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 2009 Sun Microsystems, Inc. All rights reserved. 24 * Use is subject to license terms. 25 */ 26 27 #include <assert.h> 28 #include <ctype.h> 29 #include <errno.h> 30 #include <libgen.h> 31 #include <libintl.h> 32 #include <libuutil.h> 33 #include <libnvpair.h> 34 #include <locale.h> 35 #include <stddef.h> 36 #include <stdio.h> 37 #include <stdlib.h> 38 #include <strings.h> 39 #include <unistd.h> 40 #include <fcntl.h> 41 #include <zone.h> 42 #include <grp.h> 43 #include <pwd.h> 44 #include <sys/mkdev.h> 45 #include <sys/mntent.h> 46 #include <sys/mnttab.h> 47 #include <sys/mount.h> 48 #include <sys/stat.h> 49 #include <sys/fs/zfs.h> 50 51 #include <libzfs.h> 52 #include <libuutil.h> 53 54 #include "zfs_iter.h" 55 #include "zfs_util.h" 56 57 libzfs_handle_t *g_zfs; 58 59 static FILE *mnttab_file; 60 static char history_str[HIS_MAX_RECORD_LEN]; 61 const char *pypath = "/usr/lib/zfs/pyzfs.py"; 62 63 static int zfs_do_clone(int argc, char **argv); 64 static int zfs_do_create(int argc, char **argv); 65 static int zfs_do_destroy(int argc, char **argv); 66 static int zfs_do_get(int argc, char **argv); 67 static int zfs_do_inherit(int argc, char **argv); 68 static int zfs_do_list(int argc, char **argv); 69 static int zfs_do_mount(int argc, char **argv); 70 static int zfs_do_rename(int argc, char **argv); 71 static int zfs_do_rollback(int argc, char **argv); 72 static int zfs_do_set(int argc, char **argv); 73 static int zfs_do_upgrade(int argc, char **argv); 74 static int zfs_do_snapshot(int argc, char **argv); 75 static int zfs_do_unmount(int argc, char **argv); 76 static int zfs_do_share(int argc, char **argv); 77 static int zfs_do_unshare(int argc, char **argv); 78 static int zfs_do_send(int argc, char **argv); 79 static int zfs_do_receive(int argc, char **argv); 80 static int zfs_do_promote(int argc, char **argv); 81 static int zfs_do_userspace(int argc, char **argv); 82 static int zfs_do_python(int argc, char **argv); 83 84 /* 85 * Enable a reasonable set of defaults for libumem debugging on DEBUG builds. 86 */ 87 88 #ifdef DEBUG 89 const char * 90 _umem_debug_init(void) 91 { 92 return ("default,verbose"); /* $UMEM_DEBUG setting */ 93 } 94 95 const char * 96 _umem_logging_init(void) 97 { 98 return ("fail,contents"); /* $UMEM_LOGGING setting */ 99 } 100 #endif 101 102 typedef enum { 103 HELP_CLONE, 104 HELP_CREATE, 105 HELP_DESTROY, 106 HELP_GET, 107 HELP_INHERIT, 108 HELP_UPGRADE, 109 HELP_LIST, 110 HELP_MOUNT, 111 HELP_PROMOTE, 112 HELP_RECEIVE, 113 HELP_RENAME, 114 HELP_ROLLBACK, 115 HELP_SEND, 116 HELP_SET, 117 HELP_SHARE, 118 HELP_SNAPSHOT, 119 HELP_UNMOUNT, 120 HELP_UNSHARE, 121 HELP_ALLOW, 122 HELP_UNALLOW, 123 HELP_USERSPACE, 124 HELP_GROUPSPACE 125 } zfs_help_t; 126 127 typedef struct zfs_command { 128 const char *name; 129 int (*func)(int argc, char **argv); 130 zfs_help_t usage; 131 } zfs_command_t; 132 133 /* 134 * Master command table. Each ZFS command has a name, associated function, and 135 * usage message. The usage messages need to be internationalized, so we have 136 * to have a function to return the usage message based on a command index. 137 * 138 * These commands are organized according to how they are displayed in the usage 139 * message. An empty command (one with a NULL name) indicates an empty line in 140 * the generic usage message. 141 */ 142 static zfs_command_t command_table[] = { 143 { "create", zfs_do_create, HELP_CREATE }, 144 { "destroy", zfs_do_destroy, HELP_DESTROY }, 145 { NULL }, 146 { "snapshot", zfs_do_snapshot, HELP_SNAPSHOT }, 147 { "rollback", zfs_do_rollback, HELP_ROLLBACK }, 148 { "clone", zfs_do_clone, HELP_CLONE }, 149 { "promote", zfs_do_promote, HELP_PROMOTE }, 150 { "rename", zfs_do_rename, HELP_RENAME }, 151 { NULL }, 152 { "list", zfs_do_list, HELP_LIST }, 153 { NULL }, 154 { "set", zfs_do_set, HELP_SET }, 155 { "get", zfs_do_get, HELP_GET }, 156 { "inherit", zfs_do_inherit, HELP_INHERIT }, 157 { "upgrade", zfs_do_upgrade, HELP_UPGRADE }, 158 { "userspace", zfs_do_userspace, HELP_USERSPACE }, 159 { "groupspace", zfs_do_userspace, HELP_GROUPSPACE }, 160 { NULL }, 161 { "mount", zfs_do_mount, HELP_MOUNT }, 162 { "unmount", zfs_do_unmount, HELP_UNMOUNT }, 163 { "share", zfs_do_share, HELP_SHARE }, 164 { "unshare", zfs_do_unshare, HELP_UNSHARE }, 165 { NULL }, 166 { "send", zfs_do_send, HELP_SEND }, 167 { "receive", zfs_do_receive, HELP_RECEIVE }, 168 { NULL }, 169 { "allow", zfs_do_python, HELP_ALLOW }, 170 { NULL }, 171 { "unallow", zfs_do_python, HELP_UNALLOW }, 172 }; 173 174 #define NCOMMAND (sizeof (command_table) / sizeof (command_table[0])) 175 176 zfs_command_t *current_command; 177 178 static const char * 179 get_usage(zfs_help_t idx) 180 { 181 switch (idx) { 182 case HELP_CLONE: 183 return (gettext("\tclone [-p] [-o property=value] ... " 184 "<snapshot> <filesystem|volume>\n")); 185 case HELP_CREATE: 186 return (gettext("\tcreate [-p] [-o property=value] ... " 187 "<filesystem>\n" 188 "\tcreate [-ps] [-b blocksize] [-o property=value] ... " 189 "-V <size> <volume>\n")); 190 case HELP_DESTROY: 191 return (gettext("\tdestroy [-rRf] " 192 "<filesystem|volume|snapshot>\n")); 193 case HELP_GET: 194 return (gettext("\tget [-rHp] [-d max] " 195 "[-o field[,...]] [-s source[,...]]\n" 196 "\t <\"all\" | property[,...]> " 197 "[filesystem|volume|snapshot] ...\n")); 198 case HELP_INHERIT: 199 return (gettext("\tinherit [-r] <property> " 200 "<filesystem|volume|snapshot> ...\n")); 201 case HELP_UPGRADE: 202 return (gettext("\tupgrade [-v]\n" 203 "\tupgrade [-r] [-V version] <-a | filesystem ...>\n")); 204 case HELP_LIST: 205 return (gettext("\tlist [-rH][-d max] " 206 "[-o property[,...]] [-t type[,...]] [-s property] ...\n" 207 "\t [-S property] ... " 208 "[filesystem|volume|snapshot] ...\n")); 209 case HELP_MOUNT: 210 return (gettext("\tmount\n" 211 "\tmount [-vO] [-o opts] <-a | filesystem>\n")); 212 case HELP_PROMOTE: 213 return (gettext("\tpromote <clone-filesystem>\n")); 214 case HELP_RECEIVE: 215 return (gettext("\treceive [-vnF] <filesystem|volume|" 216 "snapshot>\n" 217 "\treceive [-vnF] -d <filesystem>\n")); 218 case HELP_RENAME: 219 return (gettext("\trename <filesystem|volume|snapshot> " 220 "<filesystem|volume|snapshot>\n" 221 "\trename -p <filesystem|volume> <filesystem|volume>\n" 222 "\trename -r <snapshot> <snapshot>")); 223 case HELP_ROLLBACK: 224 return (gettext("\trollback [-rRf] <snapshot>\n")); 225 case HELP_SEND: 226 return (gettext("\tsend [-R] [-[iI] snapshot] <snapshot>\n")); 227 case HELP_SET: 228 return (gettext("\tset <property=value> " 229 "<filesystem|volume|snapshot> ...\n")); 230 case HELP_SHARE: 231 return (gettext("\tshare <-a | filesystem>\n")); 232 case HELP_SNAPSHOT: 233 return (gettext("\tsnapshot [-r] [-o property=value] ... " 234 "<filesystem@snapname|volume@snapname>\n")); 235 case HELP_UNMOUNT: 236 return (gettext("\tunmount [-f] " 237 "<-a | filesystem|mountpoint>\n")); 238 case HELP_UNSHARE: 239 return (gettext("\tunshare [-f] " 240 "<-a | filesystem|mountpoint>\n")); 241 case HELP_ALLOW: 242 return (gettext("\tallow [-ldug] " 243 "<\"everyone\"|user|group>[,...] <perm|@setname>[,...]\n" 244 "\t <filesystem|volume>\n" 245 "\tallow [-ld] -e <perm|@setname>[,...] " 246 "<filesystem|volume>\n" 247 "\tallow -c <perm|@setname>[,...] <filesystem|volume>\n" 248 "\tallow -s @setname <perm|@setname>[,...] " 249 "<filesystem|volume>\n")); 250 case HELP_UNALLOW: 251 return (gettext("\tunallow [-rldug] " 252 "<\"everyone\"|user|group>[,...]\n" 253 "\t [<perm|@setname>[,...]] <filesystem|volume>\n" 254 "\tunallow [-rld] -e [<perm|@setname>[,...]] " 255 "<filesystem|volume>\n" 256 "\tunallow [-r] -c [<perm|@setname>[,...]] " 257 "<filesystem|volume>\n" 258 "\tunallow [-r] -s @setname [<perm|@setname>[,...]] " 259 "<filesystem|volume>\n")); 260 case HELP_USERSPACE: 261 return (gettext("\tuserspace [-hniHp] [-o field[,...]] " 262 "[-sS field] ... [-t type[,...]]\n" 263 "\t <filesystem|snapshot>\n")); 264 case HELP_GROUPSPACE: 265 return (gettext("\tgroupspace [-hniHpU] [-o field[,...]] " 266 "[-sS field] ... [-t type[,...]]\n" 267 "\t <filesystem|snapshot>\n")); 268 } 269 270 abort(); 271 /* NOTREACHED */ 272 } 273 274 /* 275 * Utility function to guarantee malloc() success. 276 */ 277 void * 278 safe_malloc(size_t size) 279 { 280 void *data; 281 282 if ((data = calloc(1, size)) == NULL) { 283 (void) fprintf(stderr, "internal error: out of memory\n"); 284 exit(1); 285 } 286 287 return (data); 288 } 289 290 /* 291 * Callback routine that will print out information for each of 292 * the properties. 293 */ 294 static int 295 usage_prop_cb(int prop, void *cb) 296 { 297 FILE *fp = cb; 298 299 (void) fprintf(fp, "\t%-15s ", zfs_prop_to_name(prop)); 300 301 if (zfs_prop_readonly(prop)) 302 (void) fprintf(fp, " NO "); 303 else 304 (void) fprintf(fp, "YES "); 305 306 if (zfs_prop_inheritable(prop)) 307 (void) fprintf(fp, " YES "); 308 else 309 (void) fprintf(fp, " NO "); 310 311 if (zfs_prop_values(prop) == NULL) 312 (void) fprintf(fp, "-\n"); 313 else 314 (void) fprintf(fp, "%s\n", zfs_prop_values(prop)); 315 316 return (ZPROP_CONT); 317 } 318 319 /* 320 * Display usage message. If we're inside a command, display only the usage for 321 * that command. Otherwise, iterate over the entire command table and display 322 * a complete usage message. 323 */ 324 static void 325 usage(boolean_t requested) 326 { 327 int i; 328 boolean_t show_properties = B_FALSE; 329 FILE *fp = requested ? stdout : stderr; 330 331 if (current_command == NULL) { 332 333 (void) fprintf(fp, gettext("usage: zfs command args ...\n")); 334 (void) fprintf(fp, 335 gettext("where 'command' is one of the following:\n\n")); 336 337 for (i = 0; i < NCOMMAND; i++) { 338 if (command_table[i].name == NULL) 339 (void) fprintf(fp, "\n"); 340 else 341 (void) fprintf(fp, "%s", 342 get_usage(command_table[i].usage)); 343 } 344 345 (void) fprintf(fp, gettext("\nEach dataset is of the form: " 346 "pool/[dataset/]*dataset[@name]\n")); 347 } else { 348 (void) fprintf(fp, gettext("usage:\n")); 349 (void) fprintf(fp, "%s", get_usage(current_command->usage)); 350 } 351 352 if (current_command != NULL && 353 (strcmp(current_command->name, "set") == 0 || 354 strcmp(current_command->name, "get") == 0 || 355 strcmp(current_command->name, "inherit") == 0 || 356 strcmp(current_command->name, "list") == 0)) 357 show_properties = B_TRUE; 358 359 if (show_properties) { 360 (void) fprintf(fp, 361 gettext("\nThe following properties are supported:\n")); 362 363 (void) fprintf(fp, "\n\t%-14s %s %s %s\n\n", 364 "PROPERTY", "EDIT", "INHERIT", "VALUES"); 365 366 /* Iterate over all properties */ 367 (void) zprop_iter(usage_prop_cb, fp, B_FALSE, B_TRUE, 368 ZFS_TYPE_DATASET); 369 370 (void) fprintf(fp, "\t%-15s ", "userused@..."); 371 (void) fprintf(fp, " NO NO <size>\n"); 372 (void) fprintf(fp, "\t%-15s ", "groupused@..."); 373 (void) fprintf(fp, " NO NO <size>\n"); 374 (void) fprintf(fp, "\t%-15s ", "userquota@..."); 375 (void) fprintf(fp, "YES NO <size> | none\n"); 376 (void) fprintf(fp, "\t%-15s ", "groupquota@..."); 377 (void) fprintf(fp, "YES NO <size> | none\n"); 378 379 (void) fprintf(fp, gettext("\nSizes are specified in bytes " 380 "with standard units such as K, M, G, etc.\n")); 381 (void) fprintf(fp, gettext("\nUser-defined properties can " 382 "be specified by using a name containing a colon (:).\n")); 383 (void) fprintf(fp, gettext("\nThe {user|group}{used|quota}@ " 384 "properties must be appended with\n" 385 "a user or group specifier of one of these forms:\n" 386 " POSIX name (eg: \"matt\")\n" 387 " POSIX id (eg: \"126829\")\n" 388 " SMB name@domain (eg: \"matt@sun\")\n" 389 " SMB SID (eg: \"S-1-234-567-89\")\n")); 390 } else { 391 (void) fprintf(fp, 392 gettext("\nFor the property list, run: %s\n"), 393 "zfs set|get"); 394 (void) fprintf(fp, 395 gettext("\nFor the delegated permission list, run: %s\n"), 396 "zfs allow|unallow"); 397 } 398 399 /* 400 * See comments at end of main(). 401 */ 402 if (getenv("ZFS_ABORT") != NULL) { 403 (void) printf("dumping core by request\n"); 404 abort(); 405 } 406 407 exit(requested ? 0 : 2); 408 } 409 410 static int 411 parseprop(nvlist_t *props) 412 { 413 char *propname = optarg; 414 char *propval, *strval; 415 416 if ((propval = strchr(propname, '=')) == NULL) { 417 (void) fprintf(stderr, gettext("missing " 418 "'=' for -o option\n")); 419 return (-1); 420 } 421 *propval = '\0'; 422 propval++; 423 if (nvlist_lookup_string(props, propname, &strval) == 0) { 424 (void) fprintf(stderr, gettext("property '%s' " 425 "specified multiple times\n"), propname); 426 return (-1); 427 } 428 if (nvlist_add_string(props, propname, propval) != 0) { 429 (void) fprintf(stderr, gettext("internal " 430 "error: out of memory\n")); 431 return (-1); 432 } 433 return (0); 434 } 435 436 static int 437 parse_depth(char *opt, int *flags) 438 { 439 char *tmp; 440 int depth; 441 442 depth = (int)strtol(opt, &tmp, 0); 443 if (*tmp) { 444 (void) fprintf(stderr, 445 gettext("%s is not an integer\n"), optarg); 446 usage(B_FALSE); 447 } 448 if (depth < 0) { 449 (void) fprintf(stderr, 450 gettext("Depth can not be negative.\n")); 451 usage(B_FALSE); 452 } 453 *flags |= (ZFS_ITER_DEPTH_LIMIT|ZFS_ITER_RECURSE); 454 return (depth); 455 } 456 457 /* 458 * zfs clone [-p] [-o prop=value] ... <snap> <fs | vol> 459 * 460 * Given an existing dataset, create a writable copy whose initial contents 461 * are the same as the source. The newly created dataset maintains a 462 * dependency on the original; the original cannot be destroyed so long as 463 * the clone exists. 