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 9eda14cbcSMatt Macy * or http://www.opensolaris.org/os/licensing. 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 (c) 2004, 2010, Oracle and/or its affiliates. All rights reserved. 23eda14cbcSMatt Macy */ 24eda14cbcSMatt Macy 25eda14cbcSMatt Macy /* 26eda14cbcSMatt Macy * Fault Management Architecture (FMA) Resource and Protocol Support 27eda14cbcSMatt Macy * 28eda14cbcSMatt Macy * The routines contained herein provide services to support kernel subsystems 29eda14cbcSMatt Macy * in publishing fault management telemetry (see PSARC 2002/412 and 2003/089). 30eda14cbcSMatt Macy * 31eda14cbcSMatt Macy * Name-Value Pair Lists 32eda14cbcSMatt Macy * 33eda14cbcSMatt Macy * The embodiment of an FMA protocol element (event, fmri or authority) is a 34eda14cbcSMatt Macy * name-value pair list (nvlist_t). FMA-specific nvlist constructor and 35eda14cbcSMatt Macy * destructor functions, fm_nvlist_create() and fm_nvlist_destroy(), are used 36eda14cbcSMatt Macy * to create an nvpair list using custom allocators. Callers may choose to 37eda14cbcSMatt Macy * allocate either from the kernel memory allocator, or from a preallocated 38eda14cbcSMatt Macy * buffer, useful in constrained contexts like high-level interrupt routines. 39eda14cbcSMatt Macy * 40eda14cbcSMatt Macy * Protocol Event and FMRI Construction 41eda14cbcSMatt Macy * 42eda14cbcSMatt Macy * Convenience routines are provided to construct nvlist events according to 43eda14cbcSMatt Macy * the FMA Event Protocol and Naming Schema specification for ereports and 44eda14cbcSMatt Macy * FMRIs for the dev, cpu, hc, mem, legacy hc and de schemes. 45eda14cbcSMatt Macy * 46eda14cbcSMatt Macy * ENA Manipulation 47eda14cbcSMatt Macy * 48eda14cbcSMatt Macy * Routines to generate ENA formats 0, 1 and 2 are available as well as 49eda14cbcSMatt Macy * routines to increment formats 1 and 2. Individual fields within the 50eda14cbcSMatt Macy * ENA are extractable via fm_ena_time_get(), fm_ena_id_get(), 51eda14cbcSMatt Macy * fm_ena_format_get() and fm_ena_gen_get(). 52eda14cbcSMatt Macy */ 53eda14cbcSMatt Macy 54eda14cbcSMatt Macy #include <sys/types.h> 55eda14cbcSMatt Macy #include <sys/time.h> 56eda14cbcSMatt Macy #include <sys/list.h> 57eda14cbcSMatt Macy #include <sys/nvpair.h> 58eda14cbcSMatt Macy #include <sys/cmn_err.h> 59eda14cbcSMatt Macy #include <sys/sysmacros.h> 60eda14cbcSMatt Macy #include <sys/sunddi.h> 61eda14cbcSMatt Macy #include <sys/systeminfo.h> 62eda14cbcSMatt Macy #include <sys/fm/util.h> 63eda14cbcSMatt Macy #include <sys/fm/protocol.h> 64eda14cbcSMatt Macy #include <sys/kstat.h> 65eda14cbcSMatt Macy #include <sys/zfs_context.h> 66eda14cbcSMatt Macy #ifdef _KERNEL 67eda14cbcSMatt Macy #include <sys/atomic.h> 68eda14cbcSMatt Macy #include <sys/condvar.h> 69eda14cbcSMatt Macy #include <sys/zfs_ioctl.h> 70eda14cbcSMatt Macy 71*16038816SMartin Matuska int zfs_zevent_len_max = 512; 72eda14cbcSMatt Macy 73eda14cbcSMatt Macy static int zevent_len_cur = 0; 74eda14cbcSMatt Macy static int zevent_waiters = 0; 75eda14cbcSMatt Macy static int zevent_flags = 0; 76eda14cbcSMatt Macy 77eda14cbcSMatt Macy /* Num events rate limited since the last time zfs_zevent_next() was called */ 78eda14cbcSMatt Macy static uint64_t ratelimit_dropped = 0; 79eda14cbcSMatt Macy 80eda14cbcSMatt Macy /* 81eda14cbcSMatt Macy * The EID (Event IDentifier) is used to uniquely tag a zevent when it is 82eda14cbcSMatt Macy * posted. The posted EIDs are monotonically increasing but not persistent. 83eda14cbcSMatt Macy * They will be reset to the initial value (1) each time the kernel module is 84eda14cbcSMatt Macy * loaded. 85eda14cbcSMatt Macy */ 86eda14cbcSMatt Macy static uint64_t zevent_eid = 0; 87eda14cbcSMatt Macy 88eda14cbcSMatt Macy static kmutex_t zevent_lock; 89eda14cbcSMatt Macy static list_t zevent_list; 90eda14cbcSMatt Macy static kcondvar_t zevent_cv; 91eda14cbcSMatt Macy #endif /* _KERNEL */ 92eda14cbcSMatt Macy 93eda14cbcSMatt Macy 94eda14cbcSMatt Macy /* 95eda14cbcSMatt Macy * Common fault management kstats to record event generation failures 96eda14cbcSMatt Macy */ 97eda14cbcSMatt Macy 98eda14cbcSMatt Macy struct erpt_kstat { 99eda14cbcSMatt Macy kstat_named_t erpt_dropped; /* num erpts dropped on post */ 100eda14cbcSMatt Macy kstat_named_t erpt_set_failed; /* num erpt set failures */ 101eda14cbcSMatt Macy kstat_named_t fmri_set_failed; /* num fmri set failures */ 102eda14cbcSMatt Macy kstat_named_t payload_set_failed; /* num payload set failures */ 1032c48331dSMatt Macy kstat_named_t erpt_duplicates; /* num duplicate erpts */ 104eda14cbcSMatt Macy }; 105eda14cbcSMatt Macy 106eda14cbcSMatt Macy static struct erpt_kstat erpt_kstat_data = { 107eda14cbcSMatt Macy { "erpt-dropped", KSTAT_DATA_UINT64 }, 108eda14cbcSMatt Macy { "erpt-set-failed", KSTAT_DATA_UINT64 }, 109eda14cbcSMatt Macy { "fmri-set-failed", KSTAT_DATA_UINT64 }, 1102c48331dSMatt Macy { "payload-set-failed", KSTAT_DATA_UINT64 }, 1112c48331dSMatt Macy { "erpt-duplicates", KSTAT_DATA_UINT64 } 112eda14cbcSMatt Macy }; 113eda14cbcSMatt Macy 114eda14cbcSMatt Macy kstat_t *fm_ksp; 115eda14cbcSMatt Macy 116eda14cbcSMatt Macy #ifdef _KERNEL 117eda14cbcSMatt Macy 118eda14cbcSMatt Macy static zevent_t * 119eda14cbcSMatt Macy zfs_zevent_alloc(void) 120eda14cbcSMatt Macy { 121eda14cbcSMatt Macy zevent_t *ev; 122eda14cbcSMatt Macy 123eda14cbcSMatt Macy ev = kmem_zalloc(sizeof (zevent_t), KM_SLEEP); 124eda14cbcSMatt Macy 125eda14cbcSMatt Macy list_create(&ev->ev_ze_list, sizeof (zfs_zevent_t), 126eda14cbcSMatt Macy offsetof(zfs_zevent_t, ze_node)); 127eda14cbcSMatt Macy list_link_init(&ev->ev_node); 128eda14cbcSMatt Macy 129eda14cbcSMatt Macy return (ev); 130eda14cbcSMatt Macy } 131eda14cbcSMatt Macy 132eda14cbcSMatt Macy static void 133eda14cbcSMatt Macy zfs_zevent_free(zevent_t *ev) 134eda14cbcSMatt Macy { 135eda14cbcSMatt Macy /* Run provided cleanup callback */ 136eda14cbcSMatt Macy ev->ev_cb(ev->ev_nvl, ev->ev_detector); 137eda14cbcSMatt Macy 138eda14cbcSMatt Macy list_destroy(&ev->ev_ze_list); 139eda14cbcSMatt Macy kmem_free(ev, sizeof (zevent_t)); 140eda14cbcSMatt Macy } 141eda14cbcSMatt Macy 142eda14cbcSMatt Macy static void 143eda14cbcSMatt Macy zfs_zevent_drain(zevent_t *ev) 144eda14cbcSMatt Macy { 145eda14cbcSMatt Macy zfs_zevent_t *ze; 146eda14cbcSMatt Macy 147eda14cbcSMatt Macy ASSERT(MUTEX_HELD(&zevent_lock)); 148eda14cbcSMatt Macy list_remove(&zevent_list, ev); 149eda14cbcSMatt Macy 150eda14cbcSMatt Macy /* Remove references to this event in all private file data */ 151eda14cbcSMatt Macy while ((ze = list_head(&ev->ev_ze_list)) != NULL) { 152eda14cbcSMatt Macy list_remove(&ev->ev_ze_list, ze); 153eda14cbcSMatt Macy ze->ze_zevent = NULL; 154eda14cbcSMatt Macy ze->ze_dropped++; 155eda14cbcSMatt Macy } 156eda14cbcSMatt Macy 157eda14cbcSMatt Macy zfs_zevent_free(ev); 158eda14cbcSMatt Macy } 159eda14cbcSMatt Macy 160eda14cbcSMatt Macy void 161eda14cbcSMatt Macy zfs_zevent_drain_all(int *count) 162eda14cbcSMatt Macy { 163eda14cbcSMatt Macy zevent_t *ev; 164eda14cbcSMatt Macy 165eda14cbcSMatt Macy mutex_enter(&zevent_lock); 166eda14cbcSMatt Macy while ((ev = list_head(&zevent_list)) != NULL) 167eda14cbcSMatt Macy zfs_zevent_drain(ev); 168eda14cbcSMatt Macy 169eda14cbcSMatt Macy *count = zevent_len_cur; 170eda14cbcSMatt Macy zevent_len_cur = 0; 171eda14cbcSMatt Macy mutex_exit(&zevent_lock); 172eda14cbcSMatt Macy } 173eda14cbcSMatt Macy 174eda14cbcSMatt Macy /* 175eda14cbcSMatt Macy * New zevents are inserted at the head. If the maximum queue 