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) 2006, 2010, Oracle and/or its affiliates. All rights reserved. 24 * Copyright (c) 2011, 2018 by Delphix. All rights reserved. 25 * Copyright (c) 2014 Integros [integros.com] 26 * Copyright 2017 Joyent, Inc. 27 */ 28 29 #include <sys/spa.h> 30 #include <sys/spa_impl.h> 31 #include <sys/zap.h> 32 #include <sys/dsl_synctask.h> 33 #include <sys/dmu_tx.h> 34 #include <sys/dmu_objset.h> 35 #include <sys/dsl_dataset.h> 36 #include <sys/dsl_dir.h> 37 #include <sys/cmn_err.h> 38 #include <sys/sunddi.h> 39 #include <sys/cred.h> 40 #include "zfs_comutil.h" 41 #include "zfs_gitrev.h" 42 #ifdef _KERNEL 43 #include <sys/zone.h> 44 #endif 45 46 /* 47 * Routines to manage the on-disk history log. 48 * 49 * The history log is stored as a dmu object containing 50 * <packed record length, record nvlist> tuples. 51 * 52 * Where "record nvlist" is an nvlist containing uint64_ts and strings, and 53 * "packed record length" is the packed length of the "record nvlist" stored 54 * as a little endian uint64_t. 55 * 56 * The log is implemented as a ring buffer, though the original creation 57 * of the pool ('zpool create') is never overwritten. 58 * 59 * The history log is tracked as object 'spa_t::spa_history'. The bonus buffer 60 * of 'spa_history' stores the offsets for logging/retrieving history as 61 * 'spa_history_phys_t'. 'sh_pool_create_len' is the ending offset in bytes of 62 * where the 'zpool create' record is stored. This allows us to never 63 * overwrite the original creation of the pool. 'sh_phys_max_off' is the 64 * physical ending offset in bytes of the log. This tells you the length of 65 * the buffer. 'sh_eof' is the logical EOF (in bytes). Whenever a record 66 * is added, 'sh_eof' is incremented by the size of the record. 67 * 'sh_eof' is never decremented. 'sh_bof' is the logical BOF (in bytes). 68 * This is where the consumer should start reading from after reading in 69 * the 'zpool create' portion of the log. 70 * 71 * 'sh_records_lost' keeps track of how many records have been overwritten 72 * and permanently lost. 73 */ 74 75 /* convert a logical offset to physical */ 76 static uint64_t 77 spa_history_log_to_phys(uint64_t log_off, spa_history_phys_t *shpp) 78 { 79 uint64_t phys_len; 80 81 phys_len = shpp->sh_phys_max_off - shpp->sh_pool_create_len; 82 return ((log_off - shpp->sh_pool_create_len) % phys_len 83 + shpp->sh_pool_create_len); 84 } 85 86 void 87 spa_history_create_obj(spa_t *spa, dmu_tx_t *tx) 88 { 89 dmu_buf_t *dbp; 90 spa_history_phys_t *shpp; 91 objset_t *mos = spa->spa_meta_objset; 92 93 ASSERT0(spa->spa_history); 94 spa->spa_history = dmu_object_alloc(mos, DMU_OT_SPA_HISTORY, 95 SPA_OLD_MAXBLOCKSIZE, DMU_OT_SPA_HISTORY_OFFSETS, 96 sizeof (spa_history_phys_t), tx); 97 98 VERIFY0(zap_add(mos, DMU_POOL_DIRECTORY_OBJECT, 99 DMU_POOL_HISTORY, sizeof (uint64_t), 1, 100 &spa->spa_history, tx)); 101 102 VERIFY0(dmu_bonus_hold(mos, spa->spa_history, FTAG, &dbp)); 103 ASSERT3U(dbp->db_size, >=, sizeof (spa_history_phys_t)); 104 105 shpp = dbp->db_data; 106 dmu_buf_will_dirty(dbp, tx); 107 108 /* 109 * Figure out maximum size of history log. We set it at 110 * 0.1% of pool size, with a max of 1G and min of 128KB. 111 */ 112 shpp->sh_phys_max_off = 113 metaslab_class_get_dspace(spa_normal_class(spa)) / 1000; 114 shpp->sh_phys_max_off = MIN(shpp->sh_phys_max_off, 1<<30); 115 shpp->sh_phys_max_off = MAX(shpp->sh_phys_max_off, 128<<10); 116 117 dmu_buf_rele(dbp, FTAG); 118 } 119 120 /* 121 * Change 'sh_bof' to the beginning of the next record. 