1eda14cbcSMatt Macy /* 2eda14cbcSMatt Macy * CDDL HEADER START 3eda14cbcSMatt Macy * 4eda14cbcSMatt Macy * The contents of this file are subject to the terms of the 5eda14cbcSMatt Macy * Common Development and Distribution License (the "License"). 6eda14cbcSMatt Macy * You may not use this file except in compliance with the License. 7eda14cbcSMatt Macy * 8eda14cbcSMatt Macy * You can obtain a copy of the license at usr/src/OPENSOLARIS.LICENSE 9271171e0SMartin Matuska * or https://opensource.org/licenses/CDDL-1.0. 10eda14cbcSMatt Macy * See the License for the specific language governing permissions 11eda14cbcSMatt Macy * and limitations under the License. 12eda14cbcSMatt Macy * 13eda14cbcSMatt Macy * When distributing Covered Code, include this CDDL HEADER in each 14eda14cbcSMatt Macy * file and include the License file at usr/src/OPENSOLARIS.LICENSE. 15eda14cbcSMatt Macy * If applicable, add the following below this CDDL HEADER, with the 16eda14cbcSMatt Macy * fields enclosed by brackets "[]" replaced with your own identifying 17eda14cbcSMatt Macy * information: Portions Copyright [yyyy] [name of copyright owner] 18eda14cbcSMatt Macy * 19eda14cbcSMatt Macy * CDDL HEADER END 20eda14cbcSMatt Macy */ 21eda14cbcSMatt Macy /* 22eda14cbcSMatt Macy * Copyright 2009 Sun Microsystems, Inc. All rights reserved. 23eda14cbcSMatt Macy * Use is subject to license terms. 24eda14cbcSMatt Macy */ 25eda14cbcSMatt Macy 26eda14cbcSMatt Macy /* 27ba27dd8bSMartin Matuska * Copyright (c) 2012,2021 by Delphix. All rights reserved. 28eda14cbcSMatt Macy */ 29eda14cbcSMatt Macy 30eda14cbcSMatt Macy #include <sys/spa.h> 31eda14cbcSMatt Macy #include <sys/spa_impl.h> 32eda14cbcSMatt Macy #include <sys/vdev.h> 33eda14cbcSMatt Macy #include <sys/vdev_impl.h> 34eda14cbcSMatt Macy #include <sys/zio.h> 35eda14cbcSMatt Macy #include <sys/zio_checksum.h> 36eda14cbcSMatt Macy 37eda14cbcSMatt Macy #include <sys/fm/fs/zfs.h> 38eda14cbcSMatt Macy #include <sys/fm/protocol.h> 39eda14cbcSMatt Macy #include <sys/fm/util.h> 40eda14cbcSMatt Macy #include <sys/sysevent.h> 41eda14cbcSMatt Macy 42eda14cbcSMatt Macy /* 43eda14cbcSMatt Macy * This general routine is responsible for generating all the different ZFS 44eda14cbcSMatt Macy * ereports. The payload is dependent on the class, and which arguments are 45eda14cbcSMatt Macy * supplied to the function: 46eda14cbcSMatt Macy * 47eda14cbcSMatt Macy * EREPORT POOL VDEV IO 48eda14cbcSMatt Macy * block X X X 49eda14cbcSMatt Macy * data X X 50eda14cbcSMatt Macy * device X X 51eda14cbcSMatt Macy * pool X 52eda14cbcSMatt Macy * 53eda14cbcSMatt Macy * If we are in a loading state, all errors are chained together by the same 54eda14cbcSMatt Macy * SPA-wide ENA (Error Numeric Association). 55eda14cbcSMatt Macy * 56eda14cbcSMatt Macy * For isolated I/O requests, we get the ENA from the zio_t. The propagation 57eda14cbcSMatt Macy * gets very complicated due to RAID-Z, gang blocks, and vdev caching. We want 58eda14cbcSMatt Macy * to chain together all ereports associated with a logical piece of data. For 59eda14cbcSMatt Macy * read I/Os, there are basically three 'types' of I/O, which form a roughly 60eda14cbcSMatt Macy * layered diagram: 61eda14cbcSMatt Macy * 62eda14cbcSMatt Macy * +---------------+ 63eda14cbcSMatt Macy * | Aggregate I/O | No associated logical data or device 64eda14cbcSMatt Macy * +---------------+ 65eda14cbcSMatt Macy * | 66eda14cbcSMatt Macy * V 67eda14cbcSMatt Macy * +---------------+ Reads associated with a piece of logical data. 68eda14cbcSMatt Macy * | Read I/O | This includes reads on behalf of RAID-Z, 69eda14cbcSMatt Macy * +---------------+ mirrors, gang blocks, retries, etc. 70eda14cbcSMatt Macy * | 71eda14cbcSMatt Macy * V 72eda14cbcSMatt Macy * +---------------+ Reads associated with a particular device, but 73eda14cbcSMatt Macy * | Physical I/O | no logical data. Issued as part of vdev caching 74eda14cbcSMatt Macy * +---------------+ and I/O aggregation. 75eda14cbcSMatt Macy * 76eda14cbcSMatt Macy * Note that 'physical I/O' here is not the same terminology as used in the rest 77eda14cbcSMatt Macy * of ZIO. Typically, 'physical I/O' simply means that there is no attached 78eda14cbcSMatt Macy * blockpointer. But I/O with no associated block pointer can still be related 79eda14cbcSMatt Macy * to a logical piece of data (i.e. RAID-Z requests). 80eda14cbcSMatt Macy * 81eda14cbcSMatt Macy * Purely physical I/O always have unique ENAs. They are not related to a 82eda14cbcSMatt Macy * particular piece of logical data, and therefore cannot be chained together. 83eda14cbcSMatt Macy * We still generate an ereport, but the DE doesn't correlate it with any 84eda14cbcSMatt Macy * logical piece of data. When such an I/O fails, the delegated I/O requests 85eda14cbcSMatt Macy * will issue a retry, which will trigger the 'real' ereport with the correct 86eda14cbcSMatt Macy * ENA. 87eda14cbcSMatt Macy * 88eda14cbcSMatt Macy * We keep track of the ENA for a ZIO chain through the 'io_logical' member. 89eda14cbcSMatt Macy * When a new logical I/O is issued, we set this to point to itself. Child I/Os 90eda14cbcSMatt Macy * then inherit this pointer, so that when it is first set subsequent failures 91eda14cbcSMatt Macy * will use the same ENA. For vdev cache fill and queue aggregation I/O, 92eda14cbcSMatt Macy * this pointer is set to NULL, and no ereport will be generated (since it 93eda14cbcSMatt Macy * doesn't actually correspond to any particular device or piece of data, 94eda14cbcSMatt Macy * and the caller will always retry without caching or queueing anyway). 95eda14cbcSMatt Macy * 96eda14cbcSMatt Macy * For checksum errors, we want to include more information about the actual 97eda14cbcSMatt Macy * error which occurs. Accordingly, we build an ereport when the error is 98eda14cbcSMatt Macy * noticed, but instead of sending it in immediately, we hang it off of the 99eda14cbcSMatt Macy * io_cksum_report field of the logical IO. When the logical IO completes 100eda14cbcSMatt Macy * (successfully or not), zfs_ereport_finish_checksum() is called with the 101eda14cbcSMatt Macy * good and bad versions of the buffer (if available), and we annotate the 102eda14cbcSMatt Macy * ereport with information about the differences. 103eda14cbcSMatt Macy */ 1042c48331dSMatt Macy 105eda14cbcSMatt Macy #ifdef _KERNEL 1062c48331dSMatt Macy /* 1072c48331dSMatt Macy * Duplicate ereport Detection 1082c48331dSMatt Macy * 1092c48331dSMatt Macy * Some ereports are retained momentarily for detecting duplicates. These 1102c48331dSMatt Macy * are kept in a recent_events_node_t in both a time-ordered list and an AVL 1112c48331dSMatt Macy * tree of recent unique ereports. 1122c48331dSMatt Macy * 1132c48331dSMatt Macy * The lifespan of these recent ereports is bounded (15 mins) and a cleaner 1142c48331dSMatt Macy * task is used to purge stale entries. 1152c48331dSMatt Macy */ 1162c48331dSMatt Macy static list_t recent_events_list; 1172c48331dSMatt Macy static avl_tree_t recent_events_tree; 1182c48331dSMatt Macy static kmutex_t recent_events_lock; 1192c48331dSMatt Macy static taskqid_t recent_events_cleaner_tqid; 1202c48331dSMatt Macy 1212c48331dSMatt Macy /* 1222c48331dSMatt Macy * Each node is about 128 bytes so 2,000 would consume 1/4 MiB. 1232c48331dSMatt Macy * 1242c48331dSMatt Macy * This setting can be changed dynamically and setting it to zero 1252c48331dSMatt Macy * disables duplicate detection. 1262c48331dSMatt Macy */ 127e92ffd9bSMartin Matuska static unsigned int zfs_zevent_retain_max = 2000; 1282c48331dSMatt Macy 1292c48331dSMatt Macy /* 1302c48331dSMatt Macy * The lifespan for a recent ereport entry. The default of 15 minutes is 1312c48331dSMatt Macy * intended to outlive the zfs diagnosis engine's threshold of 10 errors 1322c48331dSMatt Macy * over a period of 10 minutes. 1332c48331dSMatt Macy */ 134e92ffd9bSMartin Matuska static unsigned int zfs_zevent_retain_expire_secs = 900; 1352c48331dSMatt Macy 1362c48331dSMatt Macy typedef enum zfs_subclass { 1372c48331dSMatt Macy ZSC_IO, 1382c48331dSMatt Macy ZSC_DATA, 1392c48331dSMatt Macy ZSC_CHECKSUM 1402c48331dSMatt Macy } zfs_subclass_t; 1412c48331dSMatt Macy 1422c48331dSMatt Macy typedef struct { 1432c48331dSMatt Macy /* common criteria */ 1442c48331dSMatt Macy uint64_t re_pool_guid; 1452c48331dSMatt Macy uint64_t re_vdev_guid; 1462c48331dSMatt Macy int re_io_error; 1472c48331dSMatt Macy uint64_t re_io_size; 1482c48331dSMatt Macy uint64_t re_io_offset; 1492c48331dSMatt Macy zfs_subclass_t re_subclass; 1502c48331dSMatt Macy zio_priority_t re_io_priority; 1512c48331dSMatt Macy 1522c48331dSMatt Macy /* logical zio criteria (optional) */ 1532c48331dSMatt Macy zbookmark_phys_t re_io_bookmark; 1542c48331dSMatt Macy 1552c48331dSMatt Macy /* internal state */ 1562c48331dSMatt Macy avl_node_t re_tree_link; 1572c48331dSMatt Macy list_node_t re_list_link; 1582c48331dSMatt Macy uint64_t re_timestamp; 1592c48331dSMatt Macy } recent_events_node_t; 1602c48331dSMatt Macy 1612c48331dSMatt Macy static int 1622c48331dSMatt Macy recent_events_compare(const void *a, const void *b) 1632c48331dSMatt Macy { 1642c48331dSMatt Macy const recent_events_node_t *node1 = a; 1652c48331dSMatt Macy const recent_events_node_t *node2 = b; 1662c48331dSMatt Macy int cmp; 1672c48331dSMatt Macy 1682c48331dSMatt Macy /* 1692c48331dSMatt Macy * The comparison order here is somewhat arbitrary. 