 zpool_free_handles(libzfs_handle_t *hdl)
313 {
314 zpool_handle_t *next, *zph = hdl->libzfs_pool_handles;
315
316 while (zph != NULL) {
317 next = zph->zpool_next;
318 zpool_close(zph);
319 zph = next;
320 }
321 hdl->libzfs_pool_handles = NULL;
322 }
323
324 /*
325 * Utility function to gather stats (objset and zpl) for the given object.
326 */
327 static int
get_stats_ioctl(zfs_handle_t * zhp,zfs_cmd_t * zc)328 get_stats_ioctl(zfs_handle_t *zhp, zfs_cmd_t *zc)
329 {
330 libzfs_handle_t *hdl = zhp->zfs_hdl;
331
332 (void) strlcpy(zc->zc_name, zhp->zfs_name, sizeof (zc->zc_name));
333
334 while (ioctl(hdl->libzfs_fd, ZFS_IOC_OBJSET_STATS, zc) != 0) {
335 if (errno == ENOMEM) {
336 if (zcmd_expand_dst_nvlist(hdl, zc) != 0) {
337 return (-1);
338 }
339 } else {
340 return (-1);
341 }
342 }
343 return (0);
344 }
345
346 /*
347 * Utility function to get the received properties of the given object.
348 */
349 static int
get_recvd_props_ioctl(zfs_handle_t * zhp)350 get_recvd_props_ioctl(zfs_handle_t *zhp)
351 {
352 libzfs_handle_t *hdl = zhp->zfs_hdl;
353 nvlist_t *recvdprops;
354 zfs_cmd_t zc = { 0 };
355 int err;
356
357 if (zcmd_alloc_dst_nvlist(hdl, &zc, 0) != 0)
358 return (-1);
359
360 (void) strlcpy(zc.zc_name, zhp->zfs_name, sizeof (zc.zc_name));
361
362 while (ioctl(hdl->libzfs_fd, ZFS_IOC_OBJSET_RECVD_PROPS, &zc) != 0) {
363 if (errno == ENOMEM) {
364 if (zcmd_expand_dst_nvlist(hdl, &zc) != 0) {
365 return (-1);
366 }
367 } else {
368 zcmd_free_nvlists(&zc);
369 return (-1);
370 }
371 }
372
373 err = zcmd_read_dst_nvlist(zhp->zfs_hdl, &zc, &recvdprops);
374 zcmd_free_nvlists(&zc);
375 if (err != 0)
376 return (-1);
377
378 nvlist_free(zhp->zfs_recvd_props);
379 zhp->zfs_recvd_props = recvdprops;
380
381 return (0);
382 }
383
384 static int
put_stats_zhdl(zfs_handle_t * zhp,zfs_cmd_t * zc)385 put_stats_zhdl(zfs_handle_t *zhp, zfs_cmd_t *zc)
386 {
387 nvlist_t *allprops, *userprops;
388
389 zhp->zfs_dmustats = zc->zc_objset_stats; /* structure assignment */
390
391 if (zcmd_read_dst_nvlist(zhp->zfs_hdl, zc, &allprops) != 0) {
392 return (-1);
393 }
394
395 /*
396 * XXX Why do we store the user props separately, in addition to
397 * storing them in zfs_props?
398 */
399 if ((userprops = process_user_props(zhp, allprops)) == NULL) {
400 nvlist_free(allprops);
401 return (-1);
402 }
403
404 nvlist_free(zhp->zfs_props);
405 nvlist_free(zhp->zfs_user_props);
406
407 zhp->zfs_props = allprops;
408 zhp->zfs_user_props = userprops;
409
410 return (0);
411 }
412
413 static int
get_stats(zfs_handle_t * zhp)414 get_stats(zfs_handle_t *zhp)
415 {
416 int rc = 0;
417 zfs_cmd_t zc = { 0 };
418
419 if (zcmd_alloc_dst_nvlist(zhp->zfs_hdl, &zc, 0) != 0)
420 return (-1);
421 if (get_stats_ioctl(zhp, &zc) != 0)
422 rc = -1;
423 else if (put_stats_zhdl(zhp, &zc) != 0)
424 rc = -1;
425 zcmd_free_nvlists(&zc);
426 return (rc);
427 }
428
429 /*
430 * Refresh the properties currently stored in the handle.
431 */
432 void
zfs_refresh_properties(zfs_handle_t * zhp)433 zfs_refresh_properties(zfs_handle_t *zhp)
434 {
435 (void) get_stats(zhp);
436 }
437
438 /*
439 * Makes a handle from the given dataset name. Used by zfs_open() and
440 * zfs_iter_* to create child handles on the fly.
441 */
442 static int
make_dataset_handle_common(zfs_handle_t * zhp,zfs_cmd_t * zc)443 make_dataset_handle_common(zfs_handle_t *zhp, zfs_cmd_t *zc)
444 {
445 if (put_stats_zhdl(zhp, zc) != 0)
446 return (-1);
447
448 /*
449 * We've managed to open the dataset and gather statistics. Determine
450 * the high-level type.
451 */
452 if (zhp->zfs_dmustats.dds_type == DMU_OST_ZVOL)
453 zhp->zfs_head_type = ZFS_TYPE_VOLUME;
454 else if (zhp->zfs_dmustats.dds_type == DMU_OST_ZFS)
455 zhp->zfs_head_type = ZFS_TYPE_FILESYSTEM;
456 else
457 abort();
458
459 if (zhp->zfs_dmustats.dds_is_snapshot)
460 zhp->zfs_type = ZFS_TYPE_SNAPSHOT;
461 else if (zhp->zfs_dmustats.dds_type == DMU_OST_ZVOL)
462 zhp->zfs_type = ZFS_TYPE_VOLUME;
463 else if (zhp->zfs_dmustats.dds_type == DMU_OST_ZFS)
464 zhp->zfs_type = ZFS_TYPE_FILESYSTEM;
465 else
466 abort(); /* we should never see any other types */
467
468 if ((zhp->zpool_hdl = zpool_handle(zhp)) == NULL)
469 return (-1);
470
471 return (0);
472 }
473
474 zfs_handle_t *
make_dataset_handle(libzfs_handle_t * hdl,const char * path)475 make_dataset_handle(libzfs_handle_t *hdl, const char *path)
476 {
477 zfs_cmd_t zc = { 0 };
478
479 zfs_handle_t *zhp = calloc(sizeof (zfs_handle_t), 1);
480
481 if (zhp == NULL)
482 return (NULL);
483
484 zhp->zfs_hdl = hdl;
485 (void) strlcpy(zhp->zfs_name, path, sizeof (zhp->zfs_name));
486 if (zcmd_alloc_dst_nvlist(hdl, &zc, 0) != 0) {
487 free(zhp);
488 return (NULL);
489 }
490 if (get_stats_ioctl(zhp, &zc) == -1) {
491 zcmd_free_nvlists(&zc);
492 free(zhp);
493 return (NULL);
494 }
495 if (make_dataset_handle_common(zhp, &zc) == -1) {
496 free(zhp);
497 zhp = NULL;
498 }
499 zcmd_free_nvlists(&zc);
500 return (zhp);
501 }
502
503 zfs_handle_t *
make_dataset_handle_zc(libzfs_handle_t * hdl,zfs_cmd_t * zc)504 make_dataset_handle_zc(libzfs_handle_t *hdl, zfs_cmd_t *zc)
505 {
506 zfs_handle_t *zhp = calloc(sizeof (zfs_handle_t), 1);
507
508 if (zhp == NULL)
509 return (NULL);
510
511 zhp->zfs_hdl = hdl;
512 (void) strlcpy(zhp->zfs_name, zc->zc_name, sizeof (zhp->zfs_name));
513 if (make_dataset_handle_common(zhp, zc) == -1) {
514 free(zhp);
515 return (NULL);
516 }
517 return (zhp);
518 }
519
520 zfs_handle_t *
make_dataset_simple_handle_zc(zfs_handle_t * pzhp,zfs_cmd_t * zc)521 make_dataset_simple_handle_zc(zfs_handle_t *pzhp, zfs_cmd_t *zc)
522 {
523 zfs_handle_t *zhp = calloc(sizeof (zfs_handle_t), 1);
524
525 if (zhp == NULL)
526 return (NULL);
527
528 zhp->zfs_hdl = pzhp->zfs_hdl;
529 (void) strlcpy(zhp->zfs_name, zc->zc_name, sizeof (zhp->zfs_name));
530 zhp->zfs_head_type = pzhp->zfs_type;
531 zhp->zfs_type = ZFS_TYPE_SNAPSHOT;
532 zhp->zpool_hdl = zpool_handle(zhp);
533 return (zhp);
534 }
535
536 zfs_handle_t *
zfs_handle_dup(zfs_handle_t * zhp_orig)537 zfs_handle_dup(zfs_handle_t *zhp_orig)
538 {
539 zfs_handle_t *zhp = calloc(sizeof (zfs_handle_t), 1);
540
541 if (zhp == NULL)
542 return (NULL);
543
544 zhp->zfs_hdl = zhp_orig->zfs_hdl;
545 zhp->zpool_hdl = zhp_orig->zpool_hdl;
546 (void) strlcpy(zhp->zfs_name, zhp_orig->zfs_name,
547 sizeof (zhp->zfs_name));
548 zhp->zfs_type = zhp_orig->zfs_type;
549 zhp->zfs_head_type = zhp_orig->zfs_head_type;
550 zhp->zfs_dmustats = zhp_orig->zfs_dmustats;
551 if (zhp_orig->zfs_props != NULL) {
552 if (nvlist_dup(zhp_orig->zfs_props, &zhp->zfs_props, 0) != 0) {
553 (void) no_memory(zhp->zfs_hdl);
554 zfs_close(zhp);
555 return (NULL);
556 }
557 }
558 if (zhp_orig->zfs_user_props != NULL) {
559 if (nvlist_dup(zhp_orig->zfs_user_props,
560 &zhp->zfs_user_props, 0) != 0) {
561 (void) no_memory(zhp->zfs_hdl);
562 zfs_close(zhp);
563 return (NULL);
564 }
565 }
566 if (zhp_orig->zfs_recvd_props != NULL) {
567 if (nvlist_dup(zhp_orig->zfs_recvd_props,
568 &zhp->zfs_recvd_props, 0)) {
569 (void) no_memory(zhp->zfs_hdl);
570 zfs_close(zhp);
571 return (NULL);
572 }
573 }
574 zhp->zfs_mntcheck = zhp_orig->zfs_mntcheck;
575 if (zhp_orig->zfs_mntopts != NULL) {
576 zhp->zfs_mntopts = zfs_strdup(zhp_orig->zfs_hdl,
577 zhp_orig->zfs_mntopts);
578 }
579 zhp->zfs_props_table = zhp_orig->zfs_props_table;
580 return (zhp);
581 }
582
583 boolean_t
zfs_bookmark_exists(const char * path)584 zfs_bookmark_exists(const char *path)
585 {
586 nvlist_t *bmarks;
587 nvlist_t *props;
588 char fsname[ZFS_MAXNAMELEN];
589 char *bmark_name;
590 char *pound;
591 int err;
592 boolean_t rv;
593
594
595 (void) strlcpy(fsname, path, sizeof (fsname));
596 pound = strchr(fsname, '#');
597 if (pound == NULL)
598 return (B_FALSE);
599
600 *pound = '\0';
601 bmark_name = pound + 1;
602 props = fnvlist_alloc();
603 err = lzc_get_bookmarks(fsname, props, &bmarks);
604 nvlist_free(props);
605 if (err != 0) {
606 nvlist_free(bmarks);
607 return (B_FALSE);
608 }
609
610 rv = nvlist_exists(bmarks, bmark_name);
611 nvlist_free(bmarks);
612 return (rv);
613 }
614
615 zfs_handle_t *
make_bookmark_handle(zfs_handle_t * parent,const char * path,nvlist_t * bmark_props)616 make_bookmark_handle(zfs_handle_t *parent, const char *path,
617 nvlist_t *bmark_props)
618 {
619 zfs_handle_t *zhp = calloc(sizeof (zfs_handle_t), 1);
620
621 if (zhp == NULL)
622 return (NULL);
623
624 /* Fill in the name. */
625 zhp->zfs_hdl = parent->zfs_hdl;
626 (void) strlcpy(zhp->zfs_name, path, sizeof (zhp->zfs_name));
627
628 /* Set the property lists. */
629 if (nvlist_dup(bmark_props, &zhp->zfs_props, 0) != 0) {
630 free(zhp);
631 return (NULL);
632 }
633
634 /* Set the types. */
635 zhp->zfs_head_type = parent->zfs_head_type;
636 zhp->zfs_type = ZFS_TYPE_BOOKMARK;
637
638 if ((zhp->zpool_hdl = zpool_handle(zhp)) == NULL) {
639 nvlist_free(zhp->zfs_props);
640 free(zhp);
641 return (NULL);
642 }
643
644 return (zhp);
645 }
646
647 /*
648 * Opens the given snapshot, filesystem, or volume. The 'types'
649 * argument is a mask of acceptable types. The function will print an
650 * appropriate error message and return NULL if it can't be opened.
651 */
652 zfs_handle_t *
zfs_open(libzfs_handle_t * hdl,const char * path,int types)653 zfs_open(libzfs_handle_t *hdl, const char *path, int types)
654 {
655 zfs_handle_t *zhp;
656 char errbuf[1024];
657
658 (void) snprintf(errbuf, sizeof (errbuf),
659 dgettext(TEXT_DOMAIN, "cannot open '%s'"), path);
660
661 /*
662 * Validate the name before we even try to open it.
663 */
664 if (!zfs_validate_name(hdl, path, ZFS_TYPE_DATASET, B_FALSE)) {
665 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN,
666 "invalid dataset name"));
667 (void) zfs_error(hdl, EZFS_INVALIDNAME, errbuf);
668 return (NULL);
669 }
670
671 /*
672 * Try to get stats for the dataset, which will tell us if it exists.
673 */
674 errno = 0;
675 if ((zhp = make_dataset_handle(hdl, path)) == NULL) {
676 (void) zfs_standard_error(hdl, errno, errbuf);
677 return (NULL);
678 }
679
680 if (zhp == NULL) {
681 char *at = strchr(path, '@');
682
683 if (at != NULL)
684 *at = '\0';
685 errno = 0;
686 if ((zhp = make_dataset_handle(hdl, path)) == NULL) {
687 (void) zfs_standard_error(hdl, errno, errbuf);
688 return (NULL);
689 }
690 if (at != NULL)
691 *at = '@';
692 (void) strlcpy(zhp->zfs_name, path, sizeof (zhp->zfs_name));
693 zhp->zfs_type = ZFS_TYPE_SNAPSHOT;
694 }
695
696 if (!(types & zhp->zfs_type)) {
697 (void) zfs_error(hdl, EZFS_BADTYPE, errbuf);
698 zfs_close(zhp);
699 return (NULL);
700 }
701
702 return (zhp);
703 }
704
705 /*
706 * Release a ZFS handle. Nothing to do but free the associated memory.
707 */
708 void
zfs_close(zfs_handle_t * zhp)709 zfs_close(zfs_handle_t *zhp)
710 {
711 if (zhp->zfs_mntopts)
712 free(zhp->zfs_mntopts);
713 nvlist_free(zhp->zfs_props);
714 nvlist_free(zhp->zfs_user_props);
715 nvlist_free(zhp->zfs_recvd_props);
716 free(zhp);
717 }
718
719 typedef struct mnttab_node {
720 struct mnttab mtn_mt;
721 avl_node_t mtn_node;
722 } mnttab_node_t;
723
724 static int
libzfs_mnttab_cache_compare(const void * arg1,const void * arg2)725 libzfs_mnttab_cache_compare(const void *arg1, const void *arg2)
726 {
727 const mnttab_node_t *mtn1 = arg1;
728 const mnttab_node_t *mtn2 = arg2;
729 int rv;
730
731 rv = strcmp(mtn1->mtn_mt.mnt_special, mtn2->mtn_mt.mnt_special);
732
733 if (rv == 0)
734 return (0);
735 return (rv > 0 ? 1 : -1);
736 }
737
738 void
libzfs_mnttab_init(libzfs_handle_t * hdl)739 libzfs_mnttab_init(libzfs_handle_t *hdl)
740 {
741 assert(avl_numnodes(&hdl->libzfs_mnttab_cache) == 0);
742 avl_create(&hdl->libzfs_mnttab_cache, libzfs_mnttab_cache_compare,
743 sizeof (mnttab_node_t), offsetof(mnttab_node_t, mtn_node));
744 }
745
746 void
libzfs_mnttab_update(libzfs_handle_t * hdl)747 libzfs_mnttab_update(libzfs_handle_t *hdl)
748 {
749 struct mnttab entry;
750
751 rewind(hdl->libzfs_mnttab);
752 while (getmntent(hdl->libzfs_mnttab, &entry) == 0) {
753 mnttab_node_t *mtn;
754
755 if (strcmp(entry.mnt_fstype, MNTTYPE_ZFS) != 0)
756 continue;
757 mtn = zfs_alloc(hdl, sizeof (mnttab_node_t));
758 mtn->mtn_mt.mnt_special = zfs_strdup(hdl, entry.mnt_special);
759 mtn->mtn_mt.mnt_mountp = zfs_strdup(hdl, entry.mnt_mountp);
760 mtn->mtn_mt.mnt_fstype = zfs_strdup(hdl, entry.mnt_fstype);
761 mtn->mtn_mt.mnt_mntopts = zfs_strdup(hdl, entry.mnt_mntopts);
762 avl_add(&hdl->libzfs_mnttab_cache, mtn);
763 }
764 }
765
766 void
libzfs_mnttab_fini(libzfs_handle_t * hdl)767 libzfs_mnttab_fini(libzfs_handle_t *hdl)
768 {
769 void *cookie = NULL;
770 mnttab_node_t *mtn;
771
772 while (mtn = avl_destroy_nodes(&hdl->libzfs_mnttab_cache, &cookie)) {
773 free(mtn->mtn_mt.mnt_special);
774 free(mtn->mtn_mt.mnt_mountp);
775 free(mtn->mtn_mt.mnt_fstype);
776 free(mtn->mtn_mt.mnt_mntopts);
777 free(mtn);
778 }
779 avl_destroy(&hdl->libzfs_mnttab_cache);
780 }
781
782 void
libzfs_mnttab_cache(libzfs_handle_t * hdl,boolean_t enable)783 libzfs_mnttab_cache(libzfs_handle_t *hdl, boolean_t enable)
784 {
785 hdl->libzfs_mnttab_enable = enable;
786 }
787
788 int
libzfs_mnttab_find(libzfs_handle_t * hdl,const char * fsname,struct mnttab * entry)789 libzfs_mnttab_find(libzfs_handle_t *hdl, const char *fsname,
790 struct mnttab *entry)
791 {
792 mnttab_node_t find;
793 mnttab_node_t *mtn;
794
795 if (!hdl->libzfs_mnttab_enable) {
796 struct mnttab srch = { 0 };
797
798 if (avl_numnodes(&hdl->libzfs_mnttab_cache))
799 libzfs_mnttab_fini(hdl);
800 rewind(hdl->libzfs_mnttab);
801 srch.mnt_special = (char *)fsname;
802 srch.mnt_fstype = MNTTYPE_ZFS;
803 if (getmntany(hdl->libzfs_mnttab, entry, &srch) == 0)
804 return (0);
805 else
806 return (ENOENT);
807 }
808
809 if (avl_numnodes(&hdl->libzfs_mnttab_cache) == 0)
810 libzfs_mnttab_update(hdl);
811
812 find.mtn_mt.mnt_special = (char *)fsname;
813 mtn = avl_find(&hdl->libzfs_mnttab_cache, &find, NULL);
814 if (mtn) {
815 *entry = mtn->mtn_mt;
816 return (0);
817 }
818 return (ENOENT);
819 }
820
821 void
libzfs_mnttab_add(libzfs_handle_t * hdl,const char * special,const char * mountp,const char * mntopts)822 libzfs_mnttab_add(libzfs_handle_t *hdl, const char *special,
823 const char *mountp, const char *mntopts)
824 {
825 mnttab_node_t *mtn;
826
827 if (avl_numnodes(&hdl->libzfs_mnttab_cache) == 0)
828 return;
829 mtn = zfs_alloc(hdl, sizeof (mnttab_node_t));
830 mtn->mtn_mt.mnt_special = zfs_strdup(hdl, special);
831 mtn->mtn_mt.mnt_mountp = zfs_strdup(hdl, mountp);
832 mtn->mtn_mt.mnt_fstype = zfs_strdup(hdl, MNTTYPE_ZFS);
833 mtn->mtn_mt.mnt_mntopts = zfs_strdup(hdl, mntopts);
834 avl_add(&hdl->libzfs_mnttab_cache, mtn);
835 }
836
837 void
libzfs_mnttab_remove(libzfs_handle_t * hdl,const char * fsname)838 libzfs_mnttab_remove(libzfs_handle_t *hdl, const char *fsname)
839 {
840 mnttab_node_t find;
841 mnttab_node_t *ret;
842
843 find.mtn_mt.mnt_special = (char *)fsname;
844 if (ret = avl_find(&hdl->libzfs_mnttab_cache, (void *)&find, NULL)) {
845 avl_remove(&hdl->libzfs_mnttab_cache, ret);
846 free(ret->mtn_mt.mnt_special);
847 free(ret->mtn_mt.mnt_mountp);
848 free(ret->mtn_mt.mnt_fstype);
849 free(ret->mtn_mt.mnt_mntopts);
850 free(ret);
851 }
852 }
853
854 int
zfs_spa_version(zfs_handle_t * zhp,int * spa_version)855 zfs_spa_version(zfs_handle_t *zhp, int *spa_version)
856 {
857 zpool_handle_t *zpool_handle = zhp->zpool_hdl;
858
859 if (zpool_handle == NULL)
860 return (-1);
861
862 *spa_version = zpool_get_prop_int(zpool_handle,
863 ZPOOL_PROP_VERSION, NULL);
864 return (0);
865 }
866
867 /*
868 * The choice of reservation property depends on the SPA version.