464 * 465 * The '-p' flag creates all the non-existing ancestors of the target first. 466 */ 467 static int 468 zfs_do_clone(int argc, char **argv) 469 { 470 zfs_handle_t *zhp = NULL; 471 boolean_t parents = B_FALSE; 472 nvlist_t *props; 473 int ret; 474 int c; 475 476 if (nvlist_alloc(&props, NV_UNIQUE_NAME, 0) != 0) { 477 (void) fprintf(stderr, gettext("internal error: " 478 "out of memory\n")); 479 return (1); 480 } 481 482 /* check options */ 483 while ((c = getopt(argc, argv, "o:p")) != -1) { 484 switch (c) { 485 case 'o': 486 if (parseprop(props)) 487 return (1); 488 break; 489 case 'p': 490 parents = B_TRUE; 491 break; 492 case '?': 493 (void) fprintf(stderr, gettext("invalid option '%c'\n"), 494 optopt); 495 goto usage; 496 } 497 } 498 499 argc -= optind; 500 argv += optind; 501 502 /* check number of arguments */ 503 if (argc < 1) { 504 (void) fprintf(stderr, gettext("missing source dataset " 505 "argument\n")); 506 goto usage; 507 } 508 if (argc < 2) { 509 (void) fprintf(stderr, gettext("missing target dataset " 510 "argument\n")); 511 goto usage; 512 } 513 if (argc > 2) { 514 (void) fprintf(stderr, gettext("too many arguments\n")); 515 goto usage; 516 } 517 518 /* open the source dataset */ 519 if ((zhp = zfs_open(g_zfs, argv[0], ZFS_TYPE_SNAPSHOT)) == NULL) 520 return (1); 521 522 if (parents && zfs_name_valid(argv[1], ZFS_TYPE_FILESYSTEM | 523 ZFS_TYPE_VOLUME)) { 524 /* 525 * Now create the ancestors of the target dataset. If the 526 * target already exists and '-p' option was used we should not 527 * complain. 528 */ 529 if (zfs_dataset_exists(g_zfs, argv[1], ZFS_TYPE_FILESYSTEM | 530 ZFS_TYPE_VOLUME)) 531 return (0); 532 if (zfs_create_ancestors(g_zfs, argv[1]) != 0) 533 return (1); 534 } 535 536 /* pass to libzfs */ 537 ret = zfs_clone(zhp, argv[1], props); 538 539 /* create the mountpoint if necessary */ 540 if (ret == 0) { 541 zfs_handle_t *clone; 542 543 clone = zfs_open(g_zfs, argv[1], ZFS_TYPE_DATASET); 544 if (clone != NULL) { 545 if ((ret = zfs_mount(clone, NULL, 0)) == 0) 546 ret = zfs_share(clone); 547 zfs_close(clone); 548 } 549 } 550 551 zfs_close(zhp); 552 nvlist_free(props); 553 554 return (!!ret); 555 556 usage: 557 if (zhp) 558 zfs_close(zhp); 559 nvlist_free(props); 560 usage(B_FALSE); 561 return (-1); 562 } 563 564 /* 565 * zfs create [-p] [-o prop=value] ... fs 566 * zfs create [-ps] [-b blocksize] [-o prop=value] ... -V vol size 567 * 568 * Create a new dataset. This command can be used to create filesystems 569 * and volumes. Snapshot creation is handled by 'zfs snapshot'. 570 * For volumes, the user must specify a size to be used. 571 * 572 * The '-s' flag applies only to volumes, and indicates that we should not try 573 * to set the reservation for this volume. By default we set a reservation 574 * equal to the size for any volume. For pools with SPA_VERSION >= 575 * SPA_VERSION_REFRESERVATION, we set a refreservation instead. 576 * 577 * The '-p' flag creates all the non-existing ancestors of the target first. 578 */ 579 static int 580 zfs_do_create(int argc, char **argv) 581 { 582 zfs_type_t type = ZFS_TYPE_FILESYSTEM; 583 zfs_handle_t *zhp = NULL; 584 uint64_t volsize; 585 int c; 586 boolean_t noreserve = B_FALSE; 587 boolean_t bflag = B_FALSE; 588 boolean_t parents = B_FALSE; 589 int ret = 1; 590 nvlist_t *props; 591 uint64_t intval; 592 int canmount; 593 594 if (nvlist_alloc(&props, NV_UNIQUE_NAME, 0) != 0) { 595 (void) fprintf(stderr, gettext("internal error: " 596 "out of memory\n")); 597 return (1); 598 } 599 600 /* check options */ 601 while ((c = getopt(argc, argv, ":V:b:so:p")) != -1) { 602 switch (c) { 603 case 'V': 604 type = ZFS_TYPE_VOLUME; 605 if (zfs_nicestrtonum(g_zfs, optarg, &intval) != 0) { 606 (void) fprintf(stderr, gettext("bad volume " 607 "size '%s': %s\n"), optarg, 608 libzfs_error_description(g_zfs)); 609 goto error; 610 } 611 612 if (nvlist_add_uint64(props, 613 zfs_prop_to_name(ZFS_PROP_VOLSIZE), 614 intval) != 0) { 615 (void) fprintf(stderr, gettext("internal " 616 "error: out of memory\n")); 617 goto error; 618 } 619 volsize = intval; 620 break; 621 case 'p': 622 parents = B_TRUE; 623 break; 624 case 'b': 625 bflag = B_TRUE; 626 if (zfs_nicestrtonum(g_zfs, optarg, &intval) != 0) { 627 (void) fprintf(stderr, gettext("bad volume " 628 "block size '%s': %s\n"), optarg, 629 libzfs_error_description(g_zfs)); 630 goto error; 631 } 632 633 if (nvlist_add_uint64(props, 634 zfs_prop_to_name(ZFS_PROP_VOLBLOCKSIZE), 635 intval) != 0) { 636 (void) fprintf(stderr, gettext("internal " 637 "error: out of memory\n")); 638 goto error; 639 } 640 break; 641 case 'o': 642 if (parseprop(props)) 643 goto error; 644 break; 645 case 's': 646 noreserve = B_TRUE; 647 break; 648 case ':': 649 (void) fprintf(stderr, gettext("missing size " 650 "argument\n")); 651 goto badusage; 652 break; 653 case '?': 654 (void) fprintf(stderr, gettext("invalid option '%c'\n"), 655 optopt); 656 goto badusage; 657 } 658 } 659 660 if ((bflag || noreserve) && type != ZFS_TYPE_VOLUME) { 661 (void) fprintf(stderr, gettext("'-s' and '-b' can only be " 662 "used when creating a volume\n")); 663 goto badusage; 664 } 665 666 argc -= optind; 667 argv += optind; 668 669 /* check number of arguments */ 670 if (argc == 0) { 671 (void) fprintf(stderr, gettext("missing %s argument\n"), 672 zfs_type_to_name(type)); 673 goto badusage; 674 } 675 if (argc > 1) { 676 (void) fprintf(stderr, gettext("too many arguments\n")); 677 goto badusage; 678 } 679 680 if (type == ZFS_TYPE_VOLUME && !noreserve) { 681 zpool_handle_t *zpool_handle; 682 uint64_t spa_version; 683 char *p; 684 zfs_prop_t resv_prop; 685 char *strval; 686 687 if (p = strchr(argv[0], '/')) 688 *p = '\0'; 689 zpool_handle = zpool_open(g_zfs, argv[0]); 690 if (p != NULL) 691 *p = '/'; 692 if (zpool_handle == NULL) 693 goto error; 694 spa_version = zpool_get_prop_int(zpool_handle, 695 ZPOOL_PROP_VERSION, NULL); 696 zpool_close(zpool_handle); 697 if (spa_version >= SPA_VERSION_REFRESERVATION) 698 resv_prop = ZFS_PROP_REFRESERVATION; 699 else 700 resv_prop = ZFS_PROP_RESERVATION; 701 702 if (nvlist_lookup_string(props, zfs_prop_to_name(resv_prop), 703 &strval) != 0) { 704 if (nvlist_add_uint64(props, 705 zfs_prop_to_name(resv_prop), volsize) != 0) { 706 (void) fprintf(stderr, gettext("internal " 707 "error: out of memory\n")); 708 nvlist_free(props); 709 return (1); 710 } 711 } 712 } 713 714 if (parents && zfs_name_valid(argv[0], type)) { 715 /* 716 * Now create the ancestors of target dataset. If the target 717 * already exists and '-p' option was used we should not 718 * complain. 719 */ 720 if (zfs_dataset_exists(g_zfs, argv[0], type)) { 721 ret = 0; 722 goto error; 723 } 724 if (zfs_create_ancestors(g_zfs, argv[0]) != 0) 725 goto error; 726 } 727 728 /* pass to libzfs */ 729 if (zfs_create(g_zfs, argv[0], type, props) != 0) 730 goto error; 731 732 if ((zhp = zfs_open(g_zfs, argv[0], ZFS_TYPE_DATASET)) == NULL) 733 goto error; 734 /* 735 * if the user doesn't want the dataset automatically mounted, 736 * then skip the mount/share step 737 */ 738 739 canmount = zfs_prop_get_int(zhp, ZFS_PROP_CANMOUNT); 740 741 /* 742 * Mount and/or share the new filesystem as appropriate. We provide a 743 * verbose error message to let the user know that their filesystem was 744 * in fact created, even if we failed to mount or share it. 745 */ 746 ret = 0; 747 if (canmount == ZFS_CANMOUNT_ON) { 748 if (zfs_mount(zhp, NULL, 0) != 0) { 749 (void) fprintf(stderr, gettext("filesystem " 750 "successfully created, but not mounted\n")); 751 ret = 1; 752 } else if (zfs_share(zhp) != 0) { 753 (void) fprintf(stderr, gettext("filesystem " 754 "successfully created, but not shared\n")); 755 ret = 1; 756 } 757 } 758 759 error: 760 if (zhp) 761 zfs_close(zhp); 762 nvlist_free(props); 763 return (ret); 764 badusage: 765 nvlist_free(props); 766 usage(B_FALSE); 767 return (2); 768 } 769 770 /* 771 * zfs destroy [-rf] <fs, snap, vol> 772 * 773 * -r Recursively destroy all children 774 * -R Recursively destroy all dependents, including clones 775 * -f Force unmounting of any dependents 776 * 777 * Destroys the given dataset. By default, it will unmount any filesystems, 778 * and refuse to destroy a dataset that has any dependents. A dependent can 779 * either be a child, or a clone of a child. 780 */ 781 typedef struct destroy_cbdata { 782 boolean_t cb_first; 783 int cb_force; 784 int cb_recurse; 785 int cb_error; 786 int cb_needforce; 787 int cb_doclones; 788 boolean_t cb_closezhp; 789 zfs_handle_t *cb_target; 790 char *cb_snapname; 791 } destroy_cbdata_t; 792 793 /* 794 * Check for any dependents based on the '-r' or '-R' flags. 795 */ 796 static int 797 destroy_check_dependent(zfs_handle_t *zhp, void *data) 798 { 799 destroy_cbdata_t *cbp = data; 800 const char *tname = zfs_get_name(cbp->cb_target); 801 const char *name = zfs_get_name(zhp); 802 803 if (strncmp(tname, name, strlen(tname)) == 0 && 804 (name[strlen(tname)] == '/' || name[strlen(tname)] == '@')) { 805 /* 806 * This is a direct descendant, not a clone somewhere else in 807 * the hierarchy. 808 */ 809 if (cbp->cb_recurse) 810 goto out; 811 812 if (cbp->cb_first) { 813 (void) fprintf(stderr, gettext("cannot destroy '%s': " 814 "%s has children\n"), 815 zfs_get_name(cbp->cb_target), 816 zfs_type_to_name(zfs_get_type(cbp->cb_target))); 817 (void) fprintf(stderr, gettext("use '-r' to destroy " 818 "the following datasets:\n")); 819 cbp->cb_first = B_FALSE; 820 cbp->cb_error = 1; 821 } 822 823 (void) fprintf(stderr, "%s\n", zfs_get_name(zhp)); 824 } else { 825 /* 826 * This is a clone. We only want to report this if the '-r' 827 * wasn't specified, or the target is a snapshot. 828 */ 829 if (!cbp->cb_recurse && 830 zfs_get_type(cbp->cb_target) != ZFS_TYPE_SNAPSHOT) 831 goto out; 832 833 if (cbp->cb_first) { 834 (void) fprintf(stderr, gettext("cannot destroy '%s': " 835 "%s has dependent clones\n"), 836 zfs_get_name(cbp->cb_target), 837 zfs_type_to_name(zfs_get_type(cbp->cb_target))); 838 (void) fprintf(stderr, gettext("use '-R' to destroy " 839 "the following datasets:\n")); 840 cbp->cb_first = B_FALSE; 841 cbp->cb_error = 1; 842 } 843 844 (void) fprintf(stderr, "%s\n", zfs_get_name(zhp)); 845 } 846 847 out: 848 zfs_close(zhp); 849 return (0); 850 } 851 852 static int 853 destroy_callback(zfs_handle_t *zhp, void *data) 854 { 855 destroy_cbdata_t *cbp = data; 856 857 /* 858 * Ignore pools (which we've already flagged as an error before getting 859 * here. 860 */ 861 if (strchr(zfs_get_name(zhp), '/') == NULL && 862 zfs_get_type(zhp) == ZFS_TYPE_FILESYSTEM) { 863 zfs_close(zhp); 864 return (0); 865 } 866 867 /* 868 * Bail out on the first error. 869 */ 870 if (zfs_unmount(zhp, NULL, cbp->cb_force ? MS_FORCE : 0) != 0 || 871 zfs_destroy(zhp) != 0) { 872 zfs_close(zhp); 873 return (-1); 874 } 875 876 zfs_close(zhp); 877 return (0); 878 } 879 880 static int 881 destroy_snap_clones(zfs_handle_t *zhp, void *arg) 882 { 883 destroy_cbdata_t *cbp = arg; 884 char thissnap[MAXPATHLEN]; 885 zfs_handle_t *szhp; 886 boolean_t closezhp = cbp->cb_closezhp; 887 int rv; 888 889 (void) snprintf(thissnap, sizeof (thissnap), 890 "%s@%s", zfs_get_name(zhp), cbp->cb_snapname); 891 892 libzfs_print_on_error(g_zfs, B_FALSE); 893 szhp = zfs_open(g_zfs, thissnap, ZFS_TYPE_SNAPSHOT); 894 libzfs_print_on_error(g_zfs, B_TRUE); 895 if (szhp) { 896 /* 897 * Destroy any clones of this snapshot 898 */ 899 if (zfs_iter_dependents(szhp, B_FALSE, destroy_callback, 900 cbp) != 0) { 901 zfs_close(szhp); 902 if (closezhp) 903 zfs_close(zhp); 904 return (-1); 905 } 906 zfs_close(szhp); 907 } 908 909 cbp->cb_closezhp = B_TRUE; 910 rv = zfs_iter_filesystems(zhp, destroy_snap_clones, arg); 911 if (closezhp) 912 zfs_close(zhp); 913 return (rv); 914 } 915 916 static int 917 zfs_do_destroy(int argc, char **argv) 918 { 919 destroy_cbdata_t cb = { 0 }; 920 int c; 921 zfs_handle_t *zhp; 922 char *cp; 923 924 /* check options */ 925 while ((c = getopt(argc, argv, "frR")) != -1) { 926 switch (c) { 927 case 'f': 928 cb.cb_force = 1; 929 break; 930 case 'r': 931 cb.cb_recurse = 1; 932 break; 933 case 'R': 934 cb.cb_recurse = 1; 935 cb.cb_doclones = 1; 936 break; 937 case '?': 938 default: 939 (void) fprintf(stderr, gettext("invalid option '%c'\n"), 940 optopt); 941 usage(B_FALSE); 942 } 943 } 944 945 argc -= optind; 946 argv += optind; 947 948 /* check number of arguments */ 949 if (argc == 0) { 950 (void) fprintf(stderr, gettext("missing path argument\n")); 951 usage(B_FALSE); 952 } 953 if (argc > 1) { 954 (void) fprintf(stderr, gettext("too many arguments\n")); 955 usage(B_FALSE); 956 } 957 958 /* 959 * If we are doing recursive destroy of a snapshot, then the 960 * named snapshot may not exist. Go straight to libzfs. 961 */ 962 if (cb.cb_recurse && (cp = strchr(argv[0], '@'))) { 963 int ret; 964 965 *cp = '\0'; 966 if ((zhp = zfs_open(g_zfs, argv[0], ZFS_TYPE_DATASET)) == NULL) 967 return (1); 968 *cp = '@'; 969 cp++; 970 971 if (cb.cb_doclones) { 972 cb.cb_snapname = cp; 973 if (destroy_snap_clones(zhp, &cb) != 0) { 974 zfs_close(zhp); 975 return (1); 976 } 977 } 978 979 ret = zfs_destroy_snaps(zhp, cp); 980 zfs_close(zhp); 981 if (ret) { 982 (void) fprintf(stderr, 983 gettext("no snapshots destroyed\n")); 984 } 985 return (ret != 0); 986 } 987 988 989 /* Open the given dataset */ 990 if ((zhp = zfs_open(g_zfs, argv[0], ZFS_TYPE_DATASET)) == NULL) 991 return (1); 992 993 cb.cb_target = zhp; 994 995 /* 996 * Perform an explicit check for pools before going any further. 