1702c48331dSMatt Macy * What's important is that if every criteria matches, then it 1712c48331dSMatt Macy * is a duplicate (i.e. compare returns 0) 1722c48331dSMatt Macy */ 1732c48331dSMatt Macy if ((cmp = TREE_CMP(node1->re_subclass, node2->re_subclass)) != 0) 1742c48331dSMatt Macy return (cmp); 1752c48331dSMatt Macy if ((cmp = TREE_CMP(node1->re_pool_guid, node2->re_pool_guid)) != 0) 1762c48331dSMatt Macy return (cmp); 1772c48331dSMatt Macy if ((cmp = TREE_CMP(node1->re_vdev_guid, node2->re_vdev_guid)) != 0) 1782c48331dSMatt Macy return (cmp); 1792c48331dSMatt Macy if ((cmp = TREE_CMP(node1->re_io_error, node2->re_io_error)) != 0) 1802c48331dSMatt Macy return (cmp); 1812c48331dSMatt Macy if ((cmp = TREE_CMP(node1->re_io_priority, node2->re_io_priority)) != 0) 1822c48331dSMatt Macy return (cmp); 1832c48331dSMatt Macy if ((cmp = TREE_CMP(node1->re_io_size, node2->re_io_size)) != 0) 1842c48331dSMatt Macy return (cmp); 1852c48331dSMatt Macy if ((cmp = TREE_CMP(node1->re_io_offset, node2->re_io_offset)) != 0) 1862c48331dSMatt Macy return (cmp); 1872c48331dSMatt Macy 1882c48331dSMatt Macy const zbookmark_phys_t *zb1 = &node1->re_io_bookmark; 1892c48331dSMatt Macy const zbookmark_phys_t *zb2 = &node2->re_io_bookmark; 1902c48331dSMatt Macy 1912c48331dSMatt Macy if ((cmp = TREE_CMP(zb1->zb_objset, zb2->zb_objset)) != 0) 1922c48331dSMatt Macy return (cmp); 1932c48331dSMatt Macy if ((cmp = TREE_CMP(zb1->zb_object, zb2->zb_object)) != 0) 1942c48331dSMatt Macy return (cmp); 1952c48331dSMatt Macy if ((cmp = TREE_CMP(zb1->zb_level, zb2->zb_level)) != 0) 1962c48331dSMatt Macy return (cmp); 1972c48331dSMatt Macy if ((cmp = TREE_CMP(zb1->zb_blkid, zb2->zb_blkid)) != 0) 1982c48331dSMatt Macy return (cmp); 1992c48331dSMatt Macy 2002c48331dSMatt Macy return (0); 2012c48331dSMatt Macy } 2022c48331dSMatt Macy 20315f0b8c3SMartin Matuska /* 20415f0b8c3SMartin Matuska * workaround: vdev properties don't have inheritance 20515f0b8c3SMartin Matuska */ 20615f0b8c3SMartin Matuska static uint64_t 20715f0b8c3SMartin Matuska vdev_prop_get_inherited(vdev_t *vd, vdev_prop_t prop) 20815f0b8c3SMartin Matuska { 20915f0b8c3SMartin Matuska uint64_t propdef, propval; 21015f0b8c3SMartin Matuska 21115f0b8c3SMartin Matuska propdef = vdev_prop_default_numeric(prop); 21215f0b8c3SMartin Matuska switch (prop) { 21315f0b8c3SMartin Matuska case VDEV_PROP_CHECKSUM_N: 21415f0b8c3SMartin Matuska propval = vd->vdev_checksum_n; 21515f0b8c3SMartin Matuska break; 21615f0b8c3SMartin Matuska case VDEV_PROP_CHECKSUM_T: 21715f0b8c3SMartin Matuska propval = vd->vdev_checksum_t; 21815f0b8c3SMartin Matuska break; 21915f0b8c3SMartin Matuska case VDEV_PROP_IO_N: 22015f0b8c3SMartin Matuska propval = vd->vdev_io_n; 22115f0b8c3SMartin Matuska break; 22215f0b8c3SMartin Matuska case VDEV_PROP_IO_T: 22315f0b8c3SMartin Matuska propval = vd->vdev_io_t; 22415f0b8c3SMartin Matuska break; 225e2257b31SMartin Matuska case VDEV_PROP_SLOW_IO_N: 226e2257b31SMartin Matuska propval = vd->vdev_slow_io_n; 227e2257b31SMartin Matuska break; 228e2257b31SMartin Matuska case VDEV_PROP_SLOW_IO_T: 229e2257b31SMartin Matuska propval = vd->vdev_slow_io_t; 230e2257b31SMartin Matuska break; 23115f0b8c3SMartin Matuska default: 23215f0b8c3SMartin Matuska propval = propdef; 23315f0b8c3SMartin Matuska break; 23415f0b8c3SMartin Matuska } 23515f0b8c3SMartin Matuska 23615f0b8c3SMartin Matuska if (propval != propdef) 23715f0b8c3SMartin Matuska return (propval); 23815f0b8c3SMartin Matuska 23915f0b8c3SMartin Matuska if (vd->vdev_parent == NULL) 24015f0b8c3SMartin Matuska return (propdef); 24115f0b8c3SMartin Matuska 24215f0b8c3SMartin Matuska return (vdev_prop_get_inherited(vd->vdev_parent, prop)); 24315f0b8c3SMartin Matuska } 24415f0b8c3SMartin Matuska 2452c48331dSMatt Macy static void zfs_ereport_schedule_cleaner(void); 2462c48331dSMatt Macy 2472c48331dSMatt Macy /* 2482c48331dSMatt Macy * background task to clean stale recent event nodes. 2492c48331dSMatt Macy */ 2502c48331dSMatt Macy static void 2512c48331dSMatt Macy zfs_ereport_cleaner(void *arg) 2522c48331dSMatt Macy { 2532c48331dSMatt Macy recent_events_node_t *entry; 2542c48331dSMatt Macy uint64_t now = gethrtime(); 2552c48331dSMatt Macy 2562c48331dSMatt Macy /* 2572c48331dSMatt Macy * purge expired entries 2582c48331dSMatt Macy */ 2592c48331dSMatt Macy mutex_enter(&recent_events_lock); 2602c48331dSMatt Macy while ((entry = list_tail(&recent_events_list)) != NULL) { 2612c48331dSMatt Macy uint64_t age = NSEC2SEC(now - entry->re_timestamp); 2622c48331dSMatt Macy if (age <= zfs_zevent_retain_expire_secs) 2632c48331dSMatt Macy break; 2642c48331dSMatt Macy 2652c48331dSMatt Macy /* remove expired node */ 2662c48331dSMatt Macy avl_remove(&recent_events_tree, entry); 2672c48331dSMatt Macy list_remove(&recent_events_list, entry); 2682c48331dSMatt Macy kmem_free(entry, sizeof (*entry)); 2692c48331dSMatt Macy } 2702c48331dSMatt Macy 2712c48331dSMatt Macy /* Restart the cleaner if more entries remain */ 2722c48331dSMatt Macy recent_events_cleaner_tqid = 0; 2732c48331dSMatt Macy if (!list_is_empty(&recent_events_list)) 2742c48331dSMatt Macy zfs_ereport_schedule_cleaner(); 2752c48331dSMatt Macy 2762c48331dSMatt Macy mutex_exit(&recent_events_lock); 2772c48331dSMatt Macy } 2782c48331dSMatt Macy 2792c48331dSMatt Macy static void 2802c48331dSMatt Macy zfs_ereport_schedule_cleaner(void) 2812c48331dSMatt Macy { 2822c48331dSMatt Macy ASSERT(MUTEX_HELD(&recent_events_lock)); 2832c48331dSMatt Macy 2842c48331dSMatt Macy uint64_t timeout = SEC2NSEC(zfs_zevent_retain_expire_secs + 1); 2852c48331dSMatt Macy 2862c48331dSMatt Macy recent_events_cleaner_tqid = taskq_dispatch_delay( 2872c48331dSMatt Macy system_delay_taskq, zfs_ereport_cleaner, NULL, TQ_SLEEP, 2882c48331dSMatt Macy ddi_get_lbolt() + NSEC_TO_TICK(timeout)); 2892c48331dSMatt Macy } 2902c48331dSMatt Macy 2912c48331dSMatt Macy /* 292ba27dd8bSMartin Matuska * Clear entries for a given vdev or all vdevs in a pool when vdev == NULL 293ba27dd8bSMartin Matuska */ 294ba27dd8bSMartin Matuska void 295ba27dd8bSMartin Matuska zfs_ereport_clear(spa_t *spa, vdev_t *vd) 296ba27dd8bSMartin Matuska { 297ba27dd8bSMartin Matuska uint64_t vdev_guid, pool_guid; 298ba27dd8bSMartin Matuska 299ba27dd8bSMartin Matuska ASSERT(vd != NULL || spa != NULL); 300ba27dd8bSMartin Matuska if (vd == NULL) { 301ba27dd8bSMartin Matuska vdev_guid = 0; 302ba27dd8bSMartin Matuska pool_guid = spa_guid(spa); 303ba27dd8bSMartin Matuska } else { 304ba27dd8bSMartin Matuska vdev_guid = vd->vdev_guid; 305ba27dd8bSMartin Matuska pool_guid = 0; 306ba27dd8bSMartin Matuska } 307ba27dd8bSMartin Matuska 308ba27dd8bSMartin Matuska mutex_enter(&recent_events_lock); 309ba27dd8bSMartin Matuska 310ba27dd8bSMartin Matuska recent_events_node_t *next = list_head(&recent_events_list); 311ba27dd8bSMartin Matuska while (next != NULL) { 312ba27dd8bSMartin Matuska recent_events_node_t *entry = next; 313ba27dd8bSMartin Matuska 314ba27dd8bSMartin Matuska next = list_next(&recent_events_list, next); 315ba27dd8bSMartin Matuska 316ba27dd8bSMartin Matuska if (entry->re_vdev_guid == vdev_guid || 317ba27dd8bSMartin Matuska entry->re_pool_guid == pool_guid) { 318ba27dd8bSMartin Matuska avl_remove(&recent_events_tree, entry); 319ba27dd8bSMartin Matuska list_remove(&recent_events_list, entry); 320ba27dd8bSMartin Matuska kmem_free(entry, sizeof (*entry)); 321ba27dd8bSMartin Matuska } 322ba27dd8bSMartin Matuska } 323ba27dd8bSMartin Matuska 324ba27dd8bSMartin Matuska mutex_exit(&recent_events_lock); 325ba27dd8bSMartin Matuska } 326ba27dd8bSMartin Matuska 327ba27dd8bSMartin Matuska /* 3282c48331dSMatt Macy * Check if an ereport would be a duplicate of one recently posted. 3292c48331dSMatt Macy * 3302c48331dSMatt Macy * An ereport is considered a duplicate if the set of criteria in 3312c48331dSMatt Macy * recent_events_node_t all match. 3322c48331dSMatt Macy * 3332c48331dSMatt Macy * Only FM_EREPORT_ZFS_IO, FM_EREPORT_ZFS_DATA, and FM_EREPORT_ZFS_CHECKSUM 3342c48331dSMatt Macy * are candidates for duplicate checking. 3352c48331dSMatt Macy */ 3362c48331dSMatt Macy static boolean_t 3372c48331dSMatt Macy zfs_ereport_is_duplicate(const char *subclass, spa_t *spa, vdev_t *vd, 3382c48331dSMatt Macy const zbookmark_phys_t *zb, zio_t *zio, uint64_t offset, uint64_t size) 3392c48331dSMatt Macy { 3402c48331dSMatt Macy recent_events_node_t search = {0}, *entry; 3412c48331dSMatt Macy 3422c48331dSMatt Macy if (vd == NULL || zio == NULL) 3432c48331dSMatt Macy return (B_FALSE); 3442c48331dSMatt Macy 3452c48331dSMatt Macy if (zfs_zevent_retain_max == 0) 3462c48331dSMatt Macy return (B_FALSE); 3472c48331dSMatt Macy 3482c48331dSMatt Macy if (strcmp(subclass, FM_EREPORT_ZFS_IO) == 0) 3492c48331dSMatt Macy search.re_subclass = ZSC_IO; 3502c48331dSMatt Macy else if (strcmp(subclass, FM_EREPORT_ZFS_DATA) == 0) 3512c48331dSMatt Macy search.re_subclass = ZSC_DATA; 3522c48331dSMatt Macy else if (strcmp(subclass, FM_EREPORT_ZFS_CHECKSUM) == 0) 3532c48331dSMatt Macy search.re_subclass = ZSC_CHECKSUM; 3542c48331dSMatt Macy else 3552c48331dSMatt Macy return (B_FALSE); 3562c48331dSMatt Macy 3572c48331dSMatt Macy search.re_pool_guid = spa_guid(spa); 3582c48331dSMatt Macy search.re_vdev_guid = vd->vdev_guid; 3592c48331dSMatt Macy search.re_io_error = zio->io_error; 3602c48331dSMatt Macy search.re_io_priority = zio->io_priority; 3612c48331dSMatt Macy /* if size is supplied use it over what's in zio */ 3622c48331dSMatt Macy if (size) { 3632c48331dSMatt Macy search.re_io_size = size; 3642c48331dSMatt Macy search.re_io_offset = offset; 3652c48331dSMatt Macy } else { 3662c48331dSMatt Macy search.re_io_size = zio->io_size; 3672c48331dSMatt Macy search.re_io_offset = zio->io_offset; 3682c48331dSMatt Macy } 3692c48331dSMatt Macy 3702c48331dSMatt Macy /* grab optional logical zio criteria */ 3712c48331dSMatt Macy if (zb != NULL) { 3722c48331dSMatt Macy search.re_io_bookmark.zb_objset = zb->zb_objset; 3732c48331dSMatt Macy search.re_io_bookmark.zb_object = zb->zb_object; 3742c48331dSMatt Macy search.re_io_bookmark.zb_level = zb->zb_level; 3752c48331dSMatt Macy search.re_io_bookmark.zb_blkid = zb->zb_blkid; 3762c48331dSMatt Macy } 3772c48331dSMatt Macy 3782c48331dSMatt Macy uint64_t now = gethrtime(); 3792c48331dSMatt Macy 3802c48331dSMatt Macy mutex_enter(&recent_events_lock); 3812c48331dSMatt Macy 3822c48331dSMatt Macy /* check if we have seen this one recently */ 3832c48331dSMatt Macy entry = avl_find(&recent_events_tree, &search, NULL); 3842c48331dSMatt Macy if (entry != NULL) { 3852c48331dSMatt Macy uint64_t age = NSEC2SEC(now - entry->re_timestamp); 3862c48331dSMatt Macy 3872c48331dSMatt Macy /* 3882c48331dSMatt Macy * There is still an active cleaner (since we're here). 