176eda14cbcSMatt Macy * length is exceeded a zevent will be drained from the tail. 177eda14cbcSMatt Macy * As part of this any user space processes which currently have 178eda14cbcSMatt Macy * a reference to this zevent_t in their private data will have 179eda14cbcSMatt Macy * this reference set to NULL. 180eda14cbcSMatt Macy */ 181eda14cbcSMatt Macy static void 182eda14cbcSMatt Macy zfs_zevent_insert(zevent_t *ev) 183eda14cbcSMatt Macy { 184eda14cbcSMatt Macy ASSERT(MUTEX_HELD(&zevent_lock)); 185eda14cbcSMatt Macy list_insert_head(&zevent_list, ev); 186eda14cbcSMatt Macy 187eda14cbcSMatt Macy if (zevent_len_cur >= zfs_zevent_len_max) 188eda14cbcSMatt Macy zfs_zevent_drain(list_tail(&zevent_list)); 189eda14cbcSMatt Macy else 190eda14cbcSMatt Macy zevent_len_cur++; 191eda14cbcSMatt Macy } 192eda14cbcSMatt Macy 193eda14cbcSMatt Macy /* 194eda14cbcSMatt Macy * Post a zevent. The cb will be called when nvl and detector are no longer 195eda14cbcSMatt Macy * needed, i.e.: 196eda14cbcSMatt Macy * - An error happened and a zevent can't be posted. In this case, cb is called 197eda14cbcSMatt Macy * before zfs_zevent_post() returns. 198eda14cbcSMatt Macy * - The event is being drained and freed. 199eda14cbcSMatt Macy */ 200eda14cbcSMatt Macy int 201eda14cbcSMatt Macy zfs_zevent_post(nvlist_t *nvl, nvlist_t *detector, zevent_cb_t *cb) 202eda14cbcSMatt Macy { 203eda14cbcSMatt Macy inode_timespec_t tv; 204eda14cbcSMatt Macy int64_t tv_array[2]; 205eda14cbcSMatt Macy uint64_t eid; 206eda14cbcSMatt Macy size_t nvl_size = 0; 207eda14cbcSMatt Macy zevent_t *ev; 208eda14cbcSMatt Macy int error; 209eda14cbcSMatt Macy 210eda14cbcSMatt Macy ASSERT(cb != NULL); 211eda14cbcSMatt Macy 212eda14cbcSMatt Macy gethrestime(&tv); 213eda14cbcSMatt Macy tv_array[0] = tv.tv_sec; 214eda14cbcSMatt Macy tv_array[1] = tv.tv_nsec; 215eda14cbcSMatt Macy 216eda14cbcSMatt Macy error = nvlist_add_int64_array(nvl, FM_EREPORT_TIME, tv_array, 2); 217eda14cbcSMatt Macy if (error) { 218eda14cbcSMatt Macy atomic_inc_64(&erpt_kstat_data.erpt_set_failed.value.ui64); 219eda14cbcSMatt Macy goto out; 220eda14cbcSMatt Macy } 221eda14cbcSMatt Macy 222eda14cbcSMatt Macy eid = atomic_inc_64_nv(&zevent_eid); 223eda14cbcSMatt Macy error = nvlist_add_uint64(nvl, FM_EREPORT_EID, eid); 224eda14cbcSMatt Macy if (error) { 225eda14cbcSMatt Macy atomic_inc_64(&erpt_kstat_data.erpt_set_failed.value.ui64); 226eda14cbcSMatt Macy goto out; 227eda14cbcSMatt Macy } 228eda14cbcSMatt Macy 229eda14cbcSMatt Macy error = nvlist_size(nvl, &nvl_size, NV_ENCODE_NATIVE); 230eda14cbcSMatt Macy if (error) { 231eda14cbcSMatt Macy atomic_inc_64(&erpt_kstat_data.erpt_dropped.value.ui64); 232eda14cbcSMatt Macy goto out; 233eda14cbcSMatt Macy } 234eda14cbcSMatt Macy 235eda14cbcSMatt Macy if (nvl_size > ERPT_DATA_SZ || nvl_size == 0) { 236eda14cbcSMatt Macy atomic_inc_64(&erpt_kstat_data.erpt_dropped.value.ui64); 237eda14cbcSMatt Macy error = EOVERFLOW; 238eda14cbcSMatt Macy goto out; 239eda14cbcSMatt Macy } 240eda14cbcSMatt Macy 241eda14cbcSMatt Macy ev = zfs_zevent_alloc(); 242eda14cbcSMatt Macy if (ev == NULL) { 243eda14cbcSMatt Macy atomic_inc_64(&erpt_kstat_data.erpt_dropped.value.ui64); 244eda14cbcSMatt Macy error = ENOMEM; 245eda14cbcSMatt Macy goto out; 246eda14cbcSMatt Macy } 247eda14cbcSMatt Macy 248eda14cbcSMatt Macy ev->ev_nvl = nvl; 249eda14cbcSMatt Macy ev->ev_detector = detector; 250eda14cbcSMatt Macy ev->ev_cb = cb; 251eda14cbcSMatt Macy ev->ev_eid = eid; 252eda14cbcSMatt Macy 253eda14cbcSMatt Macy mutex_enter(&zevent_lock); 254eda14cbcSMatt Macy zfs_zevent_insert(ev); 255eda14cbcSMatt Macy cv_broadcast(&zevent_cv); 256eda14cbcSMatt Macy mutex_exit(&zevent_lock); 257eda14cbcSMatt Macy 258eda14cbcSMatt Macy out: 259eda14cbcSMatt Macy if (error) 260eda14cbcSMatt Macy cb(nvl, detector); 261eda14cbcSMatt Macy 262eda14cbcSMatt Macy return (error); 263eda14cbcSMatt Macy } 264eda14cbcSMatt Macy 2652c48331dSMatt Macy void 2662c48331dSMatt Macy zfs_zevent_track_duplicate(void) 2672c48331dSMatt Macy { 2682c48331dSMatt Macy atomic_inc_64(&erpt_kstat_data.erpt_duplicates.value.ui64); 2692c48331dSMatt Macy } 2702c48331dSMatt Macy 271eda14cbcSMatt Macy static int 272eda14cbcSMatt Macy zfs_zevent_minor_to_state(minor_t minor, zfs_zevent_t **ze) 273eda14cbcSMatt Macy { 274eda14cbcSMatt Macy *ze = zfsdev_get_state(minor, ZST_ZEVENT); 275eda14cbcSMatt Macy if (*ze == NULL) 276eda14cbcSMatt Macy return (SET_ERROR(EBADF)); 277eda14cbcSMatt Macy 278eda14cbcSMatt Macy return (0); 279eda14cbcSMatt Macy } 280eda14cbcSMatt Macy 281eda14cbcSMatt Macy int 282eda14cbcSMatt Macy zfs_zevent_fd_hold(int fd, minor_t *minorp, zfs_zevent_t **ze) 283eda14cbcSMatt Macy { 284eda14cbcSMatt Macy int error; 285eda14cbcSMatt Macy 286eda14cbcSMatt Macy error = zfsdev_getminor(fd, minorp); 287eda14cbcSMatt Macy if (error == 0) 288eda14cbcSMatt Macy error = zfs_zevent_minor_to_state(*minorp, ze); 289eda14cbcSMatt Macy 290eda14cbcSMatt Macy if (error) 291eda14cbcSMatt Macy zfs_zevent_fd_rele(fd); 292eda14cbcSMatt Macy 293eda14cbcSMatt Macy return (error); 294eda14cbcSMatt Macy } 295eda14cbcSMatt Macy 296eda14cbcSMatt Macy void 297eda14cbcSMatt Macy zfs_zevent_fd_rele(int fd) 298eda14cbcSMatt Macy { 299eda14cbcSMatt Macy zfs_file_put(fd); 300eda14cbcSMatt Macy } 301eda14cbcSMatt Macy 302eda14cbcSMatt Macy /* 303eda14cbcSMatt Macy * Get the next zevent in the stream and place a copy in 'event'. This 304eda14cbcSMatt Macy * may fail with ENOMEM if the encoded nvlist size exceeds the passed 305eda14cbcSMatt Macy * 'event_size'. In this case the stream pointer is not advanced and 306eda14cbcSMatt Macy * and 'event_size' is set to the minimum required buffer size. 307eda14cbcSMatt Macy */ 308eda14cbcSMatt Macy int 309eda14cbcSMatt Macy zfs_zevent_next(zfs_zevent_t *ze, nvlist_t **event, uint64_t *event_size, 310eda14cbcSMatt Macy uint64_t *dropped) 311eda14cbcSMatt Macy { 312eda14cbcSMatt Macy zevent_t *ev; 313eda14cbcSMatt Macy size_t size; 314eda14cbcSMatt Macy int error = 0; 315eda14cbcSMatt Macy 316eda14cbcSMatt Macy mutex_enter(&zevent_lock); 317eda14cbcSMatt Macy if (ze->ze_zevent == NULL) { 318eda14cbcSMatt Macy /* New stream start at the beginning/tail */ 319eda14cbcSMatt Macy ev = list_tail(&zevent_list); 320eda14cbcSMatt Macy if (ev == NULL) { 321eda14cbcSMatt Macy error = ENOENT; 322eda14cbcSMatt Macy goto out; 323eda14cbcSMatt Macy } 324eda14cbcSMatt Macy } else { 325eda14cbcSMatt Macy /* 326eda14cbcSMatt Macy * Existing stream continue with the next element and remove 327eda14cbcSMatt Macy * ourselves from the wait queue for the previous element 328eda14cbcSMatt Macy */ 329eda14cbcSMatt Macy ev = list_prev(&zevent_list, ze->ze_zevent); 330eda14cbcSMatt Macy if (ev == NULL) { 331eda14cbcSMatt Macy error = ENOENT; 332eda14cbcSMatt Macy goto out; 333eda14cbcSMatt Macy } 334eda14cbcSMatt Macy } 335eda14cbcSMatt Macy 336eda14cbcSMatt Macy VERIFY(nvlist_size(ev->ev_nvl, &size, NV_ENCODE_NATIVE) == 0); 337eda14cbcSMatt Macy if (size > *event_size) { 338eda14cbcSMatt Macy *event_size = size; 339eda14cbcSMatt Macy error = ENOMEM; 340eda14cbcSMatt Macy goto out; 341eda14cbcSMatt Macy } 342eda14cbcSMatt Macy 343eda14cbcSMatt Macy if (ze->ze_zevent) 344eda14cbcSMatt Macy list_remove(&ze->ze_zevent->ev_ze_list, ze); 345eda14cbcSMatt Macy 346eda14cbcSMatt Macy ze->ze_zevent = ev; 347eda14cbcSMatt Macy list_insert_head(&ev->ev_ze_list, ze); 348eda14cbcSMatt Macy (void) nvlist_dup(ev->ev_nvl, event, KM_SLEEP); 349eda14cbcSMatt Macy *dropped = ze->ze_dropped; 350eda14cbcSMatt Macy 351eda14cbcSMatt Macy #ifdef _KERNEL 352eda14cbcSMatt Macy /* Include events dropped due to rate limiting */ 353*16038816SMartin Matuska *dropped += atomic_swap_64(&ratelimit_dropped, 0); 354eda14cbcSMatt Macy #endif 355eda14cbcSMatt Macy ze->ze_dropped = 0; 356eda14cbcSMatt Macy out: 357eda14cbcSMatt Macy mutex_exit(&zevent_lock); 358eda14cbcSMatt Macy 359eda14cbcSMatt Macy return (error); 360eda14cbcSMatt Macy } 361eda14cbcSMatt Macy 362eda14cbcSMatt Macy /* 363eda14cbcSMatt Macy * Wait in an interruptible state for any new events. 