997 */ 998 if (!cb.cb_recurse && strchr(zfs_get_name(zhp), '/') == NULL && 999 zfs_get_type(zhp) == ZFS_TYPE_FILESYSTEM) { 1000 (void) fprintf(stderr, gettext("cannot destroy '%s': " 1001 "operation does not apply to pools\n"), 1002 zfs_get_name(zhp)); 1003 (void) fprintf(stderr, gettext("use 'zfs destroy -r " 1004 "%s' to destroy all datasets in the pool\n"), 1005 zfs_get_name(zhp)); 1006 (void) fprintf(stderr, gettext("use 'zpool destroy %s' " 1007 "to destroy the pool itself\n"), zfs_get_name(zhp)); 1008 zfs_close(zhp); 1009 return (1); 1010 } 1011 1012 /* 1013 * Check for any dependents and/or clones. 1014 */ 1015 cb.cb_first = B_TRUE; 1016 if (!cb.cb_doclones && 1017 zfs_iter_dependents(zhp, B_TRUE, destroy_check_dependent, 1018 &cb) != 0) { 1019 zfs_close(zhp); 1020 return (1); 1021 } 1022 1023 if (cb.cb_error || 1024 zfs_iter_dependents(zhp, B_FALSE, destroy_callback, &cb) != 0) { 1025 zfs_close(zhp); 1026 return (1); 1027 } 1028 1029 /* 1030 * Do the real thing. The callback will close the handle regardless of 1031 * whether it succeeds or not. 1032 */ 1033 1034 if (destroy_callback(zhp, &cb) != 0) 1035 return (1); 1036 1037 1038 return (0); 1039 } 1040 1041 /* 1042 * zfs get [-rHp] [-o field[,field]...] [-s source[,source]...] 1043 * < all | property[,property]... > < fs | snap | vol > ... 1044 * 1045 * -r recurse over any child datasets 1046 * -H scripted mode. Headers are stripped, and fields are separated 1047 * by tabs instead of spaces. 1048 * -o Set of fields to display. One of "name,property,value,source". 1049 * Default is all four. 1050 * -s Set of sources to allow. One of 1051 * "local,default,inherited,temporary,none". Default is all 1052 * five. 1053 * -p Display values in parsable (literal) format. 1054 * 1055 * Prints properties for the given datasets. The user can control which 1056 * columns to display as well as which property types to allow. 1057 */ 1058 1059 /* 1060 * Invoked to display the properties for a single dataset. 1061 */ 1062 static int 1063 get_callback(zfs_handle_t *zhp, void *data) 1064 { 1065 char buf[ZFS_MAXPROPLEN]; 1066 zprop_source_t sourcetype; 1067 char source[ZFS_MAXNAMELEN]; 1068 zprop_get_cbdata_t *cbp = data; 1069 nvlist_t *userprop = zfs_get_user_props(zhp); 1070 zprop_list_t *pl = cbp->cb_proplist; 1071 nvlist_t *propval; 1072 char *strval; 1073 char *sourceval; 1074 1075 for (; pl != NULL; pl = pl->pl_next) { 1076 /* 1077 * Skip the special fake placeholder. This will also skip over 1078 * the name property when 'all' is specified. 1079 */ 1080 if (pl->pl_prop == ZFS_PROP_NAME && 1081 pl == cbp->cb_proplist) 1082 continue; 1083 1084 if (pl->pl_prop != ZPROP_INVAL) { 1085 if (zfs_prop_get(zhp, pl->pl_prop, buf, 1086 sizeof (buf), &sourcetype, source, 1087 sizeof (source), 1088 cbp->cb_literal) != 0) { 1089 if (pl->pl_all) 1090 continue; 1091 if (!zfs_prop_valid_for_type(pl->pl_prop, 1092 ZFS_TYPE_DATASET)) { 1093 (void) fprintf(stderr, 1094 gettext("No such property '%s'\n"), 1095 zfs_prop_to_name(pl->pl_prop)); 1096 continue; 1097 } 1098 sourcetype = ZPROP_SRC_NONE; 1099 (void) strlcpy(buf, "-", sizeof (buf)); 1100 } 1101 1102 zprop_print_one_property(zfs_get_name(zhp), cbp, 1103 zfs_prop_to_name(pl->pl_prop), 1104 buf, sourcetype, source); 1105 } else if (zfs_prop_userquota(pl->pl_user_prop)) { 1106 sourcetype = ZPROP_SRC_LOCAL; 1107 1108 if (zfs_prop_get_userquota(zhp, pl->pl_user_prop, 1109 buf, sizeof (buf), cbp->cb_literal) != 0) { 1110 sourcetype = ZPROP_SRC_NONE; 1111 (void) strlcpy(buf, "-", sizeof (buf)); 1112 } 1113 1114 zprop_print_one_property(zfs_get_name(zhp), cbp, 1115 pl->pl_user_prop, buf, sourcetype, source); 1116 } else { 1117 if (nvlist_lookup_nvlist(userprop, 1118 pl->pl_user_prop, &propval) != 0) { 1119 if (pl->pl_all) 1120 continue; 1121 sourcetype = ZPROP_SRC_NONE; 1122 strval = "-"; 1123 } else { 1124 verify(nvlist_lookup_string(propval, 1125 ZPROP_VALUE, &strval) == 0); 1126 verify(nvlist_lookup_string(propval, 1127 ZPROP_SOURCE, &sourceval) == 0); 1128 1129 if (strcmp(sourceval, 1130 zfs_get_name(zhp)) == 0) { 1131 sourcetype = ZPROP_SRC_LOCAL; 1132 } else { 1133 sourcetype = ZPROP_SRC_INHERITED; 1134 (void) strlcpy(source, 1135 sourceval, sizeof (source)); 1136 } 1137 } 1138 1139 zprop_print_one_property(zfs_get_name(zhp), cbp, 1140 pl->pl_user_prop, strval, sourcetype, 1141 source); 1142 } 1143 } 1144 1145 return (0); 1146 } 1147 1148 static int 1149 zfs_do_get(int argc, char **argv) 1150 { 1151 zprop_get_cbdata_t cb = { 0 }; 1152 int i, c, flags = 0; 1153 char *value, *fields; 1154 int ret; 1155 int limit = 0; 1156 zprop_list_t fake_name = { 0 }; 1157 1158 /* 1159 * Set up default columns and sources. 1160 */ 1161 cb.cb_sources = ZPROP_SRC_ALL; 1162 cb.cb_columns[0] = GET_COL_NAME; 1163 cb.cb_columns[1] = GET_COL_PROPERTY; 1164 cb.cb_columns[2] = GET_COL_VALUE; 1165 cb.cb_columns[3] = GET_COL_SOURCE; 1166 cb.cb_type = ZFS_TYPE_DATASET; 1167 1168 /* check options */ 1169 while ((c = getopt(argc, argv, ":d:o:s:rHp")) != -1) { 1170 switch (c) { 1171 case 'p': 1172 cb.cb_literal = B_TRUE; 1173 break; 1174 case 'd': 1175 limit = parse_depth(optarg, &flags); 1176 break; 1177 case 'r': 1178 flags |= ZFS_ITER_RECURSE; 1179 break; 1180 case 'H': 1181 cb.cb_scripted = B_TRUE; 1182 break; 1183 case ':': 1184 (void) fprintf(stderr, gettext("missing argument for " 1185 "'%c' option\n"), optopt); 1186 usage(B_FALSE); 1187 break; 1188 case 'o': 1189 /* 1190 * Process the set of columns to display. We zero out 1191 * the structure to give us a blank slate. 1192 */ 1193 bzero(&cb.cb_columns, sizeof (cb.cb_columns)); 1194 i = 0; 1195 while (*optarg != '\0') { 1196 static char *col_subopts[] = 1197 { "name", "property", "value", "source", 1198 NULL }; 1199 1200 if (i == 4) { 1201 (void) fprintf(stderr, gettext("too " 1202 "many fields given to -o " 1203 "option\n")); 1204 usage(B_FALSE); 1205 } 1206 1207 switch (getsubopt(&optarg, col_subopts, 1208 &value)) { 1209 case 0: 1210 cb.cb_columns[i++] = GET_COL_NAME; 1211 break; 1212 case 1: 1213 cb.cb_columns[i++] = GET_COL_PROPERTY; 1214 break; 1215 case 2: 1216 cb.cb_columns[i++] = GET_COL_VALUE; 1217 break; 1218 case 3: 1219 cb.cb_columns[i++] = GET_COL_SOURCE; 1220 break; 1221 default: 1222 (void) fprintf(stderr, 1223 gettext("invalid column name " 1224 "'%s'\n"), value); 1225 usage(B_FALSE); 1226 } 1227 } 1228 break; 1229 1230 case 's': 1231 cb.cb_sources = 0; 1232 while (*optarg != '\0') { 1233 static char *source_subopts[] = { 1234 "local", "default", "inherited", 1235 "temporary", "none", NULL }; 1236 1237 switch (getsubopt(&optarg, source_subopts, 1238 &value)) { 1239 case 0: 1240 cb.cb_sources |= ZPROP_SRC_LOCAL; 1241 break; 1242 case 1: 1243 cb.cb_sources |= ZPROP_SRC_DEFAULT; 1244 break; 1245 case 2: 1246 cb.cb_sources |= ZPROP_SRC_INHERITED; 1247 break; 1248 case 3: 1249 cb.cb_sources |= ZPROP_SRC_TEMPORARY; 1250 break; 1251 case 4: 1252 cb.cb_sources |= ZPROP_SRC_NONE; 1253 break; 1254 default: 1255 (void) fprintf(stderr, 1256 gettext("invalid source " 1257 "'%s'\n"), value); 1258 usage(B_FALSE); 1259 } 1260 } 1261 break; 1262 1263 case '?': 1264 (void) fprintf(stderr, gettext("invalid option '%c'\n"), 1265 optopt); 1266 usage(B_FALSE); 1267 } 1268 } 1269 1270 argc -= optind; 1271 argv += optind; 1272 1273 if (argc < 1) { 1274 (void) fprintf(stderr, gettext("missing property " 1275 "argument\n")); 1276 usage(B_FALSE); 1277 } 1278 1279 fields = argv[0]; 1280 1281 if (zprop_get_list(g_zfs, fields, &cb.cb_proplist, ZFS_TYPE_DATASET) 1282 != 0) 1283 usage(B_FALSE); 1284 1285 argc--; 1286 argv++; 1287 1288 /* 1289 * As part of zfs_expand_proplist(), we keep track of the maximum column 1290 * width for each property. For the 'NAME' (and 'SOURCE') columns, we 1291 * need to know the maximum name length. However, the user likely did 1292 * not specify 'name' as one of the properties to fetch, so we need to 1293 * make sure we always include at least this property for 1294 * print_get_headers() to work properly. 1295 */ 1296 if (cb.cb_proplist != NULL) { 1297 fake_name.pl_prop = ZFS_PROP_NAME; 1298 fake_name.pl_width = strlen(gettext("NAME")); 1299 fake_name.pl_next = cb.cb_proplist; 1300 cb.cb_proplist = &fake_name; 1301 } 1302 1303 cb.cb_first = B_TRUE; 1304 1305 /* run for each object */ 1306 ret = zfs_for_each(argc, argv, flags, ZFS_TYPE_DATASET, NULL, 1307 &cb.cb_proplist, limit, get_callback, &cb); 1308 1309 if (cb.cb_proplist == &fake_name) 1310 zprop_free_list(fake_name.pl_next); 1311 else 1312 zprop_free_list(cb.cb_proplist); 1313 1314 return (ret); 1315 } 1316 1317 /* 1318 * inherit [-r] <property> <fs|vol> ... 1319 * 1320 * -r Recurse over all children 1321 * 1322 * For each dataset specified on the command line, inherit the given property 1323 * from its parent. Inheriting a property at the pool level will cause it to 1324 * use the default value. The '-r' flag will recurse over all children, and is 1325 * useful for setting a property on a hierarchy-wide basis, regardless of any 1326 * local modifications for each dataset. 1327 */ 1328 1329 static int 1330 inherit_recurse_cb(zfs_handle_t *zhp, void *data) 1331 { 1332 char *propname = data; 1333 zfs_prop_t prop = zfs_name_to_prop(propname); 1334 1335 /* 1336 * If we're doing it recursively, then ignore properties that 1337 * are not valid for this type of dataset. 1338 */ 1339 if (prop != ZPROP_INVAL && 1340 !zfs_prop_valid_for_type(prop, zfs_get_type(zhp))) 1341 return (0); 1342 1343 return (zfs_prop_inherit(zhp, propname) != 0); 1344 } 1345 1346 static int 1347 inherit_cb(zfs_handle_t *zhp, void *data) 1348 { 1349 char *propname = data; 1350 1351 return (zfs_prop_inherit(zhp, propname) != 0); 1352 } 1353 1354 static int 1355 zfs_do_inherit(int argc, char **argv) 1356 { 1357 int c; 1358 zfs_prop_t prop; 1359 char *propname; 1360 int ret; 1361 int flags = 0; 1362 1363 /* check options */ 1364 while ((c = getopt(argc, argv, "r")) != -1) { 1365 switch (c) { 1366 case 'r': 1367 flags |= ZFS_ITER_RECURSE; 1368 break; 1369 case '?': 1370 default: 1371 (void) fprintf(stderr, gettext("invalid option '%c'\n"), 1372 optopt); 1373 usage(B_FALSE); 1374 } 1375 } 1376 1377 argc -= optind; 1378 argv += optind; 1379 1380 /* check number of arguments */ 1381 if (argc < 1) { 1382 (void) fprintf(stderr, gettext("missing property argument\n")); 1383 usage(B_FALSE); 1384 } 1385 if (argc < 2) { 1386 (void) fprintf(stderr, gettext("missing dataset argument\n")); 1387 usage(B_FALSE); 1388 } 1389 1390 propname = argv[0]; 1391 argc--; 1392 argv++; 1393 1394 if ((prop = zfs_name_to_prop(propname)) != ZPROP_INVAL) { 1395 if (zfs_prop_readonly(prop)) { 1396 (void) fprintf(stderr, gettext( 1397 "%s property is read-only\n"), 1398 propname); 1399 return (1); 1400 } 1401 if (!zfs_prop_inheritable(prop)) { 1402 (void) fprintf(stderr, gettext("'%s' property cannot " 1403 "be inherited\n"), propname); 1404 if (prop == ZFS_PROP_QUOTA || 1405 prop == ZFS_PROP_RESERVATION || 1406 prop == ZFS_PROP_REFQUOTA || 1407 prop == ZFS_PROP_REFRESERVATION) 1408 (void) fprintf(stderr, gettext("use 'zfs set " 1409 "%s=none' to clear\n"), propname); 1410 return (1); 1411 } 1412 } else if (!zfs_prop_user(propname)) { 1413 (void) fprintf(stderr, gettext("invalid property '%s'\n"), 1414 propname); 1415 usage(B_FALSE); 1416 } 1417 1418 if (flags & ZFS_ITER_RECURSE) { 1419 ret = zfs_for_each(argc, argv, flags, ZFS_TYPE_DATASET, 1420 NULL, NULL, 0, inherit_recurse_cb, propname); 1421 } else { 1422 ret = zfs_for_each(argc, argv, flags, ZFS_TYPE_DATASET, 1423 NULL, NULL, 0, inherit_cb, propname); 1424 } 1425 1426 return (ret); 1427 } 1428 1429 typedef struct upgrade_cbdata { 1430 uint64_t cb_numupgraded; 1431 uint64_t cb_numsamegraded; 1432 uint64_t cb_numfailed; 1433 uint64_t cb_version; 1434 boolean_t cb_newer; 1435 boolean_t cb_foundone; 1436 char cb_lastfs[ZFS_MAXNAMELEN]; 1437 } upgrade_cbdata_t; 1438 1439 static int 1440 same_pool(zfs_handle_t *zhp, const char *name) 1441 { 1442 int len1 = strcspn(name, "/@"); 1443 const char *zhname = zfs_get_name(zhp); 1444 int len2 = strcspn(zhname, "/@"); 1445 1446 if (len1 != len2) 1447 return (B_FALSE); 1448 return (strncmp(name, zhname, len1) == 0); 1449 } 1450 1451 static int 1452 upgrade_list_callback(zfs_handle_t *zhp, void *data) 1453 { 1454 upgrade_cbdata_t *cb = data; 1455 int version = zfs_prop_get_int(zhp, ZFS_PROP_VERSION); 1456 1457 /* list if it's old/new */ 1458 if ((!cb->cb_newer && version < ZPL_VERSION) || 1459 (cb->cb_newer && version > ZPL_VERSION)) { 1460 char *str; 1461 if (cb->cb_newer) { 1462 str = gettext("The following filesystems are " 1463 "formatted using a newer software version and\n" 1464 "cannot be accessed on the current system.\n\n"); 1465 } else { 1466 str = gettext("The following filesystems are " 1467 "out of date, and can be upgraded. After being\n" 1468 "upgraded, these filesystems (and any 'zfs send' " 1469 "streams generated from\n" 1470 "subsequent snapshots) will no longer be " 1471 "accessible by older software versions.