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 2007 Sun Microsystems, Inc. All rights reserved. 24 * Use is subject to license terms. 25 */ 26 27 #pragma ident "%Z%%M% %I% %E% SMI" 28 29 #include <libintl.h> 30 #include <libuutil.h> 31 #include <stddef.h> 32 #include <stdlib.h> 33 #include <string.h> 34 #include <unistd.h> 35 #include <zone.h> 36 37 #include <libzfs.h> 38 39 #include "libzfs_impl.h" 40 41 /* 42 * Structure to keep track of dataset state. Before changing the 'sharenfs' or 43 * 'mountpoint' property, we record whether the filesystem was previously 44 * mounted/shared. This prior state dictates whether we remount/reshare the 45 * dataset after the property has been changed. 46 * 47 * The interface consists of the following sequence of functions: 48 * 49 * changelist_gather() 50 * changelist_prefix() 51 * < change property > 52 * changelist_postfix() 53 * changelist_free() 54 * 55 * Other interfaces: 56 * 57 * changelist_remove() - remove a node from a gathered list 58 * changelist_rename() - renames all datasets appropriately when doing a rename 59 * changelist_unshare() - unshares all the nodes in a given changelist 60 * changelist_haszonedchild() - check if there is any child exported to 61 * a local zone 62 */ 63 typedef struct prop_changenode { 64 zfs_handle_t *cn_handle; 65 int cn_shared; 66 int cn_mounted; 67 int cn_zoned; 68 uu_list_node_t cn_listnode; 69 } prop_changenode_t; 70 71 struct prop_changelist { 72 zfs_prop_t cl_prop; 73 zfs_prop_t cl_realprop; 74 uu_list_pool_t *cl_pool; 75 uu_list_t *cl_list; 76 boolean_t cl_waslegacy; 77 boolean_t cl_allchildren; 78 boolean_t cl_alldependents; 79 int cl_flags; 80 boolean_t cl_haszonedchild; 81 boolean_t cl_sorted; 82 }; 83 84 /* 85 * If the property is 'mountpoint', go through and unmount filesystems as 86 * necessary. We don't do the same for 'sharenfs', because we can just re-share 87 * with different options without interrupting service. 88 */ 89 int 90 changelist_prefix(prop_changelist_t *clp) 91 { 92 prop_changenode_t *cn; 93 int ret = 0; 94 95 if (clp->cl_prop != ZFS_PROP_MOUNTPOINT) 96 return (0); 97 98 for (cn = uu_list_first(clp->cl_list); cn != NULL; 99 cn = uu_list_next(clp->cl_list, cn)) { 100 /* 101 * If we are in the global zone, but this dataset is exported 102 * to a local zone, do nothing. 103 */ 104 if (getzoneid() == GLOBAL_ZONEID && cn->cn_zoned) 105 continue; 106 107 if (ZFS_IS_VOLUME(cn->cn_handle)) { 108 switch (clp->cl_realprop) { 109 case ZFS_PROP_NAME: 110 /* 111 * If this was a rename, unshare the zvol, and 112 * remove the /dev/zvol links. 113 */ 114 (void) zfs_unshare_iscsi(cn->cn_handle); 115 116 if (zvol_remove_link(cn->cn_handle->zfs_hdl, 117 cn->cn_handle->zfs_name) != 0) 118 ret = -1; 119 break; 120 121 case ZFS_PROP_VOLSIZE: 122 /* 123 * If this was a change to the volume size, we 124 * need to unshare and reshare the volume. 125 */ 126 (void) zfs_unshare_iscsi(cn->cn_handle); 127 break; 128 } 129 } else if (zfs_unmount(cn->cn_handle, NULL, 130 clp->cl_flags) != 0) { 131 ret = -1; 132 } 133 } 134 135 return (ret); 136 } 137 138 /* 139 * If the property is 'mountpoint' or 'sharenfs', go through and remount and/or 140 * reshare the filesystems as necessary. In changelist_gather() we recorded 141 * whether the filesystem was previously shared or mounted. The action we take 142 * depends on the previous state, and whether the value was previously 'legacy'. 143 * For non-legacy properties, we only remount/reshare the filesystem if it was 144 * previously mounted/shared. Otherwise, we always remount/reshare the 145 * filesystem. 