364eda14cbcSMatt Macy */ 365eda14cbcSMatt Macy int 366eda14cbcSMatt Macy zfs_zevent_wait(zfs_zevent_t *ze) 367eda14cbcSMatt Macy { 368eda14cbcSMatt Macy int error = EAGAIN; 369eda14cbcSMatt Macy 370eda14cbcSMatt Macy mutex_enter(&zevent_lock); 371eda14cbcSMatt Macy zevent_waiters++; 372eda14cbcSMatt Macy 373eda14cbcSMatt Macy while (error == EAGAIN) { 374eda14cbcSMatt Macy if (zevent_flags & ZEVENT_SHUTDOWN) { 375eda14cbcSMatt Macy error = SET_ERROR(ESHUTDOWN); 376eda14cbcSMatt Macy break; 377eda14cbcSMatt Macy } 378eda14cbcSMatt Macy 379eda14cbcSMatt Macy error = cv_wait_sig(&zevent_cv, &zevent_lock); 380eda14cbcSMatt Macy if (signal_pending(current)) { 381eda14cbcSMatt Macy error = SET_ERROR(EINTR); 382eda14cbcSMatt Macy break; 383eda14cbcSMatt Macy } else if (!list_is_empty(&zevent_list)) { 384eda14cbcSMatt Macy error = 0; 385eda14cbcSMatt Macy continue; 386eda14cbcSMatt Macy } else { 387eda14cbcSMatt Macy error = EAGAIN; 388eda14cbcSMatt Macy } 389eda14cbcSMatt Macy } 390eda14cbcSMatt Macy 391eda14cbcSMatt Macy zevent_waiters--; 392eda14cbcSMatt Macy mutex_exit(&zevent_lock); 393eda14cbcSMatt Macy 394eda14cbcSMatt Macy return (error); 395eda14cbcSMatt Macy } 396eda14cbcSMatt Macy 397eda14cbcSMatt Macy /* 398eda14cbcSMatt Macy * The caller may seek to a specific EID by passing that EID. If the EID 399eda14cbcSMatt Macy * is still available in the posted list of events the cursor is positioned 400eda14cbcSMatt Macy * there. Otherwise ENOENT is returned and the cursor is not moved. 401eda14cbcSMatt Macy * 402eda14cbcSMatt Macy * There are two reserved EIDs which may be passed and will never fail. 403eda14cbcSMatt Macy * ZEVENT_SEEK_START positions the cursor at the start of the list, and 404eda14cbcSMatt Macy * ZEVENT_SEEK_END positions the cursor at the end of the list. 405eda14cbcSMatt Macy */ 406eda14cbcSMatt Macy int 407eda14cbcSMatt Macy zfs_zevent_seek(zfs_zevent_t *ze, uint64_t eid) 408eda14cbcSMatt Macy { 409eda14cbcSMatt Macy zevent_t *ev; 410eda14cbcSMatt Macy int error = 0; 411eda14cbcSMatt Macy 412eda14cbcSMatt Macy mutex_enter(&zevent_lock); 413eda14cbcSMatt Macy 414eda14cbcSMatt Macy if (eid == ZEVENT_SEEK_START) { 415eda14cbcSMatt Macy if (ze->ze_zevent) 416eda14cbcSMatt Macy list_remove(&ze->ze_zevent->ev_ze_list, ze); 417eda14cbcSMatt Macy 418eda14cbcSMatt Macy ze->ze_zevent = NULL; 419eda14cbcSMatt Macy goto out; 420eda14cbcSMatt Macy } 421eda14cbcSMatt Macy 422eda14cbcSMatt Macy if (eid == ZEVENT_SEEK_END) { 423eda14cbcSMatt Macy if (ze->ze_zevent) 424eda14cbcSMatt Macy list_remove(&ze->ze_zevent->ev_ze_list, ze); 425eda14cbcSMatt Macy 426eda14cbcSMatt Macy ev = list_head(&zevent_list); 427eda14cbcSMatt Macy if (ev) { 428eda14cbcSMatt Macy ze->ze_zevent = ev; 429eda14cbcSMatt Macy list_insert_head(&ev->ev_ze_list, ze); 430eda14cbcSMatt Macy } else { 431eda14cbcSMatt Macy ze->ze_zevent = NULL; 432eda14cbcSMatt Macy } 433eda14cbcSMatt Macy 434eda14cbcSMatt Macy goto out; 435eda14cbcSMatt Macy } 436eda14cbcSMatt Macy 437eda14cbcSMatt Macy for (ev = list_tail(&zevent_list); ev != NULL; 438eda14cbcSMatt Macy ev = list_prev(&zevent_list, ev)) { 439eda14cbcSMatt Macy if (ev->ev_eid == eid) { 440eda14cbcSMatt Macy if (ze->ze_zevent) 441eda14cbcSMatt Macy list_remove(&ze->ze_zevent->ev_ze_list, ze); 442eda14cbcSMatt Macy 443eda14cbcSMatt Macy ze->ze_zevent = ev; 444eda14cbcSMatt Macy list_insert_head(&ev->ev_ze_list, ze); 445eda14cbcSMatt Macy break; 446eda14cbcSMatt Macy } 447eda14cbcSMatt Macy } 448eda14cbcSMatt Macy 449eda14cbcSMatt Macy if (ev == NULL) 450eda14cbcSMatt Macy error = ENOENT; 451eda14cbcSMatt Macy 452eda14cbcSMatt Macy out: 453eda14cbcSMatt Macy mutex_exit(&zevent_lock); 454eda14cbcSMatt Macy 455eda14cbcSMatt Macy return (error); 456eda14cbcSMatt Macy } 457eda14cbcSMatt Macy 458eda14cbcSMatt Macy void 459eda14cbcSMatt Macy zfs_zevent_init(zfs_zevent_t **zep) 460eda14cbcSMatt Macy { 461eda14cbcSMatt Macy zfs_zevent_t *ze; 462eda14cbcSMatt Macy 463eda14cbcSMatt Macy ze = *zep = kmem_zalloc(sizeof (zfs_zevent_t), KM_SLEEP); 464eda14cbcSMatt Macy list_link_init(&ze->ze_node); 465eda14cbcSMatt Macy } 466eda14cbcSMatt Macy 467eda14cbcSMatt Macy void 468eda14cbcSMatt Macy zfs_zevent_destroy(zfs_zevent_t *ze) 469eda14cbcSMatt Macy { 470eda14cbcSMatt Macy mutex_enter(&zevent_lock); 471eda14cbcSMatt Macy if (ze->ze_zevent) 472eda14cbcSMatt Macy list_remove(&ze->ze_zevent->ev_ze_list, ze); 473eda14cbcSMatt Macy mutex_exit(&zevent_lock); 474eda14cbcSMatt Macy 475eda14cbcSMatt Macy kmem_free(ze, sizeof (zfs_zevent_t)); 476eda14cbcSMatt Macy } 477eda14cbcSMatt Macy #endif /* _KERNEL */ 478eda14cbcSMatt Macy 479eda14cbcSMatt Macy /* 480eda14cbcSMatt Macy * Wrappers for FM nvlist allocators 481eda14cbcSMatt Macy */ 482eda14cbcSMatt Macy /* ARGSUSED */ 483eda14cbcSMatt Macy static void * 484eda14cbcSMatt Macy i_fm_alloc(nv_alloc_t *nva, size_t size) 485eda14cbcSMatt Macy { 486eda14cbcSMatt Macy return (kmem_zalloc(size, KM_SLEEP)); 487eda14cbcSMatt Macy } 488eda14cbcSMatt Macy 489eda14cbcSMatt Macy /* ARGSUSED */ 490eda14cbcSMatt Macy static void 491eda14cbcSMatt Macy i_fm_free(nv_alloc_t *nva, void *buf, size_t size) 492eda14cbcSMatt Macy { 493eda14cbcSMatt Macy kmem_free(buf, size); 494eda14cbcSMatt Macy } 495eda14cbcSMatt Macy 496eda14cbcSMatt Macy const nv_alloc_ops_t fm_mem_alloc_ops = { 497eda14cbcSMatt Macy .nv_ao_init = NULL, 498eda14cbcSMatt Macy .nv_ao_fini = NULL, 499eda14cbcSMatt Macy .nv_ao_alloc = i_fm_alloc, 500eda14cbcSMatt Macy .nv_ao_free = i_fm_free, 501eda14cbcSMatt Macy .nv_ao_reset = NULL 502eda14cbcSMatt Macy }; 503eda14cbcSMatt Macy 504eda14cbcSMatt Macy /* 505eda14cbcSMatt Macy * Create and initialize a new nv_alloc_t for a fixed buffer, buf. A pointer 506eda14cbcSMatt Macy * to the newly allocated nv_alloc_t structure is returned upon success or NULL 507eda14cbcSMatt Macy * is returned to indicate that the nv_alloc structure could not be created. 508eda14cbcSMatt Macy */ 509eda14cbcSMatt Macy nv_alloc_t * 510eda14cbcSMatt Macy fm_nva_xcreate(char *buf, size_t bufsz) 511eda14cbcSMatt Macy { 512eda14cbcSMatt Macy nv_alloc_t *nvhdl = kmem_zalloc(sizeof (nv_alloc_t), KM_SLEEP); 513eda14cbcSMatt Macy 514eda14cbcSMatt Macy if (bufsz == 0 || nv_alloc_init(nvhdl, nv_fixed_ops, buf, bufsz) != 0) { 515eda14cbcSMatt Macy kmem_free(nvhdl, sizeof (nv_alloc_t)); 516eda14cbcSMatt Macy return (NULL); 517eda14cbcSMatt Macy } 518eda14cbcSMatt Macy 519eda14cbcSMatt Macy return (nvhdl); 520eda14cbcSMatt Macy } 521eda14cbcSMatt Macy 522eda14cbcSMatt Macy /* 523eda14cbcSMatt Macy * Destroy a previously allocated nv_alloc structure. The fixed buffer 524eda14cbcSMatt Macy * associated with nva must be freed by the caller. 