869 */
870 static int
zfs_which_resv_prop(zfs_handle_t * zhp,zfs_prop_t * resv_prop)871 zfs_which_resv_prop(zfs_handle_t *zhp, zfs_prop_t *resv_prop)
872 {
873 int spa_version;
874
875 if (zfs_spa_version(zhp, &spa_version) < 0)
876 return (-1);
877
878 if (spa_version >= SPA_VERSION_REFRESERVATION)
879 *resv_prop = ZFS_PROP_REFRESERVATION;
880 else
881 *resv_prop = ZFS_PROP_RESERVATION;
882
883 return (0);
884 }
885
886 /*
887 * Given an nvlist of properties to set, validates that they are correct, and
888 * parses any numeric properties (index, boolean, etc) if they are specified as
889 * strings.
890 */
891 nvlist_t *
zfs_valid_proplist(libzfs_handle_t * hdl,zfs_type_t type,nvlist_t * nvl,uint64_t zoned,zfs_handle_t * zhp,const char * errbuf)892 zfs_valid_proplist(libzfs_handle_t *hdl, zfs_type_t type, nvlist_t *nvl,
893 uint64_t zoned, zfs_handle_t *zhp, const char *errbuf)
894 {
895 nvpair_t *elem;
896 uint64_t intval;
897 char *strval;
898 zfs_prop_t prop;
899 nvlist_t *ret;
900 int chosen_normal = -1;
901 int chosen_utf = -1;
902
903 if (nvlist_alloc(&ret, NV_UNIQUE_NAME, 0) != 0) {
904 (void) no_memory(hdl);
905 return (NULL);
906 }
907
908 /*
909 * Make sure this property is valid and applies to this type.
910 */
911
912 elem = NULL;
913 while ((elem = nvlist_next_nvpair(nvl, elem)) != NULL) {
914 const char *propname = nvpair_name(elem);
915
916 prop = zfs_name_to_prop(propname);
917 if (prop == ZPROP_INVAL && zfs_prop_user(propname)) {
918 /*
919 * This is a user property: make sure it's a
920 * string, and that it's less than ZAP_MAXNAMELEN.
921 */
922 if (nvpair_type(elem) != DATA_TYPE_STRING) {
923 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN,
924 "'%s' must be a string"), propname);
925 (void) zfs_error(hdl, EZFS_BADPROP, errbuf);
926 goto error;
927 }
928
929 if (strlen(nvpair_name(elem)) >= ZAP_MAXNAMELEN) {
930 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN,
931 "property name '%s' is too long"),
932 propname);
933 (void) zfs_error(hdl, EZFS_BADPROP, errbuf);
934 goto error;
935 }
936
937 (void) nvpair_value_string(elem, &strval);
938 if (nvlist_add_string(ret, propname, strval) != 0) {
939 (void) no_memory(hdl);
940 goto error;
941 }
942 continue;
943 }
944
945 /*
946 * Currently, only user properties can be modified on
947 * snapshots.
948 */
949 if (type == ZFS_TYPE_SNAPSHOT) {
950 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN,
951 "this property can not be modified for snapshots"));
952 (void) zfs_error(hdl, EZFS_PROPTYPE, errbuf);
953 goto error;
954 }
955
956 if (prop == ZPROP_INVAL && zfs_prop_userquota(propname)) {
957 zfs_userquota_prop_t uqtype;
958 char newpropname[128];
959 char domain[128];
960 uint64_t rid;
961 uint64_t valary[3];
962
963 if (userquota_propname_decode(propname, zoned,
964 &uqtype, domain, sizeof (domain), &rid) != 0) {
965 zfs_error_aux(hdl,
966 dgettext(TEXT_DOMAIN,
967 "'%s' has an invalid user/group name"),
968 propname);
969 (void) zfs_error(hdl, EZFS_BADPROP, errbuf);
970 goto error;
971 }
972
973 if (uqtype != ZFS_PROP_USERQUOTA &&
974 uqtype != ZFS_PROP_GROUPQUOTA) {
975 zfs_error_aux(hdl,
976 dgettext(TEXT_DOMAIN, "'%s' is readonly"),
977 propname);
978 (void) zfs_error(hdl, EZFS_PROPREADONLY,
979 errbuf);
980 goto error;
981 }
982
983 if (nvpair_type(elem) == DATA_TYPE_STRING) {
984 (void) nvpair_value_string(elem, &strval);
985 if (strcmp(strval, "none") == 0) {
986 intval = 0;
987 } else if (zfs_nicestrtonum(hdl,
988 strval, &intval) != 0) {
989 (void) zfs_error(hdl,
990 EZFS_BADPROP, errbuf);
991 goto error;
992 }
993 } else if (nvpair_type(elem) ==
994 DATA_TYPE_UINT64) {
995 (void) nvpair_value_uint64(elem, &intval);
996 if (intval == 0) {
997 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN,
998 "use 'none' to disable "
999 "userquota/groupquota"));
1000 goto error;
1001 }
1002 } else {
1003 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN,
1004 "'%s' must be a number"), propname);
1005 (void) zfs_error(hdl, EZFS_BADPROP, errbuf);
1006 goto error;
1007 }
1008
1009 /*
1010 * Encode the prop name as
1011 * userquota@<hex-rid>-domain, to make it easy
1012 * for the kernel to decode.
1013 */
1014 (void) snprintf(newpropname, sizeof (newpropname),
1015 "%s%llx-%s", zfs_userquota_prop_prefixes[uqtype],
1016 (longlong_t)rid, domain);
1017 valary[0] = uqtype;
1018 valary[1] = rid;
1019 valary[2] = intval;
1020 if (nvlist_add_uint64_array(ret, newpropname,
1021 valary, 3) != 0) {
1022 (void) no_memory(hdl);
1023 goto error;
1024 }
1025 continue;
1026 } else if (prop == ZPROP_INVAL && zfs_prop_written(propname)) {
1027 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN,
1028 "'%s' is readonly"),
1029 propname);
1030 (void) zfs_error(hdl, EZFS_PROPREADONLY, errbuf);
1031 goto error;
1032 }
1033
1034 if (prop == ZPROP_INVAL) {
1035 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN,
1036 "invalid property '%s'"), propname);
1037 (void) zfs_error(hdl, EZFS_BADPROP, errbuf);
1038 goto error;
1039 }
1040
1041 if (!zfs_prop_valid_for_type(prop, type)) {
1042 zfs_error_aux(hdl,
1043 dgettext(TEXT_DOMAIN, "'%s' does not "
1044 "apply to datasets of this type"), propname);
1045 (void) zfs_error(hdl, EZFS_PROPTYPE, errbuf);
1046 goto error;
1047 }
1048
1049 if (zfs_prop_readonly(prop) &&
1050 (!zfs_prop_setonce(prop) || zhp != NULL)) {
1051 zfs_error_aux(hdl,
1052 dgettext(TEXT_DOMAIN, "'%s' is readonly"),
1053 propname);
1054 (void) zfs_error(hdl, EZFS_PROPREADONLY, errbuf);
1055 goto error;
1056 }
1057
1058 if (zprop_parse_value(hdl, elem, prop, type, ret,
1059 &strval, &intval, errbuf) != 0)
1060 goto error;
1061
1062 /*
1063 * Perform some additional checks for specific properties.
1064 */
1065 switch (prop) {
1066 case ZFS_PROP_VERSION:
1067 {
1068 int version;
1069
1070 if (zhp == NULL)
1071 break;
1072 version = zfs_prop_get_int(zhp, ZFS_PROP_VERSION);
1073 if (intval < version) {
1074 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN,
1075 "Can not downgrade; already at version %u"),
1076 version);
1077 (void) zfs_error(hdl, EZFS_BADPROP, errbuf);
1078 goto error;
1079 }
1080 break;
1081 }
1082
1083 case ZFS_PROP_VOLBLOCKSIZE:
1084 case ZFS_PROP_RECORDSIZE:
1085 {
1086 int maxbs = SPA_MAXBLOCKSIZE;
1087 if (zhp != NULL) {
1088 maxbs = zpool_get_prop_int(zhp->zpool_hdl,
1089 ZPOOL_PROP_MAXBLOCKSIZE, NULL);
1090 }
1091 /*
1092 * Volumes are limited to a volblocksize of 128KB,
1093 * because they typically service workloads with
1094 * small random writes, which incur a large performance
1095 * penalty with large blocks.
1096 */
1097 if (prop == ZFS_PROP_VOLBLOCKSIZE)
1098 maxbs = SPA_OLD_MAXBLOCKSIZE;
1099 /*
1100 * The value must be a power of two between
1101 * SPA_MINBLOCKSIZE and maxbs.
1102 */
1103 if (intval < SPA_MINBLOCKSIZE ||
1104 intval > maxbs || !ISP2(intval)) {
1105 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN,
1106 "'%s' must be power of 2 from 512B "
1107 "to %uKB"), propname, maxbs >> 10);
1108 (void) zfs_error(hdl, EZFS_BADPROP, errbuf);
1109 goto error;
1110 }
1111 break;
1112 }
1113 case ZFS_PROP_MLSLABEL:
1114 {
1115 #ifdef sun
1116 /*
1117 * Verify the mlslabel string and convert to
1118 * internal hex label string.
1119 */
1120
1121 m_label_t *new_sl;
1122 char *hex = NULL; /* internal label string */
1123
1124 /* Default value is already OK. */
1125 if (strcasecmp(strval, ZFS_MLSLABEL_DEFAULT) == 0)
1126 break;
1127
1128 /* Verify the label can be converted to binary form */
1129 if (((new_sl = m_label_alloc(MAC_LABEL)) == NULL) ||
1130 (str_to_label(strval, &new_sl, MAC_LABEL,
1131 L_NO_CORRECTION, NULL) == -1)) {
1132 goto badlabel;
1133 }
1134
1135 /* Now translate to hex internal label string */
1136 if (label_to_str(new_sl, &hex, M_INTERNAL,
1137 DEF_NAMES) != 0) {
1138 if (hex)
1139 free(hex);
1140 goto badlabel;
1141 }
1142 m_label_free(new_sl);
1143
1144 /* If string is already in internal form, we're done. */
1145 if (strcmp(strval, hex) == 0) {
1146 free(hex);
1147 break;
1148 }
1149
1150 /* Replace the label string with the internal form. */
1151 (void) nvlist_remove(ret, zfs_prop_to_name(prop),
1152 DATA_TYPE_STRING);
1153 verify(nvlist_add_string(ret, zfs_prop_to_name(prop),
1154 hex) == 0);
1155 free(hex);
1156
1157 break;
1158
1159 badlabel:
1160 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN,
1161 "invalid mlslabel '%s'"), strval);
1162 (void) zfs_error(hdl, EZFS_BADPROP, errbuf);
1163 m_label_free(new_sl); /* OK if null */
1164 #else /* !sun */
1165 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN,
1166 "mlslabel is not supported on FreeBSD"));
1167 (void) zfs_error(hdl, EZFS_BADPROP, errbuf);
1168 #endif /* !sun */
1169 goto error;
1170
1171 }
1172
1173 case ZFS_PROP_MOUNTPOINT:
1174 {
1175 namecheck_err_t why;
1176
1177 if (strcmp(strval, ZFS_MOUNTPOINT_NONE) == 0 ||
1178 strcmp(strval, ZFS_MOUNTPOINT_LEGACY) == 0)
1179 break;
1180
1181 if (mountpoint_namecheck(strval, &why)) {
1182 switch (why) {
1183 case NAME_ERR_LEADING_SLASH:
1184 zfs_error_aux(hdl,
1185 dgettext(TEXT_DOMAIN,
1186 "'%s' must be an absolute path, "
1187 "'none', or 'legacy'"), propname);
1188 break;
1189 case NAME_ERR_TOOLONG:
1190 zfs_error_aux(hdl,
1191 dgettext(TEXT_DOMAIN,
1192 "component of '%s' is too long"),
1193 propname);
1194 break;
1195 }
1196 (void) zfs_error(hdl, EZFS_BADPROP, errbuf);
1197 goto error;
1198 }
1199 }
1200
1201 /*FALLTHRU*/
1202
1203 case ZFS_PROP_SHARESMB:
1204 case ZFS_PROP_SHARENFS:
1205 /*
1206 * For the mountpoint and sharenfs or sharesmb
1207 * properties, check if it can be set in a
1208 * global/non-global zone based on
1209 * the zoned property value:
1210 *
1211 * global zone non-global zone
1212 * --------------------------------------------------
1213 * zoned=on mountpoint (no) mountpoint (yes)
1214 * sharenfs (no) sharenfs (no)
1215 * sharesmb (no) sharesmb (no)
1216 *
1217 * zoned=off mountpoint (yes) N/A
1218 * sharenfs (yes)
1219 * sharesmb (yes)
1220 */
1221 if (zoned) {
1222 if (getzoneid() == GLOBAL_ZONEID) {
1223 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN,
1224 "'%s' cannot be set on "
1225 "dataset in a non-global zone"),
1226 propname);
1227 (void) zfs_error(hdl, EZFS_ZONED,
1228 errbuf);
1229 goto error;
1230 } else if (prop == ZFS_PROP_SHARENFS ||
1231 prop == ZFS_PROP_SHARESMB) {
1232 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN,
1233 "'%s' cannot be set in "
1234 "a non-global zone"), propname);
1235 (void) zfs_error(hdl, EZFS_ZONED,
1236 errbuf);
1237 goto error;
1238 }
1239 } else if (getzoneid() != GLOBAL_ZONEID) {
1240 /*
1241 * If zoned property is 'off', this must be in
1242 * a global zone. If not, something is wrong.
1243 */
1244 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN,
1245 "'%s' cannot be set while dataset "
1246 "'zoned' property is set"), propname);
1247 (void) zfs_error(hdl, EZFS_ZONED, errbuf);
1248 goto error;
1249 }
1250
1251 /*
1252 * At this point, it is legitimate to set the
1253 * property. Now we want to make sure that the
1254 * property value is valid if it is sharenfs.
1255 */
1256 if ((prop == ZFS_PROP_SHARENFS ||
1257 prop == ZFS_PROP_SHARESMB) &&
1258 strcmp(strval, "on") != 0 &&
1259 strcmp(strval, "off") != 0) {
1260 zfs_share_proto_t proto;
1261
1262 if (prop == ZFS_PROP_SHARESMB)
1263 proto = PROTO_SMB;
1264 else
1265 proto = PROTO_NFS;
1266
1267 /*
1268 * Must be an valid sharing protocol
1269 * option string so init the libshare
1270 * in order to enable the parser and
1271 * then parse the options. We use the
1272 * control API since we don't care about
1273 * the current configuration and don't
1274 * want the overhead of loading it
1275 * until we actually do something.
1276 */
1277
1278 if (zfs_init_libshare(hdl,
1279 SA_INIT_CONTROL_API) != SA_OK) {
1280 /*
1281 * An error occurred so we can't do
1282 * anything
1283 */
1284 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN,
1285 "'%s' cannot be set: problem "
1286 "in share initialization"),
1287 propname);
1288 (void) zfs_error(hdl, EZFS_BADPROP,
1289 errbuf);
1290 goto error;
1291 }
1292
1293 if (zfs_parse_options(strval, proto) != SA_OK) {
1294 /*
1295 * There was an error in parsing so
1296 * deal with it by issuing an error
1297 * message and leaving after
1298 * uninitializing the the libshare
1299 * interface.
1300 */
1301 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN,
1302 "'%s' cannot be set to invalid "
1303 "options"), propname);
1304 (void) zfs_error(hdl, EZFS_BADPROP,
1305 errbuf);
1306 zfs_uninit_libshare(hdl);
1307 goto error;
1308 }
1309 zfs_uninit_libshare(hdl);
1310 }
1311
1312 break;
1313 case ZFS_PROP_UTF8ONLY:
1314 chosen_utf = (int)intval;
1315 break;
1316 case ZFS_PROP_NORMALIZE:
1317 chosen_normal = (int)intval;
1318 break;
1319 }
1320
1321 /*
1322 * For changes to existing volumes, we have some additional
1323 * checks to enforce.
1324 */
1325 if (type == ZFS_TYPE_VOLUME && zhp != NULL) {
1326 uint64_t volsize = zfs_prop_get_int(zhp,
1327 ZFS_PROP_VOLSIZE);
1328 uint64_t blocksize = zfs_prop_get_int(zhp,
1329 ZFS_PROP_VOLBLOCKSIZE);
1330 char buf[64];
1331
1332 switch (prop) {
1333 case ZFS_PROP_RESERVATION:
1334 case ZFS_PROP_REFRESERVATION:
1335 if (intval > volsize) {
1336 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN,
1337 "'%s' is greater than current "
1338 "volume size"), propname);
1339 (void) zfs_error(hdl, EZFS_BADPROP,
1340 errbuf);
1341 goto error;
1342 }
1343 break;
1344
1345 case ZFS_PROP_VOLSIZE:
1346 if (intval % blocksize != 0) {
1347 zfs_nicenum(blocksize, buf,
1348 sizeof (buf));
1349 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN,
1350 "'%s' must be a multiple of "
1351 "volume block size (%s)"),
1352 propname, buf);
1353 (void) zfs_error(hdl, EZFS_BADPROP,
1354 errbuf);
1355 goto error;
1356 }
1357
1358 if (intval == 0) {
1359 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN,
1360 "'%s' cannot be zero"),
1361 propname);
1362 (void) zfs_error(hdl, EZFS_BADPROP,
1363 errbuf);
1364 goto error;
1365 }
1366 break;
1367 }
1368 }
1369 }
1370
1371 /*
1372 * If normalization was chosen, but no UTF8 choice was made,
1373 * enforce rejection of non-UTF8 names.
1374 *
1375 * If normalization was chosen, but rejecting non-UTF8 names
1376 * was explicitly not chosen, it is an error.
1377 */
1378 if (chosen_normal > 0 && chosen_utf < 0) {
1379 if (nvlist_add_uint64(ret,
1380 zfs_prop_to_name(ZFS_PROP_UTF8ONLY), 1) != 0) {
1381 (void) no_memory(hdl);
1382 goto error;
1383 }
1384 } else if (chosen_normal > 0 && chosen_utf == 0) {
1385 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN,
1386 "'%s' must be set 'on' if normalization chosen"),
1387 zfs_prop_to_name(ZFS_PROP_UTF8ONLY));
1388 (void) zfs_error(hdl, EZFS_BADPROP, errbuf);
1389 goto error;
1390 }
1391 return (ret);
1392
1393 error:
1394 nvlist_free(ret);
1395 return (NULL);
1396 }
1397
1398 int
zfs_add_synthetic_resv(zfs_handle_t * zhp,nvlist_t * nvl)1399 zfs_add_synthetic_resv(zfs_handle_t *zhp, nvlist_t *nvl)
1400 {
1401 uint64_t old_volsize;
1402 uint64_t new_volsize;
1403 uint64_t old_reservation;
1404 uint64_t new_reservation;
1405 zfs_prop_t resv_prop;
1406
1407 /*
1408 * If this is an existing volume, and someone is setting the volsize,
1409 * make sure that it matches the reservation, or add it if necessary.
1410 */
1411 old_volsize = zfs_prop_get_int(zhp, ZFS_PROP_VOLSIZE);
1412 if (zfs_which_resv_prop(zhp, &resv_prop) < 0)
1413 return (-1);
1414 old_reservation = zfs_prop_get_int(zhp, resv_prop);
1415 if ((zvol_volsize_to_reservation(old_volsize, zhp->zfs_props) !=
1416 old_reservation) || nvlist_lookup_uint64(nvl,
1417 zfs_prop_to_name(resv_prop), &new_reservation) != ENOENT) {
1418 return (0);
1419 }
1420 if (nvlist_lookup_uint64(nvl, zfs_prop_to_name(ZFS_PROP_VOLSIZE),
1421 &new_volsize) != 0)
1422 return (-1);
1423 new_reservation = zvol_volsize_to_reservation(new_volsize,
1424 zhp->zfs_props);
1425 if (nvlist_add_uint64(nvl, zfs_prop_to_name(resv_prop),
1426 new_reservation) != 0) {
1427 (void) no_memory(zhp->zfs_hdl);
1428 return (-1);
1429 }
1430 return (1);
1431 }
1432
1433 void
zfs_setprop_error(libzfs_handle_t * hdl,zfs_prop_t prop,int err,char * errbuf)1434 zfs_setprop_error(libzfs_handle_t *hdl, zfs_prop_t prop, int err,
1435 char *errbuf)
1436 {
1437 switch (err) {
1438
1439 case ENOSPC:
1440 /*
1441 * For quotas and reservations, ENOSPC indicates
1442 * something different; setting a quota or reservation
1443 * doesn't use any disk space.
1444 */
1445 switch (prop) {
1446 case ZFS_PROP_QUOTA:
1447 case ZFS_PROP_REFQUOTA:
1448 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN,
1449 "size is less than current used or "
1450 "reserved space"));
1451 (void) zfs_error(hdl, EZFS_PROPSPACE, errbuf);
1452 break;
1453
1454 case ZFS_PROP_RESERVATION:
1455 case ZFS_PROP_REFRESERVATION:
1456 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN,
1457 "size is greater than available space"));
1458 (void) zfs_error(hdl, EZFS_PROPSPACE, errbuf);
1459 break;
1460
1461 default:
1462 (void) zfs_standard_error(hdl, err, errbuf);
1463 break;
1464 }
1465 break;
1466
1467 case EBUSY:
1468 (void) zfs_standard_error(hdl, EBUSY, errbuf);
1469 break;
1470
1471 case EROFS:
1472 (void) zfs_error(hdl, EZFS_DSREADONLY, errbuf);
1473 break;
1474
1475 case ENOTSUP:
1476 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN,
1477 "pool and or dataset must be upgraded to set this "
1478 "property or value"));
1479 (void) zfs_error(hdl, EZFS_BADVERSION, errbuf);
1480 break;
1481
1482 case ERANGE:
1483 case EDOM:
1484 if (prop == ZFS_PROP_COMPRESSION ||
1485 prop == ZFS_PROP_RECORDSIZE) {
1486 (void) zfs_error_aux(hdl, dgettext(TEXT_DOMAIN,
1487 "property setting is not allowed on "
1488 "bootable datasets"));
1489 (void) zfs_error(hdl, EZFS_NOTSUP, errbuf);
1490 } else {
1491 (void) zfs_standard_error(hdl, err, errbuf);
1492 }
1493 break;
1494
1495 case EINVAL:
1496 if (prop == ZPROP_INVAL) {
1497 (void) zfs_error(hdl, EZFS_BADPROP, errbuf);
1498 } else {
1499 (void) zfs_standard_error(hdl, err, errbuf);
1500 }
1501 break;
1502
1503 case EOVERFLOW:
1504 /*
1505 * This platform can't address a volume this big.
