1 // SPDX-License-Identifier: CDDL-1.0 2 /* 3 * This file and its contents are supplied under the terms of the 4 * Common Development and Distribution License ("CDDL"), version 1.0. 5 * You may only use this file in accordance with the terms of version 6 * 1.0 of the CDDL. 7 * 8 * A full copy of the text of the CDDL should have accompanied this 9 * source. A copy of the CDDL is also available via the Internet at 10 * https://opensource.org/license/CDDL-1.0. 11 */ 12 13 /* 14 * Copyright (c) 2005, 2010, Oracle and/or its affiliates. All rights reserved. 15 * Copyright 2020 Joyent, Inc. All rights reserved. 16 * Copyright (c) 2011, 2024 by Delphix. All rights reserved. 17 * Copyright 2016 Igor Kozhukhov <ikozhukhov@gmail.com> 18 * Copyright (c) 2017 Datto Inc. 19 * Copyright (c) 2020 The FreeBSD Foundation 20 * 21 * Portions of this software were developed by Allan Jude 22 * under sponsorship from the FreeBSD Foundation. 23 */ 24 25 /* 26 * Internal utility routines for the ZFS library. 27 */ 28 29 #include <errno.h> 30 #include <fcntl.h> 31 #include <libintl.h> 32 #include <stdarg.h> 33 #include <stdio.h> 34 #include <stdlib.h> 35 #include <strings.h> 36 #include <unistd.h> 37 #include <math.h> 38 #if LIBFETCH_DYNAMIC 39 #include <dlfcn.h> 40 #endif 41 #include <sys/stat.h> 42 #include <sys/mnttab.h> 43 #include <sys/mntent.h> 44 #include <sys/types.h> 45 #include <sys/wait.h> 46 47 #include <libzfs.h> 48 #include <libzfs_core.h> 49 50 #include "libzfs_impl.h" 51 #include "zfs_prop.h" 52 #include "zfeature_common.h" 53 #include <zfs_fletcher.h> 54 #include <libzutil.h> 55 56 /* 57 * We only care about the scheme in order to match the scheme 58 * with the handler. Each handler should validate the full URI 59 * as necessary. 60 */ 61 #define URI_REGEX "^\\([A-Za-z][A-Za-z0-9+.\\-]*\\):" 62 #define STR_NUMS "0123456789" 63 64 int 65 libzfs_errno(libzfs_handle_t *hdl) 66 { 67 return (hdl->libzfs_error); 68 } 69 70 const char * 71 libzfs_error_action(libzfs_handle_t *hdl) 72 { 73 return (hdl->libzfs_action); 74 } 75 76 const char * 77 libzfs_error_description(libzfs_handle_t *hdl) 78 { 79 if (hdl->libzfs_desc[0] != '\0') 80 return (hdl->libzfs_desc); 81 82 switch (hdl->libzfs_error) { 83 case EZFS_NOMEM: 84 return (dgettext(TEXT_DOMAIN, "out of memory")); 85 case EZFS_BADPROP: 86 return (dgettext(TEXT_DOMAIN, "invalid property value")); 87 case EZFS_PROPREADONLY: 88 return (dgettext(TEXT_DOMAIN, "read-only property")); 89 case EZFS_PROPTYPE: 90 return (dgettext(TEXT_DOMAIN, "property doesn't apply to " 91 "datasets of this type")); 92 case EZFS_PROPNONINHERIT: 93 return (dgettext(TEXT_DOMAIN, "property cannot be inherited")); 94 case EZFS_PROPSPACE: 95 return (dgettext(TEXT_DOMAIN, "invalid quota or reservation")); 96 case EZFS_BADTYPE: 97 return (dgettext(TEXT_DOMAIN, "operation not applicable to " 98 "datasets of this type")); 99 case EZFS_BUSY: 100 return (dgettext(TEXT_DOMAIN, "pool or dataset is busy")); 101 case EZFS_EXISTS: 102 return (dgettext(TEXT_DOMAIN, "pool or dataset exists")); 103 case EZFS_NOENT: 104 return (dgettext(TEXT_DOMAIN, "no such pool or dataset")); 105 case EZFS_BADSTREAM: 106 return (dgettext(TEXT_DOMAIN, "invalid backup stream")); 107 case EZFS_DSREADONLY: 108 return (dgettext(TEXT_DOMAIN, "dataset is read-only")); 109 case EZFS_VOLTOOBIG: 110 return (dgettext(TEXT_DOMAIN, "volume size exceeds limit for " 111 "this system")); 112 case EZFS_INVALIDNAME: 113 return (dgettext(TEXT_DOMAIN, "invalid name")); 114 case EZFS_BADRESTORE: 115 return (dgettext(TEXT_DOMAIN, "unable to restore to " 116 "destination")); 117 case EZFS_BADBACKUP: 118 return (dgettext(TEXT_DOMAIN, "backup failed")); 119 case EZFS_BADTARGET: 120 return (dgettext(TEXT_DOMAIN, "invalid target vdev")); 121 case EZFS_NODEVICE: 122 return (dgettext(TEXT_DOMAIN, "no such device in pool")); 123 case EZFS_BADDEV: 124 return (dgettext(TEXT_DOMAIN, "invalid device")); 125 case EZFS_NOREPLICAS: 126 return (dgettext(TEXT_DOMAIN, "no valid replicas")); 127 case EZFS_RESILVERING: 128 return (dgettext(TEXT_DOMAIN, "currently resilvering")); 129 case EZFS_BADVERSION: 130 return (dgettext(TEXT_DOMAIN, "unsupported version or " 131 "feature")); 132 case EZFS_POOLUNAVAIL: 133 return (dgettext(TEXT_DOMAIN, "pool is unavailable")); 134 case EZFS_DEVOVERFLOW: 135 return (dgettext(TEXT_DOMAIN, "too many devices in one vdev")); 136 case EZFS_BADPATH: 137 return (dgettext(TEXT_DOMAIN, "must be an absolute path")); 138 case EZFS_CROSSTARGET: 139 return (dgettext(TEXT_DOMAIN, "operation crosses datasets or " 140 "pools")); 141 case EZFS_ZONED: 142 return (dgettext(TEXT_DOMAIN, "dataset in use by local zone")); 143 case EZFS_MOUNTFAILED: 144 return (dgettext(TEXT_DOMAIN, "mount failed")); 145 case EZFS_UMOUNTFAILED: 146 return (dgettext(TEXT_DOMAIN, "unmount failed")); 147 case EZFS_UNSHARENFSFAILED: 148 return (dgettext(TEXT_DOMAIN, "NFS share removal failed")); 149 case EZFS_SHARENFSFAILED: 150 return (dgettext(TEXT_DOMAIN, "NFS share creation failed")); 151 case EZFS_UNSHARESMBFAILED: 152 return (dgettext(TEXT_DOMAIN, "SMB share removal failed")); 153 case EZFS_SHARESMBFAILED: 154 return (dgettext(TEXT_DOMAIN, "SMB share creation failed")); 155 case EZFS_PERM: 156 return (dgettext(TEXT_DOMAIN, "permission denied")); 157 case EZFS_NOSPC: 158 return (dgettext(TEXT_DOMAIN, "out of space")); 159 case EZFS_FAULT: 160 return (dgettext(TEXT_DOMAIN, "bad address")); 161 case EZFS_IO: 162 return (dgettext(TEXT_DOMAIN, "I/O error")); 163 case EZFS_INTR: 164 return (dgettext(TEXT_DOMAIN, "signal received")); 165 case EZFS_CKSUM: 166 return (dgettext(TEXT_DOMAIN, "insufficient replicas")); 167 case EZFS_ISSPARE: 168 return (dgettext(TEXT_DOMAIN, "device is reserved as a hot " 169 "spare")); 170 case EZFS_INVALCONFIG: 171 return (dgettext(TEXT_DOMAIN, "invalid vdev configuration")); 172 case EZFS_RECURSIVE: 173 return (dgettext(TEXT_DOMAIN, "recursive dataset dependency")); 174 case EZFS_NOHISTORY: 175 return (dgettext(TEXT_DOMAIN, "no history available")); 176 case EZFS_POOLPROPS: 177 return (dgettext(TEXT_DOMAIN, "failed to retrieve " 178 "pool properties")); 179 case EZFS_POOL_NOTSUP: 180 return (dgettext(TEXT_DOMAIN, "operation not supported " 181 "on this type of pool")); 182 case EZFS_POOL_INVALARG: 183 return (dgettext(TEXT_DOMAIN, "invalid argument for " 184 "this pool operation")); 185 case EZFS_NAMETOOLONG: 186 return (dgettext(TEXT_DOMAIN, "dataset name is too long")); 187 case EZFS_OPENFAILED: 188 return (dgettext(TEXT_DOMAIN, "open failed")); 189 case EZFS_NOCAP: 190 return (dgettext(TEXT_DOMAIN, 191 "disk capacity information could not be retrieved")); 192 case EZFS_LABELFAILED: 193 return (dgettext(TEXT_DOMAIN, "write of label failed")); 194 case EZFS_BADWHO: 195 return (dgettext(TEXT_DOMAIN, "invalid user/group")); 196 case EZFS_BADPERM: 197 return (dgettext(TEXT_DOMAIN, "invalid permission")); 198 case EZFS_BADPERMSET: 199 return (dgettext(TEXT_DOMAIN, "invalid permission set name")); 200 case EZFS_NODELEGATION: 201 return (dgettext(TEXT_DOMAIN, "delegated administration is " 202 "disabled on pool")); 203 case EZFS_BADCACHE: 204 return (dgettext(TEXT_DOMAIN, "invalid or missing cache file")); 205 case EZFS_ISL2CACHE: 206 return (dgettext(TEXT_DOMAIN, "device is in use as a cache")); 207 case EZFS_VDEVNOTSUP: 208 return (dgettext(TEXT_DOMAIN, "vdev specification is not " 209 "supported")); 210 case EZFS_NOTSUP: 211 return (dgettext(TEXT_DOMAIN, "operation not supported " 212 "on this dataset")); 213 case EZFS_IOC_NOTSUPPORTED: 214 return (dgettext(TEXT_DOMAIN, "operation not supported by " 215 "zfs kernel module")); 216 case EZFS_ACTIVE_SPARE: 217 return (dgettext(TEXT_DOMAIN, "pool has active shared spare " 218 "device")); 219 case EZFS_UNPLAYED_LOGS: 220 return (dgettext(TEXT_DOMAIN, "log device has unplayed intent " 221 "logs")); 222 case EZFS_REFTAG_RELE: 223 return (dgettext(TEXT_DOMAIN, "no such tag on this dataset")); 224 case EZFS_REFTAG_HOLD: 225 return (dgettext(TEXT_DOMAIN, "tag already exists on this " 226 "dataset")); 227 case EZFS_TAGTOOLONG: 228 return (dgettext(TEXT_DOMAIN, "tag too long")); 229 case EZFS_PIPEFAILED: 230 return (dgettext(TEXT_DOMAIN, "pipe create failed")); 231 case EZFS_THREADCREATEFAILED: 232 return (dgettext(TEXT_DOMAIN, "thread create failed")); 233 case EZFS_POSTSPLIT_ONLINE: 234 return (dgettext(TEXT_DOMAIN, "disk was split from this pool " 235 "into a new one")); 236 case EZFS_SCRUB_PAUSED: 237 return (dgettext(TEXT_DOMAIN, "scrub is paused; " 238 "use 'zpool scrub' to resume scrub")); 239 case EZFS_SCRUB_PAUSED_TO_CANCEL: 240 return (dgettext(TEXT_DOMAIN, "scrub is paused; " 241 "use 'zpool scrub' to resume or 'zpool scrub -s' to " 242 "cancel scrub")); 243 case EZFS_SCRUBBING: 244 