525eda14cbcSMatt Macy */ 526eda14cbcSMatt Macy void 527eda14cbcSMatt Macy fm_nva_xdestroy(nv_alloc_t *nva) 528eda14cbcSMatt Macy { 529eda14cbcSMatt Macy nv_alloc_fini(nva); 530eda14cbcSMatt Macy kmem_free(nva, sizeof (nv_alloc_t)); 531eda14cbcSMatt Macy } 532eda14cbcSMatt Macy 533eda14cbcSMatt Macy /* 534eda14cbcSMatt Macy * Create a new nv list. A pointer to a new nv list structure is returned 535eda14cbcSMatt Macy * upon success or NULL is returned to indicate that the structure could 536eda14cbcSMatt Macy * not be created. The newly created nv list is created and managed by the 537eda14cbcSMatt Macy * operations installed in nva. If nva is NULL, the default FMA nva 538eda14cbcSMatt Macy * operations are installed and used. 539eda14cbcSMatt Macy * 540eda14cbcSMatt Macy * When called from the kernel and nva == NULL, this function must be called 541eda14cbcSMatt Macy * from passive kernel context with no locks held that can prevent a 542eda14cbcSMatt Macy * sleeping memory allocation from occurring. Otherwise, this function may 543eda14cbcSMatt Macy * be called from other kernel contexts as long a valid nva created via 544eda14cbcSMatt Macy * fm_nva_create() is supplied. 545eda14cbcSMatt Macy */ 546eda14cbcSMatt Macy nvlist_t * 547eda14cbcSMatt Macy fm_nvlist_create(nv_alloc_t *nva) 548eda14cbcSMatt Macy { 549eda14cbcSMatt Macy int hdl_alloced = 0; 550eda14cbcSMatt Macy nvlist_t *nvl; 551eda14cbcSMatt Macy nv_alloc_t *nvhdl; 552eda14cbcSMatt Macy 553eda14cbcSMatt Macy if (nva == NULL) { 554eda14cbcSMatt Macy nvhdl = kmem_zalloc(sizeof (nv_alloc_t), KM_SLEEP); 555eda14cbcSMatt Macy 556eda14cbcSMatt Macy if (nv_alloc_init(nvhdl, &fm_mem_alloc_ops, NULL, 0) != 0) { 557eda14cbcSMatt Macy kmem_free(nvhdl, sizeof (nv_alloc_t)); 558eda14cbcSMatt Macy return (NULL); 559eda14cbcSMatt Macy } 560eda14cbcSMatt Macy hdl_alloced = 1; 561eda14cbcSMatt Macy } else { 562eda14cbcSMatt Macy nvhdl = nva; 563eda14cbcSMatt Macy } 564eda14cbcSMatt Macy 565eda14cbcSMatt Macy if (nvlist_xalloc(&nvl, NV_UNIQUE_NAME, nvhdl) != 0) { 566eda14cbcSMatt Macy if (hdl_alloced) { 567eda14cbcSMatt Macy nv_alloc_fini(nvhdl); 568eda14cbcSMatt Macy kmem_free(nvhdl, sizeof (nv_alloc_t)); 569eda14cbcSMatt Macy } 570eda14cbcSMatt Macy return (NULL); 571eda14cbcSMatt Macy } 572eda14cbcSMatt Macy 573eda14cbcSMatt Macy return (nvl); 574eda14cbcSMatt Macy } 575eda14cbcSMatt Macy 576eda14cbcSMatt Macy /* 577eda14cbcSMatt Macy * Destroy a previously allocated nvlist structure. flag indicates whether 578eda14cbcSMatt Macy * or not the associated nva structure should be freed (FM_NVA_FREE) or 579eda14cbcSMatt Macy * retained (FM_NVA_RETAIN). Retaining the nv alloc structure allows 580eda14cbcSMatt Macy * it to be re-used for future nvlist creation operations. 581eda14cbcSMatt Macy */ 582eda14cbcSMatt Macy void 583eda14cbcSMatt Macy fm_nvlist_destroy(nvlist_t *nvl, int flag) 584eda14cbcSMatt Macy { 585eda14cbcSMatt Macy nv_alloc_t *nva = nvlist_lookup_nv_alloc(nvl); 586eda14cbcSMatt Macy 587eda14cbcSMatt Macy nvlist_free(nvl); 588eda14cbcSMatt Macy 589eda14cbcSMatt Macy if (nva != NULL) { 590eda14cbcSMatt Macy if (flag == FM_NVA_FREE) 591eda14cbcSMatt Macy fm_nva_xdestroy(nva); 592eda14cbcSMatt Macy } 593eda14cbcSMatt Macy } 594eda14cbcSMatt Macy 595eda14cbcSMatt Macy int 596eda14cbcSMatt Macy i_fm_payload_set(nvlist_t *payload, const char *name, va_list ap) 597eda14cbcSMatt Macy { 598eda14cbcSMatt Macy int nelem, ret = 0; 599eda14cbcSMatt Macy data_type_t type; 600eda14cbcSMatt Macy 601eda14cbcSMatt Macy while (ret == 0 && name != NULL) { 602eda14cbcSMatt Macy type = va_arg(ap, data_type_t); 603eda14cbcSMatt Macy switch (type) { 604eda14cbcSMatt Macy case DATA_TYPE_BYTE: 605eda14cbcSMatt Macy ret = nvlist_add_byte(payload, name, 606eda14cbcSMatt Macy va_arg(ap, uint_t)); 607eda14cbcSMatt Macy break; 608eda14cbcSMatt Macy case DATA_TYPE_BYTE_ARRAY: 609eda14cbcSMatt Macy nelem = va_arg(ap, int); 610eda14cbcSMatt Macy ret = nvlist_add_byte_array(payload, name, 611eda14cbcSMatt Macy va_arg(ap, uchar_t *), nelem); 612eda14cbcSMatt Macy break; 613eda14cbcSMatt Macy case DATA_TYPE_BOOLEAN_VALUE: 614eda14cbcSMatt Macy ret = nvlist_add_boolean_value(payload, name, 615eda14cbcSMatt Macy va_arg(ap, boolean_t)); 616eda14cbcSMatt Macy break; 617eda14cbcSMatt Macy case DATA_TYPE_BOOLEAN_ARRAY: 618eda14cbcSMatt Macy nelem = va_arg(ap, int); 619eda14cbcSMatt Macy ret = nvlist_add_boolean_array(payload, name, 620eda14cbcSMatt Macy va_arg(ap, boolean_t *), nelem); 621eda14cbcSMatt Macy break; 622eda14cbcSMatt Macy case DATA_TYPE_INT8: 623eda14cbcSMatt Macy ret = nvlist_add_int8(payload, name, 624eda14cbcSMatt Macy va_arg(ap, int)); 625eda14cbcSMatt Macy break; 626eda14cbcSMatt Macy case DATA_TYPE_INT8_ARRAY: 627eda14cbcSMatt Macy nelem = va_arg(ap, int); 628eda14cbcSMatt Macy ret = nvlist_add_int8_array(payload, name, 629eda14cbcSMatt Macy va_arg(ap, int8_t *), nelem); 630eda14cbcSMatt Macy break; 631eda14cbcSMatt Macy case DATA_TYPE_UINT8: 632eda14cbcSMatt Macy ret = nvlist_add_uint8(payload, name, 633eda14cbcSMatt Macy va_arg(ap, uint_t)); 634eda14cbcSMatt Macy break; 635eda14cbcSMatt Macy case DATA_TYPE_UINT8_ARRAY: 636eda14cbcSMatt Macy nelem = va_arg(ap, int); 637eda14cbcSMatt Macy ret = nvlist_add_uint8_array(payload, name, 638eda14cbcSMatt Macy va_arg(ap, uint8_t *), nelem); 639eda14cbcSMatt Macy break; 640eda14cbcSMatt Macy case DATA_TYPE_INT16: 641eda14cbcSMatt Macy ret = nvlist_add_int16(payload, name, 642eda14cbcSMatt Macy va_arg(ap, int)); 643eda14cbcSMatt Macy break; 644eda14cbcSMatt Macy case DATA_TYPE_INT16_ARRAY: 645eda14cbcSMatt Macy nelem = va_arg(ap, int); 646eda14cbcSMatt Macy ret = nvlist_add_int16_array(payload, name, 647eda14cbcSMatt Macy va_arg(ap, int16_t *), nelem); 648eda14cbcSMatt Macy break; 649eda14cbcSMatt Macy case DATA_TYPE_UINT16: 650eda14cbcSMatt Macy ret = nvlist_add_uint16(payload, name, 651eda14cbcSMatt Macy va_arg(ap, uint_t)); 652eda14cbcSMatt Macy break; 653eda14cbcSMatt Macy case DATA_TYPE_UINT16_ARRAY: 654eda14cbcSMatt Macy nelem = va_arg(ap, int); 655eda14cbcSMatt Macy ret = nvlist_add_uint16_array(payload, name, 656eda14cbcSMatt Macy va_arg(ap, uint16_t *), nelem); 657eda14cbcSMatt Macy break; 658eda14cbcSMatt Macy case DATA_TYPE_INT32: 659eda14cbcSMatt Macy ret = nvlist_add_int32(payload, name, 660eda14cbcSMatt Macy va_arg(ap, int32_t)); 661eda14cbcSMatt Macy break; 662eda14cbcSMatt Macy case DATA_TYPE_INT32_ARRAY: 663eda14cbcSMatt Macy nelem = va_arg(ap, int); 664eda14cbcSMatt Macy ret = nvlist_add_int32_array(payload, name, 665eda14cbcSMatt Macy va_arg(ap, int32_t *), nelem); 666eda14cbcSMatt Macy break; 667eda14cbcSMatt Macy case DATA_TYPE_UINT32: 668eda14cbcSMatt Macy ret = nvlist_add_uint32(payload, name, 669eda14cbcSMatt Macy va_arg(ap, uint32_t)); 670eda14cbcSMatt Macy break; 671eda14cbcSMatt Macy case DATA_TYPE_UINT32_ARRAY: 672eda14cbcSMatt Macy nelem = va_arg(ap, int); 673eda14cbcSMatt Macy ret = nvlist_add_uint32_array(payload, name, 674eda14cbcSMatt Macy va_arg(ap, uint32_t *), nelem); 675eda14cbcSMatt Macy break; 676eda14cbcSMatt Macy case DATA_TYPE_INT64: 677eda14cbcSMatt Macy ret = nvlist_add_int64(payload, name, 678eda14cbcSMatt Macy va_arg(ap, int64_t)); 679eda14cbcSMatt Macy break; 680eda14cbcSMatt Macy case DATA_TYPE_INT64_ARRAY: 681eda14cbcSMatt Macy nelem = va_arg(ap, int); 682eda14cbcSMatt Macy ret = nvlist_add_int64_array(payload, name, 683eda14cbcSMatt Macy va_arg(ap, int64_t *), nelem); 684eda14cbcSMatt Macy break; 685eda14cbcSMatt Macy case DATA_TYPE_UINT64: 686eda14cbcSMatt Macy ret = nvlist_add_uint64(payload, name, 687eda14cbcSMatt Macy va_arg(ap, uint64_t)); 688eda14cbcSMatt Macy break; 689eda14cbcSMatt Macy case DATA_TYPE_UINT64_ARRAY: 690eda14cbcSMatt Macy nelem = va_arg(ap, int); 691eda14cbcSMatt Macy ret = nvlist_add_uint64_array(payload, name, 692eda14cbcSMatt Macy va_arg(ap, uint64_t *), nelem); 693eda14cbcSMatt Macy break; 