\n\n"); 1472 } 1473 1474 if (!cb->cb_foundone) { 1475 (void) puts(str); 1476 (void) printf(gettext("VER FILESYSTEM\n")); 1477 (void) printf(gettext("--- ------------\n")); 1478 cb->cb_foundone = B_TRUE; 1479 } 1480 1481 (void) printf("%2u %s\n", version, zfs_get_name(zhp)); 1482 } 1483 1484 return (0); 1485 } 1486 1487 static int 1488 upgrade_set_callback(zfs_handle_t *zhp, void *data) 1489 { 1490 upgrade_cbdata_t *cb = data; 1491 int version = zfs_prop_get_int(zhp, ZFS_PROP_VERSION); 1492 int i; 1493 static struct { int zplver; int spaver; } table[] = { 1494 {ZPL_VERSION_FUID, SPA_VERSION_FUID}, 1495 {ZPL_VERSION_USERSPACE, SPA_VERSION_USERSPACE}, 1496 {0, 0} 1497 }; 1498 1499 1500 for (i = 0; table[i].zplver; i++) { 1501 if (cb->cb_version >= table[i].zplver) { 1502 int spa_version; 1503 1504 if (zfs_spa_version(zhp, &spa_version) < 0) 1505 return (-1); 1506 1507 if (spa_version < table[i].spaver) { 1508 /* can't upgrade */ 1509 (void) printf(gettext("%s: can not be " 1510 "upgraded; the pool version needs to first " 1511 "be upgraded\nto version %d\n\n"), 1512 zfs_get_name(zhp), table[i].spaver); 1513 cb->cb_numfailed++; 1514 return (0); 1515 } 1516 } 1517 } 1518 1519 /* upgrade */ 1520 if (version < cb->cb_version) { 1521 char verstr[16]; 1522 (void) snprintf(verstr, sizeof (verstr), 1523 "%llu", cb->cb_version); 1524 if (cb->cb_lastfs[0] && !same_pool(zhp, cb->cb_lastfs)) { 1525 /* 1526 * If they did "zfs upgrade -a", then we could 1527 * be doing ioctls to different pools. We need 1528 * to log this history once to each pool. 1529 */ 1530 verify(zpool_stage_history(g_zfs, history_str) == 0); 1531 } 1532 if (zfs_prop_set(zhp, "version", verstr) == 0) 1533 cb->cb_numupgraded++; 1534 else 1535 cb->cb_numfailed++; 1536 (void) strcpy(cb->cb_lastfs, zfs_get_name(zhp)); 1537 } else if (version > cb->cb_version) { 1538 /* can't downgrade */ 1539 (void) printf(gettext("%s: can not be downgraded; " 1540 "it is already at version %u\n"), 1541 zfs_get_name(zhp), version); 1542 cb->cb_numfailed++; 1543 } else { 1544 cb->cb_numsamegraded++; 1545 } 1546 return (0); 1547 } 1548 1549 /* 1550 * zfs upgrade 1551 * zfs upgrade -v 1552 * zfs upgrade [-r] [-V <version>] <-a | filesystem> 1553 */ 1554 static int 1555 zfs_do_upgrade(int argc, char **argv) 1556 { 1557 boolean_t all = B_FALSE; 1558 boolean_t showversions = B_FALSE; 1559 int ret; 1560 upgrade_cbdata_t cb = { 0 }; 1561 char c; 1562 int flags = ZFS_ITER_ARGS_CAN_BE_PATHS; 1563 1564 /* check options */ 1565 while ((c = getopt(argc, argv, "rvV:a")) != -1) { 1566 switch (c) { 1567 case 'r': 1568 flags |= ZFS_ITER_RECURSE; 1569 break; 1570 case 'v': 1571 showversions = B_TRUE; 1572 break; 1573 case 'V': 1574 if (zfs_prop_string_to_index(ZFS_PROP_VERSION, 1575 optarg, &cb.cb_version) != 0) { 1576 (void) fprintf(stderr, 1577 gettext("invalid version %s\n"), optarg); 1578 usage(B_FALSE); 1579 } 1580 break; 1581 case 'a': 1582 all = B_TRUE; 1583 break; 1584 case '?': 1585 default: 1586 (void) fprintf(stderr, gettext("invalid option '%c'\n"), 1587 optopt); 1588 usage(B_FALSE); 1589 } 1590 } 1591 1592 argc -= optind; 1593 argv += optind; 1594 1595 if ((!all && !argc) && ((flags & ZFS_ITER_RECURSE) | cb.cb_version)) 1596 usage(B_FALSE); 1597 if (showversions && (flags & ZFS_ITER_RECURSE || all || 1598 cb.cb_version || argc)) 1599 usage(B_FALSE); 1600 if ((all || argc) && (showversions)) 1601 usage(B_FALSE); 1602 if (all && argc) 1603 usage(B_FALSE); 1604 1605 if (showversions) { 1606 /* Show info on available versions. */ 1607 (void) printf(gettext("The following filesystem versions are " 1608 "supported:\n\n")); 1609 (void) printf(gettext("VER DESCRIPTION\n")); 1610 (void) printf("--- -----------------------------------------" 1611 "---------------\n"); 1612 (void) printf(gettext(" 1 Initial ZFS filesystem version\n")); 1613 (void) printf(gettext(" 2 Enhanced directory entries\n")); 1614 (void) printf(gettext(" 3 Case insensitive and File system " 1615 "unique identifer (FUID)\n")); 1616 (void) printf(gettext(" 4 userquota, groupquota " 1617 "properties\n")); 1618 (void) printf(gettext("\nFor more information on a particular " 1619 "version, including supported releases, see:\n\n")); 1620 (void) printf("http://www.opensolaris.org/os/community/zfs/" 1621 "version/zpl/N\n\n"); 1622 (void) printf(gettext("Where 'N' is the version number.\n")); 1623 ret = 0; 1624 } else if (argc || all) { 1625 /* Upgrade filesystems */ 1626 if (cb.cb_version == 0) 1627 cb.cb_version = ZPL_VERSION; 1628 ret = zfs_for_each(argc, argv, flags, ZFS_TYPE_FILESYSTEM, 1629 NULL, NULL, 0, upgrade_set_callback, &cb); 1630 (void) printf(gettext("%llu filesystems upgraded\n"), 1631 cb.cb_numupgraded); 1632 if (cb.cb_numsamegraded) { 1633 (void) printf(gettext("%llu filesystems already at " 1634 "this version\n"), 1635 cb.cb_numsamegraded); 1636 } 1637 if (cb.cb_numfailed != 0) 1638 ret = 1; 1639 } else { 1640 /* List old-version filesytems */ 1641 boolean_t found; 1642 (void) printf(gettext("This system is currently running " 1643 "ZFS filesystem version %llu.\n\n"), ZPL_VERSION); 1644 1645 flags |= ZFS_ITER_RECURSE; 1646 ret = zfs_for_each(0, NULL, flags, ZFS_TYPE_FILESYSTEM, 1647 NULL, NULL, 0, upgrade_list_callback, &cb); 1648 1649 found = cb.cb_foundone; 1650 cb.cb_foundone = B_FALSE; 1651 cb.cb_newer = B_TRUE; 1652 1653 ret = zfs_for_each(0, NULL, flags, ZFS_TYPE_FILESYSTEM, 1654 NULL, NULL, 0, upgrade_list_callback, &cb); 1655 1656 if (!cb.cb_foundone && !found) { 1657 (void) printf(gettext("All filesystems are " 1658 "formatted with the current version.\n")); 1659 } 1660 } 1661 1662 return (ret); 1663 } 1664 1665 /* 1666 * zfs userspace 1667 */ 1668 static int 1669 userspace_cb(void *arg, const char *domain, uid_t rid, uint64_t space) 1670 { 1671 zfs_userquota_prop_t *typep = arg; 1672 zfs_userquota_prop_t p = *typep; 1673 char *name = NULL; 1674 char *ug, *propname; 1675 char namebuf[32]; 1676 char sizebuf[32]; 1677 1678 if (domain == NULL || domain[0] == '\0') { 1679 if (p == ZFS_PROP_GROUPUSED || p == ZFS_PROP_GROUPQUOTA) { 1680 struct group *g = getgrgid(rid); 1681 if (g) 1682 name = g->gr_name; 1683 } else { 1684 struct passwd *p = getpwuid(rid); 1685 if (p) 1686 name = p->pw_name; 1687 } 1688 } 1689 1690 if (p == ZFS_PROP_GROUPUSED || p == ZFS_PROP_GROUPQUOTA) 1691 ug = "group"; 1692 else 1693 ug = "user"; 1694 1695 if (p == ZFS_PROP_USERUSED || p == ZFS_PROP_GROUPUSED) 1696 propname = "used"; 1697 else 1698 propname = "quota"; 1699 1700 if (name == NULL) { 1701 (void) snprintf(namebuf, sizeof (namebuf), 1702 "%llu", (longlong_t)rid); 1703 name = namebuf; 1704 } 1705 zfs_nicenum(space, sizebuf, sizeof (sizebuf)); 1706 1707 (void) printf("%s %s %s%c%s %s\n", propname, ug, domain, 1708 domain[0] ? '-' : ' ', name, sizebuf); 1709 1710 return (0); 1711 } 1712 1713 static int 1714 zfs_do_userspace(int argc, char **argv) 1715 { 1716 zfs_handle_t *zhp; 1717 zfs_userquota_prop_t p; 1718 int error; 1719 1720 /* 1721 * Try the python version. If the execv fails, we'll continue 1722 * and do a simplistic implementation. 1723 */ 1724 (void) execv(pypath, argv-1); 1725 1726 (void) printf("internal error: %s not found\n" 1727 "falling back on built-in implementation, " 1728 "some features will not work\n", pypath); 1729 1730 if ((zhp = zfs_open(g_zfs, argv[argc-1], ZFS_TYPE_DATASET)) == NULL) 1731 return (1); 1732 1733 (void) printf("PROP TYPE NAME VALUE\n"); 1734 1735 for (p = 0; p < ZFS_NUM_USERQUOTA_PROPS; p++) { 1736 error = zfs_userspace(zhp, p, userspace_cb, &p); 1737 if (error) 1738 break; 1739 } 1740 return (error); 1741 } 1742 1743 /* 1744 * list [-r][-d max] [-H] [-o property[,property]...] [-t type[,type]...] 1745 * [-s property [-s property]...] [-S property [-S property]...] 1746 * <dataset> ... 1747 * 1748 * -r Recurse over all children 1749 * -d Limit recursion by depth. 1750 * -H Scripted mode; elide headers and separate columns by tabs 1751 * -o Control which fields to display. 1752 * -t Control which object types to display. 1753 * -s Specify sort columns, descending order. 1754 * -S Specify sort columns, ascending order. 1755 * 1756 * When given no arguments, lists all filesystems in the system. 1757 * Otherwise, list the specified datasets, optionally recursing down them if 1758 * '-r' is specified. 1759 */ 1760 typedef struct list_cbdata { 1761 boolean_t cb_first; 1762 boolean_t cb_scripted; 1763 zprop_list_t *cb_proplist; 1764 } list_cbdata_t; 1765 1766 /* 1767 * Given a list of columns to display, output appropriate headers for each one. 1768 */ 1769 static void 1770 print_header(zprop_list_t *pl) 1771 { 1772 char headerbuf[ZFS_MAXPROPLEN]; 1773 const char *header; 1774 int i; 1775 boolean_t first = B_TRUE; 1776 boolean_t right_justify; 1777 1778 for (; pl != NULL; pl = pl->pl_next) { 1779 if (!first) { 1780 (void) printf(" "); 1781 } else { 1782 first = B_FALSE; 1783 } 1784 1785 right_justify = B_FALSE; 1786 if (pl->pl_prop != ZPROP_INVAL) { 1787 header = zfs_prop_column_name(pl->pl_prop); 1788 right_justify = zfs_prop_align_right(pl->pl_prop); 1789 } else { 1790 for (i = 0; pl->pl_user_prop[i] != '\0'; i++) 1791 headerbuf[i] = toupper(pl->pl_user_prop[i]); 1792 headerbuf[i] = '\0'; 1793 header = headerbuf; 1794 } 1795 1796 if (pl->pl_next == NULL && !right_justify) 1797 (void) printf("%s", header); 1798 else if (right_justify) 1799 (void) printf("%*s", pl->pl_width, header); 1800 else 1801 (void) printf("%-*s", pl->pl_width, header); 1802 } 1803 1804 (void) printf("\n"); 1805 } 1806 1807 /* 1808 * Given a dataset and a list of fields, print out all the properties according 1809 * to the described layout. 1810 */ 1811 static void 1812 print_dataset(zfs_handle_t *zhp, zprop_list_t *pl, boolean_t scripted) 1813 { 1814 boolean_t first = B_TRUE; 1815 char property[ZFS_MAXPROPLEN]; 1816 nvlist_t *userprops = zfs_get_user_props(zhp); 1817 nvlist_t *propval; 1818 char *propstr; 1819 boolean_t right_justify; 1820 int width; 1821 1822 for (; pl != NULL; pl = pl->pl_next) { 1823 if (!first) { 1824 if (scripted) 1825 (void) printf("\t"); 1826 else 1827 (void) printf(" "); 1828 } else { 1829 first = B_FALSE; 1830 } 1831 1832 if (pl->pl_prop != ZPROP_INVAL) { 1833 if (zfs_prop_get(zhp, pl->pl_prop, property, 1834 sizeof (property), NULL, NULL, 0, B_FALSE) != 0) 1835 propstr = "-"; 1836 else 1837 propstr = property; 1838 1839 right_justify = zfs_prop_align_right(pl->pl_prop); 1840 } else if (zfs_prop_userquota(pl->pl_user_prop)) { 1841 if (zfs_prop_get_userquota(zhp, pl->pl_user_prop, 1842 property, sizeof (property), B_FALSE) != 0) 1843 propstr = "-"; 1844 else 1845 propstr = property; 1846 right_justify = B_TRUE; 1847 } else { 1848 if (nvlist_lookup_nvlist(userprops, 1849 pl->pl_user_prop, &propval) != 0) 1850 propstr = "-"; 1851 else 1852 verify(nvlist_lookup_string(propval, 1853 ZPROP_VALUE, &propstr) == 0); 1854 right_justify = B_FALSE; 1855 } 1856 1857 width = pl->pl_width; 1858 1859 /* 1860 * If this is being called in scripted mode, or if this is the 1861 * last column and it is left-justified, don't include a width 1862 * format specifier. 1863 */ 1864 if (scripted || (pl->pl_next == NULL && !right_justify)) 1865 (void) printf("%s", propstr); 1866 else if (right_justify) 1867 (void) printf("%*s", width, propstr); 1868 else 1869 (void) printf("%-*s", width, propstr); 1870 } 1871 1872 (void) printf("\n"); 1873 } 1874 1875 /* 1876 * Generic callback function to list a dataset or snapshot. 1877 */ 1878 static int 1879 list_callback(zfs_handle_t *zhp, void *data) 1880 { 1881 list_cbdata_t *cbp = data; 1882 1883 if (cbp->cb_first) { 1884 if (!cbp->cb_scripted) 1885 print_header(cbp->cb_proplist); 1886 cbp->cb_first = B_FALSE; 1887 } 1888 1889 print_dataset(zhp, cbp->cb_proplist, cbp->cb_scripted); 1890 1891 return (0); 1892 } 1893 1894 static int 1895 zfs_do_list(int argc, char **argv) 1896 { 1897 int c; 1898 boolean_t scripted = B_FALSE; 1899 static char default_fields[] = 1900 "name,used,available,referenced,mountpoint"; 1901 int types = ZFS_TYPE_DATASET; 1902 boolean_t types_specified = B_FALSE; 1903 char *fields = NULL; 1904 list_cbdata_t cb = { 0 }; 1905 char *value; 1906 int limit = 0; 1907 int ret; 1908 zfs_sort_column_t *sortcol = NULL; 1909 int flags = ZFS_ITER_PROP_LISTSNAPS | ZFS_ITER_ARGS_CAN_BE_PATHS; 1910 1911 /* check options */ 1912 while ((c = getopt(argc, argv, ":d:o:rt:Hs:S:")) != -1) { 1913 switch (c) { 1914 case 'o': 1915 fields = optarg; 1916 break; 1917 case 'd': 1918 limit = parse_depth(optarg, &flags); 1919 break; 1920 case 'r': 1921 flags |= ZFS_ITER_RECURSE; 1922 break; 1923 case 'H': 1924 scripted = B_TRUE; 1925 break; 1926 case 's': 1927 if (zfs_add_sort_column(&sortcol, optarg, 1928 B_FALSE) != 0) { 1929 (void) fprintf(stderr, 1930 gettext("invalid property '%s'\n"), optarg); 1931 usage(B_FALSE); 1932 } 1933 break; 1934 case 'S': 1935 if (zfs_add_sort_column(&sortcol, optarg, 1936 B_TRUE) != 0) { 1937 (void) fprintf(stderr, 1938 gettext("invalid property '%s'\n"), optarg); 1939 usage(B_FALSE); 1940 } 1941 break; 1942 case 't': 1943 types = 0; 1944 types_specified = B_TRUE; 1945 flags &= ~ZFS_ITER_PROP_LISTSNAPS; 1946 while (*optarg != '\0') { 1947 static char *type_subopts[] = { "filesystem", 1948 "volume", "snapshot", "all", NULL }; 1949 1950 switch (getsubopt(&optarg, type_subopts, 1951 &value)) { 1952 case 0: 1953 types |= ZFS_TYPE_FILESYSTEM; 1954 break; 1955 case 1: 1956 types |= ZFS_TYPE_VOLUME; 1957 break; 1958 case 2: 1959 types |= ZFS_TYPE_SNAPSHOT; 1960 break; 1961 case 3: 1962 types = ZFS_TYPE_DATASET; 1963 break; 1964 1965 default: 1966 (void) fprintf(stderr, 1967 gettext("invalid type '%s'\n"), 1968 value); 1969 usage(B_FALSE); 1970 } 1971 } 1972 break; 1973 case ':': 1974 (void) fprintf(stderr, gettext("missing argument for " 1975 "'%c' option\n"), optopt); 1976 usage(B_FALSE); 1977 break; 1978 case '?': 1979 (void) fprintf(stderr, gettext("invalid option '%c'\n"), 1980 optopt); 1981 usage(B_FALSE); 1982 } 1983 } 1984 1985 argc -= optind; 1986 argv += optind; 1987 1988 if (fields == NULL) 1989 fields = default_fields; 1990 1991 /* 1992 * If "-o space" and no types were specified, don't display snapshots. 