3892c48331dSMatt Macy * Reset the last seen time for this duplicate entry 3902c48331dSMatt Macy * so that its lifespand gets extended. 3912c48331dSMatt Macy */ 3922c48331dSMatt Macy list_remove(&recent_events_list, entry); 3932c48331dSMatt Macy list_insert_head(&recent_events_list, entry); 3942c48331dSMatt Macy entry->re_timestamp = now; 3952c48331dSMatt Macy 3962c48331dSMatt Macy zfs_zevent_track_duplicate(); 3972c48331dSMatt Macy mutex_exit(&recent_events_lock); 3982c48331dSMatt Macy 3992c48331dSMatt Macy return (age <= zfs_zevent_retain_expire_secs); 4002c48331dSMatt Macy } 4012c48331dSMatt Macy 4022c48331dSMatt Macy if (avl_numnodes(&recent_events_tree) >= zfs_zevent_retain_max) { 4032c48331dSMatt Macy /* recycle oldest node */ 4042c48331dSMatt Macy entry = list_tail(&recent_events_list); 4052c48331dSMatt Macy ASSERT(entry != NULL); 4062c48331dSMatt Macy list_remove(&recent_events_list, entry); 4072c48331dSMatt Macy avl_remove(&recent_events_tree, entry); 4082c48331dSMatt Macy } else { 4092c48331dSMatt Macy entry = kmem_alloc(sizeof (recent_events_node_t), KM_SLEEP); 4102c48331dSMatt Macy } 4112c48331dSMatt Macy 4122c48331dSMatt Macy /* record this as a recent ereport */ 4132c48331dSMatt Macy *entry = search; 4142c48331dSMatt Macy avl_add(&recent_events_tree, entry); 4152c48331dSMatt Macy list_insert_head(&recent_events_list, entry); 4162c48331dSMatt Macy entry->re_timestamp = now; 4172c48331dSMatt Macy 4182c48331dSMatt Macy /* Start a cleaner if not already scheduled */ 4192c48331dSMatt Macy if (recent_events_cleaner_tqid == 0) 4202c48331dSMatt Macy zfs_ereport_schedule_cleaner(); 4212c48331dSMatt Macy 4222c48331dSMatt Macy mutex_exit(&recent_events_lock); 4232c48331dSMatt Macy return (B_FALSE); 4242c48331dSMatt Macy } 4252c48331dSMatt Macy 426eda14cbcSMatt Macy void 427eda14cbcSMatt Macy zfs_zevent_post_cb(nvlist_t *nvl, nvlist_t *detector) 428eda14cbcSMatt Macy { 429eda14cbcSMatt Macy if (nvl) 430eda14cbcSMatt Macy fm_nvlist_destroy(nvl, FM_NVA_FREE); 431eda14cbcSMatt Macy 432eda14cbcSMatt Macy if (detector) 433eda14cbcSMatt Macy fm_nvlist_destroy(detector, FM_NVA_FREE); 434eda14cbcSMatt Macy } 435eda14cbcSMatt Macy 436eda14cbcSMatt Macy /* 43716038816SMartin Matuska * We want to rate limit ZIO delay, deadman, and checksum events so as to not 43816038816SMartin Matuska * flood zevent consumers when a disk is acting up. 439eda14cbcSMatt Macy * 440eda14cbcSMatt Macy * Returns 1 if we're ratelimiting, 0 if not. 441eda14cbcSMatt Macy */ 442eda14cbcSMatt Macy static int 443eda14cbcSMatt Macy zfs_is_ratelimiting_event(const char *subclass, vdev_t *vd) 444eda14cbcSMatt Macy { 445eda14cbcSMatt Macy int rc = 0; 446eda14cbcSMatt Macy /* 44716038816SMartin Matuska * zfs_ratelimit() returns 1 if we're *not* ratelimiting and 0 if we 448eda14cbcSMatt Macy * are. Invert it to get our return value. 449eda14cbcSMatt Macy */ 450eda14cbcSMatt Macy if (strcmp(subclass, FM_EREPORT_ZFS_DELAY) == 0) { 451eda14cbcSMatt Macy rc = !zfs_ratelimit(&vd->vdev_delay_rl); 45216038816SMartin Matuska } else if (strcmp(subclass, FM_EREPORT_ZFS_DEADMAN) == 0) { 45316038816SMartin Matuska rc = !zfs_ratelimit(&vd->vdev_deadman_rl); 454eda14cbcSMatt Macy } else if (strcmp(subclass, FM_EREPORT_ZFS_CHECKSUM) == 0) { 455eda14cbcSMatt Macy rc = !zfs_ratelimit(&vd->vdev_checksum_rl); 456eda14cbcSMatt Macy } 457eda14cbcSMatt Macy 458eda14cbcSMatt Macy if (rc) { 459eda14cbcSMatt Macy /* We're rate limiting */ 460eda14cbcSMatt Macy fm_erpt_dropped_increment(); 461eda14cbcSMatt Macy } 462eda14cbcSMatt Macy 463eda14cbcSMatt Macy return (rc); 464eda14cbcSMatt Macy } 465eda14cbcSMatt Macy 466eda14cbcSMatt Macy /* 467eda14cbcSMatt Macy * Return B_TRUE if the event actually posted, B_FALSE if not. 468eda14cbcSMatt Macy */ 469eda14cbcSMatt Macy static boolean_t 470eda14cbcSMatt Macy zfs_ereport_start(nvlist_t **ereport_out, nvlist_t **detector_out, 471eda14cbcSMatt Macy const char *subclass, spa_t *spa, vdev_t *vd, const zbookmark_phys_t *zb, 472eda14cbcSMatt Macy zio_t *zio, uint64_t stateoroffset, uint64_t size) 473eda14cbcSMatt Macy { 474eda14cbcSMatt Macy nvlist_t *ereport, *detector; 475eda14cbcSMatt Macy 476eda14cbcSMatt Macy uint64_t ena; 477eda14cbcSMatt Macy char class[64]; 478eda14cbcSMatt Macy 479eda14cbcSMatt Macy if ((ereport = fm_nvlist_create(NULL)) == NULL) 480eda14cbcSMatt Macy return (B_FALSE); 481eda14cbcSMatt Macy 482eda14cbcSMatt Macy if ((detector = fm_nvlist_create(NULL)) == NULL) { 483eda14cbcSMatt Macy fm_nvlist_destroy(ereport, FM_NVA_FREE); 484eda14cbcSMatt Macy return (B_FALSE); 485eda14cbcSMatt Macy } 486eda14cbcSMatt Macy 487eda14cbcSMatt Macy /* 488eda14cbcSMatt Macy * Serialize ereport generation 489eda14cbcSMatt Macy */ 490eda14cbcSMatt Macy mutex_enter(&spa->spa_errlist_lock); 491eda14cbcSMatt Macy 492eda14cbcSMatt Macy /* 493eda14cbcSMatt Macy * Determine the ENA to use for this event. If we are in a loading 494eda14cbcSMatt Macy * state, use a SPA-wide ENA. Otherwise, if we are in an I/O state, use 495eda14cbcSMatt Macy * a root zio-wide ENA. Otherwise, simply use a unique ENA. 496eda14cbcSMatt Macy */ 497eda14cbcSMatt Macy if (spa_load_state(spa) != SPA_LOAD_NONE) { 498eda14cbcSMatt Macy if (spa->spa_ena == 0) 499eda14cbcSMatt Macy spa->spa_ena = fm_ena_generate(0, FM_ENA_FMT1); 500eda14cbcSMatt Macy ena = spa->spa_ena; 501eda14cbcSMatt Macy } else if (zio != NULL && zio->io_logical != NULL) { 502eda14cbcSMatt Macy if (zio->io_logical->io_ena == 0) 503eda14cbcSMatt Macy zio->io_logical->io_ena = 504eda14cbcSMatt Macy fm_ena_generate(0, FM_ENA_FMT1); 505eda14cbcSMatt Macy ena = zio->io_logical->io_ena; 506eda14cbcSMatt Macy } else { 507eda14cbcSMatt Macy ena = fm_ena_generate(0, FM_ENA_FMT1); 508eda14cbcSMatt Macy } 509eda14cbcSMatt Macy 510eda14cbcSMatt Macy /* 511eda14cbcSMatt Macy * Construct the full class, detector, and other standard FMA fields. 512eda14cbcSMatt Macy */ 513eda14cbcSMatt Macy (void) snprintf(class, sizeof (class), "%s.%s", 514eda14cbcSMatt Macy ZFS_ERROR_CLASS, subclass); 515eda14cbcSMatt Macy 516eda14cbcSMatt Macy fm_fmri_zfs_set(detector, FM_ZFS_SCHEME_VERSION, spa_guid(spa), 517eda14cbcSMatt Macy vd != NULL ? vd->vdev_guid : 0); 518eda14cbcSMatt Macy 519eda14cbcSMatt Macy fm_ereport_set(ereport, FM_EREPORT_VERSION, class, ena, detector, NULL); 520eda14cbcSMatt Macy 521eda14cbcSMatt Macy /* 522eda14cbcSMatt Macy * Construct the per-ereport payload, depending on which parameters are 523eda14cbcSMatt Macy * passed in. 524eda14cbcSMatt Macy */ 525eda14cbcSMatt Macy 526eda14cbcSMatt Macy /* 527eda14cbcSMatt Macy * Generic payload members common to all ereports. 528eda14cbcSMatt Macy */ 529eda14cbcSMatt Macy fm_payload_set(ereport, 530eda14cbcSMatt Macy FM_EREPORT_PAYLOAD_ZFS_POOL, DATA_TYPE_STRING, spa_name(spa), 531eda14cbcSMatt Macy FM_EREPORT_PAYLOAD_ZFS_POOL_GUID, DATA_TYPE_UINT64, spa_guid(spa), 532eda14cbcSMatt Macy FM_EREPORT_PAYLOAD_ZFS_POOL_STATE, DATA_TYPE_UINT64, 533eda14cbcSMatt Macy (uint64_t)spa_state(spa), 534eda14cbcSMatt Macy FM_EREPORT_PAYLOAD_ZFS_POOL_CONTEXT, DATA_TYPE_INT32, 535eda14cbcSMatt Macy (int32_t)spa_load_state(spa), NULL); 536eda14cbcSMatt Macy 537eda14cbcSMatt Macy fm_payload_set(ereport, FM_EREPORT_PAYLOAD_ZFS_POOL_FAILMODE, 538eda14cbcSMatt Macy DATA_TYPE_STRING, 539eda14cbcSMatt Macy spa_get_failmode(spa) == ZIO_FAILURE_MODE_WAIT ? 540eda14cbcSMatt Macy FM_EREPORT_FAILMODE_WAIT : 541eda14cbcSMatt Macy spa_get_failmode(spa) == ZIO_FAILURE_MODE_CONTINUE ? 542eda14cbcSMatt Macy FM_EREPORT_FAILMODE_CONTINUE : FM_EREPORT_FAILMODE_PANIC, 543eda14cbcSMatt Macy NULL); 544eda14cbcSMatt Macy 545eda14cbcSMatt Macy if (vd != NULL) { 546eda14cbcSMatt Macy vdev_t *pvd = vd->vdev_parent; 547eda14cbcSMatt Macy vdev_queue_t *vq = &vd->vdev_queue; 548eda14cbcSMatt Macy vdev_stat_t *vs = &vd->vdev_stat; 549eda14cbcSMatt Macy vdev_t *spare_vd; 550eda14cbcSMatt Macy uint64_t *spare_guids; 551eda14cbcSMatt Macy char **spare_paths; 552eda14cbcSMatt Macy int i, spare_count; 553eda14cbcSMatt Macy 554eda14cbcSMatt Macy fm_payload_set(ereport, FM_EREPORT_PAYLOAD_ZFS_VDEV_GUID, 555eda14cbcSMatt Macy DATA_TYPE_UINT64, vd->vdev_guid, 556eda14cbcSMatt Macy FM_EREPORT_PAYLOAD_ZFS_VDEV_TYPE, 557eda14cbcSMatt Macy DATA_TYPE_STRING, vd->vdev_ops->vdev_op_type, NULL); 558eda14cbcSMatt Macy if (vd->vdev_path != NULL) 559eda14cbcSMatt Macy fm_payload_set(ereport, 560eda14cbcSMatt Macy FM_EREPORT_PAYLOAD_ZFS_VDEV_PATH, 561eda14cbcSMatt Macy DATA_TYPE_STRING, vd->vdev_path, NULL); 562eda14cbcSMatt Macy if (vd->vdev_devid != NULL) 563eda14cbcSMatt Macy fm_payload_set(ereport, 564eda14cbcSMatt Macy FM_EREPORT_PAYLOAD_ZFS_VDEV_DEVID, 565eda14cbcSMatt Macy DATA_TYPE_STRING, vd->vdev_devid, NULL); 566eda14cbcSMatt Macy if (vd->vdev_fru != NULL) 567eda14cbcSMatt Macy fm_payload_set(ereport, 568eda14cbcSMatt Macy FM_EREPORT_PAYLOAD_ZFS_VDEV_FRU, 569eda14cbcSMatt Macy DATA_TYPE_STRING, vd->vdev_fru, NULL); 570eda14cbcSMatt Macy if (vd->vdev_enc_sysfs_path != NULL) 571eda14cbcSMatt Macy fm_payload_set(ereport, 572eda14cbcSMatt Macy FM_EREPORT_PAYLOAD_ZFS_VDEV_ENC_SYSFS_PATH, 573eda14cbcSMatt Macy DATA_TYPE_STRING, vd->vdev_enc_sysfs_path, NULL); 574eda14cbcSMatt Macy if (vd->vdev_ashift) 575eda14cbcSMatt Macy fm_payload_set(ereport, 576eda14cbcSMatt Macy FM_EREPORT_PAYLOAD_ZFS_VDEV_ASHIFT, 577eda14cbcSMatt Macy DATA_TYPE_UINT64, vd->vdev_ashift, NULL); 578eda14cbcSMatt Macy 579eda14cbcSMatt Macy if (vq != NULL) { 580eda14cbcSMatt Macy fm_payload_set(ereport, 581eda14cbcSMatt Macy FM_EREPORT_PAYLOAD_ZFS_VDEV_COMP_TS, 582eda14cbcSMatt Macy DATA_TYPE_UINT64, vq->vq_io_complete_ts, NULL); 583eda14cbcSMatt Macy fm_payload_set(ereport, 584eda14cbcSMatt Macy FM_EREPORT_PAYLOAD_ZFS_VDEV_DELTA_TS, 585eda14cbcSMatt Macy DATA_TYPE_UINT64, vq->vq_io_delta_ts, NULL); 586eda14cbcSMatt Macy } 587eda14cbcSMatt Macy 588eda14cbcSMatt Macy if (vs != NULL) { 589eda14cbcSMatt Macy fm_payload_set(ereport, 590eda14cbcSMatt Macy FM_EREPORT_PAYLOAD_ZFS_VDEV_READ_ERRORS, 591eda14cbcSMatt Macy DATA_TYPE_UINT64, vs->vs_read_errors, 