return (dgettext(TEXT_DOMAIN, "currently scrubbing; " 245 "use 'zpool scrub -s' to cancel scrub")); 246 case EZFS_ERRORSCRUBBING: 247 return (dgettext(TEXT_DOMAIN, "currently error scrubbing; " 248 "use 'zpool scrub -s' to cancel error scrub")); 249 case EZFS_ERRORSCRUB_PAUSED: 250 return (dgettext(TEXT_DOMAIN, "error scrub is paused; " 251 "use 'zpool scrub -e' to resume error scrub")); 252 case EZFS_NO_SCRUB: 253 return (dgettext(TEXT_DOMAIN, "there is no active scrub")); 254 case EZFS_DIFF: 255 return (dgettext(TEXT_DOMAIN, "unable to generate diffs")); 256 case EZFS_DIFFDATA: 257 return (dgettext(TEXT_DOMAIN, "invalid diff data")); 258 case EZFS_POOLREADONLY: 259 return (dgettext(TEXT_DOMAIN, "pool is read-only")); 260 case EZFS_NO_PENDING: 261 return (dgettext(TEXT_DOMAIN, "operation is not " 262 "in progress")); 263 case EZFS_CHECKPOINT_EXISTS: 264 return (dgettext(TEXT_DOMAIN, "checkpoint exists")); 265 case EZFS_DISCARDING_CHECKPOINT: 266 return (dgettext(TEXT_DOMAIN, "currently discarding " 267 "checkpoint")); 268 case EZFS_NO_CHECKPOINT: 269 return (dgettext(TEXT_DOMAIN, "checkpoint does not exist")); 270 case EZFS_DEVRM_IN_PROGRESS: 271 return (dgettext(TEXT_DOMAIN, "device removal in progress")); 272 case EZFS_VDEV_TOO_BIG: 273 return (dgettext(TEXT_DOMAIN, "device exceeds supported size")); 274 case EZFS_ACTIVE_POOL: 275 return (dgettext(TEXT_DOMAIN, "pool is imported on a " 276 "different host")); 277 case EZFS_CRYPTOFAILED: 278 return (dgettext(TEXT_DOMAIN, "encryption failure")); 279 case EZFS_TOOMANY: 280 return (dgettext(TEXT_DOMAIN, "argument list too long")); 281 case EZFS_INITIALIZING: 282 return (dgettext(TEXT_DOMAIN, "currently initializing")); 283 case EZFS_NO_INITIALIZE: 284 return (dgettext(TEXT_DOMAIN, "there is no active " 285 "initialization")); 286 case EZFS_WRONG_PARENT: 287 return (dgettext(TEXT_DOMAIN, "invalid parent dataset")); 288 case EZFS_TRIMMING: 289 return (dgettext(TEXT_DOMAIN, "currently trimming")); 290 case EZFS_NO_TRIM: 291 return (dgettext(TEXT_DOMAIN, "there is no active trim")); 292 case EZFS_TRIM_NOTSUP: 293 return (dgettext(TEXT_DOMAIN, "trim operations are not " 294 "supported by this device")); 295 case EZFS_NO_RESILVER_DEFER: 296 return (dgettext(TEXT_DOMAIN, "this action requires the " 297 "resilver_defer feature")); 298 case EZFS_EXPORT_IN_PROGRESS: 299 return (dgettext(TEXT_DOMAIN, "pool export in progress")); 300 case EZFS_REBUILDING: 301 return (dgettext(TEXT_DOMAIN, "currently sequentially " 302 "resilvering")); 303 case EZFS_VDEV_NOTSUP: 304 return (dgettext(TEXT_DOMAIN, "operation not supported " 305 "on this type of vdev")); 306 case EZFS_NOT_USER_NAMESPACE: 307 return (dgettext(TEXT_DOMAIN, "the provided file " 308 "was not a user namespace file")); 309 case EZFS_RESUME_EXISTS: 310 return (dgettext(TEXT_DOMAIN, "Resuming recv on existing " 311 "dataset without force")); 312 case EZFS_RAIDZ_EXPAND_IN_PROGRESS: 313 return (dgettext(TEXT_DOMAIN, "raidz expansion in progress")); 314 case EZFS_ASHIFT_MISMATCH: 315 return (dgettext(TEXT_DOMAIN, "adding devices with " 316 "different physical sector sizes is not allowed")); 317 case EZFS_NO_USER_NS_SUPPORT: 318 return (dgettext(TEXT_DOMAIN, "kernel was built without " 319 "user namespace support (CONFIG_USER_NS)")); 320 case EZFS_UNKNOWN: 321 return (dgettext(TEXT_DOMAIN, "unknown error")); 322 default: 323 assert(hdl->libzfs_error == 0); 324 return (dgettext(TEXT_DOMAIN, "no error")); 325 } 326 } 327 328 void 329 zfs_error_aux(libzfs_handle_t *hdl, const char *fmt, ...) 330 { 331 va_list ap; 332 333 va_start(ap, fmt); 334 335 (void) vsnprintf(hdl->libzfs_desc, sizeof (hdl->libzfs_desc), 336 fmt, ap); 337 hdl->libzfs_desc_active = 1; 338 339 va_end(ap); 340 } 341 342 static void 343 zfs_verror(libzfs_handle_t *hdl, int error, const char *fmt, va_list ap) 344 { 345 (void) vsnprintf(hdl->libzfs_action, sizeof (hdl->libzfs_action), 346 fmt, ap); 347 hdl->libzfs_error = error; 348 349 if (hdl->libzfs_desc_active) 350 hdl->libzfs_desc_active = 0; 351 else 352 hdl->libzfs_desc[0] = '\0'; 353 354 if (hdl->libzfs_printerr) { 355 if (error == EZFS_UNKNOWN) { 356 (void) fprintf(stderr, dgettext(TEXT_DOMAIN, "internal " 357 "error: %s: %s\n"), hdl->libzfs_action, 358 libzfs_error_description(hdl)); 359 abort(); 360 } 361 362 (void) fprintf(stderr, "%s: %s\n", hdl->libzfs_action, 363 libzfs_error_description(hdl)); 364 if (error == EZFS_NOMEM) 365 exit(1); 366 } 367 } 368 369 int 370 zfs_error(libzfs_handle_t *hdl, int error, const char *msg) 371 { 372 return (zfs_error_fmt(hdl, error, "%s", msg)); 373 } 374 375 int 376 zfs_error_fmt(libzfs_handle_t *hdl, int error, const char *fmt, ...) 377 { 378 va_list ap; 379 380 va_start(ap, fmt); 381 382 zfs_verror(hdl, error, fmt, ap); 383 384 va_end(ap); 385 386 return (-1); 387 } 388 389 static int 390 zfs_common_error(libzfs_handle_t *hdl, int error, const char *fmt, 391 va_list ap) 392 { 393 switch (error) { 394 case EPERM: 395 case EACCES: 396 zfs_verror(hdl, EZFS_PERM, fmt, ap); 397 return (-1); 398 399 case ECANCELED: 400 zfs_verror(hdl, EZFS_NODELEGATION, fmt, ap); 401 return (-1); 402 403 case EIO: 404 zfs_verror(hdl, EZFS_IO, fmt, ap); 405 return (-1); 406 407 case EFAULT: 408 zfs_verror(hdl, EZFS_FAULT, fmt, ap); 409 return (-1); 410 411 case EINTR: 412 zfs_verror(hdl, EZFS_INTR, fmt, ap); 413 return (-1); 414 415 case ECKSUM: 416 zfs_verror(hdl, EZFS_CKSUM, fmt, ap); 417 return (-1); 418 } 419 420 return (0); 421 } 422 423 int 424 zfs_standard_error(libzfs_handle_t *hdl, int error, const char *msg) 425 { 426 return (zfs_standard_error_fmt(hdl, error, "%s", msg)); 427 } 428 429 int 430 zfs_standard_error_fmt(libzfs_handle_t *hdl, int error, const char *fmt, ...) 431 { 432 va_list ap; 433 434 va_start(ap, fmt); 435 436 if (zfs_common_error(hdl, error, fmt, ap) != 0) { 437 va_end(ap); 438 return (-1); 439 } 440 441 switch (error) { 442 case ENXIO: 443 case ENODEV: 444 case EPIPE: 445 zfs_verror(hdl, EZFS_IO, fmt, ap); 446 break; 447 448 case ENOENT: 449 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 450 "dataset does not exist")); 451 zfs_verror(hdl, EZFS_NOENT, fmt, ap); 452 break; 453 454 case ENOSPC: 455 case EDQUOT: 456 zfs_verror(hdl, EZFS_NOSPC, fmt, ap); 457 break; 458 459 case EEXIST: 460 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 461 "dataset already exists")); 462 zfs_verror(hdl, EZFS_EXISTS, fmt, ap); 463 break; 464 465 case EBUSY: 466 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 467 "dataset is busy")); 468 zfs_verror(hdl, EZFS_BUSY, fmt, ap); 469 break; 470 case EROFS: 471 zfs_verror(hdl, EZFS_POOLREADONLY, fmt, ap); 472 break; 473 case ENAMETOOLONG: 474 zfs_verror(hdl, EZFS_NAMETOOLONG, fmt, ap); 475 break; 476 case ENOTSUP: 477 zfs_verror(hdl, EZFS_BADVERSION, fmt, ap); 478 break; 479 case EAGAIN: 480 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 481 "pool I/O is currently suspended")); 482 zfs_verror(hdl, EZFS_POOLUNAVAIL, fmt, ap); 483 break; 484 case EREMOTEIO: 485 zfs_verror(hdl, EZFS_ACTIVE_POOL, fmt, ap); 486 break; 487 case ZFS_ERR_UNKNOWN_SEND_STREAM_FEATURE: 488 case ZFS_ERR_IOC_CMD_UNAVAIL: 489 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, "the loaded zfs " 490 "module does not support this operation. A reboot may " 491 "be required to enable this operation.")); 492 zfs_verror(hdl, EZFS_IOC_NOTSUPPORTED, fmt, ap); 493 break; 494 case ZFS_ERR_IOC_ARG_UNAVAIL: 495 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, "the loaded zfs " 496 "module does not support an option for this operation. " 497 "A reboot may be required to enable this option.")); 498 zfs_verror(hdl, EZFS_IOC_NOTSUPPORTED, fmt, ap); 499 break; 500 case ZFS_ERR_IOC_ARG_REQUIRED: 501 case ZFS_ERR_IOC_ARG_BADTYPE: 502 zfs_verror(hdl, EZFS_IOC_NOTSUPPORTED, fmt, ap); 503 break; 504 case ZFS_ERR_WRONG_PARENT: 505 zfs_verror(hdl, EZFS_WRONG_PARENT, fmt, ap); 506 break; 507 case ZFS_ERR_BADPROP: 508 zfs_verror(hdl, EZFS_BADPROP, fmt, ap); 509 break; 510 case ZFS_ERR_NOT_USER_NAMESPACE: 511 zfs_verror(hdl, EZFS_NOT_USER_NAMESPACE, fmt, ap); 512 break; 513 case ZFS_ERR_NO_USER_NS_SUPPORT: 514 zfs_verror(hdl, EZFS_NO_USER_NS_SUPPORT, fmt, ap); 515 break; 516 default: 517 zfs_error_aux(hdl, "%s", zfs_strerror(error)); 518 zfs_verror(hdl, EZFS_UNKNOWN, fmt, ap); 519 break; 520 } 521 522 va_end(ap); 523 return (-1); 524 } 525 526 void 527 zfs_setprop_error(libzfs_handle_t *hdl, zfs_prop_t prop, int err, 528 char *errbuf) 529 { 530 switch (err) { 531 532 case ENOSPC: 533 /* 534 * For quotas and reservations, ENOSPC indicates 535 * something different; setting a quota or reservation 536 * doesn't use any disk space. 