1993 */ 1994 if (strcmp(fields, "space") == 0 && types_specified == B_FALSE) 1995 types &= ~ZFS_TYPE_SNAPSHOT; 1996 1997 /* 1998 * If the user specifies '-o all', the zprop_get_list() doesn't 1999 * normally include the name of the dataset. For 'zfs list', we always 2000 * want this property to be first. 2001 */ 2002 if (zprop_get_list(g_zfs, fields, &cb.cb_proplist, ZFS_TYPE_DATASET) 2003 != 0) 2004 usage(B_FALSE); 2005 2006 cb.cb_scripted = scripted; 2007 cb.cb_first = B_TRUE; 2008 2009 ret = zfs_for_each(argc, argv, flags, types, sortcol, &cb.cb_proplist, 2010 limit, list_callback, &cb); 2011 2012 zprop_free_list(cb.cb_proplist); 2013 zfs_free_sort_columns(sortcol); 2014 2015 if (ret == 0 && cb.cb_first && !cb.cb_scripted) 2016 (void) printf(gettext("no datasets available\n")); 2017 2018 return (ret); 2019 } 2020 2021 /* 2022 * zfs rename <fs | snap | vol> <fs | snap | vol> 2023 * zfs rename -p <fs | vol> <fs | vol> 2024 * zfs rename -r <snap> <snap> 2025 * 2026 * Renames the given dataset to another of the same type. 2027 * 2028 * The '-p' flag creates all the non-existing ancestors of the target first. 2029 */ 2030 /* ARGSUSED */ 2031 static int 2032 zfs_do_rename(int argc, char **argv) 2033 { 2034 zfs_handle_t *zhp; 2035 int c; 2036 int ret; 2037 boolean_t recurse = B_FALSE; 2038 boolean_t parents = B_FALSE; 2039 2040 /* check options */ 2041 while ((c = getopt(argc, argv, "pr")) != -1) { 2042 switch (c) { 2043 case 'p': 2044 parents = B_TRUE; 2045 break; 2046 case 'r': 2047 recurse = B_TRUE; 2048 break; 2049 case '?': 2050 default: 2051 (void) fprintf(stderr, gettext("invalid option '%c'\n"), 2052 optopt); 2053 usage(B_FALSE); 2054 } 2055 } 2056 2057 argc -= optind; 2058 argv += optind; 2059 2060 /* check number of arguments */ 2061 if (argc < 1) { 2062 (void) fprintf(stderr, gettext("missing source dataset " 2063 "argument\n")); 2064 usage(B_FALSE); 2065 } 2066 if (argc < 2) { 2067 (void) fprintf(stderr, gettext("missing target dataset " 2068 "argument\n")); 2069 usage(B_FALSE); 2070 } 2071 if (argc > 2) { 2072 (void) fprintf(stderr, gettext("too many arguments\n")); 2073 usage(B_FALSE); 2074 } 2075 2076 if (recurse && parents) { 2077 (void) fprintf(stderr, gettext("-p and -r options are mutually " 2078 "exclusive\n")); 2079 usage(B_FALSE); 2080 } 2081 2082 if (recurse && strchr(argv[0], '@') == 0) { 2083 (void) fprintf(stderr, gettext("source dataset for recursive " 2084 "rename must be a snapshot\n")); 2085 usage(B_FALSE); 2086 } 2087 2088 if ((zhp = zfs_open(g_zfs, argv[0], parents ? ZFS_TYPE_FILESYSTEM | 2089 ZFS_TYPE_VOLUME : ZFS_TYPE_DATASET)) == NULL) 2090 return (1); 2091 2092 /* If we were asked and the name looks good, try to create ancestors. */ 2093 if (parents && zfs_name_valid(argv[1], zfs_get_type(zhp)) && 2094 zfs_create_ancestors(g_zfs, argv[1]) != 0) { 2095 zfs_close(zhp); 2096 return (1); 2097 } 2098 2099 ret = (zfs_rename(zhp, argv[1], recurse) != 0); 2100 2101 zfs_close(zhp); 2102 return (ret); 2103 } 2104 2105 /* 2106 * zfs promote <fs> 2107 * 2108 * Promotes the given clone fs to be the parent 2109 */ 2110 /* ARGSUSED */ 2111 static int 2112 zfs_do_promote(int argc, char **argv) 2113 { 2114 zfs_handle_t *zhp; 2115 int ret; 2116 2117 /* check options */ 2118 if (argc > 1 && argv[1][0] == '-') { 2119 (void) fprintf(stderr, gettext("invalid option '%c'\n"), 2120 argv[1][1]); 2121 usage(B_FALSE); 2122 } 2123 2124 /* check number of arguments */ 2125 if (argc < 2) { 2126 (void) fprintf(stderr, gettext("missing clone filesystem" 2127 " argument\n")); 2128 usage(B_FALSE); 2129 } 2130 if (argc > 2) { 2131 (void) fprintf(stderr, gettext("too many arguments\n")); 2132 usage(B_FALSE); 2133 } 2134 2135 zhp = zfs_open(g_zfs, argv[1], ZFS_TYPE_FILESYSTEM | ZFS_TYPE_VOLUME); 2136 if (zhp == NULL) 2137 return (1); 2138 2139 ret = (zfs_promote(zhp) != 0); 2140 2141 2142 zfs_close(zhp); 2143 return (ret); 2144 } 2145 2146 /* 2147 * zfs rollback [-rRf] <snapshot> 2148 * 2149 * -r Delete any intervening snapshots before doing rollback 2150 * -R Delete any snapshots and their clones 2151 * -f ignored for backwards compatability 2152 * 2153 * Given a filesystem, rollback to a specific snapshot, discarding any changes 2154 * since then and making it the active dataset. If more recent snapshots exist, 2155 * the command will complain unless the '-r' flag is given. 2156 */ 2157 typedef struct rollback_cbdata { 2158 uint64_t cb_create; 2159 boolean_t cb_first; 2160 int cb_doclones; 2161 char *cb_target; 2162 int cb_error; 2163 boolean_t cb_recurse; 2164 boolean_t cb_dependent; 2165 } rollback_cbdata_t; 2166 2167 /* 2168 * Report any snapshots more recent than the one specified. Used when '-r' is 2169 * not specified. We reuse this same callback for the snapshot dependents - if 2170 * 'cb_dependent' is set, then this is a dependent and we should report it 2171 * without checking the transaction group. 2172 */ 2173 static int 2174 rollback_check(zfs_handle_t *zhp, void *data) 2175 { 2176 rollback_cbdata_t *cbp = data; 2177 2178 if (cbp->cb_doclones) { 2179 zfs_close(zhp); 2180 return (0); 2181 } 2182 2183 if (!cbp->cb_dependent) { 2184 if (strcmp(zfs_get_name(zhp), cbp->cb_target) != 0 && 2185 zfs_get_type(zhp) == ZFS_TYPE_SNAPSHOT && 2186 zfs_prop_get_int(zhp, ZFS_PROP_CREATETXG) > 2187 cbp->cb_create) { 2188 2189 if (cbp->cb_first && !cbp->cb_recurse) { 2190 (void) fprintf(stderr, gettext("cannot " 2191 "rollback to '%s': more recent snapshots " 2192 "exist\n"), 2193 cbp->cb_target); 2194 (void) fprintf(stderr, gettext("use '-r' to " 2195 "force deletion of the following " 2196 "snapshots:\n")); 2197 cbp->cb_first = 0; 2198 cbp->cb_error = 1; 2199 } 2200 2201 if (cbp->cb_recurse) { 2202 cbp->cb_dependent = B_TRUE; 2203 if (zfs_iter_dependents(zhp, B_TRUE, 2204 rollback_check, cbp) != 0) { 2205 zfs_close(zhp); 2206 return (-1); 2207 } 2208 cbp->cb_dependent = B_FALSE; 2209 } else { 2210 (void) fprintf(stderr, "%s\n", 2211 zfs_get_name(zhp)); 2212 } 2213 } 2214 } else { 2215 if (cbp->cb_first && cbp->cb_recurse) { 2216 (void) fprintf(stderr, gettext("cannot rollback to " 2217 "'%s': clones of previous snapshots exist\n"), 2218 cbp->cb_target); 2219 (void) fprintf(stderr, gettext("use '-R' to " 2220 "force deletion of the following clones and " 2221 "dependents:\n")); 2222 cbp->cb_first = 0; 2223 cbp->cb_error = 1; 2224 } 2225 2226 (void) fprintf(stderr, "%s\n", zfs_get_name(zhp)); 2227 } 2228 2229 zfs_close(zhp); 2230 return (0); 2231 } 2232 2233 static int 2234 zfs_do_rollback(int argc, char **argv) 2235 { 2236 int ret; 2237 int c; 2238 boolean_t force = B_FALSE; 2239 rollback_cbdata_t cb = { 0 }; 2240 zfs_handle_t *zhp, *snap; 2241 char parentname[ZFS_MAXNAMELEN]; 2242 char *delim; 2243 2244 /* check options */ 2245 while ((c = getopt(argc, argv, "rRf")) != -1) { 2246 switch (c) { 2247 case 'r': 2248 cb.cb_recurse = 1; 2249 break; 2250 case 'R': 2251 cb.cb_recurse = 1; 2252 cb.cb_doclones = 1; 2253 break; 2254 case 'f': 2255 force = B_TRUE; 2256 break; 2257 case '?': 2258 (void) fprintf(stderr, gettext("invalid option '%c'\n"), 2259 optopt); 2260 usage(B_FALSE); 2261 } 2262 } 2263 2264 argc -= optind; 2265 argv += optind; 2266 2267 /* check number of arguments */ 2268 if (argc < 1) { 2269 (void) fprintf(stderr, gettext("missing dataset argument\n")); 2270 usage(B_FALSE); 2271 } 2272 if (argc > 1) { 2273 (void) fprintf(stderr, gettext("too many arguments\n")); 2274 usage(B_FALSE); 2275 } 2276 2277 /* open the snapshot */ 2278 if ((snap = zfs_open(g_zfs, argv[0], ZFS_TYPE_SNAPSHOT)) == NULL) 2279 return (1); 2280 2281 /* open the parent dataset */ 2282 (void) strlcpy(parentname, argv[0], sizeof (parentname)); 2283 verify((delim = strrchr(parentname, '@')) != NULL); 2284 *delim = '\0'; 2285 if ((zhp = zfs_open(g_zfs, parentname, ZFS_TYPE_DATASET)) == NULL) { 2286 zfs_close(snap); 2287 return (1); 2288 } 2289 2290 /* 2291 * Check for more recent snapshots and/or clones based on the presence 2292 * of '-r' and '-R'. 2293 */ 2294 cb.cb_target = argv[0]; 2295 cb.cb_create = zfs_prop_get_int(snap, ZFS_PROP_CREATETXG); 2296 cb.cb_first = B_TRUE; 2297 cb.cb_error = 0; 2298 if ((ret = zfs_iter_children(zhp, rollback_check, &cb)) != 0) 2299 goto out; 2300 2301 if ((ret = cb.cb_error) != 0) 2302 goto out; 2303 2304 /* 2305 * Rollback parent to the given snapshot. 2306 */ 2307 ret = zfs_rollback(zhp, snap, force); 2308 2309 out: 2310 zfs_close(snap); 2311 zfs_close(zhp); 2312 2313 if (ret == 0) 2314 return (0); 2315 else 2316 return (1); 2317 } 2318 2319 /* 2320 * zfs set property=value { fs | snap | vol } ... 2321 * 2322 * Sets the given property for all datasets specified on the command line. 2323 */ 2324 typedef struct set_cbdata { 2325 char *cb_propname; 2326 char *cb_value; 2327 } set_cbdata_t; 2328 2329 static int 2330 set_callback(zfs_handle_t *zhp, void *data) 2331 { 2332 set_cbdata_t *cbp = data; 2333 2334 if (zfs_prop_set(zhp, cbp->cb_propname, cbp->cb_value) != 0) { 2335 switch (libzfs_errno(g_zfs)) { 2336 case EZFS_MOUNTFAILED: 2337 (void) fprintf(stderr, gettext("property may be set " 2338 "but unable to remount filesystem\n")); 2339 break; 2340 case EZFS_SHARENFSFAILED: 2341 (void) fprintf(stderr, gettext("property may be set " 2342 "but unable to reshare filesystem\n")); 2343 break; 2344 } 2345 return (1); 2346 } 2347 return (0); 2348 } 2349 2350 static int 2351 zfs_do_set(int argc, char **argv) 2352 { 2353 set_cbdata_t cb; 2354 int ret; 2355 2356 /* check for options */ 2357 if (argc > 1 && argv[1][0] == '-') { 2358 (void) fprintf(stderr, gettext("invalid option '%c'\n"), 2359 argv[1][1]); 2360 usage(B_FALSE); 2361 } 2362 2363 /* check number of arguments */ 2364 if (argc < 2) { 2365 (void) fprintf(stderr, gettext("missing property=value " 2366 "argument\n")); 2367 usage(B_FALSE); 2368 } 2369 if (argc < 3) { 2370 (void) fprintf(stderr, gettext("missing dataset name\n")); 2371 usage(B_FALSE); 2372 } 2373 2374 /* validate property=value argument */ 2375 cb.cb_propname = argv[1]; 2376 if (((cb.cb_value = strchr(cb.cb_propname, '=')) == NULL) || 2377 (cb.cb_value[1] == '\0')) { 2378 (void) fprintf(stderr, gettext("missing value in " 2379 "property=value argument\n")); 2380 usage(B_FALSE); 2381 } 2382 2383 *cb.cb_value = '\0'; 2384 cb.cb_value++; 2385 2386 if (*cb.cb_propname == '\0') { 2387 (void) fprintf(stderr, 2388 gettext("missing property in property=value argument\n")); 2389 usage(B_FALSE); 2390 } 2391 2392 ret = zfs_for_each(argc - 2, argv + 2, NULL, 2393 ZFS_TYPE_DATASET, NULL, NULL, 0, set_callback, &cb); 2394 2395 return (ret); 2396 } 2397 2398 /* 2399 * zfs snapshot [-r] [-o prop=value] ... <fs@snap> 2400 * 2401 * Creates a snapshot with the given name. While functionally equivalent to 2402 * 'zfs create', it is a separate command to differentiate intent. 2403 */ 2404 static int 2405 zfs_do_snapshot(int argc, char **argv) 2406 { 2407 boolean_t recursive = B_FALSE; 2408 int ret; 2409 char c; 2410 nvlist_t *props; 2411 2412 if (nvlist_alloc(&props, NV_UNIQUE_NAME, 0) != 0) { 2413 (void) fprintf(stderr, gettext("internal error: " 2414 "out of memory\n")); 2415 return (1); 2416 } 2417 2418 /* check options */ 2419 while ((c = getopt(argc, argv, "ro:")) != -1) { 2420 switch (c) { 2421 case 'o': 2422 if (parseprop(props)) 2423 return (1); 2424 break; 2425 case 'r': 2426 recursive = B_TRUE; 2427 break; 2428 case '?': 2429 (void) fprintf(stderr, gettext("invalid option '%c'\n"), 2430 optopt); 2431 goto usage; 2432 } 2433 } 2434 2435 argc -= optind; 2436 argv += optind; 2437 2438 /* check number of arguments */ 2439 if (argc < 1) { 2440 (void) fprintf(stderr, gettext("missing snapshot argument\n")); 2441 goto usage; 2442 } 2443 if (argc > 1) { 2444 (void) fprintf(stderr, gettext("too many arguments\n")); 2445 goto usage; 2446 } 2447 2448 ret = zfs_snapshot(g_zfs, argv[0], recursive, props); 2449 nvlist_free(props); 2450 if (ret && recursive) 2451 (void) fprintf(stderr, gettext("no snapshots were created\n")); 2452 return (ret != 0); 2453 2454 usage: 2455 nvlist_free(props); 2456 usage(B_FALSE); 2457 return (-1); 2458 } 2459 2460 /* 2461 * zfs send [-v] -R [-i|-I <@snap>] <fs@snap> 2462 * zfs send [-v] [-i|-I <@snap>] <fs@snap> 2463 * 2464 * Send a backup stream to stdout. 2465 */ 2466 static int 2467 zfs_do_send(int argc, char **argv) 2468 { 2469 char *fromname = NULL; 2470 char *toname = NULL; 2471 char *cp; 2472 zfs_handle_t *zhp; 2473 boolean_t doall = B_FALSE; 2474 boolean_t replicate = B_FALSE; 2475 boolean_t fromorigin = B_FALSE; 2476 boolean_t verbose = B_FALSE; 2477 int c, err; 2478 2479 /* check options */ 2480 while ((c = getopt(argc, argv, ":i:I:Rv")) != -1) { 2481 switch (c) { 2482 case 'i': 2483 if (fromname) 2484 usage(B_FALSE); 2485 fromname = optarg; 2486 break; 2487 case 'I': 2488 if (fromname) 2489 usage(B_FALSE); 2490 fromname = optarg; 2491 doall = B_TRUE; 2492 break; 2493 case 'R': 2494 replicate = B_TRUE; 2495 break; 2496 case 'v': 2497 verbose = B_TRUE; 2498 break; 2499 case ':': 2500 (void) fprintf(stderr, gettext("missing argument for " 2501 "'%c' option\n"), optopt); 2502 usage(B_FALSE); 2503 break; 2504 case '?': 2505 (void) fprintf(stderr, gettext("invalid option '%c'\n"), 2506 optopt); 2507 usage(B_FALSE); 2508 } 2509 } 2510 2511 argc -= optind; 2512 argv += optind; 2513 2514 /* check number of arguments */ 2515 if (argc < 1) { 2516 (void) fprintf(stderr, gettext("missing snapshot argument\n")); 2517 usage(B_FALSE); 2518 } 2519 if (argc > 1) { 2520 (void) fprintf(stderr, gettext("too many arguments\n")); 2521 usage(B_FALSE); 2522 } 2523 2524 if (isatty(STDOUT_FILENO)) { 2525 (void) fprintf(stderr, 2526 gettext("Error: Stream can not be written to a terminal.