592eda14cbcSMatt Macy FM_EREPORT_PAYLOAD_ZFS_VDEV_WRITE_ERRORS, 593eda14cbcSMatt Macy DATA_TYPE_UINT64, vs->vs_write_errors, 594eda14cbcSMatt Macy FM_EREPORT_PAYLOAD_ZFS_VDEV_CKSUM_ERRORS, 595eda14cbcSMatt Macy DATA_TYPE_UINT64, vs->vs_checksum_errors, 596eda14cbcSMatt Macy FM_EREPORT_PAYLOAD_ZFS_VDEV_DELAYS, 597eda14cbcSMatt Macy DATA_TYPE_UINT64, vs->vs_slow_ios, 598*7a7741afSMartin Matuska FM_EREPORT_PAYLOAD_ZFS_VDEV_DIO_VERIFY_ERRORS, 599*7a7741afSMartin Matuska DATA_TYPE_UINT64, vs->vs_dio_verify_errors, 600eda14cbcSMatt Macy NULL); 601eda14cbcSMatt Macy } 602eda14cbcSMatt Macy 603eda14cbcSMatt Macy if (pvd != NULL) { 604eda14cbcSMatt Macy fm_payload_set(ereport, 605eda14cbcSMatt Macy FM_EREPORT_PAYLOAD_ZFS_PARENT_GUID, 606eda14cbcSMatt Macy DATA_TYPE_UINT64, pvd->vdev_guid, 607eda14cbcSMatt Macy FM_EREPORT_PAYLOAD_ZFS_PARENT_TYPE, 608eda14cbcSMatt Macy DATA_TYPE_STRING, pvd->vdev_ops->vdev_op_type, 609eda14cbcSMatt Macy NULL); 610eda14cbcSMatt Macy if (pvd->vdev_path) 611eda14cbcSMatt Macy fm_payload_set(ereport, 612eda14cbcSMatt Macy FM_EREPORT_PAYLOAD_ZFS_PARENT_PATH, 613eda14cbcSMatt Macy DATA_TYPE_STRING, pvd->vdev_path, NULL); 614eda14cbcSMatt Macy if (pvd->vdev_devid) 615eda14cbcSMatt Macy fm_payload_set(ereport, 616eda14cbcSMatt Macy FM_EREPORT_PAYLOAD_ZFS_PARENT_DEVID, 617eda14cbcSMatt Macy DATA_TYPE_STRING, pvd->vdev_devid, NULL); 618eda14cbcSMatt Macy } 619eda14cbcSMatt Macy 620eda14cbcSMatt Macy spare_count = spa->spa_spares.sav_count; 621eda14cbcSMatt Macy spare_paths = kmem_zalloc(sizeof (char *) * spare_count, 622eda14cbcSMatt Macy KM_SLEEP); 623eda14cbcSMatt Macy spare_guids = kmem_zalloc(sizeof (uint64_t) * spare_count, 624eda14cbcSMatt Macy KM_SLEEP); 625eda14cbcSMatt Macy 626eda14cbcSMatt Macy for (i = 0; i < spare_count; i++) { 627eda14cbcSMatt Macy spare_vd = spa->spa_spares.sav_vdevs[i]; 628eda14cbcSMatt Macy if (spare_vd) { 629eda14cbcSMatt Macy spare_paths[i] = spare_vd->vdev_path; 630eda14cbcSMatt Macy spare_guids[i] = spare_vd->vdev_guid; 631eda14cbcSMatt Macy } 632eda14cbcSMatt Macy } 633eda14cbcSMatt Macy 634eda14cbcSMatt Macy fm_payload_set(ereport, FM_EREPORT_PAYLOAD_ZFS_VDEV_SPARE_PATHS, 635eda14cbcSMatt Macy DATA_TYPE_STRING_ARRAY, spare_count, spare_paths, 636eda14cbcSMatt Macy FM_EREPORT_PAYLOAD_ZFS_VDEV_SPARE_GUIDS, 637eda14cbcSMatt Macy DATA_TYPE_UINT64_ARRAY, spare_count, spare_guids, NULL); 638eda14cbcSMatt Macy 639eda14cbcSMatt Macy kmem_free(spare_guids, sizeof (uint64_t) * spare_count); 640eda14cbcSMatt Macy kmem_free(spare_paths, sizeof (char *) * spare_count); 641eda14cbcSMatt Macy } 642eda14cbcSMatt Macy 643eda14cbcSMatt Macy if (zio != NULL) { 644eda14cbcSMatt Macy /* 645eda14cbcSMatt Macy * Payload common to all I/Os. 646eda14cbcSMatt Macy */ 647eda14cbcSMatt Macy fm_payload_set(ereport, FM_EREPORT_PAYLOAD_ZFS_ZIO_ERR, 648eda14cbcSMatt Macy DATA_TYPE_INT32, zio->io_error, NULL); 649eda14cbcSMatt Macy fm_payload_set(ereport, FM_EREPORT_PAYLOAD_ZFS_ZIO_FLAGS, 650e2df9bb4SMartin Matuska DATA_TYPE_UINT64, zio->io_flags, NULL); 651eda14cbcSMatt Macy fm_payload_set(ereport, FM_EREPORT_PAYLOAD_ZFS_ZIO_STAGE, 652eda14cbcSMatt Macy DATA_TYPE_UINT32, zio->io_stage, NULL); 653eda14cbcSMatt Macy fm_payload_set(ereport, FM_EREPORT_PAYLOAD_ZFS_ZIO_PIPELINE, 654eda14cbcSMatt Macy DATA_TYPE_UINT32, zio->io_pipeline, NULL); 655eda14cbcSMatt Macy fm_payload_set(ereport, FM_EREPORT_PAYLOAD_ZFS_ZIO_DELAY, 656eda14cbcSMatt Macy DATA_TYPE_UINT64, zio->io_delay, NULL); 657eda14cbcSMatt Macy fm_payload_set(ereport, FM_EREPORT_PAYLOAD_ZFS_ZIO_TIMESTAMP, 658eda14cbcSMatt Macy DATA_TYPE_UINT64, zio->io_timestamp, NULL); 659eda14cbcSMatt Macy fm_payload_set(ereport, FM_EREPORT_PAYLOAD_ZFS_ZIO_DELTA, 660eda14cbcSMatt Macy DATA_TYPE_UINT64, zio->io_delta, NULL); 6612c48331dSMatt Macy fm_payload_set(ereport, FM_EREPORT_PAYLOAD_ZFS_ZIO_PRIORITY, 6622c48331dSMatt Macy DATA_TYPE_UINT32, zio->io_priority, NULL); 663eda14cbcSMatt Macy 664eda14cbcSMatt Macy /* 665eda14cbcSMatt Macy * If the 'size' parameter is non-zero, it indicates this is a 666eda14cbcSMatt Macy * RAID-Z or other I/O where the physical offset and length are 667eda14cbcSMatt Macy * provided for us, instead of within the zio_t. 668eda14cbcSMatt Macy */ 669eda14cbcSMatt Macy if (vd != NULL) { 670eda14cbcSMatt Macy if (size) 671eda14cbcSMatt Macy fm_payload_set(ereport, 672eda14cbcSMatt Macy FM_EREPORT_PAYLOAD_ZFS_ZIO_OFFSET, 673eda14cbcSMatt Macy DATA_TYPE_UINT64, stateoroffset, 674eda14cbcSMatt Macy FM_EREPORT_PAYLOAD_ZFS_ZIO_SIZE, 675eda14cbcSMatt Macy DATA_TYPE_UINT64, size, NULL); 676eda14cbcSMatt Macy else 677eda14cbcSMatt Macy fm_payload_set(ereport, 678eda14cbcSMatt Macy FM_EREPORT_PAYLOAD_ZFS_ZIO_OFFSET, 679eda14cbcSMatt Macy DATA_TYPE_UINT64, zio->io_offset, 680eda14cbcSMatt Macy FM_EREPORT_PAYLOAD_ZFS_ZIO_SIZE, 681eda14cbcSMatt Macy DATA_TYPE_UINT64, zio->io_size, NULL); 682eda14cbcSMatt Macy } 683eda14cbcSMatt Macy } else if (vd != NULL) { 684eda14cbcSMatt Macy /* 685eda14cbcSMatt Macy * If we have a vdev but no zio, this is a device fault, and the 686eda14cbcSMatt Macy * 'stateoroffset' parameter indicates the previous state of the 687eda14cbcSMatt Macy * vdev. 688eda14cbcSMatt Macy */ 689eda14cbcSMatt Macy fm_payload_set(ereport, 690eda14cbcSMatt Macy FM_EREPORT_PAYLOAD_ZFS_PREV_STATE, 691eda14cbcSMatt Macy DATA_TYPE_UINT64, stateoroffset, NULL); 692eda14cbcSMatt Macy } 693eda14cbcSMatt Macy 694eda14cbcSMatt Macy /* 695eda14cbcSMatt Macy * Payload for I/Os with corresponding logical information. 696eda14cbcSMatt Macy */ 697eda14cbcSMatt Macy if (zb != NULL && (zio == NULL || zio->io_logical != NULL)) { 698eda14cbcSMatt Macy fm_payload_set(ereport, 699eda14cbcSMatt Macy FM_EREPORT_PAYLOAD_ZFS_ZIO_OBJSET, 700eda14cbcSMatt Macy DATA_TYPE_UINT64, zb->zb_objset, 701eda14cbcSMatt Macy FM_EREPORT_PAYLOAD_ZFS_ZIO_OBJECT, 702eda14cbcSMatt Macy DATA_TYPE_UINT64, zb->zb_object, 703eda14cbcSMatt Macy FM_EREPORT_PAYLOAD_ZFS_ZIO_LEVEL, 704eda14cbcSMatt Macy DATA_TYPE_INT64, zb->zb_level, 705eda14cbcSMatt Macy FM_EREPORT_PAYLOAD_ZFS_ZIO_BLKID, 706eda14cbcSMatt Macy DATA_TYPE_UINT64, zb->zb_blkid, NULL); 707eda14cbcSMatt Macy } 708eda14cbcSMatt Macy 70915f0b8c3SMartin Matuska /* 71015f0b8c3SMartin Matuska * Payload for tuning the zed 71115f0b8c3SMartin Matuska */ 71215f0b8c3SMartin Matuska if (vd != NULL && strcmp(subclass, FM_EREPORT_ZFS_CHECKSUM) == 0) { 71315f0b8c3SMartin Matuska uint64_t cksum_n, cksum_t; 71415f0b8c3SMartin Matuska 71515f0b8c3SMartin Matuska cksum_n = vdev_prop_get_inherited(vd, VDEV_PROP_CHECKSUM_N); 71615f0b8c3SMartin Matuska if (cksum_n != vdev_prop_default_numeric(VDEV_PROP_CHECKSUM_N)) 71715f0b8c3SMartin Matuska fm_payload_set(ereport, 71815f0b8c3SMartin Matuska FM_EREPORT_PAYLOAD_ZFS_VDEV_CKSUM_N, 71915f0b8c3SMartin Matuska DATA_TYPE_UINT64, 72015f0b8c3SMartin Matuska cksum_n, 72115f0b8c3SMartin Matuska NULL); 72215f0b8c3SMartin Matuska 72315f0b8c3SMartin Matuska cksum_t = vdev_prop_get_inherited(vd, VDEV_PROP_CHECKSUM_T); 72415f0b8c3SMartin Matuska if (cksum_t != vdev_prop_default_numeric(VDEV_PROP_CHECKSUM_T)) 72515f0b8c3SMartin Matuska fm_payload_set(ereport, 72615f0b8c3SMartin Matuska FM_EREPORT_PAYLOAD_ZFS_VDEV_CKSUM_T, 72715f0b8c3SMartin Matuska DATA_TYPE_UINT64, 72815f0b8c3SMartin Matuska cksum_t, 72915f0b8c3SMartin Matuska NULL); 73015f0b8c3SMartin Matuska } 73115f0b8c3SMartin Matuska 73215f0b8c3SMartin Matuska if (vd != NULL && strcmp(subclass, FM_EREPORT_ZFS_IO) == 0) { 73315f0b8c3SMartin Matuska uint64_t io_n, io_t; 73415f0b8c3SMartin Matuska 73515f0b8c3SMartin Matuska io_n = vdev_prop_get_inherited(vd, VDEV_PROP_IO_N); 73615f0b8c3SMartin Matuska if (io_n != vdev_prop_default_numeric(VDEV_PROP_IO_N)) 73715f0b8c3SMartin Matuska fm_payload_set(ereport, 73815f0b8c3SMartin Matuska FM_EREPORT_PAYLOAD_ZFS_VDEV_IO_N, 73915f0b8c3SMartin Matuska DATA_TYPE_UINT64, 74015f0b8c3SMartin Matuska io_n, 74115f0b8c3SMartin Matuska NULL); 74215f0b8c3SMartin Matuska 74315f0b8c3SMartin Matuska io_t = vdev_prop_get_inherited(vd, VDEV_PROP_IO_T); 74415f0b8c3SMartin Matuska if (io_t != vdev_prop_default_numeric(VDEV_PROP_IO_T)) 74515f0b8c3SMartin Matuska fm_payload_set(ereport, 74615f0b8c3SMartin Matuska FM_EREPORT_PAYLOAD_ZFS_VDEV_IO_T, 74715f0b8c3SMartin Matuska DATA_TYPE_UINT64, 74815f0b8c3SMartin Matuska io_t, 74915f0b8c3SMartin Matuska NULL); 75015f0b8c3SMartin Matuska } 75115f0b8c3SMartin Matuska 752e2257b31SMartin Matuska if (vd != NULL && strcmp(subclass, FM_EREPORT_ZFS_DELAY) == 0) { 753e2257b31SMartin Matuska uint64_t slow_io_n, slow_io_t; 754e2257b31SMartin Matuska 755e2257b31SMartin Matuska slow_io_n = vdev_prop_get_inherited(vd, VDEV_PROP_SLOW_IO_N); 756e2257b31SMartin Matuska if (slow_io_n != vdev_prop_default_numeric(VDEV_PROP_SLOW_IO_N)) 757e2257b31SMartin Matuska fm_payload_set(ereport, 758e2257b31SMartin Matuska FM_EREPORT_PAYLOAD_ZFS_VDEV_SLOW_IO_N, 759e2257b31SMartin Matuska DATA_TYPE_UINT64, 760e2257b31SMartin Matuska slow_io_n, 761e2257b31SMartin Matuska NULL); 762e2257b31SMartin Matuska 763e2257b31SMartin Matuska slow_io_t = vdev_prop_get_inherited(vd, VDEV_PROP_SLOW_IO_T); 764e2257b31SMartin Matuska if (slow_io_t != vdev_prop_default_numeric(VDEV_PROP_SLOW_IO_T)) 765e2257b31SMartin Matuska fm_payload_set(ereport, 766e2257b31SMartin Matuska FM_EREPORT_PAYLOAD_ZFS_VDEV_SLOW_IO_T, 767e2257b31SMartin Matuska DATA_TYPE_UINT64, 768e2257b31SMartin Matuska slow_io_t, 769e2257b31SMartin Matuska NULL); 770e2257b31SMartin Matuska } 771e2257b31SMartin Matuska 772eda14cbcSMatt Macy mutex_exit(&spa->spa_errlist_lock); 773eda14cbcSMatt Macy 774eda14cbcSMatt Macy *ereport_out = ereport; 775eda14cbcSMatt Macy *detector_out = detector; 776eda14cbcSMatt Macy return (B_TRUE); 777eda14cbcSMatt Macy } 778eda14cbcSMatt Macy 779eda14cbcSMatt Macy /* if it's <= 128 bytes, save the corruption directly */ 780eda14cbcSMatt Macy #define ZFM_MAX_INLINE (128 / sizeof (uint64_t)) 781eda14cbcSMatt Macy 782eda14cbcSMatt Macy #define MAX_RANGES 16 783eda14cbcSMatt Macy 784eda14cbcSMatt Macy typedef struct