1506 */
1507 #ifdef _ILP32
1508 if (prop == ZFS_PROP_VOLSIZE) {
1509 (void) zfs_error(hdl, EZFS_VOLTOOBIG, errbuf);
1510 break;
1511 }
1512 #endif
1513 /* FALLTHROUGH */
1514 default:
1515 (void) zfs_standard_error(hdl, err, errbuf);
1516 }
1517 }
1518
1519 /*
1520 * Given a property name and value, set the property for the given dataset.
1521 */
1522 int
zfs_prop_set(zfs_handle_t * zhp,const char * propname,const char * propval)1523 zfs_prop_set(zfs_handle_t *zhp, const char *propname, const char *propval)
1524 {
1525 zfs_cmd_t zc = { 0 };
1526 int ret = -1;
1527 prop_changelist_t *cl = NULL;
1528 char errbuf[1024];
1529 libzfs_handle_t *hdl = zhp->zfs_hdl;
1530 nvlist_t *nvl = NULL, *realprops;
1531 zfs_prop_t prop;
1532 boolean_t do_prefix = B_TRUE;
1533 int added_resv;
1534
1535 (void) snprintf(errbuf, sizeof (errbuf),
1536 dgettext(TEXT_DOMAIN, "cannot set property for '%s'"),
1537 zhp->zfs_name);
1538
1539 if (nvlist_alloc(&nvl, NV_UNIQUE_NAME, 0) != 0 ||
1540 nvlist_add_string(nvl, propname, propval) != 0) {
1541 (void) no_memory(hdl);
1542 goto error;
1543 }
1544
1545 if ((realprops = zfs_valid_proplist(hdl, zhp->zfs_type, nvl,
1546 zfs_prop_get_int(zhp, ZFS_PROP_ZONED), zhp, errbuf)) == NULL)
1547 goto error;
1548
1549 nvlist_free(nvl);
1550 nvl = realprops;
1551
1552 prop = zfs_name_to_prop(propname);
1553
1554 /* We don't support those properties on FreeBSD. */
1555 switch (prop) {
1556 case ZFS_PROP_DEVICES:
1557 case ZFS_PROP_ISCSIOPTIONS:
1558 case ZFS_PROP_XATTR:
1559 case ZFS_PROP_VSCAN:
1560 case ZFS_PROP_NBMAND:
1561 case ZFS_PROP_MLSLABEL:
1562 (void) snprintf(errbuf, sizeof (errbuf),
1563 "property '%s' not supported on FreeBSD", propname);
1564 ret = zfs_error(hdl, EZFS_PERM, errbuf);
1565 goto error;
1566 }
1567
1568 if (prop == ZFS_PROP_VOLSIZE) {
1569 if ((added_resv = zfs_add_synthetic_resv(zhp, nvl)) == -1)
1570 goto error;
1571 }
1572
1573 if ((cl = changelist_gather(zhp, prop, 0, 0)) == NULL)
1574 goto error;
1575
1576 if (prop == ZFS_PROP_MOUNTPOINT && changelist_haszonedchild(cl)) {
1577 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN,
1578 "child dataset with inherited mountpoint is used "
1579 "in a non-global zone"));
1580 ret = zfs_error(hdl, EZFS_ZONED, errbuf);
1581 goto error;
1582 }
1583
1584 /*
1585 * We don't want to unmount & remount the dataset when changing
1586 * its canmount property to 'on' or 'noauto'. We only use
1587 * the changelist logic to unmount when setting canmount=off.
1588 */
1589 if (prop == ZFS_PROP_CANMOUNT) {
1590 uint64_t idx;
1591 int err = zprop_string_to_index(prop, propval, &idx,
1592 ZFS_TYPE_DATASET);
1593 if (err == 0 && idx != ZFS_CANMOUNT_OFF)
1594 do_prefix = B_FALSE;
1595 }
1596
1597 if (do_prefix && (ret = changelist_prefix(cl)) != 0)
1598 goto error;
1599
1600 /*
1601 * Execute the corresponding ioctl() to set this property.
1602 */
1603 (void) strlcpy(zc.zc_name, zhp->zfs_name, sizeof (zc.zc_name));
1604
1605 if (zcmd_write_src_nvlist(hdl, &zc, nvl) != 0)
1606 goto error;
1607
1608 ret = zfs_ioctl(hdl, ZFS_IOC_SET_PROP, &zc);
1609
1610 if (ret != 0) {
1611 zfs_setprop_error(hdl, prop, errno, errbuf);
1612 if (added_resv && errno == ENOSPC) {
1613 /* clean up the volsize property we tried to set */
1614 uint64_t old_volsize = zfs_prop_get_int(zhp,
1615 ZFS_PROP_VOLSIZE);
1616 nvlist_free(nvl);
1617 zcmd_free_nvlists(&zc);
1618 if (nvlist_alloc(&nvl, NV_UNIQUE_NAME, 0) != 0)
1619 goto error;
1620 if (nvlist_add_uint64(nvl,
1621 zfs_prop_to_name(ZFS_PROP_VOLSIZE),
1622 old_volsize) != 0)
1623 goto error;
1624 if (zcmd_write_src_nvlist(hdl, &zc, nvl) != 0)
1625 goto error;
1626 (void) zfs_ioctl(hdl, ZFS_IOC_SET_PROP, &zc);
1627 }
1628 } else {
1629 if (do_prefix)
1630 ret = changelist_postfix(cl);
1631
1632 /*
1633 * Refresh the statistics so the new property value
1634 * is reflected.
1635 */
1636 if (ret == 0)
1637 (void) get_stats(zhp);
1638 }
1639
1640 error:
1641 nvlist_free(nvl);
1642 zcmd_free_nvlists(&zc);
1643 if (cl)
1644 changelist_free(cl);
1645 return (ret);
1646 }
1647
1648 /*
1649 * Given a property, inherit the value from the parent dataset, or if received
1650 * is TRUE, revert to the received value, if any.
1651 */
1652 int
zfs_prop_inherit(zfs_handle_t * zhp,const char * propname,boolean_t received)1653 zfs_prop_inherit(zfs_handle_t *zhp, const char *propname, boolean_t received)
1654 {
1655 zfs_cmd_t zc = { 0 };
1656 int ret;
1657 prop_changelist_t *cl;
1658 libzfs_handle_t *hdl = zhp->zfs_hdl;
1659 char errbuf[1024];
1660 zfs_prop_t prop;
1661
1662 (void) snprintf(errbuf, sizeof (errbuf), dgettext(TEXT_DOMAIN,
1663 "cannot inherit %s for '%s'"), propname, zhp->zfs_name);
1664
1665 zc.zc_cookie = received;
1666 if ((prop = zfs_name_to_prop(propname)) == ZPROP_INVAL) {
1667 /*
1668 * For user properties, the amount of work we have to do is very
1669 * small, so just do it here.
1670 */
1671 if (!zfs_prop_user(propname)) {
1672 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN,
1673 "invalid property"));
1674 return (zfs_error(hdl, EZFS_BADPROP, errbuf));
1675 }
1676
1677 (void) strlcpy(zc.zc_name, zhp->zfs_name, sizeof (zc.zc_name));
1678 (void) strlcpy(zc.zc_value, propname, sizeof (zc.zc_value));
1679
1680 if (zfs_ioctl(zhp->zfs_hdl, ZFS_IOC_INHERIT_PROP, &zc) != 0)
1681 return (zfs_standard_error(hdl, errno, errbuf));
1682
1683 return (0);
1684 }
1685
1686 /*
1687 * Verify that this property is inheritable.
1688 */
1689 if (zfs_prop_readonly(prop))
1690 return (zfs_error(hdl, EZFS_PROPREADONLY, errbuf));
1691
1692 if (!zfs_prop_inheritable(prop) && !received)
1693 return (zfs_error(hdl, EZFS_PROPNONINHERIT, errbuf));
1694
1695 /*
1696 * Check to see if the value applies to this type
1697 */
1698 if (!zfs_prop_valid_for_type(prop, zhp->zfs_type))
1699 return (zfs_error(hdl, EZFS_PROPTYPE, errbuf));
1700
1701 /*
1702 * Normalize the name, to get rid of shorthand abbreviations.
1703 */
1704 propname = zfs_prop_to_name(prop);
1705 (void) strlcpy(zc.zc_name, zhp->zfs_name, sizeof (zc.zc_name));
1706 (void) strlcpy(zc.zc_value, propname, sizeof (zc.zc_value));
1707
1708 if (prop == ZFS_PROP_MOUNTPOINT && getzoneid() == GLOBAL_ZONEID &&
1709 zfs_prop_get_int(zhp, ZFS_PROP_ZONED)) {
1710 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN,
1711 "dataset is used in a non-global zone"));
1712 return (zfs_error(hdl, EZFS_ZONED, errbuf));
1713 }
1714
1715 /*
1716 * Determine datasets which will be affected by this change, if any.
1717 */
1718 if ((cl = changelist_gather(zhp, prop, 0, 0)) == NULL)
1719 return (-1);
1720
1721 if (prop == ZFS_PROP_MOUNTPOINT && changelist_haszonedchild(cl)) {
1722 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN,
1723 "child dataset with inherited mountpoint is used "
1724 "in a non-global zone"));
1725 ret = zfs_error(hdl, EZFS_ZONED, errbuf);
1726 goto error;
1727 }
1728
1729 if ((ret = changelist_prefix(cl)) != 0)
1730 goto error;
1731
1732 if ((ret = zfs_ioctl(zhp->zfs_hdl, ZFS_IOC_INHERIT_PROP, &zc)) != 0) {
1733 return (zfs_standard_error(hdl, errno, errbuf));
1734 } else {
1735
1736 if ((ret = changelist_postfix(cl)) != 0)
1737 goto error;
1738
1739 /*
1740 * Refresh the statistics so the new property is reflected.
1741 */
1742 (void) get_stats(zhp);
1743 }
1744
1745 error:
1746 changelist_free(cl);
1747 return (ret);
1748 }
1749
1750 /*
1751 * True DSL properties are stored in an nvlist. The following two functions
1752 * extract them appropriately.
1753 */
1754 static uint64_t
getprop_uint64(zfs_handle_t * zhp,zfs_prop_t prop,char ** source)1755 getprop_uint64(zfs_handle_t *zhp, zfs_prop_t prop, char **source)
1756 {
1757 nvlist_t *nv;
1758 uint64_t value;
1759
1760 *source = NULL;
1761 if (nvlist_lookup_nvlist(zhp->zfs_props,
1762 zfs_prop_to_name(prop), &nv) == 0) {
1763 verify(nvlist_lookup_uint64(nv, ZPROP_VALUE, &value) == 0);
1764 (void) nvlist_lookup_string(nv, ZPROP_SOURCE, source);
1765 } else {
1766 verify(!zhp->zfs_props_table ||
1767 zhp->zfs_props_table[prop] == B_TRUE);
1768 value = zfs_prop_default_numeric(prop);
1769 *source = "";
1770 }
1771
1772 return (value);
1773 }
1774
1775 static char *
getprop_string(zfs_handle_t * zhp,zfs_prop_t prop,char ** source)1776 getprop_string(zfs_handle_t *zhp, zfs_prop_t prop, char **source)
1777 {
1778 nvlist_t *nv;
1779 char *value;
1780
1781 *source = NULL;
1782 if (nvlist_lookup_nvlist(zhp->zfs_props,
1783 zfs_prop_to_name(prop), &nv) == 0) {
1784 verify(nvlist_lookup_string(nv, ZPROP_VALUE, &value) == 0);
1785 (void) nvlist_lookup_string(nv, ZPROP_SOURCE, source);
1786 } else {
1787 verify(!zhp->zfs_props_table ||
1788 zhp->zfs_props_table[prop] == B_TRUE);
1789 if ((value = (char *)zfs_prop_default_string(prop)) == NULL)
1790 value = "";
1791 *source = "";
1792 }
1793
1794 return (value);
1795 }
1796
1797 static boolean_t
zfs_is_recvd_props_mode(zfs_handle_t * zhp)1798 zfs_is_recvd_props_mode(zfs_handle_t *zhp)
1799 {
1800 return (zhp->zfs_props == zhp->zfs_recvd_props);
1801 }
1802
1803 static void
zfs_set_recvd_props_mode(zfs_handle_t * zhp,uint64_t * cookie)1804 zfs_set_recvd_props_mode(zfs_handle_t *zhp, uint64_t *cookie)
1805 {
1806 *cookie = (uint64_t)(uintptr_t)zhp->zfs_props;
1807 zhp->zfs_props = zhp->zfs_recvd_props;
1808 }
1809
1810 static void
zfs_unset_recvd_props_mode(zfs_handle_t * zhp,uint64_t * cookie)1811 zfs_unset_recvd_props_mode(zfs_handle_t *zhp, uint64_t *cookie)
1812 {
1813 zhp->zfs_props = (nvlist_t *)(uintptr_t)*cookie;
1814 *cookie = 0;
1815 }
1816
1817 /*
1818 * Internal function for getting a numeric property. Both zfs_prop_get() and
1819 * zfs_prop_get_int() are built using this interface.
1820 *
1821 * Certain properties can be overridden using 'mount -o'. In this case, scan
1822 * the contents of the /etc/mnttab entry, searching for the appropriate options.
1823 * If they differ from the on-disk values, report the current values and mark
1824 * the source "temporary".
1825 */
1826 static int
get_numeric_property(zfs_handle_t * zhp,zfs_prop_t prop,zprop_source_t * src,char ** source,uint64_t * val)1827 get_numeric_property(zfs_handle_t *zhp, zfs_prop_t prop, zprop_source_t *src,
1828 char **source, uint64_t *val)
1829 {
1830 zfs_cmd_t zc = { 0 };
1831 nvlist_t *zplprops = NULL;
1832 struct mnttab mnt;
1833 char *mntopt_on = NULL;
1834 char *mntopt_off = NULL;
1835 boolean_t received = zfs_is_recvd_props_mode(zhp);
1836
1837 *source = NULL;
1838
1839 switch (prop) {
1840 case ZFS_PROP_ATIME:
1841 mntopt_on = MNTOPT_ATIME;
1842 mntopt_off = MNTOPT_NOATIME;
1843 break;
1844
1845 case ZFS_PROP_DEVICES:
1846 mntopt_on = MNTOPT_DEVICES;
1847 mntopt_off = MNTOPT_NODEVICES;
1848 break;
1849
1850 case ZFS_PROP_EXEC:
1851 mntopt_on = MNTOPT_EXEC;
1852 mntopt_off = MNTOPT_NOEXEC;
1853 break;
1854
1855 case ZFS_PROP_READONLY:
1856 mntopt_on = MNTOPT_RO;
1857 mntopt_off = MNTOPT_RW;
1858 break;
1859
1860 case ZFS_PROP_SETUID:
1861 mntopt_on = MNTOPT_SETUID;
1862 mntopt_off = MNTOPT_NOSETUID;
1863 break;
1864
1865 case ZFS_PROP_XATTR:
1866 mntopt_on = MNTOPT_XATTR;
1867 mntopt_off = MNTOPT_NOXATTR;
1868 break;
1869
1870 case ZFS_PROP_NBMAND:
1871 mntopt_on = MNTOPT_NBMAND;
1872 mntopt_off = MNTOPT_NONBMAND;
1873 break;
1874 }
1875
1876 /*
1877 * Because looking up the mount options is potentially expensive
1878 * (iterating over all of /etc/mnttab), we defer its calculation until
1879 * we're looking up a property which requires its presence.
1880 */
1881 if (!zhp->zfs_mntcheck &&
1882 (mntopt_on != NULL || prop == ZFS_PROP_MOUNTED)) {
1883 libzfs_handle_t *hdl = zhp->zfs_hdl;
1884 struct mnttab entry;
1885
1886 if (libzfs_mnttab_find(hdl, zhp->zfs_name, &entry) == 0) {
1887 zhp->zfs_mntopts = zfs_strdup(hdl,
1888 entry.mnt_mntopts);
1889 if (zhp->zfs_mntopts == NULL)
1890 return (-1);
1891 }
1892
1893 zhp->zfs_mntcheck = B_TRUE;
1894 }
1895
1896 if (zhp->zfs_mntopts == NULL)
1897 mnt.mnt_mntopts = "";
1898 else
1899 mnt.mnt_mntopts = zhp->zfs_mntopts;
1900
1901 switch (prop) {
1902 case ZFS_PROP_ATIME:
1903 case ZFS_PROP_DEVICES:
1904 case ZFS_PROP_EXEC:
1905 case ZFS_PROP_READONLY:
1906 case ZFS_PROP_SETUID:
1907 case ZFS_PROP_XATTR:
1908 case ZFS_PROP_NBMAND:
1909 *val = getprop_uint64(zhp, prop, source);
1910
1911 if (received)
1912 break;
1913
1914 if (hasmntopt(&mnt, mntopt_on) && !*val) {
1915 *val = B_TRUE;
1916 if (src)
1917 *src = ZPROP_SRC_TEMPORARY;
1918 } else if (hasmntopt(&mnt, mntopt_off) && *val) {
1919 *val = B_FALSE;
1920 if (src)
1921 *src = ZPROP_SRC_TEMPORARY;
1922 }
1923 break;
1924
1925 case ZFS_PROP_CANMOUNT:
1926 case ZFS_PROP_VOLSIZE:
1927 case ZFS_PROP_QUOTA:
1928 case ZFS_PROP_REFQUOTA:
1929 case ZFS_PROP_RESERVATION:
1930 case ZFS_PROP_REFRESERVATION:
1931 case ZFS_PROP_FILESYSTEM_LIMIT:
1932 case ZFS_PROP_SNAPSHOT_LIMIT:
1933 case ZFS_PROP_FILESYSTEM_COUNT:
1934 case ZFS_PROP_SNAPSHOT_COUNT:
1935 *val = getprop_uint64(zhp, prop, source);
1936
1937 if (*source == NULL) {
1938 /* not default, must be local */
1939 *source = zhp->zfs_name;
1940 }
1941 break;
1942
1943 case ZFS_PROP_MOUNTED:
1944 *val = (zhp->zfs_mntopts != NULL);
1945 break;
1946
1947 case ZFS_PROP_NUMCLONES:
1948 *val = zhp->zfs_dmustats.dds_num_clones;
1949 break;
1950
1951 case ZFS_PROP_VERSION:
1952 case ZFS_PROP_NORMALIZE:
1953 case ZFS_PROP_UTF8ONLY:
1954 case ZFS_PROP_CASE:
1955 if (!zfs_prop_valid_for_type(prop, zhp->zfs_head_type) ||
1956 zcmd_alloc_dst_nvlist(zhp->zfs_hdl, &zc, 0) != 0)
1957 return (-1);
1958 (void) strlcpy(zc.zc_name, zhp->zfs_name, sizeof (zc.zc_name));
1959 if (zfs_ioctl(zhp->zfs_hdl, ZFS_IOC_OBJSET_ZPLPROPS, &zc)) {
1960 zcmd_free_nvlists(&zc);
1961 return (-1);
1962 }
1963 if (zcmd_read_dst_nvlist(zhp->zfs_hdl, &zc, &zplprops) != 0 ||
1964 nvlist_lookup_uint64(zplprops, zfs_prop_to_name(prop),
1965 val) != 0) {
1966 zcmd_free_nvlists(&zc);
1967 return (-1);
1968 }
1969 if (zplprops)
1970 nvlist_free(zplprops);
1971 zcmd_free_nvlists(&zc);
1972 break;
1973
1974 case ZFS_PROP_INCONSISTENT:
1975 *val = zhp->zfs_dmustats.dds_inconsistent;
1976 break;
1977
1978 default:
1979 switch (zfs_prop_get_type(prop)) {
1980 case PROP_TYPE_NUMBER:
1981 case PROP_TYPE_INDEX:
1982 *val = getprop_uint64(zhp, prop, source);
1983 /*
1984 * If we tried to use a default value for a
1985 * readonly property, it means that it was not
1986 * present.
1987 */
1988 if (zfs_prop_readonly(prop) &&
1989 *source != NULL && (*source)[0] == '\0') {
1990 *source = NULL;
1991 }
1992 break;
1993
1994 case PROP_TYPE_STRING:
1995 default:
1996 zfs_error_aux(zhp->zfs_hdl, dgettext(TEXT_DOMAIN,
1997 "cannot get non-numeric property"));
1998 return (zfs_error(zhp->zfs_hdl, EZFS_BADPROP,
1999 dgettext(TEXT_DOMAIN, "internal error")));
2000 }
2001 }
2002
2003 return (0);
2004 }
2005
2006 /*
2007 * Calculate the source type, given the raw source string.