122 */ 123 static int 124 spa_history_advance_bof(spa_t *spa, spa_history_phys_t *shpp) 125 { 126 objset_t *mos = spa->spa_meta_objset; 127 uint64_t firstread, reclen, phys_bof; 128 char buf[sizeof (reclen)]; 129 int err; 130 131 phys_bof = spa_history_log_to_phys(shpp->sh_bof, shpp); 132 firstread = MIN(sizeof (reclen), shpp->sh_phys_max_off - phys_bof); 133 134 if ((err = dmu_read(mos, spa->spa_history, phys_bof, firstread, 135 buf, DMU_READ_PREFETCH)) != 0) 136 return (err); 137 if (firstread != sizeof (reclen)) { 138 if ((err = dmu_read(mos, spa->spa_history, 139 shpp->sh_pool_create_len, sizeof (reclen) - firstread, 140 buf + firstread, DMU_READ_PREFETCH)) != 0) 141 return (err); 142 } 143 144 reclen = LE_64(*((uint64_t *)buf)); 145 shpp->sh_bof += reclen + sizeof (reclen); 146 shpp->sh_records_lost++; 147 return (0); 148 } 149 150 static int 151 spa_history_write(spa_t *spa, void *buf, uint64_t len, spa_history_phys_t *shpp, 152 dmu_tx_t *tx) 153 { 154 uint64_t firstwrite, phys_eof; 155 objset_t *mos = spa->spa_meta_objset; 156 int err; 157 158 ASSERT(MUTEX_HELD(&spa->spa_history_lock)); 159 160 /* see if we need to reset logical BOF */ 161 while (shpp->sh_phys_max_off - shpp->sh_pool_create_len - 162 (shpp->sh_eof - shpp->sh_bof) <= len) { 163 if ((err = spa_history_advance_bof(spa, shpp)) != 0) { 164 return (err); 165 } 166 } 167 168 phys_eof = spa_history_log_to_phys(shpp->sh_eof, shpp); 169 firstwrite = MIN(len, shpp->sh_phys_max_off - phys_eof); 170 shpp->sh_eof += len; 171 dmu_write(mos, spa->spa_history, phys_eof, firstwrite, buf, tx); 172 173 len -= firstwrite; 174 if (len > 0) { 175 /* write out the rest at the beginning of physical file */ 176 dmu_write(mos, spa->spa_history, shpp->sh_pool_create_len, 177 len, (char *)buf + firstwrite, tx); 178 } 179 180 return (0); 181 } 182 183 /* 184 * Post a history sysevent. 185 * 186 * The nvlist_t* passed into this function will be transformed into a new 187 * nvlist where: 188 * 189 * 1. Nested nvlists will be flattened to a single level 190 * 2. Keys will have their names normalized (to remove any problematic 191 * characters, such as whitespace) 192 * 193 * The nvlist_t passed into this function will duplicated and should be freed 194 * by caller. 195 * 196 */ 197 static void 198 spa_history_log_notify(spa_t *spa, nvlist_t *nvl) 199 { 200 nvlist_t *hist_nvl = fnvlist_alloc(); 201 uint64_t uint64; 202 char *string; 203 204 if (nvlist_lookup_string(nvl, ZPOOL_HIST_CMD, &string) == 0) 205 fnvlist_add_string(hist_nvl, ZFS_EV_HIST_CMD, string); 206 207 if (nvlist_lookup_string(nvl, ZPOOL_HIST_INT_NAME, &string) == 0) 208 fnvlist_add_string(hist_nvl, ZFS_EV_HIST_INT_NAME, string); 209 210 if (nvlist_lookup_string(nvl, ZPOOL_HIST_ZONE, &string) == 0) 211 fnvlist_add_string(hist_nvl, ZFS_EV_HIST_ZONE, string); 212 213 if (nvlist_lookup_string(nvl, ZPOOL_HIST_HOST, &string) == 0) 214 fnvlist_add_string(hist_nvl, ZFS_EV_HIST_HOST, string); 215 216 if (nvlist_lookup_string(nvl, ZPOOL_HIST_DSNAME, &string) == 0) 217 fnvlist_add_string(hist_nvl, ZFS_EV_HIST_DSNAME, string); 218 219 if (nvlist_lookup_string(nvl, ZPOOL_HIST_INT_STR, &string) == 0) 220 fnvlist_add_string(hist_nvl, ZFS_EV_HIST_INT_STR, string); 221 222 if (nvlist_lookup_string(nvl, ZPOOL_HIST_IOCTL, &string) == 0) 223 fnvlist_add_string(hist_nvl, ZFS_EV_HIST_IOCTL, string); 224 225 if (nvlist_lookup_string(nvl, ZPOOL_HIST_INT_NAME, &string) == 0) 226 fnvlist_add_string(hist_nvl, ZFS_EV_HIST_INT_NAME, string); 227 228 if (nvlist_lookup_uint64(nvl, ZPOOL_HIST_DSID, &uint64) == 0) 229 fnvlist_add_uint64(hist_nvl, ZFS_EV_HIST_DSID, uint64); 230 231 if (nvlist_lookup_uint64(nvl, ZPOOL_HIST_TXG, &uint64) == 0) 232 fnvlist_add_uint64(hist_nvl, ZFS_EV_HIST_TXG, uint64); 233 234 if (nvlist_lookup_uint64(nvl, ZPOOL_HIST_TIME, &uint64) == 0) 235 fnvlist_add_uint64(hist_nvl, ZFS_EV_HIST_TIME, uint64); 236 237 if (nvlist_lookup_uint64(nvl, ZPOOL_HIST_WHO, &uint64) == 0) 238 fnvlist_add_uint64(hist_nvl, ZFS_EV_HIST_WHO, uint64); 239 240 if (nvlist_lookup_uint64(nvl, ZPOOL_HIST_INT_EVENT, &uint64) == 0) 241 fnvlist_add_uint64(hist_nvl, ZFS_EV_HIST_INT_EVENT, uint64); 242 243 spa_event_notify(spa, NULL, hist_nvl, ESC_ZFS_HISTORY_EVENT); 244 245 nvlist_free(hist_nvl); 246 } 247 248 /* 249 * Write out a history event. 250 */ 251 /*ARGSUSED*/ 252 static void 253 spa_history_log_sync(void *arg, dmu_tx_t *tx) 254 { 255 nvlist_t *nvl = arg; 256 spa_t *spa = dmu_tx_pool(tx)->dp_spa; 257 objset_t *mos = spa->spa_meta_objset; 258 dmu_buf_t *dbp; 259 spa_history_phys_t *shpp; 260 size_t reclen; 261 uint64_t le_len; 262 char *record_packed = NULL; 263 int ret; 264 265 /* 266 * If we have an older pool that doesn't have a command 267 * history object, create it now. 268 */ 269 mutex_enter(&spa->spa_history_lock); 270 if (!spa->spa_history) 271 spa_history_create_obj(spa, tx); 272 mutex_exit(&spa->spa_history_lock); 273 274 /* 275 * Get the offset of where we need to write via the bonus buffer. 276 * Update the offset when the write completes. 277 */ 278 VERIFY0(dmu_bonus_hold(mos, spa->spa_history, FTAG, &dbp)); 279 shpp = dbp->db_data; 280 281 dmu_buf_will_dirty(dbp, tx); 282 283 #ifdef ZFS_DEBUG 284 { 285 dmu_object_info_t doi; 286 dmu_object_info_from_db(dbp, &doi); 287 ASSERT3U(doi.doi_bonus_type, ==, DMU_OT_SPA_HISTORY_OFFSETS); 288 } 289 #endif 290 291 fnvlist_add_string(nvl, ZPOOL_HIST_HOST, utsname()->nodename); 292 293 if (nvlist_exists(nvl, ZPOOL_HIST_CMD)) { 294 zfs_dbgmsg("command: %s", 295 fnvlist_lookup_string(nvl, ZPOOL_HIST_CMD)); 296 } else if (nvlist_exists(nvl, ZPOOL_HIST_INT_NAME)) { 297 if (nvlist_exists(nvl, ZPOOL_HIST_DSNAME)) { 298 zfs_dbgmsg("txg %lld %s %s (id %llu) %s", 299 (longlong_t)fnvlist_lookup_uint64(nvl, 300 ZPOOL_HIST_TXG), 301 fnvlist_lookup_string(nvl, ZPOOL_HIST_INT_NAME), 302 fnvlist_lookup_string(nvl, ZPOOL_HIST_DSNAME), 303 (u_longlong_t)fnvlist_lookup_uint64(nvl, 304 ZPOOL_HIST_DSID), 305 fnvlist_lookup_string(nvl, ZPOOL_HIST_INT_STR)); 306 } else { 307 zfs_dbgmsg("txg %lld %s %s", 308 (longlong_t)fnvlist_lookup_uint64(nvl, 309 ZPOOL_HIST_TXG), 310 fnvlist_lookup_string(nvl, ZPOOL_HIST_INT_NAME), 311 fnvlist_lookup_string(nvl, ZPOOL_HIST_INT_STR)); 312 } 313 /* 314 * The history sysevent is posted only for internal history 315 * messages to show what has happened, not how it happened. For 316 * example, the following command: 317 * 318 * # zfs destroy -r tank/foo 319 * 320 * will result in one sysevent posted per dataset that is 321 * destroyed as a result of the command - which could be more 322 * than one event in total. By contrast, if the sysevent was 323 * posted as a result of the ZPOOL_HIST_CMD key being present 324 * it would result in only one sysevent being posted with the 325 * full command line arguments, requiring the consumer to know 326 * how to parse and understand zfs(8) command invocations. 327 */ 328 spa_history_log_notify(spa, nvl); 329 } else if (nvlist_exists(nvl, ZPOOL_HIST_IOCTL)) { 330 zfs_dbgmsg("ioctl %s", 331 fnvlist_lookup_string(nvl, ZPOOL_HIST_IOCTL)); 332 } 333 334 VERIFY3U(nvlist_pack(nvl, &record_packed, &reclen, NV_ENCODE_NATIVE, 335 KM_SLEEP), ==, 0); 336 337 mutex_enter(&spa->spa_history_lock); 338 339 /* write out the packed length as little endian */ 340 le_len = LE_64((uint64_t)reclen); 341 ret = spa_history_write(spa, &le_len, sizeof (le_len), shpp, tx); 342 if (!ret) 343 ret = spa_history_write(spa, record_packed, reclen, shpp, tx); 344 345 /* The first command is the create, which we keep forever */ 346 if (ret == 0 && shpp->sh_pool_create_len == 0 && 347 nvlist_exists(nvl, ZPOOL_HIST_CMD)) { 348 shpp->sh_pool_create_len = shpp->sh_bof = shpp->sh_eof; 349 } 350 351 mutex_exit(&spa->spa_history_lock); 352 fnvlist_pack_free(record_packed, reclen); 353 dmu_buf_rele(dbp, FTAG); 354 fnvlist_free(nvl); 355 } 356 357 /* 358 * Write out a history event. 359 */ 360 int 361 spa_history_log(spa_t *spa, const char *msg) 362 { 363 int err; 364 nvlist_t *nvl = fnvlist_alloc(); 365 366 fnvlist_add_string(nvl, ZPOOL_HIST_CMD, msg); 367 err = spa_history_log_nvl(spa, nvl); 368 fnvlist_free(nvl); 369 return (err); 370 } 371 372 int 373 spa_history_log_nvl(spa_t *spa, nvlist_t *nvl) 374 { 375 int err = 0; 376 dmu_tx_t *tx; 377 nvlist_t *nvarg, *in_nvl = NULL; 378 379 if (spa_version(spa) < SPA_VERSION_ZPOOL_HISTORY || !spa_writeable(spa)) 380 return (SET_ERROR(EINVAL)); 381 382 err = nvlist_lookup_nvlist(nvl, ZPOOL_HIST_INPUT_NVL, &in_nvl); 383 if (err == 0) { 384 (void) nvlist_remove_all(in_nvl, ZPOOL_HIDDEN_ARGS); 385 } 386 387 tx = dmu_tx_create_dd(spa_get_dsl(spa)->dp_mos_dir); 388 err = dmu_tx_assign(tx, TXG_WAIT); 389 if (err) { 390 dmu_tx_abort(tx); 391 return (err); 392 } 393 394 VERIFY0(nvlist_dup(nvl, &nvarg, KM_SLEEP)); 395 if (spa_history_zone() != NULL) { 396 fnvlist_add_string(nvarg, ZPOOL_HIST_ZONE, 397 spa_history_zone()); 398 } 399 fnvlist_add_uint64(nvarg, ZPOOL_HIST_WHO, crgetruid(CRED())); 400 401 /* 402 * Since the history is recorded asynchronously, the effective time is 403 * now, which may be considerably before the change is made on disk. 404 */ 405 fnvlist_add_uint64(nvarg, ZPOOL_HIST_TIME, gethrestime_sec()); 406 407 /* Kick this off asynchronously; errors are ignored. */ 408 dsl_sync_task_nowait(spa_get_dsl(spa), spa_history_log_sync, nvarg, tx); 409 dmu_tx_commit(tx); 410 411 /* spa_history_log_sync will free nvl */ 412 return (err); 413 } 414 415 /* 416 * Read out the command history. 