146 */ 147 int 148 changelist_postfix(prop_changelist_t *clp) 149 { 150 prop_changenode_t *cn; 151 char shareopts[ZFS_MAXPROPLEN]; 152 int ret = 0; 153 libzfs_handle_t *hdl; 154 155 /* 156 * If we're changing the mountpoint, attempt to destroy the underlying 157 * mountpoint. All other datasets will have inherited from this dataset 158 * (in which case their mountpoints exist in the filesystem in the new 159 * location), or have explicit mountpoints set (in which case they won't 160 * be in the changelist). 161 */ 162 if ((cn = uu_list_last(clp->cl_list)) == NULL) 163 return (0); 164 165 if (clp->cl_prop == ZFS_PROP_MOUNTPOINT) 166 remove_mountpoint(cn->cn_handle); 167 168 /* 169 * It is possible that the changelist_prefix() used libshare 170 * to unshare some entries. Since libshare caches data, an 171 * attempt to reshare during postfix can fail unless libshare 172 * is uninitialized here so that it will reinitialize later. 173 */ 174 if (cn->cn_handle != NULL) { 175 hdl = cn->cn_handle->zfs_hdl; 176 assert(hdl != NULL); 177 zfs_uninit_libshare(hdl); 178 } 179 180 /* 181 * We walk the datasets in reverse, because we want to mount any parent 182 * datasets before mounting the children. 183 */ 184 for (cn = uu_list_last(clp->cl_list); cn != NULL; 185 cn = uu_list_prev(clp->cl_list, cn)) { 186 187 boolean_t sharenfs; 188 189 /* 190 * If we are in the global zone, but this dataset is exported 191 * to a local zone, do nothing. 192 */ 193 if (getzoneid() == GLOBAL_ZONEID && cn->cn_zoned) 194 continue; 195 196 zfs_refresh_properties(cn->cn_handle); 197 198 if (ZFS_IS_VOLUME(cn->cn_handle)) { 199 /* 200 * If we're doing a rename, recreate the /dev/zvol 201 * links. 202 */ 203 if (clp->cl_realprop == ZFS_PROP_NAME && 204 zvol_create_link(cn->cn_handle->zfs_hdl, 205 cn->cn_handle->zfs_name) != 0) { 206 ret = -1; 207 } else if (cn->cn_shared || 208 clp->cl_prop == ZFS_PROP_SHAREISCSI) { 209 if (zfs_prop_get(cn->cn_handle, 210 ZFS_PROP_SHAREISCSI, shareopts, 211 sizeof (shareopts), NULL, NULL, 0, 212 B_FALSE) == 0 && 213 strcmp(shareopts, "off") == 0) { 214 ret = zfs_unshare_iscsi(cn->cn_handle); 215 } else { 216 ret = zfs_share_iscsi(cn->cn_handle); 217 } 218 } 219 220 continue; 221 } 222 223 /* 224 * Remount if previously mounted or mountpoint was legacy, 225 * or sharenfs property is set. 226 */ 227 sharenfs = ((zfs_prop_get(cn->cn_handle, ZFS_PROP_SHARENFS, 228 shareopts, sizeof (shareopts), NULL, NULL, 0, 229 B_FALSE) == 0) && (strcmp(shareopts, "off") != 0)); 230 231 if ((cn->cn_mounted || clp->cl_waslegacy || sharenfs) && 232 !zfs_is_mounted(cn->cn_handle, NULL) && 233 zfs_mount(cn->cn_handle, NULL, 0) != 0) 234 ret = -1; 235 236 /* 237 * We always re-share even if the filesystem is currently 238 * shared, so that we can adopt any new options. 239 */ 240 if (cn->cn_shared || clp->cl_waslegacy || sharenfs) { 241 if (sharenfs) 242 ret = zfs_share_nfs(cn->cn_handle); 243 else 244 ret = zfs_unshare_nfs(cn->cn_handle, NULL); 245 } 246 } 247 248 return (ret); 249 } 250 251 /* 252 * Is this "dataset" a child of "parent"? 