537 */ 538 switch (prop) { 539 case ZFS_PROP_QUOTA: 540 case ZFS_PROP_REFQUOTA: 541 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 542 "size is less than current used or " 543 "reserved space")); 544 (void) zfs_error(hdl, EZFS_PROPSPACE, errbuf); 545 break; 546 547 case ZFS_PROP_RESERVATION: 548 case ZFS_PROP_REFRESERVATION: 549 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 550 "size is greater than available space")); 551 (void) zfs_error(hdl, EZFS_PROPSPACE, errbuf); 552 break; 553 554 default: 555 (void) zfs_standard_error(hdl, err, errbuf); 556 break; 557 } 558 break; 559 560 case EBUSY: 561 (void) zfs_standard_error(hdl, EBUSY, errbuf); 562 break; 563 564 case EROFS: 565 (void) zfs_error(hdl, EZFS_DSREADONLY, errbuf); 566 break; 567 568 case E2BIG: 569 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 570 "property value too long")); 571 (void) zfs_error(hdl, EZFS_BADPROP, errbuf); 572 break; 573 574 case ENOTSUP: 575 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 576 "pool and or dataset must be upgraded to set this " 577 "property or value")); 578 (void) zfs_error(hdl, EZFS_BADVERSION, errbuf); 579 break; 580 581 case ERANGE: 582 if (prop == ZFS_PROP_COMPRESSION || 583 prop == ZFS_PROP_DNODESIZE || 584 prop == ZFS_PROP_RECORDSIZE) { 585 (void) zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 586 "property setting is not allowed on " 587 "bootable datasets")); 588 (void) zfs_error(hdl, EZFS_NOTSUP, errbuf); 589 } else if (prop == ZFS_PROP_CHECKSUM || 590 prop == ZFS_PROP_DEDUP) { 591 (void) zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 592 "property setting is not allowed on " 593 "root pools")); 594 (void) zfs_error(hdl, EZFS_NOTSUP, errbuf); 595 } else { 596 (void) zfs_standard_error(hdl, err, errbuf); 597 } 598 break; 599 600 case EINVAL: 601 if (prop == ZPROP_INVAL) { 602 (void) zfs_error(hdl, EZFS_BADPROP, errbuf); 603 } else { 604 (void) zfs_standard_error(hdl, err, errbuf); 605 } 606 break; 607 608 case ZFS_ERR_BADPROP: 609 (void) zfs_error(hdl, EZFS_BADPROP, errbuf); 610 break; 611 612 case EACCES: 613 if (prop == ZFS_PROP_KEYLOCATION) { 614 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 615 "keylocation may only be set on encryption roots")); 616 (void) zfs_error(hdl, EZFS_BADPROP, errbuf); 617 } else { 618 (void) zfs_standard_error(hdl, err, errbuf); 619 } 620 break; 621 622 case EOVERFLOW: 623 /* 624 * This platform can't address a volume this big. 625 */ 626 #ifdef _ILP32 627 if (prop == ZFS_PROP_VOLSIZE) { 628 (void) zfs_error(hdl, EZFS_VOLTOOBIG, errbuf); 629 break; 630 } 631 zfs_fallthrough; 632 #endif 633 default: 634 (void) zfs_standard_error(hdl, err, errbuf); 635 } 636 } 637 638 int 639 zpool_standard_error(libzfs_handle_t *hdl, int error, const char *msg) 640 { 641 return (zpool_standard_error_fmt(hdl, error, "%s", msg)); 642 } 643 644 int 645 zpool_standard_error_fmt(libzfs_handle_t *hdl, int error, const char *fmt, ...) 646 { 647 va_list ap; 648 649 va_start(ap, fmt); 650 651 if (zfs_common_error(hdl, error, fmt, ap) != 0) { 652 va_end(ap); 653 return (-1); 654 } 655 656 switch (error) { 657 case ENODEV: 658 zfs_verror(hdl, EZFS_NODEVICE, fmt, ap); 659 break; 660 661 case ENOENT: 662 zfs_error_aux(hdl, 663 dgettext(TEXT_DOMAIN, "no such pool or dataset")); 664 zfs_verror(hdl, EZFS_NOENT, fmt, ap); 665 break; 666 667 case EEXIST: 668 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 669 "pool already exists")); 670 zfs_verror(hdl, EZFS_EXISTS, fmt, ap); 671 break; 672 673 case EBUSY: 674 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, "pool is busy")); 675 zfs_verror(hdl, EZFS_BUSY, fmt, ap); 676 break; 677 678 /* There is no pending operation to cancel */ 679 case ENOTACTIVE: 680 zfs_verror(hdl, EZFS_NO_PENDING, fmt, ap); 681 break; 682 683 case ENXIO: 684 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 685 "one or more devices is currently unavailable")); 686 zfs_verror(hdl, EZFS_BADDEV, fmt, ap); 687 break; 688 689 case ENAMETOOLONG: 690 zfs_verror(hdl, EZFS_DEVOVERFLOW, fmt, ap); 691 break; 692 693 case ENOTSUP: 694 zfs_verror(hdl, EZFS_POOL_NOTSUP, fmt, ap); 695 break; 696 697 case EINVAL: 698 zfs_verror(hdl, EZFS_POOL_INVALARG, fmt, ap); 699 break; 700 701 case ENOSPC: 702 case EDQUOT: 703 zfs_verror(hdl, EZFS_NOSPC, fmt, ap); 704 break; 705 706 case EAGAIN: 707 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 708 "pool I/O is currently suspended")); 709 zfs_verror(hdl, EZFS_POOLUNAVAIL, fmt, ap); 710 break; 711 712 case EROFS: 713 zfs_verror(hdl, EZFS_POOLREADONLY, fmt, ap); 714 break; 715 case EDOM: 716 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 717 "block size out of range or does not match")); 718 zfs_verror(hdl, EZFS_BADPROP, fmt, ap); 719 break; 720 case EREMOTEIO: 721 zfs_verror(hdl, EZFS_ACTIVE_POOL, fmt, ap); 722 break; 723 case ZFS_ERR_CHECKPOINT_EXISTS: 724 zfs_verror(hdl, EZFS_CHECKPOINT_EXISTS, fmt, ap); 725 break; 726 case ZFS_ERR_DISCARDING_CHECKPOINT: 727 zfs_verror(hdl, EZFS_DISCARDING_CHECKPOINT, fmt, ap); 728 break; 729 case ZFS_ERR_NO_CHECKPOINT: 730 zfs_verror(hdl, EZFS_NO_CHECKPOINT, fmt, ap); 731 break; 732 case ZFS_ERR_DEVRM_IN_PROGRESS: 733 zfs_verror(hdl, EZFS_DEVRM_IN_PROGRESS, fmt, ap); 734 break; 735 case ZFS_ERR_VDEV_TOO_BIG: 736 zfs_verror(hdl, EZFS_VDEV_TOO_BIG, fmt, ap); 737 break; 738 case ZFS_ERR_EXPORT_IN_PROGRESS: 739 zfs_verror(hdl, EZFS_EXPORT_IN_PROGRESS, fmt, ap); 740 break; 741 case ZFS_ERR_RESILVER_IN_PROGRESS: 742 zfs_verror(hdl, EZFS_RESILVERING, fmt, ap); 743 break; 744 case ZFS_ERR_REBUILD_IN_PROGRESS: 745 zfs_verror(hdl, EZFS_REBUILDING, fmt, ap); 746 break; 747 case ZFS_ERR_BADPROP: 748 zfs_verror(hdl, EZFS_BADPROP, fmt, ap); 749 break; 750 case ZFS_ERR_VDEV_NOTSUP: 751 zfs_verror(hdl, EZFS_VDEV_NOTSUP, fmt, ap); 752 break; 753 case ZFS_ERR_IOC_CMD_UNAVAIL: 754 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, "the loaded zfs " 755 "module does not support this operation. A reboot may " 756 "be required to enable this operation.")); 757 zfs_verror(hdl, EZFS_IOC_NOTSUPPORTED, fmt, ap); 758 break; 759 case ZFS_ERR_IOC_ARG_UNAVAIL: 760 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, "the loaded zfs " 761 "module does not support an option for this operation. " 762 "A reboot may be required to enable this option.")); 763 zfs_verror(hdl, EZFS_IOC_NOTSUPPORTED, fmt, ap); 764 break; 765 case ZFS_ERR_IOC_ARG_REQUIRED: 766 case ZFS_ERR_IOC_ARG_BADTYPE: 767 zfs_verror(hdl, EZFS_IOC_NOTSUPPORTED, fmt, ap); 768 break; 769 case ZFS_ERR_RAIDZ_EXPAND_IN_PROGRESS: 770 zfs_verror(hdl, EZFS_RAIDZ_EXPAND_IN_PROGRESS, fmt, ap); 771 break; 772 case ZFS_ERR_ASHIFT_MISMATCH: 773 zfs_verror(hdl, EZFS_ASHIFT_MISMATCH, fmt, ap); 774 break; 775 case ZFS_ERR_TOO_MANY_SITOUTS: 776 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, "too many disks " 777 "already sitting out")); 778 zfs_verror(hdl, EZFS_BUSY, fmt, ap); 779 break; 780 default: 781 zfs_error_aux(hdl, "%s", zfs_strerror(error)); 782 zfs_verror(hdl, EZFS_UNKNOWN, fmt, ap); 783 } 784 785 va_end(ap); 786 return (-1); 787 } 788 789 int 790 zfs_ioctl(libzfs_handle_t *hdl, int request, zfs_cmd_t *zc) 791 { 792 return (lzc_ioctl_fd(hdl->libzfs_fd, request, zc)); 793 } 794 795 /* 796 * Display an out of memory error message and abort the current program. 797 */ 798 int 799 no_memory(libzfs_handle_t *hdl) 800 { 801 return (zfs_error(hdl, EZFS_NOMEM, "internal error")); 802 } 803 804 /* 805 * A safe form of malloc() which will die if the allocation fails. 806 */ 807 void * 808 zfs_alloc(libzfs_handle_t *hdl, size_t size) 809 { 810 void *data; 811 812 if ((data = calloc(1, size)) == NULL) 813 (void) no_memory(hdl); 814 815 return (data); 816 } 817 818 /* 819 * A safe form of asprintf() which will die if the allocation fails. 820 */ 821 char * 822 zfs_asprintf(libzfs_handle_t *hdl, const char *fmt, ...) 823 { 824 va_list ap; 825 char *ret; 826 int err; 827 828 va_start(ap, fmt); 829 830 err = vasprintf(&ret, fmt, ap); 831 832 va_end(ap); 833 834 if (err < 0) { 835 (void) no_memory(hdl); 836 ret = NULL; 837 } 838 839 return (ret); 840 } 841 842 /* 843 * A safe form of realloc(), which also zeroes newly allocated space. 844 */ 845 void * 846 zfs_realloc(libzfs_handle_t *hdl, void *ptr, size_t oldsize, size_t newsize) 847 { 848 void *ret; 849 850 if ((ret = realloc(ptr, newsize)) == NULL) { 851 (void) no_memory(hdl); 852 return (NULL); 853 } 854 855 memset((char *)ret + oldsize, 0, newsize - oldsize); 856 return (ret); 857 } 858 859 /* 860 * A safe form of strdup() which will die if the allocation fails. 