1 /* 2 * CDDL HEADER START 3 * 4 * The contents of this file are subject to the terms of the 5 * Common Development and Distribution License (the "License"). 6 * You may not use this file except in compliance with the License. 7 * 8 * You can obtain a copy of the license at usr/src/OPENSOLARIS.LICENSE 9 * or http://www.opensolaris.org/os/licensing. 10 * See the License for the specific language governing permissions 11 * and limitations under the License. 12 * 13 * When distributing Covered Code, include this CDDL HEADER in each 14 * file and include the License file at usr/src/OPENSOLARIS.LICENSE. 15 * If applicable, add the following below this CDDL HEADER, with the 16 * fields enclosed by brackets "[]" replaced with your own identifying 17 * information: Portions Copyright [yyyy] [name of copyright owner] 18 * 19 * CDDL HEADER END 20 */ 21 22 /* 23 * Copyright (c) 2005, 2010, Oracle and/or its affiliates. All rights reserved. 24 * Copyright (c) 2011, 2017 by Delphix. All rights reserved. 25 * Copyright (c) 2013, Joyent, Inc. All rights reserved. 26 * Copyright 2016 Nexenta Systems, Inc. 27 * Copyright 2016 Igor Kozhukhov <ikozhukhov@gmail.com> 28 * Copyright (c) 2017 Datto Inc. 29 * Copyright (c) 2017, Intel Corporation. 30 */ 31 32 #include <ctype.h> 33 #include <errno.h> 34 #include <devid.h> 35 #include <fcntl.h> 36 #include <libintl.h> 37 #include <stdio.h> 38 #include <stdlib.h> 39 #include <strings.h> 40 #include <unistd.h> 41 #include <libgen.h> 42 #include <sys/efi_partition.h> 43 #include <sys/vtoc.h> 44 #include <sys/zfs_ioctl.h> 45 #include <dlfcn.h> 46 47 #include "zfs_namecheck.h" 48 #include "zfs_prop.h" 49 #include "libzfs_impl.h" 50 #include "zfs_comutil.h" 51 #include "zfeature_common.h" 52 53 static int read_efi_label(nvlist_t *, diskaddr_t *, boolean_t *); 54 static boolean_t zpool_vdev_is_interior(const char *name); 55 56 #define BACKUP_SLICE "s2" 57 58 typedef struct prop_flags { 59 int create:1; /* Validate property on creation */ 60 int import:1; /* Validate property on import */ 61 } prop_flags_t; 62 63 /* 64 * ==================================================================== 65 * zpool property functions 66 * ==================================================================== 67 */ 68 69 static int 70 zpool_get_all_props(zpool_handle_t *zhp) 71 { 72 zfs_cmd_t zc = { 0 }; 73 libzfs_handle_t *hdl = zhp->zpool_hdl; 74 75 (void) strlcpy(zc.zc_name, zhp->zpool_name, sizeof (zc.zc_name)); 76 77 if (zcmd_alloc_dst_nvlist(hdl, &zc, 0) != 0) 78 return (-1); 79 80 while (ioctl(hdl->libzfs_fd, ZFS_IOC_POOL_GET_PROPS, &zc) != 0) { 81 if (errno == ENOMEM) { 82 if (zcmd_expand_dst_nvlist(hdl, &zc) != 0) { 83 zcmd_free_nvlists(&zc); 84 return (-1); 85 } 86 } else { 87 zcmd_free_nvlists(&zc); 88 return (-1); 89 } 90 } 91 92 if (zcmd_read_dst_nvlist(hdl, &zc, &zhp->zpool_props) != 0) { 93 zcmd_free_nvlists(&zc); 94 return (-1); 95 } 96 97 zcmd_free_nvlists(&zc); 98 99 return (0); 100 } 101 102 static int 103 zpool_props_refresh(zpool_handle_t *zhp) 104 { 105 nvlist_t *old_props; 106 107 old_props = zhp->zpool_props; 108 109 if (zpool_get_all_props(zhp) != 0) 110 return (-1); 111 112 nvlist_free(old_props); 113 return (0); 114 } 115 116 static char * 117 zpool_get_prop_string(zpool_handle_t *zhp, zpool_prop_t prop, 118 zprop_source_t *src) 119 { 120 nvlist_t *nv, *nvl; 121 uint64_t ival; 122 char *value; 123 zprop_source_t source; 124 125 nvl = zhp->zpool_props; 126 if (nvlist_lookup_nvlist(nvl, zpool_prop_to_name(prop), &nv) == 0) { 127 verify(nvlist_lookup_uint64(nv, ZPROP_SOURCE, &ival) == 0); 128 source = ival; 129 verify(nvlist_lookup_string(nv, ZPROP_VALUE, &value) == 0); 130 } else { 131 source = ZPROP_SRC_DEFAULT; 132 if ((value = (char *)zpool_prop_default_string(prop)) == NULL) 133 value = "-"; 134 } 135 136 if (src) 137 *src = source; 138 139 return (value); 140 } 141 142 uint64_t 143 zpool_get_prop_int(zpool_handle_t *zhp, zpool_prop_t prop, zprop_source_t *src) 144 { 145 nvlist_t *nv, *nvl; 146 uint64_t value; 147 zprop_source_t source; 148 149 if (zhp->zpool_props == NULL && zpool_get_all_props(zhp)) { 150 /* 151 * zpool_get_all_props() has most likely failed because 152 * the pool is faulted, but if all we need is the top level 153 * vdev's guid then get it from the zhp config nvlist. 154 */ 155 if ((prop == ZPOOL_PROP_GUID) && 156 (nvlist_lookup_nvlist(zhp->zpool_config, 157 ZPOOL_CONFIG_VDEV_TREE, &nv) == 0) && 158 (nvlist_lookup_uint64(nv, ZPOOL_CONFIG_GUID, &value) 159 == 0)) { 160 return (value); 161 } 162 return (zpool_prop_default_numeric(prop)); 163 } 164 165 nvl = zhp->zpool_props; 166 if (nvlist_lookup_nvlist(nvl, zpool_prop_to_name(prop), &nv) == 0) { 167 verify(nvlist_lookup_uint64(nv, ZPROP_SOURCE, &value) == 0); 168 source = value; 169 verify(nvlist_lookup_uint64(nv, ZPROP_VALUE, &value) == 0); 170 } else { 171 source = ZPROP_SRC_DEFAULT; 172 value = zpool_prop_default_numeric(prop); 173 } 174 175 if (src) 176 *src = source; 177 178 return (value); 179 } 180 181 /* 182 * Map VDEV STATE to printed strings. 183 */ 184 const char * 185 zpool_state_to_name(vdev_state_t state, vdev_aux_t aux) 186 { 187 switch (state) { 188 case VDEV_STATE_CLOSED: 189 case VDEV_STATE_OFFLINE: 190 return (gettext("OFFLINE")); 191 case VDEV_STATE_REMOVED: 192 return (gettext("REMOVED")); 193 case VDEV_STATE_CANT_OPEN: 194 if (aux == VDEV_AUX_CORRUPT_DATA || aux == VDEV_AUX_BAD_LOG) 195 return (gettext("FAULTED")); 196 else if (aux == VDEV_AUX_SPLIT_POOL) 197 return (gettext("SPLIT")); 198 else 199 return (gettext("UNAVAIL")); 200 case VDEV_STATE_FAULTED: 201 return (gettext("FAULTED")); 202 case VDEV_STATE_DEGRADED: 203 return (gettext("DEGRADED")); 204 case VDEV_STATE_HEALTHY: 205 return (gettext("ONLINE")); 206 207 default: 208 break; 209 } 210 211 return (gettext("UNKNOWN")); 212 } 213 214 /* 215 * Map POOL STATE to printed strings. 216 */ 217 const char * 218 zpool_pool_state_to_name(pool_state_t state) 219 { 220 switch (state) { 221 case POOL_STATE_ACTIVE: 222 return (gettext("ACTIVE")); 223 case POOL_STATE_EXPORTED: 224 return (gettext("EXPORTED")); 225 case POOL_STATE_DESTROYED: 226 return (gettext("DESTROYED")); 227 case POOL_STATE_SPARE: 228 return (gettext("SPARE")); 229 case POOL_STATE_L2CACHE: 230 return (gettext("L2CACHE")); 231 case POOL_STATE_UNINITIALIZED: 232 return (gettext("UNINITIALIZED")); 233 case POOL_STATE_UNAVAIL: 234 return (gettext("UNAVAIL")); 235 case POOL_STATE_POTENTIALLY_ACTIVE: 236 return (gettext("POTENTIALLY_ACTIVE")); 237 } 238 239 return (gettext("UNKNOWN")); 240 } 241 242 /* 243 * Get a zpool property value for 'prop' and return the value in 244 * a pre-allocated buffer. 245 */ 246 int 247 zpool_get_prop(zpool_handle_t *zhp, zpool_prop_t prop, char *buf, size_t len, 248 zprop_source_t *srctype, boolean_t literal) 249 { 250 uint64_t intval; 251 const char *strval; 252 zprop_source_t src = ZPROP_SRC_NONE; 253 nvlist_t *nvroot; 254 vdev_stat_t *vs; 255 uint_t vsc; 256 257 if (zpool_get_state(zhp) == POOL_STATE_UNAVAIL) { 258 switch (prop) { 259 case ZPOOL_PROP_NAME: 260 (void) strlcpy(buf, zpool_get_name(zhp), len); 261 break; 262 263 case ZPOOL_PROP_HEALTH: 264 (void) strlcpy(buf, "FAULTED", len); 265 break; 266 267 case ZPOOL_PROP_GUID: 268 intval = zpool_get_prop_int(zhp, prop, &src); 269 (void) snprintf(buf, len, "%llu", intval); 270 break; 271 272 case ZPOOL_PROP_ALTROOT: 273 case ZPOOL_PROP_CACHEFILE: 274 case ZPOOL_PROP_COMMENT: 275 if (zhp->zpool_props != NULL || 276 zpool_get_all_props(zhp) == 0) { 277 (void) strlcpy(buf, 278 zpool_get_prop_string(zhp, prop, &src), 279 len); 280 break; 281 } 282 /* FALLTHROUGH */ 283 default: 284 (void) strlcpy(buf, "-", len); 285 break; 286 } 287 288 if (srctype != NULL) 289 *srctype = src; 290 return (0); 291 } 292 293 if (zhp->zpool_props == NULL && zpool_get_all_props(zhp) && 294 prop != ZPOOL_PROP_NAME) 295 return (-1); 296 297 switch (zpool_prop_get_type(prop)) { 298 case PROP_TYPE_STRING: 299 (void) strlcpy(buf, zpool_get_prop_string(zhp, prop, &src), 300 len); 301 break; 302 303 case PROP_TYPE_NUMBER: 304 intval = zpool_get_prop_int(zhp, prop, &src); 305 306 switch (prop) { 307 case ZPOOL_PROP_SIZE: 308 case ZPOOL_PROP_ALLOCATED: 309 case ZPOOL_PROP_FREE: 310 case ZPOOL_PROP_FREEING: 311 case ZPOOL_PROP_LEAKED: 312 if (literal) { 313 (void) snprintf(buf, len, "%llu", 314 (u_longlong_t)intval); 315 } else { 316 (void) zfs_nicenum(intval, buf, len); 317 } 318 break; 319 case ZPOOL_PROP_BOOTSIZE: 320 case ZPOOL_PROP_EXPANDSZ: 321 case ZPOOL_PROP_CHECKPOINT: 322 if (intval == 0) { 323 (void) strlcpy(buf, "-", len); 324 } else if (literal) { 325 (void) snprintf(buf, len, "%llu", 326 (u_longlong_t)intval); 327 } else { 328 (void) zfs_nicenum(intval, buf, len); 329 } 330 break; 331 case ZPOOL_PROP_CAPACITY: 332 if (literal) { 333 (void) snprintf(buf, len, "%llu", 334 (u_longlong_t)intval); 335 } else { 336 (void) snprintf(buf, len, "%llu%%", 337 (u_longlong_t)intval); 338 } 339 break; 340 case ZPOOL_PROP_FRAGMENTATION: 341 if (intval == UINT64_MAX) { 342 (void) strlcpy(buf, "-", len); 343 } else { 344 (void) snprintf(buf, len, "%llu%%", 345 (u_longlong_t)intval); 346 } 347 break; 348 case ZPOOL_PROP_DEDUPRATIO: 349 (void) snprintf(buf, len, "%llu.%02llux", 350 (u_longlong_t)(intval / 100), 351 (u_longlong_t)(intval % 100)); 352 break; 353 case ZPOOL_PROP_HEALTH: 354 verify(nvlist_lookup_nvlist(zpool_get_config(zhp, NULL), 355 ZPOOL_CONFIG_VDEV_TREE, &nvroot) == 0); 356 verify(nvlist_lookup_uint64_array(nvroot, 357 ZPOOL_CONFIG_VDEV_STATS, (uint64_t **)&vs, &vsc) 358 == 0); 359 360 (void) strlcpy(buf, zpool_state_to_name(intval, 361 vs->vs_aux), len); 362 break; 363 case ZPOOL_PROP_VERSION: 364 if (intval >= SPA_VERSION_FEATURES) { 365 (void) snprintf(buf, len, "-"); 366 break; 367 } 368 /* FALLTHROUGH */ 369 default: 370 (void) snprintf(buf, len, "%llu", intval); 371 } 372 break; 373 374 case PROP_TYPE_INDEX: 375 intval = zpool_get_prop_int(zhp, prop, &src); 376 if (zpool_prop_index_to_string(prop, intval, &strval) 377 != 0) 378 return (-1); 379 (void) strlcpy(buf, strval, len); 380 break; 381 382 default: 383 abort(); 384 } 385 386 if (srctype) 387 *srctype = src; 388 389 return (0); 390 } 391 392 /* 393 * Check if the bootfs name has the same pool name as it is set to. 394 * Assuming bootfs is a valid dataset name. 395 */ 396 static boolean_t 397 bootfs_name_valid(const char *pool, char *bootfs) 398 { 399 int len = strlen(pool); 400 if (bootfs[0] == '\0') 401 return (B_TRUE); 402 403 if (!zfs_name_valid(bootfs, ZFS_TYPE_FILESYSTEM|ZFS_TYPE_SNAPSHOT)) 404 return (B_FALSE); 405 406 if (strncmp(pool, bootfs, len) == 0 && 407 (bootfs[len] == '/' || bootfs[len] == '\0')) 408 return (B_TRUE); 409 410 return (B_FALSE); 411 } 412 413 boolean_t 414 zpool_is_bootable(zpool_handle_t *zhp) 415 { 416 char bootfs[ZFS_MAX_DATASET_NAME_LEN]; 417 418 return (zpool_get_prop(zhp, ZPOOL_PROP_BOOTFS, bootfs, 419 sizeof (bootfs), NULL, B_FALSE) == 0 && strncmp(bootfs, "-", 420 sizeof (bootfs)) != 0); 421 } 422 423 424 /* 425 * Given an nvlist of zpool properties to be set, validate that they are 426 * correct, and parse any numeric properties (index, boolean, etc) if they are 427 * specified as strings. 428 */ 429 static nvlist_t * 430 zpool_valid_proplist(libzfs_handle_t *hdl, const char *poolname, 431 nvlist_t *props, uint64_t version, prop_flags_t flags, char *errbuf) 432 { 433 nvpair_t *elem; 434 nvlist_t *retprops; 435 zpool_prop_t prop; 436 char *strval; 437 uint64_t intval; 438 char *slash, *check; 439 struct stat64 statbuf; 440 zpool_handle_t *zhp; 441 442 if (nvlist_alloc(&retprops, NV_UNIQUE_NAME, 0) != 0) { 443 (void) no_memory(hdl); 444 return (NULL); 445 } 446 447 elem = NULL; 448 while ((elem = nvlist_next_nvpair(props, elem)) != NULL) { 449 const char *propname = nvpair_name(elem); 450 451 prop = zpool_name_to_prop(propname); 452 if (prop == ZPOOL_PROP_INVAL && zpool_prop_feature(propname)) { 453 int err; 454 char *fname = strchr(propname, '@') + 1; 455 456 err = zfeature_lookup_name(fname, NULL); 457 if (err != 0) { 458 ASSERT3U(err, ==, ENOENT); 459 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 460 "invalid feature '%s'"), fname); 461 (void) zfs_error(hdl, EZFS_BADPROP, errbuf); 462 goto error; 463 } 464 465 if (nvpair_type(elem) != DATA_TYPE_STRING) { 466 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 467 "'%s' must be a string"), propname); 468 (void) zfs_error(hdl, EZFS_BADPROP, errbuf); 469 goto error; 470 } 471 472 (void) nvpair_value_string(elem, &strval); 473 if (strcmp(strval, ZFS_FEATURE_ENABLED) != 0) { 474 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 475 "property '%s' can only be set to " 476 "'enabled'"), propname); 477 (void) zfs_error(hdl, EZFS_BADPROP, errbuf); 478 goto error; 479 } 480 481 if (nvlist_add_uint64(retprops, propname, 0) != 0) { 482 (void) no_memory(hdl); 483 goto error; 484 } 485 continue; 486 } 487 488 /* 489 * Make sure this property is valid and applies to this type. 490 */ 491 if (prop == ZPOOL_PROP_INVAL) { 492 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 493 "invalid property '%s'"), propname); 494 (void) zfs_error(hdl, EZFS_BADPROP, errbuf); 495 goto error; 496 } 497 498 if (zpool_prop_readonly(prop)) { 499 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, "'%s' " 500 "is readonly"), propname); 501 (void) zfs_error(hdl, EZFS_PROPREADONLY, errbuf); 502 goto error; 503 } 504 505 if (zprop_parse_value(hdl, elem, prop, ZFS_TYPE_POOL, retprops, 506 &strval, &intval, errbuf) != 0) 507 goto error; 508 509 /* 510 * Perform additional checking for specific properties. 511 */ 512 switch (prop) { 513 case ZPOOL_PROP_VERSION: 514 if (intval < version || 515 !SPA_VERSION_IS_SUPPORTED(intval)) { 516 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 517 "property '%s' number %d is invalid."), 518 propname, intval); 519 (void) zfs_error(hdl, EZFS_BADVERSION, errbuf); 520 goto error; 521 } 522 break; 523 524 case ZPOOL_PROP_BOOTSIZE: 525 if (!flags.create) { 526 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 527 "property '%s' can only be set during pool " 528 "creation"), propname); 529 (void) zfs_error(hdl, EZFS_BADPROP, errbuf); 530 goto error; 531 } 532 break; 533 534 case ZPOOL_PROP_BOOTFS: 535 if (flags.create || flags.import) { 536 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 537 "property '%s' cannot be set at creation " 538 "or import time"), propname); 539 (void) zfs_error(hdl, EZFS_BADPROP, errbuf); 540 goto error; 541 } 542 543 if (version < SPA_VERSION_BOOTFS) { 544 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 545 "pool must be upgraded to support " 546 "'%s' property"), propname); 547 (void) zfs_error(hdl, EZFS_BADVERSION, errbuf); 548 goto error; 549 } 550 551 /* 552 * bootfs property value has to be a dataset name and 553 * the dataset has to be in the same pool as it sets to. 554 */ 555 if (!bootfs_name_valid(poolname, strval)) { 556 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, "'%s' " 557 "is an invalid name"), strval); 558 (void) zfs_error(hdl, EZFS_INVALIDNAME, errbuf); 559 goto error; 560 } 561 562 if ((zhp = zpool_open_canfail(hdl, poolname)) == NULL) { 563 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 564 "could not open pool '%s'"), poolname); 565 (void) zfs_error(hdl, EZFS_OPENFAILED, errbuf); 566 goto error; 567 } 568 zpool_close(zhp); 569 break; 570 571 case ZPOOL_PROP_ALTROOT: 572 if (!flags.create && !flags.import) { 573 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 574 "property '%s' can only be set during pool " 575 "creation or import"), propname); 576 (void) zfs_error(hdl, EZFS_BADPROP, errbuf); 577 goto error; 578 } 579 580 if (strval[0] != '/') { 581 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 582 "bad alternate root '%s'"), strval); 583 (void) zfs_error(hdl, EZFS_BADPATH, errbuf); 584 goto error; 585 } 586 break; 587 588 case ZPOOL_PROP_CACHEFILE: 589 if (strval[0] == '\0') 590 break; 591 592 if (strcmp(strval, "none") == 0) 593 break; 594 595 if (strval[0] != '/') { 596 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 597 "property '%s' must be empty, an " 598 "absolute path, or 'none'"), propname); 599 (void) zfs_error(hdl, EZFS_BADPATH, errbuf); 600 goto error; 601 } 602 603 slash = strrchr(strval, '/'); 604 605 if (slash[1] == '\0' || strcmp(slash, "/.") == 0 || 606 strcmp(slash, "/..") == 0) { 607 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 608 "'%s' is not a valid file"), strval); 609 (void) zfs_error(hdl, EZFS_BADPATH, errbuf); 610 goto error; 611 } 612 613 *slash = '\0'; 614 615 if (strval[0] != '\0' && 616 (stat64(strval, &statbuf) != 0 || 617 !S_ISDIR(statbuf.st_mode))) { 618 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 619 "'%s' is not a valid directory"), 620 strval); 621 (void) zfs_error(hdl, EZFS_BADPATH, errbuf); 622 goto error; 623 } 624 625 *slash = '/'; 626 break; 627 628 case ZPOOL_PROP_COMMENT: 629 for (check = strval; *check != '\0'; check++) { 630 if (!isprint(*check)) { 631 zfs_error_aux(hdl, 632 dgettext(TEXT_DOMAIN, 633 "comment may only have printable " 634 "characters")); 635 (void) zfs_error(hdl, EZFS_BADPROP, 636 errbuf); 637 goto error; 638 } 639 } 640 if (strlen(strval) > ZPROP_MAX_COMMENT) { 641 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 642 "comment must not exceed %d characters"), 643 ZPROP_MAX_COMMENT); 644 (void) zfs_error(hdl, EZFS_BADPROP, errbuf); 645 goto error; 646 } 647 break; 648 649 case ZPOOL_PROP_READONLY: 650 if (!flags.import) { 651 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 652 "property '%s' can only be set at " 653 "import time"), propname); 654 (void) zfs_error(hdl, EZFS_BADPROP, errbuf); 655 goto error; 656 } 657 break; 658 659 case ZPOOL_PROP_TNAME: 660 if (!flags.create) { 661 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 662 "property '%s' can only be set at " 663 "creation time"), propname); 664 (void) zfs_error(hdl, EZFS_BADPROP, errbuf); 665 goto error; 666 } 667 break; 668 669 case ZPOOL_PROP_MULTIHOST: 670 if (get_system_hostid() == 0) { 671 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 672 "requires a non-zero system hostid")); 673 (void) zfs_error(hdl, EZFS_BADPROP, errbuf); 674 goto error; 675 } 676 break; 677 678 default: 679 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 680 "property '%s'(%d) not defined"), propname, prop); 681 break; 682 } 683 } 684 685 return (retprops); 686 error: 687 nvlist_free(retprops); 688 return (NULL); 689 } 690 691 /* 692 * Set zpool property : propname=propval. 