2008 */
2009 static void
get_source(zfs_handle_t * zhp,zprop_source_t * srctype,char * source,char * statbuf,size_t statlen)2010 get_source(zfs_handle_t *zhp, zprop_source_t *srctype, char *source,
2011 char *statbuf, size_t statlen)
2012 {
2013 if (statbuf == NULL || *srctype == ZPROP_SRC_TEMPORARY)
2014 return;
2015
2016 if (source == NULL) {
2017 *srctype = ZPROP_SRC_NONE;
2018 } else if (source[0] == '\0') {
2019 *srctype = ZPROP_SRC_DEFAULT;
2020 } else if (strstr(source, ZPROP_SOURCE_VAL_RECVD) != NULL) {
2021 *srctype = ZPROP_SRC_RECEIVED;
2022 } else {
2023 if (strcmp(source, zhp->zfs_name) == 0) {
2024 *srctype = ZPROP_SRC_LOCAL;
2025 } else {
2026 (void) strlcpy(statbuf, source, statlen);
2027 *srctype = ZPROP_SRC_INHERITED;
2028 }
2029 }
2030
2031 }
2032
2033 int
zfs_prop_get_recvd(zfs_handle_t * zhp,const char * propname,char * propbuf,size_t proplen,boolean_t literal)2034 zfs_prop_get_recvd(zfs_handle_t *zhp, const char *propname, char *propbuf,
2035 size_t proplen, boolean_t literal)
2036 {
2037 zfs_prop_t prop;
2038 int err = 0;
2039
2040 if (zhp->zfs_recvd_props == NULL)
2041 if (get_recvd_props_ioctl(zhp) != 0)
2042 return (-1);
2043
2044 prop = zfs_name_to_prop(propname);
2045
2046 if (prop != ZPROP_INVAL) {
2047 uint64_t cookie;
2048 if (!nvlist_exists(zhp->zfs_recvd_props, propname))
2049 return (-1);
2050 zfs_set_recvd_props_mode(zhp, &cookie);
2051 err = zfs_prop_get(zhp, prop, propbuf, proplen,
2052 NULL, NULL, 0, literal);
2053 zfs_unset_recvd_props_mode(zhp, &cookie);
2054 } else {
2055 nvlist_t *propval;
2056 char *recvdval;
2057 if (nvlist_lookup_nvlist(zhp->zfs_recvd_props,
2058 propname, &propval) != 0)
2059 return (-1);
2060 verify(nvlist_lookup_string(propval, ZPROP_VALUE,
2061 &recvdval) == 0);
2062 (void) strlcpy(propbuf, recvdval, proplen);
2063 }
2064
2065 return (err == 0 ? 0 : -1);
2066 }
2067
2068 static int
get_clones_string(zfs_handle_t * zhp,char * propbuf,size_t proplen)2069 get_clones_string(zfs_handle_t *zhp, char *propbuf, size_t proplen)
2070 {
2071 nvlist_t *value;
2072 nvpair_t *pair;
2073
2074 value = zfs_get_clones_nvl(zhp);
2075 if (value == NULL)
2076 return (-1);
2077
2078 propbuf[0] = '\0';
2079 for (pair = nvlist_next_nvpair(value, NULL); pair != NULL;
2080 pair = nvlist_next_nvpair(value, pair)) {
2081 if (propbuf[0] != '\0')
2082 (void) strlcat(propbuf, ",", proplen);
2083 (void) strlcat(propbuf, nvpair_name(pair), proplen);
2084 }
2085
2086 return (0);
2087 }
2088
2089 struct get_clones_arg {
2090 uint64_t numclones;
2091 nvlist_t *value;
2092 const char *origin;
2093 char buf[ZFS_MAXNAMELEN];
2094 };
2095
2096 int
get_clones_cb(zfs_handle_t * zhp,void * arg)2097 get_clones_cb(zfs_handle_t *zhp, void *arg)
2098 {
2099 struct get_clones_arg *gca = arg;
2100
2101 if (gca->numclones == 0) {
2102 zfs_close(zhp);
2103 return (0);
2104 }
2105
2106 if (zfs_prop_get(zhp, ZFS_PROP_ORIGIN, gca->buf, sizeof (gca->buf),
2107 NULL, NULL, 0, B_TRUE) != 0)
2108 goto out;
2109 if (strcmp(gca->buf, gca->origin) == 0) {
2110 fnvlist_add_boolean(gca->value, zfs_get_name(zhp));
2111 gca->numclones--;
2112 }
2113
2114 out:
2115 (void) zfs_iter_children(zhp, get_clones_cb, gca);
2116 zfs_close(zhp);
2117 return (0);
2118 }
2119
2120 nvlist_t *
zfs_get_clones_nvl(zfs_handle_t * zhp)2121 zfs_get_clones_nvl(zfs_handle_t *zhp)
2122 {
2123 nvlist_t *nv, *value;
2124
2125 if (nvlist_lookup_nvlist(zhp->zfs_props,
2126 zfs_prop_to_name(ZFS_PROP_CLONES), &nv) != 0) {
2127 struct get_clones_arg gca;
2128
2129 /*
2130 * if this is a snapshot, then the kernel wasn't able
2131 * to get the clones. Do it by slowly iterating.
2132 */
2133 if (zhp->zfs_type != ZFS_TYPE_SNAPSHOT)
2134 return (NULL);
2135 if (nvlist_alloc(&nv, NV_UNIQUE_NAME, 0) != 0)
2136 return (NULL);
2137 if (nvlist_alloc(&value, NV_UNIQUE_NAME, 0) != 0) {
2138 nvlist_free(nv);
2139 return (NULL);
2140 }
2141
2142 gca.numclones = zfs_prop_get_int(zhp, ZFS_PROP_NUMCLONES);
2143 gca.value = value;
2144 gca.origin = zhp->zfs_name;
2145
2146 if (gca.numclones != 0) {
2147 zfs_handle_t *root;
2148 char pool[ZFS_MAXNAMELEN];
2149 char *cp = pool;
2150
2151 /* get the pool name */
2152 (void) strlcpy(pool, zhp->zfs_name, sizeof (pool));
2153 (void) strsep(&cp, "/@");
2154 root = zfs_open(zhp->zfs_hdl, pool,
2155 ZFS_TYPE_FILESYSTEM);
2156
2157 (void) get_clones_cb(root, &gca);
2158 }
2159
2160 if (gca.numclones != 0 ||
2161 nvlist_add_nvlist(nv, ZPROP_VALUE, value) != 0 ||
2162 nvlist_add_nvlist(zhp->zfs_props,
2163 zfs_prop_to_name(ZFS_PROP_CLONES), nv) != 0) {
2164 nvlist_free(nv);
2165 nvlist_free(value);
2166 return (NULL);
2167 }
2168 nvlist_free(nv);
2169 nvlist_free(value);
2170 verify(0 == nvlist_lookup_nvlist(zhp->zfs_props,
2171 zfs_prop_to_name(ZFS_PROP_CLONES), &nv));
2172 }
2173
2174 verify(nvlist_lookup_nvlist(nv, ZPROP_VALUE, &value) == 0);
2175
2176 return (value);
2177 }
2178
2179 /*
2180 * Retrieve a property from the given object. If 'literal' is specified, then
2181 * numbers are left as exact values. Otherwise, numbers are converted to a
2182 * human-readable form.
2183 *
2184 * Returns 0 on success, or -1 on error.
2185 */
2186 int
zfs_prop_get(zfs_handle_t * zhp,zfs_prop_t prop,char * propbuf,size_t proplen,zprop_source_t * src,char * statbuf,size_t statlen,boolean_t literal)2187 zfs_prop_get(zfs_handle_t *zhp, zfs_prop_t prop, char *propbuf, size_t proplen,
2188 zprop_source_t *src, char *statbuf, size_t statlen, boolean_t literal)
2189 {
2190 char *source = NULL;
2191 uint64_t val;
2192 char *str;
2193 const char *strval;
2194 boolean_t received = zfs_is_recvd_props_mode(zhp);
2195
2196 /*
2197 * Check to see if this property applies to our object
2198 */
2199 if (!zfs_prop_valid_for_type(prop, zhp->zfs_type))
2200 return (-1);
2201
2202 if (received && zfs_prop_readonly(prop))
2203 return (-1);
2204
2205 if (src)
2206 *src = ZPROP_SRC_NONE;
2207
2208 switch (prop) {
2209 case ZFS_PROP_CREATION:
2210 /*
2211 * 'creation' is a time_t stored in the statistics. We convert
2212 * this into a string unless 'literal' is specified.
2213 */
2214 {
2215 val = getprop_uint64(zhp, prop, &source);
2216 time_t time = (time_t)val;
2217 struct tm t;
2218
2219 if (literal ||
2220 localtime_r(&time, &t) == NULL ||
2221 strftime(propbuf, proplen, "%a %b %e %k:%M %Y",
2222 &t) == 0)
2223 (void) snprintf(propbuf, proplen, "%llu", val);
2224 }
2225 break;
2226
2227 case ZFS_PROP_MOUNTPOINT:
2228 /*
2229 * Getting the precise mountpoint can be tricky.
2230 *
2231 * - for 'none' or 'legacy', return those values.
2232 * - for inherited mountpoints, we want to take everything
2233 * after our ancestor and append it to the inherited value.
2234 *
2235 * If the pool has an alternate root, we want to prepend that
2236 * root to any values we return.
2237 */
2238
2239 str = getprop_string(zhp, prop, &source);
2240
2241 if (str[0] == '/') {
2242 char buf[MAXPATHLEN];
2243 char *root = buf;
2244 const char *relpath;
2245
2246 /*
2247 * If we inherit the mountpoint, even from a dataset
2248 * with a received value, the source will be the path of
2249 * the dataset we inherit from. If source is
2250 * ZPROP_SOURCE_VAL_RECVD, the received value is not
2251 * inherited.
2252 */
2253 if (strcmp(source, ZPROP_SOURCE_VAL_RECVD) == 0) {
2254 relpath = "";
2255 } else {
2256 relpath = zhp->zfs_name + strlen(source);
2257 if (relpath[0] == '/')
2258 relpath++;
2259 }
2260
2261 if ((zpool_get_prop(zhp->zpool_hdl,
2262 ZPOOL_PROP_ALTROOT, buf, MAXPATHLEN, NULL,
2263 B_FALSE)) || (strcmp(root, "-") == 0))
2264 root[0] = '\0';
2265 /*
2266 * Special case an alternate root of '/'. This will
2267 * avoid having multiple leading slashes in the
2268 * mountpoint path.
2269 */
2270 if (strcmp(root, "/") == 0)
2271 root++;
2272
2273 /*
2274 * If the mountpoint is '/' then skip over this
2275 * if we are obtaining either an alternate root or
2276 * an inherited mountpoint.
2277 */
2278 if (str[1] == '\0' && (root[0] != '\0' ||
2279 relpath[0] != '\0'))
2280 str++;
2281
2282 if (relpath[0] == '\0')
2283 (void) snprintf(propbuf, proplen, "%s%s",
2284 root, str);
2285 else
2286 (void) snprintf(propbuf, proplen, "%s%s%s%s",
2287 root, str, relpath[0] == '@' ? "" : "/",
2288 relpath);
2289 } else {
2290 /* 'legacy' or 'none' */
2291 (void) strlcpy(propbuf, str, proplen);
2292 }
2293
2294 break;
2295
2296 case ZFS_PROP_ORIGIN:
2297 (void) strlcpy(propbuf, getprop_string(zhp, prop, &source),
2298 proplen);
2299 /*
2300 * If there is no parent at all, return failure to indicate that
2301 * it doesn't apply to this dataset.
2302 */
2303 if (propbuf[0] == '\0')
2304 return (-1);
2305 break;
2306
2307 case ZFS_PROP_CLONES:
2308 if (get_clones_string(zhp, propbuf, proplen) != 0)
2309 return (-1);
2310 break;
2311
2312 case ZFS_PROP_QUOTA:
2313 case ZFS_PROP_REFQUOTA:
2314 case ZFS_PROP_RESERVATION:
2315 case ZFS_PROP_REFRESERVATION:
2316
2317 if (get_numeric_property(zhp, prop, src, &source, &val) != 0)
2318 return (-1);
2319
2320 /*
2321 * If quota or reservation is 0, we translate this into 'none'
2322 * (unless literal is set), and indicate that it's the default
2323 * value. Otherwise, we print the number nicely and indicate
2324 * that its set locally.
2325 */
2326 if (val == 0) {
2327 if (literal)
2328 (void) strlcpy(propbuf, "0", proplen);
2329 else
2330 (void) strlcpy(propbuf, "none", proplen);
2331 } else {
2332 if (literal)
2333 (void) snprintf(propbuf, proplen, "%llu",
2334 (u_longlong_t)val);
2335 else
2336 zfs_nicenum(val, propbuf, proplen);
2337 }
2338 break;
2339
2340 case ZFS_PROP_FILESYSTEM_LIMIT:
2341 case ZFS_PROP_SNAPSHOT_LIMIT:
2342 case ZFS_PROP_FILESYSTEM_COUNT:
2343 case ZFS_PROP_SNAPSHOT_COUNT:
2344
2345 if (get_numeric_property(zhp, prop, src, &source, &val) != 0)
2346 return (-1);
2347
2348 /*
2349 * If limit is UINT64_MAX, we translate this into 'none' (unless
2350 * literal is set), and indicate that it's the default value.
2351 * Otherwise, we print the number nicely and indicate that it's
2352 * set locally.
2353 */
2354 if (literal) {
2355 (void) snprintf(propbuf, proplen, "%llu",
2356 (u_longlong_t)val);
2357 } else if (val == UINT64_MAX) {
2358 (void) strlcpy(propbuf, "none", proplen);
2359 } else {
2360 zfs_nicenum(val, propbuf, proplen);
2361 }
2362 break;
2363
2364 case ZFS_PROP_REFRATIO:
2365 case ZFS_PROP_COMPRESSRATIO:
2366 if (get_numeric_property(zhp, prop, src, &source, &val) != 0)
2367 return (-1);
2368 (void) snprintf(propbuf, proplen, "%llu.%02llux",
2369 (u_longlong_t)(val / 100),
2370 (u_longlong_t)(val % 100));
2371 break;
2372
2373 case ZFS_PROP_TYPE:
2374 switch (zhp->zfs_type) {
2375 case ZFS_TYPE_FILESYSTEM:
2376 str = "filesystem";
2377 break;
2378 case ZFS_TYPE_VOLUME:
2379 str = "volume";
2380 break;
2381 case ZFS_TYPE_SNAPSHOT:
2382 str = "snapshot";
2383 break;
2384 case ZFS_TYPE_BOOKMARK:
2385 str = "bookmark";
2386 break;
2387 default:
2388 abort();
2389 }
2390 (void) snprintf(propbuf, proplen, "%s", str);
2391 break;
2392
2393 case ZFS_PROP_MOUNTED:
2394 /*
2395 * The 'mounted' property is a pseudo-property that described
2396 * whether the filesystem is currently mounted. Even though
2397 * it's a boolean value, the typical values of "on" and "off"
2398 * don't make sense, so we translate to "yes" and "no".
2399 */
2400 if (get_numeric_property(zhp, ZFS_PROP_MOUNTED,
2401 src, &source, &val) != 0)
2402 return (-1);
2403 if (val)
2404 (void) strlcpy(propbuf, "yes", proplen);
2405 else
2406 (void) strlcpy(propbuf, "no", proplen);
2407 break;
2408
2409 case ZFS_PROP_NAME:
2410 /*
2411 * The 'name' property is a pseudo-property derived from the
2412 * dataset name. It is presented as a real property to simplify
2413 * consumers.
2414 */
2415 (void) strlcpy(propbuf, zhp->zfs_name, proplen);
2416 break;
2417
2418 case ZFS_PROP_MLSLABEL:
2419 {
2420 #ifdef sun
2421 m_label_t *new_sl = NULL;
2422 char *ascii = NULL; /* human readable label */
2423
2424 (void) strlcpy(propbuf,
2425 getprop_string(zhp, prop, &source), proplen);
2426
2427 if (literal || (strcasecmp(propbuf,
2428 ZFS_MLSLABEL_DEFAULT) == 0))
2429 break;
2430
2431 /*
2432 * Try to translate the internal hex string to
2433 * human-readable output. If there are any
2434 * problems just use the hex string.
2435 */
2436
2437 if (str_to_label(propbuf, &new_sl, MAC_LABEL,
2438 L_NO_CORRECTION, NULL) == -1) {
2439 m_label_free(new_sl);
2440 break;
2441 }
2442
2443 if (label_to_str(new_sl, &ascii, M_LABEL,
2444 DEF_NAMES) != 0) {
2445 if (ascii)
2446 free(ascii);
2447 m_label_free(new_sl);
2448 break;
2449 }
2450 m_label_free(new_sl);
2451
2452 (void) strlcpy(propbuf, ascii, proplen);
2453 free(ascii);
2454 #else /* !sun */
2455 propbuf[0] = '\0';
2456 #endif /* !sun */
2457 }
2458 break;
2459
2460 case ZFS_PROP_GUID:
2461 /*
2462 * GUIDs are stored as numbers, but they are identifiers.
2463 * We don't want them to be pretty printed, because pretty
2464 * printing mangles the ID into a truncated and useless value.
2465 */
2466 if (get_numeric_property(zhp, prop, src, &source, &val) != 0)
2467 return (-1);
2468 (void) snprintf(propbuf, proplen, "%llu", (u_longlong_t)val);
2469 break;
2470
2471 default:
2472 switch (zfs_prop_get_type(prop)) {
2473 case PROP_TYPE_NUMBER:
2474 if (get_numeric_property(zhp, prop, src,
2475 &source, &val) != 0)
2476 return (-1);
2477 if (literal)
2478 (void) snprintf(propbuf, proplen, "%llu",
2479 (u_longlong_t)val);
2480 else
2481 zfs_nicenum(val, propbuf, proplen);
2482 break;
2483
2484 case PROP_TYPE_STRING:
2485 (void) strlcpy(propbuf,
2486 getprop_string(zhp, prop, &source), proplen);
2487 break;
2488
2489 case PROP_TYPE_INDEX:
2490 if (get_numeric_property(zhp, prop, src,
2491 &source, &val) != 0)
2492 return (-1);
2493 if (zfs_prop_index_to_string(prop, val, &strval) != 0)
2494 return (-1);
2495 (void) strlcpy(propbuf, strval, proplen);
2496 break;
2497
2498 default:
2499 abort();
2500 }
2501 }
2502
2503 get_source(zhp, src, source, statbuf, statlen);
2504
2505 return (0);
2506 }
2507
2508 /*
2509 * Utility function to get the given numeric property. Does no validation that
2510 * the given property is the appropriate type; should only be used with
2511 * hard-coded property types.
2512 */
2513 uint64_t
zfs_prop_get_int(zfs_handle_t * zhp,zfs_prop_t prop)2514 zfs_prop_get_int(zfs_handle_t *zhp, zfs_prop_t prop)
2515 {
2516 char *source;
2517 uint64_t val;
2518
2519 (void) get_numeric_property(zhp, prop, NULL, &source, &val);
2520
2521 return (val);
2522 }
2523
2524 int
zfs_prop_set_int(zfs_handle_t * zhp,zfs_prop_t prop,uint64_t val)2525 zfs_prop_set_int(zfs_handle_t *zhp, zfs_prop_t prop, uint64_t val)
2526 {
2527 char buf[64];
2528
2529 (void) snprintf(buf, sizeof (buf), "%llu", (longlong_t)val);
2530 return (zfs_prop_set(zhp, zfs_prop_to_name(prop), buf));
2531 }
2532
2533 /*
2534 * Similar to zfs_prop_get(), but returns the value as an integer.
2535 */
2536 int
zfs_prop_get_numeric(zfs_handle_t * zhp,zfs_prop_t prop,uint64_t * value,zprop_source_t * src,char * statbuf,size_t statlen)2537 zfs_prop_get_numeric(zfs_handle_t *zhp, zfs_prop_t prop, uint64_t *value,
2538 zprop_source_t *src, char *statbuf, size_t statlen)
2539 {
2540 char *source;
2541
2542 /*
2543 * Check to see if this property applies to our object
2544 */
2545 if (!zfs_prop_valid_for_type(prop, zhp->zfs_type)) {
2546 return (zfs_error_fmt(zhp->zfs_hdl, EZFS_PROPTYPE,
2547 dgettext(TEXT_DOMAIN, "cannot get property '%s'"),
2548 zfs_prop_to_name(prop)));
2549 }
2550
2551 if (src)
2552 *src = ZPROP_SRC_NONE;
2553
2554 if (get_numeric_property(zhp, prop, src, &source, value) != 0)
2555 return (-1);
2556
2557 get_source(zhp, src, source, statbuf, statlen);
2558
2559 return (0);
2560 }
2561
2562 static int
idmap_id_to_numeric_domain_rid(uid_t id,boolean_t isuser,char ** domainp,idmap_rid_t * ridp)2563 idmap_id_to_numeric_domain_rid(uid_t id, boolean_t isuser,
2564 char **domainp, idmap_rid_t *ridp)
2565 {
2566 #ifdef sun
2567 idmap_get_handle_t *get_hdl = NULL;
2568 idmap_stat status;
2569 int err = EINVAL;
2570
2571 if (idmap_get_create(&get_hdl) != IDMAP_SUCCESS)
2572 goto out;
2573
2574 if (isuser) {
2575 err = idmap_get_sidbyuid(get_hdl, id,
2576 IDMAP_REQ_FLG_USE_CACHE, domainp, ridp, &status);
2577 } else {
2578 err = idmap_get_sidbygid(get_hdl, id,
2579 IDMAP_REQ_FLG_USE_CACHE, domainp, ridp, &status);
2580 }
2581 if (err == IDMAP_SUCCESS &&
2582 idmap_get_mappings(get_hdl) == IDMAP_SUCCESS &&
2583 status == IDMAP_SUCCESS)
2584 err = 0;
2585 else
2586 err = EINVAL;
2587 out:
2588 if (get_hdl)
2589 idmap_get_destroy(get_hdl);
2590 return (err);
2591 #else /* !sun */
2592 assert(!"invalid code path");
2593 return (EINVAL); // silence compiler warning
2594 #endif /* !sun */
2595 }
2596
2597 /*
2598 * convert the propname into parameters needed by kernel
2599 * Eg: userquota@ahrens -> ZFS_PROP_USERQUOTA, "", 126829
2600 * Eg: userused@matt@domain -> ZFS_PROP_USERUSED, "S-1-123-456", 789
2601 */
2602 static int
userquota_propname_decode(const char * propname,boolean_t zoned,zfs_userquota_prop_t * typep,char * domain,int domainlen,uint64_t * ridp)2603 userquota_propname_decode(const char *propname, boolean_t zoned,
2604 zfs_userquota_prop_t *typep, char *domain, int domainlen, uint64_t *ridp)
2605 {
2606 zfs_userquota_prop_t type;
2607 char *cp, *end;
2608 char *numericsid = NULL;
2609 boolean_t isuser;
2610
2611 domain[0] = '\0';
2612 *ridp = 0;
2613 /* Figure out the property type ({user|group}{quota|space}) */
2614 for (type = 0; type < ZFS_NUM_USERQUOTA_PROPS; type++) {
2615 if (strncmp(propname, zfs_userquota_prop_prefixes[type],
2616 strlen(zfs_userquota_prop_prefixes[type])) == 0)
2617 break;
2618 }
2619 if (type == ZFS_NUM_USERQUOTA_PROPS)
2620 return (EINVAL);
2621 *typep = type;
2622
2623 isuser = (type == ZFS_PROP_USERQUOTA ||
2624 type == ZFS_PROP_USERUSED);
2625
2626 cp = strchr(propname, '@') + 1;
2627
2628 if (strchr(cp, '@')) {
2629 #ifdef sun
2630 /*
2631 * It's a SID name (eg "user@domain") that needs to be
2632 * turned into S-1-domainID-RID.