zfs_ecksum_info { 785eda14cbcSMatt Macy /* inline arrays of bits set and cleared. */ 786eda14cbcSMatt Macy uint64_t zei_bits_set[ZFM_MAX_INLINE]; 787eda14cbcSMatt Macy uint64_t zei_bits_cleared[ZFM_MAX_INLINE]; 788eda14cbcSMatt Macy 789eda14cbcSMatt Macy /* 790eda14cbcSMatt Macy * for each range, the number of bits set and cleared. The Hamming 791eda14cbcSMatt Macy * distance between the good and bad buffers is the sum of them all. 792eda14cbcSMatt Macy */ 793eda14cbcSMatt Macy uint32_t zei_range_sets[MAX_RANGES]; 794eda14cbcSMatt Macy uint32_t zei_range_clears[MAX_RANGES]; 795eda14cbcSMatt Macy 796eda14cbcSMatt Macy struct zei_ranges { 797eda14cbcSMatt Macy uint32_t zr_start; 798eda14cbcSMatt Macy uint32_t zr_end; 799eda14cbcSMatt Macy } zei_ranges[MAX_RANGES]; 800eda14cbcSMatt Macy 801eda14cbcSMatt Macy size_t zei_range_count; 802eda14cbcSMatt Macy uint32_t zei_mingap; 803eda14cbcSMatt Macy uint32_t zei_allowed_mingap; 804eda14cbcSMatt Macy 805eda14cbcSMatt Macy } zfs_ecksum_info_t; 806eda14cbcSMatt Macy 807eda14cbcSMatt Macy static void 808315ee00fSMartin Matuska update_bad_bits(uint64_t value_arg, uint32_t *count) 809eda14cbcSMatt Macy { 810eda14cbcSMatt Macy size_t i; 811eda14cbcSMatt Macy size_t bits = 0; 812eda14cbcSMatt Macy uint64_t value = BE_64(value_arg); 813eda14cbcSMatt Macy 814eda14cbcSMatt Macy /* We store the bits in big-endian (largest-first) order */ 815eda14cbcSMatt Macy for (i = 0; i < 64; i++) { 816315ee00fSMartin Matuska if (value & (1ull << i)) 817eda14cbcSMatt Macy ++bits; 818eda14cbcSMatt Macy } 819eda14cbcSMatt Macy /* update the count of bits changed */ 820eda14cbcSMatt Macy *count += bits; 821eda14cbcSMatt Macy } 822eda14cbcSMatt Macy 823eda14cbcSMatt Macy /* 824eda14cbcSMatt Macy * We've now filled up the range array, and need to increase "mingap" and 825eda14cbcSMatt Macy * shrink the range list accordingly. zei_mingap is always the smallest 826eda14cbcSMatt Macy * distance between array entries, so we set the new_allowed_gap to be 827eda14cbcSMatt Macy * one greater than that. We then go through the list, joining together 828eda14cbcSMatt Macy * any ranges which are closer than the new_allowed_gap. 829eda14cbcSMatt Macy * 830eda14cbcSMatt Macy * By construction, there will be at least one. We also update zei_mingap 831eda14cbcSMatt Macy * to the new smallest gap, to prepare for our next invocation. 832eda14cbcSMatt Macy */ 833eda14cbcSMatt Macy static void 834eda14cbcSMatt Macy zei_shrink_ranges(zfs_ecksum_info_t *eip) 835eda14cbcSMatt Macy { 836eda14cbcSMatt Macy uint32_t mingap = UINT32_MAX; 837eda14cbcSMatt Macy uint32_t new_allowed_gap = eip->zei_mingap + 1; 838eda14cbcSMatt Macy 839eda14cbcSMatt Macy size_t idx, output; 840eda14cbcSMatt Macy size_t max = eip->zei_range_count; 841eda14cbcSMatt Macy 842eda14cbcSMatt Macy struct zei_ranges *r = eip->zei_ranges; 843eda14cbcSMatt Macy 844eda14cbcSMatt Macy ASSERT3U(eip->zei_range_count, >, 0); 845eda14cbcSMatt Macy ASSERT3U(eip->zei_range_count, <=, MAX_RANGES); 846eda14cbcSMatt Macy 847eda14cbcSMatt Macy output = idx = 0; 848eda14cbcSMatt Macy while (idx < max - 1) { 849eda14cbcSMatt Macy uint32_t start = r[idx].zr_start; 850eda14cbcSMatt Macy uint32_t end = r[idx].zr_end; 851eda14cbcSMatt Macy 852eda14cbcSMatt Macy while (idx < max - 1) { 853eda14cbcSMatt Macy idx++; 854eda14cbcSMatt Macy 855eda14cbcSMatt Macy uint32_t nstart = r[idx].zr_start; 856eda14cbcSMatt Macy uint32_t nend = r[idx].zr_end; 857eda14cbcSMatt Macy 858eda14cbcSMatt Macy uint32_t gap = nstart - end; 859eda14cbcSMatt Macy if (gap < new_allowed_gap) { 860eda14cbcSMatt Macy end = nend; 861eda14cbcSMatt Macy continue; 862eda14cbcSMatt Macy } 863eda14cbcSMatt Macy if (gap < mingap) 864eda14cbcSMatt Macy mingap = gap; 865eda14cbcSMatt Macy break; 866eda14cbcSMatt Macy } 867eda14cbcSMatt Macy r[output].zr_start = start; 868eda14cbcSMatt Macy r[output].zr_end = end; 869eda14cbcSMatt Macy output++; 870eda14cbcSMatt Macy } 871eda14cbcSMatt Macy ASSERT3U(output, <, eip->zei_range_count); 872eda14cbcSMatt Macy eip->zei_range_count = output; 873eda14cbcSMatt Macy eip->zei_mingap = mingap; 874eda14cbcSMatt Macy eip->zei_allowed_mingap = new_allowed_gap; 875eda14cbcSMatt Macy } 876eda14cbcSMatt Macy 877eda14cbcSMatt Macy static void 878eda14cbcSMatt Macy zei_add_range(zfs_ecksum_info_t *eip, int start, int end) 879eda14cbcSMatt Macy { 880eda14cbcSMatt Macy struct zei_ranges *r = eip->zei_ranges; 881eda14cbcSMatt Macy size_t count = eip->zei_range_count; 882eda14cbcSMatt Macy 883eda14cbcSMatt Macy if (count >= MAX_RANGES) { 884eda14cbcSMatt Macy zei_shrink_ranges(eip); 885eda14cbcSMatt Macy count = eip->zei_range_count; 886eda14cbcSMatt Macy } 887eda14cbcSMatt Macy if (count == 0) { 888eda14cbcSMatt Macy eip->zei_mingap = UINT32_MAX; 889eda14cbcSMatt Macy eip->zei_allowed_mingap = 1; 890eda14cbcSMatt Macy } else { 891eda14cbcSMatt Macy int gap = start - r[count - 1].zr_end; 892eda14cbcSMatt Macy 893eda14cbcSMatt Macy if (gap < eip->zei_allowed_mingap) { 894eda14cbcSMatt Macy r[count - 1].zr_end = end; 895eda14cbcSMatt Macy return; 896eda14cbcSMatt Macy } 897eda14cbcSMatt Macy if (gap < eip->zei_mingap) 898eda14cbcSMatt Macy eip->zei_mingap = gap; 899eda14cbcSMatt Macy } 900eda14cbcSMatt Macy r[count].zr_start = start; 901eda14cbcSMatt Macy r[count].zr_end = end; 902eda14cbcSMatt Macy eip->zei_range_count++; 903eda14cbcSMatt Macy } 904eda14cbcSMatt Macy 905eda14cbcSMatt Macy static size_t 906eda14cbcSMatt Macy zei_range_total_size(zfs_ecksum_info_t *eip) 907eda14cbcSMatt Macy { 908eda14cbcSMatt Macy struct zei_ranges *r = eip->zei_ranges; 909eda14cbcSMatt Macy size_t count = eip->zei_range_count; 910eda14cbcSMatt Macy size_t result = 0; 911eda14cbcSMatt Macy size_t idx; 912eda14cbcSMatt Macy 913eda14cbcSMatt Macy for (idx = 0; idx < count; idx++) 914eda14cbcSMatt Macy result += (r[idx].zr_end - r[idx].zr_start); 915eda14cbcSMatt Macy 916eda14cbcSMatt Macy return (result); 917eda14cbcSMatt Macy } 918eda14cbcSMatt Macy 919eda14cbcSMatt Macy static zfs_ecksum_info_t * 920eda14cbcSMatt Macy annotate_ecksum(nvlist_t *ereport, zio_bad_cksum_t *info, 921eda14cbcSMatt Macy const abd_t *goodabd, const abd_t *badabd, size_t size, 922eda14cbcSMatt Macy boolean_t drop_if_identical) 923eda14cbcSMatt Macy { 924eda14cbcSMatt Macy const uint64_t *good; 925eda14cbcSMatt Macy const uint64_t *bad; 926eda14cbcSMatt Macy 927eda14cbcSMatt Macy size_t nui64s = size / sizeof (uint64_t); 928eda14cbcSMatt Macy 929eda14cbcSMatt Macy size_t inline_size; 930eda14cbcSMatt Macy int no_inline = 0; 931eda14cbcSMatt Macy size_t idx; 932eda14cbcSMatt Macy size_t range; 933eda14cbcSMatt Macy 934eda14cbcSMatt Macy size_t offset = 0; 935eda14cbcSMatt Macy ssize_t start = -1; 936eda14cbcSMatt Macy 937eda14cbcSMatt Macy zfs_ecksum_info_t *eip = kmem_zalloc(sizeof (*eip), KM_SLEEP); 938eda14cbcSMatt Macy 939eda14cbcSMatt Macy /* don't do any annotation for injected checksum errors */ 940eda14cbcSMatt Macy if (info != NULL && info->zbc_injected) 941eda14cbcSMatt Macy return (eip); 942eda14cbcSMatt Macy 943eda14cbcSMatt Macy if (info != NULL && info->zbc_has_cksum) { 944eda14cbcSMatt Macy fm_payload_set(ereport, 945eda14cbcSMatt Macy FM_EREPORT_PAYLOAD_ZFS_CKSUM_ALGO, 946eda14cbcSMatt Macy DATA_TYPE_STRING, 947eda14cbcSMatt Macy info->zbc_checksum_name, 948eda14cbcSMatt Macy NULL); 949eda14cbcSMatt Macy 950eda14cbcSMatt Macy if (info->zbc_byteswapped) { 951eda14cbcSMatt Macy fm_payload_set(ereport, 952eda14cbcSMatt Macy FM_EREPORT_PAYLOAD_ZFS_CKSUM_BYTESWAP, 953eda14cbcSMatt Macy DATA_TYPE_BOOLEAN, 1, 954eda14cbcSMatt Macy NULL); 955eda14cbcSMatt Macy } 956eda14cbcSMatt Macy } 957eda14cbcSMatt Macy 958eda14cbcSMatt Macy if (badabd == NULL || goodabd == NULL) 959eda14cbcSMatt Macy return (eip); 960eda14cbcSMatt Macy 961eda14cbcSMatt Macy ASSERT3U(nui64s, <=, UINT32_MAX); 962eda14cbcSMatt Macy ASSERT3U(size, ==, nui64s * sizeof (uint64_t)); 963eda14cbcSMatt Macy ASSERT3U(size, <=, SPA_MAXBLOCKSIZE); 964eda14cbcSMatt Macy ASSERT3U(size, <=, UINT32_MAX); 965eda14cbcSMatt Macy 966eda14cbcSMatt Macy good = (const uint64_t *) abd_borrow_buf_copy((abd_t *)goodabd, size); 967eda14cbcSMatt Macy bad = (const uint64_t *) abd_borrow_buf_copy((abd_t *)badabd, size); 968eda14cbcSMatt Macy 969eda14cbcSMatt Macy /* build up the range list by comparing the two buffers. */ 970eda14cbcSMatt Macy for (idx = 0; idx < nui64s; idx++) { 971eda14cbcSMatt Macy if (good[idx] == bad[idx]) { 972eda14cbcSMatt Macy if (start == -1) 973eda14cbcSMatt Macy continue; 974eda14cbcSMatt Macy 975eda14cbcSMatt Macy zei_add_range(eip, start, idx); 976eda14cbcSMatt Macy start = -1; 977eda14cbcSMatt Macy } else { 978eda14cbcSMatt Macy if (start != -1) 979eda14cbcSMatt Macy continue; 980eda14cbcSMatt Macy 981eda14cbcSMatt Macy start = idx; 982eda14cbcSMatt Macy } 983eda14cbcSMatt Macy } 984eda14cbcSMatt Macy if (start != -1) 985eda14cbcSMatt Macy zei_add_range(eip, start, idx); 986eda14cbcSMatt Macy 987eda14cbcSMatt Macy /* See if it will fit in our inline buffers */ 988eda14cbcSMatt Macy inline_size = zei_range_total_size(eip); 989eda14cbcSMatt Macy if (inline_size > ZFM_MAX_INLINE) 990eda14cbcSMatt Macy no_inline = 1; 991eda14cbcSMatt Macy 992eda14cbcSMatt Macy /* 993eda14cbcSMatt Macy * If there is no change and we want to drop if the buffers are 994eda14cbcSMatt Macy * identical, do so. 995eda14cbcSMatt Macy */ 996eda14cbcSMatt Macy if (inline_size == 0 && drop_if_identical) { 997eda14cbcSMatt Macy kmem_free(eip, sizeof (*eip)); 998eda14cbcSMatt Macy abd_return_buf((abd_t *)goodabd, (void *)good, size); 999eda14cbcSMatt Macy abd_return_buf((abd_t *)badabd, (void *)bad, size); 1000eda14cbcSMatt Macy return (NULL); 1001eda14cbcSMatt Macy } 1002eda14cbcSMatt Macy 1003eda14cbcSMatt Macy /* 1004eda14cbcSMatt Macy * Now walk through the ranges, filling in the details of the 1005eda14cbcSMatt Macy * differences. Also convert our uint64_t-array offsets to byte 1006eda14cbcSMatt Macy * offsets. 