693 */ 694 int 695 zpool_set_prop(zpool_handle_t *zhp, const char *propname, const char *propval) 696 { 697 zfs_cmd_t zc = { 0 }; 698 int ret = -1; 699 char errbuf[1024]; 700 nvlist_t *nvl = NULL; 701 nvlist_t *realprops; 702 uint64_t version; 703 prop_flags_t flags = { 0 }; 704 705 (void) snprintf(errbuf, sizeof (errbuf), 706 dgettext(TEXT_DOMAIN, "cannot set property for '%s'"), 707 zhp->zpool_name); 708 709 if (nvlist_alloc(&nvl, NV_UNIQUE_NAME, 0) != 0) 710 return (no_memory(zhp->zpool_hdl)); 711 712 if (nvlist_add_string(nvl, propname, propval) != 0) { 713 nvlist_free(nvl); 714 return (no_memory(zhp->zpool_hdl)); 715 } 716 717 version = zpool_get_prop_int(zhp, ZPOOL_PROP_VERSION, NULL); 718 if ((realprops = zpool_valid_proplist(zhp->zpool_hdl, 719 zhp->zpool_name, nvl, version, flags, errbuf)) == NULL) { 720 nvlist_free(nvl); 721 return (-1); 722 } 723 724 nvlist_free(nvl); 725 nvl = realprops; 726 727 /* 728 * Execute the corresponding ioctl() to set this property. 729 */ 730 (void) strlcpy(zc.zc_name, zhp->zpool_name, sizeof (zc.zc_name)); 731 732 if (zcmd_write_src_nvlist(zhp->zpool_hdl, &zc, nvl) != 0) { 733 nvlist_free(nvl); 734 return (-1); 735 } 736 737 ret = zfs_ioctl(zhp->zpool_hdl, ZFS_IOC_POOL_SET_PROPS, &zc); 738 739 zcmd_free_nvlists(&zc); 740 nvlist_free(nvl); 741 742 if (ret) 743 (void) zpool_standard_error(zhp->zpool_hdl, errno, errbuf); 744 else 745 (void) zpool_props_refresh(zhp); 746 747 return (ret); 748 } 749 750 int 751 zpool_expand_proplist(zpool_handle_t *zhp, zprop_list_t **plp) 752 { 753 libzfs_handle_t *hdl = zhp->zpool_hdl; 754 zprop_list_t *entry; 755 char buf[ZFS_MAXPROPLEN]; 756 nvlist_t *features = NULL; 757 zprop_list_t **last; 758 boolean_t firstexpand = (NULL == *plp); 759 760 if (zprop_expand_list(hdl, plp, ZFS_TYPE_POOL) != 0) 761 return (-1); 762 763 last = plp; 764 while (*last != NULL) 765 last = &(*last)->pl_next; 766 767 if ((*plp)->pl_all) 768 features = zpool_get_features(zhp); 769 770 if ((*plp)->pl_all && firstexpand) { 771 for (int i = 0; i < SPA_FEATURES; i++) { 772 zprop_list_t *entry = zfs_alloc(hdl, 773 sizeof (zprop_list_t)); 774 entry->pl_prop = ZPROP_INVAL; 775 entry->pl_user_prop = zfs_asprintf(hdl, "feature@%s", 776 spa_feature_table[i].fi_uname); 777 entry->pl_width = strlen(entry->pl_user_prop); 778 entry->pl_all = B_TRUE; 779 780 *last = entry; 781 last = &entry->pl_next; 782 } 783 } 784 785 /* add any unsupported features */ 786 for (nvpair_t *nvp = nvlist_next_nvpair(features, NULL); 787 nvp != NULL; nvp = nvlist_next_nvpair(features, nvp)) { 788 char *propname; 789 boolean_t found; 790 zprop_list_t *entry; 791 792 if (zfeature_is_supported(nvpair_name(nvp))) 793 continue; 794 795 propname = zfs_asprintf(hdl, "unsupported@%s", 796 nvpair_name(nvp)); 797 798 /* 799 * Before adding the property to the list make sure that no 800 * other pool already added the same property. 801 */ 802 found = B_FALSE; 803 entry = *plp; 804 while (entry != NULL) { 805 if (entry->pl_user_prop != NULL && 806 strcmp(propname, entry->pl_user_prop) == 0) { 807 found = B_TRUE; 808 break; 809 } 810 entry = entry->pl_next; 811 } 812 if (found) { 813 free(propname); 814 continue; 815 } 816 817 entry = zfs_alloc(hdl, sizeof (zprop_list_t)); 818 entry->pl_prop = ZPROP_INVAL; 819 entry->pl_user_prop = propname; 820 entry->pl_width = strlen(entry->pl_user_prop); 821 entry->pl_all = B_TRUE; 822 823 *last = entry; 824 last = &entry->pl_next; 825 } 826 827 for (entry = *plp; entry != NULL; entry = entry->pl_next) { 828 829 if (entry->pl_fixed) 830 continue; 831 832 if (entry->pl_prop != ZPROP_INVAL && 833 zpool_get_prop(zhp, entry->pl_prop, buf, sizeof (buf), 834 NULL, B_FALSE) == 0) { 835 if (strlen(buf) > entry->pl_width) 836 entry->pl_width = strlen(buf); 837 } 838 } 839 840 return (0); 841 } 842 843 /* 844 * Get the state for the given feature on the given ZFS pool. 845 */ 846 int 847 zpool_prop_get_feature(zpool_handle_t *zhp, const char *propname, char *buf, 848 size_t len) 849 { 850 uint64_t refcount; 851 boolean_t found = B_FALSE; 852 nvlist_t *features = zpool_get_features(zhp); 853 boolean_t supported; 854 const char *feature = strchr(propname, '@') + 1; 855 856 supported = zpool_prop_feature(propname); 857 ASSERT(supported || zpool_prop_unsupported(propname)); 858 859 /* 860 * Convert from feature name to feature guid. This conversion is 861 * unecessary for unsupported@... properties because they already 862 * use guids. 863 */ 864 if (supported) { 865 int ret; 866 spa_feature_t fid; 867 868 ret = zfeature_lookup_name(feature, &fid); 869 if (ret != 0) { 870 (void) strlcpy(buf, "-", len); 871 return (ENOTSUP); 872 } 873 feature = spa_feature_table[fid].fi_guid; 874 } 875 876 if (nvlist_lookup_uint64(features, feature, &refcount) == 0) 877 found = B_TRUE; 878 879 if (supported) { 880 if (!found) { 881 (void) strlcpy(buf, ZFS_FEATURE_DISABLED, len); 882 } else { 883 if (refcount == 0) 884 (void) strlcpy(buf, ZFS_FEATURE_ENABLED, len); 885 else 886 (void) strlcpy(buf, ZFS_FEATURE_ACTIVE, len); 887 } 888 } else { 889 if (found) { 890 if (refcount == 0) { 891 (void) strcpy(buf, ZFS_UNSUPPORTED_INACTIVE); 892 } else { 893 (void) strcpy(buf, ZFS_UNSUPPORTED_READONLY); 894 } 895 } else { 896 (void) strlcpy(buf, "-", len); 897 return (ENOTSUP); 898 } 899 } 900 901 return (0); 902 } 903 904 /* 905 * Don't start the slice at the default block of 34; many storage 906 * devices will use a stripe width of 128k, so start there instead. 907 */ 908 #define NEW_START_BLOCK 256 909 910 /* 911 * Validate the given pool name, optionally putting an extended error message in 912 * 'buf'. 913 */ 914 boolean_t 915 zpool_name_valid(libzfs_handle_t *hdl, boolean_t isopen, const char *pool) 916 { 917 namecheck_err_t why; 918 char what; 919 int ret; 920 921 ret = pool_namecheck(pool, &why, &what); 922 923 /* 924 * The rules for reserved pool names were extended at a later point. 925 * But we need to support users with existing pools that may now be 926 * invalid. So we only check for this expanded set of names during a 927 * create (or import), and only in userland. 928 */ 929 if (ret == 0 && !isopen && 930 (strncmp(pool, "mirror", 6) == 0 || 931 strncmp(pool, "raidz", 5) == 0 || 932 strncmp(pool, "spare", 5) == 0 || 933 strcmp(pool, "log") == 0)) { 934 if (hdl != NULL) 935 zfs_error_aux(hdl, 936 dgettext(TEXT_DOMAIN, "name is reserved")); 937 return (B_FALSE); 938 } 939 940 941 if (ret != 0) { 942 if (hdl != NULL) { 943 switch (why) { 944 case NAME_ERR_TOOLONG: 945 zfs_error_aux(hdl, 946 dgettext(TEXT_DOMAIN, "name is too long")); 947 break; 948 949 case NAME_ERR_INVALCHAR: 950 zfs_error_aux(hdl, 951 dgettext(TEXT_DOMAIN, "invalid character " 952 "'%c' in pool name"), what); 953 break; 954 955 case NAME_ERR_NOLETTER: 956 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 957 "name must begin with a letter")); 958 break; 959 960 case NAME_ERR_RESERVED: 961 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 962 "name is reserved")); 963 break; 964 965 case NAME_ERR_DISKLIKE: 966 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 967 "pool name is reserved")); 968 break; 969 970 case NAME_ERR_LEADING_SLASH: 971 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 972 "leading slash in name")); 973 break; 974 975 case NAME_ERR_EMPTY_COMPONENT: 976 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 977 "empty component in name")); 978 break; 979 980 case NAME_ERR_TRAILING_SLASH: 981 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 982 "trailing slash in name")); 983 break; 984 985 case NAME_ERR_MULTIPLE_DELIMITERS: 986 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 987 "multiple '@' and/or '#' delimiters in " 988 "name")); 989 break; 990 991 default: 992 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 993 "(%d) not defined"), why); 994 break; 995 } 996 } 997 return (B_FALSE); 998 } 999 1000 return (B_TRUE); 1001 } 1002 1003 /* 1004 * Open a handle to the given pool, even if the pool is currently in the FAULTED 1005 * state. 1006 */ 1007 zpool_handle_t * 1008 zpool_open_canfail(libzfs_handle_t *hdl, const char *pool) 1009 { 1010 zpool_handle_t *zhp; 1011 boolean_t missing; 1012 1013 /* 1014 * Make sure the pool name is valid. 1015 */ 1016 if (!zpool_name_valid(hdl, B_TRUE, pool)) { 1017 (void) zfs_error_fmt(hdl, EZFS_INVALIDNAME, 1018 dgettext(TEXT_DOMAIN, "cannot open '%s'"), 1019 pool); 1020 return (NULL); 1021 } 1022 1023 if ((zhp = zfs_alloc(hdl, sizeof (zpool_handle_t))) == NULL) 1024 return (NULL); 1025 1026 zhp->zpool_hdl = hdl; 1027 (void) strlcpy(zhp->zpool_name, pool, sizeof (zhp->zpool_name)); 1028 1029 if (zpool_refresh_stats(zhp, &missing) != 0) { 1030 zpool_close(zhp); 1031 return (NULL); 1032 } 1033 1034 if (missing) { 1035 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, "no such pool")); 1036 (void) zfs_error_fmt(hdl, EZFS_NOENT, 1037 dgettext(TEXT_DOMAIN, "cannot open '%s'"), pool); 1038 zpool_close(zhp); 1039 return (NULL); 1040 } 1041 1042 return (zhp); 1043 } 1044 1045 /* 1046 * Like the above, but silent on error. Used when iterating over pools (because 1047 * the configuration cache may be out of date). 1048 */ 1049 int 1050 zpool_open_silent(libzfs_handle_t *hdl, const char *pool, zpool_handle_t **ret) 1051 { 1052 zpool_handle_t *zhp; 1053 boolean_t missing; 1054 1055 if ((zhp = zfs_alloc(hdl, sizeof (zpool_handle_t))) == NULL) 1056 return (-1); 1057 1058 zhp->zpool_hdl = hdl; 1059 (void) strlcpy(zhp->zpool_name, pool, sizeof (zhp->zpool_name)); 1060 1061 if (zpool_refresh_stats(zhp, &missing) != 0) { 1062 zpool_close(zhp); 1063 return (-1); 1064 } 1065 1066 if (missing) { 1067 zpool_close(zhp); 1068 *ret = NULL; 1069 return (0); 1070 } 1071 1072 *ret = zhp; 1073 return (0); 1074 } 1075 1076 /* 1077 * Similar to zpool_open_canfail(), but refuses to open pools in the faulted 1078 * state. 1079 */ 1080 zpool_handle_t * 1081 zpool_open(libzfs_handle_t *hdl, const char *pool) 1082 { 1083 zpool_handle_t *zhp; 1084 1085 if ((zhp = zpool_open_canfail(hdl, pool)) == NULL) 1086 return (NULL); 1087 1088 if (zhp->zpool_state == POOL_STATE_UNAVAIL) { 1089 (void) zfs_error_fmt(hdl, EZFS_POOLUNAVAIL, 1090 dgettext(TEXT_DOMAIN, "cannot open '%s'"), zhp->zpool_name); 1091 zpool_close(zhp); 1092 return (NULL); 1093 } 1094 1095 return (zhp); 1096 } 1097 1098 /* 1099 * Close the handle. Simply frees the memory associated with the handle. 1100 */ 1101 void 1102 zpool_close(zpool_handle_t *zhp) 1103 { 1104 nvlist_free(zhp->zpool_config); 1105 nvlist_free(zhp->zpool_old_config); 1106 nvlist_free(zhp->zpool_props); 1107 free(zhp); 1108 } 1109 1110 /* 1111 * Return the name of the pool. 1112 */ 1113 const char * 1114 zpool_get_name(zpool_handle_t *zhp) 1115 { 1116 return (zhp->zpool_name); 1117 } 1118 1119 1120 /* 1121 * Return the state of the pool (ACTIVE or UNAVAILABLE) 1122 */ 1123 int 1124 zpool_get_state(zpool_handle_t *zhp) 1125 { 1126 return (zhp->zpool_state); 1127 } 1128 1129 /* 1130 * Check if vdev list contains a special vdev 1131 */ 1132 static boolean_t 1133 zpool_has_special_vdev(nvlist_t *nvroot) 1134 { 1135 nvlist_t **child; 1136 uint_t children; 1137 1138 if (nvlist_lookup_nvlist_array(nvroot, ZPOOL_CONFIG_CHILDREN, &child, 1139 &children) == 0) { 1140 for (uint_t c = 0; c < children; c++) { 1141 char *bias; 1142 1143 if (nvlist_lookup_string(child[c], 1144 ZPOOL_CONFIG_ALLOCATION_BIAS, &bias) == 0 && 1145 strcmp(bias, VDEV_ALLOC_BIAS_SPECIAL) == 0) { 1146 return (B_TRUE); 1147 } 1148 } 1149 } 1150 return (B_FALSE); 1151 } 1152 1153 /* 1154 * Create the named pool, using the provided vdev list. It is assumed 1155 * that the consumer has already validated the contents of the nvlist, so we 1156 * don't have to worry about error semantics. 1157 */ 1158 int 1159 zpool_create(libzfs_handle_t *hdl, const char *pool, nvlist_t *nvroot, 1160 nvlist_t *props, nvlist_t *fsprops) 1161 { 1162 zfs_cmd_t zc = { 0 }; 1163 nvlist_t *zc_fsprops = NULL; 1164 nvlist_t *zc_props = NULL; 1165 char msg[1024]; 1166 int ret = -1; 1167 1168 (void) snprintf(msg, sizeof (msg), dgettext(TEXT_DOMAIN, 1169 "cannot create '%s'"), pool); 1170 1171 if (!zpool_name_valid(hdl, B_FALSE, pool)) 1172 return (zfs_error(hdl, EZFS_INVALIDNAME, msg)); 1173 1174 if (zcmd_write_conf_nvlist(hdl, &zc, nvroot) != 0) 1175 return (-1); 1176 1177 if (props) { 1178 prop_flags_t flags = { .create = B_TRUE, .import = B_FALSE }; 1179 1180 if ((zc_props = zpool_valid_proplist(hdl, pool, props, 1181 SPA_VERSION_1, flags, msg)) == NULL) { 1182 goto create_failed; 1183 } 1184 } 1185 1186 if (fsprops) { 1187 uint64_t zoned; 1188 char *zonestr; 1189 1190 zoned = ((nvlist_lookup_string(fsprops, 1191 zfs_prop_to_name(ZFS_PROP_ZONED), &zonestr) == 0) && 1192 strcmp(zonestr, "on") == 0); 1193 1194 if ((zc_fsprops = zfs_valid_proplist(hdl, ZFS_TYPE_FILESYSTEM, 1195 fsprops, zoned, NULL, NULL, msg)) == NULL) { 1196 goto create_failed; 1197 } 1198 1199 if (nvlist_exists(zc_fsprops, 1200 zfs_prop_to_name(ZFS_PROP_SPECIAL_SMALL_BLOCKS)) && 1201 !zpool_has_special_vdev(nvroot)) { 1202 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 1203 "%s property requires a special vdev"), 1204 zfs_prop_to_name(ZFS_PROP_SPECIAL_SMALL_BLOCKS)); 1205 (void) zfs_error(hdl, EZFS_BADPROP, msg); 1206 goto create_failed; 1207 } 1208 1209 if (!zc_props && 1210 (nvlist_alloc(&zc_props, NV_UNIQUE_NAME, 0) != 0)) { 1211 goto create_failed; 1212 } 1213 if (nvlist_add_nvlist(zc_props, 1214 ZPOOL_ROOTFS_PROPS, zc_fsprops) != 0) { 1215 goto create_failed; 1216 } 1217 } 1218 1219 if (zc_props && zcmd_write_src_nvlist(hdl, &zc, zc_props) != 0) 1220 goto create_failed; 1221 1222 (void) strlcpy(zc.zc_name, pool, sizeof (zc.zc_name)); 1223 1224 if ((ret = zfs_ioctl(hdl, ZFS_IOC_POOL_CREATE, &zc)) != 0) { 1225 1226 zcmd_free_nvlists(&zc); 1227 nvlist_free(zc_props); 1228 nvlist_free(zc_fsprops); 1229 1230 switch (errno) { 1231 case EBUSY: 1232 /* 1233 * This can happen if the user has specified the same 1234 * device multiple times. We can't reliably detect this 1235 * until we try to add it and see we already have a 1236 * label. 