2633 */
2634 int flag = 0;
2635 idmap_stat stat, map_stat;
2636 uid_t pid;
2637 idmap_rid_t rid;
2638 idmap_get_handle_t *gh = NULL;
2639
2640 stat = idmap_get_create(&gh);
2641 if (stat != IDMAP_SUCCESS) {
2642 idmap_get_destroy(gh);
2643 return (ENOMEM);
2644 }
2645 if (zoned && getzoneid() == GLOBAL_ZONEID)
2646 return (ENOENT);
2647 if (isuser) {
2648 stat = idmap_getuidbywinname(cp, NULL, flag, &pid);
2649 if (stat < 0)
2650 return (ENOENT);
2651 stat = idmap_get_sidbyuid(gh, pid, flag, &numericsid,
2652 &rid, &map_stat);
2653 } else {
2654 stat = idmap_getgidbywinname(cp, NULL, flag, &pid);
2655 if (stat < 0)
2656 return (ENOENT);
2657 stat = idmap_get_sidbygid(gh, pid, flag, &numericsid,
2658 &rid, &map_stat);
2659 }
2660 if (stat < 0) {
2661 idmap_get_destroy(gh);
2662 return (ENOENT);
2663 }
2664 stat = idmap_get_mappings(gh);
2665 idmap_get_destroy(gh);
2666
2667 if (stat < 0) {
2668 return (ENOENT);
2669 }
2670 if (numericsid == NULL)
2671 return (ENOENT);
2672 cp = numericsid;
2673 *ridp = rid;
2674 /* will be further decoded below */
2675 #else /* !sun */
2676 return (ENOENT);
2677 #endif /* !sun */
2678 }
2679
2680 if (strncmp(cp, "S-1-", 4) == 0) {
2681 /* It's a numeric SID (eg "S-1-234-567-89") */
2682 (void) strlcpy(domain, cp, domainlen);
2683 errno = 0;
2684 if (*ridp == 0) {
2685 cp = strrchr(domain, '-');
2686 *cp = '\0';
2687 cp++;
2688 *ridp = strtoull(cp, &end, 10);
2689 } else {
2690 end = "";
2691 }
2692 if (numericsid) {
2693 free(numericsid);
2694 numericsid = NULL;
2695 }
2696 if (errno != 0 || *end != '\0')
2697 return (EINVAL);
2698 } else if (!isdigit(*cp)) {
2699 /*
2700 * It's a user/group name (eg "user") that needs to be
2701 * turned into a uid/gid
2702 */
2703 if (zoned && getzoneid() == GLOBAL_ZONEID)
2704 return (ENOENT);
2705 if (isuser) {
2706 struct passwd *pw;
2707 pw = getpwnam(cp);
2708 if (pw == NULL)
2709 return (ENOENT);
2710 *ridp = pw->pw_uid;
2711 } else {
2712 struct group *gr;
2713 gr = getgrnam(cp);
2714 if (gr == NULL)
2715 return (ENOENT);
2716 *ridp = gr->gr_gid;
2717 }
2718 } else {
2719 /* It's a user/group ID (eg "12345"). */
2720 uid_t id = strtoul(cp, &end, 10);
2721 idmap_rid_t rid;
2722 char *mapdomain;
2723
2724 if (*end != '\0')
2725 return (EINVAL);
2726 if (id > MAXUID) {
2727 /* It's an ephemeral ID. */
2728 if (idmap_id_to_numeric_domain_rid(id, isuser,
2729 &mapdomain, &rid) != 0)
2730 return (ENOENT);
2731 (void) strlcpy(domain, mapdomain, domainlen);
2732 *ridp = rid;
2733 } else {
2734 *ridp = id;
2735 }
2736 }
2737
2738 ASSERT3P(numericsid, ==, NULL);
2739 return (0);
2740 }
2741
2742 static int
zfs_prop_get_userquota_common(zfs_handle_t * zhp,const char * propname,uint64_t * propvalue,zfs_userquota_prop_t * typep)2743 zfs_prop_get_userquota_common(zfs_handle_t *zhp, const char *propname,
2744 uint64_t *propvalue, zfs_userquota_prop_t *typep)
2745 {
2746 int err;
2747 zfs_cmd_t zc = { 0 };
2748
2749 (void) strlcpy(zc.zc_name, zhp->zfs_name, sizeof (zc.zc_name));
2750
2751 err = userquota_propname_decode(propname,
2752 zfs_prop_get_int(zhp, ZFS_PROP_ZONED),
2753 typep, zc.zc_value, sizeof (zc.zc_value), &zc.zc_guid);
2754 zc.zc_objset_type = *typep;
2755 if (err)
2756 return (err);
2757
2758 err = ioctl(zhp->zfs_hdl->libzfs_fd, ZFS_IOC_USERSPACE_ONE, &zc);
2759 if (err)
2760 return (err);
2761
2762 *propvalue = zc.zc_cookie;
2763 return (0);
2764 }
2765
2766 int
zfs_prop_get_userquota_int(zfs_handle_t * zhp,const char * propname,uint64_t * propvalue)2767 zfs_prop_get_userquota_int(zfs_handle_t *zhp, const char *propname,
2768 uint64_t *propvalue)
2769 {
2770 zfs_userquota_prop_t type;
2771
2772 return (zfs_prop_get_userquota_common(zhp, propname, propvalue,
2773 &type));
2774 }
2775
2776 int
zfs_prop_get_userquota(zfs_handle_t * zhp,const char * propname,char * propbuf,int proplen,boolean_t literal)2777 zfs_prop_get_userquota(zfs_handle_t *zhp, const char *propname,
2778 char *propbuf, int proplen, boolean_t literal)
2779 {
2780 int err;
2781 uint64_t propvalue;
2782 zfs_userquota_prop_t type;
2783
2784 err = zfs_prop_get_userquota_common(zhp, propname, &propvalue,
2785 &type);
2786
2787 if (err)
2788 return (err);
2789
2790 if (literal) {
2791 (void) snprintf(propbuf, proplen, "%llu", propvalue);
2792 } else if (propvalue == 0 &&
2793 (type == ZFS_PROP_USERQUOTA || type == ZFS_PROP_GROUPQUOTA)) {
2794 (void) strlcpy(propbuf, "none", proplen);
2795 } else {
2796 zfs_nicenum(propvalue, propbuf, proplen);
2797 }
2798 return (0);
2799 }
2800
2801 int
zfs_prop_get_written_int(zfs_handle_t * zhp,const char * propname,uint64_t * propvalue)2802 zfs_prop_get_written_int(zfs_handle_t *zhp, const char *propname,
2803 uint64_t *propvalue)
2804 {
2805 int err;
2806 zfs_cmd_t zc = { 0 };
2807 const char *snapname;
2808
2809 (void) strlcpy(zc.zc_name, zhp->zfs_name, sizeof (zc.zc_name));
2810
2811 snapname = strchr(propname, '@') + 1;
2812 if (strchr(snapname, '@')) {
2813 (void) strlcpy(zc.zc_value, snapname, sizeof (zc.zc_value));
2814 } else {
2815 /* snapname is the short name, append it to zhp's fsname */
2816 char *cp;
2817
2818 (void) strlcpy(zc.zc_value, zhp->zfs_name,
2819 sizeof (zc.zc_value));
2820 cp = strchr(zc.zc_value, '@');
2821 if (cp != NULL)
2822 *cp = '\0';
2823 (void) strlcat(zc.zc_value, "@", sizeof (zc.zc_value));
2824 (void) strlcat(zc.zc_value, snapname, sizeof (zc.zc_value));
2825 }
2826
2827 err = ioctl(zhp->zfs_hdl->libzfs_fd, ZFS_IOC_SPACE_WRITTEN, &zc);
2828 if (err)
2829 return (err);
2830
2831 *propvalue = zc.zc_cookie;
2832 return (0);
2833 }
2834
2835 int
zfs_prop_get_written(zfs_handle_t * zhp,const char * propname,char * propbuf,int proplen,boolean_t literal)2836 zfs_prop_get_written(zfs_handle_t *zhp, const char *propname,
2837 char *propbuf, int proplen, boolean_t literal)
2838 {
2839 int err;
2840 uint64_t propvalue;
2841
2842 err = zfs_prop_get_written_int(zhp, propname, &propvalue);
2843
2844 if (err)
2845 return (err);
2846
2847 if (literal) {
2848 (void) snprintf(propbuf, proplen, "%llu", propvalue);
2849 } else {
2850 zfs_nicenum(propvalue, propbuf, proplen);
2851 }
2852 return (0);
2853 }
2854
2855 /*
2856 * Returns the name of the given zfs handle.
2857 */
2858 const char *
zfs_get_name(const zfs_handle_t * zhp)2859 zfs_get_name(const zfs_handle_t *zhp)
2860 {
2861 return (zhp->zfs_name);
2862 }
2863
2864 /*
2865 * Returns the type of the given zfs handle.
2866 */
2867 zfs_type_t
zfs_get_type(const zfs_handle_t * zhp)2868 zfs_get_type(const zfs_handle_t *zhp)
2869 {
2870 return (zhp->zfs_type);
2871 }
2872
2873 /*
2874 * Is one dataset name a child dataset of another?
2875 *
2876 * Needs to handle these cases:
2877 * Dataset 1 "a/foo" "a/foo" "a/foo" "a/foo"
2878 * Dataset 2 "a/fo" "a/foobar" "a/bar/baz" "a/foo/bar"
2879 * Descendant? No. No. No. Yes.
2880 */
2881 static boolean_t
is_descendant(const char * ds1,const char * ds2)2882 is_descendant(const char *ds1, const char *ds2)
2883 {
2884 size_t d1len = strlen(ds1);
2885
2886 /* ds2 can't be a descendant if it's smaller */
2887 if (strlen(ds2) < d1len)
2888 return (B_FALSE);
2889
2890 /* otherwise, compare strings and verify that there's a '/' char */
2891 return (ds2[d1len] == '/' && (strncmp(ds1, ds2, d1len) == 0));
2892 }
2893
2894 /*
2895 * Given a complete name, return just the portion that refers to the parent.
2896 * Will return -1 if there is no parent (path is just the name of the
2897 * pool).
2898 */
2899 static int
parent_name(const char * path,char * buf,size_t buflen)2900 parent_name(const char *path, char *buf, size_t buflen)
2901 {
2902 char *slashp;
2903
2904 (void) strlcpy(buf, path, buflen);
2905
2906 if ((slashp = strrchr(buf, '/')) == NULL)
2907 return (-1);
2908 *slashp = '\0';
2909
2910 return (0);
2911 }
2912
2913 /*
2914 * If accept_ancestor is false, then check to make sure that the given path has
2915 * a parent, and that it exists. If accept_ancestor is true, then find the
2916 * closest existing ancestor for the given path. In prefixlen return the
2917 * length of already existing prefix of the given path. We also fetch the
2918 * 'zoned' property, which is used to validate property settings when creating
2919 * new datasets.
2920 */
2921 static int
check_parents(libzfs_handle_t * hdl,const char * path,uint64_t * zoned,boolean_t accept_ancestor,int * prefixlen)2922 check_parents(libzfs_handle_t *hdl, const char *path, uint64_t *zoned,
2923 boolean_t accept_ancestor, int *prefixlen)
2924 {
2925 zfs_cmd_t zc = { 0 };
2926 char parent[ZFS_MAXNAMELEN];
2927 char *slash;
2928 zfs_handle_t *zhp;
2929 char errbuf[1024];
2930 uint64_t is_zoned;
2931
2932 (void) snprintf(errbuf, sizeof (errbuf),
2933 dgettext(TEXT_DOMAIN, "cannot create '%s'"), path);
2934
2935 /* get parent, and check to see if this is just a pool */
2936 if (parent_name(path, parent, sizeof (parent)) != 0) {
2937 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN,
2938 "missing dataset name"));
2939 return (zfs_error(hdl, EZFS_INVALIDNAME, errbuf));
2940 }
2941
2942 /* check to see if the pool exists */
2943 if ((slash = strchr(parent, '/')) == NULL)
2944 slash = parent + strlen(parent);
2945 (void) strncpy(zc.zc_name, parent, slash - parent);
2946 zc.zc_name[slash - parent] = '\0';
2947 if (ioctl(hdl->libzfs_fd, ZFS_IOC_OBJSET_STATS, &zc) != 0 &&
2948 errno == ENOENT) {
2949 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN,
2950 "no such pool '%s'"), zc.zc_name);
2951 return (zfs_error(hdl, EZFS_NOENT, errbuf));
2952 }
2953
2954 /* check to see if the parent dataset exists */
2955 while ((zhp = make_dataset_handle(hdl, parent)) == NULL) {
2956 if (errno == ENOENT && accept_ancestor) {
2957 /*
2958 * Go deeper to find an ancestor, give up on top level.
2959 */
2960 if (parent_name(parent, parent, sizeof (parent)) != 0) {
2961 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN,
2962 "no such pool '%s'"), zc.zc_name);
2963 return (zfs_error(hdl, EZFS_NOENT, errbuf));
2964 }
2965 } else if (errno == ENOENT) {
2966 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN,
2967 "parent does not exist"));
2968 return (zfs_error(hdl, EZFS_NOENT, errbuf));
2969 } else
2970 return (zfs_standard_error(hdl, errno, errbuf));
2971 }
2972
2973 is_zoned = zfs_prop_get_int(zhp, ZFS_PROP_ZONED);
2974 if (zoned != NULL)
2975 *zoned = is_zoned;
2976
2977 /* we are in a non-global zone, but parent is in the global zone */
2978 if (getzoneid() != GLOBAL_ZONEID && !is_zoned) {
2979 (void) zfs_standard_error(hdl, EPERM, errbuf);
2980 zfs_close(zhp);
2981 return (-1);
2982 }
2983
2984 /* make sure parent is a filesystem */
2985 if (zfs_get_type(zhp) != ZFS_TYPE_FILESYSTEM) {
2986 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN,
2987 "parent is not a filesystem"));
2988 (void) zfs_error(hdl, EZFS_BADTYPE, errbuf);
2989 zfs_close(zhp);
2990 return (-1);
2991 }
2992
2993 zfs_close(zhp);
2994 if (prefixlen != NULL)
2995 *prefixlen = strlen(parent);
2996 return (0);
2997 }
2998
2999 /*
3000 * Finds whether the dataset of the given type(s) exists.
3001 */
3002 boolean_t
zfs_dataset_exists(libzfs_handle_t * hdl,const char * path,zfs_type_t types)3003 zfs_dataset_exists(libzfs_handle_t *hdl, const char *path, zfs_type_t types)
3004 {
3005 zfs_handle_t *zhp;
3006
3007 if (!zfs_validate_name(hdl, path, types, B_FALSE))
3008 return (B_FALSE);
3009
3010 /*
3011 * Try to get stats for the dataset, which will tell us if it exists.
3012 */
3013 if ((zhp = make_dataset_handle(hdl, path)) != NULL) {
3014 int ds_type = zhp->zfs_type;
3015
3016 zfs_close(zhp);
3017 if (types & ds_type)
3018 return (B_TRUE);
3019 }
3020 return (B_FALSE);
3021 }
3022
3023 /*
3024 * Given a path to 'target', create all the ancestors between
3025 * the prefixlen portion of the path, and the target itself.
3026 * Fail if the initial prefixlen-ancestor does not already exist.
3027 */
3028 int
create_parents(libzfs_handle_t * hdl,char * target,int prefixlen)3029 create_parents(libzfs_handle_t *hdl, char *target, int prefixlen)
3030 {
3031 zfs_handle_t *h;
3032 char *cp;
3033 const char *opname;
3034
3035 /* make sure prefix exists */
3036 cp = target + prefixlen;
3037 if (*cp != '/') {
3038 assert(strchr(cp, '/') == NULL);
3039 h = zfs_open(hdl, target, ZFS_TYPE_FILESYSTEM);
3040 } else {
3041 *cp = '\0';
3042 h = zfs_open(hdl, target, ZFS_TYPE_FILESYSTEM);
3043 *cp = '/';
3044 }
3045 if (h == NULL)
3046 return (-1);
3047 zfs_close(h);
3048
3049 /*
3050 * Attempt to create, mount, and share any ancestor filesystems,
3051 * up to the prefixlen-long one.
3052 */
3053 for (cp = target + prefixlen + 1;
3054 cp = strchr(cp, '/'); *cp = '/', cp++) {
3055
3056 *cp = '\0';
3057
3058 h = make_dataset_handle(hdl, target);
3059 if (h) {
3060 /* it already exists, nothing to do here */
3061 zfs_close(h);
3062 continue;
3063 }
3064
3065 if (zfs_create(hdl, target, ZFS_TYPE_FILESYSTEM,
3066 NULL) != 0) {
3067 opname = dgettext(TEXT_DOMAIN, "create");
3068 goto ancestorerr;
3069 }
3070
3071 h = zfs_open(hdl, target, ZFS_TYPE_FILESYSTEM);
3072 if (h == NULL) {
3073 opname = dgettext(TEXT_DOMAIN, "open");
3074 goto ancestorerr;
3075 }
3076
3077 if (zfs_mount(h, NULL, 0) != 0) {
3078 opname = dgettext(TEXT_DOMAIN, "mount");
3079 goto ancestorerr;
3080 }
3081
3082 if (zfs_share(h) != 0) {
3083 opname = dgettext(TEXT_DOMAIN, "share");
3084 goto ancestorerr;
3085 }
3086
3087 zfs_close(h);
3088 }
3089
3090 return (0);
3091
3092 ancestorerr:
3093 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN,
3094 "failed to %s ancestor '%s'"), opname, target);
3095 return (-1);
3096 }
3097
3098 /*
3099 * Creates non-existing ancestors of the given path.
3100 */
3101 int
zfs_create_ancestors(libzfs_handle_t * hdl,const char * path)3102 zfs_create_ancestors(libzfs_handle_t *hdl, const char *path)
3103 {
3104 int prefix;
3105 char *path_copy;
3106 int rc;
3107
3108 if (check_parents(hdl, path, NULL, B_TRUE, &prefix) != 0)
3109 return (-1);
3110
3111 if ((path_copy = strdup(path)) != NULL) {
3112 rc = create_parents(hdl, path_copy, prefix);
3113 free(path_copy);
3114 }
3115 if (path_copy == NULL || rc != 0)
3116 return (-1);
3117
3118 return (0);
3119 }
3120
3121 /*
3122 * Create a new filesystem or volume.
3123 */
3124 int
zfs_create(libzfs_handle_t * hdl,const char * path,zfs_type_t type,nvlist_t * props)3125 zfs_create(libzfs_handle_t *hdl, const char *path, zfs_type_t type,
3126 nvlist_t *props)
3127 {
3128 int ret;
3129 uint64_t size = 0;
3130 uint64_t blocksize = zfs_prop_default_numeric(ZFS_PROP_VOLBLOCKSIZE);
3131 char errbuf[1024];
3132 uint64_t zoned;
3133 dmu_objset_type_t ost;
3134
3135 (void) snprintf(errbuf, sizeof (errbuf), dgettext(TEXT_DOMAIN,
3136 "cannot create '%s'"), path);
3137
3138 /* validate the path, taking care to note the extended error message */
3139 if (!zfs_validate_name(hdl, path, type, B_TRUE))
3140 return (zfs_error(hdl, EZFS_INVALIDNAME, errbuf));
3141
3142 /* validate parents exist */
3143 if (check_parents(hdl, path, &zoned, B_FALSE, NULL) != 0)
3144 return (-1);
3145
3146 /*
3147 * The failure modes when creating a dataset of a different type over
3148 * one that already exists is a little strange. In particular, if you
3149 * try to create a dataset on top of an existing dataset, the ioctl()
3150 * will return ENOENT, not EEXIST. To prevent this from happening, we
3151 * first try to see if the dataset exists.