694eda14cbcSMatt Macy case DATA_TYPE_STRING: 695eda14cbcSMatt Macy ret = nvlist_add_string(payload, name, 696eda14cbcSMatt Macy va_arg(ap, char *)); 697eda14cbcSMatt Macy break; 698eda14cbcSMatt Macy case DATA_TYPE_STRING_ARRAY: 699eda14cbcSMatt Macy nelem = va_arg(ap, int); 700eda14cbcSMatt Macy ret = nvlist_add_string_array(payload, name, 701eda14cbcSMatt Macy va_arg(ap, char **), nelem); 702eda14cbcSMatt Macy break; 703eda14cbcSMatt Macy case DATA_TYPE_NVLIST: 704eda14cbcSMatt Macy ret = nvlist_add_nvlist(payload, name, 705eda14cbcSMatt Macy va_arg(ap, nvlist_t *)); 706eda14cbcSMatt Macy break; 707eda14cbcSMatt Macy case DATA_TYPE_NVLIST_ARRAY: 708eda14cbcSMatt Macy nelem = va_arg(ap, int); 709eda14cbcSMatt Macy ret = nvlist_add_nvlist_array(payload, name, 710eda14cbcSMatt Macy va_arg(ap, nvlist_t **), nelem); 711eda14cbcSMatt Macy break; 712eda14cbcSMatt Macy default: 713eda14cbcSMatt Macy ret = EINVAL; 714eda14cbcSMatt Macy } 715eda14cbcSMatt Macy 716eda14cbcSMatt Macy name = va_arg(ap, char *); 717eda14cbcSMatt Macy } 718eda14cbcSMatt Macy return (ret); 719eda14cbcSMatt Macy } 720eda14cbcSMatt Macy 721eda14cbcSMatt Macy void 722eda14cbcSMatt Macy fm_payload_set(nvlist_t *payload, ...) 723eda14cbcSMatt Macy { 724eda14cbcSMatt Macy int ret; 725eda14cbcSMatt Macy const char *name; 726eda14cbcSMatt Macy va_list ap; 727eda14cbcSMatt Macy 728eda14cbcSMatt Macy va_start(ap, payload); 729eda14cbcSMatt Macy name = va_arg(ap, char *); 730eda14cbcSMatt Macy ret = i_fm_payload_set(payload, name, ap); 731eda14cbcSMatt Macy va_end(ap); 732eda14cbcSMatt Macy 733eda14cbcSMatt Macy if (ret) 734eda14cbcSMatt Macy atomic_inc_64(&erpt_kstat_data.payload_set_failed.value.ui64); 735eda14cbcSMatt Macy } 736eda14cbcSMatt Macy 737eda14cbcSMatt Macy /* 738eda14cbcSMatt Macy * Set-up and validate the members of an ereport event according to: 739eda14cbcSMatt Macy * 740eda14cbcSMatt Macy * Member name Type Value 741eda14cbcSMatt Macy * ==================================================== 742eda14cbcSMatt Macy * class string ereport 743eda14cbcSMatt Macy * version uint8_t 0 744eda14cbcSMatt Macy * ena uint64_t <ena> 745eda14cbcSMatt Macy * detector nvlist_t <detector> 746eda14cbcSMatt Macy * ereport-payload nvlist_t <var args> 747eda14cbcSMatt Macy * 748eda14cbcSMatt Macy * We don't actually add a 'version' member to the payload. Really, 749eda14cbcSMatt Macy * the version quoted to us by our caller is that of the category 1 750eda14cbcSMatt Macy * "ereport" event class (and we require FM_EREPORT_VERS0) but 751eda14cbcSMatt Macy * the payload version of the actual leaf class event under construction 752eda14cbcSMatt Macy * may be something else. Callers should supply a version in the varargs, 753eda14cbcSMatt Macy * or (better) we could take two version arguments - one for the 754eda14cbcSMatt Macy * ereport category 1 classification (expect FM_EREPORT_VERS0) and one 755eda14cbcSMatt Macy * for the leaf class. 756eda14cbcSMatt Macy */ 757eda14cbcSMatt Macy void 758eda14cbcSMatt Macy fm_ereport_set(nvlist_t *ereport, int version, const char *erpt_class, 759eda14cbcSMatt Macy uint64_t ena, const nvlist_t *detector, ...) 760eda14cbcSMatt Macy { 761eda14cbcSMatt Macy char ereport_class[FM_MAX_CLASS]; 762eda14cbcSMatt Macy const char *name; 763eda14cbcSMatt Macy va_list ap; 764eda14cbcSMatt Macy int ret; 765eda14cbcSMatt Macy 766eda14cbcSMatt Macy if (version != FM_EREPORT_VERS0) { 767eda14cbcSMatt Macy atomic_inc_64(&erpt_kstat_data.erpt_set_failed.value.ui64); 768eda14cbcSMatt Macy return; 769eda14cbcSMatt Macy } 770eda14cbcSMatt Macy 771eda14cbcSMatt Macy (void) snprintf(ereport_class, FM_MAX_CLASS, "%s.%s", 772eda14cbcSMatt Macy FM_EREPORT_CLASS, erpt_class); 773eda14cbcSMatt Macy if (nvlist_add_string(ereport, FM_CLASS, ereport_class) != 0) { 774eda14cbcSMatt Macy atomic_inc_64(&erpt_kstat_data.erpt_set_failed.value.ui64); 775eda14cbcSMatt Macy return; 776eda14cbcSMatt Macy } 777eda14cbcSMatt Macy 778eda14cbcSMatt Macy if (nvlist_add_uint64(ereport, FM_EREPORT_ENA, ena)) { 779eda14cbcSMatt Macy atomic_inc_64(&erpt_kstat_data.erpt_set_failed.value.ui64); 780eda14cbcSMatt Macy } 781eda14cbcSMatt Macy 782eda14cbcSMatt Macy if (nvlist_add_nvlist(ereport, FM_EREPORT_DETECTOR, 783eda14cbcSMatt Macy (nvlist_t *)detector) != 0) { 784eda14cbcSMatt Macy atomic_inc_64(&erpt_kstat_data.erpt_set_failed.value.ui64); 785eda14cbcSMatt Macy } 786eda14cbcSMatt Macy 787eda14cbcSMatt Macy va_start(ap, detector); 788eda14cbcSMatt Macy name = va_arg(ap, const char *); 789eda14cbcSMatt Macy ret = i_fm_payload_set(ereport, name, ap); 790eda14cbcSMatt Macy va_end(ap); 791eda14cbcSMatt Macy 792eda14cbcSMatt Macy if (ret) 793eda14cbcSMatt Macy atomic_inc_64(&erpt_kstat_data.erpt_set_failed.value.ui64); 794eda14cbcSMatt Macy } 795eda14cbcSMatt Macy 796eda14cbcSMatt Macy /* 797eda14cbcSMatt Macy * Set-up and validate the members of an hc fmri according to; 798eda14cbcSMatt Macy * 799eda14cbcSMatt Macy * Member name Type Value 800eda14cbcSMatt Macy * =================================================== 801eda14cbcSMatt Macy * version uint8_t 0 802eda14cbcSMatt Macy * auth nvlist_t <auth> 803eda14cbcSMatt Macy * hc-name string <name> 804eda14cbcSMatt Macy * hc-id string <id> 805eda14cbcSMatt Macy * 806eda14cbcSMatt Macy * Note that auth and hc-id are optional members. 807eda14cbcSMatt Macy */ 808eda14cbcSMatt Macy 809eda14cbcSMatt Macy #define HC_MAXPAIRS 20 810eda14cbcSMatt Macy #define HC_MAXNAMELEN 50 811eda14cbcSMatt Macy 812eda14cbcSMatt Macy static int 813eda14cbcSMatt Macy fm_fmri_hc_set_common(nvlist_t *fmri, int version, const nvlist_t *auth) 814eda14cbcSMatt Macy { 815eda14cbcSMatt Macy if (version != FM_HC_SCHEME_VERSION) { 816eda14cbcSMatt Macy atomic_inc_64(&erpt_kstat_data.fmri_set_failed.value.ui64); 817eda14cbcSMatt Macy return (0); 818eda14cbcSMatt Macy } 819eda14cbcSMatt Macy 820eda14cbcSMatt Macy if (nvlist_add_uint8(fmri, FM_VERSION, version) != 0 || 821eda14cbcSMatt Macy nvlist_add_string(fmri, FM_FMRI_SCHEME, FM_FMRI_SCHEME_HC) != 0) { 822eda14cbcSMatt Macy atomic_inc_64(&erpt_kstat_data.fmri_set_failed.value.ui64); 823eda14cbcSMatt Macy return (0); 824eda14cbcSMatt Macy } 825eda14cbcSMatt Macy 826eda14cbcSMatt Macy if (auth != NULL && nvlist_add_nvlist(fmri, FM_FMRI_AUTHORITY, 827eda14cbcSMatt Macy (nvlist_t *)auth) != 0) { 828eda14cbcSMatt Macy atomic_inc_64(&erpt_kstat_data.fmri_set_failed.value.ui64); 829eda14cbcSMatt Macy return (0); 830eda14cbcSMatt Macy } 831eda14cbcSMatt Macy 832eda14cbcSMatt Macy return (1); 833eda14cbcSMatt Macy } 834eda14cbcSMatt Macy 835eda14cbcSMatt Macy void 836eda14cbcSMatt Macy fm_fmri_hc_set(nvlist_t *fmri, int version, const nvlist_t *auth, 837eda14cbcSMatt Macy nvlist_t *snvl, int npairs, ...) 