1237 */ 1238 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 1239 "one or more vdevs refer to the same device")); 1240 return (zfs_error(hdl, EZFS_BADDEV, msg)); 1241 1242 case ERANGE: 1243 /* 1244 * This happens if the record size is smaller or larger 1245 * than the allowed size range, or not a power of 2. 1246 * 1247 * NOTE: although zfs_valid_proplist is called earlier, 1248 * this case may have slipped through since the 1249 * pool does not exist yet and it is therefore 1250 * impossible to read properties e.g. max blocksize 1251 * from the pool. 1252 */ 1253 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 1254 "record size invalid")); 1255 return (zfs_error(hdl, EZFS_BADPROP, msg)); 1256 1257 case EOVERFLOW: 1258 /* 1259 * This occurs when one of the devices is below 1260 * SPA_MINDEVSIZE. Unfortunately, we can't detect which 1261 * device was the problem device since there's no 1262 * reliable way to determine device size from userland. 1263 */ 1264 { 1265 char buf[64]; 1266 1267 zfs_nicenum(SPA_MINDEVSIZE, buf, sizeof (buf)); 1268 1269 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 1270 "one or more devices is less than the " 1271 "minimum size (%s)"), buf); 1272 } 1273 return (zfs_error(hdl, EZFS_BADDEV, msg)); 1274 1275 case ENOSPC: 1276 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 1277 "one or more devices is out of space")); 1278 return (zfs_error(hdl, EZFS_BADDEV, msg)); 1279 1280 case ENOTBLK: 1281 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 1282 "cache device must be a disk or disk slice")); 1283 return (zfs_error(hdl, EZFS_BADDEV, msg)); 1284 1285 default: 1286 return (zpool_standard_error(hdl, errno, msg)); 1287 } 1288 } 1289 1290 create_failed: 1291 zcmd_free_nvlists(&zc); 1292 nvlist_free(zc_props); 1293 nvlist_free(zc_fsprops); 1294 return (ret); 1295 } 1296 1297 /* 1298 * Destroy the given pool. It is up to the caller to ensure that there are no 1299 * datasets left in the pool. 1300 */ 1301 int 1302 zpool_destroy(zpool_handle_t *zhp, const char *log_str) 1303 { 1304 zfs_cmd_t zc = { 0 }; 1305 zfs_handle_t *zfp = NULL; 1306 libzfs_handle_t *hdl = zhp->zpool_hdl; 1307 char msg[1024]; 1308 1309 if (zhp->zpool_state == POOL_STATE_ACTIVE && 1310 (zfp = zfs_open(hdl, zhp->zpool_name, ZFS_TYPE_FILESYSTEM)) == NULL) 1311 return (-1); 1312 1313 (void) strlcpy(zc.zc_name, zhp->zpool_name, sizeof (zc.zc_name)); 1314 zc.zc_history = (uint64_t)(uintptr_t)log_str; 1315 1316 if (zfs_ioctl(hdl, ZFS_IOC_POOL_DESTROY, &zc) != 0) { 1317 (void) snprintf(msg, sizeof (msg), dgettext(TEXT_DOMAIN, 1318 "cannot destroy '%s'"), zhp->zpool_name); 1319 1320 if (errno == EROFS) { 1321 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 1322 "one or more devices is read only")); 1323 (void) zfs_error(hdl, EZFS_BADDEV, msg); 1324 } else { 1325 (void) zpool_standard_error(hdl, errno, msg); 1326 } 1327 1328 if (zfp) 1329 zfs_close(zfp); 1330 return (-1); 1331 } 1332 1333 if (zfp) { 1334 remove_mountpoint(zfp); 1335 zfs_close(zfp); 1336 } 1337 1338 return (0); 1339 } 1340 1341 /* 1342 * Create a checkpoint in the given pool. 1343 */ 1344 int 1345 zpool_checkpoint(zpool_handle_t *zhp) 1346 { 1347 libzfs_handle_t *hdl = zhp->zpool_hdl; 1348 char msg[1024]; 1349 int error; 1350 1351 error = lzc_pool_checkpoint(zhp->zpool_name); 1352 if (error != 0) { 1353 (void) snprintf(msg, sizeof (msg), dgettext(TEXT_DOMAIN, 1354 "cannot checkpoint '%s'"), zhp->zpool_name); 1355 (void) zpool_standard_error(hdl, error, msg); 1356 return (-1); 1357 } 1358 1359 return (0); 1360 } 1361 1362 /* 1363 * Discard the checkpoint from the given pool. 1364 */ 1365 int 1366 zpool_discard_checkpoint(zpool_handle_t *zhp) 1367 { 1368 libzfs_handle_t *hdl = zhp->zpool_hdl; 1369 char msg[1024]; 1370 int error; 1371 1372 error = lzc_pool_checkpoint_discard(zhp->zpool_name); 1373 if (error != 0) { 1374 (void) snprintf(msg, sizeof (msg), dgettext(TEXT_DOMAIN, 1375 "cannot discard checkpoint in '%s'"), zhp->zpool_name); 1376 (void) zpool_standard_error(hdl, error, msg); 1377 return (-1); 1378 } 1379 1380 return (0); 1381 } 1382 1383 /* 1384 * Add the given vdevs to the pool. The caller must have already performed the 1385 * necessary verification to ensure that the vdev specification is well-formed. 1386 */ 1387 int 1388 zpool_add(zpool_handle_t *zhp, nvlist_t *nvroot) 1389 { 1390 zfs_cmd_t zc = { 0 }; 1391 int ret; 1392 libzfs_handle_t *hdl = zhp->zpool_hdl; 1393 char msg[1024]; 1394 nvlist_t **spares, **l2cache; 1395 uint_t nspares, nl2cache; 1396 1397 (void) snprintf(msg, sizeof (msg), dgettext(TEXT_DOMAIN, 1398 "cannot add to '%s'"), zhp->zpool_name); 1399 1400 if (zpool_get_prop_int(zhp, ZPOOL_PROP_VERSION, NULL) < 1401 SPA_VERSION_SPARES && 1402 nvlist_lookup_nvlist_array(nvroot, ZPOOL_CONFIG_SPARES, 1403 &spares, &nspares) == 0) { 1404 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, "pool must be " 1405 "upgraded to add hot spares")); 1406 return (zfs_error(hdl, EZFS_BADVERSION, msg)); 1407 } 1408 1409 if (zpool_get_prop_int(zhp, ZPOOL_PROP_VERSION, NULL) < 1410 SPA_VERSION_L2CACHE && 1411 nvlist_lookup_nvlist_array(nvroot, ZPOOL_CONFIG_L2CACHE, 1412 &l2cache, &nl2cache) == 0) { 1413 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, "pool must be " 1414 "upgraded to add cache devices")); 1415 return (zfs_error(hdl, EZFS_BADVERSION, msg)); 1416 } 1417 1418 if (zcmd_write_conf_nvlist(hdl, &zc, nvroot) != 0) 1419 return (-1); 1420 (void) strlcpy(zc.zc_name, zhp->zpool_name, sizeof (zc.zc_name)); 1421 1422 if (zfs_ioctl(hdl, ZFS_IOC_VDEV_ADD, &zc) != 0) { 1423 switch (errno) { 1424 case EBUSY: 1425 /* 1426 * This can happen if the user has specified the same 1427 * device multiple times. We can't reliably detect this 1428 * until we try to add it and see we already have a 1429 * label. 1430 */ 1431 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 1432 "one or more vdevs refer to the same device")); 1433 (void) zfs_error(hdl, EZFS_BADDEV, msg); 1434 break; 1435 1436 case EINVAL: 1437 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 1438 "invalid config; a pool with removing/removed " 1439 "vdevs does not support adding raidz vdevs")); 1440 (void) zfs_error(hdl, EZFS_BADDEV, msg); 1441 break; 1442 1443 case EOVERFLOW: 1444 /* 1445 * This occurrs when one of the devices is below 1446 * SPA_MINDEVSIZE. Unfortunately, we can't detect which 1447 * device was the problem device since there's no 1448 * reliable way to determine device size from userland. 1449 */ 1450 { 1451 char buf[64]; 1452 1453 zfs_nicenum(SPA_MINDEVSIZE, buf, sizeof (buf)); 1454 1455 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 1456 "device is less than the minimum " 1457 "size (%s)"), buf); 1458 } 1459 (void) zfs_error(hdl, EZFS_BADDEV, msg); 1460 break; 1461 1462 case ENOTSUP: 1463 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 1464 "pool must be upgraded to add these vdevs")); 1465 (void) zfs_error(hdl, EZFS_BADVERSION, msg); 1466 break; 1467 1468 case EDOM: 1469 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 1470 "root pool can not have multiple vdevs" 1471 " or separate logs")); 1472 (void) zfs_error(hdl, EZFS_POOL_NOTSUP, msg); 1473 break; 1474 1475 case ENOTBLK: 1476 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 1477 "cache device must be a disk or disk slice")); 1478 (void) zfs_error(hdl, EZFS_BADDEV, msg); 1479 break; 1480 1481 default: 1482 (void) zpool_standard_error(hdl, errno, msg); 1483 } 1484 1485 ret = -1; 1486 } else { 1487 ret = 0; 1488 } 1489 1490 zcmd_free_nvlists(&zc); 1491 1492 return (ret); 1493 } 1494 1495 /* 1496 * Exports the pool from the system. The caller must ensure that there are no 1497 * mounted datasets in the pool. 1498 */ 1499 static int 1500 zpool_export_common(zpool_handle_t *zhp, boolean_t force, boolean_t hardforce, 1501 const char *log_str) 1502 { 1503 zfs_cmd_t zc = { 0 }; 1504 char msg[1024]; 1505 1506 (void) snprintf(msg, sizeof (msg), dgettext(TEXT_DOMAIN, 1507 "cannot export '%s'"), zhp->zpool_name); 1508 1509 (void) strlcpy(zc.zc_name, zhp->zpool_name, sizeof (zc.zc_name)); 1510 zc.zc_cookie = force; 1511 zc.zc_guid = hardforce; 1512 zc.zc_history = (uint64_t)(uintptr_t)log_str; 1513 1514 if (zfs_ioctl(zhp->zpool_hdl, ZFS_IOC_POOL_EXPORT, &zc) != 0) { 1515 switch (errno) { 1516 case EXDEV: 1517 zfs_error_aux(zhp->zpool_hdl, dgettext(TEXT_DOMAIN, 1518 "use '-f' to override the following errors:\n" 1519 "'%s' has an active shared spare which could be" 1520 " used by other pools once '%s' is exported."), 1521 zhp->zpool_name, zhp->zpool_name); 1522 return (zfs_error(zhp->zpool_hdl, EZFS_ACTIVE_SPARE, 1523 msg)); 1524 default: 1525 return (zpool_standard_error_fmt(zhp->zpool_hdl, errno, 1526 msg)); 1527 } 1528 } 1529 1530 return (0); 1531 } 1532 1533 int 1534 zpool_export(zpool_handle_t *zhp, boolean_t force, const char *log_str) 1535 { 1536 return (zpool_export_common(zhp, force, B_FALSE, log_str)); 1537 } 1538 1539 int 1540 zpool_export_force(zpool_handle_t *zhp, const char *log_str) 1541 { 1542 return (zpool_export_common(zhp, B_TRUE, B_TRUE, log_str)); 1543 } 1544 1545 static void 1546 zpool_rewind_exclaim(libzfs_handle_t *hdl, const char *name, boolean_t dryrun, 1547 nvlist_t *config) 1548 { 1549 nvlist_t *nv = NULL; 1550 uint64_t rewindto; 1551 int64_t loss = -1; 1552 struct tm t; 1553 char timestr[128]; 1554 1555 if (!hdl->libzfs_printerr || config == NULL) 1556 return; 1557 1558 if (nvlist_lookup_nvlist(config, ZPOOL_CONFIG_LOAD_INFO, &nv) != 0 || 1559 nvlist_lookup_nvlist(nv, ZPOOL_CONFIG_REWIND_INFO, &nv) != 0) { 1560 return; 1561 } 1562 1563 if (nvlist_lookup_uint64(nv, ZPOOL_CONFIG_LOAD_TIME, &rewindto) != 0) 1564 return; 1565 (void) nvlist_lookup_int64(nv, ZPOOL_CONFIG_REWIND_TIME, &loss); 1566 1567 if (localtime_r((time_t *)&rewindto, &t) != NULL && 1568 strftime(timestr, 128, 0, &t) != 0) { 1569 if (dryrun) { 1570 (void) printf(dgettext(TEXT_DOMAIN, 1571 "Would be able to return %s " 1572 "to its state as of %s.\n"), 1573 name, timestr); 1574 } else { 1575 (void) printf(dgettext(TEXT_DOMAIN, 1576 "Pool %s returned to its state as of %s.\n"), 1577 name, timestr); 1578 } 1579 if (loss > 120) { 1580 (void) printf(dgettext(TEXT_DOMAIN, 1581 "%s approximately %lld "), 1582 dryrun ? "Would discard" : "Discarded", 1583 (loss + 30) / 60); 1584 (void) printf(dgettext(TEXT_DOMAIN, 1585 "minutes of transactions.\n")); 1586 } else if (loss > 0) { 1587 (void) printf(dgettext(TEXT_DOMAIN, 1588 "%s approximately %lld "), 1589 dryrun ? "Would discard" : "Discarded", loss); 1590 (void) printf(dgettext(TEXT_DOMAIN, 1591 "seconds of transactions.\n")); 1592 } 1593 } 1594 } 1595 1596 void 1597 zpool_explain_recover(libzfs_handle_t *hdl, const char *name, int reason, 1598 nvlist_t *config) 1599 { 1600 nvlist_t *nv = NULL; 1601 int64_t loss = -1; 1602 uint64_t edata = UINT64_MAX; 1603 uint64_t rewindto; 1604 struct tm t; 1605 char timestr[128]; 1606 1607 if (!hdl->libzfs_printerr) 1608 return; 1609 1610 if (reason >= 0) 1611 (void) printf(dgettext(TEXT_DOMAIN, "action: ")); 1612 else 1613 (void) printf(dgettext(TEXT_DOMAIN, "\t")); 1614 1615 /* All attempted rewinds failed if ZPOOL_CONFIG_LOAD_TIME missing */ 1616 if (nvlist_lookup_nvlist(config, ZPOOL_CONFIG_LOAD_INFO, &nv) != 0 || 1617 nvlist_lookup_nvlist(nv, ZPOOL_CONFIG_REWIND_INFO, &nv) != 0 || 1618 nvlist_lookup_uint64(nv, ZPOOL_CONFIG_LOAD_TIME, &rewindto) != 0) 1619 goto no_info; 1620 1621 (void) nvlist_lookup_int64(nv, ZPOOL_CONFIG_REWIND_TIME, &loss); 1622 (void) nvlist_lookup_uint64(nv, ZPOOL_CONFIG_LOAD_DATA_ERRORS, 1623 &edata); 1624 1625 (void) printf(dgettext(TEXT_DOMAIN, 1626 "Recovery is possible, but will result in some data loss.\n")); 1627 1628 if (localtime_r((time_t *)&rewindto, &t) != NULL && 1629 strftime(timestr, 128, 0, &t) != 0) { 1630 (void) printf(dgettext(TEXT_DOMAIN, 1631 "\tReturning the pool to its state as of %s\n" 1632 "\tshould correct the problem. "), 1633 timestr); 1634 } else { 1635 (void) printf(dgettext(TEXT_DOMAIN, 1636 "\tReverting the pool to an earlier state " 1637 "should correct the problem.\n\t")); 1638 } 1639 1640 if (loss > 120) { 1641 (void) printf(dgettext(TEXT_DOMAIN, 1642 "Approximately %lld minutes of data\n" 1643 "\tmust be discarded, irreversibly. "), (loss + 30) / 60); 1644 } else if (loss > 0) { 1645 (void) printf(dgettext(TEXT_DOMAIN, 1646 "Approximately %lld seconds of data\n" 1647 "\tmust be discarded, irreversibly. "), loss); 1648 } 1649 if (edata != 0 && edata != UINT64_MAX) { 1650 if (edata == 1) { 1651 (void) printf(dgettext(TEXT_DOMAIN, 1652 "After rewind, at least\n" 1653 "\tone persistent user-data error will remain. ")); 1654 } else { 1655 (void) printf(dgettext(TEXT_DOMAIN, 1656 "After rewind, several\n" 1657 "\tpersistent user-data errors will remain. ")); 1658 } 1659 } 1660 (void) printf(dgettext(TEXT_DOMAIN, 1661 "Recovery can be attempted\n\tby executing 'zpool %s -F %s'. "), 1662 reason >= 0 ? "clear" : "import", name); 1663 1664 (void) printf(dgettext(TEXT_DOMAIN, 1665 "A scrub of the pool\n" 1666 "\tis strongly recommended after recovery.\n")); 1667 return; 1668 1669 no_info: 1670 (void) printf(dgettext(TEXT_DOMAIN, 1671 "Destroy and re-create the pool from\n\ta backup source.\n")); 1672 } 1673 1674 /* 1675 * zpool_import() is a contracted interface. Should be kept the same 1676 * if possible. 1677 * 1678 * Applications should use zpool_import_props() to import a pool with 1679 * new properties value to be set. 1680 */ 1681 int 1682 zpool_import(libzfs_handle_t *hdl, nvlist_t *config, const char *newname, 1683 char *altroot) 1684 { 1685 nvlist_t *props = NULL; 1686 int ret; 1687 1688 if (altroot != NULL) { 1689 if (nvlist_alloc(&props, NV_UNIQUE_NAME, 0) != 0) { 1690 return (zfs_error_fmt(hdl, EZFS_NOMEM, 1691 dgettext(TEXT_DOMAIN, "cannot import '%s'"), 1692 newname)); 1693 } 1694 1695 if (nvlist_add_string(props, 1696 zpool_prop_to_name(ZPOOL_PROP_ALTROOT), altroot) != 0 || 1697 nvlist_add_string(props, 1698 zpool_prop_to_name(ZPOOL_PROP_CACHEFILE), "none") != 0) { 1699 nvlist_free(props); 1700 return (zfs_error_fmt(hdl, EZFS_NOMEM, 1701 dgettext(TEXT_DOMAIN, "cannot import '%s'"), 1702 newname)); 1703 } 1704 } 1705 1706 ret = zpool_import_props(hdl, config, newname, props, 1707 ZFS_IMPORT_NORMAL); 1708 nvlist_free(props); 1709 return (ret); 1710 } 1711 1712 static void 1713 print_vdev_tree(libzfs_handle_t *hdl, const char *name, nvlist_t *nv, 1714 int indent) 1715 { 1716 nvlist_t **child; 1717 uint_t c, children; 1718 char *vname; 1719 uint64_t is_log = 0; 1720 1721 (void) nvlist_lookup_uint64(nv, ZPOOL_CONFIG_IS_LOG, 1722 &is_log); 1723 1724 if (name != NULL) 1725 (void) printf("\t%*s%s%s\n", indent, "", name, 1726 is_log ? " [log]" : ""); 1727 1728 if (nvlist_lookup_nvlist_array(nv, ZPOOL_CONFIG_CHILDREN, 1729 &child, &children) != 0) 1730 return; 1731 1732 for (c = 0; c < children; c++) { 1733 vname = zpool_vdev_name(hdl, NULL, child[c], VDEV_NAME_TYPE_ID); 1734 print_vdev_tree(hdl, vname, child[c], indent + 2); 1735 free(vname); 1736 } 1737 } 1738 1739 void 1740 zpool_print_unsup_feat(nvlist_t *config) 1741 { 1742 nvlist_t *nvinfo, *unsup_feat; 1743 1744 verify(nvlist_lookup_nvlist(config, ZPOOL_CONFIG_LOAD_INFO, &nvinfo) == 1745 0); 1746 verify(nvlist_lookup_nvlist(nvinfo, ZPOOL_CONFIG_UNSUP_FEAT, 1747 &unsup_feat) == 0); 1748 1749 for (nvpair_t *nvp = nvlist_next_nvpair(unsup_feat, NULL); nvp != NULL; 1750 nvp = nvlist_next_nvpair(unsup_feat, nvp)) { 1751 char *desc; 1752 1753 verify(nvpair_type(nvp) == DATA_TYPE_STRING); 1754 verify(nvpair_value_string(nvp, &desc) == 0); 1755 1756 if (strlen(desc) > 0) 1757 (void) printf("\t%s (%s)\n", nvpair_name(nvp), desc); 1758 else 1759 (void) printf("\t%s\n", nvpair_name(nvp)); 1760 } 1761 } 1762 1763 /* 1764 * Import the given pool using the known configuration and a list of 1765 * properties to be set. The configuration should have come from 1766 * zpool_find_import(). The 'newname' parameters control whether the pool 1767 * is imported with a different name. 1768 */ 1769 int 1770 zpool_import_props(libzfs_handle_t *hdl, nvlist_t *config, const char *newname, 1771 nvlist_t *props, int flags) 1772 { 1773 zfs_cmd_t zc = { 0 }; 1774 zpool_load_policy_t policy; 1775 nvlist_t *nv = NULL; 1776 nvlist_t *nvinfo = NULL; 1777 nvlist_t *missing = NULL; 1778 char *thename; 