3152 */
3153 if (zfs_dataset_exists(hdl, path, ZFS_TYPE_DATASET)) {
3154 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN,
3155 "dataset already exists"));
3156 return (zfs_error(hdl, EZFS_EXISTS, errbuf));
3157 }
3158
3159 if (type == ZFS_TYPE_VOLUME)
3160 ost = DMU_OST_ZVOL;
3161 else
3162 ost = DMU_OST_ZFS;
3163
3164 if (props && (props = zfs_valid_proplist(hdl, type, props,
3165 zoned, NULL, errbuf)) == 0)
3166 return (-1);
3167
3168 if (type == ZFS_TYPE_VOLUME) {
3169 /*
3170 * If we are creating a volume, the size and block size must
3171 * satisfy a few restraints. First, the blocksize must be a
3172 * valid block size between SPA_{MIN,MAX}BLOCKSIZE. Second, the
3173 * volsize must be a multiple of the block size, and cannot be
3174 * zero.
3175 */
3176 if (props == NULL || nvlist_lookup_uint64(props,
3177 zfs_prop_to_name(ZFS_PROP_VOLSIZE), &size) != 0) {
3178 nvlist_free(props);
3179 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN,
3180 "missing volume size"));
3181 return (zfs_error(hdl, EZFS_BADPROP, errbuf));
3182 }
3183
3184 if ((ret = nvlist_lookup_uint64(props,
3185 zfs_prop_to_name(ZFS_PROP_VOLBLOCKSIZE),
3186 &blocksize)) != 0) {
3187 if (ret == ENOENT) {
3188 blocksize = zfs_prop_default_numeric(
3189 ZFS_PROP_VOLBLOCKSIZE);
3190 } else {
3191 nvlist_free(props);
3192 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN,
3193 "missing volume block size"));
3194 return (zfs_error(hdl, EZFS_BADPROP, errbuf));
3195 }
3196 }
3197
3198 if (size == 0) {
3199 nvlist_free(props);
3200 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN,
3201 "volume size cannot be zero"));
3202 return (zfs_error(hdl, EZFS_BADPROP, errbuf));
3203 }
3204
3205 if (size % blocksize != 0) {
3206 nvlist_free(props);
3207 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN,
3208 "volume size must be a multiple of volume block "
3209 "size"));
3210 return (zfs_error(hdl, EZFS_BADPROP, errbuf));
3211 }
3212 }
3213
3214 /* create the dataset */
3215 ret = lzc_create(path, ost, props);
3216 nvlist_free(props);
3217
3218 /* check for failure */
3219 if (ret != 0) {
3220 char parent[ZFS_MAXNAMELEN];
3221 (void) parent_name(path, parent, sizeof (parent));
3222
3223 switch (errno) {
3224 case ENOENT:
3225 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN,
3226 "no such parent '%s'"), parent);
3227 return (zfs_error(hdl, EZFS_NOENT, errbuf));
3228
3229 case EINVAL:
3230 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN,
3231 "parent '%s' is not a filesystem"), parent);
3232 return (zfs_error(hdl, EZFS_BADTYPE, errbuf));
3233
3234 case EDOM:
3235 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN,
3236 "volume block size must be power of 2 from "
3237 "512B to 128KB"));
3238
3239 return (zfs_error(hdl, EZFS_BADPROP, errbuf));
3240
3241 case ENOTSUP:
3242 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN,
3243 "pool must be upgraded to set this "
3244 "property or value"));
3245 return (zfs_error(hdl, EZFS_BADVERSION, errbuf));
3246 #ifdef _ILP32
3247 case EOVERFLOW:
3248 /*
3249 * This platform can't address a volume this big.
3250 */
3251 if (type == ZFS_TYPE_VOLUME)
3252 return (zfs_error(hdl, EZFS_VOLTOOBIG,
3253 errbuf));
3254 #endif
3255 /* FALLTHROUGH */
3256 default:
3257 return (zfs_standard_error(hdl, errno, errbuf));
3258 }
3259 }
3260
3261 return (0);
3262 }
3263
3264 /*
3265 * Destroys the given dataset. The caller must make sure that the filesystem
3266 * isn't mounted, and that there are no active dependents. If the file system
3267 * does not exist this function does nothing.
3268 */
3269 int
zfs_destroy(zfs_handle_t * zhp,boolean_t defer)3270 zfs_destroy(zfs_handle_t *zhp, boolean_t defer)
3271 {
3272 zfs_cmd_t zc = { 0 };
3273
3274 if (zhp->zfs_type == ZFS_TYPE_BOOKMARK) {
3275 nvlist_t *nv = fnvlist_alloc();
3276 fnvlist_add_boolean(nv, zhp->zfs_name);
3277 int error = lzc_destroy_bookmarks(nv, NULL);
3278 fnvlist_free(nv);
3279 if (error != 0) {
3280 return (zfs_standard_error_fmt(zhp->zfs_hdl, errno,
3281 dgettext(TEXT_DOMAIN, "cannot destroy '%s'"),
3282 zhp->zfs_name));
3283 }
3284 return (0);
3285 }
3286
3287 (void) strlcpy(zc.zc_name, zhp->zfs_name, sizeof (zc.zc_name));
3288
3289 if (ZFS_IS_VOLUME(zhp)) {
3290 zc.zc_objset_type = DMU_OST_ZVOL;
3291 } else {
3292 zc.zc_objset_type = DMU_OST_ZFS;
3293 }
3294
3295 zc.zc_defer_destroy = defer;
3296 if (zfs_ioctl(zhp->zfs_hdl, ZFS_IOC_DESTROY, &zc) != 0 &&
3297 errno != ENOENT) {
3298 return (zfs_standard_error_fmt(zhp->zfs_hdl, errno,
3299 dgettext(TEXT_DOMAIN, "cannot destroy '%s'"),
3300 zhp->zfs_name));
3301 }
3302
3303 remove_mountpoint(zhp);
3304
3305 return (0);
3306 }
3307
3308 struct destroydata {
3309 nvlist_t *nvl;
3310 const char *snapname;
3311 };
3312
3313 static int
zfs_check_snap_cb(zfs_handle_t * zhp,void * arg)3314 zfs_check_snap_cb(zfs_handle_t *zhp, void *arg)
3315 {
3316 struct destroydata *dd = arg;
3317 char name[ZFS_MAXNAMELEN];
3318 int rv = 0;
3319
3320 (void) snprintf(name, sizeof (name),
3321 "%s@%s", zhp->zfs_name, dd->snapname);
3322
3323 if (lzc_exists(name))
3324 verify(nvlist_add_boolean(dd->nvl, name) == 0);
3325
3326 rv = zfs_iter_filesystems(zhp, zfs_check_snap_cb, dd);
3327 zfs_close(zhp);
3328 return (rv);
3329 }
3330
3331 /*
3332 * Destroys all snapshots with the given name in zhp & descendants.
3333 */
3334 int
zfs_destroy_snaps(zfs_handle_t * zhp,char * snapname,boolean_t defer)3335 zfs_destroy_snaps(zfs_handle_t *zhp, char *snapname, boolean_t defer)
3336 {
3337 int ret;
3338 struct destroydata dd = { 0 };
3339
3340 dd.snapname = snapname;
3341 verify(nvlist_alloc(&dd.nvl, NV_UNIQUE_NAME, 0) == 0);
3342 (void) zfs_check_snap_cb(zfs_handle_dup(zhp), &dd);
3343
3344 if (nvlist_empty(dd.nvl)) {
3345 ret = zfs_standard_error_fmt(zhp->zfs_hdl, ENOENT,
3346 dgettext(TEXT_DOMAIN, "cannot destroy '%s@%s'"),
3347 zhp->zfs_name, snapname);
3348 } else {
3349 ret = zfs_destroy_snaps_nvl(zhp->zfs_hdl, dd.nvl, defer);
3350 }
3351 nvlist_free(dd.nvl);
3352 return (ret);
3353 }
3354
3355 /*
3356 * Destroys all the snapshots named in the nvlist.
3357 */
3358 int
zfs_destroy_snaps_nvl(libzfs_handle_t * hdl,nvlist_t * snaps,boolean_t defer)3359 zfs_destroy_snaps_nvl(libzfs_handle_t *hdl, nvlist_t *snaps, boolean_t defer)
3360 {
3361 int ret;
3362 nvlist_t *errlist;
3363
3364 ret = lzc_destroy_snaps(snaps, defer, &errlist);
3365
3366 if (ret == 0)
3367 return (0);
3368
3369 if (nvlist_empty(errlist)) {
3370 char errbuf[1024];
3371 (void) snprintf(errbuf, sizeof (errbuf),
3372 dgettext(TEXT_DOMAIN, "cannot destroy snapshots"));
3373
3374 ret = zfs_standard_error(hdl, ret, errbuf);
3375 }
3376 for (nvpair_t *pair = nvlist_next_nvpair(errlist, NULL);
3377 pair != NULL; pair = nvlist_next_nvpair(errlist, pair)) {
3378 char errbuf[1024];
3379 (void) snprintf(errbuf, sizeof (errbuf),
3380 dgettext(TEXT_DOMAIN, "cannot destroy snapshot %s"),
3381 nvpair_name(pair));
3382
3383 switch (fnvpair_value_int32(pair)) {
3384 case EEXIST:
3385 zfs_error_aux(hdl,
3386 dgettext(TEXT_DOMAIN, "snapshot is cloned"));
3387 ret = zfs_error(hdl, EZFS_EXISTS, errbuf);
3388 break;
3389 default:
3390 ret = zfs_standard_error(hdl, errno, errbuf);
3391 break;
3392 }
3393 }
3394
3395 return (ret);
3396 }
3397
3398 /*
3399 * Clones the given dataset. The target must be of the same type as the source.
3400 */
3401 int
zfs_clone(zfs_handle_t * zhp,const char * target,nvlist_t * props)3402 zfs_clone(zfs_handle_t *zhp, const char *target, nvlist_t *props)
3403 {
3404 char parent[ZFS_MAXNAMELEN];
3405 int ret;
3406 char errbuf[1024];
3407 libzfs_handle_t *hdl = zhp->zfs_hdl;
3408 uint64_t zoned;
3409
3410 assert(zhp->zfs_type == ZFS_TYPE_SNAPSHOT);
3411
3412 (void) snprintf(errbuf, sizeof (errbuf), dgettext(TEXT_DOMAIN,
3413 "cannot create '%s'"), target);
3414
3415 /* validate the target/clone name */
3416 if (!zfs_validate_name(hdl, target, ZFS_TYPE_FILESYSTEM, B_TRUE))
3417 return (zfs_error(hdl, EZFS_INVALIDNAME, errbuf));
3418
3419 /* validate parents exist */
3420 if (check_parents(hdl, target, &zoned, B_FALSE, NULL) != 0)
3421 return (-1);
3422
3423 (void) parent_name(target, parent, sizeof (parent));
3424
3425 /* do the clone */
3426
3427 if (props) {
3428 zfs_type_t type;
3429 if (ZFS_IS_VOLUME(zhp)) {
3430 type = ZFS_TYPE_VOLUME;
3431 } else {
3432 type = ZFS_TYPE_FILESYSTEM;
3433 }
3434 if ((props = zfs_valid_proplist(hdl, type, props, zoned,
3435 zhp, errbuf)) == NULL)
3436 return (-1);
3437 }
3438
3439 ret = lzc_clone(target, zhp->zfs_name, props);
3440 nvlist_free(props);
3441
3442 if (ret != 0) {
3443 switch (errno) {
3444
3445 case ENOENT:
3446 /*
3447 * The parent doesn't exist. We should have caught this
3448 * above, but there may a race condition that has since
3449 * destroyed the parent.
3450 *
3451 * At this point, we don't know whether it's the source
3452 * that doesn't exist anymore, or whether the target
3453 * dataset doesn't exist.
3454 */
3455 zfs_error_aux(zhp->zfs_hdl, dgettext(TEXT_DOMAIN,
3456 "no such parent '%s'"), parent);
3457 return (zfs_error(zhp->zfs_hdl, EZFS_NOENT, errbuf));
3458
3459 case EXDEV:
3460 zfs_error_aux(zhp->zfs_hdl, dgettext(TEXT_DOMAIN,
3461 "source and target pools differ"));
3462 return (zfs_error(zhp->zfs_hdl, EZFS_CROSSTARGET,
3463 errbuf));
3464
3465 default:
3466 return (zfs_standard_error(zhp->zfs_hdl, errno,
3467 errbuf));
3468 }
3469 }
3470
3471 return (ret);
3472 }
3473
3474 /*
3475 * Promotes the given clone fs to be the clone parent.
3476 */
3477 int
zfs_promote(zfs_handle_t * zhp)3478 zfs_promote(zfs_handle_t *zhp)
3479 {
3480 libzfs_handle_t *hdl = zhp->zfs_hdl;
3481 zfs_cmd_t zc = { 0 };
3482 char parent[MAXPATHLEN];
3483 int ret;
3484 char errbuf[1024];
3485
3486 (void) snprintf(errbuf, sizeof (errbuf), dgettext(TEXT_DOMAIN,
3487 "cannot promote '%s'"), zhp->zfs_name);
3488
3489 if (zhp->zfs_type == ZFS_TYPE_SNAPSHOT) {
3490 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN,
3491 "snapshots can not be promoted"));
3492 return (zfs_error(hdl, EZFS_BADTYPE, errbuf));
3493 }
3494
3495 (void) strlcpy(parent, zhp->zfs_dmustats.dds_origin, sizeof (parent));
3496 if (parent[0] == '\0') {
3497 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN,
3498 "not a cloned filesystem"));
3499 return (zfs_error(hdl, EZFS_BADTYPE, errbuf));
3500 }
3501
3502 (void) strlcpy(zc.zc_value, zhp->zfs_dmustats.dds_origin,
3503 sizeof (zc.zc_value));
3504 (void) strlcpy(zc.zc_name, zhp->zfs_name, sizeof (zc.zc_name));
3505 ret = zfs_ioctl(hdl, ZFS_IOC_PROMOTE, &zc);
3506
3507 if (ret != 0) {
3508 int save_errno = errno;
3509
3510 switch (save_errno) {
3511 case EEXIST:
3512 /* There is a conflicting snapshot name. */
3513 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN,
3514 "conflicting snapshot '%s' from parent '%s'"),
3515 zc.zc_string, parent);
3516 return (zfs_error(hdl, EZFS_EXISTS, errbuf));
3517
3518 default:
3519 return (zfs_standard_error(hdl, save_errno, errbuf));
3520 }
3521 }
3522 return (ret);
3523 }
3524
3525 typedef struct snapdata {
3526 nvlist_t *sd_nvl;
3527 const char *sd_snapname;
3528 } snapdata_t;
3529
3530 static int
zfs_snapshot_cb(zfs_handle_t * zhp,void * arg)3531 zfs_snapshot_cb(zfs_handle_t *zhp, void *arg)
3532 {
3533 snapdata_t *sd = arg;
3534 char name[ZFS_MAXNAMELEN];
3535 int rv = 0;
3536
3537 if (zfs_prop_get_int(zhp, ZFS_PROP_INCONSISTENT) == 0) {
3538 (void) snprintf(name, sizeof (name),
3539 "%s@%s", zfs_get_name(zhp), sd->sd_snapname);
3540
3541 fnvlist_add_boolean(sd->sd_nvl, name);
3542
3543 rv = zfs_iter_filesystems(zhp, zfs_snapshot_cb, sd);
3544 }
3545 zfs_close(zhp);
3546
3547 return (rv);
3548 }
3549
3550 /*
3551 * Creates snapshots. The keys in the snaps nvlist are the snapshots to be
3552 * created.
3553 */
3554 int
zfs_snapshot_nvl(libzfs_handle_t * hdl,nvlist_t * snaps,nvlist_t * props)3555 zfs_snapshot_nvl(libzfs_handle_t *hdl, nvlist_t *snaps, nvlist_t *props)
3556 {
3557 int ret;
3558 char errbuf[1024];
3559 nvpair_t *elem;
3560 nvlist_t *errors;
3561
3562 (void) snprintf(errbuf, sizeof (errbuf), dgettext(TEXT_DOMAIN,
3563 "cannot create snapshots "));
3564
3565 elem = NULL;
3566 while ((elem = nvlist_next_nvpair(snaps, elem)) != NULL) {
3567 const char *snapname = nvpair_name(elem);
3568
3569 /* validate the target name */
3570 if (!zfs_validate_name(hdl, snapname, ZFS_TYPE_SNAPSHOT,
3571 B_TRUE)) {
3572 (void) snprintf(errbuf, sizeof (errbuf),
3573 dgettext(TEXT_DOMAIN,
3574 "cannot create snapshot '%s'"), snapname);
3575 return (zfs_error(hdl, EZFS_INVALIDNAME, errbuf));
3576 }
3577 }
3578
3579 if (props != NULL &&
3580 (props = zfs_valid_proplist(hdl, ZFS_TYPE_SNAPSHOT,
3581 props, B_FALSE, NULL, errbuf)) == NULL) {
3582 return (-1);
3583 }
3584
3585 ret = lzc_snapshot(snaps, props, &errors);
3586
3587 if (ret != 0) {
3588 boolean_t printed = B_FALSE;
3589 for (elem = nvlist_next_nvpair(errors, NULL);
3590 elem != NULL;
3591 elem = nvlist_next_nvpair(errors, elem)) {
3592 (void) snprintf(errbuf, sizeof (errbuf),
3593 dgettext(TEXT_DOMAIN,
3594 "cannot create snapshot '%s'"), nvpair_name(elem));
3595 (void) zfs_standard_error(hdl,
3596 fnvpair_value_int32(elem), errbuf);
3597 printed = B_TRUE;
3598 }
3599 if (!printed) {
3600 switch (ret) {
3601 case EXDEV:
3602 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN,
3603 "multiple snapshots of same "
3604 "fs not allowed"));
3605 (void) zfs_error(hdl, EZFS_EXISTS, errbuf);
3606
3607 break;
3608 default:
3609 (void) zfs_standard_error(hdl, ret, errbuf);
3610 }
3611 }
3612 }
3613
3614 nvlist_free(props);
3615 nvlist_free(errors);
3616 return (ret);
3617 }
3618
3619 int
zfs_snapshot(libzfs_handle_t * hdl,const char * path,boolean_t recursive,nvlist_t * props)3620 zfs_snapshot(libzfs_handle_t *hdl, const char *path, boolean_t recursive,
3621 nvlist_t *props)
3622 {
3623 int ret;
3624 snapdata_t sd = { 0 };
3625 char fsname[ZFS_MAXNAMELEN];
3626 char *cp;
3627 zfs_handle_t *zhp;
3628 char errbuf[1024];
3629
3630 (void) snprintf(errbuf, sizeof (errbuf), dgettext(TEXT_DOMAIN,
3631 "cannot snapshot %s"), path);
3632
3633 if (!zfs_validate_name(hdl, path, ZFS_TYPE_SNAPSHOT, B_TRUE))
3634 return (zfs_error(hdl, EZFS_INVALIDNAME, errbuf));
3635
3636 (void) strlcpy(fsname, path, sizeof (fsname));
3637 cp = strchr(fsname, '@');
3638 *cp = '\0';
3639 sd.sd_snapname = cp + 1;
3640
3641 if ((zhp = zfs_open(hdl, fsname, ZFS_TYPE_FILESYSTEM |
3642 ZFS_TYPE_VOLUME)) == NULL) {
3643 return (-1);
3644 }
3645
3646 verify(nvlist_alloc(&sd.sd_nvl, NV_UNIQUE_NAME, 0) == 0);
3647 if (recursive) {
3648 (void) zfs_snapshot_cb(zfs_handle_dup(zhp), &sd);
3649 } else {
3650 fnvlist_add_boolean(sd.sd_nvl, path);
3651 }
3652
3653 ret = zfs_snapshot_nvl(hdl, sd.sd_nvl, props);
3654 nvlist_free(sd.sd_nvl);
3655 zfs_close(zhp);
3656 return (ret);
3657 }
3658
3659 /*
3660 * Destroy any more recent snapshots. We invoke this callback on any dependents
3661 * of the snapshot first. If the 'cb_dependent' member is non-zero, then this
3662 * is a dependent and we should just destroy it without checking the transaction
3663 * group.
3664 */
3665 typedef struct rollback_data {
3666 const char *cb_target; /* the snapshot */
3667 uint64_t cb_create; /* creation time reference */
3668 boolean_t cb_error;
3669 boolean_t cb_force;
3670 } rollback_data_t;
3671
3672 static int
rollback_destroy_dependent(zfs_handle_t * zhp,void * data)3673 rollback_destroy_dependent(zfs_handle_t *zhp, void *data)
3674 {
3675 rollback_data_t *cbp = data;
3676 prop_changelist_t *clp;
3677
3678 /* We must destroy this clone; first unmount it */
3679 clp = changelist_gather(zhp, ZFS_PROP_NAME, 0,
3680 cbp->cb_force ? MS_FORCE: 0);
3681 if (clp == NULL || changelist_prefix(clp) != 0) {
3682 cbp->cb_error = B_TRUE;
3683 zfs_close(zhp);
3684 return (0);
3685 }
3686 if (zfs_destroy(zhp, B_FALSE) != 0)
3687 cbp->cb_error = B_TRUE;
3688 else
3689 changelist_remove(clp, zhp->zfs_name);
3690 (void) changelist_postfix(clp);
3691 changelist_free(clp);
3692
3693 zfs_close(zhp);
3694 return (0);
3695 }
3696
3697 static int
rollback_destroy(zfs_handle_t * zhp,void * data)3698 rollback_destroy(zfs_handle_t *zhp, void *data)
3699 {
3700 rollback_data_t *cbp = data;
3701
3702 if (zfs_prop_get_int(zhp, ZFS_PROP_CREATETXG) > cbp->cb_create) {
3703 cbp->cb_error |= zfs_iter_dependents(zhp, B_FALSE,
3704 rollback_destroy_dependent, cbp);
3705
3706 cbp->cb_error |= zfs_destroy(zhp, B_FALSE);
3707 }
3708
3709 zfs_close(zhp);
3710 return (0);
3711 }
3712
3713 /*
3714 * Given a dataset, rollback to a specific snapshot, discarding any
3715 * data changes since then and making it the active dataset.
3716 *
3717 * Any snapshots and bookmarks more recent than the target are
3718 * destroyed, along with their dependents (i.e. clones).