861 */ 862 char * 863 zfs_strdup(libzfs_handle_t *hdl, const char *str) 864 { 865 char *ret; 866 867 if ((ret = strdup(str)) == NULL) 868 (void) no_memory(hdl); 869 870 return (ret); 871 } 872 873 void 874 libzfs_print_on_error(libzfs_handle_t *hdl, boolean_t printerr) 875 { 876 hdl->libzfs_printerr = printerr; 877 } 878 879 /* 880 * Read lines from an open file descriptor and store them in an array of 881 * strings until EOF. lines[] will be allocated and populated with all the 882 * lines read. All newlines are replaced with NULL terminators for 883 * convenience. lines[] must be freed after use with libzfs_free_str_array(). 884 * 885 * Returns the number of lines read. 886 */ 887 static int 888 libzfs_read_stdout_from_fd(int fd, char **lines[]) 889 { 890 891 FILE *fp; 892 int lines_cnt = 0; 893 size_t len = 0; 894 char *line = NULL; 895 char **tmp_lines = NULL, **tmp; 896 897 fp = fdopen(fd, "r"); 898 if (fp == NULL) { 899 close(fd); 900 return (0); 901 } 902 while (getline(&line, &len, fp) != -1) { 903 tmp = realloc(tmp_lines, sizeof (*tmp_lines) * (lines_cnt + 1)); 904 if (tmp == NULL) { 905 /* Return the lines we were able to process */ 906 break; 907 } 908 tmp_lines = tmp; 909 910 /* Remove newline if not EOF */ 911 if (line[strlen(line) - 1] == '\n') 912 line[strlen(line) - 1] = '\0'; 913 914 tmp_lines[lines_cnt] = strdup(line); 915 if (tmp_lines[lines_cnt] == NULL) 916 break; 917 ++lines_cnt; 918 } 919 free(line); 920 fclose(fp); 921 *lines = tmp_lines; 922 return (lines_cnt); 923 } 924 925 static int 926 libzfs_run_process_impl(const char *path, char *argv[], char *env[], int flags, 927 char **lines[], int *lines_cnt) 928 { 929 pid_t pid; 930 int error, devnull_fd; 931 int link[2]; 932 933 /* 934 * Setup a pipe between our child and parent process if we're 935 * reading stdout. 936 */ 937 if (lines != NULL && pipe2(link, O_NONBLOCK | O_CLOEXEC) == -1) 938 return (-EPIPE); 939 940 pid = fork(); 941 if (pid == 0) { 942 /* Child process */ 943 setpgid(0, 0); 944 devnull_fd = open("/dev/null", O_WRONLY | O_CLOEXEC); 945 946 if (devnull_fd < 0) 947 _exit(-1); 948 949 if (!(flags & STDOUT_VERBOSE) && (lines == NULL)) 950 (void) dup2(devnull_fd, STDOUT_FILENO); 951 else if (lines != NULL) { 952 /* Save the output to lines[] */ 953 dup2(link[1], STDOUT_FILENO); 954 } 955 956 if (!(flags & STDERR_VERBOSE)) 957 (void) dup2(devnull_fd, STDERR_FILENO); 958 959 if (flags & NO_DEFAULT_PATH) { 960 if (env == NULL) 961 execv(path, argv); 962 else 963 execve(path, argv, env); 964 } else { 965 if (env == NULL) 966 execvp(path, argv); 967 else 968 execvpe(path, argv, env); 969 } 970 971 _exit(-1); 972 } else if (pid > 0) { 973 /* Parent process */ 974 int status; 975 976 while ((error = waitpid(pid, &status, 0)) == -1 && 977 errno == EINTR) 978 ; 979 if (error < 0 || !WIFEXITED(status)) 980 return (-1); 981 982 if (lines != NULL) { 983 close(link[1]); 984 *lines_cnt = libzfs_read_stdout_from_fd(link[0], lines); 985 } 986 return (WEXITSTATUS(status)); 987 } 988 989 return (-1); 990 } 991 992 int 993 libzfs_run_process(const char *path, char *argv[], int flags) 994 { 995 return (libzfs_run_process_impl(path, argv, NULL, flags, NULL, NULL)); 996 } 997 998 /* 999 * Run a command and store its stdout lines in an array of strings (lines[]). 1000 * lines[] is allocated and populated for you, and the number of lines is set in 1001 * lines_cnt. lines[] must be freed after use with libzfs_free_str_array(). 1002 * All newlines (\n) in lines[] are terminated for convenience. 1003 */ 1004 int 1005 libzfs_run_process_get_stdout(const char *path, char *argv[], char *env[], 1006 char **lines[], int *lines_cnt) 1007 { 1008 return (libzfs_run_process_impl(path, argv, env, 0, lines, lines_cnt)); 1009 } 1010 1011 /* 1012 * Same as libzfs_run_process_get_stdout(), but run without $PATH set. This 1013 * means that *path needs to be the full path to the executable. 1014 */ 1015 int 1016 libzfs_run_process_get_stdout_nopath(const char *path, char *argv[], 1017 char *env[], char **lines[], int *lines_cnt) 1018 { 1019 return (libzfs_run_process_impl(path, argv, env, NO_DEFAULT_PATH, 1020 lines, lines_cnt)); 1021 } 1022 1023 /* 1024 * Free an array of strings. Free both the strings contained in the array and 1025 * the array itself. 1026 */ 1027 void 1028 libzfs_free_str_array(char **strs, int count) 1029 { 1030 while (--count >= 0) 1031 free(strs[count]); 1032 1033 free(strs); 1034 } 1035 1036 /* 1037 * Returns 1 if environment variable is set to "YES", "yes", "ON", "on", or 1038 * a non-zero number. 1039 * 1040 * Returns 0 otherwise. 1041 */ 1042 boolean_t 1043 libzfs_envvar_is_set(const char *envvar) 1044 { 1045 char *env = getenv(envvar); 1046 return (env && (strtoul(env, NULL, 0) > 0 || 1047 (!strncasecmp(env, "YES", 3) && strnlen(env, 4) == 3) || 1048 (!strncasecmp(env, "ON", 2) && strnlen(env, 3) == 2))); 1049 } 1050 1051 libzfs_handle_t * 1052 libzfs_init(void) 1053 { 1054 libzfs_handle_t *hdl; 1055 int error; 1056 char *env; 1057 1058 if ((error = libzfs_load_module()) != 0) { 1059 errno = error; 1060 return (NULL); 1061 } 1062 1063 if ((hdl = calloc(1, sizeof (libzfs_handle_t))) == NULL) { 1064 return (NULL); 1065 } 1066 1067 if (regcomp(&hdl->libzfs_urire, URI_REGEX, 0) != 0) { 1068 free(hdl); 1069 return (NULL); 1070 } 1071 1072 if ((hdl->libzfs_fd = open(ZFS_DEV, O_RDWR|O_EXCL|O_CLOEXEC)) < 0) { 1073 free(hdl); 1074 return (NULL); 1075 } 1076 1077 if (libzfs_core_init() != 0) { 1078 (void) close(hdl->libzfs_fd); 1079 free(hdl); 1080 return (NULL); 1081 } 1082 1083 zfs_prop_init(); 1084 zpool_prop_init(); 1085 zpool_feature_init(); 1086 vdev_prop_init(); 1087 libzfs_mnttab_init(hdl); 1088 fletcher_4_init(); 1089 zfs_btree_init(); 1090 1091 if (getenv("ZFS_PROP_DEBUG") != NULL) { 1092 hdl->libzfs_prop_debug = B_TRUE; 1093 } 1094 if ((env = getenv("ZFS_SENDRECV_MAX_NVLIST")) != NULL) { 1095 if ((error = zfs_nicestrtonum(hdl, env, 1096 &hdl->libzfs_max_nvlist))) { 1097 errno = error; 1098 (void) close(hdl->libzfs_fd); 1099 free(hdl); 1100 return (NULL); 1101 } 1102 } else { 1103 hdl->libzfs_max_nvlist = (SPA_MAXBLOCKSIZE * 4); 1104 } 1105 1106 /* 1107 * For testing, remove some settable properties and features 1108 */ 1109 if (libzfs_envvar_is_set("ZFS_SYSFS_PROP_SUPPORT_TEST")) { 1110 zprop_desc_t *proptbl; 1111 1112 proptbl = zpool_prop_get_table(); 1113 proptbl[ZPOOL_PROP_COMMENT].pd_zfs_mod_supported = B_FALSE; 1114 1115 proptbl = zfs_prop_get_table(); 1116 proptbl[ZFS_PROP_DNODESIZE].pd_zfs_mod_supported = B_FALSE; 1117 1118 zfeature_info_t *ftbl = spa_feature_table; 1119 ftbl[SPA_FEATURE_LARGE_BLOCKS].fi_zfs_mod_supported = B_FALSE; 1120 } 1121 1122 return (hdl); 1123 } 1124 1125 void 1126 libzfs_fini(libzfs_handle_t *hdl) 1127 { 1128 (void) close(hdl->libzfs_fd); 1129 zpool_free_handles(hdl); 1130 namespace_clear(hdl); 1131 libzfs_mnttab_fini(hdl); 1132 libzfs_core_fini(); 1133 regfree(&hdl->libzfs_urire); 1134 zfs_btree_fini(); 1135 fletcher_4_fini(); 1136 #if LIBFETCH_DYNAMIC 1137 if (hdl->libfetch != (void *)-1 && hdl->libfetch != NULL) 1138 (void) dlclose(hdl->libfetch); 1139 free(hdl->libfetch_load_error); 1140 #endif 1141 free(hdl); 1142 } 1143 1144 libzfs_handle_t * 1145 zpool_get_handle(zpool_handle_t *zhp) 1146 { 1147 return (zhp->zpool_hdl); 1148 } 1149 1150 libzfs_handle_t * 1151 zfs_get_handle(zfs_handle_t *zhp) 1152 { 1153 return (zhp->zfs_hdl); 1154 } 1155 1156 zpool_handle_t * 1157 zfs_get_pool_handle(const zfs_handle_t *zhp) 1158 { 1159 return (zhp->zpool_hdl); 1160 } 1161 1162 /* 1163 * Given a name, determine whether or not it's a valid path 1164 * (starts with '/' or "./"). If so, walk the mnttab trying 1165 * to match the device number. If not, treat the path as an 1166 * fs/vol/snap/bkmark name. 1167 */ 1168 zfs_handle_t * 1169 zfs_path_to_zhandle(libzfs_handle_t *hdl, const char *path, zfs_type_t argtype) 1170 { 1171 struct stat64 statbuf; 1172 struct mnttab entry; 1173 1174 if (path[0] != '/' && strncmp(path, "./", strlen("./")) != 0) { 1175 /* 1176 * It's not a valid path, assume it's a name of type 'argtype'. 1177 */ 1178 return (zfs_open(hdl, path, argtype)); 1179 } 1180 1181 if (getextmntent(path, &entry, &statbuf) != 0) 1182 return (NULL); 1183 1184 if (strcmp(entry.mnt_fstype, MNTTYPE_ZFS) != 0) { 1185 (void) fprintf(stderr, gettext("'%s': not a ZFS filesystem\n"), 1186 path); 1187 return (NULL); 1188 } 1189 1190 return (zfs_open(hdl, entry.mnt_special, ZFS_TYPE_FILESYSTEM)); 1191 } 1192 1193 /* 1194 * Initialize the zc_nvlist_dst member to prepare for receiving an nvlist from 1195 * an ioctl(). 1196 */ 1197 void 1198 zcmd_alloc_dst_nvlist(libzfs_handle_t *hdl, zfs_cmd_t *zc, size_t len) 1199 { 1200 if (len == 0) 1201 len = 256 * 1024; 1202 zc->zc_nvlist_dst_size = len; 1203 zc->zc_nvlist_dst = 1204 (uint64_t)(uintptr_t)zfs_alloc(hdl, zc->zc_nvlist_dst_size); 1205 } 1206 1207 /* 1208 * Called when an ioctl() which returns an nvlist fails with ENOMEM. This will 1209 * expand the nvlist to the size specified in 'zc_nvlist_dst_size', which was 1210 * filled in by the kernel to indicate the actual required size. 1211 */ 1212 void 1213 zcmd_expand_dst_nvlist(libzfs_handle_t *hdl, zfs_cmd_t *zc) 1214 { 1215 free((void *)(uintptr_t)zc->zc_nvlist_dst); 1216 zc->zc_nvlist_dst = 1217 (uint64_t)(uintptr_t)zfs_alloc(hdl, zc->zc_nvlist_dst_size); 1218 } 1219 1220 /* 1221 * Called to free the src and dst nvlists stored in the command structure. 