1779 char *origname; 1780 int ret; 1781 int error = 0; 1782 char errbuf[1024]; 1783 1784 verify(nvlist_lookup_string(config, ZPOOL_CONFIG_POOL_NAME, 1785 &origname) == 0); 1786 1787 (void) snprintf(errbuf, sizeof (errbuf), dgettext(TEXT_DOMAIN, 1788 "cannot import pool '%s'"), origname); 1789 1790 if (newname != NULL) { 1791 if (!zpool_name_valid(hdl, B_FALSE, newname)) 1792 return (zfs_error_fmt(hdl, EZFS_INVALIDNAME, 1793 dgettext(TEXT_DOMAIN, "cannot import '%s'"), 1794 newname)); 1795 thename = (char *)newname; 1796 } else { 1797 thename = origname; 1798 } 1799 1800 if (props != NULL) { 1801 uint64_t version; 1802 prop_flags_t flags = { .create = B_FALSE, .import = B_TRUE }; 1803 1804 verify(nvlist_lookup_uint64(config, ZPOOL_CONFIG_VERSION, 1805 &version) == 0); 1806 1807 if ((props = zpool_valid_proplist(hdl, origname, 1808 props, version, flags, errbuf)) == NULL) 1809 return (-1); 1810 if (zcmd_write_src_nvlist(hdl, &zc, props) != 0) { 1811 nvlist_free(props); 1812 return (-1); 1813 } 1814 nvlist_free(props); 1815 } 1816 1817 (void) strlcpy(zc.zc_name, thename, sizeof (zc.zc_name)); 1818 1819 verify(nvlist_lookup_uint64(config, ZPOOL_CONFIG_POOL_GUID, 1820 &zc.zc_guid) == 0); 1821 1822 if (zcmd_write_conf_nvlist(hdl, &zc, config) != 0) { 1823 zcmd_free_nvlists(&zc); 1824 return (-1); 1825 } 1826 if (zcmd_alloc_dst_nvlist(hdl, &zc, zc.zc_nvlist_conf_size * 2) != 0) { 1827 zcmd_free_nvlists(&zc); 1828 return (-1); 1829 } 1830 1831 zc.zc_cookie = flags; 1832 while ((ret = zfs_ioctl(hdl, ZFS_IOC_POOL_IMPORT, &zc)) != 0 && 1833 errno == ENOMEM) { 1834 if (zcmd_expand_dst_nvlist(hdl, &zc) != 0) { 1835 zcmd_free_nvlists(&zc); 1836 return (-1); 1837 } 1838 } 1839 if (ret != 0) 1840 error = errno; 1841 1842 (void) zcmd_read_dst_nvlist(hdl, &zc, &nv); 1843 1844 zcmd_free_nvlists(&zc); 1845 1846 zpool_get_load_policy(config, &policy); 1847 1848 if (error) { 1849 char desc[1024]; 1850 char aux[256]; 1851 1852 /* 1853 * Dry-run failed, but we print out what success 1854 * looks like if we found a best txg 1855 */ 1856 if (policy.zlp_rewind & ZPOOL_TRY_REWIND) { 1857 zpool_rewind_exclaim(hdl, newname ? origname : thename, 1858 B_TRUE, nv); 1859 nvlist_free(nv); 1860 return (-1); 1861 } 1862 1863 if (newname == NULL) 1864 (void) snprintf(desc, sizeof (desc), 1865 dgettext(TEXT_DOMAIN, "cannot import '%s'"), 1866 thename); 1867 else 1868 (void) snprintf(desc, sizeof (desc), 1869 dgettext(TEXT_DOMAIN, "cannot import '%s' as '%s'"), 1870 origname, thename); 1871 1872 switch (error) { 1873 case ENOTSUP: 1874 if (nv != NULL && nvlist_lookup_nvlist(nv, 1875 ZPOOL_CONFIG_LOAD_INFO, &nvinfo) == 0 && 1876 nvlist_exists(nvinfo, ZPOOL_CONFIG_UNSUP_FEAT)) { 1877 (void) printf(dgettext(TEXT_DOMAIN, "This " 1878 "pool uses the following feature(s) not " 1879 "supported by this system:\n")); 1880 zpool_print_unsup_feat(nv); 1881 if (nvlist_exists(nvinfo, 1882 ZPOOL_CONFIG_CAN_RDONLY)) { 1883 (void) printf(dgettext(TEXT_DOMAIN, 1884 "All unsupported features are only " 1885 "required for writing to the pool." 1886 "\nThe pool can be imported using " 1887 "'-o readonly=on'.\n")); 1888 } 1889 } 1890 /* 1891 * Unsupported version. 1892 */ 1893 (void) zfs_error(hdl, EZFS_BADVERSION, desc); 1894 break; 1895 1896 case EREMOTEIO: 1897 if (nv != NULL && nvlist_lookup_nvlist(nv, 1898 ZPOOL_CONFIG_LOAD_INFO, &nvinfo) == 0) { 1899 char *hostname = "<unknown>"; 1900 uint64_t hostid = 0; 1901 mmp_state_t mmp_state; 1902 1903 mmp_state = fnvlist_lookup_uint64(nvinfo, 1904 ZPOOL_CONFIG_MMP_STATE); 1905 1906 if (nvlist_exists(nvinfo, 1907 ZPOOL_CONFIG_MMP_HOSTNAME)) 1908 hostname = fnvlist_lookup_string(nvinfo, 1909 ZPOOL_CONFIG_MMP_HOSTNAME); 1910 1911 if (nvlist_exists(nvinfo, 1912 ZPOOL_CONFIG_MMP_HOSTID)) 1913 hostid = fnvlist_lookup_uint64(nvinfo, 1914 ZPOOL_CONFIG_MMP_HOSTID); 1915 1916 if (mmp_state == MMP_STATE_ACTIVE) { 1917 (void) snprintf(aux, sizeof (aux), 1918 dgettext(TEXT_DOMAIN, "pool is imp" 1919 "orted on host '%s' (hostid=%lx).\n" 1920 "Export the pool on the other " 1921 "system, then run 'zpool import'."), 1922 hostname, (unsigned long) hostid); 1923 } else if (mmp_state == MMP_STATE_NO_HOSTID) { 1924 (void) snprintf(aux, sizeof (aux), 1925 dgettext(TEXT_DOMAIN, "pool has " 1926 "the multihost property on and " 1927 "the\nsystem's hostid is not " 1928 "set.\n")); 1929 } 1930 1931 (void) zfs_error_aux(hdl, aux); 1932 } 1933 (void) zfs_error(hdl, EZFS_ACTIVE_POOL, desc); 1934 break; 1935 1936 case EINVAL: 1937 (void) zfs_error(hdl, EZFS_INVALCONFIG, desc); 1938 break; 1939 1940 case EROFS: 1941 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 1942 "one or more devices is read only")); 1943 (void) zfs_error(hdl, EZFS_BADDEV, desc); 1944 break; 1945 1946 case ENXIO: 1947 if (nv && nvlist_lookup_nvlist(nv, 1948 ZPOOL_CONFIG_LOAD_INFO, &nvinfo) == 0 && 1949 nvlist_lookup_nvlist(nvinfo, 1950 ZPOOL_CONFIG_MISSING_DEVICES, &missing) == 0) { 1951 (void) printf(dgettext(TEXT_DOMAIN, 1952 "The devices below are missing or " 1953 "corrupted, use '-m' to import the pool " 1954 "anyway:\n")); 1955 print_vdev_tree(hdl, NULL, missing, 2); 1956 (void) printf("\n"); 1957 } 1958 (void) zpool_standard_error(hdl, error, desc); 1959 break; 1960 1961 case EEXIST: 1962 (void) zpool_standard_error(hdl, error, desc); 1963 break; 1964 case ENAMETOOLONG: 1965 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 1966 "new name of at least one dataset is longer than " 1967 "the maximum allowable length")); 1968 (void) zfs_error(hdl, EZFS_NAMETOOLONG, desc); 1969 break; 1970 default: 1971 (void) zpool_standard_error(hdl, error, desc); 1972 zpool_explain_recover(hdl, 1973 newname ? origname : thename, -error, nv); 1974 break; 1975 } 1976 1977 nvlist_free(nv); 1978 ret = -1; 1979 } else { 1980 zpool_handle_t *zhp; 1981 1982 /* 1983 * This should never fail, but play it safe anyway. 1984 */ 1985 if (zpool_open_silent(hdl, thename, &zhp) != 0) 1986 ret = -1; 1987 else if (zhp != NULL) 1988 zpool_close(zhp); 1989 if (policy.zlp_rewind & 1990 (ZPOOL_DO_REWIND | ZPOOL_TRY_REWIND)) { 1991 zpool_rewind_exclaim(hdl, newname ? origname : thename, 1992 ((policy.zlp_rewind & ZPOOL_TRY_REWIND) != 0), nv); 1993 } 1994 nvlist_free(nv); 1995 return (0); 1996 } 1997 1998 return (ret); 1999 } 2000 2001 /* 2002 * Scan the pool. 2003 */ 2004 int 2005 zpool_scan(zpool_handle_t *zhp, pool_scan_func_t func, pool_scrub_cmd_t cmd) 2006 { 2007 zfs_cmd_t zc = { 0 }; 2008 char msg[1024]; 2009 int err; 2010 libzfs_handle_t *hdl = zhp->zpool_hdl; 2011 2012 (void) strlcpy(zc.zc_name, zhp->zpool_name, sizeof (zc.zc_name)); 2013 zc.zc_cookie = func; 2014 zc.zc_flags = cmd; 2015 2016 if (zfs_ioctl(hdl, ZFS_IOC_POOL_SCAN, &zc) == 0) 2017 return (0); 2018 2019 err = errno; 2020 2021 /* ECANCELED on a scrub means we resumed a paused scrub */ 2022 if (err == ECANCELED && func == POOL_SCAN_SCRUB && 2023 cmd == POOL_SCRUB_NORMAL) 2024 return (0); 2025 2026 if (err == ENOENT && func != POOL_SCAN_NONE && cmd == POOL_SCRUB_NORMAL) 2027 return (0); 2028 2029 if (func == POOL_SCAN_SCRUB) { 2030 if (cmd == POOL_SCRUB_PAUSE) { 2031 (void) snprintf(msg, sizeof (msg), dgettext(TEXT_DOMAIN, 2032 "cannot pause scrubbing %s"), zc.zc_name); 2033 } else { 2034 assert(cmd == POOL_SCRUB_NORMAL); 2035 (void) snprintf(msg, sizeof (msg), dgettext(TEXT_DOMAIN, 2036 "cannot scrub %s"), zc.zc_name); 2037 } 2038 } else if (func == POOL_SCAN_NONE) { 2039 (void) snprintf(msg, sizeof (msg), 2040 dgettext(TEXT_DOMAIN, "cannot cancel scrubbing %s"), 2041 zc.zc_name); 2042 } else { 2043 assert(!"unexpected result"); 2044 } 2045 2046 if (err == EBUSY) { 2047 nvlist_t *nvroot; 2048 pool_scan_stat_t *ps = NULL; 2049 uint_t psc; 2050 2051 verify(nvlist_lookup_nvlist(zhp->zpool_config, 2052 ZPOOL_CONFIG_VDEV_TREE, &nvroot) == 0); 2053 (void) nvlist_lookup_uint64_array(nvroot, 2054 ZPOOL_CONFIG_SCAN_STATS, (uint64_t **)&ps, &psc); 2055 if (ps && ps->pss_func == POOL_SCAN_SCRUB) { 2056 if (cmd == POOL_SCRUB_PAUSE) 2057 return (zfs_error(hdl, EZFS_SCRUB_PAUSED, msg)); 2058 else 2059 return (zfs_error(hdl, EZFS_SCRUBBING, msg)); 2060 } else { 2061 return (zfs_error(hdl, EZFS_RESILVERING, msg)); 2062 } 2063 } else if (err == ENOENT) { 2064 return (zfs_error(hdl, EZFS_NO_SCRUB, msg)); 2065 } else { 2066 return (zpool_standard_error(hdl, err, msg)); 2067 } 2068 } 2069 2070 static int 2071 xlate_init_err(int err) 2072 { 2073 switch (err) { 2074 case ENODEV: 2075 return (EZFS_NODEVICE); 2076 case EINVAL: 2077 case EROFS: 2078 return (EZFS_BADDEV); 2079 case EBUSY: 2080 return (EZFS_INITIALIZING); 2081 case ESRCH: 2082 return (EZFS_NO_INITIALIZE); 2083 } 2084 return (err); 2085 } 2086 2087 /* 2088 * Begin, suspend, or cancel the initialization (initializing of all free 2089 * blocks) for the given vdevs in the given pool. 2090 */ 2091 int 2092 zpool_initialize(zpool_handle_t *zhp, pool_initialize_func_t cmd_type, 2093 nvlist_t *vds) 2094 { 2095 char msg[1024]; 2096 libzfs_handle_t *hdl = zhp->zpool_hdl; 2097 2098 nvlist_t *errlist; 2099 2100 /* translate vdev names to guids */ 2101 nvlist_t *vdev_guids = fnvlist_alloc(); 2102 nvlist_t *guids_to_paths = fnvlist_alloc(); 2103 boolean_t spare, cache; 2104 nvlist_t *tgt; 2105 nvpair_t *elem; 2106 2107 for (elem = nvlist_next_nvpair(vds, NULL); elem != NULL; 2108 elem = nvlist_next_nvpair(vds, elem)) { 2109 char *vd_path = nvpair_name(elem); 2110 tgt = zpool_find_vdev(zhp, vd_path, &spare, &cache, NULL); 2111 2112 if ((tgt == NULL) || cache || spare) { 2113 (void) snprintf(msg, sizeof (msg), 2114 dgettext(TEXT_DOMAIN, "cannot initialize '%s'"), 2115 vd_path); 2116 int err = (tgt == NULL) ? EZFS_NODEVICE : 2117 (spare ? EZFS_ISSPARE : EZFS_ISL2CACHE); 2118 fnvlist_free(vdev_guids); 2119 fnvlist_free(guids_to_paths); 2120 return (zfs_error(hdl, err, msg)); 2121 } 2122 2123 uint64_t guid = fnvlist_lookup_uint64(tgt, ZPOOL_CONFIG_GUID); 2124 fnvlist_add_uint64(vdev_guids, vd_path, guid); 2125 2126 (void) snprintf(msg, sizeof (msg), "%llu", guid); 2127 fnvlist_add_string(guids_to_paths, msg, vd_path); 2128 } 2129 2130 int err = lzc_initialize(zhp->zpool_name, cmd_type, vdev_guids, 2131 &errlist); 2132 fnvlist_free(vdev_guids); 2133 2134 if (err == 0) { 2135 fnvlist_free(guids_to_paths); 2136 return (0); 2137 } 2138 2139 nvlist_t *vd_errlist = NULL; 2140 if (errlist != NULL) { 2141 vd_errlist = fnvlist_lookup_nvlist(errlist, 2142 ZPOOL_INITIALIZE_VDEVS); 2143 } 2144 2145 (void) snprintf(msg, sizeof (msg), 2146 dgettext(TEXT_DOMAIN, "operation failed")); 2147 2148 for (elem = nvlist_next_nvpair(vd_errlist, NULL); elem != NULL; 2149 elem = nvlist_next_nvpair(vd_errlist, elem)) { 2150 int64_t vd_error = xlate_init_err(fnvpair_value_int64(elem)); 2151 char *path = fnvlist_lookup_string(guids_to_paths, 2152 nvpair_name(elem)); 2153 (void) zfs_error_fmt(hdl, vd_error, "cannot initialize '%s'", 2154 path); 2155 } 2156 2157 fnvlist_free(guids_to_paths); 2158 if (vd_errlist != NULL) 2159 return (-1); 2160 2161 return (zpool_standard_error(hdl, err, msg)); 2162 } 2163 2164 /* 2165 * This provides a very minimal check whether a given string is likely a 2166 * c#t#d# style string. Users of this are expected to do their own 2167 * verification of the s# part. 2168 */ 2169 #define CTD_CHECK(str) (str && str[0] == 'c' && isdigit(str[1])) 2170 2171 /* 2172 * More elaborate version for ones which may start with "/dev/dsk/" 2173 * and the like. 2174 */ 2175 static int 2176 ctd_check_path(char *str) 2177 { 2178 /* 2179 * If it starts with a slash, check the last component. 2180 */ 2181 if (str && str[0] == '/') { 2182 char *tmp = strrchr(str, '/'); 2183 2184 /* 2185 * If it ends in "/old", check the second-to-last 2186 * component of the string instead. 2187 */ 2188 if (tmp != str && strcmp(tmp, "/old") == 0) { 2189 for (tmp--; *tmp != '/'; tmp--) 2190 ; 2191 } 2192 str = tmp + 1; 2193 } 2194 return (CTD_CHECK(str)); 2195 } 2196 2197 /* 2198 * Find a vdev that matches the search criteria specified. We use the 2199 * the nvpair name to determine how we should look for the device. 2200 * 'avail_spare' is set to TRUE if the provided guid refers to an AVAIL 2201 * spare; but FALSE if its an INUSE spare. 2202 */ 2203 static nvlist_t * 2204 vdev_to_nvlist_iter(nvlist_t *nv, nvlist_t *search, boolean_t *avail_spare, 2205 boolean_t *l2cache, boolean_t *log) 2206 { 2207 uint_t c, children; 2208 nvlist_t **child; 2209 nvlist_t *ret; 2210 uint64_t is_log; 2211 char *srchkey; 2212 nvpair_t *pair = nvlist_next_nvpair(search, NULL); 2213 2214 /* Nothing to look for */ 2215 if (search == NULL || pair == NULL) 2216 return (NULL); 2217 2218 /* Obtain the key we will use to search */ 2219 srchkey = nvpair_name(pair); 2220 2221 switch (nvpair_type(pair)) { 2222 case DATA_TYPE_UINT64: 2223 if (strcmp(srchkey, ZPOOL_CONFIG_GUID) == 0) { 2224 uint64_t srchval, theguid; 2225 2226 verify(nvpair_value_uint64(pair, &srchval) == 0); 2227 verify(nvlist_lookup_uint64(nv, ZPOOL_CONFIG_GUID, 2228 &theguid) == 0); 2229 if (theguid == srchval) 2230 return (nv); 2231 } 2232 break; 2233 2234 case DATA_TYPE_STRING: { 2235 char *srchval, *val; 2236 2237 verify(nvpair_value_string(pair, &srchval) == 0); 2238 if (nvlist_lookup_string(nv, srchkey, &val) != 0) 2239 break; 2240 2241 /* 2242 * Search for the requested value. Special cases: 2243 * 2244 * - ZPOOL_CONFIG_PATH for whole disk entries. To support 2245 * UEFI boot, these end in "s0" or "s0/old" or "s1" or 2246 * "s1/old". The "s0" or "s1" part is hidden from the user, 2247 * but included in the string, so this matches around it. 2248 * - looking for a top-level vdev name (i.e. ZPOOL_CONFIG_TYPE). 2249 * 2250 * Otherwise, all other searches are simple string compares. 2251 */ 2252 if (strcmp(srchkey, ZPOOL_CONFIG_PATH) == 0 && 2253 ctd_check_path(val)) { 2254 uint64_t wholedisk = 0; 2255 2256 (void) nvlist_lookup_uint64(nv, ZPOOL_CONFIG_WHOLE_DISK, 2257 &wholedisk); 2258 if (wholedisk) { 2259 int slen = strlen(srchval); 2260 int vlen = strlen(val); 2261 2262 if (slen != vlen - 2) 2263 break; 2264 2265 /* 2266 * make_leaf_vdev() should only set 2267 * wholedisk for ZPOOL_CONFIG_PATHs which 2268 * will include "/dev/dsk/", giving plenty of 2269 * room for the indices used next. 2270 */ 2271 ASSERT(vlen >= 6); 2272 2273 /* 2274 * strings identical except trailing "s0" 2275 */ 2276 if ((strcmp(&val[vlen - 2], "s0") == 0 || 2277 strcmp(&val[vlen - 2], "s1") == 0) && 2278 strncmp(srchval, val, slen) == 0) 2279 return (nv); 2280 2281 /* 2282 * strings identical except trailing "s0/old" 2283 */ 2284 if ((strcmp(&val[vlen - 6], "s0/old") == 0 || 2285 strcmp(&val[vlen - 6], "s1/old") == 0) && 2286 strcmp(&srchval[slen - 4], "/old") == 0 && 2287 strncmp(srchval, val, slen - 4) == 0) 2288 return (nv); 2289 2290 break; 2291 } 2292 } else if (strcmp(srchkey, ZPOOL_CONFIG_TYPE) == 0 && val) { 2293 char *type, *idx, *end, *p; 2294 uint64_t id, vdev_id; 2295 2296 /* 2297 * Determine our vdev type, keeping in mind 2298 * that the srchval is composed of a type and 2299 * vdev id pair (i.e. mirror-4). 2300 */ 2301 if ((type = strdup(srchval)) == NULL) 2302 return (NULL); 2303 2304 if ((p = strrchr(type, '-')) == NULL) { 2305 free(type); 2306 break; 2307 } 2308 idx = p + 1; 2309 *p = '\0'; 2310 2311 /* 2312 * If the types don't match then keep looking. 2313 */ 2314 if (strncmp(val, type, strlen(val)) != 0) { 2315 free(type); 2316 break; 2317 } 2318 2319 verify(zpool_vdev_is_interior(type)); 2320 verify(nvlist_lookup_uint64(nv, ZPOOL_CONFIG_ID, 2321 &id) == 0); 2322 2323 errno = 0; 2324 vdev_id = strtoull(idx, &end, 10); 2325 2326 free(type); 2327 if (errno != 0) 2328 return (NULL); 2329 2330 /* 2331 * Now verify that we have the correct vdev id. 2332 */ 2333 if (vdev_id == id) 2334 return (nv); 2335 } 2336 2337 /* 2338 * Common case 2339 */ 2340 if (strcmp(srchval, val) == 0) 2341 return (nv); 2342 break; 2343 } 2344 2345 default: 2346 break; 2347 } 2348 2349 if (nvlist_lookup_nvlist_array(nv, ZPOOL_CONFIG_CHILDREN, 2350 &child, &children) != 0) 2351 return (NULL); 2352 2353 for (c = 0; c < children; c++) { 2354 if ((ret = vdev_to_nvlist_iter(child[c], search, 2355 avail_spare, l2cache, NULL)) != NULL) { 2356 /* 2357 * The 'is_log' value is only set for the toplevel 2358 * vdev, not the leaf vdevs. So we always lookup the 2359 * log device from the root of the vdev tree (where 2360 * 'log' is non-NULL). 