3719 */
3720 int
zfs_rollback(zfs_handle_t * zhp,zfs_handle_t * snap,boolean_t force)3721 zfs_rollback(zfs_handle_t *zhp, zfs_handle_t *snap, boolean_t force)
3722 {
3723 rollback_data_t cb = { 0 };
3724 int err;
3725 boolean_t restore_resv = 0;
3726 uint64_t old_volsize, new_volsize;
3727 zfs_prop_t resv_prop;
3728
3729 assert(zhp->zfs_type == ZFS_TYPE_FILESYSTEM ||
3730 zhp->zfs_type == ZFS_TYPE_VOLUME);
3731
3732 /*
3733 * Destroy all recent snapshots and their dependents.
3734 */
3735 cb.cb_force = force;
3736 cb.cb_target = snap->zfs_name;
3737 cb.cb_create = zfs_prop_get_int(snap, ZFS_PROP_CREATETXG);
3738 (void) zfs_iter_snapshots(zhp, B_FALSE, rollback_destroy, &cb);
3739 (void) zfs_iter_bookmarks(zhp, rollback_destroy, &cb);
3740
3741 if (cb.cb_error)
3742 return (-1);
3743
3744 /*
3745 * Now that we have verified that the snapshot is the latest,
3746 * rollback to the given snapshot.
3747 */
3748
3749 if (zhp->zfs_type == ZFS_TYPE_VOLUME) {
3750 if (zfs_which_resv_prop(zhp, &resv_prop) < 0)
3751 return (-1);
3752 old_volsize = zfs_prop_get_int(zhp, ZFS_PROP_VOLSIZE);
3753 restore_resv =
3754 (old_volsize == zfs_prop_get_int(zhp, resv_prop));
3755 }
3756
3757 /*
3758 * We rely on zfs_iter_children() to verify that there are no
3759 * newer snapshots for the given dataset. Therefore, we can
3760 * simply pass the name on to the ioctl() call. There is still
3761 * an unlikely race condition where the user has taken a
3762 * snapshot since we verified that this was the most recent.
3763 */
3764 err = lzc_rollback(zhp->zfs_name, NULL, 0);
3765 if (err != 0) {
3766 (void) zfs_standard_error_fmt(zhp->zfs_hdl, errno,
3767 dgettext(TEXT_DOMAIN, "cannot rollback '%s'"),
3768 zhp->zfs_name);
3769 return (err);
3770 }
3771
3772 /*
3773 * For volumes, if the pre-rollback volsize matched the pre-
3774 * rollback reservation and the volsize has changed then set
3775 * the reservation property to the post-rollback volsize.
3776 * Make a new handle since the rollback closed the dataset.
3777 */
3778 if ((zhp->zfs_type == ZFS_TYPE_VOLUME) &&
3779 (zhp = make_dataset_handle(zhp->zfs_hdl, zhp->zfs_name))) {
3780 if (restore_resv) {
3781 new_volsize = zfs_prop_get_int(zhp, ZFS_PROP_VOLSIZE);
3782 if (old_volsize != new_volsize)
3783 err = zfs_prop_set_int(zhp, resv_prop,
3784 new_volsize);
3785 }
3786 zfs_close(zhp);
3787 }
3788 return (err);
3789 }
3790
3791 /*
3792 * Renames the given dataset.
3793 */
3794 int
zfs_rename(zfs_handle_t * zhp,const char * source,const char * target,renameflags_t flags)3795 zfs_rename(zfs_handle_t *zhp, const char *source, const char *target,
3796 renameflags_t flags)
3797 {
3798 int ret;
3799 zfs_cmd_t zc = { 0 };
3800 char *delim;
3801 prop_changelist_t *cl = NULL;
3802 zfs_handle_t *zhrp = NULL;
3803 char *parentname = NULL;
3804 char parent[ZFS_MAXNAMELEN];
3805 char property[ZFS_MAXPROPLEN];
3806 libzfs_handle_t *hdl = zhp->zfs_hdl;
3807 char errbuf[1024];
3808
3809 /* if we have the same exact name, just return success */
3810 if (strcmp(zhp->zfs_name, target) == 0)
3811 return (0);
3812
3813 (void) snprintf(errbuf, sizeof (errbuf), dgettext(TEXT_DOMAIN,
3814 "cannot rename to '%s'"), target);
3815
3816 if (source != NULL) {
3817 /*
3818 * This is recursive snapshots rename, put snapshot name
3819 * (that might not exist) into zfs_name.
3820 */
3821 assert(flags.recurse);
3822
3823 (void) strlcat(zhp->zfs_name, "@", sizeof(zhp->zfs_name));
3824 (void) strlcat(zhp->zfs_name, source, sizeof(zhp->zfs_name));
3825 zhp->zfs_type = ZFS_TYPE_SNAPSHOT;
3826 }
3827
3828 /*
3829 * Make sure the target name is valid
3830 */
3831 if (zhp->zfs_type == ZFS_TYPE_SNAPSHOT) {
3832 if ((strchr(target, '@') == NULL) ||
3833 *target == '@') {
3834 /*
3835 * Snapshot target name is abbreviated,
3836 * reconstruct full dataset name
3837 */
3838 (void) strlcpy(parent, zhp->zfs_name,
3839 sizeof (parent));
3840 delim = strchr(parent, '@');
3841 if (strchr(target, '@') == NULL)
3842 *(++delim) = '\0';
3843 else
3844 *delim = '\0';
3845 (void) strlcat(parent, target, sizeof (parent));
3846 target = parent;
3847 } else {
3848 /*
3849 * Make sure we're renaming within the same dataset.
3850 */
3851 delim = strchr(target, '@');
3852 if (strncmp(zhp->zfs_name, target, delim - target)
3853 != 0 || zhp->zfs_name[delim - target] != '@') {
3854 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN,
3855 "snapshots must be part of same "
3856 "dataset"));
3857 return (zfs_error(hdl, EZFS_CROSSTARGET,
3858 errbuf));
3859 }
3860 }
3861 if (!zfs_validate_name(hdl, target, zhp->zfs_type, B_TRUE))
3862 return (zfs_error(hdl, EZFS_INVALIDNAME, errbuf));
3863 } else {
3864 if (flags.recurse) {
3865 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN,
3866 "recursive rename must be a snapshot"));
3867 return (zfs_error(hdl, EZFS_BADTYPE, errbuf));
3868 }
3869
3870 if (!zfs_validate_name(hdl, target, zhp->zfs_type, B_TRUE))
3871 return (zfs_error(hdl, EZFS_INVALIDNAME, errbuf));
3872
3873 /* validate parents */
3874 if (check_parents(hdl, target, NULL, B_FALSE, NULL) != 0)
3875 return (-1);
3876
3877 /* make sure we're in the same pool */
3878 verify((delim = strchr(target, '/')) != NULL);
3879 if (strncmp(zhp->zfs_name, target, delim - target) != 0 ||
3880 zhp->zfs_name[delim - target] != '/') {
3881 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN,
3882 "datasets must be within same pool"));
3883 return (zfs_error(hdl, EZFS_CROSSTARGET, errbuf));
3884 }
3885
3886 /* new name cannot be a child of the current dataset name */
3887 if (is_descendant(zhp->zfs_name, target)) {
3888 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN,
3889 "New dataset name cannot be a descendant of "
3890 "current dataset name"));
3891 return (zfs_error(hdl, EZFS_INVALIDNAME, errbuf));
3892 }
3893 }
3894
3895 (void) snprintf(errbuf, sizeof (errbuf),
3896 dgettext(TEXT_DOMAIN, "cannot rename '%s'"), zhp->zfs_name);
3897
3898 if (getzoneid() == GLOBAL_ZONEID &&
3899 zfs_prop_get_int(zhp, ZFS_PROP_ZONED)) {
3900 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN,
3901 "dataset is used in a non-global zone"));
3902 return (zfs_error(hdl, EZFS_ZONED, errbuf));
3903 }
3904
3905 /*
3906 * Avoid unmounting file systems with mountpoint property set to
3907 * 'legacy' or 'none' even if -u option is not given.
3908 */
3909 if (zhp->zfs_type == ZFS_TYPE_FILESYSTEM &&
3910 !flags.recurse && !flags.nounmount &&
3911 zfs_prop_get(zhp, ZFS_PROP_MOUNTPOINT, property,
3912 sizeof (property), NULL, NULL, 0, B_FALSE) == 0 &&
3913 (strcmp(property, "legacy") == 0 ||
3914 strcmp(property, "none") == 0)) {
3915 flags.nounmount = B_TRUE;
3916 }
3917 if (flags.recurse) {
3918
3919 parentname = zfs_strdup(zhp->zfs_hdl, zhp->zfs_name);
3920 if (parentname == NULL) {
3921 ret = -1;
3922 goto error;
3923 }
3924 delim = strchr(parentname, '@');
3925 *delim = '\0';
3926 zhrp = zfs_open(zhp->zfs_hdl, parentname, ZFS_TYPE_DATASET);
3927 if (zhrp == NULL) {
3928 ret = -1;
3929 goto error;
3930 }
3931 } else if (zhp->zfs_type != ZFS_TYPE_SNAPSHOT) {
3932 if ((cl = changelist_gather(zhp, ZFS_PROP_NAME,
3933 flags.nounmount ? CL_GATHER_DONT_UNMOUNT : 0,
3934 flags.forceunmount ? MS_FORCE : 0)) == NULL) {
3935 return (-1);
3936 }
3937
3938 if (changelist_haszonedchild(cl)) {
3939 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN,
3940 "child dataset with inherited mountpoint is used "
3941 "in a non-global zone"));
3942 (void) zfs_error(hdl, EZFS_ZONED, errbuf);
3943 goto error;
3944 }
3945
3946 if ((ret = changelist_prefix(cl)) != 0)
3947 goto error;
3948 }
3949
3950 if (ZFS_IS_VOLUME(zhp))
3951 zc.zc_objset_type = DMU_OST_ZVOL;
3952 else
3953 zc.zc_objset_type = DMU_OST_ZFS;
3954
3955 (void) strlcpy(zc.zc_name, zhp->zfs_name, sizeof (zc.zc_name));
3956 (void) strlcpy(zc.zc_value, target, sizeof (zc.zc_value));
3957
3958 zc.zc_cookie = flags.recurse ? 1 : 0;
3959 if (flags.nounmount)
3960 zc.zc_cookie |= 2;
3961
3962 if ((ret = zfs_ioctl(zhp->zfs_hdl, ZFS_IOC_RENAME, &zc)) != 0) {
3963 /*
3964 * if it was recursive, the one that actually failed will
3965 * be in zc.zc_name
3966 */
3967 (void) snprintf(errbuf, sizeof (errbuf), dgettext(TEXT_DOMAIN,
3968 "cannot rename '%s'"), zc.zc_name);
3969
3970 if (flags.recurse && errno == EEXIST) {
3971 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN,
3972 "a child dataset already has a snapshot "
3973 "with the new name"));
3974 (void) zfs_error(hdl, EZFS_EXISTS, errbuf);
3975 } else {
3976 (void) zfs_standard_error(zhp->zfs_hdl, errno, errbuf);
3977 }
3978
3979 /*
3980 * On failure, we still want to remount any filesystems that
3981 * were previously mounted, so we don't alter the system state.
3982 */
3983 if (cl != NULL)
3984 (void) changelist_postfix(cl);
3985 } else {
3986 if (cl != NULL) {
3987 changelist_rename(cl, zfs_get_name(zhp), target);
3988 ret = changelist_postfix(cl);
3989 }
3990 }
3991
3992 error:
3993 if (parentname != NULL) {
3994 free(parentname);
3995 }
3996 if (zhrp != NULL) {
3997 zfs_close(zhrp);
3998 }
3999 if (cl != NULL) {
4000 changelist_free(cl);
4001 }
4002 return (ret);
4003 }
4004
4005 nvlist_t *
zfs_get_user_props(zfs_handle_t * zhp)4006 zfs_get_user_props(zfs_handle_t *zhp)
4007 {
4008 return (zhp->zfs_user_props);
4009 }
4010
4011 nvlist_t *
zfs_get_recvd_props(zfs_handle_t * zhp)4012 zfs_get_recvd_props(zfs_handle_t *zhp)
4013 {
4014 if (zhp->zfs_recvd_props == NULL)
4015 if (get_recvd_props_ioctl(zhp) != 0)
4016 return (NULL);
4017 return (zhp->zfs_recvd_props);
4018 }
4019
4020 /*
4021 * This function is used by 'zfs list' to determine the exact set of columns to
4022 * display, and their maximum widths. This does two main things:
4023 *
4024 * - If this is a list of all properties, then expand the list to include
4025 * all native properties, and set a flag so that for each dataset we look
4026 * for new unique user properties and add them to the list.
4027 *
4028 * - For non fixed-width properties, keep track of the maximum width seen
4029 * so that we can size the column appropriately. If the user has
4030 * requested received property values, we also need to compute the width
4031 * of the RECEIVED column.
4032 */
4033 int
zfs_expand_proplist(zfs_handle_t * zhp,zprop_list_t ** plp,boolean_t received,boolean_t literal)4034 zfs_expand_proplist(zfs_handle_t *zhp, zprop_list_t **plp, boolean_t received,
4035 boolean_t literal)
4036 {
4037 libzfs_handle_t *hdl = zhp->zfs_hdl;
4038 zprop_list_t *entry;
4039 zprop_list_t **last, **start;
4040 nvlist_t *userprops, *propval;
4041 nvpair_t *elem;
4042 char *strval;
4043 char buf[ZFS_MAXPROPLEN];
4044
4045 if (zprop_expand_list(hdl, plp, ZFS_TYPE_DATASET) != 0)
4046 return (-1);
4047
4048 userprops = zfs_get_user_props(zhp);
4049
4050 entry = *plp;
4051 if (entry->pl_all && nvlist_next_nvpair(userprops, NULL) != NULL) {
4052 /*
4053 * Go through and add any user properties as necessary. We
4054 * start by incrementing our list pointer to the first
4055 * non-native property.
4056 */
4057 start = plp;
4058 while (*start != NULL) {
4059 if ((*start)->pl_prop == ZPROP_INVAL)
4060 break;
4061 start = &(*start)->pl_next;
4062 }
4063
4064 elem = NULL;
4065 while ((elem = nvlist_next_nvpair(userprops, elem)) != NULL) {
4066 /*
4067 * See if we've already found this property in our list.
4068 */
4069 for (last = start; *last != NULL;
4070 last = &(*last)->pl_next) {
4071 if (strcmp((*last)->pl_user_prop,
4072 nvpair_name(elem)) == 0)
4073 break;
4074 }
4075
4076 if (*last == NULL) {
4077 if ((entry = zfs_alloc(hdl,
4078 sizeof (zprop_list_t))) == NULL ||
4079 ((entry->pl_user_prop = zfs_strdup(hdl,
4080 nvpair_name(elem)))) == NULL) {
4081 free(entry);
4082 return (-1);
4083 }
4084
4085 entry->pl_prop = ZPROP_INVAL;
4086 entry->pl_width = strlen(nvpair_name(elem));
4087 entry->pl_all = B_TRUE;
4088 *last = entry;
4089 }
4090 }
4091 }
4092
4093 /*
4094 * Now go through and check the width of any non-fixed columns
4095 */
4096 for (entry = *plp; entry != NULL; entry = entry->pl_next) {
4097 if (entry->pl_fixed && !literal)
4098 continue;
4099
4100 if (entry->pl_prop != ZPROP_INVAL) {
4101 if (zfs_prop_get(zhp, entry->pl_prop,
4102 buf, sizeof (buf), NULL, NULL, 0, literal) == 0) {
4103 if (strlen(buf) > entry->pl_width)
4104 entry->pl_width = strlen(buf);
4105 }
4106 if (received && zfs_prop_get_recvd(zhp,
4107 zfs_prop_to_name(entry->pl_prop),
4108 buf, sizeof (buf), literal) == 0)
4109 if (strlen(buf) > entry->pl_recvd_width)
4110 entry->pl_recvd_width = strlen(buf);
4111 } else {
4112 if (nvlist_lookup_nvlist(userprops, entry->pl_user_prop,
4113 &propval) == 0) {
4114 verify(nvlist_lookup_string(propval,
4115 ZPROP_VALUE, &strval) == 0);
4116 if (strlen(strval) > entry->pl_width)
4117 entry->pl_width = strlen(strval);
4118 }
4119 if (received && zfs_prop_get_recvd(zhp,
4120 entry->pl_user_prop,
4121 buf, sizeof (buf), literal) == 0)
4122 if (strlen(buf) > entry->pl_recvd_width)
4123 entry->pl_recvd_width = strlen(buf);
4124 }
4125 }
4126
4127 return (0);
4128 }
4129
4130 int
zfs_deleg_share_nfs(libzfs_handle_t * hdl,char * dataset,char * path,char * resource,void * export,void * sharetab,int sharemax,zfs_share_op_t operation)4131 zfs_deleg_share_nfs(libzfs_handle_t *hdl, char *dataset, char *path,
4132 char *resource, void *export, void *sharetab,
4133 int sharemax, zfs_share_op_t operation)
4134 {
4135 zfs_cmd_t zc = { 0 };
4136 int error;
4137
4138 (void) strlcpy(zc.zc_name, dataset, sizeof (zc.zc_name));
4139 (void) strlcpy(zc.zc_value, path, sizeof (zc.zc_value));
4140 if (resource)
4141 (void) strlcpy(zc.zc_string, resource, sizeof (zc.zc_string));
4142 zc.zc_share.z_sharedata = (uint64_t)(uintptr_t)sharetab;
4143 zc.zc_share.z_exportdata = (uint64_t)(uintptr_t)export;
4144 zc.zc_share.z_sharetype = operation;
4145 zc.zc_share.z_sharemax = sharemax;
4146 error = ioctl(hdl->libzfs_fd, ZFS_IOC_SHARE, &zc);
4147 return (error);
4148 }
4149
4150 void
zfs_prune_proplist(zfs_handle_t * zhp,uint8_t * props)4151 zfs_prune_proplist(zfs_handle_t *zhp, uint8_t *props)
4152 {
4153 nvpair_t *curr;
4154
4155 /*
4156 * Keep a reference to the props-table against which we prune the
4157 * properties.
4158 */
4159 zhp->zfs_props_table = props;
4160
4161 curr = nvlist_next_nvpair(zhp->zfs_props, NULL);
4162
4163 while (curr) {
4164 zfs_prop_t zfs_prop = zfs_name_to_prop(nvpair_name(curr));
4165 nvpair_t *next = nvlist_next_nvpair(zhp->zfs_props, curr);
4166
4167 /*
4168 * User properties will result in ZPROP_INVAL, and since we
4169 * only know how to prune standard ZFS properties, we always
4170 * leave these in the list. This can also happen if we
4171 * encounter an unknown DSL property (when running older
4172 * software, for example).