1222 */ 1223 void 1224 zcmd_free_nvlists(zfs_cmd_t *zc) 1225 { 1226 free((void *)(uintptr_t)zc->zc_nvlist_conf); 1227 free((void *)(uintptr_t)zc->zc_nvlist_src); 1228 free((void *)(uintptr_t)zc->zc_nvlist_dst); 1229 zc->zc_nvlist_conf = 0; 1230 zc->zc_nvlist_src = 0; 1231 zc->zc_nvlist_dst = 0; 1232 } 1233 1234 static void 1235 zcmd_write_nvlist_com(libzfs_handle_t *hdl, uint64_t *outnv, uint64_t *outlen, 1236 nvlist_t *nvl) 1237 { 1238 char *packed; 1239 1240 size_t len = fnvlist_size(nvl); 1241 packed = zfs_alloc(hdl, len); 1242 1243 verify(nvlist_pack(nvl, &packed, &len, NV_ENCODE_NATIVE, 0) == 0); 1244 1245 *outnv = (uint64_t)(uintptr_t)packed; 1246 *outlen = len; 1247 } 1248 1249 void 1250 zcmd_write_conf_nvlist(libzfs_handle_t *hdl, zfs_cmd_t *zc, nvlist_t *nvl) 1251 { 1252 zcmd_write_nvlist_com(hdl, &zc->zc_nvlist_conf, 1253 &zc->zc_nvlist_conf_size, nvl); 1254 } 1255 1256 void 1257 zcmd_write_src_nvlist(libzfs_handle_t *hdl, zfs_cmd_t *zc, nvlist_t *nvl) 1258 { 1259 zcmd_write_nvlist_com(hdl, &zc->zc_nvlist_src, 1260 &zc->zc_nvlist_src_size, nvl); 1261 } 1262 1263 /* 1264 * Unpacks an nvlist from the ZFS ioctl command structure. 1265 */ 1266 int 1267 zcmd_read_dst_nvlist(libzfs_handle_t *hdl, zfs_cmd_t *zc, nvlist_t **nvlp) 1268 { 1269 if (nvlist_unpack((void *)(uintptr_t)zc->zc_nvlist_dst, 1270 zc->zc_nvlist_dst_size, nvlp, 0) != 0) 1271 return (no_memory(hdl)); 1272 1273 return (0); 1274 } 1275 1276 /* 1277 * ================================================================ 1278 * API shared by zfs and zpool property management 1279 * ================================================================ 1280 */ 1281 1282 void 1283 zcmd_print_json(nvlist_t *nvl) 1284 { 1285 nvlist_print_json(stdout, nvl); 1286 (void) putchar('\n'); 1287 nvlist_free(nvl); 1288 } 1289 1290 static void 1291 zprop_print_headers(zprop_get_cbdata_t *cbp, zfs_type_t type) 1292 { 1293 zprop_list_t *pl; 1294 int i; 1295 char *title; 1296 size_t len; 1297 1298 cbp->cb_first = B_FALSE; 1299 if (cbp->cb_scripted) 1300 return; 1301 1302 /* 1303 * Start with the length of the column headers. 1304 */ 1305 cbp->cb_colwidths[GET_COL_NAME] = strlen(dgettext(TEXT_DOMAIN, "NAME")); 1306 cbp->cb_colwidths[GET_COL_PROPERTY] = strlen(dgettext(TEXT_DOMAIN, 1307 "PROPERTY")); 1308 cbp->cb_colwidths[GET_COL_VALUE] = strlen(dgettext(TEXT_DOMAIN, 1309 "VALUE")); 1310 cbp->cb_colwidths[GET_COL_RECVD] = strlen(dgettext(TEXT_DOMAIN, 1311 "RECEIVED")); 1312 cbp->cb_colwidths[GET_COL_SOURCE] = strlen(dgettext(TEXT_DOMAIN, 1313 "SOURCE")); 1314 1315 /* first property is always NAME */ 1316 assert(cbp->cb_proplist->pl_prop == 1317 ((type == ZFS_TYPE_POOL) ? ZPOOL_PROP_NAME : 1318 ((type == ZFS_TYPE_VDEV) ? VDEV_PROP_NAME : ZFS_PROP_NAME))); 1319 1320 /* 1321 * Go through and calculate the widths for each column. For the 1322 * 'source' column, we kludge it up by taking the worst-case scenario of 1323 * inheriting from the longest name. This is acceptable because in the 1324 * majority of cases 'SOURCE' is the last column displayed, and we don't 1325 * use the width anyway. Note that the 'VALUE' column can be oversized, 1326 * if the name of the property is much longer than any values we find. 1327 */ 1328 for (pl = cbp->cb_proplist; pl != NULL; pl = pl->pl_next) { 1329 /* 1330 * 'PROPERTY' column 1331 */ 1332 if (pl->pl_prop != ZPROP_USERPROP) { 1333 const char *propname = (type == ZFS_TYPE_POOL) ? 1334 zpool_prop_to_name(pl->pl_prop) : 1335 ((type == ZFS_TYPE_VDEV) ? 1336 vdev_prop_to_name(pl->pl_prop) : 1337 zfs_prop_to_name(pl->pl_prop)); 1338 1339 assert(propname != NULL); 1340 len = strlen(propname); 1341 if (len > cbp->cb_colwidths[GET_COL_PROPERTY]) 1342 cbp->cb_colwidths[GET_COL_PROPERTY] = len; 1343 } else { 1344 assert(pl->pl_user_prop != NULL); 1345 len = strlen(pl->pl_user_prop); 1346 if (len > cbp->cb_colwidths[GET_COL_PROPERTY]) 1347 cbp->cb_colwidths[GET_COL_PROPERTY] = len; 1348 } 1349 1350 /* 1351 * 'VALUE' column. The first property is always the 'name' 1352 * property that was tacked on either by /sbin/zfs's 1353 * zfs_do_get() or when calling zprop_expand_list(), so we 1354 * ignore its width. If the user specified the name property 1355 * to display, then it will be later in the list in any case. 1356 */ 1357 if (pl != cbp->cb_proplist && 1358 pl->pl_width > cbp->cb_colwidths[GET_COL_VALUE]) 1359 cbp->cb_colwidths[GET_COL_VALUE] = pl->pl_width; 1360 1361 /* 'RECEIVED' column. */ 1362 if (pl != cbp->cb_proplist && 1363 pl->pl_recvd_width > cbp->cb_colwidths[GET_COL_RECVD]) 1364 cbp->cb_colwidths[GET_COL_RECVD] = pl->pl_recvd_width; 1365 1366 /* 1367 * 'NAME' and 'SOURCE' columns 1368 */ 1369 if (pl->pl_prop == ((type == ZFS_TYPE_POOL) ? ZPOOL_PROP_NAME : 1370 ((type == ZFS_TYPE_VDEV) ? VDEV_PROP_NAME : 1371 ZFS_PROP_NAME)) && pl->pl_width > 1372 cbp->cb_colwidths[GET_COL_NAME]) { 1373 cbp->cb_colwidths[GET_COL_NAME] = pl->pl_width; 1374 cbp->cb_colwidths[GET_COL_SOURCE] = pl->pl_width + 1375 strlen(dgettext(TEXT_DOMAIN, "inherited from")); 1376 } 1377 } 1378 1379 /* 1380 * Now go through and print the headers. 1381 */ 1382 for (i = 0; i < ZFS_GET_NCOLS; i++) { 1383 switch (cbp->cb_columns[i]) { 1384 case GET_COL_NAME: 1385 title = dgettext(TEXT_DOMAIN, "NAME"); 1386 break; 1387 case GET_COL_PROPERTY: 1388 title = dgettext(TEXT_DOMAIN, "PROPERTY"); 1389 break; 1390 case GET_COL_VALUE: 1391 title = dgettext(TEXT_DOMAIN, "VALUE"); 1392 break; 1393 case GET_COL_RECVD: 1394 title = dgettext(TEXT_DOMAIN, "RECEIVED"); 1395 break; 1396 case GET_COL_SOURCE: 1397 title = dgettext(TEXT_DOMAIN, "SOURCE"); 1398 break; 1399 default: 1400 title = NULL; 1401 } 1402 1403 if (title != NULL) { 1404 if (i == (ZFS_GET_NCOLS - 1) || 1405 cbp->cb_columns[i + 1] == GET_COL_NONE) 1406 (void) printf("%s", title); 1407 else 1408 (void) printf("%-*s ", 1409 cbp->cb_colwidths[cbp->cb_columns[i]], 1410 title); 1411 } 1412 } 1413 (void) printf("\n"); 1414 } 1415 1416 /* 1417 * Add property value and source to provided nvlist, according to 1418 * settings in cb structure. Later to be printed in JSON format. 1419 */ 1420 int 1421 zprop_nvlist_one_property(const char *propname, 1422 const char *value, zprop_source_t sourcetype, const char *source, 1423 const char *recvd_value, nvlist_t *nvl, boolean_t as_int) 1424 { 1425 int ret = 0; 1426 nvlist_t *src_nv, *prop; 1427 boolean_t all_numeric = strspn(value, STR_NUMS) == strlen(value); 1428 src_nv = prop = NULL; 1429 1430 if ((nvlist_alloc(&prop, NV_UNIQUE_NAME, 0) != 0) || 1431 (nvlist_alloc(&src_nv, NV_UNIQUE_NAME, 0) != 0)) { 1432 ret = -1; 1433 goto err; 1434 } 1435 1436 if (as_int && all_numeric) { 1437 uint64_t val; 1438 sscanf(value, "%lld", (u_longlong_t *)&val); 1439 if (nvlist_add_uint64(prop, "value", val) != 0) { 1440 ret = -1; 1441 goto err; 1442 } 1443 } else { 1444 if (nvlist_add_string(prop, "value", value) != 0) { 1445 ret = -1; 1446 goto err; 1447 } 1448 } 1449 1450 switch (sourcetype) { 1451 case ZPROP_SRC_NONE: 1452 if (nvlist_add_string(src_nv, "type", "NONE") != 0 || 1453 (nvlist_add_string(src_nv, "data", "-") != 0)) { 1454 ret = -1; 1455 goto err; 1456 } 1457 break; 1458 case ZPROP_SRC_DEFAULT: 1459 if (nvlist_add_string(src_nv, "type", "DEFAULT") != 0 || 1460 (nvlist_add_string(src_nv, "data", "-") != 0)) { 1461 ret = -1; 1462 goto err; 1463 } 1464 break; 1465 case ZPROP_SRC_LOCAL: 1466 if (nvlist_add_string(src_nv, "type", "LOCAL") != 0 || 1467 (nvlist_add_string(src_nv, "data", "-") != 0)) { 1468 ret = -1; 1469 goto err; 1470 } 1471 break; 1472 case ZPROP_SRC_TEMPORARY: 1473 if (nvlist_add_string(src_nv, "type", "TEMPORARY") != 0 || 1474 (nvlist_add_string(src_nv, "data", "-") != 0)) { 1475 ret = -1; 1476 goto err; 1477 } 1478 break; 1479 case ZPROP_SRC_INHERITED: 1480 if (nvlist_add_string(src_nv, "type", "INHERITED") != 0 || 1481 (nvlist_add_string(src_nv, "data", source) != 0)) { 1482 ret = -1; 1483 goto err; 1484 } 1485 break; 1486 case ZPROP_SRC_RECEIVED: 1487 if (nvlist_add_string(src_nv, "type", "RECEIVED") != 0 || 1488 (nvlist_add_string(src_nv, "data", 1489 (recvd_value == NULL ? "-" : recvd_value)) != 0)) { 1490 ret = -1; 1491 goto err; 1492 } 1493 break; 1494 default: 1495 assert(!"unhandled zprop_source_t"); 1496 if (nvlist_add_string(src_nv, "type", 1497 "unhandled zprop_source_t") != 0) { 1498 ret = -1; 1499 goto err; 1500 } 1501 } 1502 if ((nvlist_add_nvlist(prop, "source", src_nv) != 0) || 1503 (nvlist_add_nvlist(nvl, propname, prop)) != 0) { 1504 ret = -1; 1505 goto err; 1506 } 1507 err: 1508 nvlist_free(src_nv); 1509 nvlist_free(prop); 1510 return (ret); 1511 } 1512 1513 /* 1514 * Display a single line of output, according to the settings in the callback 1515 * structure. 