\n" 2527 "You must redirect standard output.\n")); 2528 return (1); 2529 } 2530 2531 cp = strchr(argv[0], '@'); 2532 if (cp == NULL) { 2533 (void) fprintf(stderr, 2534 gettext("argument must be a snapshot\n")); 2535 usage(B_FALSE); 2536 } 2537 *cp = '\0'; 2538 toname = cp + 1; 2539 zhp = zfs_open(g_zfs, argv[0], ZFS_TYPE_FILESYSTEM | ZFS_TYPE_VOLUME); 2540 if (zhp == NULL) 2541 return (1); 2542 2543 /* 2544 * If they specified the full path to the snapshot, chop off 2545 * everything except the short name of the snapshot, but special 2546 * case if they specify the origin. 2547 */ 2548 if (fromname && (cp = strchr(fromname, '@')) != NULL) { 2549 char origin[ZFS_MAXNAMELEN]; 2550 zprop_source_t src; 2551 2552 (void) zfs_prop_get(zhp, ZFS_PROP_ORIGIN, 2553 origin, sizeof (origin), &src, NULL, 0, B_FALSE); 2554 2555 if (strcmp(origin, fromname) == 0) { 2556 fromname = NULL; 2557 fromorigin = B_TRUE; 2558 } else { 2559 *cp = '\0'; 2560 if (cp != fromname && strcmp(argv[0], fromname)) { 2561 (void) fprintf(stderr, 2562 gettext("incremental source must be " 2563 "in same filesystem\n")); 2564 usage(B_FALSE); 2565 } 2566 fromname = cp + 1; 2567 if (strchr(fromname, '@') || strchr(fromname, '/')) { 2568 (void) fprintf(stderr, 2569 gettext("invalid incremental source\n")); 2570 usage(B_FALSE); 2571 } 2572 } 2573 } 2574 2575 if (replicate && fromname == NULL) 2576 doall = B_TRUE; 2577 2578 err = zfs_send(zhp, fromname, toname, replicate, doall, fromorigin, 2579 verbose, STDOUT_FILENO); 2580 zfs_close(zhp); 2581 2582 return (err != 0); 2583 } 2584 2585 /* 2586 * zfs receive [-dnvF] <fs@snap> 2587 * 2588 * Restore a backup stream from stdin. 2589 */ 2590 static int 2591 zfs_do_receive(int argc, char **argv) 2592 { 2593 int c, err; 2594 recvflags_t flags; 2595 2596 bzero(&flags, sizeof (recvflags_t)); 2597 /* check options */ 2598 while ((c = getopt(argc, argv, ":dnuvF")) != -1) { 2599 switch (c) { 2600 case 'd': 2601 flags.isprefix = B_TRUE; 2602 break; 2603 case 'n': 2604 flags.dryrun = B_TRUE; 2605 break; 2606 case 'u': 2607 flags.nomount = B_TRUE; 2608 break; 2609 case 'v': 2610 flags.verbose = B_TRUE; 2611 break; 2612 case 'F': 2613 flags.force = B_TRUE; 2614 break; 2615 case ':': 2616 (void) fprintf(stderr, gettext("missing argument for " 2617 "'%c' option\n"), optopt); 2618 usage(B_FALSE); 2619 break; 2620 case '?': 2621 (void) fprintf(stderr, gettext("invalid option '%c'\n"), 2622 optopt); 2623 usage(B_FALSE); 2624 } 2625 } 2626 2627 argc -= optind; 2628 argv += optind; 2629 2630 /* check number of arguments */ 2631 if (argc < 1) { 2632 (void) fprintf(stderr, gettext("missing snapshot argument\n")); 2633 usage(B_FALSE); 2634 } 2635 if (argc > 1) { 2636 (void) fprintf(stderr, gettext("too many arguments\n")); 2637 usage(B_FALSE); 2638 } 2639 2640 if (isatty(STDIN_FILENO)) { 2641 (void) fprintf(stderr, 2642 gettext("Error: Backup stream can not be read " 2643 "from a terminal.\n" 2644 "You must redirect standard input.\n")); 2645 return (1); 2646 } 2647 2648 err = zfs_receive(g_zfs, argv[0], flags, STDIN_FILENO, NULL); 2649 2650 return (err != 0); 2651 } 2652 2653 typedef struct get_all_cbdata { 2654 zfs_handle_t **cb_handles; 2655 size_t cb_alloc; 2656 size_t cb_used; 2657 uint_t cb_types; 2658 boolean_t cb_verbose; 2659 } get_all_cbdata_t; 2660 2661 #define CHECK_SPINNER 30 2662 #define SPINNER_TIME 3 /* seconds */ 2663 #define MOUNT_TIME 5 /* seconds */ 2664 2665 static int 2666 get_one_dataset(zfs_handle_t *zhp, void *data) 2667 { 2668 static char spin[] = { '-', '\\', '|', '/' }; 2669 static int spinval = 0; 2670 static int spincheck = 0; 2671 static time_t last_spin_time = (time_t)0; 2672 get_all_cbdata_t *cbp = data; 2673 zfs_type_t type = zfs_get_type(zhp); 2674 2675 if (cbp->cb_verbose) { 2676 if (--spincheck < 0) { 2677 time_t now = time(NULL); 2678 if (last_spin_time + SPINNER_TIME < now) { 2679 (void) printf("\b%c", spin[spinval++ % 4]); 2680 (void) fflush(stdout); 2681 last_spin_time = now; 2682 } 2683 spincheck = CHECK_SPINNER; 2684 } 2685 } 2686 2687 /* 2688 * Interate over any nested datasets. 2689 */ 2690 if (type == ZFS_TYPE_FILESYSTEM && 2691 zfs_iter_filesystems(zhp, get_one_dataset, data) != 0) { 2692 zfs_close(zhp); 2693 return (1); 2694 } 2695 2696 /* 2697 * Skip any datasets whose type does not match. 2698 */ 2699 if ((type & cbp->cb_types) == 0) { 2700 zfs_close(zhp); 2701 return (0); 2702 } 2703 2704 if (cbp->cb_alloc == cbp->cb_used) { 2705 zfs_handle_t **handles; 2706 2707 if (cbp->cb_alloc == 0) 2708 cbp->cb_alloc = 64; 2709 else 2710 cbp->cb_alloc *= 2; 2711 2712 handles = safe_malloc(cbp->cb_alloc * sizeof (void *)); 2713 2714 if (cbp->cb_handles) { 2715 bcopy(cbp->cb_handles, handles, 2716 cbp->cb_used * sizeof (void *)); 2717 free(cbp->cb_handles); 2718 } 2719 2720 cbp->cb_handles = handles; 2721 } 2722 2723 cbp->cb_handles[cbp->cb_used++] = zhp; 2724 2725 return (0); 2726 } 2727 2728 static void 2729 get_all_datasets(uint_t types, zfs_handle_t ***dslist, size_t *count, 2730 boolean_t verbose) 2731 { 2732 get_all_cbdata_t cb = { 0 }; 2733 cb.cb_types = types; 2734 cb.cb_verbose = verbose; 2735 2736 if (verbose) { 2737 (void) printf("%s: *", gettext("Reading ZFS config")); 2738 (void) fflush(stdout); 2739 } 2740 2741 (void) zfs_iter_root(g_zfs, get_one_dataset, &cb); 2742 2743 *dslist = cb.cb_handles; 2744 *count = cb.cb_used; 2745 2746 if (verbose) { 2747 (void) printf("\b%s\n", gettext("done.")); 2748 } 2749 } 2750 2751 static int 2752 dataset_cmp(const void *a, const void *b) 2753 { 2754 zfs_handle_t **za = (zfs_handle_t **)a; 2755 zfs_handle_t **zb = (zfs_handle_t **)b; 2756 char mounta[MAXPATHLEN]; 2757 char mountb[MAXPATHLEN]; 2758 boolean_t gota, gotb; 2759 2760 if ((gota = (zfs_get_type(*za) == ZFS_TYPE_FILESYSTEM)) != 0) 2761 verify(zfs_prop_get(*za, ZFS_PROP_MOUNTPOINT, mounta, 2762 sizeof (mounta), NULL, NULL, 0, B_FALSE) == 0); 2763 if ((gotb = (zfs_get_type(*zb) == ZFS_TYPE_FILESYSTEM)) != 0) 2764 verify(zfs_prop_get(*zb, ZFS_PROP_MOUNTPOINT, mountb, 2765 sizeof (mountb), NULL, NULL, 0, B_FALSE) == 0); 2766 2767 if (gota && gotb) 2768 return (strcmp(mounta, mountb)); 2769 2770 if (gota) 2771 return (-1); 2772 if (gotb) 2773 return (1); 2774 2775 return (strcmp(zfs_get_name(a), zfs_get_name(b))); 2776 } 2777 2778 /* 2779 * Generic callback for sharing or mounting filesystems. Because the code is so 2780 * similar, we have a common function with an extra parameter to determine which 2781 * mode we are using. 2782 */ 2783 #define OP_SHARE 0x1 2784 #define OP_MOUNT 0x2 2785 2786 /* 2787 * Share or mount a dataset. 2788 */ 2789 static int 2790 share_mount_one(zfs_handle_t *zhp, int op, int flags, char *protocol, 2791 boolean_t explicit, const char *options) 2792 { 2793 char mountpoint[ZFS_MAXPROPLEN]; 2794 char shareopts[ZFS_MAXPROPLEN]; 2795 char smbshareopts[ZFS_MAXPROPLEN]; 2796 const char *cmdname = op == OP_SHARE ? "share" : "mount"; 2797 struct mnttab mnt; 2798 uint64_t zoned, canmount; 2799 zfs_type_t type = zfs_get_type(zhp); 2800 boolean_t shared_nfs, shared_smb; 2801 2802 assert(type & (ZFS_TYPE_FILESYSTEM | ZFS_TYPE_VOLUME)); 2803 2804 if (type == ZFS_TYPE_FILESYSTEM) { 2805 /* 2806 * Check to make sure we can mount/share this dataset. If we 2807 * are in the global zone and the filesystem is exported to a 2808 * local zone, or if we are in a local zone and the 2809 * filesystem is not exported, then it is an error. 2810 */ 2811 zoned = zfs_prop_get_int(zhp, ZFS_PROP_ZONED); 2812 2813 if (zoned && getzoneid() == GLOBAL_ZONEID) { 2814 if (!explicit) 2815 return (0); 2816 2817 (void) fprintf(stderr, gettext("cannot %s '%s': " 2818 "dataset is exported to a local zone\n"), cmdname, 2819 zfs_get_name(zhp)); 2820 return (1); 2821 2822 } else if (!zoned && getzoneid() != GLOBAL_ZONEID) { 2823 if (!explicit) 2824 return (0); 2825 2826 (void) fprintf(stderr, gettext("cannot %s '%s': " 2827 "permission denied\n"), cmdname, 2828 zfs_get_name(zhp)); 2829 return (1); 2830 } 2831 2832 /* 2833 * Ignore any filesystems which don't apply to us. This 2834 * includes those with a legacy mountpoint, or those with 2835 * legacy share options. 2836 */ 2837 verify(zfs_prop_get(zhp, ZFS_PROP_MOUNTPOINT, mountpoint, 2838 sizeof (mountpoint), NULL, NULL, 0, B_FALSE) == 0); 2839 verify(zfs_prop_get(zhp, ZFS_PROP_SHARENFS, shareopts, 2840 sizeof (shareopts), NULL, NULL, 0, B_FALSE) == 0); 2841 verify(zfs_prop_get(zhp, ZFS_PROP_SHARESMB, smbshareopts, 2842 sizeof (smbshareopts), NULL, NULL, 0, B_FALSE) == 0); 2843 2844 if (op == OP_SHARE && strcmp(shareopts, "off") == 0 && 2845 strcmp(smbshareopts, "off") == 0) { 2846 if (!explicit) 2847 return (0); 2848 2849 (void) fprintf(stderr, gettext("cannot share '%s': " 2850 "legacy share\n"), zfs_get_name(zhp)); 2851 (void) fprintf(stderr, gettext("use share(1M) to " 2852 "share this filesystem, or set " 2853 "sharenfs property on\n")); 2854 return (1); 2855 } 2856 2857 /* 2858 * We cannot share or mount legacy filesystems. If the 2859 * shareopts is non-legacy but the mountpoint is legacy, we 2860 * treat it as a legacy share. 2861 */ 2862 if (strcmp(mountpoint, "legacy") == 0) { 2863 if (!explicit) 2864 return (0); 2865 2866 (void) fprintf(stderr, gettext("cannot %s '%s': " 2867 "legacy mountpoint\n"), cmdname, zfs_get_name(zhp)); 2868 (void) fprintf(stderr, gettext("use %s(1M) to " 2869 "%s this filesystem\n"), cmdname, cmdname); 2870 return (1); 2871 } 2872 2873 if (strcmp(mountpoint, "none") == 0) { 2874 if (!explicit) 2875 return (0); 2876 2877 (void) fprintf(stderr, gettext("cannot %s '%s': no " 2878 "mountpoint set\n"), cmdname, zfs_get_name(zhp)); 2879 return (1); 2880 } 2881 2882 /* 2883 * canmount explicit outcome 2884 * on no pass through 2885 * on yes pass through 2886 * off no return 0 2887 * off yes display error, return 1 2888 * noauto no return 0 2889 * noauto yes pass through 2890 */ 2891 canmount = zfs_prop_get_int(zhp, ZFS_PROP_CANMOUNT); 2892 if (canmount == ZFS_CANMOUNT_OFF) { 2893 if (!explicit) 2894 return (0); 2895 2896 (void) fprintf(stderr, gettext("cannot %s '%s': " 2897 "'canmount' property is set to 'off'\n"), cmdname, 2898 zfs_get_name(zhp)); 2899 return (1); 2900 } else if (canmount == ZFS_CANMOUNT_NOAUTO && !explicit) { 2901 return (0); 2902 } 2903 2904 /* 2905 * At this point, we have verified that the mountpoint and/or 2906 * shareopts are appropriate for auto management. If the 2907 * filesystem is already mounted or shared, return (failing 2908 * for explicit requests); otherwise mount or share the 2909 * filesystem. 2910 */ 2911 switch (op) { 2912 case OP_SHARE: 2913 2914 shared_nfs = zfs_is_shared_nfs(zhp, NULL); 2915 shared_smb = zfs_is_shared_smb(zhp, NULL); 2916 2917 if (shared_nfs && shared_smb || 2918 (shared_nfs && strcmp(shareopts, "on") == 0 && 2919 strcmp(smbshareopts, "off") == 0) || 2920 (shared_smb && strcmp(smbshareopts, "on") == 0 && 2921 strcmp(shareopts, "off") == 0)) { 2922 if (!explicit) 2923 return (0); 2924 2925 (void) fprintf(stderr, gettext("cannot share " 2926 "'%s': filesystem already shared\n"), 2927 zfs_get_name(zhp)); 2928 return (1); 2929 } 2930 2931 if (!zfs_is_mounted(zhp, NULL) && 2932 zfs_mount(zhp, NULL, 0) != 0) 2933 return (1); 2934 2935 if (protocol == NULL) { 2936 if (zfs_shareall(zhp) != 0) 2937 return (1); 2938 } else if (strcmp(protocol, "nfs") == 0) { 2939 if (zfs_share_nfs(zhp)) 2940 return (1); 2941 } else if (strcmp(protocol, "smb") == 0) { 2942 if (zfs_share_smb(zhp)) 2943 return (1); 2944 } else { 2945 (void) fprintf(stderr, gettext("cannot share " 2946 "'%s': invalid share type '%s' " 2947 "specified\n"), 2948 zfs_get_name(zhp), protocol); 2949 return (1); 2950 } 2951 2952 break; 2953 2954 case OP_MOUNT: 2955 if (options == NULL) 2956 mnt.mnt_mntopts = ""; 2957 else 2958 mnt.mnt_mntopts = (char *)options; 2959 2960 if (!hasmntopt(&mnt, MNTOPT_REMOUNT) && 2961 zfs_is_mounted(zhp, NULL)) { 2962 if (!explicit) 2963 return (0); 2964 2965 (void) fprintf(stderr, gettext("cannot mount " 2966 "'%s': filesystem already mounted\n"), 2967 zfs_get_name(zhp)); 2968 return (1); 2969 } 2970 2971 if (zfs_mount(zhp, options, flags) != 0) 2972 return (1); 2973 break; 2974 } 2975 } else { 2976 assert(op == OP_SHARE); 2977 2978 /* 2979 * Ignore any volumes that aren't shared. 2980 */ 2981 verify(zfs_prop_get(zhp, ZFS_PROP_SHAREISCSI, shareopts, 2982 sizeof (shareopts), NULL, NULL, 0, B_FALSE) == 0); 2983 2984 if (strcmp(shareopts, "off") == 0) { 2985 if (!explicit) 2986 return (0); 2987 2988 (void) fprintf(stderr, gettext("cannot share '%s': " 2989 "'shareiscsi' property not set\n"), 2990 zfs_get_name(zhp)); 2991 (void) fprintf(stderr, gettext("set 'shareiscsi' " 2992 "property or use iscsitadm(1M) to share this " 2993 "volume\n")); 2994 return (1); 2995 } 2996 2997 if (zfs_is_shared_iscsi(zhp)) { 2998 if (!explicit) 2999 return (0); 3000 3001 (void) fprintf(stderr, gettext("cannot share " 3002 "'%s': volume already shared\n"), 3003 zfs_get_name(zhp)); 3004 return (1); 3005 } 3006 3007 if (zfs_share_iscsi(zhp) != 0) 3008 return (1); 3009 } 3010 3011 return (0); 3012 } 3013 3014 /* 3015 * Reports progress in the form "(current/total)". Not thread-safe. 3016 */ 3017 static void 3018 report_mount_progress(int current, int total) 3019 { 3020 static int len; 3021 static char *reverse = "\b\b\b\b\b\b\b\b\b\b\b\b\b\b\b\b\b\b\b\b" 3022 "\b\b\b\b\b\b\b\b\b\b\b\b\b\b\b\b\b\b\b\b"; 3023 static time_t last_progress_time; 3024 time_t now = time(NULL); 3025 3026 /* report 1..n instead of 0..n-1 */ 3027 ++current; 3028 3029 /* display header if we're here for the first time */ 3030 if (current == 1) { 3031 (void) printf(gettext("Mounting ZFS filesystems: ")); 3032 len = 0; 3033 } else if (current != total && last_progress_time + MOUNT_TIME >= now) { 3034 /* too soon to report again */ 3035 return; 3036 } 3037 3038 last_progress_time = now; 3039 3040 /* back up to prepare for overwriting */ 3041 if (len) 3042 (void) printf("%*.