4173 */
4174 if (zfs_prop != ZPROP_INVAL && props[zfs_prop] == B_FALSE)
4175 (void) nvlist_remove(zhp->zfs_props,
4176 nvpair_name(curr), nvpair_type(curr));
4177 curr = next;
4178 }
4179 }
4180
4181 #ifdef sun
4182 static int
zfs_smb_acl_mgmt(libzfs_handle_t * hdl,char * dataset,char * path,zfs_smb_acl_op_t cmd,char * resource1,char * resource2)4183 zfs_smb_acl_mgmt(libzfs_handle_t *hdl, char *dataset, char *path,
4184 zfs_smb_acl_op_t cmd, char *resource1, char *resource2)
4185 {
4186 zfs_cmd_t zc = { 0 };
4187 nvlist_t *nvlist = NULL;
4188 int error;
4189
4190 (void) strlcpy(zc.zc_name, dataset, sizeof (zc.zc_name));
4191 (void) strlcpy(zc.zc_value, path, sizeof (zc.zc_value));
4192 zc.zc_cookie = (uint64_t)cmd;
4193
4194 if (cmd == ZFS_SMB_ACL_RENAME) {
4195 if (nvlist_alloc(&nvlist, NV_UNIQUE_NAME, 0) != 0) {
4196 (void) no_memory(hdl);
4197 return (NULL);
4198 }
4199 }
4200
4201 switch (cmd) {
4202 case ZFS_SMB_ACL_ADD:
4203 case ZFS_SMB_ACL_REMOVE:
4204 (void) strlcpy(zc.zc_string, resource1, sizeof (zc.zc_string));
4205 break;
4206 case ZFS_SMB_ACL_RENAME:
4207 if (nvlist_add_string(nvlist, ZFS_SMB_ACL_SRC,
4208 resource1) != 0) {
4209 (void) no_memory(hdl);
4210 return (-1);
4211 }
4212 if (nvlist_add_string(nvlist, ZFS_SMB_ACL_TARGET,
4213 resource2) != 0) {
4214 (void) no_memory(hdl);
4215 return (-1);
4216 }
4217 if (zcmd_write_src_nvlist(hdl, &zc, nvlist) != 0) {
4218 nvlist_free(nvlist);
4219 return (-1);
4220 }
4221 break;
4222 case ZFS_SMB_ACL_PURGE:
4223 break;
4224 default:
4225 return (-1);
4226 }
4227 error = ioctl(hdl->libzfs_fd, ZFS_IOC_SMB_ACL, &zc);
4228 if (nvlist)
4229 nvlist_free(nvlist);
4230 return (error);
4231 }
4232
4233 int
zfs_smb_acl_add(libzfs_handle_t * hdl,char * dataset,char * path,char * resource)4234 zfs_smb_acl_add(libzfs_handle_t *hdl, char *dataset,
4235 char *path, char *resource)
4236 {
4237 return (zfs_smb_acl_mgmt(hdl, dataset, path, ZFS_SMB_ACL_ADD,
4238 resource, NULL));
4239 }
4240
4241 int
zfs_smb_acl_remove(libzfs_handle_t * hdl,char * dataset,char * path,char * resource)4242 zfs_smb_acl_remove(libzfs_handle_t *hdl, char *dataset,
4243 char *path, char *resource)
4244 {
4245 return (zfs_smb_acl_mgmt(hdl, dataset, path, ZFS_SMB_ACL_REMOVE,
4246 resource, NULL));
4247 }
4248
4249 int
zfs_smb_acl_purge(libzfs_handle_t * hdl,char * dataset,char * path)4250 zfs_smb_acl_purge(libzfs_handle_t *hdl, char *dataset, char *path)
4251 {
4252 return (zfs_smb_acl_mgmt(hdl, dataset, path, ZFS_SMB_ACL_PURGE,
4253 NULL, NULL));
4254 }
4255
4256 int
zfs_smb_acl_rename(libzfs_handle_t * hdl,char * dataset,char * path,char * oldname,char * newname)4257 zfs_smb_acl_rename(libzfs_handle_t *hdl, char *dataset, char *path,
4258 char *oldname, char *newname)
4259 {
4260 return (zfs_smb_acl_mgmt(hdl, dataset, path, ZFS_SMB_ACL_RENAME,
4261 oldname, newname));
4262 }
4263 #endif /* sun */
4264
4265 int
zfs_userspace(zfs_handle_t * zhp,zfs_userquota_prop_t type,zfs_userspace_cb_t func,void * arg)4266 zfs_userspace(zfs_handle_t *zhp, zfs_userquota_prop_t type,
4267 zfs_userspace_cb_t func, void *arg)
4268 {
4269 zfs_cmd_t zc = { 0 };
4270 zfs_useracct_t buf[100];
4271 libzfs_handle_t *hdl = zhp->zfs_hdl;
4272 int ret;
4273
4274 (void) strlcpy(zc.zc_name, zhp->zfs_name, sizeof (zc.zc_name));
4275
4276 zc.zc_objset_type = type;
4277 zc.zc_nvlist_dst = (uintptr_t)buf;
4278
4279 for (;;) {
4280 zfs_useracct_t *zua = buf;
4281
4282 zc.zc_nvlist_dst_size = sizeof (buf);
4283 if (zfs_ioctl(hdl, ZFS_IOC_USERSPACE_MANY, &zc) != 0) {
4284 char errbuf[1024];
4285
4286 (void) snprintf(errbuf, sizeof (errbuf),
4287 dgettext(TEXT_DOMAIN,
4288 "cannot get used/quota for %s"), zc.zc_name);
4289 return (zfs_standard_error_fmt(hdl, errno, errbuf));
4290 }
4291 if (zc.zc_nvlist_dst_size == 0)
4292 break;
4293
4294 while (zc.zc_nvlist_dst_size > 0) {
4295 if ((ret = func(arg, zua->zu_domain, zua->zu_rid,
4296 zua->zu_space)) != 0)
4297 return (ret);
4298 zua++;
4299 zc.zc_nvlist_dst_size -= sizeof (zfs_useracct_t);
4300 }
4301 }
4302
4303 return (0);
4304 }
4305
4306 struct holdarg {
4307 nvlist_t *nvl;
4308 const char *snapname;
4309 const char *tag;
4310 boolean_t recursive;
4311 int error;
4312 };
4313
4314 static int
zfs_hold_one(zfs_handle_t * zhp,void * arg)4315 zfs_hold_one(zfs_handle_t *zhp, void *arg)
4316 {
4317 struct holdarg *ha = arg;
4318 char name[ZFS_MAXNAMELEN];
4319 int rv = 0;
4320
4321 (void) snprintf(name, sizeof (name),
4322 "%s@%s", zhp->zfs_name, ha->snapname);
4323
4324 if (lzc_exists(name))
4325 fnvlist_add_string(ha->nvl, name, ha->tag);
4326
4327 if (ha->recursive)
4328 rv = zfs_iter_filesystems(zhp, zfs_hold_one, ha);
4329 zfs_close(zhp);
4330 return (rv);
4331 }
4332
4333 int
zfs_hold(zfs_handle_t * zhp,const char * snapname,const char * tag,boolean_t recursive,int cleanup_fd)4334 zfs_hold(zfs_handle_t *zhp, const char *snapname, const char *tag,
4335 boolean_t recursive, int cleanup_fd)
4336 {
4337 int ret;
4338 struct holdarg ha;
4339
4340 ha.nvl = fnvlist_alloc();
4341 ha.snapname = snapname;
4342 ha.tag = tag;
4343 ha.recursive = recursive;
4344 (void) zfs_hold_one(zfs_handle_dup(zhp), &ha);
4345
4346 if (nvlist_empty(ha.nvl)) {
4347 char errbuf[1024];
4348
4349 fnvlist_free(ha.nvl);
4350 ret = ENOENT;
4351 (void) snprintf(errbuf, sizeof (errbuf),
4352 dgettext(TEXT_DOMAIN,
4353 "cannot hold snapshot '%s@%s'"),
4354 zhp->zfs_name, snapname);
4355 (void) zfs_standard_error(zhp->zfs_hdl, ret, errbuf);
4356 return (ret);
4357 }
4358
4359 ret = zfs_hold_nvl(zhp, cleanup_fd, ha.nvl);
4360 fnvlist_free(ha.nvl);
4361
4362 return (ret);
4363 }
4364
4365 int
zfs_hold_nvl(zfs_handle_t * zhp,int cleanup_fd,nvlist_t * holds)4366 zfs_hold_nvl(zfs_handle_t *zhp, int cleanup_fd, nvlist_t *holds)
4367 {
4368 int ret;
4369 nvlist_t *errors;
4370 libzfs_handle_t *hdl = zhp->zfs_hdl;
4371 char errbuf[1024];
4372 nvpair_t *elem;
4373
4374 errors = NULL;
4375 ret = lzc_hold(holds, cleanup_fd, &errors);
4376
4377 if (ret == 0) {
4378 /* There may be errors even in the success case. */
4379 fnvlist_free(errors);
4380 return (0);
4381 }
4382
4383 if (nvlist_empty(errors)) {
4384 /* no hold-specific errors */
4385 (void) snprintf(errbuf, sizeof (errbuf),
4386 dgettext(TEXT_DOMAIN, "cannot hold"));
4387 switch (ret) {
4388 case ENOTSUP:
4389 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN,
4390 "pool must be upgraded"));
4391 (void) zfs_error(hdl, EZFS_BADVERSION, errbuf);
4392 break;
4393 case EINVAL:
4394 (void) zfs_error(hdl, EZFS_BADTYPE, errbuf);
4395 break;
4396 default:
4397 (void) zfs_standard_error(hdl, ret, errbuf);
4398 }
4399 }
4400
4401 for (elem = nvlist_next_nvpair(errors, NULL);
4402 elem != NULL;
4403 elem = nvlist_next_nvpair(errors, elem)) {
4404 (void) snprintf(errbuf, sizeof (errbuf),
4405 dgettext(TEXT_DOMAIN,
4406 "cannot hold snapshot '%s'"), nvpair_name(elem));
4407 switch (fnvpair_value_int32(elem)) {
4408 case E2BIG:
4409 /*
4410 * Temporary tags wind up having the ds object id
4411 * prepended. So even if we passed the length check
4412 * above, it's still possible for the tag to wind
4413 * up being slightly too long.
4414 */
4415 (void) zfs_error(hdl, EZFS_TAGTOOLONG, errbuf);
4416 break;
4417 case EINVAL:
4418 (void) zfs_error(hdl, EZFS_BADTYPE, errbuf);
4419 break;
4420 case EEXIST:
4421 (void) zfs_error(hdl, EZFS_REFTAG_HOLD, errbuf);
4422 break;
4423 default:
4424 (void) zfs_standard_error(hdl,
4425 fnvpair_value_int32(elem), errbuf);
4426 }
4427 }
4428
4429 fnvlist_free(errors);
4430 return (ret);
4431 }
4432
4433 static int
zfs_release_one(zfs_handle_t * zhp,void * arg)4434 zfs_release_one(zfs_handle_t *zhp, void *arg)
4435 {
4436 struct holdarg *ha = arg;
4437 char name[ZFS_MAXNAMELEN];
4438 int rv = 0;
4439 nvlist_t *existing_holds;
4440
4441 (void) snprintf(name, sizeof (name),
4442 "%s@%s", zhp->zfs_name, ha->snapname);
4443
4444 if (lzc_get_holds(name, &existing_holds) != 0) {
4445 ha->error = ENOENT;
4446 } else if (!nvlist_exists(existing_holds, ha->tag)) {
4447 ha->error = ESRCH;
4448 } else {
4449 nvlist_t *torelease = fnvlist_alloc();
4450 fnvlist_add_boolean(torelease, ha->tag);
4451 fnvlist_add_nvlist(ha->nvl, name, torelease);
4452 fnvlist_free(torelease);
4453 }
4454
4455 if (ha->recursive)
4456 rv = zfs_iter_filesystems(zhp, zfs_release_one, ha);
4457 zfs_close(zhp);
4458 return (rv);
4459 }
4460
4461 int
zfs_release(zfs_handle_t * zhp,const char * snapname,const char * tag,boolean_t recursive)4462 zfs_release(zfs_handle_t *zhp, const char *snapname, const char *tag,
4463 boolean_t recursive)
4464 {
4465 int ret;
4466 struct holdarg ha;
4467 nvlist_t *errors = NULL;
4468 nvpair_t *elem;
4469 libzfs_handle_t *hdl = zhp->zfs_hdl;
4470 char errbuf[1024];
4471
4472 ha.nvl = fnvlist_alloc();
4473 ha.snapname = snapname;
4474 ha.tag = tag;
4475 ha.recursive = recursive;
4476 ha.error = 0;
4477 (void) zfs_release_one(zfs_handle_dup(zhp), &ha);
4478
4479 if (nvlist_empty(ha.nvl)) {
4480 fnvlist_free(ha.nvl);
4481 ret = ha.error;
4482 (void) snprintf(errbuf, sizeof (errbuf),
4483 dgettext(TEXT_DOMAIN,
4484 "cannot release hold from snapshot '%s@%s'"),
4485 zhp->zfs_name, snapname);
4486 if (ret == ESRCH) {
4487 (void) zfs_error(hdl, EZFS_REFTAG_RELE, errbuf);
4488 } else {
4489 (void) zfs_standard_error(hdl, ret, errbuf);
4490 }
4491 return (ret);
4492 }
4493
4494 ret = lzc_release(ha.nvl, &errors);
4495 fnvlist_free(ha.nvl);
4496
4497 if (ret == 0) {
4498 /* There may be errors even in the success case. */
4499 fnvlist_free(errors);
4500 return (0);
4501 }
4502
4503 if (nvlist_empty(errors)) {
4504 /* no hold-specific errors */
4505 (void) snprintf(errbuf, sizeof (errbuf), dgettext(TEXT_DOMAIN,
4506 "cannot release"));
4507 switch (errno) {
4508 case ENOTSUP:
4509 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN,
4510 "pool must be upgraded"));
4511 (void) zfs_error(hdl, EZFS_BADVERSION, errbuf);
4512 break;
4513 default:
4514 (void) zfs_standard_error_fmt(hdl, errno, errbuf);
4515 }
4516 }
4517
4518 for (elem = nvlist_next_nvpair(errors, NULL);
4519 elem != NULL;
4520 elem = nvlist_next_nvpair(errors, elem)) {
4521 (void) snprintf(errbuf, sizeof (errbuf),
4522 dgettext(TEXT_DOMAIN,
4523 "cannot release hold from snapshot '%s'"),
4524 nvpair_name(elem));
4525 switch (fnvpair_value_int32(elem)) {
4526 case ESRCH:
4527 (void) zfs_error(hdl, EZFS_REFTAG_RELE, errbuf);
4528 break;
4529 case EINVAL:
4530 (void) zfs_error(hdl, EZFS_BADTYPE, errbuf);
4531 break;
4532 default:
4533 (void) zfs_standard_error_fmt(hdl,
4534 fnvpair_value_int32(elem), errbuf);
4535 }
4536 }
4537
4538 fnvlist_free(errors);
4539 return (ret);
4540 }
4541
4542 int
zfs_get_fsacl(zfs_handle_t * zhp,nvlist_t ** nvl)4543 zfs_get_fsacl(zfs_handle_t *zhp, nvlist_t **nvl)
4544 {
4545 zfs_cmd_t zc = { 0 };
4546 libzfs_handle_t *hdl = zhp->zfs_hdl;
4547 int nvsz = 2048;
4548 void *nvbuf;
4549 int err = 0;
4550 char errbuf[1024];
4551
4552 assert(zhp->zfs_type == ZFS_TYPE_VOLUME ||
4553 zhp->zfs_type == ZFS_TYPE_FILESYSTEM);
4554
4555 tryagain:
4556
4557 nvbuf = malloc(nvsz);
4558 if (nvbuf == NULL) {
4559 err = (zfs_error(hdl, EZFS_NOMEM, strerror(errno)));
4560 goto out;
4561 }
4562
4563 zc.zc_nvlist_dst_size = nvsz;
4564 zc.zc_nvlist_dst = (uintptr_t)nvbuf;
4565
4566 (void) strlcpy(zc.zc_name, zhp->zfs_name, ZFS_MAXNAMELEN);
4567
4568 if (ioctl(hdl->libzfs_fd, ZFS_IOC_GET_FSACL, &zc) != 0) {
4569 (void) snprintf(errbuf, sizeof (errbuf),
4570 dgettext(TEXT_DOMAIN, "cannot get permissions on '%s'"),
4571 zc.zc_name);
4572 switch (errno) {
4573 case ENOMEM:
4574 free(nvbuf);
4575 nvsz = zc.zc_nvlist_dst_size;
4576 goto tryagain;
4577
4578 case ENOTSUP:
4579 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN,
4580 "pool must be upgraded"));
4581 err = zfs_error(hdl, EZFS_BADVERSION, errbuf);
4582 break;
4583 case EINVAL:
4584 err = zfs_error(hdl, EZFS_BADTYPE, errbuf);
4585 break;
4586 case ENOENT:
4587 err = zfs_error(hdl, EZFS_NOENT, errbuf);
4588 break;
4589 default:
4590 err = zfs_standard_error_fmt(hdl, errno, errbuf);
4591 break;
4592 }
4593 } else {
4594 /* success */
4595 int rc = nvlist_unpack(nvbuf, zc.zc_nvlist_dst_size, nvl, 0);
4596 if (rc) {
4597 (void) snprintf(errbuf, sizeof (errbuf), dgettext(
4598 TEXT_DOMAIN, "cannot get permissions on '%s'"),
4599 zc.zc_name);
4600 err = zfs_standard_error_fmt(hdl, rc, errbuf);
4601 }
4602 }
4603
4604 free(nvbuf);
4605 out:
4606 return (err);
4607 }
4608
4609 int
zfs_set_fsacl(zfs_handle_t * zhp,boolean_t un,nvlist_t * nvl)4610 zfs_set_fsacl(zfs_handle_t *zhp, boolean_t un, nvlist_t *nvl)
4611 {
4612 zfs_cmd_t zc = { 0 };
4613 libzfs_handle_t *hdl = zhp->zfs_hdl;
4614 char *nvbuf;
4615 char errbuf[1024];
4616 size_t nvsz;
4617 int err;
4618
4619 assert(zhp->zfs_type == ZFS_TYPE_VOLUME ||
4620 zhp->zfs_type == ZFS_TYPE_FILESYSTEM);
4621
4622 err = nvlist_size(nvl, &nvsz, NV_ENCODE_NATIVE);
4623 assert(err == 0);
4624
4625 nvbuf = malloc(nvsz);
4626
4627 err = nvlist_pack(nvl, &nvbuf, &nvsz, NV_ENCODE_NATIVE, 0);
4628 assert(err == 0);
4629
4630 zc.zc_nvlist_src_size = nvsz;
4631 zc.zc_nvlist_src = (uintptr_t)nvbuf;
4632 zc.zc_perm_action = un;
4633
4634 (void) strlcpy(zc.zc_name, zhp->zfs_name, sizeof (zc.zc_name));
4635
4636 if (zfs_ioctl(hdl, ZFS_IOC_SET_FSACL, &zc) != 0) {
4637 (void) snprintf(errbuf, sizeof (errbuf),
4638 dgettext(TEXT_DOMAIN, "cannot set permissions on '%s'"),
4639 zc.zc_name);
4640 switch (errno) {
4641 case ENOTSUP:
4642 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN,
4643 "pool must be upgraded"));
4644 err = zfs_error(hdl, EZFS_BADVERSION, errbuf);
4645 break;
4646 case EINVAL:
4647 err = zfs_error(hdl, EZFS_BADTYPE, errbuf);
4648 break;
4649 case ENOENT:
4650 err = zfs_error(hdl, EZFS_NOENT, errbuf);
4651 break;
4652 default:
4653 err = zfs_standard_error_fmt(hdl, errno, errbuf);
4654 break;
4655 }
4656 }
4657
4658 free(nvbuf);
4659
4660 return (err);
4661 }
4662
4663 int
zfs_get_holds(zfs_handle_t * zhp,nvlist_t ** nvl)4664 zfs_get_holds(zfs_handle_t *zhp, nvlist_t **nvl)
4665 {
4666 int err;
4667 char errbuf[1024];
4668
4669 err = lzc_get_holds(zhp->zfs_name, nvl);
4670
4671 if (err != 0) {
4672 libzfs_handle_t *hdl = zhp->zfs_hdl;
4673
4674 (void) snprintf(errbuf, sizeof (errbuf),
4675 dgettext(TEXT_DOMAIN, "cannot get holds for '%s'"),
4676 zhp->zfs_name);
4677 switch (err) {
4678 case ENOTSUP:
4679 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN,
4680 "pool must be upgraded"));
4681 err = zfs_error(hdl, EZFS_BADVERSION, errbuf);
4682 break;
4683 case EINVAL:
4684 err = zfs_error(hdl, EZFS_BADTYPE, errbuf);
4685 break;
4686 case ENOENT:
4687 err = zfs_error(hdl, EZFS_NOENT, errbuf);
4688 break;
4689 default:
4690 err = zfs_standard_error_fmt(hdl, errno, errbuf);
4691 break;
4692 }
4693 }
4694
4695 return (err);
4696 }
4697
4698 /*
4699 * Convert the zvol's volume size to an appropriate reservation.
4700 * Note: If this routine is updated, it is necessary to update the ZFS test
4701 * suite's shell version in reservation.kshlib.
4702 */
4703 uint64_t
zvol_volsize_to_reservation(uint64_t volsize,nvlist_t * props)4704 zvol_volsize_to_reservation(uint64_t volsize, nvlist_t *props)
4705 {
4706 uint64_t numdb;
4707 uint64_t nblocks, volblocksize;
4708 int ncopies;
4709 char *strval;
4710
4711 if (nvlist_lookup_string(props,
4712 zfs_prop_to_name(ZFS_PROP_COPIES), &strval) == 0)
4713 ncopies = atoi(strval);
4714 else
4715 ncopies = 1;
4716 if (nvlist_lookup_uint64(props,
4717 zfs_prop_to_name(ZFS_PROP_VOLBLOCKSIZE),
4718 &volblocksize) != 0)
4719 volblocksize = ZVOL_DEFAULT_BLOCKSIZE;
4720 nblocks = volsize/volblocksize;
4721 /* start with metadnode L0-L6 */
4722 numdb = 7;
4723 /* calculate number of indirects */
4724 while (nblocks > 1) {
4725 nblocks += DNODES_PER_LEVEL - 1;
4726 nblocks /= DNODES_PER_LEVEL;
4727 numdb += nblocks;
4728 }
4729 numdb *= MIN(SPA_DVAS_PER_BP, ncopies + 1);
4730 volsize *= ncopies;
4731 /*
4732 * this is exactly DN_MAX_INDBLKSHIFT when metadata isn't
4733 * compressed, but in practice they compress down to about
4734 * 1100 bytes
4735 */
4736 numdb *= 1ULL << DN_MAX_INDBLKSHIFT;
4737 volsize += numdb;
4738 return (volsize);
4739 }
4740
4741 /*
4742 * Attach/detach the given filesystem to/from the given jail.
4743 */
4744 int
zfs_jail(zfs_handle_t * zhp,int jailid,int attach)4745 zfs_jail(zfs_handle_t *zhp, int jailid, int attach)
4746 {
4747 libzfs_handle_t *hdl = zhp->zfs_hdl;
4748 zfs_cmd_t zc = { 0 };
4749 char errbuf[1024];
4750 unsigned long cmd;
4751 int ret;
4752
4753 if (attach) {
4754 (void) snprintf(errbuf, sizeof (errbuf),
4755 dgettext(TEXT_DOMAIN, "cannot jail '%s'"), zhp->zfs_name);
4756 } else {
4757 (void) snprintf(errbuf, sizeof (errbuf),
4758 dgettext(TEXT_DOMAIN, "cannot unjail '%s'"), zhp->zfs_name);
4759 }
4760
4761 switch (zhp->zfs_type) {
4762 case ZFS_TYPE_VOLUME:
4763 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN,
4764 "volumes can not be jailed"));
4765 return (zfs_error(hdl, EZFS_BADTYPE, errbuf));
4766 case ZFS_TYPE_SNAPSHOT:
4767 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN,
4768 "snapshots can not be jailed"));
4769 return (zfs_error(hdl, EZFS_BADTYPE, errbuf));
4770 }
4771 assert(zhp->zfs_type == ZFS_TYPE_FILESYSTEM);
4772
4773 (void) strlcpy(zc.zc_name, zhp->zfs_name, sizeof (zc.zc_name));
4774 zc.zc_objset_type = DMU_OST_ZFS;
4775 zc.zc_jailid = jailid;
4776
4777 cmd = attach ? ZFS_IOC_JAIL : ZFS_IOC_UNJAIL;
4778 if ((ret = ioctl(hdl->libzfs_fd, cmd, &zc)) != 0)
4779 zfs_standard_error(hdl, errno, errbuf);
4780
4781 return (ret);
4782 }
4783