1516 */ 1517 void 1518 zprop_print_one_property(const char *name, zprop_get_cbdata_t *cbp, 1519 const char *propname, const char *value, zprop_source_t sourcetype, 1520 const char *source, const char *recvd_value) 1521 { 1522 int i; 1523 const char *str = NULL; 1524 char buf[128]; 1525 1526 /* 1527 * Ignore those source types that the user has chosen to ignore. 1528 */ 1529 if ((sourcetype & cbp->cb_sources) == 0) 1530 return; 1531 1532 if (cbp->cb_first) 1533 zprop_print_headers(cbp, cbp->cb_type); 1534 1535 for (i = 0; i < ZFS_GET_NCOLS; i++) { 1536 switch (cbp->cb_columns[i]) { 1537 case GET_COL_NAME: 1538 str = name; 1539 break; 1540 1541 case GET_COL_PROPERTY: 1542 str = propname; 1543 break; 1544 1545 case GET_COL_VALUE: 1546 str = value; 1547 break; 1548 1549 case GET_COL_SOURCE: 1550 switch (sourcetype) { 1551 case ZPROP_SRC_NONE: 1552 str = "-"; 1553 break; 1554 1555 case ZPROP_SRC_DEFAULT: 1556 str = "default"; 1557 break; 1558 1559 case ZPROP_SRC_LOCAL: 1560 str = "local"; 1561 break; 1562 1563 case ZPROP_SRC_TEMPORARY: 1564 str = "temporary"; 1565 break; 1566 1567 case ZPROP_SRC_INHERITED: 1568 (void) snprintf(buf, sizeof (buf), 1569 "inherited from %s", source); 1570 str = buf; 1571 break; 1572 case ZPROP_SRC_RECEIVED: 1573 str = "received"; 1574 break; 1575 1576 default: 1577 str = NULL; 1578 assert(!"unhandled zprop_source_t"); 1579 } 1580 break; 1581 1582 case GET_COL_RECVD: 1583 str = (recvd_value == NULL ? "-" : recvd_value); 1584 break; 1585 1586 default: 1587 continue; 1588 } 1589 1590 if (i == (ZFS_GET_NCOLS - 1) || 1591 cbp->cb_columns[i + 1] == GET_COL_NONE) 1592 (void) printf("%s", str); 1593 else if (cbp->cb_scripted) 1594 (void) printf("%s\t", str); 1595 else 1596 (void) printf("%-*s ", 1597 cbp->cb_colwidths[cbp->cb_columns[i]], 1598 str); 1599 } 1600 1601 (void) printf("\n"); 1602 } 1603 1604 int 1605 zprop_collect_property(const char *name, zprop_get_cbdata_t *cbp, 1606 const char *propname, const char *value, zprop_source_t sourcetype, 1607 const char *source, const char *recvd_value, nvlist_t *nvl) 1608 { 1609 if (cbp->cb_json) { 1610 if ((sourcetype & cbp->cb_sources) == 0) 1611 return (0); 1612 else { 1613 return (zprop_nvlist_one_property(propname, value, 1614 sourcetype, source, recvd_value, nvl, 1615 cbp->cb_json_as_int)); 1616 } 1617 } else { 1618 zprop_print_one_property(name, cbp, 1619 propname, value, sourcetype, source, recvd_value); 1620 return (0); 1621 } 1622 } 1623 1624 /* 1625 * Given a numeric suffix, convert the value into a number of bits that the 1626 * resulting value must be shifted. 1627 */ 1628 static int 1629 str2shift(libzfs_handle_t *hdl, const char *buf) 1630 { 1631 const char *ends = "BKMGTPEZ"; 1632 int i, len; 1633 1634 if (buf[0] == '\0') 1635 return (0); 1636 1637 len = strlen(ends); 1638 for (i = 0; i < len; i++) { 1639 if (toupper(buf[0]) == ends[i]) 1640 break; 1641 } 1642 if (i == len) { 1643 if (hdl) 1644 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 1645 "invalid numeric suffix '%s'"), buf); 1646 return (-1); 1647 } 1648 1649 /* 1650 * Allow 'G' = 'GB' = 'GiB', case-insensitively. 1651 * However, 'BB' and 'BiB' are disallowed. 1652 */ 1653 if (buf[1] == '\0' || 1654 (toupper(buf[0]) != 'B' && 1655 ((toupper(buf[1]) == 'B' && buf[2] == '\0') || 1656 (toupper(buf[1]) == 'I' && toupper(buf[2]) == 'B' && 1657 buf[3] == '\0')))) 1658 return (10 * i); 1659 1660 if (hdl) 1661 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 1662 "invalid numeric suffix '%s'"), buf); 1663 return (-1); 1664 } 1665 1666 /* 1667 * Convert a string of the form '100G' into a real number. Used when setting 1668 * properties or creating a volume. 'buf' is used to place an extended error 1669 * message for the caller to use. 1670 */ 1671 int 1672 zfs_nicestrtonum(libzfs_handle_t *hdl, const char *value, uint64_t *num) 1673 { 1674 char *end; 1675 int shift; 1676 1677 *num = 0; 1678 1679 /* Check to see if this looks like a number. */ 1680 if ((value[0] < '0' || value[0] > '9') && value[0] != '.') { 1681 if (hdl) 1682 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 1683 "bad numeric value '%s'"), value); 1684 return (-1); 1685 } 1686 1687 /* Rely on strtoull() to process the numeric portion. */ 1688 errno = 0; 1689 *num = strtoull(value, &end, 10); 1690 1691 /* 1692 * Check for ERANGE, which indicates that the value is too large to fit 1693 * in a 64-bit value. 1694 */ 1695 if (errno == ERANGE) { 1696 if (hdl) 1697 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 1698 "numeric value is too large")); 1699 return (-1); 1700 } 1701 1702 /* 1703 * If we have a decimal value, then do the computation with floating 1704 * point arithmetic. Otherwise, use standard arithmetic. 1705 */ 1706 if (*end == '.') { 1707 double fval = strtod(value, &end); 1708 1709 if ((shift = str2shift(hdl, end)) == -1) 1710 return (-1); 1711 1712 fval *= pow(2, shift); 1713 1714 /* 1715 * UINT64_MAX is not exactly representable as a double. 1716 * The closest representation is UINT64_MAX + 1, so we 1717 * use a >= comparison instead of > for the bounds check. 1718 */ 1719 if (fval >= (double)UINT64_MAX) { 1720 if (hdl) 1721 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 1722 "numeric value is too large")); 1723 return (-1); 1724 } 1725 1726 *num = (uint64_t)fval; 1727 } else { 1728 if ((shift = str2shift(hdl, end)) == -1) 1729 return (-1); 1730 1731 /* Check for overflow */ 1732 if (shift >= 64 || (*num << shift) >> shift != *num) { 1733 if (hdl) 1734 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 1735 "numeric value is too large")); 1736 return (-1); 1737 } 1738 1739 *num <<= shift; 1740 } 1741 1742 return (0); 1743 } 1744 1745 /* 1746 * Given a propname=value nvpair to set, parse any numeric properties 1747 * (index, boolean, etc) if they are specified as strings and add the 1748 * resulting nvpair to the returned nvlist. 1749 * 1750 * At the DSL layer, all properties are either 64-bit numbers or strings. 1751 * We want the user to be able to ignore this fact and specify properties 1752 * as native values (numbers, for example) or as strings (to simplify 1753 * command line utilities). This also handles converting index types 1754 * (compression, checksum, etc) from strings to their on-disk index. 1755 */ 1756 int 1757 zprop_parse_value(libzfs_handle_t *hdl, nvpair_t *elem, int prop, 1758 zfs_type_t type, nvlist_t *ret, const char **svalp, uint64_t *ivalp, 1759 const char *errbuf) 1760 { 1761 data_type_t datatype = nvpair_type(elem); 1762 zprop_type_t proptype; 1763 const char *propname; 1764 const char *value; 1765 boolean_t isnone = B_FALSE; 1766 boolean_t isauto = B_FALSE; 1767 int err = 0; 1768 1769 if (type == ZFS_TYPE_POOL) { 1770 proptype = zpool_prop_get_type(prop); 1771 propname = zpool_prop_to_name(prop); 1772 } else if (type == ZFS_TYPE_VDEV) { 1773 proptype = vdev_prop_get_type(prop); 1774 propname = vdev_prop_to_name(prop); 1775 } else { 1776 proptype = zfs_prop_get_type(prop); 1777 propname = zfs_prop_to_name(prop); 1778 } 1779 1780 /* 1781 * Convert any properties to the internal DSL value types. 1782 */ 1783 *svalp = NULL; 1784 *ivalp = 0; 1785 1786 switch (proptype) { 1787 case PROP_TYPE_STRING: 1788 if (datatype != DATA_TYPE_STRING) { 1789 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 1790 "'%s' must be a string"), nvpair_name(elem)); 1791 goto error; 1792 } 1793 err = nvpair_value_string(elem, svalp); 1794 if (err != 0) { 1795 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 1796 "'%s' is invalid"), nvpair_name(elem)); 1797 goto error; 1798 } 1799 if (strlen(*svalp) >= ZFS_MAXPROPLEN) { 1800 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 1801 "'%s' is too long"), nvpair_name(elem)); 1802 goto error; 1803 } 1804 break; 1805 1806 case PROP_TYPE_NUMBER: 1807 if (datatype == DATA_TYPE_STRING) { 1808 (void) nvpair_value_string(elem, &value); 1809 if (strcmp(value, "none") == 0) { 1810 isnone = B_TRUE; 1811 } else if (strcmp(value, "auto") == 0) { 1812 isauto = B_TRUE; 1813 } else if (zfs_nicestrtonum(hdl, value, ivalp) != 0) { 1814 goto error; 1815 } 1816 } else if (datatype == DATA_TYPE_UINT64) { 1817 (void) nvpair_value_uint64(elem, ivalp); 1818 } else { 1819 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 1820 "'%s' must be a number"), nvpair_name(elem)); 1821 goto error; 1822 } 1823 1824 /* 1825 * Quota special: force 'none' and don't allow 0. 