*s", len, len, reverse); 3043 3044 /* We put a newline at the end if this is the last one. */ 3045 len = printf("(%d/%d)%s", current, total, current == total ? "\n" : ""); 3046 (void) fflush(stdout); 3047 } 3048 3049 static void 3050 append_options(char *mntopts, char *newopts) 3051 { 3052 int len = strlen(mntopts); 3053 3054 /* original length plus new string to append plus 1 for the comma */ 3055 if (len + 1 + strlen(newopts) >= MNT_LINE_MAX) { 3056 (void) fprintf(stderr, gettext("the opts argument for " 3057 "'%c' option is too long (more than %d chars)\n"), 3058 "-o", MNT_LINE_MAX); 3059 usage(B_FALSE); 3060 } 3061 3062 if (*mntopts) 3063 mntopts[len++] = ','; 3064 3065 (void) strcpy(&mntopts[len], newopts); 3066 } 3067 3068 static int 3069 share_mount(int op, int argc, char **argv) 3070 { 3071 int do_all = 0; 3072 boolean_t verbose = B_FALSE; 3073 int c, ret = 0; 3074 char *options = NULL; 3075 int types, flags = 0; 3076 3077 /* check options */ 3078 while ((c = getopt(argc, argv, op == OP_MOUNT ? ":avo:O" : "a")) 3079 != -1) { 3080 switch (c) { 3081 case 'a': 3082 do_all = 1; 3083 break; 3084 case 'v': 3085 verbose = B_TRUE; 3086 break; 3087 case 'o': 3088 if (*optarg == '\0') { 3089 (void) fprintf(stderr, gettext("empty mount " 3090 "options (-o) specified\n")); 3091 usage(B_FALSE); 3092 } 3093 3094 if (options == NULL) 3095 options = safe_malloc(MNT_LINE_MAX + 1); 3096 3097 /* option validation is done later */ 3098 append_options(options, optarg); 3099 break; 3100 3101 case 'O': 3102 flags |= MS_OVERLAY; 3103 break; 3104 case ':': 3105 (void) fprintf(stderr, gettext("missing argument for " 3106 "'%c' option\n"), optopt); 3107 usage(B_FALSE); 3108 break; 3109 case '?': 3110 (void) fprintf(stderr, gettext("invalid option '%c'\n"), 3111 optopt); 3112 usage(B_FALSE); 3113 } 3114 } 3115 3116 argc -= optind; 3117 argv += optind; 3118 3119 /* check number of arguments */ 3120 if (do_all) { 3121 zfs_handle_t **dslist = NULL; 3122 size_t i, count = 0; 3123 char *protocol = NULL; 3124 3125 if (op == OP_MOUNT) { 3126 types = ZFS_TYPE_FILESYSTEM; 3127 } else if (argc > 0) { 3128 if (strcmp(argv[0], "nfs") == 0 || 3129 strcmp(argv[0], "smb") == 0) { 3130 types = ZFS_TYPE_FILESYSTEM; 3131 } else if (strcmp(argv[0], "iscsi") == 0) { 3132 types = ZFS_TYPE_VOLUME; 3133 } else { 3134 (void) fprintf(stderr, gettext("share type " 3135 "must be 'nfs', 'smb' or 'iscsi'\n")); 3136 usage(B_FALSE); 3137 } 3138 protocol = argv[0]; 3139 argc--; 3140 argv++; 3141 } else { 3142 types = ZFS_TYPE_FILESYSTEM | ZFS_TYPE_VOLUME; 3143 } 3144 3145 if (argc != 0) { 3146 (void) fprintf(stderr, gettext("too many arguments\n")); 3147 usage(B_FALSE); 3148 } 3149 3150 get_all_datasets(types, &dslist, &count, verbose); 3151 3152 if (count == 0) 3153 return (0); 3154 3155 qsort(dslist, count, sizeof (void *), dataset_cmp); 3156 3157 for (i = 0; i < count; i++) { 3158 if (verbose) 3159 report_mount_progress(i, count); 3160 3161 if (share_mount_one(dslist[i], op, flags, protocol, 3162 B_FALSE, options) != 0) 3163 ret = 1; 3164 zfs_close(dslist[i]); 3165 } 3166 3167 free(dslist); 3168 } else if (argc == 0) { 3169 struct mnttab entry; 3170 3171 if ((op == OP_SHARE) || (options != NULL)) { 3172 (void) fprintf(stderr, gettext("missing filesystem " 3173 "argument (specify -a for all)\n")); 3174 usage(B_FALSE); 3175 } 3176 3177 /* 3178 * When mount is given no arguments, go through /etc/mnttab and 3179 * display any active ZFS mounts. We hide any snapshots, since 3180 * they are controlled automatically. 3181 */ 3182 rewind(mnttab_file); 3183 while (getmntent(mnttab_file, &entry) == 0) { 3184 if (strcmp(entry.mnt_fstype, MNTTYPE_ZFS) != 0 || 3185 strchr(entry.mnt_special, '@') != NULL) 3186 continue; 3187 3188 (void) printf("%-30s %s\n", entry.mnt_special, 3189 entry.mnt_mountp); 3190 } 3191 3192 } else { 3193 zfs_handle_t *zhp; 3194 3195 types = ZFS_TYPE_FILESYSTEM; 3196 if (op == OP_SHARE) 3197 types |= ZFS_TYPE_VOLUME; 3198 3199 if (argc > 1) { 3200 (void) fprintf(stderr, 3201 gettext("too many arguments\n")); 3202 usage(B_FALSE); 3203 } 3204 3205 if ((zhp = zfs_open(g_zfs, argv[0], types)) == NULL) { 3206 ret = 1; 3207 } else { 3208 ret = share_mount_one(zhp, op, flags, NULL, B_TRUE, 3209 options); 3210 zfs_close(zhp); 3211 } 3212 } 3213 3214 return (ret); 3215 } 3216 3217 /* 3218 * zfs mount -a [nfs | iscsi] 3219 * zfs mount filesystem 3220 * 3221 * Mount all filesystems, or mount the given filesystem. 3222 */ 3223 static int 3224 zfs_do_mount(int argc, char **argv) 3225 { 3226 return (share_mount(OP_MOUNT, argc, argv)); 3227 } 3228 3229 /* 3230 * zfs share -a [nfs | iscsi | smb] 3231 * zfs share filesystem 3232 * 3233 * Share all filesystems, or share the given filesystem. 3234 */ 3235 static int 3236 zfs_do_share(int argc, char **argv) 3237 { 3238 return (share_mount(OP_SHARE, argc, argv)); 3239 } 3240 3241 typedef struct unshare_unmount_node { 3242 zfs_handle_t *un_zhp; 3243 char *un_mountp; 3244 uu_avl_node_t un_avlnode; 3245 } unshare_unmount_node_t; 3246 3247 /* ARGSUSED */ 3248 static int 3249 unshare_unmount_compare(const void *larg, const void *rarg, void *unused) 3250 { 3251 const unshare_unmount_node_t *l = larg; 3252 const unshare_unmount_node_t *r = rarg; 3253 3254 return (strcmp(l->un_mountp, r->un_mountp)); 3255 } 3256 3257 /* 3258 * Convenience routine used by zfs_do_umount() and manual_unmount(). Given an 3259 * absolute path, find the entry /etc/mnttab, verify that its a ZFS filesystem, 3260 * and unmount it appropriately. 3261 */ 3262 static int 3263 unshare_unmount_path(int op, char *path, int flags, boolean_t is_manual) 3264 { 3265 zfs_handle_t *zhp; 3266 int ret; 3267 struct stat64 statbuf; 3268 struct extmnttab entry; 3269 const char *cmdname = (op == OP_SHARE) ? "unshare" : "unmount"; 3270 ino_t path_inode; 3271 3272 /* 3273 * Search for the path in /etc/mnttab. Rather than looking for the 3274 * specific path, which can be fooled by non-standard paths (i.e. ".." 3275 * or "//"), we stat() the path and search for the corresponding 3276 * (major,minor) device pair. 3277 */ 3278 if (stat64(path, &statbuf) != 0) { 3279 (void) fprintf(stderr, gettext("cannot %s '%s': %s\n"), 3280 cmdname, path, strerror(errno)); 3281 return (1); 3282 } 3283 path_inode = statbuf.st_ino; 3284 3285 /* 3286 * Search for the given (major,minor) pair in the mount table. 3287 */ 3288 rewind(mnttab_file); 3289 while ((ret = getextmntent(mnttab_file, &entry, 0)) == 0) { 3290 if (entry.mnt_major == major(statbuf.st_dev) && 3291 entry.mnt_minor == minor(statbuf.st_dev)) 3292 break; 3293 } 3294 if (ret != 0) { 3295 if (op == OP_SHARE) { 3296 (void) fprintf(stderr, gettext("cannot %s '%s': not " 3297 "currently mounted\n"), cmdname, path); 3298 return (1); 3299 } 3300 (void) fprintf(stderr, gettext("warning: %s not in mnttab\n"), 3301 path); 3302 if ((ret = umount2(path, flags)) != 0) 3303 (void) fprintf(stderr, gettext("%s: %s\n"), path, 3304 strerror(errno)); 3305 return (ret != 0); 3306 } 3307 3308 if (strcmp(entry.mnt_fstype, MNTTYPE_ZFS) != 0) { 3309 (void) fprintf(stderr, gettext("cannot %s '%s': not a ZFS " 3310 "filesystem\n"), cmdname, path); 3311 return (1); 3312 } 3313 3314 if ((zhp = zfs_open(g_zfs, entry.mnt_special, 3315 ZFS_TYPE_FILESYSTEM)) == NULL) 3316 return (1); 3317 3318 ret = 1; 3319 if (stat64(entry.mnt_mountp, &statbuf) != 0) { 3320 (void) fprintf(stderr, gettext("cannot %s '%s': %s\n"), 3321 cmdname, path, strerror(errno)); 3322 goto out; 3323 } else if (statbuf.st_ino != path_inode) { 3324 (void) fprintf(stderr, gettext("cannot " 3325 "%s '%s': not a mountpoint\n"), cmdname, path); 3326 goto out; 3327 } 3328 3329 if (op == OP_SHARE) { 3330 char nfs_mnt_prop[ZFS_MAXPROPLEN]; 3331 char smbshare_prop[ZFS_MAXPROPLEN]; 3332 3333 verify(zfs_prop_get(zhp, ZFS_PROP_SHARENFS, nfs_mnt_prop, 3334 sizeof (nfs_mnt_prop), NULL, NULL, 0, B_FALSE) == 0); 3335 verify(zfs_prop_get(zhp, ZFS_PROP_SHARESMB, smbshare_prop, 3336 sizeof (smbshare_prop), NULL, NULL, 0, B_FALSE) == 0); 3337 3338 if (strcmp(nfs_mnt_prop, "off") == 0 && 3339 strcmp(smbshare_prop, "off") == 0) { 3340 (void) fprintf(stderr, gettext("cannot unshare " 3341 "'%s': legacy share\n"), path); 3342 (void) fprintf(stderr, gettext("use " 3343 "unshare(1M) to unshare this filesystem\n")); 3344 } else if (!zfs_is_shared(zhp)) { 3345 (void) fprintf(stderr, gettext("cannot unshare '%s': " 3346 "not currently shared\n"), path); 3347 } else { 3348 ret = zfs_unshareall_bypath(zhp, path); 3349 } 3350 } else { 3351 char mtpt_prop[ZFS_MAXPROPLEN]; 3352 3353 verify(zfs_prop_get(zhp, ZFS_PROP_MOUNTPOINT, mtpt_prop, 3354 sizeof (mtpt_prop), NULL, NULL, 0, B_FALSE) == 0); 3355 3356 if (is_manual) { 3357 ret = zfs_unmount(zhp, NULL, flags); 3358 } else if (strcmp(mtpt_prop, "legacy") == 0) { 3359 (void) fprintf(stderr, gettext("cannot unmount " 3360 "'%s': legacy mountpoint\n"), 3361 zfs_get_name(zhp)); 3362 (void) fprintf(stderr, gettext("use umount(1M) " 3363 "to unmount this filesystem\n")); 3364 } else { 3365 ret = zfs_unmountall(zhp, flags); 3366 } 3367 } 3368 3369 out: 3370 zfs_close(zhp); 3371 3372 return (ret != 0); 3373 } 3374 3375 /* 3376 * Generic callback for unsharing or unmounting a filesystem. 3377 */ 3378 static int 3379 unshare_unmount(int op, int argc, char **argv) 3380 { 3381 int do_all = 0; 3382 int flags = 0; 3383 int ret = 0; 3384 int types, c; 3385 zfs_handle_t *zhp; 3386 char nfsiscsi_mnt_prop[ZFS_MAXPROPLEN]; 3387 char sharesmb[ZFS_MAXPROPLEN]; 3388 3389 /* check options */ 3390 while ((c = getopt(argc, argv, op == OP_SHARE ? "a" : "af")) != -1) { 3391 switch (c) { 3392 case 'a': 3393 do_all = 1; 3394 break; 3395 case 'f': 3396 flags = MS_FORCE; 3397 break; 3398 case '?': 3399 (void) fprintf(stderr, gettext("invalid option '%c'\n"), 3400 optopt); 3401 usage(B_FALSE); 3402 } 3403 } 3404 3405 argc -= optind; 3406 argv += optind; 3407 3408 if (do_all) { 3409 /* 3410 * We could make use of zfs_for_each() to walk all datasets in 3411 * the system, but this would be very inefficient, especially 3412 * since we would have to linearly search /etc/mnttab for each 3413 * one. Instead, do one pass through /etc/mnttab looking for 3414 * zfs entries and call zfs_unmount() for each one. 3415 * 3416 * Things get a little tricky if the administrator has created 3417 * mountpoints beneath other ZFS filesystems. In this case, we 3418 * have to unmount the deepest filesystems first. To accomplish 3419 * this, we place all the mountpoints in an AVL tree sorted by 3420 * the special type (dataset name), and walk the result in 3421 * reverse to make sure to get any snapshots first. 3422 */ 3423 struct mnttab entry; 3424 uu_avl_pool_t *pool; 3425 uu_avl_t *tree; 3426 unshare_unmount_node_t *node; 3427 uu_avl_index_t idx; 3428 uu_avl_walk_t *walk; 3429 3430 if (argc != 0) { 3431 (void) fprintf(stderr, gettext("too many arguments\n")); 3432 usage(B_FALSE); 3433 } 3434 3435 if ((pool = uu_avl_pool_create("unmount_pool", 3436 sizeof (unshare_unmount_node_t), 3437 offsetof(unshare_unmount_node_t, un_avlnode), 3438 unshare_unmount_compare, 3439 UU_DEFAULT)) == NULL) { 3440 (void) fprintf(stderr, gettext("internal error: " 3441 "out of memory\n")); 3442 exit(1); 3443 } 3444 3445 if ((tree = uu_avl_create(pool, NULL, UU_DEFAULT)) == NULL) { 3446 (void) fprintf(stderr, gettext("internal error: " 3447 "out of memory\n")); 3448 exit(1); 3449 } 3450 3451 rewind(mnttab_file); 3452 while (getmntent(mnttab_file, &entry) == 0) { 3453 3454 /* ignore non-ZFS entries */ 3455 if (strcmp(entry.mnt_fstype, MNTTYPE_ZFS) != 0) 3456 continue; 3457 3458 /* ignore snapshots */ 3459 if (strchr(entry.mnt_special, '@') != NULL) 3460 continue; 3461 3462 if ((zhp = zfs_open(g_zfs, entry.mnt_special, 3463 ZFS_TYPE_FILESYSTEM)) == NULL) { 3464 ret = 1; 3465 continue; 3466 } 3467 3468 switch (op) { 3469 case OP_SHARE: 3470 verify(zfs_prop_get(zhp, ZFS_PROP_SHARENFS, 3471 nfsiscsi_mnt_prop, 3472 sizeof (nfsiscsi_mnt_prop), 3473 NULL, NULL, 0, B_FALSE) == 0); 3474 if (strcmp(nfsiscsi_mnt_prop, "off") != 0) 3475 break; 3476 verify(zfs_prop_get(zhp, ZFS_PROP_SHARESMB, 3477 nfsiscsi_mnt_prop, 3478 sizeof (nfsiscsi_mnt_prop), 3479 NULL, NULL, 0, B_FALSE) == 0); 3480 if (strcmp(nfsiscsi_mnt_prop, "off") == 0) 3481 continue; 3482 break; 3483 case OP_MOUNT: 3484 /* Ignore legacy mounts */ 3485 verify(zfs_prop_get(zhp, ZFS_PROP_MOUNTPOINT, 3486 nfsiscsi_mnt_prop, 3487 sizeof (nfsiscsi_mnt_prop), 3488 NULL, NULL, 0, B_FALSE) == 0); 3489 if (strcmp(nfsiscsi_mnt_prop, "legacy") == 0) 3490 continue; 3491 /* Ignore canmount=noauto mounts */ 3492 if (zfs_prop_get_int(zhp, ZFS_PROP_CANMOUNT) == 3493 ZFS_CANMOUNT_NOAUTO) 3494 continue; 3495 default: 3496 break; 3497 } 3498 3499 node = safe_malloc(sizeof (unshare_unmount_node_t)); 3500 node->un_zhp = zhp; 3501 3502 if ((node->un_mountp = strdup(entry.mnt_mountp)) == 3503 NULL) { 3504 (void) fprintf(stderr, gettext("internal error:" 3505 " out of memory\n")); 3506 exit(1); 3507 } 3508 3509 uu_avl_node_init(node, &node->un_avlnode, pool); 3510 3511 if (uu_avl_find(tree, node, NULL, &idx) == NULL) { 3512 uu_avl_insert(tree, node, idx); 3513 } else { 3514 zfs_close(node->un_zhp); 3515 free(node->un_mountp); 3516 free(node); 3517 } 3518 } 3519 3520 /* 3521 * Walk the AVL tree in reverse, unmounting each filesystem and 3522 * removing it from the AVL tree in the process. 