253 */ 254 static boolean_t 255 isa_child_of(const char *dataset, const char *parent) 256 { 257 int len; 258 259 len = strlen(parent); 260 261 if (strncmp(dataset, parent, len) == 0 && 262 (dataset[len] == '@' || dataset[len] == '/' || 263 dataset[len] == '\0')) 264 return (B_TRUE); 265 else 266 return (B_FALSE); 267 268 } 269 270 /* 271 * If we rename a filesystem, child filesystem handles are no longer valid 272 * since we identify each dataset by its name in the ZFS namespace. As a 273 * result, we have to go through and fix up all the names appropriately. We 274 * could do this automatically if libzfs kept track of all open handles, but 275 * this is a lot less work. 276 */ 277 void 278 changelist_rename(prop_changelist_t *clp, const char *src, const char *dst) 279 { 280 prop_changenode_t *cn; 281 char newname[ZFS_MAXNAMELEN]; 282 283 for (cn = uu_list_first(clp->cl_list); cn != NULL; 284 cn = uu_list_next(clp->cl_list, cn)) { 285 /* 286 * Do not rename a clone that's not in the source hierarchy. 287 */ 288 if (!isa_child_of(cn->cn_handle->zfs_name, src)) 289 continue; 290 291 /* 292 * Destroy the previous mountpoint if needed. 293 */ 294 remove_mountpoint(cn->cn_handle); 295 296 (void) strlcpy(newname, dst, sizeof (newname)); 297 (void) strcat(newname, cn->cn_handle->zfs_name + strlen(src)); 298 299 (void) strlcpy(cn->cn_handle->zfs_name, newname, 300 sizeof (cn->cn_handle->zfs_name)); 301 } 302 } 303 304 /* 305 * Given a gathered changelist for the 'sharenfs' property, unshare all the 306 * datasets in the list. 307 */ 308 int 309 changelist_unshare(prop_changelist_t *clp) 310 { 311 prop_changenode_t *cn; 312 int ret = 0; 313 314 if (clp->cl_prop != ZFS_PROP_SHARENFS) 315 return (0); 316 317 for (cn = uu_list_first(clp->cl_list); cn != NULL; 318 cn = uu_list_next(clp->cl_list, cn)) { 319 if (zfs_unshare_nfs(cn->cn_handle, NULL) != 0) 320 ret = -1; 321 } 322 323 return (ret); 324 } 325 326 /* 327 * Check if there is any child exported to a local zone in a given changelist. 328 * This information has already been recorded while gathering the changelist 329 * via changelist_gather(). 330 */ 331 int 332 changelist_haszonedchild(prop_changelist_t *clp) 333 { 334 return (clp->cl_haszonedchild); 335 } 336 337 /* 338 * Remove a node from a gathered list. 339 */ 340 void 341 changelist_remove(zfs_handle_t *zhp, prop_changelist_t *clp) 342 { 343 prop_changenode_t *cn; 344 345 for (cn = uu_list_first(clp->cl_list); cn != NULL; 346 cn = uu_list_next(clp->cl_list, cn)) { 347 348 if (strcmp(cn->cn_handle->zfs_name, zhp->zfs_name) == 0) { 349 uu_list_remove(clp->cl_list, cn); 350 zfs_close(cn->cn_handle); 351 free(cn); 352 return; 353 } 354 } 355 } 356 357 /* 358 * Release any memory associated with a changelist. 359 */ 360 void 361 changelist_free(prop_changelist_t *clp) 362 { 363 prop_changenode_t *cn; 364 void *cookie; 365 366 if (clp->cl_list) { 367 cookie = NULL; 368 while ((cn = uu_list_teardown(clp->cl_list, &cookie)) != NULL) { 369 zfs_close(cn->cn_handle); 370 free(cn); 371 } 372 373 uu_list_destroy(clp->cl_list); 374 } 375 if (clp->cl_pool) 376 uu_list_pool_destroy(clp->cl_pool); 377 378 free(clp); 379 } 380 381 static int 382 change_one(zfs_handle_t *zhp, void *data) 383 { 384 prop_changelist_t *clp = data; 385 char property[ZFS_MAXPROPLEN]; 386 char where[64]; 387 prop_changenode_t *cn; 388 zfs_source_t sourcetype; 389 390 /* 391 * We only want to unmount/unshare those filesystems that may inherit 392 * from the target filesystem. If we find any filesystem with a 393 * locally set mountpoint, we ignore any children since changing the 394 * property will not affect them. If this is a rename, we iterate 395 * over all children regardless, since we need them unmounted in 396 * order to do the rename. Also, if this is a volume and we're doing 397 * a rename, then always add it to the changelist. 398 */ 399 400 if (!