2361 */ 2362 if (log != NULL && 2363 nvlist_lookup_uint64(child[c], 2364 ZPOOL_CONFIG_IS_LOG, &is_log) == 0 && 2365 is_log) { 2366 *log = B_TRUE; 2367 } 2368 return (ret); 2369 } 2370 } 2371 2372 if (nvlist_lookup_nvlist_array(nv, ZPOOL_CONFIG_SPARES, 2373 &child, &children) == 0) { 2374 for (c = 0; c < children; c++) { 2375 if ((ret = vdev_to_nvlist_iter(child[c], search, 2376 avail_spare, l2cache, NULL)) != NULL) { 2377 *avail_spare = B_TRUE; 2378 return (ret); 2379 } 2380 } 2381 } 2382 2383 if (nvlist_lookup_nvlist_array(nv, ZPOOL_CONFIG_L2CACHE, 2384 &child, &children) == 0) { 2385 for (c = 0; c < children; c++) { 2386 if ((ret = vdev_to_nvlist_iter(child[c], search, 2387 avail_spare, l2cache, NULL)) != NULL) { 2388 *l2cache = B_TRUE; 2389 return (ret); 2390 } 2391 } 2392 } 2393 2394 return (NULL); 2395 } 2396 2397 /* 2398 * Given a physical path (minus the "/devices" prefix), find the 2399 * associated vdev. 2400 */ 2401 nvlist_t * 2402 zpool_find_vdev_by_physpath(zpool_handle_t *zhp, const char *ppath, 2403 boolean_t *avail_spare, boolean_t *l2cache, boolean_t *log) 2404 { 2405 nvlist_t *search, *nvroot, *ret; 2406 2407 verify(nvlist_alloc(&search, NV_UNIQUE_NAME, KM_SLEEP) == 0); 2408 verify(nvlist_add_string(search, ZPOOL_CONFIG_PHYS_PATH, ppath) == 0); 2409 2410 verify(nvlist_lookup_nvlist(zhp->zpool_config, ZPOOL_CONFIG_VDEV_TREE, 2411 &nvroot) == 0); 2412 2413 *avail_spare = B_FALSE; 2414 *l2cache = B_FALSE; 2415 if (log != NULL) 2416 *log = B_FALSE; 2417 ret = vdev_to_nvlist_iter(nvroot, search, avail_spare, l2cache, log); 2418 nvlist_free(search); 2419 2420 return (ret); 2421 } 2422 2423 /* 2424 * Determine if we have an "interior" top-level vdev (i.e mirror/raidz). 2425 */ 2426 static boolean_t 2427 zpool_vdev_is_interior(const char *name) 2428 { 2429 if (strncmp(name, VDEV_TYPE_RAIDZ, strlen(VDEV_TYPE_RAIDZ)) == 0 || 2430 strncmp(name, VDEV_TYPE_SPARE, strlen(VDEV_TYPE_SPARE)) == 0 || 2431 strncmp(name, 2432 VDEV_TYPE_REPLACING, strlen(VDEV_TYPE_REPLACING)) == 0 || 2433 strncmp(name, VDEV_TYPE_MIRROR, strlen(VDEV_TYPE_MIRROR)) == 0) 2434 return (B_TRUE); 2435 return (B_FALSE); 2436 } 2437 2438 nvlist_t * 2439 zpool_find_vdev(zpool_handle_t *zhp, const char *path, boolean_t *avail_spare, 2440 boolean_t *l2cache, boolean_t *log) 2441 { 2442 char buf[MAXPATHLEN]; 2443 char *end; 2444 nvlist_t *nvroot, *search, *ret; 2445 uint64_t guid; 2446 2447 verify(nvlist_alloc(&search, NV_UNIQUE_NAME, KM_SLEEP) == 0); 2448 2449 guid = strtoull(path, &end, 10); 2450 if (guid != 0 && *end == '\0') { 2451 verify(nvlist_add_uint64(search, ZPOOL_CONFIG_GUID, guid) == 0); 2452 } else if (zpool_vdev_is_interior(path)) { 2453 verify(nvlist_add_string(search, ZPOOL_CONFIG_TYPE, path) == 0); 2454 } else if (path[0] != '/') { 2455 (void) snprintf(buf, sizeof (buf), "%s/%s", ZFS_DISK_ROOT, 2456 path); 2457 verify(nvlist_add_string(search, ZPOOL_CONFIG_PATH, buf) == 0); 2458 } else { 2459 verify(nvlist_add_string(search, ZPOOL_CONFIG_PATH, path) == 0); 2460 } 2461 2462 verify(nvlist_lookup_nvlist(zhp->zpool_config, ZPOOL_CONFIG_VDEV_TREE, 2463 &nvroot) == 0); 2464 2465 *avail_spare = B_FALSE; 2466 *l2cache = B_FALSE; 2467 if (log != NULL) 2468 *log = B_FALSE; 2469 ret = vdev_to_nvlist_iter(nvroot, search, avail_spare, l2cache, log); 2470 nvlist_free(search); 2471 2472 return (ret); 2473 } 2474 2475 static int 2476 vdev_is_online(nvlist_t *nv) 2477 { 2478 uint64_t ival; 2479 2480 if (nvlist_lookup_uint64(nv, ZPOOL_CONFIG_OFFLINE, &ival) == 0 || 2481 nvlist_lookup_uint64(nv, ZPOOL_CONFIG_FAULTED, &ival) == 0 || 2482 nvlist_lookup_uint64(nv, ZPOOL_CONFIG_REMOVED, &ival) == 0) 2483 return (0); 2484 2485 return (1); 2486 } 2487 2488 /* 2489 * Helper function for zpool_get_physpaths(). 2490 */ 2491 static int 2492 vdev_get_one_physpath(nvlist_t *config, char *physpath, size_t physpath_size, 2493 size_t *bytes_written) 2494 { 2495 size_t bytes_left, pos, rsz; 2496 char *tmppath; 2497 const char *format; 2498 2499 if (nvlist_lookup_string(config, ZPOOL_CONFIG_PHYS_PATH, 2500 &tmppath) != 0) 2501 return (EZFS_NODEVICE); 2502 2503 pos = *bytes_written; 2504 bytes_left = physpath_size - pos; 2505 format = (pos == 0) ? "%s" : " %s"; 2506 2507 rsz = snprintf(physpath + pos, bytes_left, format, tmppath); 2508 *bytes_written += rsz; 2509 2510 if (rsz >= bytes_left) { 2511 /* if physpath was not copied properly, clear it */ 2512 if (bytes_left != 0) { 2513 physpath[pos] = 0; 2514 } 2515 return (EZFS_NOSPC); 2516 } 2517 return (0); 2518 } 2519 2520 static int 2521 vdev_get_physpaths(nvlist_t *nv, char *physpath, size_t phypath_size, 2522 size_t *rsz, boolean_t is_spare) 2523 { 2524 char *type; 2525 int ret; 2526 2527 if (nvlist_lookup_string(nv, ZPOOL_CONFIG_TYPE, &type) != 0) 2528 return (EZFS_INVALCONFIG); 2529 2530 if (strcmp(type, VDEV_TYPE_DISK) == 0) { 2531 /* 2532 * An active spare device has ZPOOL_CONFIG_IS_SPARE set. 2533 * For a spare vdev, we only want to boot from the active 2534 * spare device. 2535 */ 2536 if (is_spare) { 2537 uint64_t spare = 0; 2538 (void) nvlist_lookup_uint64(nv, ZPOOL_CONFIG_IS_SPARE, 2539 &spare); 2540 if (!spare) 2541 return (EZFS_INVALCONFIG); 2542 } 2543 2544 if (vdev_is_online(nv)) { 2545 if ((ret = vdev_get_one_physpath(nv, physpath, 2546 phypath_size, rsz)) != 0) 2547 return (ret); 2548 } 2549 } else if (strcmp(type, VDEV_TYPE_MIRROR) == 0 || 2550 strcmp(type, VDEV_TYPE_RAIDZ) == 0 || 2551 strcmp(type, VDEV_TYPE_REPLACING) == 0 || 2552 (is_spare = (strcmp(type, VDEV_TYPE_SPARE) == 0))) { 2553 nvlist_t **child; 2554 uint_t count; 2555 int i, ret; 2556 2557 if (nvlist_lookup_nvlist_array(nv, 2558 ZPOOL_CONFIG_CHILDREN, &child, &count) != 0) 2559 return (EZFS_INVALCONFIG); 2560 2561 for (i = 0; i < count; i++) { 2562 ret = vdev_get_physpaths(child[i], physpath, 2563 phypath_size, rsz, is_spare); 2564 if (ret == EZFS_NOSPC) 2565 return (ret); 2566 } 2567 } 2568 2569 return (EZFS_POOL_INVALARG); 2570 } 2571 2572 /* 2573 * Get phys_path for a root pool config. 2574 * Return 0 on success; non-zero on failure. 2575 */ 2576 static int 2577 zpool_get_config_physpath(nvlist_t *config, char *physpath, size_t phypath_size) 2578 { 2579 size_t rsz; 2580 nvlist_t *vdev_root; 2581 nvlist_t **child; 2582 uint_t count; 2583 char *type; 2584 2585 rsz = 0; 2586 2587 if (nvlist_lookup_nvlist(config, ZPOOL_CONFIG_VDEV_TREE, 2588 &vdev_root) != 0) 2589 return (EZFS_INVALCONFIG); 2590 2591 if (nvlist_lookup_string(vdev_root, ZPOOL_CONFIG_TYPE, &type) != 0 || 2592 nvlist_lookup_nvlist_array(vdev_root, ZPOOL_CONFIG_CHILDREN, 2593 &child, &count) != 0) 2594 return (EZFS_INVALCONFIG); 2595 2596 /* 2597 * root pool can only have a single top-level vdev. 2598 */ 2599 if (strcmp(type, VDEV_TYPE_ROOT) != 0 || count != 1) 2600 return (EZFS_POOL_INVALARG); 2601 2602 (void) vdev_get_physpaths(child[0], physpath, phypath_size, &rsz, 2603 B_FALSE); 2604 2605 /* No online devices */ 2606 if (rsz == 0) 2607 return (EZFS_NODEVICE); 2608 2609 return (0); 2610 } 2611 2612 /* 2613 * Get phys_path for a root pool 2614 * Return 0 on success; non-zero on failure. 2615 */ 2616 int 2617 zpool_get_physpath(zpool_handle_t *zhp, char *physpath, size_t phypath_size) 2618 { 2619 return (zpool_get_config_physpath(zhp->zpool_config, physpath, 2620 phypath_size)); 2621 } 2622 2623 /* 2624 * If the device has being dynamically expanded then we need to relabel 2625 * the disk to use the new unallocated space. 2626 */ 2627 static int 2628 zpool_relabel_disk(libzfs_handle_t *hdl, const char *name) 2629 { 2630 char path[MAXPATHLEN]; 2631 char errbuf[1024]; 2632 int fd, error; 2633 int (*_efi_use_whole_disk)(int); 2634 2635 if ((_efi_use_whole_disk = (int (*)(int))dlsym(RTLD_DEFAULT, 2636 "efi_use_whole_disk")) == NULL) 2637 return (-1); 2638 2639 (void) snprintf(path, sizeof (path), "%s/%s", ZFS_RDISK_ROOT, name); 2640 2641 if ((fd = open(path, O_RDWR | O_NDELAY)) < 0) { 2642 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, "cannot " 2643 "relabel '%s': unable to open device"), name); 2644 return (zfs_error(hdl, EZFS_OPENFAILED, errbuf)); 2645 } 2646 2647 /* 2648 * It's possible that we might encounter an error if the device 2649 * does not have any unallocated space left. If so, we simply 2650 * ignore that error and continue on. 2651 */ 2652 error = _efi_use_whole_disk(fd); 2653 (void) close(fd); 2654 if (error && error != VT_ENOSPC) { 2655 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, "cannot " 2656 "relabel '%s': unable to read disk capacity"), name); 2657 return (zfs_error(hdl, EZFS_NOCAP, errbuf)); 2658 } 2659 return (0); 2660 } 2661 2662 /* 2663 * Bring the specified vdev online. The 'flags' parameter is a set of the 2664 * ZFS_ONLINE_* flags. 2665 */ 2666 int 2667 zpool_vdev_online(zpool_handle_t *zhp, const char *path, int flags, 2668 vdev_state_t *newstate) 2669 { 2670 zfs_cmd_t zc = { 0 }; 2671 char msg[1024]; 2672 char *pathname; 2673 nvlist_t *tgt; 2674 boolean_t avail_spare, l2cache, islog; 2675 libzfs_handle_t *hdl = zhp->zpool_hdl; 2676 2677 if (flags & ZFS_ONLINE_EXPAND) { 2678 (void) snprintf(msg, sizeof (msg), 2679 dgettext(TEXT_DOMAIN, "cannot expand %s"), path); 2680 } else { 2681 (void) snprintf(msg, sizeof (msg), 2682 dgettext(TEXT_DOMAIN, "cannot online %s"), path); 2683 } 2684 2685 (void) strlcpy(zc.zc_name, zhp->zpool_name, sizeof (zc.zc_name)); 2686 if ((tgt = zpool_find_vdev(zhp, path, &avail_spare, &l2cache, 2687 &islog)) == NULL) 2688 return (zfs_error(hdl, EZFS_NODEVICE, msg)); 2689 2690 verify(nvlist_lookup_uint64(tgt, ZPOOL_CONFIG_GUID, &zc.zc_guid) == 0); 2691 2692 if (avail_spare) 2693 return (zfs_error(hdl, EZFS_ISSPARE, msg)); 2694 2695 if ((flags & ZFS_ONLINE_EXPAND || 2696 zpool_get_prop_int(zhp, ZPOOL_PROP_AUTOEXPAND, NULL)) && 2697 nvlist_lookup_string(tgt, ZPOOL_CONFIG_PATH, &pathname) == 0) { 2698 uint64_t wholedisk = 0; 2699 2700 (void) nvlist_lookup_uint64(tgt, ZPOOL_CONFIG_WHOLE_DISK, 2701 &wholedisk); 2702 2703 /* 2704 * XXX - L2ARC 1.0 devices can't support expansion. 2705 */ 2706 if (l2cache) { 2707 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 2708 "cannot expand cache devices")); 2709 return (zfs_error(hdl, EZFS_VDEVNOTSUP, msg)); 2710 } 2711 2712 if (wholedisk) { 2713 pathname += strlen(ZFS_DISK_ROOT) + 1; 2714 (void) zpool_relabel_disk(hdl, pathname); 2715 } 2716 } 2717 2718 zc.zc_cookie = VDEV_STATE_ONLINE; 2719 zc.zc_obj = flags; 2720 2721 if (zfs_ioctl(hdl, ZFS_IOC_VDEV_SET_STATE, &zc) != 0) { 2722 if (errno == EINVAL) { 2723 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, "was split " 2724 "from this pool into a new one. Use '%s' " 2725 "instead"), "zpool detach"); 2726 return (zfs_error(hdl, EZFS_POSTSPLIT_ONLINE, msg)); 2727 } 2728 return (zpool_standard_error(hdl, errno, msg)); 2729 } 2730 2731 *newstate = zc.zc_cookie; 2732 return (0); 2733 } 2734 2735 /* 2736 * Take the specified vdev offline 2737 */ 2738 int 2739 zpool_vdev_offline(zpool_handle_t *zhp, const char *path, boolean_t istmp) 2740 { 2741 zfs_cmd_t zc = { 0 }; 2742 char msg[1024]; 2743 nvlist_t *tgt; 2744 boolean_t avail_spare, l2cache; 2745 libzfs_handle_t *hdl = zhp->zpool_hdl; 2746 2747 (void) snprintf(msg, sizeof (msg), 2748 dgettext(TEXT_DOMAIN, "cannot offline %s"), path); 2749 2750 (void) strlcpy(zc.zc_name, zhp->zpool_name, sizeof (zc.zc_name)); 2751 if ((tgt = zpool_find_vdev(zhp, path, &avail_spare, &l2cache, 2752 NULL)) == NULL) 2753 return (zfs_error(hdl, EZFS_NODEVICE, msg)); 2754 2755 verify(nvlist_lookup_uint64(tgt, ZPOOL_CONFIG_GUID, &zc.zc_guid) == 0); 2756 2757 if (avail_spare) 2758 return (zfs_error(hdl, EZFS_ISSPARE, msg)); 2759 2760 zc.zc_cookie = VDEV_STATE_OFFLINE; 2761 zc.zc_obj = istmp ? ZFS_OFFLINE_TEMPORARY : 0; 2762 2763 if (zfs_ioctl(hdl, ZFS_IOC_VDEV_SET_STATE, &zc) == 0) 2764 return (0); 2765 2766 switch (errno) { 2767 case EBUSY: 2768 2769 /* 2770 * There are no other replicas of this device. 2771 */ 2772 return (zfs_error(hdl, EZFS_NOREPLICAS, msg)); 2773 2774 case EEXIST: 2775 /* 2776 * The log device has unplayed logs 2777 */ 2778 return (zfs_error(hdl, EZFS_UNPLAYED_LOGS, msg)); 2779 2780 default: 2781 return (zpool_standard_error(hdl, errno, msg)); 2782 } 2783 } 2784 2785 /* 2786 * Mark the given vdev faulted. 2787 */ 2788 int 2789 zpool_vdev_fault(zpool_handle_t *zhp, uint64_t guid, vdev_aux_t aux) 2790 { 2791 zfs_cmd_t zc = { 0 }; 2792 char msg[1024]; 2793 libzfs_handle_t *hdl = zhp->zpool_hdl; 2794 2795 (void) snprintf(msg, sizeof (msg), 2796 dgettext(TEXT_DOMAIN, "cannot fault %llu"), guid); 2797 2798 (void) strlcpy(zc.zc_name, zhp->zpool_name, sizeof (zc.zc_name)); 2799 zc.zc_guid = guid; 2800 zc.zc_cookie = VDEV_STATE_FAULTED; 2801 zc.zc_obj = aux; 2802 2803 if (ioctl(hdl->libzfs_fd, ZFS_IOC_VDEV_SET_STATE, &zc) == 0) 2804 return (0); 2805 2806 switch (errno) { 2807 case EBUSY: 2808 2809 /* 2810 * There are no other replicas of this device. 2811 */ 2812 return (zfs_error(hdl, EZFS_NOREPLICAS, msg)); 2813 2814 default: 2815 return (zpool_standard_error(hdl, errno, msg)); 2816 } 2817 2818 } 2819 2820 /* 2821 * Mark the given vdev degraded. 2822 */ 2823 int 2824 zpool_vdev_degrade(zpool_handle_t *zhp, uint64_t guid, vdev_aux_t aux) 2825 { 2826 zfs_cmd_t zc = { 0 }; 2827 char msg[1024]; 2828 libzfs_handle_t *hdl = zhp->zpool_hdl; 2829 2830 (void) snprintf(msg, sizeof (msg), 2831 dgettext(TEXT_DOMAIN, "cannot degrade %llu"), guid); 2832 2833 (void) strlcpy(zc.zc_name, zhp->zpool_name, sizeof (zc.zc_name)); 2834 zc.zc_guid = guid; 2835 zc.zc_cookie = VDEV_STATE_DEGRADED; 2836 zc.zc_obj = aux; 2837 2838 if (ioctl(hdl->libzfs_fd, ZFS_IOC_VDEV_SET_STATE, &zc) == 0) 2839 return (0); 2840 2841 return (zpool_standard_error(hdl, errno, msg)); 2842 } 2843 2844 /* 2845 * Returns TRUE if the given nvlist is a vdev that was originally swapped in as 2846 * a hot spare. 2847 */ 2848 static boolean_t 2849 is_replacing_spare(nvlist_t *search, nvlist_t *tgt, int which) 2850 { 2851 nvlist_t **child; 2852 uint_t c, children; 2853 char *type; 2854 2855 if (nvlist_lookup_nvlist_array(search, ZPOOL_CONFIG_CHILDREN, &child, 2856 &children) == 0) { 2857 verify(nvlist_lookup_string(search, ZPOOL_CONFIG_TYPE, 2858 &type) == 0); 2859 2860 if (strcmp(type, VDEV_TYPE_SPARE) == 0 && 2861 children == 2 && child[which] == tgt) 2862 return (B_TRUE); 2863 2864 for (c = 0; c < children; c++) 2865 if (is_replacing_spare(child[c], tgt, which)) 2866 return (B_TRUE); 2867 } 2868 2869 return (B_FALSE); 2870 } 2871 2872 /* 2873 * Attach new_disk (fully described by nvroot) to old_disk. 2874 * If 'replacing' is specified, the new disk will replace the old one. 2875 */ 2876 int 2877 zpool_vdev_attach(zpool_handle_t *zhp, 2878 const char *old_disk, const char *new_disk, nvlist_t *nvroot, int replacing) 2879 { 2880 zfs_cmd_t zc = { 0 }; 2881 char msg[1024]; 2882 int ret; 2883 nvlist_t *tgt; 2884 boolean_t avail_spare, l2cache, islog; 2885 uint64_t val; 2886 char *newname; 2887 nvlist_t **child; 2888 uint_t children; 2889 nvlist_t *config_root; 2890 libzfs_handle_t *hdl = zhp->zpool_hdl; 2891 boolean_t rootpool = zpool_is_bootable(zhp); 2892 2893 if (replacing) 2894 (void) snprintf(msg, sizeof (msg), dgettext(TEXT_DOMAIN, 2895 "cannot replace %s with %s"), old_disk, new_disk); 2896 else 2897 (void) snprintf(msg, sizeof (msg), dgettext(TEXT_DOMAIN, 2898 "cannot attach %s to %s"), new_disk, old_disk); 2899 2900 (void) strlcpy(zc.zc_name, zhp->zpool_name, sizeof (zc.zc_name)); 2901 if ((tgt = zpool_find_vdev(zhp, old_disk, &avail_spare, &l2cache, 2902 &islog)) == NULL) 2903 return (zfs_error(hdl, EZFS_NODEVICE, msg)); 2904 2905 if (avail_spare) 2906 return (zfs_error(hdl, EZFS_ISSPARE, msg)); 2907 2908 if (l2cache) 2909 return (zfs_error(hdl, EZFS_ISL2CACHE, msg)); 2910 2911 verify(nvlist_lookup_uint64(tgt, ZPOOL_CONFIG_GUID, &zc.zc_guid) == 0); 2912 zc.zc_cookie = replacing; 2913 2914 if (nvlist_lookup_nvlist_array(nvroot, ZPOOL_CONFIG_CHILDREN, 2915 &child, &children) != 0 || children != 1) { 2916 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 2917 "new device must be a single disk")); 2918 return (zfs_error(hdl, EZFS_INVALCONFIG, msg)); 2919 } 2920 2921 verify(nvlist_lookup_nvlist(zpool_get_config(zhp, NULL), 2922 ZPOOL_CONFIG_VDEV_TREE, &config_root) == 0); 2923 2924 if ((newname = zpool_vdev_name(NULL, NULL, child[0], 0)) == NULL) 2925 return (-1); 2926 2927 /* 2928 * If the target is a hot spare that has been swapped in, we can only 2929 * replace it with another hot spare. 