1007eda14cbcSMatt Macy */ 1008eda14cbcSMatt Macy for (range = 0; range < eip->zei_range_count; range++) { 1009eda14cbcSMatt Macy size_t start = eip->zei_ranges[range].zr_start; 1010eda14cbcSMatt Macy size_t end = eip->zei_ranges[range].zr_end; 1011eda14cbcSMatt Macy 1012eda14cbcSMatt Macy for (idx = start; idx < end; idx++) { 1013eda14cbcSMatt Macy uint64_t set, cleared; 1014eda14cbcSMatt Macy 1015eda14cbcSMatt Macy // bits set in bad, but not in good 1016eda14cbcSMatt Macy set = ((~good[idx]) & bad[idx]); 1017eda14cbcSMatt Macy // bits set in good, but not in bad 1018eda14cbcSMatt Macy cleared = (good[idx] & (~bad[idx])); 1019eda14cbcSMatt Macy 1020eda14cbcSMatt Macy if (!no_inline) { 1021eda14cbcSMatt Macy ASSERT3U(offset, <, inline_size); 1022eda14cbcSMatt Macy eip->zei_bits_set[offset] = set; 1023eda14cbcSMatt Macy eip->zei_bits_cleared[offset] = cleared; 1024eda14cbcSMatt Macy offset++; 1025eda14cbcSMatt Macy } 1026eda14cbcSMatt Macy 1027315ee00fSMartin Matuska update_bad_bits(set, &eip->zei_range_sets[range]); 1028315ee00fSMartin Matuska update_bad_bits(cleared, &eip->zei_range_clears[range]); 1029eda14cbcSMatt Macy } 1030eda14cbcSMatt Macy 1031eda14cbcSMatt Macy /* convert to byte offsets */ 1032eda14cbcSMatt Macy eip->zei_ranges[range].zr_start *= sizeof (uint64_t); 1033eda14cbcSMatt Macy eip->zei_ranges[range].zr_end *= sizeof (uint64_t); 1034eda14cbcSMatt Macy } 1035eda14cbcSMatt Macy 1036eda14cbcSMatt Macy abd_return_buf((abd_t *)goodabd, (void *)good, size); 1037eda14cbcSMatt Macy abd_return_buf((abd_t *)badabd, (void *)bad, size); 1038eda14cbcSMatt Macy 1039eda14cbcSMatt Macy eip->zei_allowed_mingap *= sizeof (uint64_t); 1040eda14cbcSMatt Macy inline_size *= sizeof (uint64_t); 1041eda14cbcSMatt Macy 1042eda14cbcSMatt Macy /* fill in ereport */ 1043eda14cbcSMatt Macy fm_payload_set(ereport, 1044eda14cbcSMatt Macy FM_EREPORT_PAYLOAD_ZFS_BAD_OFFSET_RANGES, 1045eda14cbcSMatt Macy DATA_TYPE_UINT32_ARRAY, 2 * eip->zei_range_count, 1046eda14cbcSMatt Macy (uint32_t *)eip->zei_ranges, 1047eda14cbcSMatt Macy FM_EREPORT_PAYLOAD_ZFS_BAD_RANGE_MIN_GAP, 1048eda14cbcSMatt Macy DATA_TYPE_UINT32, eip->zei_allowed_mingap, 1049eda14cbcSMatt Macy FM_EREPORT_PAYLOAD_ZFS_BAD_RANGE_SETS, 1050eda14cbcSMatt Macy DATA_TYPE_UINT32_ARRAY, eip->zei_range_count, eip->zei_range_sets, 1051eda14cbcSMatt Macy FM_EREPORT_PAYLOAD_ZFS_BAD_RANGE_CLEARS, 1052eda14cbcSMatt Macy DATA_TYPE_UINT32_ARRAY, eip->zei_range_count, eip->zei_range_clears, 1053eda14cbcSMatt Macy NULL); 1054eda14cbcSMatt Macy 1055eda14cbcSMatt Macy if (!no_inline) { 1056eda14cbcSMatt Macy fm_payload_set(ereport, 1057eda14cbcSMatt Macy FM_EREPORT_PAYLOAD_ZFS_BAD_SET_BITS, 1058eda14cbcSMatt Macy DATA_TYPE_UINT8_ARRAY, 1059eda14cbcSMatt Macy inline_size, (uint8_t *)eip->zei_bits_set, 1060eda14cbcSMatt Macy FM_EREPORT_PAYLOAD_ZFS_BAD_CLEARED_BITS, 1061eda14cbcSMatt Macy DATA_TYPE_UINT8_ARRAY, 1062eda14cbcSMatt Macy inline_size, (uint8_t *)eip->zei_bits_cleared, 1063eda14cbcSMatt Macy NULL); 1064eda14cbcSMatt Macy } 1065eda14cbcSMatt Macy return (eip); 1066eda14cbcSMatt Macy } 1067ba27dd8bSMartin Matuska #else 1068ba27dd8bSMartin Matuska void 1069ba27dd8bSMartin Matuska zfs_ereport_clear(spa_t *spa, vdev_t *vd) 1070ba27dd8bSMartin Matuska { 1071e92ffd9bSMartin Matuska (void) spa, (void) vd; 1072ba27dd8bSMartin Matuska } 1073eda14cbcSMatt Macy #endif 1074eda14cbcSMatt Macy 1075eda14cbcSMatt Macy /* 1076eda14cbcSMatt Macy * Make sure our event is still valid for the given zio/vdev/pool. For example, 1077eda14cbcSMatt Macy * we don't want to keep logging events for a faulted or missing vdev. 1078eda14cbcSMatt Macy */ 1079eda14cbcSMatt Macy boolean_t 1080eda14cbcSMatt Macy zfs_ereport_is_valid(const char *subclass, spa_t *spa, vdev_t *vd, zio_t *zio) 1081eda14cbcSMatt Macy { 1082eda14cbcSMatt Macy #ifdef _KERNEL 1083eda14cbcSMatt Macy /* 1084eda14cbcSMatt Macy * If we are doing a spa_tryimport() or in recovery mode, 1085eda14cbcSMatt Macy * ignore errors. 1086eda14cbcSMatt Macy */ 1087eda14cbcSMatt Macy if (spa_load_state(spa) == SPA_LOAD_TRYIMPORT || 1088eda14cbcSMatt Macy spa_load_state(spa) == SPA_LOAD_RECOVER) 1089eda14cbcSMatt Macy return (B_FALSE); 1090eda14cbcSMatt Macy 1091eda14cbcSMatt Macy /* 1092eda14cbcSMatt Macy * If we are in the middle of opening a pool, and the previous attempt 1093eda14cbcSMatt Macy * failed, don't bother logging any new ereports - we're just going to 1094eda14cbcSMatt Macy * get the same diagnosis anyway. 1095eda14cbcSMatt Macy */ 1096eda14cbcSMatt Macy if (spa_load_state(spa) != SPA_LOAD_NONE && 1097eda14cbcSMatt Macy spa->spa_last_open_failed) 1098eda14cbcSMatt Macy return (B_FALSE); 1099eda14cbcSMatt Macy 1100eda14cbcSMatt Macy if (zio != NULL) { 11011719886fSMartin Matuska /* If this is not a read or write zio, ignore the error */ 1102eda14cbcSMatt Macy if (zio->io_type != ZIO_TYPE_READ && 1103eda14cbcSMatt Macy zio->io_type != ZIO_TYPE_WRITE) 1104eda14cbcSMatt Macy return (B_FALSE); 1105eda14cbcSMatt Macy 1106eda14cbcSMatt Macy if (vd != NULL) { 1107eda14cbcSMatt Macy /* 1108eda14cbcSMatt Macy * If the vdev has already been marked as failing due 1109eda14cbcSMatt Macy * to a failed probe, then ignore any subsequent I/O 1110eda14cbcSMatt Macy * errors, as the DE will automatically fault the vdev 1111eda14cbcSMatt Macy * on the first such failure. This also catches cases 1112eda14cbcSMatt Macy * where vdev_remove_wanted is set and the device has 1113eda14cbcSMatt Macy * not yet been asynchronously placed into the REMOVED 1114eda14cbcSMatt Macy * state. 1115eda14cbcSMatt Macy */ 1116eda14cbcSMatt Macy if (zio->io_vd == vd && !vdev_accessible(vd, zio)) 1117eda14cbcSMatt Macy return (B_FALSE); 1118eda14cbcSMatt Macy 1119eda14cbcSMatt Macy /* 1120eda14cbcSMatt Macy * Ignore checksum errors for reads from DTL regions of 1121eda14cbcSMatt Macy * leaf vdevs. 1122eda14cbcSMatt Macy */ 1123eda14cbcSMatt Macy if (zio->io_type == ZIO_TYPE_READ && 1124eda14cbcSMatt Macy zio->io_error == ECKSUM && 1125eda14cbcSMatt Macy vd->vdev_ops->vdev_op_leaf && 1126eda14cbcSMatt Macy vdev_dtl_contains(vd, DTL_MISSING, zio->io_txg, 1)) 1127eda14cbcSMatt Macy return (B_FALSE); 1128eda14cbcSMatt Macy } 1129eda14cbcSMatt Macy } 1130eda14cbcSMatt Macy 1131eda14cbcSMatt Macy /* 1132eda14cbcSMatt Macy * For probe failure, we want to avoid posting ereports if we've 1133eda14cbcSMatt Macy * already removed the device in the meantime. 1134eda14cbcSMatt Macy */ 1135eda14cbcSMatt Macy if (vd != NULL && 1136eda14cbcSMatt Macy strcmp(subclass, FM_EREPORT_ZFS_PROBE_FAILURE) == 0 && 1137eda14cbcSMatt Macy (vd->vdev_remove_wanted || vd->vdev_state == VDEV_STATE_REMOVED)) 1138eda14cbcSMatt Macy return (B_FALSE); 1139eda14cbcSMatt Macy 1140eda14cbcSMatt Macy /* Ignore bogus delay events (like from ioctls or unqueued IOs) */ 1141eda14cbcSMatt Macy if ((strcmp(subclass, FM_EREPORT_ZFS_DELAY) == 0) && 1142eda14cbcSMatt Macy (zio != NULL) && (!zio->io_timestamp)) { 1143eda14cbcSMatt Macy return (B_FALSE); 1144eda14cbcSMatt Macy } 1145e92ffd9bSMartin Matuska #else 1146e92ffd9bSMartin Matuska (void) subclass, (void) spa, (void) vd, (void) zio; 1147eda14cbcSMatt Macy #endif 1148eda14cbcSMatt Macy return (B_TRUE); 1149eda14cbcSMatt Macy } 1150eda14cbcSMatt Macy 1151eda14cbcSMatt Macy /* 11522c48331dSMatt Macy * Post an ereport for the given subclass 11532c48331dSMatt Macy * 11542c48331dSMatt Macy * Returns 11552c48331dSMatt Macy * - 0 if an event was posted 11562c48331dSMatt Macy * - EINVAL if there was a problem posting event 11572c48331dSMatt Macy * - EBUSY if the event was rate limited 11582c48331dSMatt Macy * - EALREADY if the event was already posted (duplicate) 1159eda14cbcSMatt Macy */ 1160eda14cbcSMatt Macy int 1161eda14cbcSMatt Macy zfs_ereport_post(const char *subclass, spa_t *spa, vdev_t *vd, 11622c48331dSMatt Macy const zbookmark_phys_t *zb, zio_t *zio, uint64_t state) 1163eda14cbcSMatt Macy { 1164eda14cbcSMatt Macy int rc = 0; 1165eda14cbcSMatt Macy #ifdef _KERNEL 1166eda14cbcSMatt Macy nvlist_t *ereport = NULL; 1167eda14cbcSMatt Macy nvlist_t *detector = NULL; 1168eda14cbcSMatt Macy 11692c48331dSMatt Macy if (!zfs_ereport_is_valid(subclass, spa, vd, zio)) 11702c48331dSMatt Macy return (EINVAL); 11712c48331dSMatt Macy 11722c48331dSMatt Macy if (zfs_ereport_is_duplicate(subclass, spa, vd, zb, zio, 0, 0)) 11732c48331dSMatt Macy return (SET_ERROR(EALREADY)); 11742c48331dSMatt Macy 1175eda14cbcSMatt Macy if (zfs_is_ratelimiting_event(subclass, vd)) 1176eda14cbcSMatt Macy return (SET_ERROR(EBUSY)); 1177eda14cbcSMatt Macy 1178eda14cbcSMatt Macy if (!zfs_ereport_start(&ereport, &detector, subclass, spa, vd, 11792c48331dSMatt Macy zb, zio, state, 0)) 1180eda14cbcSMatt Macy return (SET_ERROR(EINVAL)); /* couldn't post event */ 1181eda14cbcSMatt Macy 1182eda14cbcSMatt Macy if (ereport == NULL) 1183eda14cbcSMatt Macy return (SET_ERROR(EINVAL)); 1184eda14cbcSMatt Macy 1185eda14cbcSMatt Macy /* Cleanup is handled by the callback function */ 1186eda14cbcSMatt Macy rc = zfs_zevent_post(ereport, detector, zfs_zevent_post_cb); 1187e92ffd9bSMartin Matuska #else 1188e92ffd9bSMartin Matuska (void) subclass, (void) spa, (void) vd, (void) zb, (void) zio, 1189e92ffd9bSMartin Matuska (void) state; 1190eda14cbcSMatt Macy #endif 1191eda14cbcSMatt Macy return (rc); 1192eda14cbcSMatt Macy } 1193eda14cbcSMatt Macy 11942c48331dSMatt Macy /* 11952c48331dSMatt Macy * Prepare a checksum ereport 11962c48331dSMatt Macy * 11972c48331dSMatt Macy * Returns 11982c48331dSMatt Macy * - 0 if an event was posted 11992c48331dSMatt Macy * - EINVAL if there was a problem posting event 12002c48331dSMatt Macy * - EBUSY if the event was rate limited 12012c48331dSMatt Macy * - EALREADY if the event was already posted (duplicate) 12022c48331dSMatt Macy */ 12032c48331dSMatt Macy int 1204eda14cbcSMatt Macy zfs_ereport_start_checksum(spa_t *spa, vdev_t *vd, const zbookmark_phys_t *zb, 1205f9693befSMartin Matuska struct zio *zio, uint64_t offset, uint64_t length, zio_bad_cksum_t *info) 1206eda14cbcSMatt Macy { 1207eda14cbcSMatt Macy zio_cksum_report_t *report; 1208eda14cbcSMatt Macy 