838eda14cbcSMatt Macy { 839eda14cbcSMatt Macy nv_alloc_t *nva = nvlist_lookup_nv_alloc(fmri); 840eda14cbcSMatt Macy nvlist_t *pairs[HC_MAXPAIRS]; 841eda14cbcSMatt Macy va_list ap; 842eda14cbcSMatt Macy int i; 843eda14cbcSMatt Macy 844eda14cbcSMatt Macy if (!fm_fmri_hc_set_common(fmri, version, auth)) 845eda14cbcSMatt Macy return; 846eda14cbcSMatt Macy 847eda14cbcSMatt Macy npairs = MIN(npairs, HC_MAXPAIRS); 848eda14cbcSMatt Macy 849eda14cbcSMatt Macy va_start(ap, npairs); 850eda14cbcSMatt Macy for (i = 0; i < npairs; i++) { 851eda14cbcSMatt Macy const char *name = va_arg(ap, const char *); 852eda14cbcSMatt Macy uint32_t id = va_arg(ap, uint32_t); 853eda14cbcSMatt Macy char idstr[11]; 854eda14cbcSMatt Macy 855eda14cbcSMatt Macy (void) snprintf(idstr, sizeof (idstr), "%u", id); 856eda14cbcSMatt Macy 857eda14cbcSMatt Macy pairs[i] = fm_nvlist_create(nva); 858eda14cbcSMatt Macy if (nvlist_add_string(pairs[i], FM_FMRI_HC_NAME, name) != 0 || 859eda14cbcSMatt Macy nvlist_add_string(pairs[i], FM_FMRI_HC_ID, idstr) != 0) { 860eda14cbcSMatt Macy atomic_inc_64( 861eda14cbcSMatt Macy &erpt_kstat_data.fmri_set_failed.value.ui64); 862eda14cbcSMatt Macy } 863eda14cbcSMatt Macy } 864eda14cbcSMatt Macy va_end(ap); 865eda14cbcSMatt Macy 866eda14cbcSMatt Macy if (nvlist_add_nvlist_array(fmri, FM_FMRI_HC_LIST, pairs, npairs) != 0) 867eda14cbcSMatt Macy atomic_inc_64(&erpt_kstat_data.fmri_set_failed.value.ui64); 868eda14cbcSMatt Macy 869eda14cbcSMatt Macy for (i = 0; i < npairs; i++) 870eda14cbcSMatt Macy fm_nvlist_destroy(pairs[i], FM_NVA_RETAIN); 871eda14cbcSMatt Macy 872eda14cbcSMatt Macy if (snvl != NULL) { 873eda14cbcSMatt Macy if (nvlist_add_nvlist(fmri, FM_FMRI_HC_SPECIFIC, snvl) != 0) { 874eda14cbcSMatt Macy atomic_inc_64( 875eda14cbcSMatt Macy &erpt_kstat_data.fmri_set_failed.value.ui64); 876eda14cbcSMatt Macy } 877eda14cbcSMatt Macy } 878eda14cbcSMatt Macy } 879eda14cbcSMatt Macy 880eda14cbcSMatt Macy void 881eda14cbcSMatt Macy fm_fmri_hc_create(nvlist_t *fmri, int version, const nvlist_t *auth, 882eda14cbcSMatt Macy nvlist_t *snvl, nvlist_t *bboard, int npairs, ...) 883eda14cbcSMatt Macy { 884eda14cbcSMatt Macy nv_alloc_t *nva = nvlist_lookup_nv_alloc(fmri); 885eda14cbcSMatt Macy nvlist_t *pairs[HC_MAXPAIRS]; 886eda14cbcSMatt Macy nvlist_t **hcl; 887eda14cbcSMatt Macy uint_t n; 888eda14cbcSMatt Macy int i, j; 889eda14cbcSMatt Macy va_list ap; 890eda14cbcSMatt Macy char *hcname, *hcid; 891eda14cbcSMatt Macy 892eda14cbcSMatt Macy if (!fm_fmri_hc_set_common(fmri, version, auth)) 893eda14cbcSMatt Macy return; 894eda14cbcSMatt Macy 895eda14cbcSMatt Macy /* 896eda14cbcSMatt Macy * copy the bboard nvpairs to the pairs array 897eda14cbcSMatt Macy */ 898eda14cbcSMatt Macy if (nvlist_lookup_nvlist_array(bboard, FM_FMRI_HC_LIST, &hcl, &n) 899eda14cbcSMatt Macy != 0) { 900eda14cbcSMatt Macy atomic_inc_64(&erpt_kstat_data.fmri_set_failed.value.ui64); 901eda14cbcSMatt Macy return; 902eda14cbcSMatt Macy } 903eda14cbcSMatt Macy 904eda14cbcSMatt Macy for (i = 0; i < n; i++) { 905eda14cbcSMatt Macy if (nvlist_lookup_string(hcl[i], FM_FMRI_HC_NAME, 906eda14cbcSMatt Macy &hcname) != 0) { 907eda14cbcSMatt Macy atomic_inc_64( 908eda14cbcSMatt Macy &erpt_kstat_data.fmri_set_failed.value.ui64); 909eda14cbcSMatt Macy return; 910eda14cbcSMatt Macy } 911eda14cbcSMatt Macy if (nvlist_lookup_string(hcl[i], FM_FMRI_HC_ID, &hcid) != 0) { 912eda14cbcSMatt Macy atomic_inc_64( 913eda14cbcSMatt Macy &erpt_kstat_data.fmri_set_failed.value.ui64); 914eda14cbcSMatt Macy return; 915eda14cbcSMatt Macy } 916eda14cbcSMatt Macy 917eda14cbcSMatt Macy pairs[i] = fm_nvlist_create(nva); 918eda14cbcSMatt Macy if (nvlist_add_string(pairs[i], FM_FMRI_HC_NAME, hcname) != 0 || 919eda14cbcSMatt Macy nvlist_add_string(pairs[i], FM_FMRI_HC_ID, hcid) != 0) { 920eda14cbcSMatt Macy for (j = 0; j <= i; j++) { 921eda14cbcSMatt Macy if (pairs[j] != NULL) 922eda14cbcSMatt Macy fm_nvlist_destroy(pairs[j], 923eda14cbcSMatt Macy FM_NVA_RETAIN); 924eda14cbcSMatt Macy } 925eda14cbcSMatt Macy atomic_inc_64( 926eda14cbcSMatt Macy &erpt_kstat_data.fmri_set_failed.value.ui64); 927eda14cbcSMatt Macy return; 928eda14cbcSMatt Macy } 929eda14cbcSMatt Macy } 930eda14cbcSMatt Macy 931eda14cbcSMatt Macy /* 932eda14cbcSMatt Macy * create the pairs from passed in pairs 933eda14cbcSMatt Macy */ 934eda14cbcSMatt Macy npairs = MIN(npairs, HC_MAXPAIRS); 935eda14cbcSMatt Macy 936eda14cbcSMatt Macy va_start(ap, npairs); 937eda14cbcSMatt Macy for (i = n; i < npairs + n; i++) { 938eda14cbcSMatt Macy const char *name = va_arg(ap, const char *); 939eda14cbcSMatt Macy uint32_t id = va_arg(ap, uint32_t); 940eda14cbcSMatt Macy char idstr[11]; 941eda14cbcSMatt Macy (void) snprintf(idstr, sizeof (idstr), "%u", id); 942eda14cbcSMatt Macy pairs[i] = fm_nvlist_create(nva); 943eda14cbcSMatt Macy if (nvlist_add_string(pairs[i], FM_FMRI_HC_NAME, name) != 0 || 944eda14cbcSMatt Macy nvlist_add_string(pairs[i], FM_FMRI_HC_ID, idstr) != 0) { 945eda14cbcSMatt Macy for (j = 0; j <= i; j++) { 946eda14cbcSMatt Macy if (pairs[j] != NULL) 947eda14cbcSMatt Macy fm_nvlist_destroy(pairs[j], 948eda14cbcSMatt Macy FM_NVA_RETAIN); 949eda14cbcSMatt Macy } 950eda14cbcSMatt Macy atomic_inc_64( 951eda14cbcSMatt Macy &erpt_kstat_data.fmri_set_failed.value.ui64); 952eda14cbcSMatt Macy return; 953eda14cbcSMatt Macy } 954eda14cbcSMatt Macy } 955eda14cbcSMatt Macy va_end(ap); 956eda14cbcSMatt Macy 957eda14cbcSMatt Macy /* 958eda14cbcSMatt Macy * Create the fmri hc list 959eda14cbcSMatt Macy */ 960eda14cbcSMatt Macy if (nvlist_add_nvlist_array(fmri, FM_FMRI_HC_LIST, pairs, 961eda14cbcSMatt Macy npairs + n) != 0) { 962eda14cbcSMatt Macy atomic_inc_64(&erpt_kstat_data.fmri_set_failed.value.ui64); 963eda14cbcSMatt Macy return; 964eda14cbcSMatt Macy } 965eda14cbcSMatt Macy 966eda14cbcSMatt Macy for (i = 0; i < npairs + n; i++) { 967eda14cbcSMatt Macy fm_nvlist_destroy(pairs[i], FM_NVA_RETAIN); 968eda14cbcSMatt Macy } 969eda14cbcSMatt Macy 970eda14cbcSMatt Macy if (snvl != NULL) { 971eda14cbcSMatt Macy if (nvlist_add_nvlist(fmri, FM_FMRI_HC_SPECIFIC, snvl) != 0) { 972eda14cbcSMatt Macy atomic_inc_64( 973eda14cbcSMatt Macy &erpt_kstat_data.fmri_set_failed.value.ui64); 974eda14cbcSMatt Macy return; 975eda14cbcSMatt Macy } 976eda14cbcSMatt Macy } 977eda14cbcSMatt Macy } 978eda14cbcSMatt Macy 979eda14cbcSMatt Macy /* 980eda14cbcSMatt Macy * Set-up and validate the members of an dev fmri according to: 981eda14cbcSMatt Macy * 982eda14cbcSMatt Macy * Member name Type Value 983eda14cbcSMatt Macy * ==================================================== 984eda14cbcSMatt Macy * version uint8_t 0 985eda14cbcSMatt Macy * auth nvlist_t <auth> 986eda14cbcSMatt Macy * devpath string <devpath> 987eda14cbcSMatt Macy * [devid] string <devid> 988eda14cbcSMatt Macy * [target-port-l0id] string <target-port-lun0-id> 989eda14cbcSMatt Macy * 990eda14cbcSMatt Macy * Note that auth and devid are optional members. 991eda14cbcSMatt Macy */ 992eda14cbcSMatt Macy void 993eda14cbcSMatt Macy fm_fmri_dev_set(nvlist_t *fmri_dev, int version, const nvlist_t *auth, 994eda14cbcSMatt Macy const char *devpath, const char *devid, const char *tpl0) 995eda14cbcSMatt Macy { 996eda14cbcSMatt Macy int err = 0; 997eda14cbcSMatt Macy 998eda14cbcSMatt Macy if (version != DEV_SCHEME_VERSION0) { 999eda14cbcSMatt Macy atomic_inc_64(&erpt_kstat_data.fmri_set_failed.value.ui64); 1000eda14cbcSMatt Macy return; 1001eda14cbcSMatt Macy } 1002eda14cbcSMatt Macy 1003eda14cbcSMatt Macy err |= nvlist_add_uint8(fmri_dev, FM_VERSION, version); 1004eda14cbcSMatt Macy err |= nvlist_add_string(fmri_dev, FM_FMRI_SCHEME, FM_FMRI_SCHEME_DEV); 1005eda14cbcSMatt Macy 1006eda14cbcSMatt Macy if (auth != NULL) { 1007eda14cbcSMatt Macy err |= nvlist_add_nvlist(fmri_dev, FM_FMRI_AUTHORITY, 1008eda14cbcSMatt Macy (nvlist_t *)auth); 1009eda14cbcSMatt Macy } 1010eda14cbcSMatt Macy 1011eda14cbcSMatt Macy err |= nvlist_add_string(fmri_dev, FM_FMRI_DEV_PATH, devpath); 1012eda14cbcSMatt Macy 1013eda14cbcSMatt Macy if (devid != NULL) 1014eda14cbcSMatt Macy err |= nvlist_add_string(fmri_dev, FM_FMRI_DEV_ID, devid); 1015eda14cbcSMatt Macy 1016eda14cbcSMatt Macy if (tpl0 != NULL) 1017eda14cbcSMatt Macy err |= nvlist_add_string(fmri_dev, FM_FMRI_DEV_TGTPTLUN0, tpl0); 1018eda14cbcSMatt Macy 1019eda14cbcSMatt Macy if (err) 1020eda14cbcSMatt Macy atomic_inc_64(&erpt_kstat_data.fmri_set_failed.value.ui64); 1021eda14cbcSMatt Macy 1022eda14cbcSMatt Macy } 1023eda14cbcSMatt Macy 1024eda14cbcSMatt Macy /* 1025eda14cbcSMatt Macy * Set-up and validate the members of an cpu fmri according to: 1026eda14cbcSMatt Macy * 1027eda14cbcSMatt Macy * Member name Type Value 1028eda14cbcSMatt Macy * ==================================================== 1029eda14cbcSMatt Macy * version uint8_t 0 1030eda14cbcSMatt Macy * auth nvlist_t <auth> 1031eda14cbcSMatt Macy * cpuid uint32_t <cpu_id> 1032eda14cbcSMatt Macy * cpumask uint8_t <cpu_mask> 1033eda14cbcSMatt Macy * serial uint64_t <serial_id> 1034eda14cbcSMatt Macy * 1035eda14cbcSMatt Macy * Note that auth, cpumask, serial are optional members. 