1826 */ 1827 if ((type & ZFS_TYPE_DATASET) && *ivalp == 0 && !isnone && 1828 (prop == ZFS_PROP_QUOTA || prop == ZFS_PROP_REFQUOTA)) { 1829 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 1830 "use 'none' to disable quota/refquota")); 1831 goto error; 1832 } 1833 /* 1834 * Pool dedup table quota; force use of 'none' instead of 0 1835 */ 1836 if ((type & ZFS_TYPE_POOL) && *ivalp == 0 && 1837 (!isnone && !isauto) && 1838 prop == ZPOOL_PROP_DEDUP_TABLE_QUOTA) { 1839 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 1840 "use 'none' to disable ddt table quota")); 1841 goto error; 1842 } 1843 1844 /* 1845 * Special handling for "*_limit=none". In this case it's not 1846 * 0 but UINT64_MAX. 1847 */ 1848 if ((type & ZFS_TYPE_DATASET) && isnone && 1849 (prop == ZFS_PROP_FILESYSTEM_LIMIT || 1850 prop == ZFS_PROP_SNAPSHOT_LIMIT)) { 1851 *ivalp = UINT64_MAX; 1852 } 1853 1854 /* 1855 * Special handling for "checksum_*=none". In this case it's not 1856 * 0 but UINT64_MAX. 1857 */ 1858 if ((type & ZFS_TYPE_VDEV) && isnone && 1859 (prop == VDEV_PROP_CHECKSUM_N || 1860 prop == VDEV_PROP_CHECKSUM_T || 1861 prop == VDEV_PROP_IO_N || 1862 prop == VDEV_PROP_IO_T || 1863 prop == VDEV_PROP_SLOW_IO_N || 1864 prop == VDEV_PROP_SLOW_IO_T)) { 1865 *ivalp = UINT64_MAX; 1866 } 1867 1868 /* 1869 * Special handling for setting 'refreservation' to 'auto'. Use 1870 * UINT64_MAX to tell the caller to use zfs_fix_auto_resv(). 1871 * 'auto' is only allowed on volumes. 1872 */ 1873 if (isauto) { 1874 switch (prop) { 1875 case ZFS_PROP_REFRESERVATION: 1876 if ((type & ZFS_TYPE_VOLUME) == 0) { 1877 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 1878 "'%s=auto' only allowed on " 1879 "volumes"), nvpair_name(elem)); 1880 goto error; 1881 } 1882 *ivalp = UINT64_MAX; 1883 break; 1884 case ZPOOL_PROP_DEDUP_TABLE_QUOTA: 1885 ASSERT(type & ZFS_TYPE_POOL); 1886 *ivalp = UINT64_MAX; 1887 break; 1888 default: 1889 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 1890 "'auto' is invalid value for '%s'"), 1891 nvpair_name(elem)); 1892 goto error; 1893 } 1894 } 1895 1896 break; 1897 1898 case PROP_TYPE_INDEX: 1899 if (datatype != DATA_TYPE_STRING) { 1900 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 1901 "'%s' must be a string"), nvpair_name(elem)); 1902 goto error; 1903 } 1904 1905 (void) nvpair_value_string(elem, &value); 1906 1907 if (zprop_string_to_index(prop, value, ivalp, type) != 0) { 1908 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 1909 "'%s' must be one of '%s'"), propname, 1910 zprop_values(prop, type)); 1911 goto error; 1912 } 1913 break; 1914 1915 default: 1916 abort(); 1917 } 1918 1919 /* 1920 * Add the result to our return set of properties. 1921 */ 1922 if (*svalp != NULL) { 1923 if (nvlist_add_string(ret, propname, *svalp) != 0) { 1924 (void) no_memory(hdl); 1925 return (-1); 1926 } 1927 } else { 1928 if (nvlist_add_uint64(ret, propname, *ivalp) != 0) { 1929 (void) no_memory(hdl); 1930 return (-1); 1931 } 1932 } 1933 1934 return (0); 1935 error: 1936 (void) zfs_error(hdl, EZFS_BADPROP, errbuf); 1937 return (-1); 1938 } 1939 1940 static int 1941 addlist(libzfs_handle_t *hdl, const char *propname, zprop_list_t **listp, 1942 zfs_type_t type) 1943 { 1944 int prop = zprop_name_to_prop(propname, type); 1945 if (prop != ZPROP_INVAL && !zprop_valid_for_type(prop, type, B_FALSE)) 1946 prop = ZPROP_INVAL; 1947 1948 /* 1949 * Return failure if no property table entry was found and this isn't 1950 * a user-defined property. 1951 */ 1952 if (prop == ZPROP_USERPROP && ((type == ZFS_TYPE_POOL && 1953 !zfs_prop_user(propname) && 1954 !zpool_prop_feature(propname) && 1955 !zpool_prop_unsupported(propname)) || 1956 ((type == ZFS_TYPE_DATASET) && !zfs_prop_user(propname) && 1957 !zfs_prop_userquota(propname) && !zfs_prop_written(propname)) || 1958 ((type == ZFS_TYPE_VDEV) && !vdev_prop_user(propname)))) { 1959 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 1960 "invalid property '%s'"), propname); 1961 return (zfs_error(hdl, EZFS_BADPROP, 1962 dgettext(TEXT_DOMAIN, "bad property list"))); 1963 } 1964 1965 zprop_list_t *entry = zfs_alloc(hdl, sizeof (*entry)); 1966 1967 entry->pl_prop = prop; 1968 if (prop == ZPROP_USERPROP) { 1969 entry->pl_user_prop = zfs_strdup(hdl, propname); 1970 entry->pl_width = strlen(propname); 1971 } else { 1972 entry->pl_width = zprop_width(prop, &entry->pl_fixed, 1973 type); 1974 } 1975 1976 *listp = entry; 1977 1978 return (0); 1979 } 1980 1981 /* 1982 * Given a comma-separated list of properties, construct a property list 1983 * containing both user-defined and native properties. This function will 1984 * return a NULL list if 'all' is specified, which can later be expanded 1985 * by zprop_expand_list(). 1986 */ 1987 int 1988 zprop_get_list(libzfs_handle_t *hdl, char *props, zprop_list_t **listp, 1989 zfs_type_t type) 1990 { 1991 *listp = NULL; 1992 1993 /* 1994 * If 'all' is specified, return a NULL list. 1995 */ 1996 if (strcmp(props, "all") == 0) 1997 return (0); 1998 1999 /* 2000 * If no props were specified, return an error. 2001 */ 2002 if (props[0] == '\0') { 2003 zfs_error_aux(hdl, dgettext(TEXT_DOMAIN, 2004 "no properties specified")); 2005 return (zfs_error(hdl, EZFS_BADPROP, dgettext(TEXT_DOMAIN, 2006 "bad property list"))); 2007 } 2008 2009 for (char *p; (p = strsep(&props, ",")); ) 2010 if (strcmp(p, "space") == 0) { 2011 static const char *const spaceprops[] = { 2012 "name", "avail", "used", "usedbysnapshots", 2013 "usedbydataset", "usedbyrefreservation", 2014 "usedbychildren" 2015 }; 2016 2017 for (int i = 0; i < ARRAY_SIZE(spaceprops); i++) { 2018 if (addlist(hdl, spaceprops[i], listp, type)) 2019 return (-1); 2020 listp = &(*listp)->pl_next; 2021 } 2022 } else { 2023 if (addlist(hdl, p, listp, type)) 2024 return (-1); 2025 listp = &(*listp)->pl_next; 2026 } 2027 2028 return (0); 2029 } 2030 2031 void 2032 zprop_free_list(zprop_list_t *pl) 2033 { 2034 zprop_list_t *next; 2035 2036 while (pl != NULL) { 2037 next = pl->pl_next; 2038 free(pl->pl_user_prop); 2039 free(pl); 2040 pl = next; 2041 } 2042 } 2043 2044 typedef struct expand_data { 2045 zprop_list_t **last; 2046 libzfs_handle_t *hdl; 2047 zfs_type_t type; 2048 } expand_data_t; 2049 2050 static int 2051 zprop_expand_list_cb(int prop, void *cb) 2052 { 2053 zprop_list_t *entry; 2054 expand_data_t *edp = cb; 2055 2056 entry = zfs_alloc(edp->hdl, sizeof (zprop_list_t)); 2057 2058 entry->pl_prop = prop; 2059 entry->pl_width = zprop_width(prop, &entry->pl_fixed, edp->type); 2060 entry->pl_all = B_TRUE; 2061 2062 *(edp->last) = entry; 2063 edp->last = &entry->pl_next; 2064 2065 return (ZPROP_CONT); 2066 } 2067 2068 int 2069 zprop_expand_list(libzfs_handle_t *hdl, zprop_list_t **plp, zfs_type_t type) 2070 { 2071 zprop_list_t *entry; 2072 zprop_list_t **last; 2073 expand_data_t exp; 2074 2075 if (*plp == NULL) { 2076 /* 2077 * If this is the very first time we've been called for an 'all' 2078 * specification, expand the list to include all native 2079 * properties. 2080 */ 2081 last = plp; 2082 2083 exp.last = last; 2084 exp.hdl = hdl; 2085 exp.type = type; 2086 2087 if (zprop_iter_common(zprop_expand_list_cb, &exp, B_FALSE, 2088 B_FALSE, type) == ZPROP_INVAL) 2089 return (-1); 2090 2091 /* 2092 * Add 'name' to the beginning of the list, which is handled 2093 * specially. 2094 */ 2095 entry = zfs_alloc(hdl, sizeof (zprop_list_t)); 2096 entry->pl_prop = ((type == ZFS_TYPE_POOL) ? ZPOOL_PROP_NAME : 2097 ((type == ZFS_TYPE_VDEV) ? VDEV_PROP_NAME : ZFS_PROP_NAME)); 2098 entry->pl_width = zprop_width(entry->pl_prop, 2099 &entry->pl_fixed, type); 2100 entry->pl_all = B_TRUE; 2101 entry->pl_next = *plp; 2102 *plp = entry; 2103 } 2104 return (0); 2105 } 2106 2107 int 2108 zprop_iter(zprop_func func, void *cb, boolean_t show_all, boolean_t ordered, 2109 zfs_type_t type) 2110 { 2111 return (zprop_iter_common(func, cb, show_all, ordered, type)); 2112 } 2113 2114 const char * 2115 zfs_version_userland(void) 2116 { 2117 return (ZFS_META_ALIAS); 2118 } 2119 2120 /* 2121 * Prints both zfs userland and kernel versions 2122 * Returns 0 on success, and -1 on error 2123 */ 2124 int 2125 zfs_version_print(void) 2126 { 2127 (void) puts(ZFS_META_ALIAS); 2128 2129 char *kver = zfs_version_kernel(); 2130 if (kver == NULL) { 2131 fprintf(stderr, "zfs_version_kernel() failed: %s\n", 2132 zfs_strerror(errno)); 2133 return (-1); 2134 } 2135 2136 (void) printf("zfs-kmod-%s\n", kver); 2137 free(kver); 2138 return (0); 2139 } 2140 2141 /* 2142 * Returns an nvlist with both zfs userland and kernel versions. 2143 * Returns NULL on error. 