1209eda14cbcSMatt Macy #ifdef _KERNEL 12102c48331dSMatt Macy if (!zfs_ereport_is_valid(FM_EREPORT_ZFS_CHECKSUM, spa, vd, zio)) 12112c48331dSMatt Macy return (SET_ERROR(EINVAL)); 12122c48331dSMatt Macy 12132c48331dSMatt Macy if (zfs_ereport_is_duplicate(FM_EREPORT_ZFS_CHECKSUM, spa, vd, zb, zio, 12142c48331dSMatt Macy offset, length)) 12152c48331dSMatt Macy return (SET_ERROR(EALREADY)); 12162c48331dSMatt Macy 1217eda14cbcSMatt Macy if (zfs_is_ratelimiting_event(FM_EREPORT_ZFS_CHECKSUM, vd)) 12182c48331dSMatt Macy return (SET_ERROR(EBUSY)); 1219e92ffd9bSMartin Matuska #else 1220e92ffd9bSMartin Matuska (void) zb, (void) offset; 1221eda14cbcSMatt Macy #endif 1222eda14cbcSMatt Macy 1223eda14cbcSMatt Macy report = kmem_zalloc(sizeof (*report), KM_SLEEP); 1224eda14cbcSMatt Macy 1225f9693befSMartin Matuska zio_vsd_default_cksum_report(zio, report); 1226eda14cbcSMatt Macy 1227eda14cbcSMatt Macy /* copy the checksum failure information if it was provided */ 1228eda14cbcSMatt Macy if (info != NULL) { 1229eda14cbcSMatt Macy report->zcr_ckinfo = kmem_zalloc(sizeof (*info), KM_SLEEP); 1230da5137abSMartin Matuska memcpy(report->zcr_ckinfo, info, sizeof (*info)); 1231eda14cbcSMatt Macy } 1232eda14cbcSMatt Macy 12337877fdebSMatt Macy report->zcr_sector = 1ULL << vd->vdev_top->vdev_ashift; 12347877fdebSMatt Macy report->zcr_align = 12357877fdebSMatt Macy vdev_psize_to_asize(vd->vdev_top, report->zcr_sector); 1236eda14cbcSMatt Macy report->zcr_length = length; 1237eda14cbcSMatt Macy 1238eda14cbcSMatt Macy #ifdef _KERNEL 1239eac7052fSMatt Macy (void) zfs_ereport_start(&report->zcr_ereport, &report->zcr_detector, 1240eda14cbcSMatt Macy FM_EREPORT_ZFS_CHECKSUM, spa, vd, zb, zio, offset, length); 1241eda14cbcSMatt Macy 1242eda14cbcSMatt Macy if (report->zcr_ereport == NULL) { 1243eda14cbcSMatt Macy zfs_ereport_free_checksum(report); 12442c48331dSMatt Macy return (0); 1245eda14cbcSMatt Macy } 1246eda14cbcSMatt Macy #endif 1247eda14cbcSMatt Macy 1248eda14cbcSMatt Macy mutex_enter(&spa->spa_errlist_lock); 1249eda14cbcSMatt Macy report->zcr_next = zio->io_logical->io_cksum_report; 1250eda14cbcSMatt Macy zio->io_logical->io_cksum_report = report; 1251eda14cbcSMatt Macy mutex_exit(&spa->spa_errlist_lock); 12522c48331dSMatt Macy return (0); 1253eda14cbcSMatt Macy } 1254eda14cbcSMatt Macy 1255eda14cbcSMatt Macy void 1256eda14cbcSMatt Macy zfs_ereport_finish_checksum(zio_cksum_report_t *report, const abd_t *good_data, 1257eda14cbcSMatt Macy const abd_t *bad_data, boolean_t drop_if_identical) 1258eda14cbcSMatt Macy { 1259eda14cbcSMatt Macy #ifdef _KERNEL 1260eda14cbcSMatt Macy zfs_ecksum_info_t *info; 1261eda14cbcSMatt Macy 1262eda14cbcSMatt Macy info = annotate_ecksum(report->zcr_ereport, report->zcr_ckinfo, 1263eda14cbcSMatt Macy good_data, bad_data, report->zcr_length, drop_if_identical); 1264eda14cbcSMatt Macy if (info != NULL) 1265eda14cbcSMatt Macy zfs_zevent_post(report->zcr_ereport, 1266eda14cbcSMatt Macy report->zcr_detector, zfs_zevent_post_cb); 1267eda14cbcSMatt Macy else 1268eda14cbcSMatt Macy zfs_zevent_post_cb(report->zcr_ereport, report->zcr_detector); 1269eda14cbcSMatt Macy 1270eda14cbcSMatt Macy report->zcr_ereport = report->zcr_detector = NULL; 1271eda14cbcSMatt Macy if (info != NULL) 1272eda14cbcSMatt Macy kmem_free(info, sizeof (*info)); 1273e92ffd9bSMartin Matuska #else 1274e92ffd9bSMartin Matuska (void) report, (void) good_data, (void) bad_data, 1275e92ffd9bSMartin Matuska (void) drop_if_identical; 1276eda14cbcSMatt Macy #endif 1277eda14cbcSMatt Macy } 1278eda14cbcSMatt Macy 1279eda14cbcSMatt Macy void 1280eda14cbcSMatt Macy zfs_ereport_free_checksum(zio_cksum_report_t *rpt) 1281eda14cbcSMatt Macy { 1282eda14cbcSMatt Macy #ifdef _KERNEL 1283eda14cbcSMatt Macy if (rpt->zcr_ereport != NULL) { 1284eda14cbcSMatt Macy fm_nvlist_destroy(rpt->zcr_ereport, 1285eda14cbcSMatt Macy FM_NVA_FREE); 1286eda14cbcSMatt Macy fm_nvlist_destroy(rpt->zcr_detector, 1287eda14cbcSMatt Macy FM_NVA_FREE); 1288eda14cbcSMatt Macy } 1289eda14cbcSMatt Macy #endif 1290eda14cbcSMatt Macy rpt->zcr_free(rpt->zcr_cbdata, rpt->zcr_cbinfo); 1291eda14cbcSMatt Macy 1292eda14cbcSMatt Macy if (rpt->zcr_ckinfo != NULL) 1293eda14cbcSMatt Macy kmem_free(rpt->zcr_ckinfo, sizeof (*rpt->zcr_ckinfo)); 1294eda14cbcSMatt Macy 1295eda14cbcSMatt Macy kmem_free(rpt, sizeof (*rpt)); 1296eda14cbcSMatt Macy } 1297eda14cbcSMatt Macy 12982c48331dSMatt Macy /* 12992c48331dSMatt Macy * Post a checksum ereport 13002c48331dSMatt Macy * 13012c48331dSMatt Macy * Returns 13022c48331dSMatt Macy * - 0 if an event was posted 13032c48331dSMatt Macy * - EINVAL if there was a problem posting event 13042c48331dSMatt Macy * - EBUSY if the event was rate limited 13052c48331dSMatt Macy * - EALREADY if the event was already posted (duplicate) 13062c48331dSMatt Macy */ 1307eda14cbcSMatt Macy int 1308eda14cbcSMatt Macy zfs_ereport_post_checksum(spa_t *spa, vdev_t *vd, const zbookmark_phys_t *zb, 1309eda14cbcSMatt Macy struct zio *zio, uint64_t offset, uint64_t length, 1310eda14cbcSMatt Macy const abd_t *good_data, const abd_t *bad_data, zio_bad_cksum_t *zbc) 1311eda14cbcSMatt Macy { 1312eda14cbcSMatt Macy int rc = 0; 1313eda14cbcSMatt Macy #ifdef _KERNEL 1314eda14cbcSMatt Macy nvlist_t *ereport = NULL; 1315eda14cbcSMatt Macy nvlist_t *detector = NULL; 1316eda14cbcSMatt Macy zfs_ecksum_info_t *info; 1317eda14cbcSMatt Macy 13182c48331dSMatt Macy if (!zfs_ereport_is_valid(FM_EREPORT_ZFS_CHECKSUM, spa, vd, zio)) 13192c48331dSMatt Macy return (SET_ERROR(EINVAL)); 13202c48331dSMatt Macy 13212c48331dSMatt Macy if (zfs_ereport_is_duplicate(FM_EREPORT_ZFS_CHECKSUM, spa, vd, zb, zio, 13222c48331dSMatt Macy offset, length)) 13232c48331dSMatt Macy return (SET_ERROR(EALREADY)); 13242c48331dSMatt Macy 1325eda14cbcSMatt Macy if (zfs_is_ratelimiting_event(FM_EREPORT_ZFS_CHECKSUM, vd)) 13262c48331dSMatt Macy return (SET_ERROR(EBUSY)); 1327eda14cbcSMatt Macy 1328eda14cbcSMatt Macy if (!zfs_ereport_start(&ereport, &detector, FM_EREPORT_ZFS_CHECKSUM, 1329eda14cbcSMatt Macy spa, vd, zb, zio, offset, length) || (ereport == NULL)) { 1330eda14cbcSMatt Macy return (SET_ERROR(EINVAL)); 1331eda14cbcSMatt Macy } 1332eda14cbcSMatt Macy 1333eda14cbcSMatt Macy info = annotate_ecksum(ereport, zbc, good_data, bad_data, length, 1334eda14cbcSMatt Macy B_FALSE); 1335eda14cbcSMatt Macy 1336eda14cbcSMatt Macy if (info != NULL) { 1337eda14cbcSMatt Macy rc = zfs_zevent_post(ereport, detector, zfs_zevent_post_cb); 1338eda14cbcSMatt Macy kmem_free(info, sizeof (*info)); 1339eda14cbcSMatt Macy } 1340e92ffd9bSMartin Matuska #else 1341e92ffd9bSMartin Matuska (void) spa, (void) vd, (void) zb, (void) zio, (void) offset, 1342e92ffd9bSMartin Matuska (void) length, (void) good_data, (void) bad_data, (void) zbc; 1343eda14cbcSMatt Macy #endif 1344eda14cbcSMatt Macy return (rc); 1345eda14cbcSMatt Macy } 1346eda14cbcSMatt Macy 1347eda14cbcSMatt Macy /* 1348eda14cbcSMatt Macy * The 'sysevent.fs.zfs.*' events are signals posted to notify user space of 1349eda14cbcSMatt Macy * change in the pool. All sysevents are listed in sys/sysevent/eventdefs.h 1350eda14cbcSMatt Macy * and are designed to be consumed by the ZFS Event Daemon (ZED). For 1351eda14cbcSMatt Macy * additional details refer to the zed(8) man page. 1352eda14cbcSMatt Macy */ 1353eda14cbcSMatt Macy nvlist_t * 1354eda14cbcSMatt Macy zfs_event_create(spa_t *spa, vdev_t *vd, const char *type, const char *name, 1355eda14cbcSMatt Macy nvlist_t *aux) 1356eda14cbcSMatt Macy { 1357eda14cbcSMatt Macy nvlist_t *resource = NULL; 1358eda14cbcSMatt Macy #ifdef _KERNEL 1359eda14cbcSMatt Macy char class[64]; 1360eda14cbcSMatt Macy 1361eda14cbcSMatt Macy if (spa_load_state(spa) == SPA_LOAD_TRYIMPORT) 1362eda14cbcSMatt Macy return (NULL); 1363eda14cbcSMatt Macy 1364eda14cbcSMatt Macy if ((resource = fm_nvlist_create(NULL)) == NULL) 1365eda14cbcSMatt Macy return (NULL); 1366eda14cbcSMatt Macy 1367eda14cbcSMatt Macy (void) snprintf(class, sizeof (class), "%s.%s.%s", type, 1368eda14cbcSMatt Macy ZFS_ERROR_CLASS, name); 1369eda14cbcSMatt Macy VERIFY0(nvlist_add_uint8(resource, FM_VERSION, FM_RSRC_VERSION)); 1370eda14cbcSMatt Macy VERIFY0(nvlist_add_string(resource, FM_CLASS, class)); 1371eda14cbcSMatt Macy VERIFY0(nvlist_add_string(resource, 1372eda14cbcSMatt Macy FM_EREPORT_PAYLOAD_ZFS_POOL, spa_name(spa))); 1373eda14cbcSMatt Macy VERIFY0(nvlist_add_uint64(resource, 1374eda14cbcSMatt Macy FM_EREPORT_PAYLOAD_ZFS_POOL_GUID, spa_guid(spa))); 1375eda14cbcSMatt Macy VERIFY0(nvlist_add_uint64(resource, 1376eda14cbcSMatt Macy FM_EREPORT_PAYLOAD_ZFS_POOL_STATE, spa_state(spa))); 1377eda14cbcSMatt Macy VERIFY0(nvlist_add_int32(resource, 1378eda14cbcSMatt Macy FM_EREPORT_PAYLOAD_ZFS_POOL_CONTEXT, spa_load_state(spa))); 1379eda14cbcSMatt Macy 1380eda14cbcSMatt Macy if (vd) { 1381eda14cbcSMatt Macy VERIFY0(nvlist_add_uint64(resource, 1382eda14cbcSMatt Macy FM_EREPORT_PAYLOAD_ZFS_VDEV_GUID, vd->vdev_guid)); 1383eda14cbcSMatt Macy VERIFY0(nvlist_add_uint64(resource, 1384eda14cbcSMatt Macy FM_EREPORT_PAYLOAD_ZFS_VDEV_STATE, vd->vdev_state)); 1385eda14cbcSMatt Macy if (vd->vdev_path != NULL) 1386eda14cbcSMatt Macy VERIFY0(nvlist_add_string(resource, 1387eda14cbcSMatt Macy FM_EREPORT_PAYLOAD_ZFS_VDEV_PATH, vd->vdev_path)); 1388eda14cbcSMatt Macy if (vd->vdev_devid != NULL) 1389eda14cbcSMatt Macy VERIFY0(nvlist_add_string(resource, 1390eda14cbcSMatt Macy FM_EREPORT_PAYLOAD_ZFS_VDEV_DEVID, vd->vdev_devid)); 1391eda14cbcSMatt Macy if (vd->vdev_fru != NULL) 1392eda14cbcSMatt Macy VERIFY0(nvlist_add_string(resource, 1393eda14cbcSMatt Macy FM_EREPORT_PAYLOAD_ZFS_VDEV_FRU, vd->vdev_fru)); 1394eda14cbcSMatt Macy if (vd->vdev_enc_sysfs_path != NULL) 1395eda14cbcSMatt Macy VERIFY0(nvlist_add_string(resource, 1396eda14cbcSMatt Macy FM_EREPORT_PAYLOAD_ZFS_VDEV_ENC_SYSFS_PATH, 1397eda14cbcSMatt Macy vd->vdev_enc_sysfs_path)); 1398eda14cbcSMatt Macy } 1399eda14cbcSMatt Macy 1400eda14cbcSMatt Macy /* also copy any optional payload data */ 1401eda14cbcSMatt Macy if (aux) { 1402eda14cbcSMatt Macy nvpair_t *elem = NULL; 1403eda14cbcSMatt Macy 1404eda14cbcSMatt Macy while ((elem = nvlist_next_nvpair(aux, elem)) != NULL) 1405eda14cbcSMatt Macy (void) nvlist_add_nvpair(resource, elem); 1406eda14cbcSMatt Macy } 1407e92ffd9bSMartin Matuska #else 1408e92ffd9bSMartin Matuska (void) spa, (void) vd, (void) type, (void) name, (void) aux; 1409eda14cbcSMatt Macy #endif 1410eda14cbcSMatt Macy return (resource); 1411eda14cbcSMatt Macy } 1412eda14cbcSMatt Macy 1413eda14cbcSMatt Macy static void 1414eda14cbcSMatt Macy zfs_post_common(spa_t *spa, vdev_t *vd, const char *type, const char *name, 1415eda14cbcSMatt Macy nvlist_t *aux) 1416eda14cbcSMatt Macy { 1417eda14cbcSMatt Macy #ifdef _KERNEL 1418eda14cbcSMatt Macy nvlist_t *resource; 1419eda14cbcSMatt Macy 1420eda14cbcSMatt Macy resource = zfs_event_create(spa, vd, type, name, aux); 1421eda14cbcSMatt Macy if (resource) 1422eda14cbcSMatt Macy zfs_zevent_post(resource, NULL, zfs_zevent_post_cb); 1423e92ffd9bSMartin Matuska #else 1424e92ffd9bSMartin Matuska (void) spa, (void) vd, (void) type, (void) name, (void) aux; 1425eda14cbcSMatt Macy #endif 1426eda14cbcSMatt Macy } 1427eda14cbcSMatt Macy 1428eda14cbcSMatt Macy /* 1429eda14cbcSMatt Macy * The 'resource.fs.zfs.removed' event is an internal signal that the given vdev 1430eda14cbcSMatt Macy * has been removed from the system. This will cause the DE to ignore any 1431eda14cbcSMatt Macy * recent I/O errors, inferring that they are due to the asynchronous device 1432eda14cbcSMatt Macy * removal. 