1036eda14cbcSMatt Macy * 1037eda14cbcSMatt Macy */ 1038eda14cbcSMatt Macy void 1039eda14cbcSMatt Macy fm_fmri_cpu_set(nvlist_t *fmri_cpu, int version, const nvlist_t *auth, 1040eda14cbcSMatt Macy uint32_t cpu_id, uint8_t *cpu_maskp, const char *serial_idp) 1041eda14cbcSMatt Macy { 1042eda14cbcSMatt Macy uint64_t *failedp = &erpt_kstat_data.fmri_set_failed.value.ui64; 1043eda14cbcSMatt Macy 1044eda14cbcSMatt Macy if (version < CPU_SCHEME_VERSION1) { 1045eda14cbcSMatt Macy atomic_inc_64(failedp); 1046eda14cbcSMatt Macy return; 1047eda14cbcSMatt Macy } 1048eda14cbcSMatt Macy 1049eda14cbcSMatt Macy if (nvlist_add_uint8(fmri_cpu, FM_VERSION, version) != 0) { 1050eda14cbcSMatt Macy atomic_inc_64(failedp); 1051eda14cbcSMatt Macy return; 1052eda14cbcSMatt Macy } 1053eda14cbcSMatt Macy 1054eda14cbcSMatt Macy if (nvlist_add_string(fmri_cpu, FM_FMRI_SCHEME, 1055eda14cbcSMatt Macy FM_FMRI_SCHEME_CPU) != 0) { 1056eda14cbcSMatt Macy atomic_inc_64(failedp); 1057eda14cbcSMatt Macy return; 1058eda14cbcSMatt Macy } 1059eda14cbcSMatt Macy 1060eda14cbcSMatt Macy if (auth != NULL && nvlist_add_nvlist(fmri_cpu, FM_FMRI_AUTHORITY, 1061eda14cbcSMatt Macy (nvlist_t *)auth) != 0) 1062eda14cbcSMatt Macy atomic_inc_64(failedp); 1063eda14cbcSMatt Macy 1064eda14cbcSMatt Macy if (nvlist_add_uint32(fmri_cpu, FM_FMRI_CPU_ID, cpu_id) != 0) 1065eda14cbcSMatt Macy atomic_inc_64(failedp); 1066eda14cbcSMatt Macy 1067eda14cbcSMatt Macy if (cpu_maskp != NULL && nvlist_add_uint8(fmri_cpu, FM_FMRI_CPU_MASK, 1068eda14cbcSMatt Macy *cpu_maskp) != 0) 1069eda14cbcSMatt Macy atomic_inc_64(failedp); 1070eda14cbcSMatt Macy 1071eda14cbcSMatt Macy if (serial_idp == NULL || nvlist_add_string(fmri_cpu, 1072eda14cbcSMatt Macy FM_FMRI_CPU_SERIAL_ID, (char *)serial_idp) != 0) 1073eda14cbcSMatt Macy atomic_inc_64(failedp); 1074eda14cbcSMatt Macy } 1075eda14cbcSMatt Macy 1076eda14cbcSMatt Macy /* 1077eda14cbcSMatt Macy * Set-up and validate the members of a mem according to: 1078eda14cbcSMatt Macy * 1079eda14cbcSMatt Macy * Member name Type Value 1080eda14cbcSMatt Macy * ==================================================== 1081eda14cbcSMatt Macy * version uint8_t 0 1082eda14cbcSMatt Macy * auth nvlist_t <auth> [optional] 1083eda14cbcSMatt Macy * unum string <unum> 1084eda14cbcSMatt Macy * serial string <serial> [optional*] 1085eda14cbcSMatt Macy * offset uint64_t <offset> [optional] 1086eda14cbcSMatt Macy * 1087eda14cbcSMatt Macy * * serial is required if offset is present 1088eda14cbcSMatt Macy */ 1089eda14cbcSMatt Macy void 1090eda14cbcSMatt Macy fm_fmri_mem_set(nvlist_t *fmri, int version, const nvlist_t *auth, 1091eda14cbcSMatt Macy const char *unum, const char *serial, uint64_t offset) 1092eda14cbcSMatt Macy { 1093eda14cbcSMatt Macy if (version != MEM_SCHEME_VERSION0) { 1094eda14cbcSMatt Macy atomic_inc_64(&erpt_kstat_data.fmri_set_failed.value.ui64); 1095eda14cbcSMatt Macy return; 1096eda14cbcSMatt Macy } 1097eda14cbcSMatt Macy 1098eda14cbcSMatt Macy if (!serial && (offset != (uint64_t)-1)) { 1099eda14cbcSMatt Macy atomic_inc_64(&erpt_kstat_data.fmri_set_failed.value.ui64); 1100eda14cbcSMatt Macy return; 1101eda14cbcSMatt Macy } 1102eda14cbcSMatt Macy 1103eda14cbcSMatt Macy if (nvlist_add_uint8(fmri, FM_VERSION, version) != 0) { 1104eda14cbcSMatt Macy atomic_inc_64(&erpt_kstat_data.fmri_set_failed.value.ui64); 1105eda14cbcSMatt Macy return; 1106eda14cbcSMatt Macy } 1107eda14cbcSMatt Macy 1108eda14cbcSMatt Macy if (nvlist_add_string(fmri, FM_FMRI_SCHEME, FM_FMRI_SCHEME_MEM) != 0) { 1109eda14cbcSMatt Macy atomic_inc_64(&erpt_kstat_data.fmri_set_failed.value.ui64); 1110eda14cbcSMatt Macy return; 1111eda14cbcSMatt Macy } 1112eda14cbcSMatt Macy 1113eda14cbcSMatt Macy if (auth != NULL) { 1114eda14cbcSMatt Macy if (nvlist_add_nvlist(fmri, FM_FMRI_AUTHORITY, 1115eda14cbcSMatt Macy (nvlist_t *)auth) != 0) { 1116eda14cbcSMatt Macy atomic_inc_64( 1117eda14cbcSMatt Macy &erpt_kstat_data.fmri_set_failed.value.ui64); 1118eda14cbcSMatt Macy } 1119eda14cbcSMatt Macy } 1120eda14cbcSMatt Macy 1121eda14cbcSMatt Macy if (nvlist_add_string(fmri, FM_FMRI_MEM_UNUM, unum) != 0) { 1122eda14cbcSMatt Macy atomic_inc_64(&erpt_kstat_data.fmri_set_failed.value.ui64); 1123eda14cbcSMatt Macy } 1124eda14cbcSMatt Macy 1125eda14cbcSMatt Macy if (serial != NULL) { 1126eda14cbcSMatt Macy if (nvlist_add_string_array(fmri, FM_FMRI_MEM_SERIAL_ID, 1127eda14cbcSMatt Macy (char **)&serial, 1) != 0) { 1128eda14cbcSMatt Macy atomic_inc_64( 1129eda14cbcSMatt Macy &erpt_kstat_data.fmri_set_failed.value.ui64); 1130eda14cbcSMatt Macy } 1131eda14cbcSMatt Macy if (offset != (uint64_t)-1 && nvlist_add_uint64(fmri, 1132eda14cbcSMatt Macy FM_FMRI_MEM_OFFSET, offset) != 0) { 1133eda14cbcSMatt Macy atomic_inc_64( 1134eda14cbcSMatt Macy &erpt_kstat_data.fmri_set_failed.value.ui64); 1135eda14cbcSMatt Macy } 1136eda14cbcSMatt Macy } 1137eda14cbcSMatt Macy } 1138eda14cbcSMatt Macy 1139eda14cbcSMatt Macy void 1140eda14cbcSMatt Macy fm_fmri_zfs_set(nvlist_t *fmri, int version, uint64_t pool_guid, 1141eda14cbcSMatt Macy uint64_t vdev_guid) 1142eda14cbcSMatt Macy { 1143eda14cbcSMatt Macy if (version != ZFS_SCHEME_VERSION0) { 1144eda14cbcSMatt Macy atomic_inc_64(&erpt_kstat_data.fmri_set_failed.value.ui64); 1145eda14cbcSMatt Macy return; 1146eda14cbcSMatt Macy } 1147eda14cbcSMatt Macy 1148eda14cbcSMatt Macy if (nvlist_add_uint8(fmri, FM_VERSION, version) != 0) { 1149eda14cbcSMatt Macy atomic_inc_64(&erpt_kstat_data.fmri_set_failed.value.ui64); 1150eda14cbcSMatt Macy return; 1151eda14cbcSMatt Macy } 1152eda14cbcSMatt Macy 1153eda14cbcSMatt Macy if (nvlist_add_string(fmri, FM_FMRI_SCHEME, FM_FMRI_SCHEME_ZFS) != 0) { 1154eda14cbcSMatt Macy atomic_inc_64(&erpt_kstat_data.fmri_set_failed.value.ui64); 1155eda14cbcSMatt Macy return; 1156eda14cbcSMatt Macy } 1157eda14cbcSMatt Macy 1158eda14cbcSMatt Macy if (nvlist_add_uint64(fmri, FM_FMRI_ZFS_POOL, pool_guid) != 0) { 1159eda14cbcSMatt Macy atomic_inc_64(&erpt_kstat_data.fmri_set_failed.value.ui64); 1160eda14cbcSMatt Macy } 1161eda14cbcSMatt Macy 1162eda14cbcSMatt Macy if (vdev_guid != 0) { 1163eda14cbcSMatt Macy if (nvlist_add_uint64(fmri, FM_FMRI_ZFS_VDEV, vdev_guid) != 0) { 1164eda14cbcSMatt Macy atomic_inc_64( 1165eda14cbcSMatt Macy &erpt_kstat_data.fmri_set_failed.value.ui64); 1166eda14cbcSMatt Macy } 1167eda14cbcSMatt Macy } 1168eda14cbcSMatt Macy } 1169eda14cbcSMatt Macy 1170eda14cbcSMatt Macy uint64_t 1171eda14cbcSMatt Macy fm_ena_increment(uint64_t ena) 1172eda14cbcSMatt Macy { 1173eda14cbcSMatt Macy uint64_t new_ena; 1174eda14cbcSMatt Macy 1175eda14cbcSMatt Macy switch (ENA_FORMAT(ena)) { 1176eda14cbcSMatt Macy case FM_ENA_FMT1: 1177eda14cbcSMatt Macy new_ena = ena + (1 << ENA_FMT1_GEN_SHFT); 1178eda14cbcSMatt Macy break; 1179eda14cbcSMatt Macy case FM_ENA_FMT2: 1180eda14cbcSMatt Macy new_ena = ena + (1 << ENA_FMT2_GEN_SHFT); 1181eda14cbcSMatt Macy break; 1182eda14cbcSMatt Macy default: 