2930 */ 2931 if (replacing && 2932 nvlist_lookup_uint64(tgt, ZPOOL_CONFIG_IS_SPARE, &val) == 0 && 2933 (zpool_find_vdev(zhp, newname, &avail_spare, &l2cache, 2934 NULL) == NULL || !avail_spare) && 2935 is_replacing_spare(config_root, tgt, 1)) { 2936 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 2937 "can only be replaced by another hot spare")); 2938 free(newname); 2939 return (zfs_error(hdl, EZFS_BADTARGET, msg)); 2940 } 2941 2942 free(newname); 2943 2944 if (zcmd_write_conf_nvlist(hdl, &zc, nvroot) != 0) 2945 return (-1); 2946 2947 ret = zfs_ioctl(hdl, ZFS_IOC_VDEV_ATTACH, &zc); 2948 2949 zcmd_free_nvlists(&zc); 2950 2951 if (ret == 0) { 2952 if (rootpool) { 2953 /* 2954 * XXX need a better way to prevent user from 2955 * booting up a half-baked vdev. 2956 */ 2957 (void) fprintf(stderr, dgettext(TEXT_DOMAIN, "Make " 2958 "sure to wait until resilver is done " 2959 "before rebooting.\n")); 2960 } 2961 return (0); 2962 } 2963 2964 switch (errno) { 2965 case ENOTSUP: 2966 /* 2967 * Can't attach to or replace this type of vdev. 2968 */ 2969 if (replacing) { 2970 uint64_t version = zpool_get_prop_int(zhp, 2971 ZPOOL_PROP_VERSION, NULL); 2972 2973 if (islog) 2974 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 2975 "cannot replace a log with a spare")); 2976 else if (version >= SPA_VERSION_MULTI_REPLACE) 2977 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 2978 "already in replacing/spare config; wait " 2979 "for completion or use 'zpool detach'")); 2980 else 2981 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 2982 "cannot replace a replacing device")); 2983 } else { 2984 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 2985 "can only attach to mirrors and top-level " 2986 "disks")); 2987 } 2988 (void) zfs_error(hdl, EZFS_BADTARGET, msg); 2989 break; 2990 2991 case EINVAL: 2992 /* 2993 * The new device must be a single disk. 2994 */ 2995 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 2996 "new device must be a single disk")); 2997 (void) zfs_error(hdl, EZFS_INVALCONFIG, msg); 2998 break; 2999 3000 case EBUSY: 3001 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, "%s is busy, " 3002 "or device removal is in progress"), 3003 new_disk); 3004 (void) zfs_error(hdl, EZFS_BADDEV, msg); 3005 break; 3006 3007 case EOVERFLOW: 3008 /* 3009 * The new device is too small. 3010 */ 3011 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 3012 "device is too small")); 3013 (void) zfs_error(hdl, EZFS_BADDEV, msg); 3014 break; 3015 3016 case EDOM: 3017 /* 3018 * The new device has a different alignment requirement. 3019 */ 3020 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 3021 "devices have different sector alignment")); 3022 (void) zfs_error(hdl, EZFS_BADDEV, msg); 3023 break; 3024 3025 case ENAMETOOLONG: 3026 /* 3027 * The resulting top-level vdev spec won't fit in the label. 3028 */ 3029 (void) zfs_error(hdl, EZFS_DEVOVERFLOW, msg); 3030 break; 3031 3032 default: 3033 (void) zpool_standard_error(hdl, errno, msg); 3034 } 3035 3036 return (-1); 3037 } 3038 3039 /* 3040 * Detach the specified device. 3041 */ 3042 int 3043 zpool_vdev_detach(zpool_handle_t *zhp, const char *path) 3044 { 3045 zfs_cmd_t zc = { 0 }; 3046 char msg[1024]; 3047 nvlist_t *tgt; 3048 boolean_t avail_spare, l2cache; 3049 libzfs_handle_t *hdl = zhp->zpool_hdl; 3050 3051 (void) snprintf(msg, sizeof (msg), 3052 dgettext(TEXT_DOMAIN, "cannot detach %s"), path); 3053 3054 (void) strlcpy(zc.zc_name, zhp->zpool_name, sizeof (zc.zc_name)); 3055 if ((tgt = zpool_find_vdev(zhp, path, &avail_spare, &l2cache, 3056 NULL)) == NULL) 3057 return (zfs_error(hdl, EZFS_NODEVICE, msg)); 3058 3059 if (avail_spare) 3060 return (zfs_error(hdl, EZFS_ISSPARE, msg)); 3061 3062 if (l2cache) 3063 return (zfs_error(hdl, EZFS_ISL2CACHE, msg)); 3064 3065 verify(nvlist_lookup_uint64(tgt, ZPOOL_CONFIG_GUID, &zc.zc_guid) == 0); 3066 3067 if (zfs_ioctl(hdl, ZFS_IOC_VDEV_DETACH, &zc) == 0) 3068 return (0); 3069 3070 switch (errno) { 3071 3072 case ENOTSUP: 3073 /* 3074 * Can't detach from this type of vdev. 3075 */ 3076 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, "only " 3077 "applicable to mirror and replacing vdevs")); 3078 (void) zfs_error(hdl, EZFS_BADTARGET, msg); 3079 break; 3080 3081 case EBUSY: 3082 /* 3083 * There are no other replicas of this device. 3084 */ 3085 (void) zfs_error(hdl, EZFS_NOREPLICAS, msg); 3086 break; 3087 3088 default: 3089 (void) zpool_standard_error(hdl, errno, msg); 3090 } 3091 3092 return (-1); 3093 } 3094 3095 /* 3096 * Find a mirror vdev in the source nvlist. 3097 * 3098 * The mchild array contains a list of disks in one of the top-level mirrors 3099 * of the source pool. The schild array contains a list of disks that the 3100 * user specified on the command line. We loop over the mchild array to 3101 * see if any entry in the schild array matches. 3102 * 3103 * If a disk in the mchild array is found in the schild array, we return 3104 * the index of that entry. Otherwise we return -1. 3105 */ 3106 static int 3107 find_vdev_entry(zpool_handle_t *zhp, nvlist_t **mchild, uint_t mchildren, 3108 nvlist_t **schild, uint_t schildren) 3109 { 3110 uint_t mc; 3111 3112 for (mc = 0; mc < mchildren; mc++) { 3113 uint_t sc; 3114 char *mpath = zpool_vdev_name(zhp->zpool_hdl, zhp, 3115 mchild[mc], 0); 3116 3117 for (sc = 0; sc < schildren; sc++) { 3118 char *spath = zpool_vdev_name(zhp->zpool_hdl, zhp, 3119 schild[sc], 0); 3120 boolean_t result = (strcmp(mpath, spath) == 0); 3121 3122 free(spath); 3123 if (result) { 3124 free(mpath); 3125 return (mc); 3126 } 3127 } 3128 3129 free(mpath); 3130 } 3131 3132 return (-1); 3133 } 3134 3135 /* 3136 * Split a mirror pool. If newroot points to null, then a new nvlist 3137 * is generated and it is the responsibility of the caller to free it. 3138 */ 3139 int 3140 zpool_vdev_split(zpool_handle_t *zhp, char *newname, nvlist_t **newroot, 3141 nvlist_t *props, splitflags_t flags) 3142 { 3143 zfs_cmd_t zc = { 0 }; 3144 char msg[1024]; 3145 nvlist_t *tree, *config, **child, **newchild, *newconfig = NULL; 3146 nvlist_t **varray = NULL, *zc_props = NULL; 3147 uint_t c, children, newchildren, lastlog = 0, vcount, found = 0; 3148 libzfs_handle_t *hdl = zhp->zpool_hdl; 3149 uint64_t vers; 3150 boolean_t freelist = B_FALSE, memory_err = B_TRUE; 3151 int retval = 0; 3152 3153 (void) snprintf(msg, sizeof (msg), 3154 dgettext(TEXT_DOMAIN, "Unable to split %s"), zhp->zpool_name); 3155 3156 if (!zpool_name_valid(hdl, B_FALSE, newname)) 3157 return (zfs_error(hdl, EZFS_INVALIDNAME, msg)); 3158 3159 if ((config = zpool_get_config(zhp, NULL)) == NULL) { 3160 (void) fprintf(stderr, gettext("Internal error: unable to " 3161 "retrieve pool configuration\n")); 3162 return (-1); 3163 } 3164 3165 verify(nvlist_lookup_nvlist(config, ZPOOL_CONFIG_VDEV_TREE, &tree) 3166 == 0); 3167 verify(nvlist_lookup_uint64(config, ZPOOL_CONFIG_VERSION, &vers) == 0); 3168 3169 if (props) { 3170 prop_flags_t flags = { .create = B_FALSE, .import = B_TRUE }; 3171 if ((zc_props = zpool_valid_proplist(hdl, zhp->zpool_name, 3172 props, vers, flags, msg)) == NULL) 3173 return (-1); 3174 } 3175 3176 if (nvlist_lookup_nvlist_array(tree, ZPOOL_CONFIG_CHILDREN, &child, 3177 &children) != 0) { 3178 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 3179 "Source pool is missing vdev tree")); 3180 nvlist_free(zc_props); 3181 return (-1); 3182 } 3183 3184 varray = zfs_alloc(hdl, children * sizeof (nvlist_t *)); 3185 vcount = 0; 3186 3187 if (*newroot == NULL || 3188 nvlist_lookup_nvlist_array(*newroot, ZPOOL_CONFIG_CHILDREN, 3189 &newchild, &newchildren) != 0) 3190 newchildren = 0; 3191 3192 for (c = 0; c < children; c++) { 3193 uint64_t is_log = B_FALSE, is_hole = B_FALSE; 3194 char *type; 3195 nvlist_t **mchild, *vdev; 3196 uint_t mchildren; 3197 int entry; 3198 3199 /* 3200 * Unlike cache & spares, slogs are stored in the 3201 * ZPOOL_CONFIG_CHILDREN array. We filter them out here. 3202 */ 3203 (void) nvlist_lookup_uint64(child[c], ZPOOL_CONFIG_IS_LOG, 3204 &is_log); 3205 (void) nvlist_lookup_uint64(child[c], ZPOOL_CONFIG_IS_HOLE, 3206 &is_hole); 3207 if (is_log || is_hole) { 3208 /* 3209 * Create a hole vdev and put it in the config. 3210 */ 3211 if (nvlist_alloc(&vdev, NV_UNIQUE_NAME, 0) != 0) 3212 goto out; 3213 if (nvlist_add_string(vdev, ZPOOL_CONFIG_TYPE, 3214 VDEV_TYPE_HOLE) != 0) 3215 goto out; 3216 if (nvlist_add_uint64(vdev, ZPOOL_CONFIG_IS_HOLE, 3217 1) != 0) 3218 goto out; 3219 if (lastlog == 0) 3220 lastlog = vcount; 3221 varray[vcount++] = vdev; 3222 continue; 3223 } 3224 lastlog = 0; 3225 verify(nvlist_lookup_string(child[c], ZPOOL_CONFIG_TYPE, &type) 3226 == 0); 3227 if (strcmp(type, VDEV_TYPE_MIRROR) != 0) { 3228 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 3229 "Source pool must be composed only of mirrors\n")); 3230 retval = zfs_error(hdl, EZFS_INVALCONFIG, msg); 3231 goto out; 3232 } 3233 3234 verify(nvlist_lookup_nvlist_array(child[c], 3235 ZPOOL_CONFIG_CHILDREN, &mchild, &mchildren) == 0); 3236 3237 /* find or add an entry for this top-level vdev */ 3238 if (newchildren > 0 && 3239 (entry = find_vdev_entry(zhp, mchild, mchildren, 3240 newchild, newchildren)) >= 0) { 3241 /* We found a disk that the user specified. */ 3242 vdev = mchild[entry]; 3243 ++found; 3244 } else { 3245 /* User didn't specify a disk for this vdev. */ 3246 vdev = mchild[mchildren - 1]; 3247 } 3248 3249 if (nvlist_dup(vdev, &varray[vcount++], 0) != 0) 3250 goto out; 3251 } 3252 3253 /* did we find every disk the user specified? */ 3254 if (found != newchildren) { 3255 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, "Device list must " 3256 "include at most one disk from each mirror")); 3257 retval = zfs_error(hdl, EZFS_INVALCONFIG, msg); 3258 goto out; 3259 } 3260 3261 /* Prepare the nvlist for populating. */ 3262 if (*newroot == NULL) { 3263 if (nvlist_alloc(newroot, NV_UNIQUE_NAME, 0) != 0) 3264 goto out; 3265 freelist = B_TRUE; 3266 if (nvlist_add_string(*newroot, ZPOOL_CONFIG_TYPE, 3267 VDEV_TYPE_ROOT) != 0) 3268 goto out; 3269 } else { 3270 verify(nvlist_remove_all(*newroot, ZPOOL_CONFIG_CHILDREN) == 0); 3271 } 3272 3273 /* Add all the children we found */ 3274 if (nvlist_add_nvlist_array(*newroot, ZPOOL_CONFIG_CHILDREN, varray, 3275 lastlog == 0 ? vcount : lastlog) != 0) 3276 goto out; 3277 3278 /* 3279 * If we're just doing a dry run, exit now with success. 3280 */ 3281 if (flags.dryrun) { 3282 memory_err = B_FALSE; 3283 freelist = B_FALSE; 3284 goto out; 3285 } 3286 3287 /* now build up the config list & call the ioctl */ 3288 if (nvlist_alloc(&newconfig, NV_UNIQUE_NAME, 0) != 0) 3289 goto out; 3290 3291 if (nvlist_add_nvlist(newconfig, 3292 ZPOOL_CONFIG_VDEV_TREE, *newroot) != 0 || 3293 nvlist_add_string(newconfig, 3294 ZPOOL_CONFIG_POOL_NAME, newname) != 0 || 3295 nvlist_add_uint64(newconfig, ZPOOL_CONFIG_VERSION, vers) != 0) 3296 goto out; 3297 3298 /* 3299 * The new pool is automatically part of the namespace unless we 3300 * explicitly export it. 3301 */ 3302 if (!flags.import) 3303 zc.zc_cookie = ZPOOL_EXPORT_AFTER_SPLIT; 3304 (void) strlcpy(zc.zc_name, zhp->zpool_name, sizeof (zc.zc_name)); 3305 (void) strlcpy(zc.zc_string, newname, sizeof (zc.zc_string)); 3306 if (zcmd_write_conf_nvlist(hdl, &zc, newconfig) != 0) 3307 goto out; 3308 if (zc_props != NULL && zcmd_write_src_nvlist(hdl, &zc, zc_props) != 0) 3309 goto out; 3310 3311 if (zfs_ioctl(hdl, ZFS_IOC_VDEV_SPLIT, &zc) != 0) { 3312 retval = zpool_standard_error(hdl, errno, msg); 3313 goto out; 3314 } 3315 3316 freelist = B_FALSE; 3317 memory_err = B_FALSE; 3318 3319 out: 3320 if (varray != NULL) { 3321 int v; 3322 3323 for (v = 0; v < vcount; v++) 3324 nvlist_free(varray[v]); 3325 free(varray); 3326 } 3327 zcmd_free_nvlists(&zc); 3328 nvlist_free(zc_props); 3329 nvlist_free(newconfig); 3330 if (freelist) { 3331 nvlist_free(*newroot); 3332 *newroot = NULL; 3333 } 3334 3335 if (retval != 0) 3336 return (retval); 3337 3338 if (memory_err) 3339 return (no_memory(hdl)); 3340 3341 return (0); 3342 } 3343 3344 /* 3345 * Remove the given device. 3346 */ 3347 int 3348 zpool_vdev_remove(zpool_handle_t *zhp, const char *path) 3349 { 3350 zfs_cmd_t zc = { 0 }; 3351 char msg[1024]; 3352 nvlist_t *tgt; 3353 boolean_t avail_spare, l2cache, islog; 3354 libzfs_handle_t *hdl = zhp->zpool_hdl; 3355 uint64_t version; 3356 3357 (void) snprintf(msg, sizeof (msg), 3358 dgettext(TEXT_DOMAIN, "cannot remove %s"), path); 3359 3360 (void) strlcpy(zc.zc_name, zhp->zpool_name, sizeof (zc.zc_name)); 3361 if ((tgt = zpool_find_vdev(zhp, path, &avail_spare, &l2cache, 3362 &islog)) == NULL) 3363 return (zfs_error(hdl, EZFS_NODEVICE, msg)); 3364 3365 version = zpool_get_prop_int(zhp, ZPOOL_PROP_VERSION, NULL); 3366 if (islog && version < SPA_VERSION_HOLES) { 3367 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 3368 "pool must be upgraded to support log removal")); 3369 return (zfs_error(hdl, EZFS_BADVERSION, msg)); 3370 } 3371 3372 if (!islog && !avail_spare && !l2cache && zpool_is_bootable(zhp)) { 3373 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 3374 "root pool can not have removed devices, " 3375 "because GRUB does not understand them")); 3376 return (zfs_error(hdl, EINVAL, msg)); 3377 } 3378 3379 zc.zc_guid = fnvlist_lookup_uint64(tgt, ZPOOL_CONFIG_GUID); 3380 3381 if (zfs_ioctl(hdl, ZFS_IOC_VDEV_REMOVE, &zc) == 0) 3382 return (0); 3383 3384 switch (errno) { 3385 3386 case EINVAL: 3387 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 3388 "invalid config; all top-level vdevs must " 3389 "have the same sector size and not be raidz.")); 3390 (void) zfs_error(hdl, EZFS_INVALCONFIG, msg); 3391 break; 3392 3393 case EBUSY: 3394 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 3395 "Pool busy; removal may already be in progress")); 3396 (void) zfs_error(hdl, EZFS_BUSY, msg); 3397 break; 3398 3399 default: 3400 (void) zpool_standard_error(hdl, errno, msg); 3401 } 3402 return (-1); 3403 } 3404 3405 int 3406 zpool_vdev_remove_cancel(zpool_handle_t *zhp) 3407 { 3408 zfs_cmd_t zc = { 0 }; 3409 char msg[1024]; 3410 libzfs_handle_t *hdl = zhp->zpool_hdl; 3411 3412 (void) snprintf(msg, sizeof (msg), 3413 dgettext(TEXT_DOMAIN, "cannot cancel removal")); 3414 3415 (void) strlcpy(zc.zc_name, zhp->zpool_name, sizeof (zc.zc_name)); 3416 zc.zc_cookie = 1; 3417 3418 if (zfs_ioctl(hdl, ZFS_IOC_VDEV_REMOVE, &zc) == 0) 3419 return (0); 3420 3421 return (zpool_standard_error(hdl, errno, msg)); 3422 } 3423 3424 int 3425 zpool_vdev_indirect_size(zpool_handle_t *zhp, const char *path, 3426 uint64_t *sizep) 3427 { 3428 char msg[1024]; 3429 nvlist_t *tgt; 3430 boolean_t avail_spare, l2cache, islog; 3431 libzfs_handle_t *hdl = zhp->zpool_hdl; 3432 3433 (void) snprintf(msg, sizeof (msg), 3434 dgettext(TEXT_DOMAIN, "cannot determine indirect size of %s"), 3435 path); 3436 3437 if ((tgt = zpool_find_vdev(zhp, path, &avail_spare, &l2cache, 3438 &islog)) == NULL) 3439 return (zfs_error(hdl, EZFS_NODEVICE, msg)); 3440 3441 if (avail_spare || l2cache || islog) { 3442 *sizep = 0; 3443 return (0); 3444 } 3445 3446 if (nvlist_lookup_uint64(tgt, ZPOOL_CONFIG_INDIRECT_SIZE, sizep) != 0) { 3447 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 3448 "indirect size not available")); 3449 return (zfs_error(hdl, EINVAL, msg)); 3450 } 3451 return (0); 3452 } 3453 3454 /* 3455 * Clear the errors for the pool, or the particular device if specified. 3456 */ 3457 int 3458 zpool_clear(zpool_handle_t *zhp, const char *path, nvlist_t *rewindnvl) 3459 { 3460 zfs_cmd_t zc = { 0 }; 3461 char msg[1024]; 3462 nvlist_t *tgt; 3463 zpool_load_policy_t policy; 3464 boolean_t avail_spare, l2cache; 3465 libzfs_handle_t *hdl = zhp->zpool_hdl; 3466 nvlist_t *nvi = NULL; 3467 int error; 3468 3469 if (path) 3470 (void) snprintf(msg, sizeof (msg), 3471 dgettext(TEXT_DOMAIN, "cannot clear errors for %s"), 3472 path); 3473 else 3474 (void) snprintf(msg, sizeof (msg), 3475 dgettext(TEXT_DOMAIN, "cannot clear errors for %s"), 3476 zhp->zpool_name); 3477 3478 (void) strlcpy(zc.zc_name, zhp->zpool_name, sizeof (zc.zc_name)); 3479 if (path) { 3480 if ((tgt = zpool_find_vdev(zhp, path, &avail_spare, 3481 &l2cache, NULL)) == NULL) 3482 return (zfs_error(hdl, EZFS_NODEVICE, msg)); 3483 3484 /* 3485 * Don't allow error clearing for hot spares. Do allow 3486 * error clearing for l2cache devices. 