3523 */ 3524 if ((walk = uu_avl_walk_start(tree, 3525 UU_WALK_REVERSE | UU_WALK_ROBUST)) == NULL) { 3526 (void) fprintf(stderr, 3527 gettext("internal error: out of memory")); 3528 exit(1); 3529 } 3530 3531 while ((node = uu_avl_walk_next(walk)) != NULL) { 3532 uu_avl_remove(tree, node); 3533 3534 switch (op) { 3535 case OP_SHARE: 3536 if (zfs_unshareall_bypath(node->un_zhp, 3537 node->un_mountp) != 0) 3538 ret = 1; 3539 break; 3540 3541 case OP_MOUNT: 3542 if (zfs_unmount(node->un_zhp, 3543 node->un_mountp, flags) != 0) 3544 ret = 1; 3545 break; 3546 } 3547 3548 zfs_close(node->un_zhp); 3549 free(node->un_mountp); 3550 free(node); 3551 } 3552 3553 uu_avl_walk_end(walk); 3554 uu_avl_destroy(tree); 3555 uu_avl_pool_destroy(pool); 3556 3557 if (op == OP_SHARE) { 3558 /* 3559 * Finally, unshare any volumes shared via iSCSI. 3560 */ 3561 zfs_handle_t **dslist = NULL; 3562 size_t i, count = 0; 3563 3564 get_all_datasets(ZFS_TYPE_VOLUME, &dslist, &count, 3565 B_FALSE); 3566 3567 if (count != 0) { 3568 qsort(dslist, count, sizeof (void *), 3569 dataset_cmp); 3570 3571 for (i = 0; i < count; i++) { 3572 if (zfs_unshare_iscsi(dslist[i]) != 0) 3573 ret = 1; 3574 zfs_close(dslist[i]); 3575 } 3576 3577 free(dslist); 3578 } 3579 } 3580 } else { 3581 if (argc != 1) { 3582 if (argc == 0) 3583 (void) fprintf(stderr, 3584 gettext("missing filesystem argument\n")); 3585 else 3586 (void) fprintf(stderr, 3587 gettext("too many arguments\n")); 3588 usage(B_FALSE); 3589 } 3590 3591 /* 3592 * We have an argument, but it may be a full path or a ZFS 3593 * filesystem. Pass full paths off to unmount_path() (shared by 3594 * manual_unmount), otherwise open the filesystem and pass to 3595 * zfs_unmount(). 3596 */ 3597 if (argv[0][0] == '/') 3598 return (unshare_unmount_path(op, argv[0], 3599 flags, B_FALSE)); 3600 3601 types = ZFS_TYPE_FILESYSTEM; 3602 if (op == OP_SHARE) 3603 types |= ZFS_TYPE_VOLUME; 3604 3605 if ((zhp = zfs_open(g_zfs, argv[0], types)) == NULL) 3606 return (1); 3607 3608 if (zfs_get_type(zhp) == ZFS_TYPE_FILESYSTEM) { 3609 verify(zfs_prop_get(zhp, op == OP_SHARE ? 3610 ZFS_PROP_SHARENFS : ZFS_PROP_MOUNTPOINT, 3611 nfsiscsi_mnt_prop, sizeof (nfsiscsi_mnt_prop), NULL, 3612 NULL, 0, B_FALSE) == 0); 3613 3614 switch (op) { 3615 case OP_SHARE: 3616 verify(zfs_prop_get(zhp, ZFS_PROP_SHARENFS, 3617 nfsiscsi_mnt_prop, 3618 sizeof (nfsiscsi_mnt_prop), 3619 NULL, NULL, 0, B_FALSE) == 0); 3620 verify(zfs_prop_get(zhp, ZFS_PROP_SHARESMB, 3621 sharesmb, sizeof (sharesmb), NULL, NULL, 3622 0, B_FALSE) == 0); 3623 3624 if (strcmp(nfsiscsi_mnt_prop, "off") == 0 && 3625 strcmp(sharesmb, "off") == 0) { 3626 (void) fprintf(stderr, gettext("cannot " 3627 "unshare '%s': legacy share\n"), 3628 zfs_get_name(zhp)); 3629 (void) fprintf(stderr, gettext("use " 3630 "unshare(1M) to unshare this " 3631 "filesystem\n")); 3632 ret = 1; 3633 } else if (!zfs_is_shared(zhp)) { 3634 (void) fprintf(stderr, gettext("cannot " 3635 "unshare '%s': not currently " 3636 "shared\n"), zfs_get_name(zhp)); 3637 ret = 1; 3638 } else if (zfs_unshareall(zhp) != 0) { 3639 ret = 1; 3640 } 3641 break; 3642 3643 case OP_MOUNT: 3644 if (strcmp(nfsiscsi_mnt_prop, "legacy") == 0) { 3645 (void) fprintf(stderr, gettext("cannot " 3646 "unmount '%s': legacy " 3647 "mountpoint\n"), zfs_get_name(zhp)); 3648 (void) fprintf(stderr, gettext("use " 3649 "umount(1M) to unmount this " 3650 "filesystem\n")); 3651 ret = 1; 3652 } else if (!zfs_is_mounted(zhp, NULL)) { 3653 (void) fprintf(stderr, gettext("cannot " 3654 "unmount '%s': not currently " 3655 "mounted\n"), 3656 zfs_get_name(zhp)); 3657 ret = 1; 3658 } else if (zfs_unmountall(zhp, flags) != 0) { 3659 ret = 1; 3660 } 3661 break; 3662 } 3663 } else { 3664 assert(op == OP_SHARE); 3665 3666 verify(zfs_prop_get(zhp, ZFS_PROP_SHAREISCSI, 3667 nfsiscsi_mnt_prop, sizeof (nfsiscsi_mnt_prop), 3668 NULL, NULL, 0, B_FALSE) == 0); 3669 3670 if (strcmp(nfsiscsi_mnt_prop, "off") == 0) { 3671 (void) fprintf(stderr, gettext("cannot unshare " 3672 "'%s': 'shareiscsi' property not set\n"), 3673 zfs_get_name(zhp)); 3674 (void) fprintf(stderr, gettext("set " 3675 "'shareiscsi' property or use " 3676 "iscsitadm(1M) to share this volume\n")); 3677 ret = 1; 3678 } else if (!zfs_is_shared_iscsi(zhp)) { 3679 (void) fprintf(stderr, gettext("cannot " 3680 "unshare '%s': not currently shared\n"), 3681 zfs_get_name(zhp)); 3682 ret = 1; 3683 } else if (zfs_unshare_iscsi(zhp) != 0) { 3684 ret = 1; 3685 } 3686 } 3687 3688 zfs_close(zhp); 3689 } 3690 3691 return (ret); 3692 } 3693 3694 /* 3695 * zfs unmount -a 3696 * zfs unmount filesystem 3697 * 3698 * Unmount all filesystems, or a specific ZFS filesystem. 3699 */ 3700 static int 3701 zfs_do_unmount(int argc, char **argv) 3702 { 3703 return (unshare_unmount(OP_MOUNT, argc, argv)); 3704 } 3705 3706 /* 3707 * zfs unshare -a 3708 * zfs unshare filesystem 3709 * 3710 * Unshare all filesystems, or a specific ZFS filesystem. 3711 */ 3712 static int 3713 zfs_do_unshare(int argc, char **argv) 3714 { 3715 return (unshare_unmount(OP_SHARE, argc, argv)); 3716 } 3717 3718 /* ARGSUSED */ 3719 static int 3720 zfs_do_python(int argc, char **argv) 3721 { 3722 (void) execv(pypath, argv-1); 3723 (void) printf("internal error: %s not found\n", pypath); 3724 return (-1); 3725 } 3726 3727 /* 3728 * Called when invoked as /etc/fs/zfs/mount. Do the mount if the mountpoint is 3729 * 'legacy'. Otherwise, complain that use should be using 'zfs mount'. 3730 */ 3731 static int 3732 manual_mount(int argc, char **argv) 3733 { 3734 zfs_handle_t *zhp; 3735 char mountpoint[ZFS_MAXPROPLEN]; 3736 char mntopts[MNT_LINE_MAX] = { '\0' }; 3737 int ret; 3738 int c; 3739 int flags = 0; 3740 char *dataset, *path; 3741 3742 /* check options */ 3743 while ((c = getopt(argc, argv, ":mo:O")) != -1) { 3744 switch (c) { 3745 case 'o': 3746 (void) strlcpy(mntopts, optarg, sizeof (mntopts)); 3747 break; 3748 case 'O': 3749 flags |= MS_OVERLAY; 3750 break; 3751 case 'm': 3752 flags |= MS_NOMNTTAB; 3753 break; 3754 case ':': 3755 (void) fprintf(stderr, gettext("missing argument for " 3756 "'%c' option\n"), optopt); 3757 usage(B_FALSE); 3758 break; 3759 case '?': 3760 (void) fprintf(stderr, gettext("invalid option '%c'\n"), 3761 optopt); 3762 (void) fprintf(stderr, gettext("usage: mount [-o opts] " 3763 "<path>\n")); 3764 return (2); 3765 } 3766 } 3767 3768 argc -= optind; 3769 argv += optind; 3770 3771 /* check that we only have two arguments */ 3772 if (argc != 2) { 3773 if (argc == 0) 3774 (void) fprintf(stderr, gettext("missing dataset " 3775 "argument\n")); 3776 else if (argc == 1) 3777 (void) fprintf(stderr, 3778 gettext("missing mountpoint argument\n")); 3779 else 3780 (void) fprintf(stderr, gettext("too many arguments\n")); 3781 (void) fprintf(stderr, "usage: mount <dataset> <mountpoint>\n"); 3782 return (2); 3783 } 3784 3785 dataset = argv[0]; 3786 path = argv[1]; 3787 3788 /* try to open the dataset */ 3789 if ((zhp = zfs_open(g_zfs, dataset, ZFS_TYPE_FILESYSTEM)) == NULL) 3790 return (1); 3791 3792 (void) zfs_prop_get(zhp, ZFS_PROP_MOUNTPOINT, mountpoint, 3793 sizeof (mountpoint), NULL, NULL, 0, B_FALSE); 3794 3795 /* check for legacy mountpoint and complain appropriately */ 3796 ret = 0; 3797 if (strcmp(mountpoint, ZFS_MOUNTPOINT_LEGACY) == 0) { 3798 if (mount(dataset, path, MS_OPTIONSTR | flags, MNTTYPE_ZFS, 3799 NULL, 0, mntopts, sizeof (mntopts)) != 0) { 3800 (void) fprintf(stderr, gettext("mount failed: %s\n"), 3801 strerror(errno)); 3802 ret = 1; 3803 } 3804 } else { 3805 (void) fprintf(stderr, gettext("filesystem '%s' cannot be " 3806 "mounted using 'mount -F zfs'\n"), dataset); 3807 (void) fprintf(stderr, gettext("Use 'zfs set mountpoint=%s' " 3808 "instead.\n"), path); 3809 (void) fprintf(stderr, gettext("If you must use 'mount -F zfs' " 3810 "or /etc/vfstab, use 'zfs set mountpoint=legacy'.\n")); 3811 (void) fprintf(stderr, gettext("See zfs(1M) for more " 3812 "information.\n")); 3813 ret = 1; 3814 } 3815 3816 return (ret); 3817 } 3818 3819 /* 3820 * Called when invoked as /etc/fs/zfs/umount. Unlike a manual mount, we allow 3821 * unmounts of non-legacy filesystems, as this is the dominant administrative 3822 * interface. 3823 */ 3824 static int 3825 manual_unmount(int argc, char **argv) 3826 { 3827 int flags = 0; 3828 int c; 3829 3830 /* check options */ 3831 while ((c = getopt(argc, argv, "f")) != -1) { 3832 switch (c) { 3833 case 'f': 3834 flags = MS_FORCE; 3835 break; 3836 case '?': 3837 (void) fprintf(stderr, gettext("invalid option '%c'\n"), 3838 optopt); 3839 (void) fprintf(stderr, gettext("usage: unmount [-f] " 3840 "<path>\n")); 3841 return (2); 3842 } 3843 } 3844 3845 argc -= optind; 3846 argv += optind; 3847 3848 /* check arguments */ 3849 if (argc != 1) { 3850 if (argc == 0) 3851 (void) fprintf(stderr, gettext("missing path " 3852 "argument\n")); 3853 else 3854 (void) fprintf(stderr, gettext("too many arguments\n")); 3855 (void) fprintf(stderr, gettext("usage: unmount [-f] <path>\n")); 3856 return (2); 3857 } 3858 3859 return (unshare_unmount_path(OP_MOUNT, argv[0], flags, B_TRUE)); 3860 } 3861 3862 static int 3863 volcheck(zpool_handle_t *zhp, void *data) 3864 { 3865 boolean_t isinit = *((boolean_t *)data); 3866 3867 if (isinit) 3868 return (zpool_create_zvol_links(zhp)); 3869 else 3870 return (zpool_remove_zvol_links(zhp)); 3871 } 3872 3873 /* 3874 * Iterate over all pools in the system and either create or destroy /dev/zvol 3875 * links, depending on the value of 'isinit'. 3876 */ 3877 static int 3878 do_volcheck(boolean_t isinit) 3879 { 3880 return (zpool_iter(g_zfs, volcheck, &isinit) ? 1 : 0); 3881 } 3882 3883 static int 3884 find_command_idx(char *command, int *idx) 3885 { 3886 int i; 3887 3888 for (i = 0; i < NCOMMAND; i++) { 3889 if (command_table[i].name == NULL) 3890 continue; 3891 3892 if (strcmp(command, command_table[i].name) == 0) { 3893 *idx = i; 3894 return (0); 3895 } 3896 } 3897 return (1); 3898 } 3899 3900 int 3901 main(int argc, char **argv) 3902 { 3903 int ret; 3904 int i; 3905 char *progname; 3906 char *cmdname; 3907 3908 (void) setlocale(LC_ALL, ""); 3909 (void) textdomain(TEXT_DOMAIN); 3910 3911 opterr = 0; 3912 3913 if ((g_zfs = libzfs_init()) == NULL) { 3914 (void) fprintf(stderr, gettext("internal error: failed to " 3915 "initialize ZFS library\n")); 3916 return (1); 3917 } 3918 3919 zpool_set_history_str("zfs", argc, argv, history_str); 3920 verify(zpool_stage_history(g_zfs, history_str) == 0); 3921 3922 libzfs_print_on_error(g_zfs, B_TRUE); 3923 3924 if ((mnttab_file = fopen(MNTTAB, "r")) == NULL) { 3925 (void) fprintf(stderr, gettext("internal error: unable to " 3926 "open %s\n"), MNTTAB); 3927 return (1); 3928 } 3929 3930 /* 3931 * This command also doubles as the /etc/fs mount and unmount program. 3932 * Determine if we should take this behavior based on argv[0]. 3933 */ 3934 progname = basename(argv[0]); 3935 if (strcmp(progname, "mount") == 0) { 3936 ret = manual_mount(argc, argv); 3937 } else if (strcmp(progname, "umount") == 0) { 3938 ret = manual_unmount(argc, argv); 3939 } else { 3940 /* 3941 * Make sure the user has specified some command. 3942 */ 3943 if (argc < 2) { 3944 (void) fprintf(stderr, gettext("missing command\n")); 3945 usage(B_FALSE); 3946 } 3947 3948 cmdname = argv[1]; 3949 3950 /* 3951 * The 'umount' command is an alias for 'unmount' 3952 */ 3953 if (strcmp(cmdname, "umount") == 0) 3954 cmdname = "unmount"; 3955 3956 /* 3957 * The 'recv' command is an alias for 'receive' 3958 */ 3959 if (strcmp(cmdname, "recv") == 0) 3960 cmdname = "receive"; 3961 3962 /* 3963 * Special case '-?' 3964 */ 3965 if (strcmp(cmdname, "-?") == 0) 3966 usage(B_TRUE); 3967 3968 /* 3969 * 'volinit' and 'volfini' do not appear in the usage message, 3970 * so we have to special case them here. 3971 */ 3972 if (strcmp(cmdname, "volinit") == 0) 3973 return (do_volcheck(B_TRUE)); 3974 else if (strcmp(cmdname, "volfini") == 0) 3975 return (do_volcheck(B_FALSE)); 3976 3977 /* 3978 * Run the appropriate command. 3979 */ 3980 libzfs_mnttab_cache(g_zfs, B_TRUE); 3981 if (find_command_idx(cmdname, &i) == 0) { 3982 current_command = &command_table[i]; 3983 ret = command_table[i].func(argc - 1, argv + 1); 3984 } else if (strchr(cmdname, '=') != NULL) { 3985 verify(find_command_idx("set", &i) == 0); 3986 current_command = &command_table[i]; 3987 ret = command_table[i].func(argc, argv); 3988 } else { 3989 (void) fprintf(stderr, gettext("unrecognized " 3990 "command '%s'\n"), cmdname); 3991 usage(B_FALSE); 3992 } 3993 libzfs_mnttab_cache(g_zfs, B_FALSE); 3994 } 3995 3996 (void) fclose(mnttab_file); 3997 3998 libzfs_fini(g_zfs); 3999 4000 /* 4001 * The 'ZFS_ABORT' environment variable causes us to dump core on exit 4002 * for the purposes of running ::findleaks. 4003 */ 4004 if (getenv("ZFS_ABORT") != NULL) { 4005 (void) printf("dumping core by request\n"); 4006 abort(); 4007 } 4008 4009 return (ret); 4010 } 4011