1183eda14cbcSMatt Macy new_ena = 0; 1184eda14cbcSMatt Macy } 1185eda14cbcSMatt Macy 1186eda14cbcSMatt Macy return (new_ena); 1187eda14cbcSMatt Macy } 1188eda14cbcSMatt Macy 1189eda14cbcSMatt Macy uint64_t 1190eda14cbcSMatt Macy fm_ena_generate_cpu(uint64_t timestamp, processorid_t cpuid, uchar_t format) 1191eda14cbcSMatt Macy { 1192eda14cbcSMatt Macy uint64_t ena = 0; 1193eda14cbcSMatt Macy 1194eda14cbcSMatt Macy switch (format) { 1195eda14cbcSMatt Macy case FM_ENA_FMT1: 1196eda14cbcSMatt Macy if (timestamp) { 1197eda14cbcSMatt Macy ena = (uint64_t)((format & ENA_FORMAT_MASK) | 1198eda14cbcSMatt Macy ((cpuid << ENA_FMT1_CPUID_SHFT) & 1199eda14cbcSMatt Macy ENA_FMT1_CPUID_MASK) | 1200eda14cbcSMatt Macy ((timestamp << ENA_FMT1_TIME_SHFT) & 1201eda14cbcSMatt Macy ENA_FMT1_TIME_MASK)); 1202eda14cbcSMatt Macy } else { 1203eda14cbcSMatt Macy ena = (uint64_t)((format & ENA_FORMAT_MASK) | 1204eda14cbcSMatt Macy ((cpuid << ENA_FMT1_CPUID_SHFT) & 1205eda14cbcSMatt Macy ENA_FMT1_CPUID_MASK) | 1206eda14cbcSMatt Macy ((gethrtime() << ENA_FMT1_TIME_SHFT) & 1207eda14cbcSMatt Macy ENA_FMT1_TIME_MASK)); 1208eda14cbcSMatt Macy } 1209eda14cbcSMatt Macy break; 1210eda14cbcSMatt Macy case FM_ENA_FMT2: 1211eda14cbcSMatt Macy ena = (uint64_t)((format & ENA_FORMAT_MASK) | 1212eda14cbcSMatt Macy ((timestamp << ENA_FMT2_TIME_SHFT) & ENA_FMT2_TIME_MASK)); 1213eda14cbcSMatt Macy break; 1214eda14cbcSMatt Macy default: 1215eda14cbcSMatt Macy break; 1216eda14cbcSMatt Macy } 1217eda14cbcSMatt Macy 1218eda14cbcSMatt Macy return (ena); 1219eda14cbcSMatt Macy } 1220eda14cbcSMatt Macy 1221eda14cbcSMatt Macy uint64_t 1222eda14cbcSMatt Macy fm_ena_generate(uint64_t timestamp, uchar_t format) 1223eda14cbcSMatt Macy { 1224eda14cbcSMatt Macy uint64_t ena; 1225eda14cbcSMatt Macy 1226eda14cbcSMatt Macy kpreempt_disable(); 1227eda14cbcSMatt Macy ena = fm_ena_generate_cpu(timestamp, getcpuid(), format); 1228eda14cbcSMatt Macy kpreempt_enable(); 1229eda14cbcSMatt Macy 1230eda14cbcSMatt Macy return (ena); 1231eda14cbcSMatt Macy } 1232eda14cbcSMatt Macy 1233eda14cbcSMatt Macy uint64_t 1234eda14cbcSMatt Macy fm_ena_generation_get(uint64_t ena) 1235eda14cbcSMatt Macy { 1236eda14cbcSMatt Macy uint64_t gen; 1237eda14cbcSMatt Macy 1238eda14cbcSMatt Macy switch (ENA_FORMAT(ena)) { 1239eda14cbcSMatt Macy case FM_ENA_FMT1: 1240eda14cbcSMatt Macy gen = (ena & ENA_FMT1_GEN_MASK) >> ENA_FMT1_GEN_SHFT; 1241eda14cbcSMatt Macy break; 1242eda14cbcSMatt Macy case FM_ENA_FMT2: 1243eda14cbcSMatt Macy gen = (ena & ENA_FMT2_GEN_MASK) >> ENA_FMT2_GEN_SHFT; 1244eda14cbcSMatt Macy break; 1245eda14cbcSMatt Macy default: 1246eda14cbcSMatt Macy gen = 0; 1247eda14cbcSMatt Macy break; 1248eda14cbcSMatt Macy } 1249eda14cbcSMatt Macy 1250eda14cbcSMatt Macy return (gen); 1251eda14cbcSMatt Macy } 1252eda14cbcSMatt Macy 1253eda14cbcSMatt Macy uchar_t 1254eda14cbcSMatt Macy fm_ena_format_get(uint64_t ena) 1255eda14cbcSMatt Macy { 1256eda14cbcSMatt Macy 1257eda14cbcSMatt Macy return (ENA_FORMAT(ena)); 1258eda14cbcSMatt Macy } 1259eda14cbcSMatt Macy 1260eda14cbcSMatt Macy uint64_t 1261eda14cbcSMatt Macy fm_ena_id_get(uint64_t ena) 1262eda14cbcSMatt Macy { 1263eda14cbcSMatt Macy uint64_t id; 1264eda14cbcSMatt Macy 1265eda14cbcSMatt Macy switch (ENA_FORMAT(ena)) { 1266eda14cbcSMatt Macy case FM_ENA_FMT1: 1267eda14cbcSMatt Macy id = (ena & ENA_FMT1_ID_MASK) >> ENA_FMT1_ID_SHFT; 1268eda14cbcSMatt Macy break; 1269eda14cbcSMatt Macy case FM_ENA_FMT2: 1270eda14cbcSMatt Macy id = (ena & ENA_FMT2_ID_MASK) >> ENA_FMT2_ID_SHFT; 1271eda14cbcSMatt Macy break; 1272eda14cbcSMatt Macy default: 1273eda14cbcSMatt Macy id = 0; 1274eda14cbcSMatt Macy } 1275eda14cbcSMatt Macy 1276eda14cbcSMatt Macy return (id); 1277eda14cbcSMatt Macy } 1278eda14cbcSMatt Macy 1279eda14cbcSMatt Macy uint64_t 1280eda14cbcSMatt Macy fm_ena_time_get(uint64_t ena) 1281eda14cbcSMatt Macy { 1282eda14cbcSMatt Macy uint64_t time; 1283eda14cbcSMatt Macy 1284eda14cbcSMatt Macy switch (ENA_FORMAT(ena)) { 1285eda14cbcSMatt Macy case FM_ENA_FMT1: 1286eda14cbcSMatt Macy time = (ena & ENA_FMT1_TIME_MASK) >> ENA_FMT1_TIME_SHFT; 1287eda14cbcSMatt Macy break; 1288eda14cbcSMatt Macy case FM_ENA_FMT2: 1289eda14cbcSMatt Macy time = (ena & ENA_FMT2_TIME_MASK) >> ENA_FMT2_TIME_SHFT; 1290eda14cbcSMatt Macy break; 1291eda14cbcSMatt Macy default: 1292eda14cbcSMatt Macy time = 0; 1293eda14cbcSMatt Macy } 1294eda14cbcSMatt Macy 1295eda14cbcSMatt Macy return (time); 1296eda14cbcSMatt Macy } 1297eda14cbcSMatt Macy 1298eda14cbcSMatt Macy #ifdef _KERNEL 1299eda14cbcSMatt Macy /* 1300eda14cbcSMatt Macy * Helper function to increment ereport dropped count. Used by the event 1301eda14cbcSMatt Macy * rate limiting code to give feedback to the user about how many events were 1302eda14cbcSMatt Macy * rate limited by including them in the 'dropped' count. 1303eda14cbcSMatt Macy */ 1304eda14cbcSMatt Macy void 1305eda14cbcSMatt Macy fm_erpt_dropped_increment(void) 1306eda14cbcSMatt Macy { 1307eda14cbcSMatt Macy atomic_inc_64(&ratelimit_dropped); 1308eda14cbcSMatt Macy } 1309eda14cbcSMatt Macy 1310eda14cbcSMatt Macy void 1311eda14cbcSMatt Macy fm_init(void) 1312eda14cbcSMatt Macy { 1313eda14cbcSMatt Macy zevent_len_cur = 0; 1314eda14cbcSMatt Macy zevent_flags = 0; 1315eda14cbcSMatt Macy 1316eda14cbcSMatt Macy /* Initialize zevent allocation and generation kstats */ 1317eda14cbcSMatt Macy fm_ksp = kstat_create("zfs", 0, "fm", "misc", KSTAT_TYPE_NAMED, 1318eda14cbcSMatt Macy sizeof (struct erpt_kstat) / sizeof (kstat_named_t), 1319eda14cbcSMatt Macy KSTAT_FLAG_VIRTUAL); 1320eda14cbcSMatt Macy 1321eda14cbcSMatt Macy if (fm_ksp != NULL) { 1322eda14cbcSMatt Macy fm_ksp->ks_data = &erpt_kstat_data; 1323eda14cbcSMatt Macy kstat_install(fm_ksp); 1324eda14cbcSMatt Macy } else { 1325eda14cbcSMatt Macy cmn_err(CE_NOTE, "failed to create fm/misc kstat\n"); 1326eda14cbcSMatt Macy } 1327eda14cbcSMatt Macy 1328eda14cbcSMatt Macy mutex_init(&zevent_lock, NULL, MUTEX_DEFAULT, NULL); 1329eda14cbcSMatt Macy list_create(&zevent_list, sizeof (zevent_t), 1330eda14cbcSMatt Macy offsetof(zevent_t, ev_node)); 1331eda14cbcSMatt Macy cv_init(&zevent_cv, NULL, CV_DEFAULT, NULL); 13322c48331dSMatt Macy 13332c48331dSMatt Macy zfs_ereport_init(); 1334eda14cbcSMatt Macy } 1335eda14cbcSMatt Macy 1336eda14cbcSMatt Macy void 1337eda14cbcSMatt Macy fm_fini(void) 1338eda14cbcSMatt Macy { 1339eda14cbcSMatt Macy int count; 1340eda14cbcSMatt Macy 13412c48331dSMatt Macy zfs_ereport_fini(); 13422c48331dSMatt Macy 1343eda14cbcSMatt Macy zfs_zevent_drain_all(&count); 1344eda14cbcSMatt Macy 1345eda14cbcSMatt Macy mutex_enter(&zevent_lock); 1346eda14cbcSMatt Macy cv_broadcast(&zevent_cv); 1347eda14cbcSMatt Macy 1348eda14cbcSMatt Macy zevent_flags |= ZEVENT_SHUTDOWN; 1349eda14cbcSMatt Macy while (zevent_waiters > 0) { 1350eda14cbcSMatt Macy mutex_exit(&zevent_lock); 1351eda14cbcSMatt Macy schedule(); 1352eda14cbcSMatt Macy mutex_enter(&zevent_lock); 1353eda14cbcSMatt Macy } 1354eda14cbcSMatt Macy mutex_exit(&zevent_lock); 1355eda14cbcSMatt Macy 1356eda14cbcSMatt Macy cv_destroy(&zevent_cv); 1357eda14cbcSMatt Macy list_destroy(&zevent_list); 1358eda14cbcSMatt Macy mutex_destroy(&zevent_lock); 1359eda14cbcSMatt Macy 1360eda14cbcSMatt Macy if (fm_ksp != NULL) { 1361eda14cbcSMatt Macy kstat_delete(fm_ksp); 1362eda14cbcSMatt Macy fm_ksp = NULL; 1363eda14cbcSMatt Macy } 1364eda14cbcSMatt Macy } 1365eda14cbcSMatt Macy #endif /* _KERNEL */ 1366eda14cbcSMatt Macy 1367eda14cbcSMatt Macy ZFS_MODULE_PARAM(zfs_zevent, zfs_zevent_, len_max, INT, ZMOD_RW, 1368eda14cbcSMatt Macy "Max event queue length"); 1369