3487 */ 3488 if (avail_spare) 3489 return (zfs_error(hdl, EZFS_ISSPARE, msg)); 3490 3491 verify(nvlist_lookup_uint64(tgt, ZPOOL_CONFIG_GUID, 3492 &zc.zc_guid) == 0); 3493 } 3494 3495 zpool_get_load_policy(rewindnvl, &policy); 3496 zc.zc_cookie = policy.zlp_rewind; 3497 3498 if (zcmd_alloc_dst_nvlist(hdl, &zc, zhp->zpool_config_size * 2) != 0) 3499 return (-1); 3500 3501 if (zcmd_write_src_nvlist(hdl, &zc, rewindnvl) != 0) 3502 return (-1); 3503 3504 while ((error = zfs_ioctl(hdl, ZFS_IOC_CLEAR, &zc)) != 0 && 3505 errno == ENOMEM) { 3506 if (zcmd_expand_dst_nvlist(hdl, &zc) != 0) { 3507 zcmd_free_nvlists(&zc); 3508 return (-1); 3509 } 3510 } 3511 3512 if (!error || ((policy.zlp_rewind & ZPOOL_TRY_REWIND) && 3513 errno != EPERM && errno != EACCES)) { 3514 if (policy.zlp_rewind & 3515 (ZPOOL_DO_REWIND | ZPOOL_TRY_REWIND)) { 3516 (void) zcmd_read_dst_nvlist(hdl, &zc, &nvi); 3517 zpool_rewind_exclaim(hdl, zc.zc_name, 3518 ((policy.zlp_rewind & ZPOOL_TRY_REWIND) != 0), 3519 nvi); 3520 nvlist_free(nvi); 3521 } 3522 zcmd_free_nvlists(&zc); 3523 return (0); 3524 } 3525 3526 zcmd_free_nvlists(&zc); 3527 return (zpool_standard_error(hdl, errno, msg)); 3528 } 3529 3530 /* 3531 * Similar to zpool_clear(), but takes a GUID (used by fmd). 3532 */ 3533 int 3534 zpool_vdev_clear(zpool_handle_t *zhp, uint64_t guid) 3535 { 3536 zfs_cmd_t zc = { 0 }; 3537 char msg[1024]; 3538 libzfs_handle_t *hdl = zhp->zpool_hdl; 3539 3540 (void) snprintf(msg, sizeof (msg), 3541 dgettext(TEXT_DOMAIN, "cannot clear errors for %llx"), 3542 guid); 3543 3544 (void) strlcpy(zc.zc_name, zhp->zpool_name, sizeof (zc.zc_name)); 3545 zc.zc_guid = guid; 3546 zc.zc_cookie = ZPOOL_NO_REWIND; 3547 3548 if (ioctl(hdl->libzfs_fd, ZFS_IOC_CLEAR, &zc) == 0) 3549 return (0); 3550 3551 return (zpool_standard_error(hdl, errno, msg)); 3552 } 3553 3554 /* 3555 * Change the GUID for a pool. 3556 */ 3557 int 3558 zpool_reguid(zpool_handle_t *zhp) 3559 { 3560 char msg[1024]; 3561 libzfs_handle_t *hdl = zhp->zpool_hdl; 3562 zfs_cmd_t zc = { 0 }; 3563 3564 (void) snprintf(msg, sizeof (msg), 3565 dgettext(TEXT_DOMAIN, "cannot reguid '%s'"), zhp->zpool_name); 3566 3567 (void) strlcpy(zc.zc_name, zhp->zpool_name, sizeof (zc.zc_name)); 3568 if (zfs_ioctl(hdl, ZFS_IOC_POOL_REGUID, &zc) == 0) 3569 return (0); 3570 3571 return (zpool_standard_error(hdl, errno, msg)); 3572 } 3573 3574 /* 3575 * Reopen the pool. 3576 */ 3577 int 3578 zpool_reopen(zpool_handle_t *zhp) 3579 { 3580 zfs_cmd_t zc = { 0 }; 3581 char msg[1024]; 3582 libzfs_handle_t *hdl = zhp->zpool_hdl; 3583 3584 (void) snprintf(msg, sizeof (msg), 3585 dgettext(TEXT_DOMAIN, "cannot reopen '%s'"), 3586 zhp->zpool_name); 3587 3588 (void) strlcpy(zc.zc_name, zhp->zpool_name, sizeof (zc.zc_name)); 3589 if (zfs_ioctl(hdl, ZFS_IOC_POOL_REOPEN, &zc) == 0) 3590 return (0); 3591 return (zpool_standard_error(hdl, errno, msg)); 3592 } 3593 3594 /* call into libzfs_core to execute the sync IOCTL per pool */ 3595 int 3596 zpool_sync_one(zpool_handle_t *zhp, void *data) 3597 { 3598 int ret; 3599 libzfs_handle_t *hdl = zpool_get_handle(zhp); 3600 const char *pool_name = zpool_get_name(zhp); 3601 boolean_t *force = data; 3602 nvlist_t *innvl = fnvlist_alloc(); 3603 3604 fnvlist_add_boolean_value(innvl, "force", *force); 3605 if ((ret = lzc_sync(pool_name, innvl, NULL)) != 0) { 3606 nvlist_free(innvl); 3607 return (zpool_standard_error_fmt(hdl, ret, 3608 dgettext(TEXT_DOMAIN, "sync '%s' failed"), pool_name)); 3609 } 3610 nvlist_free(innvl); 3611 3612 return (0); 3613 } 3614 3615 /* 3616 * Convert from a devid string to a path. 3617 */ 3618 static char * 3619 devid_to_path(char *devid_str) 3620 { 3621 ddi_devid_t devid; 3622 char *minor; 3623 char *path; 3624 devid_nmlist_t *list = NULL; 3625 int ret; 3626 3627 if (devid_str_decode(devid_str, &devid, &minor) != 0) 3628 return (NULL); 3629 3630 ret = devid_deviceid_to_nmlist("/dev", devid, minor, &list); 3631 3632 devid_str_free(minor); 3633 devid_free(devid); 3634 3635 if (ret != 0) 3636 return (NULL); 3637 3638 /* 3639 * In a case the strdup() fails, we will just return NULL below. 3640 */ 3641 path = strdup(list[0].devname); 3642 3643 devid_free_nmlist(list); 3644 3645 return (path); 3646 } 3647 3648 /* 3649 * Convert from a path to a devid string. 3650 */ 3651 static char * 3652 path_to_devid(const char *path) 3653 { 3654 int fd; 3655 ddi_devid_t devid; 3656 char *minor, *ret; 3657 3658 if ((fd = open(path, O_RDONLY)) < 0) 3659 return (NULL); 3660 3661 minor = NULL; 3662 ret = NULL; 3663 if (devid_get(fd, &devid) == 0) { 3664 if (devid_get_minor_name(fd, &minor) == 0) 3665 ret = devid_str_encode(devid, minor); 3666 if (minor != NULL) 3667 devid_str_free(minor); 3668 devid_free(devid); 3669 } 3670 (void) close(fd); 3671 3672 return (ret); 3673 } 3674 3675 /* 3676 * Issue the necessary ioctl() to update the stored path value for the vdev. We 3677 * ignore any failure here, since a common case is for an unprivileged user to 3678 * type 'zpool status', and we'll display the correct information anyway. 3679 */ 3680 static void 3681 set_path(zpool_handle_t *zhp, nvlist_t *nv, const char *path) 3682 { 3683 zfs_cmd_t zc = { 0 }; 3684 3685 (void) strncpy(zc.zc_name, zhp->zpool_name, sizeof (zc.zc_name)); 3686 (void) strncpy(zc.zc_value, path, sizeof (zc.zc_value)); 3687 verify(nvlist_lookup_uint64(nv, ZPOOL_CONFIG_GUID, 3688 &zc.zc_guid) == 0); 3689 3690 (void) ioctl(zhp->zpool_hdl->libzfs_fd, ZFS_IOC_VDEV_SETPATH, &zc); 3691 } 3692 3693 /* 3694 * Given a vdev, return the name to display in iostat. If the vdev has a path, 3695 * we use that, stripping off any leading "/dev/dsk/"; if not, we use the type. 3696 * We also check if this is a whole disk, in which case we strip off the 3697 * trailing 's0' slice name. 3698 * 3699 * This routine is also responsible for identifying when disks have been 3700 * reconfigured in a new location. The kernel will have opened the device by 3701 * devid, but the path will still refer to the old location. To catch this, we 3702 * first do a path -> devid translation (which is fast for the common case). If 3703 * the devid matches, we're done. If not, we do a reverse devid -> path 3704 * translation and issue the appropriate ioctl() to update the path of the vdev. 3705 * If 'zhp' is NULL, then this is an exported pool, and we don't need to do any 3706 * of these checks. 3707 */ 3708 char * 3709 zpool_vdev_name(libzfs_handle_t *hdl, zpool_handle_t *zhp, nvlist_t *nv, 3710 int name_flags) 3711 { 3712 char *path, *devid, *env; 3713 uint64_t value; 3714 char buf[64]; 3715 vdev_stat_t *vs; 3716 uint_t vsc; 3717 3718 env = getenv("ZPOOL_VDEV_NAME_PATH"); 3719 if (env && (strtoul(env, NULL, 0) > 0 || 3720 !strncasecmp(env, "YES", 3) || !strncasecmp(env, "ON", 2))) 3721 name_flags |= VDEV_NAME_PATH; 3722 3723 env = getenv("ZPOOL_VDEV_NAME_GUID"); 3724 if (env && (strtoul(env, NULL, 0) > 0 || 3725 !strncasecmp(env, "YES", 3) || !strncasecmp(env, "ON", 2))) 3726 name_flags |= VDEV_NAME_GUID; 3727 3728 env = getenv("ZPOOL_VDEV_NAME_FOLLOW_LINKS"); 3729 if (env && (strtoul(env, NULL, 0) > 0 || 3730 !strncasecmp(env, "YES", 3) || !strncasecmp(env, "ON", 2))) 3731 name_flags |= VDEV_NAME_FOLLOW_LINKS; 3732 3733 if (nvlist_lookup_uint64(nv, ZPOOL_CONFIG_NOT_PRESENT, &value) == 0 || 3734 name_flags & VDEV_NAME_GUID) { 3735 nvlist_lookup_uint64(nv, ZPOOL_CONFIG_GUID, &value); 3736 (void) snprintf(buf, sizeof (buf), "%llu", (u_longlong_t)value); 3737 path = buf; 3738 } else if (nvlist_lookup_string(nv, ZPOOL_CONFIG_PATH, &path) == 0) { 3739 3740 /* 3741 * If the device is dead (faulted, offline, etc) then don't 3742 * bother opening it. Otherwise we may be forcing the user to 3743 * open a misbehaving device, which can have undesirable 3744 * effects. 3745 */ 3746 if ((nvlist_lookup_uint64_array(nv, ZPOOL_CONFIG_VDEV_STATS, 3747 (uint64_t **)&vs, &vsc) != 0 || 3748 vs->vs_state >= VDEV_STATE_DEGRADED) && 3749 zhp != NULL && 3750 nvlist_lookup_string(nv, ZPOOL_CONFIG_DEVID, &devid) == 0) { 3751 /* 3752 * Determine if the current path is correct. 3753 */ 3754 char *newdevid = path_to_devid(path); 3755 3756 if (newdevid == NULL || 3757 strcmp(devid, newdevid) != 0) { 3758 char *newpath; 3759 3760 if ((newpath = devid_to_path(devid)) != NULL) { 3761 /* 3762 * Update the path appropriately. 3763 */ 3764 set_path(zhp, nv, newpath); 3765 if (nvlist_add_string(nv, 3766 ZPOOL_CONFIG_PATH, newpath) == 0) 3767 verify(nvlist_lookup_string(nv, 3768 ZPOOL_CONFIG_PATH, 3769 &path) == 0); 3770 free(newpath); 3771 } 3772 } 3773 3774 if (newdevid) 3775 devid_str_free(newdevid); 3776 } 3777 3778 if (name_flags & VDEV_NAME_FOLLOW_LINKS) { 3779 char *rp = realpath(path, NULL); 3780 if (rp) { 3781 strlcpy(buf, rp, sizeof (buf)); 3782 path = buf; 3783 free(rp); 3784 } 3785 } 3786 3787 if (strncmp(path, ZFS_DISK_ROOTD, strlen(ZFS_DISK_ROOTD)) == 0) 3788 path += strlen(ZFS_DISK_ROOTD); 3789 3790 /* 3791 * Remove the partition from the path it this is a whole disk. 3792 */ 3793 if (nvlist_lookup_uint64(nv, ZPOOL_CONFIG_WHOLE_DISK, &value) 3794 == 0 && value && !(name_flags & VDEV_NAME_PATH)) { 3795 int pathlen = strlen(path); 3796 char *tmp = zfs_strdup(hdl, path); 3797 3798 /* 3799 * If it starts with c#, and ends with "s0" or "s1", 3800 * chop the slice off, or if it ends with "s0/old" or 3801 * "s1/old", remove the slice from the middle. 3802 */ 3803 if (CTD_CHECK(tmp)) { 3804 if (strcmp(&tmp[pathlen - 2], "s0") == 0 || 3805 strcmp(&tmp[pathlen - 2], "s1") == 0) { 3806 tmp[pathlen - 2] = '\0'; 3807 } else if (pathlen > 6 && 3808 (strcmp(&tmp[pathlen - 6], "s0/old") == 0 || 3809 strcmp(&tmp[pathlen - 6], "s1/old") == 0)) { 3810 (void) strcpy(&tmp[pathlen - 6], 3811 "/old"); 3812 } 3813 } 3814 return (tmp); 3815 } 3816 } else { 3817 verify(nvlist_lookup_string(nv, ZPOOL_CONFIG_TYPE, &path) == 0); 3818 3819 /* 3820 * If it's a raidz device, we need to stick in the parity level. 3821 */ 3822 if (strcmp(path, VDEV_TYPE_RAIDZ) == 0) { 3823 verify(nvlist_lookup_uint64(nv, ZPOOL_CONFIG_NPARITY, 3824 &value) == 0); 3825 (void) snprintf(buf, sizeof (buf), "%s%llu", path, 3826 (u_longlong_t)value); 3827 path = buf; 3828 } 3829 3830 /* 3831 * We identify each top-level vdev by using a <type-id> 3832 * naming convention. 3833 */ 3834 if (name_flags & VDEV_NAME_TYPE_ID) { 3835 uint64_t id; 3836 3837 verify(nvlist_lookup_uint64(nv, ZPOOL_CONFIG_ID, 3838 &id) == 0); 3839 (void) snprintf(buf, sizeof (buf), "%s-%llu", path, 3840 (u_longlong_t)id); 3841 path = buf; 3842 } 3843 } 3844 3845 return (zfs_strdup(hdl, path)); 3846 } 3847 3848 static int 3849 zbookmark_mem_compare(const void *a, const void *b) 3850 { 3851 return (memcmp(a, b, sizeof (zbookmark_phys_t))); 3852 } 3853 3854 /* 3855 * Retrieve the persistent error log, uniquify the members, and return to the 3856 * caller. 3857 */ 3858 int 3859 zpool_get_errlog(zpool_handle_t *zhp, nvlist_t **nverrlistp) 3860 { 3861 zfs_cmd_t zc = { 0 }; 3862 uint64_t count; 3863 zbookmark_phys_t *zb = NULL; 3864 int i; 3865 3866 /* 3867 * Retrieve the raw error list from the kernel. If the number of errors 3868 * has increased, allocate more space and continue until we get the 3869 * entire list. 3870 */ 3871 verify(nvlist_lookup_uint64(zhp->zpool_config, ZPOOL_CONFIG_ERRCOUNT, 3872 &count) == 0); 3873 if (count == 0) 3874 return (0); 3875 if ((zc.zc_nvlist_dst = (uintptr_t)zfs_alloc(zhp->zpool_hdl, 3876 count * sizeof (zbookmark_phys_t))) == (uintptr_t)NULL) 3877 return (-1); 3878 zc.zc_nvlist_dst_size = count; 3879 (void) strcpy(zc.zc_name, zhp->zpool_name); 3880 for (;;) { 3881 if (ioctl(zhp->zpool_hdl->libzfs_fd, ZFS_IOC_ERROR_LOG, 3882 &zc) != 0) { 3883 free((void *)(uintptr_t)zc.zc_nvlist_dst); 3884 if (errno == ENOMEM) { 3885 void *dst; 3886 3887 count = zc.zc_nvlist_dst_size; 3888 dst = zfs_alloc(zhp->zpool_hdl, count * 3889 sizeof (zbookmark_phys_t)); 3890 if (dst == NULL) 3891 return (-1); 3892 zc.zc_nvlist_dst = (uintptr_t)dst; 3893 } else { 3894 return (-1); 3895 } 3896 } else { 3897 break; 3898 } 3899 } 3900 3901 /* 3902 * Sort the resulting bookmarks. This is a little confusing due to the 3903 * implementation of ZFS_IOC_ERROR_LOG. The bookmarks are copied last 3904 * to first, and 'zc_nvlist_dst_size' indicates the number of boomarks 3905 * _not_ copied as part of the process. So we point the start of our 3906 * array appropriate and decrement the total number of elements. 3907 */ 3908 zb = ((zbookmark_phys_t *)(uintptr_t)zc.zc_nvlist_dst) + 3909 zc.zc_nvlist_dst_size; 3910 count -= zc.zc_nvlist_dst_size; 3911 3912 qsort(zb, count, sizeof (zbookmark_phys_t), zbookmark_mem_compare); 3913 3914 verify(nvlist_alloc(nverrlistp, 0, KM_SLEEP) == 0); 3915 3916 /* 3917 * Fill in the nverrlistp with nvlist's of dataset and object numbers. 3918 */ 3919 for (i = 0; i < count; i++) { 3920 nvlist_t *nv; 3921 3922 /* ignoring zb_blkid and zb_level for now */ 3923 if (i > 0 && zb[i-1].zb_objset == zb[i].zb_objset && 3924 zb[i-1].zb_object == zb[i].zb_object) 3925 continue; 3926 3927 if (nvlist_alloc(&nv, NV_UNIQUE_NAME, KM_SLEEP) != 0) 3928 goto nomem; 3929 if (nvlist_add_uint64(nv, ZPOOL_ERR_DATASET, 3930 zb[i].zb_objset) != 0) { 3931 nvlist_free(nv); 3932 goto nomem; 3933 } 3934 if (nvlist_add_uint64(nv, ZPOOL_ERR_OBJECT, 3935 zb[i].zb_object) != 0) { 3936 nvlist_free(nv); 3937 goto nomem; 3938 } 3939 if (nvlist_add_nvlist(*nverrlistp, "ejk", nv) != 0) { 3940 nvlist_free(nv); 3941 goto nomem; 3942 } 3943 nvlist_free(nv); 3944 } 3945 3946 free((void *)(uintptr_t)zc.zc_nvlist_dst); 3947 return (0); 3948 3949 nomem: 3950 free((void *)(uintptr_t)zc.zc_nvlist_dst); 3951 return (no_memory(zhp->zpool_hdl)); 3952 } 3953 3954 /* 3955 * Upgrade a ZFS pool to the latest on-disk version. 3956 */ 3957 int 3958 zpool_upgrade(zpool_handle_t *zhp, uint64_t new_version) 3959 { 3960 zfs_cmd_t zc = { 0 }; 3961 libzfs_handle_t *hdl = zhp->zpool_hdl; 3962 3963 (void) strcpy(zc.zc_name, zhp->zpool_name); 3964 zc.zc_cookie = new_version; 3965 3966 if (zfs_ioctl(hdl, ZFS_IOC_POOL_UPGRADE, &zc) != 0) 3967 return (zpool_standard_error_fmt(hdl, errno, 3968 dgettext(TEXT_DOMAIN, "cannot upgrade '%s'"), 3969 zhp->zpool_name)); 3970 return (0); 3971 } 3972 3973 void 3974 zfs_save_arguments(int argc, char **argv, char *string, int len) 3975 { 3976 (void) strlcpy(string, basename(argv[0]), len); 3977 for (int i = 1; i < argc; i++) { 3978 (void) strlcat(string, " ", len); 3979 (void) strlcat(string, argv[i], len); 3980 } 3981 } 3982 3983 int 3984 zpool_log_history(libzfs_handle_t *hdl, const char *message) 3985 { 3986 zfs_cmd_t zc = { 0 }; 3987 nvlist_t *args; 3988 int err; 3989 3990 args = fnvlist_alloc(); 3991 fnvlist_add_string(args, "message", message); 3992 err = zcmd_write_src_nvlist(hdl, &zc, args); 3993 if (err == 0) 3994 err = ioctl(hdl->libzfs_fd, ZFS_IOC_LOG_HISTORY, &zc); 3995 nvlist_free(args); 3996 zcmd_free_nvlists(&zc); 3997 return (err); 3998 } 3999 4000 /* 4001 * Perform ioctl to get some command history of a pool. 4002 * 4003 * 'buf' is the buffer to fill up to 'len' bytes. 'off' is the 4004 * logical offset of the history buffer to start reading from. 4005 * 4006 * Upon return, 'off' is the next logical offset to read from and 4007 * 'len' is the actual amount of bytes read into 'buf'. 4008 */ 4009 static int 4010 get_history(zpool_handle_t *zhp, char *buf, uint64_t *off, uint64_t *len) 4011 { 4012 zfs_cmd_t zc = { 0 }; 4013 libzfs_handle_t *hdl = zhp->zpool_hdl; 4014 4015 (void) strlcpy(zc.zc_name, zhp->zpool_name, sizeof (zc.zc_name)); 4016 4017 zc.zc_history = (uint64_t)(uintptr_t)buf; 4018 zc.zc_history_len = *len; 4019 zc.zc_history_offset = *off; 4020 4021 if (ioctl(hdl->libzfs_fd, ZFS_IOC_POOL_GET_HISTORY, &zc) != 0) { 4022 switch (errno) { 4023 case EPERM: 4024 return (zfs_error_fmt(hdl, EZFS_PERM, 4025 dgettext(TEXT_DOMAIN, 4026 "cannot show history for pool '%s'"), 4027 zhp->zpool_name)); 4028 case ENOENT: 4029 return (zfs_error_fmt(hdl, EZFS_NOHISTORY, 4030 dgettext(TEXT_DOMAIN, "cannot get history for pool " 4031 "'%s'"), zhp->zpool_name)); 4032 case ENOTSUP: 4033 return (zfs_error_fmt(hdl, EZFS_BADVERSION, 4034 dgettext(TEXT_DOMAIN, "cannot get history for pool " 4035 "'%s', pool must be upgraded"), zhp->zpool_name)); 4036 default: 4037 return (zpool_standard_error_fmt(hdl, errno, 4038 dgettext(TEXT_DOMAIN, 4039 "cannot get history for '%s'"), zhp->zpool_name)); 4040 } 4041 } 4042 4043 *len = zc.zc_history_len; 4044 *off = zc.zc_history_offset; 4045 4046 return (0); 4047 } 4048 4049 /* 4050 * Process the buffer of nvlists, unpacking and storing each nvlist record 4051 * into 'records'. 