2144 */ 2145 nvlist_t * 2146 zfs_version_nvlist(void) 2147 { 2148 nvlist_t *nvl; 2149 char kmod_ver[64]; 2150 if (nvlist_alloc(&nvl, NV_UNIQUE_NAME, 0) != 0) 2151 return (NULL); 2152 if (nvlist_add_string(nvl, "userland", ZFS_META_ALIAS) != 0) 2153 goto err; 2154 char *kver = zfs_version_kernel(); 2155 if (kver == NULL) { 2156 fprintf(stderr, "zfs_version_kernel() failed: %s\n", 2157 zfs_strerror(errno)); 2158 goto err; 2159 } 2160 (void) snprintf(kmod_ver, 64, "zfs-kmod-%s", kver); 2161 if (nvlist_add_string(nvl, "kernel", kmod_ver) != 0) 2162 goto err; 2163 return (nvl); 2164 err: 2165 nvlist_free(nvl); 2166 return (NULL); 2167 } 2168 2169 /* 2170 * Return 1 if the user requested ANSI color output, and our terminal supports 2171 * it. Return 0 for no color. 2172 */ 2173 int 2174 use_color(void) 2175 { 2176 static int use_color = -1; 2177 char *term; 2178 2179 /* 2180 * Optimization: 2181 * 2182 * For each zpool invocation, we do a single check to see if we should 2183 * be using color or not, and cache that value for the lifetime of the 2184 * the zpool command. That makes it cheap to call use_color() when 2185 * we're printing with color. We assume that the settings are not going 2186 * to change during the invocation of a zpool command (the user isn't 2187 * going to change the ZFS_COLOR value while zpool is running, for 2188 * example). 2189 */ 2190 if (use_color != -1) { 2191 /* 2192 * We've already figured out if we should be using color or 2193 * not. Return the cached value. 2194 */ 2195 return (use_color); 2196 } 2197 2198 term = getenv("TERM"); 2199 /* 2200 * The user sets the ZFS_COLOR env var set to enable zpool ANSI color 2201 * output. However if NO_COLOR is set (https://no-color.org/) then 2202 * don't use it. Also, don't use color if terminal doesn't support 2203 * it. 2204 */ 2205 if (libzfs_envvar_is_set("ZFS_COLOR") && 2206 !libzfs_envvar_is_set("NO_COLOR") && 2207 isatty(STDOUT_FILENO) && term && strcmp("dumb", term) != 0 && 2208 strcmp("unknown", term) != 0) { 2209 /* Color supported */ 2210 use_color = 1; 2211 } else { 2212 use_color = 0; 2213 } 2214 2215 return (use_color); 2216 } 2217 2218 /* 2219 * The functions color_start() and color_end() are used for when you want 2220 * to colorize a block of text. 2221 * 2222 * For example: 2223 * color_start(ANSI_RED) 2224 * printf("hello"); 2225 * printf("world"); 2226 * color_end(); 2227 */ 2228 void 2229 color_start(const char *color) 2230 { 2231 if (color && use_color()) { 2232 fputs(color, stdout); 2233 fflush(stdout); 2234 } 2235 } 2236 2237 void 2238 color_end(void) 2239 { 2240 if (use_color()) { 2241 fputs(ANSI_RESET, stdout); 2242 fflush(stdout); 2243 } 2244 2245 } 2246 2247 /* 2248 * printf() with a color. If color is NULL, then do a normal printf. 2249 */ 2250 int 2251 printf_color(const char *color, const char *format, ...) 2252 { 2253 va_list aptr; 2254 int rc; 2255 2256 if (color) 2257 color_start(color); 2258 2259 va_start(aptr, format); 2260 rc = vprintf(format, aptr); 2261 va_end(aptr); 2262 2263 if (color) 2264 color_end(); 2265 2266 return (rc); 2267 } 2268 2269 /* PATH + 5 env vars + a NULL entry = 7 */ 2270 #define ZPOOL_VDEV_SCRIPT_ENV_COUNT 7 2271 2272 /* 2273 * There's a few places where ZFS will call external scripts (like the script 2274 * in zpool.d/ and `zfs_prepare_disk`). These scripts are called with a 2275 * reduced $PATH, and some vdev specific environment vars set. This function 2276 * will allocate an populate the environment variable array that is passed to 2277 * these scripts. The user must free the arrays with zpool_vdev_free_env() when 2278 * they are done. 2279 * 2280 * The following env vars will be set (but value could be blank): 2281 * 2282 * POOL_NAME 2283 * VDEV_PATH 2284 * VDEV_UPATH 2285 * VDEV_ENC_SYSFS_PATH 2286 * 2287 * In addition, you can set an optional environment variable named 'opt_key' 2288 * to 'opt_val' if you want. 2289 * 2290 * Returns allocated env[] array on success, NULL otherwise. 2291 */ 2292 char ** 2293 zpool_vdev_script_alloc_env(const char *pool_name, 2294 const char *vdev_path, const char *vdev_upath, 2295 const char *vdev_enc_sysfs_path, const char *opt_key, const char *opt_val) 2296 { 2297 char **env = NULL; 2298 int rc; 2299 2300 env = calloc(ZPOOL_VDEV_SCRIPT_ENV_COUNT, sizeof (*env)); 2301 if (!env) 2302 return (NULL); 2303 2304 env[0] = strdup("PATH=/bin:/sbin:/usr/bin:/usr/sbin"); 2305 if (!env[0]) 2306 goto error; 2307 2308 /* Setup our custom environment variables */ 2309 rc = asprintf(&env[1], "POOL_NAME=%s", pool_name ? pool_name : ""); 2310 if (rc == -1) { 2311 env[1] = NULL; 2312 goto error; 2313 } 2314 2315 rc = asprintf(&env[2], "VDEV_PATH=%s", vdev_path ? vdev_path : ""); 2316 if (rc == -1) { 2317 env[2] = NULL; 2318 goto error; 2319 } 2320 2321 rc = asprintf(&env[3], "VDEV_UPATH=%s", vdev_upath ? vdev_upath : ""); 2322 if (rc == -1) { 2323 env[3] = NULL; 2324 goto error; 2325 } 2326 2327 rc = asprintf(&env[4], "VDEV_ENC_SYSFS_PATH=%s", 2328 vdev_enc_sysfs_path ? vdev_enc_sysfs_path : ""); 2329 if (rc == -1) { 2330 env[4] = NULL; 2331 goto error; 2332 } 2333 2334 if (opt_key != NULL) { 2335 rc = asprintf(&env[5], "%s=%s", opt_key, 2336 opt_val ? opt_val : ""); 2337 if (rc == -1) { 2338 env[5] = NULL; 2339 goto error; 2340 } 2341 } 2342 2343 return (env); 2344 2345 error: 2346 for (int i = 0; i < ZPOOL_VDEV_SCRIPT_ENV_COUNT; i++) 2347 free(env[i]); 2348 2349 free(env); 2350 2351 return (NULL); 2352 } 2353 2354 /* 2355 * Free the env[] array that was allocated by zpool_vdev_script_alloc_env(). 2356 */ 2357 void 2358 zpool_vdev_script_free_env(char **env) 2359 { 2360 for (int i = 0; i < ZPOOL_VDEV_SCRIPT_ENV_COUNT; i++) 2361 free(env[i]); 2362 2363 free(env); 2364 } 2365 2366 /* 2367 * Prepare a disk by (optionally) running a program before labeling the disk. 2368 * This can be useful for installing disk firmware or doing some pre-flight 2369 * checks on the disk before it becomes part of the pool. The program run is 2370 * located at ZFSEXECDIR/zfs_prepare_disk 2371 * (E.x: /usr/local/libexec/zfs/zfs_prepare_disk). 2372 * 2373 * Return 0 on success, non-zero on failure. 2374 */ 2375 int 2376 zpool_prepare_disk(zpool_handle_t *zhp, nvlist_t *vdev_nv, 2377 const char *prepare_str, char **lines[], int *lines_cnt) 2378 { 2379 const char *script_path = ZFSEXECDIR "/zfs_prepare_disk"; 2380 const char *pool_name; 2381 int rc = 0; 2382 2383 /* Path to script and a NULL entry */ 2384 char *argv[2] = {(char *)script_path}; 2385 char **env = NULL; 2386 const char *path = NULL, *enc_sysfs_path = NULL; 2387 char *upath; 2388 *lines_cnt = 0; 2389 2390 if (access(script_path, X_OK) != 0) { 2391 /* No script, nothing to do */ 2392 return (0); 2393 } 2394 2395 (void) nvlist_lookup_string(vdev_nv, ZPOOL_CONFIG_PATH, &path); 2396 (void) nvlist_lookup_string(vdev_nv, ZPOOL_CONFIG_VDEV_ENC_SYSFS_PATH, 2397 &enc_sysfs_path); 2398 2399 upath = zfs_get_underlying_path(path); 2400 if (upath == NULL && path != NULL) 2401 upath = strdup(path); 2402 pool_name = zhp ? zpool_get_name(zhp) : NULL; 2403 2404 env = zpool_vdev_script_alloc_env(pool_name, path, upath, 2405 enc_sysfs_path, "VDEV_PREPARE", prepare_str); 2406 2407 free(upath); 2408 2409 if (env == NULL) { 2410 return (ENOMEM); 2411 } 2412 2413 rc = libzfs_run_process_get_stdout(script_path, argv, env, lines, 2414 lines_cnt); 2415 2416 zpool_vdev_script_free_env(env); 2417 2418 return (rc); 2419 } 2420 2421 /* 2422 * Optionally run a script and then label a disk. The script can be used to 2423 * prepare a disk for inclusion into the pool. For example, it might update 2424 * the disk's firmware or check its health. 2425 * 2426 * The 'name' provided is the short name, stripped of any leading 2427 * /dev path, and is passed to zpool_label_disk. vdev_nv is the nvlist for 2428 * the vdev. prepare_str is a string that gets passed as the VDEV_PREPARE 2429 * env variable to the script. 2430 * 2431 * The following env vars are passed to the script: 2432 * 2433 * POOL_NAME: The pool name (blank during zpool create) 2434 * VDEV_PREPARE: Reason why the disk is being prepared for inclusion: 2435 * "create", "add", "replace", or "autoreplace" 2436 * VDEV_PATH: Path to the disk 2437 * VDEV_UPATH: One of the 'underlying paths' to the disk. This is 2438 * useful for DM devices. 2439 * VDEV_ENC_SYSFS_PATH: Path to the disk's enclosure sysfs path, if available. 2440 * 2441 * Note, some of these values can be blank. 2442 * 2443 * Return 0 on success, non-zero otherwise. 2444 */ 2445 int 2446 zpool_prepare_and_label_disk(libzfs_handle_t *hdl, zpool_handle_t *zhp, 2447 const char *name, nvlist_t *vdev_nv, const char *prepare_str, 2448 char **lines[], int *lines_cnt) 2449 { 2450 int rc; 2451 char vdev_path[MAXPATHLEN]; 2452 (void) snprintf(vdev_path, sizeof (vdev_path), "%s/%s", DISK_ROOT, 2453 name); 2454 2455 /* zhp will be NULL when creating a pool */ 2456 rc = zpool_prepare_disk(zhp, vdev_nv, prepare_str, lines, lines_cnt); 2457 if (rc != 0) 2458 return (rc); 2459 2460 rc = zpool_label_disk(hdl, zhp, name); 2461 return (rc); 2462 } 2463