(ZFS_IS_VOLUME(zhp) && clp->cl_realprop == ZFS_PROP_NAME) && 401 zfs_prop_get(zhp, clp->cl_prop, property, 402 sizeof (property), &sourcetype, where, sizeof (where), 403 B_FALSE) != 0) { 404 zfs_close(zhp); 405 return (0); 406 } 407 408 if (clp->cl_alldependents || clp->cl_allchildren || 409 sourcetype == ZFS_SRC_DEFAULT || sourcetype == ZFS_SRC_INHERITED) { 410 if ((cn = zfs_alloc(zfs_get_handle(zhp), 411 sizeof (prop_changenode_t))) == NULL) { 412 zfs_close(zhp); 413 return (-1); 414 } 415 416 cn->cn_handle = zhp; 417 cn->cn_mounted = zfs_is_mounted(zhp, NULL); 418 cn->cn_shared = zfs_is_shared(zhp); 419 cn->cn_zoned = zfs_prop_get_int(zhp, ZFS_PROP_ZONED); 420 421 /* Indicate if any child is exported to a local zone. */ 422 if (getzoneid() == GLOBAL_ZONEID && cn->cn_zoned) 423 clp->cl_haszonedchild = B_TRUE; 424 425 uu_list_node_init(cn, &cn->cn_listnode, clp->cl_pool); 426 427 if (clp->cl_sorted) { 428 uu_list_index_t idx; 429 430 (void) uu_list_find(clp->cl_list, cn, NULL, 431 &idx); 432 uu_list_insert(clp->cl_list, cn, idx); 433 } else { 434 ASSERT(!clp->cl_alldependents); 435 verify(uu_list_insert_before(clp->cl_list, 436 uu_list_first(clp->cl_list), cn) == 0); 437 } 438 439 if (!clp->cl_alldependents) 440 return (zfs_iter_children(zhp, change_one, data)); 441 } else { 442 zfs_close(zhp); 443 } 444 445 return (0); 446 } 447 448 /*ARGSUSED*/ 449 static int 450 compare_mountpoints(const void *a, const void *b, void *unused) 451 { 452 const prop_changenode_t *ca = a; 453 const prop_changenode_t *cb = b; 454 455 char mounta[MAXPATHLEN]; 456 char mountb[MAXPATHLEN]; 457 458 boolean_t hasmounta, hasmountb; 459 460 /* 461 * When unsharing or unmounting filesystems, we need to do it in 462 * mountpoint order. This allows the user to have a mountpoint 463 * hierarchy that is different from the dataset hierarchy, and still 464 * allow it to be changed. However, if either dataset doesn't have a 465 * mountpoint (because it is a volume or a snapshot), we place it at the 466 * end of the list, because it doesn't affect our change at all. 467 */ 468 hasmounta = (zfs_prop_get(ca->cn_handle, ZFS_PROP_MOUNTPOINT, mounta, 469 sizeof (mounta), NULL, NULL, 0, B_FALSE) == 0); 470 hasmountb = (zfs_prop_get(cb->cn_handle, ZFS_PROP_MOUNTPOINT, mountb, 471 sizeof (mountb), NULL, NULL, 0, B_FALSE) == 0); 472 473 if (!hasmounta && hasmountb) 474 return (-1); 475 else if (hasmounta && !hasmountb) 476 return (1); 477 else if (!hasmounta && !hasmountb) 478 return (0); 479 else 480 return (strcmp(mountb, mounta)); 481 } 482 483 /* 484 * Given a ZFS handle and a property, construct a complete list of datasets 485 * that need to be modified as part of this process. For anything but the 486 * 'mountpoint' and 'sharenfs' properties, this just returns an empty list. 487 * Otherwise, we iterate over all children and look for any datasets that 488 * inherit the property. For each such dataset, we add it to the list and 489 * mark whether it was shared beforehand. 490 */ 491 prop_changelist_t * 492 changelist_gather(zfs_handle_t *zhp, zfs_prop_t prop, int flags) 493 { 494 prop_changelist_t *clp; 495 prop_changenode_t *cn; 496 zfs_handle_t *temp; 497 char property[ZFS_MAXPROPLEN]; 498 uu_compare_fn_t *compare = NULL; 499 500 if ((clp = zfs_alloc(zhp->zfs_hdl, sizeof (prop_changelist_t))) == NULL) 501 return (NULL); 502 503 /* 504 * For mountpoint-related tasks, we want to sort everything by 505 * mountpoint, so that we mount and unmount them in the appropriate 506 * order, regardless of their position in the hierarchy. 