417 */ 418 int 419 spa_history_get(spa_t *spa, uint64_t *offp, uint64_t *len, char *buf) 420 { 421 objset_t *mos = spa->spa_meta_objset; 422 dmu_buf_t *dbp; 423 uint64_t read_len, phys_read_off, phys_eof; 424 uint64_t leftover = 0; 425 spa_history_phys_t *shpp; 426 int err; 427 428 /* 429 * If the command history doesn't exist (older pool), 430 * that's ok, just return ENOENT. 431 */ 432 if (!spa->spa_history) 433 return (SET_ERROR(ENOENT)); 434 435 /* 436 * The history is logged asynchronously, so when they request 437 * the first chunk of history, make sure everything has been 438 * synced to disk so that we get it. 439 */ 440 if (*offp == 0 && spa_writeable(spa)) 441 txg_wait_synced(spa_get_dsl(spa), 0); 442 443 if ((err = dmu_bonus_hold(mos, spa->spa_history, FTAG, &dbp)) != 0) 444 return (err); 445 shpp = dbp->db_data; 446 447 #ifdef ZFS_DEBUG 448 { 449 dmu_object_info_t doi; 450 dmu_object_info_from_db(dbp, &doi); 451 ASSERT3U(doi.doi_bonus_type, ==, DMU_OT_SPA_HISTORY_OFFSETS); 452 } 453 #endif 454 455 mutex_enter(&spa->spa_history_lock); 456 phys_eof = spa_history_log_to_phys(shpp->sh_eof, shpp); 457 458 if (*offp < shpp->sh_pool_create_len) { 459 /* read in just the zpool create history */ 460 phys_read_off = *offp; 461 read_len = MIN(*len, shpp->sh_pool_create_len - 462 phys_read_off); 463 } else { 464 /* 465 * Need to reset passed in offset to BOF if the passed in 466 * offset has since been overwritten. 467 */ 468 *offp = MAX(*offp, shpp->sh_bof); 469 phys_read_off = spa_history_log_to_phys(*offp, shpp); 470 471 /* 472 * Read up to the minimum of what the user passed down or 473 * the EOF (physical or logical). If we hit physical EOF, 474 * use 'leftover' to read from the physical BOF. 475 */ 476 if (phys_read_off <= phys_eof) { 477 read_len = MIN(*len, phys_eof - phys_read_off); 478 } else { 479 read_len = MIN(*len, 480 shpp->sh_phys_max_off - phys_read_off); 481 if (phys_read_off + *len > shpp->sh_phys_max_off) { 482 leftover = MIN(*len - read_len, 483 phys_eof - shpp->sh_pool_create_len); 484 } 485 } 486 } 487 488 /* offset for consumer to use next */ 489 *offp += read_len + leftover; 490 491 /* tell the consumer how much you actually read */ 492 *len = read_len + leftover; 493 494 if (read_len == 0) { 495 mutex_exit(&spa->spa_history_lock); 496 dmu_buf_rele(dbp, FTAG); 497 return (0); 498 } 499 500 err = dmu_read(mos, spa->spa_history, phys_read_off, read_len, buf, 501 DMU_READ_PREFETCH); 502 if (leftover && err == 0) { 503 err = dmu_read(mos, spa->spa_history, shpp->sh_pool_create_len, 504 leftover, buf + read_len, DMU_READ_PREFETCH); 505 } 506 mutex_exit(&spa->spa_history_lock); 507 508 dmu_buf_rele(dbp, FTAG); 509 return (err); 510 } 511 512 /* 513 * The nvlist will be consumed by this call. 514 */ 515 static void 516 log_internal(nvlist_t *nvl, const char *operation, spa_t *spa, 517 dmu_tx_t *tx, const char *fmt, va_list adx) 518 { 519 char *msg; 520 521 /* 522 * If this is part of creating a pool, not everything is 523 * initialized yet, so don't bother logging the internal events. 