1433eda14cbcSMatt Macy */ 1434eda14cbcSMatt Macy void 1435eda14cbcSMatt Macy zfs_post_remove(spa_t *spa, vdev_t *vd) 1436eda14cbcSMatt Macy { 1437eda14cbcSMatt Macy zfs_post_common(spa, vd, FM_RSRC_CLASS, FM_RESOURCE_REMOVED, NULL); 1438eda14cbcSMatt Macy } 1439eda14cbcSMatt Macy 1440eda14cbcSMatt Macy /* 1441eda14cbcSMatt Macy * The 'resource.fs.zfs.autoreplace' event is an internal signal that the pool 1442eda14cbcSMatt Macy * has the 'autoreplace' property set, and therefore any broken vdevs will be 1443eda14cbcSMatt Macy * handled by higher level logic, and no vdev fault should be generated. 1444eda14cbcSMatt Macy */ 1445eda14cbcSMatt Macy void 1446eda14cbcSMatt Macy zfs_post_autoreplace(spa_t *spa, vdev_t *vd) 1447eda14cbcSMatt Macy { 1448eda14cbcSMatt Macy zfs_post_common(spa, vd, FM_RSRC_CLASS, FM_RESOURCE_AUTOREPLACE, NULL); 1449eda14cbcSMatt Macy } 1450eda14cbcSMatt Macy 1451eda14cbcSMatt Macy /* 1452eda14cbcSMatt Macy * The 'resource.fs.zfs.statechange' event is an internal signal that the 1453eda14cbcSMatt Macy * given vdev has transitioned its state to DEGRADED or HEALTHY. This will 1454eda14cbcSMatt Macy * cause the retire agent to repair any outstanding fault management cases 1455eda14cbcSMatt Macy * open because the device was not found (fault.fs.zfs.device). 1456eda14cbcSMatt Macy */ 1457eda14cbcSMatt Macy void 1458eda14cbcSMatt Macy zfs_post_state_change(spa_t *spa, vdev_t *vd, uint64_t laststate) 1459eda14cbcSMatt Macy { 1460eda14cbcSMatt Macy #ifdef _KERNEL 1461eda14cbcSMatt Macy nvlist_t *aux; 1462eda14cbcSMatt Macy 1463eda14cbcSMatt Macy /* 1464eda14cbcSMatt Macy * Add optional supplemental keys to payload 1465eda14cbcSMatt Macy */ 1466eda14cbcSMatt Macy aux = fm_nvlist_create(NULL); 1467eda14cbcSMatt Macy if (vd && aux) { 1468eda14cbcSMatt Macy if (vd->vdev_physpath) { 1469be181ee2SMartin Matuska fnvlist_add_string(aux, 1470eda14cbcSMatt Macy FM_EREPORT_PAYLOAD_ZFS_VDEV_PHYSPATH, 1471eda14cbcSMatt Macy vd->vdev_physpath); 1472eda14cbcSMatt Macy } 1473eda14cbcSMatt Macy if (vd->vdev_enc_sysfs_path) { 1474be181ee2SMartin Matuska fnvlist_add_string(aux, 1475eda14cbcSMatt Macy FM_EREPORT_PAYLOAD_ZFS_VDEV_ENC_SYSFS_PATH, 1476eda14cbcSMatt Macy vd->vdev_enc_sysfs_path); 1477eda14cbcSMatt Macy } 1478eda14cbcSMatt Macy 1479be181ee2SMartin Matuska fnvlist_add_uint64(aux, 1480eda14cbcSMatt Macy FM_EREPORT_PAYLOAD_ZFS_VDEV_LASTSTATE, laststate); 1481eda14cbcSMatt Macy } 1482eda14cbcSMatt Macy 1483eda14cbcSMatt Macy zfs_post_common(spa, vd, FM_RSRC_CLASS, FM_RESOURCE_STATECHANGE, 1484eda14cbcSMatt Macy aux); 1485eda14cbcSMatt Macy 1486eda14cbcSMatt Macy if (aux) 1487eda14cbcSMatt Macy fm_nvlist_destroy(aux, FM_NVA_FREE); 1488e92ffd9bSMartin Matuska #else 1489e92ffd9bSMartin Matuska (void) spa, (void) vd, (void) laststate; 1490eda14cbcSMatt Macy #endif 1491eda14cbcSMatt Macy } 1492eda14cbcSMatt Macy 14932c48331dSMatt Macy #ifdef _KERNEL 14942c48331dSMatt Macy void 14952c48331dSMatt Macy zfs_ereport_init(void) 14962c48331dSMatt Macy { 14972c48331dSMatt Macy mutex_init(&recent_events_lock, NULL, MUTEX_DEFAULT, NULL); 14982c48331dSMatt Macy list_create(&recent_events_list, sizeof (recent_events_node_t), 14992c48331dSMatt Macy offsetof(recent_events_node_t, re_list_link)); 15002c48331dSMatt Macy avl_create(&recent_events_tree, recent_events_compare, 15012c48331dSMatt Macy sizeof (recent_events_node_t), offsetof(recent_events_node_t, 15022c48331dSMatt Macy re_tree_link)); 15032c48331dSMatt Macy } 15042c48331dSMatt Macy 15052c48331dSMatt Macy /* 15062c48331dSMatt Macy * This 'early' fini needs to run before zfs_fini() which on Linux waits 15072c48331dSMatt Macy * for the system_delay_taskq to drain. 15082c48331dSMatt Macy */ 15092c48331dSMatt Macy void 15102c48331dSMatt Macy zfs_ereport_taskq_fini(void) 15112c48331dSMatt Macy { 15122c48331dSMatt Macy mutex_enter(&recent_events_lock); 15132c48331dSMatt Macy if (recent_events_cleaner_tqid != 0) { 15142c48331dSMatt Macy taskq_cancel_id(system_delay_taskq, recent_events_cleaner_tqid); 15152c48331dSMatt Macy recent_events_cleaner_tqid = 0; 15162c48331dSMatt Macy } 15172c48331dSMatt Macy mutex_exit(&recent_events_lock); 15182c48331dSMatt Macy } 15192c48331dSMatt Macy 15202c48331dSMatt Macy void 15212c48331dSMatt Macy zfs_ereport_fini(void) 15222c48331dSMatt Macy { 15232c48331dSMatt Macy recent_events_node_t *entry; 15242c48331dSMatt Macy 15254e8d558cSMartin Matuska while ((entry = list_remove_head(&recent_events_list)) != NULL) { 15262c48331dSMatt Macy avl_remove(&recent_events_tree, entry); 15272c48331dSMatt Macy kmem_free(entry, sizeof (*entry)); 15282c48331dSMatt Macy } 15292c48331dSMatt Macy avl_destroy(&recent_events_tree); 15302c48331dSMatt Macy list_destroy(&recent_events_list); 15312c48331dSMatt Macy mutex_destroy(&recent_events_lock); 15322c48331dSMatt Macy } 15332c48331dSMatt Macy 153453b70c86SMartin Matuska void 153553b70c86SMartin Matuska zfs_ereport_snapshot_post(const char *subclass, spa_t *spa, const char *name) 153653b70c86SMartin Matuska { 153753b70c86SMartin Matuska nvlist_t *aux; 153853b70c86SMartin Matuska 153953b70c86SMartin Matuska aux = fm_nvlist_create(NULL); 1540be181ee2SMartin Matuska fnvlist_add_string(aux, FM_EREPORT_PAYLOAD_ZFS_SNAPSHOT_NAME, name); 154153b70c86SMartin Matuska 154253b70c86SMartin Matuska zfs_post_common(spa, NULL, FM_RSRC_CLASS, subclass, aux); 154353b70c86SMartin Matuska fm_nvlist_destroy(aux, FM_NVA_FREE); 154453b70c86SMartin Matuska } 154553b70c86SMartin Matuska 154653b70c86SMartin Matuska /* 154753b70c86SMartin Matuska * Post when a event when a zvol is created or removed 154853b70c86SMartin Matuska * 154953b70c86SMartin Matuska * This is currently only used by macOS, since it uses the event to create 155053b70c86SMartin Matuska * symlinks between the volume name (mypool/myvol) and the actual /dev 155153b70c86SMartin Matuska * device (/dev/disk3). For example: 155253b70c86SMartin Matuska * 155353b70c86SMartin Matuska * /var/run/zfs/dsk/mypool/myvol -> /dev/disk3 155453b70c86SMartin Matuska * 155553b70c86SMartin Matuska * name: The full name of the zvol ("mypool/myvol") 155653b70c86SMartin Matuska * dev_name: The full /dev name for the zvol ("/dev/disk3") 155753b70c86SMartin Matuska * raw_name: The raw /dev name for the zvol ("/dev/rdisk3") 155853b70c86SMartin Matuska */ 155953b70c86SMartin Matuska void 156053b70c86SMartin Matuska zfs_ereport_zvol_post(const char *subclass, const char *name, 156153b70c86SMartin Matuska const char *dev_name, const char *raw_name) 156253b70c86SMartin Matuska { 156353b70c86SMartin Matuska nvlist_t *aux; 156453b70c86SMartin Matuska char *r; 156553b70c86SMartin Matuska 156653b70c86SMartin Matuska boolean_t locked = mutex_owned(&spa_namespace_lock); 156753b70c86SMartin Matuska if (!locked) mutex_enter(&spa_namespace_lock); 156853b70c86SMartin Matuska spa_t *spa = spa_lookup(name); 156953b70c86SMartin Matuska if (!locked) mutex_exit(&spa_namespace_lock); 157053b70c86SMartin Matuska 157153b70c86SMartin Matuska if (spa == NULL) 157253b70c86SMartin Matuska return; 157353b70c86SMartin Matuska 157453b70c86SMartin Matuska aux = fm_nvlist_create(NULL); 1575be181ee2SMartin Matuska fnvlist_add_string(aux, FM_EREPORT_PAYLOAD_ZFS_DEVICE_NAME, dev_name); 1576be181ee2SMartin Matuska fnvlist_add_string(aux, FM_EREPORT_PAYLOAD_ZFS_RAW_DEVICE_NAME, 157753b70c86SMartin Matuska raw_name); 157853b70c86SMartin Matuska r = strchr(name, '/'); 157953b70c86SMartin Matuska if (r && r[1]) 1580be181ee2SMartin Matuska fnvlist_add_string(aux, FM_EREPORT_PAYLOAD_ZFS_VOLUME, &r[1]); 158153b70c86SMartin Matuska 158253b70c86SMartin Matuska zfs_post_common(spa, NULL, FM_RSRC_CLASS, subclass, aux); 158353b70c86SMartin Matuska fm_nvlist_destroy(aux, FM_NVA_FREE); 158453b70c86SMartin Matuska } 158553b70c86SMartin Matuska 1586eda14cbcSMatt Macy EXPORT_SYMBOL(zfs_ereport_post); 1587eda14cbcSMatt Macy EXPORT_SYMBOL(zfs_ereport_is_valid); 1588eda14cbcSMatt Macy EXPORT_SYMBOL(zfs_ereport_post_checksum); 1589eda14cbcSMatt Macy EXPORT_SYMBOL(zfs_post_remove); 1590eda14cbcSMatt Macy EXPORT_SYMBOL(zfs_post_autoreplace); 1591eda14cbcSMatt Macy EXPORT_SYMBOL(zfs_post_state_change); 15922c48331dSMatt Macy 15932c48331dSMatt Macy ZFS_MODULE_PARAM(zfs_zevent, zfs_zevent_, retain_max, UINT, ZMOD_RW, 15942c48331dSMatt Macy "Maximum recent zevents records to retain for duplicate checking"); 15952c48331dSMatt Macy ZFS_MODULE_PARAM(zfs_zevent, zfs_zevent_, retain_expire_secs, UINT, ZMOD_RW, 15962c48331dSMatt Macy "Expiration time for recent zevents records"); 1597eda14cbcSMatt Macy #endif /* _KERNEL */ 1598