507 */ 508 if (prop == ZFS_PROP_NAME || prop == ZFS_PROP_ZONED || 509 prop == ZFS_PROP_MOUNTPOINT || prop == ZFS_PROP_SHARENFS) { 510 compare = compare_mountpoints; 511 clp->cl_sorted = B_TRUE; 512 } 513 514 clp->cl_pool = uu_list_pool_create("changelist_pool", 515 sizeof (prop_changenode_t), 516 offsetof(prop_changenode_t, cn_listnode), 517 compare, 0); 518 if (clp->cl_pool == NULL) { 519 assert(uu_error() == UU_ERROR_NO_MEMORY); 520 (void) zfs_error(zhp->zfs_hdl, EZFS_NOMEM, "internal error"); 521 changelist_free(clp); 522 return (NULL); 523 } 524 525 clp->cl_list = uu_list_create(clp->cl_pool, NULL, 526 clp->cl_sorted ? UU_LIST_SORTED : 0); 527 clp->cl_flags = flags; 528 529 if (clp->cl_list == NULL) { 530 assert(uu_error() == UU_ERROR_NO_MEMORY); 531 (void) zfs_error(zhp->zfs_hdl, EZFS_NOMEM, "internal error"); 532 changelist_free(clp); 533 return (NULL); 534 } 535 536 /* 537 * If this is a rename or the 'zoned' property, we pretend we're 538 * changing the mountpoint and flag it so we can catch all children in 539 * change_one(). 540 * 541 * Flag cl_alldependents to catch all children plus the dependents 542 * (clones) that are not in the hierarchy. 543 */ 544 if (prop == ZFS_PROP_NAME) { 545 clp->cl_prop = ZFS_PROP_MOUNTPOINT; 546 clp->cl_alldependents = B_TRUE; 547 } else if (prop == ZFS_PROP_ZONED) { 548 clp->cl_prop = ZFS_PROP_MOUNTPOINT; 549 clp->cl_allchildren = B_TRUE; 550 } else if (prop == ZFS_PROP_CANMOUNT) { 551 clp->cl_prop = ZFS_PROP_MOUNTPOINT; 552 } else if (prop == ZFS_PROP_VOLSIZE) { 553 clp->cl_prop = ZFS_PROP_MOUNTPOINT; 554 } else if (prop == ZFS_PROP_VERSION) { 555 clp->cl_prop = ZFS_PROP_MOUNTPOINT; 556 } else { 557 clp->cl_prop = prop; 558 } 559 clp->cl_realprop = prop; 560 561 if (clp->cl_prop != ZFS_PROP_MOUNTPOINT && 562 clp->cl_prop != ZFS_PROP_SHARENFS && 563 clp->cl_prop != ZFS_PROP_SHAREISCSI) 564 return (clp); 565 566 if (clp->cl_alldependents) { 567 if (zfs_iter_dependents(zhp, B_TRUE, change_one, clp) != 0) { 568 changelist_free(clp); 569 return (NULL); 570 } 571 } else if (zfs_iter_children(zhp, change_one, clp) != 0) { 572 changelist_free(clp); 573 return (NULL); 574 } 575 576 /* 577 * We have to re-open ourselves because we auto-close all the handles 578 * and can't tell the difference. 579 */ 580 if ((temp = zfs_open(zhp->zfs_hdl, zfs_get_name(zhp), 581 ZFS_TYPE_ANY)) == NULL) { 582 changelist_free(clp); 583 return (NULL); 584 } 585 586 /* 587 * Always add ourself to the list. We add ourselves to the end so that 588 * we're the last to be unmounted. 589 */ 590 if ((cn = zfs_alloc(zhp->zfs_hdl, 591 sizeof (prop_changenode_t))) == NULL) { 592 zfs_close(temp); 593 changelist_free(clp); 594 return (NULL); 595 } 596 597 cn->cn_handle = temp; 598 cn->cn_mounted = zfs_is_mounted(temp, NULL); 599 cn->cn_shared = zfs_is_shared(temp); 600 cn->cn_zoned = zfs_prop_get_int(zhp, ZFS_PROP_ZONED); 601 602 uu_list_node_init(cn, &cn->cn_listnode, clp->cl_pool); 603 if (clp->cl_sorted) { 604 uu_list_index_t idx; 605 (void) uu_list_find(clp->cl_list, cn, NULL, &idx); 606 uu_list_insert(clp->cl_list, cn, idx); 607 } else { 608 verify(uu_list_insert_after(clp->cl_list, 609 uu_list_last(clp->cl_list), cn) == 0); 610 } 611 612 /* 613 * If the mountpoint property was previously 'legacy', or 'none', 614 * record it as the behavior of changelist_postfix() will be different. 615 */ 616 if ((clp->cl_prop == ZFS_PROP_MOUNTPOINT) && 617 (zfs_prop_get(zhp, prop, property, sizeof (property), 618 NULL, NULL, 0, B_FALSE) == 0 && 619 (strcmp(property, "legacy") == 0 || strcmp(property, "none") == 0))) 620 clp->cl_waslegacy = B_TRUE; 621 622 return (clp); 623 } 624