'leftover' is set to the number of bytes that weren't 4052 * processed as there wasn't a complete record. 4053 */ 4054 int 4055 zpool_history_unpack(char *buf, uint64_t bytes_read, uint64_t *leftover, 4056 nvlist_t ***records, uint_t *numrecords) 4057 { 4058 uint64_t reclen; 4059 nvlist_t *nv; 4060 int i; 4061 4062 while (bytes_read > sizeof (reclen)) { 4063 4064 /* get length of packed record (stored as little endian) */ 4065 for (i = 0, reclen = 0; i < sizeof (reclen); i++) 4066 reclen += (uint64_t)(((uchar_t *)buf)[i]) << (8*i); 4067 4068 if (bytes_read < sizeof (reclen) + reclen) 4069 break; 4070 4071 /* unpack record */ 4072 if (nvlist_unpack(buf + sizeof (reclen), reclen, &nv, 0) != 0) 4073 return (ENOMEM); 4074 bytes_read -= sizeof (reclen) + reclen; 4075 buf += sizeof (reclen) + reclen; 4076 4077 /* add record to nvlist array */ 4078 (*numrecords)++; 4079 if (ISP2(*numrecords + 1)) { 4080 *records = realloc(*records, 4081 *numrecords * 2 * sizeof (nvlist_t *)); 4082 } 4083 (*records)[*numrecords - 1] = nv; 4084 } 4085 4086 *leftover = bytes_read; 4087 return (0); 4088 } 4089 4090 /* 4091 * Retrieve the command history of a pool. 4092 */ 4093 int 4094 zpool_get_history(zpool_handle_t *zhp, nvlist_t **nvhisp) 4095 { 4096 char *buf; 4097 int buflen = 128 * 1024; 4098 uint64_t off = 0; 4099 nvlist_t **records = NULL; 4100 uint_t numrecords = 0; 4101 int err, i; 4102 4103 buf = malloc(buflen); 4104 if (buf == NULL) 4105 return (ENOMEM); 4106 do { 4107 uint64_t bytes_read = buflen; 4108 uint64_t leftover; 4109 4110 if ((err = get_history(zhp, buf, &off, &bytes_read)) != 0) 4111 break; 4112 4113 /* if nothing else was read in, we're at EOF, just return */ 4114 if (!bytes_read) 4115 break; 4116 4117 if ((err = zpool_history_unpack(buf, bytes_read, 4118 &leftover, &records, &numrecords)) != 0) 4119 break; 4120 off -= leftover; 4121 if (leftover == bytes_read) { 4122 /* 4123 * no progress made, because buffer is not big enough 4124 * to hold this record; resize and retry. 4125 */ 4126 buflen *= 2; 4127 free(buf); 4128 buf = malloc(buflen); 4129 if (buf == NULL) 4130 return (ENOMEM); 4131 } 4132 4133 /* CONSTCOND */ 4134 } while (1); 4135 4136 free(buf); 4137 4138 if (!err) { 4139 verify(nvlist_alloc(nvhisp, NV_UNIQUE_NAME, 0) == 0); 4140 verify(nvlist_add_nvlist_array(*nvhisp, ZPOOL_HIST_RECORD, 4141 records, numrecords) == 0); 4142 } 4143 for (i = 0; i < numrecords; i++) 4144 nvlist_free(records[i]); 4145 free(records); 4146 4147 return (err); 4148 } 4149 4150 void 4151 zpool_obj_to_path(zpool_handle_t *zhp, uint64_t dsobj, uint64_t obj, 4152 char *pathname, size_t len) 4153 { 4154 zfs_cmd_t zc = { 0 }; 4155 boolean_t mounted = B_FALSE; 4156 char *mntpnt = NULL; 4157 char dsname[ZFS_MAX_DATASET_NAME_LEN]; 4158 4159 if (dsobj == 0) { 4160 /* special case for the MOS */ 4161 (void) snprintf(pathname, len, "<metadata>:<0x%llx>", obj); 4162 return; 4163 } 4164 4165 /* get the dataset's name */ 4166 (void) strlcpy(zc.zc_name, zhp->zpool_name, sizeof (zc.zc_name)); 4167 zc.zc_obj = dsobj; 4168 if (ioctl(zhp->zpool_hdl->libzfs_fd, 4169 ZFS_IOC_DSOBJ_TO_DSNAME, &zc) != 0) { 4170 /* just write out a path of two object numbers */ 4171 (void) snprintf(pathname, len, "<0x%llx>:<0x%llx>", 4172 dsobj, obj); 4173 return; 4174 } 4175 (void) strlcpy(dsname, zc.zc_value, sizeof (dsname)); 4176 4177 /* find out if the dataset is mounted */ 4178 mounted = is_mounted(zhp->zpool_hdl, dsname, &mntpnt); 4179 4180 /* get the corrupted object's path */ 4181 (void) strlcpy(zc.zc_name, dsname, sizeof (zc.zc_name)); 4182 zc.zc_obj = obj; 4183 if (ioctl(zhp->zpool_hdl->libzfs_fd, ZFS_IOC_OBJ_TO_PATH, 4184 &zc) == 0) { 4185 if (mounted) { 4186 (void) snprintf(pathname, len, "%s%s", mntpnt, 4187 zc.zc_value); 4188 } else { 4189 (void) snprintf(pathname, len, "%s:%s", 4190 dsname, zc.zc_value); 4191 } 4192 } else { 4193 (void) snprintf(pathname, len, "%s:<0x%llx>", dsname, obj); 4194 } 4195 free(mntpnt); 4196 } 4197 4198 /* 4199 * Read the EFI label from the config, if a label does not exist then 4200 * pass back the error to the caller. If the caller has passed a non-NULL 4201 * diskaddr argument then we set it to the starting address of the EFI 4202 * partition. If the caller has passed a non-NULL boolean argument, then 4203 * we set it to indicate if the disk does have efi system partition. 4204 */ 4205 static int 4206 read_efi_label(nvlist_t *config, diskaddr_t *sb, boolean_t *system) 4207 { 4208 char *path; 4209 int fd; 4210 char diskname[MAXPATHLEN]; 4211 boolean_t boot = B_FALSE; 4212 int err = -1; 4213 int slice; 4214 4215 if (nvlist_lookup_string(config, ZPOOL_CONFIG_PATH, &path) != 0) 4216 return (err); 4217 4218 (void) snprintf(diskname, sizeof (diskname), "%s%s", ZFS_RDISK_ROOT, 4219 strrchr(path, '/')); 4220 if ((fd = open(diskname, O_RDONLY|O_NDELAY)) >= 0) { 4221 struct dk_gpt *vtoc; 4222 4223 if ((err = efi_alloc_and_read(fd, &vtoc)) >= 0) { 4224 for (slice = 0; slice < vtoc->efi_nparts; slice++) { 4225 if (vtoc->efi_parts[slice].p_tag == V_SYSTEM) 4226 boot = B_TRUE; 4227 if (vtoc->efi_parts[slice].p_tag == V_USR) 4228 break; 4229 } 4230 if (sb != NULL && vtoc->efi_parts[slice].p_tag == V_USR) 4231 *sb = vtoc->efi_parts[slice].p_start; 4232 if (system != NULL) 4233 *system = boot; 4234 efi_free(vtoc); 4235 } 4236 (void) close(fd); 4237 } 4238 return (err); 4239 } 4240 4241 /* 4242 * determine where a partition starts on a disk in the current 4243 * configuration 4244 */ 4245 static diskaddr_t 4246 find_start_block(nvlist_t *config) 4247 { 4248 nvlist_t **child; 4249 uint_t c, children; 4250 diskaddr_t sb = MAXOFFSET_T; 4251 uint64_t wholedisk; 4252 4253 if (nvlist_lookup_nvlist_array(config, 4254 ZPOOL_CONFIG_CHILDREN, &child, &children) != 0) { 4255 if (nvlist_lookup_uint64(config, 4256 ZPOOL_CONFIG_WHOLE_DISK, 4257 &wholedisk) != 0 || !wholedisk) { 4258 return (MAXOFFSET_T); 4259 } 4260 if (read_efi_label(config, &sb, NULL) < 0) 4261 sb = MAXOFFSET_T; 4262 return (sb); 4263 } 4264 4265 for (c = 0; c < children; c++) { 4266 sb = find_start_block(child[c]); 4267 if (sb != MAXOFFSET_T) { 4268 return (sb); 4269 } 4270 } 4271 return (MAXOFFSET_T); 4272 } 4273 4274 /* 4275 * Label an individual disk. The name provided is the short name, 4276 * stripped of any leading /dev path. 4277 */ 4278 int 4279 zpool_label_disk(libzfs_handle_t *hdl, zpool_handle_t *zhp, const char *name, 4280 zpool_boot_label_t boot_type, uint64_t boot_size, int *slice) 4281 { 4282 char path[MAXPATHLEN]; 4283 struct dk_gpt *vtoc; 4284 int fd; 4285 size_t resv = EFI_MIN_RESV_SIZE; 4286 uint64_t slice_size; 4287 diskaddr_t start_block; 4288 char errbuf[1024]; 4289 4290 /* prepare an error message just in case */ 4291 (void) snprintf(errbuf, sizeof (errbuf), 4292 dgettext(TEXT_DOMAIN, "cannot label '%s'"), name); 4293 4294 if (zhp) { 4295 nvlist_t *nvroot; 4296 4297 verify(nvlist_lookup_nvlist(zhp->zpool_config, 4298 ZPOOL_CONFIG_VDEV_TREE, &nvroot) == 0); 4299 4300 if (zhp->zpool_start_block == 0) 4301 start_block = find_start_block(nvroot); 4302 else 4303 start_block = zhp->zpool_start_block; 4304 zhp->zpool_start_block = start_block; 4305 } else { 4306 /* new pool */ 4307 start_block = NEW_START_BLOCK; 4308 } 4309 4310 (void) snprintf(path, sizeof (path), "%s/%s%s", ZFS_RDISK_ROOT, name, 4311 BACKUP_SLICE); 4312 4313 if ((fd = open(path, O_RDWR | O_NDELAY)) < 0) { 4314 /* 4315 * This shouldn't happen. We've long since verified that this 4316 * is a valid device. 4317 */ 4318 zfs_error_aux(hdl, 4319 dgettext(TEXT_DOMAIN, "unable to open device")); 4320 return (zfs_error(hdl, EZFS_OPENFAILED, errbuf)); 4321 } 4322 4323 if (efi_alloc_and_init(fd, EFI_NUMPAR, &vtoc) != 0) { 4324 /* 4325 * The only way this can fail is if we run out of memory, or we 4326 * were unable to read the disk's capacity 4327 */ 4328 if (errno == ENOMEM) 4329 (void) no_memory(hdl); 4330 4331 (void) close(fd); 4332 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 4333 "unable to read disk capacity"), name); 4334 4335 return (zfs_error(hdl, EZFS_NOCAP, errbuf)); 4336 } 4337 4338 /* 4339 * Why we use V_USR: V_BACKUP confuses users, and is considered 4340 * disposable by some EFI utilities (since EFI doesn't have a backup 4341 * slice). V_UNASSIGNED is supposed to be used only for zero size 4342 * partitions, and efi_write() will fail if we use it. V_ROOT, V_BOOT, 4343 * etc. were all pretty specific. V_USR is as close to reality as we 4344 * can get, in the absence of V_OTHER. 4345 */ 4346 /* first fix the partition start block */ 4347 if (start_block == MAXOFFSET_T) 4348 start_block = NEW_START_BLOCK; 4349 4350 /* 4351 * EFI System partition is using slice 0. 4352 * ZFS is on slice 1 and slice 8 is reserved. 4353 * We assume the GPT partition table without system 4354 * partition has zfs p_start == NEW_START_BLOCK. 4355 * If start_block != NEW_START_BLOCK, it means we have 4356 * system partition. Correct solution would be to query/cache vtoc 4357 * from existing vdev member. 4358 */ 4359 if (boot_type == ZPOOL_CREATE_BOOT_LABEL) { 4360 if (boot_size % vtoc->efi_lbasize != 0) { 4361 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 4362 "boot partition size must be a multiple of %d"), 4363 vtoc->efi_lbasize); 4364 (void) close(fd); 4365 efi_free(vtoc); 4366 return (zfs_error(hdl, EZFS_LABELFAILED, errbuf)); 4367 } 4368 /* 4369 * System partition size checks. 4370 * Note the 1MB is quite arbitrary value, since we 4371 * are creating dedicated pool, it should be enough 4372 * to hold fat + efi bootloader. May need to be 4373 * adjusted if the bootloader size will grow. 4374 */ 4375 if (boot_size < 1024 * 1024) { 4376 char buf[64]; 4377 zfs_nicenum(boot_size, buf, sizeof (buf)); 4378 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 4379 "Specified size %s for EFI System partition is too " 4380 "small, the minimum size is 1MB."), buf); 4381 (void) close(fd); 4382 efi_free(vtoc); 4383 return (zfs_error(hdl, EZFS_LABELFAILED, errbuf)); 4384 } 4385 /* 33MB is tested with mkfs -F pcfs */ 4386 if (hdl->libzfs_printerr && 4387 ((vtoc->efi_lbasize == 512 && 4388 boot_size < 33 * 1024 * 1024) || 4389 (vtoc->efi_lbasize == 4096 && 4390 boot_size < 256 * 1024 * 1024))) { 4391 char buf[64]; 4392 zfs_nicenum(boot_size, buf, sizeof (buf)); 4393 (void) fprintf(stderr, dgettext(TEXT_DOMAIN, 4394 "Warning: EFI System partition size %s is " 4395 "not allowing to create FAT32 file\nsystem, which " 4396 "may result in unbootable system.\n"), buf); 4397 } 4398 /* Adjust zfs partition start by size of system partition. */ 4399 start_block += boot_size / vtoc->efi_lbasize; 4400 } 4401 4402 if (start_block == NEW_START_BLOCK) { 4403 /* 4404 * Use default layout. 4405 * ZFS is on slice 0 and slice 8 is reserved. 4406 */ 4407 slice_size = vtoc->efi_last_u_lba + 1; 4408 slice_size -= EFI_MIN_RESV_SIZE; 4409 slice_size -= start_block; 4410 if (slice != NULL) 4411 *slice = 0; 4412 4413 vtoc->efi_parts[0].p_start = start_block; 4414 vtoc->efi_parts[0].p_size = slice_size; 4415 4416 vtoc->efi_parts[0].p_tag = V_USR; 4417 (void) strcpy(vtoc->efi_parts[0].p_name, "zfs"); 4418 4419 vtoc->efi_parts[8].p_start = slice_size + start_block; 4420 vtoc->efi_parts[8].p_size = resv; 4421 vtoc->efi_parts[8].p_tag = V_RESERVED; 4422 } else { 4423 slice_size = start_block - NEW_START_BLOCK; 4424 vtoc->efi_parts[0].p_start = NEW_START_BLOCK; 4425 vtoc->efi_parts[0].p_size = slice_size; 4426 vtoc->efi_parts[0].p_tag = V_SYSTEM; 4427 (void) strcpy(vtoc->efi_parts[0].p_name, "loader"); 4428 if (slice != NULL) 4429 *slice = 1; 4430 /* prepare slice 1 */ 4431 slice_size = vtoc->efi_last_u_lba + 1 - slice_size; 4432 slice_size -= resv; 4433 slice_size -= NEW_START_BLOCK; 4434 vtoc->efi_parts[1].p_start = start_block; 4435 vtoc->efi_parts[1].p_size = slice_size; 4436 vtoc->efi_parts[1].p_tag = V_USR; 4437 (void) strcpy(vtoc->efi_parts[1].p_name, "zfs"); 4438 4439 vtoc->efi_parts[8].p_start = slice_size + start_block; 4440 vtoc->efi_parts[8].p_size = resv; 4441 vtoc->efi_parts[8].p_tag = V_RESERVED; 4442 } 4443 4444 if (efi_write(fd, vtoc) != 0) { 4445 /* 4446 * Some block drivers (like pcata) may not support EFI 4447 * GPT labels. Print out a helpful error message dir- 4448 * ecting the user to manually label the disk and give 4449 * a specific slice. 4450 */ 4451 (void) close(fd); 4452 efi_free(vtoc); 4453 4454 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 4455 "try using fdisk(1M) and then provide a specific slice")); 4456 return (zfs_error(hdl, EZFS_LABELFAILED, errbuf)); 4457 } 4458 4459 (void) close(fd); 4460 efi_free(vtoc); 4461 return (0); 4462 } 4463 4464 static boolean_t 4465 supported_dump_vdev_type(libzfs_handle_t *hdl, nvlist_t *config, char *errbuf) 4466 { 4467 char *type; 4468 nvlist_t **child; 4469 uint_t children, c; 4470 4471 verify(nvlist_lookup_string(config, ZPOOL_CONFIG_TYPE, &type) == 0); 4472 if (strcmp(type, VDEV_TYPE_FILE) == 0 || 4473 strcmp(type, VDEV_TYPE_HOLE) == 0 || 4474 strcmp(type, VDEV_TYPE_MISSING) == 0) { 4475 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 4476 "vdev type '%s' is not supported"), type); 4477 (void) zfs_error(hdl, EZFS_VDEVNOTSUP, errbuf); 4478 return (B_FALSE); 4479 } 4480 if (nvlist_lookup_nvlist_array(config, ZPOOL_CONFIG_CHILDREN, 4481 &child, &children) == 0) { 4482 for (c = 0; c < children; c++) { 4483 if (!supported_dump_vdev_type(hdl, child[c], errbuf)) 4484 return (B_FALSE); 4485 } 4486 } 4487 return (B_TRUE); 4488 } 4489 4490 /* 4491 * Check if this zvol is allowable for use as a dump device; zero if 4492 * it is, > 0 if it isn't, < 0 if it isn't a zvol. 4493 * 4494 * Allowable storage configurations include mirrors, all raidz variants, and 4495 * pools with log, cache, and spare devices. Pools which are backed by files or 4496 * have missing/hole vdevs are not suitable. 4497 */ 4498 int 4499 zvol_check_dump_config(char *arg) 4500 { 4501 zpool_handle_t *zhp = NULL; 4502 nvlist_t *config, *nvroot; 4503 char *p, *volname; 4504 nvlist_t **top; 4505 uint_t toplevels; 4506 libzfs_handle_t *hdl; 4507 char errbuf[1024]; 4508 char poolname[ZFS_MAX_DATASET_NAME_LEN]; 4509 int pathlen = strlen(ZVOL_FULL_DEV_DIR); 4510 int ret = 1; 4511 4512 if (strncmp(arg, ZVOL_FULL_DEV_DIR, pathlen)) { 4513 return (-1); 4514 } 4515 4516 (void) snprintf(errbuf, sizeof (errbuf), dgettext(TEXT_DOMAIN, 4517 "dump is not supported on device '%s'"), arg); 4518 4519 if ((hdl = libzfs_init()) == NULL) 4520 return (1); 4521 libzfs_print_on_error(hdl, B_TRUE); 4522 4523 volname = arg + pathlen; 4524 4525 /* check the configuration of the pool */ 4526 if ((p = strchr(volname, '/')) == NULL) { 4527 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 4528 "malformed dataset name")); 4529 (void) zfs_error(hdl, EZFS_INVALIDNAME, errbuf); 4530 return (1); 4531 } else if (p - volname >= ZFS_MAX_DATASET_NAME_LEN) { 4532 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 4533 "dataset name is too long")); 4534 (void) zfs_error(hdl, EZFS_NAMETOOLONG, errbuf); 4535 return (1); 4536 } else { 4537 (void) strncpy(poolname, volname, p - volname); 4538 poolname[p - volname] = '\0'; 4539 } 4540 4541 if ((zhp = zpool_open(hdl, poolname)) == NULL) { 4542 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 4543 "could not open pool '%s'"), poolname); 4544 (void) zfs_error(hdl, EZFS_OPENFAILED, errbuf); 4545 goto out; 4546 } 4547 config = zpool_get_config(zhp, NULL); 4548 if (nvlist_lookup_nvlist(config, ZPOOL_CONFIG_VDEV_TREE, 4549 &nvroot) != 0) { 4550 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 4551 "could not obtain vdev configuration for '%s'"), poolname); 4552 (void) zfs_error(hdl, EZFS_INVALCONFIG, errbuf); 4553 goto out; 4554 } 4555 4556 verify(nvlist_lookup_nvlist_array(nvroot, ZPOOL_CONFIG_CHILDREN, 4557 &top, &toplevels) == 0); 4558 4559 if (!supported_dump_vdev_type(hdl, top[0], errbuf)) { 4560 goto out; 4561 } 4562 ret = 0; 4563 4564 out: 4565 if (zhp) 4566 zpool_close(zhp); 4567 libzfs_fini(hdl); 4568 return (ret); 4569 } 4570