524 * Likewise if the pool is not writeable. 525 */ 526 if (spa_is_initializing(spa) || !spa_writeable(spa)) { 527 fnvlist_free(nvl); 528 return; 529 } 530 531 msg = kmem_vasprintf(fmt, adx); 532 fnvlist_add_string(nvl, ZPOOL_HIST_INT_STR, msg); 533 kmem_strfree(msg); 534 535 fnvlist_add_string(nvl, ZPOOL_HIST_INT_NAME, operation); 536 fnvlist_add_uint64(nvl, ZPOOL_HIST_TXG, tx->tx_txg); 537 fnvlist_add_uint64(nvl, ZPOOL_HIST_TIME, gethrestime_sec()); 538 539 if (dmu_tx_is_syncing(tx)) { 540 spa_history_log_sync(nvl, tx); 541 } else { 542 dsl_sync_task_nowait(spa_get_dsl(spa), 543 spa_history_log_sync, nvl, tx); 544 } 545 /* spa_history_log_sync() will free nvl */ 546 } 547 548 void 549 spa_history_log_internal(spa_t *spa, const char *operation, 550 dmu_tx_t *tx, const char *fmt, ...) 551 { 552 dmu_tx_t *htx = tx; 553 va_list adx; 554 555 /* create a tx if we didn't get one */ 556 if (tx == NULL) { 557 htx = dmu_tx_create_dd(spa_get_dsl(spa)->dp_mos_dir); 558 if (dmu_tx_assign(htx, TXG_WAIT) != 0) { 559 dmu_tx_abort(htx); 560 return; 561 } 562 } 563 564 va_start(adx, fmt); 565 log_internal(fnvlist_alloc(), operation, spa, htx, fmt, adx); 566 va_end(adx); 567 568 /* if we didn't get a tx from the caller, commit the one we made */ 569 if (tx == NULL) 570 dmu_tx_commit(htx); 571 } 572 573 void 574 spa_history_log_internal_ds(dsl_dataset_t *ds, const char *operation, 575 dmu_tx_t *tx, const char *fmt, ...) 576 { 577 va_list adx; 578 char namebuf[ZFS_MAX_DATASET_NAME_LEN]; 579 nvlist_t *nvl = fnvlist_alloc(); 580 581 ASSERT(tx != NULL); 582 583 dsl_dataset_name(ds, namebuf); 584 fnvlist_add_string(nvl, ZPOOL_HIST_DSNAME, namebuf); 585 fnvlist_add_uint64(nvl, ZPOOL_HIST_DSID, ds->ds_object); 586 587 va_start(adx, fmt); 588 log_internal(nvl, operation, dsl_dataset_get_spa(ds), tx, fmt, adx); 589 va_end(adx); 590 } 591 592 void 593 spa_history_log_internal_dd(dsl_dir_t *dd, const char *operation, 594 dmu_tx_t *tx, const char *fmt, ...) 595 { 596 va_list adx; 597 char namebuf[ZFS_MAX_DATASET_NAME_LEN]; 598 nvlist_t *nvl = fnvlist_alloc(); 599 600 ASSERT(tx != NULL); 601 602 dsl_dir_name(dd, namebuf); 603 fnvlist_add_string(nvl, ZPOOL_HIST_DSNAME, namebuf); 604 fnvlist_add_uint64(nvl, ZPOOL_HIST_DSID, 605 dsl_dir_phys(dd)->dd_head_dataset_obj); 606 607 va_start(adx, fmt); 608 log_internal(nvl, operation, dd->dd_pool->dp_spa, tx, fmt, adx); 609 va_end(adx); 610 } 611 612 void 613 spa_history_log_version(spa_t *spa, const char *operation, dmu_tx_t *tx) 614 { 615 utsname_t *u = utsname(); 616 617 spa_history_log_internal(spa, operation, tx, 618 "pool version %llu; software version %s; uts %s %s %s %s", 619 (u_longlong_t)spa_version(spa), ZFS_META_GITREV, 620 u->nodename, u->release, u->version, u->machine); 621 } 622 623 #ifndef _KERNEL 624 const char * 625 spa_history_zone(void) 626 { 627 return (NULL); 628 } 629 #endif 630 631 #if defined(_KERNEL) 632 EXPORT_SYMBOL(spa_history_create_obj); 633 EXPORT_SYMBOL(spa_history_get); 634 EXPORT_SYMBOL(spa_history_log); 635 EXPORT_SYMBOL(spa_history_log_internal); 636 EXPORT_SYMBOL(spa_history_log_version); 637 #endif 638